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aion_core/
activity_event.rs

1//! The `ActivityEvent` envelope for the agent-observability real-time channel.
2//!
3//! This module defines the *typed contract* for a live, durable, per-`(workflow, run, activity,
4//! attempt)` transcript of what an agent harness is doing inside an activity: its messages,
5//! tool calls, tool results, progress, stop reasons, and (ephemeral) token deltas. It is the
6//! sibling of [`crate::cluster_event`] — a **non-replay real-time DTO** that crosses the
7//! Rust -> TypeScript boundary via `ts-rs` into the ops-console generated bindings.
8//!
9//! The wire shapes live in `aion-core` (not `aion-server` / the SDK) for the same reason the
10//! cluster events do: only this leaf crate depends on `ts-rs`, so this is the single place a
11//! Rust type can cross into the ops console's generated union. The `aion-integrations` SDK
12//! re-exports these neutral types; the worker-side per-harness adapter is the single point that
13//! maps a harness's native events into this envelope.
14//!
15//! # Harness neutrality (LOCKED)
16//!
17//! Every type in this module is **harness-neutral**: it names no agent harness, no transport,
18//! and no wire protocol. There is no `Norn`, no JSON-RPC, and no stdio concept here. A harness
19//! is integrated by mapping its native events into these shapes in the worker-side adapter,
20//! never by editing this module. [`ActivityEventKind::Raw`] is the passthrough fallback that
21//! makes the harness-agnostic path possible (and forward-compatible when a harness emits a
22//! shape the adapter does not yet classify).
23//!
24//! # Observability, never replay
25//!
26//! An `ActivityEvent` is an observability record. It is **never** part of the workflow replay
27//! log: the replay-authoritative output of an activity is its single terminal result, not its
28//! transcript. These types deliberately carry no behaviour and no engine coupling — they are
29//! pure data.
30//!
31//! # `u64` precision across the TS boundary
32//!
33//! The ts-rs config exports every `u64` as TS `number` (`with_large_int("number")`), which
34//! truncates above `2^53`. [`ActivityEvent::worker_seq`] and [`ActivityEvent::store_seq`] are
35//! `u64`. This is the *same* accepted ceiling that already applies to [`crate::EventEnvelope::seq`]
36//! and the cluster channel's sequence fields; the transcript sequence follows the established
37//! project convention rather than a divergent string encoding.
38
39use chrono::{DateTime, Utc};
40use serde::{Deserialize, Serialize};
41use uuid::Uuid;
42
43use crate::ids::{ActivityId, RunId, WorkflowId};
44
45/// The role a conversational message is attributed to.
46///
47/// Harness-neutral: the worker-side adapter maps a harness's native speaker attribution onto
48/// these roles. `Tool` covers a tool/function participant turn where the harness models one.
49#[derive(Serialize, Deserialize, ts_rs::TS, Clone, Copy, Debug, PartialEq, Eq)]
50#[serde(tag = "role")]
51pub enum MessageRole {
52    /// A turn attributed to the operator / end user.
53    User,
54    /// A turn produced by the agent (model output).
55    Assistant,
56    /// A system / instruction turn.
57    System,
58    /// A turn attributed to a tool or function participant.
59    Tool,
60}
61
62/// A fine-grained progress signal within an activity attempt.
63///
64/// Harness-neutral projection of the incremental, non-terminal signals a harness can emit
65/// (streaming text/thinking fragments, tool-call argument streaming, usage estimates). It is a
66/// tagged union so a harness advertises only the progress shapes it actually produces; anything
67/// unclassifiable falls through to [`ActivityEventKind::Raw`] instead.
68#[derive(Serialize, Deserialize, ts_rs::TS, Clone, Debug, PartialEq)]
69#[serde(tag = "detail")]
70pub enum ProgressDetail {
71    /// A running estimate of resource usage for the attempt so far.
72    UsageEstimate {
73        /// Estimated input (prompt) tokens consumed so far, when the harness reports it.
74        input_tokens: Option<u64>,
75        /// Estimated output (completion) tokens produced so far, when the harness reports it.
76        output_tokens: Option<u64>,
77    },
78    /// A free-form, human-readable progress note the adapter could not model more precisely.
