github.com/aidoskuneen/adk-node@v0.0.0-20220315131952-2e32567cb7f4/les/client_handler.go (about)

     1  // Copyright 2021 The adkgo Authors
     2  // This file is part of the adkgo library (adapted for adkgo from go--ethereum v1.10.8).
     3  //
     4  // the adkgo 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 adkgo 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 adkgo library. If not, see <http://www.gnu.org/licenses/>.
    16  
    17  package les
    18  
    19  import (
    20  	"context"
    21  	"math/big"
    22  	"math/rand"
    23  	"sync"
    24  	"sync/atomic"
    25  	"time"
    26  
    27  	"github.com/aidoskuneen/adk-node/common"
    28  	"github.com/aidoskuneen/adk-node/common/mclock"
    29  	"github.com/aidoskuneen/adk-node/core/forkid"
    30  	"github.com/aidoskuneen/adk-node/core/types"
    31  	"github.com/aidoskuneen/adk-node/eth/downloader"
    32  	"github.com/aidoskuneen/adk-node/eth/protocols/eth"
    33  	"github.com/aidoskuneen/adk-node/light"
    34  	"github.com/aidoskuneen/adk-node/log"
    35  	"github.com/aidoskuneen/adk-node/p2p"
    36  	"github.com/aidoskuneen/adk-node/params"
    37  )
    38  
    39  // clientHandler is responsible for receiving and processing all incoming server
    40  // responses.
    41  type clientHandler struct {
    42  	ulc        *ulc
    43  	forkFilter forkid.Filter
    44  	checkpoint *params.TrustedCheckpoint
    45  	fetcher    *lightFetcher
    46  	downloader *downloader.Downloader
    47  	backend    *LightEthereum
    48  
    49  	closeCh chan struct{}
    50  	wg      sync.WaitGroup // WaitGroup used to track all connected peers.
    51  
    52  	// Hooks used in the testing
    53  	syncStart func(header *types.Header) // Hook called when the syncing is started
    54  	syncEnd   func(header *types.Header) // Hook called when the syncing is done
    55  }
    56  
    57  func newClientHandler(ulcServers []string, ulcFraction int, checkpoint *params.TrustedCheckpoint, backend *LightEthereum) *clientHandler {
    58  	handler := &clientHandler{
    59  		forkFilter: forkid.NewFilter(backend.blockchain),
    60  		checkpoint: checkpoint,
    61  		backend:    backend,
    62  		closeCh:    make(chan struct{}),
    63  	}
    64  	if ulcServers != nil {
    65  		ulc, err := newULC(ulcServers, ulcFraction)
    66  		if err != nil {
    67  			log.Error("Failed to initialize ultra light client")
    68  		}
    69  		handler.ulc = ulc
    70  		log.Info("Enable ultra light client mode")
    71  	}
    72  	var height uint64
    73  	if checkpoint != nil {
    74  		height = (checkpoint.SectionIndex+1)*params.CHTFrequency - 1
    75  	}
    76  	handler.fetcher = newLightFetcher(backend.blockchain, backend.engine, backend.peers, handler.ulc, backend.chainDb, backend.reqDist, handler.synchronise)
    77  	handler.downloader = downloader.New(height, backend.chainDb, nil, backend.eventMux, nil, backend.blockchain, handler.removePeer)
    78  	handler.backend.peers.subscribe((*downloaderPeerNotify)(handler))
    79  	return handler
    80  }
    81  
    82  func (h *clientHandler) start() {
    83  	h.fetcher.start()
    84  }
    85  
    86  func (h *clientHandler) stop() {
    87  	close(h.closeCh)
    88  	h.downloader.Terminate()
    89  	h.fetcher.stop()
    90  	h.wg.Wait()
    91  }
    92  
    93  // runPeer is the p2p protocol run function for the given version.
