implemented our own bundle simulation and signedByOther

This commit is contained in:
dergarcon 2024-05-27 11:00:50 -06:00
parent d1d9f34e51
commit 2ee9f364ab
6 changed files with 853 additions and 7 deletions

View file

@ -117,7 +117,7 @@ func (b *BlockGen) addTx(bc *BlockChain, vmConfig vm.Config, tx *types.Transacti
b.SetCoinbase(common.Address{})
}
b.statedb.SetTxContext(tx.Hash(), len(b.txs))
receipt, err := ApplyTransaction(b.cm.config, bc, &b.header.Coinbase, b.gasPool, b.statedb, b.header, tx, &b.header.GasUsed, vmConfig)
receipt, _, err := ApplyTransaction(b.cm.config, bc, &b.header.Coinbase, b.gasPool, b.statedb, b.header, tx, &b.header.GasUsed, vmConfig)
if err != nil {
panic(err)
}

View file

@ -167,20 +167,90 @@ func ApplyTransactionWithEVM(msg *Message, config *params.ChainConfig, gp *GasPo
return receipt, err
}
func applyTransaction(msg *Message, config *params.ChainConfig, gp *GasPool, statedb *state.StateDB, blockNumber *big.Int, blockHash common.Hash, tx *types.Transaction, usedGas *uint64, evm *vm.EVM) (*types.Receipt, *ExecutionResult, error) {
// Create a new context to be used in the EVM environment.
txContext := NewEVMTxContext(msg)
evm.Reset(txContext, statedb)
// Apply the transaction to the current state (included in the env).
result, err := ApplyMessage(evm, msg, gp)
if err != nil {
return nil, nil, err
}
// Update the state with pending changes.
var root []byte
if config.IsByzantium(blockNumber) {
statedb.Finalise(true)
} else {
root = statedb.IntermediateRoot(config.IsEIP158(blockNumber)).Bytes()
}
*usedGas += result.UsedGas
// Create a new receipt for the transaction, storing the intermediate root and gas used
// by the tx.
receipt := &types.Receipt{Type: tx.Type(), PostState: root, CumulativeGasUsed: *usedGas}
if result.Failed() {
receipt.Status = types.ReceiptStatusFailed
} else {
receipt.Status = types.ReceiptStatusSuccessful
}
receipt.TxHash = tx.Hash()
receipt.GasUsed = result.UsedGas
if tx.Type() == types.BlobTxType {
receipt.BlobGasUsed = uint64(len(tx.BlobHashes()) * params.BlobTxBlobGasPerBlob)
receipt.BlobGasPrice = evm.Context.BlobBaseFee
}
// If the transaction created a contract, store the creation address in the receipt.
if msg.To == nil {
receipt.ContractAddress = crypto.CreateAddress(evm.TxContext.Origin, tx.Nonce())
}
// Set the receipt logs and create the bloom filter.
receipt.Logs = statedb.GetLogs(tx.Hash(), blockNumber.Uint64(), blockHash)
receipt.Bloom = types.CreateBloom(types.Receipts{receipt})
receipt.BlockHash = blockHash
receipt.BlockNumber = blockNumber
receipt.TransactionIndex = uint(statedb.TxIndex())
return receipt, result, err
}
// ApplyTransaction attempts to apply a transaction to the given state database
// and uses the input parameters for its environment. It returns the receipt
// for the transaction, gas used and an error if the transaction failed,
// indicating the block was invalid.
func ApplyTransaction(config *params.ChainConfig, bc ChainContext, author *common.Address, gp *GasPool, statedb *state.StateDB, header *types.Header, tx *types.Transaction, usedGas *uint64, cfg vm.Config) (*types.Receipt, error) {
func ApplyTransaction(config *params.ChainConfig, bc ChainContext, author *common.Address, gp *GasPool, statedb *state.StateDB, header *types.Header, tx *types.Transaction, usedGas *uint64, cfg vm.Config) (*types.Receipt, *ExecutionResult, error) {
msg, err := TransactionToMessage(tx, types.MakeSigner(config, header.Number, header.Time), header.BaseFee)
if err != nil {
return nil, err
return nil, nil, err
}
// Create a new context to be used in the EVM environment
blockContext := NewEVMBlockContext(header, bc, author)
vmenv := vm.NewEVM(blockContext, vm.TxContext{}, statedb, config, cfg)
return applyTransaction(msg, config, gp, statedb, header.Number, header.Hash(), tx, usedGas, vmenv)
}
// This is a modified version of ApplyTransaction that allows the sender to be
// different from the signer. This is used for the "signed by other" feature.
