1use std::net::SocketAddr;
2use std::path::PathBuf;
3use std::sync::Arc;
4
5use anyhow::{anyhow, Context, Result};
6use axum::{
7 extract::Json,
8 extract::Query,
9 extract::State,
10 http::{header, Request, StatusCode},
11 middleware::{self, Next},
12 response::sse::{Event as SseEvent, KeepAlive, Sse},
13 response::{IntoResponse, Response},
14 routing::get,
15 Router,
16};
17use futures::Stream;
18use rmcp::transport::{StreamableHttpServerConfig, StreamableHttpService};
19use serde::Deserialize;
20use serde_json::Value;
21use tokio::sync::broadcast;
22use tokio::time::{Duration, Instant};
23
24use crate::core::context_os::ContextOsMetrics;
25use crate::engine::ContextEngine;
26use crate::tools::LeanCtxServer;
27
28pub mod context_views;
29
30#[cfg(feature = "team-server")]
31pub mod team;
32
33use std::pin::Pin;
35
36pub(crate) struct SseDisconnectGuard<I> {
37 pub(crate) inner: Pin<Box<dyn Stream<Item = I> + Send>>,
38 pub(crate) metrics: Arc<ContextOsMetrics>,
39}
40
41impl<I> Stream for SseDisconnectGuard<I> {
42 type Item = I;
43
44 fn poll_next(
45 mut self: Pin<&mut Self>,
46 cx: &mut std::task::Context<'_>,
47 ) -> std::task::Poll<Option<Self::Item>> {
48 self.inner.as_mut().poll_next(cx)
49 }
50}
51
52impl<I> Drop for SseDisconnectGuard<I> {
53 fn drop(&mut self) {
54 self.metrics.record_sse_disconnect();
55 }
56}
57
58const MAX_ID_LEN: usize = 64;
59
60fn sanitize_id(raw: &str) -> String {
61 let trimmed = raw.trim();
62 if trimmed.is_empty() {
63 return "default".to_string();
64 }
65 let cleaned: String = trimmed
66 .chars()
67 .filter(|c| c.is_ascii_alphanumeric() || *c == '-' || *c == '_' || *c == '.')
68 .take(MAX_ID_LEN)
69 .collect();
70 if cleaned.is_empty() {
71 "default".to_string()
72 } else {
73 cleaned
74 }
75}
76
77#[derive(Clone, Debug)]
78pub struct HttpServerConfig {
79 pub host: String,
80 pub port: u16,
81 pub project_root: PathBuf,
82 pub auth_token: Option<String>,
83 pub stateful_mode: bool,
84 pub json_response: bool,
85 pub disable_host_check: bool,
86 pub allowed_hosts: Vec<String>,
87 pub max_body_bytes: usize,
88 pub max_concurrency: usize,
89 pub max_rps: u32,
90 pub rate_burst: u32,
91 pub request_timeout_ms: u64,
92}
93
94impl Default for HttpServerConfig {
95 fn default() -> Self {
96 let project_root = std::env::current_dir().unwrap_or_else(|_| PathBuf::from("."));
97 Self {
98 host: "127.0.0.1".to_string(),
99 port: 8080,
100 project_root,
101 auth_token: None,
102 stateful_mode: false,
103 json_response: true,
104 disable_host_check: false,
105 allowed_hosts: Vec::new(),
106 max_body_bytes: 2 * 1024 * 1024,
107 max_concurrency: 32,
108 max_rps: 50,
109 rate_burst: 100,
110 request_timeout_ms: 30_000,
111 }
112 }
113}
114
115impl HttpServerConfig {
116 pub fn validate(&self) -> Result<()> {
117 let host = self.host.trim().to_lowercase();
118 let is_loopback = host == "127.0.0.1" || host == "localhost" || host == "::1";
119 if !is_loopback && self.auth_token.as_deref().unwrap_or("").is_empty() {
120 return Err(anyhow!(
121 "Refusing to bind to host='{host}' without auth. Provide --auth-token (or bind to 127.0.0.1)."
122 ));
123 }
124 Ok(())
125 }
126
127 fn mcp_http_config(&self) -> StreamableHttpServerConfig {
128 let mut cfg = StreamableHttpServerConfig::default()
129 .with_stateful_mode(self.stateful_mode)
130 .with_json_response(self.json_response);
