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package coordinator
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import (
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"context"
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"fmt"
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"math/big"
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"time"
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"github.com/ethereum/go-ethereum"
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"github.com/ethereum/go-ethereum/accounts"
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"github.com/ethereum/go-ethereum/accounts/abi/bind"
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"github.com/ethereum/go-ethereum/core/types"
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"github.com/hermeznetwork/hermez-node/common"
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"github.com/hermeznetwork/hermez-node/db/l2db"
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"github.com/hermeznetwork/hermez-node/eth"
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"github.com/hermeznetwork/hermez-node/log"
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"github.com/hermeznetwork/hermez-node/synchronizer"
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"github.com/hermeznetwork/tracerr"
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)
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// TxManager handles everything related to ethereum transactions: It makes the
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// call to forge, waits for transaction confirmation, and keeps checking them
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// until a number of confirmed blocks have passed.
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type TxManager struct {
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cfg Config
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ethClient eth.ClientInterface
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l2DB *l2db.L2DB // Used only to mark forged txs as forged in the L2DB
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coord *Coordinator // Used only to send messages to stop the pipeline
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batchCh chan *BatchInfo
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chainID *big.Int
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account accounts.Account
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consts synchronizer.SCConsts
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stats synchronizer.Stats
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vars synchronizer.SCVariables
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statsVarsCh chan statsVars
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queue []*BatchInfo
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// lastSuccessBatch stores the last BatchNum that who's forge call was confirmed
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lastSuccessBatch common.BatchNum
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lastPendingBatch common.BatchNum
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lastSuccessNonce uint64
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lastPendingNonce uint64
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}
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// NewTxManager creates a new TxManager
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func NewTxManager(ctx context.Context, cfg *Config, ethClient eth.ClientInterface, l2DB *l2db.L2DB,
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coord *Coordinator, scConsts *synchronizer.SCConsts, initSCVars *synchronizer.SCVariables) (*TxManager, error) {
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chainID, err := ethClient.EthChainID()
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if err != nil {
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return nil, tracerr.Wrap(err)
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}
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address, err := ethClient.EthAddress()
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if err != nil {
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return nil, tracerr.Wrap(err)
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}
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lastSuccessNonce, err := ethClient.EthNonceAt(ctx, *address, nil)
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if err != nil {
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return nil, err
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}
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lastPendingNonce, err := ethClient.EthPendingNonceAt(ctx, *address)
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if err != nil {
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return nil, err
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}
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if lastSuccessNonce != lastPendingNonce {
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return nil, tracerr.Wrap(fmt.Errorf("lastSuccessNonce (%v) != lastPendingNonce (%v)",
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lastSuccessNonce, lastPendingNonce))
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}
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log.Infow("TxManager started", "nonce", lastSuccessNonce)
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return &TxManager{
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cfg: *cfg,
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ethClient: ethClient,
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l2DB: l2DB,
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coord: coord,
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batchCh: make(chan *BatchInfo, queueLen),
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statsVarsCh: make(chan statsVars, queueLen),
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account: accounts.Account{
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Address: *address,
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},
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chainID: chainID,
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consts: *scConsts,
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vars: *initSCVars,
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lastSuccessNonce: lastSuccessNonce,
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lastPendingNonce: lastPendingNonce,
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}, nil
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}
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// AddBatch is a thread safe method to pass a new batch TxManager to be sent to
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// the smart contract via the forge call
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func (t *TxManager) AddBatch(ctx context.Context, batchInfo *BatchInfo) {
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select {
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case t.batchCh <- batchInfo:
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case <-ctx.Done():
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}
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}
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// SetSyncStatsVars is a thread safe method to sets the synchronizer Stats
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func (t *TxManager) SetSyncStatsVars(ctx context.Context, stats *synchronizer.Stats, vars *synchronizer.SCVariablesPtr) {
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select {
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case t.statsVarsCh <- statsVars{Stats: *stats, Vars: *vars}:
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case <-ctx.Done():
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}
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}
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func (t *TxManager) syncSCVars(vars synchronizer.SCVariablesPtr) {
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if vars.Rollup != nil {
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t.vars.Rollup = *vars.Rollup
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}
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if vars.Auction != nil {
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t.vars.Auction = *vars.Auction
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}
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if vars.WDelayer != nil {
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t.vars.WDelayer = *vars.WDelayer
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}
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}
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// NewAuth generates a new auth object for an ethereum transaction
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func (t *TxManager) NewAuth(ctx context.Context) (*bind.TransactOpts, error) {
