447 lines
15 KiB
Go
447 lines
15 KiB
Go
package lpffi
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import (
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"context"
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"encoding/json"
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"fmt"
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"io"
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"os"
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"path/filepath"
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"github.com/KarpelesLab/reflink"
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"github.com/ipfs/go-cid"
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logging "github.com/ipfs/go-log/v2"
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"github.com/puzpuzpuz/xsync/v2"
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"golang.org/x/xerrors"
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ffi "github.com/filecoin-project/filecoin-ffi"
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commcid "github.com/filecoin-project/go-fil-commcid"
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"github.com/filecoin-project/go-state-types/abi"
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proof2 "github.com/filecoin-project/go-state-types/proof"
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"github.com/filecoin-project/lotus/lib/harmony/harmonytask"
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"github.com/filecoin-project/lotus/provider/lpproof"
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"github.com/filecoin-project/lotus/storage/paths"
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"github.com/filecoin-project/lotus/storage/sealer/proofpaths"
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"github.com/filecoin-project/lotus/storage/sealer/storiface"
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)
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var log = logging.Logger("lpffi")
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/*
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type ExternPrecommit2 func(ctx context.Context, sector storiface.SectorRef, cache, sealed string, pc1out storiface.PreCommit1Out) (sealedCID cid.Cid, unsealedCID cid.Cid, err error)
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type ExternalSealer struct {
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PreCommit2 ExternPrecommit2
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}
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*/
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type SealCalls struct {
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sectors *storageProvider
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/*// externCalls cointain overrides for calling alternative sealing logic
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externCalls ExternalSealer*/
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}
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func NewSealCalls(st *paths.Remote, ls *paths.Local, si paths.SectorIndex) *SealCalls {
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return &SealCalls{
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sectors: &storageProvider{
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storage: st,
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localStore: ls,
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sindex: si,
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storageReservations: xsync.NewIntegerMapOf[harmonytask.TaskID, *StorageReservation](),
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},
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}
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}
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type storageProvider struct {
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storage *paths.Remote
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localStore *paths.Local
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sindex paths.SectorIndex
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storageReservations *xsync.MapOf[harmonytask.TaskID, *StorageReservation]
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}
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func (l *storageProvider) AcquireSector(ctx context.Context, taskID *harmonytask.TaskID, sector storiface.SectorRef, existing, allocate storiface.SectorFileType, sealing storiface.PathType) (storiface.SectorPaths, func(), error) {
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var paths, storageIDs storiface.SectorPaths
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var releaseStorage func()
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var ok bool
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var resv *StorageReservation
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if taskID != nil {
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resv, ok = l.storageReservations.Load(*taskID)
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}
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if ok {
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if resv.Alloc != allocate || resv.Existing != existing {
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// this should never happen, only when task definition is wrong
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return storiface.SectorPaths{}, nil, xerrors.Errorf("storage reservation type mismatch")
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}
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log.Debugw("using existing storage reservation", "task", taskID, "sector", sector, "existing", existing, "allocate", allocate)
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paths = resv.Paths
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releaseStorage = resv.Release
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} else {
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var err error
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paths, storageIDs, err = l.storage.AcquireSector(ctx, sector, existing, allocate, sealing, storiface.AcquireMove)
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if err != nil {
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return storiface.SectorPaths{}, nil, err
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}
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releaseStorage, err = l.localStore.Reserve(ctx, sector, allocate, storageIDs, storiface.FSOverheadSeal)
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if err != nil {
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return storiface.SectorPaths{}, nil, xerrors.Errorf("reserving storage space: %w", err)
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}
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}
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log.Debugf("acquired sector %d (e:%d; a:%d): %v", sector, existing, allocate, paths)
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return paths, func() {
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releaseStorage()
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for _, fileType := range storiface.PathTypes {
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if fileType&allocate == 0 {
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continue
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}
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sid := storiface.PathByType(storageIDs, fileType)
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if err := l.sindex.StorageDeclareSector(ctx, storiface.ID(sid), sector.ID, fileType, true); err != nil {
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log.Errorf("declare sector error: %+v", err)
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}
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}
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}, nil
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}
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func (sb *SealCalls) GenerateSDR(ctx context.Context, taskID harmonytask.TaskID, sector storiface.SectorRef, ticket abi.SealRandomness, commKcid cid.Cid) error {
