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Author SHA1 Message Date
terence tsao
b3b59cb154 Refactor ComputeFieldRootsWithHasher into smaller helper functions 2025-11-06 16:38:12 -05:00
2 changed files with 262 additions and 159 deletions

View File

@@ -16,17 +16,8 @@ import (
"github.com/pkg/errors"
)
// ComputeFieldRootsWithHasher hashes the provided state and returns its respective field roots.
func ComputeFieldRootsWithHasher(ctx context.Context, state *BeaconState) ([][]byte, error) {
ctx, span := trace.StartSpan(ctx, "ComputeFieldRootsWithHasher")
defer span.End()
if ctx.Err() != nil {
return nil, ctx.Err()
}
if state == nil {
return nil, errors.New("nil state")
}
// initializeFieldRoots initializes the field roots slice based on the beacon state version.
func initializeFieldRoots(state *BeaconState) ([][]byte, error) {
var fieldRoots [][]byte
switch state.version {
case version.Phase0:
@@ -46,7 +37,11 @@ func ComputeFieldRootsWithHasher(ctx context.Context, state *BeaconState) ([][]b
default:
return nil, fmt.Errorf("unknown state version %s", version.String(state.version))
}
return fieldRoots, nil
}
// computeBasicFieldRoots computes basic field roots that are common across all versions.
func computeBasicFieldRoots(state *BeaconState, fieldRoots [][]byte) error {
// Genesis time root.
genesisRoot := ssz.Uint64Root(state.genesisTime)
fieldRoots[types.GenesisTime.RealPosition()] = genesisRoot[:]
@@ -63,28 +58,46 @@ func ComputeFieldRootsWithHasher(ctx context.Context, state *BeaconState) ([][]b
// Fork data structure root.
forkHashTreeRoot, err := ssz.ForkRoot(state.fork)
if err != nil {
return nil, errors.Wrap(err, "could not compute fork merkleization")
return errors.Wrap(err, "could not compute fork merkleization")
}
fieldRoots[types.Fork.RealPosition()] = forkHashTreeRoot[:]
// BeaconBlockHeader data structure root.
headerHashTreeRoot, err := stateutil.BlockHeaderRoot(state.latestBlockHeader)
if err != nil {
return nil, errors.Wrap(err, "could not compute block header merkleization")
return errors.Wrap(err, "could not compute block header merkleization")
}
fieldRoots[types.LatestBlockHeader.RealPosition()] = headerHashTreeRoot[:]
// Eth1Data data structure root.
eth1HashTreeRoot, err := stateutil.Eth1Root(state.eth1Data)
if err != nil {
return errors.Wrap(err, "could not compute eth1data merkleization")
}
fieldRoots[types.Eth1Data.RealPosition()] = eth1HashTreeRoot[:]
// Eth1DepositIndex root.
eth1DepositIndexBuf := make([]byte, 8)
binary.LittleEndian.PutUint64(eth1DepositIndexBuf, state.eth1DepositIndex)
eth1DepositBuf := bytesutil.ToBytes32(eth1DepositIndexBuf)
fieldRoots[types.Eth1DepositIndex.RealPosition()] = eth1DepositBuf[:]
return nil
}
// computeArrayFieldRoots computes field roots for arrays and slices that are common across all versions.
func computeArrayFieldRoots(state *BeaconState, fieldRoots [][]byte) error {
// BlockRoots array root.
blockRootsRoot, err := stateutil.ArraysRoot(state.blockRootsVal().Slice(), fieldparams.BlockRootsLength)
if err != nil {
return nil, errors.Wrap(err, "could not compute block roots merkleization")
return errors.Wrap(err, "could not compute block roots merkleization")
}
fieldRoots[types.BlockRoots.RealPosition()] = blockRootsRoot[:]
// StateRoots array root.
stateRootsRoot, err := stateutil.ArraysRoot(state.stateRootsVal().Slice(), fieldparams.StateRootsLength)
if err != nil {
return nil, errors.Wrap(err, "could not compute state roots merkleization")
return errors.Wrap(err, "could not compute state roots merkleization")
}
fieldRoots[types.StateRoots.RealPosition()] = stateRootsRoot[:]
@@ -95,90 +108,50 @@ func ComputeFieldRootsWithHasher(ctx context.Context, state *BeaconState) ([][]b
}
historicalRootsRt, err := ssz.ByteArrayRootWithLimit(hRoots, fieldparams.HistoricalRootsLength)
if err != nil {
return nil, errors.Wrap(err, "could not compute historical roots merkleization")
return errors.Wrap(err, "could not compute historical roots merkleization")
}
fieldRoots[types.HistoricalRoots.RealPosition()] = historicalRootsRt[:]
// Eth1Data data structure root.