    94  func (h *clientHandler) runPeer(version uint, p *p2p.Peer, rw p2p.MsgReadWriter) error {
    95  	trusted := false
    96  	if h.ulc != nil {
    97  		trusted = h.ulc.trusted(p.ID())
    98  	}
    99  	peer := newServerPeer(int(version), h.backend.config.NetworkId, trusted, p, newMeteredMsgWriter(rw, int(version)))
   100  	defer peer.close()
   101  	h.wg.Add(1)
   102  	defer h.wg.Done()
   103  	err := h.handle(peer)
   104  	return err
   105  }
   106  
   107  func (h *clientHandler) handle(p *serverPeer) error {
   108  	if h.backend.peers.len() >= h.backend.config.LightPeers && !p.Peer.Info().Network.Trusted {
   109  		return p2p.DiscTooManyPeers
   110  	}
   111  	p.Log().Debug("Light Ethereum peer connected", "name", p.Name())
   112  
   113  	// Execute the LES handshake
   114  	forkid := forkid.NewID(h.backend.blockchain.Config(), h.backend.genesis, h.backend.blockchain.CurrentHeader().Number.Uint64())
   115  	if err := p.Handshake(h.backend.blockchain.Genesis().Hash(), forkid, h.forkFilter); err != nil {
   116  		p.Log().Debug("Light Ethereum handshake failed", "err", err)
   117  		return err
   118  	}
   119  	// Register peer with the server pool
   120  	if h.backend.serverPool != nil {
   121  		if nvt, err := h.backend.serverPool.RegisterNode(p.Node()); err == nil {
   122  			p.setValueTracker(nvt)
   123  			p.updateVtParams()
   124  			defer func() {
   125  				p.setValueTracker(nil)
   126  				h.backend.serverPool.UnregisterNode(p.Node())
   127  			}()
   128  		} else {
   129  			return err
   130  		}
   131  	}
   132  	// Register the peer locally
   133  	if err := h.backend.peers.register(p); err != nil {
   134  		p.Log().Error("Light Ethereum peer registration failed", "err", err)
   135  		return err
   136  	}
   137  
   138  	serverConnectionGauge.Update(int64(h.backend.peers.len()))
   139  
   140  	connectedAt := mclock.Now()
   141  	defer func() {
   142  		h.backend.peers.unregister(p.id)
   143  		connectionTimer.Update(time.Duration(mclock.Now() - connectedAt))
   144  		serverConnectionGauge.Update(int64(h.backend.peers.len()))
   145  	}()
   146  	h.fetcher.announce(p, &announceData{Hash: p.headInfo.Hash, Number: p.headInfo.Number, Td: p.headInfo.Td})
   147  
   148  	// Mark the peer starts to be served.
   149  	atomic.StoreUint32(&p.serving, 1)
   150  	defer atomic.StoreUint32(&p.serving, 0)
   151  
   152  	// Spawn a main loop to handle all incoming messages.
   153  	for {
   154  		if err := h.handleMsg(p); err != nil {
   155  			p.Log().Debug("Light Ethereum message handling failed", "err", err)
   156  			p.fcServer.DumpLogs()
   157  			return err
   158  		}
   159  	}
   160  }
   161  
   162  // handleMsg is invoked whenever an inbound message is received from a remote
   163  // peer. The remote connection is torn down upon returning any error.
