node.go 24 KB

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  1. package node
  2. import (
  3. "crypto/tls"
  4. "encoding/json"
  5. "io/ioutil"
  6. "net"
  7. "os"
  8. "path/filepath"
  9. "reflect"
  10. "sort"
  11. "sync"
  12. "time"
  13. "github.com/Sirupsen/logrus"
  14. "github.com/boltdb/bolt"
  15. "github.com/docker/docker/pkg/plugingetter"
  16. "github.com/docker/swarmkit/agent"
  17. "github.com/docker/swarmkit/agent/exec"
  18. "github.com/docker/swarmkit/api"
  19. "github.com/docker/swarmkit/ca"
  20. "github.com/docker/swarmkit/connectionbroker"
  21. "github.com/docker/swarmkit/ioutils"
  22. "github.com/docker/swarmkit/log"
  23. "github.com/docker/swarmkit/manager"
  24. "github.com/docker/swarmkit/manager/encryption"
  25. "github.com/docker/swarmkit/remotes"
  26. "github.com/docker/swarmkit/xnet"
  27. grpc_prometheus "github.com/grpc-ecosystem/go-grpc-prometheus"
  28. "github.com/pkg/errors"
  29. "golang.org/x/net/context"
  30. "google.golang.org/grpc"
  31. "google.golang.org/grpc/credentials"
  32. )
  33. const (
  34. stateFilename = "state.json"
  35. roleChangeTimeout = 16 * time.Second
  36. )
  37. var (
  38. errNodeStarted = errors.New("node: already started")
  39. errNodeNotStarted = errors.New("node: not started")
  40. certDirectory = "certificates"
  41. // ErrInvalidUnlockKey is returned when we can't decrypt the TLS certificate
  42. ErrInvalidUnlockKey = errors.New("node is locked, and needs a valid unlock key")
  43. )
  44. // Config provides values for a Node.
  45. type Config struct {
  46. // Hostname is the name of host for agent instance.
  47. Hostname string
  48. // JoinAddr specifies node that should be used for the initial connection to
  49. // other manager in cluster. This should be only one address and optional,
  50. // the actual remotes come from the stored state.
  51. JoinAddr string
  52. // StateDir specifies the directory the node uses to keep the state of the
  53. // remote managers and certificates.
  54. StateDir string
  55. // JoinToken is the token to be used on the first certificate request.
  56. JoinToken string
  57. // ExternalCAs is a list of CAs to which a manager node
  58. // will make certificate signing requests for node certificates.
  59. ExternalCAs []*api.ExternalCA
  60. // ForceNewCluster creates a new cluster from current raft state.
  61. ForceNewCluster bool
  62. // ListenControlAPI specifies address the control API should listen on.
  63. ListenControlAPI string
  64. // ListenRemoteAPI specifies the address for the remote API that agents
  65. // and raft members connect to.
  66. ListenRemoteAPI string
  67. // AdvertiseRemoteAPI specifies the address that should be advertised
  68. // for connections to the remote API (including the raft service).
  69. AdvertiseRemoteAPI string
  70. // Executor specifies the executor to use for the agent.
  71. Executor exec.Executor
  72. // ElectionTick defines the amount of ticks needed without
  73. // leader to trigger a new election
  74. ElectionTick uint32
  75. // HeartbeatTick defines the amount of ticks between each
  76. // heartbeat sent to other members for health-check purposes
  77. HeartbeatTick uint32
  78. // AutoLockManagers determines whether or not an unlock key will be generated
  79. // when bootstrapping a new cluster for the first time
  80. AutoLockManagers bool
  81. // UnlockKey is the key to unlock a node - used for decrypting at rest. This
  82. // only applies to nodes that have already joined a cluster.
  83. UnlockKey []byte
  84. // Availability allows a user to control the current scheduling status of a node
  85. Availability api.NodeSpec_Availability
  86. // PluginGetter provides access to docker's plugin inventory.
  87. PluginGetter plugingetter.PluginGetter
  88. }
  89. // Node implements the primary node functionality for a member of a swarm
  90. // cluster. Node handles workloads and may also run as a manager.
