mirror of
https://github.com/ethereum/go-ethereum.git
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173 lines
4.8 KiB
Go
173 lines
4.8 KiB
Go
// nolint
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package eth
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import (
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"context"
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"errors"
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"fmt"
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"github.com/ethereum/go-ethereum/log"
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"github.com/ethereum/go-ethereum/metrics"
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"github.com/ethereum/go-ethereum/rpc"
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)
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var (
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// errMissingBlocks is returned when we don't have the blocks locally, yet.
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errMissingBlocks = errors.New("missing blocks")
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// errRootHash is returned when we aren't able to calculate the root hash
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// locally for a range of blocks.
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errRootHash = errors.New("failed to get local root hash")
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// errHashMismatch is returned when the local hash doesn't match
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// with the hash of checkpoint/milestone. It is the root hash of blocks
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// in case of checkpoint and is end block hash in case of milestones.
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errHashMismatch = errors.New("hash mismatch")
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// errEndBlock is returned when we're unable to fetch a block locally.
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errEndBlock = errors.New("failed to get end block")
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// errEndBlock is returned when we're unable to fetch a block locally.
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errTipConfirmationBlock = errors.New("failed to get tip confirmation block")
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// errBlockNumberConversion is returned when we get err in parsing hexautil block number
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errBlockNumberConversion = errors.New("failed to parse the block number")
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//Metrics for collecting the rewindLength
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rewindLengthMeter = metrics.NewRegisteredMeter("chain/autorewind/length", nil)
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)
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const maxRewindLen uint64 = 126
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type borVerifier struct {
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verify func(ctx context.Context, eth *Ethereum, handler *ethHandler, start uint64, end uint64, hash string, isCheckpoint bool) (string, error)
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}
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func newBorVerifier() *borVerifier {
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return &borVerifier{borVerify}
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}
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func borVerify(ctx context.Context, eth *Ethereum, handler *ethHandler, start uint64, end uint64, hash string, isCheckpoint bool) (string, error) {
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str := "milestone"
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if isCheckpoint {
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str = "checkpoint"
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}
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// check if we have the given blocks
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currentBlock := eth.BlockChain().CurrentBlock()
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if currentBlock == nil {
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log.Debug(fmt.Sprintf("Failed to fetch current block from blockchain while verifying incoming %s", str))
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return hash, errMissingBlocks
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}
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head := currentBlock.Number.Uint64()
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if head < end {
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log.Debug(fmt.Sprintf("Current head block behind incoming %s block", str), "head", head, "end block", end)
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return hash, errMissingBlocks
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}
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var localHash string
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// verify the hash
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if isCheckpoint {
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var err error
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// in case of checkpoint get the rootHash
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localHash, err = handler.ethAPI.GetRootHash(ctx, start, end)
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if err != nil {
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log.Debug("Failed to get root hash of given block range while whitelisting checkpoint", "start", start, "end", end, "err", err)
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return hash, errRootHash
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}
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} else {
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// in case of milestone(isCheckpoint==false) get the hash of endBlock
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block, err := handler.ethAPI.GetBlockByNumber(ctx, rpc.BlockNumber(end), false)
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if err != nil {
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log.Debug("Failed to get end block hash while whitelisting milestone", "number", end, "err", err)
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return hash, errEndBlock
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}
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localHash = fmt.Sprintf("%v", block["hash"])[2:]
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}
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//nolint
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if localHash != hash {
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if isCheckpoint {
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log.Warn("Root hash mismatch while whitelisting checkpoint", "expected", localHash, "got", hash)
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} else {
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log.Warn("End block hash mismatch while whitelisting milestone", "expected", localHash, "got", hash)
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}
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ethHandler := (*ethHandler)(eth.handler)
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var (
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rewindTo uint64
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doExist bool
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)
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if doExist, rewindTo, _ = ethHandler.downloader.GetWhitelistedMilestone(); doExist {
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} else if doExist, rewindTo, _ = ethHandler.downloader.GetWhitelistedCheckpoint(); doExist {
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} else {
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if start <= 0 {
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rewindTo = 0
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} else {
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rewindTo = start - 1
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}
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}
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if head-rewindTo > maxRewindLen {
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rewindTo = head - maxRewindLen
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}
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if isCheckpoint {
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log.Warn("Rewinding chain due to checkpoint root hash mismatch", "number", rewindTo)
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} else {
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log.Warn("Rewinding chain due to milestone endblock hash mismatch", "number", rewindTo)
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}
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rewindBack(eth, head, rewindTo)
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return hash, errHashMismatch
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}
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// fetch the end block hash
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block, err := handler.ethAPI.GetBlockByNumber(ctx, rpc.BlockNumber(end), false)
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if err != nil {
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log.Debug("Failed to get end block hash while whitelisting", "err", err)
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return hash, errEndBlock
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}
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hash = fmt.Sprintf("%v", block["hash"])
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return hash, nil
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}
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// Stop the miner if the mining process is running and rewind back the chain
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func rewindBack(eth *Ethereum, head uint64, rewindTo uint64) {
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if eth.Miner().Mining() {
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ch := make(chan struct{})
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eth.Miner().Stop(ch)
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<-ch
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rewind(eth, head, rewindTo)
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eth.Miner().Start()
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} else {
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rewind(eth, head, rewindTo)
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}
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}
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func rewind(eth *Ethereum, head uint64, rewindTo uint64) {
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err := eth.blockchain.SetHead(rewindTo)
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if err != nil {
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log.Error("Error while rewinding the chain", "to", rewindTo, "err", err)
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} else {
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rewindLengthMeter.Mark(int64(head - rewindTo))
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}
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}
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