79    Note {
80        /// The progress note text.
81        text: String,
82    },
83}
84
85/// Why an agent run reached a terminal boundary.
86///
87/// Harness-neutral projection of a harness's native stop/finish reason. `Other` carries the
88/// harness's raw reason label for reasons this neutral set does not enumerate, so no stop reason
89/// is ever silently dropped.
90#[derive(Serialize, Deserialize, ts_rs::TS, Clone, Debug, PartialEq, Eq)]
91#[serde(tag = "stop")]
92pub enum StopKind {
93    /// The agent completed its turn normally (produced its result).
94    EndTurn,
95    /// The agent stopped to await a tool result before continuing.
96    ToolUse,
97    /// The run hit a configured resource limit (tokens / turns / time).
98    LimitReached,
99    /// The run was cancelled (e.g. by an intervention or shutdown).
100    Cancelled,
101    /// The run stopped because of an error.
102    Error {
103        /// Human-readable error description.
104        message: String,
105    },
106    /// A stop reason this neutral set does not enumerate; carries the harness's raw label.
107    Other {
108        /// The harness's raw stop-reason label.
109        reason: String,
110    },
111}
112
113/// The payload of an [`ActivityEvent`] — the classified kind of transcript signal.
114///
115/// **Kinds are LOCKED:** `Message`, `ToolCall`, `ToolResult`, `Progress`, `Stop`, `Raw`, plus
116/// `Delta` carried on the same channel but flagged ephemeral (forwarded to the WS, never
117/// persisted). [`Self::Raw`] is the passthrough fallback — critical for the harness-agnostic
118/// path and for forward-compat when a harness adds an event shape the adapter does not yet map.
119#[derive(Serialize, Deserialize, ts_rs::TS, Clone, Debug, PartialEq)]
120#[serde(tag = "kind")]
121pub enum ActivityEventKind {
122    /// A complete conversational message (assistant text/thinking, an operator turn, etc.).
123    Message {
124        /// Who the message is attributed to.
125        role: MessageRole,
126        /// The message text.
127        text: String,
128    },
129    /// The agent invoked a tool/function with structured input.
130    ToolCall {
131        /// The tool/function name.
132        tool: String,
133        /// Correlation id linking this call to its eventual [`Self::ToolResult`].
134        call_id: String,
135        /// The structured tool input.
136        #[ts(type = "unknown")]
137        input: serde_json::Value,
138    },
139    /// A tool/function returned a result for a prior [`Self::ToolCall`].
140    ToolResult {
141        /// Correlation id matching the originating [`Self::ToolCall`].
142        call_id: String,
143        /// The structured tool output.
144        #[ts(type = "unknown")]
145        output: serde_json::Value,
146        /// Whether the tool reported an error result.
147        is_error: bool,
148    },
149    /// A fine-grained, non-terminal progress signal.
150    Progress {
151        /// The progress detail.
152        detail: ProgressDetail,
153    },
154    /// The agent run reached a terminal boundary.
155    Stop {
156        /// Why the run stopped.
157        reason: StopKind,
158    },
159    /// Passthrough fallback for an unmapped or other-harness line.
160    ///
161    /// Carries the source label the adapter observed and the raw value verbatim, so nothing is
162    /// ever silently dropped and the harness-agnostic path stays lossless.
163    Raw {
164        /// A label identifying where the raw value came from (adapter-defined).
165        source: String,
166        /// The raw value, passed through verbatim.
167        #[ts(type = "unknown")]
168        value: serde_json::Value,
169    },
170    /// An ephemeral token delta — forwarded to the WS only, **never persisted**.
171    ///
172    /// Always carried with [`ActivityEvent::ephemeral`] set to `true`.
173    Delta {
174        /// The id of the message this fragment belongs to.
175        message_id: String,
176        /// The incremental text fragment.
177        text_fragment: String,
178    },
179}
180
181/// A live transcript event for one `(workflow, run, activity, attempt)` produced by an agent
182/// harness.
