## Issue Addressed #4738 ## Proposed Changes See the above issue for details. Went with option #2 to use the async reqwest client in `Eth2NetworkConfig` and propagate the async-ness.
206 lines
7.4 KiB
Rust
206 lines
7.4 KiB
Rust
use beacon_node::{get_data_dir, set_network_config};
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use clap::ArgMatches;
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use eth2_network_config::Eth2NetworkConfig;
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use lighthouse_network::discovery::create_enr_builder_from_config;
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use lighthouse_network::discv5::{enr::CombinedKey, Discv5Config, Enr};
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use lighthouse_network::{
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discovery::{load_enr_from_disk, use_or_load_enr},
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load_private_key, CombinedKeyExt, NetworkConfig,
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};
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use serde_derive::{Deserialize, Serialize};
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use ssz::Encode;
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use std::net::{SocketAddrV4, SocketAddrV6};
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use std::time::Duration;
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use std::{marker::PhantomData, path::PathBuf};
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use types::EthSpec;
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/// A set of configuration parameters for the bootnode, established from CLI arguments.
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pub struct BootNodeConfig<T: EthSpec> {
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// TODO: Generalise to multiaddr
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pub boot_nodes: Vec<Enr>,
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pub local_enr: Enr,
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pub local_key: CombinedKey,
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pub discv5_config: Discv5Config,
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phantom: PhantomData<T>,
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}
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impl<T: EthSpec> BootNodeConfig<T> {
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pub async fn new(
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matches: &ArgMatches<'_>,
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eth2_network_config: &Eth2NetworkConfig,
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) -> Result<Self, String> {
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let data_dir = get_data_dir(matches);
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// Try and obtain bootnodes
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let boot_nodes = {
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let mut boot_nodes = Vec::new();
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if let Some(enr) = ð2_network_config.boot_enr {
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boot_nodes.extend_from_slice(enr);
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}
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if let Some(nodes) = matches.value_of("boot-nodes") {
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boot_nodes.extend_from_slice(
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&nodes
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.split(',')
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.map(|enr| enr.parse().map_err(|_| format!("Invalid ENR: {}", enr)))
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.collect::<Result<Vec<Enr>, _>>()?,
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);
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}
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boot_nodes
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};
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let mut network_config = NetworkConfig::default();
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let logger = slog_scope::logger();
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set_network_config(&mut network_config, matches, &data_dir, &logger)?;
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// Set the Enr Discovery ports to the listening ports if not present.
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if let Some(listening_addr_v4) = network_config.listen_addrs().v4() {
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network_config.enr_udp4_port = Some(
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network_config
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.enr_udp4_port
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.unwrap_or(listening_addr_v4.disc_port),
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)
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};
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if let Some(listening_addr_v6) = network_config.listen_addrs().v6() {
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network_config.enr_udp6_port = Some(
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network_config
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.enr_udp6_port
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.unwrap_or(listening_addr_v6.disc_port),
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)
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};
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// By default this is enabled. If it is not set, revert to false.
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if !matches.is_present("enable-enr-auto-update") {
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network_config.discv5_config.enr_update = false;
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}
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let private_key = load_private_key(&network_config, &logger);
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let local_key = CombinedKey::from_libp2p(private_key)?;
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let local_enr = if let Some(dir) = matches.value_of("network-dir") {
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let network_dir: PathBuf = dir.into();
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load_enr_from_disk(&network_dir)?
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} else {
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// build the enr_fork_id and add it to the local_enr if it exists
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let enr_fork = {
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let spec = eth2_network_config.chain_spec::<T>()?;
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let genesis_state_url: Option<String> =
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clap_utils::parse_optional(matches, "genesis-state-url")?;
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let genesis_state_url_timeout =
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clap_utils::parse_required(matches, "genesis-state-url-timeout")
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.map(Duration::from_secs)?;
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if eth2_network_config.genesis_state_is_known() {
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let genesis_state = eth2_network_config
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.genesis_state::<T>(genesis_state_url.as_deref(), genesis_state_url_timeout, &logger).await?
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.ok_or_else(|| {
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"The genesis state for this network is not known, this is an unsupported mode"
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.to_string()
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})?;
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slog::info!(logger, "Genesis state found"; "root" => genesis_state.canonical_root().to_string());
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let enr_fork = spec.enr_fork_id::<T>(
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types::Slot::from(0u64),
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genesis_state.genesis_validators_root(),
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);
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Some(enr_fork.as_ssz_bytes())
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} else {
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slog::warn!(
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logger,
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"No genesis state provided. No Eth2 field added to the ENR"
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);
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None
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}
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};
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// Build the local ENR
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let mut local_enr = {
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let enable_tcp = false;
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let mut builder = create_enr_builder_from_config(&network_config, enable_tcp);
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// If we know of the ENR field, add it to the initial construction
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if let Some(enr_fork_bytes) = enr_fork {
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builder.add_value("eth2", &enr_fork_bytes);
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}
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builder
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.build(&local_key)
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.map_err(|e| format!("Failed to build ENR: {:?}", e))?
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};
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use_or_load_enr(&local_key, &mut local_enr, &network_config, &logger)?;
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local_enr
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};
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Ok(BootNodeConfig {
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boot_nodes,
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local_enr,
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local_key,
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discv5_config: network_config.discv5_config,
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phantom: PhantomData,
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})
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}
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}
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/// The set of configuration parameters that can safely be (de)serialized.
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///
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/// Its fields are a subset of the fields of `BootNodeConfig`, some of them are copied from `Discv5Config`.
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#[derive(Serialize, Deserialize)]
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pub struct BootNodeConfigSerialization {
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pub ipv4_listen_socket: Option<SocketAddrV4>,
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pub ipv6_listen_socket: Option<SocketAddrV6>,
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// TODO: Generalise to multiaddr
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pub boot_nodes: Vec<Enr>,
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pub local_enr: Enr,
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pub disable_packet_filter: bool,
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pub enable_enr_auto_update: bool,
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}
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impl BootNodeConfigSerialization {
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/// Returns a `BootNodeConfigSerialization` obtained from copying resp. cloning the
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/// relevant fields of `config`
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pub fn from_config_ref<T: EthSpec>(config: &BootNodeConfig<T>) -> Self {
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let BootNodeConfig {
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boot_nodes,
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local_enr,
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local_key: _,
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discv5_config,
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phantom: _,
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} = config;
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let (ipv4_listen_socket, ipv6_listen_socket) = match discv5_config.listen_config {
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lighthouse_network::discv5::ListenConfig::Ipv4 { ip, port } => {
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(Some(SocketAddrV4::new(ip, port)), None)
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}
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lighthouse_network::discv5::ListenConfig::Ipv6 { ip, port } => {
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(None, Some(SocketAddrV6::new(ip, port, 0, 0)))
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}
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lighthouse_network::discv5::ListenConfig::DualStack {
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ipv4,
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ipv4_port,
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ipv6,
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ipv6_port,
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} => (
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Some(SocketAddrV4::new(ipv4, ipv4_port)),
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Some(SocketAddrV6::new(ipv6, ipv6_port, 0, 0)),
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),
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};
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BootNodeConfigSerialization {
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ipv4_listen_socket,
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ipv6_listen_socket,
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boot_nodes: boot_nodes.clone(),
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local_enr: local_enr.clone(),
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disable_packet_filter: !discv5_config.enable_packet_filter,
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enable_enr_auto_update: discv5_config.enr_update,
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}
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}
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}
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