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mlua_swarm_server/operator_ws/
login.rs

1//! REST-like Operator session resource.
2//!
3//! Provides the `POST/GET/DELETE /v1/operators` + `WS /v1/operators/:sid/ws`
4//! route family — the sole WS Operator session route. `session.rs` /
5//! `protocol.rs` are unchanged by this module.
6//!
7//! ## Login flow
8//!
9//! ```text
10//! POST /v1/operators { roles?: ["main-ai"], capability_manifest?: {...} }
11//!   → 409 if any role already owns a live entry (roles alias exclusivity,
12//!     v1.md §Auth session flow)
13//!   → { sid: "S-<hex>", token: "<10-hex>", roles: [...] }
14//!   The manifest is pinned to this session and later resolved through the
15//!   Core `AgentBindingProvider` interface before any Runner-backed spawn.
16//!
17//! WS /v1/operators/:sid/ws
18//!   Authorization: Bearer <token>   (mandatory — no empty-string default)
19//!   → 401 missing/empty Bearer, 404 unknown sid, 401 token mismatch
20//!   → registers a `WSOperatorSession` into the engine's 3 registries
21//!     (senior_bridge / spawn_hook / operator) + role aliases, same pattern
22//!     as `handler::handle_socket`. Reconnect (same sid, matching token)
23//!     reuses the existing `WSOperatorSession` via `replace_tx`.
24//!
25//! DELETE /v1/operators/:sid   (Bearer required)
26//!   → unregisters the 3 registries + role aliases + `operator_sessions`
27//!     entry + releases `roles_to_sid` ownership.
28//!
29//! GET /v1/operators/:sid   (Bearer required)
30//!   → { sid, roles, connected }
31//! ```
32//!
33//! `OperatorSessionEntry` is the login-flow record (`AppState.operator_sessions`),
34//! distinct from `mlua_swarm::OperatorSession` (the engine-side
35//! `attach`/session-token record) and from `WSOperatorSession` (the 3-trait WS
36//! session, `session.rs`) — this module owns the mapping `sid → (token, roles,
37//! Option<WSOperatorSession>)` that the login flow is built on.
38
39use axum::{
40    extract::{
41        ws::{Message, WebSocket, WebSocketUpgrade},
42        Path, State,
43    },
44    http::{HeaderMap, StatusCode},
45    response::{IntoResponse, Response},
46    Json,
47};
48use futures_util::{sink::SinkExt, stream::StreamExt};
49use mlua_swarm::{AgentProviderManifest, Operator, SeniorBridge, SessionId, SpawnHook};
50use serde::{Deserialize, Serialize};
51use serde_json::json;
52use std::sync::Arc;
53use tokio::sync::{mpsc, Mutex};
54
55use super::protocol::{ClientMsg, PendingReply, ServerMsg};
56use super::session::WSOperatorSession;
57use crate::AppState;
58
59/// Login-flow record for a minted Operator session. Held in
60/// `AppState.operator_sessions`, keyed by `sid`. `ws_session` starts `None`
61/// (login only mints sid+token) and is set on first successful WS connect;
62/// on reconnect the same `WSOperatorSession` is reused (`replace_tx`) rather
63/// than re-registered.
64pub struct OperatorSessionEntry {
65    /// Server-minted session id (typed [`SessionId`] since issue #14).
66    pub sid: SessionId,
67    /// Bearer auth token (10-hex-char) required on the WS upgrade and admin routes.
68    pub token: String,
69    /// Role aliases claimed by this session (roles-exclusivity set).
70    pub roles: Vec<String>,
71    /// Provider-owned effective capability manifest submitted at join.
72    pub capability_manifest: Option<AgentProviderManifest>,
73    /// GH #81 Layer 2: unix epoch seconds when `POST /v1/operators` minted
74    /// this entry. Surfaced by `GET /v1/operators` so a recovery driver
75    /// can pick the oldest stale session without probing each sid
76    /// individually.
77    pub joined_at_secs: u64,
78    /// The reusable 3-trait session object once a WS has connected at least
79    /// once; `None` before first connect. Its sender tracks current connectivity.
