fix(apps): preserve lifecycle state and wait for usable launch endpoints

This commit is contained in:
archipelago
2026-09-30 09:10:30 -04:00
parent 27d81e956d
commit 6ac26f637c
26 changed files with 933 additions and 403 deletions
@@ -89,6 +89,15 @@ impl RpcHandler {
match handler.handle_package_install(params).await {
Ok(_) => {
info!("package.install {}: complete", package_id_spawn);
for id in [&package_id_spawn, &format!("archy-{}", package_id_spawn)] {
crate::crash_recovery::clear_user_uninstalled(&handler.config.data_dir, id)
.await;
}
crate::crash_recovery::mark_installed(
&handler.config.data_dir,
&package_id_spawn,
)
.await;
// The install pipeline has verified the container is up
// and healthy (see install.rs post-start exit check).
// Kick the scanner first so the fresh manifest (with
@@ -184,17 +193,20 @@ impl RpcHandler {
// phase is cleared (None) so no stale InstallPhase
// lingers on the card.
let err_msg = format!("Install failed: {:#}", e);
let (mut data, _) = handler.state_manager.get_snapshot().await;
if let Some(entry) = data.package_data.get_mut(&package_id_spawn) {
entry.state = PackageState::Stopped;
entry.install_progress = Some(crate::data_model::InstallProgress {
size: 0,
downloaded: 0,
phase: None,
message: Some(err_msg),
});
handler.state_manager.update_data(data).await;
}
handler
.state_manager
.mutate_data(|data| {
if let Some(entry) = data.package_data.get_mut(&package_id_spawn) {
entry.state = PackageState::Stopped;
entry.install_progress = Some(crate::data_model::InstallProgress {
size: 0,
downloaded: 0,
phase: None,
message: Some(err_msg),
});
}
})
.await;
}
}
});
@@ -252,6 +264,11 @@ impl RpcHandler {
match handler.handle_package_uninstall(params).await {
Ok(_) => {
info!("package.uninstall {}: complete", package_id_spawn);
for id in [&package_id_spawn, &format!("archy-{}", package_id_spawn)] {
crate::crash_recovery::mark_user_uninstalled(&handler.config.data_dir, id)
.await;
crate::crash_recovery::clear_installed(&handler.config.data_dir, id).await;
}
// Inner handler already removed the package entry on
// success. Nothing more to do here.
}
@@ -382,52 +399,56 @@ impl RpcHandler {
/// call, but fires before the spawn so the UI sees it immediately.
async fn flip_to_installing(state_manager: &StateManager, package_id: &str) {
use crate::data_model::{Description, Manifest, PackageDataEntry, StaticFiles};
let (mut data, _) = state_manager.get_snapshot().await;
let entry = data
.package_data
.entry(package_id.to_string())
.or_insert_with(|| PackageDataEntry {
state: PackageState::Installing,
health: None,
exit_code: None,
static_files: StaticFiles {
license: String::new(),
instructions: String::new(),
// Leave icon empty during the transient Installing window:
// hardcoding `<id>.png` is wrong for ~half our apps (many use
// `.svg` / `.webp`), producing a broken-image flicker until
// the scanner refreshes the entry. The frontend's `icon`
// computed falls through to `curatedMap.get(id)?.icon` which
// has the correct extensions for known apps.
icon: String::new(),
},
manifest: Manifest {
id: package_id.to_string(),
title: package_id.to_string(),
version: String::new(),
description: Description {
short: "Installing...".to_string(),
long: String::new(),
},
release_notes: String::new(),
license: String::new(),
wrapper_repo: String::new(),
upstream_repo: String::new(),
support_site: String::new(),
marketing_site: String::new(),
donation_url: None,
author: None,
website: None,
interfaces: None,
tier: None,
},
installed: None,
install_progress: None,
uninstall_stage: None,
available_update: None,
});
entry.state = PackageState::Installing;
state_manager.update_data(data).await;
state_manager
.mutate_data(|data| {
let entry = data
.package_data
.entry(package_id.to_string())
.or_insert_with(|| PackageDataEntry {
ui_ready: None,
state: PackageState::Installing,
health: None,
exit_code: None,
static_files: StaticFiles {
license: String::new(),
instructions: String::new(),
// Leave icon empty during the transient Installing window:
// hardcoding `<id>.png` is wrong for ~half our apps (many use
// `.svg` / `.webp`), producing a broken-image flicker until
// the scanner refreshes the entry. The frontend's `icon`
// computed falls through to `curatedMap.get(id)?.icon` which
// has the correct extensions for known apps.
