608 lines
22 KiB
Nim
608 lines
22 KiB
Nim
# Nim-LibP2P
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# Copyright (c) 2023 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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## Base interface for pubsub protocols
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##
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## You can `subscribe<#subscribe%2CPubSub%2Cstring%2CTopicHandler>`_ to a topic,
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## `publish<#publish.e%2CPubSub%2Cstring%2Cseq%5Bbyte%5D>`_ something on it,
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## and eventually `unsubscribe<#unsubscribe%2CPubSub%2Cstring%2CTopicHandler>`_ from it.
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{.push raises: [].}
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import std/[tables, sequtils, sets, strutils]
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import chronos, chronicles, metrics
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import chronos/ratelimit
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import ./errors as pubsub_errors,
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./pubsubpeer,
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./rpc/[message, messages, protobuf],
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../../switch,
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../protocol,
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../../crypto/crypto,
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../../stream/connection,
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../../peerid,
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../../peerinfo,
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../../errors,
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../../utility
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import metrics
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import stew/results
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export results
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export tables, sets
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export PubSubPeer
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export PubSubObserver
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export protocol
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export pubsub_errors
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logScope:
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topics = "libp2p pubsub"
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const
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KnownLibP2PTopics* {.strdefine.} = ""
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KnownLibP2PTopicsSeq* = KnownLibP2PTopics.toLowerAscii().split(",")
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declareGauge(libp2p_pubsub_peers, "pubsub peer instances")
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declareGauge(libp2p_pubsub_topics, "pubsub subscribed topics")
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declareCounter(libp2p_pubsub_subscriptions, "pubsub subscription operations")
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declareCounter(libp2p_pubsub_unsubscriptions, "pubsub unsubscription operations")
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declareGauge(libp2p_pubsub_topic_handlers, "pubsub subscribed topics handlers count", labels = ["topic"])
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declareCounter(libp2p_pubsub_validation_success, "pubsub successfully validated messages")
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declareCounter(libp2p_pubsub_validation_failure, "pubsub failed validated messages")
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declareCounter(libp2p_pubsub_validation_ignore, "pubsub ignore validated messages")
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declarePublicCounter(libp2p_pubsub_messages_published, "published messages", labels = ["topic"])
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declarePublicCounter(libp2p_pubsub_messages_rebroadcasted, "re-broadcasted messages", labels = ["topic"])
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declarePublicCounter(libp2p_pubsub_broadcast_subscriptions, "pubsub broadcast subscriptions", labels = ["topic"])
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declarePublicCounter(libp2p_pubsub_broadcast_unsubscriptions, "pubsub broadcast unsubscriptions", labels = ["topic"])
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declarePublicCounter(libp2p_pubsub_broadcast_messages, "pubsub broadcast messages", labels = ["topic"])
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declarePublicCounter(libp2p_pubsub_received_subscriptions, "pubsub received subscriptions", labels = ["topic"])
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declarePublicCounter(libp2p_pubsub_received_unsubscriptions, "pubsub received subscriptions", labels = ["topic"])
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declarePublicCounter(libp2p_pubsub_received_messages, "pubsub received messages", labels = ["topic"])
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declarePublicCounter(libp2p_pubsub_broadcast_iwant, "pubsub broadcast iwant")
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declarePublicCounter(libp2p_pubsub_broadcast_ihave, "pubsub broadcast ihave", labels = ["topic"])
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declarePublicCounter(libp2p_pubsub_broadcast_graft, "pubsub broadcast graft", labels = ["topic"])
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declarePublicCounter(libp2p_pubsub_broadcast_prune, "pubsub broadcast prune", labels = ["topic"])
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declarePublicCounter(libp2p_pubsub_received_iwant, "pubsub broadcast iwant")
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declarePublicCounter(libp2p_pubsub_received_ihave, "pubsub broadcast ihave", labels = ["topic"])
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declarePublicCounter(libp2p_pubsub_received_graft, "pubsub broadcast graft", labels = ["topic"])
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declarePublicCounter(libp2p_pubsub_received_prune, "pubsub broadcast prune", labels = ["topic"])
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type
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InitializationError* = object of LPError
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TopicHandler* {.public.} = proc(topic: string,
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data: seq[byte]): Future[void] {.gcsafe, raises: [].}
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ValidatorHandler* {.public.} = proc(topic: string,
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message: Message): Future[ValidationResult] {.gcsafe, raises: [].}
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TopicPair* = tuple[topic: string, handler: TopicHandler]
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MsgIdProvider* {.public.} =
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proc(m: Message): Result[MessageId, ValidationResult] {.noSideEffect, raises: [], gcsafe.}
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SubscriptionValidator* {.public.} =
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proc(topic: string): bool {.raises: [], gcsafe.}
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## Every time a peer send us a subscription (even to an unknown topic),
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## we have to store it, which may be an attack vector.