func ApplyTransactionSignedByOther(config *params.ChainConfig, bc ChainContext, author *common.Address, gp *GasPool, statedb *state.StateDB, header *types.Header, tx *types.Transaction, usedGas *uint64, cfg vm.Config, originalSender common.Address) (*types.Receipt, *ExecutionResult, error) {
msg, err := TransactionToMessage(tx, types.MakeSigner(config, header.Number, header.Time), header.BaseFee)
if err != nil {
return nil, nil, err
}
// Change the sender to the original sender and set the nonce accordingly
msg.From = originalSender
nonce := statedb.GetNonce(originalSender)
msg.Nonce = nonce
// Create a new context to be used in the EVM environment
blockContext := NewEVMBlockContext(header, bc, author)
txContext := NewEVMTxContext(msg)
vmenv := vm.NewEVM(blockContext, txContext, statedb, config, cfg)
return ApplyTransactionWithEVM(msg, config, gp, statedb, header.Number, header.Hash(), tx, usedGas, vmenv)
return applyTransaction(msg, config, gp, statedb, header.Number, header.Hash(), tx, usedGas, vmenv)
}
// ProcessBeaconBlockRoot applies the EIP-4788 system call to the beacon block root

View file

@ -318,7 +318,7 @@ func makeExtraData(extra []byte) []byte {
// APIs return the collection of RPC services the ethereum package offers.
// NOTE, some of these services probably need to be moved to somewhere else.
func (s *Ethereum) APIs() []rpc.API {
apis := ethapi.GetAPIs(s.APIBackend)
apis := ethapi.GetAPIs(s.APIBackend, s.blockchain)
// Append any APIs exposed explicitly by the consensus engine
apis = append(apis, s.engine.APIs(s.BlockChain())...)

View file

@ -24,6 +24,7 @@ import (
"math/big"
"strings"
"time"
"crypto/rand"
"github.com/davecgh/go-spew/spew"
"github.com/holiman/uint256"
@ -51,6 +52,8 @@ import (
"github.com/ethereum/go-ethereum/rlp"
"github.com/ethereum/go-ethereum/rpc"
"github.com/ethereum/go-ethereum/trie"
"golang.org/x/crypto/sha3"
)
// estimateGasErrorRatio is the amount of overestimation eth_estimateGas is
@ -2173,3 +2176,773 @@ func checkTxFee(gasPrice *big.Int, gas uint64, cap float64) error {
}
return nil
}
// SMG additions for ninja
// many changes are from https://github.com/0x2mev/mevexec
// MEVEXEC ADDITIONS
// the following are additional rpc methods added into the execution client for mev searchers
// BlockChainAPI provides an API to access Ethereum blockchain data.
type SearcherAPI struct {
b Backend
chain *core.BlockChain
}
func NewSearcherAPI(b Backend, chain *core.BlockChain) *SearcherAPI {
return &SearcherAPI{b, chain}
}
// CallBundleArgs represents the arguments for a call.
// TODO nick evaluate and maybe get rid of CreateAccessList, StateOverrides, MixDigest
type CallBundleArgs struct {
Txs []hexutil.Bytes `json:"txs"`
BlockNumber rpc.BlockNumber `json:"blockNumber"`
StateBlockNumberOrHash rpc.BlockNumberOrHash `json:"stateBlockNumber"`
Coinbase *string `json:"coinbase"`
Timestamp *uint64 `json:"timestamp"`
Timeout *int64 `json:"timeout"`
GasLimit *uint64 `json:"gasLimit"`
Difficulty *hexutil.Big `json:"difficulty"`
BaseFee *hexutil.Big `json:"baseFee"`
SimulationLogs bool `json:"simulationLogs"`
// CreateAccessList bool `json:"createAccessList"`
StateOverrides *StateOverride `json:"stateOverrides"`
MixDigest *common.Hash `json:"mixDigest"`
}
// CallBundleArgs represents the arguments for a call.
type CallBundleSignedByOther struct {
Txs []hexutil.Bytes `json:"txs"`
TxsSignedByOther []hexutil.Bytes `json:"txsSignedByOther"`
OriginalSenders []common.Address `json:"originalSenders"`
BlockNumber rpc.BlockNumber `json:"blockNumber"`
StateBlockNumberOrHash rpc.BlockNumberOrHash `json:"stateBlockNumber"`
Coinbase *string `json:"coinbase"`
Timestamp *uint64 `json:"timestamp"`
Timeout *int64 `json:"timeout"`
GasLimit *uint64 `json:"gasLimit"`
Difficulty *hexutil.Big `json:"difficulty"`
BaseFee *hexutil.Big `json:"baseFee"`
SimulationLogs bool `json:"simulationLogs"`
CreateAccessList bool `json:"createAccessList"`
StateOverrides *StateOverride `json:"stateOverrides"`
MixDigest *common.Hash `json:"mixDigest"`
}
// CallBundle will simulate a bundle of transactions at the top of a given block
// number with the state of another (or the same) block. This can be used to
// simulate future blocks with the current state, or it can be used to simulate
// a past block.
