Igor Sirotin 8125cd0262
refactor(metrics): give every metric a logos_delivery_ prefix (#4074)
* refactor(metrics): prefix node metrics with logos_delivery_

Every metric the node exports now starts with logos_delivery_. There was no
prefix mechanism before: nim-metrics derives the exported name from the Nim
identifier, no declaration passed an explicit `name = "..."`, and the waku_
convention was maintained by hand -- 69 of the 80 node metrics followed it and
11 did not (query_count, query_time_secs, event_loop_load,
event_loop_accumulated_lag_secs, postgres_payload_size_bytes, reconciliation_*,
total_* and the camelCase rendezvousPeerFoundTotal).

Identifiers are renamed rather than given a `name = "..."` argument, keeping the
invariant that the Nim identifier is the exported name and letting the compiler
check every call site.

rendezvousPeerFoundTotal becomes logos_delivery_rendezvous_peer_found: it was the
only camelCase metric, and the trailing Total was redundant since nim-metrics
already appends _total to counters at exposition time.

library/ is untouched on purpose -- `proc waku_version()` in
kernel_api/debug_node_api.nim is the exported libwaku C ABI symbol, not the gauge
of the same name in node_telemetry.nim.

BREAKING CHANGE: metric names change. Dashboards, alert rules and recording rules
that reference waku_* must be updated; see docs/operators/how-to/monitor.md.

* refactor(metrics): prefix auxiliary app metrics with logos_delivery_

Applies the same prefix to the tools shipped from this repo: liteprotocoltester
(lpt_*), networkmonitor (networkmonitor_*), chat2bridge (chat2_*) and the
lightpush_mix example (lp_mix_*).

These tools are not the delivery node and already had their own consistent
prefixes, so this commit is separable from the node rename if the intent was to
namespace only the node itself.

* chore(metrics): query old and new metric names in Grafana dashboards

212 expressions across 9 dashboards now match both the waku_* and the
logos_delivery_* spelling, so panels keep working across the upgrade and over
historical data:

  sum by (type)((increase(waku_node_errors_total{...}[$__rate_interval])
              or increase(logos_delivery_node_errors_total{...}[$__rate_interval])))

The `or` is placed around the leaf, inside every aggregation. That depth is
load-bearing: `or` keeps its right operand only for label sets absent from the
left, so `sum by (type)(old) or sum by (type)(new)` aggregates each half of the
fleet separately and then discards the right one entirely -- silently dropping
every already-upgraded node. 36 panels here collapse `instance`.

Measured against a local Prometheus scraping two targets, one exporting old names
at 10/s and one exporting new names at 20/s (truth 30/s): union outside the
aggregation gives 10, union around the leaf gives 30.

Where the leaf sits in a range vector the whole call is duplicated, since
`(a or b)[5m]` is not valid PromQL.

Once every scraped node runs a release with the new names and the old samples
have aged out of retention, the `or` half can be deleted.

* test(e2e): expect logos_delivery_-prefixed metric names

The e2e suite asserts against a live /metrics endpoint, which serves only the new
names, so these are replaced rather than unioned. libp2p_* entries are unchanged.

* docs(operators): document the logos_delivery_ metric prefix

Records that every metric the node exports is prefixed, that dependency metrics
(libp2p_*, nim_gc_*, process_*) keep their own names, and shows where the `or`
has to sit if operators maintain their own dashboards or alert rules.

* refactor(metrics): name the store fleet metrics after store, not relay

logos_delivery_relay_fleet_store_msg_size_bytes and _msg_count are declared in
waku_store/protocol_metrics.nim and recorded by the store client, but carried a
relay prefix. Renamed to logos_delivery_store_fleet_msg_size_bytes and
logos_delivery_store_fleet_msg_count.

The dashboard keeps matching the old exported name, which was
waku_relay_fleet_store_*.

