forked from Deuxfleurs/garage
647 lines
16 KiB
Rust
647 lines
16 KiB
Rust
use std::collections::HashMap;
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use std::hash::Hash as StdHash;
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use std::hash::Hasher;
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use std::io::Read;
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use std::net::{IpAddr, SocketAddr};
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use std::path::PathBuf;
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use std::sync::Arc;
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use std::time::Duration;
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use futures::future::join_all;
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use futures::select;
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use futures_util::future::*;
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use serde::{Deserialize, Serialize};
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use sha2::{Digest, Sha256};
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use tokio::prelude::*;
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use tokio::sync::watch;
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use tokio::sync::Mutex;
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use crate::background::BackgroundRunner;
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use crate::data::*;
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use crate::error::Error;
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use crate::rpc_client::*;
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use crate::rpc_server::*;
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use crate::server::Config;
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const PING_INTERVAL: Duration = Duration::from_secs(10);
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const PING_TIMEOUT: Duration = Duration::from_secs(2);
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const MAX_FAILED_PINGS: usize = 3;
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pub const MEMBERSHIP_RPC_PATH: &str = "_membership";
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#[derive(Debug, Serialize, Deserialize)]
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pub enum Message {
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Ok,
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Ping(PingMessage),
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PullStatus,
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PullConfig,
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AdvertiseNodesUp(Vec<AdvertisedNode>),
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AdvertiseConfig(NetworkConfig),
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}
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impl RpcMessage for Message {}
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#[derive(Debug, Serialize, Deserialize)]
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pub struct PingMessage {
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pub id: UUID,
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pub rpc_port: u16,
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pub status_hash: Hash,
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pub config_version: u64,
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pub state_info: StateInfo,
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}
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#[derive(Clone, Debug, Serialize, Deserialize)]
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pub struct AdvertisedNode {
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pub id: UUID,
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pub addr: SocketAddr,
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pub state_info: StateInfo,
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}
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#[derive(Clone, Debug, Serialize, Deserialize)]
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pub struct NetworkConfig {
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pub members: HashMap<UUID, NetworkConfigEntry>,
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pub version: u64,
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}
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#[derive(Clone, Debug, Serialize, Deserialize)]
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pub struct NetworkConfigEntry {
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pub datacenter: String,
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pub n_tokens: u32,
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}
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pub struct System {
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pub config: Config,
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pub id: UUID,
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pub state_info: StateInfo,
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pub rpc_http_client: Arc<RpcHttpClient>,
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rpc_client: Arc<RpcClient<Message>>,
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pub status: watch::Receiver<Arc<Status>>,
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pub ring: watch::Receiver<Arc<Ring>>,
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update_lock: Mutex<(watch::Sender<Arc<Status>>, watch::Sender<Arc<Ring>>)>,
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pub background: Arc<BackgroundRunner>,
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}
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#[derive(Debug, Clone)]
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pub struct Status {
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pub nodes: HashMap<UUID, StatusEntry>,
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pub hash: Hash,
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}
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#[derive(Debug, Clone)]
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pub struct StatusEntry {
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pub addr: SocketAddr,
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pub remaining_ping_attempts: usize,
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pub state_info: StateInfo,
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}
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#[derive(Debug, Clone, Serialize, Deserialize)]
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pub struct StateInfo {
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pub hostname: String,
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}
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#[derive(Clone)]
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pub struct Ring {
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pub config: NetworkConfig,
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pub ring: Vec<RingEntry>,
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pub n_datacenters: usize,
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}
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#[derive(Clone, Debug)]
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pub struct RingEntry {
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pub location: Hash,
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pub node: UUID,
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pub datacenter: u64,
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}
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impl Status {
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fn handle_ping(&mut self, ip: IpAddr, info: &PingMessage) -> bool {