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paths, releaseSector, err := sb.sectors.AcquireSector(ctx, &taskID, sector, storiface.FTNone, storiface.FTCache, storiface.PathSealing)
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if err != nil {
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return xerrors.Errorf("acquiring sector paths: %w", err)
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}
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defer releaseSector()
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// prepare SDR params
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commp, err := commcid.CIDToDataCommitmentV1(commKcid)
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if err != nil {
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return xerrors.Errorf("computing commK: %w", err)
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}
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replicaID, err := sector.ProofType.ReplicaId(sector.ID.Miner, sector.ID.Number, ticket, commp)
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if err != nil {
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return xerrors.Errorf("computing replica id: %w", err)
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}
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// generate new sector key
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err = ffi.GenerateSDR(
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sector.ProofType,
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paths.Cache,
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replicaID,
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)
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if err != nil {
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return xerrors.Errorf("generating SDR %d (%s): %w", sector.ID.Number, paths.Unsealed, err)
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}
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return nil
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}
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func (sb *SealCalls) TreeD(ctx context.Context, sector storiface.SectorRef, size abi.PaddedPieceSize, data io.Reader, unpaddedData bool) (cid.Cid, error) {
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maybeUns := storiface.FTNone
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// todo sectors with data
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paths, releaseSector, err := sb.sectors.AcquireSector(ctx, nil, sector, storiface.FTCache, maybeUns, storiface.PathSealing)
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if err != nil {
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return cid.Undef, xerrors.Errorf("acquiring sector paths: %w", err)
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}
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defer releaseSector()
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return lpproof.BuildTreeD(data, unpaddedData, filepath.Join(paths.Cache, proofpaths.TreeDName), size)
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}
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func (sb *SealCalls) TreeRC(ctx context.Context, sector storiface.SectorRef, unsealed cid.Cid) (cid.Cid, cid.Cid, error) {
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p1o, err := sb.makePhase1Out(unsealed, sector.ProofType)
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if err != nil {
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return cid.Undef, cid.Undef, xerrors.Errorf("make phase1 output: %w", err)
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}
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paths, releaseSector, err := sb.sectors.AcquireSector(ctx, nil, sector, storiface.FTCache, storiface.FTSealed, storiface.PathSealing)
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if err != nil {
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return cid.Undef, cid.Undef, xerrors.Errorf("acquiring sector paths: %w", err)
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}
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defer releaseSector()
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{
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// create sector-sized file at paths.Sealed; PC2 transforms it into a sealed sector in-place
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ssize, err := sector.ProofType.SectorSize()
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if err != nil {
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return cid.Undef, cid.Undef, xerrors.Errorf("getting sector size: %w", err)
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}
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{
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// copy TreeD prefix to sealed sector, SealPreCommitPhase2 will mutate it in place into the sealed sector
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// first try reflink + truncate, that should be way faster
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err := reflink.Always(filepath.Join(paths.Cache, proofpaths.TreeDName), paths.Sealed)
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if err == nil {
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err = os.Truncate(paths.Sealed, int64(ssize))
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if err != nil {
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return cid.Undef, cid.Undef, xerrors.Errorf("truncating reflinked sealed file: %w", err)
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}
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} else {
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log.Errorw("reflink treed -> sealed failed, falling back to slow copy, use single scratch btrfs or xfs filesystem", "error", err, "sector", sector, "cache", paths.Cache, "sealed", paths.Sealed)
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// fallback to slow copy, copy ssize bytes from treed to sealed
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dst, err := os.OpenFile(paths.Sealed, os.O_WRONLY|os.O_CREATE, 0644)
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if err != nil {
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return cid.Undef, cid.Undef, xerrors.Errorf("opening sealed sector file: %w", err)
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}
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src, err := os.Open(filepath.Join(paths.Cache, proofpaths.TreeDName))
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if err != nil {
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return cid.Undef, cid.Undef, xerrors.Errorf("opening treed sector file: %w", err)
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}
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_, err = io.CopyN(dst, src, int64(ssize))
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derr := dst.Close()
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_ = src.Close()
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if err != nil {
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return cid.Undef, cid.Undef, xerrors.Errorf("copying treed -> sealed: %w", err)
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}
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if derr != nil {
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return cid.Undef, cid.Undef, xerrors.Errorf("closing sealed file: %w", derr)
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}
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}
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}
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}
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return ffi.SealPreCommitPhase2(p1o, paths.Cache, paths.Sealed)
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}
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func (sb *SealCalls) GenerateSynthPoRep() {
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panic("todo")
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}
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func (sb *SealCalls) PoRepSnark(ctx context.Context, sn storiface.SectorRef, sealed, unsealed cid.Cid, ticket abi.SealRandomness, seed abi.InteractiveSealRandomness) ([]byte, error) {
