A fresh install wrote a `claude-cli` provider into the local setup unconditionally. Nothing looked for `claude`; the list was hardcoded in `Config::seed`, so on any machine without it -- which is every machine but the dev VM -- the phone was offered a provider that cannot spawn, stated with exactly the confidence of one that had been checked. Discovery already existed and was already right: `setups::discover` probes with `command -v` over the transport, includes echo for the local one because it runs in-process, and records the resolved path rather than the bare name. Only the local setup skipped it, which is the one place the answer felt obvious enough not to ask. So `seed` now takes the providers it is given, and seeding asks this machine the same question it asks any other. It moved out of `SessionManager::new` into an awaited step in main, because asking is I/O and a constructor that quietly spawns a subprocess surprises every caller. A discovery that fails seeds `echo` alone and says so, since echo is true wherever this server runs -- falling back to the hardcoded list would be the same bug with an extra step. The test that covered this agreed with the bug, because both were written from the same assumption: it asserted the seed contains `claude-cli`. It now asserts the opposite -- that the seed invents nothing -- and the session tests seed echo explicitly rather than relying on a constructor that would make them pass or fail on whether `claude` happens to be installed on whoever runs them. Verified by running a server on a PATH holding only `sh`: it seeds `echo` alone. With claude and llama-server present it finds both. 34 tests.
230 lines
8.7 KiB
Rust
230 lines
8.7 KiB
Rust
//! A phone interface to AI coding sessions -- the backend. See PLAN.md for
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//! the whole picture; this is the entry point: config + session registry,
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//! token bootstrap, and the one TLS listener.
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//!
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//! The listener binds the WireGuard interface's address only, and fails
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//! closed -- if `wg0` is down the server refuses to start rather than
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//! falling back to `0.0.0.0`, because this API *is* remote code execution
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//! and the tunnel is what keeps its pre-auth surface (TLS handshake, HTTP
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//! parsing, auth middleware) off the open internet. `--bind` overrides
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//! explicitly for development; that is a deliberate, logged choice, never a
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//! fallback.
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//!
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//! There is no plaintext listener at all, so the bearer token can't travel
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//! unencrypted by misconfiguration -- even inside the tunnel.
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mod auth;
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mod config;
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mod media;
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mod models;
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mod routes;
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mod session;
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mod setups;
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mod ssh;
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mod usage;
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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 anyhow::{Context, Result};
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use clap::Parser;
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use tokio::signal::unix::{SignalKind, signal};
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use wg_app_link::enroll;
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use wg_app_link::netif::{self, WG_INTERFACE};
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use wg_app_link::xdg::{config_home, data_home};
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use config::TokenEntry;
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use session::SessionManager;
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const DEFAULT_PORT: u16 = 8443;
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/// Serves AI coding sessions (Claude Code, llama.cpp) to the phone app.
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#[derive(Parser)]
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struct Args {
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/// TLS port for the whole API surface.
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#[arg(long, default_value_t = DEFAULT_PORT)]
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port: u16,
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/// Address to bind instead of the wg0 interface's -- a development
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/// override (e.g. 127.0.0.1 for curl, or a LAN address for a phone
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/// before the tunnel exists). Production runs without it and fails
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/// closed when wg0 is absent.
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#[arg(long)]
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bind: Option<IpAddr>,
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/// Where the token hashes, providers, hosts, and session list live.
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/// Defaults to `$XDG_CONFIG_HOME/ai-app/config.ron`.
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#[arg(long)]
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config: Option<PathBuf>,
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/// Directory for per-session data (transcripts, attachments, images).
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/// Defaults to `$XDG_DATA_HOME/ai-app/sessions`.
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#[arg(long)]
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data_dir: Option<PathBuf>,
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/// Directory for downloaded GGUF models. Defaults to
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/// `$XDG_DATA_HOME/ai-app/models`.
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#[arg(long)]
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models_dir: Option<PathBuf>,
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/// Directory holding the TLS certificates, generated here on first
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/// start. Defaults to `$XDG_CONFIG_HOME/ai-app/certs`.
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#[arg(long)]
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certs: Option<PathBuf>,
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/// Invalidate every enrolled token, generate a fresh one, and print
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/// its enrollment QR -- the whole lost-phone story.
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#[arg(long)]
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rotate_token: bool,
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}
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#[tokio::main]
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async fn main() -> Result<()> {
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// Both rustls crypto providers are in the dependency graph (ureq
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// brings ring, axum-server brings aws-lc-rs), so rustls refuses to
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// pick one itself; choose before anything touches TLS.
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rustls::crypto::aws_lc_rs::default_provider()
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.install_default()
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.expect("no other TLS crypto provider is installed before main");
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tracing_subscriber::fmt().with_env_filter("info").init();
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let args = Args::parse();
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let config_path = args
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.config
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.unwrap_or_else(|| config_home("ai-app").join("config.ron"));
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let data_dir = args
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.data_dir
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.unwrap_or_else(|| data_home("ai-app").join("sessions"));
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// Beside the session data rather than under it: models outlive every
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// session and are shared by all of them, so deleting a session must
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// never take a multi-gigabyte download with it.
