143 lines
3.4 KiB
Nim
143 lines
3.4 KiB
Nim
## Nim-Codex
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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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import std/tables
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import std/sugar
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export tables
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import pkg/upraises
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push: {.upraises: [].}
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import pkg/libp2p/[cid, multicodec, multihash]
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import pkg/stew/byteutils
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import pkg/questionable
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import pkg/questionable/results
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import ./units
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import ./utils
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import ./errors
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import ./logutils
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import ./utils/json
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import ./codextypes
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export errors, logutils, units, codextypes
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type
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Block* = object of RootObj
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cid*: Cid
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data*: seq[byte]
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BlockAddress* = object
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case leaf*: bool
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of true:
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treeCid* {.serialize.}: Cid
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index* {.serialize.}: Natural
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else:
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cid* {.serialize.}: Cid
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logutils.formatIt(LogFormat.textLines, BlockAddress):
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if it.leaf:
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"treeCid: " & shortLog($it.treeCid) & ", index: " & $it.index
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else:
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"cid: " & shortLog($it.cid)
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logutils.formatIt(LogFormat.json, BlockAddress): %it
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proc `==`*(a, b: BlockAddress): bool =
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a.leaf == b.leaf and
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(
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if a.leaf:
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a.treeCid == b.treeCid and a.index == b.index
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else:
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a.cid == b.cid
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)
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proc `$`*(a: BlockAddress): string =
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if a.leaf:
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"treeCid: " & $a.treeCid & ", index: " & $a.index
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else:
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"cid: " & $a.cid
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proc cidOrTreeCid*(a: BlockAddress): Cid =
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if a.leaf:
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a.treeCid
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else:
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a.cid
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proc address*(b: Block): BlockAddress =
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BlockAddress(leaf: false, cid: b.cid)
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proc init*(_: type BlockAddress, cid: Cid): BlockAddress =
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BlockAddress(leaf: false, cid: cid)
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proc init*(_: type BlockAddress, treeCid: Cid, index: Natural): BlockAddress =
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BlockAddress(leaf: true, treeCid: treeCid, index: index)
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proc `$`*(b: Block): string =
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result &= "cid: " & $b.cid
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result &= "\ndata: " & string.fromBytes(b.data)
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func new*(
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T: type Block,
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data: openArray[byte] = [],
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version = CIDv1,
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mcodec = Sha256HashCodec,
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codec = BlockCodec): ?!Block =
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## creates a new block for both storage and network IO
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##
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let
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hash = ? MultiHash.digest($mcodec, data).mapFailure
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cid = ? Cid.init(version, codec, hash).mapFailure
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# TODO: If the hash is `>=` to the data,
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# use the Cid as a container!
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Block(
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cid: cid,
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data: @data).success
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proc new*(
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T: type Block,
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cid: Cid,
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data: openArray[byte],
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verify: bool = true
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): ?!Block =
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## creates a new block for both storage and network IO
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##
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if verify:
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let
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mhash = ? cid.mhash.mapFailure
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computedMhash = ? MultiHash.digest($mhash.mcodec, data).mapFailure
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computedCid = ? Cid.init(cid.cidver, cid.mcodec, computedMhash).mapFailure
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if computedCid != cid:
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return "Cid doesn't match the data".failure
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return Block(
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cid: cid,
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data: @data
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).success
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proc emptyBlock*(version: CidVersion, hcodec: MultiCodec): ?!Block =
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emptyCid(version, hcodec, BlockCodec)
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.flatMap((cid: Cid) => Block.new(cid = cid, data = @[]))
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proc emptyBlock*(cid: Cid): ?!Block =
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cid.mhash.mapFailure.flatMap((mhash: MultiHash) =>
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emptyBlock(cid.cidver, mhash.mcodec))
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proc isEmpty*(cid: Cid): bool =
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success(cid) == cid.mhash.mapFailure.flatMap((mhash: MultiHash) =>
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emptyCid(cid.cidver, mhash.mcodec, cid.mcodec))
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proc isEmpty*(blk: Block): bool =
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blk.cid.isEmpty
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