mirror of https://github.com/vacp2p/nim-libp2p.git
203 lines
6.2 KiB
Nim
203 lines
6.2 KiB
Nim
## Nim-LibP2P
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## Copyright (c) 2019 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/[sequtils, sets, tables]
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import chronos, chronicles, metrics
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import ./pubsub,
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./pubsubpeer,
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./timedcache,
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./peertable,
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./rpc/[message, messages],
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../../stream/connection,
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../../peerid,
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../../peerinfo,
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../../utility
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logScope:
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topics = "libp2p floodsub"
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const FloodSubCodec* = "/floodsub/1.0.0"
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type
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FloodSub* = ref object of PubSub
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floodsub*: PeerTable # topic to remote peer map
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seen*: TimedCache[MessageID] # list of messages forwarded to peers
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method subscribeTopic*(f: FloodSub,
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topic: string,
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subscribe: bool,
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peer: PubsubPeer) {.gcsafe.} =
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logScope:
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peer
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topic
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# this is a workaround for a race condition
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# that can happen if we disconnect the peer very early
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# in the future we might use this as a test case
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# and eventually remove this workaround
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if subscribe and peer.peerId notin f.peers:
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trace "ignoring unknown peer"
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return
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procCall PubSub(f).subscribeTopic(topic, subscribe, peer)
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if topic notin f.floodsub:
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f.floodsub[topic] = initHashSet[PubSubPeer]()
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if subscribe:
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trace "adding subscription for topic", peer, topic
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# subscribe the peer to the topic
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f.floodsub[topic].incl(peer)
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else:
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trace "removing subscription for topic", peer, topic
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# unsubscribe the peer from the topic
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f.floodsub[topic].excl(peer)
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method unsubscribePeer*(f: FloodSub, peer: PeerID) =
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## handle peer disconnects
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##
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trace "unsubscribing floodsub peer", peer
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let pubSubPeer = f.peers.getOrDefault(peer)
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if pubSubPeer.isNil:
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return
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for _, v in f.floodsub.mpairs():
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v.excl(pubSubPeer)
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procCall PubSub(f).unsubscribePeer(peer)
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method rpcHandler*(f: FloodSub,
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peer: PubSubPeer,
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rpcMsg: RPCMsg) {.async.} =
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await procCall PubSub(f).rpcHandler(peer, rpcMsg)
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for msg in rpcMsg.messages: # for every message
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let msgId = f.msgIdProvider(msg)
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if f.seen.put(msgId):
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trace "Dropping already-seen message", msgId, peer
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continue
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if (msg.signature.len > 0 or f.verifySignature) and not msg.verify():
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# always validate if signature is present or required
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debug "Dropping message due to failed signature verification", msgId, peer
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continue
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if msg.seqno.len > 0 and msg.seqno.len != 8:
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# if we have seqno should be 8 bytes long
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debug "Dropping message due to invalid seqno length", msgId, peer
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continue
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# g.anonymize needs no evaluation when receiving messages
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# as we have a "lax" policy and allow signed messages
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let validation = await f.validate(msg)
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case validation
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of ValidationResult.Reject:
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debug "Dropping message after validation, reason: reject", msgId, peer
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continue
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of ValidationResult.Ignore:
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debug "Dropping message after validation, reason: ignore", msgId, peer
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continue
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of ValidationResult.Accept:
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discard
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var toSendPeers = initHashSet[PubSubPeer]()
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for t in msg.topicIDs: # for every topic in the message
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f.floodsub.withValue(t, peers): toSendPeers.incl(peers[])
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await handleData(f, t, msg.data)
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# In theory, if topics are the same in all messages, we could batch - we'd
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# also have to be careful to only include validated messages
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f.broadcast(toSeq(toSendPeers), RPCMsg(messages: @[msg]))
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trace "Forwared message to peers", peers = toSendPeers.len
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method init*(f: FloodSub) =
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proc handler(conn: Connection, proto: string) {.async.} =
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## main protocol handler that gets triggered on every
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## connection for a protocol string
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## e.g. ``/floodsub/1.0.0``, etc...
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##
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try:
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await f.handleConn(conn, proto)
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except CancelledError:
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# This is top-level procedure which will work as separate task, so it
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# do not need to propagate CancelledError.
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trace "Unexpected cancellation in floodsub handler", conn
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except CatchableError as exc:
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trace "FloodSub handler leaks an error", exc = exc.msg, conn
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f.handler = handler
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f.codec = FloodSubCodec
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method publish*(f: FloodSub,
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topic: string,
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data: seq[byte]): Future[int] {.async.} =
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# base returns always 0
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discard await procCall PubSub(f).publish(topic, data)
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trace "Publishing message on topic", data = data.shortLog, topic
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if topic.len <= 0: # data could be 0/empty
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debug "Empty topic, skipping publish", topic
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return 0
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let peers = toSeq(f.floodsub.getOrDefault(topic))
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if peers.len == 0:
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debug "No peers for topic, skipping publish", topic
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return 0
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inc f.msgSeqno
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let
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msg =
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if f.anonymize:
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Message.init(none(PeerInfo), data, topic, none(uint64), false)
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else:
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Message.init(some(f.peerInfo), data, topic, some(f.msgSeqno), f.sign)
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msgId = f.msgIdProvider(msg)
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trace "Created new message",
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msg = shortLog(msg), peers = peers.len, topic, msgId
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if f.seen.put(msgId):
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# custom msgid providers might cause this
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trace "Dropping already-seen message", msgId, topic
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return 0
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# Try to send to all peers that are known to be interested
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f.broadcast(peers, RPCMsg(messages: @[msg]))
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when defined(libp2p_expensive_metrics):
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libp2p_pubsub_messages_published.inc(labelValues = [topic])
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trace "Published message to peers", msgId, topic
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return peers.len
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method unsubscribe*(f: FloodSub,
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topics: seq[TopicPair]) {.async.} =
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await procCall PubSub(f).unsubscribe(topics)
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for p in f.peers.values:
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f.sendSubs(p, topics.mapIt(it.topic).deduplicate(), false)
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method unsubscribeAll*(f: FloodSub, topic: string) {.async.} =
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await procCall PubSub(f).unsubscribeAll(topic)
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for p in f.peers.values:
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f.sendSubs(p, @[topic], false)
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method initPubSub*(f: FloodSub) =
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procCall PubSub(f).initPubSub()
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f.floodsub = initTable[string, HashSet[PubSubPeer]]()
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f.seen = TimedCache[MessageID].init(2.minutes)
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f.init()
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