   164  func (h *clientHandler) handleMsg(p *serverPeer) error {
   165  	// Read the next message from the remote peer, and ensure it's fully consumed
   166  	msg, err := p.rw.ReadMsg()
   167  	if err != nil {
   168  		return err
   169  	}
   170  	p.Log().Trace("Light Ethereum message arrived", "code", msg.Code, "bytes", msg.Size)
   171  
   172  	if msg.Size > ProtocolMaxMsgSize {
   173  		return errResp(ErrMsgTooLarge, "%v > %v", msg.Size, ProtocolMaxMsgSize)
   174  	}
   175  	defer msg.Discard()
   176  
   177  	var deliverMsg *Msg
   178  
   179  	// Handle the message depending on its contents
   180  	switch {
   181  	case msg.Code == AnnounceMsg:
   182  		p.Log().Trace("Received announce message")
   183  		var req announceData
   184  		if err := msg.Decode(&req); err != nil {
   185  			return errResp(ErrDecode, "%v: %v", msg, err)
   186  		}
   187  		if err := req.sanityCheck(); err != nil {
   188  			return err
   189  		}
   190  		update, size := req.Update.decode()
   191  		if p.rejectUpdate(size) {
   192  			return errResp(ErrRequestRejected, "")
   193  		}
   194  		p.updateFlowControl(update)
   195  		p.updateVtParams()
   196  
   197  		if req.Hash != (common.Hash{}) {
   198  			if p.announceType == announceTypeNone {
   199  				return errResp(ErrUnexpectedResponse, "")
   200  			}
   201  			if p.announceType == announceTypeSigned {
   202  				if err := req.checkSignature(p.ID(), update); err != nil {
   203  					p.Log().Trace("Invalid announcement signature", "err", err)
   204  					return err
   205  				}
   206  				p.Log().Trace("Valid announcement signature")
   207  			}
   208  			p.Log().Trace("Announce message content", "number", req.Number, "hash", req.Hash, "td", req.Td, "reorg", req.ReorgDepth)
   209  
   210  			// Update peer head information first and then notify the announcement
   211  			p.updateHead(req.Hash, req.Number, req.Td)
   212  			h.fetcher.announce(p, &req)
   213  		}
   214  	case msg.Code == BlockHeadersMsg:
   215  		p.Log().Trace("Received block header response message")
   216  		var resp struct {
   217  			ReqID, BV uint64
   218  			Headers   []*types.Header
   219  		}
   220  		if err := msg.Decode(&resp); err != nil {
   221  			return errResp(ErrDecode, "msg %v: %v", msg, err)
   222  		}
   223  		headers := resp.Headers
   224  		p.fcServer.ReceivedReply(resp.ReqID, resp.BV)
   225  		p.answeredRequest(resp.ReqID)
   226  
   227  		// Filter out the explicitly requested header by the retriever
   228  		if h.backend.retriever.requested(resp.ReqID) {
   229  			deliverMsg = &Msg{
   230  				MsgType: MsgBlockHeaders,
   231  				ReqID:   resp.ReqID,
   232  				Obj:     resp.Headers,
   233  			}
   234  		} else {
   235  			// Filter out any explicitly requested headers, deliver the rest to the downloader
   236  			filter := len(headers) == 1
   237  			if filter {
   238  				headers = h.fetcher.deliverHeaders(p, resp.ReqID, resp.Headers)
   239  			}
   240  			if len(headers) != 0 || !filter {
   241  				if err := h.downloader.DeliverHeaders(p.id, headers); err != nil {
   242  					log.Debug("Failed to deliver headers", "err", err)
   243  				}
   244  			}
   245  		}
   246  	case msg.Code == BlockBodiesMsg:
   247  		p.Log().Trace("Received block bodies response")
   248  		var resp struct {
   249  			ReqID, BV uint64
   250  			Data      []*types.Body
   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: MsgBlockBodies,
   259  			ReqID:   resp.ReqID,
   260  			Obj:     resp.Data,
   261  		}
   262  	case msg.Code == CodeMsg:
   263  		p.Log().Trace("Received code response")
   264  		var resp struct {
   265  			ReqID, BV uint64
