package consensus
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import (
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"bytes"
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"errors"
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"fmt"
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"reflect"
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"sync"
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"sync/atomic"
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"time"
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"github.com/tendermint/tendermint/binary"
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bc "github.com/tendermint/tendermint/blockchain"
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. "github.com/tendermint/tendermint/common"
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. "github.com/tendermint/tendermint/consensus/types"
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"github.com/tendermint/tendermint/events"
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"github.com/tendermint/tendermint/p2p"
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sm "github.com/tendermint/tendermint/state"
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"github.com/tendermint/tendermint/types"
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)
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const (
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StateChannel = byte(0x20)
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DataChannel = byte(0x21)
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VoteChannel = byte(0x22)
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PeerStateKey = "ConsensusReactor.peerState"
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peerGossipSleepDuration = 100 * time.Millisecond // Time to sleep if there's nothing to send.
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)
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//-----------------------------------------------------------------------------
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// The reactor's underlying ConsensusState may change state at any time.
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// We atomically copy the RoundState struct before using it.
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type ConsensusReactor struct {
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sw *p2p.Switch
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running uint32
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quit chan struct{}
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blockStore *bc.BlockStore
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conS *ConsensusState
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// if fast sync is running we don't really do anything
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sync bool
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evsw events.Fireable
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}
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func NewConsensusReactor(consensusState *ConsensusState, blockStore *bc.BlockStore, sync bool) *ConsensusReactor {
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conR := &ConsensusReactor{
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quit: make(chan struct{}),
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blockStore: blockStore,
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conS: consensusState,
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sync: sync,
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}
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return conR
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}
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// Implements Reactor
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func (conR *ConsensusReactor) Start(sw *p2p.Switch) {
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if atomic.CompareAndSwapUint32(&conR.running, 0, 1) {
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log.Info("Starting ConsensusReactor")
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conR.sw = sw
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if !conR.sync {
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conR.conS.Start()
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}
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go conR.broadcastNewRoundStepRoutine()
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}
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}
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// Implements Reactor
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func (conR *ConsensusReactor) Stop() {
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if atomic.CompareAndSwapUint32(&conR.running, 1, 0) {
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log.Info("Stopping ConsensusReactor")
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conR.conS.Stop()
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close(conR.quit)
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}
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}
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func (conR *ConsensusReactor) IsRunning() bool {
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return atomic.LoadUint32(&conR.running) == 1
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}
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// Implements Reactor
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func (conR *ConsensusReactor) GetChannels() []*p2p.ChannelDescriptor {
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// TODO optimize
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return []*p2p.ChannelDescriptor{
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&p2p.ChannelDescriptor{
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Id: StateChannel,
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Priority: 5,
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SendQueueCapacity: 100,
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},
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&p2p.ChannelDescriptor{
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Id: DataChannel,
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Priority: 5,
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SendQueueCapacity: 2,
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},
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&p2p.ChannelDescriptor{
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Id: VoteChannel,
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Priority: 5,
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SendQueueCapacity: 40,
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},
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}
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}
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// Implements Reactor
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func (conR *ConsensusReactor) AddPeer(peer *p2p.Peer) {
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if !conR.IsRunning() {
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return
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}
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// Create peerState for peer
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peerState := NewPeerState(peer)
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peer.Data.Set(PeerStateKey, peerState)
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// Begin gossip routines for this peer.
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go conR.gossipDataRoutine(peer, peerState)
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go conR.gossipVotesRoutine(peer, peerState)
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// Send our state to peer.
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conR.sendNewRoundStepMessage(peer)
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}
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// Implements Reactor
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func (conR *ConsensusReactor) RemovePeer(peer *p2p.Peer, reason interface{}) {
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if !conR.IsRunning() {
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return
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}
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//peer.Data.Get(PeerStateKey).(*PeerState).Disconnect()
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}
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// Implements Reactor
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func (conR *ConsensusReactor) Receive(chId byte, peer *p2p.Peer, msgBytes []byte) {
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if conR.sync || !conR.IsRunning() {
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return
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}
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// Get round state
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rs := conR.conS.GetRoundState()
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ps := peer.Data.Get(PeerStateKey).(*PeerState)
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_, msg_, err := DecodeMessage(msgBytes)
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if err != nil {
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log.Warn("Error decoding message", "channel", chId, "peer", peer, "msg", msg_, "error", err, "bytes", msgBytes)
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return
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}
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log.Debug("Receive", "channel", chId, "peer", peer, "msg", msg_) //, "bytes", msgBytes)
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switch chId {
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case StateChannel:
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switch msg := msg_.(type) {
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case *NewRoundStepMessage:
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ps.ApplyNewRoundStepMessage(msg, rs)
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case *CommitStepMessage:
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ps.ApplyCommitStepMessage(msg)
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case *HasVoteMessage:
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ps.ApplyHasVoteMessage(msg)
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default:
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log.Warn(Fmt("Unknown message type %v", reflect.TypeOf(msg)))
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}
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case DataChannel:
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switch msg := msg_.(type) {
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case *ProposalMessage:
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ps.SetHasProposal(msg.Proposal)
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err = conR.conS.SetProposal(msg.Proposal)
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case *ProposalPOLMessage:
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ps.ApplyProposalPOLMessage(msg)
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case *BlockPartMessage:
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ps.SetHasProposalBlockPart(msg.Height, msg.Round, msg.Part.Proof.Index)
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_, err = conR.conS.AddProposalBlockPart(msg.Height, msg.Part)
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default:
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log.Warn(Fmt("Unknown message type %v", reflect.TypeOf(msg)))
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}
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case VoteChannel:
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switch msg := msg_.(type) {
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case *VoteMessage:
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vote := msg.Vote
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var validators *sm.ValidatorSet
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if rs.Height == vote.Height {
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validators = rs.Validators
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} else if rs.Height == vote.Height+1 {
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if !(rs.Step == RoundStepNewHeight && vote.Type == types.VoteTypePrecommit) {
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return // Wrong height, not a LastCommit straggler commit.