Note that both metrics are wrong independently of their name, see the PR
description.
2026-07-29 18:56:50 +01:00

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{.push raises: [].}
import
std/[net, tables, strutils, times, sequtils, random, sugar],
results,
chronicles,
chronicles/topics_registry,
chronos,
chronos/timer as ctime,
confutils,
eth/keys,
eth/p2p/discoveryv5/enr,
libp2p/crypto/crypto,
libp2p/nameresolving/dnsresolver,
libp2p/protocols/ping,
metrics,
metrics/chronos_httpserver,
presto/[route, server, client]
import
logos_delivery/waku/[
waku_core,
node/peer_manager,
waku_node,
waku_enr,
discovery/waku_discv5,
discovery/waku_dnsdisc,
waku_relay,
rln,
factory/builder,
factory/networks_config,
],
./networkmonitor_metrics,
./networkmonitor_config,
./networkmonitor_utils
logScope:
topics = "networkmonitor"
const ReconnectTime = 60
const MaxConnectionRetries = 5
const ResetRetriesAfter = 1200
const PingSmoothing = 0.3
const MaxConnectedPeers = 150
const git_version* {.strdefine.} = "n/a"
proc setDiscoveredPeersCapabilities(routingTableNodes: seq[waku_enr.Record]) =
for capability in @[Relay, Store, Filter, Lightpush]:
let nOfNodesWithCapability =
routingTableNodes.countIt(it.supportsCapability(capability))
info "capabilities as per ENR waku flag",
capability = capability, amount = nOfNodesWithCapability
logos_delivery_networkmonitor_peer_type_as_per_enr.set(
int64(nOfNodesWithCapability), labelValues = [$capability]
)
proc setDiscoveredPeersCluster(routingTableNodes: seq[Node]) =
var clusters: CountTable[uint16]
for node in routingTableNodes:
let typedRec = node.record.toTyped().valueOr:
clusters.inc(0)
continue
let relayShard = typedRec.relaySharding().valueOr:
clusters.inc(0)
continue
clusters.inc(relayShard.clusterId)
for (key, value) in clusters.pairs:
logos_delivery_networkmonitor_peer_cluster_as_per_enr.set(
int64(value), labelValues = [$key]
)
proc analyzePeer(
customPeerInfo: CustomPeerInfoRef,
peerInfo: RemotePeerInfo,
node: WakuNode,
timeout: chronos.Duration,
): Future[Result[string, string]] {.async.} =
var pingDelay: chronos.Duration
proc ping(): Future[Result[void, string]] {.async, gcsafe.} =
try:
let conn = await node.switch.dial(peerInfo.peerId, peerInfo.addrs, PingCodec)
pingDelay = await node.libp2pPing.ping(conn)
return ok()
except CatchableError:
var msg = getCurrentExceptionMsg()
if msg == "Future operation cancelled!":
msg = "timedout"
warn "failed to ping the peer", peer = peerInfo, err = msg
customPeerInfo.connError = msg
return err("could not ping peer: " & msg)
let timedOut = not await ping().withTimeout(timeout)
# need this check for pingDelat == 0 because there may be a conn error before timeout
if timedOut or pingDelay == 0.millis:
customPeerInfo.retries += 1
return err(customPeerInfo.connError)
customPeerInfo.connError = ""
info "successfully pinged peer", peer = peerInfo, duration = pingDelay.millis
logos_delivery_networkmonitor_peer_ping.observe(pingDelay.millis)
# We are using a smoothed moving average
customPeerInfo.avgPingDuration =
if customPeerInfo.avgPingDuration.millis == 0:
pingDelay
else:
let newAvg =
(float64(pingDelay.millis) * PingSmoothing) +
float64(customPeerInfo.avgPingDuration.millis) * (1.0 - PingSmoothing)
int64(newAvg).millis
customPeerInfo.lastPingDuration = pingDelay
return ok(customPeerInfo.peerId)
proc shouldReconnect(customPeerInfo: CustomPeerInfoRef): bool =