icon: String::new(),
},
manifest: Manifest {
id: package_id.to_string(),
title: package_id.to_string(),
version: String::new(),
description: Description {
short: "Installing...".to_string(),
long: String::new(),
},
release_notes: String::new(),
license: String::new(),
wrapper_repo: String::new(),
upstream_repo: String::new(),
support_site: String::new(),
marketing_site: String::new(),
donation_url: None,
author: None,
website: None,
interfaces: None,
tier: None,
},
installed: None,
install_progress: None,
uninstall_stage: None,
available_update: None,
});
entry.ui_ready = Some(false);
entry.state = PackageState::Installing;
})
.await;
}
/// True when the failed install still has a real footprint: any container
@@ -485,20 +506,23 @@ async fn remove_entry_with_notification(
id_prefix: &str,
message: &str,
) {
let (mut data, _) = handler.state_manager.get_snapshot().await;
data.package_data.remove(package_id);
data.notifications.push(crate::data_model::Notification {
id: format!("{id_prefix}-{package_id}"),
level: crate::data_model::NotificationLevel::Error,
title: format!("Could not install {package_id}"),
message: message.to_string(),
timestamp: chrono::Utc::now().to_rfc3339(),
app_id: Some(package_id.to_string()),
});
while data.notifications.len() > 20 {
data.notifications.remove(0);
}
handler.state_manager.update_data(data).await;
handler
.state_manager
.mutate_data(|data| {
data.package_data.remove(package_id);
data.notifications.push(crate::data_model::Notification {
id: format!("{id_prefix}-{package_id}"),
level: crate::data_model::NotificationLevel::Error,
title: format!("Could not install {package_id}"),
message: message.to_string(),
timestamp: chrono::Utc::now().to_rfc3339(),
app_id: Some(package_id.to_string()),
});
while data.notifications.len() > 20 {
data.notifications.remove(0);
}
})
.await;
}
/// Flip an existing entry's state and return the pre-flip value (or None if
@@ -508,18 +532,23 @@ async fn flip_package_state(
package_id: &str,
new_state: PackageState,
) -> Option<PackageState> {
let (mut data, _) = state_manager.get_snapshot().await;
let prev = data.package_data.get(package_id).map(|e| e.state.clone());
if let Some(entry) = data.package_data.get_mut(package_id) {
entry.state = new_state;
state_manager.update_data(data).await;
} else {
warn!(
"flip_package_state: no entry for {} — cannot flip",
package_id
);
}
prev
state_manager
.mutate_data(|data| {
let prev = data.package_data.get(package_id).map(|e| e.state.clone());
if let Some(entry) = data.package_data.get_mut(package_id) {
if new_state != PackageState::Running {
entry.ui_ready = Some(false);
}
entry.state = new_state;
} else {
warn!(
"flip_package_state: no entry for {} — cannot flip",
package_id
);
}
prev
})
.await
}
/// Set state unconditionally (no-op if entry no longer exists).
