mirror of
https://github.com/arnaucube/hermez-node.git
synced 2026-02-07 03:16:45 +01:00
WIP
This commit is contained in:
@@ -46,7 +46,10 @@ ForgerAddress = "0x05c23b938a85ab26A36E6314a0D02080E9ca6BeD" # Non-Boot Coordina
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# ForgerAddress = "0xb4124ceb3451635dacedd11767f004d8a28c6ee7" # Boot Coordinator
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# ForgerAddressPrivateKey = "0xa8a54b2d8197bc0b19bb8a084031be71835580a01e70a45a13babd16c9bc1563"
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ConfirmBlocks = 10
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L1BatchTimeoutPerc = 0.999
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L1BatchTimeoutPerc = 0.6
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StartSlotBlocksDelay = 2
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ScheduleBatchBlocksAheadCheck = 3
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SendBatchBlocksMarginCheck = 1
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ProofServerPollInterval = "1s"
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ForgeRetryInterval = "500ms"
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SyncRetryInterval = "1s"
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@@ -85,6 +88,7 @@ ReceiptLoopInterval = "500ms"
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CheckLoopInterval = "500ms"
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Attempts = 4
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AttemptsDelay = "500ms"
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TxResendTimeout = "2m"
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CallGasLimit = 300000
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GasPriceDiv = 100
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@@ -51,6 +51,27 @@ type Coordinator struct {
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// L1BatchTimeoutPerc is the portion of the range before the L1Batch
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// timeout that will trigger a schedule to forge an L1Batch
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L1BatchTimeoutPerc float64 `validate:"required"`
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// StartSlotBlocksDelay is the number of blocks of delay to wait before
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// starting the pipeline when we reach a slot in which we can forge.
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StartSlotBlocksDelay int64
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// ScheduleBatchBlocksAheadCheck is the number of blocks ahead in which
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// the forger address is checked to be allowed to forge (appart from
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// checking the next block), used to decide when to stop scheduling new
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// batches (by stopping the pipeline).
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// For example, if we are at block 10 and ScheduleBatchBlocksAheadCheck
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// is 5, eventhough at block 11 we canForge, the pipeline will be
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// stopped if we can't forge at block 15.
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// This value should be the expected number of blocks it takes between
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// scheduling a batch and having it mined.
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ScheduleBatchBlocksAheadCheck int64
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// SendBatchBlocksMarginCheck is the number of margin blocks ahead in
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// which the coordinator is also checked to be allowed to forge, appart
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// from the next block; used to decide when to stop sending batches to
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// the smart contract.
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// For example, if we are at block 10 and SendBatchBlocksMarginCheck is
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// 5, eventhough at block 11 we canForge, the batch will be discarded
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// if we can't forge at block 15.
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SendBatchBlocksMarginCheck int64
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// ProofServerPollInterval is the waiting interval between polling the
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// ProofServer while waiting for a particular status
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ProofServerPollInterval Duration `validate:"required"`
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@@ -112,6 +133,10 @@ type Coordinator struct {
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// AttemptsDelay is delay between attempts do do an eth client
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// RPC call
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AttemptsDelay Duration `validate:"required"`
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// TxResendTimeout is the timeout after which a non-mined
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// ethereum transaction will be resent (reusing the nonce) with
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// a newly calculated gas price
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TxResendTimeout time.Duration `validate:"required"`
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// Keystore is the ethereum keystore where private keys are kept
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Keystore struct {
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// Path to the keystore
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@@ -64,6 +64,9 @@ type Debug struct {
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// StartToSendDelay is the delay between starting a batch and sending
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// it to ethereum, in seconds
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StartToSendDelay float64
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// StartToMineDelay is the delay between starting a batch and having
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// it mined in seconds
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StartToMineDelay float64
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}
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// BatchInfo contans the Batch information
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@@ -83,6 +86,8 @@ type BatchInfo struct {
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ForgeBatchArgs *eth.RollupForgeBatchArgs
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// FeesInfo
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EthTx *types.Transaction
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// SendTimestamp the time of batch sent to ethereum
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SendTimestamp time.Time
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Receipt *types.Receipt
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Debug Debug
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}
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@@ -42,6 +42,29 @@ type Config struct {
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// L1BatchTimeoutPerc is the portion of the range before the L1Batch
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// timeout that will trigger a schedule to forge an L1Batch
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L1BatchTimeoutPerc float64
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// StartSlotBlocksDelay is the number of blocks of delay to wait before
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// starting the pipeline when we reach a slot in which we can forge.
