218 lines
7.4 KiB
Go
218 lines
7.4 KiB
Go
package storiface
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import (
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"context"
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"io"
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"net/http"
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"github.com/ipfs/go-cid"
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"github.com/filecoin-project/go-state-types/abi"
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"github.com/filecoin-project/go-state-types/proof"
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)
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type Data = io.Reader
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type SectorRef struct {
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ID abi.SectorID
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ProofType abi.RegisteredSealProof
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}
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var NoSectorRef = SectorRef{}
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type ProverPoSt interface {
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GenerateWinningPoSt(ctx context.Context, minerID abi.ActorID, sectorInfo []proof.ExtendedSectorInfo, randomness abi.PoStRandomness) ([]proof.PoStProof, error)
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GenerateWindowPoSt(ctx context.Context, minerID abi.ActorID, sectorInfo []proof.ExtendedSectorInfo, randomness abi.PoStRandomness) (proof []proof.PoStProof, skipped []abi.SectorID, err error)
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GenerateWinningPoStWithVanilla(ctx context.Context, proofType abi.RegisteredPoStProof, minerID abi.ActorID, randomness abi.PoStRandomness, proofs [][]byte) ([]proof.PoStProof, error)
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GenerateWindowPoStWithVanilla(ctx context.Context, proofType abi.RegisteredPoStProof, minerID abi.ActorID, randomness abi.PoStRandomness, proofs [][]byte, partitionIdx int) (proof.PoStProof, error)
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}
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type PreCommit1Out []byte
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type Commit1Out []byte
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type Proof []byte
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type SectorCids struct {
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Unsealed cid.Cid
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Sealed cid.Cid
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}
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type Range struct {
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Offset abi.UnpaddedPieceSize
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Size abi.UnpaddedPieceSize
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}
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type ReplicaUpdateProof []byte
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type ReplicaVanillaProofs [][]byte
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type ReplicaUpdateOut struct {
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NewSealed cid.Cid
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NewUnsealed cid.Cid
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}
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type Sealer interface {
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NewSector(ctx context.Context, sector SectorRef) error
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DataCid(ctx context.Context, pieceSize abi.UnpaddedPieceSize, pieceData Data) (abi.PieceInfo, error)
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AddPiece(ctx context.Context, sector SectorRef, pieceSizes []abi.UnpaddedPieceSize, newPieceSize abi.UnpaddedPieceSize, pieceData Data) (abi.PieceInfo, error)
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SealPreCommit1(ctx context.Context, sector SectorRef, ticket abi.SealRandomness, pieces []abi.PieceInfo) (PreCommit1Out, error)
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SealPreCommit2(ctx context.Context, sector SectorRef, pc1o PreCommit1Out) (SectorCids, error)
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SealCommit1(ctx context.Context, sector SectorRef, ticket abi.SealRandomness, seed abi.InteractiveSealRandomness, pieces []abi.PieceInfo, cids SectorCids) (Commit1Out, error)
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SealCommit2(ctx context.Context, sector SectorRef, c1o Commit1Out) (Proof, error)
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FinalizeSector(ctx context.Context, sector SectorRef) error
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// ReleaseUnsealed marks parts of the unsealed sector file as safe to drop
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// (called by the fsm on restart, allows storage to keep no persistent
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// state about unsealed fast-retrieval copies)
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ReleaseUnsealed(ctx context.Context, sector SectorRef, keepUnsealed []Range) error
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// ReleaseSectorKey removes `sealed` from all storage
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// called after successful sector upgrade
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ReleaseSectorKey(ctx context.Context, sector SectorRef) error
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// ReleaseReplicaUpgrade removes `update` / `update-cache` from all storage
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// called when aborting sector upgrade
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ReleaseReplicaUpgrade(ctx context.Context, sector SectorRef) error
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// Removes all data associated with the specified sector
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Remove(ctx context.Context, sector SectorRef) error
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// Generate snap deals replica update
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ReplicaUpdate(ctx context.Context, sector SectorRef, pieces []abi.PieceInfo) (ReplicaUpdateOut, error)
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// Prove that snap deals replica was done correctly
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ProveReplicaUpdate1(ctx context.Context, sector SectorRef, sectorKey, newSealed, newUnsealed cid.Cid) (ReplicaVanillaProofs, error)
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ProveReplicaUpdate2(ctx context.Context, sector SectorRef, sectorKey, newSealed, newUnsealed cid.Cid, vanillaProofs ReplicaVanillaProofs) (ReplicaUpdateProof, error)
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// GenerateSectorKeyFromData computes sector key given unsealed data and updated replica
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GenerateSectorKeyFromData(ctx context.Context, sector SectorRef, unsealed cid.Cid) error
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FinalizeReplicaUpdate(ctx context.Context, sector SectorRef) error
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DownloadSectorData(ctx context.Context, sector SectorRef, finalized bool, src map[SectorFileType]SectorLocation) error
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}
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type Unsealer interface {
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UnsealPiece(ctx context.Context, sector SectorRef, offset UnpaddedByteIndex, size abi.UnpaddedPieceSize, randomness abi.SealRandomness, commd cid.Cid) error
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ReadPiece(ctx context.Context, writer io.Writer, sector SectorRef, offset UnpaddedByteIndex, size abi.UnpaddedPieceSize) (bool, error)
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}
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type Storage interface {
