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package sequencer
import (
"context"
"crypto/ecdsa"
"fmt"
"math/big"
"strings"
"github.com/ethereum-optimism/optimism/go/batch-submitter/bindings/ctc"
"github.com/ethereum-optimism/optimism/go/batch-submitter/drivers"
"github.com/ethereum-optimism/optimism/go/batch-submitter/metrics"
"github.com/ethereum-optimism/optimism/go/batch-submitter/txmgr"
l2ethclient "github.com/ethereum-optimism/optimism/l2geth/ethclient"
"github.com/ethereum-optimism/optimism/l2geth/params"
"github.com/ethereum/go-ethereum/accounts/abi"
"github.com/ethereum/go-ethereum/accounts/abi/bind"
"github.com/ethereum/go-ethereum/common"
"github.com/ethereum/go-ethereum/core/types"
"github.com/ethereum/go-ethereum/crypto"
"github.com/ethereum/go-ethereum/ethclient"
"github.com/ethereum/go-ethereum/log"
)
const (
appendSequencerBatchMethodName = "appendSequencerBatch"
)
var bigOne = new(big.Int).SetUint64(1)
type Config struct {
Name string
L1Client *ethclient.Client
L2Client *l2ethclient.Client
BlockOffset uint64
MaxTxSize uint64
CTCAddr common.Address
ChainID *big.Int
PrivKey *ecdsa.PrivateKey
}
type Driver struct {
cfg Config
ctcContract *ctc.CanonicalTransactionChain
rawCtcContract *bind.BoundContract
walletAddr common.Address
ctcABI *abi.ABI
metrics *metrics.Metrics
}
func NewDriver(cfg Config) (*Driver, error) {
ctcContract, err := ctc.NewCanonicalTransactionChain(
cfg.CTCAddr, cfg.L1Client,
)
if err != nil {
return nil, err
}
parsed, err := abi.JSON(strings.NewReader(
ctc.CanonicalTransactionChainABI,
))
if err != nil {
return nil, err
}
ctcABI, err := ctc.CanonicalTransactionChainMetaData.GetAbi()
if err != nil {
return nil, err
}
rawCtcContract := bind.NewBoundContract(
cfg.CTCAddr, parsed, cfg.L1Client, cfg.L1Client,
cfg.L1Client,
)
walletAddr := crypto.PubkeyToAddress(cfg.PrivKey.PublicKey)
return &Driver{
cfg: cfg,
ctcContract: ctcContract,
rawCtcContract: rawCtcContract,
walletAddr: walletAddr,
ctcABI: ctcABI,
metrics: metrics.NewMetrics(cfg.Name),
}, nil
}
// Name is an identifier used to prefix logs for a particular service.
func (d *Driver) Name() string {
return d.cfg.Name
}
// WalletAddr is the wallet address used to pay for batch transaction fees.
func (d *Driver) WalletAddr() common.Address {
return d.walletAddr
}
// Metrics returns the subservice telemetry object.
func (d *Driver) Metrics() *metrics.Metrics {
return d.metrics
}
// ClearPendingTx a publishes a transaction at the next available nonce in order
// to clear any transactions in the mempool left over from a prior running
// instance of the batch submitter.
func (d *Driver) ClearPendingTx(
ctx context.Context,
txMgr txmgr.TxManager,
l1Client *ethclient.Client,
) error {
return drivers.ClearPendingTx(
d.cfg.Name, ctx, txMgr, l1Client, d.walletAddr, d.cfg.PrivKey,
d.cfg.ChainID,
)
}
// GetBatchBlockRange returns the start and end L2 block heights that need to be
// processed. Note that the end value is *exclusive*, therefore if the returned
// values are identical nothing needs to be processed.
func (d *Driver) GetBatchBlockRange(
ctx context.Context) (*big.Int, *big.Int, error) {
blockOffset := new(big.Int).SetUint64(d.cfg.BlockOffset)
start, err := d.ctcContract.GetTotalElements(&bind.CallOpts{
Pending: false,
Context: ctx,
})
if err != nil {
return nil, nil, err
}
start.Add(start, blockOffset)
latestHeader, err := d.cfg.L2Client.HeaderByNumber(ctx, nil)
if err != nil {
return nil, nil, err
}
// Add one because end is *exclusive*.
end := new(big.Int).Add(latestHeader.Number, bigOne)
if start.Cmp(end) > 0 {
return nil, nil, fmt.Errorf("invalid range, "+
"end(%v) < start(%v)", end, start)
}
return start, end, nil
}
// CraftBatchTx transforms the L2 blocks between start and end into a batch
// transaction using the given nonce. A dummy gas price is used in the resulting
// transaction to use for size estimation.