eth1HashTreeRoot, err := stateutil.Eth1Root(state.eth1Data)
if err != nil {
return nil, errors.Wrap(err, "could not compute eth1data merkleization")
}
fieldRoots[types.Eth1Data.RealPosition()] = eth1HashTreeRoot[:]
// Eth1DataVotes slice root.
eth1VotesRoot, err := stateutil.Eth1DataVotesRoot(state.eth1DataVotes)
if err != nil {
return nil, errors.Wrap(err, "could not compute eth1data votes merkleization")
return errors.Wrap(err, "could not compute eth1data votes merkleization")
}
fieldRoots[types.Eth1DataVotes.RealPosition()] = eth1VotesRoot[:]
// Eth1DepositIndex root.
eth1DepositIndexBuf := make([]byte, 8)
binary.LittleEndian.PutUint64(eth1DepositIndexBuf, state.eth1DepositIndex)
eth1DepositBuf := bytesutil.ToBytes32(eth1DepositIndexBuf)
fieldRoots[types.Eth1DepositIndex.RealPosition()] = eth1DepositBuf[:]
// Validators slice root.
validatorsRoot, err := stateutil.ValidatorRegistryRoot(state.validatorsVal())
if err != nil {
return nil, errors.Wrap(err, "could not compute validator registry merkleization")
return errors.Wrap(err, "could not compute validator registry merkleization")
}
fieldRoots[types.Validators.RealPosition()] = validatorsRoot[:]
// Balances slice root.
balancesRoot, err := stateutil.Uint64ListRootWithRegistryLimit(state.balancesVal())
if err != nil {
return nil, errors.Wrap(err, "could not compute validator balances merkleization")
return errors.Wrap(err, "could not compute validator balances merkleization")
}
fieldRoots[types.Balances.RealPosition()] = balancesRoot[:]
// RandaoMixes array root.
randaoRootsRoot, err := stateutil.ArraysRoot(state.randaoMixesVal().Slice(), fieldparams.RandaoMixesLength)
if err != nil {
return nil, errors.Wrap(err, "could not compute randao roots merkleization")
return errors.Wrap(err, "could not compute randao roots merkleization")
}
fieldRoots[types.RandaoMixes.RealPosition()] = randaoRootsRoot[:]
// Slashings array root.
slashingsRootsRoot, err := ssz.SlashingsRoot(state.slashings)
if err != nil {
return nil, errors.Wrap(err, "could not compute slashings merkleization")
return errors.Wrap(err, "could not compute slashings merkleization")
}
fieldRoots[types.Slashings.RealPosition()] = slashingsRootsRoot[:]
if state.version == version.Phase0 {
// PreviousEpochAttestations slice root.
prevAttsRoot, err := stateutil.EpochAttestationsRoot(state.previousEpochAttestations)
if err != nil {
return nil, errors.Wrap(err, "could not compute previous epoch attestations merkleization")
}
fieldRoots[types.PreviousEpochAttestations.RealPosition()] = prevAttsRoot[:]
// CurrentEpochAttestations slice root.
currAttsRoot, err := stateutil.EpochAttestationsRoot(state.currentEpochAttestations)
if err != nil {
return nil, errors.Wrap(err, "could not compute current epoch attestations merkleization")
}
fieldRoots[types.CurrentEpochAttestations.RealPosition()] = currAttsRoot[:]
}
if state.version >= version.Altair {
// PreviousEpochParticipation slice root.
prevParticipationRoot, err := stateutil.ParticipationBitsRoot(state.previousEpochParticipation)
if err != nil {
return nil, errors.Wrap(err, "could not compute previous epoch participation merkleization")
}
fieldRoots[types.PreviousEpochParticipationBits.RealPosition()] = prevParticipationRoot[:]
// CurrentEpochParticipation slice root.
