mirror of
https://gitlab.com/pulsechaincom/prysm-pulse.git
synced 2024-12-26 05:17:22 +00:00
465 lines
16 KiB
Go
465 lines
16 KiB
Go
package rpc
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import (
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"bytes"
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"context"
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"fmt"
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"math/big"
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"time"
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"github.com/pkg/errors"
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"github.com/prysmaticlabs/prysm/beacon-chain/cache/depositcache"
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"github.com/prysmaticlabs/prysm/beacon-chain/core/helpers"
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"github.com/prysmaticlabs/prysm/beacon-chain/core/state"
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"github.com/prysmaticlabs/prysm/beacon-chain/core/state/stateutils"
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"github.com/prysmaticlabs/prysm/beacon-chain/db"
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pbp2p "github.com/prysmaticlabs/prysm/proto/beacon/p2p/v1"
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pb "github.com/prysmaticlabs/prysm/proto/beacon/rpc/v1"
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ethpb "github.com/prysmaticlabs/prysm/proto/eth/v1alpha1"
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"github.com/prysmaticlabs/prysm/shared/bytesutil"
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"github.com/prysmaticlabs/prysm/shared/params"
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)
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// ValidatorServer defines a server implementation of the gRPC Validator service,
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// providing RPC endpoints for obtaining validator assignments per epoch, the slots
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// and shards in which particular validators need to perform their responsibilities,
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// and more.
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type ValidatorServer struct {
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ctx context.Context
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beaconDB db.Database
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chainService chainService
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canonicalStateChan chan *pbp2p.BeaconState
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powChainService powChainService
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depositCache *depositcache.DepositCache
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}
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// WaitForActivation checks if a validator public key exists in the active validator registry of the current
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// beacon state, if not, then it creates a stream which listens for canonical states which contain
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// the validator with the public key as an active validator record.
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func (vs *ValidatorServer) WaitForActivation(req *pb.ValidatorActivationRequest, stream pb.ValidatorService_WaitForActivationServer) error {
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activeValidatorExists, validatorStatuses, err := vs.MultipleValidatorStatus(stream.Context(), req.PublicKeys)
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if err != nil {
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return err
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}
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res := &pb.ValidatorActivationResponse{
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Statuses: validatorStatuses,
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}
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if activeValidatorExists {
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return stream.Send(res)
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}
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if err := stream.Send(res); err != nil {
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return err
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}
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for {
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select {
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case <-time.After(6 * time.Second):
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activeValidatorExists, validatorStatuses, err := vs.MultipleValidatorStatus(stream.Context(), req.PublicKeys)
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if err != nil {
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return err
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}
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res := &pb.ValidatorActivationResponse{
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Statuses: validatorStatuses,
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}
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if activeValidatorExists {
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return stream.Send(res)
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}
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if err := stream.Send(res); err != nil {
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return err
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}
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case <-stream.Context().Done():
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return errors.New("stream context closed, exiting gorutine")
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case <-vs.ctx.Done():
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return errors.New("rpc context closed, exiting goroutine")
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}
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}
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}
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// ValidatorIndex is called by a validator to get its index location that corresponds
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// to the attestation bit fields.
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func (vs *ValidatorServer) ValidatorIndex(ctx context.Context, req *pb.ValidatorIndexRequest) (*pb.ValidatorIndexResponse, error) {
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index, err := vs.beaconDB.(*db.BeaconDB).ValidatorIndexDeprecated(req.PublicKey)
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if err != nil {
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return nil, errors.Wrap(err, "could not get validator index")
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}
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return &pb.ValidatorIndexResponse{Index: uint64(index)}, nil
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}
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// ValidatorPerformance reports the validator's latest balance along with other important metrics on
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// rewards and penalties throughout its lifecycle in the beacon chain.
