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package synchronizer
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import (
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"context"
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"database/sql"
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"fmt"
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"github.com/ethereum/go-ethereum"
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"github.com/hermeznetwork/hermez-node/common"
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"github.com/hermeznetwork/hermez-node/db/historydb"
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"github.com/hermeznetwork/hermez-node/db/statedb"
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"github.com/hermeznetwork/hermez-node/eth"
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"github.com/hermeznetwork/hermez-node/log"
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)
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var (
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// ErrNotAbleToSync is used when there is not possible to find a valid block to sync
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// ErrNotAbleToSync = errors.New("it has not been possible to synchronize any block")
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)
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// // SyncronizerState describes the synchronization progress of the smart contracts
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// type SyncronizerState struct {
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// LastUpdate time.Time // last time this information was updated
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// CurrentBatchNum BatchNum // Last batch that was forged on the blockchain
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// CurrentBlockNum uint64 // Last block that was mined on Ethereum
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// CurrentToForgeL1TxsNum uint32
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// LastSyncedBatchNum BatchNum // last batch synchronized by the coordinator
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// LastSyncedBlockNum uint64 // last Ethereum block synchronized by the coordinator
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// LastSyncedToForgeL1TxsNum uint32
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// }
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// // SyncStatus is returned by the Status method of the Synchronizer
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// type SyncStatus struct {
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// CurrentBlock int64
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// CurrentBatch BatchNum
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// CurrentForgerAddr ethCommon.Address
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// NextForgerAddr ethCommon.Address
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// Synchronized bool
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// }
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// ConfigStartBlockNum sets the first block used to start tracking the smart
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// contracts
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type ConfigStartBlockNum struct {
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Rollup int64
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Auction int64
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WDelayer int64
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}
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// Config is the Synchronizer configuration
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type Config struct {
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StartBlockNum ConfigStartBlockNum
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}
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// Synchronizer implements the Synchronizer type
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type Synchronizer struct {
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ethClient eth.ClientInterface
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auctionConstants common.AuctionConstants
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rollupConstants common.RollupConstants
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wDelayerConstants common.WDelayerConstants
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historyDB *historydb.HistoryDB
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stateDB *statedb.StateDB
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cfg Config
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startBlockNum int64
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// firstSavedBlock *common.Block
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// mux sync.Mutex
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}
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// NewSynchronizer creates a new Synchronizer
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func NewSynchronizer(ethClient eth.ClientInterface, historyDB *historydb.HistoryDB,
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stateDB *statedb.StateDB, cfg Config) (*Synchronizer, error) {
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auctionConstants, err := ethClient.AuctionConstants()
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if err != nil {
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log.Errorw("NewSynchronizer ethClient.AuctionConstants()", "err", err)
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return nil, err
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}
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rollupConstants, err := ethClient.RollupConstants()
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if err != nil {
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log.Errorw("NewSynchronizer ethClient.RollupConstants()", "err", err)
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return nil, err
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}
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// TODO: Uncomment once ethClient.WDelayerConstants() is implemented
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// wDelayerConstants, err := ethClient.WDelayerConstants()
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// if err != nil {
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// log.Errorw("NewSynchronizer ethClient.WDelayerConstants()", "err", err)
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// return nil, err
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// }
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// Set startBlockNum to the minimum between Auction, Rollup and
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// WDelayer StartBlockNum
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startBlockNum := cfg.StartBlockNum.Auction
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if startBlockNum < cfg.StartBlockNum.Rollup {
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startBlockNum = cfg.StartBlockNum.Rollup
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}
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if startBlockNum < cfg.StartBlockNum.WDelayer {
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startBlockNum = cfg.StartBlockNum.WDelayer
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}
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return &Synchronizer{
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ethClient: ethClient,
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auctionConstants: *auctionConstants,
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// auctionConstants: common.AuctionConstants{},
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rollupConstants: *rollupConstants,
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// rollupConstants: common.RollupConstants{},
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// wDelayerConstants: *wDelayerConstants,
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wDelayerConstants: common.WDelayerConstants{},
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historyDB: historyDB,
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stateDB: stateDB,
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cfg: cfg,
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startBlockNum: startBlockNum,
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}, nil
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}
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// AuctionConstants returns the AuctionConstants read from the smart contract
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func (s *Synchronizer) AuctionConstants() *common.AuctionConstants {
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return &s.auctionConstants
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}
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// RollupConstants returns the RollupConstants read from the smart contract
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func (s *Synchronizer) RollupConstants() *common.RollupConstants {
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return &s.rollupConstants
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}
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// WDelayerConstants returns the WDelayerConstants read from the smart contract
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func (s *Synchronizer) WDelayerConstants() *common.WDelayerConstants {
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return &s.wDelayerConstants
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}
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// Sync2 attems to synchronize an ethereum block starting from lastSavedBlock.
