lotus/storage/pipeline/checks.go

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package sealing
import (
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"bytes"
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"context"
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"golang.org/x/xerrors"
"github.com/filecoin-project/go-address"
"github.com/filecoin-project/go-commp-utils/zerocomm"
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"github.com/filecoin-project/go-state-types/abi"
"github.com/filecoin-project/go-state-types/crypto"
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prooftypes "github.com/filecoin-project/go-state-types/proof"
"github.com/filecoin-project/lotus/chain/actors/policy"
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)
// TODO: For now we handle this by halting state execution, when we get jsonrpc reconnecting
// We should implement some wait-for-api logic
type ErrApi struct{ error }
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type ErrNoDeals struct{ error }
type ErrInvalidDeals struct{ error }
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type ErrInvalidPiece struct{ error }
type ErrExpiredDeals struct{ error }
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type ErrBadCommD struct{ error }
type ErrExpiredTicket struct{ error }
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type ErrBadTicket struct{ error }
type ErrPrecommitOnChain struct{ error }
type ErrSectorNumberAllocated struct{ error }
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type ErrBadSeed struct{ error }
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type ErrInvalidProof struct{ error }
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type ErrNoPrecommit struct{ error }
type ErrCommitWaitFailed struct{ error }
type ErrBadRU struct{ error }
type ErrBadPR struct{ error }
func checkPieces(ctx context.Context, maddr address.Address, si SectorInfo, api SealingAPI, mustHaveDeals bool) error {
tok, height, err := api.ChainHead(ctx)
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if err != nil {
return &ErrApi{xerrors.Errorf("getting chain head: %w", err)}
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}
dealCount := 0
for i, p := range si.Pieces {
// if no deal is associated with the piece, ensure that we added it as
// filler (i.e. ensure that it has a zero PieceCID)
if p.DealInfo == nil {
exp := zerocomm.ZeroPieceCommitment(p.Piece.Size.Unpadded())
if !p.Piece.PieceCID.Equals(exp) {
return &ErrInvalidPiece{xerrors.Errorf("sector %d piece %d had non-zero PieceCID %+v", si.SectorNumber, i, p.Piece.PieceCID)}
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}
continue
}
dealCount++
proposal, err := api.StateMarketStorageDealProposal(ctx, p.DealInfo.DealID, tok)
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if err != nil {
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return &ErrInvalidDeals{xerrors.Errorf("getting deal %d for piece %d: %w", p.DealInfo.DealID, i, err)}
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}
if proposal.Provider != maddr {
return &ErrInvalidDeals{xerrors.Errorf("piece %d (of %d) of sector %d refers deal %d with wrong provider: %s != %s", i, len(si.Pieces), si.SectorNumber, p.DealInfo.DealID, proposal.Provider, maddr)}
}
if proposal.PieceCID != p.Piece.PieceCID {
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return &ErrInvalidDeals{xerrors.Errorf("piece %d (of %d) of sector %d refers deal %d with wrong PieceCID: %s != %s", i, len(si.Pieces), si.SectorNumber, p.DealInfo.DealID, p.Piece.PieceCID, proposal.PieceCID)}
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}
if p.Piece.Size != proposal.PieceSize {
return &ErrInvalidDeals{xerrors.Errorf("piece %d (of %d) of sector %d refers deal %d with different size: %d != %d", i, len(si.Pieces), si.SectorNumber, p.DealInfo.DealID, p.Piece.Size, proposal.PieceSize)}
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}
if height >= proposal.StartEpoch {
return &ErrExpiredDeals{xerrors.Errorf("piece %d (of %d) of sector %d refers expired deal %d - should start at %d, head %d", i, len(si.Pieces), si.SectorNumber, p.DealInfo.DealID, proposal.StartEpoch, height)}
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}
}
if mustHaveDeals && dealCount <= 0 {
return &ErrNoDeals{(xerrors.Errorf("sector %d must have deals, but does not", si.SectorNumber))}
}
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return nil
}
// checkPrecommit checks that data commitment generated in the sealing process
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// matches pieces, and that the seal ticket isn't expired
func checkPrecommit(ctx context.Context, maddr address.Address, si SectorInfo, tok TipSetToken, height abi.ChainEpoch, api SealingAPI) (err error) {
if err := checkPieces(ctx, maddr, si, api, false); err != nil {
return err
}
commD, err := api.StateComputeDataCommitment(ctx, maddr, si.SectorType, si.dealIDs(), tok)
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if err != nil {
return &ErrApi{xerrors.Errorf("calling StateComputeDataCommitment: %w", err)}
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}
if si.CommD == nil || !commD.Equals(*si.CommD) {