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}
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validators = rs.LastValidators
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} else {
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return // Wrong height. Not necessarily a bad peer.
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}
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// We have vote/validators. Height may not be rs.Height
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address, _ := validators.GetByIndex(msg.ValidatorIndex)
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added, index, err := conR.conS.AddVote(address, vote, peer.Key)
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if err != nil {
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// If conflicting sig, broadcast evidence tx for slashing. Else punish peer.
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if errDupe, ok := err.(*types.ErrVoteConflictingSignature); ok {
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log.Warn("Found conflicting vote. Publish evidence")
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evidenceTx := &types.DupeoutTx{
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Address: address,
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VoteA: *errDupe.VoteA,
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VoteB: *errDupe.VoteB,
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}
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conR.conS.mempoolReactor.BroadcastTx(evidenceTx) // shouldn't need to check returned err
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} else {
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// Probably an invalid signature. Bad peer.
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log.Warn("Error attempting to add vote", "error", err)
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// TODO: punish peer
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}
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}
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ps.EnsureVoteBitArrays(rs.Height, rs.Validators.Size(), nil)
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ps.EnsureVoteBitArrays(rs.Height-1, rs.LastCommit.Size(), nil)
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ps.SetHasVote(vote, index)
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if added {
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// If rs.Height == vote.Height && rs.Round < vote.Round,
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// the peer is sending us CatchupCommit precommits.
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// We could make note of this and help filter in broadcastHasVoteMessage().
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conR.broadcastHasVoteMessage(vote, index)
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}
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default:
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log.Warn(Fmt("Unknown message type %v", reflect.TypeOf(msg)))
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}
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default:
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log.Warn(Fmt("Unknown channel %X", chId))
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}
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if err != nil {
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log.Warn("Error in Receive()", "error", err)
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}
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}
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// Broadcasts HasVoteMessage to peers that care.
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func (conR *ConsensusReactor) broadcastHasVoteMessage(vote *types.Vote, index int) {
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msg := &HasVoteMessage{
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Height: vote.Height,
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Round: vote.Round,
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Type: vote.Type,
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Index: index,
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}
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conR.sw.Broadcast(StateChannel, msg)
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/*
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// TODO: Make this broadcast more selective.
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for _, peer := range conR.sw.Peers().List() {
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ps := peer.Data.Get(PeerStateKey).(*PeerState)
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prs := ps.GetRoundState()
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if prs.Height == vote.Height {
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// TODO: Also filter on round?
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peer.TrySend(StateChannel, msg)
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} else {
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// Height doesn't match
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// TODO: check a field, maybe CatchupCommitRound?
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// TODO: But that requires changing the struct field comment.
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}
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}
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*/
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}
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// Sets our private validator account for signing votes.
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func (conR *ConsensusReactor) SetPrivValidator(priv *sm.PrivValidator) {
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conR.conS.SetPrivValidator(priv)
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}
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// Switch from the fast sync to the consensus:
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// reset the state, turn off fast sync, start the consensus-state-machine
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func (conR *ConsensusReactor) SwitchToConsensus(state *sm.State) {
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conR.conS.updateToState(state, false)
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conR.sync = false
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conR.conS.Start()
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}
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// implements events.Eventable
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func (conR *ConsensusReactor) SetFireable(evsw events.Fireable) {
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conR.evsw = evsw
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conR.conS.SetFireable(evsw)
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}
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//--------------------------------------
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func makeRoundStepMessages(rs *RoundState) (nrsMsg *NewRoundStepMessage, csMsg *CommitStepMessage) {
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nrsMsg = &NewRoundStepMessage{
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Height: rs.Height,
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Round: rs.Round,
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Step: rs.Step,
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SecondsSinceStartTime: int(time.Now().Sub(rs.StartTime).Seconds()),
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LastCommitRound: rs.LastCommit.Round(),
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}
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if rs.Step == RoundStepCommit {
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csMsg = &CommitStepMessage{
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Height: rs.Height,
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BlockPartsHeader: rs.ProposalBlockParts.Header(),
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BlockParts: rs.ProposalBlockParts.BitArray(),
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}
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}
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return
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}
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// Listens for changes to the ConsensusState.Step by pulling
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// on conR.conS.NewStepCh().