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let addr = SocketAddr::new(ip, info.rpc_port);
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let old_status = self.nodes.insert(
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info.id.clone(),
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StatusEntry {
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addr: addr.clone(),
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remaining_ping_attempts: MAX_FAILED_PINGS,
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state_info: info.state_info.clone(),
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},
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);
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match old_status {
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None => {
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eprintln!("Newly pingable node: {}", hex::encode(&info.id));
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true
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}
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Some(x) => x.addr != addr,
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}
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}
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fn recalculate_hash(&mut self) {
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let mut nodes = self.nodes.iter().collect::<Vec<_>>();
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nodes.sort_unstable_by_key(|(id, _status)| *id);
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let mut hasher = Sha256::new();
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eprintln!("Current set of pingable nodes: --");
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for (id, status) in nodes {
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eprintln!("{} {}", hex::encode(&id), status.addr);
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hasher.input(format!("{} {}\n", hex::encode(&id), status.addr));
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}
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eprintln!("END --");
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self.hash
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.as_slice_mut()
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.copy_from_slice(&hasher.result()[..]);
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}
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}
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impl Ring {
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fn rebuild_ring(&mut self) {
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let mut new_ring = vec![];
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let mut datacenters = vec![];
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for (id, config) in self.config.members.iter() {
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let mut dc_hasher = std::collections::hash_map::DefaultHasher::new();
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config.datacenter.hash(&mut dc_hasher);
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let datacenter = dc_hasher.finish();
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if !datacenters.contains(&datacenter) {
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datacenters.push(datacenter);
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}
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for i in 0..config.n_tokens {
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let location = hash(format!("{} {}", hex::encode(&id), i).as_bytes());
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new_ring.push(RingEntry {
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location: location.into(),
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node: id.clone(),
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datacenter,
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})
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}
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}
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new_ring.sort_unstable_by(|x, y| x.location.cmp(&y.location));
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self.ring = new_ring;
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self.n_datacenters = datacenters.len();
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// eprintln!("RING: --");
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// for e in self.ring.iter() {
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// eprintln!("{:?}", e);
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// }
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// eprintln!("END --");
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}
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pub fn walk_ring(&self, from: &Hash, n: usize) -> Vec<UUID> {
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if n >= self.config.members.len() {
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return self.config.members.keys().cloned().collect::<Vec<_>>();
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}
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let start = match self.ring.binary_search_by(|x| x.location.cmp(from)) {
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Ok(i) => i,
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Err(i) => {
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if i == 0 {
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self.ring.len() - 1
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} else {
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i - 1
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}
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}
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};
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self.walk_ring_from_pos(start, n)
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}
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fn walk_ring_from_pos(&self, start: usize, n: usize) -> Vec<UUID> {
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if n >= self.config.members.len() {
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return self.config.members.keys().cloned().collect::<Vec<_>>();
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}
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let mut ret = vec![];
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let mut datacenters = vec![];
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let mut delta = 0;
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while ret.len() < n {
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let i = (start + delta) % self.ring.len();
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delta += 1;
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if !datacenters.contains(&self.ring[i].datacenter) {
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ret.push(self.ring[i].node.clone());
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datacenters.push(self.ring[i].datacenter);
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} else if datacenters.len() == self.n_datacenters && !ret.contains(&self.ring[i].node) {
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ret.push(self.ring[i].node.clone());
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}
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}
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ret
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}
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}
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fn read_network_config(metadata_dir: &PathBuf) -> Result<NetworkConfig, Error> {
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let mut path = metadata_dir.clone();