//
// NOTE: This method SHOULD NOT publish the resulting transaction.
func (d *Driver) CraftBatchTx(
ctx context.Context,
start, end, nonce *big.Int,
) (*types.Transaction, error) {
name := d.cfg.Name
log.Info(name+" crafting batch tx", "start", start, "end", end,
"nonce", nonce)
var (
batchElements []BatchElement
totalTxSize uint64
)
for i := new(big.Int).Set(start); i.Cmp(end) < 0; i.Add(i, bigOne) {
block, err := d.cfg.L2Client.BlockByNumber(ctx, i)
if err != nil {
return nil, err
}
// For each sequencer transaction, update our running total with the
// size of the transaction.
batchElement := BatchElementFromBlock(block)
if batchElement.IsSequencerTx() {
// Abort once the total size estimate is greater than the maximum
// configured size. This is a conservative estimate, as the total
// calldata size will be greater when batch contexts are included.
// Below this set will be further whittled until the raw call data
// size also adheres to this constraint.
txLen := batchElement.Tx.Size()
if totalTxSize+uint64(TxLenSize+txLen) > d.cfg.MaxTxSize {
break
}
totalTxSize += uint64(TxLenSize + txLen)
}
batchElements = append(batchElements, batchElement)
}
shouldStartAt := start.Uint64()
var pruneCount int
for {
batchParams, err := GenSequencerBatchParams(
shouldStartAt, d.cfg.BlockOffset, batchElements,
)
if err != nil {
return nil, err
}
batchArguments, err := batchParams.Serialize()
if err != nil {
return nil, err
}
appendSequencerBatchID := d.ctcABI.Methods[appendSequencerBatchMethodName].ID
batchCallData := append(appendSequencerBatchID, batchArguments...)
// Continue pruning until calldata size is less than configured max.
if uint64(len(batchCallData)) > d.cfg.MaxTxSize {
oldLen := len(batchElements)
newBatchElementsLen := (oldLen * 9) / 10
batchElements = batchElements[:newBatchElementsLen]
log.Info(name+" pruned batch", "old_num_txs", oldLen, "new_num_txs", newBatchElementsLen)
pruneCount++
continue
}
d.metrics.NumElementsPerBatch.Observe(float64(len(batchElements)))
d.metrics.BatchPruneCount.Set(float64(pruneCount))
log.Info(name+" batch constructed", "num_txs", len(batchElements), "length", len(batchCallData))
opts, err := bind.NewKeyedTransactorWithChainID(
d.cfg.PrivKey, d.cfg.ChainID,
)
if err != nil {
return nil, err
}
opts.Context = ctx
opts.Nonce = nonce
opts.GasPrice = big.NewInt(params.GWei) // dummy
opts.NoSend = true
return d.rawCtcContract.RawTransact(opts, batchCallData)
}
}
// SubmitBatchTx using the passed transaction as a template, signs and publishes
// an otherwise identical transaction after setting the provided gas price. The
// final transaction is returned to the caller.
func (d *Driver) SubmitBatchTx(
ctx context.Context,
tx *types.Transaction,
gasPrice *big.Int,
) (*types.Transaction, error) {
opts, err := bind.NewKeyedTransactorWithChainID(
d.cfg.PrivKey, d.cfg.ChainID,
)
if err != nil {
return nil, err
}
opts.Context = ctx
opts.Nonce = new(big.Int).SetUint64(tx.Nonce())
opts.GasPrice = gasPrice
return d.rawCtcContract.RawTransact(opts, tx.Data())
}