80    pub ws_session: Mutex<Option<Arc<WSOperatorSession>>>,
81}
82
83// ─── POST /v1/operators (mint) ──────────────────────────────────────────────
84
85/// Body for `POST /v1/operators`.
86#[derive(Debug, Deserialize, Default)]
87pub struct OperatorsCreateReq {
88    /// Role aliases to claim exclusively (empty = no exclusivity claimed).
89    #[serde(default)]
90    pub roles: Vec<String>,
91    /// Effective execution capabilities supplied by the Operator/MainAI.
92    #[serde(default)]
93    pub capability_manifest: Option<AgentProviderManifest>,
94}
95
96/// Response for `POST /v1/operators`.
97#[derive(Debug, Serialize)]
98pub struct OperatorsCreateResp {
99    /// Newly minted session id (typed [`SessionId`]; serializes as the
100    /// plain `S-<hex>` string — the wire shape is unchanged).
101    pub sid: SessionId,
102    /// Bearer auth token required on the WS upgrade and admin routes.
103    pub token: String,
104    /// Echoes the granted role aliases.
105    pub roles: Vec<String>,
106}
107
108/// `POST /v1/operators`. Mints `sid` (`S-<hex>` — the shared `SessionId`
109/// shape; issue #11) + a 10-hex-char token
110/// (`mlua_swarm::types::secure_hex(5)` — OS-RNG hex, unguessable across
111/// calls and restarts, which is the point: this token is the sole bearer
112/// secret on the short-handle path). When `roles` is non-empty, checks
113/// `AppState.roles_to_sid` for conflicts under a single lock (check + insert
114/// atomic w.r.t. concurrent mints) and returns `409 CONFLICT` with the
115/// conflicting role names on collision. Empty `roles` never conflicts (= no
116/// exclusivity is claimed).
117pub async fn operators_create(
118    State(state): State<AppState>,
119    Json(req): Json<OperatorsCreateReq>,
120) -> Response {
121    let roles = req.roles;
122    let capability_manifest = req.capability_manifest;
123    // The sid is the operator-session identity, so it mints in the same
124    // `SessionId` shape (`S-<hex>`) as the engine-side session id — one
125    // session-id form across the system (issue #11 observation 2; the old
126    // `op-<uuid>` shape collided with the operator-backend registry prefix).
127    // It is an identifier, not a secret: `token` (secure_hex) is the sole
128    // bearer credential on this path.
129    let sid = SessionId::new();
130    let token = mlua_swarm::types::secure_hex(5);
131
132    {
133        let mut map = state.roles_to_sid.lock().await;
134        let conflicts: Vec<String> = roles
135            .iter()
136            .filter(|r| map.contains_key(r.as_str()))
137            .cloned()
138            .collect();
139        if !conflicts.is_empty() {
140            // GH #81 Layer 2 (a): identify the holding session per
141            // conflicted role so a recovery driver knows which sid to
142            // release without probing. The pre-#81 `conflicts: [role]`
143            // array stays byte-identical for callers that already
144            // ignore unknown keys; the new `conflicts_detail: [{role,
145            // sid}]` array is an additive companion.
146            let conflicts_detail: Vec<serde_json::Value> = conflicts
147                .iter()
148                .map(|r| {
149                    let holder = map.get(r.as_str()).map(|sid| sid.to_string());
150                    json!({ "role": r, "sid": holder })
151                })
152                .collect();
153            return (
154                StatusCode::CONFLICT,
155                Json(json!({
156                    "error": "roles conflict",
157                    "conflicts": conflicts,
158                    "conflicts_detail": conflicts_detail,
159                })),
160            )
161                .into_response();
162        }
163        for r in &roles {
164            map.insert(r.clone(), sid.clone());
165        }
166    }
167
168    let joined_at_secs = std::time::SystemTime::now()
169        .duration_since(std::time::UNIX_EPOCH)
170        .map(|d| d.as_secs())
171        .unwrap_or(0);
172    let entry = Arc::new(OperatorSessionEntry {
173        sid: sid.clone(),
174        token: token.clone(),
175        roles: roles.clone(),
176        capability_manifest,
177        joined_at_secs,
178        ws_session: Mutex::new(None),
179    });
180    state
181        .operator_sessions
182        .lock()
183        .await
184        .insert(sid.clone(), entry);
185
186    (
187        StatusCode::OK,
188        Json(OperatorsCreateResp { sid, token, roles }),
189    )
190        .into_response()
191}
192
193// ─── WS /v1/operators/:sid/ws (Bearer required) ─────────────────────────────
194
195/// Extracts `Authorization: Bearer <token>`; missing header, wrong scheme, or
196/// an empty token all resolve to a `401` response. `Authorization` is
197/// mandatory on the WS path — there is no empty-string default.
