client_handler.go 12 KB

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  1. // Copyright 2019 The go-ethereum Authors
  2. // This file is part of the go-ethereum library.
  3. //
  4. // The go-ethereum library is free software: you can redistribute it and/or modify
  5. // it under the terms of the GNU Lesser General Public License as published by
  6. // the Free Software Foundation, either version 3 of the License, or
  7. // (at your option) any later version.
  8. //
  9. // The go-ethereum library is distributed in the hope that it will be useful,
  10. // but WITHOUT ANY WARRANTY; without even the implied warranty of
  11. // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  12. // GNU Lesser General Public License for more details.
  13. //
  14. // You should have received a copy of the GNU Lesser General Public License
  15. // along with the go-ethereum library. If not, see <http://www.gnu.org/licenses/>.
  16. package les
  17. import (
  18. "math/big"
  19. "sync"
  20. "sync/atomic"
  21. "time"
  22. "github.com/ethereum/go-ethereum/common"
  23. "github.com/ethereum/go-ethereum/common/mclock"
  24. "github.com/ethereum/go-ethereum/core/types"
  25. "github.com/ethereum/go-ethereum/eth/downloader"
  26. "github.com/ethereum/go-ethereum/light"
  27. "github.com/ethereum/go-ethereum/log"
  28. "github.com/ethereum/go-ethereum/p2p"
  29. "github.com/ethereum/go-ethereum/params"
  30. )
  31. // clientHandler is responsible for receiving and processing all incoming server
  32. // responses.
  33. type clientHandler struct {
  34. ulc *ulc
  35. checkpoint *params.TrustedCheckpoint
  36. fetcher *lightFetcher
  37. downloader *downloader.Downloader
  38. backend *LightEthereum
  39. closeCh chan struct{}
  40. wg sync.WaitGroup // WaitGroup used to track all connected peers.
  41. syncDone func() // Test hooks when syncing is done.
  42. }
  43. func newClientHandler(ulcServers []string, ulcFraction int, checkpoint *params.TrustedCheckpoint, backend *LightEthereum) *clientHandler {
  44. handler := &clientHandler{
  45. checkpoint: checkpoint,
  46. backend: backend,
  47. closeCh: make(chan struct{}),
  48. }
  49. if ulcServers != nil {
  50. ulc, err := newULC(ulcServers, ulcFraction)
  51. if err != nil {
  52. log.Error("Failed to initialize ultra light client")
  53. }
  54. handler.ulc = ulc
  55. log.Info("Enable ultra light client mode")
  56. }
  57. var height uint64
  58. if checkpoint != nil {
  59. height = (checkpoint.SectionIndex+1)*params.CHTFrequency - 1
  60. }
  61. handler.fetcher = newLightFetcher(handler)
  62. handler.downloader = downloader.New(height, backend.chainDb, nil, backend.eventMux, nil, backend.blockchain, handler.removePeer)
  63. handler.backend.peers.subscribe((*downloaderPeerNotify)(handler))
  64. return handler
  65. }
  66. func (h *clientHandler) stop() {
  67. close(h.closeCh)
  68. h.downloader.Terminate()
  69. h.fetcher.close()
  70. h.wg.Wait()
  71. }
  72. // runPeer is the p2p protocol run function for the given version.