currParticipationRoot, err := stateutil.ParticipationBitsRoot(state.currentEpochParticipation)
if err != nil {
return nil, errors.Wrap(err, "could not compute current epoch participation merkleization")
}
fieldRoots[types.CurrentEpochParticipationBits.RealPosition()] = currParticipationRoot[:]
}
return nil
}
// computeCheckpointFieldRoots computes field roots for checkpoint-related fields.
func computeCheckpointFieldRoots(state *BeaconState, fieldRoots [][]byte) error {
// JustificationBits root.
justifiedBitsRoot := bytesutil.ToBytes32(state.justificationBits)
fieldRoots[types.JustificationBits.RealPosition()] = justifiedBitsRoot[:]
@@ -186,147 +159,274 @@ func ComputeFieldRootsWithHasher(ctx context.Context, state *BeaconState) ([][]b
// PreviousJustifiedCheckpoint data structure root.
prevCheckRoot, err := ssz.CheckpointRoot(state.previousJustifiedCheckpoint)
if err != nil {
return nil, errors.Wrap(err, "could not compute previous justified checkpoint merkleization")
return errors.Wrap(err, "could not compute previous justified checkpoint merkleization")
}
fieldRoots[types.PreviousJustifiedCheckpoint.RealPosition()] = prevCheckRoot[:]
// CurrentJustifiedCheckpoint data structure root.
currJustRoot, err := ssz.CheckpointRoot(state.currentJustifiedCheckpoint)
if err != nil {
return nil, errors.Wrap(err, "could not compute current justified checkpoint merkleization")
return errors.Wrap(err, "could not compute current justified checkpoint merkleization")
}
fieldRoots[types.CurrentJustifiedCheckpoint.RealPosition()] = currJustRoot[:]
// FinalizedCheckpoint data structure root.
finalRoot, err := ssz.CheckpointRoot(state.finalizedCheckpoint)
if err != nil {
return nil, errors.Wrap(err, "could not compute finalized checkpoint merkleization")
return errors.Wrap(err, "could not compute finalized checkpoint merkleization")
}
fieldRoots[types.FinalizedCheckpoint.RealPosition()] = finalRoot[:]
if state.version >= version.Altair {
// Inactivity scores root.
inactivityScoresRoot, err := stateutil.Uint64ListRootWithRegistryLimit(state.inactivityScoresVal())
if err != nil {
return nil, errors.Wrap(err, "could not compute inactivityScoreRoot")
}
fieldRoots[types.InactivityScores.RealPosition()] = inactivityScoresRoot[:]
return nil
}
// Current sync committee root.
currentSyncCommitteeRoot, err := stateutil.SyncCommitteeRoot(state.currentSyncCommittee)
if err != nil {
return nil, errors.Wrap(err, "could not compute sync committee merkleization")
}
fieldRoots[types.CurrentSyncCommittee.RealPosition()] = currentSyncCommitteeRoot[:]
// Next sync committee root.
nextSyncCommitteeRoot, err := stateutil.SyncCommitteeRoot(state.nextSyncCommittee)
if err != nil {
return nil, errors.Wrap(err, "could not compute sync committee merkleization")
}
fieldRoots[types.NextSyncCommittee.RealPosition()] = nextSyncCommitteeRoot[:]
// computePhase0SpecificRoots computes field roots specific to Phase 0.
func computePhase0SpecificRoots(state *BeaconState, fieldRoots [][]byte) error {
if state.version != version.Phase0 {
return nil
}
if state.version == version.Bellatrix {
// PreviousEpochAttestations slice root.
prevAttsRoot, err := stateutil.EpochAttestationsRoot(state.previousEpochAttestations)
if err != nil {
return errors.Wrap(err, "could not compute previous epoch attestations merkleization")
}
fieldRoots[types.PreviousEpochAttestations.RealPosition()] = prevAttsRoot[:]
// CurrentEpochAttestations slice root.
currAttsRoot, err := stateutil.EpochAttestationsRoot(state.currentEpochAttestations)
if err != nil {
return errors.Wrap(err, "could not compute current epoch attestations merkleization")
}
fieldRoots[types.CurrentEpochAttestations.RealPosition()] = currAttsRoot[:]
return nil
}
// computeAltairPlusRoots computes field roots for Altair and later versions.
func computeAltairPlusRoots(state *BeaconState, fieldRoots [][]byte) error {
if state.version < version.Altair {
return nil
}
// PreviousEpochParticipation slice root.