  91. type Node struct {
  92. sync.RWMutex
  93. config *Config
  94. remotes *persistentRemotes
  95. connBroker *connectionbroker.Broker
  96. role string
  97. roleCond *sync.Cond
  98. conn *grpc.ClientConn
  99. connCond *sync.Cond
  100. nodeID string
  101. started chan struct{}
  102. startOnce sync.Once
  103. stopped chan struct{}
  104. stopOnce sync.Once
  105. ready chan struct{} // closed when agent has completed registration and manager(if enabled) is ready to receive control requests
  106. closed chan struct{}
  107. err error
  108. agent *agent.Agent
  109. manager *manager.Manager
  110. notifyNodeChange chan *api.Node // used to send role updates from the dispatcher api on promotion/demotion
  111. unlockKey []byte
  112. }
  113. // RemoteAPIAddr returns address on which remote manager api listens.
  114. // Returns nil if node is not manager.
  115. func (n *Node) RemoteAPIAddr() (string, error) {
  116. n.RLock()
  117. defer n.RUnlock()
  118. if n.manager == nil {
  119. return "", errors.New("manager is not running")
  120. }
  121. addr := n.manager.Addr()
  122. if addr == "" {
  123. return "", errors.New("manager addr is not set")
  124. }
  125. return addr, nil
  126. }
  127. // New returns new Node instance.
  128. func New(c *Config) (*Node, error) {
  129. if err := os.MkdirAll(c.StateDir, 0700); err != nil {
  130. return nil, err
  131. }
  132. stateFile := filepath.Join(c.StateDir, stateFilename)
  133. dt, err := ioutil.ReadFile(stateFile)
  134. var p []api.Peer
  135. if err != nil && !os.IsNotExist(err) {
  136. return nil, err
  137. }
  138. if err == nil {
  139. if err := json.Unmarshal(dt, &p); err != nil {
  140. return nil, err
  141. }
  142. }
  143. n := &Node{
  144. remotes: newPersistentRemotes(stateFile, p...),
  145. role: ca.WorkerRole,
  146. config: c,
  147. started: make(chan struct{}),
  148. stopped: make(chan struct{}),
  149. closed: make(chan struct{}),
  150. ready: make(chan struct{}),
  151. notifyNodeChange: make(chan *api.Node, 1),
  152. unlockKey: c.UnlockKey,
  153. }
  154. if n.config.JoinAddr != "" || n.config.ForceNewCluster {
  155. n.remotes = newPersistentRemotes(filepath.Join(n.config.StateDir, stateFilename))
  156. if n.config.JoinAddr != "" {
  157. n.remotes.Observe(api.Peer{Addr: n.config.JoinAddr}, remotes.DefaultObservationWeight)
  158. }
  159. }
  160. n.connBroker = connectionbroker.New(n.remotes)
  161. n.roleCond = sync.NewCond(n.RLocker())
  162. n.connCond = sync.NewCond(n.RLocker())
  163. return n, nil
  164. }
  165. // BindRemote starts a listener that exposes the remote API.
  166. func (n *Node) BindRemote(ctx context.Context, listenAddr string, advertiseAddr string) error {
  167. n.RLock()
  168. defer n.RUnlock()
  169. if n.manager == nil {
  170. return errors.New("manager is not running")
  171. }
  172. return n.manager.BindRemote(ctx, manager.RemoteAddrs{
  173. ListenAddr: listenAddr,
  174. AdvertiseAddr: advertiseAddr,
  175. })
  176. }
  177. // Start starts a node instance.
  178. func (n *Node) Start(ctx context.Context) error {
  179. err := errNodeStarted
  180. n.startOnce.Do(func() {
  181. close(n.started)
  182. go n.run(ctx)
  183. err = nil // clear error above, only once.