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func (vs *ValidatorServer) ValidatorPerformance(
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ctx context.Context, req *pb.ValidatorPerformanceRequest,
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) (*pb.ValidatorPerformanceResponse, error) {
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index, _, err := vs.beaconDB.ValidatorIndex(ctx, bytesutil.ToBytes48(req.PublicKey))
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if err != nil {
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return nil, errors.Wrap(err, "could not get validator index")
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}
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head, err := vs.beaconDB.HeadState(ctx)
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if err != nil {
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return nil, errors.Wrap(err, "could not get head")
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}
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activeCount, err := helpers.ActiveValidatorCount(head, helpers.SlotToEpoch(req.Slot))
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if err != nil {
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return nil, errors.Wrap(err, "could not retrieve active validator count")
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}
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totalActiveBalance, err := helpers.TotalActiveBalance(head)
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if err != nil {
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return nil, errors.Wrap(err, "could not retrieve active balance")
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}
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avgBalance := float32(totalActiveBalance / activeCount)
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balance := head.Balances[index]
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return &pb.ValidatorPerformanceResponse{
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Balance: balance,
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AverageActiveValidatorBalance: avgBalance,
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TotalValidators: uint64(len(head.Validators)),
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TotalActiveValidators: uint64(activeCount),
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}, nil
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}
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// CommitteeAssignment returns the committee assignment response from a given validator public key.
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// The committee assignment response contains the following fields for the current and previous epoch:
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// 1.) The list of validators in the committee.
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// 2.) The shard to which the committee is assigned.
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// 3.) The slot at which the committee is assigned.
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// 4.) The bool signaling if the validator is expected to propose a block at the assigned slot.
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func (vs *ValidatorServer) CommitteeAssignment(ctx context.Context, req *pb.AssignmentRequest) (*pb.AssignmentResponse, error) {
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s, err := vs.beaconDB.HeadState(ctx)
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if err != nil {
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return nil, errors.Wrap(err, "could not fetch beacon state")
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}
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// Advance state with empty transitions up to the requested epoch start slot.
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if epochStartSlot := helpers.StartSlot(req.EpochStart); s.Slot < epochStartSlot {
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s, err = state.ProcessSlots(ctx, s, epochStartSlot)
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if err != nil {
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return nil, errors.Wrapf(err, "could not process slots up to %d", epochStartSlot)
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}
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}
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validatorIndexMap := stateutils.ValidatorIndexMap(s)
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var assignments []*pb.AssignmentResponse_ValidatorAssignment
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for _, pk := range req.PublicKeys {
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if ctx.Err() != nil {
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return nil, ctx.Err()
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}
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idx, ok := validatorIndexMap[bytesutil.ToBytes32(pk)]
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// Default assignment for every validator
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assignment := &pb.AssignmentResponse_ValidatorAssignment{
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PublicKey: pk,
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Status: pb.ValidatorStatus_UNKNOWN_STATUS,
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}
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v := s.Validators[idx]
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// Update validator assignment when it is active
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if ok && helpers.IsActiveValidator(v, helpers.CurrentEpoch(s)) {
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assignment, err = vs.assignment(pk, s, req.EpochStart)
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if err != nil {
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return nil, err
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}
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} else if ok {
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// Update inactive validator's status
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status := vs.lookupValidatorStatus(uint64(idx), s)
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assignment.Status = status
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}
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assignments = append(assignments, assignment)
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}
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return &pb.AssignmentResponse{
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ValidatorAssignment: assignments,
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}, nil
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}
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func (vs *ValidatorServer) assignment(
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pubkey []byte,
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beaconState *pbp2p.BeaconState,
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epochStart uint64,
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) (*pb.AssignmentResponse_ValidatorAssignment, error) {
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if len(pubkey) != params.BeaconConfig().BLSPubkeyLength {
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return nil, fmt.Errorf(
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"expected public key to have length %d, received %d",
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params.BeaconConfig().BLSPubkeyLength,
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len(pubkey),
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)
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}
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idx, _, err := vs.beaconDB.ValidatorIndex(context.TODO(), bytesutil.ToBytes48(pubkey))
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if err != nil {
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return nil, errors.Wrap(err, "could not get active validator index")
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}
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committee, shard, slot, isProposer, err :=
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helpers.CommitteeAssignment(beaconState, epochStart, uint64(idx))
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if err != nil {
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return nil, err
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}
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status := vs.lookupValidatorStatus(idx, beaconState)
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return &pb.AssignmentResponse_ValidatorAssignment{
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Committee: committee,
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Shard: shard,
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Slot: slot,
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IsProposer: isProposer,
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PublicKey: pubkey,
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Status: status,
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}, nil
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}
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// ValidatorStatus returns the validator status of the current epoch.
