watch.go 7.9 KB

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  1. // Copyright 2015 The etcd Authors
  2. //
  3. // Licensed under the Apache License, Version 2.0 (the "License");
  4. // you may not use this file except in compliance with the License.
  5. // You may obtain a copy of the License at
  6. //
  7. // http://www.apache.org/licenses/LICENSE-2.0
  8. //
  9. // Unless required by applicable law or agreed to in writing, software
  10. // distributed under the License is distributed on an "AS IS" BASIS,
  11. // WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
  12. // See the License for the specific language governing permissions and
  13. // limitations under the License.
  14. package v3rpc
  15. import (
  16. "io"
  17. "sync"
  18. "time"
  19. "golang.org/x/net/context"
  20. "github.com/coreos/etcd/etcdserver"
  21. "github.com/coreos/etcd/etcdserver/api/v3rpc/rpctypes"
  22. pb "github.com/coreos/etcd/etcdserver/etcdserverpb"
  23. "github.com/coreos/etcd/mvcc"
  24. "github.com/coreos/etcd/mvcc/mvccpb"
  25. )
  26. type watchServer struct {
  27. clusterID int64
  28. memberID int64
  29. raftTimer etcdserver.RaftTimer
  30. watchable mvcc.Watchable
  31. }
  32. func NewWatchServer(s *etcdserver.EtcdServer) pb.WatchServer {
  33. return &watchServer{
  34. clusterID: int64(s.Cluster().ID()),
  35. memberID: int64(s.ID()),
  36. raftTimer: s,
  37. watchable: s.Watchable(),
  38. }
  39. }
  40. var (
  41. // External test can read this with GetProgressReportInterval()
  42. // and change this to a small value to finish fast with
  43. // SetProgressReportInterval().
  44. progressReportInterval = 10 * time.Minute
  45. progressReportIntervalMu sync.RWMutex
  46. )
  47. func GetProgressReportInterval() time.Duration {
  48. progressReportIntervalMu.RLock()
  49. defer progressReportIntervalMu.RUnlock()
  50. return progressReportInterval
  51. }
  52. func SetProgressReportInterval(newTimeout time.Duration) {
  53. progressReportIntervalMu.Lock()
  54. defer progressReportIntervalMu.Unlock()
  55. progressReportInterval = newTimeout
  56. }
  57. const (
  58. // We send ctrl response inside the read loop. We do not want
  59. // send to block read, but we still want ctrl response we sent to
  60. // be serialized. Thus we use a buffered chan to solve the problem.
  61. // A small buffer should be OK for most cases, since we expect the
  62. // ctrl requests are infrequent.
  63. ctrlStreamBufLen = 16
  64. )
  65. // serverWatchStream is an etcd server side stream. It receives requests
  66. // from client side gRPC stream. It receives watch events from mvcc.WatchStream,
  67. // and creates responses that forwarded to gRPC stream.
  68. // It also forwards control message like watch created and canceled.
  69. type serverWatchStream struct {
  70. clusterID int64
  71. memberID int64
  72. raftTimer etcdserver.RaftTimer
  73. gRPCStream pb.Watch_WatchServer
  74. watchStream mvcc.WatchStream
  75. ctrlStream chan *pb.WatchResponse
  76. // progress tracks the watchID that stream might need to send
  77. // progress to.
  78. progress map[mvcc.WatchID]bool
  79. // mu protects progress
  80. mu sync.Mutex
  81. // closec indicates the stream is closed.
  82. closec chan struct{}
  83. // wg waits for the send loop to complete
  84. wg sync.WaitGroup
  85. }
  86. func (ws *watchServer) Watch(stream pb.Watch_WatchServer) (err error) {
  87. sws := serverWatchStream{
  88. clusterID: ws.clusterID,
  89. memberID: ws.memberID,
  90. raftTimer: ws.raftTimer,
  91. gRPCStream: stream,
  92. watchStream: ws.watchable.NewWatchStream(),
  93. // chan for sending control response like watcher created and canceled.
  94. ctrlStream: make(chan *pb.WatchResponse, ctrlStreamBufLen),
  95. progress: make(map[mvcc.WatchID]bool),
  96. closec: make(chan struct{}),
  97. }
  98. sws.wg.Add(1)
  99. go func() {
  100. sws.sendLoop()
  101. sws.wg.Done()
  102. }()
  103. errc := make(chan error, 1)
  104. // Ideally recvLoop would also use sws.wg to signal its completion
  105. // but when stream.Context().Done() is closed, the stream's recv
  106. // may continue to block since it uses a different context, leading to
  107. // deadlock when calling sws.close().
  108. go func() { errc <- sws.recvLoop() }()
  109. select {
  110. case err = <-errc:
  111. case <-stream.Context().Done():
  112. err = stream.Context().Err()
  113. // the only server-side cancellation is noleader for now.
