mirror of
https://github.com/status-im/nimbus-eth1.git
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cf49b8d4fc
This patch adds: - Load and use a third-party EVM in a shared library, instead of Nimbus EVM. - New option `--evm` to specify which library to load. - The library and this loader conforms to the [EVMC] (https://evmc.ethereum.org/) 9.x specification. Any third-party EVM which is compatible with EVMC version 9.x and supports EVM1 contract code will be accepted. The operating system's shared library format applies. These are `.so*` files on Linux, `.dll` files on Windows and `.dylib` files on Mac. The alternative EVM can be selected in two ways: - Nimbus command line option `--evm:<path>`. - Environment variable `NIMBUS_EVM=<path>`. The reason for an environment variable is this allows all the test programs to run with a third-party EVM as well. Some don't parse command line options. There are some limitations to be aware of: - The third-party EVM must use EVMC version 9.x, no other major version. EVMC 9.x supports EIP-1559 / London fork and older transactions. - Nested `*CALL` and `CREATE*` operations don't use the third-party EVM yet. These call the built-in Nimbus EVM. This mixing of different EVMs between levels is explicitly allowed in specs, so there is no problem doing it. - The third-party EVM doesn't need to support precompiles, because those are nested calls, which use the built-in Nimbus EVM. - Third-party EVMs execute contracts correctly, but fail the final `rootHash` match. The reason is that some account state changes, which are correct, are currently inside the Nimbus EVM and need to be moved to EVMC host logic. *This is a known work in progress*. The EVM execution itself is fine. Test results using "evmone" third-party EVM: - [evmone](https://github.com/ethereum/evmone) has been tested. Only on Linux but it "should" work on Windows and Mac equally well. - [Version 0.8.1](https://github.com/ethereum/evmone/releases/tag/v0.8.1) was used because it is compatible with EVMC 9.x, which is required for the EIP-1559 / London fork, which Nimbus supports. Version 0.8.0 could be used but it looks like an important bug was fixed in 0.8.1. - evmone runs fine and the trace output looks good. The calls and arguments are the same as the built-in Nimbus EVM for tests that have been checked manually, except evmone skips some calls that can be safely skipped. - The final `rootHash` is incorrect, due to the *work in progress* mentioned above which is not part of the evmone execution. Due to this, it's possible to try evmone and verify expected behaviours, which also validates our own EVMC implementation, but it can't be used as a full substitute yet. Signed-off-by: Jamie Lokier <jamie@shareable.org>
280 lines
9.2 KiB
Nim
280 lines
9.2 KiB
Nim
# Nimbus
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# Copyright (c) 2018 Status Research & Development GmbH
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# Licensed under either of
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# * Apache License, version 2.0, ([LICENSE-APACHE](LICENSE-APACHE))
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# * MIT license ([LICENSE-MIT](LICENSE-MIT))
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# at your option.
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# This file may not be copied, modified, or distributed except according to
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# those terms.
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import
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../nimbus/vm_compile_info
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import
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os, strutils, net, options,
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stew/shims/net as stewNet,
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eth/keys, db/[storage_types, db_chain, select_backend],
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eth/common as eth_common, eth/p2p as eth_p2p,
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chronos, json_rpc/rpcserver, chronicles,
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eth/p2p/rlpx_protocols/les_protocol,
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./p2p/blockchain_sync, eth/net/nat, eth/p2p/peer_pool,
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./sync/protocol_eth65,
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config, genesis, rpc/[common, p2p, debug], p2p/chain,
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transaction/evmc_dynamic_loader,
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eth/trie/db, metrics, metrics/[chronos_httpserver, chronicles_support],
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graphql/ethapi, context,
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"."/[conf_utils, sealer, constants]
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## TODO:
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## * No IPv6 support
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## * No multiple bind addresses support
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## * No database support
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type
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NimbusState = enum
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Starting, Running, Stopping
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NimbusNode = ref object
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rpcServer: RpcHttpServer
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ethNode: EthereumNode
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state: NimbusState
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graphqlServer: GraphqlHttpServerRef
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wsRpcServer: RpcWebSocketServer
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sealingEngine: SealingEngineRef
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ctx: EthContext
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chainRef: Chain
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proc importBlocks(conf: NimbusConf, chainDB: BaseChainDB) =
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if string(conf.blocksFile).len > 0:
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# success or not, we quit after importing blocks
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if not importRlpBlock(string conf.blocksFile, chainDB):
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quit(QuitFailure)
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else:
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quit(QuitSuccess)
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proc manageAccounts(nimbus: NimbusNode, conf: NimbusConf) =
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if string(conf.keyStore).len > 0:
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let res = nimbus.ctx.am.loadKeystores(string conf.keyStore)
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if res.isErr:
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echo res.error()
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quit(QuitFailure)
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if string(conf.importKey).len > 0:
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let res = nimbus.ctx.am.importPrivateKey(string conf.importKey)
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if res.isErr:
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echo res.error()
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quit(QuitFailure)
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proc setupP2P(nimbus: NimbusNode, conf: NimbusConf,
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chainDB: BaseChainDB, protocols: set[ProtocolFlag]) =
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## Creating P2P Server
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let kpres = nimbus.ctx.hexToKeyPair(conf.nodeKeyHex)
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if kpres.isErr:
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echo kpres.error()
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quit(QuitFailure)
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let keypair = kpres.get()
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var address = Address(
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ip: conf.listenAddress,
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tcpPort: conf.tcpPort,
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udpPort: conf.udpPort
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)
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if conf.nat.hasExtIp:
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# any required port redirection is assumed to be done by hand
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address.ip = conf.nat.extIp
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else:
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# automated NAT traversal
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let extIP = getExternalIP(conf.nat.nat)
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# This external IP only appears in the logs, so don't worry about dynamic
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# IPs. Don't remove it either, because the above call does initialisation
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# and discovery for NAT-related objects.