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## This callback can be used to reject topic we're not interested in
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PubSub* {.public.} = ref object of LPProtocol
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switch*: Switch # the switch used to dial/connect to peers
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peerInfo*: PeerInfo # this peer's info
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topics*: Table[string, seq[TopicHandler]] # the topics that _we_ are interested in
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peers*: Table[PeerId, PubSubPeer] #\
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# Peers that we are interested to gossip with (but not necessarily
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# yet connected to)
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triggerSelf*: bool ## trigger own local handler on publish
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verifySignature*: bool ## enable signature verification
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sign*: bool ## enable message signing
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validators*: Table[string, HashSet[ValidatorHandler]]
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observers: ref seq[PubSubObserver] # ref as in smart_ptr
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msgIdProvider*: MsgIdProvider ## Turn message into message id (not nil)
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msgSeqno*: uint64
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anonymize*: bool ## if we omit fromPeer and seqno from RPC messages we send
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subscriptionValidator*: SubscriptionValidator # callback used to validate subscriptions
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topicsHigh*: int ## the maximum number of topics a peer is allowed to subscribe to
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maxMessageSize*: int ##\
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## the maximum raw message size we'll globally allow
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## for finer tuning, check message size on topic validator
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##
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## sending a big message to a peer with a lower size limit can
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## lead to issues, from descoring to connection drops
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##
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## defaults to 1mB
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rng*: ref HmacDrbgContext
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knownTopics*: HashSet[string]
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method unsubscribePeer*(p: PubSub, peerId: PeerId) {.base, gcsafe.} =
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## handle peer disconnects
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##
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debug "unsubscribing pubsub peer", peerId
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p.peers.del(peerId)
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libp2p_pubsub_peers.set(p.peers.len.int64)
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proc send*(p: PubSub, peer: PubSubPeer, msg: RPCMsg) {.raises: [].} =
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## Attempt to send `msg` to remote peer
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##
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trace "sending pubsub message to peer", peer, msg = shortLog(msg)
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peer.send(msg, p.anonymize)
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proc broadcast*(
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p: PubSub,
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sendPeers: auto, # Iteratble[PubSubPeer]
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msg: RPCMsg) {.raises: [].} =
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## Attempt to send `msg` to the given peers
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let npeers = sendPeers.len.int64
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for sub in msg.subscriptions:
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if sub.subscribe:
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if p.knownTopics.contains(sub.topic):
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libp2p_pubsub_broadcast_subscriptions.inc(npeers, labelValues = [sub.topic])
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else:
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libp2p_pubsub_broadcast_subscriptions.inc(npeers, labelValues = ["generic"])
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else:
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if p.knownTopics.contains(sub.topic):
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libp2p_pubsub_broadcast_unsubscriptions.inc(npeers, labelValues = [sub.topic])
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else:
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libp2p_pubsub_broadcast_unsubscriptions.inc(npeers, labelValues = ["generic"])
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for smsg in msg.messages:
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for topic in smsg.topicIds:
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if p.knownTopics.contains(topic):
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libp2p_pubsub_broadcast_messages.inc(npeers, labelValues = [topic])
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else:
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libp2p_pubsub_broadcast_messages.inc(npeers, labelValues = ["generic"])
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msg.control.withValue(control):
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libp2p_pubsub_broadcast_iwant.inc(npeers * control.iwant.len.int64)
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for ihave in control.ihave:
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if p.knownTopics.contains(ihave.topicId):
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libp2p_pubsub_broadcast_ihave.inc(npeers, labelValues = [ihave.topicId])
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else:
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libp2p_pubsub_broadcast_ihave.inc(npeers, labelValues = ["generic"])
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for graft in control.graft:
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if p.knownTopics.contains(graft.topicId):
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libp2p_pubsub_broadcast_graft.inc(npeers, labelValues = [graft.topicId])