   266  			Data      [][]byte
   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: MsgCode,
   275  			ReqID:   resp.ReqID,
   276  			Obj:     resp.Data,
   277  		}
   278  	case msg.Code == ReceiptsMsg:
   279  		p.Log().Trace("Received receipts response")
   280  		var resp struct {
   281  			ReqID, BV uint64
   282  			Receipts  []types.Receipts
   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: MsgReceipts,
   291  			ReqID:   resp.ReqID,
   292  			Obj:     resp.Receipts,
   293  		}
   294  	case msg.Code == ProofsV2Msg:
   295  		p.Log().Trace("Received les/2 proofs response")
   296  		var resp struct {
   297  			ReqID, BV uint64
   298  			Data      light.NodeList
   299  		}
   300  		if err := msg.Decode(&resp); err != nil {
   301  			return errResp(ErrDecode, "msg %v: %v", msg, err)
   302  		}
   303  		p.fcServer.ReceivedReply(resp.ReqID, resp.BV)
   304  		p.answeredRequest(resp.ReqID)
   305  		deliverMsg = &Msg{
   306  			MsgType: MsgProofsV2,
   307  			ReqID:   resp.ReqID,
   308  			Obj:     resp.Data,
   309  		}
   310  	case msg.Code == HelperTrieProofsMsg:
   311  		p.Log().Trace("Received helper trie proof response")
   312  		var resp struct {
   313  			ReqID, BV uint64
   314  			Data      HelperTrieResps
   315  		}
   316  		if err := msg.Decode(&resp); err != nil {
   317  			return errResp(ErrDecode, "msg %v: %v", msg, err)
   318  		}
   319  		p.fcServer.ReceivedReply(resp.ReqID, resp.BV)
   320  		p.answeredRequest(resp.ReqID)
   321  		deliverMsg = &Msg{
   322  			MsgType: MsgHelperTrieProofs,
   323  			ReqID:   resp.ReqID,
   324  			Obj:     resp.Data,
   325  		}
   326  	case msg.Code == TxStatusMsg:
   327  		p.Log().Trace("Received tx status response")
   328  		var resp struct {
   329  			ReqID, BV uint64
   330  			Status    []light.TxStatus
   331  		}
   332  		if err := msg.Decode(&resp); err != nil {
   333  			return errResp(ErrDecode, "msg %v: %v", msg, err)
   334  		}
   335  		p.fcServer.ReceivedReply(resp.ReqID, resp.BV)
   336  		p.answeredRequest(resp.ReqID)
   337  		deliverMsg = &Msg{
   338  			MsgType: MsgTxStatus,
   339  			ReqID:   resp.ReqID,
   340  			Obj:     resp.Status,
   341  		}
   342  	case msg.Code == StopMsg && p.version >= lpv3:
   343  		p.freeze()
   344  		h.backend.retriever.frozen(p)
   345  		p.Log().Debug("Service stopped")
   346  	case msg.Code == ResumeMsg && p.version >= lpv3:
   347  		var bv uint64
   348  		if err := msg.Decode(&bv); err != nil {
   349  			return errResp(ErrDecode, "msg %v: %v", msg, err)
   350  		}
   351  		p.fcServer.ResumeFreeze(bv)
   352  		p.unfreeze()
   353  		p.Log().Debug("Service resumed")
   354  	default:
   355  		p.Log().Trace("Received invalid message", "code", msg.Code)
   356  		return errResp(ErrInvalidMsgCode, "%v", msg.Code)
   357  	}
   358  	// Deliver the received response to retriever.
   359  	if deliverMsg != nil {
   360  		if err := h.backend.retriever.deliver(p, deliverMsg); err != nil {
   361  			if val := p.errCount.Add(1, mclock.Now()); val > maxResponseErrors {
   362  				return err
   363  			}
   364  		}
   365  	}
   366  	return nil
   367  }
   368  
   369  func (h *clientHandler) removePeer(id string) {
   370  	h.backend.peers.unregister(id)
   371  }
   372  
   373  type peerConnection struct {
   374  	handler *clientHandler
   375  	peer    *serverPeer
   376  }
   377  
   378  func (pc *peerConnection) Head() (common.Hash, *big.Int) {
   379  	return pc.peer.HeadAndTd()
   380  }
   381  
   382  func (pc *peerConnection) RequestHeadersByHash(origin common.Hash, amount int, skip int, reverse bool) error {
   383  	rq := &distReq{