198fn extract_bearer_token_required(headers: &HeaderMap) -> Result<String, Box<Response>> {
199    let token = headers
200        .get(axum::http::header::AUTHORIZATION)
201        .and_then(|v| v.to_str().ok())
202        .and_then(|s| s.strip_prefix("Bearer "))
203        .map(|s| s.trim().to_string())
204        .filter(|s| !s.is_empty());
205    token.ok_or_else(|| {
206        Box::new((StatusCode::UNAUTHORIZED, "missing or empty Bearer token").into_response())
207    })
208}
209
210/// `GET /v1/operators/:sid/ws` (WS upgrade). Bearer mandatory. `404` on
211/// unknown sid, `401` on token mismatch. On successful upgrade, registers (or
212/// reuses, on reconnect) a `WSOperatorSession` under `sid` — same 3-registry
213/// pattern as `handler::handle_socket`, plus role-alias registration for
214/// every role minted alongside this sid.
215pub async fn operators_ws_connect(
216    State(state): State<AppState>,
217    Path(sid): Path<String>,
218    headers: HeaderMap,
219    ws: WebSocketUpgrade,
220) -> Response {
221    let bearer = match extract_bearer_token_required(&headers) {
222        Ok(t) => t,
223        Err(resp) => return *resp,
224    };
225    // A string that doesn't even parse as a SessionId can't be a known sid.
226    let Ok(sid) = SessionId::parse(sid) else {
227        return (StatusCode::NOT_FOUND, "unknown sid").into_response();
228    };
229
230    let entry = {
231        let map = state.operator_sessions.lock().await;
232        map.get(&sid).cloned()
233    };
234    let entry = match entry {
235        Some(e) => e,
236        None => return (StatusCode::NOT_FOUND, "unknown sid").into_response(),
237    };
238    if !mlua_swarm::types::ct_eq(entry.token.as_bytes(), bearer.as_bytes()) {
239        return (StatusCode::UNAUTHORIZED, "token mismatch").into_response();
240    }
241
242    ws.on_upgrade(move |socket| handle_operator_socket(socket, state, entry))
243}
244
245/// Bidirectional pump for a single WS connection, bound to an
246/// `OperatorSessionEntry`. Owns the full wire protocol pump (write task /
247/// read task / `ClientMsg` dispatch / disconnect) for this session.
248async fn handle_operator_socket(
249    socket: WebSocket,
250    state: AppState,
251    entry: Arc<OperatorSessionEntry>,
252) {
253    let (tx, mut rx) = mpsc::unbounded_channel::<ServerMsg>();
254
255    let existing_ws = entry.ws_session.lock().await.clone();
256    let session = match existing_ws {
257        Some(ws_session) => {
258            // Reconnect: reuse the existing WSOperatorSession on this entry; only swap out `tx`.
259            ws_session.replace_tx(tx.clone()).await;
260            ws_session
261        }
262        None => {
263            let ws_session = Arc::new(WSOperatorSession::new_with_base_url(
264                entry.sid.clone(),
265                tx.clone(),
266                state.base_url.clone(),
267            ));
268            state
269                .engine
270                .register_senior_bridge(
271                    entry.sid.clone(),
272                    ws_session.clone() as Arc<dyn SeniorBridge>,
273                )
274                .await;
275            state
276                .engine
277                .register_spawn_hook(entry.sid.clone(), ws_session.clone() as Arc<dyn SpawnHook>)
278                .await;
279            state
280                .engine
281                .register_operator(entry.sid.clone(), ws_session.clone() as Arc<dyn Operator>)
282                .await;
283            if let Some(factory) = &state.ws_operator_factory {
284                factory
285                    .register_operator(entry.sid.clone(), ws_session.clone() as Arc<dyn Operator>);
286            }
287            // Role exclusivity was already resolved at login (POST) time. Here
288            // we just bind the same session into the three registries + factory
289            // under its role aliases (same shape as handler::handle_socket's
290            // ?roles= path).