  184. })
  185. return err
  186. }
  187. func (n *Node) run(ctx context.Context) (err error) {
  188. defer func() {
  189. n.err = err
  190. close(n.closed)
  191. }()
  192. ctx, cancel := context.WithCancel(ctx)
  193. defer cancel()
  194. ctx = log.WithModule(ctx, "node")
  195. go func() {
  196. select {
  197. case <-ctx.Done():
  198. case <-n.stopped:
  199. cancel()
  200. }
  201. }()
  202. securityConfig, err := n.loadSecurityConfig(ctx)
  203. if err != nil {
  204. return err
  205. }
  206. taskDBPath := filepath.Join(n.config.StateDir, "worker/tasks.db")
  207. if err := os.MkdirAll(filepath.Dir(taskDBPath), 0777); err != nil {
  208. return err
  209. }
  210. db, err := bolt.Open(taskDBPath, 0666, nil)
  211. if err != nil {
  212. return err
  213. }
  214. defer db.Close()
  215. forceCertRenewal := make(chan struct{})
  216. renewCert := func() {
  217. select {
  218. case forceCertRenewal <- struct{}{}:
  219. case <-ctx.Done():
  220. }
  221. }
  222. go func() {
  223. for {
  224. select {
  225. case <-ctx.Done():
  226. return
  227. case node := <-n.notifyNodeChange:
  228. // If the server is sending us a ForceRenewal State, renew
  229. if node.Certificate.Status.State == api.IssuanceStateRotate {
  230. renewCert()
  231. continue
  232. }
  233. n.Lock()
  234. // If we got a role change, renew
  235. role := ca.WorkerRole
  236. if node.Role == api.NodeRoleManager {
  237. role = ca.ManagerRole
  238. }
  239. if n.role == role {
  240. n.Unlock()
  241. continue
  242. }
  243. n.Unlock()
  244. renewCert()
  245. }
  246. }
  247. }()
  248. var wg sync.WaitGroup
  249. wg.Add(3)
  250. updates := ca.RenewTLSConfig(ctx, securityConfig, n.connBroker, forceCertRenewal)
  251. go func() {
  252. for certUpdate := range updates {
  253. if certUpdate.Err != nil {
  254. logrus.Warnf("error renewing TLS certificate: %v", certUpdate.Err)
  255. continue
  256. }
  257. n.Lock()
  258. n.role = certUpdate.Role
  259. n.roleCond.Broadcast()
  260. n.Unlock()
  261. }
  262. wg.Done()
  263. }()
  264. role := n.role
  265. managerReady := make(chan struct{})
  266. agentReady := make(chan struct{})
  267. var managerErr error
  268. var agentErr error
  269. go func() {
  270. managerErr = n.superviseManager(ctx, securityConfig, managerReady, forceCertRenewal) // store err and loop
  271. wg.Done()
  272. cancel()
  273. }()
  274. go func() {
  275. agentErr = n.runAgent(ctx, db, securityConfig.ClientTLSCreds, agentReady)
  276. wg.Done()
  277. cancel()
  278. }()
  279. go func() {
  280. <-agentReady
  281. if role == ca.ManagerRole {
  282. workerRole := make(chan struct{})
  283. waitRoleCtx, waitRoleCancel := context.WithCancel(ctx)
  284. go func() {
  285. if n.waitRole(waitRoleCtx, ca.WorkerRole) == nil {
  286. close(workerRole)
  287. }
  288. }()
  289. select {
  290. case <-managerReady:
  291. case <-workerRole:
  292. }
  293. waitRoleCancel()
  294. }
  295. close(n.ready)
  296. }()
  297. wg.Wait()
  298. if managerErr != nil && managerErr != context.Canceled {
  299. return managerErr
  300. }
  301. if agentErr != nil && agentErr != context.Canceled {
  302. return agentErr
  303. }
  304. return err
  305. }
  306. // Stop stops node execution
  307. func (n *Node) Stop(ctx context.Context) error {
  308. select {
  309. case <-n.started:
  310. default:
  311. return errNodeNotStarted
  312. }
  313. // ask agent to clean up assignments
  314. n.Lock()
  315. if n.agent != nil {
  316. if err := n.agent.Leave(ctx); err != nil {
  317. log.G(ctx).WithError(err).Error("agent failed to clean up assignments")
  318. }
  319. }
  320. n.Unlock()
  321. n.stopOnce.Do(func() {
  322. close(n.stopped)
  323. })
  324. select {
  325. case <-n.closed:
  326. return nil
  327. case <-ctx.Done():
  328. return ctx.Err()
  329. }
  330. }
  331. // Err returns the error that caused the node to shutdown or nil. Err blocks
  332. // until the node has fully shut down.
