l2_engine_api.go 13.9 KB
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package engineapi
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import (
	"context"
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	"crypto/sha256"
	"encoding/binary"
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	"errors"
	"fmt"
	"time"

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	"github.com/ethereum-optimism/optimism/op-service/eth"
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	"github.com/ethereum/go-ethereum/beacon/engine"
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	"github.com/ethereum/go-ethereum/common"
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	"github.com/ethereum/go-ethereum/consensus"
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	"github.com/ethereum/go-ethereum/core/state"
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	"github.com/ethereum/go-ethereum/core/types"
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	"github.com/ethereum/go-ethereum/core/vm"
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	"github.com/ethereum/go-ethereum/log"
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	"github.com/ethereum/go-ethereum/params"
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)

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type EngineBackend interface {
	CurrentSafeBlock() *types.Header
	CurrentFinalBlock() *types.Header
	GetBlockByHash(hash common.Hash) *types.Block
	GetBlock(hash common.Hash, number uint64) *types.Block
	HasBlockAndState(hash common.Hash, number uint64) bool
	GetCanonicalHash(n uint64) common.Hash

	GetVMConfig() *vm.Config
	Config() *params.ChainConfig
	// Engine retrieves the chain's consensus engine.
	Engine() consensus.Engine

	StateAt(root common.Hash) (*state.StateDB, error)

	InsertBlockWithoutSetHead(block *types.Block) error
	SetCanonical(head *types.Block) (common.Hash, error)
	SetFinalized(header *types.Header)
	SetSafe(header *types.Header)
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	consensus.ChainHeaderReader
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}

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// L2EngineAPI wraps an engine actor, and implements the RPC backend required to serve the engine API.
// This re-implements some of the Geth API work, but changes the API backend so we can deterministically
// build and control the L2 block contents to reach very specific edge cases as desired for testing.
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type L2EngineAPI struct {
	log     log.Logger
	backend EngineBackend

	// L2 block building data
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	blockProcessor *BlockProcessor
	pendingIndices map[common.Address]uint64 // per account, how many txs from the pool were already included in the block, since the pool is lagging behind block mining.
	l2ForceEmpty   bool                      // when no additional txs may be processed (i.e. when sequencer drift runs out)
	l2TxFailed     []*types.Transaction      // log of failed transactions which could not be included
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	payloadID engine.PayloadID // ID of payload that is currently being built
}

func NewL2EngineAPI(log log.Logger, backend EngineBackend) *L2EngineAPI {
	return &L2EngineAPI{
		log:     log,
		backend: backend,
	}
}
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var (
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	STATUS_INVALID = &eth.ForkchoiceUpdatedResult{PayloadStatus: eth.PayloadStatusV1{Status: eth.ExecutionInvalid}, PayloadID: nil}
	STATUS_SYNCING = &eth.ForkchoiceUpdatedResult{PayloadStatus: eth.PayloadStatusV1{Status: eth.ExecutionSyncing}, PayloadID: nil}
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)

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// computePayloadId computes a pseudo-random payloadid, based on the parameters.
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func computePayloadId(headBlockHash common.Hash, params *eth.PayloadAttributes) engine.PayloadID {
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	// Hash
	hasher := sha256.New()
	hasher.Write(headBlockHash[:])
	_ = binary.Write(hasher, binary.BigEndian, params.Timestamp)
	hasher.Write(params.PrevRandao[:])
	hasher.Write(params.SuggestedFeeRecipient[:])
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	_ = binary.Write(hasher, binary.BigEndian, params.NoTxPool)
	_ = binary.Write(hasher, binary.BigEndian, uint64(len(params.Transactions)))
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	for _, tx := range params.Transactions {
		_ = binary.Write(hasher, binary.BigEndian, uint64(len(tx))) // length-prefix to avoid collisions
		hasher.Write(tx)
	}
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	_ = binary.Write(hasher, binary.BigEndian, *params.GasLimit)
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	var out engine.PayloadID
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	copy(out[:], hasher.Sum(nil)[:8])
	return out
}