// The sender is responsible for signing the transactions and using the correct
// nonce and ensuring validity
func (s *SearcherAPI) CallBundle(ctx context.Context, args CallBundleArgs) (map[string]interface{}, error) {
if len(args.Txs) == 0 {
return nil, errors.New("bundle missing txs")
}
if args.BlockNumber == 0 {
return nil, errors.New("bundle missing blockNumber")
}
var txs types.Transactions
for _, encodedTx := range args.Txs {
tx := new(types.Transaction)
if err := tx.UnmarshalBinary(encodedTx); err != nil {
return nil, err
}
log.Debug("Decoded tx", "tx", tx)
txs = append(txs, tx)
}
defer func(start time.Time) { log.Debug("Executing EVM call finished", "runtime", time.Since(start)) }(time.Now())
timeoutMilliSeconds := int64(5000)
if args.Timeout != nil {
timeoutMilliSeconds = *args.Timeout
}
timeout := time.Millisecond * time.Duration(timeoutMilliSeconds)
state, parent, err := s.b.StateAndHeaderByNumberOrHash(ctx, args.StateBlockNumberOrHash)
if state == nil || err != nil {
return nil, err
}
if err := args.StateOverrides.Apply(state); err != nil {
return nil, err
}
blockNumber := big.NewInt(int64(args.BlockNumber))
timestamp := parent.Time + 1
if args.Timestamp != nil {
timestamp = *args.Timestamp
}
coinbase := parent.Coinbase
if args.Coinbase != nil {
coinbase = common.HexToAddress(*args.Coinbase)
}
difficulty := parent.Difficulty
if args.Difficulty != nil {
difficulty = args.Difficulty.ToInt()
}
gasLimit := parent.GasLimit
if args.GasLimit != nil {
gasLimit = *args.GasLimit
}
var baseFee *big.Int
if args.BaseFee != nil {
baseFee = args.BaseFee.ToInt()
} else if s.b.ChainConfig().IsLondon(big.NewInt(args.BlockNumber.Int64())) {
baseFee = eip1559.CalcBaseFee(s.b.ChainConfig(), parent)
}
header := &types.Header{
ParentHash: parent.Hash(),
Number: blockNumber,
GasLimit: gasLimit,
Time: timestamp,
Difficulty: difficulty,
Coinbase: coinbase,
BaseFee: baseFee,
}
// Setup context so it may be cancelled the call has completed
// or, in case of unmetered gas, setup a context with a timeout.
var cancel context.CancelFunc
if timeout > 0 {
ctx, cancel = context.WithTimeout(ctx, timeout)
} else {
ctx, cancel = context.WithCancel(ctx)
}
// Make sure the context is cancelled when the call has completed
// this makes sure resources are cleaned up.
defer cancel()
vmconfig := vm.Config{}
// Setup the gas pool (also for unmetered requests)
// and apply the message.
gp := new(core.GasPool).AddGas(math.MaxUint64)
results := []map[string]interface{}{}
coinbaseBalanceBefore := state.GetBalance(coinbase)
bundleHash := sha3.NewLegacyKeccak256()
signer := types.MakeSigner(s.b.ChainConfig(), blockNumber, header.Time)
var totalGasUsed uint64
gasFees := new(big.Int)
for i, tx := range txs {
coinbaseBalanceBeforeTx := state.GetBalance(coinbase)
state.SetTxContext(tx.Hash(), i)
// for now i do not want to use the access list stuff
// accessListState := state.Copy() // create a copy just in case we use it later for access list creation
receipt, result, err := core.ApplyTransaction(s.b.ChainConfig(), s.chain, &coinbase, gp, state, header, tx, &header.GasUsed, vmconfig)
if err != nil {
return nil, fmt.Errorf("err: %w; txhash %s", err, tx.Hash())
}
txHash := tx.Hash().String()
from, err := types.Sender(signer, tx)
if err != nil {
return nil, fmt.Errorf("err: %w; txhash %s", err, tx.Hash())
}
to := "0x"
if tx.To() != nil {
to = tx.To().String()
}
jsonResult := map[string]interface{}{
"txHash": txHash,
"gasUsed": receipt.GasUsed,
"fromAddress": from.String(),
"toAddress": to,
}
totalGasUsed += receipt.GasUsed
gasPrice, err := tx.EffectiveGasTip(header.BaseFee)
if err != nil {
return nil, fmt.Errorf("err: %w; txhash %s", err, tx.Hash())
}
gasFeesTx := new(big.Int).Mul(big.NewInt(int64(receipt.GasUsed)), gasPrice)
gasFees.Add(gasFees, gasFeesTx)
bundleHash.Write(tx.Hash().Bytes())
if result.Err != nil {
jsonResult["error"] = result.Err.Error()
revert := result.Revert()
if len(revert) > 0 {
jsonResult["revert"] = string(revert)
}
} else {
dst := make([]byte, hex.EncodedLen(len(result.Return())))
hex.Encode(dst, result.Return())
jsonResult["value"] = "0x" + string(dst)
}
// if simulation logs are requested append it to logs
if args.SimulationLogs {
jsonResult["logs"] = receipt.Logs
}
// i want to cut all that access list stuff. i do not think i need it
// // if an access list is requested create and append
// if args.CreateAccessList {
// // ifdk another way to fill all values so this will have to do - x2
// txArgGas := hexutil.Uint64(tx.Gas())
// txArgNonce := hexutil.Uint64(tx.Nonce())
// txArgData := hexutil.Bytes(tx.Data())
// txargs := TransactionArgs{