  333. func (n *Node) Err(ctx context.Context) error {
  334. select {
  335. case <-n.closed:
  336. return n.err
  337. case <-ctx.Done():
  338. return ctx.Err()
  339. }
  340. }
  341. func (n *Node) runAgent(ctx context.Context, db *bolt.DB, creds credentials.TransportCredentials, ready chan<- struct{}) error {
  342. waitCtx, waitCancel := context.WithCancel(ctx)
  343. remotesCh := n.remotes.WaitSelect(ctx)
  344. controlCh := n.ListenControlSocket(waitCtx)
  345. waitPeer:
  346. for {
  347. select {
  348. case <-ctx.Done():
  349. break waitPeer
  350. case <-remotesCh:
  351. break waitPeer
  352. case conn := <-controlCh:
  353. if conn != nil {
  354. break waitPeer
  355. }
  356. }
  357. }
  358. waitCancel()
  359. select {
  360. case <-ctx.Done():
  361. return ctx.Err()
  362. default:
  363. }
  364. a, err := agent.New(&agent.Config{
  365. Hostname: n.config.Hostname,
  366. ConnBroker: n.connBroker,
  367. Executor: n.config.Executor,
  368. DB: db,
  369. NotifyNodeChange: n.notifyNodeChange,
  370. Credentials: creds,
  371. })
  372. if err != nil {
  373. return err
  374. }
  375. if err := a.Start(ctx); err != nil {
  376. return err
  377. }
  378. n.Lock()
  379. n.agent = a
  380. n.Unlock()
  381. defer func() {
  382. n.Lock()
  383. n.agent = nil
  384. n.Unlock()
  385. }()
  386. go func() {
  387. <-a.Ready()
  388. close(ready)
  389. }()
  390. // todo: manually call stop on context cancellation?
  391. return a.Err(context.Background())
  392. }
  393. // Ready returns a channel that is closed after node's initialization has
  394. // completes for the first time.
  395. func (n *Node) Ready() <-chan struct{} {
  396. return n.ready
  397. }
  398. func (n *Node) setControlSocket(conn *grpc.ClientConn) {
  399. n.Lock()
  400. if n.conn != nil {
  401. n.conn.Close()
  402. }
  403. n.conn = conn
  404. n.connBroker.SetLocalConn(conn)
  405. n.connCond.Broadcast()
  406. n.Unlock()
  407. }
  408. // ListenControlSocket listens changes of a connection for managing the
  409. // cluster control api
  410. func (n *Node) ListenControlSocket(ctx context.Context) <-chan *grpc.ClientConn {
  411. c := make(chan *grpc.ClientConn, 1)
  412. n.RLock()
  413. conn := n.conn
  414. c <- conn
  415. done := make(chan struct{})
  416. go func() {
  417. select {
  418. case <-ctx.Done():
  419. n.connCond.Broadcast()
  420. case <-done:
  421. }
  422. }()
  423. go func() {
  424. defer close(c)
  425. defer close(done)
  426. defer n.RUnlock()
  427. for {
  428. select {
  429. case <-ctx.Done():
  430. return
  431. default:
  432. }
  433. if conn == n.conn {
  434. n.connCond.Wait()
  435. continue
  436. }
  437. conn = n.conn
  438. select {
  439. case c <- conn:
  440. case <-ctx.Done():
  441. return
  442. }
  443. }
  444. }()
  445. return c
  446. }
  447. // NodeID returns current node's ID. May be empty if not set.
  448. func (n *Node) NodeID() string {
  449. n.RLock()
  450. defer n.RUnlock()
  451. return n.nodeID
  452. }
  453. // Manager returns manager instance started by node. May be nil.
