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387 lines
12 KiB
387 lines
12 KiB
package consensus
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import (
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"bytes"
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"encoding/hex"
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"time"
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"github.com/harmony-one/harmony/crypto/bls"
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nodeconfig "github.com/harmony-one/harmony/internal/configs/node"
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"github.com/ethereum/go-ethereum/common"
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"github.com/ethereum/go-ethereum/rlp"
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msg_pb "github.com/harmony-one/harmony/api/proto/message"
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"github.com/harmony-one/harmony/consensus/signature"
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"github.com/harmony-one/harmony/core/types"
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"github.com/harmony-one/harmony/p2p"
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)
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func (consensus *Consensus) onAnnounce(msg *msg_pb.Message) {
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recvMsg, err := consensus.ParseFBFTMessage(msg)
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if err != nil {
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consensus.getLogger().Error().
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Err(err).
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Uint64("MsgBlockNum", recvMsg.BlockNum).
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Msg("[OnAnnounce] Unparseable leader message")
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return
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}
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// NOTE let it handle its own logs
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if !consensus.onAnnounceSanityChecks(recvMsg) {
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return
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}
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consensus.getLogger().Debug().
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Uint64("MsgViewID", recvMsg.ViewID).
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Uint64("MsgBlockNum", recvMsg.BlockNum).
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Msg("[OnAnnounce] Announce message Added")
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consensus.FBFTLog.AddMessage(recvMsg)
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consensus.mutex.Lock()
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defer consensus.mutex.Unlock()
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consensus.blockHash = recvMsg.BlockHash
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// we have already added message and block, skip check viewID
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// and send prepare message if is in ViewChanging mode
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if consensus.IsViewChangingMode() {
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consensus.getLogger().Debug().
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Msg("[OnAnnounce] Still in ViewChanging Mode, Exiting !!")
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return
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}
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if consensus.checkViewID(recvMsg) != nil {
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if consensus.current.Mode() == Normal {
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consensus.getLogger().Debug().
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Uint64("MsgViewID", recvMsg.ViewID).
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Uint64("MsgBlockNum", recvMsg.BlockNum).
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Msg("[OnAnnounce] ViewID check failed")
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}
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return
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}
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consensus.StartFinalityCount()
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consensus.prepare()
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}
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func (consensus *Consensus) prepare() {
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priKeys := consensus.getPriKeysInCommittee()
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p2pMsgs := consensus.constructP2pMessages(msg_pb.MessageType_PREPARE, nil, priKeys)
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if err := consensus.broadcastConsensusP2pMessages(p2pMsgs); err != nil {
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consensus.getLogger().Warn().Err(err).Msg("[OnAnnounce] Cannot send prepare message")
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} else {
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consensus.getLogger().Info().
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Str("blockHash", hex.EncodeToString(consensus.blockHash[:])).
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Msg("[OnAnnounce] Sent Prepare Message!!")
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}
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consensus.switchPhase("Announce", FBFTPrepare)
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}
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// sendCommitMessages send out commit messages to leader
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func (consensus *Consensus) sendCommitMessages(blockObj *types.Block) {
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priKeys := consensus.getPriKeysInCommittee()
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// Sign commit signature on the received block and construct the p2p messages
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commitPayload := signature.ConstructCommitPayload(consensus.Blockchain,
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blockObj.Epoch(), blockObj.Hash(), blockObj.NumberU64(), blockObj.Header().ViewID().Uint64())
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p2pMsgs := consensus.constructP2pMessages(msg_pb.MessageType_COMMIT, commitPayload, priKeys)
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if err := consensus.broadcastConsensusP2pMessages(p2pMsgs); err != nil {
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consensus.getLogger().Warn().Err(err).Msg("[sendCommitMessages] Cannot send commit message!!")
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} else {
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consensus.getLogger().Info().
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Uint64("blockNum", consensus.blockNum).
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Hex("blockHash", consensus.blockHash[:]).
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Msg("[sendCommitMessages] Sent Commit Message!!")