// From: &from,
// To: tx.To(),
// Gas: &txArgGas,
// Nonce: &txArgNonce,
// Data: &txArgData,
// Value: (*hexutil.Big)(tx.Value()),
// ChainID: (*hexutil.Big)(tx.ChainId()),
// }
// if tx.GasFeeCap().Cmp(big.NewInt(0)) == 0 { // no maxbasefee, set gasprice instead
// txargs.GasPrice = (*hexutil.Big)(tx.GasPrice())
// } else { // otherwise set base and priority fee
// txargs.MaxFeePerGas = (*hexutil.Big)(tx.GasFeeCap())
// txargs.MaxPriorityFeePerGas = (*hexutil.Big)(tx.GasTipCap())
// }
// acl, gasUsed, vmerr, err := AccessListOnState(ctx, s.b, header, accessListState, txargs)
// if err == nil {
// if gasUsed != receipt.GasUsed {
// log.Debug("Gas used in receipt differ from accesslist", "receipt", receipt.GasUsed, "acl", gasUsed) // weird bug but it works
// }
// if vmerr != nil {
// log.Info("CallBundle accesslist creation encountered vmerr", "vmerr", vmerr)
// }
// jsonResult["accessList"] = acl
// } else {
// log.Info("CallBundle accesslist creation encountered err", "err", err)
// jsonResult["accessList"] = acl //
// } // return the empty accesslist either way
// }
coinbaseDiffTx := new(uint256.Int).Sub(state.GetBalance(coinbase), coinbaseBalanceBeforeTx)
jsonResult["coinbaseDiff"] = coinbaseDiffTx.String()
jsonResult["gasFees"] = gasFeesTx.String()
jsonResult["ethSentToCoinbase"] = new(uint256.Int).Sub(coinbaseDiffTx, uint256.MustFromBig(gasFeesTx)).String()
jsonResult["gasPrice"] = new(uint256.Int).Div(coinbaseDiffTx, uint256.NewInt(receipt.GasUsed)).String()
jsonResult["gasUsed"] = receipt.GasUsed
results = append(results, jsonResult)
}
ret := map[string]interface{}{}
ret["results"] = results
coinbaseDiff := new(uint256.Int).Sub(state.GetBalance(coinbase), coinbaseBalanceBefore)
ret["coinbaseDiff"] = coinbaseDiff.String()
ret["gasFees"] = gasFees.String()
ret["ethSentToCoinbase"] = new(uint256.Int).Sub(coinbaseDiff, uint256.MustFromBig(gasFees)).String()
ret["bundleGasPrice"] = new(uint256.Int).Div(coinbaseDiff, uint256.NewInt(totalGasUsed)).String()
ret["totalGasUsed"] = totalGasUsed
ret["stateBlockNumber"] = parent.Number.Int64()
ret["bundleHash"] = "0x" + common.Bytes2Hex(bundleHash.Sum(nil))
return ret, nil
}
// This is a modified version of the function CallBundle
// It is modified to allow for transactions to be signed by different addresses than the one that is sending it.
func (s *SearcherAPI) CallBundleSignedByOther(ctx context.Context, args CallBundleSignedByOther) (map[string]interface{}, error) {
// if len(args.Txs) == 0 {
// return nil, errors.New("bundle missing txs")
// }
if args.BlockNumber == 0 {
return nil, errors.New("bundle missing blockNumber")
}
var txsSignedByOther types.Transactions
var txs types.Transactions
for _, encodedTx := range args.TxsSignedByOther {
tx := new(types.Transaction)
if err := tx.UnmarshalBinary(encodedTx); err != nil {
return nil, err
}
txsSignedByOther = append(txsSignedByOther, tx)
}
for _, encodedTx := range args.Txs {
tx := new(types.Transaction)
if err := tx.UnmarshalBinary(encodedTx); err != nil {
return nil, err
}
txs = append(txs, tx)
}
defer func(start time.Time) { log.Debug("Executing EVM call finished", "runtime", time.Since(start)) }(time.Now())
timeoutMilliSeconds := int64(5000)
if args.Timeout != nil {
timeoutMilliSeconds = *args.Timeout
}
timeout := time.Millisecond * time.Duration(timeoutMilliSeconds)
state, parent, err := s.b.StateAndHeaderByNumberOrHash(ctx, args.StateBlockNumberOrHash)
if state == nil || err != nil {
return nil, err
}
if err := args.StateOverrides.Apply(state); err != nil {
return nil, err
}
blockNumber := big.NewInt(int64(args.BlockNumber))
timestamp := parent.Time + 12
if args.Timestamp != nil {
timestamp = *args.Timestamp
}
coinbase := parent.Coinbase
if args.Coinbase != nil {
coinbase = common.HexToAddress(*args.Coinbase)
}
difficulty := parent.Difficulty
if args.Difficulty != nil {
difficulty = args.Difficulty.ToInt()
}
gasLimit := parent.GasLimit
if args.GasLimit != nil {
gasLimit = *args.GasLimit
}
var baseFee *big.Int
if args.BaseFee != nil {
baseFee = args.BaseFee.ToInt()
} else if s.b.ChainConfig().IsLondon(big.NewInt(args.BlockNumber.Int64())) {
baseFee = eip1559.CalcBaseFee(s.b.ChainConfig(), parent)
}
mixDigest := parent.MixDigest
if args.MixDigest != nil {
mixDigest = *args.MixDigest
}
header := &types.Header{
ParentHash: parent.Hash(),
Number: blockNumber,
GasLimit: gasLimit,
Time: timestamp,
Difficulty: difficulty,
Coinbase: coinbase,
BaseFee: baseFee,
MixDigest: mixDigest,
}
// Setup context so it may be cancelled the call has completed
// or, in case of unmetered gas, setup a context with a timeout.