131
132 if self.disable_host_check {
133 tracing::warn!(
134 "⚠ --disable-host-check is active: DNS rebinding protection is OFF. \
135 Do NOT use this in production or on non-loopback interfaces."
136 );
137 cfg = cfg.disable_allowed_hosts();
138 return cfg;
139 }
140
141 if !self.allowed_hosts.is_empty() {
142 cfg = cfg.with_allowed_hosts(self.allowed_hosts.clone());
143 return cfg;
144 }
145
146 let host = self.host.trim();
148 if host == "127.0.0.1" || host == "localhost" || host == "::1" {
149 cfg.allowed_hosts.push(host.to_string());
150 }
151
152 cfg
153 }
154}
155
156#[derive(Clone)]
157struct AppState {
158 token: Option<String>,
159 concurrency: Arc<tokio::sync::Semaphore>,
160 rate: Arc<RateLimiter>,
161 project_root: String,
162 timeout: Duration,
163 server: LeanCtxServer,
164}
165
166#[derive(Debug)]
167struct RateLimiter {
168 max_rps: f64,
169 burst: f64,
170 state: tokio::sync::Mutex<RateState>,
171}
172
173#[derive(Debug, Clone, Copy)]
174struct RateState {
175 tokens: f64,
176 last: Instant,
177}
178
179impl RateLimiter {
180 fn new(max_rps: u32, burst: u32) -> Self {
181 let now = Instant::now();
182 Self {
183 max_rps: (max_rps.max(1)) as f64,
184 burst: (burst.max(1)) as f64,
185 state: tokio::sync::Mutex::new(RateState {
186 tokens: (burst.max(1)) as f64,
187 last: now,
188 }),
189 }
190 }
191
192 async fn allow(&self) -> bool {
193 let mut s = self.state.lock().await;
194 let now = Instant::now();
195 let elapsed = now.saturating_duration_since(s.last);
196 let refill = elapsed.as_secs_f64() * self.max_rps;
197 s.tokens = (s.tokens + refill).min(self.burst);
198 s.last = now;
199 if s.tokens >= 1.0 {
200 s.tokens -= 1.0;
201 true
202 } else {
203 false
204 }
205 }
206}
207
208async fn auth_middleware(
209 State(state): State<AppState>,
210 req: Request<axum::body::Body>,
211 next: Next,
212) -> Response {
213 if state.token.is_none() {
214 return next.run(req).await;
215 }
216
217 if req.uri().path() == "/health" {
218 return next.run(req).await;
219 }
220
221 let expected = state.token.as_deref().unwrap_or("");
222 let Some(h) = req.headers().get(header::AUTHORIZATION) else {
223 return StatusCode::UNAUTHORIZED.into_response();
224 };
225 let Ok(s) = h.to_str() else {
226 return StatusCode::UNAUTHORIZED.into_response();
227 };
228 let Some(token) = s
229 .strip_prefix("Bearer ")
230 .or_else(|| s.strip_prefix("bearer "))
231 else {
232 return StatusCode::UNAUTHORIZED.into_response();
233 };
234 if !constant_time_eq(token.as_bytes(), expected.as_bytes()) {
235 return StatusCode::UNAUTHORIZED.into_response();
236 }
237
238 next.run(req).await
239}
240
241fn constant_time_eq(a: &[u8], b: &[u8]) -> bool {
242 use subtle::ConstantTimeEq;
243 if a.len() != b.len() {
244 return false;
245 }
246 bool::from(a.ct_eq(b))
247}
248
249async fn rate_limit_middleware(
250 State(state): State<AppState>,
251 req: Request<axum::body::Body>,
252 next: Next,
253) -> Response {
254 if !state.rate.allow().await {
255 return StatusCode::TOO_MANY_REQUESTS.into_response();
256 }
257 next.run(req).await
258}
259
260async fn concurrency_middleware(
261 State(state): State<AppState>,
262 req: Request<axum::body::Body>,
263 next: Next,
264) -> Response {
265 let Ok(permit) = state.concurrency.clone().try_acquire_owned() else {
266 return StatusCode::TOO_MANY_REQUESTS.into_response();
267 };
268 let resp = next.run(req).await;
269 drop(permit);
270 resp
271}
272
273async fn health() -> impl IntoResponse {
274 (StatusCode::OK, "ok\n")
275}
276
277async fn v1_shutdown() -> impl IntoResponse {
278 tokio::spawn(async {
279 tokio::time::sleep(Duration::from_millis(100)).await;
280 std::process::exit(0);
281 });
282 (StatusCode::OK, "shutting down\n")
283}
284
285#[derive(Debug, Deserialize)]
286#[serde(rename_all = "camelCase")]
287#[allow(dead_code)]
288struct ToolCallBody {
289 name: String,
290 #[serde(default)]
291 arguments: Option<Value>,
292 #[serde(default)]
293 workspace_id: Option<String>,
294 #[serde(default)]
295 channel_id: Option<String>,
296}
297
298#[derive(Debug, Deserialize)]
299#[serde(rename_all = "camelCase")]
300struct EventsQuery {
301 #[serde(default)]
302 workspace_id: Option<String>,
303 #[serde(default)]
304 channel_id: Option<String>,
305 #[serde(default)]
306 since: Option<i64>,
307 #[serde(default)]
308 limit: Option<usize>,
309 #[serde(default)]
312 kind: Option<String>,
313}
314
315async fn v1_manifest(State(state): State<AppState>) -> impl IntoResponse {
316 let _ = state;
317 let v = crate::core::mcp_manifest::manifest_value();
318 (StatusCode::OK, Json(v))
319}
320
321#[derive(Debug, Deserialize)]
322#[serde(rename_all = "camelCase")]
323struct ToolsQuery {
324 #[serde(default)]
325 offset: Option<usize>,