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else:
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libp2p_pubsub_broadcast_graft.inc(npeers, labelValues = ["generic"])
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for prune in control.prune:
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if p.knownTopics.contains(prune.topicId):
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libp2p_pubsub_broadcast_prune.inc(npeers, labelValues = [prune.topicId])
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else:
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libp2p_pubsub_broadcast_prune.inc(npeers, labelValues = ["generic"])
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trace "broadcasting messages to peers",
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peers = sendPeers.len, msg = shortLog(msg)
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if anyIt(sendPeers, it.hasObservers):
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for peer in sendPeers:
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p.send(peer, msg)
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else:
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# Fast path that only encodes message once
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let encoded = encodeRpcMsg(msg, p.anonymize)
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for peer in sendPeers:
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asyncSpawn peer.sendEncoded(encoded)
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proc sendSubs*(p: PubSub,
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peer: PubSubPeer,
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topics: openArray[string],
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subscribe: bool) =
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## send subscriptions to remote peer
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p.send(peer, RPCMsg.withSubs(topics, subscribe))
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for topic in topics:
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if subscribe:
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if p.knownTopics.contains(topic):
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libp2p_pubsub_broadcast_subscriptions.inc(labelValues = [topic])
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else:
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libp2p_pubsub_broadcast_subscriptions.inc(labelValues = ["generic"])
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else:
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if p.knownTopics.contains(topic):
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libp2p_pubsub_broadcast_unsubscriptions.inc(labelValues = [topic])
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else:
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libp2p_pubsub_broadcast_unsubscriptions.inc(labelValues = ["generic"])
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proc updateMetrics*(p: PubSub, rpcMsg: RPCMsg) =
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for i in 0..<min(rpcMsg.subscriptions.len, p.topicsHigh):
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template sub(): untyped = rpcMsg.subscriptions[i]
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if sub.subscribe:
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if p.knownTopics.contains(sub.topic):
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libp2p_pubsub_received_subscriptions.inc(labelValues = [sub.topic])
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else:
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libp2p_pubsub_received_subscriptions.inc(labelValues = ["generic"])
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else:
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if p.knownTopics.contains(sub.topic):
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libp2p_pubsub_received_unsubscriptions.inc(labelValues = [sub.topic])
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else:
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libp2p_pubsub_received_unsubscriptions.inc(labelValues = ["generic"])
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for i in 0..<rpcMsg.messages.len():
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template smsg: untyped = rpcMsg.messages[i]
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for j in 0..<smsg.topicIds.len():
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template topic: untyped = smsg.topicIds[j]
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if p.knownTopics.contains(topic):
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libp2p_pubsub_received_messages.inc(labelValues = [topic])
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else:
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libp2p_pubsub_received_messages.inc(labelValues = ["generic"])
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rpcMsg.control.withValue(control):
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libp2p_pubsub_received_iwant.inc(control.iwant.len.int64)
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for ihave in control.ihave:
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if p.knownTopics.contains(ihave.topicId):
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libp2p_pubsub_received_ihave.inc(labelValues = [ihave.topicId])
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else:
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libp2p_pubsub_received_ihave.inc(labelValues = ["generic"])
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for graft in control.graft:
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if p.knownTopics.contains(graft.topicId):
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libp2p_pubsub_received_graft.inc(labelValues = [graft.topicId])
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else:
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libp2p_pubsub_received_graft.inc(labelValues = ["generic"])
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for prune in control.prune:
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if p.knownTopics.contains(prune.topicId):
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libp2p_pubsub_received_prune.inc(labelValues = [prune.topicId])
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else:
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libp2p_pubsub_received_prune.inc(labelValues = ["generic"])
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method rpcHandler*(p: PubSub,
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peer: PubSubPeer,
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data: seq[byte]): Future[void] {.base, async.} =
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## Handler that must be overridden by concrete implementation
