238 lines
6.9 KiB
Nim
238 lines
6.9 KiB
Nim
## Nim-LibP2P
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## Copyright (c) 2018 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 implementes API for libp2p peer.
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{.push raises: [Defect].}
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import std/hashes
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import chronicles
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import nimcrypto/utils, stew/base58
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import crypto/crypto, multicodec, multihash, vbuffer
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import protobuf/minprotobuf
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import stew/results
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export results
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const
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maxInlineKeyLength* = 42
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# TODO: add proper on disc serialization
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# using peer-id protobuf format
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type
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PeerID* = object
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data*: seq[byte]
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func `$`*(pid: PeerID): string =
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## Return base58 encoded ``pid`` representation.
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Base58.encode(pid.data)
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func shortLog*(pid: PeerId): string =
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## Returns compact string representation of ``pid``.
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var spid = $pid
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if len(spid) <= 10:
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result = spid
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else:
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result = newStringOfCap(10)
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for i in 0..<2:
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result.add(spid[i])
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result.add("*")
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for i in (len(spid) - 6)..spid.high:
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result.add(spid[i])
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chronicles.formatIt(PeerID): shortLog(it)
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proc toBytes*(pid: PeerID, data: var openarray[byte]): int =
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## Store PeerID ``pid`` to array of bytes ``data``.
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##
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## Returns number of bytes needed to store ``pid``.
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result = len(pid.data)
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if len(data) >= result and result > 0:
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copyMem(addr data[0], unsafeAddr pid.data[0], result)
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proc getBytes*(pid: PeerID): seq[byte] {.inline.} =
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## Return PeerID ``pid`` as array of bytes.
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result = pid.data
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proc hex*(pid: PeerID): string {.inline.} =
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## Returns hexadecimal string representation of ``pid``.
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if len(pid.data) > 0:
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result = toHex(pid.data)
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proc len*(pid: PeerID): int {.inline.} =
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## Returns length of ``pid`` binary representation.
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result = len(pid.data)
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proc cmp*(a, b: PeerID): int =
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## Compares two peer ids ``a`` and ``b``.
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## Returns:
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##
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## | 0 iff a == b
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## | < 0 iff a < b
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## | > 0 iff a > b
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var i = 0
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var m = min(len(a.data), len(b.data))
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while i < m:
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result = ord(a.data[i]) - ord(b.data[i])
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if result != 0: return
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inc(i)
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result = len(a.data) - len(b.data)
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proc `<=`*(a, b: PeerID): bool {.inline.} =
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(cmp(a, b) <= 0)
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proc `<`*(a, b: PeerID): bool {.inline.} =
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(cmp(a, b) < 0)
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proc `>=`*(a, b: PeerID): bool {.inline.} =
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(cmp(a, b) >= 0)
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proc `>`*(a, b: PeerID): bool {.inline.} =
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(cmp(a, b) > 0)
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proc `==`*(a, b: PeerID): bool {.inline.} =
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(cmp(a, b) == 0)
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proc hash*(pid: PeerID): Hash {.inline.} =
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result = hash(pid.data)
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proc validate*(pid: PeerID): bool =
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## Validate check if ``pid`` is empty or not.
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if len(pid.data) > 0:
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result = MultiHash.validate(pid.data)
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proc hasPublicKey*(pid: PeerID): bool =
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## Returns ``true`` if ``pid`` is small enough to hold public key inside.
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if len(pid.data) > 0:
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var mh: MultiHash
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if MultiHash.decode(pid.data, mh).isOk:
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if mh.mcodec == multiCodec("identity"):
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result = true
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proc extractPublicKey*(pid: PeerID, pubkey: var PublicKey): bool =
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## Returns ``true`` if public key was successfully decoded from PeerID
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## ``pid``and stored to ``pubkey``.
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##
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## Returns ``false`` otherwise.
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var mh: MultiHash
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if len(pid.data) > 0:
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if MultiHash.decode(pid.data, mh).isOk:
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if mh.mcodec == multiCodec("identity"):
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let length = len(mh.data.buffer)
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result = pubkey.init(mh.data.buffer.toOpenArray(mh.dpos, length - 1))
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proc init*(pid: var PeerID, data: openarray[byte]): bool =
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## Initialize peer id from raw binary representation ``data``.