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gasPrice, err := t.ethClient.EthSuggestGasPrice(ctx)
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if err != nil {
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return nil, tracerr.Wrap(err)
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}
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inc := new(big.Int).Set(gasPrice)
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const gasPriceDiv = 100
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inc.Div(inc, new(big.Int).SetUint64(gasPriceDiv))
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gasPrice.Add(gasPrice, inc)
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// log.Debugw("TxManager: transaction metadata", "gasPrice", gasPrice)
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auth, err := bind.NewKeyStoreTransactorWithChainID(t.ethClient.EthKeyStore(), t.account, t.chainID)
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if err != nil {
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return nil, tracerr.Wrap(err)
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}
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auth.Value = big.NewInt(0) // in wei
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// TODO: Calculate GasLimit based on the contents of the ForgeBatchArgs
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auth.GasLimit = 1000000
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auth.GasPrice = gasPrice
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auth.Nonce = nil
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return auth, nil
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}
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func (t *TxManager) sendRollupForgeBatch(ctx context.Context, batchInfo *BatchInfo) error {
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// TODO: Check if we can forge in the next blockNum, abort if we can't
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batchInfo.Debug.Status = StatusSent
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batchInfo.Debug.SendBlockNum = t.stats.Eth.LastBlock.Num + 1
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batchInfo.Debug.SendTimestamp = time.Now()
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batchInfo.Debug.StartToSendDelay = batchInfo.Debug.SendTimestamp.Sub(
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batchInfo.Debug.StartTimestamp).Seconds()
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var ethTx *types.Transaction
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var err error
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auth, err := t.NewAuth(ctx)
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if err != nil {
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return tracerr.Wrap(err)
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}
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auth.Nonce = big.NewInt(int64(t.lastPendingNonce))
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t.lastPendingNonce++
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for attempt := 0; attempt < t.cfg.EthClientAttempts; attempt++ {
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ethTx, err = t.ethClient.RollupForgeBatch(batchInfo.ForgeBatchArgs, auth)
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if err != nil {
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// if strings.Contains(err.Error(), common.AuctionErrMsgCannotForge) {
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// log.Errorw("TxManager ethClient.RollupForgeBatch", "err", err,
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// "block", t.stats.Eth.LastBlock.Num+1)
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// return tracerr.Wrap(err)
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// }
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log.Errorw("TxManager ethClient.RollupForgeBatch",
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"attempt", attempt, "err", err, "block", t.stats.Eth.LastBlock.Num+1,
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"batchNum", batchInfo.BatchNum)
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} else {
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break
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}
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select {
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case <-ctx.Done():
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return tracerr.Wrap(common.ErrDone)
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case <-time.After(t.cfg.EthClientAttemptsDelay):
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}
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}
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if err != nil {
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return tracerr.Wrap(fmt.Errorf("reached max attempts for ethClient.RollupForgeBatch: %w", err))
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}
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batchInfo.EthTx = ethTx
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log.Infow("TxManager ethClient.RollupForgeBatch", "batch", batchInfo.BatchNum, "tx", ethTx.Hash().Hex())
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t.cfg.debugBatchStore(batchInfo)
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t.lastPendingBatch = batchInfo.BatchNum
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if err := t.l2DB.DoneForging(common.TxIDsFromL2Txs(batchInfo.L2Txs), batchInfo.BatchNum); err != nil {
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return tracerr.Wrap(err)
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}
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return nil
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}
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// checkEthTransactionReceipt takes the txHash from the BatchInfo and stores
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// the corresponding receipt if found
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func (t *TxManager) checkEthTransactionReceipt(ctx context.Context, batchInfo *BatchInfo) error {
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txHash := batchInfo.EthTx.Hash()
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var receipt *types.Receipt
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var err error
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for attempt := 0; attempt < t.cfg.EthClientAttempts; attempt++ {
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receipt, err = t.ethClient.EthTransactionReceipt(ctx, txHash)
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if ctx.Err() != nil {
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continue
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} else if tracerr.Unwrap(err) == ethereum.NotFound {
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err = nil
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break
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} else if err != nil {
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log.Errorw("TxManager ethClient.EthTransactionReceipt",
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"attempt", attempt, "err", err)
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} else {
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break
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}
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select {
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case <-ctx.Done():
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return tracerr.Wrap(common.ErrDone)
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case <-time.After(t.cfg.EthClientAttemptsDelay):
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}
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}
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if err != nil {
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return tracerr.Wrap(fmt.Errorf("reached max attempts for ethClient.EthTransactionReceipt: %w", err))
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}
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batchInfo.Receipt = receipt
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t.cfg.debugBatchStore(batchInfo)
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return nil
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}
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func (t *TxManager) handleReceipt(ctx context.Context, batchInfo *BatchInfo) (*int64, error) {
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receipt := batchInfo.Receipt
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if receipt != nil {
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if receipt.Status == types.ReceiptStatusFailed {
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batchInfo.Debug.Status = StatusFailed
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t.cfg.debugBatchStore(batchInfo)