  114. if err == context.Canceled {
  115. err = rpctypes.ErrGRPCNoLeader
  116. }
  117. }
  118. sws.close()
  119. return err
  120. }
  121. func (sws *serverWatchStream) recvLoop() error {
  122. defer close(sws.ctrlStream)
  123. for {
  124. req, err := sws.gRPCStream.Recv()
  125. if err == io.EOF {
  126. return nil
  127. }
  128. if err != nil {
  129. return err
  130. }
  131. switch uv := req.RequestUnion.(type) {
  132. case *pb.WatchRequest_CreateRequest:
  133. if uv.CreateRequest == nil {
  134. break
  135. }
  136. creq := uv.CreateRequest
  137. if len(creq.Key) == 0 {
  138. // \x00 is the smallest key
  139. creq.Key = []byte{0}
  140. }
  141. if len(creq.RangeEnd) == 1 && creq.RangeEnd[0] == 0 {
  142. // support >= key queries
  143. creq.RangeEnd = []byte{}
  144. }
  145. wsrev := sws.watchStream.Rev()
  146. rev := creq.StartRevision
  147. if rev == 0 {
  148. rev = wsrev + 1
  149. }
  150. id := sws.watchStream.Watch(creq.Key, creq.RangeEnd, rev)
  151. if id != -1 && creq.ProgressNotify {
  152. sws.progress[id] = true
  153. }
  154. wr := &pb.WatchResponse{
  155. Header: sws.newResponseHeader(wsrev),
  156. WatchId: int64(id),
  157. Created: true,
  158. Canceled: id == -1,
  159. }
  160. select {
  161. case sws.ctrlStream <- wr:
  162. case <-sws.closec:
  163. return nil
  164. }
  165. case *pb.WatchRequest_CancelRequest:
  166. if uv.CancelRequest != nil {
  167. id := uv.CancelRequest.WatchId
  168. err := sws.watchStream.Cancel(mvcc.WatchID(id))
  169. if err == nil {
  170. sws.ctrlStream <- &pb.WatchResponse{
  171. Header: sws.newResponseHeader(sws.watchStream.Rev()),
  172. WatchId: id,
  173. Canceled: true,
  174. }
  175. sws.mu.Lock()
  176. delete(sws.progress, mvcc.WatchID(id))
  177. sws.mu.Unlock()
  178. }
  179. }
  180. // TODO: do we need to return error back to client?
  181. default:
  182. panic("not implemented")
  183. }
  184. }
  185. }
  186. func (sws *serverWatchStream) sendLoop() {
  187. // watch ids that are currently active
  188. ids := make(map[mvcc.WatchID]struct{})
  189. // watch responses pending on a watch id creation message
  190. pending := make(map[mvcc.WatchID][]*pb.WatchResponse)
  191. interval := GetProgressReportInterval()
  192. progressTicker := time.NewTicker(interval)
  193. defer progressTicker.Stop()
  194. for {
  195. select {
  196. case wresp, ok := <-sws.watchStream.Chan():
  197. if !ok {
  198. return
  199. }
  200. // TODO: evs is []mvccpb.Event type
  201. // either return []*mvccpb.Event from the mvcc package
  202. // or define protocol buffer with []mvccpb.Event.
  203. evs := wresp.Events
  204. events := make([]*mvccpb.Event, len(evs))
  205. for i := range evs {
  206. events[i] = &evs[i]
  207. }
  208. wr := &pb.WatchResponse{
  209. Header: sws.newResponseHeader(wresp.Revision),
  210. WatchId: int64(wresp.WatchID),
  211. Events: events,
  212. CompactRevision: wresp.CompactRevision,
  213. }
  214. if _, hasId := ids[wresp.WatchID]; !hasId {
  215. // buffer if id not yet announced
  216. wrs := append(pending[wresp.WatchID], wr)
  217. pending[wresp.WatchID] = wrs
  218. continue
  219. }
  220. mvcc.ReportEventReceived()
  221. if err := sws.gRPCStream.Send(wr); err != nil {
  222. return
  223. }
  224. sws.mu.Lock()
  225. if _, ok := sws.progress[wresp.WatchID]; ok {
  226. sws.progress[wresp.WatchID] = false
  227. }
  228. sws.mu.Unlock()
  229. case c, ok := <-sws.ctrlStream:
  230. if !ok {
  231. return
  232. }
  233. if err := sws.gRPCStream.Send(c); err != nil {
  234. return
  235. }
  236. // track id creation
  237. wid := mvcc.WatchID(c.WatchId)
  238. if c.Canceled {
  239. delete(ids, wid)
  240. continue
  241. }
  242. if c.Created {
  243. // flush buffered events
  244. ids[wid] = struct{}{}
  245. for _, v := range pending[wid] {
  246. mvcc.ReportEventReceived()
  247. if err := sws.gRPCStream.Send(v); err != nil {
  248. return
  249. }
  250. }
  251. delete(pending, wid)
  252. }
  253. case <-progressTicker.C:
  254. for id, ok := range sws.progress {
  255. if ok {
  256. sws.watchStream.RequestProgress(id)
  257. }
  258. sws.progress[id] = true
  259. }
  260. case <-sws.closec:
  261. // drain the chan to clean up pending events
  262. for range sws.watchStream.Chan() {
  263. mvcc.ReportEventReceived()
  264. }
  265. for _, wrs := range pending {
  266. for range wrs {
  267. mvcc.ReportEventReceived()
  268. }
  269. }
  270. }
  271. }
  272. }
  273. func (sws *serverWatchStream) close() {
  274. sws.watchStream.Close()
  275. close(sws.closec)
  276. sws.wg.Wait()
  277. }
  278. func (sws *serverWatchStream) newResponseHeader(rev int64) *pb.ResponseHeader {
  279. return &pb.ResponseHeader{
  280. ClusterId: uint64(sws.clusterID),
  281. MemberId: uint64(sws.memberID),
  282. Revision: rev,
  283. RaftTerm: sws.raftTimer.Term(),
  284. }
  285. }