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raiseAssert "Unimplemented"
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method onNewPeer(p: PubSub, peer: PubSubPeer) {.base, gcsafe.} = discard
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method onPubSubPeerEvent*(p: PubSub, peer: PubSubPeer, event: PubSubPeerEvent) {.base, gcsafe.} =
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# Peer event is raised for the send connection in particular
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case event.kind
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of PubSubPeerEventKind.Connected:
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if p.topics.len > 0:
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p.sendSubs(peer, toSeq(p.topics.keys), true)
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of PubSubPeerEventKind.Disconnected:
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discard
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method getOrCreatePeer*(
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p: PubSub,
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peerId: PeerId,
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protos: seq[string]): PubSubPeer {.base, gcsafe.} =
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p.peers.withValue(peerId, peer):
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return peer[]
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proc getConn(): Future[Connection] {.async.} =
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return await p.switch.dial(peerId, protos)
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proc onEvent(peer: PubSubPeer, event: PubSubPeerEvent) {.gcsafe.} =
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p.onPubSubPeerEvent(peer, event)
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# create new pubsub peer
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let pubSubPeer = PubSubPeer.new(peerId, getConn, onEvent, protos[0], p.maxMessageSize)
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debug "created new pubsub peer", peerId
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p.peers[peerId] = pubSubPeer
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pubSubPeer.observers = p.observers
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onNewPeer(p, pubSubPeer)
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# metrics
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libp2p_pubsub_peers.set(p.peers.len.int64)
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return pubSubPeer
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proc handleData*(p: PubSub, topic: string, data: seq[byte]): Future[void] =
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# Start work on all data handlers without copying data into closure like
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# happens on {.async.} transformation
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p.topics.withValue(topic, handlers) do:
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var futs = newSeq[Future[void]]()
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for handler in handlers[]:
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if handler != nil: # allow nil handlers
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let fut = handler(topic, data)
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if not fut.completed(): # Fast path for successful sync handlers
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futs.add(fut)
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if futs.len() > 0:
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proc waiter(): Future[void] {.async.} =
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# slow path - we have to wait for the handlers to complete
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try:
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futs = await allFinished(futs)
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except CancelledError:
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# propagate cancellation
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for fut in futs:
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if not(fut.finished):
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fut.cancel()
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# check for errors in futures
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for fut in futs:
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if fut.failed:
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let err = fut.readError()
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warn "Error in topic handler", msg = err.msg
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return waiter()
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# Fast path - futures finished synchronously or nobody cared about data
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var res = newFuture[void]()
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res.complete()
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return res
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method handleConn*(p: PubSub,
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conn: Connection,
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proto: string) {.base, async.} =
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## handle incoming connections
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##
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## this proc will:
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## 1) register a new PubSubPeer for the connection
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## 2) register a handler with the peer;
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## this handler gets called on every rpc message
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## that the peer receives
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## 3) ask the peer to subscribe us to every topic
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## that we're interested in
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##
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proc handler(peer: PubSubPeer, data: seq[byte]): Future[void] =
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# call pubsub rpc handler
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p.rpcHandler(peer, data)
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let peer = p.getOrCreatePeer(conn.peerId, @[proto])
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try:
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peer.handler = handler
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await peer.handle(conn) # spawn peer read loop
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trace "pubsub peer handler ended", conn