var cancel context.CancelFunc
if timeout > 0 {
ctx, cancel = context.WithTimeout(ctx, timeout)
} else {
ctx, cancel = context.WithCancel(ctx)
}
// Make sure the context is cancelled when the call has completed
// this makes sure resources are cleaned up.
defer cancel()
vmconfig := vm.Config{}
// Setup the gas pool (also for unmetered requests)
// and apply the message.
gp := new(core.GasPool).AddGas(math.MaxUint64)
results := []map[string]interface{}{}
coinbaseBalanceBefore := state.GetBalance(coinbase)
bundleHash := sha3.NewLegacyKeccak256()
signer := types.MakeSigner(s.b.ChainConfig(), header.Number, header.Time)
var totalGasUsed uint64
gasFees := new(big.Int)
for i, tx := range txsSignedByOther {
coinbaseBalanceBeforeTx := state.GetBalance(coinbase)
state.SetTxContext(tx.Hash(), i)
// accessListState := state.Copy() // create a copy just in case we use it later for access list creation
receipt, result, err := core.ApplyTransactionSignedByOther(s.b.ChainConfig(), s.chain, &coinbase, gp, state, header, tx, &header.GasUsed, vmconfig, args.OriginalSenders[i])
if err != nil {
return nil, fmt.Errorf("err: %w; txhash %s", err, tx.Hash())
}
txHash := tx.Hash().String()
from, err := types.Sender(signer, tx)
if err != nil {
return nil, fmt.Errorf("err: %w; txhash %s", err, tx.Hash())
}
to := "0x"
if tx.To() != nil {
to = tx.To().String()
}
jsonResult := map[string]interface{}{
"txHash": txHash,
"gasUsed": receipt.GasUsed,
"fromAddress": from.String(),
"toAddress": to,
}
totalGasUsed += receipt.GasUsed
gasPrice, err := tx.EffectiveGasTip(header.BaseFee)
if err != nil {
return nil, fmt.Errorf("err: %w; txhash %s", err, tx.Hash())
}
gasFeesTx := new(big.Int).Mul(big.NewInt(int64(receipt.GasUsed)), gasPrice)
gasFees.Add(gasFees, gasFeesTx)
bundleHash.Write(tx.Hash().Bytes())
if result.Err != nil {
jsonResult["error"] = result.Err.Error()
revert := result.Revert()
if len(revert) > 0 {
jsonResult["revert"] = string(revert)
}
} else {
dst := make([]byte, hex.EncodedLen(len(result.Return())))
hex.Encode(dst, result.Return())
jsonResult["value"] = "0x" + string(dst)
}
// if simulation logs are requested append it to logs
if args.SimulationLogs {
jsonResult["logs"] = receipt.Logs
}
// // if an access list is requested create and append
// if args.CreateAccessList {
// // ifdk another way to fill all values so this will have to do - x2
// txArgGas := hexutil.Uint64(tx.Gas())
// txArgNonce := hexutil.Uint64(tx.Nonce())
// txArgData := hexutil.Bytes(tx.Data())
// txargs := TransactionArgs{
// From: &from,
// To: tx.To(),
// Gas: &txArgGas,
// Nonce: &txArgNonce,
// Data: &txArgData,
// Value: (*hexutil.Big)(tx.Value()),
// ChainID: (*hexutil.Big)(tx.ChainId()),
// }
// if tx.GasFeeCap().Cmp(big.NewInt(0)) == 0 { // no maxbasefee, set gasprice instead
// txargs.GasPrice = (*hexutil.Big)(tx.GasPrice())
// } else { // otherwise set base and priority fee
// txargs.MaxFeePerGas = (*hexutil.Big)(tx.GasFeeCap())
// txargs.MaxPriorityFeePerGas = (*hexutil.Big)(tx.GasTipCap())
// }
// acl, gasUsed, vmerr, err := AccessListOnState(ctx, s.b, header, accessListState, txargs)
// if err == nil {
// if gasUsed != receipt.GasUsed {
// log.Debug("Gas used in receipt differ from accesslist", "receipt", receipt.GasUsed, "acl", gasUsed) // weird bug but it works
// }
// if vmerr != nil {
// log.Info("CallBundle accesslist creation encountered vmerr", "vmerr", vmerr)
// }
// jsonResult["accessList"] = acl
// } else {
// log.Info("CallBundle accesslist creation encountered err", "err", err)
// jsonResult["accessList"] = acl //
// } // return the empty accesslist either way
// }
coinbaseDiffTx := new(uint256.Int).Sub(state.GetBalance(coinbase), coinbaseBalanceBeforeTx)
jsonResult["coinbaseDiff"] = coinbaseDiffTx.String()
jsonResult["gasFees"] = gasFeesTx.String()
