Skip to main content

vtcode_exec_events/
lib.rs

1#![allow(
2    missing_docs,
3    dead_code,
4    unused_imports,
5    reason = "Intentional compatibility, platform, or test-only suppression."
6)]
7//! Structured execution telemetry events shared across VT Code crates.
8//!
9//! This crate exposes the serialized schema for thread lifecycle updates,
10//! command execution results, and other timeline artifacts emitted by the
11//! automation runtime. Downstream applications can deserialize these
12//! structures to drive dashboards, logging, or auditing pipelines without
13//! depending on the full `vtcode-core` crate.
14//!
15//! # Agent Trace Support
16//!
17//! This crate implements the [Agent Trace](https://agent-trace.dev/) specification
18//! for tracking AI-generated code attribution. See the [`trace`] module for details.
19
20use serde::{Deserialize, Serialize};
21use serde_json::Value;
22
23pub mod atif;
24pub mod trace;
25
26/// Semantic version of the serialized event schema exported by this crate.
27pub const EVENT_SCHEMA_VERSION: &str = "0.14.0";
28
29/// Wraps a [`ThreadEvent`] with schema metadata so downstream consumers can
30/// negotiate compatibility before processing an event stream.
31#[derive(Debug, Clone, Serialize, Deserialize, PartialEq, Eq)]
32#[cfg_attr(feature = "schema-export", derive(schemars::JsonSchema))]
33pub struct VersionedThreadEvent {
34    /// Semantic version describing the schema of the nested event payload.
35    schema_version: String,
36    /// Concrete event emitted by the agent runtime.
37    event: ThreadEvent,
38}
39
40impl VersionedThreadEvent {
41    /// Creates a new [`VersionedThreadEvent`] using the current
42    /// [`EVENT_SCHEMA_VERSION`].
43    pub fn new(event: ThreadEvent) -> Self {
44        Self {
45            schema_version: EVENT_SCHEMA_VERSION.to_string(),
46            event,
47        }
48    }
49
50    /// Returns the nested [`ThreadEvent`], consuming the wrapper.
51    pub fn into_event(self) -> ThreadEvent {
52        self.event
53    }
54}
55
56impl From<ThreadEvent> for VersionedThreadEvent {
57    fn from(event: ThreadEvent) -> Self {
58        Self::new(event)
59    }
60}
61
62/// Sink for processing [`ThreadEvent`] instances.
63pub trait EventEmitter {
64    /// Invoked for each event emitted by the automation runtime.
65    fn emit(&mut self, event: &ThreadEvent);
66}
67
68impl<F> EventEmitter for F
69where
70    F: FnMut(&ThreadEvent),
71{
72    fn emit(&mut self, event: &ThreadEvent) {
73        self(event);
74    }
75}
76
77/// JSON helper utilities for serializing and deserializing thread events.
78#[cfg(feature = "serde-json")]
79pub(crate) mod json {
80    use super::{ThreadEvent, VersionedThreadEvent};
81
82    /// Converts an event into a `serde_json::Value`.
83    pub fn to_value(event: &ThreadEvent) -> serde_json::Result<serde_json::Value> {
84        serde_json::to_value(event)
85    }
86
87    /// Serializes an event into a JSON string.
88    pub(crate) fn to_string(event: &ThreadEvent) -> serde_json::Result<String> {
89        serde_json::to_string(event)
90    }
91
92    /// Deserializes an event from a JSON string.
93    pub fn from_str(payload: &str) -> serde_json::Result<ThreadEvent> {
94        serde_json::from_str(payload)
95    }
96
97    /// Serializes a [`VersionedThreadEvent`] wrapper.
98    pub(crate) fn versioned_to_string(event: &ThreadEvent) -> serde_json::Result<String> {
99        serde_json::to_string(&VersionedThreadEvent::new(event.clone()))
100    }
101
102    /// Deserializes a [`VersionedThreadEvent`] wrapper.
103    pub(crate) fn versioned_from_str(payload: &str) -> serde_json::Result<VersionedThreadEvent> {
104        serde_json::from_str(payload)
105    }
106}
107
108#[cfg(feature = "telemetry-log")]
109mod log_support {
110    use log::Level;
111
112    use super::{EventEmitter, ThreadEvent, json};
113
114    /// Emits JSON serialized events to the `log` facade at the configured level.
115    #[derive(Debug, Clone)]
116    pub struct LogEmitter {
117        level: Level,
118    }
119
120    impl LogEmitter {
121        /// Creates a new [`LogEmitter`] that logs at the provided [`Level`].
122        pub fn new(level: Level) -> Self {
123            Self { level }
124        }
125    }
126
127    impl Default for LogEmitter {
128        fn default() -> Self {
129            Self { level: Level::Info }
130        }
131    }
132
133    impl EventEmitter for LogEmitter {
134        fn emit(&mut self, event: &ThreadEvent) {
135            if log::log_enabled!(self.level) {
136                match json::to_string(event) {
137                    Ok(serialized) => log::log!(self.level, "{serialized}"),
138                    Err(err) => log::log!(self.level, "failed to serialize vtcode exec event for logging: {err}"),
139                }
140            }
141        }
142    }
143
144    pub use LogEmitter as PublicLogEmitter;
145}
146
147#[cfg(feature = "telemetry-log")]
148pub use log_support::PublicLogEmitter as LogEmitter;
149
150#[cfg(feature = "telemetry-tracing")]
151mod tracing_support {
152    use tracing::Level;
153
154    use super::{EVENT_SCHEMA_VERSION, EventEmitter, ThreadEvent, VersionedThreadEvent};
155
156    /// Emits structured events as `tracing` events at the specified level.
157    #[derive(Debug, Clone)]
158    pub struct TracingEmitter {
159        level: Level,
160    }
161
162    impl TracingEmitter {
163        /// Creates a new [`TracingEmitter`] with the provided [`Level`].
164        pub fn new(level: Level) -> Self {
165            Self { level }
166        }
167    }
168
169    impl Default for TracingEmitter {
170        fn default() -> Self {
171            Self { level: Level::INFO }
172        }
173    }
174
175    impl EventEmitter for TracingEmitter {
176        fn emit(&mut self, event: &ThreadEvent) {
177            match self.level {
178                Level::TRACE => tracing::event!(
179                    target: "vtcode_exec_events",
180                    Level::TRACE,
181                    schema_version = EVENT_SCHEMA_VERSION,
182                    event = ?VersionedThreadEvent::new(event.clone()),
183                    "vtcode_exec_event"
184                ),
185                Level::DEBUG => tracing::event!(
186                    target: "vtcode_exec_events",
187                    Level::DEBUG,
188                    schema_version = EVENT_SCHEMA_VERSION,
189                    event = ?VersionedThreadEvent::new(event.clone()),
190                    "vtcode_exec_event"
191                ),
192                Level::INFO => tracing::event!(
193                    target: "vtcode_exec_events",
194                    Level::INFO,
195                    schema_version = EVENT_SCHEMA_VERSION,
196                    event = ?VersionedThreadEvent::new(event.clone()),
197                    "vtcode_exec_event"
198                ),
199                Level::WARN => tracing::event!(
200                    target: "vtcode_exec_events",
201                    Level::WARN,
202                    schema_version = EVENT_SCHEMA_VERSION,
203                    event = ?VersionedThreadEvent::new(event.clone()),
204                    "vtcode_exec_event"
205                ),
206                Level::ERROR => tracing::event!(
207                    target: "vtcode_exec_events",
208                    Level::ERROR,
209                    schema_version = EVENT_SCHEMA_VERSION,
210                    event = ?VersionedThreadEvent::new(event.clone()),
211                    "vtcode_exec_event"
212                ),
213            }
214        }
215    }
216
217    pub use TracingEmitter as PublicTracingEmitter;
218}
219
220#[cfg(feature = "telemetry-tracing")]
221pub use tracing_support::PublicTracingEmitter as TracingEmitter;
222
223#[cfg(feature = "telemetry-otel")]
224mod otel_support {
225    use opentelemetry::KeyValue;
226    use opentelemetry::trace::{Span, Status, Tracer};
227
228    use super::{EventEmitter, ThreadEvent, ThreadItemDetails};
229
230    /// Emits [`ThreadEvent`]s as OpenTelemetry spans and span events.