183///
184/// Streamed to the ops console in real time and persisted to a durable observability keyspace
185/// (except [`Self::ephemeral`] events). It is **never** mixed into workflow replay history — the
186/// activity's single terminal result is the replay-authoritative output, not this transcript.
187///
188/// # The run axis is REQUIRED, not optional
189///
190/// A continue-as-new chain reuses one [`WorkflowId`] across generations while activity ordinals
191/// restart at `0` and attempts restart at `1` in each new run. Without [`Self::run_id`] two
192/// generations of one chain produce byte-identical stream identities, and their transcripts fuse:
193/// generation two's first event lands on generation one's stream head. `run_id` is therefore a
194/// plain required field — an `Option` would let the ambiguity back in through the `None` arm, and
195/// there is no honest value to default it to. The same law already holds one layer over, where
196/// the activity idempotency key is run-scoped over the identical triple.
197///
198/// # Ordering
199///
200/// [`Self::emitted_at`] and [`Self::worker_seq`] are best-effort producer-side ordering hints.
201/// [`Self::store_seq`] is assigned by the server at durable-commit time and is `None` until the
202/// event has been persisted — an unpersisted (e.g. ephemeral, or in-flight) event carries no
203/// store sequence.
204#[derive(Serialize, Deserialize, ts_rs::TS, Clone, Debug, PartialEq)]
205pub struct ActivityEvent {
206    /// The workflow this activity belongs to.
207    pub workflow_id: WorkflowId,
208    /// The concrete run of that workflow this event was produced in — the second stream axis.
209    ///
210    /// Required. Two generations of one continue-as-new chain share a `workflow_id` and restart
211    /// their ordinals and attempts, so this is the only field that keeps their transcripts apart.
212    pub run_id: RunId,
213    /// The activity within the workflow.
214    pub activity_id: ActivityId,
215    /// The attempt number of the activity this event was produced during.
216    pub attempt: u32,
217    /// Sub-identity of the agent that produced this event — REQUIRED for multi-agent
218    /// attribution (a single activity attempt may run several agents).
219    pub agent_id: Uuid,
220    /// The role/label of the producing agent (e.g. an orchestrator vs a sub-agent).
221    pub agent_role: String,
222    /// Producer-clock instant the event was emitted (best-effort ordering hint).
223    pub emitted_at: DateTime<Utc>,
224    /// Worker-local best-effort monotonic sequence.
225    ///
226    /// Exported to TypeScript as `number`; see the module docs for the accepted `2^53` ceiling.
227    pub worker_seq: u64,
228    /// Server-stamped monotonic sequence assigned at durable-commit time; `None` until the event
229    /// is persisted (ephemeral events are never persisted and always carry `None`).
230    ///
231    /// Exported to TypeScript as `number`; see the module docs for the accepted `2^53` ceiling.
232    pub store_seq: Option<u64>,
233    /// When `true`, this event is WS-forward-only and is **never persisted** (token deltas).
234    pub ephemeral: bool,
235    /// The classified payload of this event.
236    pub kind: ActivityEventKind,
237}
238
239#[cfg(test)]
240mod tests {
241    use chrono::{DateTime, Utc};
242    use serde::de::DeserializeOwned;
243    use serde_json::json;
244    use uuid::Uuid;
245
246    use super::{
247        ActivityEvent, ActivityEventKind, MessageRole, ProgressDetail, RunId, StopKind, WorkflowId,
248    };
249    use crate::ids::ActivityId;
250
251    fn fixed_time() -> DateTime<Utc> {
252        DateTime::from_timestamp(1_700_000_000, 0).unwrap_or_default()
253    }
254
255    fn round_trip<T>(value: &T) -> Result<T, serde_json::Error>
256    where
257        T: DeserializeOwned + serde::Serialize,
258    {
259        let json = serde_json::to_string(value)?;
260        serde_json::from_str::<T>(&json)
261    }
262
263    fn envelope(kind: ActivityEventKind, ephemeral: bool, store_seq: Option<u64>) -> ActivityEvent {
264        ActivityEvent {
265            workflow_id: WorkflowId::new(Uuid::nil()),
266            run_id: RunId::new(Uuid::from_u128(5)),
267            activity_id: ActivityId::from_sequence_position(7),
268            attempt: 2,
269            agent_id: Uuid::nil(),
270            agent_role: "orchestrator".to_owned(),
271            emitted_at: fixed_time(),