291            for role in &entry.roles {
292                if let Some(factory) = &state.ws_operator_factory {
293                    factory
294                        .register_operator(role.clone(), ws_session.clone() as Arc<dyn Operator>);
295                }
296                state
297                    .engine
298                    .register_operator(role.clone(), ws_session.clone() as Arc<dyn Operator>)
299                    .await;
300            }
301            *entry.ws_session.lock().await = Some(ws_session.clone());
302            ws_session
303        }
304    };
305
306    let (mut ws_sink, mut ws_stream) = socket.split();
307
308    // write task: mpsc → WebSocket
309    let write_task = tokio::spawn(async move {
310        while let Some(msg) = rx.recv().await {
311            let txt = match serde_json::to_string(&msg) {
312                Ok(s) => s,
313                Err(_) => continue,
314            };
315            if ws_sink.send(Message::Text(txt)).await.is_err() {
316                break;
317            }
318        }
319        let _ = ws_sink.close().await;
320    });
321
322    // read task: WS message → ClientMsg parse → session.resolve_pending
323    let session_for_read = session.clone();
324    let read_result: Result<(), String> = async {
325        while let Some(item) = ws_stream.next().await {
326            match item {
327                Ok(Message::Text(t)) => {
328                    let parsed: ClientMsg = match serde_json::from_str(&t) {
329                        Ok(p) => p,
330                        Err(_) => continue,
331                    };
332                    match parsed {
333                        ClientMsg::Answer { req_id, value } => {
334                            session_for_read
335                                .resolve_pending(&req_id, PendingReply::Answer(value))
336                                .await;
337                        }
338                        ClientMsg::HookAck { req_id, ok, reason } => {
339                            session_for_read
340                                .resolve_pending(&req_id, PendingReply::HookAck { ok, reason })
341                                .await;
342                        }
343                        ClientMsg::SpawnAck {
344                            req_id,
345                            value,
346                            ok,
347                            error,
348                            stats,
349                        } => {
350                            session_for_read
351                                .resolve_pending(
352                                    &req_id,
353                                    PendingReply::SpawnAck {
354                                        value,
355                                        ok,
356                                        error,
357                                        stats,
358                                    },
359                                )
360                                .await;
361                        }
362                        ClientMsg::SpawnHalt {
363                            req_id,
364                            value,
365                            reason,
366                        } => {
367                            session_for_read
368                                .resolve_pending(&req_id, PendingReply::SpawnHalt { value, reason })
369                                .await;
370                        }
371                    }
372                }
373                Ok(Message::Ping(_)) | Ok(Message::Pong(_)) => {}
374                Ok(Message::Close(_)) | Err(_) => break,
375                _ => {}
376            }
377        }
378        Ok(())
379    }
380    .await;
381
382    // Clear only this socket's sender. A reconnect may already have installed
383    // a replacement while this older socket was unwinding.
384    session.clear_tx_if(&tx).await;
385    write_task.abort();
386    let _ = read_result;
387}
388
389// ─── DELETE /v1/operators/:sid (Bearer required) ────────────────────────────
390
391/// Shared teardown for `DELETE /v1/operators/:sid` (`operators_delete`) and
392/// `DELETE /v1/operators/by-role/:role` (`operators_delete_by_role` — GH #81
393/// Layer 2 (c)): drops the 3 engine registries + role aliases +
394/// `ws_operator_factory` bindings + `operator_sessions` entry, and releases
395/// the sid's ownership in `roles_to_sid`. Idempotent w.r.t. a concurrent
396/// delete — every `remove` / `unregister` is a no-op when the entry is
397/// already gone.