  73. func (h *clientHandler) runPeer(version uint, p *p2p.Peer, rw p2p.MsgReadWriter) error {
  74. trusted := false
  75. if h.ulc != nil {
  76. trusted = h.ulc.trusted(p.ID())
  77. }
  78. peer := newServerPeer(int(version), h.backend.config.NetworkId, trusted, p, newMeteredMsgWriter(rw, int(version)))
  79. defer peer.close()
  80. peer.poolEntry = h.backend.serverPool.connect(peer, peer.Node())
  81. if peer.poolEntry == nil {
  82. return p2p.DiscRequested
  83. }
  84. h.wg.Add(1)
  85. defer h.wg.Done()
  86. err := h.handle(peer)
  87. h.backend.serverPool.disconnect(peer.poolEntry)
  88. return err
  89. }
  90. func (h *clientHandler) handle(p *serverPeer) error {
  91. if h.backend.peers.len() >= h.backend.config.LightPeers && !p.Peer.Info().Network.Trusted {
  92. return p2p.DiscTooManyPeers
  93. }
  94. p.Log().Debug("Light Ethereum peer connected", "name", p.Name())
  95. // Execute the LES handshake
  96. var (
  97. head = h.backend.blockchain.CurrentHeader()
  98. hash = head.Hash()
  99. number = head.Number.Uint64()
  100. td = h.backend.blockchain.GetTd(hash, number)
  101. )
  102. if err := p.Handshake(td, hash, number, h.backend.blockchain.Genesis().Hash(), nil); err != nil {
  103. p.Log().Debug("Light Ethereum handshake failed", "err", err)
  104. return err
  105. }
  106. // Register the peer locally
  107. if err := h.backend.peers.register(p); err != nil {
  108. p.Log().Error("Light Ethereum peer registration failed", "err", err)
  109. return err
  110. }
  111. serverConnectionGauge.Update(int64(h.backend.peers.len()))
  112. connectedAt := mclock.Now()
  113. defer func() {
  114. h.backend.peers.unregister(p.id)
  115. connectionTimer.Update(time.Duration(mclock.Now() - connectedAt))
  116. serverConnectionGauge.Update(int64(h.backend.peers.len()))
  117. }()
  118. h.fetcher.announce(p, &announceData{Hash: p.headInfo.Hash, Number: p.headInfo.Number, Td: p.headInfo.Td})
  119. // pool entry can be nil during the unit test.
  120. if p.poolEntry != nil {
  121. h.backend.serverPool.registered(p.poolEntry)
  122. }
  123. // Mark the peer starts to be served.
  124. atomic.StoreUint32(&p.serving, 1)
  125. defer atomic.StoreUint32(&p.serving, 0)
  126. // Spawn a main loop to handle all incoming messages.
  127. for {
  128. if err := h.handleMsg(p); err != nil {
  129. p.Log().Debug("Light Ethereum message handling failed", "err", err)
  130. p.fcServer.DumpLogs()
  131. return err
  132. }
  133. }
  134. }
  135. // handleMsg is invoked whenever an inbound message is received from a remote
  136. // peer. The remote connection is torn down upon returning any error.
  137. func (h *clientHandler) handleMsg(p *serverPeer) error {
  138. // Read the next message from the remote peer, and ensure it's fully consumed
  139. msg, err := p.rw.ReadMsg()
  140. if err != nil {
  141. return err
  142. }
  143. p.Log().Trace("Light Ethereum message arrived", "code", msg.Code, "bytes", msg.Size)
  144. if msg.Size > ProtocolMaxMsgSize {
  145. return errResp(ErrMsgTooLarge, "%v > %v", msg.Size, ProtocolMaxMsgSize)
  146. }
  147. defer msg.Discard()
  148. var deliverMsg *Msg
  149. // Handle the message depending on its contents
  150. switch msg.Code {
  151. case AnnounceMsg:
  152. p.Log().Trace("Received announce message")
  153. var req announceData
  154. if err := msg.Decode(&req); err != nil {
  155. return errResp(ErrDecode, "%v: %v", msg, err)
  156. }
  157. if err := req.sanityCheck(); err != nil {
  158. return err
  159. }
  160. update, size := req.Update.decode()
  161. if p.rejectUpdate(size) {
  162. return errResp(ErrRequestRejected, "")
  163. }
  164. p.updateFlowControl(update)
  165. p.updateVtParams()
  166. if req.Hash != (common.Hash{}) {
  167. if p.announceType == announceTypeNone {
  168. return errResp(ErrUnexpectedResponse, "")
  169. }
  170. if p.announceType == announceTypeSigned {
  171. if err := req.checkSignature(p.ID(), update); err != nil {
  172. p.Log().Trace("Invalid announcement signature", "err", err)
  173. return err
  174. }
  175. p.Log().Trace("Valid announcement signature")
  176. }
  177. p.Log().Trace("Announce message content", "number", req.Number, "hash", req.Hash, "td", req.Td, "reorg", req.ReorgDepth)
