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TIC said nothing about what the agent does, and named the wrong thing: the tick belongs to the scheduler, which is generic and lives outside it. The agent's only decision is whether an incoming event deserves an interruption — it sorts, it never acts — so it is now event-triage, matching the functional naming of the two memory lints. - agents/tic/ -> agents/event-triage/, module tic/ -> event_triage/, TicManager -> EventTriageManager, TicConfig -> EventTriageConfig - agent id and chat source: "tic" -> "event-triage" - config keys: tic.* -> event_triage.*, and the config.yml section tic: -> event_triage: (greenfield: previously set values fall back to defaults) - i18n en/it/fr: Event triage / Triage eventi / Tri des evenements; dropped the stale "TIC sessions" mention from the debug-pages description - docs/system-agents.md, docs/index.md, docs/settings.md, CLAUDE.md, SKALD.md
165 lines
6.1 KiB
Rust
165 lines
6.1 KiB
Rust
//! In-process event bus for chat turns and system events.
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//!
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//! Every completed chat turn (user message + assistant response) is published
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//! here **after** both messages have been persisted to the DB successfully.
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//! Context compaction events are published when the compactor completes a
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//! summarisation cycle.
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//!
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//! Subscribers receive a clone of each [`BusEvent`] via a
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//! `tokio::sync::broadcast` channel.
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//!
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//! # Current consumers
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//! - `honcho` plugin: processes `UserMessage` and `AssistantResponse` variants.
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//!
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//! # Usage
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//! ```rust,ignore
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//! // Producer (ChatSessionHandler):
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//! bus.user_message(ChatEvent { ... });
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//! bus.assistant_response(ChatEvent { ... });
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//!
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//! // Producer (ContextCompactor):
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//! bus.compaction_done(CompactionEvent { ... });
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//!
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//! // Consumer (spawn once, keep running):
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//! let mut rx = bus.subscribe();
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//! tokio::spawn(async move {
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//! loop {
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//! match rx.recv().await {
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//! Ok(BusEvent::UserMessage(e)) => { /* ... */ }
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//! Ok(BusEvent::AssistantResponse(e)) => { /* ... */ }
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//! Ok(BusEvent::CompactionDone(e)) => { /* ... */ }
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//! Err(RecvError::Lagged(n)) => warn!("lagged by {n}"),
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//! Err(RecvError::Closed) => break,
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//! }
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//! }
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//! });
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//! ```
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use chrono::{DateTime, Utc};
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use tokio::sync::broadcast;
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pub use tokio::sync::broadcast::error::RecvError;
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/// Default channel capacity. At 256 events the bus can absorb a burst of 128
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/// turns before a slow consumer starts lagging.
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const DEFAULT_CAPACITY: usize = 256;
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// ── Sub-event types ───────────────────────────────────────────────────────────
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#[derive(Debug, Clone)]
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pub enum ChatEventRole {
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User,
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Assistant,
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/// Sub-agent invocation (role = "agent" in DB).
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Agent,
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}
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/// Per-tool-call detail attached to an assistant `ChatEvent`.
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#[derive(Debug, Clone)]
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pub struct ToolCallEvent {
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pub name: String,
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pub arguments: Option<String>,
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pub result: Option<String>,
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/// "done" | "failed"
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pub status: String,
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}
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/// A single message in a completed chat turn.
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#[derive(Debug, Clone)]
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pub struct ChatEvent {
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pub session_id: i64,
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pub stack_id: i64,
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/// The session owner's user id. Ids in this event (`session_id`, …) are local
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/// to that user's pool, so consumers scoping per-user (e.g. the Honcho memory
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/// sink) must key on `user_id` to avoid cross-user collisions.
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pub user_id: String,
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/// `chat_history.id` for this message.
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pub message_id: i64,
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pub role: ChatEventRole,
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pub content: String,
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/// True for system-generated messages that look like user turns
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/// (EventTriageManager passes, notification briefings).
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pub is_synthetic: bool,
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/// True when a real user is actively participating in the session
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/// (web, telegram). False for automated sessions (cron, event-triage).
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pub is_interactive: bool,
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/// True for short-lived task sessions (cron, event-triage) that have no
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/// long-term conversational value (e.g. skip Honcho memory sink).
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pub is_ephemeral: bool,
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/// Non-empty only for assistant messages that triggered tool calls.
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pub tool_calls: Vec<ToolCallEvent>,
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pub created_at: DateTime<Utc>,
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}
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/// Emitted after the compactor successfully persists a new summary.
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#[derive(Debug, Clone)]
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pub struct CompactionEvent {
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pub session_id: i64,
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pub stack_id: i64,
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/// `chat_summaries.id` of the newly created summary row.
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pub summary_id: i64,
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/// All `chat_history` rows with `id <= covers_up_to_message_id` are now
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/// covered by the summary and will no longer be sent to the LLM raw.
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pub covers_up_to_message_id: i64,
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/// Input token count of the turn that triggered this compaction.
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pub triggered_by_tokens: u32,
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}
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// ── Top-level bus event ───────────────────────────────────────────────────────
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/// All events that flow through the [`ChatEventBus`].
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#[derive(Debug, Clone)]
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pub enum BusEvent {
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/// A user (or synthetic) message was saved after a completed turn.
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UserMessage(ChatEvent),
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/// The assistant's final response was saved after a completed turn.
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AssistantResponse(ChatEvent),
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/// The context compactor created a new summary for a stack.
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CompactionDone(CompactionEvent),
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}
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// ── Bus ───────────────────────────────────────────────────────────────────────
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pub struct ChatEventBus {
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tx: broadcast::Sender<BusEvent>,
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}
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impl ChatEventBus {
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pub fn new() -> Self {
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Self::with_capacity(DEFAULT_CAPACITY)
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}
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pub fn with_capacity(capacity: usize) -> Self {
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let (tx, _) = broadcast::channel(capacity);
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Self { tx }
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}
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/// Publish a user message event. No-op if there are no active subscribers.
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pub fn user_message(&self, event: ChatEvent) {
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let _ = self.tx.send(BusEvent::UserMessage(event));
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}
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/// Publish an assistant response event. No-op if there are no active subscribers.
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pub fn assistant_response(&self, event: ChatEvent) {
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let _ = self.tx.send(BusEvent::AssistantResponse(event));
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}
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/// Publish a compaction-done event. No-op if there are no active subscribers.
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pub fn compaction_done(&self, event: CompactionEvent) {
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let _ = self.tx.send(BusEvent::CompactionDone(event));
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}
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/// Returns a new receiver. Each subscriber gets every future event
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/// independently. If the subscriber falls behind by more than the channel
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/// capacity it will receive `RecvError::Lagged(n)` — handle gracefully.
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pub fn subscribe(&self) -> broadcast::Receiver<BusEvent> {
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self.tx.subscribe()
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}
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}
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impl Default for ChatEventBus {
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fn default() -> Self {
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Self::new()
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}
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}
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