let reconnetIntervalCheck =
getTime().toUnix() >= customPeerInfo.lastTimeConnected + ReconnectTime
var retriesCheck = customPeerInfo.retries < MaxConnectionRetries
if not retriesCheck and
getTime().toUnix() >= customPeerInfo.lastTimeConnected + ResetRetriesAfter:
customPeerInfo.retries = 0
retriesCheck = true
info "resetting retries counter", peerId = customPeerInfo.peerId
return reconnetIntervalCheck and retriesCheck
# TODO: Split in discover, connect
proc setConnectedPeersMetrics(
discoveredNodes: seq[waku_enr.Record],
node: WakuNode,
timeout: chronos.Duration,
restClient: RestClientRef,
allPeers: CustomPeersTableRef,
) {.async.} =
let currentTime = getTime().toUnix()
var newPeers = 0
var successfulConnections = 0
var analyzeFuts: seq[Future[Result[string, string]]]
var (inConns, outConns) = node.peer_manager.connectedPeers(WakuRelayCodec)
info "connected peers", inConns = inConns.len, outConns = outConns.len
shuffle(outConns)
if outConns.len >= toInt(MaxConnectedPeers / 2):
for p in outConns[0 ..< toInt(outConns.len / 2)]:
trace "Pruning Peer", Peer = $p
asyncSpawn(node.switch.disconnect(p))
# iterate all newly discovered nodes
for discNode in discoveredNodes:
let peerRes = toRemotePeerInfo(discNode)
let peerInfo = peerRes.valueOr:
warn "error converting record to remote peer info", record = discNode
continue
# create new entry if new peerId found
let peerId = $peerInfo.peerId
if not allPeers.hasKey(peerId):
allPeers[peerId] = CustomPeerInfoRef(peerId: peerId)
newPeers += 1
else:
info "already seen", peerId = peerId
let customPeerInfo = allPeers[peerId]
customPeerInfo.lastTimeDiscovered = currentTime
customPeerInfo.enr = discNode.toURI()
customPeerInfo.enrCapabilities = discNode.getCapabilities().mapIt($it)
customPeerInfo.discovered += 1
for maddr in peerInfo.addrs:
if $maddr notin customPeerInfo.maddrs:
customPeerInfo.maddrs.add $maddr
let typedRecord = discNode.toTypedRecord().valueOr:
warn "could not convert record to typed record", record = discNode
continue
let ipAddr = typedRecord.ip.valueOr:
warn "ip field is not set", record = typedRecord
continue
customPeerInfo.ip = $ipAddr.join(".")
# try to ping the peer
if shouldReconnect(customPeerInfo):
if customPeerInfo.retries > 0:
warn "trying to dial failed peer again",
peerId = peerId, retry = customPeerInfo.retries
analyzeFuts.add(analyzePeer(customPeerInfo, peerInfo, node, timeout))
# Wait for all connection attempts to finish
let analyzedPeers = await allFinished(analyzeFuts)
for peerIdFut in analyzedPeers:
let peerIdRes = await peerIdFut
let peerIdStr = peerIdRes.valueOr:
continue
successfulConnections += 1
let peerId = PeerId.init(peerIdStr).valueOr:
warn "failed to parse peerId", peerId = peerIdStr
continue
var customPeerInfo = allPeers[peerIdStr]
info "connected to peer", peer = customPeerInfo[]
# after connection, get supported protocols
let lp2pPeerStore = node.switch.peerStore
let nodeProtocols = lp2pPeerStore[ProtoBook][peerId]
customPeerInfo.supportedProtocols = nodeProtocols
customPeerInfo.lastTimeConnected = currentTime
# after connection, get user-agent
let nodeUserAgent = lp2pPeerStore[AgentBook][peerId]
customPeerInfo.userAgent = nodeUserAgent
info "number of newly discovered peers", amount = newPeers
# inform the total connections that we did in this round
info "number of successful connections", amount = successfulConnections
