mirror of
https://github.com/ethereum/go-ethereum.git
synced 2026-07-30 16:43:46 +00:00
225 lines
6.2 KiB
Go
225 lines
6.2 KiB
Go
package fees
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import (
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"bytes"
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"errors"
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"fmt"
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"math/big"
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"github.com/scroll-tech/go-ethereum/common"
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"github.com/scroll-tech/go-ethereum/core/types"
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"github.com/scroll-tech/go-ethereum/crypto"
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"github.com/scroll-tech/go-ethereum/params"
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"github.com/scroll-tech/go-ethereum/rollup/rcfg"
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)
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var (
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// txExtraDataBytes is the number of bytes that we commit to L1 in addition
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// to the RLP-encoded signed transaction. Note that these are all assumed
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// to be non-zero.
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// - tx length prefix: 4 bytes
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txExtraDataBytes = uint64(4)
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)
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// Message represents the interface of a message.
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// It should be a subset of the methods found on
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// types.Message
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type Message interface {
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From() common.Address
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To() *common.Address
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GasPrice() *big.Int
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Gas() uint64
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GasFeeCap() *big.Int
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GasTipCap() *big.Int
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Value() *big.Int
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Nonce() uint64
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Data() []byte
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AccessList() types.AccessList
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IsL1MessageTx() bool
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}
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// StateDB represents the StateDB interface
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// required to compute the L1 fee
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type StateDB interface {
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GetState(common.Address, common.Hash) common.Hash
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GetBalance(addr common.Address) *big.Int
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}
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func EstimateL1DataFeeForMessage(msg Message, baseFee, chainID *big.Int, signer types.Signer, state StateDB) (*big.Int, error) {
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if msg.IsL1MessageTx() {
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return big.NewInt(0), nil
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}
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unsigned := asUnsignedTx(msg, baseFee, chainID)
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// with v=1
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tx, err := unsigned.WithSignature(signer, append(bytes.Repeat([]byte{0xff}, crypto.SignatureLength-1), 0x01))
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if err != nil {
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return nil, err
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}
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raw, err := rlpEncode(tx)
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if err != nil {
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return nil, err
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}
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l1BaseFee, overhead, scalar := readGPOStorageSlots(rcfg.L1GasPriceOracleAddress, state)
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l1DataFee := calculateEncodedL1DataFee(raw, overhead, l1BaseFee, scalar)
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return l1DataFee, nil
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}
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// asUnsignedTx turns a Message into a types.Transaction
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func asUnsignedTx(msg Message, baseFee, chainID *big.Int) *types.Transaction {
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if baseFee == nil {
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if msg.AccessList() == nil {
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return asUnsignedLegacyTx(msg)
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}
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return asUnsignedAccessListTx(msg, chainID)
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}
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return asUnsignedDynamicTx(msg, chainID)
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}
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func asUnsignedLegacyTx(msg Message) *types.Transaction {
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return types.NewTx(&types.LegacyTx{
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Nonce: msg.Nonce(),
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To: msg.To(),
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Value: msg.Value(),
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Gas: msg.Gas(),
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GasPrice: msg.GasPrice(),
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Data: msg.Data(),
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})
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}
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func asUnsignedAccessListTx(msg Message, chainID *big.Int) *types.Transaction {
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return types.NewTx(&types.AccessListTx{
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Nonce: msg.Nonce(),
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To: msg.To(),
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Value: msg.Value(),
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Gas: msg.Gas(),
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GasPrice: msg.GasPrice(),
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Data: msg.Data(),
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AccessList: msg.AccessList(),
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ChainID: chainID,
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})
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}
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func asUnsignedDynamicTx(msg Message, chainID *big.Int) *types.Transaction {
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return types.NewTx(&types.DynamicFeeTx{
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Nonce: msg.Nonce(),
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To: msg.To(),
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Value: msg.Value(),
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Gas: msg.Gas(),
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GasFeeCap: msg.GasFeeCap(),
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GasTipCap: msg.GasTipCap(),
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Data: msg.Data(),
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AccessList: msg.AccessList(),