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path.push("network_config");
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let mut file = std::fs::OpenOptions::new()
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.read(true)
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.open(path.as_path())?;
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let mut net_config_bytes = vec![];
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file.read_to_end(&mut net_config_bytes)?;
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let net_config = rmp_serde::decode::from_read_ref(&net_config_bytes[..])?;
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Ok(net_config)
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}
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impl System {
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pub fn new(
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config: Config,
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id: UUID,
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background: Arc<BackgroundRunner>,
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rpc_server: &mut RpcServer,
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) -> Arc<Self> {
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let net_config = match read_network_config(&config.metadata_dir) {
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Ok(x) => x,
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Err(e) => {
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println!(
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"No valid previous network configuration stored ({}), starting fresh.",
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e
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);
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NetworkConfig {
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members: HashMap::new(),
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version: 0,
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}
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}
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};
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let mut status = Status {
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nodes: HashMap::new(),
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hash: Hash::default(),
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};
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status.recalculate_hash();
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let (update_status, status) = watch::channel(Arc::new(status));
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let state_info = StateInfo {
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hostname: gethostname::gethostname()
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.into_string()
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.unwrap_or("<invalid utf-8>".to_string()),
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};
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let mut ring = Ring {
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config: net_config,
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ring: Vec::new(),
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n_datacenters: 0,
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};
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ring.rebuild_ring();
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let (update_ring, ring) = watch::channel(Arc::new(ring));
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let rpc_http_client =
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Arc::new(RpcHttpClient::new(&config.rpc_tls).expect("Could not create RPC client"));
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let rpc_path = MEMBERSHIP_RPC_PATH.to_string();
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let rpc_client = RpcClient::new(
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RpcAddrClient::<Message>::new(rpc_http_client.clone(), rpc_path.clone()),
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background.clone(),
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status.clone(),
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);
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let sys = Arc::new(System {
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config,
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id,
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state_info,
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rpc_http_client,
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rpc_client,
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status,
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ring,
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update_lock: Mutex::new((update_status, update_ring)),
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background,
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});
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sys.clone().register_handler(rpc_server, rpc_path);
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sys
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}
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fn register_handler(self: Arc<Self>, rpc_server: &mut RpcServer, path: String) {
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rpc_server.add_handler::<Message, _, _>(path, move |msg, addr| {
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let self2 = self.clone();
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async move {
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match msg {
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Message::Ping(ping) => self2.handle_ping(&addr, &ping).await,
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Message::PullStatus => self2.handle_pull_status(),
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Message::PullConfig => self2.handle_pull_config(),
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Message::AdvertiseNodesUp(adv) => self2.handle_advertise_nodes_up(&adv).await,
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Message::AdvertiseConfig(adv) => self2.handle_advertise_config(&adv).await,
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_ => Err(Error::BadRequest(format!("Unexpected RPC message"))),
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}
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}
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});
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}
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pub fn rpc_client<M: RpcMessage + 'static>(self: &Arc<Self>, path: &str) -> Arc<RpcClient<M>> {
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RpcClient::new(
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RpcAddrClient::new(self.rpc_http_client.clone(), path.to_string()),
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self.background.clone(),
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self.status.clone(),
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)
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}
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async fn save_network_config(self: Arc<Self>) -> Result<(), Error> {
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let mut path = self.config.metadata_dir.clone();
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path.push("network_config");
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let ring = self.ring.borrow().clone();
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let data = rmp_to_vec_all_named(&ring.config)?;
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let mut f = tokio::fs::File::create(path.as_path()).await?;
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f.write_all(&data[..]).await?;