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let models_dir = args
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.models_dir
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.unwrap_or_else(|| data_home("ai-app").join("models"));
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let models = Arc::new(models::ModelStore::new(models_dir.clone()));
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let manager = Arc::new(
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SessionManager::new(config_path.clone(), data_dir, models_dir.clone())
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.with_context(|| format!("failed to load {}", config_path.display()))?,
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);
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// After construction rather than inside it: seeding asks this machine
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// what it has, which is I/O, and a constructor that quietly runs a
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// subprocess is a surprise to every caller including the tests.
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manager.seed_setup().await?;
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tracing::info!("config: {}", config_path.display());
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tracing::info!("models: {}", models_dir.display());
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for setup in manager.setups() {
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match &setup.ssh {
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Some(ssh) => tracing::info!(" setup \"{}\" -> {}", setup.name, ssh.address),
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// No parenthetical naming the local machine: the default
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// setup is *called* "this machine", and the line read
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// "setup this machine (this machine)".
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None => tracing::info!(" setup \"{}\" runs here", setup.name),
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}
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for provider in &setup.providers {
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tracing::info!(" provider {} ({:?})", provider.name, provider.kind);
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}
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}
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for info in manager.sessions() {
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tracing::info!(
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" session {} ({}, {:?})",
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info.id,
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info.provider,
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info.status
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);
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}
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// Before the interface check below, deliberately: the certificates are
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// also what the phone app embeds at build time, so they need to be
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// obtainable on a machine whose tunnel isn't up yet. The leaf is
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// reissued on every start, so once wg0 exists the next start covers it.
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let certs_dir = args
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.certs
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.unwrap_or_else(|| config_home("ai-app").join("certs"));
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let certificates = wg_app_link::certs::ensure("ai-app", &certs_dir, &netif::local_addresses())
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.with_context(|| format!("failed to prepare certificates in {}", certs_dir.display()))?;
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if certificates.ca_is_new {
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tracing::warn!(
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"a new CA was generated in {} -- any installed app pins the previous one and can no \
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longer reach this server. Rebuild it with app/build-apk.sh, which embeds this CA, \
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and reinstall through Dev Updater.",
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certs_dir.display(),
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);
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}
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let bind_ip = match args.bind {
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Some(ip) => {
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tracing::warn!(
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"binding {ip} by explicit --bind override -- production binds {WG_INTERFACE} only"
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);
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ip
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}
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None => netif::wg_address("ai-server")?,
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};
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// Token bootstrap: first run generates one; --rotate-token replaces
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// whatever exists. Either way the plaintext appears exactly once, in
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// the QR printed here.
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if args.rotate_token || manager.tokens().is_empty() {
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let rotating = args.rotate_token && !manager.tokens().is_empty();
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let token = enroll::generate_token();
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manager.set_tokens(vec![TokenEntry {
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name: "phone".to_string(),
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sha256: enroll::token_hash_hex(&token),
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}])?;
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if rotating {
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tracing::info!("rotated the enrolled token; the previous one is now invalid");
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}
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enroll::print_enrollment("aiapp", bind_ip, args.port, &token)?;
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}
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let tls_config = axum_server::tls_rustls::RustlsConfig::from_pem_file(
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&certificates.leaf_cert,
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&certificates.leaf_key,
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)
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.await
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.context("failed to load TLS cert/key")?;
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let monitor = Arc::new(usage::UsageMonitor::new(vec![Box::new(
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usage::ClaudeUsage {
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credentials_path: std::env::home_dir()
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.unwrap_or_else(|| PathBuf::from("/"))
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.join(".claude/.credentials.json"),
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},
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)]));
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// The bearer-token middleware wraps the entire router -- routes and
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// fallback alike -- here and only here, so a new route can't forget
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// auth. Zero unauthenticated endpoints.
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let app = routes::router(Arc::clone(&manager))
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.merge(routes::usage_router(monitor))
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.merge(routes::models_router(Arc::clone(&models)))
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.layer(axum::middleware::from_fn_with_state(
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Arc::clone(&manager),
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auth::require_token,
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));
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let addr = SocketAddr::new(bind_ip, args.port);
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tracing::info!("serving https://{addr}");
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// Stop the sessions' processes on the way out. Without this a signal
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// kills this process and leaves its children running -- which for the
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// Claude CLI is untidy and for a `llama-server` holding a model is
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// gigabytes of memory belonging to nobody. Both signals, because
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// systemd and OpenRC send TERM while a terminal sends INT.
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let serving = axum_server::bind_rustls(addr, tls_config)
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.serve(app.into_make_service_with_connect_info::<SocketAddr>());
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let mut terminate = signal(SignalKind::terminate()).context("listening for SIGTERM")?;
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tokio::select! {
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served = serving => served.context("TLS listener failed")?,
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_ = terminate.recv() => tracing::info!("SIGTERM -- stopping sessions"),
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_ = tokio::signal::ctrl_c() => tracing::info!("interrupted -- stopping sessions"),
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}
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manager.shutdown_all();
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Ok(())
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}
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