272            worker_seq: 42,
273            store_seq,
274            ephemeral,
275            kind,
276        }
277    }
278
279    #[test]
280    fn envelope_round_trips_through_json() -> Result<(), Box<dyn std::error::Error>> {
281        let event = envelope(
282            ActivityEventKind::Message {
283                role: MessageRole::Assistant,
284                text: "hello".to_owned(),
285            },
286            false,
287            Some(9),
288        );
289        let decoded = round_trip(&event)?;
290        assert_eq!(event, decoded);
291        Ok(())
292    }
293
294    #[test]
295    fn every_event_kind_round_trips() -> Result<(), Box<dyn std::error::Error>> {
296        let kinds = vec![
297            ActivityEventKind::Message {
298                role: MessageRole::User,
299                text: "steer".to_owned(),
300            },
301            ActivityEventKind::ToolCall {
302                tool: "read_file".to_owned(),
303                call_id: "call-1".to_owned(),
304                input: json!({ "path": "/tmp/x" }),
305            },
306            ActivityEventKind::ToolResult {
307                call_id: "call-1".to_owned(),
308                output: json!({ "bytes": 12 }),
309                is_error: false,
310            },
311            ActivityEventKind::Progress {
312                detail: ProgressDetail::UsageEstimate {
313                    input_tokens: Some(100),
314                    output_tokens: None,
315                },
316            },
317            ActivityEventKind::Progress {
318                detail: ProgressDetail::Note {
319                    text: "thinking".to_owned(),
320                },
321            },
322            ActivityEventKind::Stop {
323                reason: StopKind::EndTurn,
324            },
325            ActivityEventKind::Stop {
326                reason: StopKind::Error {
327                    message: "boom".to_owned(),
328                },
329            },
330            ActivityEventKind::Stop {
331                reason: StopKind::Other {
332                    reason: "custom".to_owned(),
333                },
334            },
335            ActivityEventKind::Raw {
336                source: "unknown-harness".to_owned(),
337                value: json!({ "anything": [1, 2, 3] }),
338            },
339        ];
340        for kind in kinds {
341            let event = envelope(kind, false, None);
342            let decoded = round_trip(&event)?;
343            assert_eq!(event, decoded);
344        }
345        Ok(())
346    }
347
348    /// The run axis is carried on the wire and DISTINGUISHES two events that are
349    /// otherwise byte-identical — the continue-as-new case, where one workflow id
350    /// spans generations whose ordinals and attempts both restart.
351    #[test]
352    fn the_run_axis_survives_the_wire_and_separates_two_generations()
353    -> Result<(), Box<dyn std::error::Error>> {
354        let generation_one = envelope(
355            ActivityEventKind::Message {
356                role: MessageRole::Assistant,
357                text: "same text".to_owned(),
358            },
359            false,
360            None,
361        );
362        let mut generation_two = generation_one.clone();
363        generation_two.run_id = RunId::new(Uuid::from_u128(6));
364
365        let decoded = round_trip(&generation_one)?;
366        assert_eq!(decoded.run_id, generation_one.run_id);
367        // Everything except the run matches, and the events are still distinct.
368        assert_eq!(generation_one.workflow_id, generation_two.workflow_id);
369        assert_eq!(generation_one.activity_id, generation_two.activity_id);
370        assert_eq!(generation_one.attempt, generation_two.attempt);
371        assert_ne!(generation_one, generation_two);
372        Ok(())
373    }
374
375    #[test]
376    fn ephemeral_delta_round_trips_without_store_seq() -> Result<(), Box<dyn std::error::Error>> {
377        let event = envelope(
378            ActivityEventKind::Delta {
379                message_id: "msg-1".to_owned(),
380                text_fragment: "wor".to_owned(),
381            },
382            true,
383            None,
384        );
385        let decoded = round_trip(&event)?;
386        assert!(decoded.ephemeral);
387        assert_eq!(decoded.store_seq, None);
388        assert_eq!(event, decoded);
389        Ok(())
390    }
391}