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// The status response can be one of the following:
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// PENDING_ACTIVE - validator is waiting to get activated.
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// ACTIVE - validator is active.
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// INITIATED_EXIT - validator has initiated an an exit request.
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// WITHDRAWABLE - validator's deposit can be withdrawn after lock up period.
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// EXITED - validator has exited, means the deposit has been withdrawn.
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// EXITED_SLASHED - validator was forcefully exited due to slashing.
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func (vs *ValidatorServer) ValidatorStatus(
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ctx context.Context,
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req *pb.ValidatorIndexRequest) (*pb.ValidatorStatusResponse, error) {
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beaconState, err := vs.beaconDB.HeadState(ctx)
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if err != nil {
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return nil, errors.Wrap(err, "could not fetch beacon state")
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}
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chainStarted := vs.powChainService.HasChainStarted()
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chainStartKeys := vs.chainStartPubkeys()
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validatorIndexMap := stateutils.ValidatorIndexMap(beaconState)
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return vs.validatorStatus(ctx, req.PublicKey, chainStarted, chainStartKeys, validatorIndexMap, beaconState), nil
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}
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// MultipleValidatorStatus returns the validator status response for the set of validators
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// requested by their pubkeys.
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func (vs *ValidatorServer) MultipleValidatorStatus(
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ctx context.Context,
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pubkeys [][]byte) (bool, []*pb.ValidatorActivationResponse_Status, error) {
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activeValidatorExists := false
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statusResponses := make([]*pb.ValidatorActivationResponse_Status, len(pubkeys))
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beaconState, err := vs.beaconDB.HeadState(ctx)
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if err != nil {
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return false, nil, err
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}
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chainStarted := vs.powChainService.HasChainStarted()
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chainStartKeys := vs.chainStartPubkeys()
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validatorIndexMap := stateutils.ValidatorIndexMap(beaconState)
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for i, key := range pubkeys {
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if ctx.Err() != nil {
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return false, nil, ctx.Err()
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}
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status := vs.validatorStatus(ctx, key, chainStarted, chainStartKeys, validatorIndexMap, beaconState)
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if status == nil {
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continue
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}
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resp := &pb.ValidatorActivationResponse_Status{
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Status: status,
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PublicKey: key,
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}
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statusResponses[i] = resp
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if status.Status == pb.ValidatorStatus_ACTIVE {
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activeValidatorExists = true
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}
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}
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return activeValidatorExists, statusResponses, nil
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}
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// ExitedValidators queries validator statuses for a give list of validators
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// and returns a filtered list of validator keys that are exited.
