Files
huskies/server/src/rebuild.rs
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//! Shutdown notification and drain-and-exit sequence for server restarts.
use crate::chat::ChatTransport;
use crate::slog;
use std::path::Path;
use std::sync::Arc;
// ── Shutdown notification ────────────────────────────────────────────────
/// The reason the server is shutting down.
///
/// Used to select the appropriate shutdown message sent to active bot channels.
#[derive(Clone, Debug, PartialEq)]
pub enum ShutdownReason {
/// The operator stopped the server manually (SIGINT / SIGTERM / ctrl-c).
Manual,
/// A rebuild-and-restart was requested (via MCP tool or bot command).
Rebuild,
}
/// Sends a shutdown announcement to all configured bot channels.
///
/// Wraps a [`ChatTransport`] together with the list of channel/room IDs the
/// bot is active in. Calling [`notify`] is best-effort — failures are logged
/// but never propagate, so shutdown is never blocked by a failed send.
pub struct BotShutdownNotifier {
transport: Arc<dyn ChatTransport>,
channels: Vec<String>,
bot_name: String,
}
impl BotShutdownNotifier {
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/// Create a notifier that will send shutdown/startup messages via `transport` to the given `channels`.
pub fn new(transport: Arc<dyn ChatTransport>, channels: Vec<String>, bot_name: String) -> Self {
Self {
transport,
channels,
bot_name,
}
}
/// Send a startup announcement to all configured channels.
///
/// Called once per process start so users know the bot is online.
/// Errors are logged and ignored — startup is never blocked by a failed send.
pub async fn notify_startup(&self) {
let msg = format!("{} is online.", self.bot_name);
for channel in &self.channels {
if let Err(e) = self.transport.send_message(channel, &msg, &msg).await {
slog!("[startup] Failed to send startup message to {channel}: {e}");
}
}
}
/// Send a shutdown message to all configured channels.
///
/// Errors from individual sends are logged and ignored so that a single
/// failing channel does not prevent messages from reaching the rest.
pub async fn notify(&self, reason: ShutdownReason) {
let msg = match reason {
ShutdownReason::Manual => {
format!("{} is going offline (server stopped).", self.bot_name)
}
ShutdownReason::Rebuild => {
format!("{} is going offline to pick up a new build.", self.bot_name)
}
};
for channel in &self.channels {
if let Err(e) = self.transport.send_message(channel, &msg, &msg).await {
slog!("[shutdown] Failed to send shutdown message to {channel}: {e}");
}
}
}
}
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// ── Shared shutdown sequence ─────────────────────────────────────────────
/// Flush CRDT persistence, remove port files, and exit so Docker restarts
/// the container with the new binary. Called by `upgrade_and_reexec` after
/// the binary has been replaced on disk.
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pub async fn drain_and_exit(project_root: &Path, label: &str) -> ! {
crate::crdt_state::flush_persistence(std::time::Duration::from_secs(5)).await;
let port_file = project_root.join(".huskies_port");
if port_file.exists() {
let _ = std::fs::remove_file(&port_file);
}
let cwd_port_file = std::path::Path::new(".huskies_port");
if cwd_port_file.exists() {
let _ = std::fs::remove_file(cwd_port_file);
}
slog!("[{label}] Exiting for Docker restart with new binary");
std::process::exit(0)
}
// ── Tests ────────────────────────────────────────────────────────────────
#[cfg(test)]
mod tests {
use super::*;
use crate::chat::MessageId;
use async_trait::async_trait;
use std::sync::Mutex;
/// In-memory transport that records sent messages.
struct CapturingTransport {
sent: Mutex<Vec<(String, String)>>,
fail: bool,
}
impl CapturingTransport {
fn new() -> Self {
Self {
sent: Mutex::new(Vec::new()),
fail: false,
}
}
fn failing() -> Self {
Self {
sent: Mutex::new(Vec::new()),
fail: true,
}
}
fn messages(&self) -> Vec<(String, String)> {
self.sent.lock().unwrap().clone()
}
}
#[async_trait]
impl ChatTransport for CapturingTransport {
async fn send_message(
&self,
room_id: &str,
plain: &str,
_html: &str,
) -> Result<MessageId, String> {
if self.fail {
return Err("send failed".to_string());
}
self.sent
.lock()
.unwrap()
.push((room_id.to_string(), plain.to_string()));
Ok("msg-id".to_string())
}
async fn edit_message(
&self,
_room_id: &str,
_original_message_id: &str,
_plain: &str,
_html: &str,
) -> Result<(), String> {
Ok(())
}
async fn send_typing(&self, _room_id: &str, _typing: bool) -> Result<(), String> {
Ok(())
}
}
#[tokio::test]
async fn notify_manual_sends_to_all_channels() {
let transport = Arc::new(CapturingTransport::new());
let notifier = BotShutdownNotifier::new(
Arc::clone(&transport) as Arc<dyn ChatTransport>,
vec!["#channel1".to_string(), "#channel2".to_string()],
"Timmy".to_string(),
);
notifier.notify(ShutdownReason::Manual).await;
let msgs = transport.messages();
assert_eq!(msgs.len(), 2);
assert_eq!(msgs[0].0, "#channel1");
assert_eq!(msgs[1].0, "#channel2");
// Message must indicate manual stop.