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// If lastSavedBlock is nil, the lastSavedBlock value is obtained from de DB.
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// If a block is synched, it will be returned and also stored in the DB. If a
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// reorg is detected, the number of discarded blocks will be returned and no
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// synchronization will be made.
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// TODO: Be smart about locking: only lock during the read/write operations
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func (s *Synchronizer) Sync2(ctx context.Context, lastSavedBlock *common.Block) (*common.BlockData, *int64, error) {
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var nextBlockNum int64 // next block number to sync
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if lastSavedBlock == nil {
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var err error
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// Get lastSavedBlock from History DB
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lastSavedBlock, err = s.historyDB.GetLastBlock()
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if err != nil && err != sql.ErrNoRows {
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return nil, nil, err
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}
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// If we don't have any stored block, we must do a full sync
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// starting from the startBlockNum
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if err == sql.ErrNoRows || lastSavedBlock.EthBlockNum == 0 {
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nextBlockNum = s.startBlockNum
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lastSavedBlock = nil
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}
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}
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if lastSavedBlock != nil {
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nextBlockNum = lastSavedBlock.EthBlockNum + 1
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}
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ethBlock, err := s.ethClient.EthBlockByNumber(ctx, nextBlockNum)
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if err == ethereum.NotFound {
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return nil, nil, nil
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} else if err != nil {
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return nil, nil, err
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}
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log.Debugf("ethBlock: num: %v, parent: %v, hash: %v", ethBlock.EthBlockNum, ethBlock.ParentHash.String(), ethBlock.Hash.String())
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log.Debugw("Syncing...", "block", nextBlockNum)
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// Check that the obtianed ethBlock.ParentHash == prevEthBlock.Hash; if not, reorg!
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if lastSavedBlock != nil {
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if lastSavedBlock.Hash != ethBlock.ParentHash {
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// Reorg detected
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log.Debugw("Reorg Detected",
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"blockNum", ethBlock.EthBlockNum,
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"block.parent(got)", ethBlock.ParentHash, "parent.hash(exp)", lastSavedBlock.Hash)
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lastDBBlockNum, err := s.reorg(lastSavedBlock)
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if err != nil {
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return nil, nil, err
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}
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discarded := lastSavedBlock.EthBlockNum - lastDBBlockNum
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return nil, &discarded, nil
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}
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}
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// Get data from the rollup contract
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rollupData, err := s.rollupSync(ethBlock)
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if err != nil {
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return nil, nil, err
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}
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// Get data from the auction contract
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auctionData, err := s.auctionSync(ethBlock)
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if err != nil {
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return nil, nil, err
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}
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// Get data from the WithdrawalDelayer contract
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wdelayerData, err := s.wdelayerSync(ethBlock)
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if err != nil {
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return nil, nil, err
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}
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// Group all the block data into the structs to save into HistoryDB
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blockData := common.BlockData{
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Block: *ethBlock,
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Rollup: *rollupData,
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Auction: *auctionData,
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WDelayer: *wdelayerData,
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}
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// log.Debugw("Sync()", "block", blockData)
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// err = s.historyDB.AddBlock(blockData.Block)
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// if err != nil {
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// return err
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// }
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err = s.historyDB.AddBlockSCData(&blockData)
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if err != nil {
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return nil, nil, err
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}
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return &blockData, nil, nil
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}
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// reorg manages a reorg, updating History and State DB as needed. Keeps
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// checking previous blocks from the HistoryDB against the blockchain until a
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// block hash match is found. All future blocks in the HistoryDB and
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// corresponding batches in StateBD are discarded. Returns the last valid
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// blockNum from the HistoryDB.