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}
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}
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// if onPrepared accepts the prepared message from the leader, then
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// it will send a COMMIT message for the leader to receive on the network.
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func (consensus *Consensus) onPrepared(msg *msg_pb.Message) {
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recvMsg, err := consensus.ParseFBFTMessage(msg)
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if err != nil {
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consensus.getLogger().Debug().Err(err).Msg("[OnPrepared] Unparseable validator message")
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return
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}
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consensus.getLogger().Info().
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Uint64("MsgBlockNum", recvMsg.BlockNum).
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Uint64("MsgViewID", recvMsg.ViewID).
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Msg("[OnPrepared] Received prepared message")
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if recvMsg.BlockNum < consensus.blockNum {
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consensus.getLogger().Debug().Uint64("MsgBlockNum", recvMsg.BlockNum).
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Msg("Wrong BlockNum Received, ignoring!")
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return
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}
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if recvMsg.BlockNum > consensus.blockNum {
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consensus.getLogger().Warn().Msgf("[OnPrepared] low consensus block number. Spin sync")
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consensus.spinUpStateSync()
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}
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// check validity of prepared signature
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blockHash := recvMsg.BlockHash
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aggSig, mask, err := consensus.ReadSignatureBitmapPayload(recvMsg.Payload, 0)
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if err != nil {
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consensus.getLogger().Error().Err(err).Msg("ReadSignatureBitmapPayload failed!")
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return
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}
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if !consensus.Decider.IsQuorumAchievedByMask(mask) {
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consensus.getLogger().Warn().Msgf("[OnPrepared] Quorum Not achieved.")
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return
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}
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if !aggSig.VerifyHash(mask.AggregatePublic, blockHash[:]) {
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myBlockHash := common.Hash{}
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myBlockHash.SetBytes(consensus.blockHash[:])
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consensus.getLogger().Warn().
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Uint64("MsgBlockNum", recvMsg.BlockNum).
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Uint64("MsgViewID", recvMsg.ViewID).
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Msg("[OnPrepared] failed to verify multi signature for prepare phase")
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return
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}
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// check validity of block
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var blockObj types.Block
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if err := rlp.DecodeBytes(recvMsg.Block, &blockObj); err != nil {
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consensus.getLogger().Warn().
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Err(err).
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Uint64("MsgBlockNum", recvMsg.BlockNum).
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Msg("[OnPrepared] Unparseable block header data")
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return
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}
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// let this handle it own logs
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if !consensus.onPreparedSanityChecks(&blockObj, recvMsg) {
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return
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}
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consensus.mutex.Lock()
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defer consensus.mutex.Unlock()
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consensus.FBFTLog.AddBlock(&blockObj)
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// add block field
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blockPayload := make([]byte, len(recvMsg.Block))
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copy(blockPayload[:], recvMsg.Block[:])
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consensus.block = blockPayload
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recvMsg.Block = []byte{} // save memory space
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consensus.FBFTLog.AddMessage(recvMsg)
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consensus.getLogger().Debug().
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Uint64("MsgViewID", recvMsg.ViewID).
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Uint64("MsgBlockNum", recvMsg.BlockNum).
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Hex("blockHash", recvMsg.BlockHash[:]).
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Msg("[OnPrepared] Prepared message and block added")
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// tryCatchup is also run in onCommitted(), so need to lock with commitMutex.
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if consensus.current.Mode() != Normal {
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// don't sign the block that is not verified
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consensus.getLogger().Info().Msg("[OnPrepared] Not in normal mode, Exiting!!")
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return
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}
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if consensus.BlockVerifier == nil {
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consensus.getLogger().Debug().Msg("[onPrepared] consensus received message before init. Ignoring")
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return
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}
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if err := consensus.BlockVerifier(&blockObj); err != nil {
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consensus.getLogger().Error().Err(err).Msg("[OnPrepared] Block verification failed")
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return
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}
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consensus.FBFTLog.MarkBlockVerified(&blockObj)
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if consensus.checkViewID(recvMsg) != nil {
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if consensus.current.Mode() == Normal {
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consensus.getLogger().Debug().