  454. func (n *Node) Manager() *manager.Manager {
  455. n.RLock()
  456. defer n.RUnlock()
  457. return n.manager
  458. }
  459. // Agent returns agent instance started by node. May be nil.
  460. func (n *Node) Agent() *agent.Agent {
  461. n.RLock()
  462. defer n.RUnlock()
  463. return n.agent
  464. }
  465. // IsStateDirty returns true if any objects have been added to raft which make
  466. // the state "dirty". Currently, the existence of any object other than the
  467. // default cluster or the local node implies a dirty state.
  468. func (n *Node) IsStateDirty() (bool, error) {
  469. n.RLock()
  470. defer n.RUnlock()
  471. if n.manager == nil {
  472. return false, errors.New("node is not a manager")
  473. }
  474. return n.manager.IsStateDirty()
  475. }
  476. // Remotes returns a list of known peers known to node.
  477. func (n *Node) Remotes() []api.Peer {
  478. weights := n.remotes.Weights()
  479. remotes := make([]api.Peer, 0, len(weights))
  480. for p := range weights {
  481. remotes = append(remotes, p)
  482. }
  483. return remotes
  484. }
  485. func (n *Node) loadSecurityConfig(ctx context.Context) (*ca.SecurityConfig, error) {
  486. paths := ca.NewConfigPaths(filepath.Join(n.config.StateDir, certDirectory))
  487. var securityConfig *ca.SecurityConfig
  488. krw := ca.NewKeyReadWriter(paths.Node, n.unlockKey, &manager.RaftDEKData{})
  489. if err := krw.Migrate(); err != nil {
  490. return nil, err
  491. }
  492. // Check if we already have a valid certificates on disk.
  493. rootCA, err := ca.GetLocalRootCA(paths.RootCA)
  494. if err != nil && err != ca.ErrNoLocalRootCA {
  495. return nil, err
  496. }
  497. if err == nil {
  498. // if forcing a new cluster, we allow the certificates to be expired - a new set will be generated
  499. securityConfig, err = ca.LoadSecurityConfig(ctx, rootCA, krw, n.config.ForceNewCluster)
  500. if err != nil {
  501. _, isInvalidKEK := errors.Cause(err).(ca.ErrInvalidKEK)
  502. if isInvalidKEK {
  503. return nil, ErrInvalidUnlockKey
  504. } else if !os.IsNotExist(err) {
  505. return nil, errors.Wrapf(err, "error while loading TLS certificate in %s", paths.Node.Cert)
  506. }
  507. }
  508. }
  509. if securityConfig == nil {
  510. if n.config.JoinAddr == "" {
  511. // if we're not joining a cluster, bootstrap a new one - and we have to set the unlock key
  512. n.unlockKey = nil
  513. if n.config.AutoLockManagers {
  514. n.unlockKey = encryption.GenerateSecretKey()
  515. }
  516. krw = ca.NewKeyReadWriter(paths.Node, n.unlockKey, &manager.RaftDEKData{})
  517. rootCA, err = ca.CreateRootCA(ca.DefaultRootCN, paths.RootCA)
  518. if err != nil {
  519. return nil, err
  520. }
  521. log.G(ctx).Debug("generated CA key and certificate")
  522. } else if err == ca.ErrNoLocalRootCA { // from previous error loading the root CA from disk
  523. rootCA, err = ca.DownloadRootCA(ctx, paths.RootCA, n.config.JoinToken, n.connBroker)
  524. if err != nil {
  525. return nil, err
  526. }
  527. log.G(ctx).Debug("downloaded CA certificate")
  528. }
  529. // Obtain new certs and setup TLS certificates renewal for this node:
  530. // - If certificates weren't present on disk, we call CreateSecurityConfig, which blocks
  531. // until a valid certificate has been issued.
  532. // - We wait for CreateSecurityConfig to finish since we need a certificate to operate.