231    ///
232    /// Each `ThreadEvent` is recorded as an OTel span with attributes derived
233    /// from the event payload.  Harness events are attached as span events
234    /// with their own attributes (event kind, message, path, etc.).
235    ///
236    /// # Usage
237    ///
238    /// ```rust,ignore
239    /// // Requires concrete SDK type (e.g. opentelemetry_sdk::trace::SdkTracerProvider)
240    /// # use vtcode_exec_events::OtelEmitter;
241    /// # let tracer = opentelemetry_sdk::trace::SdkTracerProvider::default()
242    /// #     .tracer("vtcode");
243    /// # let mut emitter = OtelEmitter::new(tracer);
244    /// ```
245    pub struct OtelEmitter<T: Tracer> {
246        tracer: T,
247    }
248
249    impl<T: Tracer> OtelEmitter<T> {
250        pub fn new(tracer: T) -> Self {
251            Self { tracer }
252        }
253    }
254
255    impl<T: Tracer> EventEmitter for OtelEmitter<T> {
256        fn emit(&mut self, event: &ThreadEvent) {
257            let span_name = match event {
258                ThreadEvent::ThreadStarted(_) => "thread.started",
259                ThreadEvent::ThreadCompleted(_) => "thread.completed",
260                ThreadEvent::ContextReset(_) => "context.reset",
261                ThreadEvent::TurnStarted(_) => "turn.started",
262                ThreadEvent::TurnCompleted(_) => "turn.completed",
263                ThreadEvent::TurnFailed(_) => "turn.failed",
264                ThreadEvent::ItemStarted(_) => "item.started",
265                ThreadEvent::ItemUpdated(_) => "item.updated",
266                ThreadEvent::ItemCompleted(_) => "item.completed",
267                ThreadEvent::Error(_) => "error",
268                _ => "event",
269            };
270
271            let mut span = self.tracer.start(span_name);
272
273            match event {
274                ThreadEvent::ThreadStarted(e) => {
275                    span.set_attribute(KeyValue::new("thread_id", e.thread_id.clone()));
276                }
277                ThreadEvent::ThreadCompleted(e) => {
278                    if let Some(ref cost) = e.total_cost_usd {
279                        span.set_attribute(KeyValue::new("total_cost_usd", cost.as_f64().unwrap_or(0.0)));
280                    }
281                    span.set_attribute(KeyValue::new(
282                        "input_tokens",
283                        i64::try_from(e.usage.input_tokens).unwrap_or(i64::MAX),
284                    ));
285                    span.set_attribute(KeyValue::new(
286                        "output_tokens",
287                        i64::try_from(e.usage.output_tokens).unwrap_or(i64::MAX),
288                    ));
289                    span.set_attribute(KeyValue::new("completion_subtype", e.subtype.as_str().to_string()));
290                }
291                ThreadEvent::ContextReset(e) => {
292                    span.set_attribute(KeyValue::new("thread_id", e.thread_id.clone()));
293                    span.set_attribute(KeyValue::new("turn_id", e.turn_id.clone()));
294                    span.set_attribute(KeyValue::new("plan_preserved", e.plan_preserved));
295                    span.set_attribute(KeyValue::new(
296                        "previous_context_usage_percent",
297                        e.previous_context_usage_percent as i64,
298                    ));
299                    span.set_attribute(KeyValue::new("tool_budget_reset", e.tool_budget_reset));
300                }
301                ThreadEvent::TurnCompleted(e) => {
302                    span.set_attribute(KeyValue::new(
303                        "turn_input_tokens",
304                        i64::try_from(e.usage.input_tokens).unwrap_or(i64::MAX),
305                    ));
306                    span.set_attribute(KeyValue::new(
307                        "turn_output_tokens",
308                        i64::try_from(e.usage.output_tokens).unwrap_or(i64::MAX),
309                    ));
310                }
311                ThreadEvent::ItemCompleted(e) => {
312                    if let ThreadItemDetails::Harness(harness) = &e.item.details {
313                        span.set_attribute(KeyValue::new("harness_event", format!("{:?}", harness.event)));
314                        if let Some(ref msg) = harness.message {
315                            span.set_attribute(KeyValue::new("harness_message", msg.clone()));
316                        }
317                        if let Some(ref path) = harness.path {
318                            span.set_attribute(KeyValue::new("harness_path", path.clone()));
319                        }
320                        if let Some(dur) = harness.duration_ms {
321                            span.set_attribute(KeyValue::new("duration_ms", i64::try_from(dur).unwrap_or(i64::MAX)));
322                        }
323                        let mut event_attrs = vec![KeyValue::new("event_kind", format!("{:?}", harness.event))];
324                        if let Some(ref msg) = harness.message {
325                            event_attrs.push(KeyValue::new("message", msg.clone()));
326                        }
327                        span.add_event("harness_event", event_attrs);
328                    }
329                }
330                ThreadEvent::Error(e) => {
331                    span.set_status(Status::Error { description: e.message.clone().into() });
332                    span.set_attribute(KeyValue::new("error_message", e.message.clone()));
333                }
334                _ => {}
335            }
336
337            span.end();
338        }
339    }
340
341    pub use OtelEmitter as PublicOtelEmitter;
342}
343
344#[cfg(feature = "telemetry-otel")]
345pub use otel_support::PublicOtelEmitter as OtelEmitter;
346
347#[cfg(feature = "schema-export")]
348pub mod schema {
349    use schemars::{Schema, schema_for};
350
351    use super::{ThreadEvent, VersionedThreadEvent};
352
353    /// Generates a JSON Schema describing [`ThreadEvent`].
354    pub fn thread_event_schema() -> Schema {
355        schema_for!(ThreadEvent)
356    }
357
358    /// Generates a JSON Schema describing [`VersionedThreadEvent`].
359    pub fn versioned_thread_event_schema() -> Schema {
360        schema_for!(VersionedThreadEvent)
361    }
362}
363
364/// Structured events emitted during autonomous execution.
365#[derive(Debug, Clone, Serialize, Deserialize, PartialEq, Eq)]
366#[cfg_attr(feature = "schema-export", derive(schemars::JsonSchema))]
367#[serde(tag = "type")]
368pub enum ThreadEvent {
369    /// Indicates that a new execution thread has started.
370    #[serde(rename = "thread.started")]
371    ThreadStarted(ThreadStartedEvent),
372    /// Indicates that an execution thread has reached a terminal outcome.
373    #[serde(rename = "thread.completed")]
374    ThreadCompleted(Box<ThreadCompletedEvent>),
375    /// Indicates that conversation compaction replaced older history with a boundary.
376    #[serde(rename = "thread.compact_boundary")]
377    ThreadCompactBoundary(Box<ThreadCompactBoundaryEvent>),
378    /// Indicates that the approved plan handoff rebuilt a fresh execution context.
379    #[serde(rename = "context.reset")]
380    ContextReset(ContextResetEvent),
381    /// Marks the beginning of an execution turn.
382    #[serde(rename = "turn.started")]
383    TurnStarted(TurnStartedEvent),
384    /// Marks the completion of an execution turn.
385    #[serde(rename = "turn.completed")]
386    TurnCompleted(TurnCompletedEvent),
387    /// Marks a turn as failed with additional context.
388    #[serde(rename = "turn.failed")]
389    TurnFailed(TurnFailedEvent),
390    /// Marks a turn as blocked before success could be confirmed. Emitted
391    /// alongside `turn.failed` so UI subscribers get a first-class signal
392    /// with the fuse counters and last tool instead of inferring it.
393    #[serde(rename = "turn.blocked")]
394    TurnBlocked(Box<TurnBlockedEvent>),
395    /// Indicates that an item has started processing.
396    #[serde(rename = "item.started")]
397    ItemStarted(ItemStartedEvent),
398    /// Indicates that an item has been updated.