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if extIP.isSome:
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address.ip = extIP.get()
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let extPorts = redirectPorts(tcpPort = address.tcpPort,
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udpPort = address.udpPort,
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description = NIMBUS_NAME & " " & NIMBUS_VERSION)
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if extPorts.isSome:
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(address.tcpPort, address.udpPort) = extPorts.get()
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nimbus.ethNode = newEthereumNode(keypair, address, conf.networkId,
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nil, conf.agentString,
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addAllCapabilities = false,
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minPeers = conf.maxPeers)
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# Add protocol capabilities based on protocol flags
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if ProtocolFlag.Eth in protocols:
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nimbus.ethNode.addCapability eth
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if ProtocolFlag.Les in protocols:
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nimbus.ethNode.addCapability les
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# chainRef: some name to avoid module-name/filed/function misunderstandings
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nimbus.chainRef = newChain(chainDB)
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nimbus.ethNode.chain = nimbus.chainRef
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if conf.verifyFrom.isSome:
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let verifyFrom = conf.verifyFrom.get()
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nimbus.chainRef.extraValidation = 0 < verifyFrom
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nimbus.chainRef.verifyFrom = verifyFrom
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# Connect directly to the static nodes
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let staticPeers = conf.getStaticPeers()
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for enode in staticPeers:
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asyncCheck nimbus.ethNode.peerPool.connectToNode(newNode(enode))
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# Connect via discovery
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let bootNodes = conf.getBootNodes()
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if bootNodes.len > 0:
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waitFor nimbus.ethNode.connectToNetwork(bootNodes,
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enableDiscovery = conf.discovery != DiscoveryType.None)
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proc localServices(nimbus: NimbusNode, conf: NimbusConf,
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chainDB: BaseChainDB, protocols: set[ProtocolFlag]) =
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# metrics logging
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if conf.logMetricsEnabled:
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# https://github.com/nim-lang/Nim/issues/17369
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var logMetrics: proc(udata: pointer) {.gcsafe, raises: [Defect].}
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logMetrics = proc(udata: pointer) =
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{.gcsafe.}:
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let registry = defaultRegistry
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info "metrics", registry
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discard setTimer(Moment.fromNow(conf.logMetricsInterval.seconds), logMetrics)
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discard setTimer(Moment.fromNow(conf.logMetricsInterval.seconds), logMetrics)
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# Creating RPC Server
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if conf.rpcEnabled:
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nimbus.rpcServer = newRpcHttpServer([initTAddress(conf.rpcAddress, conf.rpcPort)])
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setupCommonRpc(nimbus.ethNode, conf, nimbus.rpcServer)
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# Enable RPC APIs based on RPC flags and protocol flags
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let rpcFlags = conf.getRpcFlags()
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if RpcFlag.Eth in rpcFlags and ProtocolFlag.Eth in protocols:
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setupEthRpc(nimbus.ethNode, nimbus.ctx, chainDB, nimbus.rpcServer)
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if RpcFlag.Debug in rpcFlags:
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setupDebugRpc(chainDB, nimbus.rpcServer)
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nimbus.rpcServer.rpc("admin_quit") do() -> string:
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{.gcsafe.}:
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nimbus.state = Stopping
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result = "EXITING"
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nimbus.rpcServer.start()
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# Creating Websocket RPC Server
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if conf.wsEnabled:
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nimbus.wsRpcServer = newRpcWebSocketServer(initTAddress(conf.wsAddress, conf.wsPort))
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setupCommonRpc(nimbus.ethNode, conf, nimbus.wsRpcServer)
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# Enable Websocket RPC APIs based on RPC flags and protocol flags
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let wsFlags = conf.getWsFlags()
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if RpcFlag.Eth in wsFlags and ProtocolFlag.Eth in protocols:
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setupEthRpc(nimbus.ethNode, nimbus.ctx, chainDB, nimbus.wsRpcServer)
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if RpcFlag.Debug in wsFlags:
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setupDebugRpc(chainDB, nimbus.wsRpcServer)
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nimbus.wsRpcServer.start()
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if conf.graphqlEnabled:
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nimbus.graphqlServer = setupGraphqlHttpServer(conf, chainDB, nimbus.ethNode)
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nimbus.graphqlServer.start()
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if conf.engineSigner != ZERO_ADDRESS:
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let rs = validateSealer(conf, nimbus.ctx, nimbus.chainRef)
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if rs.isErr:
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echo rs.error
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quit(QuitFailure)
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nimbus.sealingEngine = SealingEngineRef.new(
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nimbus.chainRef, nimbus.ctx, conf.engineSigner
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)
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nimbus.sealingEngine.start()
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# metrics server
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if conf.metricsEnabled:
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info "Starting metrics HTTP server", address = conf.metricsAddress, port = conf.metricsPort
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startMetricsHttpServer($conf.metricsAddress, conf.metricsPort)
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proc start(nimbus: NimbusNode, conf: NimbusConf) =
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## logging
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setLogLevel(conf.logLevel)
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if conf.logFile.isSome:
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let logFile = string conf.logFile.get()
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defaultChroniclesStream.output.outFile = nil # to avoid closing stdout
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discard defaultChroniclesStream.output.open(logFile, fmAppend)
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evmcSetLibraryPath(conf.evm)
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createDir(string conf.dataDir)
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let trieDB = trieDB newChainDb(string conf.dataDir)
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var chainDB = newBaseChainDB(trieDB,
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conf.pruneMode == PruneMode.Full,
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conf.networkId,
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conf.networkParams
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)
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chainDB.populateProgress()
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if canonicalHeadHashKey().toOpenArray notin trieDB:
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initializeEmptyDb(chainDb)
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doAssert(canonicalHeadHashKey().toOpenArray in trieDB)
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let protocols = conf.getProtocolFlags()
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case conf.cmd
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of NimbusCmd.`import`:
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importBlocks(conf, chainDB)
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else:
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manageAccounts(nimbus, conf)
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setupP2P(nimbus, conf, chainDB, protocols)
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localServices(nimbus, conf, chainDB, protocols)
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if ProtocolFlag.Eth in protocols:
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# TODO: temp code until the CLI/RPC interface is fleshed out
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let status = waitFor nimbus.ethNode.fastBlockchainSync()
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if status != syncSuccess:
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debug "Block sync failed: ", status
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if nimbus.state == Starting:
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# it might have been set to "Stopping" with Ctrl+C
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nimbus.state = Running
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proc stop*(nimbus: NimbusNode, conf: NimbusConf) {.async, gcsafe.} =
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trace "Graceful shutdown"
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if conf.rpcEnabled:
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await nimbus.rpcServer.stop()
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if conf.wsEnabled:
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nimbus.wsRpcServer.stop()
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if conf.graphqlEnabled:
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await nimbus.graphqlServer.stop()
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if conf.engineSigner != ZERO_ADDRESS:
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await nimbus.sealingEngine.stop()
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proc process*(nimbus: NimbusNode, conf: NimbusConf) =
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# Main event loop
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while nimbus.state == Running:
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try:
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poll()
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except CatchableError as e:
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debug "Exception in poll()", exc = e.name, err = e.msg
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discard e # silence warning when chronicles not activated
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# Stop loop
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waitFor nimbus.stop(conf)
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when isMainModule:
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var nimbus = NimbusNode(state: Starting, ctx: newEthContext())
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## Ctrl+C handling
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proc controlCHandler() {.noconv.} =
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when defined(windows):
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# workaround for https://github.com/nim-lang/Nim/issues/4057
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setupForeignThreadGc()
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nimbus.state = Stopping
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echo "\nCtrl+C pressed. Waiting for a graceful shutdown."
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setControlCHook(controlCHandler)
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## Show logs on stdout until we get the user's logging choice
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discard defaultChroniclesStream.output.open(stdout)
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## Processing command line arguments
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let conf = makeConfig()
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nimbus.start(conf)
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nimbus.process(conf)
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