  533. // Attempt to load certificate from disk
  534. securityConfig, err = ca.LoadSecurityConfig(ctx, rootCA, krw, n.config.ForceNewCluster)
  535. if err == nil {
  536. log.G(ctx).WithFields(logrus.Fields{
  537. "node.id": securityConfig.ClientTLSCreds.NodeID(),
  538. }).Debugf("loaded TLS certificate")
  539. } else {
  540. if _, ok := errors.Cause(err).(ca.ErrInvalidKEK); ok {
  541. return nil, ErrInvalidUnlockKey
  542. }
  543. log.G(ctx).WithError(err).Debugf("no node credentials found in: %s", krw.Target())
  544. securityConfig, err = rootCA.CreateSecurityConfig(ctx, krw, ca.CertificateRequestConfig{
  545. Token: n.config.JoinToken,
  546. Availability: n.config.Availability,
  547. ConnBroker: n.connBroker,
  548. })
  549. if err != nil {
  550. return nil, err
  551. }
  552. }
  553. }
  554. n.Lock()
  555. n.role = securityConfig.ClientTLSCreds.Role()
  556. n.nodeID = securityConfig.ClientTLSCreds.NodeID()
  557. n.roleCond.Broadcast()
  558. n.Unlock()
  559. return securityConfig, nil
  560. }
  561. func (n *Node) initManagerConnection(ctx context.Context, ready chan<- struct{}) error {
  562. opts := []grpc.DialOption{
  563. grpc.WithUnaryInterceptor(grpc_prometheus.UnaryClientInterceptor),
  564. grpc.WithStreamInterceptor(grpc_prometheus.StreamClientInterceptor),
  565. }
  566. insecureCreds := credentials.NewTLS(&tls.Config{InsecureSkipVerify: true})
  567. opts = append(opts, grpc.WithTransportCredentials(insecureCreds))
  568. addr := n.config.ListenControlAPI
  569. opts = append(opts, grpc.WithDialer(
  570. func(addr string, timeout time.Duration) (net.Conn, error) {
  571. return xnet.DialTimeoutLocal(addr, timeout)
  572. }))
  573. conn, err := grpc.Dial(addr, opts...)
  574. if err != nil {
  575. return err
  576. }
  577. client := api.NewHealthClient(conn)
  578. for {
  579. resp, err := client.Check(ctx, &api.HealthCheckRequest{Service: "ControlAPI"})
  580. if err != nil {
  581. return err
  582. }
  583. if resp.Status == api.HealthCheckResponse_SERVING {
  584. break
  585. }
  586. time.Sleep(500 * time.Millisecond)
  587. }
  588. n.setControlSocket(conn)
  589. if ready != nil {
  590. close(ready)
  591. }
  592. return nil
  593. }
  594. func (n *Node) waitRole(ctx context.Context, role string) error {
  595. n.roleCond.L.Lock()
  596. if role == n.role {
  597. n.roleCond.L.Unlock()
  598. return nil
  599. }
  600. finishCh := make(chan struct{})
  601. defer close(finishCh)
  602. go func() {
  603. select {
  604. case <-finishCh:
  605. case <-ctx.Done():
  606. // call broadcast to shutdown this function
  607. n.roleCond.Broadcast()
  608. }
  609. }()
  610. defer n.roleCond.L.Unlock()
  611. for role != n.role {
  612. n.roleCond.Wait()
  613. select {
  614. case <-ctx.Done():
  615. return ctx.Err()
  616. default:
  617. }
  618. }
  619. return nil
  620. }
  621. func (n *Node) runManager(ctx context.Context, securityConfig *ca.SecurityConfig, ready chan struct{}, workerRole <-chan struct{}) (bool, error) {
  622. var remoteAPI *manager.RemoteAddrs
  623. if n.config.ListenRemoteAPI != "" {
  624. remoteAPI = &manager.RemoteAddrs{
  625. ListenAddr: n.config.ListenRemoteAPI,
  626. AdvertiseAddr: n.config.AdvertiseRemoteAPI,
  627. }
  628. }
  629. remoteAddr, _ := n.remotes.Select(n.NodeID())
  630. m, err := manager.New(&manager.Config{
  631. ForceNewCluster: n.config.ForceNewCluster,
  632. RemoteAPI: remoteAPI,
  633. ControlAPI: n.config.ListenControlAPI,