399    #[serde(rename = "item.updated")]
400    ItemUpdated(ItemUpdatedEvent),
401    /// Indicates that an item reached a terminal state.
402    #[serde(rename = "item.completed")]
403    ItemCompleted(ItemCompletedEvent),
404    /// Emitted when a tool requires user permission before execution.
405    #[serde(rename = "permission.requested")]
406    PermissionRequested(PermissionRequestedEvent),
407    /// Emitted when the user resolves a permission prompt.
408    #[serde(rename = "permission.resolved")]
409    PermissionResolved(PermissionResolvedEvent),
410    /// A mid-turn user interjection was merged into the running turn.
411    #[serde(rename = "interjected")]
412    Interjected(InterjectedEvent),
413    /// Streaming delta for a plan item in Planning workflow.
414    #[serde(rename = "plan.delta")]
415    PlanDelta(Box<PlanDeltaEvent>),
416    /// Indicates that a completed plan is waiting for an implementation decision.
417    #[serde(rename = "plan.approval.requested")]
418    PlanApprovalRequested(PlanApprovalRequestedEvent),
419    /// Records the user's or policy's decision about a completed plan.
420    #[serde(rename = "plan.approval.resolved")]
421    PlanApprovalResolved(PlanApprovalResolvedEvent),
422    /// Represents a fatal error.
423    #[serde(rename = "error")]
424    Error(ThreadErrorEvent),
425    /// Catch-all for unknown event types added in newer schema versions.
426    /// Preserves forward compatibility when older binaries read newer event streams.
427    #[serde(other)]
428    Unknown,
429}
430
431#[derive(Debug, Clone, Serialize, Deserialize, PartialEq, Eq)]
432#[cfg_attr(feature = "schema-export", derive(schemars::JsonSchema))]
433pub struct ThreadStartedEvent {
434    /// Unique identifier for the thread that was started.
435    pub thread_id: String,
436}
437
438#[derive(Debug, Clone, Copy, Serialize, Deserialize, PartialEq, Eq)]
439#[cfg_attr(feature = "schema-export", derive(schemars::JsonSchema))]
440#[serde(rename_all = "snake_case")]
441pub enum ThreadCompletionSubtype {
442    Success,
443    ErrorMaxTurns,
444    ErrorMaxBudgetUsd,
445    ErrorDuringExecution,
446    Cancelled,
447    /// Catch-all for unknown completion subtypes added in newer schema versions.
448    #[serde(other)]
449    Unknown,
450}
451
452impl ThreadCompletionSubtype {
453    pub const fn as_str(&self) -> &'static str {
454        match self {
455            Self::Success => "success",
456            Self::ErrorMaxTurns => "error_max_turns",
457            Self::ErrorMaxBudgetUsd => "error_max_budget_usd",
458            Self::ErrorDuringExecution => "error_during_execution",
459            Self::Cancelled => "cancelled",
460            Self::Unknown => "unknown",
461        }
462    }
463
464    pub const fn is_success(self) -> bool {
465        matches!(self, Self::Success)
466    }
467}
468
469#[derive(Debug, Clone, Copy, Serialize, Deserialize, PartialEq, Eq)]
470#[cfg_attr(feature = "schema-export", derive(schemars::JsonSchema))]
471#[serde(rename_all = "snake_case")]
472pub enum CompactionTrigger {
473    Manual,
474    Auto,
475    Recovery,
476    /// Compaction triggered by a mid-session switch of the main model or
477    /// provider, so the newly selected model starts from a clean summary.
478    ModelSwitch,
479    /// Catch-all for unknown triggers added in newer schema versions.
480    #[serde(other)]
481    Unknown,
482}
483
484impl CompactionTrigger {
485    pub const fn as_str(self) -> &'static str {
486        match self {
487            Self::Manual => "manual",
488            Self::Auto => "auto",
489            Self::Recovery => "recovery",
490            Self::ModelSwitch => "model_switch",
491            Self::Unknown => "unknown",
492        }
493    }
494}
495
496#[derive(Debug, Clone, Copy, Serialize, Deserialize, PartialEq, Eq)]
497#[cfg_attr(feature = "schema-export", derive(schemars::JsonSchema))]
498#[serde(rename_all = "snake_case")]
499pub enum CompactionMode {
500    Provider,
501    Local,
502    /// Catch-all for unknown modes added in newer schema versions.
503    #[serde(other)]
504    Unknown,
505}
506
507impl CompactionMode {
508    pub const fn as_str(self) -> &'static str {
509        match self {
510            Self::Provider => "provider",
511            Self::Local => "local",
512            Self::Unknown => "unknown",
513        }
514    }
515}
516
517#[derive(Debug, Clone, Serialize, Deserialize, PartialEq, Eq)]
518#[cfg_attr(feature = "schema-export", derive(schemars::JsonSchema))]
519pub struct ThreadCompletedEvent {
520    /// Stable thread identifier for the session.
521    pub thread_id: String,
522    /// Stable session identifier for the runtime that produced the thread.
523    pub session_id: String,
524    /// Coarse result category aligned with SDK-style terminal states.
525    pub subtype: ThreadCompletionSubtype,
526    /// VT Code-specific detailed outcome code.
527    pub outcome_code: String,
528    /// Final assistant result text when the thread completed successfully.
529    #[serde(skip_serializing_if = "Option::is_none")]
530    pub result: Option<String>,
531    /// Provider stop reason or VT Code terminal reason when available.
532    #[serde(skip_serializing_if = "Option::is_none")]
533    pub stop_reason: Option<String>,
534    /// Aggregated token usage across the thread.
535    pub usage: Usage,
536    /// Optional estimated total API cost for the thread.
537    #[serde(skip_serializing_if = "Option::is_none")]
538    pub total_cost_usd: Option<serde_json::Number>,
539    /// Number of turns executed before completion.
540    pub num_turns: usize,
541}
542
543#[derive(Debug, Clone, Serialize, Deserialize, PartialEq, Eq)]
544#[cfg_attr(feature = "schema-export", derive(schemars::JsonSchema))]
545pub struct ThreadCompactBoundaryEvent {
546    /// Stable thread identifier for the session.
547    pub thread_id: String,
548    /// Whether compaction was triggered manually or automatically.
549    pub trigger: CompactionTrigger,
550    /// Whether the compaction boundary came from provider-native or local compaction.
551    pub mode: CompactionMode,
552    /// Number of messages before compaction.
553    pub original_message_count: usize,
554    /// Number of messages after compaction.
555    pub compacted_message_count: usize,
556    /// Optional persisted artifact containing the archived compaction summary/history.
557    #[serde(skip_serializing_if = "Option::is_none")]
558    pub history_artifact_path: Option<String>,
559    /// Segment identifier that contained the request prefix before compaction.
560    #[serde(skip_serializing_if = "Option::is_none")]
561    pub previous_segment_id: Option<String>,
562    /// Segment identifier created after compaction.
563    #[serde(skip_serializing_if = "Option::is_none")]
564    pub new_segment_id: Option<String>,
565    /// Hash of the immutable request prefix before compaction.
566    #[serde(skip_serializing_if = "Option::is_none")]
567    pub previous_prefix_hash: Option<String>,
568    /// Hash of the immutable request prefix after compaction.
569    #[serde(skip_serializing_if = "Option::is_none")]
570    pub new_prefix_hash: Option<String>,
571    /// Hash of the ordered tool catalog before compaction.
572    #[serde(skip_serializing_if = "Option::is_none")]
573    pub previous_catalog_hash: Option<String>,
574    /// Hash of the ordered tool catalog after compaction.
575    #[serde(skip_serializing_if = "Option::is_none")]
576    pub new_catalog_hash: Option<String>,
577}
578
579#[derive(Debug, Clone, Copy, Serialize, Deserialize, PartialEq, Eq)]
580#[cfg_attr(feature = "schema-export", derive(schemars::JsonSchema))]
581#[serde(rename_all = "snake_case")]
582pub enum ContextResetTrigger {
583    /// The user selected the fresh-context plan approval path.
