mirror of
https://github.com/outbackdingo/optimclaw.git
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* feat: multi-tenant auth with per-user scoping Multi-user authentication and authorization for IronClaw gateway: - Token-based auth mapping tokens to user IDs via GATEWAY_USER_TOKENS - Per-user SSE broadcast scoping - Per-user rate limiting with poisoned lock recovery - Handler auth and ownership checks for jobs, settings, routines - Extension secrets scoped per-user - Chat handlers use authenticated identity - Reverse proxy deployment documentation - Comprehensive integration tests for auth, SSE, rate limiting, and job isolation * fix: scope memory tools per-user in multi-tenant mode Memory tools (search, write, read, tree) held a single workspace created at startup with GATEWAY_USER_ID. In multi-tenant mode, all users' tool calls searched the default user's scope. Add WorkspaceResolver trait that resolves workspaces per-request using JobContext.user_id. In single-user mode, returns the startup workspace. In multi-tenant mode (GATEWAY_USER_TOKENS configured), creates and caches per-user workspaces on demand. Includes regression tests for workspace resolution and user isolation. Co-Authored-By: Claude Opus 4.6 (1M context) <[email protected]> * fix: comprehensive multi-tenant isolation audit Address all review findings from @serrrfirat plus 7 additional gaps found via full security audit: Reviewer findings (5): - WorkspacePool now applies search config, memory layers, embedding cache, identity read scopes, and global config scopes (was bare) - jobs_summary_handler uses per-user queries instead of global counters - jobs_prompt_handler restructured to not 404 agent jobs + ownership check - jobs_restart_handler agent branch now verifies user ownership - agent_job_summary_for_user added to Database trait + both backends Audit findings (7): - Delete dead handlers/memory.rs (stale copies with no auth) - Add AuthenticatedUser to logs_events, logs_level_get, logs_level_set - Add AuthenticatedUser to extensions_tools_handler, gateway_status_handler - Add auth + ownership checks to all 6 routines handlers - Add auth to all 4 skills handlers with audit logging on mutations - Scope extension setup SSE broadcast to user (broadcast_for_user) - Fix pre-existing test compilation errors in extensions/manager.rs 17 new multi-tenant isolation tests covering: - WorkspacePool config propagation and scope merging - Jobs handler per-user isolation (summary, restart, prompt, cancel) - Routines handler auth enforcement and cross-user rejection - Auth middleware enforcement on logs, skills, status endpoints Co-Authored-By: Claude Opus 4.6 (1M context) <[email protected]> * fix: second-pass multi-tenant audit — scope SSE broadcasts, DB queries, dead handlers Second audit pass applying learned patterns across the codebase: - OAuth callback SSE broadcasts now use broadcast_for_user (lines 773, 912) - jobs_list_handler uses list_agent_jobs_for_user instead of fetching all users' jobs and filtering in Rust - list_agent_jobs_for_user added to Database trait + postgres + libsql - Dead handler files (extensions.rs, static_files.rs) hardened with AuthenticatedUser to prevent auth regression if migrated Co-Authored-By: Claude Opus 4.6 (1M context) <[email protected]> * fix: address review findings — token hashing, broadcast scoping, error handling Security fixes: - Hash tokens with SHA-256 at construction time so authentication compares fixed-size 32-byte digests, eliminating length-oracle timing leaks - Scope auth SSE broadcasts per-user in chat_auth_token_handler — AuthRequired/AuthCompleted events were leaking across tenants - Propagate DB errors in restart handlers instead of silently swallowing via `if let Ok(Some(...))` pattern Code quality: - Log SSE serialization failures instead of silently producing empty strings via unwrap_or_default() - Remove dead `pub type AuthState = MultiAuthState` alias - Replace `.unwrap()` with `Arc::clone(db)` in app.rs multi-tenant workspace setup (db is guaranteed Some in context, but unwrap violates project convention) - Fix telegram setup test to inject UserIdentity into request extensions (handler now requires AuthenticatedUser) - Add safety comments on test-only expect/unwrap calls for CI - Apply cargo fmt to fix pre-existing formatting Co-Authored-By: Claude Opus 4.6 (1M context) <[email protected]> * fix: address review findings — unify workspace pool, fix SSE regression, cache job owners - Unify WorkspacePool and PerUserWorkspaceResolver: WorkspacePool now implements WorkspaceResolver, eliminating duplicate per-user workspace construction logic. app.rs uses WorkspacePool directly. - Fix sse_tx: None scheduler regression: change scheduler/worker SSE broadcasting from broadcast::Sender<SseEvent> to Arc<SseManager>, restoring SSE event delivery for scheduled agent jobs. - Cache job owner in orchestrator: add job_owner_cache to OrchestratorState so job_event_handler avoids a DB round-trip on every event after the first per job. - Deduplicate ext_user_id computation in main.rs. - Remove unused _gateway_state variable. - Fix pre-existing test: first_token() returns None in multi-user mode by design; align test assertion. Co-Authored-By: Claude Opus 4.6 (1M context) <[email protected]> * style: fix formatting in app.rs Co-Authored-By: Claude Opus 4.6 (1M context) <[email protected]> * refactor: extract memory handlers back into handlers/memory.rs Move memory API handlers out of server.rs into their own module, consistent with how jobs, routines, and skills handlers are organized. The resolve_workspace() helper moves with them since it is only used by memory handlers. Co-Authored-By: Claude Opus 4.6 (1M context) <[email protected]> --------- Co-authored-by: Claude Opus 4.6 (1M context) <[email protected]> Co-authored-by: [email protected] <[email protected]>
420 lines
14 KiB
Rust
420 lines
14 KiB
Rust
//! End-to-end integration tests for the WebSocket gateway.
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//!
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//! These tests start a real Axum server on a random port, connect a WebSocket