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func (ea *L2EngineAPI) RemainingBlockGas() uint64 {
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	if ea.blockProcessor == nil {
		return 0
	}
	return ea.blockProcessor.gasPool.Gas()
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}

func (ea *L2EngineAPI) ForcedEmpty() bool {
	return ea.l2ForceEmpty
}

func (ea *L2EngineAPI) PendingIndices(from common.Address) uint64 {
	return ea.pendingIndices[from]
}

var (
	ErrNotBuildingBlock = errors.New("not currently building a block, cannot include tx from queue")
)

func (ea *L2EngineAPI) IncludeTx(tx *types.Transaction, from common.Address) error {
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	if ea.blockProcessor == nil {
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		return ErrNotBuildingBlock
	}
	if ea.l2ForceEmpty {
		ea.log.Info("Skipping including a transaction because e.L2ForceEmpty is true")
		// t.InvalidAction("cannot include any sequencer txs")
		return nil
	}

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	err := ea.blockProcessor.CheckTxWithinGasLimit(tx)
	if err != nil {
		return err
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	}

	ea.pendingIndices[from] = ea.pendingIndices[from] + 1 // won't retry the tx
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	err = ea.blockProcessor.AddTx(tx)
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	if err != nil {
		ea.l2TxFailed = append(ea.l2TxFailed, tx)
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		return fmt.Errorf("invalid L2 block (tx %d): %w", len(ea.blockProcessor.transactions), err)
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	}
	return nil
}

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func (ea *L2EngineAPI) startBlock(parent common.Hash, params *eth.PayloadAttributes) error {
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	if ea.blockProcessor != nil {
		ea.log.Warn("started building new block without ending previous block", "previous", ea.blockProcessor.header, "prev_payload_id", ea.payloadID)
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	}

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	processor, err := NewBlockProcessorFromPayloadAttributes(ea.backend, parent, params)
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	if err != nil {
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		return err
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	}
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	ea.blockProcessor = processor
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	ea.pendingIndices = make(map[common.Address]uint64)
	ea.l2ForceEmpty = params.NoTxPool
	ea.payloadID = computePayloadId(parent, params)

	// pre-process the deposits
	for i, otx := range params.Transactions {
		var tx types.Transaction
		if err := tx.UnmarshalBinary(otx); err != nil {
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			return fmt.Errorf("transaction %d is not valid: %w", i, err)
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		}
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		err := ea.blockProcessor.AddTx(&tx)
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		if err != nil {
			ea.l2TxFailed = append(ea.l2TxFailed, &tx)
			return fmt.Errorf("failed to apply deposit transaction to L2 block (tx %d): %w", i, err)
		}
	}
	return nil
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}

func (ea *L2EngineAPI) endBlock() (*types.Block, error) {
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	if ea.blockProcessor == nil {
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		return nil, fmt.Errorf("no block is being built currently (id %s)", ea.payloadID)
	}
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	processor := ea.blockProcessor
	ea.blockProcessor = nil
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	block, err := processor.Assemble()
	if err != nil {
		return nil, fmt.Errorf("assemble block: %w", err)
	}
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	return block, nil
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}

func (ea *L2EngineAPI) GetPayloadV1(ctx context.Context, payloadId eth.PayloadID) (*eth.ExecutionPayload, error) {
	ea.log.Trace("L2Engine API request received", "method", "GetPayload", "id", payloadId)
	if ea.payloadID != payloadId {
		ea.log.Warn("unexpected payload ID requested for block building", "expected", ea.payloadID, "got", payloadId)
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		return nil, engine.UnknownPayload
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	}
	bl, err := ea.endBlock()
	if err != nil {
		ea.log.Error("failed to finish block building", "err", err)
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		return nil, engine.UnknownPayload
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	}
	return eth.BlockAsPayload(bl)
}

