333 lines
8.1 KiB
Rust
333 lines
8.1 KiB
Rust
use std::collections::HashMap;
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use std::net::SocketAddr;
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use std::sync::{atomic, Arc};
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use std::{cmp, time::Duration};
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use anyhow::Result;
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use futures::future::BoxFuture;
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use futures::stream::{FuturesUnordered, StreamExt};
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use log::*;
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use tokio::{sync::watch, time::sleep};
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use crate::consul::*;
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// ---- Extract proxy config from Consul catalog ----
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#[derive(Debug)]
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pub enum HostDescription {
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Hostname(String),
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Pattern(glob::Pattern),
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}
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impl HostDescription {
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fn new(desc: &str) -> Result<Self> {
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if desc.chars().any(|x| matches!(x, '*' | '?' | '[' | ']')) {
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Ok(Self::Pattern(glob::Pattern::new(desc)?))
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} else {
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Ok(Self::Hostname(desc.to_string()))
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}
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}
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pub fn matches(&self, v: &str) -> bool {
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match self {
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Self::Pattern(p) => p.matches(v),
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Self::Hostname(s) => s == v,
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}
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}
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}
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#[derive(Debug)]
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pub struct ProxyEntry {
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/// Publicly exposed TLS hostnames for matching this rule
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pub host: HostDescription,
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/// Path prefix for matching this rule
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pub path_prefix: Option<String>,
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/// Priority with which this rule is considered (highest first)
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pub priority: u32,
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/// Node address (ip+port) to handle requests that match this entry
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pub target_addr: SocketAddr,
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/// Is the target serving HTTPS instead of HTTP?
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pub https_target: bool,
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/// Is the target the same node as we are running on?
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/// (if yes priorize it over other matching targets)
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pub same_node: bool,
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/// Is the target the same site as this node?
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/// (if yes priorize it over other matching targets)
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pub same_site: bool,
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/// Add the following headers to all responses returned
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/// when matching this rule
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pub add_headers: Vec<(String, String)>,
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// Counts the number of times this proxy server has been called to
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// This implements a round-robin load balancer if there are multiple
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// entries for the same host and same path prefix.
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pub calls: atomic::AtomicI64,
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}
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impl std::fmt::Display for ProxyEntry {
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fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
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if self.https_target {
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write!(f, "https://")?;
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}
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write!(f, "{} ", self.target_addr)?;
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match &self.host {
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HostDescription::Hostname(h) => write!(f, "{}", h)?,
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HostDescription::Pattern(p) => write!(f, "Pattern('{}')", p.as_str())?,
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}
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write!(
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f,
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"{} {}",
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self.path_prefix.as_ref().unwrap_or(&String::new()),
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self.priority
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)?;
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if self.same_node {
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write!(f, " OURSELF")?;
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} else if self.same_site {
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write!(f, " SAME_SITE")?;
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}
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if !self.add_headers.is_empty() {
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write!(f, " +Headers: {:?}", self.add_headers)?;
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}
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write!(f, " ({})", self.calls.load(atomic::Ordering::Relaxed))
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}
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}
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#[derive(Debug)]
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pub struct ProxyConfig {
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pub entries: Vec<ProxyEntry>,
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}
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fn retry_to_time(retries: u32, max_time: Duration) -> Duration {
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// 1.2^x seems to be a good value to exponentially increase time at a good pace
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// eg. 1.2^32 = 341 seconds ~= 5 minutes - ie. after 32 retries we wait 5
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// minutes
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Duration::from_secs(cmp::min(
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max_time.as_secs(),
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1.2f64.powf(retries as f64) as u64,
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))
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}
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fn parse_tricot_tag(
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tag: &str,
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target_addr: SocketAddr,
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add_headers: &[(String, String)],
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same_node: bool,
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same_site: bool,
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) -> Option<ProxyEntry> {
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let splits = tag.split(' ').collect::<Vec<_>>();
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if (splits.len() != 2 && splits.len() != 3)
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|| (splits[0] != "tricot" && splits[0] != "tricot-https")
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{
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return None;
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}
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let (host, path_prefix) = match splits[1].find('/') {
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Some(i) => {
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let (host, pp) = splits[1].split_at(i);
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(host, Some(pp.to_string()))
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}
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None => (splits[1], None),
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};
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let priority = match splits.len() {
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3 => splits[2].parse().ok()?,
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_ => 100,
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};
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let host = match HostDescription::new(host) {
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Ok(h) => h,
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Err(e) => {
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warn!("Invalid hostname pattern {}: {}", host, e);
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return None;
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}
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};
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Some(ProxyEntry {
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target_addr,
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https_target: (splits[0] == "tricot-https"),
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host,
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same_node,
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same_site,
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path_prefix,
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priority,
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add_headers: add_headers.to_vec(),
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calls: atomic::AtomicI64::from(0),
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})
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}
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fn parse_tricot_add_header_tag(tag: &str) -> Option<(String, String)> {
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let splits = tag.split(' ').collect::<Vec<_>>();