326 #[serde(default)]
327 limit: Option<usize>,
328}
329
330async fn v1_tools(State(state): State<AppState>, Query(q): Query<ToolsQuery>) -> impl IntoResponse {
331 let _ = state;
332 let v = crate::core::mcp_manifest::manifest_value();
333 let tools = v
334 .get("tools")
335 .and_then(|t| t.get("granular"))
336 .cloned()
337 .unwrap_or(Value::Array(vec![]));
338
339 let all = tools.as_array().cloned().unwrap_or_default();
340 let total = all.len();
341 let offset = q.offset.unwrap_or(0).min(total);
342 let limit = q.limit.unwrap_or(200).min(500);
343 let page = all.into_iter().skip(offset).take(limit).collect::<Vec<_>>();
344
345 (
346 StatusCode::OK,
347 Json(serde_json::json!({
348 "tools": page,
349 "total": total,
350 "offset": offset,
351 "limit": limit,
352 })),
353 )
354}
355
356async fn v1_tool_call(
357 State(state): State<AppState>,
358 Json(body): Json<ToolCallBody>,
359) -> impl IntoResponse {
360 let engine = ContextEngine::from_server(state.server.clone());
361 match tokio::time::timeout(
362 state.timeout,
363 engine.call_tool_value(&body.name, body.arguments),
364 )
365 .await
366 {
367 Ok(Ok(v)) => (StatusCode::OK, Json(serde_json::json!({ "result": v }))).into_response(),
368 Ok(Err(e)) => {
369 tracing::warn!("tool call error: {e}");
370 (
371 StatusCode::BAD_REQUEST,
372 Json(serde_json::json!({ "error": "tool_error", "code": "TOOL_ERROR" })),
373 )
374 .into_response()
375 }
376 Err(_) => (
377 StatusCode::GATEWAY_TIMEOUT,
378 Json(serde_json::json!({ "error": "request_timeout" })),
379 )
380 .into_response(),
381 }
382}
383
384async fn v1_events(
385 State(state): State<AppState>,
386 Query(q): Query<EventsQuery>,
387) -> Sse<impl Stream<Item = Result<SseEvent, std::convert::Infallible>>> {
388 use crate::core::context_os::{redact_event_payload, ContextEventV1, RedactionLevel};
389
390 let ws = sanitize_id(&q.workspace_id.unwrap_or_else(|| "default".to_string()));
391 let ch = sanitize_id(&q.channel_id.unwrap_or_else(|| "default".to_string()));
392 let _ = &state.project_root;
393 let since = q.since.unwrap_or(0);
394 let limit = q.limit.unwrap_or(200).min(1000);
395 let redaction = RedactionLevel::RefsOnly;
396
397 let kind_filter: Option<Vec<String>> = q
398 .kind
399 .as_deref()
400 .map(|k| k.split(',').map(|s| s.trim().to_string()).collect());
401
402 let rt = crate::core::context_os::runtime();
403 let replay = rt.bus.read(&ws, &ch, since, limit);
404
405 let replay = if let Some(ref kinds) = kind_filter {
406 replay
407 .into_iter()
408 .filter(|ev| kinds.contains(&ev.kind))
409 .collect()
410 } else {
411 replay
412 };
413
414 let rx = if let Some(ref kinds) = kind_filter {
415 let kind_refs: Vec<&str> = kinds.iter().map(String::as_str).collect();
416 let filter = crate::core::context_os::TopicFilter::kinds(&kind_refs);
417 if let Some(sub) = rt.bus.subscribe_filtered(&ws, &ch, filter) {
418 crate::core::context_os::SubscriptionKind::Filtered(sub)
419 } else {
420 tracing::warn!("SSE subscriber limit reached for {ws}/{ch}");
421 let (_, rx) = broadcast::channel::<ContextEventV1>(1);
422 crate::core::context_os::SubscriptionKind::Unfiltered(rx)
423 }
424 } else if let Some(sub) = rt.bus.subscribe(&ws, &ch) {
425 crate::core::context_os::SubscriptionKind::Unfiltered(sub)
426 } else {
427 tracing::warn!("SSE subscriber limit reached for {ws}/{ch}");
428 let (_, rx) = broadcast::channel::<ContextEventV1>(1);
429 crate::core::context_os::SubscriptionKind::Unfiltered(rx)
430 };
431
432 rt.metrics.record_sse_connect();
433 rt.metrics.record_events_replayed(replay.len() as u64);
434 rt.metrics.record_workspace_active(&ws);
435
436 let bus = rt.bus.clone();
437 let metrics = rt.metrics.clone();
438 let pending: std::collections::VecDeque<ContextEventV1> = replay.into();
439
440 let stream = futures::stream::unfold(
441 (
442 pending,
443 rx,
444 ws.clone(),
445 ch.clone(),
446 since,
447 redaction,
448 bus,
449 metrics,
450 ),
451 |(mut pending, mut rx, ws, ch, mut last_id, redaction, bus, metrics)| async move {
452 if let Some(mut ev) = pending.pop_front() {
453 last_id = ev.id;
454 redact_event_payload(&mut ev, redaction);
455 let data = serde_json::to_string(&ev).unwrap_or_else(|_| "{}".to_string());
456 let evt = SseEvent::default()
457 .id(ev.id.to_string())
458 .event(ev.kind)
459 .data(data);
460 return Some((
461 Ok(evt),
462 (pending, rx, ws, ch, last_id, redaction, bus, metrics),
463 ));
464 }
465
466 loop {
467 match rx.recv().await {
468 Ok(mut ev) if ev.id > last_id => {
469 last_id = ev.id;
470 redact_event_payload(&mut ev, redaction);
471 let data = serde_json::to_string(&ev).unwrap_or_else(|_| "{}".to_string());
472 let evt = SseEvent::default()
473 .id(ev.id.to_string())
