320 lines
8.7 KiB
Nim
320 lines
8.7 KiB
Nim
## Nim-Codex
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## Copyright (c) 2022 Status Research & Development GmbH
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## Licensed under either of
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## * Apache License, version 2.0, ([LICENSE-APACHE](LICENSE-APACHE))
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## * MIT license ([LICENSE-MIT](LICENSE-MIT))
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## at your option.
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## This file may not be copied, modified, or distributed except according to
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## those terms.
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# This module defines all operations on Manifest
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import pkg/upraises
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push: {.upraises: [].}
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import pkg/libp2p/protobuf/minprotobuf
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import pkg/libp2p/[cid, multihash, multicodec]
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import pkg/questionable/results
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import ../errors
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import ../utils
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import ../utils/json
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import ../units
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import ../blocktype
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type
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Manifest* = ref object of RootObj
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treeCid {.serialize.}: Cid # Root of the merkle tree
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datasetSize {.serialize.}: NBytes # Total size of all blocks
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blockSize {.serialize.}: NBytes # Size of each contained block (might not be needed if blocks are len-prefixed)
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codec: MultiCodec # Dataset codec
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hcodec: MultiCodec # Multihash codec
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version: CidVersion # Cid version
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case protected {.serialize.}: bool # Protected datasets have erasure coded info
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of true:
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ecK: int # Number of blocks to encode
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ecM: int # Number of resulting parity blocks
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originalTreeCid: Cid # The original root of the dataset being erasure coded
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originalDatasetSize: NBytes
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case verifiable {.serialize.}: bool # Verifiable datasets can be used to generate storage proofs
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of true:
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verifyRoot: Cid # Root of the top level merkle tree built from slot roots
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slotRoots: seq[Cid] # Individual slot root built from the original dataset blocks
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else:
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discard
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else:
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discard
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############################################################
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# Accessors
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############################################################
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proc blockSize*(self: Manifest): NBytes =
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self.blockSize
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proc datasetSize*(self: Manifest): NBytes =
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self.datasetSize
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proc version*(self: Manifest): CidVersion =
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self.version
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proc hcodec*(self: Manifest): MultiCodec =
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self.hcodec
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proc codec*(self: Manifest): MultiCodec =
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self.codec
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proc protected*(self: Manifest): bool =
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self.protected
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proc ecK*(self: Manifest): int =
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self.ecK
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proc ecM*(self: Manifest): int =
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self.ecM
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proc originalTreeCid*(self: Manifest): Cid =
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self.originalTreeCid
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proc originalBlocksCount*(self: Manifest): int =
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divUp(self.originalDatasetSize.int, self.blockSize.int)
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proc originalDatasetSize*(self: Manifest): NBytes =
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self.originalDatasetSize
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proc treeCid*(self: Manifest): Cid =
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self.treeCid
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proc blocksCount*(self: Manifest): int =
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divUp(self.datasetSize.int, self.blockSize.int)
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proc verifiable*(self: Manifest): bool =
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self.verifiable
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proc verifyRoot*(self: Manifest): Cid =
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self.verifyRoot
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proc slotRoots*(self: Manifest): seq[Cid] =
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self.slotRoots
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proc numSlots*(self: Manifest): int =
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if not self.protected:
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0
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else:
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self.ecK + self.ecM
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############################################################
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# Operations on block list
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############################################################
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func isManifest*(cid: Cid): ?!bool =
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success (ManifestCodec == ? cid.contentType().mapFailure(CodexError))
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func isManifest*(mc: MultiCodec): ?!bool =
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success mc == ManifestCodec
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############################################################
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# Various sizes and verification
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############################################################
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func bytes*(self: Manifest, pad = true): NBytes =
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## Compute how many bytes corresponding StoreStream(Manifest, pad) will return
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if pad or self.protected:
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self.blocksCount.NBytes * self.blockSize
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else:
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self.datasetSize
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func rounded*(self: Manifest): int =
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## Number of data blocks in *protected* manifest including padding at the end
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roundUp(self.originalBlocksCount, self.ecK)
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func steps*(self: Manifest): int =
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## Number of EC groups in *protected* manifest
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divUp(self.originalBlocksCount, self.ecK)
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func verify*(self: Manifest): ?!void =
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## Check manifest correctness
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##
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if self.protected and (self.blocksCount != self.steps * (self.ecK + self.ecM)):
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return failure newException(CodexError, "Broken manifest: wrong originalBlocksCount")
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return success()
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proc cid*(self: Manifest): ?!Cid {.deprecated: "use treeCid instead".} =
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self.treeCid.success
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proc `==`*(a, b: Manifest): bool =
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(a.treeCid == b.treeCid) and
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(a.datasetSize == b.datasetSize) and
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(a.blockSize == b.blockSize) and
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(a.version == b.version) and
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(a.hcodec == b.hcodec) and
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(a.codec == b.codec) and
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(a.protected == b.protected) and
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(if a.protected:
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(a.ecK == b.ecK) and
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(a.ecM == b.ecM) and
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(a.originalTreeCid == b.originalTreeCid) and
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(a.originalDatasetSize == b.originalDatasetSize) and