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if splits.len() == 3 && splits[0] == "tricot-add-header" {
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Some((splits[1].to_string(), splits[2].to_string()))
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} else {
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None
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}
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}
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fn parse_consul_catalog(
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catalog: &ConsulNodeCatalog,
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same_node: bool,
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same_site: bool,
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) -> Vec<ProxyEntry> {
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trace!("Parsing node catalog: {:#?}", catalog);
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let mut entries = vec![];
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for (_, svc) in catalog.services.iter() {
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let ip_addr = match svc.address.parse() {
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Ok(ip) => ip,
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_ => match catalog.node.address.parse() {
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Ok(ip) => ip,
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_ => {
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warn!(
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"Could not get address for service {} at node {}",
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svc.service, catalog.node.node
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);
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continue;
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}
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},
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};
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let addr = SocketAddr::new(ip_addr, svc.port);
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let mut add_headers = vec![];
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for tag in svc.tags.iter() {
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if let Some(pair) = parse_tricot_add_header_tag(tag) {
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add_headers.push(pair);
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}
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}
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for tag in svc.tags.iter() {
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if let Some(ent) = parse_tricot_tag(tag, addr, &add_headers[..], same_node, same_site) {
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entries.push(ent);
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}
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}
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}
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trace!("Result of parsing catalog:");
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for ent in entries.iter() {
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trace!(" {}", ent);
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}
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entries
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}
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#[derive(Default)]
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struct NodeWatchState {
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last_idx: Option<usize>,
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last_catalog: Option<ConsulNodeCatalog>,
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retries: u32,
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}
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pub fn spawn_proxy_config_task(consul: Consul) -> watch::Receiver<Arc<ProxyConfig>> {
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let (tx, rx) = watch::channel(Arc::new(ProxyConfig {
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entries: Vec::new(),
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}));
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let consul = Arc::new(consul);
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tokio::spawn(async move {
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let mut nodes = HashMap::new();
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let mut watches = FuturesUnordered::<BoxFuture<'static, (String, Result<_>)>>::new();
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let mut node_site = HashMap::new();
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loop {
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match consul.list_nodes().await {
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Ok(consul_nodes) => {
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info!("Watched consul nodes: {:?}", consul_nodes);
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for consul_node in consul_nodes {
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let node = &consul_node.node;
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if !nodes.contains_key(node) {
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nodes.insert(node.clone(), NodeWatchState::default());
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let node = node.to_string();
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let consul = consul.clone();
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watches.push(Box::pin(async move {
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let res = consul.watch_node(&node, None).await;
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(node, res)
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}));
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}
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if let Some(site) = consul_node.meta.get("site") {
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node_site.insert(node.clone(), site.clone());
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}
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}
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}
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Err(e) => {
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warn!("Could not get Consul node list: {}", e);
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}
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}
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let (node, res): (String, Result<_>) = match watches.next().await {
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Some(v) => v,
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None => {
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warn!("No nodes currently watched in proxy_config.rs");
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sleep(Duration::from_secs(10)).await;
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continue;
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}
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};
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match res {
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Ok((catalog, new_idx)) => {
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let mut watch_state = nodes.get_mut(&node).unwrap();
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watch_state.last_idx = Some(new_idx);
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watch_state.last_catalog = Some(catalog);
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watch_state.retries = 0;
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let idx = watch_state.last_idx;
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let consul = consul.clone();
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watches.push(Box::pin(async move {
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let res = consul.watch_node(&node, idx).await;
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(node, res)
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}));
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}
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Err(e) => {
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let mut watch_state = nodes.get_mut(&node).unwrap();
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watch_state.retries += 1;
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watch_state.last_idx = None;
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let will_retry_in =
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retry_to_time(watch_state.retries, Duration::from_secs(600));
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error!(
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"Failed to query consul for node {}. Will retry in {}s. {}",
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node,
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will_retry_in.as_secs(),
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e
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);
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let consul = consul.clone();
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watches.push(Box::pin(async move {
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sleep(will_retry_in).await;
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let res = consul.watch_node(&node, None).await;
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(node, res)
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}));
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continue;
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}
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}
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let mut entries = vec![];
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for (node_name, watch_state) in nodes.iter() {
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if let Some(catalog) = &watch_state.last_catalog {
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let same_node = *node_name == consul.local_node;
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let same_site =
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match (node_site.get(node_name), node_site.get(&consul.local_node)) {
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(Some(s1), Some(s2)) => s1 == s2,
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_ => false,
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};
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entries.extend(parse_consul_catalog(catalog, same_node, same_site));
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}
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}
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let config = ProxyConfig { entries };
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tx.send(Arc::new(config)).expect("Internal error");
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}
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});
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rx
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}
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