584    PlanApproval,
585    /// Catch-all for triggers introduced by newer schema versions.
586    #[serde(other)]
587    Unknown,
588}
589
590#[derive(Debug, Clone, Serialize, Deserialize, PartialEq, Eq)]
591#[cfg_attr(feature = "schema-export", derive(schemars::JsonSchema))]
592pub struct ContextResetEvent {
593    /// Stable thread identifier for the session.
594    pub thread_id: String,
595    /// Identifier of the turn that approved the plan.
596    pub turn_id: String,
597    /// What initiated the context reset.
598    pub trigger: ContextResetTrigger,
599    /// Whether the approved plan and task tracker survived the reset.
600    pub plan_preserved: bool,
601    /// Context pressure reported before the reset, expressed as a percentage.
602    pub previous_context_usage_percent: u8,
603    /// Whether the per-turn and per-session tool budgets were reset.
604    pub tool_budget_reset: bool,
605}
606
607#[derive(Debug, Clone, Copy, Serialize, Deserialize, PartialEq, Eq, Default)]
608#[cfg_attr(feature = "schema-export", derive(schemars::JsonSchema))]
609pub struct TurnStartedEvent {
610    /// Optional decomposition of the assembled first-request prefix so
611    /// downstream consumers can attribute token overhead without inventing
612    /// parallel event types.
613    #[serde(skip_serializing_if = "Option::is_none")]
614    token_breakdown: Option<TokenBreakdown>,
615}
616
617/// Per-request token-budget breakdown for the assembled first-request prefix.
618#[derive(Debug, Clone, Copy, Serialize, Deserialize, PartialEq, Eq, Default)]
619#[cfg_attr(feature = "schema-export", derive(schemars::JsonSchema))]
620pub struct TokenBreakdown {
621    /// System prompt text tokens.
622    system_prompt_tokens: u64,
623    /// On-wire tool schema tokens.
624    tool_schema_tokens: u64,
625    /// Instruction file tokens included in the prompt.
626    instruction_file_tokens: u64,
627    /// Message history text tokens.
628    message_history_tokens: u64,
629    /// Cache read tokens (served from prior turns).
630    cache_read_tokens: u64,
631    /// Cache write tokens (new cache entries created this turn).
632    cache_write_tokens: u64,
633    /// Tokens that missed cache (neither read nor written).
634    cache_miss_tokens: u64,
635    /// Subagent bootstrap tokens, if this turn spawned a child agent.
636    #[serde(skip_serializing_if = "Option::is_none")]
637    subagent_bootstrap_tokens: Option<u64>,
638}
639
640#[derive(Debug, Clone, Serialize, Deserialize, PartialEq, Eq)]
641#[cfg_attr(feature = "schema-export", derive(schemars::JsonSchema))]
642pub struct TurnCompletedEvent {
643    /// Token usage summary for the completed turn.
644    pub usage: Usage,
645}
646
647#[derive(Debug, Clone, Serialize, Deserialize, PartialEq, Eq)]
648#[cfg_attr(feature = "schema-export", derive(schemars::JsonSchema))]
649pub struct TurnFailedEvent {
650    /// Human-readable explanation describing why the turn failed.
651    pub message: String,
652    /// Optional token usage that was consumed before the failure occurred.
653    #[serde(skip_serializing_if = "Option::is_none")]
654    pub usage: Option<Usage>,
655}
656
657#[derive(Debug, Clone, Serialize, Deserialize, PartialEq, Eq)]
658#[cfg_attr(feature = "schema-export", derive(schemars::JsonSchema))]
659pub struct TurnBlockedEvent {
660    /// Human-readable explanation describing why the turn was blocked.
661    pub message: String,
662    /// Display label of the last blocked tool call, when known.
663    #[serde(skip_serializing_if = "Option::is_none")]
664    pub last_tool: Option<String>,
665    /// Consecutive blocked tool calls observed this turn.
666    #[serde(default)]
667    pub blocked_streak: usize,
668    /// Total blocked tool calls observed this turn.
669    #[serde(default)]
670    pub blocked_total: usize,
671    /// Consecutive cap that was enforced.
672    #[serde(default)]
673    pub consecutive_cap: usize,
674    /// Total cap that was enforced.
675    #[serde(default)]
676    pub total_cap: usize,
677    /// Whether the fuse tripped while a tool-free recovery pass was active.
678    #[serde(default)]
679    pub recovery_active: bool,
680    /// Optional token usage that was consumed before the block occurred.
681    #[serde(skip_serializing_if = "Option::is_none")]
682    pub usage: Option<Usage>,
683}
684
685#[derive(Debug, Clone, Serialize, Deserialize, PartialEq, Eq)]
686#[cfg_attr(feature = "schema-export", derive(schemars::JsonSchema))]
687pub struct ThreadErrorEvent {
688    /// Fatal error message associated with the thread.
689    pub message: String,
690}
691
692#[derive(Debug, Clone, Serialize, Deserialize, PartialEq, Eq, Default)]
693#[cfg_attr(feature = "schema-export", derive(schemars::JsonSchema))]
694pub struct Usage {
695    /// Number of prompt tokens processed during the turn.
696    pub input_tokens: u64,
697    /// Number of cached prompt tokens reused from previous turns.
698    pub cached_input_tokens: u64,
699    /// Number of cache-creation tokens charged during the turn.
700    pub cache_creation_tokens: u64,
701    /// Number of completion tokens generated by the model.
702    pub output_tokens: u64,
703}
704
705impl Usage {
706    /// Number of input tokens billed at the full input rate: neither served
707    /// from cache nor written to it. `input_tokens` is the total prompt token
708    /// count (uncached + cached + cache-creation), so both cached and
709    /// cache-creation tokens are subtracted out here.
710    #[must_use]
711    fn uncached_input_tokens(&self) -> u64 {
712        self.input_tokens
713            .saturating_sub(self.cached_input_tokens)
714            .saturating_sub(self.cache_creation_tokens)
715    }
716
717    /// Cache hit rate as a fraction (0.0 to 1.0): cached input over total input.
718    /// Returns `None` when no input tokens were recorded.
719    #[must_use]
720    pub fn cache_hit_rate(&self) -> Option<f64> {
721        if self.input_tokens == 0 {
722            return None;
723        }
724        Some(self.cached_input_tokens as f64 / self.input_tokens as f64)
725    }
726
727    /// Human-readable summary of prompt cache efficiency.
728    #[must_use]
729    pub fn cache_summary(&self) -> String {
730        let total_input = self.input_tokens;
731        if total_input == 0 {
732            return "No input tokens recorded.".to_string();
733        }
734
735        let cached = self.cached_input_tokens;
736        let creation = self.cache_creation_tokens;
737        let uncached = self.uncached_input_tokens();
738        let rate = cached as f64 / total_input as f64 * 100.0;
739        format!(
740            "Cache: {cached} cached / {total_input} total input ({rate:.1}% hit rate), \
741             {creation} cache-creation, {uncached} uncached"
742        )
743    }
744
745    /// Accumulate another usage sample into this one.
746    pub fn add(&mut self, other: &Usage) {
747        self.input_tokens = self.input_tokens.saturating_add(other.input_tokens);
748        self.cached_input_tokens = self.cached_input_tokens.saturating_add(other.cached_input_tokens);
749        self.cache_creation_tokens = self.cache_creation_tokens.saturating_add(other.cache_creation_tokens);
750        self.output_tokens = self.output_tokens.saturating_add(other.output_tokens);
751    }
752}
753
754#[derive(Debug, Clone, Serialize, Deserialize, PartialEq, Eq)]
755#[cfg_attr(feature = "schema-export", derive(schemars::JsonSchema))]
756pub struct ItemCompletedEvent {
757    /// Snapshot of the thread item that completed.
758    pub item: ThreadItem,
759}
760
761#[derive(Debug, Clone, Serialize, Deserialize, PartialEq, Eq)]
762#[cfg_attr(feature = "schema-export", derive(schemars::JsonSchema))]
763pub struct ItemStartedEvent {
764    /// Snapshot of the thread item that began processing.