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##
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## Returns ``true`` if peer was successfully initialiazed.
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var p = PeerID(data: @data)
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if p.validate():
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pid = p
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result = true
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proc init*(pid: var PeerID, data: string): bool =
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## Initialize peer id from base58 encoded string representation.
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##
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## Returns ``true`` if peer was successfully initialiazed.
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var p = newSeq[byte](len(data) + 4)
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var length = 0
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if Base58.decode(data, p, length) == Base58Status.Success:
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p.setLen(length)
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var opid: PeerID
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shallowCopy(opid.data, p)
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if opid.validate():
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pid = opid
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result = true
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proc init*(t: typedesc[PeerID], data: openarray[byte]): Result[PeerID, cstring] {.inline.} =
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## Create new peer id from raw binary representation ``data``.
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var res: PeerID
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if not init(res, data):
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err("peerid: incorrect PeerID binary form")
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else:
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ok(res)
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proc init*(t: typedesc[PeerID], data: string): Result[PeerID, cstring] {.inline.} =
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## Create new peer id from base58 encoded string representation ``data``.
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var res: PeerID
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if not init(res, data):
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err("peerid: incorrect PeerID string")
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else:
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ok(res)
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proc init*(t: typedesc[PeerID], pubkey: PublicKey): Result[PeerID, cstring] =
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## Create new peer id from public key ``pubkey``.
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var pubraw = ? pubkey.getBytes().orError("peerid: failed to get bytes from given key")
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var mh: MultiHash
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if len(pubraw) <= maxInlineKeyLength:
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mh = ? MultiHash.digest("identity", pubraw)
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else:
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mh = ? MultiHash.digest("sha2-256", pubraw)
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ok(PeerID(data: mh.data.buffer))
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proc init*(t: typedesc[PeerID], seckey: PrivateKey): Result[PeerID, cstring] {.inline.} =
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## Create new peer id from private key ``seckey``.
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PeerID.init(? seckey.getKey().orError("invalid private key"))
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proc match*(pid: PeerID, pubkey: PublicKey): bool {.inline.} =
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## Returns ``true`` if ``pid`` matches public key ``pubkey``.
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let p = PeerID.init(pubkey)
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if p.isErr:
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false
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else:
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pid == p.get()
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proc match*(pid: PeerID, seckey: PrivateKey): bool {.inline.} =
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## Returns ``true`` if ``pid`` matches private key ``seckey``.
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let p = PeerID.init(seckey)
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if p.isErr:
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false
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else:
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pid == p.get()
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## Serialization/Deserialization helpers
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proc write*(vb: var VBuffer, pid: PeerID) {.inline.} =
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## Write PeerID value ``peerid`` to buffer ``vb``.
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vb.writeSeq(pid.data)
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proc initProtoField*(index: int, pid: PeerID): ProtoField {.deprecated.} =
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## Initialize ProtoField with PeerID ``value``.
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result = initProtoField(index, pid.data)
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proc getValue*(data: var ProtoBuffer, field: int, value: var PeerID): int {.
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deprecated.} =
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## Read ``PeerID`` from ProtoBuf's message and validate it.
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var pid: PeerID
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result = getLengthValue(data, field, pid.data)
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if result > 0:
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if not pid.validate():
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result = -1
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else:
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value = pid
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proc write*(pb: var ProtoBuffer, field: int, pid: PeerID) =
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## Write PeerID value ``peerid`` to object ``pb`` using ProtoBuf's encoding.
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write(pb, field, pid.data)
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proc getField*(pb: ProtoBuffer, field: int,
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pid: var PeerID): ProtoResult[bool] {.inline.} =
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## Read ``PeerID`` from ProtoBuf's message and validate it
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var buffer: seq[byte]
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let res = ? pb.getField(field, buffer)
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if not(res):
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ok(false)
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else:
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var peerId: PeerID
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if peerId.init(buffer):
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pid = peerId
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ok(true)
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else:
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err(ProtoError.IncorrectBlob)
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