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package consensus
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import (
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"math/big"
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"time"
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"github.com/ethereum/go-ethereum/common"
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"github.com/harmony-one/bls/ffi/go/bls"
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"github.com/harmony-one/harmony/consensus/quorum"
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"github.com/harmony-one/harmony/consensus/votepower"
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"github.com/harmony-one/harmony/shard"
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"github.com/harmony-one/harmony/staking/slash"
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)
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// Check for double sign and if any, send it out to beacon chain for slashing.
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// Returns true when it is a double-sign or there is error, otherwise, false.
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func (consensus *Consensus) checkDoubleSign(recvMsg *FBFTMessage) bool {
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if consensus.couldThisBeADoubleSigner(recvMsg) {
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if alreadyCastBallot := consensus.Decider.ReadBallot(
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quorum.Commit, recvMsg.SenderPubkey,
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); alreadyCastBallot != nil {
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firstPubKey := bls.PublicKey{}
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alreadyCastBallot.SignerPubKey.ToLibBLSPublicKey(&firstPubKey)
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if recvMsg.SenderPubkey.IsEqual(&firstPubKey) {
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for _, blk := range consensus.FBFTLog.GetBlocksByNumber(recvMsg.BlockNum) {
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firstSignedBlock := blk.Header()
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areHeightsEqual := firstSignedBlock.Number().Uint64() == recvMsg.BlockNum
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areViewIDsEqual := firstSignedBlock.ViewID().Uint64() == recvMsg.ViewID
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areHeadersEqual := firstSignedBlock.Hash() == recvMsg.BlockHash
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// If signer already firstSignedBlock, and the block height is the same
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// and the viewID is the same, then we need to verify the block
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// hash, and if block hash is different, then that is a clear
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// case of double signing
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if areHeightsEqual && areViewIDsEqual && !areHeadersEqual {
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var doubleSign bls.Sign
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if err := doubleSign.Deserialize(recvMsg.Payload); err != nil {
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consensus.getLogger().Err(err).Str("msg", recvMsg.String()).
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Msg("could not deserialize potential double signer")
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return true
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}
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curHeader := consensus.ChainReader.CurrentHeader()
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committee, err := consensus.ChainReader.ReadShardState(curHeader.Epoch())
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if err != nil {
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consensus.getLogger().Err(err).
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Uint32("shard", consensus.ShardID).
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Uint64("epoch", curHeader.Epoch().Uint64()).
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Msg("could not read shard state")
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return true
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}
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offender := *shard.FromLibBLSPublicKeyUnsafe(recvMsg.SenderPubkey)
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subComm, err := committee.FindCommitteeByID(
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consensus.ShardID,
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)
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if err != nil {
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consensus.getLogger().Err(err).
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Str("msg", recvMsg.String()).
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Msg("could not find subcommittee for bls key")
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return true
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}
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addr, err := subComm.AddressForBLSKey(offender)
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if err != nil {
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consensus.getLogger().Err(err).Str("msg", recvMsg.String()).
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Msg("could not find address for bls key")
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return true
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}
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now := big.NewInt(time.Now().UnixNano())
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go func(reporter common.Address) {
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evid := slash.Evidence{
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ConflictingBallots: slash.ConflictingBallots{
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AlreadyCastBallot: *alreadyCastBallot,
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DoubleSignedBallot: votepower.Ballot{
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SignerPubKey: offender,
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BlockHeaderHash: recvMsg.BlockHash,
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Signature: common.Hex2Bytes(doubleSign.SerializeToHexStr()),
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Height: recvMsg.BlockNum,
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ViewID: recvMsg.ViewID,
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}},
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Moment: slash.Moment{
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Epoch: curHeader.Epoch(),
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ShardID: consensus.ShardID,
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TimeUnixNano: now,
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},
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}
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proof := slash.Record{
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Evidence: evid,
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Reporter: reporter,
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Offender: *addr,
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}
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consensus.SlashChan <- proof
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}(consensus.SelfAddresses[consensus.LeaderPubKey.SerializeToHexStr()])
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return true
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}
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}
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}
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}
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return true
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}
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return false
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}
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func (consensus *Consensus) couldThisBeADoubleSigner(
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recvMsg *FBFTMessage,
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) bool {
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num, hash := consensus.blockNum, recvMsg.BlockHash
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suspicious := !consensus.FBFTLog.HasMatchingAnnounce(num, hash) ||
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!consensus.FBFTLog.HasMatchingPrepared(num, hash)
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if suspicious {
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consensus.getLogger().Debug().
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Str("message", recvMsg.String()).
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Uint64("block-on-consensus", num).
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Msg("possible double signer")
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return true
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}
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return false
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}
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