  634. SecurityConfig: securityConfig,
  635. ExternalCAs: n.config.ExternalCAs,
  636. JoinRaft: remoteAddr.Addr,
  637. StateDir: n.config.StateDir,
  638. HeartbeatTick: n.config.HeartbeatTick,
  639. ElectionTick: n.config.ElectionTick,
  640. AutoLockManagers: n.config.AutoLockManagers,
  641. UnlockKey: n.unlockKey,
  642. Availability: n.config.Availability,
  643. PluginGetter: n.config.PluginGetter,
  644. })
  645. if err != nil {
  646. return false, err
  647. }
  648. done := make(chan struct{})
  649. var runErr error
  650. go func() {
  651. if err := m.Run(context.Background()); err != nil {
  652. runErr = err
  653. }
  654. close(done)
  655. }()
  656. var clearData bool
  657. defer func() {
  658. n.Lock()
  659. n.manager = nil
  660. n.Unlock()
  661. m.Stop(ctx, clearData)
  662. <-done
  663. n.setControlSocket(nil)
  664. }()
  665. n.Lock()
  666. n.manager = m
  667. n.Unlock()
  668. connCtx, connCancel := context.WithCancel(ctx)
  669. defer connCancel()
  670. go n.initManagerConnection(connCtx, ready)
  671. // wait for manager stop or for role change
  672. select {
  673. case <-done:
  674. return false, runErr
  675. case <-workerRole:
  676. log.G(ctx).Info("role changed to worker, stopping manager")
  677. clearData = true
  678. case <-m.RemovedFromRaft():
  679. log.G(ctx).Info("manager removed from raft cluster, stopping manager")
  680. clearData = true
  681. case <-ctx.Done():
  682. return false, ctx.Err()
  683. }
  684. return clearData, nil
  685. }
  686. func (n *Node) superviseManager(ctx context.Context, securityConfig *ca.SecurityConfig, ready chan struct{}, forceCertRenewal chan struct{}) error {
  687. for {
  688. if err := n.waitRole(ctx, ca.ManagerRole); err != nil {
  689. return err
  690. }
  691. workerRole := make(chan struct{})
  692. waitRoleCtx, waitRoleCancel := context.WithCancel(ctx)
  693. go func() {
  694. if n.waitRole(waitRoleCtx, ca.WorkerRole) == nil {
  695. close(workerRole)
  696. }
  697. }()
  698. wasRemoved, err := n.runManager(ctx, securityConfig, ready, workerRole)
  699. if err != nil {
  700. waitRoleCancel()
  701. return errors.Wrap(err, "manager stopped")
  702. }
  703. // If the manager stopped running and our role is still
  704. // "manager", it's possible that the manager was demoted and
  705. // the agent hasn't realized this yet. We should wait for the
  706. // role to change instead of restarting the manager immediately.
  707. err = func() error {
  708. timer := time.NewTimer(roleChangeTimeout)
  709. defer timer.Stop()
  710. defer waitRoleCancel()
  711. select {
  712. case <-timer.C:
  713. case <-workerRole:
  714. return nil
  715. case <-ctx.Done():
  716. return ctx.Err()
  717. }
  718. if !wasRemoved {
  719. log.G(ctx).Warn("failed to get worker role after manager stop, restarting manager")
  720. return nil
  721. }
  722. // We need to be extra careful about restarting the
  723. // manager. It may cause the node to wrongly join under
  724. // a new Raft ID. Since we didn't see a role change
  725. // yet, force a certificate renewal. If the certificate
  726. // comes back with a worker role, we know we shouldn't
  727. // restart the manager. However, if we don't see
  728. // workerRole get closed, it means we didn't switch to
  729. // a worker certificate, either because we couldn't
  730. // contact a working CA, or because we've been
  731. // re-promoted. In this case, we must assume we were
  732. // re-promoted, and restart the manager.