jsonResult["ethSentToCoinbase"] = new(uint256.Int).Sub(coinbaseDiffTx, uint256.MustFromBig(gasFeesTx)).String()
jsonResult["gasPrice"] = new(uint256.Int).Div(coinbaseDiffTx, uint256.NewInt(receipt.GasUsed)).String()
jsonResult["gasUsed"] = receipt.GasUsed
results = append(results, jsonResult)
}
for i, tx := range txs {
coinbaseBalanceBeforeTx := state.GetBalance(coinbase)
state.SetTxContext(tx.Hash(), i)
// accessListState := state.Copy() // create a copy just in case we use it later for access list creation
receipt, result, err := core.ApplyTransaction(s.b.ChainConfig(), s.chain, &coinbase, gp, state, header, tx, &header.GasUsed, vmconfig)
if err != nil {
return nil, fmt.Errorf("err: %w; txhash %s", err, tx.Hash())
}
txHash := tx.Hash().String()
from, err := types.Sender(signer, tx)
if err != nil {
return nil, fmt.Errorf("err: %w; txhash %s", err, tx.Hash())
}
to := "0x"
if tx.To() != nil {
to = tx.To().String()
}
jsonResult := map[string]interface{}{
"txHash": txHash,
"gasUsed": receipt.GasUsed,
"fromAddress": from.String(),
"toAddress": to,
}
totalGasUsed += receipt.GasUsed
gasPrice, err := tx.EffectiveGasTip(header.BaseFee)
if err != nil {
return nil, fmt.Errorf("err: %w; txhash %s", err, tx.Hash())
}
gasFeesTx := new(big.Int).Mul(big.NewInt(int64(receipt.GasUsed)), gasPrice)
gasFees.Add(gasFees, gasFeesTx)
bundleHash.Write(tx.Hash().Bytes())
if result.Err != nil {
jsonResult["error"] = result.Err.Error()
revert := result.Revert()
if len(revert) > 0 {
jsonResult["revert"] = string(revert)
}
} else {
dst := make([]byte, hex.EncodedLen(len(result.Return())))
hex.Encode(dst, result.Return())
jsonResult["value"] = "0x" + string(dst)
}
// if simulation logs are requested append it to logs
if args.SimulationLogs {
jsonResult["logs"] = receipt.Logs
}
// // if an access list is requested create and append
// if args.CreateAccessList {
// // ifdk another way to fill all values so this will have to do - x2
// txArgGas := hexutil.Uint64(tx.Gas())
// txArgNonce := hexutil.Uint64(tx.Nonce())
// txArgData := hexutil.Bytes(tx.Data())
// txargs := TransactionArgs{
// From: &from,
// To: tx.To(),
// Gas: &txArgGas,
// Nonce: &txArgNonce,
// Data: &txArgData,
// Value: (*hexutil.Big)(tx.Value()),
// ChainID: (*hexutil.Big)(tx.ChainId()),
// }
// if tx.GasFeeCap().Cmp(big.NewInt(0)) == 0 { // no maxbasefee, set gasprice instead
// txargs.GasPrice = (*hexutil.Big)(tx.GasPrice())
// } else { // otherwise set base and priority fee
// txargs.MaxFeePerGas = (*hexutil.Big)(tx.GasFeeCap())
// txargs.MaxPriorityFeePerGas = (*hexutil.Big)(tx.GasTipCap())
// }
// acl, gasUsed, vmerr, err := AccessListOnState(ctx, s.b, header, accessListState, txargs)
// if err == nil {
// if gasUsed != receipt.GasUsed {
// log.Debug("Gas used in receipt differ from accesslist", "receipt", receipt.GasUsed, "acl", gasUsed) // weird bug but it works
// }
// if vmerr != nil {
// log.Info("CallBundle accesslist creation encountered vmerr", "vmerr", vmerr)
// }
// jsonResult["accessList"] = acl
// } else {
// log.Info("CallBundle accesslist creation encountered err", "err", err)
// jsonResult["accessList"] = acl //
// } // return the empty accesslist either way
// }
coinbaseDiffTx := new(uint256.Int).Sub(state.GetBalance(coinbase), coinbaseBalanceBeforeTx)
jsonResult["coinbaseDiff"] = coinbaseDiffTx.String()
jsonResult["gasFees"] = gasFeesTx.String()
jsonResult["ethSentToCoinbase"] = new(uint256.Int).Sub(coinbaseDiffTx, uint256.MustFromBig(gasFeesTx)).String()
jsonResult["gasPrice"] = new(uint256.Int).Div(coinbaseDiffTx, uint256.NewInt(receipt.GasUsed)).String()
jsonResult["gasUsed"] = receipt.GasUsed
results = append(results, jsonResult)
}
ret := map[string]interface{}{}
ret["results"] = results
coinbaseDiff := new(uint256.Int).Sub(state.GetBalance(coinbase), coinbaseBalanceBefore)
ret["coinbaseDiff"] = coinbaseDiff.String()
ret["gasFees"] = gasFees.String()