proc updateMetrics(allPeersRef: CustomPeersTableRef) {.gcsafe.} =
var allProtocols: Table[string, int]
var allAgentStrings: Table[string, int]
var countries: Table[string, int]
var connectedPeers = 0
var failedPeers = 0
for peerInfo in allPeersRef.values:
if peerInfo.connError == "":
for protocol in peerInfo.supportedProtocols:
allProtocols[protocol] = allProtocols.mgetOrPut(protocol, 0) + 1
# store available user-agents in the network
allAgentStrings[peerInfo.userAgent] =
allAgentStrings.mgetOrPut(peerInfo.userAgent, 0) + 1
if peerInfo.country != "":
countries[peerInfo.country] = countries.mgetOrPut(peerInfo.country, 0) + 1
connectedPeers += 1
else:
failedPeers += 1
logos_delivery_networkmonitor_peer_count.set(
int64(connectedPeers), labelValues = ["true"]
)
logos_delivery_networkmonitor_peer_count.set(
int64(failedPeers), labelValues = ["false"]
) # update count on each protocol
for protocol in allProtocols.keys():
let countOfProtocols = allProtocols.mgetOrPut(protocol, 0)
logos_delivery_networkmonitor_peer_type_as_per_protocol.set(
int64(countOfProtocols), labelValues = [protocol]
)
info "supported protocols in the network",
protocol = protocol, count = countOfProtocols
# update count on each user-agent
for userAgent in allAgentStrings.keys():
let countOfUserAgent = allAgentStrings.mgetOrPut(userAgent, 0)
logos_delivery_networkmonitor_peer_user_agents.set(
int64(countOfUserAgent), labelValues = [userAgent]
)
info "user agents participating in the network",
userAgent = userAgent, count = countOfUserAgent
for country in countries.keys():
let peerCount = countries.mgetOrPut(country, 0)
logos_delivery_networkmonitor_peer_country_count.set(
int64(peerCount), labelValues = [country]
)
info "number of peers per country", country = country, count = peerCount
proc populateInfoFromIp(
allPeersRef: CustomPeersTableRef, restClient: RestClientRef
) {.async.} =
for peer in allPeersRef.keys():
if allPeersRef[peer].country != "" and allPeersRef[peer].city != "":
continue
# TODO: Update also if last update > x
if allPeersRef[peer].ip == "":
continue
# get more info the peers from its ip address
var location: NodeLocation
try:
# IP-API endpoints are now limited to 45 HTTP requests per minute
await sleepAsync(1400.millis)
let response = await restClient.ipToLocation(allPeersRef[peer].ip)
location = response.data
except CatchableError:
warn "could not get location", ip = allPeersRef[peer].ip
continue
allPeersRef[peer].country = location.country
allPeersRef[peer].city = location.city
# TODO: Split in discovery, connections, and ip2location
# crawls the network discovering peers and trying to connect to them
# metrics are processed and exposed
proc crawlNetwork(
node: WakuNode,
wakuDiscv5: WakuDiscoveryV5,
restClient: RestClientRef,
conf: NetworkMonitorConf,
allPeersRef: CustomPeersTableRef,
) {.async.} =
let crawlInterval = conf.refreshInterval * 1000
while true:
let startTime = Moment.now()
# discover new random nodes
let discoveredNodes = await wakuDiscv5.findRandomPeers()
# nodes are nested into bucket, flat it
let flatNodes = wakuDiscv5.protocol.routingTable.buckets.mapIt(it.nodes).flatten()
# populate metrics related to capabilities as advertised by the ENR (see waku field)
setDiscoveredPeersCapabilities(discoveredNodes)
# populate cluster metrics as advertised by the ENR
setDiscoveredPeersCluster(flatNodes)
