260 lines
9.1 KiB
Nim
260 lines
9.1 KiB
Nim
# nimbus_verified_proxy
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# Copyright (c) 2022-2023 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, strutils],
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chronicles, chronicles/chronos_tools, chronos, confutils,
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eth/keys,
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json_rpc/rpcproxy,
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beacon_chain/el/el_manager,
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beacon_chain/gossip_processing/optimistic_processor,
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beacon_chain/networking/topic_params,
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beacon_chain/spec/beaconstate,
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beacon_chain/spec/datatypes/[phase0, altair, bellatrix],
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beacon_chain/[light_client,nimbus_binary_common, version],
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../nimbus/rpc/cors,
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"."/rpc/[rpc_eth_api, rpc_utils],
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./nimbus_verified_proxy_conf,
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./block_cache
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from beacon_chain/gossip_processing/block_processor import newExecutionPayload
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from beacon_chain/gossip_processing/eth2_processor import toValidationResult
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func getConfiguredChainId(networkMetadata: Eth2NetworkMetadata): Quantity =
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if networkMetadata.eth1Network.isSome():
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let
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net = networkMetadata.eth1Network.get()
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chainId = case net
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of mainnet: 1.Quantity
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of ropsten: 3.Quantity
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of rinkeby: 4.Quantity
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of goerli: 5.Quantity
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of sepolia: 11155111.Quantity
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of holesky: 17000.Quantity
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return chainId
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else:
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return networkMetadata.cfg.DEPOSIT_CHAIN_ID.Quantity
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proc run(config: VerifiedProxyConf) {.raises: [CatchableError].} =
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# Required as both Eth2Node and LightClient requires correct config type
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var lcConfig = config.asLightClientConf()
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setupLogging(config.logLevel, config.logStdout, none(OutFile))
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notice "Launching Nimbus verified proxy",
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version = fullVersionStr, cmdParams = commandLineParams(), config
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let
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metadata = loadEth2Network(config.eth2Network)
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chainId = getConfiguredChainId(metadata)
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for node in metadata.bootstrapNodes:
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lcConfig.bootstrapNodes.add node
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template cfg(): auto = metadata.cfg
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let
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genesisState =
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try:
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template genesisData(): auto = metadata.genesis.bakedBytes
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newClone(readSszForkedHashedBeaconState(
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cfg, genesisData.toOpenArray(genesisData.low, genesisData.high)))
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except CatchableError as err:
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raiseAssert "Invalid baked-in state: " & err.msg
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beaconClock = BeaconClock.init(getStateField(genesisState[], genesis_time))
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getBeaconTime = beaconClock.getBeaconTimeFn()
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genesis_validators_root =
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getStateField(genesisState[], genesis_validators_root)
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forkDigests = newClone ForkDigests.init(cfg, genesis_validators_root)
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genesisBlockRoot = get_initial_beacon_block(genesisState[]).root
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rng = keys.newRng()
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netKeys = getRandomNetKeys(rng[])
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network = createEth2Node(
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rng, lcConfig, netKeys, cfg,
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forkDigests, getBeaconTime, genesis_validators_root
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)
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blockCache = BlockCache.new(uint32(64))
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# TODO: for now we serve all cross origin requests
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authHooks = @[httpCors(@[])]
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clientConfig = config.web3url.asClientConfig()
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rpcProxy = RpcProxy.new(
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[initTAddress(config.rpcAddress, config.rpcPort)],
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clientConfig,
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authHooks
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)
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verifiedProxy = VerifiedRpcProxy.new(rpcProxy, blockCache, chainId)
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optimisticHandler = proc(signedBlock: ForkedMsgTrustedSignedBeaconBlock):
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Future[void] {.async.} =
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notice "New LC optimistic block",
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opt = signedBlock.toBlockId(),
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wallSlot = getBeaconTime().slotOrZero
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withBlck(signedBlock):
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when consensusFork >= ConsensusFork.Bellatrix:
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if forkyBlck.message.is_execution_block:
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template payload(): auto = forkyBlck.message.body.execution_payload
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blockCache.add(asExecutionData(payload.asEngineExecutionPayload()))
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else: discard
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return
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optimisticProcessor = initOptimisticProcessor(
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getBeaconTime, optimisticHandler)
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lightClient = createLightClient(
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network, rng, lcConfig, cfg, forkDigests, getBeaconTime,
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genesis_validators_root, LightClientFinalizationMode.Optimistic)
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verifiedProxy.installEthApiHandlers()
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info "Listening to incoming network requests"
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network.initBeaconSync(cfg, forkDigests, genesisBlockRoot, getBeaconTime)
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network.addValidator(
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getBeaconBlocksTopic(forkDigests.phase0),
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proc (signedBlock: phase0.SignedBeaconBlock): ValidationResult =
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toValidationResult(
