core/txpool, eth/catalyst: clear transaction pool in Rollback (#30534)
This adds an API method `DropTransactions` to legacy pool, blob pool and txpool interface. This method removes all txs currently tracked in the pools. It modifies the simulated beacon to use the new method in `Rollback` which removes previous hacky implementation that also erroneously reset the gas tip to 1 gwei. --------- Co-authored-by: Felix Lange <fjl@twurst.com>
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@ -1714,3 +1714,53 @@ func (p *BlobPool) Status(hash common.Hash) txpool.TxStatus {
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}
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return txpool.TxStatusUnknown
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}
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// Clear implements txpool.SubPool, removing all tracked transactions
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// from the blob pool and persistent store.
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func (p *BlobPool) Clear() {
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p.lock.Lock()
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defer p.lock.Unlock()
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// manually iterating and deleting every entry is super sub-optimal
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// However, Clear is not currently used in production so
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// performance is not critical at the moment.
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for hash := range p.lookup.txIndex {
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id, _ := p.lookup.storeidOfTx(hash)
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if err := p.store.Delete(id); err != nil {
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log.Warn("failed to delete blob tx from backing store", "err", err)
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}
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}
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for hash := range p.lookup.blobIndex {
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id, _ := p.lookup.storeidOfBlob(hash)
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if err := p.store.Delete(id); err != nil {
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log.Warn("failed to delete blob from backing store", "err", err)
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}
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}
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// unreserve each tracked account. Ideally, we could just clear the
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// reservation map in the parent txpool context. However, if we clear in
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// parent context, to avoid exposing the subpool lock, we have to lock the
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// reservations and then lock each subpool.
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//
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// This creates the potential for a deadlock situation:
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//
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// * TxPool.Clear locks the reservations
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// * a new transaction is received which locks the subpool mutex
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// * TxPool.Clear attempts to lock subpool mutex
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//
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// The transaction addition may attempt to reserve the sender addr which
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// can't happen until Clear releases the reservation lock. Clear cannot
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// acquire the subpool lock until the transaction addition is completed.
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for acct, _ := range p.index {
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p.reserve(acct, false)
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}
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p.lookup = newLookup()
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p.index = make(map[common.Address][]*blobTxMeta)
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p.spent = make(map[common.Address]*uint256.Int)
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var (
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basefee = uint256.MustFromBig(eip1559.CalcBaseFee(p.chain.Config(), p.head))
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blobfee = uint256.NewInt(params.BlobTxMinBlobGasprice)
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)
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p.evict = newPriceHeap(basefee, blobfee, p.index)
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}
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@ -1961,3 +1961,44 @@ func (t *lookup) RemotesBelowTip(threshold *big.Int) types.Transactions {
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func numSlots(tx *types.Transaction) int {
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return int((tx.Size() + txSlotSize - 1) / txSlotSize)
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}
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// Clear implements txpool.SubPool, removing all tracked txs from the pool
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// and rotating the journal.
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func (pool *LegacyPool) Clear() {
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pool.mu.Lock()
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defer pool.mu.Unlock()
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// unreserve each tracked account. Ideally, we could just clear the
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// reservation map in the parent txpool context. However, if we clear in
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// parent context, to avoid exposing the subpool lock, we have to lock the
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// reservations and then lock each subpool.
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//
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// This creates the potential for a deadlock situation:
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//
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// * TxPool.Clear locks the reservations
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// * a new transaction is received which locks the subpool mutex
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// * TxPool.Clear attempts to lock subpool mutex
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//
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// The transaction addition may attempt to reserve the sender addr which
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// can't happen until Clear releases the reservation lock. Clear cannot
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// acquire the subpool lock until the transaction addition is completed.
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for _, tx := range pool.all.remotes {
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senderAddr, _ := types.Sender(pool.signer, tx)
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pool.reserve(senderAddr, false)
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}
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for localSender, _ := range pool.locals.accounts {
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pool.reserve(localSender, false)
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}
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pool.all = newLookup()
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pool.priced = newPricedList(pool.all)
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pool.pending = make(map[common.Address]*list)
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pool.queue = make(map[common.Address]*list)
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if !pool.config.NoLocals && pool.config.Journal != "" {
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pool.journal = newTxJournal(pool.config.Journal)
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if err := pool.journal.rotate(pool.local()); err != nil {
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log.Warn("Failed to rotate transaction journal", "err", err)
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}
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}
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}
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@ -168,4 +168,7 @@ type SubPool interface {
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// Status returns the known status (unknown/pending/queued) of a transaction
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// identified by their hashes.
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Status(hash common.Hash) TxStatus
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// Clear removes all tracked transactions from the pool
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Clear()
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}
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@ -497,3 +497,10 @@ func (p *TxPool) Sync() error {
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return errors.New("pool already terminated")
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}
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}
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// Clear removes all tracked txs from the subpools.
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func (p *TxPool) Clear() {
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for _, subpool := range p.subpools {
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subpool.Clear()
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}
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}
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@ -21,7 +21,6 @@ import (
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"crypto/sha256"
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"errors"
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"fmt"
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"math/big"
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"sync"
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"time"
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@ -34,7 +33,6 @@ import (
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"github.com/ethereum/go-ethereum/event"
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"github.com/ethereum/go-ethereum/log"
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"github.com/ethereum/go-ethereum/node"
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"github.com/ethereum/go-ethereum/params"
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"github.com/ethereum/go-ethereum/rpc"
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)
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@ -287,12 +285,7 @@ func (c *SimulatedBeacon) Commit() common.Hash {
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// Rollback un-sends previously added transactions.
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func (c *SimulatedBeacon) Rollback() {
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// Flush all transactions from the transaction pools
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maxUint256 := new(big.Int).Sub(new(big.Int).Lsh(common.Big1, 256), common.Big1)
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c.eth.TxPool().SetGasTip(maxUint256)
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// Set the gas tip back to accept new transactions
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// TODO (Marius van der Wijden): set gas tip to parameter passed by config
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c.eth.TxPool().SetGasTip(big.NewInt(params.GWei))
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c.eth.TxPool().Clear()
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}
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// Fork sets the head to the provided hash.
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