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func (conR *ConsensusReactor) broadcastNewRoundStepRoutine() {
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for {
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// Get RoundState with new Step or quit.
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var rs *RoundState
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select {
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case rs = <-conR.conS.NewStepCh():
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case <-conR.quit:
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return
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}
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nrsMsg, csMsg := makeRoundStepMessages(rs)
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if nrsMsg != nil {
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conR.sw.Broadcast(StateChannel, nrsMsg)
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}
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if csMsg != nil {
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conR.sw.Broadcast(StateChannel, csMsg)
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}
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}
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}
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func (conR *ConsensusReactor) sendNewRoundStepMessage(peer *p2p.Peer) {
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rs := conR.conS.GetRoundState()
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nrsMsg, csMsg := makeRoundStepMessages(rs)
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if nrsMsg != nil {
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peer.Send(StateChannel, nrsMsg)
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}
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if csMsg != nil {
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peer.Send(StateChannel, csMsg)
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}
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}
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func (conR *ConsensusReactor) gossipDataRoutine(peer *p2p.Peer, ps *PeerState) {
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OUTER_LOOP:
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for {
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// Manage disconnects from self or peer.
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if !peer.IsRunning() || !conR.IsRunning() {
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log.Info(Fmt("Stopping gossipDataRoutine for %v.", peer))
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return
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}
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rs := conR.conS.GetRoundState()
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prs := ps.GetRoundState()
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// Send proposal Block parts?
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if rs.ProposalBlockParts.HasHeader(prs.ProposalBlockPartsHeader) {
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//log.Debug("ProposalBlockParts matched", "blockParts", prs.ProposalBlockParts)
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if index, ok := rs.ProposalBlockParts.BitArray().Sub(prs.ProposalBlockParts.Copy()).PickRandom(); ok {
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part := rs.ProposalBlockParts.GetPart(index)
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msg := &BlockPartMessage{
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Height: rs.Height, // This tells peer that this part applies to us.
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Round: rs.Round, // This tells peer that this part applies to us.
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Part: part,
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}
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peer.Send(DataChannel, msg)
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ps.SetHasProposalBlockPart(prs.Height, prs.Round, index)
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continue OUTER_LOOP
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}
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}
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// If the peer is on a previous height, help catch up.
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if (0 < prs.Height) && (prs.Height < rs.Height) {
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//log.Debug("Data catchup", "height", rs.Height, "peerHeight", prs.Height, "peerProposalBlockParts", prs.ProposalBlockParts)
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if index, ok := prs.ProposalBlockParts.Not().PickRandom(); ok {
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// Ensure that the peer's PartSetHeader is correct
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blockMeta := conR.blockStore.LoadBlockMeta(prs.Height)
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if !blockMeta.PartsHeader.Equals(prs.ProposalBlockPartsHeader) {
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log.Debug("Peer ProposalBlockPartsHeader mismatch, sleeping",
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"peerHeight", prs.Height, "blockPartsHeader", blockMeta.PartsHeader, "peerBlockPartsHeader", prs.ProposalBlockPartsHeader)
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time.Sleep(peerGossipSleepDuration)
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continue OUTER_LOOP
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}
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// Load the part
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part := conR.blockStore.LoadBlockPart(prs.Height, index)
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if part == nil {
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log.Warn("Could not load part", "index", index,
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"peerHeight", prs.Height, "blockPartsHeader", blockMeta.PartsHeader, "peerBlockPartsHeader", prs.ProposalBlockPartsHeader)
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time.Sleep(peerGossipSleepDuration)
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continue OUTER_LOOP
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}
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// Send the part
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msg := &BlockPartMessage{
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Height: prs.Height, // Not our height, so it doesn't matter.
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Round: prs.Round, // Not our height, so it doesn't matter.
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Part: part,
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}
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peer.Send(DataChannel, msg)
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ps.SetHasProposalBlockPart(prs.Height, prs.Round, index)
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continue OUTER_LOOP
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} else {
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//log.Debug("No parts to send in catch-up, sleeping")
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time.Sleep(peerGossipSleepDuration)
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continue OUTER_LOOP
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}
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}
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// If height and round don't match, sleep.
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if (rs.Height != prs.Height) || (rs.Round != prs.Round) {
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//log.Debug("Peer Height|Round mismatch, sleeping", "peerHeight", prs.Height, "peerRound", prs.Round, "peer", peer)
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time.Sleep(peerGossipSleepDuration)
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continue OUTER_LOOP
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}
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// By here, height and round match.