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func (s *Synchronizer) reorg(uncleBlock *common.Block) (int64, error) {
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blockNum := uncleBlock.EthBlockNum
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for blockNum >= s.startBlockNum {
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ethBlock, err := s.ethClient.EthBlockByNumber(context.Background(), blockNum)
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if err != nil {
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return 0, err
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}
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block, err := s.historyDB.GetBlock(blockNum)
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if err != nil {
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return 0, err
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}
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if block.Hash == ethBlock.Hash {
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log.Debugf("Found valid block: %v", blockNum)
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break
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}
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blockNum--
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}
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total := uncleBlock.EthBlockNum - blockNum
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log.Debugw("Discarding blocks", "total", total, "from", uncleBlock.EthBlockNum, "to", blockNum+1)
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// Set History DB and State DB to the correct state
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err := s.historyDB.Reorg(blockNum)
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if err != nil {
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return 0, err
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}
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batchNum, err := s.historyDB.GetLastBatchNum()
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if err != nil && err != sql.ErrNoRows {
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return 0, err
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}
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if batchNum != 0 {
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err = s.stateDB.Reset(batchNum)
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if err != nil {
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return 0, err
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}
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}
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return blockNum, nil
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}
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// TODO: Figure out who will use the Status output, and only return what's strictly need
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/*
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// Status returns current status values from the Synchronizer
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func (s *Synchronizer) Status() (*common.SyncStatus, error) {
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// Avoid possible inconsistencies
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s.mux.Lock()
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defer s.mux.Unlock()
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var status *common.SyncStatus
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// TODO: Join all queries to the DB into a single transaction so that
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// we can remove the mutex locking here:
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// - HistoryDB.GetLastBlock
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// - HistoryDB.GetLastBatchNum
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// - HistoryDB.GetCurrentForgerAddr
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// - HistoryDB.GetNextForgerAddr
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// Get latest block in History DB
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lastSavedBlock, err := s.historyDB.GetLastBlock()
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if err != nil {
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return nil, err
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}
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status.CurrentBlock = lastSavedBlock.EthBlockNum
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// Get latest batch in History DB
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lastSavedBatch, err := s.historyDB.GetLastBatchNum()
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if err != nil && err != sql.ErrNoRows {
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return nil, err
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}
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status.CurrentBatch = lastSavedBatch
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// Get latest blockNum in blockchain
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latestBlockNum, err := s.ethClient.EthCurrentBlock()
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if err != nil {
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return nil, err
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}
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// TODO: Get CurrentForgerAddr & NextForgerAddr from the Auction SC / Or from the HistoryDB
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// Check if Synchronizer is synchronized
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status.Synchronized = status.CurrentBlock == latestBlockNum
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return status, nil
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}
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*/
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// rollupSync retreives all the Rollup Smart Contract Data that happened at
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// ethBlock.blockNum with ethBlock.Hash.
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func (s *Synchronizer) rollupSync(ethBlock *common.Block) (*common.RollupData, error) {
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blockNum := ethBlock.EthBlockNum
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var rollupData = common.NewRollupData()
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// var forgeL1TxsNum int64
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// Get rollup events in the block, and make sure the block hash matches
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// the expected one.
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rollupEvents, blockHash, err := s.ethClient.RollupEventsByBlock(blockNum)
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if err != nil {
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return nil, err
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}
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// No events in this block
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if blockHash == nil {
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return &rollupData, nil
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}
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if *blockHash != ethBlock.Hash {
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log.Errorw("Block hash mismatch", "expectd", ethBlock.Hash.String(),
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"got", blockHash.String())
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return nil, eth.ErrBlockHashMismatchEvent
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}
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var nextForgeL1TxsNum int64 // forgeL1TxsNum for the next L1Batch
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nextForgeL1TxsNumPtr, err := s.historyDB.GetLastL1TxsNum()
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if err != nil {
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return nil, err
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}
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if nextForgeL1TxsNumPtr != nil {
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nextForgeL1TxsNum = *nextForgeL1TxsNumPtr + 1
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} else {
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nextForgeL1TxsNum = 0
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}
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// Get L1UserTX
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rollupData.L1UserTxs, err = getL1UserTx(rollupEvents.L1UserTx, blockNum)
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if err != nil {
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return nil, err
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}
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// Get ForgeBatch events to get the L1CoordinatorTxs
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for _, evtForgeBatch := range rollupEvents.ForgeBatch {
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batchData := common.NewBatchData()
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position := 0
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// Get the input for each Tx
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forgeBatchArgs, sender, err := s.ethClient.RollupForgeBatchArgs(evtForgeBatch.EthTxHash)
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if err != nil {
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return nil, err
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}
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batchNum := common.BatchNum(evtForgeBatch.BatchNum)
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var l1UserTxs []common.L1Tx
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// Check if this is a L1Batch to get L1 Tx from it
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if forgeBatchArgs.L1Batch {
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// Get L1UserTxs with toForgeL1TxsNum, which correspond
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// to the L1UserTxs that are forged in this batch, so
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// that stateDB can process them.
