use std::sync::Arc;
use dashmap::DashMap;
use tokio::sync::{broadcast, mpsc, Mutex};
use trustee_core::session::Session;
use trustee_core::types::TuiMessage;
use crate::auth::AuthState;
pub struct UserSession {
pub session: Arc<Mutex<Session>>,
pub ws_tx: broadcast::Sender<String>,
pub token_store: Arc<pep::MemoryTokenStore>,
}
impl UserSession {
pub fn new(session: Session) -> Self {
let (ws_tx, _ws_rx) = broadcast::channel::<String>(256);
let token_store = Arc::new(pep::MemoryTokenStore::new());
Self {
session: Arc::new(Mutex::new(session)),
ws_tx,
token_store,
}
}
}
pub type SessionRegistry = Arc<DashMap<String, UserSession>>;
#[derive(Clone)]
pub struct ServerState {
pub sessions: SessionRegistry,
pub ws_tx: broadcast::Sender<String>,
pub auth: Option<Arc<AuthState>>,
pub config_toml: Option<String>,
pub secrets: Option<std::collections::HashMap<String, String>>,
pub build_info: Option<trustee_core::types::BuildInfo>,
pub workflow_semaphore: Arc<tokio::sync::Semaphore>,
}
impl ServerState {
pub fn new(
session: Session,
ws_tx: broadcast::Sender<String>,
auth: Option<Arc<AuthState>>,
) -> Self {
let sessions = Arc::new(DashMap::new());
let token_store = Arc::new(pep::MemoryTokenStore::new());
sessions.insert(
"default".to_string(),
UserSession {
session: Arc::new(Mutex::new(session)),
ws_tx: ws_tx.clone(),
token_store,
},
);
Self {
sessions,
ws_tx,
auth,
config_toml: None,
secrets: None,
build_info: None,
workflow_semaphore: Arc::new(tokio::sync::Semaphore::new(8)),
}
}
pub fn with_config_toml(mut self, config_toml: String) -> Self {
self.config_toml = Some(config_toml);
self
}
pub fn with_secrets(mut self, secrets: std::collections::HashMap<String, String>) -> Self {
self.secrets = Some(secrets);
self
}
pub fn with_build_info(mut self, build_info: trustee_core::types::BuildInfo) -> Self {
self.build_info = Some(build_info);
self
}
pub fn with_max_concurrent_workflows(mut self, max: usize) -> Self {
self.workflow_semaphore = Arc::new(tokio::sync::Semaphore::new(max));
self
}
pub async fn ensure_user_session(
&self,
user_key: &str,
) -> (Arc<Mutex<Session>>, broadcast::Sender<String>, Arc<pep::MemoryTokenStore>) {
if let Some(entry) = self.sessions.get(user_key) {
return (
entry.session.clone(),
entry.ws_tx.clone(),
entry.token_store.clone(),
);
}
let (mut session, workflow_rx) = Session::new();
if let Some(ref config_toml) = self.config_toml {
session.config_toml = Some(config_toml.clone());
session.parse_auto_handoff_config();
if let Ok(table) = config_toml.parse::<toml::Value>() {
if let Some(name) = table.get("agent").and_then(|a| a.get("name")).and_then(|n| n.as_str()) {
session.agent_name = name.to_string();
}
}
}
session.secrets = self.secrets.clone();
session.build_info = self.build_info.clone();
if user_key != "default" {
session.project_id = Some(format!("user:{user_key}"));
}
let user_session = UserSession::new(session);
let session_arc = user_session.session.clone();
let ws_tx = user_session.ws_tx.clone();
let token_store = user_session.token_store.clone();
self.sessions.insert(user_key.to_string(), user_session);
self.spawn_user_drain_task(
user_key.to_string(),
session_arc.clone(),
ws_tx.clone(),
workflow_rx,
);
(session_arc, ws_tx, token_store)
}
fn spawn_user_drain_task(
&self,
user_key: String,
session: Arc<Mutex<Session>>,
ws_tx: broadcast::Sender<String>,
mut workflow_rx: mpsc::UnboundedReceiver<TuiMessage>,
) {
tokio::spawn(async move {
while let Some(msg) = workflow_rx.recv().await {
{
let mut session = session.lock().await;
session.handle_workflow_message(msg.clone());
let state_str = match session.workflow_state {
trustee_core::types::WorkflowState::Idle => "Idle",
trustee_core::types::WorkflowState::Running => "Running",
trustee_core::types::WorkflowState::Cancelling => "Cancelling",
};
let state_msg = serde_json::json!({
"type": "StateChanged",
"state": state_str
});
let _ = ws_tx.send(state_msg.to_string());
}
let json = serde_json::to_string(&SerializableMessage(&msg)).unwrap_or_default();
let _ = ws_tx.send(json);
}
tracing::debug!("Drain task ended for user: {}", user_key);
});
}
pub fn spawn_drain_task(self, mut workflow_rx: mpsc::UnboundedReceiver<TuiMessage>) {
let default_entry = self.sessions.get("default").expect("default session must exist");
let session = default_entry.session.clone();
let ws_tx = default_entry.ws_tx.clone();
drop(default_entry);
tokio::spawn(async move {
while let Some(msg) = workflow_rx.recv().await {
{
let mut session = session.lock().await;
session.handle_workflow_message(msg.clone());
let state_str = match session.workflow_state {
trustee_core::types::WorkflowState::Idle => "Idle",
trustee_core::types::WorkflowState::Running => "Running",