assert!(
msgs[0].1.contains("offline"),
"expected 'offline' in manual message: {}",
msgs[0].1
);
assert!(
msgs[0].1.contains("stopped") || msgs[0].1.contains("manual"),
"expected reason in manual message: {}",
msgs[0].1
);
}
#[tokio::test]
async fn notify_rebuild_sends_rebuild_reason() {
let transport = Arc::new(CapturingTransport::new());
let notifier = BotShutdownNotifier::new(
Arc::clone(&transport) as Arc<dyn ChatTransport>,
vec!["#general".to_string()],
"Timmy".to_string(),
);
notifier.notify(ShutdownReason::Rebuild).await;
let msgs = transport.messages();
assert_eq!(msgs.len(), 1);
// Message must indicate rebuild, not manual stop.
assert!(
msgs[0].1.contains("build") || msgs[0].1.contains("rebuild"),
"expected rebuild reason in message: {}",
msgs[0].1
);
}
#[tokio::test]
async fn notify_manual_and_rebuild_messages_are_distinct() {
let transport_a = Arc::new(CapturingTransport::new());
let notifier_a = BotShutdownNotifier::new(
Arc::clone(&transport_a) as Arc<dyn ChatTransport>,
vec!["C1".to_string()],
"Bot".to_string(),
);
notifier_a.notify(ShutdownReason::Manual).await;
let transport_b = Arc::new(CapturingTransport::new());
let notifier_b = BotShutdownNotifier::new(
Arc::clone(&transport_b) as Arc<dyn ChatTransport>,
vec!["C1".to_string()],
"Bot".to_string(),
);
notifier_b.notify(ShutdownReason::Rebuild).await;
let manual_msg = &transport_a.messages()[0].1;
let rebuild_msg = &transport_b.messages()[0].1;
assert_ne!(
manual_msg, rebuild_msg,
"manual and rebuild messages must differ"
);
}
#[tokio::test]
async fn notify_is_best_effort_failing_send_does_not_panic() {
// A transport that always fails should not cause notify() to panic or
// return an error — the failure is swallowed silently.
let transport = Arc::new(CapturingTransport::failing());
let notifier = BotShutdownNotifier::new(
Arc::clone(&transport) as Arc<dyn ChatTransport>,
vec!["#channel".to_string()],
"Timmy".to_string(),
);
// Should complete without panicking.
notifier.notify(ShutdownReason::Manual).await;
}
#[tokio::test]
async fn notify_with_no_channels_is_noop() {
let transport = Arc::new(CapturingTransport::new());
let notifier = BotShutdownNotifier::new(
Arc::clone(&transport) as Arc<dyn ChatTransport>,
vec![],
"Timmy".to_string(),
);
notifier.notify(ShutdownReason::Manual).await;
assert!(transport.messages().is_empty());
}
// -- notify_startup -------------------------------------------------------
#[tokio::test]
async fn notify_startup_sends_online_message_to_all_channels() {
let transport = Arc::new(CapturingTransport::new());
let notifier = BotShutdownNotifier::new(
Arc::clone(&transport) as Arc<dyn ChatTransport>,
vec!["#channel1".to_string(), "#channel2".to_string()],
"Timmy".to_string(),
);
notifier.notify_startup().await;
let msgs = transport.messages();
assert_eq!(msgs.len(), 2);
assert_eq!(msgs[0].0, "#channel1");
assert_eq!(msgs[1].0, "#channel2");
assert!(
msgs[0].1.contains("online"),
"expected 'online' in startup message: {}",
msgs[0].1
);
assert!(
msgs[0].1.contains("Timmy"),
"expected bot name in startup message: {}",
msgs[0].1
);
}
#[tokio::test]
async fn notify_startup_message_uses_bot_name() {
let transport = Arc::new(CapturingTransport::new());
let notifier = BotShutdownNotifier::new(
Arc::clone(&transport) as Arc<dyn ChatTransport>,
vec!["#general".to_string()],
"HAL".to_string(),
);
notifier.notify_startup().await;
let msgs = transport.messages();
assert_eq!(msgs[0].1, "HAL is online.");
}
#[tokio::test]
async fn notify_startup_with_no_channels_is_noop() {
let transport = Arc::new(CapturingTransport::new());
let notifier = BotShutdownNotifier::new(
Arc::clone(&transport) as Arc<dyn ChatTransport>,
vec![],
"Timmy".to_string(),
);
notifier.notify_startup().await;
assert!(transport.messages().is_empty());
}
#[tokio::test]
async fn notify_startup_is_best_effort_failing_send_does_not_panic() {
let transport = Arc::new(CapturingTransport::failing());
let notifier = BotShutdownNotifier::new(
Arc::clone(&transport) as Arc<dyn ChatTransport>,
vec!["#channel".to_string()],
"Timmy".to_string(),
);
// Should complete without panicking.
notifier.notify_startup().await;
}
#[tokio::test]
async fn notify_startup_message_differs_from_shutdown_message() {
let transport_start = Arc::new(CapturingTransport::new());
let notifier_start = BotShutdownNotifier::new(
Arc::clone(&transport_start) as Arc<dyn ChatTransport>,
vec!["C1".to_string()],
"Bot".to_string(),
);
notifier_start.notify_startup().await;
let transport_stop = Arc::new(CapturingTransport::new());
let notifier_stop = BotShutdownNotifier::new(
Arc::clone(&transport_stop) as Arc<dyn ChatTransport>,
vec!["C1".to_string()],
"Bot".to_string(),
);
notifier_stop.notify(ShutdownReason::Manual).await;
let startup_msg = &transport_start.messages()[0].1;
let shutdown_msg = &transport_stop.messages()[0].1;
assert_ne!(
startup_msg, shutdown_msg,
"startup and shutdown messages must differ"
);
}
}