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// Proposal block parts were already matched and sent if any were wanted.
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// (These can match on hash so the round doesn't matter)
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// Now consider sending other things, like the Proposal itself.
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// Send Proposal && ProposalPOL BitArray?
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if rs.Proposal != nil && !prs.Proposal {
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// Proposal
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{
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msg := &ProposalMessage{Proposal: rs.Proposal}
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peer.Send(DataChannel, msg)
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ps.SetHasProposal(rs.Proposal)
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}
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// ProposalPOL.
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// Peer must receive ProposalMessage first.
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// rs.Proposal was validated, so rs.Proposal.POLRound <= rs.Round,
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// so we definitely have rs.Votes.Prevotes(rs.Proposal.POLRound).
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if 0 <= rs.Proposal.POLRound {
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msg := &ProposalPOLMessage{
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Height: rs.Height,
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ProposalPOLRound: rs.Proposal.POLRound,
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ProposalPOL: rs.Votes.Prevotes(rs.Proposal.POLRound).BitArray(),
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}
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peer.Send(DataChannel, msg)
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}
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continue OUTER_LOOP
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}
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// Nothing to do. Sleep.
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time.Sleep(peerGossipSleepDuration)
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continue OUTER_LOOP
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}
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}
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func (conR *ConsensusReactor) gossipVotesRoutine(peer *p2p.Peer, ps *PeerState) {
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|
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// Simple hack to throttle logs upon sleep.
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var sleeping = 0
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OUTER_LOOP:
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for {
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// Manage disconnects from self or peer.
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if !peer.IsRunning() || !conR.IsRunning() {
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log.Info(Fmt("Stopping gossipVotesRoutine for %v.", peer))
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return
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}
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rs := conR.conS.GetRoundState()
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prs := ps.GetRoundState()
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|
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switch sleeping {
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case 1: // First sleep
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sleeping = 2
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case 2: // No more sleep
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sleeping = 0
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}
|
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|
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// prsVoteSet: a pointer to a VoteSet field of prs.
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// Returns true when useful work was done.
|
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trySendVote := func(voteSet *VoteSet, prsVoteSet **BitArray) (sent bool) {
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if voteSet == nil {
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return false
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}
|
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if *prsVoteSet == nil {
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ps.EnsureVoteBitArrays(voteSet.Height(), voteSet.Size(), prs)
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// We could return true here (useful work was done)
|
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// or, we can continue since prsVoteSet is no longer nil.
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if *prsVoteSet == nil {
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panic("prsVoteSet should not be nil after ps.EnsureVoteBitArrays")
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}
|
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}
|
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// TODO: give priority to our vote.
|
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if index, ok := voteSet.BitArray().Sub((*prsVoteSet).Copy()).PickRandom(); ok {
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vote := voteSet.GetByIndex(index)
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msg := &VoteMessage{index, vote}
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peer.Send(VoteChannel, msg)
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ps.SetHasVote(vote, index)
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return true
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}
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return false
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}
|
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|
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// prsVoteSet: a pointer to a VoteSet field of prs.
|
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// Returns true when useful work was done.
|
|
trySendPrecommitFromValidation := func(validation *types.Validation, prsVoteSet **BitArray) (sent bool) {
|
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if validation == nil {
|
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return false
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} else if *prsVoteSet == nil {
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ps.EnsureVoteBitArrays(validation.Height(), len(validation.Precommits), prs)
|
|
// We could return true here (useful work was done)
|
|
// or, we can continue since prsVoteSet is no longer nil.
|
|
if *prsVoteSet == nil {
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panic("prsVoteSet should not be nil after ps.EnsureVoteBitArrays")
|
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}
|
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}
|
|
if index, ok := validation.BitArray().Sub((*prsVoteSet).Copy()).PickRandom(); ok {
|
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precommit := validation.Precommits[index]
|
|
log.Debug("Picked precommit to send", "index", index, "precommit", precommit)
|
|
msg := &VoteMessage{index, precommit}
|
|
peer.Send(VoteChannel, msg)
|
|
ps.SetHasVote(precommit, index)
|
|
return true
|
|
}
|
|
return false
|
|
}
|
|
|
|
// If height matches, then send LastCommit, Prevotes, Precommits.
|
|
if rs.Height == prs.Height {
|
|
// If there are lastCommits to send...
|
|
if prs.Step == RoundStepNewHeight {
|
|
if trySendVote(rs.LastCommit, &prs.LastCommit) {
|
|
continue OUTER_LOOP
|
|
}
|
|
}
|
|
// If there are prevotes to send...
|
|
if rs.Round == prs.Round && prs.Step <= RoundStepPrevote {
|
|
if trySendVote(rs.Votes.Prevotes(rs.Round), &prs.Prevotes) {
|
|
continue OUTER_LOOP
|
|
}
|
|
}
|
|
// If there are precommits to send...