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Ok(())
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}
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pub fn make_ping(&self) -> Message {
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let status = self.status.borrow().clone();
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let ring = self.ring.borrow().clone();
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Message::Ping(PingMessage {
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id: self.id.clone(),
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rpc_port: self.config.rpc_bind_addr.port(),
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status_hash: status.hash.clone(),
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config_version: ring.config.version,
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state_info: self.state_info.clone(),
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})
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}
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pub async fn broadcast(self: Arc<Self>, msg: Message, timeout: Duration) {
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let status = self.status.borrow().clone();
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let to = status
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.nodes
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.keys()
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.filter(|x| **x != self.id)
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.cloned()
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.collect::<Vec<_>>();
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self.rpc_client.call_many(&to[..], msg, timeout).await;
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}
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pub async fn bootstrap(self: Arc<Self>) {
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let bootstrap_peers = self
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.config
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.bootstrap_peers
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.iter()
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.map(|ip| (ip.clone(), None))
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.collect::<Vec<_>>();
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self.clone().ping_nodes(bootstrap_peers).await;
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self.clone()
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.background
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.spawn_worker(|stop_signal| self.ping_loop(stop_signal).map(Ok))
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.await;
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}
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async fn ping_nodes(self: Arc<Self>, peers: Vec<(SocketAddr, Option<UUID>)>) {
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let ping_msg = self.make_ping();
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let ping_resps = join_all(peers.iter().map(|(addr, id_option)| {
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let sys = self.clone();
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let ping_msg_ref = &ping_msg;
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async move {
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(
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id_option,
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addr.clone(),
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sys.rpc_client
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.by_addr()
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.call(&addr, ping_msg_ref, PING_TIMEOUT)
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.await,
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)
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}
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}))
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.await;
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let update_locked = self.update_lock.lock().await;
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let mut status: Status = self.status.borrow().as_ref().clone();
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let ring = self.ring.borrow().clone();
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let mut has_changes = false;
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let mut to_advertise = vec![];
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for (id_option, addr, ping_resp) in ping_resps {
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if let Ok(Message::Ping(info)) = ping_resp {
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let is_new = status.handle_ping(addr.ip(), &info);
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if is_new {
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has_changes = true;
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to_advertise.push(AdvertisedNode {
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id: info.id.clone(),
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addr: addr.clone(),
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state_info: info.state_info.clone(),
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});
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}
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if is_new || status.hash != info.status_hash {
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self.background
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.spawn_cancellable(self.clone().pull_status(info.id.clone()).map(Ok));
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}
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if is_new || ring.config.version < info.config_version {
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self.background
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.spawn_cancellable(self.clone().pull_config(info.id.clone()).map(Ok));
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}
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} else if let Some(id) = id_option {
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let remaining_attempts = status
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.nodes
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.get(id)
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.map(|x| x.remaining_ping_attempts)
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.unwrap_or(0);
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if remaining_attempts == 0 {
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eprintln!(
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"Removing node {} after too many failed pings",
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hex::encode(&id)
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);
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status.nodes.remove(&id);
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has_changes = true;
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} else {
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if let Some(st) = status.nodes.get_mut(id) {
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st.remaining_ping_attempts = remaining_attempts - 1;
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}
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}
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}
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}
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if has_changes {
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status.recalculate_hash();
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}
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if let Err(e) = update_locked.0.broadcast(Arc::new(status)) {