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func (vs *ValidatorServer) ExitedValidators(
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ctx context.Context,
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req *pb.ExitedValidatorsRequest) (*pb.ExitedValidatorsResponse, error) {
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_, statuses, err := vs.MultipleValidatorStatus(ctx, req.PublicKeys)
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if err != nil {
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return nil, err
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}
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exitedKeys := make([][]byte, 0)
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for _, status := range statuses {
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s := status.Status.Status
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if s == pb.ValidatorStatus_EXITED ||
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s == pb.ValidatorStatus_EXITED_SLASHED ||
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s == pb.ValidatorStatus_INITIATED_EXIT {
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exitedKeys = append(exitedKeys, status.PublicKey)
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}
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}
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resp := &pb.ExitedValidatorsResponse{
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PublicKeys: exitedKeys,
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}
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return resp, nil
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}
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func (vs *ValidatorServer) validatorStatus(
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ctx context.Context, pubKey []byte, chainStarted bool,
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chainStartKeys map[[96]byte]bool, idxMap map[[32]byte]int,
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beaconState *pbp2p.BeaconState) *pb.ValidatorStatusResponse {
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pk := bytesutil.ToBytes32(pubKey)
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valIdx, ok := idxMap[pk]
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_, eth1BlockNumBigInt := vs.depositCache.DepositByPubkey(ctx, pubKey)
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if eth1BlockNumBigInt == nil {
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return &pb.ValidatorStatusResponse{
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Status: pb.ValidatorStatus_UNKNOWN_STATUS,
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ActivationEpoch: params.BeaconConfig().FarFutureEpoch,
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Eth1DepositBlockNumber: 0,
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}
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}
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if !ok {
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return &pb.ValidatorStatusResponse{
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Status: pb.ValidatorStatus_UNKNOWN_STATUS,
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ActivationEpoch: params.BeaconConfig().FarFutureEpoch,
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Eth1DepositBlockNumber: eth1BlockNumBigInt.Uint64(),
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}
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}
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if !chainStarted {
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return &pb.ValidatorStatusResponse{
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Status: pb.ValidatorStatus_UNKNOWN_STATUS,
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ActivationEpoch: params.BeaconConfig().FarFutureEpoch,
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Eth1DepositBlockNumber: eth1BlockNumBigInt.Uint64(),
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}
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}
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if exists := chainStartKeys[bytesutil.ToBytes96(pubKey)]; exists {
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return &pb.ValidatorStatusResponse{
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Status: pb.ValidatorStatus_ACTIVE,
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ActivationEpoch: 0,
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Eth1DepositBlockNumber: eth1BlockNumBigInt.Uint64(),
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DepositInclusionSlot: 0,
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}
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}
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depositBlockSlot, err := vs.depositBlockSlot(ctx, beaconState.Slot, eth1BlockNumBigInt, beaconState)
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if err != nil {
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return &pb.ValidatorStatusResponse{
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Status: pb.ValidatorStatus_UNKNOWN_STATUS,
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ActivationEpoch: params.BeaconConfig().FarFutureEpoch,
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Eth1DepositBlockNumber: eth1BlockNumBigInt.Uint64(),
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}
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}
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if depositBlockSlot == 0 {
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return &pb.ValidatorStatusResponse{
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Status: pb.ValidatorStatus_UNKNOWN_STATUS,
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ActivationEpoch: params.BeaconConfig().FarFutureEpoch,
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Eth1DepositBlockNumber: eth1BlockNumBigInt.Uint64(),
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}
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}
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currEpoch := helpers.CurrentEpoch(beaconState)
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activationEpoch := params.BeaconConfig().FarFutureEpoch
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var validatorInState *ethpb.Validator
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var validatorIndex uint64
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for idx, val := range beaconState.Validators {
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if ctx.Err() != nil {
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return nil
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}
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if bytes.Equal(val.PublicKey, pubKey) {
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if helpers.IsActiveValidator(val, currEpoch) {
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activationEpoch = val.ActivationEpoch
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}
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validatorInState = val
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validatorIndex = uint64(idx)
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break
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}
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}
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var positionInQueue uint64
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// If the validator has deposited and has been added to the state:
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if validatorInState != nil {
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var lastActivatedValidatorIdx uint64
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for j := len(beaconState.Validators) - 1; j >= 0; j-- {
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if helpers.IsActiveValidator(beaconState.Validators[j], currEpoch) {
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lastActivatedValidatorIdx = uint64(j)
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break
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}
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}
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// Our position in the activation queue is the above index - our validator index.