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vproof, err := sb.sectors.storage.GeneratePoRepVanillaProof(ctx, sn, sealed, unsealed, ticket, seed)
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if err != nil {
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return nil, xerrors.Errorf("failed to generate vanilla proof: %w", err)
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}
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proof, err := ffi.SealCommitPhase2(vproof, sn.ID.Number, sn.ID.Miner)
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if err != nil {
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return nil, xerrors.Errorf("computing seal proof failed: %w", err)
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}
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ok, err := ffi.VerifySeal(proof2.SealVerifyInfo{
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SealProof: sn.ProofType,
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SectorID: sn.ID,
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DealIDs: nil,
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Randomness: ticket,
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InteractiveRandomness: seed,
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Proof: proof,
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SealedCID: sealed,
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UnsealedCID: unsealed,
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})
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if err != nil {
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return nil, xerrors.Errorf("failed to verify proof: %w", err)
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}
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if !ok {
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return nil, xerrors.Errorf("porep failed to validate")
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}
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return proof, nil
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}
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func (sb *SealCalls) makePhase1Out(unsCid cid.Cid, spt abi.RegisteredSealProof) ([]byte, error) {
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commd, err := commcid.CIDToDataCommitmentV1(unsCid)
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if err != nil {
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return nil, xerrors.Errorf("make uns cid: %w", err)
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}
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type Config struct {
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ID string `json:"id"`
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Path string `json:"path"`
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RowsToDiscard int `json:"rows_to_discard"`
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Size int `json:"size"`
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}
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type Labels struct {
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H *string `json:"_h"` // proofs want this..
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Labels []Config `json:"labels"`
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}
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var phase1Output struct {
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CommD [32]byte `json:"comm_d"`
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Config Config `json:"config"` // TreeD
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Labels map[string]*Labels `json:"labels"`
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RegisteredProof string `json:"registered_proof"`
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}
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copy(phase1Output.CommD[:], commd)
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phase1Output.Config.ID = "tree-d"
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phase1Output.Config.Path = "/placeholder"
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phase1Output.Labels = map[string]*Labels{}
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switch spt {
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case abi.RegisteredSealProof_StackedDrg2KiBV1_1, abi.RegisteredSealProof_StackedDrg2KiBV1_1_Feat_SyntheticPoRep:
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phase1Output.Config.RowsToDiscard = 0
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phase1Output.Config.Size = 127
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phase1Output.Labels["StackedDrg2KiBV1"] = &Labels{}
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phase1Output.RegisteredProof = "StackedDrg2KiBV1_1"
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for i := 0; i < 2; i++ {
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phase1Output.Labels["StackedDrg2KiBV1"].Labels = append(phase1Output.Labels["StackedDrg2KiBV1"].Labels, Config{
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ID: fmt.Sprintf("layer-%d", i+1),
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Path: "/placeholder",
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RowsToDiscard: 0,
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Size: 64,
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})
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}
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case abi.RegisteredSealProof_StackedDrg512MiBV1_1:
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phase1Output.Config.RowsToDiscard = 0
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phase1Output.Config.Size = 33554431
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phase1Output.Labels["StackedDrg512MiBV1"] = &Labels{}
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phase1Output.RegisteredProof = "StackedDrg512MiBV1_1"
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for i := 0; i < 2; i++ {
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phase1Output.Labels["StackedDrg512MiBV1"].Labels = append(phase1Output.Labels["StackedDrg512MiBV1"].Labels, Config{
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ID: fmt.Sprintf("layer-%d", i+1),
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Path: "placeholder",
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RowsToDiscard: 0,
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Size: 16777216,
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})
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}
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case abi.RegisteredSealProof_StackedDrg32GiBV1_1:
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phase1Output.Config.RowsToDiscard = 0
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phase1Output.Config.Size = 2147483647
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phase1Output.Labels["StackedDrg32GiBV1"] = &Labels{}
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phase1Output.RegisteredProof = "StackedDrg32GiBV1_1"
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for i := 0; i < 11; i++ {
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phase1Output.Labels["StackedDrg32GiBV1"].Labels = append(phase1Output.Labels["StackedDrg32GiBV1"].Labels, Config{
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ID: fmt.Sprintf("layer-%d", i+1),
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Path: "/placeholder",
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RowsToDiscard: 0,
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Size: 1073741824,
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})
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}
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case abi.RegisteredSealProof_StackedDrg64GiBV1_1:
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phase1Output.Config.RowsToDiscard = 0
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phase1Output.Config.Size = 4294967295
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phase1Output.Labels["StackedDrg64GiBV1"] = &Labels{}
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phase1Output.RegisteredProof = "StackedDrg64GiBV1_1"
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for i := 0; i < 11; i++ {