@@ -528,13 +557,18 @@ async fn set_package_state(
package_id: &str,
new_state: PackageState,
) {
let (mut data, _) = state_manager.get_snapshot().await;
if let Some(entry) = data.package_data.get_mut(package_id) {
if entry.state != new_state {
entry.state = new_state;
state_manager.update_data(data).await;
}
}
state_manager
.mutate_data(|data| {
if let Some(entry) = data.package_data.get_mut(package_id) {
if entry.state != new_state {
if new_state != PackageState::Running {
entry.ui_ready = Some(false);
}
entry.state = new_state;
}
}
})
.await
}
/// Set state and clear the uninstall_stage label. Used when an uninstall
@@ -545,12 +579,17 @@ async fn set_package_state_and_clear_uninstall_stage(
package_id: &str,
new_state: PackageState,
) {
let (mut data, _) = state_manager.get_snapshot().await;
if let Some(entry) = data.package_data.get_mut(package_id) {
entry.state = new_state;
entry.uninstall_stage = None;
state_manager.update_data(data).await;
}
state_manager
.mutate_data(|data| {
if let Some(entry) = data.package_data.get_mut(package_id) {
if new_state != PackageState::Running {
entry.ui_ready = Some(false);
}
entry.state = new_state;
entry.uninstall_stage = None;
}
})
.await
}
/// Kick the container scanner to run immediately and wait for it to finish
+7 -106
View File
@@ -545,7 +545,7 @@ impl RpcHandler {
// Keep legacy install flow as default while migration is in progress.
if orchestrator_managed {
let orchestrator_app_id = orchestrator_install_app_id(package_id);
self.set_install_phase(package_id, InstallPhase::CreatingContainer)
self.set_install_phase(package_id, InstallPhase::PreparingApp)
.await;
install_log(&format!(
"INSTALL ORCH: {} — attempting orchestrator install as {}",
@@ -2053,25 +2053,8 @@ fn parse_setup_token(lines: &[&str]) -> Option<String> {
}
async fn cleanup_stale_package_ports(package_id: &str) {
match package_id {
"grafana" => cleanup_stale_pasta_port("3000").await,
"homeassistant" | "home-assistant" => cleanup_stale_pasta_port("8123").await,
"searxng" => cleanup_stale_pasta_port("8888").await,
"uptime-kuma" => cleanup_stale_pasta_port("3002").await,
"gitea" => {
cleanup_stale_pasta_port("3001").await;
cleanup_stale_pasta_port("2222").await;
cleanup_stale_pasta_port("3000").await;
}
"nginx-proxy-manager" => {
cleanup_stale_pasta_port("8081").await;
cleanup_stale_pasta_port("8084").await;
cleanup_stale_pasta_port("8444").await;
}
"nextcloud" => cleanup_stale_pasta_port("8085").await,
"portainer" => cleanup_stale_pasta_port("9000").await,
_ => {}
}
// Never kill by port: another app or the management gate may own it.
crate::container::ghost_reaper::reap_for_app(package_id).await;
}
fn install_command_tail(
@@ -2196,93 +2179,11 @@ async fn cleanup_start_conflict(package_id: &str, stderr: &str) -> bool {
return true;
}
match package_id {
"grafana"
if stderr.contains("pasta failed") || stderr.contains("address already in use") =>
{
cleanup_stale_pasta_port("3000").await;
true
}
"homeassistant" | "home-assistant"
if stderr.contains("pasta failed") || stderr.contains("address already in use") =>
{
cleanup_stale_pasta_port("8123").await;
true
}
"searxng"
if stderr.contains("pasta failed") || stderr.contains("address already in use") =>
{
cleanup_stale_pasta_port("8888").await;
true
}
"uptime-kuma"
if stderr.contains("pasta failed") || stderr.contains("address already in use") =>
{
cleanup_stale_pasta_port("3002").await;
true
}
"gitea" if stderr.contains("pasta failed") || stderr.contains("address already in use") => {
cleanup_stale_pasta_port("3001").await;
cleanup_stale_pasta_port("2222").await;
cleanup_stale_pasta_port("3000").await;
true
}
"nginx-proxy-manager"
if stderr.contains("pasta failed") || stderr.contains("address already in use") =>
{
cleanup_stale_pasta_port("8081").await;
cleanup_stale_pasta_port("8084").await;
cleanup_stale_pasta_port("8444").await;
true
}
"nextcloud"
if stderr.contains("pasta failed") || stderr.contains("address already in use") =>
{
cleanup_stale_pasta_port("8085").await;
true
}
"portainer"
if stderr.contains("pasta failed") || stderr.contains("address already in use") =>
{
cleanup_stale_pasta_port("9000").await;
true
}
_ => false,
if stderr.contains("pasta failed") || stderr.contains("address already in use") {
crate::container::ghost_reaper::reap_for_app(package_id).await;
return true;
}
}
async fn cleanup_stale_pasta_port(port: &str) {
// NEVER kill our own process. The daemon holds catalog app ports over
// IPv6 (the mesh app-port relay), so a blunt `fuser -k <port>/tcp` would
// terminate archipelago itself mid-install — installs failed and apps
// vanished on a test node 2026-07-27. Kill every listener on the port
// EXCEPT our PID (and our process group), leaving the relay/daemon alive.
