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@ -131,6 +131,7 @@ type Peer struct { |
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// Last received pong message
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lastPong int64 |
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lastBlockReceived time.Time |
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lastHashReceived time.Time |
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host []byte |
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port uint16 |
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@ -505,6 +506,9 @@ func (p *Peer) HandleInbound() { |
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for it.Next() { |
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hash := it.Value().Bytes() |
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p.lastReceivedHash = hash |
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p.lastHashReceived = time.Now() |
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if blockPool.HasCommonHash(hash) { |
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foundCommonHash = true |
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@ -512,10 +516,6 @@ func (p *Peer) HandleInbound() { |
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} |
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blockPool.AddHash(hash) |
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p.lastReceivedHash = hash |
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p.lastBlockReceived = time.Now() |
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} |
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if foundCommonHash || msg.Data.Len() == 0 { |
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@ -546,12 +546,12 @@ func (p *Peer) HandleInbound() { |
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if err != nil { |
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peerlogger.Infoln(err) |
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} else { |
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} /*else { |
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// Don't trigger if there's just one block.
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if blockPool.Len() != 0 && msg.Data.Len() > 1 { |
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p.FetchBlocks() |
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} |
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} |
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}*/ |
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} |
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} |
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} |
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@ -583,17 +583,28 @@ func (self *Peer) FetchHashes() { |
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// General update method
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func (self *Peer) update() { |
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serviceTimer := time.NewTicker(5 * time.Second) |
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serviceTimer := time.NewTicker(100 * time.Millisecond) |
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out: |
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for { |
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select { |
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case <-serviceTimer.C: |
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since := time.Since(self.lastBlockReceived) |
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if since > 10*time.Second && self.ethereum.blockPool.Len() != 0 && self.IsCap("eth") { |
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self.FetchHashes() |
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} else if since > 5*time.Second { |
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self.catchingUp = false |
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if self.IsCap("eth") { |
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var ( |
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sinceBlock = time.Since(self.lastBlockReceived) |
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sinceHash = time.Since(self.lastHashReceived) |
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) |
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if sinceBlock > 5*time.Second && sinceHash > 5*time.Second { |
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self.catchingUp = false |
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} |
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if sinceHash > 10*time.Second && self.ethereum.blockPool.Len() != 0 { |
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// XXX While this is completely and utterly incorrect, in order to do anything on the test net is to do it this way
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// Assume that when fetching hashes timeouts, we are done.
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//self.FetchHashes()
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self.FetchBlocks() |
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} |
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} |
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case <-self.quit: |
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break out |
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@ -761,6 +772,14 @@ func (p *Peer) handleHandshake(msg *ethwire.Msg) { |
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return |
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} |
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// Self connect detection
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pubkey := p.ethereum.KeyManager().PublicKey() |
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if bytes.Compare(pubkey[1:], pub) == 0 { |
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p.Stop() |
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return |
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} |
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usedPub := 0 |
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// This peer is already added to the peerlist so we expect to find a double pubkey at least once
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eachPeer(p.ethereum.Peers(), func(peer *Peer, e *list.Element) { |
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@ -779,16 +798,8 @@ func (p *Peer) handleHandshake(msg *ethwire.Msg) { |
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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.port = uint16(port) |
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// Self connect detection
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pubkey := p.ethereum.KeyManager().PublicKey() |
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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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p.SetVersion(clientId) |
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p.versionKnown = true |
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