398async fn teardown_operator_session(
399    state: &AppState,
400    sid: &SessionId,
401    entry: &Arc<OperatorSessionEntry>,
402) {
403    state.engine.unregister_senior_bridge(sid.as_str()).await;
404    state.engine.unregister_spawn_hook(sid.as_str()).await;
405    state.engine.unregister_operator(sid.as_str()).await;
406    if let Some(factory) = &state.ws_operator_factory {
407        factory.unregister_operator(sid.as_str());
408    }
409    for role in &entry.roles {
410        state.engine.unregister_operator(role).await;
411        if let Some(factory) = &state.ws_operator_factory {
412            factory.unregister_operator(role);
413        }
414    }
415
416    if let Some(session) = entry.ws_session.lock().await.take() {
417        // B-2: fail every parked spawn/ask/hook_before on this session
418        // right away. Teardown removes the session from `operator_sessions`
419        // below (no reconnect can find it again), so unlike a plain WS
420        // disconnect there is no reconnect/resend contract to preserve —
421        // an in-flight spawn parked in `send_and_await` would otherwise
422        // orphan until the run's sync timeout (up to 300s) fires.
423        session.fail_pending("operator session torn down").await;
424        session.clear_tx().await;
425    }
426
427    state.operator_sessions.lock().await.remove(sid);
428
429    {
430        let mut map = state.roles_to_sid.lock().await;
431        for role in &entry.roles {
432            if map.get(role) == Some(sid) {
433                map.remove(role);
434            }
435        }
436    }
437}
438
439/// `DELETE /v1/operators/:sid`. Bearer mandatory. `404` on unknown sid, `401`
440/// on token mismatch. Drops the 3 engine registries + role aliases +
441/// `ws_operator_factory` bindings + `operator_sessions` entry, and releases
442/// this sid's ownership in `roles_to_sid` (re-opening the role names for a
443/// future mint).
444pub async fn operators_delete(
445    State(state): State<AppState>,
446    Path(sid): Path<String>,
447    headers: HeaderMap,
448) -> Response {
449    let bearer = match extract_bearer_token_required(&headers) {
450        Ok(t) => t,
451        Err(resp) => return *resp,
452    };
453    let Ok(sid) = SessionId::parse(sid) else {
454        return (StatusCode::NOT_FOUND, "unknown sid").into_response();
455    };
456
457    let entry = {
458        let map = state.operator_sessions.lock().await;
459        map.get(&sid).cloned()
460    };
461    let entry = match entry {
462        Some(e) => e,
463        None => return (StatusCode::NOT_FOUND, "unknown sid").into_response(),
464    };
465    if !mlua_swarm::types::ct_eq(entry.token.as_bytes(), bearer.as_bytes()) {
466        return (StatusCode::UNAUTHORIZED, "token mismatch").into_response();
467    }
468
469    teardown_operator_session(&state, &sid, &entry).await;
470
471    StatusCode::NO_CONTENT.into_response()
472}
473
474// ─── GH #81 Layer 2: GET /v1/operators + DELETE /v1/operators/by-role/:role
475
476/// GH #81 Layer 2 (b): one entry in the `GET /v1/operators` list response.
477/// Bare identity fields (no token, no capability manifest — those live
478/// behind Bearer on `GET /v1/operators/:sid`); this list surface is
479/// read-only observability, on the same trust tier as `GET /v1/status`.
480#[derive(Debug, Serialize)]
481pub struct OperatorsListEntry {
482    /// Session id (`S-<hex>`) — safe to expose; token is the sole bearer secret.
483    pub sid: SessionId,
484    /// Role aliases held by this session.
485    pub roles: Vec<String>,
486    /// Unix epoch seconds when the session minted (from
487    /// [`OperatorSessionEntry::joined_at_secs`]).
488    pub joined_at_secs: u64,
489    /// Whether a WS is currently attached to this session (matches the
490    /// `connected` field on `GET /v1/operators/:sid`).
491    pub connected: bool,
492}
493
494/// Response body for `GET /v1/operators` (GH #81 Layer 2 (b)).
495#[derive(Debug, Serialize)]
496pub struct OperatorsListResp {
497    /// One entry per live session, ordered by `sid` (deterministic —
498    /// callers can `.iter().find(...)` without probing the map order).