765    pub item: ThreadItem,
766}
767
768#[derive(Debug, Clone, Serialize, Deserialize, PartialEq, Eq)]
769#[cfg_attr(feature = "schema-export", derive(schemars::JsonSchema))]
770pub struct ItemUpdatedEvent {
771    /// Snapshot of the thread item after it was updated.
772    pub item: ThreadItem,
773}
774
775#[derive(Debug, Clone, Serialize, Deserialize, PartialEq, Eq)]
776#[cfg_attr(feature = "schema-export", derive(schemars::JsonSchema))]
777pub struct PlanDeltaEvent {
778    /// Identifier of the thread emitting this plan delta.
779    pub thread_id: String,
780    /// Identifier of the current turn.
781    pub turn_id: String,
782    /// Identifier of the plan item receiving the delta.
783    pub item_id: String,
784    /// Incremental plan text chunk.
785    pub delta: String,
786}
787
788#[derive(Debug, Clone, Serialize, Deserialize, PartialEq, Eq)]
789#[cfg_attr(feature = "schema-export", derive(schemars::JsonSchema))]
790pub struct PlanApprovalRequestedEvent {
791    /// Identifier of the thread emitting the approval request.
792    pub thread_id: String,
793    /// Identifier of the turn that produced the plan.
794    pub turn_id: String,
795    /// Plan file associated with the approval request, when available.
796    #[serde(skip_serializing_if = "Option::is_none")]
797    pub plan_file: Option<String>,
798}
799
800#[derive(Debug, Clone, Copy, Serialize, Deserialize, PartialEq, Eq)]
801#[cfg_attr(feature = "schema-export", derive(schemars::JsonSchema))]
802#[serde(rename_all = "snake_case")]
803pub enum PlanApprovalDecision {
804    /// Execute with normal per-edit approval prompts.
805    Execute,
806    /// Execute with automatic edit approval enabled.
807    AutoAccept,
808    /// Execute the plan after rebuilding a fresh context.
809    FreshContext,
810    /// Keep planning and revise the proposed plan.
811    Revise,
812    /// Dismiss the approval request without implementing.
813    Cancel,
814    /// Hand the plan to the build primary agent.
815    SwitchBuild,
816    /// Hand the plan to the auto primary agent.
817    SwitchAuto,
818    /// Catch-all for decisions added in newer schema versions.
819    #[serde(other)]
820    Unknown,
821}
822
823#[derive(Debug, Clone, Serialize, Deserialize, PartialEq, Eq)]
824#[cfg_attr(feature = "schema-export", derive(schemars::JsonSchema))]
825pub struct PlanApprovalResolvedEvent {
826    /// Identifier of the thread emitting the approval decision.
827    pub thread_id: String,
828    /// Identifier of the turn in which the decision was made.
829    pub turn_id: String,
830    /// Decision selected by the user or active execution policy.
831    pub decision: PlanApprovalDecision,
832    /// Whether the decision came from policy rather than an interactive user action.
833    pub automatic: bool,
834}
835
836#[derive(Debug, Clone, Serialize, Deserialize, PartialEq, Eq)]
837#[cfg_attr(feature = "schema-export", derive(schemars::JsonSchema))]
838pub struct ThreadItem {
839    /// Stable identifier associated with the item.
840    pub id: String,
841    /// Embedded event details for the item type.
842    #[serde(flatten)]
843    pub details: ThreadItemDetails,
844}
845
846#[derive(Debug, Clone, Serialize, Deserialize, PartialEq, Eq)]
847#[cfg_attr(feature = "schema-export", derive(schemars::JsonSchema))]
848#[serde(tag = "type", rename_all = "snake_case")]
849pub enum ThreadItemDetails {
850    /// Message authored by the agent.
851    AgentMessage(AgentMessageItem),
852    /// Structured plan content authored by the agent in Planning workflow.
853    Plan(PlanItem),
854    /// Free-form reasoning text produced during a turn.
855    Reasoning(ReasoningItem),
856    /// Command execution lifecycle update for an actual shell/PTY process.
857    CommandExecution(Box<CommandExecutionItem>),
858    /// Tool invocation lifecycle update.
859    ToolInvocation(Box<ToolInvocationItem>),
860    /// Tool output lifecycle update tied to a tool invocation.
861    ToolOutput(Box<ToolOutputItem>),
862    /// File change summary associated with the turn.
863    FileChange(Box<FileChangeItem>),
864    /// MCP tool invocation status.
865    McpToolCall(Box<McpToolCallItem>),
866    /// Web search event emitted by a registered search provider.
867    WebSearch(Box<WebSearchItem>),
868    /// Harness-managed continuation or verification lifecycle event.
869    Harness(Box<HarnessEventItem>),
870    /// General error captured for auditing.
871    Error(ErrorItem),
872}
873
874#[derive(Debug, Clone, Serialize, Deserialize, PartialEq, Eq)]
875#[cfg_attr(feature = "schema-export", derive(schemars::JsonSchema))]
876pub struct AgentMessageItem {
877    /// Textual content of the agent message.
878    pub text: String,
879}
880
881#[derive(Debug, Clone, Serialize, Deserialize, PartialEq, Eq)]
882#[cfg_attr(feature = "schema-export", derive(schemars::JsonSchema))]
883pub struct PlanItem {
884    /// Plan markdown content.
885    pub text: String,
886}
887
888#[derive(Debug, Clone, Serialize, Deserialize, PartialEq, Eq)]
889#[cfg_attr(feature = "schema-export", derive(schemars::JsonSchema))]
890pub struct ReasoningItem {
891    /// Free-form reasoning content captured during planning.
892    pub text: String,
893    /// Optional stage of reasoning (e.g., "analysis", "plan", "verification",
894    /// or the bounded evidence-only "diagnosis" stage).
895    #[serde(skip_serializing_if = "Option::is_none")]
896    pub stage: Option<String>,
897}
898
899#[derive(Debug, Clone, Serialize, Deserialize, PartialEq, Eq, Default)]
900#[cfg_attr(feature = "schema-export", derive(schemars::JsonSchema))]
901#[serde(rename_all = "snake_case")]
902pub enum CommandExecutionStatus {
903    /// Command finished successfully.
904    #[default]
905    Completed,
906    /// Command failed (non-zero exit code or runtime error).
907    Failed,
908    /// Command is still running and may emit additional output.
909    InProgress,
910}
911
912#[derive(Debug, Clone, Serialize, Deserialize, PartialEq, Eq)]
913#[cfg_attr(feature = "schema-export", derive(schemars::JsonSchema))]
914pub struct CommandExecutionItem {
915    /// Tool or command identifier executed by the runner.
916    pub command: String,
917    /// Arguments passed to the tool invocation, when available.
918    #[serde(skip_serializing_if = "Option::is_none")]
919    pub arguments: Option<Value>,
920    /// Aggregated output emitted by the command.
921    #[serde(default)]
922    pub aggregated_output: String,
923    /// Exit code reported by the process, when available.
924    #[serde(skip_serializing_if = "Option::is_none")]
925    pub exit_code: Option<i32>,
926    /// Current status of the command execution.
927    pub status: CommandExecutionStatus,
928}
929
930#[derive(Debug, Clone, Serialize, Deserialize, PartialEq, Eq, Default)]
931#[cfg_attr(feature = "schema-export", derive(schemars::JsonSchema))]
932#[serde(rename_all = "snake_case")]
933pub enum ToolCallStatus {
934    /// Tool finished successfully.
935    #[default]
936    Completed,
937    /// Tool failed.
938    Failed,
939    /// Tool is still running and may emit additional output.
940    InProgress,
941}
942
943/// Fine-grained outcome of a tool invocation lifecycle.
944///
945/// Mirrors the outcome taxonomy used by the runtime: `status` remains the
946/// coarse lifecycle signal (`Completed` / `Failed` / `InProgress`), while
947/// `outcome` captures *why* the invocation terminated. Consumers that only
948/// need success/failure can continue to read `status`; analytics and the UI
949/// layer use `outcome` for richer classification.