# tries to connect to all newly discovered nodes
# and populates metrics related to peers we could connect
# note random discovered nodes can be already known
await setConnectedPeersMetrics(
discoveredNodes, node, conf.timeout, restClient, allPeersRef
)
updateMetrics(allPeersRef)
# populate info from ip addresses
await populateInfoFromIp(allPeersRef, restClient)
let totalNodes = discoveredNodes.len
#let seenNodes = totalNodes
info "discovered nodes: ", total = totalNodes #, seen = seenNodes
# Notes:
# we dont run ipMajorityLoop
# we dont run revalidateLoop
let endTime = Moment.now()
let elapsed = (endTime - startTime).nanos
info "crawl duration", time = elapsed.millis
await sleepAsync(crawlInterval.millis - elapsed.millis)
proc retrieveDynamicBootstrapNodes(
dnsDiscoveryUrl: string, dnsAddrsNameServers: seq[IpAddress]
): Future[Result[seq[RemotePeerInfo], string]] {.async.} =
## Retrieve dynamic bootstrap nodes (DNS discovery)
if dnsDiscoveryUrl != "":
# DNS discovery
info "Discovering nodes using Waku DNS discovery", url = dnsDiscoveryUrl
var nameServers: seq[TransportAddress]
for ip in dnsAddrsNameServers:
nameServers.add(initTAddress(ip, Port(53))) # Assume all servers use port 53
let dnsResolver = DnsResolver.new(nameServers)
proc resolver(domain: string): Future[string] {.async, gcsafe.} =
trace "resolving", domain = domain
let resolved = await dnsResolver.resolveTxt(domain)
if resolved.len > 0:
return resolved[0] # Use only first answer
var wakuDnsDiscovery = WakuDnsDiscovery.init(dnsDiscoveryUrl, resolver).errorOr:
return (await value.findPeers()).mapErr(e => $e)
warn "Failed to init Waku DNS discovery"
info "No method for retrieving dynamic bootstrap nodes specified."
ok(newSeq[RemotePeerInfo]()) # Return an empty seq by default
proc getBootstrapFromDiscDns(
conf: NetworkMonitorConf
): Future[Result[seq[enr.Record], string]] {.async.} =
try:
let dnsNameServers = @[parseIpAddress("1.1.1.1"), parseIpAddress("1.0.0.1")]
let dynamicBootstrapNodes = (
await retrieveDynamicBootstrapNodes(conf.dnsDiscoveryUrl, dnsNameServers)
).valueOr:
return err("Failed retrieving dynamic bootstrap nodes: " & $error)
# select dynamic bootstrap nodes that have an ENR containing a udp port.
# Discv5 only supports UDP https://github.com/ethereum/devp2p/blob/master/discv5/discv5-theory.md)
var discv5BootstrapEnrs: seq[enr.Record]
for n in dynamicBootstrapNodes:
if n.enr.isSome():
let
enr = n.enr.get()
tenrRes = enr.toTypedRecord()
if tenrRes.isOk() and (
tenrRes.get().udp.isSome() or tenrRes.get().udp6.isSome()
):
discv5BootstrapEnrs.add(enr)
return ok(discv5BootstrapEnrs)
except CatchableError:
error("failed discovering peers from DNS: " & getCurrentExceptionMsg())
proc initAndStartApp(
conf: NetworkMonitorConf
): Future[Result[(WakuNode, WakuDiscoveryV5), string]] {.async.} =
let bindIp =
try:
parseIpAddress("0.0.0.0")
except CatchableError:
return err("could not start node: " & getCurrentExceptionMsg())
let extIp =
try:
parseIpAddress("127.0.0.1")
except CatchableError:
return err("could not start node: " & getCurrentExceptionMsg())
let
# some hardcoded parameters
rng = crypto.newRng()
key = crypto.PrivateKey.random(Secp256k1, rng)[]
nodeTcpPort = Port(60000)
nodeUdpPort = Port(9000)
flags = CapabilitiesBitfield.init(
lightpush = false, filter = false, store = false, relay = true
)
var builder = EnrBuilder.init(key)
builder.withIpAddressAndPorts(
