179 lines
4.3 KiB
Nim
179 lines
4.3 KiB
Nim
## Nim-Dagger
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## Copyright (c) 2021 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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{.push raises: [Defect].}
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import pkg/libp2p
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import pkg/libp2p/protobuf/minprotobuf
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import pkg/questionable
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import pkg/questionable/results
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import pkg/chronicles
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import pkg/chronos
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import ./blocktype
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import ./errors
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const
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ManifestCodec* = multiCodec("dag-pb")
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var
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emptyDigest {.threadvar.}: array[CidVersion, MultiHash]
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type
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BlocksManifest* = object
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blocks: seq[Cid]
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htree: ?Cid
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version*: CidVersion
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hcodec*: MultiCodec
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codec*: MultiCodec
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proc len*(b: BlocksManifest): int = b.blocks.len
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iterator items*(b: BlocksManifest): Cid =
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for b in b.blocks:
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yield b
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proc hashBytes(mh: MultiHash): seq[byte] =
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mh.data.buffer[mh.dpos..(mh.dpos + mh.size - 1)]
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proc cid*(b: var BlocksManifest): ?!Cid =
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if htree =? b.htree:
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return htree.success
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var
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stack: seq[MultiHash]
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if stack.len == 1:
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stack.add(emptyDigest[b.version])
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for cid in b.blocks:
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stack.add(? cid.mhash.mapFailure)
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while stack.len > 1:
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let
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(b1, b2) = (stack.pop(), stack.pop())
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mh = ? MultiHash.digest(
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$b.hcodec,
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(b1.hashBytes() & b2.hashBytes()))
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.mapFailure
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stack.add(mh)
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if stack.len == 1:
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let cid = ? Cid.init(b.version, b.codec, stack[0]).mapFailure
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b.htree = cid.some
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return cid.success
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proc put*(b: var BlocksManifest, cid: Cid) =
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b.htree = Cid.none
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trace "Adding cid to manifest", cid
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b.blocks.add(cid)
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proc contains*(b: BlocksManifest, cid: Cid): bool =
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cid in b.blocks
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proc encode*(b: var BlocksManifest): ?!seq[byte] =
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## Encode the manifest into a ``ManifestCodec``
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## multicodec container (Dag-pb) for now
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var pbNode = initProtoBuffer()
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for c in b.blocks:
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var pbLink = initProtoBuffer()
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pbLink.write(1, c.data.buffer) # write Cid links
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pbLink.finish()
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pbNode.write(2, pbLink)
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let cid = ? b.cid
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pbNode.write(1, cid.data.buffer) # set the treeHash Cid as the data field
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pbNode.finish()
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return pbNode.buffer.success
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proc decode*(_: type BlocksManifest, data: seq[byte]): ?!(Cid, seq[Cid]) =
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## Decode a manifest from a byte seq
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##
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var
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pbNode = initProtoBuffer(data)
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cidBuf: seq[byte]
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blocks: seq[Cid]
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if pbNode.getField(1, cidBuf).isOk:
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let cid = ? Cid.init(cidBuf).mapFailure
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var linksBuf: seq[seq[byte]]
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if pbNode.getRepeatedField(2, linksBuf).isOk:
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for pbLinkBuf in linksBuf:
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var
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blocksBuf: seq[seq[byte]]
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blockBuf: seq[byte]
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pbLink = initProtoBuffer(pbLinkBuf)
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if pbLink.getField(1, blockBuf).isOk:
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let cidRes = Cid.init(blockBuf)
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if cidRes.isOk:
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blocks.add(cidRes.get())
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return (cid, blocks).success
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proc init*(
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T: type BlocksManifest,
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blocks: openArray[Cid] = [],
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version = CIDv1,
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hcodec = multiCodec("sha2-256"),
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codec = multiCodec("raw")): ?!T =
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## Create a manifest using array of `Cid`s
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##
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# Only gets initialized once
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once:
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# TODO: The CIDs should be initialized at compile time,
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# but the VM fails due to a `memmove` being invoked somewhere
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for v in [CIDv0, CIDv1]:
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let
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cid = if v == CIDv1:
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? Cid.init("bafybeihdwdcefgh4dqkjv67uzcmw7ojee6xedzdetojuzjevtenxquvyku").mapFailure
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else:
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? Cid.init("QmdfTbBqBPQ7VNxZEYEj14VmRuZBkqFbiwReogJgS1zR1n").mapFailure
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mhash = ? cid.mhash.mapFailure
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digest = ? MultiHash.digest(
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$hcodec,
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mhash.hashBytes()).mapFailure
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emptyDigest[v] = digest
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T(
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blocks: @blocks,
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version: version,
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codec: codec,
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hcodec: hcodec,
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).success
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proc init*(
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T: type BlocksManifest,
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blk: Block): ?!T =
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## Create manifest from a raw manifest block
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## (in dag-pb for for now)
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##
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let
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(cid, blocks) = ? BlocksManifest.decode(blk.data)
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mhash = ? cid.mhash.mapFailure
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var
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manifest = ? BlocksManifest.init(
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blocks,
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cid.version,
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mhash.mcodec,
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cid.mcodec)
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if cid != (? manifest.cid):
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return failure("Content hashes don't match!")
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return manifest.success
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