950#[derive(Debug, Clone, Copy, Serialize, Deserialize, PartialEq, Eq, Default)]
951#[cfg_attr(feature = "schema-export", derive(schemars::JsonSchema))]
952#[serde(rename_all = "snake_case")]
953pub enum ToolOutcome {
954    /// Tool executed and returned a result.
955    #[default]
956    Success,
957    /// Tool executed but returned an error.
958    Error,
959    /// User rejected the permission prompt.
960    PermissionRejected,
961    /// User cancelled the permission prompt (e.g. Ctrl+C / Esc).
962    PermissionCancelled,
963    /// User provided a followup message instead of approving.
964    Followup,
965    /// A user-configured hook blocked execution.
966    HookDenied,
967    /// Tool not found or arguments couldn't be parsed.
968    InvalidTool,
969    /// Tool was running when the turn was cancelled.
970    Cancelled,
971}
972
973impl ToolOutcome {
974    #[must_use]
975    pub const fn is_terminal(self) -> bool {
976        !matches!(self, Self::Followup)
977    }
978}
979
980/// Map a terminal [`ToolCallStatus`] to its corresponding [`ToolOutcome`].
981///
982/// # Panics
983///
984/// Panics if `status` is [`ToolCallStatus::InProgress`], which is a non-terminal
985/// state and must never be passed to a completion-event emitter.
986#[must_use]
987#[allow(
988    clippy::unreachable,
989    reason = "Intentional compatibility, platform, or test-only suppression."
990)]
991pub fn tool_outcome_from_status(status: &ToolCallStatus) -> ToolOutcome {
992    match status {
993        ToolCallStatus::Completed => ToolOutcome::Success,
994        ToolCallStatus::Failed => ToolOutcome::Error,
995        ToolCallStatus::InProgress => unreachable!("InProgress status passed to completion event"),
996    }
997}
998
999#[derive(Debug, Clone, Serialize, Deserialize, PartialEq, Eq)]
1000#[cfg_attr(feature = "schema-export", derive(schemars::JsonSchema))]
1001pub struct ToolInvocationItem {
1002    /// Name of the invoked tool.
1003    pub tool_name: String,
1004    /// Structured arguments passed to the tool.
1005    #[serde(skip_serializing_if = "Option::is_none")]
1006    pub arguments: Option<Value>,
1007    /// Raw model-emitted tool call identifier, when available.
1008    #[serde(skip_serializing_if = "Option::is_none")]
1009    pub tool_call_id: Option<String>,
1010    /// Current lifecycle status of the invocation.
1011    pub status: ToolCallStatus,
1012    /// Fine-grained outcome of the invocation lifecycle.
1013    #[serde(skip_serializing_if = "Option::is_none")]
1014    pub outcome: Option<ToolOutcome>,
1015}
1016
1017#[derive(Debug, Clone, Serialize, Deserialize, PartialEq, Eq)]
1018#[cfg_attr(feature = "schema-export", derive(schemars::JsonSchema))]
1019pub struct ToolOutputItem {
1020    /// Identifier of the related harness invocation item.
1021    pub call_id: String,
1022    /// Raw model-emitted tool call identifier, when available.
1023    #[serde(skip_serializing_if = "Option::is_none")]
1024    pub tool_call_id: Option<String>,
1025    /// Canonical spool file path when the full output was written to disk.
1026    #[serde(skip_serializing_if = "Option::is_none")]
1027    pub spool_path: Option<String>,
1028    /// Aggregated output emitted by the tool.
1029    #[serde(default)]
1030    pub output: String,
1031    /// Exit code reported by the tool, when available.
1032    #[serde(skip_serializing_if = "Option::is_none")]
1033    pub exit_code: Option<i32>,
1034    /// Current lifecycle status of the output item.
1035    pub status: ToolCallStatus,
1036}
1037
1038#[derive(Debug, Clone, Serialize, Deserialize, PartialEq, Eq)]
1039#[cfg_attr(feature = "schema-export", derive(schemars::JsonSchema))]
1040pub struct FileChangeItem {
1041    /// List of individual file updates included in the change set.
1042    pub changes: Vec<FileUpdateChange>,
1043    /// Whether the patch application succeeded.
1044    pub status: PatchApplyStatus,
1045}
1046
1047#[derive(Debug, Clone, Serialize, Deserialize, PartialEq, Eq)]
1048#[cfg_attr(feature = "schema-export", derive(schemars::JsonSchema))]
1049pub struct FileUpdateChange {
1050    /// Path of the file that was updated.
1051    pub path: String,
1052    /// Type of change applied to the file.
1053    pub kind: PatchChangeKind,
1054}
1055
1056#[derive(Debug, Clone, Serialize, Deserialize, PartialEq, Eq)]
1057#[cfg_attr(feature = "schema-export", derive(schemars::JsonSchema))]
1058#[serde(rename_all = "snake_case")]
1059pub enum PatchApplyStatus {
1060    /// Patch successfully applied.
1061    Completed,
1062    /// Patch application failed.
1063    Failed,
1064}
1065
1066#[derive(Debug, Clone, Serialize, Deserialize, PartialEq, Eq)]
1067#[cfg_attr(feature = "schema-export", derive(schemars::JsonSchema))]
1068#[serde(rename_all = "snake_case")]
1069pub enum PatchChangeKind {
1070    /// File addition.
1071    Add,
1072    /// File deletion.
1073    Delete,
1074    /// File update in place.
1075    Update,
1076}
1077
1078#[derive(Debug, Clone, Serialize, Deserialize, PartialEq, Eq)]
1079#[cfg_attr(feature = "schema-export", derive(schemars::JsonSchema))]
1080pub struct McpToolCallItem {
1081    /// Name of the MCP tool invoked by the agent.
1082    pub tool_name: String,
1083    /// Arguments passed to the tool invocation, if any.
1084    #[serde(skip_serializing_if = "Option::is_none")]
1085    pub arguments: Option<Value>,
1086    /// Result payload returned by the tool, if captured.
1087    #[serde(skip_serializing_if = "Option::is_none")]
1088    pub result: Option<String>,
1089    /// Lifecycle status for the tool call.
1090    #[serde(skip_serializing_if = "Option::is_none")]
1091    pub status: Option<McpToolCallStatus>,
1092}
1093
1094#[derive(Debug, Clone, Serialize, Deserialize, PartialEq, Eq)]
1095#[cfg_attr(feature = "schema-export", derive(schemars::JsonSchema))]
1096#[serde(rename_all = "snake_case")]
1097pub enum McpToolCallStatus {
1098    /// Tool invocation has started.
1099    Started,
1100    /// Tool invocation completed successfully.
1101    Completed,
1102    /// Tool invocation failed.
1103    Failed,
1104}
1105
1106#[derive(Debug, Clone, Serialize, Deserialize, PartialEq, Eq)]
1107#[cfg_attr(feature = "schema-export", derive(schemars::JsonSchema))]
1108pub struct WebSearchItem {
1109    /// Query that triggered the search.
1110    pub query: String,
1111    /// Search provider identifier, when known.
1112    #[serde(skip_serializing_if = "Option::is_none")]
1113    pub provider: Option<String>,
1114    /// Optional raw search results captured for auditing.
1115    #[serde(skip_serializing_if = "Option::is_none")]
1116    pub results: Option<Vec<String>>,
1117}
1118
1119#[derive(Debug, Clone, Serialize, Deserialize, PartialEq, Eq)]
1120#[cfg_attr(feature = "schema-export", derive(schemars::JsonSchema))]
1121#[serde(rename_all = "snake_case")]
1122pub enum HarnessEventKind {
1123    PlanningStarted,
1124    PlanningCompleted,
1125    ContinuationStarted,
1126    ContinuationSkipped,
1127    /// A turn was blocked before success could be confirmed. Carries the fuse
1128    /// counters so UI layers can render without correlating multiple events.
1129    TurnBlocked,
1130    /// A bounded tool-free recovery pass was scheduled after blocked calls.