ipAddr = Opt.some(extIp),
tcpPort = Opt.some(nodeTcpPort),
udpPort = Opt.some(nodeUdpPort),
)
builder.withWakuCapabilities(flags)
builder.withWakuRelaySharding(
RelayShards(clusterId: conf.clusterId, shardIds: conf.shards)
).isOkOr:
error "failed to add sharded topics to ENR", error = error
return err("failed to add sharded topics to ENR: " & $error)
let record = builder.build().valueOr:
return err("cannot build record: " & $error)
var nodeBuilder = WakuNodeBuilder.init()
nodeBuilder.withNodeKey(key)
nodeBuilder.withRecord(record)
nodeBuilder.withSwitchConfiguration(maxConnections = Opt.some(MaxConnectedPeers))
nodeBuilder.withPeerManagerConfig(
maxConnections = MaxConnectedPeers,
relayServiceRatio = "13.33:86.67",
shardAware = true,
)
nodeBuilder.withNetworkConfigurationDetails(bindIp, nodeTcpPort).isOkOr:
return err("node building error" & $error)
let node = nodeBuilder.build().valueOr:
return err("node building error" & $error)
var discv5BootstrapEnrs = (await getBootstrapFromDiscDns(conf)).valueOr:
error("failed discovering peers from DNS")
quit(QuitFailure)
# parse enrURIs from the configuration and add the resulting ENRs to the discv5BootstrapEnrs seq
for enrUri in conf.bootstrapNodes:
addBootstrapNode(enrUri, discv5BootstrapEnrs)
# discv5
let discv5Conf = WakuDiscoveryV5Config(
discv5Config: Opt.none(DiscoveryConfig),
address: bindIp,
port: nodeUdpPort,
privateKey: keys.PrivateKey(key.skkey),
bootstrapRecords: discv5BootstrapEnrs,
autoupdateRecord: false,
)
let wakuDiscv5 = WakuDiscoveryV5.new(node.rng, discv5Conf, Opt.some(record))
try:
wakuDiscv5.protocol.open()
except CatchableError:
return err("could not start node: " & getCurrentExceptionMsg())
ok((node, wakuDiscv5))
proc startRestApiServer(
conf: NetworkMonitorConf,
allPeersInfo: CustomPeersTableRef,
numMessagesPerContentTopic: ContentTopicMessageTableRef,
): Result[void, string] =
try:
let serverAddress =
initTAddress(conf.metricsRestAddress & ":" & $conf.metricsRestPort)
proc validate(pattern: string, value: string): int =
if pattern.startsWith("{") and pattern.endsWith("}"): 0 else: 1
var router = RestRouter.init(validate)
router.installHandler(allPeersInfo, numMessagesPerContentTopic)
var sres = RestServerRef.new(router, serverAddress)
let restServer = sres.get()
restServer.start()
except CatchableError:
error("could not start rest api server")
ok()
# handles rx of messages over a topic (see subscribe)
# counts the number of messages per content topic
proc subscribeAndHandleMessages(
node: WakuNode,
pubsubTopic: PubsubTopic,
msgPerContentTopic: ContentTopicMessageTableRef,
) =
# handle function
proc handler(
pubsubTopic: PubsubTopic, msg: WakuMessage
): Future[void] {.async, gcsafe.} =
trace "rx message", pubsubTopic = pubsubTopic, contentTopic = msg.contentTopic
# If we reach a table limit size, remove c topics with the least messages.
let tableSize = 100
if msgPerContentTopic.len > (tableSize - 1):
let minIndex = toSeq(msgPerContentTopic.values()).minIndex()
msgPerContentTopic.del(toSeq(msgPerContentTopic.keys())[minIndex])
# TODO: Will overflow at some point
# +1 if content topic existed, init to 1 otherwise
if msgPerContentTopic.hasKey(msg.contentTopic):
msgPerContentTopic[msg.contentTopic] += 1
else:
msgPerContentTopic[msg.contentTopic] = 1
node.subscribe((kind: PubsubSub, topic: pubsubTopic), WakuRelayHandler(handler)).isOkOr:
error "failed to subscribe to pubsub topic", pubsubTopic, error
quit(1)
when isMainModule:
# known issue: confutils.nim(775, 17) Error: can raise an unlisted exception: ref IOError
{.pop.}
var conf = NetworkMonitorConf.loadConfig().valueOr:
error "could not load cli variables", error = error
quit(QuitFailure)
info "cli flags", conf = conf
if conf.clusterId == 1:
let twnNetworkConf = NetworkPresetConf.TheWakuNetworkConf()
conf.bootstrapNodes = twnNetworkConf.discv5BootstrapNodes
conf.rlnRelayDynamic = twnNetworkConf.rlnRelayDynamic
conf.rlnRelayEthContractAddress = twnNetworkConf.rlnRelayEthContractAddress
conf.rlnEpochSizeSec = twnNetworkConf.rlnEpochSizeSec
conf.rlnRelayUserMessageLimit = twnNetworkConf.rlnRelayUserMessageLimit
conf.numShardsInNetwork = twnNetworkConf.shardingConf.numShardsInCluster
if conf.shards.len == 0:
conf.shards =
toSeq(uint16(0) .. uint16(twnNetworkConf.shardingConf.numShardsInCluster - 1))
if conf.logLevel != LogLevel.NONE:
setLogLevel(conf.logLevel)
# list of peers that we have discovered/connected
var allPeersInfo = CustomPeersTableRef()
# content topic and the number of messages that were received
var msgPerContentTopic = ContentTopicMessageTableRef()
# start metrics server
if conf.metricsServer:
startMetricsServer(conf.metricsServerAddress, Port(conf.metricsServerPort)).isOkOr:
error "could not start metrics server", error = error
quit(QuitFailure)
# start rest server for custom metrics
startRestApiServer(conf, allPeersInfo, msgPerContentTopic).isOkOr:
error "could not start rest api server", error = error
quit(QuitFailure)
# create a rest client
let restClient = RestClientRef.new(
url = "http://ip-api.com", connectTimeout = ctime.seconds(2)
).valueOr:
error "could not start rest api client", error = error
quit(QuitFailure)
# start waku node
let (node, discv5) = (waitFor initAndStartApp(conf)).valueOr:
error "could not start node", error = error
quit(QuitFailure)
(waitFor node.mountRelay()).isOkOr:
error "failed to mount waku relay protocol: ", error = error
quit(QuitFailure)
waitFor node.mountLibp2pPing()
var onFatalErrorAction = proc(msg: string) {.gcsafe, closure.} =
## Action to be taken when an internal error occurs during the node run.
## e.g. the connection with the database is lost and not recovered.
error "Unrecoverable error occurred", error = msg
quit(QuitFailure)
if conf.rlnRelay and conf.rlnRelayEthContractAddress != "":
let rlnConf = WakuRlnConfig(
dynamic: conf.rlnRelayDynamic,
credIndex: Opt.some(uint(0)),
ethContractAddress: conf.rlnRelayEthContractAddress,
ethClientUrls: conf.ethClientUrls.mapIt(string(it)),
epochSizeSec: conf.rlnEpochSizeSec,
creds: Opt.none(RlnCreds),
onFatalErrorAction: onFatalErrorAction,
)
try:
waitFor node.setRlnValidator(rlnConf)
except CatchableError:
error "failed to setup RLN", error = getCurrentExceptionMsg()
quit(QuitFailure)
node.mountMetadata(conf.clusterId, conf.shards).isOkOr:
error "failed to mount waku metadata protocol: ", error = error
quit(QuitFailure)
for shard in conf.shards:
# Subscribe the node to the shards, to count messages
subscribeAndHandleMessages(
node, $RelayShard(shardId: shard, clusterId: conf.clusterId), msgPerContentTopic
)
# spawn the routine that crawls the network
# TODO: split into 3 routines (discovery, connections, ip2location)
asyncSpawn crawlNetwork(node, discv5, restClient, conf, allPeersInfo)
runForever()