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(a.verifiable == b.verifiable) and
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(if a.verifiable:
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(a.verifyRoot == b.verifyRoot) and
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(a.slotRoots == b.slotRoots)
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else:
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true)
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else:
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true)
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proc `$`*(self: Manifest): string =
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"treeCid: " & $self.treeCid &
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", datasetSize: " & $self.datasetSize &
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", blockSize: " & $self.blockSize &
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", version: " & $self.version &
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", hcodec: " & $self.hcodec &
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", codec: " & $self.codec &
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", protected: " & $self.protected &
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(if self.protected:
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", ecK: " & $self.ecK &
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", ecM: " & $self.ecM &
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", originalTreeCid: " & $self.originalTreeCid &
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", originalDatasetSize: " & $self.originalDatasetSize &
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", verifiable: " & $self.verifiable &
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(if self.verifiable:
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", verifyRoot: " & $self.verifyRoot &
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", slotRoots: " & $self.slotRoots
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else:
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"")
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else:
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"")
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############################################################
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# Constructors
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############################################################
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proc new*(
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T: type Manifest,
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treeCid: Cid,
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blockSize: NBytes,
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datasetSize: NBytes,
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version: CidVersion = CIDv1,
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hcodec = Sha256HashCodec,
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codec = BlockCodec,
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protected = false): Manifest =
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T(
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treeCid: treeCid,
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blockSize: blockSize,
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datasetSize: datasetSize,
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version: version,
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codec: codec,
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hcodec: hcodec,
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protected: protected)
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proc new*(
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T: type Manifest,
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manifest: Manifest,
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treeCid: Cid,
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datasetSize: NBytes,
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ecK, ecM: int): Manifest =
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## Create an erasure protected dataset from an
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## unprotected one
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##
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Manifest(
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treeCid: treeCid,
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datasetSize: datasetSize,
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version: manifest.version,
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codec: manifest.codec,
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hcodec: manifest.hcodec,
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blockSize: manifest.blockSize,
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protected: true,
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ecK: ecK, ecM: ecM,
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originalTreeCid: manifest.treeCid,
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originalDatasetSize: manifest.datasetSize)
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proc new*(
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T: type Manifest,
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manifest: Manifest): Manifest =
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## Create an unprotected dataset from an
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## erasure protected one
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##
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Manifest(
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treeCid: manifest.originalTreeCid,
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datasetSize: manifest.originalDatasetSize,
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version: manifest.version,
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codec: manifest.codec,
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hcodec: manifest.hcodec,
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blockSize: manifest.blockSize,
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protected: false)
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proc new*(
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T: type Manifest,
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data: openArray[byte]): ?!Manifest =
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## Create a manifest instance from given data
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##
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Manifest.decode(data)
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proc new*(
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T: type Manifest,
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treeCid: Cid,
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datasetSize: NBytes,
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blockSize: NBytes,
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version: CidVersion,
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hcodec: MultiCodec,
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codec: MultiCodec,
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ecK: int,
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ecM: int,
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originalTreeCid: Cid,
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originalDatasetSize: NBytes): Manifest =
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Manifest(
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treeCid: treeCid,
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datasetSize: datasetSize,
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blockSize: blockSize,
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version: version,
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hcodec: hcodec,
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codec: codec,
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protected: true,
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ecK: ecK,
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ecM: ecM,
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originalTreeCid: originalTreeCid,
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originalDatasetSize: originalDatasetSize
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)
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proc new*(
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T: type Manifest,
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manifest: Manifest,
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verifyRoot: Cid,
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slotRoots: openArray[Cid]): ?!Manifest =
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## Create a verifiable dataset from an
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## protected one
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##
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if not manifest.protected:
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return failure newException(
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CodexError, "Can create verifiable manifest only from protected manifest.")
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if slotRoots.len != manifest.numSlots:
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return failure newException(
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CodexError, "Wrong number of slot roots.")
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success Manifest(
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treeCid: manifest.treeCid,
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datasetSize: manifest.datasetSize,
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version: manifest.version,
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codec: manifest.codec,
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hcodec: manifest.hcodec,
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blockSize: manifest.blockSize,
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protected: true,
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ecK: manifest.ecK,
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ecM: manifest.ecM,
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originalTreeCid: manifest.treeCid,
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originalDatasetSize: manifest.originalDatasetSize,
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verifiable: true,
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verifyRoot: verifyRoot,
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slotRoots: @slotRoots)
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