474 .event(ev.kind)
475 .data(data);
476 return Some((
477 Ok(evt),
478 (pending, rx, ws, ch, last_id, redaction, bus, metrics),
479 ));
480 }
481 Ok(_) => {}
482 Err(broadcast::error::RecvError::Closed) => return None,
483 Err(broadcast::error::RecvError::Lagged(skipped)) => {
484 let missed = bus.read(&ws, &ch, last_id, skipped as usize);
485 metrics.record_events_replayed(missed.len() as u64);
486 for ev in missed {
487 last_id = last_id.max(ev.id);
488 pending.push_back(ev);
489 }
490 }
491 }
492 }
493 },
494 );
495
496 let metrics_ref = rt.metrics.clone();
497 let guarded = SseDisconnectGuard {
498 inner: Box::pin(stream),
499 metrics: metrics_ref,
500 };
501
502 Sse::new(guarded).keep_alive(KeepAlive::new().interval(Duration::from_secs(15)))
503}
504
505#[derive(Debug, Deserialize)]
506struct AuditEventsQuery {
507 #[serde(default = "default_audit_limit")]
508 limit: usize,
509}
510
511fn default_audit_limit() -> usize {
512 100
513}
514
515async fn v1_audit_events(Query(q): Query<AuditEventsQuery>) -> impl IntoResponse {
516 let capped = q.limit.min(1000);
517 let boundary_events = crate::core::memory_boundary::load_audit_events(capped);
518 let trail_events = crate::core::audit_trail::load_recent(capped);
519
520 Json(serde_json::json!({
521 "cross_project_events": boundary_events,
522 "audit_trail": trail_events,
523 }))
524}
525
526async fn v1_metrics(State(_state): State<AppState>) -> impl IntoResponse {
527 let rt = crate::core::context_os::runtime();
528 let snap = rt.metrics.snapshot();
529 (
530 StatusCode::OK,
531 Json(serde_json::to_value(snap).unwrap_or_default()),
532 )
533}
534
535const MAX_HANDOFF_PAYLOAD_BYTES: usize = 1_000_000;
536const MAX_HANDOFF_FILES: usize = 50;
537
538async fn v1_a2a_handoff(
539 State(state): State<AppState>,
540 Json(body): Json<Value>,
541) -> impl IntoResponse {
542 let envelope = match crate::core::a2a_transport::parse_envelope(
543 &serde_json::to_string(&body).unwrap_or_default(),
544 ) {
545 Ok(env) => env,
546 Err(e) => {
547 tracing::warn!("a2a handoff parse error: {e}");
548 return (
549 StatusCode::BAD_REQUEST,
550 Json(serde_json::json!({"error": "invalid_envelope"})),
551 );
552 }
553 };
554
555 if envelope.payload_json.len() > MAX_HANDOFF_PAYLOAD_BYTES {
556 tracing::warn!(
557 "a2a handoff payload too large: {} bytes (limit {MAX_HANDOFF_PAYLOAD_BYTES})",
558 envelope.payload_json.len()
559 );
560 return (
561 StatusCode::PAYLOAD_TOO_LARGE,
562 Json(serde_json::json!({"error": "payload_too_large"})),
563 );
564 }
565
566 let rt = crate::core::context_os::runtime();
567 rt.bus.append(
568 &state.project_root,
569 "a2a",
570 &crate::core::context_os::ContextEventKindV1::SessionMutated,
571 Some(&envelope.sender.agent_id),
572 serde_json::json!({
573 "type": "handoff_received",
574 "content_type": format!("{:?}", envelope.content_type),
575 "sender": envelope.sender.agent_id,
576 "payload_size": envelope.payload_json.len(),
577 }),
578 );
579
580 match envelope.content_type {
581 crate::core::a2a_transport::TransportContentType::ContextPackage => {
582 let dir = std::path::Path::new(&state.project_root)
583 .join(".lean-ctx")
584 .join("handoffs")
585 .join("packages");
586 let _ = std::fs::create_dir_all(&dir);
587 evict_oldest_files(&dir, MAX_HANDOFF_FILES);
588 let out = dir.join(format!(
589 "ctx-{}.lctxpkg",
590 chrono::Utc::now().format("%Y%m%d_%H%M%S")
591 ));
592 if let Err(e) = std::fs::write(&out, &envelope.payload_json) {
593 tracing::error!("a2a handoff write failed: {e}");
594 return (
595 StatusCode::INTERNAL_SERVER_ERROR,
596 Json(serde_json::json!({"error": "write_failed"})),
597 );
598 }
599 (
600 StatusCode::OK,
601 Json(serde_json::json!({
602 "status": "received",
603 "content_type": "context_package",
604 })),
605 )
606 }
607 crate::core::a2a_transport::TransportContentType::HandoffBundle => {
608 let dir = std::path::Path::new(&state.project_root)
609 .join(".lean-ctx")
610 .join("handoffs");
611 let _ = std::fs::create_dir_all(&dir);
612 evict_oldest_files(&dir, MAX_HANDOFF_FILES);
613 let out = dir.join(format!(
614 "received-{}.json",
615 chrono::Utc::now().format("%Y%m%d_%H%M%S")
616 ));
617 if let Err(e) = std::fs::write(&out, &envelope.payload_json) {
618 tracing::error!("a2a handoff write failed: {e}");
619 return (
620 StatusCode::INTERNAL_SERVER_ERROR,
621 Json(serde_json::json!({"error": "write_failed"})),
622 );
623 }
624 (
625 StatusCode::OK,
626 Json(serde_json::json!({
627 "status": "received",
628 "content_type": "handoff_bundle",
629 })),
630 )
631 }
632 _ => (
633 StatusCode::OK,
634 Json(serde_json::json!({
635 "status": "received",
636 "content_type": format!("{:?}", envelope.content_type),
637 })),
638 ),
639 }
640}