  178. h.fetcher.announce(p, &req)
  179. }
  180. case BlockHeadersMsg:
  181. p.Log().Trace("Received block header response message")
  182. var resp struct {
  183. ReqID, BV uint64
  184. Headers []*types.Header
  185. }
  186. if err := msg.Decode(&resp); err != nil {
  187. return errResp(ErrDecode, "msg %v: %v", msg, err)
  188. }
  189. p.fcServer.ReceivedReply(resp.ReqID, resp.BV)
  190. p.answeredRequest(resp.ReqID)
  191. if h.fetcher.requestedID(resp.ReqID) {
  192. h.fetcher.deliverHeaders(p, resp.ReqID, resp.Headers)
  193. } else {
  194. if err := h.downloader.DeliverHeaders(p.id, resp.Headers); err != nil {
  195. log.Debug("Failed to deliver headers", "err", err)
  196. }
  197. }
  198. case BlockBodiesMsg:
  199. p.Log().Trace("Received block bodies response")
  200. var resp struct {
  201. ReqID, BV uint64
  202. Data []*types.Body
  203. }
  204. if err := msg.Decode(&resp); err != nil {
  205. return errResp(ErrDecode, "msg %v: %v", msg, err)
  206. }
  207. p.fcServer.ReceivedReply(resp.ReqID, resp.BV)
  208. p.answeredRequest(resp.ReqID)
  209. deliverMsg = &Msg{
  210. MsgType: MsgBlockBodies,
  211. ReqID: resp.ReqID,
  212. Obj: resp.Data,
  213. }
  214. case CodeMsg:
  215. p.Log().Trace("Received code response")
  216. var resp struct {
  217. ReqID, BV uint64
  218. Data [][]byte
  219. }
  220. if err := msg.Decode(&resp); err != nil {
  221. return errResp(ErrDecode, "msg %v: %v", msg, err)
  222. }
  223. p.fcServer.ReceivedReply(resp.ReqID, resp.BV)
  224. p.answeredRequest(resp.ReqID)
  225. deliverMsg = &Msg{
  226. MsgType: MsgCode,
  227. ReqID: resp.ReqID,
  228. Obj: resp.Data,
  229. }
  230. case ReceiptsMsg:
  231. p.Log().Trace("Received receipts response")
  232. var resp struct {
  233. ReqID, BV uint64
  234. Receipts []types.Receipts
  235. }
  236. if err := msg.Decode(&resp); err != nil {
  237. return errResp(ErrDecode, "msg %v: %v", msg, err)
  238. }
  239. p.fcServer.ReceivedReply(resp.ReqID, resp.BV)
  240. p.answeredRequest(resp.ReqID)
  241. deliverMsg = &Msg{
  242. MsgType: MsgReceipts,
  243. ReqID: resp.ReqID,
  244. Obj: resp.Receipts,
  245. }
  246. case ProofsV2Msg:
  247. p.Log().Trace("Received les/2 proofs response")
  248. var resp struct {
  249. ReqID, BV uint64
  250. Data light.NodeList
  251. }
  252. if err := msg.Decode(&resp); err != nil {
  253. return errResp(ErrDecode, "msg %v: %v", msg, err)
  254. }
  255. p.fcServer.ReceivedReply(resp.ReqID, resp.BV)
  256. p.answeredRequest(resp.ReqID)
  257. deliverMsg = &Msg{
  258. MsgType: MsgProofsV2,
  259. ReqID: resp.ReqID,
  260. Obj: resp.Data,
  261. }
  262. case HelperTrieProofsMsg:
  263. p.Log().Trace("Received helper trie proof response")
  264. var resp struct {
  265. ReqID, BV uint64
  266. Data HelperTrieResps
  267. }
  268. if err := msg.Decode(&resp); err != nil {
  269. return errResp(ErrDecode, "msg %v: %v", msg, err)
  270. }
  271. p.fcServer.ReceivedReply(resp.ReqID, resp.BV)
  272. p.answeredRequest(resp.ReqID)
  273. deliverMsg = &Msg{
  274. MsgType: MsgHelperTrieProofs,
  275. ReqID: resp.ReqID,
  276. Obj: resp.Data,
  277. }
  278. case TxStatusMsg:
  279. p.Log().Trace("Received tx status response")
  280. var resp struct {
  281. ReqID, BV uint64
  282. Status []light.TxStatus
  283. }
  284. if err := msg.Decode(&resp); err != nil {
  285. return errResp(ErrDecode, "msg %v: %v", msg, err)
  286. }
  287. p.fcServer.ReceivedReply(resp.ReqID, resp.BV)
  288. p.answeredRequest(resp.ReqID)
  289. deliverMsg = &Msg{
  290. MsgType: MsgTxStatus,
  291. ReqID: resp.ReqID,
  292. Obj: resp.Status,
  293. }
  294. case StopMsg:
  295. p.freeze()
  296. h.backend.retriever.frozen(p)
  297. p.Log().Debug("Service stopped")
  298. case ResumeMsg:
  299. var bv uint64
  300. if err := msg.Decode(&bv); err != nil {
  301. return errResp(ErrDecode, "msg %v: %v", msg, err)
  302. }
  303. p.fcServer.ResumeFreeze(bv)
  304. p.unfreeze()
  305. p.Log().Debug("Service resumed")
  306. default:
  307. p.Log().Trace("Received invalid message", "code", msg.Code)
  308. return errResp(ErrInvalidMsgCode, "%v", msg.Code)
  309. }
  310. // Deliver the received response to retriever.
