forked from cerc-io/plugeth
Refactoring RlpValue => Value
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parent
67de76c217
commit
c2fb9f06ad
@ -247,6 +247,7 @@ func (s *Ethereum) Start() {
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s.TxPool.Start()
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if ethutil.Config.Seed {
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log.Println("Seeding")
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// Testnet seed bootstrapping
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resp, err := http.Get("http://www.ethereum.org/servers.poc2.txt")
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if err != nil {
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127
peer.go
127
peer.go
@ -1,7 +1,7 @@
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package eth
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import (
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_ "bytes"
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"bytes"
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"fmt"
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"github.com/ethereum/ethchain-go"
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"github.com/ethereum/ethutil-go"
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@ -123,9 +123,14 @@ type Peer struct {
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// Indicated whether the node is catching up or not
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catchingUp bool
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Version string
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}
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func NewPeer(conn net.Conn, ethereum *Ethereum, inbound bool) *Peer {
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data, _ := ethutil.Config.Db.Get([]byte("KeyRing"))
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pubkey := ethutil.NewValueFromBytes(data).Get(2).Bytes()
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return &Peer{
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outputQueue: make(chan *ethwire.Msg, outputBufferSize),
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quit: make(chan bool),
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@ -135,6 +140,7 @@ func NewPeer(conn net.Conn, ethereum *Ethereum, inbound bool) *Peer {
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disconnect: 0,
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connected: 1,
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port: 30303,
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pubkey: pubkey,
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}
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}
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@ -148,6 +154,7 @@ func NewOutboundPeer(addr string, ethereum *Ethereum, caps Caps) *Peer {
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connected: 0,
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disconnect: 0,
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caps: caps,
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Version: fmt.Sprintf("/Ethereum(G) v%s/%s", ethutil.Config.Ver, runtime.GOOS),
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}
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// Set up the connection in another goroutine so we don't block the main thread
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@ -267,7 +274,7 @@ func (p *Peer) HandleInbound() {
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}
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case ethwire.MsgDiscTy:
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p.Stop()
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log.Println("Disconnect peer:", DiscReason(msg.Data.Get(0).AsUint()))
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log.Println("Disconnect peer:", DiscReason(msg.Data.Get(0).Uint()))
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case ethwire.MsgPingTy:
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// Respond back with pong
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p.QueueMessage(ethwire.NewMessage(ethwire.MsgPongTy, ""))
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@ -279,30 +286,47 @@ func (p *Peer) HandleInbound() {
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case ethwire.MsgBlockTy:
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// Get all blocks and process them
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msg.Data = msg.Data
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var block *ethchain.Block
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for i := msg.Data.Length() - 1; i >= 0; i-- {
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block = ethchain.NewBlockFromRlpValue(ethutil.NewValue(msg.Data.Get(i).AsRaw()))
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err := p.ethereum.BlockManager.ProcessBlock(block)
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var block, lastBlock *ethchain.Block
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var err error
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for i := msg.Data.Len() - 1; i >= 0; i-- {
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block = ethchain.NewBlockFromRlpValue(msg.Data.Get(i))
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err = p.ethereum.BlockManager.ProcessBlock(block)
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if err != nil {
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log.Println(err)
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break
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} else {
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lastBlock = block
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}
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}
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// If we're catching up, try to catch up further.
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if p.catchingUp && msg.Data.Length() > 1 {
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if ethutil.Config.Debug {
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blockInfo := p.ethereum.BlockManager.BlockChain().BlockInfo(block)
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log.Printf("Synced to block height #%d\n", blockInfo.Number)
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if err != nil {
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// If the parent is unknown try to catch up with this peer
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if ethchain.IsParentErr(err) {
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log.Println("Attempting to catch up")
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p.catchingUp = false
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p.CatchupWithPeer()
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}
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if ethchain.IsValidationErr(err) {
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// TODO
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}
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} else {
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// XXX Do we want to catch up if there were errors?
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// If we're catching up, try to catch up further.