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// First try to find them in HistoryDB.
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l1UserTxs, err = s.historyDB.GetL1UserTxs(nextForgeL1TxsNum)
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if err != nil {
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return nil, err
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}
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// Apart from the DB, try to find them in this block.
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// This could happen because in a block there could be
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// multiple batches with L1Batch = true (although it's
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// a very rare case). If not found in the DB and the
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// block doesn't contain the l1UserTxs, it means that
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// the L1UserTxs queue with toForgeL1TxsNum was closed
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// empty, so we leave `l1UserTxs` as an empty slice.
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for _, l1UserTx := range rollupData.L1UserTxs {
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if *l1UserTx.ToForgeL1TxsNum == nextForgeL1TxsNum {
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l1UserTxs = append(l1UserTxs, l1UserTx)
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}
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}
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position = len(l1UserTxs)
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}
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// Get L1 Coordinator Txs
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for i := range forgeBatchArgs.L1CoordinatorTxs {
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l1CoordinatorTx := forgeBatchArgs.L1CoordinatorTxs[i]
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l1CoordinatorTx.Position = position
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// l1CoordinatorTx.ToForgeL1TxsNum = &forgeL1TxsNum
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l1CoordinatorTx.UserOrigin = false
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l1CoordinatorTx.EthBlockNum = blockNum
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l1CoordinatorTx.BatchNum = &batchNum
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l1Tx, err := common.NewL1Tx(&l1CoordinatorTx)
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if err != nil {
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return nil, err
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}
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batchData.L1CoordinatorTxs = append(batchData.L1CoordinatorTxs, *l1Tx)
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position++
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// fmt.Println("DGB l1coordtx")
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}
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// Insert all the txs forged in this batch (l1UserTxs,
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// L1CoordinatorTxs, PoolL2Txs) into stateDB so that they are
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// processed.
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poolL2Txs := common.L2TxsToPoolL2Txs(forgeBatchArgs.L2TxsData) // NOTE: This is a big ugly, find a better way
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// ProcessTxs updates poolL2Txs adding: Nonce (and also TokenID, but we don't use it).
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processTxsOut, err := s.stateDB.ProcessTxs(forgeBatchArgs.FeeIdxCoordinator, l1UserTxs,
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batchData.L1CoordinatorTxs, poolL2Txs)
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if err != nil {
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return nil, err
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}
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// Set batchNum in exits
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for i := range processTxsOut.ExitInfos {
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exit := &processTxsOut.ExitInfos[i]
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exit.BatchNum = batchNum
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}
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batchData.ExitTree = processTxsOut.ExitInfos
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l2Txs, err := common.PoolL2TxsToL2Txs(poolL2Txs) // NOTE: This is a big uggly, find a better way
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if err != nil {
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return nil, err
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}
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for i := range l2Txs {