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positionInQueue = validatorIndex - lastActivatedValidatorIdx
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}
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status := vs.lookupValidatorStatus(uint64(valIdx), beaconState)
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return &pb.ValidatorStatusResponse{
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Status: status,
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Eth1DepositBlockNumber: eth1BlockNumBigInt.Uint64(),
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PositionInActivationQueue: positionInQueue,
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DepositInclusionSlot: depositBlockSlot,
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ActivationEpoch: activationEpoch,
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}
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}
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func (vs *ValidatorServer) lookupValidatorStatus(validatorIdx uint64, beaconState *pbp2p.BeaconState) pb.ValidatorStatus {
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var status pb.ValidatorStatus
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v := beaconState.Validators[validatorIdx]
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epoch := helpers.CurrentEpoch(beaconState)
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farFutureEpoch := params.BeaconConfig().FarFutureEpoch
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if epoch < v.ActivationEpoch {
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status = pb.ValidatorStatus_PENDING_ACTIVE
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} else if v.ExitEpoch == farFutureEpoch {
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status = pb.ValidatorStatus_ACTIVE
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} else if epoch >= v.WithdrawableEpoch {
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status = pb.ValidatorStatus_WITHDRAWABLE
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} else if v.Slashed && epoch >= v.ExitEpoch {
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status = pb.ValidatorStatus_EXITED_SLASHED
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} else if epoch >= v.ExitEpoch {
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status = pb.ValidatorStatus_EXITED
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} else if v.ExitEpoch != farFutureEpoch {
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status = pb.ValidatorStatus_INITIATED_EXIT
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} else {
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status = pb.ValidatorStatus_UNKNOWN_STATUS
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}
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return status
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}
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func (vs *ValidatorServer) depositBlockSlot(ctx context.Context, currentSlot uint64,
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eth1BlockNumBigInt *big.Int, beaconState *pbp2p.BeaconState) (uint64, error) {
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blockTimeStamp, err := vs.powChainService.BlockTimeByHeight(ctx, eth1BlockNumBigInt)
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if err != nil {
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return 0, err
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}
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followTime := time.Duration(params.BeaconConfig().Eth1FollowDistance*params.BeaconConfig().GoerliBlockTime) * time.Second
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eth1UnixTime := time.Unix(int64(blockTimeStamp), 0).Add(followTime)
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votingPeriodSlots := helpers.StartSlot(params.BeaconConfig().SlotsPerEth1VotingPeriod / params.BeaconConfig().SlotsPerEpoch)
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votingPeriodSeconds := time.Duration(votingPeriodSlots*params.BeaconConfig().SecondsPerSlot) * time.Second
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timeToInclusion := eth1UnixTime.Add(votingPeriodSeconds)
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eth2Genesis := time.Unix(int64(beaconState.GenesisTime), 0)
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eth2TimeDifference := timeToInclusion.Sub(eth2Genesis).Seconds()
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depositBlockSlot := uint64(eth2TimeDifference) / params.BeaconConfig().SecondsPerSlot
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if depositBlockSlot > currentSlot {
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return 0, nil
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}
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return depositBlockSlot, nil
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}
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func (vs *ValidatorServer) chainStartPubkeys() map[[96]byte]bool {
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pubkeys := make(map[[96]byte]bool)
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deposits := vs.powChainService.ChainStartDeposits()
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for _, dep := range deposits {
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pubkeys[bytesutil.ToBytes96(dep.Data.PublicKey)] = true
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}
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return pubkeys
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}
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// DomainData fetches the current domain version information from the beacon state.
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func (vs *ValidatorServer) DomainData(ctx context.Context, request *pb.DomainRequest) (*pb.DomainResponse, error) {
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state, err := vs.beaconDB.HeadState(ctx)
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if err != nil {
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return nil, errors.Wrap(err, "could not retrieve beacon state")
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}
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dv := helpers.Domain(state, request.Epoch, request.Domain)
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return &pb.DomainResponse{
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SignatureDomain: dv,
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}, nil
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}
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