499    pub operators: Vec<OperatorsListEntry>,
500}
501
502/// `GET /v1/operators`. Read-only enumeration of every live session's
503/// `{sid, roles, joined_at_secs, connected}` (GH #81 Layer 2 (b)). Same
504/// trust tier as `GET /v1/status` — no Bearer required; sids are
505/// identifiers, not secrets. Answers "which sid holds `main-ai`?"
506/// without probing every sid individually via `GET /v1/operators/:sid`,
507/// which was the pre-#81 recovery gap.
508pub async fn operators_list(State(state): State<AppState>) -> Response {
509    let entries: Vec<(SessionId, Arc<OperatorSessionEntry>)> = {
510        let map = state.operator_sessions.lock().await;
511        map.iter().map(|(k, v)| (k.clone(), v.clone())).collect()
512    };
513    let mut operators = Vec::with_capacity(entries.len());
514    for (sid, entry) in entries {
515        let session = entry.ws_session.lock().await.clone();
516        let connected = match session {
517            Some(session) => session.is_connected().await,
518            None => false,
519        };
520        operators.push(OperatorsListEntry {
521            sid,
522            roles: entry.roles.clone(),
523            joined_at_secs: entry.joined_at_secs,
524            connected,
525        });
526    }
527    operators.sort_by(|a, b| a.sid.as_str().cmp(b.sid.as_str()));
528    (StatusCode::OK, Json(OperatorsListResp { operators })).into_response()
529}
530
531/// `DELETE /v1/operators/by-role/:role`. Releases the session currently
532/// holding `role` without requiring the caller to know the sid or its
533/// Bearer token (GH #81 Layer 2 (c)). Recovery route for a stale session
534/// whose driver crashed after minting the sid — pre-#81 the only reliable
535/// recovery was a full server restart, which also dropped every OTHER live
536/// session. Same trust tier as the server-shutdown surface
537/// (`mlua_swarm_server_shutdown`): admin observability, no Bearer.
538///
539/// `404` when no session holds the role, `204` on successful teardown. The
540/// response body on `204` is empty (`teardown_operator_session` performs
541/// the same cleanup as `operators_delete`).
542pub async fn operators_delete_by_role(
543    State(state): State<AppState>,
544    Path(role): Path<String>,
545) -> Response {
546    let sid = {
547        let map = state.roles_to_sid.lock().await;
548        match map.get(role.as_str()) {
549            Some(sid) => sid.clone(),
550            None => {
551                return (
552                    StatusCode::NOT_FOUND,
553                    Json(json!({"error": "no session holds this role", "role": role})),
554                )
555                    .into_response();
556            }
557        }
558    };
559    let entry = {
560        let map = state.operator_sessions.lock().await;
561        map.get(&sid).cloned()
562    };
563    let entry = match entry {
564        Some(e) => e,
565        None => {
566            // The role was mapped to a sid that has no matching
567            // `operator_sessions` entry — a torn state that a mint-time
568            // atomic guard prevents in normal operation. Release the
569            // stale role mapping so a future mint can reclaim the
570            // name, then report NOT_FOUND.
571            let mut map = state.roles_to_sid.lock().await;
572            if map.get(role.as_str()) == Some(&sid) {
573                map.remove(role.as_str());
574            }
575            return (
576                StatusCode::NOT_FOUND,
577                Json(json!({
578                    "error": "torn role mapping cleared; role now open",
579                    "role": role,
580                })),
581            )
582                .into_response();
583        }
584    };
585    teardown_operator_session(&state, &sid, &entry).await;
586    StatusCode::NO_CONTENT.into_response()
587}
588
589// ─── GET /v1/operators/:sid (Bearer required) ───────────────────────────────
590
591/// Response for `GET /v1/operators/:sid`.
592#[derive(Debug, Serialize)]
593pub struct OperatorsInfoResp {
594    /// Echoes the requested session id.
595    pub sid: SessionId,
596    /// Role aliases held by this session.
597    pub roles: Vec<String>,
598    /// Capability manifest pinned when this session joined.
599    #[serde(skip_serializing_if = "Option::is_none")]
600    pub capability_manifest: Option<AgentProviderManifest>,
601    /// Whether a WS is currently attached (not merely that the session ever connected).
