380 lines
13 KiB
Nim
380 lines
13 KiB
Nim
# Fluffy
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# Copyright (c) 2021-2024 Status Research & Development GmbH
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# Licensed and distributed under either of
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# * MIT license (license terms in the root directory or at https://opensource.org/licenses/MIT).
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# * Apache v2 license (license terms in the root directory or at https://www.apache.org/licenses/LICENSE-2.0).
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# at your option. This file may not be copied, modified, or distributed except according to those terms.
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{.push raises: [].}
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import
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std/os,
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confutils,
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confutils/std/net,
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chronicles,
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chronicles/topics_registry,
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chronos,
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metrics,
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metrics/chronos_httpserver,
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json_rpc/clients/httpclient,
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json_rpc/rpcproxy,
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results,
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stew/[byteutils, io2],
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eth/keys,
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eth/net/nat,
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eth/p2p/discoveryv5/protocol as discv5_protocol,
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beacon_chain/beacon_clock,
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beacon_chain/spec/forks,
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beacon_chain/spec/datatypes/altair,
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beacon_chain/gossip_processing/light_client_processor,
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./conf,
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./network_metadata,
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./common/common_utils,
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./rpc/
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[rpc_web3_api, rpc_eth_api, rpc_discovery_api, rpc_portal_api, rpc_portal_debug_api],
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./network/state/[state_network, state_content],
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./network/history/[history_network, history_content],
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./network/beacon/[beacon_init_loader, beacon_light_client],
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./network/wire/[portal_stream, portal_protocol_config],
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./eth_data/history_data_ssz_e2s,
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./database/content_db,
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./version,
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./logging
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chronicles.formatIt(IoErrorCode):
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$it
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# Application callbacks used when new finalized header or optimistic header is
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# available.
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proc onFinalizedHeader(
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lightClient: LightClient, finalizedHeader: ForkedLightClientHeader
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) =
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withForkyHeader(finalizedHeader):
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when lcDataFork > LightClientDataFork.None:
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info "New LC finalized header", finalized_header = shortLog(forkyHeader)
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proc onOptimisticHeader(
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lightClient: LightClient, optimisticHeader: ForkedLightClientHeader
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) =
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withForkyHeader(optimisticHeader):
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when lcDataFork > LightClientDataFork.None:
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info "New LC optimistic header", optimistic_header = shortLog(forkyHeader)
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proc run(config: PortalConf) {.raises: [CatchableError].} =
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setupLogging(config.logLevel, config.logStdout)
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notice "Launching Fluffy", version = fullVersionStr, cmdParams = commandLineParams()
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# Make sure dataDir exists
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let pathExists = createPath(config.dataDir.string)
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if pathExists.isErr():
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fatal "Failed to create data directory",
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dataDir = config.dataDir, error = pathExists.error
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quit 1
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let
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rng = newRng()
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bindIp = config.listenAddress
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udpPort = Port(config.udpPort)
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# TODO: allow for no TCP port mapping!
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(extIp, _, extUdpPort) =
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try:
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setupAddress(config.nat, config.listenAddress, udpPort, udpPort, "fluffy")
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except CatchableError as exc:
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raise exc # TODO: Ideally we don't have the Exception here
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except Exception as exc:
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raiseAssert exc.msg
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(netkey, newNetKey) =
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if config.networkKey.isSome():
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(config.networkKey.get(), true)
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else:
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getPersistentNetKey(rng[], config.networkKeyFile)
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enrFilePath = config.dataDir / "fluffy_node.enr"
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previousEnr =
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if not newNetKey:
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getPersistentEnr(enrFilePath)
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else:
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Opt.none(enr.Record)
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var bootstrapRecords: seq[Record]
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loadBootstrapFile(string config.bootstrapNodesFile, bootstrapRecords)
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bootstrapRecords.add(config.bootstrapNodes)
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var portalNetwork: PortalNetwork
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if config.portalNetworkDeprecated.isSome():
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warn "DEPRECATED: The --network flag will be removed in the future, please use the drop in replacement --portal-network flag instead"
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portalNetwork = config.portalNetworkDeprecated.get()
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else:
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portalNetwork = config.portalNetwork
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case portalNetwork
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of mainnet:
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for enrURI in mainnetBootstrapNodes:
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var record: Record
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if fromURI(record, enrURI):
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bootstrapRecords.add(record)
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of testnet:
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# TODO: add testnet repo with bootstrap file.