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StartSlotBlocksDelay int64
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// ScheduleBatchBlocksAheadCheck is the number of blocks ahead in which
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// the forger address is checked to be allowed to forge (appart from
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// checking the next block), used to decide when to stop scheduling new
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// batches (by stopping the pipeline).
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// For example, if we are at block 10 and ScheduleBatchBlocksAheadCheck
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// is 5, eventhough at block 11 we canForge, the pipeline will be
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// stopped if we can't forge at block 15.
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// This value should be the expected number of blocks it takes between
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// scheduling a batch and having it mined.
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ScheduleBatchBlocksAheadCheck int64
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// SendBatchBlocksMarginCheck is the number of margin blocks ahead in
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// which the coordinator is also checked to be allowed to forge, appart
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// from the next block; used to decide when to stop sending batches to
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// the smart contract.
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// For example, if we are at block 10 and SendBatchBlocksMarginCheck is
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// 5, eventhough at block 11 we canForge, the batch will be discarded
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// if we can't forge at block 15.
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// This value should be the expected number of blocks it takes between
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// sending a batch and having it mined.
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SendBatchBlocksMarginCheck int64
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// EthClientAttempts is the number of attempts to do an eth client RPC
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// call before giving up
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EthClientAttempts int
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@@ -54,6 +77,10 @@ type Config struct {
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// EthClientAttemptsDelay is delay between attempts do do an eth client
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// RPC call
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EthClientAttemptsDelay time.Duration
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// EthTxResendTimeout is the timeout after which a non-mined ethereum
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// transaction will be resent (reusing the nonce) with a newly
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// calculated gas price
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EthTxResendTimeout time.Duration
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// TxManagerCheckInterval is the waiting interval between receipt
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// checks of ethereum transactions in the TxManager
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TxManagerCheckInterval time.Duration
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@@ -61,6 +88,8 @@ type Config struct {
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// in JSON in every step/update of the pipeline
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DebugBatchPath string
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Purger PurgerCfg
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// VerifierIdx is the index of the verifier contract registered in the
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// smart contract
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VerifierIdx uint8
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TxProcessorConfig txprocessor.Config
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}
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@@ -215,16 +244,20 @@ func (c *Coordinator) SendMsg(ctx context.Context, msg interface{}) {
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}
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}
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func updateSCVars(vars *synchronizer.SCVariables, update synchronizer.SCVariablesPtr) {
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if update.Rollup != nil {
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vars.Rollup = *update.Rollup
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}
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if update.Auction != nil {
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vars.Auction = *update.Auction
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}
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if update.WDelayer != nil {
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vars.WDelayer = *update.WDelayer
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}
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}
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func (c *Coordinator) syncSCVars(vars synchronizer.SCVariablesPtr) {
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if vars.Rollup != nil {
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c.vars.Rollup = *vars.Rollup
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}
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if vars.Auction != nil {
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c.vars.Auction = *vars.Auction
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}
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if vars.WDelayer != nil {
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c.vars.WDelayer = *vars.WDelayer
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}
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updateSCVars(&c.vars, vars)
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}
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func canForge(auctionConstants *common.AuctionConstants, auctionVars *common.AuctionVariables,