func (ea *L2EngineAPI) ForkchoiceUpdatedV1(ctx context.Context, state *eth.ForkchoiceState, attr *eth.PayloadAttributes) (*eth.ForkchoiceUpdatedResult, error) {
	ea.log.Trace("L2Engine API request received", "method", "ForkchoiceUpdated", "head", state.HeadBlockHash, "finalized", state.FinalizedBlockHash, "safe", state.SafeBlockHash)
	if state.HeadBlockHash == (common.Hash{}) {
		ea.log.Warn("Forkchoice requested update to zero hash")
		return STATUS_INVALID, nil
	}
	// Check whether we have the block yet in our database or not. If not, we'll
	// need to either trigger a sync, or to reject this forkchoice update for a
	// reason.
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	block := ea.backend.GetBlockByHash(state.HeadBlockHash)
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	if block == nil {
		// TODO: syncing not supported yet
		return STATUS_SYNCING, nil
	}
	// Block is known locally, just sanity check that the beacon client does not
	// attempt to push us back to before the merge.
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	// Note: Differs from op-geth implementation as pre-merge blocks are never supported here
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	if block.Difficulty().BitLen() > 0 && block.NumberU64() > 0 {
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		return STATUS_INVALID, errors.New("pre-merge blocks not supported")
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	}
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	valid := func(id *engine.PayloadID) *eth.ForkchoiceUpdatedResult {
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		return &eth.ForkchoiceUpdatedResult{
			PayloadStatus: eth.PayloadStatusV1{Status: eth.ExecutionValid, LatestValidHash: &state.HeadBlockHash},
			PayloadID:     id,
		}
	}
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	if ea.backend.GetCanonicalHash(block.NumberU64()) != state.HeadBlockHash {
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		// Block is not canonical, set head.
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		if latestValid, err := ea.backend.SetCanonical(block); err != nil {
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			return &eth.ForkchoiceUpdatedResult{PayloadStatus: eth.PayloadStatusV1{Status: eth.ExecutionInvalid, LatestValidHash: &latestValid}}, err
		}
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	} else if ea.backend.CurrentHeader().Hash() == state.HeadBlockHash {
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		// If the specified head matches with our local head, do nothing and keep
		// generating the payload. It's a special corner case that a few slots are
		// missing and we are requested to generate the payload in slot.
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	} else if ea.backend.Config().Optimism == nil { // minor L2Engine API divergence: allow proposers to reorg their own chain
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		panic("engine not configured as optimism engine")
	}

	// If the beacon client also advertised a finalized block, mark the local
	// chain final and completely in PoS mode.
	if state.FinalizedBlockHash != (common.Hash{}) {
		// If the finalized block is not in our canonical tree, somethings wrong
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		finalHeader := ea.backend.GetHeaderByHash(state.FinalizedBlockHash)
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		if finalHeader == nil {
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			ea.log.Warn("Final block not available in database", "hash", state.FinalizedBlockHash)
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			return STATUS_INVALID, engine.InvalidForkChoiceState.With(errors.New("final block not available in database"))
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		} else if ea.backend.GetCanonicalHash(finalHeader.Number.Uint64()) != state.FinalizedBlockHash {
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			ea.log.Warn("Final block not in canonical chain", "number", block.NumberU64(), "hash", state.HeadBlockHash)
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			return STATUS_INVALID, engine.InvalidForkChoiceState.With(errors.New("final block not in canonical chain"))
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		}
		// Set the finalized block
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		ea.backend.SetFinalized(finalHeader)
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	}
	// Check if the safe block hash is in our canonical tree, if not somethings wrong
	if state.SafeBlockHash != (common.Hash{}) {
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		safeHeader := ea.backend.GetHeaderByHash(state.SafeBlockHash)
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		if safeHeader == nil {
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			ea.log.Warn("Safe block not available in database")
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			return STATUS_INVALID, engine.InvalidForkChoiceState.With(errors.New("safe block not available in database"))
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		}
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		if ea.backend.GetCanonicalHash(safeHeader.Number.Uint64()) != state.SafeBlockHash {
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			ea.log.Warn("Safe block not in canonical chain")
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			return STATUS_INVALID, engine.InvalidForkChoiceState.With(errors.New("safe block not in canonical chain"))
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		}
		// Set the safe block
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		ea.backend.SetSafe(safeHeader)
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	}
	// If payload generation was requested, create a new block to be potentially
	// sealed by the beacon client. The payload will be requested later, and we
	// might replace it arbitrarily many times in between.
	if attr != nil {
		err := ea.startBlock(state.HeadBlockHash, attr)
		if err != nil {
			ea.log.Error("Failed to start block building", "err", err, "noTxPool", attr.NoTxPool, "txs", len(attr.Transactions), "timestamp", attr.Timestamp)
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			return STATUS_INVALID, engine.InvalidPayloadAttributes.With(err)
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		}