|
|
if rs.Round == prs.Round && prs.Step <= RoundStepPrecommit {
|
|
if trySendVote(rs.Votes.Precommits(rs.Round), &prs.Precommits) {
|
|
continue OUTER_LOOP
|
|
}
|
|
}
|
|
// If there are prevotes to send for the last round...
|
|
if rs.Round == prs.Round+1 && prs.Step <= RoundStepPrevote {
|
|
if trySendVote(rs.Votes.Prevotes(prs.Round), &prs.Prevotes) {
|
|
continue OUTER_LOOP
|
|
}
|
|
}
|
|
// If there are precommits to send for the last round...
|
|
if rs.Round == prs.Round+1 && prs.Step <= RoundStepPrecommit {
|
|
if trySendVote(rs.Votes.Precommits(prs.Round), &prs.Precommits) {
|
|
continue OUTER_LOOP
|
|
}
|
|
}
|
|
// If there are POLPrevotes to send...
|
|
if 0 <= prs.ProposalPOLRound {
|
|
if polPrevotes := rs.Votes.Prevotes(prs.ProposalPOLRound); polPrevotes != nil {
|
|
if trySendVote(polPrevotes, &prs.ProposalPOL) {
|
|
continue OUTER_LOOP
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
// Special catchup logic.
|
|
// If peer is lagging by height 1, send LastCommit.
|
|
if prs.Height != 0 && prs.Height == rs.Height-1 {
|
|
if prs.Round == rs.LastCommit.Round() {
|
|
// NOTE: We prefer to use prs.Precommits if
|
|
// prs.Round matches prs.CatchupCommitRound.
|
|
if trySendVote(rs.LastCommit, &prs.Precommits) {
|
|
continue OUTER_LOOP
|
|
}
|
|
} else {
|
|
ps.EnsureCatchupCommitRound(prs.Height, rs.LastCommit.Round())
|
|
if trySendVote(rs.LastCommit, &prs.CatchupCommit) {
|
|
continue OUTER_LOOP
|
|
}
|
|
}
|
|
}
|
|
|
|
// Catchup logic
|
|
// If peer is lagging by more than 1, send Validation.
|
|
if prs.Height != 0 && prs.Height <= rs.Height-2 {
|
|
// Load the block validation for prs.Height,
|
|
// which contains precommit signatures for prs.Height.
|
|
validation := conR.blockStore.LoadBlockValidation(prs.Height)
|
|
log.Debug("Loaded BlockValidation for catch-up", "height", prs.Height, "validation", validation)
|
|
ps.EnsureCatchupCommitRound(prs.Height, validation.Round())
|
|
if trySendPrecommitFromValidation(validation, &prs.CatchupCommit) {
|
|
continue OUTER_LOOP
|
|
}
|
|
}
|
|
|
|
if sleeping == 0 {
|
|
// We sent nothing. Sleep...
|
|
sleeping = 1
|
|
log.Debug("No votes to send, sleeping", "peer", peer,
|
|
"localPV", rs.Votes.Prevotes(rs.Round).BitArray(), "peerPV", prs.Prevotes,
|
|
"localPC", rs.Votes.Precommits(rs.Round).BitArray(), "peerPC", prs.Precommits)
|
|
} else if sleeping == 2 {
|
|
// Continued sleep...
|
|
sleeping = 1
|
|
}
|
|
|
|
time.Sleep(peerGossipSleepDuration)
|
|
continue OUTER_LOOP
|
|
}
|
|
}
|
|
|
|
//-----------------------------------------------------------------------------
|
|
|
|
// Read only when returned by PeerState.GetRoundState().
|
|
type PeerRoundState struct {
|
|
Height int // Height peer is at
|
|
Round int // Round peer is at
|
|
Step RoundStepType // Step peer is at
|
|
StartTime time.Time // Estimated start of round 0 at this height
|
|
Proposal bool // True if peer has proposal for this round
|
|
ProposalBlockPartsHeader types.PartSetHeader //
|
|
ProposalBlockParts *BitArray //
|
|
ProposalPOLRound int // -1 if none
|
|
ProposalPOL *BitArray // nil until ProposalPOLMessage received.
|
|
Prevotes *BitArray // All votes peer has for this round
|
|
Precommits *BitArray // All precommits peer has for this round
|
|
LastCommitRound int // Round of commit for last height.
|
|
LastCommit *BitArray // All commit precommits of commit for last height.
|
|
CatchupCommitRound int // Round that we believe commit round is.
|
|
CatchupCommit *BitArray // All commit precommits peer has for this height
|
|
}
|
|
|
|
//-----------------------------------------------------------------------------
|
|
|
|
var (
|
|
ErrPeerStateHeightRegression = errors.New("Error peer state height regression")
|
|
ErrPeerStateInvalidStartTime = errors.New("Error peer state invalid startTime")
|
|
)
|
|
|
|
type PeerState struct {
|
|
Key string
|
|
|
|
mtx sync.Mutex
|
|
PeerRoundState
|
|
}
|
|
|
|
func NewPeerState(peer *p2p.Peer) *PeerState {
|
|
return &PeerState{Key: peer.Key}
|
|
}
|
|
|
|
// Returns an atomic snapshot of the PeerRoundState.