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//! client, and verify the full message flow:
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//! - WebSocket upgrade with auth
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//! - Ping/pong
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//! - Client message → agent msg_tx
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//! - Broadcast SSE event → WebSocket client
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//! - Connection tracking (counter increment/decrement)
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//! - Gateway status endpoint
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use std::net::SocketAddr;
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use std::sync::Arc;
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use std::time::Duration;
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use futures::{SinkExt, StreamExt};
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use tokio::sync::mpsc;
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use tokio::time::timeout;
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use tokio_tungstenite::tungstenite::Message;
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use tokio_tungstenite::tungstenite::client::IntoClientRequest;
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use ironclaw::channels::IncomingMessage;
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use ironclaw::channels::web::server::{GatewayState, start_server};
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use ironclaw::channels::web::sse::SseManager;
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use ironclaw::channels::web::types::SseEvent;
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use ironclaw::channels::web::ws::WsConnectionTracker;
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const AUTH_TOKEN: &str = "test-token-12345";
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const TIMEOUT: Duration = Duration::from_secs(5);
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/// Start a gateway server on a random port and return the bound address + agent
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/// message receiver.
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async fn start_test_server() -> (
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SocketAddr,
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Arc<GatewayState>,
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mpsc::Receiver<IncomingMessage>,
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) {
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let (agent_tx, agent_rx) = mpsc::channel(64);
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let state = Arc::new(GatewayState {
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msg_tx: tokio::sync::RwLock::new(Some(agent_tx)),
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sse: Arc::new(SseManager::new()),
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workspace: None,
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workspace_pool: None,
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session_manager: None,
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log_broadcaster: None,
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log_level_handle: None,
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extension_manager: None,
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tool_registry: None,
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store: None,
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job_manager: None,
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prompt_queue: None,
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scheduler: None,
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default_user_id: "test-user".to_string(),
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shutdown_tx: tokio::sync::RwLock::new(None),
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ws_tracker: Some(Arc::new(WsConnectionTracker::new())),
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llm_provider: None,
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skill_registry: None,
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skill_catalog: None,
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chat_rate_limiter: ironclaw::channels::web::server::PerUserRateLimiter::new(30, 60),
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oauth_rate_limiter: ironclaw::channels::web::server::RateLimiter::new(10, 60),
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webhook_rate_limiter: ironclaw::channels::web::server::RateLimiter::new(10, 60),
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registry_entries: Vec::new(),
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cost_guard: None,
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routine_engine: Arc::new(tokio::sync::RwLock::new(None)),
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startup_time: std::time::Instant::now(),
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active_config: ironclaw::channels::web::server::ActiveConfigSnapshot::default(),
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});
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let auth = ironclaw::channels::web::auth::MultiAuthState::single(
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AUTH_TOKEN.to_string(),
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"test-user".to_string(),
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);
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let addr: SocketAddr = "127.0.0.1:0".parse().unwrap();
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let bound_addr = start_server(addr, state.clone(), auth)
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.await
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.expect("Failed to start test server");
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(bound_addr, state, agent_rx)
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}
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/// Connect a WebSocket client with auth token in query parameter.