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_, err := t.ethClient.EthCall(ctx, batchInfo.EthTx, receipt.BlockNumber)
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log.Warnw("TxManager receipt status is failed", "tx", receipt.TxHash.Hex(),
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"batch", batchInfo.BatchNum, "block", receipt.BlockNumber.Int64(),
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"err", err)
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return nil, tracerr.Wrap(fmt.Errorf(
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"ethereum transaction receipt status is failed: %w", err))
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} else if receipt.Status == types.ReceiptStatusSuccessful {
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batchInfo.Debug.Status = StatusMined
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batchInfo.Debug.MineBlockNum = receipt.BlockNumber.Int64()
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batchInfo.Debug.StartToMineBlocksDelay = batchInfo.Debug.MineBlockNum -
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batchInfo.Debug.StartBlockNum
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t.cfg.debugBatchStore(batchInfo)
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if batchInfo.BatchNum > t.lastSuccessBatch {
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t.lastSuccessBatch = batchInfo.BatchNum
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}
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confirm := t.stats.Eth.LastBlock.Num - receipt.BlockNumber.Int64()
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return &confirm, nil
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}
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}
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return nil, nil
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}
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// Run the TxManager
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func (t *TxManager) Run(ctx context.Context) {
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next := 0
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waitDuration := longWaitDuration
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var statsVars statsVars
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select {
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case statsVars = <-t.statsVarsCh:
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case <-ctx.Done():
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}
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t.stats = statsVars.Stats
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t.syncSCVars(statsVars.Vars)
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log.Infow("TxManager: received initial statsVars",
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"block", t.stats.Eth.LastBlock.Num, "batch", t.stats.Eth.LastBatch)
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for {
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select {
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case <-ctx.Done():
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log.Info("TxManager done")
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return
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case statsVars := <-t.statsVarsCh:
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t.stats = statsVars.Stats
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t.syncSCVars(statsVars.Vars)
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case batchInfo := <-t.batchCh:
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if err := t.sendRollupForgeBatch(ctx, batchInfo); ctx.Err() != nil {
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continue
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} else if err != nil {
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// If we reach here it's because our ethNode has
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// been unable to send the transaction to
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// ethereum. This could be due to the ethNode
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// failure, or an invalid transaction (that
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// can't be mined)
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t.coord.SendMsg(ctx, MsgStopPipeline{Reason: fmt.Sprintf("forgeBatch send: %v", err)})
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continue
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}
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t.queue = append(t.queue, batchInfo)
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waitDuration = t.cfg.TxManagerCheckInterval
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case <-time.After(waitDuration):
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if len(t.queue) == 0 {
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waitDuration = longWaitDuration
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continue
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}
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current := next
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next = (current + 1) % len(t.queue)
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batchInfo := t.queue[current]
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if err := t.checkEthTransactionReceipt(ctx, batchInfo); ctx.Err() != nil {
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continue
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} else if err != nil { //nolint:staticcheck
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// Our ethNode is giving an error different
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// than "not found" when getting the receipt
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// for the transaction, so we can't figure out
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// if it was not mined, mined and succesfull or
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// mined and failed. This could be due to the
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// ethNode failure.
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t.coord.SendMsg(ctx, MsgStopPipeline{Reason: fmt.Sprintf("forgeBatch receipt: %v", err)})
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}
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confirm, err := t.handleReceipt(ctx, batchInfo)
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if ctx.Err() != nil {
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continue
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} else if err != nil { //nolint:staticcheck
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// Transaction was rejected
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t.queue = append(t.queue[:current], t.queue[current+1:]...)
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if len(t.queue) == 0 {
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next = 0
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} else {
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next = current % len(t.queue)
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}
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t.coord.SendMsg(ctx, MsgStopPipeline{Reason: fmt.Sprintf("forgeBatch reject: %v", err)})
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}
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if confirm != nil && *confirm >= t.cfg.ConfirmBlocks {
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log.Debugw("TxManager tx for RollupForgeBatch confirmed",
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"batch", batchInfo.BatchNum)
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t.queue = append(t.queue[:current], t.queue[current+1:]...)
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if len(t.queue) == 0 {
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next = 0
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} else {
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next = current % len(t.queue)
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}
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}
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}
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}
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}
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// nolint reason: this function will be used in the future
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//nolint:unused
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func (t *TxManager) canForge(stats *synchronizer.Stats, blockNum int64) bool {
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return canForge(&t.consts.Auction, &t.vars.Auction,
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&stats.Sync.Auction.CurrentSlot, &stats.Sync.Auction.NextSlot,
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t.cfg.ForgerAddress, blockNum)
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}
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