641
642fn evict_oldest_files(dir: &std::path::Path, max_files: usize) {
643 let Ok(entries) = std::fs::read_dir(dir) else {
644 return;
645 };
646 let mut files: Vec<(std::time::SystemTime, std::path::PathBuf)> = entries
647 .filter_map(|e| {
648 let e = e.ok()?;
649 let meta = e.metadata().ok()?;
650 if meta.is_file() {
651 Some((meta.modified().unwrap_or(std::time::UNIX_EPOCH), e.path()))
652 } else {
653 None
654 }
655 })
656 .collect();
657
658 if files.len() < max_files {
659 return;
660 }
661 files.sort_by_key(|(mtime, _)| *mtime);
662 let to_remove = files.len().saturating_sub(max_files.saturating_sub(1));
663 for (_, path) in files.into_iter().take(to_remove) {
664 let _ = std::fs::remove_file(path);
665 }
666}
667
668async fn a2a_jsonrpc(Json(body): Json<Value>) -> impl IntoResponse {
669 let req: crate::core::a2a::a2a_compat::JsonRpcRequest = match serde_json::from_value(body) {
670 Ok(r) => r,
671 Err(e) => {
672 tracing::debug!("a2a JSON-RPC parse error: {e}");
673 return (
674 StatusCode::BAD_REQUEST,
675 Json(serde_json::json!({
676 "jsonrpc": "2.0",
677 "id": null,
678 "error": {"code": -32700, "message": "invalid request"}
679 })),
680 );
681 }
682 };
683 let resp = crate::core::a2a::a2a_compat::handle_a2a_jsonrpc(&req);
684 let json = serde_json::to_value(resp).unwrap_or_default();
685 (StatusCode::OK, Json(json))
686}
687
688async fn v1_a2a_agent_card(State(state): State<AppState>) -> impl IntoResponse {
689 let card = crate::core::a2a::agent_card::build_agent_card(&state.project_root);
690 (
691 StatusCode::OK,
692 [(header::CONTENT_TYPE, "application/json")],
693 Json(card),
694 )
695}
696
697async fn mcp_server_card() -> impl IntoResponse {
698 let card = serde_json::json!({
699 "name": "lean-ctx",
700 "version": env!("CARGO_PKG_VERSION"),
701 "description": "Context Infrastructure Layer — compression, caching, governance for AI agents",
702 "capabilities": {
703 "tools": true,
704 "resources": false,
705 "prompts": false,
706 "sampling": false
707 },
708 "tool_categories": [
709 {"name": "file_operations", "tools": ["ctx_read", "ctx_search", "ctx_tree", "ctx_edit"], "avg_token_cost": 150},
710 {"name": "session_management", "tools": ["ctx_session", "ctx_compress", "ctx_dedup", "ctx_preload"], "avg_token_cost": 80},
711 {"name": "intelligence", "tools": ["ctx_knowledge", "ctx_semantic_search", "ctx_graph", "ctx_overview"], "avg_token_cost": 200},
712 {"name": "agent_ops", "tools": ["ctx_agent", "ctx_handoff", "ctx_task", "ctx_share"], "avg_token_cost": 120}
713 ],
714 "features": {
715 "compression": "deterministic AST-based, 40-70% token reduction",
716 "caching": "session-scoped with zstd, re-reads ~13 tokens",
717 "audit_trail": "SHA-256 chained JSONL",
718 "rbac": "5 built-in roles with capability-based access",
719 "sandboxing": "Level 0 (subprocess) + Level 1 (OS-level)",
720 "secret_detection": "8 regex patterns + custom"
721 },
722 "security": {
723 "path_jail": true,
724 "rate_limiting": true,
725 "budget_tracking": true,
726 "signed_handoffs": true,
727 "timing_safe_auth": true
728 }
729 });
730 Json(card)
731}
732
733async fn v1_agents_register(
734 State(state): State<AppState>,
735 Json(body): Json<Value>,
736) -> impl IntoResponse {
737 let agent_type = body
738 .get("agent_type")
739 .and_then(|v| v.as_str())
740 .unwrap_or("unknown");
741 let role = body.get("role").and_then(|v| v.as_str());
742 let project_root = body
743 .get("project_root")
744 .and_then(|v| v.as_str())
745 .unwrap_or(&state.project_root);
746
747 let mut registry = crate::core::agents::AgentRegistry::load_or_create();
748 let agent_id = registry.register(agent_type, role, project_root);
749 let _ = registry.save();
750
751 Json(serde_json::json!({
752 "agent_id": agent_id,
753 "status": "registered"
754 }))
755}
756
757async fn v1_agents_heartbeat(Json(body): Json<Value>) -> impl IntoResponse {
758 let agent_id = body.get("agent_id").and_then(|v| v.as_str()).unwrap_or("");
759 let mut registry = crate::core::agents::AgentRegistry::load_or_create();
760 registry.update_heartbeat(agent_id);
761 let _ = registry.save();
762 Json(serde_json::json!({"status": "ok"}))
763}
764
765async fn v1_agents_list() -> impl IntoResponse {
766 let registry = crate::core::agents::AgentRegistry::load_or_create();
767 let active = registry.list_active(None);
768 Json(serde_json::json!({
769 "agents": active.iter().map(|a| serde_json::json!({
770 "agent_id": a.agent_id,
771 "agent_type": a.agent_type,
772 "role": a.role,
773 "status": a.status.to_string(),
774 "last_active": a.last_active.to_rfc3339(),
775 })).collect::<Vec<_>>()
776 }))
777}
778
779async fn v1_agents_deregister(Json(body): Json<Value>) -> impl IntoResponse {