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async fn connect_ws(
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addr: SocketAddr,
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) -> tokio_tungstenite::WebSocketStream<tokio_tungstenite::MaybeTlsStream<tokio::net::TcpStream>> {
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let url = format!("ws://{}/api/chat/ws?token={}", addr, AUTH_TOKEN);
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let mut request = url.into_client_request().unwrap();
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// Server requires an Origin header from localhost to prevent cross-site WS hijacking.
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request.headers_mut().insert(
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"Origin",
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format!("http://127.0.0.1:{}", addr.port()).parse().unwrap(),
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);
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let (stream, _response) = tokio_tungstenite::connect_async(request)
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.await
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.expect("Failed to connect WebSocket");
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stream
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}
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/// Read the next text frame from the WebSocket, with a timeout.
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async fn recv_text(
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stream: &mut (impl StreamExt<Item = Result<Message, tokio_tungstenite::tungstenite::Error>> + Unpin),
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) -> String {
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let msg = timeout(TIMEOUT, stream.next())
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.await
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.expect("Timed out waiting for WS message")
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.expect("Stream ended")
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.expect("WS error");
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match msg {
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Message::Text(text) => text.to_string(),
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other => panic!("Expected Text frame, got {:?}", other),
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}
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}
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// ============================================================================
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// Tests
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// ============================================================================
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#[tokio::test]
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async fn test_ws_ping_pong() {
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let (addr, _state, _agent_rx) = start_test_server().await;
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let mut ws = connect_ws(addr).await;
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// Send ping
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let ping = r#"{"type":"ping"}"#;
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ws.send(Message::Text(ping.into())).await.unwrap();
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// Expect pong
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let text = recv_text(&mut ws).await;
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let parsed: serde_json::Value = serde_json::from_str(&text).unwrap();
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assert_eq!(parsed["type"], "pong");
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ws.close(None).await.unwrap();
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}
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#[tokio::test]
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async fn test_ws_message_reaches_agent() {
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let (addr, _state, mut agent_rx) = start_test_server().await;
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let mut ws = connect_ws(addr).await;
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// Send a chat message
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let msg = r#"{"type":"message","content":"hello from ws","thread_id":"t42"}"#;
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ws.send(Message::Text(msg.into())).await.unwrap();
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// Verify it arrives on the agent's msg_tx
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let incoming = timeout(TIMEOUT, agent_rx.recv())
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.await
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.expect("Timed out waiting for agent message")
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.expect("Agent channel closed");
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assert_eq!(incoming.content, "hello from ws");
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assert_eq!(incoming.thread_id.as_deref(), Some("t42"));
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assert_eq!(incoming.channel, "gateway");
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assert_eq!(incoming.user_id, "test-user");
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ws.close(None).await.unwrap();
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}
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#[tokio::test]
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async fn test_ws_broadcast_event_received() {
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let (addr, state, _agent_rx) = start_test_server().await;
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let mut ws = connect_ws(addr).await;
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// Give the connection a moment to fully establish
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tokio::time::sleep(Duration::from_millis(50)).await;
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// Broadcast an SSE event (simulates agent sending a response)
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state.sse.broadcast(SseEvent::Response {
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content: "agent says hi".to_string(),
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thread_id: "t1".to_string(),
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});
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// The WS client should receive it
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let text = recv_text(&mut ws).await;
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let parsed: serde_json::Value = serde_json::from_str(&text).unwrap();
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assert_eq!(parsed["type"], "event");
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assert_eq!(parsed["event_type"], "response");
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assert_eq!(parsed["data"]["content"], "agent says hi");
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ws.close(None).await.unwrap();
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}
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#[tokio::test]
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async fn test_ws_thinking_event() {
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let (addr, state, _agent_rx) = start_test_server().await;
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let mut ws = connect_ws(addr).await;
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tokio::time::sleep(Duration::from_millis(50)).await;