return &ErrBadCommD{xerrors.Errorf("on chain CommD differs from sector: %s != %s", commD, si.CommD)}
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}
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pci, err := api.StateSectorPreCommitInfo(ctx, maddr, si.SectorNumber, tok)
if err != nil {
if err == ErrSectorAllocated {
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//committed P2 message but commit C2 message too late, pci should be null in this case
return &ErrSectorNumberAllocated{err}
}
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return &ErrApi{xerrors.Errorf("getting precommit info: %w", err)}
}
if pci != nil {
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// committed P2 message
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if pci.Info.SealRandEpoch != si.TicketEpoch {
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return &ErrBadTicket{xerrors.Errorf("bad ticket epoch: %d != %d", pci.Info.SealRandEpoch, si.TicketEpoch)}
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}
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return &ErrPrecommitOnChain{xerrors.Errorf("precommit already on chain")}
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}
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//never commit P2 message before, check ticket expiration
ticketEarliest := height - policy.MaxPreCommitRandomnessLookback
if si.TicketEpoch < ticketEarliest {
return &ErrExpiredTicket{xerrors.Errorf("ticket expired: seal height: %d, head: %d", si.TicketEpoch+policy.SealRandomnessLookback, height)}
}
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return nil
}
func (m *Sealing) checkCommit(ctx context.Context, si SectorInfo, proof []byte, tok TipSetToken) (err error) {
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if si.SeedEpoch == 0 {
return &ErrBadSeed{xerrors.Errorf("seed epoch was not set")}
}
pci, err := m.Api.StateSectorPreCommitInfo(ctx, m.maddr, si.SectorNumber, tok)
if err == ErrSectorAllocated {
// not much more we can check here, basically try to wait for commit,
// and hope that this will work
if si.CommitMessage != nil {
return &ErrCommitWaitFailed{err}
}
return err
}
if err != nil {
return xerrors.Errorf("getting precommit info: %w", err)
}
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if pci == nil {
return &ErrNoPrecommit{xerrors.Errorf("precommit info not found on-chain")}
}
if pci.PreCommitEpoch+policy.GetPreCommitChallengeDelay() != si.SeedEpoch {
return &ErrBadSeed{xerrors.Errorf("seed epoch doesn't match on chain info: %d != %d", pci.PreCommitEpoch+policy.GetPreCommitChallengeDelay(), si.SeedEpoch)}
}
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buf := new(bytes.Buffer)
if err := m.maddr.MarshalCBOR(buf); err != nil {
return err
}
seed, err := m.Api.StateGetRandomnessFromBeacon(ctx, crypto.DomainSeparationTag_InteractiveSealChallengeSeed, si.SeedEpoch, buf.Bytes(), tok)
if err != nil {
return &ErrApi{xerrors.Errorf("failed to get randomness for computing seal proof: %w", err)}
}
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if string(seed) != string(si.SeedValue) {
return &ErrBadSeed{xerrors.Errorf("seed has changed")}
}
if *si.CommR != pci.Info.SealedCID {
log.Warn("on-chain sealed CID doesn't match!")
}
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ok, err := m.verif.VerifySeal(prooftypes.SealVerifyInfo{
SectorID: m.minerSectorID(si.SectorNumber),
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SealedCID: pci.Info.SealedCID,
SealProof: pci.Info.SealProof,
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Proof: proof,
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Randomness: si.TicketValue,
InteractiveRandomness: si.SeedValue,
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UnsealedCID: *si.CommD,
})
if err != nil {
return &ErrInvalidProof{xerrors.Errorf("verify seal: %w", err)}
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}
if !ok {
return &ErrInvalidProof{xerrors.New("invalid proof (compute error?)")}
}
if err := checkPieces(ctx, m.maddr, si, m.Api, false); err != nil {
return err
}
return nil
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}
// check that sector info is good after running a replica update
func checkReplicaUpdate(ctx context.Context, maddr address.Address, si SectorInfo, tok TipSetToken, api SealingAPI) error {
if err := checkPieces(ctx, maddr, si, api, true); err != nil {
return err
}
if !si.CCUpdate {
return xerrors.Errorf("replica update on sector not marked for update")
}
commD, err := api.StateComputeDataCommitment(ctx, maddr, si.SectorType, si.dealIDs(), tok)
if err != nil {
return &ErrApi{xerrors.Errorf("calling StateComputeDataCommitment: %w", err)}
}
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if si.UpdateUnsealed == nil {
return &ErrBadRU{xerrors.New("nil UpdateUnsealed cid after replica update")}
}
if !commD.Equals(*si.UpdateUnsealed) {
return &ErrBadRU{xerrors.Errorf("calculated CommD differs from updated replica: %s != %s", commD, *si.UpdateUnsealed)}
}
if si.UpdateSealed == nil {
return &ErrBadRU{xerrors.Errorf("nil sealed cid")}
}
if si.ReplicaUpdateProof == nil {
return &ErrBadPR{xerrors.Errorf("nil PR2 proof")}
}
return nil
}