780 let agent_id = body.get("agent_id").and_then(|v| v.as_str()).unwrap_or("");
781 let mut registry = crate::core::agents::AgentRegistry::load_or_create();
782 registry.set_status(
783 agent_id,
784 crate::core::agents::AgentStatus::Finished,
785 Some("deregistered via API"),
786 );
787 let _ = registry.save();
788 Json(serde_json::json!({"status": "deregistered"}))
789}
790
791async fn v1_agents_events_sse(
792) -> Sse<impl Stream<Item = Result<SseEvent, std::convert::Infallible>>> {
793 let stream = futures::stream::unfold(0usize, |last_count| async move {
794 loop {
795 tokio::time::sleep(Duration::from_secs(5)).await;
796 let registry = crate::core::agents::AgentRegistry::load_or_create();
797 let active = registry.list_active(None);
798 let count = active.len();
799 if count != last_count {
800 let data = serde_json::json!({
801 "type": "agents_changed",
802 "active_count": count,
803 "agents": active.iter().map(|a| &a.agent_id).collect::<Vec<_>>(),
804 });
805 return Some((
806 Ok::<_, std::convert::Infallible>(SseEvent::default().data(data.to_string())),
807 count,
808 ));
809 }
810 }
811 });
812
813 Sse::new(stream).keep_alive(KeepAlive::new().interval(Duration::from_secs(15)))
814}
815
816fn build_app_router(cfg: &HttpServerConfig) -> Router {
817 let project_root = cfg.project_root.to_string_lossy().to_string();
818 let service_project_root = project_root.clone();
819 let service_factory = move || -> Result<LeanCtxServer, std::io::Error> {
820 Ok(LeanCtxServer::new_shared_with_context(
821 &service_project_root,
822 "default",
823 "default",
824 ))
825 };
826 let mcp_http = StreamableHttpService::new(
827 service_factory,
828 Arc::new(
829 rmcp::transport::streamable_http_server::session::local::LocalSessionManager::default(),
830 ),
831 cfg.mcp_http_config(),
832 );
833
834 let rest_server = LeanCtxServer::new_shared_with_context(&project_root, "default", "default");
835
836 let state = AppState {
837 token: cfg.auth_token.clone().filter(|t| !t.is_empty()),
838 concurrency: Arc::new(tokio::sync::Semaphore::new(cfg.max_concurrency.max(1))),
839 rate: Arc::new(RateLimiter::new(cfg.max_rps, cfg.rate_burst)),
840 project_root,
841 timeout: Duration::from_millis(cfg.request_timeout_ms.max(1)),
842 server: rest_server,
843 };
844
845 Router::new()
846 .route("/health", get(health))
847 .route("/v1/shutdown", axum::routing::post(v1_shutdown))
848 .route("/v1/manifest", get(v1_manifest))
849 .route("/v1/tools", get(v1_tools))
850 .route("/v1/tools/call", axum::routing::post(v1_tool_call))
851 .route("/v1/events", get(v1_events))
852 .route(
853 "/v1/context/summary",
854 get(context_views::v1_context_summary),
855 )
856 .route("/v1/events/search", get(context_views::v1_events_search))
857 .route("/v1/events/lineage", get(context_views::v1_event_lineage))
858 .route("/v1/metrics", get(v1_metrics))
859 .route("/v1/audit/events", get(v1_audit_events))
860 .route("/v1/a2a/handoff", axum::routing::post(v1_a2a_handoff))
861 .route("/v1/a2a/agent-card", get(v1_a2a_agent_card))
862 .route("/.well-known/agent.json", get(v1_a2a_agent_card))
863 .route("/.well-known/mcp-server.json", get(mcp_server_card))
864 .route("/a2a", axum::routing::post(a2a_jsonrpc))
865 .route(
866 "/v1/agents/register",
867 axum::routing::post(v1_agents_register),
868 )
869 .route(
870 "/v1/agents/heartbeat",
871 axum::routing::post(v1_agents_heartbeat),
872 )
873 .route("/v1/agents/list", get(v1_agents_list))
874 .route(
875 "/v1/agents/deregister",
876 axum::routing::post(v1_agents_deregister),
877 )
878 .route("/v1/agents/events", get(v1_agents_events_sse))
879 .fallback_service(mcp_http)
880 .layer(axum::extract::DefaultBodyLimit::max(cfg.max_body_bytes))
881 .layer(middleware::from_fn_with_state(
882 state.clone(),
883 rate_limit_middleware,
884 ))
885 .layer(middleware::from_fn_with_state(
886 state.clone(),
887 concurrency_middleware,
888 ))
889 .layer(middleware::from_fn_with_state(
890 state.clone(),
891 auth_middleware,
892 ))
893 .with_state(state)
894}
895
896pub async fn serve(cfg: HttpServerConfig) -> Result<()> {
897 crate::core::protocol::set_mcp_context(true);
898 cfg.validate()?;
899
900 let addr: SocketAddr = format!("{}:{}", cfg.host, cfg.port)
901 .parse()
902 .context("invalid host/port")?;
903
904 let app = build_app_router(&cfg);
905
906 let listener = tokio::net::TcpListener::bind(addr)
907 .await
908 .with_context(|| format!("bind {addr}"))?;
909
910 tracing::info!(
911 "lean-ctx Streamable HTTP server listening on http://{addr} (project_root={})",
912 cfg.project_root.display()
913 );
914
915 axum::serve(listener, app)
916 .with_graceful_shutdown(async move {
917 let _ = tokio::signal::ctrl_c().await;
918 })
919 .await
