Files
IdeA/crates/app-tauri/tests/pty_bridge.rs
Blomios 785e9935fd feat(memory): config embedders (LOT C2) + suggestion contextuelle (LOT C3) + contexte projet partagé
- LOT C2 (§14.5.3) : use cases de configuration des embedders déclaratifs
  (List/Save/Delete + DescribeEmbedderEngines : modèles ONNX recommandés,
  environnement local détecté, stratégies compilées). UI EmbedderSettings.
- LOT C3 (§14.5.5) : suggestion contextuelle best-effort à l'activation quand la
  mémoire dépasse le budget de recall sans embedder configuré (event
  EmbedderSuggested, anti-spam 1×/session, « ne plus demander »).
- Contexte projet partagé .ideai/CONTEXT.md (model-agnostic) injecté à tous les
  agents/profils au lancement, avant la persona. UI ProjectContextPanel.

Tests : backend workspace vert (0 échec) ; frontend 306/306.

Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
2026-06-09 09:24:51 +02:00

149 lines
4.9 KiB
Rust

//! L1 tests for [`PtyBridge`] — the PTY↔Channel registry — exercised with a
//! real [`tauri::ipc::Channel`] built from a capturing closure (no Tauri runtime
//! and no real PTY needed).
use std::sync::{Arc, Mutex};
use tauri::ipc::{Channel, InvokeResponseBody};
use app_tauri_lib::pty::PtyBridge;
use domain::ids::SessionId;
use uuid::Uuid;
/// Builds a `Channel<Vec<u8>>` whose sent chunks are recorded into `sink`.
///
/// `Vec<u8>` is `Serialize`, so chunks arrive as a JSON array string in an
/// `InvokeResponseBody::Json`; we parse them back to bytes for assertions.
fn capturing_channel(sink: Arc<Mutex<Vec<Vec<u8>>>>) -> Channel<Vec<u8>> {
Channel::new(move |body: InvokeResponseBody| {
let bytes: Vec<u8> = match body {
InvokeResponseBody::Json(s) => serde_json::from_str(&s).unwrap(),
InvokeResponseBody::Raw(b) => b,
};
sink.lock().unwrap().push(bytes);
Ok(())
})
}
fn sid() -> SessionId {
SessionId::from_uuid(Uuid::new_v4())
}
#[test]
fn register_increases_active_sessions() {
let bridge = PtyBridge::new();
assert_eq!(bridge.active_sessions(), 0);
let sink = Arc::new(Mutex::new(Vec::new()));
bridge.register(sid(), capturing_channel(sink));
assert_eq!(bridge.active_sessions(), 1);
}
#[test]
fn send_output_delivers_bytes_to_registered_channel() {
let bridge = PtyBridge::new();
let session = sid();
let sink = Arc::new(Mutex::new(Vec::new()));
bridge.register(session, capturing_channel(Arc::clone(&sink)));
let delivered = bridge.send_output(&session, vec![104, 105]);
assert!(
delivered,
"send_output should return true for a live session"
);
let captured = sink.lock().unwrap();
assert_eq!(captured.as_slice(), &[vec![104, 105]]);
}
#[test]
fn send_output_to_unknown_session_returns_false() {
let bridge = PtyBridge::new();
assert!(!bridge.send_output(&sid(), vec![0]));
}
#[test]
fn unregister_removes_session_and_stops_delivery() {
let bridge = PtyBridge::new();
let session = sid();
let sink = Arc::new(Mutex::new(Vec::new()));
bridge.register(session, capturing_channel(Arc::clone(&sink)));
assert_eq!(bridge.active_sessions(), 1);
bridge.unregister(&session);
assert_eq!(bridge.active_sessions(), 0);
assert!(!bridge.send_output(&session, vec![1]));
assert!(sink.lock().unwrap().is_empty());
}
#[test]
fn register_same_session_twice_replaces_channel() {
let bridge = PtyBridge::new();
let session = sid();
let first = Arc::new(Mutex::new(Vec::new()));
let second = Arc::new(Mutex::new(Vec::new()));
bridge.register(session, capturing_channel(Arc::clone(&first)));
bridge.register(session, capturing_channel(Arc::clone(&second)));
assert_eq!(
bridge.active_sessions(),
1,
"same id is replaced, not added"
);
bridge.send_output(&session, vec![9]);
assert!(
first.lock().unwrap().is_empty(),
"old channel no longer used"
);
assert_eq!(second.lock().unwrap().as_slice(), &[vec![9]]);
}
#[test]
fn register_returns_monotonic_generation_per_session() {
let bridge = PtyBridge::new();
let session = sid();
let g0 = bridge.register(session, capturing_channel(Arc::new(Mutex::new(Vec::new()))));
let g1 = bridge.register(session, capturing_channel(Arc::new(Mutex::new(Vec::new()))));
assert_eq!(g0, 0);
assert_eq!(g1, 1, "re-attaching the same session bumps the generation");
}
/// The regression guard for on-resize output duplication: a superseded attach's
/// pump thread (older generation) must NOT tear down the channel of the
/// re-attach that replaced it.
#[test]
fn unregister_if_is_a_noop_for_a_superseded_generation() {
let bridge = PtyBridge::new();
let session = sid();
let old = Arc::new(Mutex::new(Vec::new()));
let new = Arc::new(Mutex::new(Vec::new()));
let old_gen = bridge.register(session, capturing_channel(Arc::clone(&old)));
let _new_gen = bridge.register(session, capturing_channel(Arc::clone(&new)));
// The stale (old) pump thread ends and tries to clean up with its own gen.
bridge.unregister_if(&session, old_gen);
// The current channel survives and still delivers — no duplication, no drop.
assert_eq!(
bridge.active_sessions(),
1,
"live re-attach must not be removed"
);
assert!(bridge.send_output(&session, vec![7]));
assert_eq!(new.lock().unwrap().as_slice(), &[vec![7]]);
}
#[test]
fn unregister_if_removes_when_generation_is_current() {
let bridge = PtyBridge::new();
let session = sid();
let gen = bridge.register(session, capturing_channel(Arc::new(Mutex::new(Vec::new()))));
// The current attach's pump thread ends (PTY EOF): it owns the live channel.
bridge.unregister_if(&session, gen);
assert_eq!(bridge.active_sessions(), 0);
assert!(!bridge.send_output(&session, vec![1]));
}