		return valid(&ea.payloadID), nil
	}
	return valid(nil), nil
}

func (ea *L2EngineAPI) NewPayloadV1(ctx context.Context, payload *eth.ExecutionPayload) (*eth.PayloadStatusV1, error) {
	ea.log.Trace("L2Engine API request received", "method", "ExecutePayload", "number", payload.BlockNumber, "hash", payload.BlockHash)
	txs := make([][]byte, len(payload.Transactions))
	for i, tx := range payload.Transactions {
		txs[i] = tx
	}
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	block, err := engine.ExecutableDataToBlock(engine.ExecutableData{
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		ParentHash:    payload.ParentHash,
		FeeRecipient:  payload.FeeRecipient,
		StateRoot:     common.Hash(payload.StateRoot),
		ReceiptsRoot:  common.Hash(payload.ReceiptsRoot),
		LogsBloom:     payload.LogsBloom[:],
		Random:        common.Hash(payload.PrevRandao),
		Number:        uint64(payload.BlockNumber),
		GasLimit:      uint64(payload.GasLimit),
		GasUsed:       uint64(payload.GasUsed),
		Timestamp:     uint64(payload.Timestamp),
		ExtraData:     payload.ExtraData,
		BaseFeePerGas: payload.BaseFeePerGas.ToBig(),
		BlockHash:     payload.BlockHash,
		Transactions:  txs,
	})
	if err != nil {
		log.Debug("Invalid NewPayload params", "params", payload, "error", err)
		return &eth.PayloadStatusV1{Status: eth.ExecutionInvalidBlockHash}, nil
	}
	// If we already have the block locally, ignore the entire execution and just
	// return a fake success.
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	if block := ea.backend.GetBlock(payload.BlockHash, uint64(payload.BlockNumber)); block != nil {
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		ea.log.Warn("Ignoring already known beacon payload", "number", payload.BlockNumber, "hash", payload.BlockHash, "age", common.PrettyAge(time.Unix(int64(block.Time()), 0)))
		hash := block.Hash()
		return &eth.PayloadStatusV1{Status: eth.ExecutionValid, LatestValidHash: &hash}, nil
	}

	// TODO: skipping invalid ancestor check (i.e. not remembering previously failed blocks)

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	parent := ea.backend.GetBlock(block.ParentHash(), block.NumberU64()-1)
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	if parent == nil {
		// TODO: hack, saying we accepted if we don't know the parent block. Might want to return critical error if we can't actually sync.
		return &eth.PayloadStatusV1{Status: eth.ExecutionAccepted, LatestValidHash: nil}, nil
	}
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	if block.Time() <= parent.Time() {
		log.Warn("Invalid timestamp", "parent", block.Time(), "block", block.Time())
		return ea.invalid(errors.New("invalid timestamp"), parent.Header()), nil
	}

	if !ea.backend.HasBlockAndState(block.ParentHash(), block.NumberU64()-1) {
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		ea.log.Warn("State not available, ignoring new payload")
		return &eth.PayloadStatusV1{Status: eth.ExecutionAccepted}, nil
	}
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	log.Trace("Inserting block without sethead", "hash", block.Hash(), "number", block.Number)
	if err := ea.backend.InsertBlockWithoutSetHead(block); err != nil {
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		ea.log.Warn("NewPayloadV1: inserting block failed", "error", err)
		// TODO not remembering the payload as invalid
		return ea.invalid(err, parent.Header()), nil
	}
	hash := block.Hash()
	return &eth.PayloadStatusV1{Status: eth.ExecutionValid, LatestValidHash: &hash}, nil
}

func (ea *L2EngineAPI) invalid(err error, latestValid *types.Header) *eth.PayloadStatusV1 {
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	currentHash := ea.backend.CurrentHeader().Hash()
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	if latestValid != nil {
		// Set latest valid hash to 0x0 if parent is PoW block
		currentHash = common.Hash{}
		if latestValid.Difficulty.BitLen() == 0 {
			// Otherwise set latest valid hash to parent hash
			currentHash = latestValid.Hash()
		}
	}
	errorMsg := err.Error()
	return &eth.PayloadStatusV1{Status: eth.ExecutionInvalid, LatestValidHash: &currentHash, ValidationError: &errorMsg}
}