920 .context("http server")?;
921 Ok(())
922}
923
924#[cfg(windows)]
925impl axum::serve::Listener for crate::ipc::NamedPipeListener {
926 type Io = tokio::net::windows::named_pipe::NamedPipeServer;
927 type Addr = String;
928
929 async fn accept(&mut self) -> (Self::Io, Self::Addr) {
930 loop {
931 match self.accept_pipe().await {
932 Ok(pipe) => return (pipe, self.name().to_string()),
933 Err(e) => {
934 tracing::error!("named pipe accept error: {e}");
935 tokio::time::sleep(std::time::Duration::from_millis(100)).await;
936 }
937 }
938 }
939 }
940
941 fn local_addr(&self) -> std::io::Result<Self::Addr> {
942 Ok(self.name().to_string())
943 }
944}
945
946pub async fn serve_ipc(cfg: HttpServerConfig, addr: crate::ipc::DaemonAddr) -> Result<()> {
949 cfg.validate()?;
950
951 match addr {
952 #[cfg(unix)]
953 crate::ipc::DaemonAddr::Unix(ref path) => {
954 let app = build_app_router(&cfg);
955 let listener = crate::ipc::bind_listener(&addr)?;
956
957 tracing::info!(
958 "lean-ctx daemon listening on {} (project_root={})",
959 path.display(),
960 cfg.project_root.display()
961 );
962
963 axum::serve(listener, app.into_make_service())
964 .with_graceful_shutdown(async move {
965 let _ = tokio::signal::ctrl_c().await;
966 })
967 .await
968 .context("ipc server")?;
969 Ok(())
970 }
971 #[cfg(windows)]
972 crate::ipc::DaemonAddr::NamedPipe(ref name) => {
973 let app = build_app_router(&cfg);
974 let listener = crate::ipc::bind_listener(&addr)?;
975
976 tracing::info!(
977 "lean-ctx daemon listening on {} (project_root={})",
978 name,
979 cfg.project_root.display()
980 );
981
982 axum::serve(listener, app.into_make_service())
983 .with_graceful_shutdown(async move {
984 let _ = tokio::signal::ctrl_c().await;
985 })
986 .await
987 .context("ipc server")?;
988 Ok(())
989 }
990 }
991}
992
993#[cfg(test)]
994mod tests {
995 use super::*;
996 use axum::body::Body;
997 use axum::http::Request;
998 use futures::StreamExt;
999 use rmcp::transport::{StreamableHttpServerConfig, StreamableHttpService};
1000 use serde_json::json;
1001 use tower::ServiceExt;
1002
1003 async fn read_first_sse_message(body: Body) -> String {
1004 let mut stream = body.into_data_stream();
1005 let mut buf: Vec<u8> = Vec::new();
1006 for _ in 0..32 {
1007 let next = tokio::time::timeout(Duration::from_secs(2), stream.next()).await;
1008 let Ok(Some(Ok(bytes))) = next else {
1009 break;
1010 };
1011 buf.extend_from_slice(&bytes);
1012 if buf.windows(2).any(|w| w == b"\n\n") {
1013 break;
1014 }
1015 }
1016 String::from_utf8_lossy(&buf).to_string()
1017 }
1018
1019 #[tokio::test]
1020 async fn auth_token_blocks_requests_without_bearer_header() {
1021 let dir = tempfile::tempdir().expect("tempdir");
1022 let root_str = dir.path().to_string_lossy().to_string();
1023 let service_project_root = root_str.clone();
1024 let service_factory = move || -> Result<LeanCtxServer, std::io::Error> {
1025 Ok(LeanCtxServer::new_shared_with_context(
1026 &service_project_root,
1027 "default",
1028 "default",
1029 ))
1030 };
1031 let cfg = StreamableHttpServerConfig::default()
1032 .with_stateful_mode(false)
1033 .with_json_response(true);
1034
1035 let mcp_http = StreamableHttpService::new(
1036 service_factory,
1037 Arc::new(
1038 rmcp::transport::streamable_http_server::session::local::LocalSessionManager::default(),
1039 ),
1040 cfg,
1041 );
1042
1043 let state = AppState {
1044 token: Some("secret".to_string()),
1045 concurrency: Arc::new(tokio::sync::Semaphore::new(4)),
1046 rate: Arc::new(RateLimiter::new(50, 100)),
1047 project_root: root_str.clone(),
1048 timeout: Duration::from_secs(30),
1049 server: LeanCtxServer::new_shared_with_context(&root_str, "default", "default"),
1050 };
1051
1052 let app = Router::new()
1053 .fallback_service(mcp_http)
1054 .layer(middleware::from_fn_with_state(
1055 state.clone(),
1056 auth_middleware,
1057 ))
1058 .with_state(state);
1059
1060 let body = json!({
1061 "jsonrpc": "2.0",
1062 "id": 1,
1063 "method": "tools/list",
1064 "params": {}
1065 })
1066 .to_string();
1067
1068 let req = Request::builder()
1069 .method("POST")
1070 .uri("/")
1071 .header("Host", "localhost")
1072 .header("Accept", "application/json, text/event-stream")
1073 .header("Content-Type", "application/json")
1074 .body(Body::from(body))
1075 .expect("request");
1076
1077 let resp = app.clone().oneshot(req).await.expect("resp");
1078 assert_eq!(resp.status(), StatusCode::UNAUTHORIZED);
1079 }
1080
1081 #[tokio::test]
1082 async fn mcp_service_factory_isolates_per_client_state() {
1083 let dir = tempfile::tempdir().expect("tempdir");
1084 let root_str = dir.path().to_string_lossy().to_string();
1085
1086 let service_project_root = root_str.clone();