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Uint64("MsgViewID", recvMsg.ViewID).
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Uint64("MsgBlockNum", recvMsg.BlockNum).
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Msg("[OnPrepared] ViewID check failed")
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}
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return
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}
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if recvMsg.BlockNum > consensus.blockNum {
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consensus.getLogger().Debug().
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Uint64("MsgBlockNum", recvMsg.BlockNum).
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Uint64("blockNum", consensus.blockNum).
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Msg("[OnPrepared] Future Block Received, ignoring!!")
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return
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}
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// this is a temp fix for allows FN nodes to earning reward
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if consensus.delayCommit > 0 {
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time.Sleep(consensus.delayCommit)
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}
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// add preparedSig field
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consensus.aggregatedPrepareSig = aggSig
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consensus.prepareBitmap = mask
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// Optimistically add blockhash field of prepare message
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emptyHash := [32]byte{}
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if bytes.Equal(consensus.blockHash[:], emptyHash[:]) {
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copy(consensus.blockHash[:], blockHash[:])
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}
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consensus.sendCommitMessages(&blockObj)
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consensus.switchPhase("onPrepared", FBFTCommit)
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}
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func (consensus *Consensus) onCommitted(msg *msg_pb.Message) {
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recvMsg, err := consensus.ParseFBFTMessage(msg)
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if err != nil {
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consensus.getLogger().Warn().Msg("[OnCommitted] unable to parse msg")
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return
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}
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consensus.getLogger().Info().
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Uint64("MsgBlockNum", recvMsg.BlockNum).
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Uint64("MsgViewID", recvMsg.ViewID).
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Msg("[OnCommitted] Received committed message")
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// NOTE let it handle its own logs
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if !consensus.isRightBlockNumCheck(recvMsg) {
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return
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}
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if recvMsg.BlockNum > consensus.blockNum {
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consensus.getLogger().Info().Msg("[OnCommitted] low consensus block number. Spin up state sync")
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consensus.spinUpStateSync()
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}
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aggSig, mask, err := consensus.ReadSignatureBitmapPayload(recvMsg.Payload, 0)
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if err != nil {
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consensus.getLogger().Error().Err(err).Msg("[OnCommitted] readSignatureBitmapPayload failed")
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return
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}
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if !consensus.Decider.IsQuorumAchievedByMask(mask) {
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consensus.getLogger().Warn().Msgf("[OnCommitted] Quorum Not achieved.")
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return
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}
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// Must have the corresponding block to verify committed message.
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blockObj := consensus.FBFTLog.GetBlockByHash(recvMsg.BlockHash)
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if blockObj == nil {
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consensus.getLogger().Debug().
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Uint64("blockNum", recvMsg.BlockNum).
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Uint64("viewID", recvMsg.ViewID).
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Str("blockHash", recvMsg.BlockHash.Hex()).
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Msg("[OnCommitted] Failed finding a matching block for committed message")
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return
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}
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commitPayload := signature.ConstructCommitPayload(consensus.Blockchain,
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blockObj.Epoch(), blockObj.Hash(), blockObj.NumberU64(), blockObj.Header().ViewID().Uint64())
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if !aggSig.VerifyHash(mask.AggregatePublic, commitPayload) {
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consensus.getLogger().Error().
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Uint64("MsgBlockNum", recvMsg.BlockNum).
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Msg("[OnCommitted] Failed to verify the multi signature for commit phase")
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return
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}
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consensus.FBFTLog.AddMessage(recvMsg)
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consensus.mutex.Lock()
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defer consensus.mutex.Unlock()
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consensus.aggregatedCommitSig = aggSig
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consensus.commitBitmap = mask
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// If we already have a committed signature received before, check whether the new one
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// has more signatures and if yes, override the old data.
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// Otherwise, simply write the commit signature in db.