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if p.catchingUp && msg.Data.Len() > 1 {
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if ethutil.Config.Debug && lastBlock != nil {
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blockInfo := lastBlock.BlockInfo()
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log.Printf("Synced to block height #%d %x %x\n", blockInfo.Number, lastBlock.Hash(), blockInfo.Hash)
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}
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p.catchingUp = false
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p.CatchupWithPeer()
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}
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p.catchingUp = false
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p.CatchupWithPeer()
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}
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case ethwire.MsgTxTy:
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// If the message was a transaction queue the transaction
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// in the TxPool where it will undergo validation and
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// processing when a new block is found
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for i := 0; i < msg.Data.Length(); i++ {
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for i := 0; i < msg.Data.Len(); i++ {
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p.ethereum.TxPool.QueueTransaction(ethchain.NewTransactionFromData(msg.Data.Get(i).Encode()))
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}
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case ethwire.MsgGetPeersTy:
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@ -317,10 +341,10 @@ func (p *Peer) HandleInbound() {
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//if p.requestedPeerList {
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data := msg.Data
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// Create new list of possible peers for the ethereum to process
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peers := make([]string, data.Length())
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peers := make([]string, data.Len())
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// Parse each possible peer
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for i := 0; i < data.Length(); i++ {
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value := ethutil.NewValue(data.Get(i).AsRaw())
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for i := 0; i < data.Len(); i++ {
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value := data.Get(i)
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peers[i] = unpackAddr(value.Get(0), value.Get(1).Uint())
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}
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@ -333,7 +357,7 @@ func (p *Peer) HandleInbound() {
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case ethwire.MsgGetChainTy:
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var parent *ethchain.Block
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// Length minus one since the very last element in the array is a count
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l := msg.Data.Length() - 1
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l := msg.Data.Len() - 1
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// Ignore empty get chains
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if l == 0 {
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break
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@ -345,7 +369,7 @@ func (p *Peer) HandleInbound() {
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// Check each SHA block hash from the message and determine whether
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// the SHA is in the database
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for i := 0; i < l; i++ {
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if data := msg.Data.Get(i).AsBytes(); p.ethereum.BlockManager.BlockChain().HasBlock(data) {
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if data := msg.Data.Get(i).Bytes(); p.ethereum.BlockManager.BlockChain().HasBlock(data) {
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parent = p.ethereum.BlockManager.BlockChain().GetBlock(data)
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break
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}
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@ -359,8 +383,8 @@ func (p *Peer) HandleInbound() {
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// If no blocks are found we send back a reply with msg not in chain
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// and the last hash from get chain
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lastHash := msg.Data.Get(l - 1)
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log.Printf("Sending not in chain with hash %x\n", lastHash.AsRaw())
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p.QueueMessage(ethwire.NewMessage(ethwire.MsgNotInChainTy, []interface{}{lastHash.AsRaw()}))
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//log.Printf("Sending not in chain with hash %x\n", lastHash.AsRaw())
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p.QueueMessage(ethwire.NewMessage(ethwire.MsgNotInChainTy, []interface{}{lastHash.Raw()}))
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}
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case ethwire.MsgNotInChainTy:
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log.Printf("Not in chain %x\n", msg.Data)
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@ -368,7 +392,7 @@ func (p *Peer) HandleInbound() {
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// Unofficial but fun nonetheless
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case ethwire.MsgTalkTy:
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log.Printf("%v says: %s\n", p.conn.RemoteAddr(), msg.Data.AsString())
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log.Printf("%v says: %s\n", p.conn.RemoteAddr(), msg.Data.Str())
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}
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}
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}
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@ -441,9 +465,8 @@ func (p *Peer) pushHandshake() error {
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data, _ := ethutil.Config.Db.Get([]byte("KeyRing"))
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pubkey := ethutil.NewValueFromBytes(data).Get(2).Bytes()
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clientId := fmt.Sprintf("/Ethereum(G) v%s/%s", ethutil.Config.Ver, runtime.GOOS)
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msg := ethwire.NewMessage(ethwire.MsgHandshakeTy, []interface{}{
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uint32(4), uint32(0), clientId, byte(p.caps), p.port, pubkey,
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uint32(4), uint32(0), p.Version, byte(p.caps), p.port, pubkey,
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})
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p.QueueMessage(msg)
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@ -470,7 +493,7 @@ func (p *Peer) pushPeers() {
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func (p *Peer) handleHandshake(msg *ethwire.Msg) {
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c := msg.Data
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if c.Get(0).AsUint() != 4 {
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if c.Get(0).Uint() != 4 {
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log.Println("Invalid peer version. Require protocol v4")
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p.Stop()
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return
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@ -479,35 +502,49 @@ func (p *Peer) handleHandshake(msg *ethwire.Msg) {
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// [PROTOCOL_VERSION, NETWORK_ID, CLIENT_ID, CAPS, PORT, PUBKEY]
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p.versionKnown = true
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var istr string
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// If this is an inbound connection send an ack back
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if p.inbound {
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p.pubkey = c.Get(5).AsBytes()
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p.port = uint16(c.Get(4).AsUint())
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p.pubkey = c.Get(5).Bytes()
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p.port = uint16(c.Get(4).Uint())
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// Self connect detection
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/*
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data, _ := ethutil.Config.Db.Get([]byte("KeyRing"))
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pubkey := ethutil.NewValueFromBytes(data).Get(2).Bytes()
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if bytes.Compare(pubkey, p.pubkey) == 0 {
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p.Stop()
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data, _ := ethutil.Config.Db.Get([]byte("KeyRing"))
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pubkey := ethutil.NewValueFromBytes(data).Get(2).Bytes()
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if bytes.Compare(pubkey, p.pubkey) == 0 {
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p.Stop()
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return
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}
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*/
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return
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}
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p.CatchupWithPeer()
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istr = "inbound"
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} else {
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p.CatchupWithPeer()
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istr = "outbound"
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}
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p.caps = Caps(c.Get(3).AsByte())
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// Catch up with the connected peer
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p.CatchupWithPeer()
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// Set the peer's caps
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p.caps = Caps(c.Get(3).Byte())
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// Get a reference to the peers version
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p.Version = c.Get(2).Str()
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log.Println(p)
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}
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func (p *Peer) String() string {
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var strBoundType string
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if p.inbound {
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strBoundType = "inbound"
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} else {
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strBoundType = "outbound"
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}
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var strConnectType string
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if atomic.LoadInt32(&p.disconnect) == 0 {
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strConnectType = "connected"
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} else {
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strConnectType = "disconnected"
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}
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return fmt.Sprintf("peer [%s] (%s) %v %s [%s]", strConnectType, strBoundType, p.conn.RemoteAddr(), p.Version, p.caps)
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log.Printf("peer connect (%s) %v %s [%s]\n", istr, p.conn.RemoteAddr(), c.Get(2).AsString(), p.caps)
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}
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func (p *Peer) CatchupWithPeer() {
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