prevParticipationRoot, err := stateutil.ParticipationBitsRoot(state.previousEpochParticipation)
if err != nil {
return errors.Wrap(err, "could not compute previous epoch participation merkleization")
}
fieldRoots[types.PreviousEpochParticipationBits.RealPosition()] = prevParticipationRoot[:]
// CurrentEpochParticipation slice root.
currParticipationRoot, err := stateutil.ParticipationBitsRoot(state.currentEpochParticipation)
if err != nil {
return errors.Wrap(err, "could not compute current epoch participation merkleization")
}
fieldRoots[types.CurrentEpochParticipationBits.RealPosition()] = currParticipationRoot[:]
// Inactivity scores root.
inactivityScoresRoot, err := stateutil.Uint64ListRootWithRegistryLimit(state.inactivityScoresVal())
if err != nil {
return errors.Wrap(err, "could not compute inactivityScoreRoot")
}
fieldRoots[types.InactivityScores.RealPosition()] = inactivityScoresRoot[:]
// Current sync committee root.
currentSyncCommitteeRoot, err := stateutil.SyncCommitteeRoot(state.currentSyncCommittee)
if err != nil {
return errors.Wrap(err, "could not compute sync committee merkleization")
}
fieldRoots[types.CurrentSyncCommittee.RealPosition()] = currentSyncCommitteeRoot[:]
// Next sync committee root.
nextSyncCommitteeRoot, err := stateutil.SyncCommitteeRoot(state.nextSyncCommittee)
if err != nil {
return errors.Wrap(err, "could not compute sync committee merkleization")
}
fieldRoots[types.NextSyncCommittee.RealPosition()] = nextSyncCommitteeRoot[:]
return nil
}
// computeExecutionPayloadRoots computes execution payload roots for different versions.
func computeExecutionPayloadRoots(state *BeaconState, fieldRoots [][]byte) error {
switch state.version {
case version.Bellatrix:
// Execution payload root.
executionPayloadRoot, err := state.latestExecutionPayloadHeader.HashTreeRoot()
if err != nil {
return nil, err
return err
}
fieldRoots[types.LatestExecutionPayloadHeader.RealPosition()] = executionPayloadRoot[:]
}
if state.version == version.Capella {
case version.Capella:
// Execution payload root.
executionPayloadRoot, err := state.latestExecutionPayloadHeaderCapella.HashTreeRoot()
if err != nil {
return nil, err
return err
}
fieldRoots[types.LatestExecutionPayloadHeaderCapella.RealPosition()] = executionPayloadRoot[:]
default:
if state.version >= version.Deneb {
// Execution payload root.
executionPayloadRoot, err := state.latestExecutionPayloadHeaderDeneb.HashTreeRoot()
if err != nil {
return err
}
fieldRoots[types.LatestExecutionPayloadHeaderDeneb.RealPosition()] = executionPayloadRoot[:]
}
}
if state.version >= version.Deneb {
// Execution payload root.
executionPayloadRoot, err := state.latestExecutionPayloadHeaderDeneb.HashTreeRoot()
if err != nil {
return nil, err
}
fieldRoots[types.LatestExecutionPayloadHeaderDeneb.RealPosition()] = executionPayloadRoot[:]
return nil
}
// computeCapellaRoots computes field roots for Capella and later versions.
func computeCapellaRoots(state *BeaconState, fieldRoots [][]byte) error {
if state.version < version.Capella {
return nil
}
if state.version >= version.Capella {
// Next withdrawal index root.
nextWithdrawalIndexRoot := make([]byte, 32)
binary.LittleEndian.PutUint64(nextWithdrawalIndexRoot, state.nextWithdrawalIndex)
fieldRoots[types.NextWithdrawalIndex.RealPosition()] = nextWithdrawalIndexRoot
// Next withdrawal index root.
nextWithdrawalIndexRoot := make([]byte, 32)
binary.LittleEndian.PutUint64(nextWithdrawalIndexRoot, state.nextWithdrawalIndex)
fieldRoots[types.NextWithdrawalIndex.RealPosition()] = nextWithdrawalIndexRoot
// Next partial withdrawal validator index root.
nextWithdrawalValidatorIndexRoot := make([]byte, 32)
binary.LittleEndian.PutUint64(nextWithdrawalValidatorIndexRoot, uint64(state.nextWithdrawalValidatorIndex))
fieldRoots[types.NextWithdrawalValidatorIndex.RealPosition()] = nextWithdrawalValidatorIndexRoot
// Next partial withdrawal validator index root.