602    pub connected: bool,
603}
604
605/// `GET /v1/operators/:sid`. Bearer mandatory. `404` on unknown sid, `401` on
606/// token mismatch. `connected` reflects whether the reusable session currently
607/// owns a live sender, not merely whether it connected at least once.
608pub async fn operators_info(
609    State(state): State<AppState>,
610    Path(sid): Path<String>,
611    headers: HeaderMap,
612) -> Response {
613    let bearer = match extract_bearer_token_required(&headers) {
614        Ok(t) => t,
615        Err(resp) => return *resp,
616    };
617    let Ok(sid) = SessionId::parse(sid) else {
618        return (StatusCode::NOT_FOUND, "unknown sid").into_response();
619    };
620
621    let entry = {
622        let map = state.operator_sessions.lock().await;
623        map.get(&sid).cloned()
624    };
625    let entry = match entry {
626        Some(e) => e,
627        None => return (StatusCode::NOT_FOUND, "unknown sid").into_response(),
628    };
629    if !mlua_swarm::types::ct_eq(entry.token.as_bytes(), bearer.as_bytes()) {
630        return (StatusCode::UNAUTHORIZED, "token mismatch").into_response();
631    }
632
633    let session = entry.ws_session.lock().await.clone();
634    let connected = match session {
635        Some(session) => session.is_connected().await,
636        None => false,
637    };
638    (
639        StatusCode::OK,
640        Json(OperatorsInfoResp {
641            sid: entry.sid.clone(),
642            roles: entry.roles.clone(),
643            capability_manifest: entry.capability_manifest.clone(),
644            connected,
645        }),
646    )
647        .into_response()
648}
649
650#[cfg(test)]
651mod tests {
652    use super::*;
653    use axum::http::HeaderValue;
654
655    fn headers_with_bearer(token: &str) -> HeaderMap {
656        let mut h = HeaderMap::new();
657        h.insert(
658            axum::http::header::AUTHORIZATION,
659            HeaderValue::from_str(&format!("Bearer {token}")).unwrap(),
660        );
661        h
662    }
663
664    #[test]
665    fn extract_bearer_token_required_accepts_valid() {
666        let h = headers_with_bearer("abc123");
667        assert_eq!(extract_bearer_token_required(&h).unwrap(), "abc123");
668    }
669
670    #[test]
671    fn extract_bearer_token_required_rejects_missing_header() {
672        let h = HeaderMap::new();
673        assert!(extract_bearer_token_required(&h).is_err());
674    }
675
676    #[test]
677    fn extract_bearer_token_required_rejects_empty_token() {
678        let h = headers_with_bearer("");
679        assert!(extract_bearer_token_required(&h).is_err());
680    }
681
682    #[test]
683    fn extract_bearer_token_required_rejects_wrong_scheme() {
684        let mut h = HeaderMap::new();
685        h.insert(
686            axum::http::header::AUTHORIZATION,
687            HeaderValue::from_static("Basic dXNlcjpwYXNz"),
688        );
689        assert!(extract_bearer_token_required(&h).is_err());
690    }
691
692    #[test]
693    fn operators_create_request_accepts_capability_manifest() {
694        let req: OperatorsCreateReq = serde_json::from_value(serde_json::json!({
695            "roles": ["main-ai"],
696            "capability_manifest": {
697                "provider_id": "main-ai-self-report",
698                "capabilities": [{
699                    "launch_variant": "mse-coder",
700                    "resolved_model": "claude-sonnet-4",
701                    "effective_tools": ["Read", "Edit"]
702                }]
703            }
704        }))
705        .unwrap();
706        assert_eq!(req.roles, ["main-ai"]);
707        assert_eq!(
708            req.capability_manifest.unwrap().provider_id,
709            "main-ai-self-report"
710        );
711    }
712
713    #[test]
714    fn operators_create_request_keeps_manifest_optional_on_wire() {
715        let req: OperatorsCreateReq =
716            serde_json::from_value(serde_json::json!({ "roles": [] })).unwrap();
717        assert!(req.capability_manifest.is_none());
718    }
719}