let self_pid = std::process::id();
let kill_listener = format!(
"ss -ltnp 'sport = :{port}' 2>/dev/null | sed -n 's/.*pid=\\([0-9]*\\).*/\\1/p' | \
while read p; do [ \"$p\" = \"{self_pid}\" ] || kill \"$p\" 2>/dev/null; done || true",
);
let _ = tokio::process::Command::new("sh")
.args(["-c", &kill_listener])
.output()
.await;
// sudo fuser -k, but exclude our own PID: fuser prints the PIDs holding
// the port; kill each except self. (`fuser -k` has no exclusion flag.)
let fuser_kill = format!(
"for p in $(sudo fuser {port}/tcp 2>/dev/null); do [ \"$p\" = \"{self_pid}\" ] || sudo kill \"$p\" 2>/dev/null; done || true",
);
let _ = tokio::process::Command::new("sh")
.args(["-c", &fuser_kill])
.output()
.await;
let pattern = format!("pasta.*{}", port);
let _ = tokio::process::Command::new("pkill")
.args(["-f", &pattern])
.output()
.await;
tokio::time::sleep(std::time::Duration::from_secs(1)).await;
false
}
async fn repair_nextcloud_permissions() {
@@ -14,20 +14,23 @@ impl RpcHandler {
/// the rare case where the pull stream actually parses, but podman
/// almost never emits parseable progress on a piped stderr.
pub(super) async fn set_install_progress(&self, package_id: &str, downloaded: u64, size: u64) {
let (mut data, _rev) = self.state_manager.get_snapshot().await;
let entry = data
.package_data
.entry(package_id.to_string())
.or_insert_with(|| create_installing_entry(package_id));
entry.state = PackageState::Installing;
let existing_phase = entry.install_progress.as_ref().and_then(|p| p.phase);
entry.install_progress = Some(InstallProgress {
size,
downloaded,
phase: existing_phase,
message: None,
});
self.state_manager.update_data(data).await;
self.state_manager
.mutate_data(|data| {
let entry = data
.package_data
.entry(package_id.to_string())
.or_insert_with(|| create_installing_entry(package_id));
entry.ui_ready = Some(false);
entry.state = PackageState::Installing;
let existing_phase = entry.install_progress.as_ref().and_then(|p| p.phase);
entry.install_progress = Some(InstallProgress {
size,
downloaded,
phase: existing_phase,
message: None,
});
})
.await;
}
/// Set the install pipeline phase and broadcast. This is the
@@ -35,76 +38,86 @@ impl RpcHandler {
/// percentage and a user-facing label. Byte counters are retained
/// for the rare case podman emits parseable progress.
pub(super) async fn set_install_phase(&self, package_id: &str, phase: InstallPhase) {
let (mut data, _rev) = self.state_manager.get_snapshot().await;
let entry = data
.package_data
.entry(package_id.to_string())
.or_insert_with(|| create_installing_entry(package_id));
// Preparing / PullingImage / CreatingContainer / StartingContainer /
// WaitingHealthy / PostInstall all map to the Installing state.
// Updates use Updating state — the wrapper has already flipped
// state to Updating, so don't clobber it.
if entry.state != PackageState::Updating {
entry.state = PackageState::Installing;
}
let (size, downloaded) = entry
.install_progress
.as_ref()
.map(|p| (p.size, p.downloaded))
.unwrap_or((0, 0));
entry.install_progress = Some(InstallProgress {
size,
downloaded,
phase: Some(phase),
message: None,
});
self.state_manager.update_data(data).await;
self.state_manager
.mutate_data(|data| {
let entry = data
.package_data
.entry(package_id.to_string())
.or_insert_with(|| create_installing_entry(package_id));
// Preparing / PullingImage / CreatingContainer / StartingContainer /
// WaitingHealthy / PostInstall all map to the Installing state.