  733. log.G(ctx).Warn("failed to get worker role after manager stop, forcing certificate renewal")
  734. timer.Reset(roleChangeTimeout)
  735. select {
  736. case forceCertRenewal <- struct{}{}:
  737. case <-timer.C:
  738. log.G(ctx).Warn("failed to trigger certificate renewal after manager stop, restarting manager")
  739. return nil
  740. case <-ctx.Done():
  741. return ctx.Err()
  742. }
  743. // Now that the renewal request has been sent to the
  744. // renewal goroutine, wait for a change in role.
  745. select {
  746. case <-timer.C:
  747. log.G(ctx).Warn("failed to get worker role after manager stop, restarting manager")
  748. case <-workerRole:
  749. case <-ctx.Done():
  750. return ctx.Err()
  751. }
  752. return nil
  753. }()
  754. if err != nil {
  755. return err
  756. }
  757. ready = nil
  758. }
  759. }
  760. type persistentRemotes struct {
  761. sync.RWMutex
  762. c *sync.Cond
  763. remotes.Remotes
  764. storePath string
  765. lastSavedState []api.Peer
  766. }
  767. func newPersistentRemotes(f string, peers ...api.Peer) *persistentRemotes {
  768. pr := &persistentRemotes{
  769. storePath: f,
  770. Remotes: remotes.NewRemotes(peers...),
  771. }
  772. pr.c = sync.NewCond(pr.RLocker())
  773. return pr
  774. }
  775. func (s *persistentRemotes) Observe(peer api.Peer, weight int) {
  776. s.Lock()
  777. defer s.Unlock()
  778. s.Remotes.Observe(peer, weight)
  779. s.c.Broadcast()
  780. if err := s.save(); err != nil {
  781. logrus.Errorf("error writing cluster state file: %v", err)
  782. return
  783. }
  784. return
  785. }
  786. func (s *persistentRemotes) Remove(peers ...api.Peer) {
  787. s.Lock()
  788. defer s.Unlock()
  789. s.Remotes.Remove(peers...)
  790. if err := s.save(); err != nil {
  791. logrus.Errorf("error writing cluster state file: %v", err)
  792. return
  793. }
  794. return
  795. }
  796. func (s *persistentRemotes) save() error {
  797. weights := s.Weights()
  798. remotes := make([]api.Peer, 0, len(weights))
  799. for r := range weights {
  800. remotes = append(remotes, r)
  801. }
  802. sort.Sort(sortablePeers(remotes))
  803. if reflect.DeepEqual(remotes, s.lastSavedState) {
  804. return nil
  805. }
  806. dt, err := json.Marshal(remotes)
  807. if err != nil {
  808. return err
  809. }
  810. s.lastSavedState = remotes
  811. return ioutils.AtomicWriteFile(s.storePath, dt, 0600)
  812. }
  813. // WaitSelect waits until at least one remote becomes available and then selects one.
  814. func (s *persistentRemotes) WaitSelect(ctx context.Context) <-chan api.Peer {
  815. c := make(chan api.Peer, 1)
  816. s.RLock()
  817. done := make(chan struct{})
  818. go func() {
  819. select {
  820. case <-ctx.Done():
  821. s.c.Broadcast()
  822. case <-done:
  823. }
  824. }()
  825. go func() {
  826. defer s.RUnlock()
  827. defer close(c)
  828. defer close(done)
  829. for {
  830. if ctx.Err() != nil {
  831. return
  832. }
  833. p, err := s.Select()
  834. if err == nil {
  835. c <- p
  836. return
  837. }
  838. s.c.Wait()
  839. }
  840. }()
  841. return c
  842. }
  843. // sortablePeers is a sort wrapper for []api.Peer
  844. type sortablePeers []api.Peer
  845. func (sp sortablePeers) Less(i, j int) bool { return sp[i].NodeID < sp[j].NodeID }
  846. func (sp sortablePeers) Len() int { return len(sp) }
  847. func (sp sortablePeers) Swap(i, j int) { sp[i], sp[j] = sp[j], sp[i] }