nextWithdrawalValidatorIndexRoot := make([]byte, 32)
binary.LittleEndian.PutUint64(nextWithdrawalValidatorIndexRoot, uint64(state.nextWithdrawalValidatorIndex))
fieldRoots[types.NextWithdrawalValidatorIndex.RealPosition()] = nextWithdrawalValidatorIndexRoot
// Historical summary root.
historicalSummaryRoot, err := stateutil.HistoricalSummariesRoot(state.historicalSummaries)
if err != nil {
return nil, errors.Wrap(err, "could not compute historical summary merkleization")
}
fieldRoots[types.HistoricalSummaries.RealPosition()] = historicalSummaryRoot[:]
// Historical summary root.
historicalSummaryRoot, err := stateutil.HistoricalSummariesRoot(state.historicalSummaries)
if err != nil {
return errors.Wrap(err, "could not compute historical summary merkleization")
}
fieldRoots[types.HistoricalSummaries.RealPosition()] = historicalSummaryRoot[:]
return nil
}
// computeElectraRoots computes field roots for Electra version.
func computeElectraRoots(state *BeaconState, fieldRoots [][]byte) error {
if state.version < version.Electra {
return nil
}
if state.version >= version.Electra {
// DepositRequestsStartIndex root.
drsiRoot := ssz.Uint64Root(state.depositRequestsStartIndex)
fieldRoots[types.DepositRequestsStartIndex.RealPosition()] = drsiRoot[:]
// DepositRequestsStartIndex root.
drsiRoot := ssz.Uint64Root(state.depositRequestsStartIndex)
fieldRoots[types.DepositRequestsStartIndex.RealPosition()] = drsiRoot[:]
// DepositBalanceToConsume root.
dbtcRoot := ssz.Uint64Root(uint64(state.depositBalanceToConsume))
fieldRoots[types.DepositBalanceToConsume.RealPosition()] = dbtcRoot[:]
// DepositBalanceToConsume root.
dbtcRoot := ssz.Uint64Root(uint64(state.depositBalanceToConsume))
fieldRoots[types.DepositBalanceToConsume.RealPosition()] = dbtcRoot[:]
// ExitBalanceToConsume root.
ebtcRoot := ssz.Uint64Root(uint64(state.exitBalanceToConsume))
fieldRoots[types.ExitBalanceToConsume.RealPosition()] = ebtcRoot[:]
// ExitBalanceToConsume root.
ebtcRoot := ssz.Uint64Root(uint64(state.exitBalanceToConsume))
fieldRoots[types.ExitBalanceToConsume.RealPosition()] = ebtcRoot[:]
// EarliestExitEpoch root.
eeeRoot := ssz.Uint64Root(uint64(state.earliestExitEpoch))
fieldRoots[types.EarliestExitEpoch.RealPosition()] = eeeRoot[:]
// EarliestExitEpoch root.
eeeRoot := ssz.Uint64Root(uint64(state.earliestExitEpoch))
fieldRoots[types.EarliestExitEpoch.RealPosition()] = eeeRoot[:]
// ConsolidationBalanceToConsume root.
cbtcRoot := ssz.Uint64Root(uint64(state.consolidationBalanceToConsume))
fieldRoots[types.ConsolidationBalanceToConsume.RealPosition()] = cbtcRoot[:]
// ConsolidationBalanceToConsume root.
cbtcRoot := ssz.Uint64Root(uint64(state.consolidationBalanceToConsume))
fieldRoots[types.ConsolidationBalanceToConsume.RealPosition()] = cbtcRoot[:]
// EarliestConsolidationEpoch root.
eceRoot := ssz.Uint64Root(uint64(state.earliestConsolidationEpoch))
fieldRoots[types.EarliestConsolidationEpoch.RealPosition()] = eceRoot[:]
// EarliestConsolidationEpoch root.
eceRoot := ssz.Uint64Root(uint64(state.earliestConsolidationEpoch))
fieldRoots[types.EarliestConsolidationEpoch.RealPosition()] = eceRoot[:]
// PendingDeposits root.