// Updates use Updating state — the wrapper has already flipped
// state to Updating, so don't clobber it.
if entry.state != PackageState::Updating {
entry.ui_ready = Some(false);
entry.state = PackageState::Installing;
}
let (size, downloaded) = entry
.install_progress
.as_ref()
.map(|p| (p.size, p.downloaded))
.unwrap_or((0, 0));
entry.install_progress = Some(InstallProgress {
size,
downloaded,
phase: Some(phase),
message: None,
});
})
.await;
}
/// Set a user-facing install status message (e.g. "Waiting for Bitcoin
/// to start…") without disturbing the current phase/byte counters.
pub(super) async fn set_install_message(&self, package_id: &str, message: &str) {
let (mut data, _rev) = self.state_manager.get_snapshot().await;
let entry = data
.package_data
.entry(package_id.to_string())
.or_insert_with(|| create_installing_entry(package_id));
if entry.state != PackageState::Updating {
entry.state = PackageState::Installing;
}
let (size, downloaded, phase) = entry
.install_progress
.as_ref()
.map(|p| (p.size, p.downloaded, p.phase))
.unwrap_or((0, 0, None));
entry.install_progress = Some(InstallProgress {
size,
downloaded,
phase,
message: Some(message.to_string()),
});
self.state_manager.update_data(data).await;
self.state_manager
.mutate_data(|data| {
let entry = data
.package_data
.entry(package_id.to_string())
.or_insert_with(|| create_installing_entry(package_id));
if entry.state != PackageState::Updating {
entry.ui_ready = Some(false);
entry.state = PackageState::Installing;
}
let (size, downloaded, phase) = entry
.install_progress
.as_ref()
.map(|p| (p.size, p.downloaded, p.phase))
.unwrap_or((0, 0, None));
entry.install_progress = Some(InstallProgress {
size,
downloaded,
phase,
message: Some(message.to_string()),
});
})
.await;
}
/// Clear install progress after pull completes or fails.
pub(super) async fn clear_install_progress(&self, package_id: &str) {
let (mut data, _rev) = self.state_manager.get_snapshot().await;
if let Some(entry) = data.package_data.get_mut(package_id) {
entry.install_progress = None;
}
self.state_manager.update_data(data).await;
self.state_manager
.mutate_data(|data| {
if let Some(entry) = data.package_data.get_mut(package_id) {
entry.install_progress = None;
}
})
.await;
}
/// Set the uninstall stage label so the UI can show what's happening
/// instead of a generic spinner. Each call broadcasts a state change
/// — call sparingly (one per pipeline phase, not per container).
pub(super) async fn set_uninstall_stage(&self, package_id: &str, stage: &str) {
let (mut data, _rev) = self.state_manager.get_snapshot().await;
if let Some(entry) = data.package_data.get_mut(package_id) {
entry.uninstall_stage = Some(stage.to_string());
entry.state = crate::data_model::PackageState::Removing;
}
self.state_manager.update_data(data).await;
self.state_manager
.mutate_data(|data| {
if let Some(entry) = data.package_data.get_mut(package_id) {
entry.uninstall_stage = Some(stage.to_string());
entry.state = crate::data_model::PackageState::Removing;
}
})
.await;
}
/// Update install progress (static method for use in async closures).
@@ -114,25 +127,28 @@ impl RpcHandler {
downloaded: u64,
total: u64,
) {
let (mut data, _rev) = state_manager.get_snapshot().await;
let entry = data
.package_data
.entry(package_id.to_string())
.or_insert_with(|| create_installing_entry(package_id));
let existing_phase = entry.install_progress.as_ref().and_then(|p| p.phase);
entry.install_progress = Some(InstallProgress {
size: total,
downloaded,
phase: existing_phase,
message: None,
});
state_manager.update_data(data).await;
state_manager
.mutate_data(|data| {
let entry = data
.package_data
.entry(package_id.to_string())
.or_insert_with(|| create_installing_entry(package_id));
let existing_phase = entry.install_progress.as_ref().and_then(|p| p.phase);
entry.install_progress = Some(InstallProgress {
size: total,
downloaded,
phase: existing_phase,
message: None,
});
})
.await;
}
}
/// Create a minimal PackageDataEntry for a package being installed.