|
|
// There's no point in mutating it since it won't change PeerState.
|
|
func (ps *PeerState) GetRoundState() *PeerRoundState {
|
|
ps.mtx.Lock()
|
|
defer ps.mtx.Unlock()
|
|
|
|
prs := ps.PeerRoundState // copy
|
|
return &prs
|
|
}
|
|
|
|
func (ps *PeerState) SetHasProposal(proposal *Proposal) {
|
|
ps.mtx.Lock()
|
|
defer ps.mtx.Unlock()
|
|
|
|
if ps.Height != proposal.Height || ps.Round != proposal.Round {
|
|
return
|
|
}
|
|
if ps.Proposal {
|
|
return
|
|
}
|
|
|
|
ps.Proposal = true
|
|
ps.ProposalBlockPartsHeader = proposal.BlockPartsHeader
|
|
ps.ProposalBlockParts = NewBitArray(proposal.BlockPartsHeader.Total)
|
|
ps.ProposalPOLRound = proposal.POLRound
|
|
ps.ProposalPOL = nil // Nil until ProposalPOLMessage received.
|
|
}
|
|
|
|
func (ps *PeerState) SetHasProposalBlockPart(height int, round int, index int) {
|
|
ps.mtx.Lock()
|
|
defer ps.mtx.Unlock()
|
|
|
|
if ps.Height != height || ps.Round != round {
|
|
return
|
|
}
|
|
|
|
ps.ProposalBlockParts.SetIndex(index, true)
|
|
}
|
|
|
|
// prs: If given, will also update this PeerRoundState copy.
|
|
// NOTE: It's important to make sure that numValidators actually matches
|
|
// what the node sees as the number of validators for height.
|
|
func (ps *PeerState) EnsureVoteBitArrays(height int, numValidators int, prs *PeerRoundState) {
|
|
ps.mtx.Lock()
|
|
defer ps.mtx.Unlock()
|
|
|
|
if ps.Height == height {
|
|
if ps.Prevotes == nil {
|
|
ps.Prevotes = NewBitArray(numValidators)
|
|
}
|
|
if ps.Precommits == nil {
|
|
ps.Precommits = NewBitArray(numValidators)
|
|
}
|
|
if ps.CatchupCommit == nil {
|
|
ps.CatchupCommit = NewBitArray(numValidators)
|
|
}
|
|
if ps.ProposalPOL == nil {
|
|
ps.ProposalPOL = NewBitArray(numValidators)
|
|
}
|
|
} else if ps.Height == height+1 {
|
|
if ps.LastCommit == nil {
|
|
ps.LastCommit = NewBitArray(numValidators)
|
|
}
|
|
}
|
|
|
|
// Also, update prs if given.
|
|
if prs != nil {
|
|
prs.Prevotes = ps.Prevotes
|
|
prs.Precommits = ps.Precommits
|
|
prs.CatchupCommit = ps.CatchupCommit
|
|
prs.ProposalPOL = ps.ProposalPOL
|
|
prs.LastCommit = ps.LastCommit
|
|
}
|
|
}
|
|
|
|
func (ps *PeerState) SetHasVote(vote *types.Vote, index int) {
|
|
ps.mtx.Lock()
|
|
defer ps.mtx.Unlock()
|
|
|
|
ps.setHasVote(vote.Height, vote.Round, vote.Type, index)
|
|
}
|
|
|
|
func (ps *PeerState) setHasVote(height int, round int, type_ byte, index int) {
|
|
if ps.Height == height+1 && ps.LastCommitRound == round && type_ == types.VoteTypePrecommit {
|
|
// Special case for LastCommit.
|
|
ps.LastCommit.SetIndex(index, true)
|
|
log.Debug("setHasVote", "LastCommit", ps.LastCommit, "index", index)
|
|
return
|
|
} else if ps.Height != height {
|
|
// Does not apply.
|
|
return
|
|
}
|
|
|
|
// By here, ps.Height is height.
|
|
switch type_ {
|
|
case types.VoteTypePrevote:
|
|
if ps.ProposalPOLRound == round {
|
|
ps.ProposalPOL.SetIndex(index, true)
|
|
}
|
|
ps.Prevotes.SetIndex(index, true)
|
|
log.Debug("SetHasVote", "peer", ps.Key, "prevotes", ps.Prevotes, "index", index)
|
|
case types.VoteTypePrecommit:
|
|
if ps.CatchupCommitRound == round {
|
|
ps.CatchupCommit.SetIndex(index, true)
|
|
}
|
|
ps.Precommits.SetIndex(index, true)
|
|
log.Debug("SetHasVote", "peer", ps.Key, "precommits", ps.Precommits, "index", index)
|
|
default:
|
|
panic("Invalid vote type")
|
|
}
|
|
}
|
|
|
|
// NOTE: 'round' is what we know to be the commit round for height.
