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https://github.com/fluencelabs/tendermint
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consensus: fixes #1754
* updateToState exits early if the state isn't new, which happens after * fast syncing. This results in not sending a NewRoundStep message. The mempool * reactor depends on PeerState, which is updated by NewRoundStep * messages. If the peer never sends a NewRoundStep, the mempool reactor * will think they're behind, and never forward transactions. Note this * only happens when `create_empty_blocks = false`, because otherwise * peers will move through the consensus state and send a NewRoundStep * for a new step soon anyways. Simple fix is just to send the * NewRoundStep message during updateToState even if exit early
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@ -460,9 +460,12 @@ func (cs *ConsensusState) updateToState(state sm.State) {
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// If state isn't further out than cs.state, just ignore.
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// This happens when SwitchToConsensus() is called in the reactor.
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// We don't want to reset e.g. the Votes.
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// We don't want to reset e.g. the Votes, but we still want to
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// signal the new round step, because other services (eg. mempool)
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// depend on having an up-to-date peer state!
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if !cs.state.IsEmpty() && (state.LastBlockHeight <= cs.state.LastBlockHeight) {
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cs.Logger.Info("Ignoring updateToState()", "newHeight", state.LastBlockHeight+1, "oldHeight", cs.state.LastBlockHeight+1)
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cs.newStep()
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return
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}
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@ -492,6 +495,7 @@ func (cs *ConsensusState) updateToState(state sm.State) {
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} else {
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cs.StartTime = cs.config.Commit(cs.CommitTime)
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}
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cs.Validators = validators
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cs.Proposal = nil
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cs.ProposalBlock = nil
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@ -517,7 +521,7 @@ func (cs *ConsensusState) newStep() {
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rs := cs.RoundStateEvent()
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cs.wal.Write(rs)
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cs.nSteps++
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// newStep is called by updateToStep in NewConsensusState before the eventBus is set!
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// newStep is called by updateToState in NewConsensusState before the eventBus is set!
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if cs.eventBus != nil {
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cs.eventBus.PublishEventNewRoundStep(rs)
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cs.evsw.FireEvent(types.EventNewRoundStep, &cs.RoundState)
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@ -328,11 +328,11 @@ func (mem *Mempool) notifyTxsAvailable() {
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panic("notified txs available but mempool is empty!")
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}
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if mem.txsAvailable != nil && !mem.notifiedTxsAvailable {
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// channel cap is 1, so this will send once
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select {
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case mem.txsAvailable <- mem.height + 1:
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default:
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}
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mem.notifiedTxsAvailable = true
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}
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}
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@ -103,6 +103,7 @@ type PeerState interface {
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// Send new mempool txs to peer.
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func (memR *MempoolReactor) broadcastTxRoutine(peer p2p.Peer) {
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if !memR.config.Broadcast {
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memR.Logger.Info("Tx broadcasting is disabled")
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return
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}
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@ -129,7 +130,8 @@ func (memR *MempoolReactor) broadcastTxRoutine(peer p2p.Peer) {
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height := memTx.Height()
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if peerState_i := peer.Get(types.PeerStateKey); peerState_i != nil {
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peerState := peerState_i.(PeerState)
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if peerState.GetHeight() < height-1 { // Allow for a lag of 1 block
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peerHeight := peerState.GetHeight()
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if peerHeight < height-1 { // Allow for a lag of 1 block
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time.Sleep(peerCatchupSleepIntervalMS * time.Millisecond)
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continue
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}
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@ -2,6 +2,5 @@ package types
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// UNSTABLE
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var (
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PeerStateKey = "ConsensusReactor.peerState"
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PeerMempoolChKey = "MempoolReactor.peerMempoolCh"
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PeerStateKey = "ConsensusReactor.peerState"
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)
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