fn create_installing_entry(package_id: &str) -> PackageDataEntry {
PackageDataEntry {
ui_ready: None,
state: PackageState::Installing,
health: None,
exit_code: None,
+46 -64
View File
@@ -1431,10 +1431,9 @@ async fn repair_before_package_start(container_name: &str) {
// published port and the data-dir file locks, so the replacement either
// fails to bind (`address already in use`) or starts and dies on the
// lock — and `Restart=always` loops it there forever. Ordered before
// the port cleanup below: killing the owner is what actually frees the
// port, and the port sweep alone cannot tell a ghost from a live app.
// starting the replacement. A port sweep cannot distinguish a ghost
// from the dashboard gate or another live app and must never kill it.
crate::container::ghost_reaper::reap_for_app(container_name).await;
cleanup_runtime_host_ports(container_name).await;
}
async fn wait_before_package_start(container_name: &str) {
@@ -1579,7 +1578,6 @@ async fn repair_netbird_network() {
async fn repair_nginx_proxy_manager_container() {
repair_nginx_proxy_manager_dirs().await;
if !nginx_proxy_manager_has_legacy_admin_port().await {
cleanup_nginx_proxy_manager_ports().await;
return;
}
@@ -1588,7 +1586,7 @@ async fn repair_nginx_proxy_manager_container() {
)
.await;
let _ = podman_control(&["rm", "-f", "nginx-proxy-manager"]).await;
cleanup_nginx_proxy_manager_ports().await;
crate::container::ghost_reaper::reap_for_app("nginx-proxy-manager").await;
if let Err(err) = recreate_nginx_proxy_manager_container().await {
tracing::warn!(error = %err, "failed to recreate stale nginx-proxy-manager container");
}
@@ -1812,6 +1810,9 @@ fn manifest_host_ports(container_name: &str) -> Vec<u16> {
pub(super) fn manifest_apps_dirs() -> Vec<std::path::PathBuf> {
let mut dirs = Vec::new();
if let Some(root) = std::env::var_os("ARCHIPELAGO_APPS_DIR") {
dirs.push(root.into());
}
if let Ok(manifest_dir) = std::env::var("CARGO_MANIFEST_DIR") {
dirs.push(Path::new(&manifest_dir).join("../../apps"));
}
@@ -2032,51 +2033,10 @@ async fn cleanup_start_conflict(container_name: &str, stderr: &str) {
return;
}
let ports = runtime_host_ports(container_name);
if !ports.is_empty() {
cleanup_ports(&ports).await;
return;
}
}
async fn cleanup_runtime_host_ports(container_name: &str) {
let ports = runtime_host_ports(container_name);
if !ports.is_empty() {
cleanup_ports(&ports).await;
}
}
async fn cleanup_nginx_proxy_manager_ports() {
cleanup_ports(&[8081, 8084, 8444]).await;
}
async fn cleanup_ports(ports: &[u16]) {
for port in ports {
cleanup_stale_pasta_port(&port.to_string()).await;
}
}
async fn cleanup_stale_pasta_port(port: &str) {
let kill_listener = format!(
"ss -ltnp 'sport = :{}' 2>/dev/null | sed -n 's/.*pid=\\([0-9]*\\).*/\\1/p' | xargs -r kill 2>/dev/null || true",
port
);
let _ = tokio::process::Command::new("sh")
.args(["-c", &kill_listener])
.output()
.await;
let pattern = format!("pasta.*{}", port);
let _ = tokio::process::Command::new("pkill")
.args(["-f", &pattern])
.output()
.await;
let pattern = format!("rootlessport.*{}", port);
let _ = tokio::process::Command::new("pkill")
.args(["-f", &pattern])
.output()
.await;
tokio::time::sleep(std::time::Duration::from_secs(1)).await;
// Only reap processes proven to belong to an absent container. The app
// gate shares the app's port on other addresses and lives in this daemon;
// killing port owners (or matching argv with pkill) kills the dashboard.