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commitSigBitmap, err := consensus.Blockchain.ReadCommitSig(blockObj.NumberU64())
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if err == nil && len(commitSigBitmap) == len(recvMsg.Payload) {
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new := mask.CountEnabled()
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mask.SetMask(commitSigBitmap[bls.BLSSignatureSizeInBytes:])
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cur := mask.CountEnabled()
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if new > cur {
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consensus.Blockchain.WriteCommitSig(blockObj.NumberU64(), recvMsg.Payload)
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}
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} else {
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consensus.Blockchain.WriteCommitSig(blockObj.NumberU64(), recvMsg.Payload)
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}
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consensus.tryCatchup()
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if recvMsg.BlockNum > consensus.blockNum {
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consensus.getLogger().Info().Uint64("MsgBlockNum", recvMsg.BlockNum).Msg("[OnCommitted] OUT OF SYNC")
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return
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}
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if consensus.IsViewChangingMode() {
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consensus.getLogger().Info().Msg("[OnCommitted] Still in ViewChanging mode, Exiting!!")
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return
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}
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if consensus.consensusTimeout[timeoutBootstrap].IsActive() {
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consensus.consensusTimeout[timeoutBootstrap].Stop()
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consensus.getLogger().Debug().Msg("[OnCommitted] Start consensus timer; stop bootstrap timer only once")
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} else {
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consensus.getLogger().Debug().Msg("[OnCommitted] Start consensus timer")
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}
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consensus.consensusTimeout[timeoutConsensus].Start()
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}
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// Collect private keys that are part of the current committee.
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// TODO: cache valid private keys and only update when keys change.
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func (consensus *Consensus) getPriKeysInCommittee() []*bls.PrivateKeyWrapper {
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priKeys := []*bls.PrivateKeyWrapper{}
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for i, key := range consensus.priKey {
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if !consensus.IsValidatorInCommittee(key.Pub.Bytes) {
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continue
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}
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priKeys = append(priKeys, &consensus.priKey[i])
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}
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return priKeys
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}
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func (consensus *Consensus) constructP2pMessages(msgType msg_pb.MessageType, payloadForSign []byte, priKeys []*bls.PrivateKeyWrapper) []*NetworkMessage {
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p2pMsgs := []*NetworkMessage{}
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if consensus.AggregateSig {
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networkMessage, err := consensus.construct(msgType, payloadForSign, priKeys)
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if err != nil {
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logger := consensus.getLogger().Err(err).
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Str("message-type", msgType.String())
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for _, key := range priKeys {
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logger.Str("key", key.Pri.SerializeToHexStr())
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}
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logger.Msg("could not construct message")
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} else {
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p2pMsgs = append(p2pMsgs, networkMessage)
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}
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} else {
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for _, key := range priKeys {
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networkMessage, err := consensus.construct(msgType, payloadForSign, []*bls.PrivateKeyWrapper{key})
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if err != nil {
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consensus.getLogger().Err(err).
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Str("message-type", msgType.String()).
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Str("key", key.Pri.SerializeToHexStr()).
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Msg("could not construct message")
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continue
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}
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p2pMsgs = append(p2pMsgs, networkMessage)
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}
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}
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return p2pMsgs
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}
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func (consensus *Consensus) broadcastConsensusP2pMessages(p2pMsgs []*NetworkMessage) error {
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groupID := []nodeconfig.GroupID{nodeconfig.NewGroupIDByShardID(nodeconfig.ShardID(consensus.ShardID))}
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for _, p2pMsg := range p2pMsgs {
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// TODO: this will not return immediately, may block
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if consensus.current.Mode() != Listening {
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if err := consensus.msgSender.SendWithoutRetry(
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groupID,
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p2p.ConstructMessage(p2pMsg.Bytes),
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); err != nil {
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return err
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}
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}
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}
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return nil
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}
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func (consensus *Consensus) spinUpStateSync() {
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select {
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case consensus.BlockNumLowChan <- struct{}{}:
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consensus.current.SetMode(Syncing)
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for _, v := range consensus.consensusTimeout {
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v.Stop()
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}
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default:
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}
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}
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