  311. if deliverMsg != nil {
  312. if err := h.backend.retriever.deliver(p, deliverMsg); err != nil {
  313. p.errCount++
  314. if p.errCount > maxResponseErrors {
  315. return err
  316. }
  317. }
  318. }
  319. return nil
  320. }
  321. func (h *clientHandler) removePeer(id string) {
  322. h.backend.peers.unregister(id)
  323. }
  324. type peerConnection struct {
  325. handler *clientHandler
  326. peer *serverPeer
  327. }
  328. func (pc *peerConnection) Head() (common.Hash, *big.Int) {
  329. return pc.peer.HeadAndTd()
  330. }
  331. func (pc *peerConnection) RequestHeadersByHash(origin common.Hash, amount int, skip int, reverse bool) error {
  332. rq := &distReq{
  333. getCost: func(dp distPeer) uint64 {
  334. peer := dp.(*serverPeer)
  335. return peer.getRequestCost(GetBlockHeadersMsg, amount)
  336. },
  337. canSend: func(dp distPeer) bool {
  338. return dp.(*serverPeer) == pc.peer
  339. },
  340. request: func(dp distPeer) func() {
  341. reqID := genReqID()
  342. peer := dp.(*serverPeer)
  343. cost := peer.getRequestCost(GetBlockHeadersMsg, amount)
  344. peer.fcServer.QueuedRequest(reqID, cost)
  345. return func() { peer.requestHeadersByHash(reqID, origin, amount, skip, reverse) }
  346. },
  347. }
  348. _, ok := <-pc.handler.backend.reqDist.queue(rq)
  349. if !ok {
  350. return light.ErrNoPeers
  351. }
  352. return nil
  353. }
  354. func (pc *peerConnection) RequestHeadersByNumber(origin uint64, amount int, skip int, reverse bool) error {
  355. rq := &distReq{
  356. getCost: func(dp distPeer) uint64 {
  357. peer := dp.(*serverPeer)
  358. return peer.getRequestCost(GetBlockHeadersMsg, amount)
  359. },
  360. canSend: func(dp distPeer) bool {
  361. return dp.(*serverPeer) == pc.peer
  362. },
  363. request: func(dp distPeer) func() {
  364. reqID := genReqID()
  365. peer := dp.(*serverPeer)
  366. cost := peer.getRequestCost(GetBlockHeadersMsg, amount)
  367. peer.fcServer.QueuedRequest(reqID, cost)
  368. return func() { peer.requestHeadersByNumber(reqID, origin, amount, skip, reverse) }
  369. },
  370. }
  371. _, ok := <-pc.handler.backend.reqDist.queue(rq)
  372. if !ok {
  373. return light.ErrNoPeers
  374. }
  375. return nil
  376. }
  377. // downloaderPeerNotify implements peerSetNotify
  378. type downloaderPeerNotify clientHandler
  379. func (d *downloaderPeerNotify) registerPeer(p *serverPeer) {
  380. h := (*clientHandler)(d)
  381. pc := &peerConnection{
  382. handler: h,
  383. peer: p,
  384. }
  385. h.downloader.RegisterLightPeer(p.id, ethVersion, pc)
  386. }
  387. func (d *downloaderPeerNotify) unregisterPeer(p *serverPeer) {
  388. h := (*clientHandler)(d)
  389. h.downloader.UnregisterPeer(p.id)
  390. }