1131    BlockedRecoveryStarted,
1132    /// A bounded tool-free recovery pass finished.
1133    BlockedRecoveryFinished,
1134    BlockedHandoffWritten,
1135    /// The owning session resolved its archived blocked handoff and removed
1136    /// the live recovery pointer.
1137    BlockedHandoffResolved,
1138    EvaluationStarted,
1139    EvaluationPassed,
1140    EvaluationFailed,
1141    RevisionStarted,
1142    EscalationTriggered,
1143    EscalationBypassed,
1144    VerificationStarted,
1145    VerificationPassed,
1146    VerificationFailed,
1147    /// Agent recovered from a transient error (e.g. after retry succeeded).
1148    ErrorRecovered,
1149    /// A transient tool failure triggered an automatic retry attempt.
1150    ToolRetryAttempted,
1151    /// Latency record for a tool execution, emitted on turn completion.
1152    ToolLatencyRecorded,
1153    /// A checkpoint snapshot was created for the current turn.
1154    SnapshotCreated,
1155    /// A checkpoint snapshot was restored (rewind operation).
1156    SnapshotRestored,
1157    /// The user granted additional session tool-call capacity and the
1158    /// pending call will be retried in the same turn.
1159    SessionToolLimitIncreased,
1160    /// The user granted additional tool-loop capacity for the current turn.
1161    ToolLoopLimitIncreased,
1162}
1163
1164#[derive(Debug, Clone, Copy, Serialize, Deserialize, PartialEq, Eq)]
1165#[cfg_attr(feature = "schema-export", derive(schemars::JsonSchema))]
1166#[serde(rename_all = "snake_case")]
1167pub enum PermissionDecision {
1168    Allow,
1169    Deny,
1170    Cancelled,
1171    Followup,
1172}
1173
1174#[derive(Debug, Clone, Serialize, Deserialize, PartialEq, Eq)]
1175#[cfg_attr(feature = "schema-export", derive(schemars::JsonSchema))]
1176pub struct PermissionRequestedEvent {
1177    /// Name of the tool that requires permission.
1178    pub tool_name: String,
1179}
1180
1181#[derive(Debug, Clone, Serialize, Deserialize, PartialEq, Eq)]
1182#[cfg_attr(feature = "schema-export", derive(schemars::JsonSchema))]
1183pub struct PermissionResolvedEvent {
1184    /// Name of the tool that was permitted or denied.
1185    pub tool_name: String,
1186    /// User's decision on the permission prompt.
1187    pub decision: PermissionDecision,
1188    /// Wall-clock time the prompt was visible, in milliseconds.
1189    pub wait_ms: u64,
1190}
1191
1192#[derive(Debug, Clone, Copy, Serialize, Deserialize, PartialEq, Eq)]
1193#[cfg_attr(feature = "schema-export", derive(schemars::JsonSchema))]
1194#[serde(rename_all = "snake_case")]
1195pub enum InterjectionSource {
1196    Direct,
1197    Queue,
1198}
1199
1200#[derive(Debug, Clone, Copy, Serialize, Deserialize, PartialEq, Eq)]
1201#[cfg_attr(feature = "schema-export", derive(schemars::JsonSchema))]
1202#[serde(rename_all = "snake_case")]
1203pub enum RedirectKind {
1204    Interjection,
1205}
1206
1207#[derive(Debug, Clone, Serialize, Deserialize, PartialEq, Eq)]
1208#[cfg_attr(feature = "schema-export", derive(schemars::JsonSchema))]
1209pub struct InterjectedEvent {
1210    /// How the interjection reached the running turn.
1211    pub source: InterjectionSource,
1212    /// Number of image attachments that accompanied the interjection.
1213    pub image_count: u32,
1214    /// Always `Interjection` for this event; carried so the shared
1215    /// `redirect_kind` field is queryable uniformly across redirect events.
1216    pub redirect_kind: RedirectKind,
1217}
1218
1219#[derive(Debug, Clone, Serialize, Deserialize, PartialEq, Eq)]
1220#[cfg_attr(feature = "schema-export", derive(schemars::JsonSchema))]
1221pub struct HarnessEventItem {
1222    /// Specific harness event emitted by the runtime.
1223    pub event: HarnessEventKind,
1224    /// Optional human-readable message associated with the event.
1225    #[serde(skip_serializing_if = "Option::is_none")]
1226    pub message: Option<String>,
1227    /// Optional verification command associated with the event.
1228    #[serde(skip_serializing_if = "Option::is_none")]
1229    pub command: Option<String>,
1230    /// Optional artifact path associated with the event.
1231    #[serde(skip_serializing_if = "Option::is_none")]
1232    pub path: Option<String>,
1233    /// Optional exit code associated with verification results.
1234    #[serde(skip_serializing_if = "Option::is_none")]
1235    pub exit_code: Option<i32>,
1236    /// Retry/recovery attempt number (1-indexed). Only set for retry-related events.
1237    #[serde(skip_serializing_if = "Option::is_none")]
1238    pub attempt: Option<u32>,
1239    /// Canonical error category for retry/recovery events.
1240    #[serde(skip_serializing_if = "Option::is_none")]
1241    pub error_category: Option<String>,
1242    /// Latency in milliseconds for tool-execution latency events.
1243    #[serde(skip_serializing_if = "Option::is_none")]
1244    pub duration_ms: Option<u64>,
1245}
1246
1247#[derive(Debug, Clone, Serialize, Deserialize, PartialEq, Eq)]
1248#[cfg_attr(feature = "schema-export", derive(schemars::JsonSchema))]
1249pub struct ErrorItem {
1250    /// Error message displayed to the user or logs.
1251    pub message: String,
1252}
1253
1254#[cfg(test)]
1255mod tests {
1256    use super::*;
1257    use std::error::Error;
1258    use std::mem::size_of;
1259
1260    /// `ThreadEvent` is pushed into `Vec`s per streaming delta and accumulated
1261    /// for whole sessions. Large sparse payloads must stay boxed so the enum
1262    /// does not balloon from alignment/discriminant padding (see
1263    /// docs/development/rust-performance-principles.md, "Enum footprint").
1264    #[test]
1265    fn thread_event_stays_compact() {
1266        assert!(
1267            size_of::<ThreadEvent>() <= 80,
1268            "ThreadEvent grew to {} bytes; box new large payloads instead of inlining them",
1269            size_of::<ThreadEvent>()
1270        );
1271    }
1272
1273    /// Boxing only pays off while the inline (unboxed) payload is larger than
1274    /// a pointer. Guard each boxed variant against accidental unboxing.
1275    #[test]
1276    fn boxed_thread_item_details_payloads_stay_boxed() {
1277        assert!(size_of::<Option<Box<CommandExecutionItem>>>() < size_of::<Option<CommandExecutionItem>>());
1278        assert!(size_of::<Option<Box<ToolInvocationItem>>>() < size_of::<Option<ToolInvocationItem>>());
1279        assert!(size_of::<Option<Box<ToolOutputItem>>>() < size_of::<Option<ToolOutputItem>>());
1280        assert!(size_of::<Option<Box<FileChangeItem>>>() < size_of::<Option<FileChangeItem>>());
1281        assert!(size_of::<Option<Box<McpToolCallItem>>>() < size_of::<Option<McpToolCallItem>>());
1282        assert!(size_of::<Option<Box<WebSearchItem>>>() < size_of::<Option<WebSearchItem>>());
1283        assert!(size_of::<Option<Box<HarnessEventItem>>>() < size_of::<Option<HarnessEventItem>>());
1284    }
1285
1286    #[test]
1287    fn thread_event_round_trip() -> Result<(), Box<dyn Error>> {
1288        let event = ThreadEvent::TurnCompleted(TurnCompletedEvent {
1289            usage: Usage {
1290                input_tokens: 1,
1291                cached_input_tokens: 2,
1292                cache_creation_tokens: 0,
1293                output_tokens: 3,
1294            },
1295        });
1296
1297        let json = serde_json::to_string(&event)?;
1298        let restored: ThreadEvent = serde_json::from_str(&json)?;
1299
1300        assert_eq!(restored, event);
1301        Ok(())
1302    }
1303
1304    #[test]
1305    fn turn_blocked_event_round_trip() -> Result<(), Box<dyn Error>> {
1306        let event = ThreadEvent::TurnBlocked(Box::new(TurnBlockedEvent {
1307            message: "Blocked tool-call limit reached after 3 consecutive blocked calls.".to_string(),
1308            last_tool: Some("exec_command".to_string()),
1309            blocked_streak: 4,
1310            blocked_total: 4,
1311            consecutive_cap: 3,
1312            total_cap: 6,
1313            recovery_active: false,
1314            usage: None,
1315        }));
1316
1317        let json = serde_json::to_string(&event)?;
1318        assert!(json.contains("turn.blocked"));
1319        let restored: ThreadEvent = serde_json::from_str(&json)?;
1320        assert_eq!(restored, event);
1321
1322        // Legacy payloads without new counters still parse via defaults.