|
|
func (ps *PeerState) EnsureCatchupCommitRound(height, round int) {
|
|
ps.mtx.Lock()
|
|
defer ps.mtx.Unlock()
|
|
|
|
if ps.Height != height {
|
|
return
|
|
}
|
|
if ps.CatchupCommitRound != -1 && ps.CatchupCommitRound != round {
|
|
panic(Fmt("Conflicting CatchupCommitRound. Height: %v, Orig: %v, New: %v", height, ps.CatchupCommitRound, round))
|
|
}
|
|
if ps.CatchupCommitRound == round {
|
|
return // Nothing to do!
|
|
}
|
|
ps.CatchupCommitRound = round
|
|
ps.CatchupCommit = nil
|
|
}
|
|
|
|
func (ps *PeerState) ApplyNewRoundStepMessage(msg *NewRoundStepMessage, rs *RoundState) {
|
|
ps.mtx.Lock()
|
|
defer ps.mtx.Unlock()
|
|
|
|
// Just remember these values.
|
|
psHeight := ps.Height
|
|
psRound := ps.Round
|
|
//psStep := ps.Step
|
|
psCatchupCommitRound := ps.CatchupCommitRound
|
|
psCatchupCommit := ps.CatchupCommit
|
|
|
|
startTime := time.Now().Add(-1 * time.Duration(msg.SecondsSinceStartTime) * time.Second)
|
|
ps.Height = msg.Height
|
|
ps.Round = msg.Round
|
|
ps.Step = msg.Step
|
|
ps.StartTime = startTime
|
|
if psHeight != msg.Height || psRound != msg.Round {
|
|
ps.Proposal = false
|
|
ps.ProposalBlockPartsHeader = types.PartSetHeader{}
|
|
ps.ProposalBlockParts = nil
|
|
ps.ProposalPOLRound = -1
|
|
ps.ProposalPOL = nil
|
|
// We'll update the BitArray capacity later.
|
|
ps.Prevotes = nil
|
|
ps.Precommits = nil
|
|
}
|
|
if psHeight == msg.Height && psRound != msg.Round && msg.Round == psCatchupCommitRound {
|
|
// Peer caught up to CatchupCommitRound.
|
|
// Preserve psCatchupCommit!
|
|
// NOTE: We prefer to use prs.Precommits if
|
|
// pr.Round matches pr.CatchupCommitRound.
|
|
ps.Precommits = psCatchupCommit
|
|
}
|
|
if psHeight != msg.Height {
|
|
// Shift Precommits to LastCommit.
|
|
if psHeight+1 == msg.Height && psRound == msg.LastCommitRound {
|
|
ps.LastCommitRound = msg.LastCommitRound
|
|
ps.LastCommit = ps.Precommits
|
|
} else {
|
|
ps.LastCommitRound = msg.LastCommitRound
|
|
ps.LastCommit = nil
|
|
}
|
|
// We'll update the BitArray capacity later.
|
|
ps.CatchupCommitRound = -1
|
|
ps.CatchupCommit = nil
|
|
}
|
|
}
|
|
|
|
func (ps *PeerState) ApplyCommitStepMessage(msg *CommitStepMessage) {
|
|
ps.mtx.Lock()
|
|
defer ps.mtx.Unlock()
|
|
|
|
if ps.Height != msg.Height {
|
|
return
|
|
}
|
|
|
|
ps.ProposalBlockPartsHeader = msg.BlockPartsHeader
|
|
ps.ProposalBlockParts = msg.BlockParts
|
|
}
|
|
|
|
func (ps *PeerState) ApplyHasVoteMessage(msg *HasVoteMessage) {
|
|
ps.mtx.Lock()
|
|
defer ps.mtx.Unlock()
|
|
|
|
if ps.Height != msg.Height {
|
|
return
|
|
}
|
|
|
|
ps.setHasVote(msg.Height, msg.Round, msg.Type, msg.Index)
|
|
}
|
|
|
|
func (ps *PeerState) ApplyProposalPOLMessage(msg *ProposalPOLMessage) {
|
|
ps.mtx.Lock()
|
|
defer ps.mtx.Unlock()
|
|
|
|
if ps.Height != msg.Height {
|
|
return
|
|
}
|
|
if ps.ProposalPOLRound != msg.ProposalPOLRound {
|
|
return
|
|
}
|
|
|
|
// TODO: Merge onto existing ps.ProposalPOL?
|
|
// We might have sent some prevotes in the meantime.