pbdRoot, err := stateutil.PendingDepositsRoot(state.pendingDeposits)
if err != nil {
return nil, errors.Wrap(err, "could not compute pending balance deposits merkleization")
}
fieldRoots[types.PendingDeposits.RealPosition()] = pbdRoot[:]
// PendingDeposits root.
pbdRoot, err := stateutil.PendingDepositsRoot(state.pendingDeposits)
if err != nil {
return errors.Wrap(err, "could not compute pending balance deposits merkleization")
}
fieldRoots[types.PendingDeposits.RealPosition()] = pbdRoot[:]
// PendingPartialWithdrawals root.
ppwRoot, err := stateutil.PendingPartialWithdrawalsRoot(state.pendingPartialWithdrawals)
if err != nil {
return nil, errors.Wrap(err, "could not compute pending partial withdrawals merkleization")
}
fieldRoots[types.PendingPartialWithdrawals.RealPosition()] = ppwRoot[:]
// PendingPartialWithdrawals root.
ppwRoot, err := stateutil.PendingPartialWithdrawalsRoot(state.pendingPartialWithdrawals)
if err != nil {
return errors.Wrap(err, "could not compute pending partial withdrawals merkleization")
}
fieldRoots[types.PendingPartialWithdrawals.RealPosition()] = ppwRoot[:]
// PendingConsolidations root.
pcRoot, err := stateutil.PendingConsolidationsRoot(state.pendingConsolidations)
if err != nil {
return nil, errors.Wrap(err, "could not compute pending consolidations merkleization")
}
fieldRoots[types.PendingConsolidations.RealPosition()] = pcRoot[:]
// PendingConsolidations root.
pcRoot, err := stateutil.PendingConsolidationsRoot(state.pendingConsolidations)
if err != nil {
return errors.Wrap(err, "could not compute pending consolidations merkleization")
}
fieldRoots[types.PendingConsolidations.RealPosition()] = pcRoot[:]
return nil
}
// computeFuluRoots computes field roots for Fulu version.
func computeFuluRoots(state *BeaconState, fieldRoots [][]byte) error {
if state.version < version.Fulu {
return nil
}
if state.version >= version.Fulu {
// Proposer lookahead root.
proposerLookaheadRoot, err := stateutil.ProposerLookaheadRoot(state.proposerLookahead)
if err != nil {
return nil, errors.Wrap(err, "could not compute proposer lookahead merkleization")
}
fieldRoots[types.ProposerLookahead.RealPosition()] = proposerLookaheadRoot[:]
// Proposer lookahead root.
proposerLookaheadRoot, err := stateutil.ProposerLookaheadRoot(state.proposerLookahead)
if err != nil {
return errors.Wrap(err, "could not compute proposer lookahead merkleization")
}
fieldRoots[types.ProposerLookahead.RealPosition()] = proposerLookaheadRoot[:]
return nil
}
// ComputeFieldRootsWithHasher hashes the provided state and returns its respective field roots.
func ComputeFieldRootsWithHasher(ctx context.Context, state *BeaconState) ([][]byte, error) {
ctx, span := trace.StartSpan(ctx, "ComputeFieldRootsWithHasher")
defer span.End()
if ctx.Err() != nil {
return nil, ctx.Err()
}
if state == nil {
return nil, errors.New("nil state")
}
fieldRoots, err := initializeFieldRoots(state)
if err != nil {
return nil, err
}
if err := computeBasicFieldRoots(state, fieldRoots); err != nil {
return nil, err
}
if err := computeArrayFieldRoots(state, fieldRoots); err != nil {
return nil, err
}
if err := computePhase0SpecificRoots(state, fieldRoots); err != nil {
return nil, err
}
if err := computeAltairPlusRoots(state, fieldRoots); err != nil {
return nil, err
}
if err := computeCheckpointFieldRoots(state, fieldRoots); err != nil {
return nil, err
}
if err := computeExecutionPayloadRoots(state, fieldRoots); err != nil {
return nil, err
}
if err := computeCapellaRoots(state, fieldRoots); err != nil {
return nil, err
}
if err := computeElectraRoots(state, fieldRoots); err != nil {
return nil, err
}
if err := computeFuluRoots(state, fieldRoots); err != nil {
return nil, err
}
return fieldRoots, nil
}

View File

@@ -0,0 +1,3 @@
### Ignored
- Refactored ComputeFieldRootsWithHasher into smaller helper functions to pass cognitive check