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discard
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else:
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discard
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let
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discoveryConfig =
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DiscoveryConfig.init(config.tableIpLimit, config.bucketIpLimit, config.bitsPerHop)
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d = newProtocol(
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netkey,
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extIp,
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none(Port),
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extUdpPort,
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# Note: The addition of default clientInfo to the ENR is a temporary
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# measure to easily identify & debug the clients used in the testnet.
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# Might make this into a, default off, cli option.
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localEnrFields = {"c": enrClientInfoShort},
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bootstrapRecords = bootstrapRecords,
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previousRecord =
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# TODO: discv5/enr code still uses Option, to be changed.
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if previousEnr.isSome():
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some(previousEnr.get())
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else:
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none(enr.Record)
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,
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bindIp = bindIp,
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bindPort = udpPort,
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enrAutoUpdate = config.enrAutoUpdate,
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config = discoveryConfig,
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rng = rng,
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)
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d.open()
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# Force pruning
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if config.forcePrune:
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let db = ContentDB.new(
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config.dataDir / "db" / "contentdb_" &
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d.localNode.id.toBytesBE().toOpenArray(0, 8).toHex(),
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storageCapacity = config.storageCapacityMB * 1_000_000,
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manualCheckpoint = true,
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)
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let radius =
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if config.radiusConfig.kind == Static:
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UInt256.fromLogRadius(config.radiusConfig.logRadius)
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else:
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let oldRadiusApproximation = db.getLargestDistance(d.localNode.id)
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db.estimateNewRadius(oldRadiusApproximation)
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# Note: In the case of dynamical radius this is all an approximation that
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# heavily relies on uniformly distributed content and thus will always
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# have an error margin, either down or up of the requested capacity.
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# TODO I: Perhaps we want to add an offset to counter the latter.
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# TODO II: Perhaps for dynamical radius, we want to also apply the vacuum
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# without the forcePrune flag and purely by checking the amount of free
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# space versus the pruning fraction. The problem with this is that the
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# vacuum will temporarily double the space usage (WAL + DB) and thus to do
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# this automatically without user requesting it could be dangerous.
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# TODO III: Adding Radius metadata to the db could be yet another way to
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# decide whether or not to force prune, instead of this flag.
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db.forcePrune(d.localNode.id, radius)
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db.close()
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# Store the database at contentdb prefixed with the first 8 chars of node id.
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# This is done because the content in the db is dependant on the `NodeId` and
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# the selected `Radius`.
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let
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db = ContentDB.new(
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config.dataDir / "db" / "contentdb_" &
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d.localNode.id.toBytesBE().toOpenArray(0, 8).toHex(),
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storageCapacity = config.storageCapacityMB * 1_000_000,
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)
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portalConfig = PortalProtocolConfig.init(
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config.tableIpLimit, config.bucketIpLimit, config.bitsPerHop, config.radiusConfig,
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config.disablePoke,
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)
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streamManager = StreamManager.new(d)
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accumulator =
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# Building an accumulator from header epoch files takes > 2m30s and is
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# thus not really a viable option at start-up.
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# Options are:
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# - Start with baked-in accumulator
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# - Start with file containing SSZ encoded accumulator
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if config.accumulatorFile.isSome():
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readAccumulator(string config.accumulatorFile.get()).expect(
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"Need a file with a valid SSZ encoded accumulator"
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)
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else:
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# Get it from binary file containing SSZ encoded accumulator
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loadAccumulator()
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historyNetwork =
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if Network.history in config.networks:
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Opt.some(
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HistoryNetwork.new(
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d,
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db,
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streamManager,
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accumulator,
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bootstrapRecords = bootstrapRecords,
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portalConfig = portalConfig,
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)
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)
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else:
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Opt.none(HistoryNetwork)
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stateNetwork =
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if Network.state in config.networks:
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Opt.some(
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StateNetwork.new(
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d,
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db,
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streamManager,
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bootstrapRecords = bootstrapRecords,
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portalConfig = portalConfig,
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historyNetwork = historyNetwork,
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not config.disableStateRootValidation,
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)
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)
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else:
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Opt.none(StateNetwork)
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beaconLightClient =
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# TODO: Currently disabled by default as it is not sufficiently polished.
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# Eventually this should be always-on functionality.