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eprintln!("In ping_nodes: could not save status update ({})", e);
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}
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drop(update_locked);
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if to_advertise.len() > 0 {
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self.broadcast(Message::AdvertiseNodesUp(to_advertise), PING_TIMEOUT)
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.await;
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}
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}
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pub async fn handle_ping(
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self: Arc<Self>,
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from: &SocketAddr,
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ping: &PingMessage,
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) -> Result<Message, Error> {
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let update_locked = self.update_lock.lock().await;
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let mut status: Status = self.status.borrow().as_ref().clone();
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let is_new = status.handle_ping(from.ip(), ping);
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if is_new {
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status.recalculate_hash();
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}
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let status_hash = status.hash.clone();
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let config_version = self.ring.borrow().config.version;
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update_locked.0.broadcast(Arc::new(status))?;
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drop(update_locked);
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if is_new || status_hash != ping.status_hash {
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self.background
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.spawn_cancellable(self.clone().pull_status(ping.id.clone()).map(Ok));
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}
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if is_new || config_version < ping.config_version {
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self.background
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.spawn_cancellable(self.clone().pull_config(ping.id.clone()).map(Ok));
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}
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Ok(self.make_ping())
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}
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pub fn handle_pull_status(&self) -> Result<Message, Error> {
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let status = self.status.borrow().clone();
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let mut mem = vec![];
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for (node, status) in status.nodes.iter() {
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let state_info = if *node == self.id {
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self.state_info.clone()
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} else {
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status.state_info.clone()
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};
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mem.push(AdvertisedNode {
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id: node.clone(),
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addr: status.addr.clone(),
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state_info,
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});
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}
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Ok(Message::AdvertiseNodesUp(mem))
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}
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pub fn handle_pull_config(&self) -> Result<Message, Error> {
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let ring = self.ring.borrow().clone();
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Ok(Message::AdvertiseConfig(ring.config.clone()))
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}
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pub async fn handle_advertise_nodes_up(
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self: Arc<Self>,
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adv: &[AdvertisedNode],
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) -> Result<Message, Error> {
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let mut to_ping = vec![];
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|
|
let update_lock = self.update_lock.lock().await;
|
|
let mut status: Status = self.status.borrow().as_ref().clone();
|
|
let mut has_changed = false;
|
|
|
|
for node in adv.iter() {
|
|
if node.id == self.id {
|
|
// learn our own ip address
|
|
let self_addr = SocketAddr::new(node.addr.ip(), self.config.rpc_bind_addr.port());
|
|
let old_self = status.nodes.insert(
|
|
node.id.clone(),
|
|
StatusEntry {
|
|
addr: self_addr,
|
|
remaining_ping_attempts: MAX_FAILED_PINGS,
|
|
state_info: self.state_info.clone(),
|
|
},
|
|
);
|
|
has_changed = match old_self {
|
|
None => true,
|
|
Some(x) => x.addr != self_addr,
|
|
};
|
|
} else if !status.nodes.contains_key(&node.id) {
|
|
to_ping.push((node.addr.clone(), Some(node.id.clone())));
|
|
}
|
|
}
|
|
if has_changed {
|
|
status.recalculate_hash();
|
|
}
|
|
update_lock.0.broadcast(Arc::new(status))?;
|
|
drop(update_lock);
|
|
|
|
if to_ping.len() > 0 {
|
|
self.background
|
|
.spawn_cancellable(self.clone().ping_nodes(to_ping).map(Ok));
|
|
}
|
|
|
|
Ok(Message::Ok)
|
|
}
|
|
|
|
pub async fn handle_advertise_config(
|
|
self: Arc<Self>,
|
|
adv: &NetworkConfig,
|
|
) -> Result<Message, Error> {
|
|
let mut ring: Ring = self.ring.borrow().as_ref().clone();
|
|
let update_lock = self.update_lock.lock().await;
|
|
|
|
if adv.version > ring.config.version {
|
|
ring.config = adv.clone();
|
|
ring.rebuild_ring();
|
|
update_lock.1.broadcast(Arc::new(ring))?;
|
|
drop(update_lock);
|
|
|
|
self.background.spawn_cancellable(
|
|
self.clone()
|
|
.broadcast(Message::AdvertiseConfig(adv.clone()), PING_TIMEOUT)
|
|
.map(Ok),
|
|
);
|
|
self.background.spawn(self.clone().save_network_config());
|
|
}
|
|
|
|
Ok(Message::Ok)
|
|
}
|
|
|
|
pub async fn ping_loop(self: Arc<Self>, mut stop_signal: watch::Receiver<bool>) {
|
|
loop {
|
|
let restart_at = tokio::time::delay_for(PING_INTERVAL);
|
|
|
|
let status = self.status.borrow().clone();
|
|
let ping_addrs = status
|
|
.nodes
|
|
.iter()
|
|
.filter(|(id, _)| **id != self.id)
|
|
.map(|(id, status)| (status.addr.clone(), Some(id.clone())))
|
|
.collect::<Vec<_>>();
|
|
|
|
self.clone().ping_nodes(ping_addrs).await;
|
|
|
|
select! {
|
|
_ = restart_at.fuse() => (),
|
|
must_exit = stop_signal.recv().fuse() => {
|
|
match must_exit {
|
|
None | Some(true) => return,
|
|
_ => (),
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
pub fn pull_status(
|
|
self: Arc<Self>,
|
|
peer: UUID,
|
|
) -> impl futures::future::Future<Output = ()> + Send + 'static {
|
|
async move {
|
|
let resp = self
|
|
.rpc_client
|
|
.call(&peer, Message::PullStatus, PING_TIMEOUT)
|
|
.await;
|
|
if let Ok(Message::AdvertiseNodesUp(nodes)) = resp {
|
|
let _: Result<_, _> = self.handle_advertise_nodes_up(&nodes).await;
|
|
}
|
|
}
|
|
}
|
|
|
|
pub async fn pull_config(self: Arc<Self>, peer: UUID) {
|
|
let resp = self
|
|
.rpc_client
|
|
.call(&peer, Message::PullConfig, PING_TIMEOUT)
|
|
.await;
|
|
if let Ok(Message::AdvertiseConfig(config)) = resp {
|
|
let _: Result<_, _> = self.handle_advertise_config(&config).await;
|
|
}
|
|
}
|
|
}
|