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except CancelledError as exc:
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raise exc
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except CatchableError as exc:
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trace "exception ocurred in pubsub handle", exc = exc.msg, conn
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finally:
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await conn.closeWithEOF()
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method subscribePeer*(p: PubSub, peer: PeerId) {.base, gcsafe.} =
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## subscribe to remote peer to receive/send pubsub
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## messages
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##
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let pubSubPeer = p.getOrCreatePeer(peer, p.codecs)
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pubSubPeer.connect()
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proc updateTopicMetrics(p: PubSub, topic: string) =
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# metrics
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libp2p_pubsub_topics.set(p.topics.len.int64)
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if p.knownTopics.contains(topic):
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p.topics.withValue(topic, handlers) do:
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libp2p_pubsub_topic_handlers.set(handlers[].len.int64, labelValues = [topic])
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do:
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libp2p_pubsub_topic_handlers.set(0, labelValues = [topic])
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else:
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var others: int64 = 0
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for key, val in p.topics:
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if key notin p.knownTopics: others += 1
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libp2p_pubsub_topic_handlers.set(others, labelValues = ["other"])
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method onTopicSubscription*(p: PubSub, topic: string, subscribed: bool) {.base, gcsafe.} =
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# Called when subscribe is called the first time for a topic or unsubscribe
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# removes the last handler
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# Notify others that we are no longer interested in the topic
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for _, peer in p.peers:
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# If we don't have a sendConn yet, we will
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# send the full sub list when we get the sendConn,
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# so no need to send it here
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if peer.hasSendConn:
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p.sendSubs(peer, [topic], subscribed)
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if subscribed:
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libp2p_pubsub_subscriptions.inc()
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else:
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libp2p_pubsub_unsubscriptions.inc()
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proc unsubscribe*(p: PubSub,
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topic: string,
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handler: TopicHandler) {.public.} =
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## unsubscribe from a ``topic`` string
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##
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p.topics.withValue(topic, handlers):
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handlers[].keepItIf(it != handler)
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if handlers[].len() == 0:
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p.topics.del(topic)
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p.onTopicSubscription(topic, false)
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p.updateTopicMetrics(topic)
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proc unsubscribe*(p: PubSub, topics: openArray[TopicPair]) {.public.} =
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## unsubscribe from a list of ``topic`` handlers
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for t in topics:
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p.unsubscribe(t.topic, t.handler)
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proc unsubscribeAll*(p: PubSub, topic: string) {.public, gcsafe.} =
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## unsubscribe every `handler` from `topic`
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if topic notin p.topics:
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debug "unsubscribeAll called for an unknown topic", topic
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else:
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p.topics.del(topic)
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p.onTopicSubscription(topic, false)
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p.updateTopicMetrics(topic)
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proc subscribe*(p: PubSub,
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topic: string,
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handler: TopicHandler) {.public.} =
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## subscribe to a topic
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##
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## ``topic`` - a string topic to subscribe to
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##
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## ``handler`` - user provided proc that
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## will be triggered on every
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## received message
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# Check that this is an allowed topic
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if p.subscriptionValidator != nil and p.subscriptionValidator(topic) == false:
|
|
warn "Trying to subscribe to a topic not passing validation!", topic
|
|
return
|
|
|
|
p.topics.withValue(topic, handlers) do:
|
|
# Already subscribed, just adding another handler
|
|
handlers[].add(handler)
|
|
do:
|
|
trace "subscribing to topic", name = topic
|
|
p.topics[topic] = @[handler]
|
|
|
|
# Notify on first handler
|
|
p.onTopicSubscription(topic, true)
|
|
|
|
p.updateTopicMetrics(topic)