trustee_core::types::WorkflowState::Cancelling => "Cancelling",
};
let state_msg = serde_json::json!({
"type": "StateChanged",
"state": state_str
});
let _ = ws_tx.send(state_msg.to_string());
}
let json = serde_json::to_string(&SerializableMessage(&msg)).unwrap_or_default();
let _ = ws_tx.send(json);
}
});
}
pub async fn resolve_user_key(&self, headers: &axum::http::HeaderMap) -> String {
let Some(ref auth) = self.auth else {
return "default".to_string();
};
if let Some(token) = headers
.get(axum::http::header::AUTHORIZATION)
.and_then(|v| v.to_str().ok())
.and_then(|v| v.strip_prefix("Bearer "))
.map(|s| s.to_string())
{
if token.starts_with("dev:") {
let parts: Vec<&str> = token.splitn(4, ':').collect();
if parts.len() >= 4 {
return format!("dev:{}", parts[1]);
}
}
if let Ok(claims) = auth.validate_token(&token).await {
return claims.sub;
}
}
let cookie_session_id = headers
.get(axum::http::header::COOKIE)
.and_then(|v| v.to_str().ok())
.and_then(|cookies| {
cookies
.split(';')
.map(|c| c.trim())
.find_map(|c| c.strip_prefix(&format!("{}=", auth.config.cookie_name)))
.map(|s| s.to_string())
});
if let Some(session_id) = cookie_session_id {
if session_id.starts_with("dev:") {
let parts: Vec<&str> = session_id.splitn(4, ':').collect();
if parts.len() >= 4 {
return format!("dev:{}", parts[1]);
}
}
if let Ok(access_token) = auth.session_manager.get_token(&session_id).await {
if let Ok(claims) = auth.validate_token(&access_token).await {
return claims.sub;
}
}
}
"default".to_string()
}
}
struct SerializableMessage<'a>(&'a TuiMessage);
impl<'a> serde::Serialize for SerializableMessage<'a> {
fn serialize<S>(&self, serializer: S) -> Result<S::Ok, S::Error>
where
S: serde::Serializer,
{
use serde::ser::SerializeStruct;
match self.0 {
TuiMessage::OutputLine(line) => {
let mut s = serializer.serialize_struct("msg", 2)?;
s.serialize_field("type", "OutputLine")?;
s.serialize_field("line", line)?;
s.end()
}
TuiMessage::StreamDelta(delta) => {
let mut s = serializer.serialize_struct("msg", 2)?;
s.serialize_field("type", "StreamDelta")?;
s.serialize_field("delta", delta)?;
s.end()
}
TuiMessage::ReasoningDelta(delta) => {
let mut s = serializer.serialize_struct("msg", 2)?;
s.serialize_field("type", "ReasoningDelta")?;
s.serialize_field("delta", delta)?;
s.end()
}
TuiMessage::WorkflowCompleted => {
let mut s = serializer.serialize_struct("msg", 2)?;
s.serialize_field("type", "WorkflowCompleted")?;
s.serialize_field("state", "Idle")?;
s.end()
}
TuiMessage::WorkflowError(err) => {
let mut s = serializer.serialize_struct("msg", 2)?;
s.serialize_field("type", "WorkflowError")?;
s.serialize_field("error", err)?;
s.end()
}
TuiMessage::ResumeInfo(info) => {
match info {
Some(ri) => {
let mut s = serializer.serialize_struct("msg", 5)?;
s.serialize_field("type", "ResumeInfo")?;
s.serialize_field("state", "Idle")?;
s.serialize_field("session_id", &ri.session_id)?;
s.serialize_field("checkpoint_id", &ri.checkpoint_id)?;
s.serialize_field("iteration", &ri.iteration)?;
s.end()
}
None => {
let mut s = serializer.serialize_struct("msg", 2)?;
s.serialize_field("type", "ResumeInfo")?;
s.serialize_field("state", "Idle")?;
s.end()
}
}
}
TuiMessage::TodoUpdate(content) => {
let mut s = serializer.serialize_struct("msg", 2)?;
s.serialize_field("type", "TodoUpdate")?;
s.serialize_field("content", content)?;
s.end()
}
TuiMessage::WorkflowCancelled => {
let mut s = serializer.serialize_struct("msg", 2)?;
s.serialize_field("type", "WorkflowCancelled")?;
s.serialize_field("state", "Idle")?;
s.end()
}
TuiMessage::HandoffReady(_) => {
let mut s = serializer.serialize_struct("msg", 2)?;
s.serialize_field("type", "HandoffReady")?;
s.serialize_field("state", "Idle")?;
s.end()
}
TuiMessage::ToolPending { tool_name, hint } => {
let mut s = serializer.serialize_struct("msg", 3)?;
s.serialize_field("type", "ToolPending")?;
s.serialize_field("tool_name", tool_name)?;
s.serialize_field("hint", hint)?;
s.end()
}
TuiMessage::ToolDone { tool_name, success, hint } => {
let mut s = serializer.serialize_struct("msg", 4)?;
s.serialize_field("type", "ToolDone")?;
s.serialize_field("tool_name", tool_name)?;
s.serialize_field("success", success)?;
s.serialize_field("hint", hint)?;
s.end()
}
TuiMessage::ContextTokensUpdated(count) => {
let mut s = serializer.serialize_struct("msg", 2)?;
s.serialize_field("type", "ContextTokensUpdated")?;
s.serialize_field("count", count)?;
s.end()
}
TuiMessage::McpServerStatus { name, connected, tool_count, error } => {
let mut s = serializer.serialize_struct("msg", 5)?;
s.serialize_field("type", "McpServerStatus")?;
s.serialize_field("name", name)?;
s.serialize_field("connected", connected)?;
s.serialize_field("tool_count", tool_count)?;
s.serialize_field("error", error)?;
s.end()
}
}
}
}