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ChainID: chainID,
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})
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}
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// rlpEncode RLP encodes the transaction into bytes
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func rlpEncode(tx *types.Transaction) ([]byte, error) {
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raw := new(bytes.Buffer)
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if err := tx.EncodeRLP(raw); err != nil {
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return nil, err
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}
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return raw.Bytes(), nil
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}
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func readGPOStorageSlots(addr common.Address, state StateDB) (*big.Int, *big.Int, *big.Int) {
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l1BaseFee := state.GetState(addr, rcfg.L1BaseFeeSlot)
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overhead := state.GetState(addr, rcfg.OverheadSlot)
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scalar := state.GetState(addr, rcfg.ScalarSlot)
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return l1BaseFee.Big(), overhead.Big(), scalar.Big()
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}
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// calculateEncodedL1DataFee computes the L1 fee for an RLP-encoded tx
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func calculateEncodedL1DataFee(data []byte, overhead, l1GasPrice *big.Int, scalar *big.Int) *big.Int {
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l1GasUsed := CalculateL1GasUsed(data, overhead)
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l1DataFee := new(big.Int).Mul(l1GasUsed, l1GasPrice)
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return mulAndScale(l1DataFee, scalar, rcfg.Precision)
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}
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// CalculateL1GasUsed computes the L1 gas used based on the calldata and
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// constant sized overhead. The overhead can be decreased as the cost of the
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// batch submission goes down via contract optimizations. This will not overflow
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// under standard network conditions.
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func CalculateL1GasUsed(data []byte, overhead *big.Int) *big.Int {
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zeroes, ones := zeroesAndOnes(data)
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zeroesGas := zeroes * params.TxDataZeroGas
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onesGas := (ones + txExtraDataBytes) * params.TxDataNonZeroGasEIP2028
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l1Gas := new(big.Int).SetUint64(zeroesGas + onesGas)
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return new(big.Int).Add(l1Gas, overhead)
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}
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// zeroesAndOnes counts the number of 0 bytes and non 0 bytes in a byte slice
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func zeroesAndOnes(data []byte) (uint64, uint64) {
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var zeroes uint64
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var ones uint64
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for _, byt := range data {
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if byt == 0 {
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zeroes++
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} else {
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ones++
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}
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}
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return zeroes, ones
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}
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// mulAndScale multiplies a big.Int by a big.Int and then scale it by precision,
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// rounded towards zero
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func mulAndScale(x *big.Int, y *big.Int, precision *big.Int) *big.Int {
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z := new(big.Int).Mul(x, y)
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return new(big.Int).Quo(z, precision)
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}
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func CalculateL1DataFee(tx *types.Transaction, state StateDB) (*big.Int, error) {
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if tx.IsL1MessageTx() {
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return big.NewInt(0), nil
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}
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raw, err := rlpEncode(tx)
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if err != nil {
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return nil, err
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}
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l1BaseFee, overhead, scalar := readGPOStorageSlots(rcfg.L1GasPriceOracleAddress, state)
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l1DataFee := calculateEncodedL1DataFee(raw, overhead, l1BaseFee, scalar)
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return l1DataFee, nil
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}
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func calculateL2Fee(tx *types.Transaction) *big.Int {
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l2GasLimit := new(big.Int).SetUint64(tx.Gas())
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return new(big.Int).Mul(tx.GasPrice(), l2GasLimit)
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}
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func VerifyFee(signer types.Signer, tx *types.Transaction, state StateDB) error {
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from, err := types.Sender(signer, tx)
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if err != nil {
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return errors.New("invalid transaction: invalid sender")
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}
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balance := state.GetBalance(from)
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l2Fee := calculateL2Fee(tx)
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l1DataFee, err := CalculateL1DataFee(tx, state)
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if err != nil {
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return fmt.Errorf("invalid transaction: %w", err)
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}
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cost := tx.Value()
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cost = cost.Add(cost, l2Fee)
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if balance.Cmp(cost) < 0 {
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return errors.New("invalid transaction: insufficient funds for gas * price + value")
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}
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cost = cost.Add(cost, l1DataFee)
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if balance.Cmp(cost) < 0 {
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return errors.New("invalid transaction: insufficient funds for l1fee + gas * price + value")
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}
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// TODO: check GasPrice is in an expected range
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return nil
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}
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