|
|
ps.ProposalPOL = msg.ProposalPOL
|
|
}
|
|
|
|
//-----------------------------------------------------------------------------
|
|
// Messages
|
|
|
|
const (
|
|
msgTypeNewRoundStep = byte(0x01)
|
|
msgTypeCommitStep = byte(0x02)
|
|
msgTypeProposal = byte(0x11)
|
|
msgTypeProposalPOL = byte(0x12)
|
|
msgTypeBlockPart = byte(0x13) // both block & POL
|
|
msgTypeVote = byte(0x14)
|
|
msgTypeHasVote = byte(0x15)
|
|
)
|
|
|
|
type ConsensusMessage interface{}
|
|
|
|
var _ = binary.RegisterInterface(
|
|
struct{ ConsensusMessage }{},
|
|
binary.ConcreteType{&NewRoundStepMessage{}, msgTypeNewRoundStep},
|
|
binary.ConcreteType{&CommitStepMessage{}, msgTypeCommitStep},
|
|
binary.ConcreteType{&ProposalMessage{}, msgTypeProposal},
|
|
binary.ConcreteType{&ProposalPOLMessage{}, msgTypeProposalPOL},
|
|
binary.ConcreteType{&BlockPartMessage{}, msgTypeBlockPart},
|
|
binary.ConcreteType{&VoteMessage{}, msgTypeVote},
|
|
binary.ConcreteType{&HasVoteMessage{}, msgTypeHasVote},
|
|
)
|
|
|
|
// TODO: check for unnecessary extra bytes at the end.
|
|
func DecodeMessage(bz []byte) (msgType byte, msg ConsensusMessage, err error) {
|
|
msgType = bz[0]
|
|
n := new(int64)
|
|
r := bytes.NewReader(bz)
|
|
msg = binary.ReadBinary(struct{ ConsensusMessage }{}, r, n, &err).(struct{ ConsensusMessage }).ConsensusMessage
|
|
return
|
|
}
|
|
|
|
//-------------------------------------
|
|
|
|
// For every height/round/step transition
|
|
type NewRoundStepMessage struct {
|
|
Height int
|
|
Round int
|
|
Step RoundStepType
|
|
SecondsSinceStartTime int
|
|
LastCommitRound int
|
|
}
|
|
|
|
func (m *NewRoundStepMessage) String() string {
|
|
return fmt.Sprintf("[NewRoundStep H:%v R:%v S:%v LCR:%v]",
|
|
m.Height, m.Round, m.Step, m.LastCommitRound)
|
|
}
|
|
|
|
//-------------------------------------
|
|
|
|
type CommitStepMessage struct {
|
|
Height int
|
|
BlockPartsHeader types.PartSetHeader
|
|
BlockParts *BitArray
|
|
}
|
|
|
|
func (m *CommitStepMessage) String() string {
|
|
return fmt.Sprintf("[CommitStep H:%v BP:%v BA:%v]", m.Height, m.BlockPartsHeader, m.BlockParts)
|
|
}
|
|
|
|
//-------------------------------------
|
|
|
|
type ProposalMessage struct {
|
|
Proposal *Proposal
|
|
}
|
|
|
|
func (m *ProposalMessage) String() string {
|
|
return fmt.Sprintf("[Proposal %v]", m.Proposal)
|
|
}
|
|
|
|
//-------------------------------------
|
|
|
|
type ProposalPOLMessage struct {
|
|
Height int
|
|
ProposalPOLRound int
|
|
ProposalPOL *BitArray
|
|
}
|
|
|
|
func (m *ProposalPOLMessage) String() string {
|
|
return fmt.Sprintf("[ProposalPOL H:%v POLR:%v POL:%v]", m.Height, m.ProposalPOLRound, m.ProposalPOL)
|
|
}
|
|
|
|
//-------------------------------------
|
|
|
|
type BlockPartMessage struct {
|
|
Height int
|
|
Round int
|
|
Part *types.Part
|
|
}
|
|
|
|
func (m *BlockPartMessage) String() string {
|
|
return fmt.Sprintf("[BlockPart H:%v R:%v P:%v]", m.Height, m.Round, m.Part)
|
|
}
|
|
|
|
//-------------------------------------
|
|
|
|
type VoteMessage struct {
|
|
ValidatorIndex int
|
|
Vote *types.Vote
|
|
}
|
|
|
|
func (m *VoteMessage) String() string {
|
|
return fmt.Sprintf("[Vote VI:%v V:%v VI:%v]", m.ValidatorIndex, m.Vote, m.ValidatorIndex)
|
|
}
|
|
|
|
//-------------------------------------
|
|
|
|
type HasVoteMessage struct {
|
|
Height int
|
|
Round int
|
|
Type byte
|
|
Index int
|
|
}
|
|
|
|
func (m *HasVoteMessage) String() string {
|
|
return fmt.Sprintf("[HasVote VI:%v V:{%v/%02d/%v} VI:%v]", m.Index, m.Height, m.Round, m.Type, m.Index)
|
|
}
|