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tx := &l2Txs[i]
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tx.Position = position
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tx.EthBlockNum = blockNum
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tx.BatchNum = batchNum
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nTx, err := common.NewL2Tx(tx)
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if err != nil {
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return nil, err
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}
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batchData.L2Txs = append(batchData.L2Txs, *nTx)
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position++
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}
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for i := range processTxsOut.CreatedAccounts {
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createdAccount := &processTxsOut.CreatedAccounts[i]
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createdAccount.BatchNum = batchNum
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}
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batchData.CreatedAccounts = processTxsOut.CreatedAccounts
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slotNum := int64(0)
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if ethBlock.EthBlockNum >= s.auctionConstants.GenesisBlockNum {
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slotNum = (ethBlock.EthBlockNum - s.auctionConstants.GenesisBlockNum) /
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int64(s.auctionConstants.BlocksPerSlot)
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}
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// Get Batch information
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batch := common.Batch{
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BatchNum: batchNum,
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EthBlockNum: blockNum,
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ForgerAddr: *sender,
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CollectedFees: processTxsOut.CollectedFees,
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StateRoot: forgeBatchArgs.NewStRoot,
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NumAccounts: len(batchData.CreatedAccounts),
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LastIdx: forgeBatchArgs.NewLastIdx,
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ExitRoot: forgeBatchArgs.NewExitRoot,
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SlotNum: slotNum,
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}
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nextForgeL1TxsNumCpy := nextForgeL1TxsNum
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if forgeBatchArgs.L1Batch {
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batch.ForgeL1TxsNum = &nextForgeL1TxsNumCpy
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batchData.L1Batch = true
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nextForgeL1TxsNum++
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}
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batchData.Batch = batch
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rollupData.Batches = append(rollupData.Batches, *batchData)
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}
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|
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// Get Registered Tokens
|
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for _, evtAddToken := range rollupEvents.AddToken {
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var token common.Token
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|
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token.TokenID = common.TokenID(evtAddToken.TokenID)
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token.EthAddr = evtAddToken.TokenAddress
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token.EthBlockNum = blockNum
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if consts, err := s.ethClient.EthERC20Consts(evtAddToken.TokenAddress); err != nil {
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log.Warnw("Error retreiving ERC20 token constants", "addr", evtAddToken.TokenAddress)
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token.Name = "ERC20_ETH_ERROR"
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token.Symbol = "ERROR"
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token.Decimals = 1
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} else {
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token.Name = cutStringMax(consts.Name, 20)
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token.Symbol = cutStringMax(consts.Symbol, 10)
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token.Decimals = consts.Decimals
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}
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|