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if Network.beacon in config.networks and config.trustedBlockRoot.isSome():
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let
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# Portal works only over mainnet data currently
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networkData = loadNetworkData("mainnet")
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beaconDb = BeaconDb.new(networkData, config.dataDir / "db" / "beacon_db")
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beaconNetwork = BeaconNetwork.new(
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d,
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beaconDb,
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streamManager,
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networkData.forks,
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bootstrapRecords = bootstrapRecords,
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portalConfig = portalConfig,
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)
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let beaconLightClient = LightClient.new(
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beaconNetwork, rng, networkData, LightClientFinalizationMode.Optimistic
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)
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beaconLightClient.onFinalizedHeader = onFinalizedHeader
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beaconLightClient.onOptimisticHeader = onOptimisticHeader
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beaconLightClient.trustedBlockRoot = config.trustedBlockRoot
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# TODO:
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# Quite dirty. Use register validate callbacks instead. Or, revisit
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# the object relationships regarding the beacon light client.
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beaconNetwork.processor = beaconLightClient.processor
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Opt.some(beaconLightClient)
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else:
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Opt.none(LightClient)
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# TODO: If no new network key is generated then we should first check if an
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# enr file exists, and in the case it does read out the seqNum from it and
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# reuse that.
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let enrFile = config.dataDir / "fluffy_node.enr"
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if io2.writeFile(enrFile, d.localNode.record.toURI()).isErr:
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fatal "Failed to write the enr file", file = enrFile
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quit 1
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## Start metrics HTTP server
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if config.metricsEnabled:
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let
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address = config.metricsAddress
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port = config.metricsPort
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info "Starting metrics HTTP server",
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url = "http://" & $address & ":" & $port & "/metrics"
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try:
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chronos_httpserver.startMetricsHttpServer($address, port)
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except CatchableError as exc:
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raise exc
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# TODO: Ideally we don't have the Exception here
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except Exception as exc:
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raiseAssert exc.msg
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## Starting the different networks.
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d.start()
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if stateNetwork.isSome():
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stateNetwork.get().start()
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if historyNetwork.isSome():
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historyNetwork.get().start()
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if beaconLightClient.isSome():
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let lc = beaconLightClient.get()
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lc.network.start()
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lc.start()
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proc onSecond(time: Moment) =
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discard
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# TODO:
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# Figure out what to do with this one.
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# let wallSlot = lc.getBeaconTime().slotOrZero()
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# lc.updateGossipStatus(wallSlot + 1)
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proc runOnSecondLoop() {.async.} =
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let sleepTime = chronos.seconds(1)
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while true:
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let start = chronos.now(chronos.Moment)
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await chronos.sleepAsync(sleepTime)
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let afterSleep = chronos.now(chronos.Moment)
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let sleepTime = afterSleep - start
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onSecond(start)
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let finished = chronos.now(chronos.Moment)
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let processingTime = finished - afterSleep
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trace "onSecond task completed", sleepTime, processingTime
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onSecond(Moment.now())
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asyncSpawn runOnSecondLoop()
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## Starting the JSON-RPC APIs
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if config.rpcEnabled:
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let ta = initTAddress(config.rpcAddress, config.rpcPort)
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let rpcHttpServer = RpcHttpServer.new()
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# Note: Set maxRequestBodySize to 4MB instead of 1MB as there are blocks
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# that reach that limit (in hex, for gossip method).
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rpcHttpServer.addHttpServer(ta, maxRequestBodySize = 4 * 1_048_576)
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var rpcHttpServerWithProxy = RpcProxy.new(rpcHttpServer, config.proxyUri)
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rpcHttpServerWithProxy.installDiscoveryApiHandlers(d)
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rpcHttpServerWithProxy.installWeb3ApiHandlers()
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if stateNetwork.isSome():
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rpcHttpServerWithProxy.installPortalApiHandlers(
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stateNetwork.get().portalProtocol, "state"
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)
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if historyNetwork.isSome():
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rpcHttpServerWithProxy.installEthApiHandlers(
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historyNetwork.get(), beaconLightClient, stateNetwork
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)
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rpcHttpServerWithProxy.installPortalApiHandlers(
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historyNetwork.get().portalProtocol, "history"
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)
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rpcHttpServerWithProxy.installPortalDebugApiHandlers(
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historyNetwork.get().portalProtocol, "history"
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)
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if beaconLightClient.isSome():
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rpcHttpServerWithProxy.installPortalApiHandlers(
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beaconLightClient.get().network.portalProtocol, "beacon"
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)
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# TODO: Test proxy with remote node over HTTPS
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waitFor rpcHttpServerWithProxy.start()
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runForever()
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when isMainModule:
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{.pop.}
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let config = PortalConf.load(
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version = clientName & " " & fullVersionStr & "\p\p" & nimBanner,
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copyrightBanner = copyrightBanner,
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)
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{.push raises: [].}
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case config.cmd
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of PortalCmd.noCommand:
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run(config)
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