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@@ -254,6 +287,12 @@ func canForge(auctionConstants *common.AuctionConstants, auctionVars *common.Auc
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return false
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}
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func (c *Coordinator) canForgeAt(blockNum int64) bool {
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return canForge(&c.consts.Auction, &c.vars.Auction,
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&c.stats.Sync.Auction.CurrentSlot, &c.stats.Sync.Auction.NextSlot,
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c.cfg.ForgerAddress, blockNum)
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}
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func (c *Coordinator) canForge() bool {
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blockNum := c.stats.Eth.LastBlock.Num + 1
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return canForge(&c.consts.Auction, &c.vars.Auction,
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@@ -262,9 +301,18 @@ func (c *Coordinator) canForge() bool {
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}
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func (c *Coordinator) syncStats(ctx context.Context, stats *synchronizer.Stats) error {
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canForge := c.canForge()
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nextBlock := c.stats.Eth.LastBlock.Num + 1
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canForge := c.canForgeAt(nextBlock)
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if c.cfg.ScheduleBatchBlocksAheadCheck != 0 && canForge {
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canForge = c.canForgeAt(nextBlock + c.cfg.ScheduleBatchBlocksAheadCheck)
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}
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if c.pipeline == nil {
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if canForge {
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relativeBlock := c.consts.Auction.RelativeBlock(nextBlock)
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if canForge && relativeBlock < c.cfg.StartSlotBlocksDelay {
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log.Debugw("Coordinator: delaying pipeline start due to "+
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"relativeBlock (%v) < cfg.StartSlotBlocksDelay (%v)",
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relativeBlock, c.cfg.StartSlotBlocksDelay)
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} else if canForge {
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log.Infow("Coordinator: forging state begin", "block",
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stats.Eth.LastBlock.Num+1, "batch", stats.Sync.LastBatch)
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batchNum := common.BatchNum(stats.Sync.LastBatch)
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@@ -122,15 +122,7 @@ func (p *Pipeline) reset(batchNum common.BatchNum,
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}
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func (p *Pipeline) syncSCVars(vars synchronizer.SCVariablesPtr) {
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if vars.Rollup != nil {
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p.vars.Rollup = *vars.Rollup
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}
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if vars.Auction != nil {
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p.vars.Auction = *vars.Auction
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}
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if vars.WDelayer != nil {
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p.vars.WDelayer = *vars.WDelayer
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}
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updateSCVars(&p.vars, vars)
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}
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// handleForgeBatch calls p.forgeBatch to forge the batch and get the zkInputs,
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@@ -41,6 +41,8 @@ type TxManager struct {
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lastPendingBatch common.BatchNum
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lastSuccessNonce uint64
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lastPendingNonce uint64
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lastSentL1BatchBlockNum int64
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}
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// NewTxManager creates a new TxManager
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@@ -105,15 +107,7 @@ func (t *TxManager) SetSyncStatsVars(ctx context.Context, stats *synchronizer.St
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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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updateSCVars(&t.vars, vars)
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}
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// NewAuth generates a new auth object for an ethereum transaction
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@@ -141,13 +135,29 @@ func (t *TxManager) NewAuth(ctx context.Context) (*bind.TransactOpts, error) {
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return auth, nil
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}
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func (t *TxManager) shouldSendRollupForgeBatch(batchInfo *BatchInfo) error {
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nextBlock := t.stats.Eth.LastBlock.Num + 1
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if !t.canForgeAt(nextBlock) {
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return tracerr.Wrap(fmt.Errorf("can't forge in the next block: %v", nextBlock))
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}
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if t.mustL1L2Batch(nextBlock) && !batchInfo.L1Batch {
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return tracerr.Wrap(fmt.Errorf("can't forge non-L1Batch in the next block: %v", nextBlock))
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}
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margin := t.cfg.SendBatchBlocksMarginCheck