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phase1Output.Labels["StackedDrg64GiBV1"].Labels = append(phase1Output.Labels["StackedDrg64GiBV1"].Labels, Config{
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ID: fmt.Sprintf("layer-%d", i+1),
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Path: "/placeholder",
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RowsToDiscard: 0,
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Size: 2147483648,
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})
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}
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default:
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panic("proof type not handled")
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}
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return json.Marshal(phase1Output)
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}
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func (sb *SealCalls) LocalStorage(ctx context.Context) ([]storiface.StoragePath, error) {
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return sb.sectors.localStore.Local(ctx)
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}
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func (sb *SealCalls) FinalizeSector(ctx context.Context, sector storiface.SectorRef, keepUnsealed bool) error {
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alloc := storiface.FTNone
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if keepUnsealed {
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// note: In lotus-provider we don't write the unsealed file in any of the previous stages, it's only written here from tree-d
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alloc = storiface.FTUnsealed
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}
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sectorPaths, releaseSector, err := sb.sectors.AcquireSector(ctx, nil, sector, storiface.FTCache, alloc, storiface.PathSealing)
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if err != nil {
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return xerrors.Errorf("acquiring sector paths: %w", err)
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}
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defer releaseSector()
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ssize, err := sector.ProofType.SectorSize()
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if err != nil {
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return xerrors.Errorf("getting sector size: %w", err)
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}
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if keepUnsealed {
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// tree-d contains exactly unsealed data in the prefix, so
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// * we move it to a temp file
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// * we truncate the temp file to the sector size
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// * we move the temp file to the unsealed location
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// move tree-d to temp file
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tempUnsealed := filepath.Join(sectorPaths.Cache, storiface.SectorName(sector.ID))
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if err := os.Rename(filepath.Join(sectorPaths.Cache, proofpaths.TreeDName), tempUnsealed); err != nil {
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return xerrors.Errorf("moving tree-d to temp file: %w", err)
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}
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// truncate sealed file to sector size
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if err := os.Truncate(tempUnsealed, int64(ssize)); err != nil {
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return xerrors.Errorf("truncating unsealed file to sector size: %w", err)
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}
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// move temp file to unsealed location
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if err := paths.Move(tempUnsealed, sectorPaths.Unsealed); err != nil {
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return xerrors.Errorf("move temp unsealed sector to final location (%s -> %s): %w", tempUnsealed, sectorPaths.Unsealed, err)
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}
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}
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if err := ffi.ClearCache(uint64(ssize), sectorPaths.Cache); err != nil {
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return xerrors.Errorf("clearing cache: %w", err)
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}
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return nil
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}
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func (sb *SealCalls) MoveStorage(ctx context.Context, sector storiface.SectorRef) error {
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// only move the unsealed file if it still exists and needs moving
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moveUnsealed := storiface.FTUnsealed
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{
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found, unsealedPathType, err := sb.sectorStorageType(ctx, sector, storiface.FTUnsealed)
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if err != nil {
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return xerrors.Errorf("checking cache storage type: %w", err)
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}
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if !found || unsealedPathType == storiface.PathStorage {
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moveUnsealed = storiface.FTNone
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}
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}
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toMove := storiface.FTCache | storiface.FTSealed | moveUnsealed
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err := sb.sectors.storage.MoveStorage(ctx, sector, toMove)
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if err != nil {
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return xerrors.Errorf("moving storage: %w", err)
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}
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for _, fileType := range toMove.AllSet() {
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if err := sb.sectors.storage.RemoveCopies(ctx, sector.ID, fileType); err != nil {
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return xerrors.Errorf("rm copies (t:%s, s:%v): %w", fileType, sector, err)
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}
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}
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return nil
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}
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func (sb *SealCalls) sectorStorageType(ctx context.Context, sector storiface.SectorRef, ft storiface.SectorFileType) (sectorFound bool, ptype storiface.PathType, err error) {
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stores, err := sb.sectors.sindex.StorageFindSector(ctx, sector.ID, ft, 0, false)
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if err != nil {
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return false, "", xerrors.Errorf("finding sector: %w", err)
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}
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if len(stores) == 0 {
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return false, "", nil
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}
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for _, store := range stores {
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if store.CanSeal {
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return true, storiface.PathSealing, nil
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}
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}
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return true, storiface.PathStorage, nil
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}
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