|
|
|
|
method publish*(p: PubSub,
|
|
topic: string,
|
|
data: seq[byte]): Future[int] {.base, async, public.} =
|
|
## publish to a ``topic``
|
|
##
|
|
## The return value is the number of neighbours that we attempted to send the
|
|
## message to, excluding self. Note that this is an optimistic number of
|
|
## attempts - the number of peers that actually receive the message might
|
|
## be lower.
|
|
if p.triggerSelf:
|
|
await handleData(p, topic, data)
|
|
|
|
return 0
|
|
|
|
method initPubSub*(p: PubSub)
|
|
{.base, raises: [InitializationError].} =
|
|
## perform pubsub initialization
|
|
p.observers = new(seq[PubSubObserver])
|
|
if p.msgIdProvider == nil:
|
|
p.msgIdProvider = defaultMsgIdProvider
|
|
|
|
method addValidator*(p: PubSub,
|
|
topic: varargs[string],
|
|
hook: ValidatorHandler) {.base, public, gcsafe.} =
|
|
## Add a validator to a `topic`. Each new message received in this
|
|
## will be sent to `hook`. `hook` can return either `Accept`,
|
|
## `Ignore` or `Reject` (which can descore the peer)
|
|
for t in topic:
|
|
trace "adding validator for topic", topicId = t
|
|
p.validators.mgetOrPut(t, HashSet[ValidatorHandler]()).incl(hook)
|
|
|
|
method removeValidator*(p: PubSub,
|
|
topic: varargs[string],
|
|
hook: ValidatorHandler) {.base, public.} =
|
|
for t in topic:
|
|
p.validators.withValue(t, validators):
|
|
validators[].excl(hook)
|
|
if validators[].len() == 0:
|
|
p.validators.del(t)
|
|
|
|
method validate*(p: PubSub, message: Message): Future[ValidationResult] {.async, base.} =
|
|
var pending: seq[Future[ValidationResult]]
|
|
trace "about to validate message"
|
|
for topic in message.topicIds:
|
|
trace "looking for validators on topic", topicId = topic,
|
|
registered = toSeq(p.validators.keys)
|
|
if topic in p.validators:
|
|
trace "running validators for topic", topicId = topic
|
|
for validator in p.validators[topic]:
|
|
pending.add(validator(topic, message))
|
|
|
|
result = ValidationResult.Accept
|
|
let futs = await allFinished(pending)
|
|
for fut in futs:
|
|
if fut.failed:
|
|
result = ValidationResult.Reject
|
|
break
|
|
let res = fut.read()
|
|
if res != ValidationResult.Accept:
|
|
result = res
|
|
if res == ValidationResult.Reject:
|
|
break
|
|
|
|
case result
|
|
of ValidationResult.Accept:
|
|
libp2p_pubsub_validation_success.inc()
|
|
of ValidationResult.Reject:
|
|
libp2p_pubsub_validation_failure.inc()
|
|
of ValidationResult.Ignore:
|
|
libp2p_pubsub_validation_ignore.inc()
|
|
|
|
proc init*[PubParams: object | bool](
|
|
P: typedesc[PubSub],
|
|
switch: Switch,
|
|
triggerSelf: bool = false,
|
|
anonymize: bool = false,
|
|
verifySignature: bool = true,
|
|
sign: bool = true,
|
|
msgIdProvider: MsgIdProvider = defaultMsgIdProvider,
|
|
subscriptionValidator: SubscriptionValidator = nil,
|
|
maxMessageSize: int = 1024 * 1024,
|
|
rng: ref HmacDrbgContext = newRng(),
|
|
parameters: PubParams = false): P
|
|
{.raises: [InitializationError], public.} =
|
|
let pubsub =
|
|
when PubParams is bool:
|
|
P(switch: switch,
|
|
peerInfo: switch.peerInfo,
|
|
triggerSelf: triggerSelf,
|
|
anonymize: anonymize,
|
|
verifySignature: verifySignature,
|
|
sign: sign,
|
|
msgIdProvider: msgIdProvider,
|
|
subscriptionValidator: subscriptionValidator,
|
|
maxMessageSize: maxMessageSize,
|
|
rng: rng,
|
|
topicsHigh: int.high)
|
|
else:
|
|
P(switch: switch,
|
|
peerInfo: switch.peerInfo,
|
|
triggerSelf: triggerSelf,
|
|
anonymize: anonymize,
|
|
verifySignature: verifySignature,
|
|
sign: sign,
|
|
msgIdProvider: msgIdProvider,
|
|
subscriptionValidator: subscriptionValidator,
|
|
parameters: parameters,
|
|
maxMessageSize: maxMessageSize,
|
|
rng: rng,
|
|
topicsHigh: int.high)
|
|
|
|
proc peerEventHandler(peerId: PeerId, event: PeerEvent) {.async.} =
|
|
if event.kind == PeerEventKind.Joined:
|
|
pubsub.subscribePeer(peerId)
|
|
else:
|
|
pubsub.unsubscribePeer(peerId)
|
|
|
|
switch.addPeerEventHandler(peerEventHandler, PeerEventKind.Joined)
|
|
switch.addPeerEventHandler(peerEventHandler, PeerEventKind.Left)
|
|
|
|
pubsub.knownTopics = KnownLibP2PTopicsSeq.toHashSet()
|
|
|
|
pubsub.initPubSub()
|
|
|
|
return pubsub
|
|
|
|
proc addObserver*(p: PubSub; observer: PubSubObserver) {.public.} = p.observers[] &= observer
|
|
|
|
proc removeObserver*(p: PubSub; observer: PubSubObserver) {.public.} =
|
|
let idx = p.observers[].find(observer)
|
|
if idx != -1:
|
|
p.observers[].del(idx)
|