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if margin != 0 {
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if !t.canForgeAt(nextBlock + margin) {
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return tracerr.Wrap(fmt.Errorf("can't forge after %v blocks: %v",
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margin, nextBlock))
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}
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if t.mustL1L2Batch(nextBlock+margin) && !batchInfo.L1Batch {
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return tracerr.Wrap(fmt.Errorf("can't forge non-L1Batch after %v blocks: %v",
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margin, nextBlock))
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}
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}
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return 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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@@ -159,11 +169,6 @@ func (t *TxManager) sendRollupForgeBatch(ctx context.Context, batchInfo *BatchIn
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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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@@ -181,8 +186,20 @@ func (t *TxManager) sendRollupForgeBatch(ctx context.Context, batchInfo *BatchIn
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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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now := time.Now()
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batchInfo.SendTimestamp = now
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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 = batchInfo.SendTimestamp
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batchInfo.Debug.StartToSendDelay = batchInfo.Debug.SendTimestamp.Sub(
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batchInfo.Debug.StartTimestamp).Seconds()
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t.cfg.debugBatchStore(batchInfo)
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t.lastPendingBatch = batchInfo.BatchNum
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if batchInfo.L1Batch {
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t.lastSentL1BatchBlockNum = t.stats.Eth.LastBlock.Num + 1
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}
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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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@@ -225,6 +242,9 @@ func (t *TxManager) checkEthTransactionReceipt(ctx context.Context, batchInfo *B
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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 batchInfo.EthTx.Nonce > t.lastSuccessNonce {
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t.lastSuccessNonce = batchInfo.EthTx.Nonce
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}
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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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@@ -232,6 +252,9 @@ func (t *TxManager) handleReceipt(ctx context.Context, batchInfo *BatchInfo) (*i
|
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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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if batchInfo.BatchNum <= t.lastSuccessBatch {
|
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t.lastSuccessBatch = batchInfo.BatchNum - 1
|
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}
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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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@@ -239,6 +262,9 @@ func (t *TxManager) handleReceipt(ctx context.Context, batchInfo *BatchInfo) (*i
|
||||
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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now := time.Now()
|
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batchInfo.Debug.StartToMineDelay = now.Sub(
|
||||
batchInfo.Debug.StartTimestamp).Seconds()
|
||||
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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@@ -250,6 +276,9 @@ func (t *TxManager) handleReceipt(ctx context.Context, batchInfo *BatchInfo) (*i
|
||||
return nil, nil
|
||||
}
|
||||
|
||||
// TODO:
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||||
// - After sending a message: CancelPipeline, stop all consecutive pending Batches (transactions)
|
||||
|
||||
// Run the TxManager
|
||||
func (t *TxManager) Run(ctx context.Context) {
|
||||
next := 0
|
||||
@@ -274,6 +303,13 @@ func (t *TxManager) Run(ctx context.Context) {
|
||||
t.stats = statsVars.Stats
|
||||
t.syncSCVars(statsVars.Vars)
|
||||
case batchInfo := <-t.batchCh:
|
||||
if err := t.shouldSendRollupForgeBatch(batchInfo); err != nil {
|
||||
log.Warnw("TxManager: shouldSend", "err", err,
|
||||
"batch", batchInfo.BatchNum)
|
||||
t.coord.SendMsg(ctx, MsgStopPipeline{
|
||||
Reason: fmt.Sprintf("forgeBatch shouldSend: %v", err)})
|
||||
continue
|
||||
}
|
||||
if err := t.sendRollupForgeBatch(ctx, batchInfo); ctx.Err() != nil {
|
||||
continue
|
||||
} else if err != nil {
|
||||
@@ -282,7 +318,10 @@ func (t *TxManager) Run(ctx context.Context) {
|
||||
// ethereum. This could be due to the ethNode
|
||||
// failure, or an invalid transaction (that
|
||||
// can't be mined)
|
||||
t.coord.SendMsg(ctx, MsgStopPipeline{Reason: fmt.Sprintf("forgeBatch send: %v", err)})
|
||||
log.Warnw("TxManager: forgeBatch send failed", "err", err,
|
||||
"batch", batchInfo.BatchNum)
|
||||
t.coord.SendMsg(ctx, MsgStopPipeline{
|
||||
Reason: fmt.Sprintf("forgeBatch send: %v", err)})
|
||||
continue
|
||||
}
|
||||
t.queue = append(t.queue, batchInfo)
|
||||
@@ -304,7 +343,8 @@ func (t *TxManager) Run(ctx context.Context) {
|
||||
// if it was not mined, mined and succesfull or
|
||||
// mined and failed. This could be due to the
|
||||
// ethNode failure.
|
||||
t.coord.SendMsg(ctx, MsgStopPipeline{Reason: fmt.Sprintf("forgeBatch receipt: %v", err)})
|
||||
t.coord.SendMsg(ctx, MsgStopPipeline{
|
||||
Reason: fmt.Sprintf("forgeBatch receipt: %v", err)})
|
||||
}
|
||||
|
||||
confirm, err := t.handleReceipt(ctx, batchInfo)
|
||||
@@ -312,32 +352,47 @@ func (t *TxManager) Run(ctx context.Context) {
|
||||
continue
|
||||
} else if err != nil { //nolint:staticcheck
|
||||
// Transaction was rejected
|
||||
t.queue = append(t.queue[:current], t.queue[current+1:]...)