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ProverPoSt
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Sealer
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Unsealer
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}
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type Validator interface {
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CanCommit(sector SectorPaths) (bool, error)
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CanProve(sector SectorPaths) (bool, error)
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}
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type Verifier interface {
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VerifySeal(proof.SealVerifyInfo) (bool, error)
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VerifyAggregateSeals(aggregate proof.AggregateSealVerifyProofAndInfos) (bool, error)
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VerifyReplicaUpdate(update proof.ReplicaUpdateInfo) (bool, error)
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VerifyWinningPoSt(ctx context.Context, info proof.WinningPoStVerifyInfo) (bool, error)
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VerifyWindowPoSt(ctx context.Context, info proof.WindowPoStVerifyInfo) (bool, error)
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GenerateWinningPoStSectorChallenge(context.Context, abi.RegisteredPoStProof, abi.ActorID, abi.PoStRandomness, uint64) ([]uint64, error)
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}
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// Prover contains cheap proving-related methods
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type Prover interface {
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// TODO: move GenerateWinningPoStSectorChallenge from the Verifier interface to here
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AggregateSealProofs(aggregateInfo proof.AggregateSealVerifyProofAndInfos, proofs [][]byte) ([]byte, error)
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}
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type SectorLocation struct {
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// Local when set to true indicates to lotus that sector data is already
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// available locally; When set lotus will skip fetching sector data, and
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// only check that sector data exists in sector storage
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Local bool
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// URL to the sector data
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// For sealed/unsealed sector, lotus expects octet-stream
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// For cache, lotus expects a tar archive with cache files
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// Valid schemas:
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// - http:// / https://
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URL string
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// optional http headers to use when requesting sector data
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Headers []SecDataHttpHeader
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}
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func (sd *SectorLocation) HttpHeaders() http.Header {
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out := http.Header{}
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for _, header := range sd.Headers {
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out[header.Key] = append(out[header.Key], header.Value)
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}
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return out
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}
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// note: we can't use http.Header as that's backed by a go map, which is all kinds of messy
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type SecDataHttpHeader struct {
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Key string
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Value string
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}
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// StorageConfig .lotusstorage/storage.json
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type StorageConfig struct {
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StoragePaths []LocalPath
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}
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type LocalPath struct {
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Path string
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}
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// LocalStorageMeta [path]/sectorstore.json
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type LocalStorageMeta struct {
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ID ID
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// A high weight means data is more likely to be stored in this path
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Weight uint64 // 0 = readonly
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// Intermediate data for the sealing process will be stored here
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CanSeal bool
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// Finalized sectors that will be proved over time will be stored here
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CanStore bool
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// MaxStorage specifies the maximum number of bytes to use for sector storage
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// (0 = unlimited)
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MaxStorage uint64
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// List of storage groups this path belongs to
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Groups []string
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// List of storage groups to which data from this path can be moved. If none
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// are specified, allow to all
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AllowTo []string
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// AllowTypes lists sector file types which are allowed to be put into this
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// path. If empty, all file types are allowed.
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//
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// Valid values:
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// - "unsealed"
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// - "sealed"
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// - "cache"
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// - "update"
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// - "update-cache"
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// Any other value will generate a warning and be ignored.
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AllowTypes []string
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// DenyTypes lists sector file types which aren't allowed to be put into this
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// path.
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//
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// Valid values:
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// - "unsealed"
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// - "sealed"
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// - "cache"
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// - "update"
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// - "update-cache"
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// Any other value will generate a warning and be ignored.
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DenyTypes []string
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}
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