crate::container::ghost_reaper::reap_for_app(container_name).await;
}
pub(super) fn is_missing_companion_ok(name: &str, stderr: &str) -> bool {
@@ -2095,13 +2055,16 @@ async fn flip_package_state(
package_id: &str,
transitional: PackageState,
) -> Option<PackageState> {
let (mut data, _) = state_manager.get_snapshot().await;
let prev = data.package_data.get(package_id).map(|e| e.state.clone());
if let Some(entry) = data.package_data.get_mut(package_id) {
entry.state = transitional;
state_manager.update_data(data).await;
}
prev
state_manager
.mutate_data(|data| {
let prev = data.package_data.get(package_id).map(|e| e.state.clone());
if let Some(entry) = data.package_data.get_mut(package_id) {
entry.ui_ready = Some(false);
entry.state = transitional;
}
prev
})
.await
}
/// Write the package entry's final state. No-op if the entry has since
@@ -2111,13 +2074,18 @@ async fn set_package_state(
package_id: &str,
new_state: PackageState,
) {
let (mut data, _) = state_manager.get_snapshot().await;
if let Some(entry) = data.package_data.get_mut(package_id) {
if entry.state != new_state {
entry.state = new_state;
state_manager.update_data(data).await;
}
}
state_manager
.mutate_data(|data| {
if let Some(entry) = data.package_data.get_mut(package_id) {
if entry.state != new_state {
if new_state != PackageState::Running {
entry.ui_ready = Some(false);
}
entry.state = new_state;
}
}
})
.await
}
pub(super) async fn reconcile_companions_for(package_id: &str) {
@@ -2185,6 +2153,20 @@ pub(super) fn orchestrator_uninstall_app_ids(package_id: &str) -> Vec<String> {
mod tests {
use super::*;
#[tokio::test]
async fn port_conflict_cleanup_preserves_live_host_listener() {
// The previous ss|kill sweep terminated the daemon's app gate on a
// restart. Keep a real listening socket owned by this test process.
let listener = tokio::net::TcpListener::bind("127.0.0.2:2342")
.await
.unwrap();
let addr = listener.local_addr().unwrap();
cleanup_start_conflict("photoprism", "address already in use").await;
let client = tokio::net::TcpStream::connect(addr).await.unwrap();
let _connection = listener.accept().await.unwrap();
drop(client);
}
#[test]
fn missing_container_classifier_covers_podman5_phrasings() {
// Regression (.228 gate 2026-07-08): podman 5.x `inspect` on a missing
+22 -14
View File
@@ -150,23 +150,31 @@ async fn flip_to_transitional(
app_id: &str,
transitional: PackageState,
) -> Option<PackageState> {
let (mut data, _) = state_manager.get_snapshot().await;
let prev = data.package_data.get(app_id).map(|e| e.state.clone());
if let Some(entry) = data.package_data.get_mut(app_id) {
entry.state = transitional;
state_manager.update_data(data).await;
}
prev
state_manager
.mutate_data(|data| {
let prev = data.package_data.get(app_id).map(|e| e.state.clone());
if let Some(entry) = data.package_data.get_mut(app_id) {
entry.ui_ready = Some(false);
entry.state = transitional;
}
prev
})
.await
}
/// Set the entry's state to `new_state`. No-ops if the entry has since been
/// removed (e.g. uninstall ran concurrently).
async fn set_state(state_manager: &StateManager, app_id: &str, new_state: PackageState) {
let (mut data, _) = state_manager.get_snapshot().await;
if let Some(entry) = data.package_data.get_mut(app_id) {
if entry.state != new_state {
entry.state = new_state;
state_manager.update_data(data).await;
}
}
state_manager
.mutate_data(|data| {
if let Some(entry) = data.package_data.get_mut(app_id) {
if entry.state != new_state {
if new_state != PackageState::Running {
entry.ui_ready = Some(false);
}
entry.state = new_state;
}
}
})
.await
}