|
||||
if len(t.queue) == 0 {
|
||||
next = 0
|
||||
} else {
|
||||
next = current % len(t.queue)
|
||||
next = t.removeFromQueue(current)
|
||||
t.coord.SendMsg(ctx, MsgStopPipeline{
|
||||
Reason: fmt.Sprintf("forgeBatch reject: %v", err)})
|
||||
continue
|
||||
}
|
||||
t.coord.SendMsg(ctx, MsgStopPipeline{Reason: fmt.Sprintf("forgeBatch reject: %v", err)})
|
||||
now := time.Now()
|
||||
if confirm == nil && batchInfo.SendTimestamp > t.cfg.EthTxResendTimeout {
|
||||
log.Infow("TxManager: forgeBatch tx not been mined timeout",
|
||||
"tx", batchInfo.EthTx.Hex(), "batch", batchInfo.BatchNum)
|
||||
// TODO: Resend Tx with same nonce
|
||||
}
|
||||
if confirm != nil && *confirm >= t.cfg.ConfirmBlocks {
|
||||
log.Debugw("TxManager tx for RollupForgeBatch confirmed",
|
||||
"batch", batchInfo.BatchNum)
|
||||
t.queue = append(t.queue[:current], t.queue[current+1:]...)
|
||||
if len(t.queue) == 0 {
|
||||
next = 0
|
||||
} else {
|
||||
next = current % len(t.queue)
|
||||
}
|
||||
log.Debugw("TxManager: forgeBatch tx confirmed",
|
||||
"tx", batchInfo.EthTx.Hex(), "batch", batchInfo.BatchNum)
|
||||
next = t.removeFromQueue(current)
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
// nolint reason: this function will be used in the future
|
||||
//nolint:unused
|
||||
func (t *TxManager) canForge(stats *synchronizer.Stats, blockNum int64) bool {
|
||||
// Removes batchInfo at position from the queue, and returns the next position
|
||||
func (t *TxManager) removeFromQueue(position int) (next int) {
|
||||
t.queue = append(t.queue[:current], t.queue[current+1:]...)
|
||||
if len(t.queue) == 0 {
|
||||
next = 0
|
||||
} else {
|
||||
next = current % len(t.queue)
|
||||
}
|
||||
return next
|
||||
}
|
||||
|
||||
func (t *TxManager) canForgeAt(blockNum int64) bool {
|
||||
return canForge(&t.consts.Auction, &t.vars.Auction,
|
||||
&stats.Sync.Auction.CurrentSlot, &stats.Sync.Auction.NextSlot,
|
||||
&t.stats.Sync.Auction.CurrentSlot, &t.stats.Sync.Auction.NextSlot,
|
||||
t.cfg.ForgerAddress, blockNum)
|
||||
}
|
||||
|
||||
func (t *TxManager) mustL1L2Batch(blockNum int64) bool {
|
||||
lastL1BatchBlockNum := t.lastSentL1BatchBlockNum
|
||||
if t.stats.Sync.LastL1BatchBlock > lastL1BatchBlockNum {
|
||||
lastL1BatchBlockNum = t.stats.Sync.LastL1BatchBlock
|
||||
}
|
||||
return blockNum-lastL1BatchBlockNum >= t.vars.Rollup.ForgeL1L2BatchTimeout-1
|
||||
}
|
||||
|
||||
@@ -492,6 +492,10 @@ func (n *Node) handleNewBlock(ctx context.Context, stats *synchronizer.Stats, va
|
||||
); err != nil {
|
||||
log.Errorw("API.UpdateNetworkInfo", "err", err)
|
||||
}
|
||||
} else {
|
||||
n.nodeAPI.api.UpdateNetworkInfoBlock(
|
||||
stats.Eth.LastBlock, stats.Sync.LastBlock,
|
||||
)
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
Reference in New Issue
Block a user