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optimisticProcessor.processSignedBeaconBlock(signedBlock)))
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network.addValidator(
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getBeaconBlocksTopic(forkDigests.altair),
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proc (signedBlock: altair.SignedBeaconBlock): ValidationResult =
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toValidationResult(
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optimisticProcessor.processSignedBeaconBlock(signedBlock)))
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network.addValidator(
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getBeaconBlocksTopic(forkDigests.bellatrix),
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proc (signedBlock: bellatrix.SignedBeaconBlock): ValidationResult =
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toValidationResult(
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optimisticProcessor.processSignedBeaconBlock(signedBlock)))
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network.addValidator(
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getBeaconBlocksTopic(forkDigests.capella),
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proc (signedBlock: capella.SignedBeaconBlock): ValidationResult =
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toValidationResult(
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optimisticProcessor.processSignedBeaconBlock(signedBlock)))
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network.addValidator(
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getBeaconBlocksTopic(forkDigests.deneb),
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proc (signedBlock: deneb.SignedBeaconBlock): ValidationResult =
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toValidationResult(
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optimisticProcessor.processSignedBeaconBlock(signedBlock)))
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lightClient.installMessageValidators()
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waitFor network.startListening()
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waitFor network.start()
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waitFor rpcProxy.start()
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waitFor verifiedProxy.verifyChaindId()
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proc onFinalizedHeader(
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lightClient: LightClient, finalizedHeader: ForkedLightClientHeader) =
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withForkyHeader(finalizedHeader):
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when lcDataFork > LightClientDataFork.None:
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info "New LC finalized header",
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finalized_header = shortLog(forkyHeader)
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proc onOptimisticHeader(
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lightClient: LightClient, optimisticHeader: ForkedLightClientHeader) =
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withForkyHeader(optimisticHeader):
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when lcDataFork > LightClientDataFork.None:
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info "New LC optimistic header",
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optimistic_header = shortLog(forkyHeader)
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optimisticProcessor.setOptimisticHeader(forkyHeader.beacon)
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lightClient.onFinalizedHeader = onFinalizedHeader
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lightClient.onOptimisticHeader = onOptimisticHeader
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lightClient.trustedBlockRoot = some config.trustedBlockRoot
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func shouldSyncOptimistically(wallSlot: Slot): bool =
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let optimisticHeader = lightClient.optimisticHeader
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withForkyHeader(optimisticHeader):
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when lcDataFork > LightClientDataFork.None:
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# Check whether light client has synced sufficiently close to wall slot
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const maxAge = 2 * SLOTS_PER_EPOCH
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forkyHeader.beacon.slot >= max(wallSlot, maxAge.Slot) - maxAge
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else:
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false
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var blocksGossipState: GossipState = {}
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proc updateBlocksGossipStatus(slot: Slot) =
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let
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isBehind = not shouldSyncOptimistically(slot)
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targetGossipState = getTargetGossipState(
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slot.epoch, cfg.ALTAIR_FORK_EPOCH, cfg.BELLATRIX_FORK_EPOCH,
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cfg.CAPELLA_FORK_EPOCH, cfg.DENEB_FORK_EPOCH, isBehind)
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template currentGossipState(): auto = blocksGossipState
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if currentGossipState == targetGossipState:
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return
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if currentGossipState.card == 0 and targetGossipState.card > 0:
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debug "Enabling blocks topic subscriptions",
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wallSlot = slot, targetGossipState
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elif currentGossipState.card > 0 and targetGossipState.card == 0:
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debug "Disabling blocks topic subscriptions",
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wallSlot = slot
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else:
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# Individual forks added / removed
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discard
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let
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newGossipForks = targetGossipState - currentGossipState
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oldGossipForks = currentGossipState - targetGossipState
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for gossipFork in oldGossipForks:
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let forkDigest = forkDigests[].atConsensusFork(gossipFork)
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network.unsubscribe(getBeaconBlocksTopic(forkDigest))
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for gossipFork in newGossipForks:
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let forkDigest = forkDigests[].atConsensusFork(gossipFork)
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network.subscribe(
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getBeaconBlocksTopic(forkDigest), blocksTopicParams,
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enableTopicMetrics = true)
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blocksGossipState = targetGossipState
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proc onSecond(time: Moment) =
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let wallSlot = getBeaconTime().slotOrZero()
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updateBlocksGossipStatus(wallSlot + 1)
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lightClient.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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lightClient.start()
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asyncSpawn runOnSecondLoop()
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while true:
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poll()
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when isMainModule:
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{.pop.}
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var config = makeBannerAndConfig(
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"Nimbus verified proxy " & fullVersionStr, VerifiedProxyConf)
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{.push raises: [].}
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run(config)
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