ret["ethSentToCoinbase"] = new(uint256.Int).Sub(coinbaseDiff, uint256.MustFromBig(gasFees)).String()
ret["bundleGasPrice"] = new(uint256.Int).Div(coinbaseDiff, uint256.NewInt(totalGasUsed)).String()
ret["totalGasUsed"] = totalGasUsed
ret["stateBlockNumber"] = parent.Number.Int64()
ret["bundleHash"] = "0x" + common.Bytes2Hex(bundleHash.Sum(nil))
return ret, nil
}
// EstimateGasBundleArgs are possible args for eth_estimateGasBundle
type EstimateGasBundleArgs struct {
Txs []TransactionArgs `json:"txs"`
BlockNumber rpc.BlockNumber `json:"blockNumber"`
StateBlockNumberOrHash rpc.BlockNumberOrHash `json:"stateBlockNumber"`
Coinbase *string `json:"coinbase"`
Timestamp *uint64 `json:"timestamp"`
Timeout *int64 `json:"timeout"`
StateOverrides *StateOverride `json:"stateOverrides"`
CreateAccessList bool `json:"createAccessList"`
}
// callbundle, but doesnt require signing
func (s *SearcherAPI) EstimateGasBundle(ctx context.Context, args EstimateGasBundleArgs) (map[string]interface{}, error) {
if len(args.Txs) == 0 {
return nil, errors.New("bundle missing txs")
}
if args.BlockNumber == 0 {
return nil, errors.New("bundle missing blockNumber")
}
timeoutMS := int64(5000)
if args.Timeout != nil {
timeoutMS = *args.Timeout
}
timeout := time.Millisecond * time.Duration(timeoutMS)
state, parent, err := s.b.StateAndHeaderByNumberOrHash(ctx, args.StateBlockNumberOrHash)
if state == nil || err != nil {
return nil, err
}
if err := args.StateOverrides.Apply(state); err != nil {
return nil, err
}
blockNumber := big.NewInt(int64(args.BlockNumber))
timestamp := parent.Time + 1
if args.Timestamp != nil {
timestamp = *args.Timestamp
}
coinbase := parent.Coinbase
if args.Coinbase != nil {
coinbase = common.HexToAddress(*args.Coinbase)
}
header := &types.Header{
ParentHash: parent.Hash(),
Number: blockNumber,
GasLimit: parent.GasLimit,
Time: timestamp,
Difficulty: parent.Difficulty,
Coinbase: coinbase,
BaseFee: parent.BaseFee,
}
// Setup context so it may be cancelled when the call
// has completed or, in case of unmetered gas, setup
// a context with a timeout
var cancel context.CancelFunc
if timeout > 0 {
ctx, cancel = context.WithTimeout(ctx, timeout)
} else {
ctx, cancel = context.WithCancel(ctx)
}
// Make sure the context is cancelled when the call has completed
// This makes sure resources are cleaned up
defer cancel()
// Results
results := []map[string]interface{}{}
// Copy the original db so we don't modify it
statedb := state.Copy()
// Gas pool
gp := new(core.GasPool).AddGas(math.MaxUint64)
// Block context
blockContext := core.NewEVMBlockContext(header, s.chain, &coinbase)
// Feed each of the transactions into the VM ctx
// And try and estimate the gas used
for i, txArgs := range args.Txs {
// Since its a txCall we'll just prepare the
// state with a random hash
var randomHash common.Hash
rand.Read(randomHash[:])
// New random hash since its a call
statedb.SetTxContext(randomHash, i)
// accessListState := statedb.Copy() // create a copy just in case we use it later for access list creation
// Convert tx args to msg to apply state transition
msg := txArgs.ToMessage(header.BaseFee)
// Prepare the hashes
txContext := core.NewEVMTxContext(msg)
// Get EVM Environment
vmenv := vm.NewEVM(blockContext, txContext, statedb, s.b.ChainConfig(), vm.Config{NoBaseFee: true})
// Apply state transition
result, err := core.ApplyMessage(vmenv, msg, gp)
if err != nil {
return nil, err
}
// Modifications are committed to the state
// Only delete empty objects if EIP158/161 (a.k.a Spurious Dragon) is in effect
statedb.Finalise(vmenv.ChainConfig().IsEIP158(blockNumber))
// Append result
jsonResult := map[string]interface{}{
"gasUsed": result.UsedGas,
}
if result.Err != nil {
jsonResult["error"] = result.Err.Error()
revert := result.Revert()
if len(revert) > 0 {
jsonResult["revert"] = string(revert)
}
}