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state.sse.broadcast(SseEvent::Thinking {
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message: "analyzing...".to_string(),
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thread_id: None,
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});
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let text = recv_text(&mut ws).await;
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let parsed: serde_json::Value = serde_json::from_str(&text).unwrap();
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assert_eq!(parsed["type"], "event");
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assert_eq!(parsed["event_type"], "thinking");
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assert_eq!(parsed["data"]["message"], "analyzing...");
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ws.close(None).await.unwrap();
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}
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#[tokio::test]
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async fn test_ws_connection_tracking() {
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let (addr, state, _agent_rx) = start_test_server().await;
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let tracker = state.ws_tracker.as_ref().unwrap();
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assert_eq!(tracker.connection_count(), 0);
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// Connect first client
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let ws1 = connect_ws(addr).await;
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tokio::time::sleep(Duration::from_millis(50)).await;
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assert_eq!(tracker.connection_count(), 1);
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// Connect second client
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let ws2 = connect_ws(addr).await;
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tokio::time::sleep(Duration::from_millis(50)).await;
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assert_eq!(tracker.connection_count(), 2);
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// Disconnect first
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drop(ws1);
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tokio::time::sleep(Duration::from_millis(100)).await;
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assert_eq!(tracker.connection_count(), 1);
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// Disconnect second
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drop(ws2);
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tokio::time::sleep(Duration::from_millis(100)).await;
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assert_eq!(tracker.connection_count(), 0);
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}
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#[tokio::test]
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async fn test_ws_invalid_message_returns_error() {
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let (addr, _state, _agent_rx) = start_test_server().await;
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let mut ws = connect_ws(addr).await;
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// Send invalid JSON
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ws.send(Message::Text("not json".into())).await.unwrap();
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// Should get an error message back
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let text = recv_text(&mut ws).await;
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let parsed: serde_json::Value = serde_json::from_str(&text).unwrap();
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assert_eq!(parsed["type"], "error");
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assert!(
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parsed["message"]
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.as_str()
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.unwrap()
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.contains("Invalid message")
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);
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ws.close(None).await.unwrap();
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}
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#[tokio::test]
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async fn test_ws_unknown_type_returns_error() {
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let (addr, _state, _agent_rx) = start_test_server().await;
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let mut ws = connect_ws(addr).await;
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// Send valid JSON but unknown message type
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ws.send(Message::Text(r#"{"type":"foobar"}"#.into()))
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.await
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.unwrap();
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let text = recv_text(&mut ws).await;
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let parsed: serde_json::Value = serde_json::from_str(&text).unwrap();
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assert_eq!(parsed["type"], "error");
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ws.close(None).await.unwrap();
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}
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#[tokio::test]
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async fn test_gateway_status_endpoint() {
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let (addr, _state, _agent_rx) = start_test_server().await;
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// Connect a WS client
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let _ws = connect_ws(addr).await;
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tokio::time::sleep(Duration::from_millis(50)).await;
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// Hit the status endpoint
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let client = reqwest::Client::new();
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let resp = client
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.get(format!("http://{}/api/gateway/status", addr))
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.header("Authorization", format!("Bearer {}", AUTH_TOKEN))
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.send()
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.await
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.expect("Failed to fetch status");
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assert_eq!(resp.status(), 200);
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let body: serde_json::Value = resp.json().await.unwrap();
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assert_eq!(body["ws_connections"], 1);
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assert!(body["total_connections"].as_u64().unwrap() >= 1);
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}
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#[tokio::test]
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async fn test_ws_no_auth_rejected() {
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let (addr, _state, _agent_rx) = start_test_server().await;
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// Try to connect without auth token
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let url = format!("ws://{}/api/chat/ws", addr);
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let request = url.into_client_request().unwrap();
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let result = tokio_tungstenite::connect_async(request).await;
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// Should fail (401 from auth middleware before WS upgrade)