|
|
rollupData.AddedTokens = append(rollupData.AddedTokens, token)
|
|
}
|
|
|
|
var vars common.RollupVariables
|
|
varsUpdate := false
|
|
|
|
for _, evtUpdateForgeL1L2BatchTimeout := range rollupEvents.UpdateForgeL1L2BatchTimeout {
|
|
vars.ForgeL1L2BatchTimeout = evtUpdateForgeL1L2BatchTimeout.NewForgeL1L2BatchTimeout
|
|
varsUpdate = true
|
|
}
|
|
|
|
for _, evtUpdateFeeAddToken := range rollupEvents.UpdateFeeAddToken {
|
|
vars.FeeAddToken = evtUpdateFeeAddToken.NewFeeAddToken
|
|
varsUpdate = true
|
|
}
|
|
|
|
// NOTE: WithdrawDelay update doesn't have event, so we can't track changes
|
|
|
|
// NOTE: Buckets update dones't have event, so we can't track changes
|
|
|
|
for _, evtWithdraw := range rollupEvents.Withdraw {
|
|
rollupData.Withdrawals = append(rollupData.Withdrawals, common.WithdrawInfo{
|
|
Idx: common.Idx(evtWithdraw.Idx),
|
|
NumExitRoot: common.BatchNum(evtWithdraw.NumExitRoot),
|
|
InstantWithdraw: evtWithdraw.InstantWithdraw,
|
|
})
|
|
}
|
|
|
|
if varsUpdate {
|
|
rollupData.Vars = &vars
|
|
}
|
|
|
|
return &rollupData, nil
|
|
}
|
|
|
|
func cutStringMax(s string, max int) string {
|
|
if len(s) > max {
|
|
return s[:max]
|
|
}
|
|
return s
|
|
}
|
|
|
|
// auctionSync gets information from the Auction Contract
|
|
func (s *Synchronizer) auctionSync(ethBlock *common.Block) (*common.AuctionData, error) {
|
|
blockNum := ethBlock.EthBlockNum
|
|
var auctionData = common.NewAuctionData()
|
|
|
|
// Get auction events in the block
|
|
auctionEvents, blockHash, err := s.ethClient.AuctionEventsByBlock(blockNum)
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
// No events in this block
|
|
if blockHash == nil {
|
|
return &auctionData, nil
|
|
}
|
|
if *blockHash != ethBlock.Hash {
|
|
log.Errorw("Block hash mismatch", "expectd", ethBlock.Hash.String(),
|
|
"got", blockHash.String())
|
|
return nil, eth.ErrBlockHashMismatchEvent
|
|
}
|
|
|
|
// Get bids
|
|
for _, evtNewBid := range auctionEvents.NewBid {
|
|
bid := common.Bid{
|
|
SlotNum: evtNewBid.Slot,
|
|
BidValue: evtNewBid.BidAmount,
|
|
Bidder: evtNewBid.Bidder,
|
|
EthBlockNum: blockNum,
|
|
}
|
|
auctionData.Bids = append(auctionData.Bids, bid)
|
|
}
|
|
|
|
// Get Coordinators
|
|
for _, evtSetCoordinator := range auctionEvents.SetCoordinator {
|
|
coordinator := common.Coordinator{
|
|
Bidder: evtSetCoordinator.BidderAddress,
|
|
Forger: evtSetCoordinator.ForgerAddress,
|
|
URL: evtSetCoordinator.CoordinatorURL,
|
|
}
|
|
auctionData.Coordinators = append(auctionData.Coordinators, coordinator)
|
|
}
|
|
|
|
var vars common.AuctionVariables
|
|
varsUpdate := false
|
|
|
|
for _, evt := range auctionEvents.NewSlotDeadline {
|
|
vars.SlotDeadline = evt.NewSlotDeadline
|
|
varsUpdate = true
|
|
}
|
|
for _, evt := range auctionEvents.NewClosedAuctionSlots {
|
|
vars.ClosedAuctionSlots = evt.NewClosedAuctionSlots
|
|
varsUpdate = true
|
|
}
|
|
for _, evt := range auctionEvents.NewOutbidding {
|
|
vars.Outbidding = evt.NewOutbidding
|
|
varsUpdate = true
|
|
}
|
|
for _, evt := range auctionEvents.NewDonationAddress {
|
|
vars.DonationAddress = evt.NewDonationAddress
|
|
varsUpdate = true
|
|
}
|
|
for _, evt := range auctionEvents.NewBootCoordinator {
|
|
vars.BootCoordinator = evt.NewBootCoordinator
|
|
varsUpdate = true
|
|
}
|
|
for _, evt := range auctionEvents.NewOpenAuctionSlots {
|
|
vars.OpenAuctionSlots = evt.NewOpenAuctionSlots
|
|
varsUpdate = true
|
|
}
|
|
for _, evt := range auctionEvents.NewAllocationRatio {
|
|
vars.AllocationRatio = evt.NewAllocationRatio
|
|
varsUpdate = true
|
|
}
|
|
for _, evt := range auctionEvents.NewDefaultSlotSetBid {
|
|
if evt.SlotSet > 6 { //nolint:gomnd
|
|
return nil, fmt.Errorf("unexpected SlotSet in "+
|
|
"auctionEvents.NewDefaultSlotSetBid: %v", evt.SlotSet)
|
|
}
|
|
vars.DefaultSlotSetBid[evt.SlotSet] = evt.NewInitialMinBid
|
|
varsUpdate = true
|
|
}
|
|
|
|
// NOTE: We ignore NewForgeAllocated
|
|
// NOTE: We ignore NewForge because we're already tracking ForgeBatch event from Rollup
|
|
// NOTE: We ignore HEZClaimed
|
|
|
|
if varsUpdate {
|
|
auctionData.Vars = &vars
|
|
}
|
|
|
|
return &auctionData, nil
|
|
}
|
|
|
|
// wdelayerSync gets information from the Withdrawal Delayer Contract
|
|
func (s *Synchronizer) wdelayerSync(ethBlock *common.Block) (*common.WDelayerData, error) {
|
|
// blockNum := ethBlock.EthBlockNum
|
|
|
|
// TODO: Parse events to generate varialbes once ethClient.WDelayerEventsByBlock is implemented
|
|
|
|
wDelayerData := common.NewWDelayerData()
|
|
|
|
return &wDelayerData, nil
|
|
}
|
|
|
|
func getL1UserTx(eventsL1UserTx []eth.RollupEventL1UserTx, blockNum int64) ([]common.L1Tx, error) {
|
|
l1Txs := make([]common.L1Tx, len(eventsL1UserTx))
|
|
for i := range eventsL1UserTx {
|
|
eventsL1UserTx[i].L1UserTx.EthBlockNum = blockNum
|
|
// Check validity of L1UserTx
|
|
l1Tx, err := common.NewL1Tx(&eventsL1UserTx[i].L1UserTx)
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
l1Txs[i] = *l1Tx
|
|
}
|
|
return l1Txs, nil
|
|
}
|