if len(result.ReturnData) > 0 {
jsonResult["data"] = hexutil.Bytes(result.ReturnData)
}
// TODO nick - why are no logs being returned? - we never use this anyways. callBundle already returns gas costs
// if simulation logs are requested append it to logs
// // if an access list is requested create and append
// if args.CreateAccessList {
// // welp guess we're copying these again sigh
// txArgFrom := msg.From
// txArgGas := hexutil.Uint64(msg.GasLimit)
// txArgNonce := hexutil.Uint64(msg.Nonce)
// txArgData := hexutil.Bytes(msg.Data)
// txargs := TransactionArgs{
// From: &txArgFrom,
// To: msg.To,
// Gas: &txArgGas,
// Nonce: &txArgNonce,
// Data: &txArgData,
// ChainID: (*hexutil.Big)(s.chain.Config().ChainID),
// Value: (*hexutil.Big)(msg.Value),
// }
// if msg.GasFeeCap.Cmp(big.NewInt(0)) == 0 { // no maxbasefee, set gasprice instead
// txargs.GasPrice = (*hexutil.Big)(msg.GasPrice)
// } else { // otherwise set base and priority fee
// txargs.MaxFeePerGas = (*hexutil.Big)(msg.GasFeeCap)
// txargs.MaxPriorityFeePerGas = (*hexutil.Big)(msg.GasTipCap)
// }
// acl, _, vmerr, err := AccessListOnState(ctx, s.b, header, accessListState, txargs)
// if err == nil {
// if vmerr != nil {
// log.Info("CallBundle accesslist creation encountered vmerr", "vmerr", vmerr)
// }
// jsonResult["accessList"] = acl
// } else {
// log.Info("CallBundle accesslist creation encountered err", "err", err)
// jsonResult["accessList"] = acl //
// } // return the empty accesslist either way
// }
results = append(results, jsonResult)
}
// Return results
ret := map[string]interface{}{}
ret["results"] = results
return ret, nil
}
// // rpcMarshalCompact uses the generalized output filler, then adds the total difficulty field, which requires
// // a `PublicBlockchainAPI`.
// func (s *SearcherAPI) rpcMarshalCompactHeader(ctx context.Context, h *types.Header) map[string]interface{} {
// return RPCMarshalCompactHeader(h)
// }
// // GetCompactBlocks gets the compact block data for the given block's hash or number
// // the logs in the block can also be requested
// func (s *SearcherAPI) GetCompactBlocks(ctx context.Context, blockNrOrHashes []rpc.BlockNumberOrHash, returnLogs bool) ([]map[string]interface{}, error) {
// resultArray := make([]map[string]interface{}, 0, len(blockNrOrHashes))
// for _, blockNrOrHash := range blockNrOrHashes {
// header, err := s.b.HeaderByNumberOrHash(ctx, blockNrOrHash)
// if err != nil {
// return nil, err
// }
// result := s.rpcMarshalCompactHeader(ctx, header)
// if returnLogs { // add logs if requested
// logs := s.chain.GetLogsWithHeader(header)
// result["logs"] = RPCMarshalCompactLogs(logs)
// }
// resultArray = append(resultArray, result)
// }
// return resultArray, nil
// }

View file

@ -99,7 +99,7 @@ type Backend interface {
ServiceFilter(ctx context.Context, session *bloombits.MatcherSession)
}
func GetAPIs(apiBackend Backend) []rpc.API {
func GetAPIs(apiBackend Backend, chain *core.BlockChain) []rpc.API {
nonceLock := new(AddrLocker)
return []rpc.API{
{
@ -111,6 +111,9 @@ func GetAPIs(apiBackend Backend) []rpc.API {
}, {
Namespace: "eth",
Service: NewTransactionAPI(apiBackend, nonceLock),
}, {
Namespace: "eth",
Service: NewSearcherAPI(apiBackend, chain),
}, {
Namespace: "txpool",
Service: NewTxPoolAPI(apiBackend),

View file

@ -265,7 +265,7 @@ func (miner *Miner) applyTransaction(env *environment, tx *types.Transaction) (*
snap = env.state.Snapshot()
gp = env.gasPool.Gas()
)
receipt, err := core.ApplyTransaction(miner.chainConfig, miner.chain, &env.coinbase, env.gasPool, env.state, env.header, tx, &env.header.GasUsed, vm.Config{})
receipt, _, err := core.ApplyTransaction(miner.chainConfig, miner.chain, &env.coinbase, env.gasPool, env.state, env.header, tx, &env.header.GasUsed, vm.Config{})
if err != nil {
env.state.RevertToSnapshot(snap)
env.gasPool.SetGas(gp)