   384  		getCost: func(dp distPeer) uint64 {
   385  			peer := dp.(*serverPeer)
   386  			return peer.getRequestCost(GetBlockHeadersMsg, amount)
   387  		},
   388  		canSend: func(dp distPeer) bool {
   389  			return dp.(*serverPeer) == pc.peer
   390  		},
   391  		request: func(dp distPeer) func() {
   392  			reqID := rand.Uint64()
   393  			peer := dp.(*serverPeer)
   394  			cost := peer.getRequestCost(GetBlockHeadersMsg, amount)
   395  			peer.fcServer.QueuedRequest(reqID, cost)
   396  			return func() { peer.requestHeadersByHash(reqID, origin, amount, skip, reverse) }
   397  		},
   398  	}
   399  	_, ok := <-pc.handler.backend.reqDist.queue(rq)
   400  	if !ok {
   401  		return light.ErrNoPeers
   402  	}
   403  	return nil
   404  }
   405  
   406  func (pc *peerConnection) RequestHeadersByNumber(origin uint64, amount int, skip int, reverse bool) error {
   407  	rq := &distReq{
   408  		getCost: func(dp distPeer) uint64 {
   409  			peer := dp.(*serverPeer)
   410  			return peer.getRequestCost(GetBlockHeadersMsg, amount)
   411  		},
   412  		canSend: func(dp distPeer) bool {
   413  			return dp.(*serverPeer) == pc.peer
   414  		},
   415  		request: func(dp distPeer) func() {
   416  			reqID := rand.Uint64()
   417  			peer := dp.(*serverPeer)
   418  			cost := peer.getRequestCost(GetBlockHeadersMsg, amount)
   419  			peer.fcServer.QueuedRequest(reqID, cost)
   420  			return func() { peer.requestHeadersByNumber(reqID, origin, amount, skip, reverse) }
   421  		},
   422  	}
   423  	_, ok := <-pc.handler.backend.reqDist.queue(rq)
   424  	if !ok {
   425  		return light.ErrNoPeers
   426  	}
   427  	return nil
   428  }
   429  
   430  // RetrieveSingleHeaderByNumber requests a single header by the specified block
   431  // number. This function will wait the response until it's timeout or delivered.
   432  func (pc *peerConnection) RetrieveSingleHeaderByNumber(context context.Context, number uint64) (*types.Header, error) {
   433  	reqID := rand.Uint64()
   434  	rq := &distReq{
   435  		getCost: func(dp distPeer) uint64 {
   436  			peer := dp.(*serverPeer)
   437  			return peer.getRequestCost(GetBlockHeadersMsg, 1)
   438  		},
   439  		canSend: func(dp distPeer) bool {
   440  			return dp.(*serverPeer) == pc.peer
   441  		},
   442  		request: func(dp distPeer) func() {
   443  			peer := dp.(*serverPeer)
   444  			cost := peer.getRequestCost(GetBlockHeadersMsg, 1)
   445  			peer.fcServer.QueuedRequest(reqID, cost)
   446  			return func() { peer.requestHeadersByNumber(reqID, number, 1, 0, false) }
   447  		},
   448  	}
   449  	var header *types.Header
   450  	if err := pc.handler.backend.retriever.retrieve(context, reqID, rq, func(peer distPeer, msg *Msg) error {
   451  		if msg.MsgType != MsgBlockHeaders {
   452  			return errInvalidMessageType
   453  		}
   454  		headers := msg.Obj.([]*types.Header)
   455  		if len(headers) != 1 {
   456  			return errInvalidEntryCount
   457  		}
   458  		header = headers[0]
   459  		return nil
   460  	}, nil); err != nil {
   461  		return nil, err
   462  	}
   463  	return header, nil
   464  }
   465  
   466  // downloaderPeerNotify implements peerSetNotify
   467  type downloaderPeerNotify clientHandler
   468  
   469  func (d *downloaderPeerNotify) registerPeer(p *serverPeer) {
   470  	h := (*clientHandler)(d)
   471  	pc := &peerConnection{
   472  		handler: h,
   473  		peer:    p,
   474  	}
   475  	h.downloader.RegisterLightPeer(p.id, eth.ETH65, pc)
   476  }
   477  
   478  func (d *downloaderPeerNotify) unregisterPeer(p *serverPeer) {
   479  	h := (*clientHandler)(d)
   480  	h.downloader.UnregisterPeer(p.id)
   481  }