1088 let service_factory = move || -> Result<LeanCtxServer, std::convert::Infallible> {
1089 Ok(LeanCtxServer::new_shared_with_context(
1090 &service_project_root,
1091 "default",
1092 "default",
1093 ))
1094 };
1095
1096 let s1 = service_factory().expect("server 1");
1097 let s2 = service_factory().expect("server 2");
1098
1099 *s1.client_name.write().await = "client-a".to_string();
1102 *s2.client_name.write().await = "client-b".to_string();
1103
1104 let a = s1.client_name.read().await.clone();
1105 let b = s2.client_name.read().await.clone();
1106 assert_eq!(a, "client-a");
1107 assert_eq!(b, "client-b");
1108 }
1109
1110 #[tokio::test]
1111 async fn rate_limit_returns_429_when_exhausted() {
1112 let state = AppState {
1113 token: None,
1114 concurrency: Arc::new(tokio::sync::Semaphore::new(16)),
1115 rate: Arc::new(RateLimiter::new(1, 1)),
1116 project_root: ".".to_string(),
1117 timeout: Duration::from_secs(30),
1118 server: LeanCtxServer::new_shared_with_context(".", "default", "default"),
1119 };
1120
1121 let app = Router::new()
1122 .route("/limited", get(|| async { (StatusCode::OK, "ok\n") }))
1123 .layer(middleware::from_fn_with_state(
1124 state.clone(),
1125 rate_limit_middleware,
1126 ))
1127 .with_state(state);
1128
1129 let req1 = Request::builder()
1130 .method("GET")
1131 .uri("/limited")
1132 .header("Host", "localhost")
1133 .body(Body::empty())
1134 .expect("req1");
1135 let resp1 = app.clone().oneshot(req1).await.expect("resp1");
1136 assert_eq!(resp1.status(), StatusCode::OK);
1137
1138 let req2 = Request::builder()
1139 .method("GET")
1140 .uri("/limited")
1141 .header("Host", "localhost")
1142 .body(Body::empty())
1143 .expect("req2");
1144 let resp2 = app.clone().oneshot(req2).await.expect("resp2");
1145 assert_eq!(resp2.status(), StatusCode::TOO_MANY_REQUESTS);
1146 }
1147
1148 #[tokio::test]
1149 async fn audit_events_endpoint_returns_json() {
1150 let dir = tempfile::tempdir().expect("tempdir");
1151 let root_str = dir.path().to_string_lossy().to_string();
1152
1153 let state = AppState {
1154 token: None,
1155 concurrency: Arc::new(tokio::sync::Semaphore::new(16)),
1156 rate: Arc::new(RateLimiter::new(50, 100)),
1157 project_root: root_str.clone(),
1158 timeout: Duration::from_secs(30),
1159 server: LeanCtxServer::new_shared_with_context(&root_str, "default", "default"),
1160 };
1161
1162 let app = Router::new()
1163 .route("/v1/audit/events", get(v1_audit_events))
1164 .with_state(state);
1165
1166 let req = Request::builder()
1167 .method("GET")
1168 .uri("/v1/audit/events?limit=10")
1169 .header("Host", "localhost")
1170 .body(Body::empty())
1171 .unwrap();
1172
1173 let resp = app.oneshot(req).await.unwrap();
1174 assert_eq!(resp.status(), StatusCode::OK);
1175
1176 let body = axum::body::to_bytes(resp.into_body(), 1_000_000)
1177 .await
1178 .unwrap();
1179 let json: serde_json::Value = serde_json::from_slice(&body).unwrap();
1180 assert!(json.get("cross_project_events").unwrap().is_array());
1181 assert!(json.get("audit_trail").unwrap().is_array());
1182 }
1183
1184 #[tokio::test]
1185 async fn events_endpoint_replays_tool_call_event() {
1186 use crate::core::context_os::{self, ContextEventKindV1};
1187
1188 let dir = tempfile::tempdir().expect("tempdir");
1189 std::fs::create_dir_all(dir.path().join(".git")).expect("git marker");
1190 std::fs::write(dir.path().join("a.txt"), "ok").expect("file");
1191 let root_str = dir.path().to_string_lossy().to_string();
1192
1193 let state = AppState {
1194 token: None,
1195 concurrency: Arc::new(tokio::sync::Semaphore::new(16)),
1196 rate: Arc::new(RateLimiter::new(50, 100)),
1197 project_root: root_str.clone(),
1198 timeout: Duration::from_secs(30),
1199 server: LeanCtxServer::new_shared_with_context(&root_str, "default", "default"),
1200 };
1201
1202 let app = Router::new()
1203 .route("/v1/events", get(v1_events))
1204 .with_state(state);
1205
1206 let rt = context_os::runtime();
1208 rt.bus.append(
1209 "ws1",
1210 "ch1",
1211 &ContextEventKindV1::ToolCallRecorded,
1212 Some("test-agent"),
1213 json!({"tool": "ctx_session", "action": "status"}),
1214 );
1215
1216 let req = Request::builder()
1217 .method("GET")
1218 .uri("/v1/events?workspaceId=ws1&channelId=ch1&since=0&limit=1")
1219 .header("Host", "localhost")
1220 .header("Accept", "text/event-stream")
1221 .body(Body::empty())
1222 .expect("req");
1223 let resp = app.clone().oneshot(req).await.expect("events");
1224 assert_eq!(resp.status(), StatusCode::OK);
1225
1226 let msg = read_first_sse_message(resp.into_body()).await;
1227 assert!(msg.contains("event: tool_call_recorded"), "msg={msg:?}");
1228 assert!(msg.contains("\"ws1\""), "msg={msg:?}");
1229 assert!(msg.contains("\"ch1\""), "msg={msg:?}");
1230 }
1231}