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assert!(result.is_err());
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}
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#[tokio::test]
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async fn test_ws_multiple_events_in_sequence() {
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let (addr, state, _agent_rx) = start_test_server().await;
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let mut ws = connect_ws(addr).await;
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tokio::time::sleep(Duration::from_millis(50)).await;
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// Broadcast multiple events rapidly
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state.sse.broadcast(SseEvent::Thinking {
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message: "step 1".to_string(),
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thread_id: None,
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});
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state.sse.broadcast(SseEvent::ToolStarted {
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name: "shell".to_string(),
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thread_id: None,
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});
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state.sse.broadcast(SseEvent::ToolCompleted {
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name: "shell".to_string(),
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success: true,
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error: None,
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parameters: None,
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thread_id: None,
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});
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state.sse.broadcast(SseEvent::Response {
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content: "done".to_string(),
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thread_id: "t1".to_string(),
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});
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// Receive all 4 in order
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let t1 = recv_text(&mut ws).await;
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let t2 = recv_text(&mut ws).await;
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let t3 = recv_text(&mut ws).await;
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let t4 = recv_text(&mut ws).await;
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let p1: serde_json::Value = serde_json::from_str(&t1).unwrap();
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let p2: serde_json::Value = serde_json::from_str(&t2).unwrap();
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let p3: serde_json::Value = serde_json::from_str(&t3).unwrap();
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let p4: serde_json::Value = serde_json::from_str(&t4).unwrap();
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assert_eq!(p1["event_type"], "thinking");
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assert_eq!(p2["event_type"], "tool_started");
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assert_eq!(p3["event_type"], "tool_completed");
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assert_eq!(p4["event_type"], "response");
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ws.close(None).await.unwrap();
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}
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/// Regression test: verify session lock is not held during API handler operations.
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///
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/// This test ensures that concurrent API requests (e.g., listing threads) don't
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/// block the agent loop from processing messages. Previously, chat_threads_handler
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/// and chat_history_handler held session locks during slow DB operations, which
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/// would deadlock the agent loop waiting to resolve sessions for incoming messages.
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///
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/// The test verifies that concurrent access to session state completes quickly
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/// without deadlock. If locks are heavily contended, the test will timeout.
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#[tokio::test]
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async fn test_session_lock_not_held_during_api_operations() {
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use ironclaw::agent::SessionManager;
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let (_addr, _state, _agent_rx) = start_test_server().await;
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// Create a session manager and attach it to state
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let session_manager = Arc::new(SessionManager::new());
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// Note: We can't directly modify state.session_manager in the test due to its type.
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// Instead, we test the session manager directly in isolation to verify lock behavior.
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// Spawn concurrent operations simulating API handler + agent loop interaction
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let mut handles = vec![];
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// Simulate API handler threads accessing sessions
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for user_id in 0..5 {
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let sm = session_manager.clone();
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handles.push(tokio::spawn(async move {
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for _ in 0..20 {
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let session = sm.get_or_create_session(&format!("user-{}", user_id)).await;
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// Lock and release quickly (simulating API reading session state)
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{
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let _sess = session.lock().await;
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tokio::time::sleep(Duration::from_micros(100)).await;
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}
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}
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}));
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}
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// Simulate agent loop thread resolving threads
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let sm = session_manager.clone();
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|
let agent_handle = tokio::spawn(async move {
|
|
for i in 0..20 {
|
|
let (_session, _thread_id) = sm
|
|
.resolve_thread(&format!("user-{}", i % 5), "gateway", None)
|
|
.await;
|
|
// Should not block waiting for API handler locks
|
|
tokio::time::sleep(Duration::from_micros(100)).await;
|
|
}
|
|
});
|
|
handles.push(agent_handle);
|
|
|
|
// Wait for all tasks to complete within reasonable time
|
|
// If session locks are held during slow operations, this will timeout
|
|
let timeout_duration = Duration::from_secs(5);
|
|
let wait_result = timeout(timeout_duration, async {
|
|
for handle in handles {
|
|
let _ = handle.await;
|
|
}
|
|
})
|
|
.await;
|
|
|
|
assert!(
|
|
wait_result.is_ok(),
|
|
"Concurrent session access deadlocked or timed out. \
|
|
This suggests session locks are held too long during I/O operations."
|
|
);
|
|
}
|