1323        let legacy = serde_json::json!({"type": "turn.blocked", "message": "blocked"});
1324        let parsed: ThreadEvent = serde_json::from_value(legacy)?;
1325        assert!(matches!(parsed, ThreadEvent::TurnBlocked(_)));
1326        Ok(())
1327    }
1328
1329    #[test]
1330    fn usage_uncached_input_tokens_saturates() {
1331        let usage = Usage {
1332            input_tokens: 1_000,
1333            cached_input_tokens: 800,
1334            cache_creation_tokens: 100,
1335            output_tokens: 50,
1336        };
1337        assert_eq!(usage.uncached_input_tokens(), 100);
1338
1339        let inconsistent = Usage {
1340            input_tokens: 100,
1341            cached_input_tokens: 150,
1342            cache_creation_tokens: 0,
1343            output_tokens: 0,
1344        };
1345        assert_eq!(inconsistent.uncached_input_tokens(), 0);
1346
1347        let inconsistent_with_creation = Usage {
1348            input_tokens: 100,
1349            cached_input_tokens: 80,
1350            cache_creation_tokens: 50,
1351            output_tokens: 0,
1352        };
1353        assert_eq!(inconsistent_with_creation.uncached_input_tokens(), 0);
1354    }
1355
1356    #[test]
1357    fn usage_cache_hit_rate() {
1358        assert_eq!(Usage::default().cache_hit_rate(), None);
1359
1360        let usage = Usage {
1361            input_tokens: 1_000,
1362            cached_input_tokens: 750,
1363            cache_creation_tokens: 0,
1364            output_tokens: 0,
1365        };
1366        let rate = usage.cache_hit_rate().expect("rate");
1367        assert!((rate - 0.75).abs() < f64::EPSILON);
1368    }
1369
1370    #[test]
1371    fn usage_cache_summary_formats() {
1372        assert_eq!(Usage::default().cache_summary(), "No input tokens recorded.");
1373
1374        let usage = Usage {
1375            input_tokens: 1_000,
1376            cached_input_tokens: 800,
1377            cache_creation_tokens: 100,
1378            output_tokens: 50,
1379        };
1380        assert_eq!(
1381            usage.cache_summary(),
1382            "Cache: 800 cached / 1000 total input (80.0% hit rate), 100 cache-creation, 100 uncached"
1383        );
1384    }
1385
1386    #[test]
1387    fn usage_add_accumulates_all_fields_with_saturation() {
1388        let mut total = Usage {
1389            input_tokens: 100,
1390            cached_input_tokens: 20,
1391            cache_creation_tokens: 5,
1392            output_tokens: 10,
1393        };
1394        total.add(&Usage {
1395            input_tokens: 50,
1396            cached_input_tokens: 10,
1397            cache_creation_tokens: 2,
1398            output_tokens: 8,
1399        });
1400
1401        assert_eq!(total.input_tokens, 150);
1402        assert_eq!(total.cached_input_tokens, 30);
1403        assert_eq!(total.cache_creation_tokens, 7);
1404        assert_eq!(total.output_tokens, 18);
1405
1406        let mut saturating = Usage {
1407            input_tokens: u64::MAX,
1408            cached_input_tokens: u64::MAX,
1409            cache_creation_tokens: u64::MAX,
1410            output_tokens: u64::MAX,
1411        };
1412        saturating.add(&Usage {
1413            input_tokens: 1,
1414            cached_input_tokens: 1,
1415            cache_creation_tokens: 1,
1416            output_tokens: 1,
1417        });
1418        assert_eq!(saturating.input_tokens, u64::MAX);
1419        assert_eq!(saturating.cached_input_tokens, u64::MAX);
1420        assert_eq!(saturating.cache_creation_tokens, u64::MAX);
1421        assert_eq!(saturating.output_tokens, u64::MAX);
1422    }
1423
1424    #[test]
1425    fn versioned_event_wraps_schema_version() {
1426        let event = ThreadEvent::ThreadStarted(ThreadStartedEvent { thread_id: "abc".to_string() });
1427
1428        let versioned = VersionedThreadEvent::new(event.clone());
1429
1430        assert_eq!(versioned.schema_version, EVENT_SCHEMA_VERSION);
1431        assert_eq!(versioned.event, event);
1432        assert_eq!(versioned.into_event(), event);
1433    }
1434
1435    #[test]
1436    fn plan_approval_events_round_trip_with_decision() {
1437        let requested = ThreadEvent::PlanApprovalRequested(PlanApprovalRequestedEvent {
1438            thread_id: "thread-1".to_string(),
1439            turn_id: "turn-2".to_string(),
1440            plan_file: Some(".vtcode/plans/change.md".to_string()),
1441        });
1442        let resolved = ThreadEvent::PlanApprovalResolved(PlanApprovalResolvedEvent {
1443            thread_id: "thread-1".to_string(),
1444            turn_id: "turn-3".to_string(),
1445            decision: PlanApprovalDecision::AutoAccept,
1446            automatic: false,
1447        });
1448
1449        for event in [requested, resolved] {
1450            let serialized = serde_json::to_string(&event).expect("serialize plan approval event");
1451            let restored: ThreadEvent = serde_json::from_str(&serialized).expect("deserialize plan approval event");
1452            assert_eq!(restored, event);
1453        }
1454    }
1455
1456    #[test]
1457    fn context_reset_event_round_trips_with_handoff_metadata() {
1458        let event = ThreadEvent::ContextReset(ContextResetEvent {
1459            thread_id: "thread-1".to_string(),
1460            turn_id: "turn-3".to_string(),
1461            trigger: ContextResetTrigger::PlanApproval,
1462            plan_preserved: true,
1463            previous_context_usage_percent: 7,
1464            tool_budget_reset: true,
1465        });
1466
1467        let serialized = serde_json::to_string(&event).expect("serialize context reset event");
1468        let restored: ThreadEvent = serde_json::from_str(&serialized).expect("deserialize context reset event");
1469        assert_eq!(restored, event);
1470        assert_eq!(serde_json::to_value(event).expect("wire value")["type"], "context.reset");
1471    }
1472
1473    #[test]
1474    fn plan_approval_decision_uses_stable_wire_names() {
1475        let event = ThreadEvent::PlanApprovalResolved(PlanApprovalResolvedEvent {
1476            thread_id: "thread-1".to_string(),
1477            turn_id: "turn-1".to_string(),
1478            decision: PlanApprovalDecision::SwitchBuild,
1479            automatic: false,
1480        });
1481
1482        let serialized = serde_json::to_value(event).expect("serialize plan approval decision");
1483        assert_eq!(serialized["type"], "plan.approval.resolved");
1484        assert_eq!(serialized["decision"], "switch_build");
1485    }
1486
1487    #[test]
1488    fn plan_approval_decision_is_forward_compatible() {
1489        let payload = serde_json::json!({
1490            "type": "plan.approval.resolved",
1491            "thread_id": "thread-1",
1492            "turn_id": "turn-1",
1493            "decision": "future_decision",
1494            "automatic": true,
1495        });
1496        let event: ThreadEvent = serde_json::from_value(payload).expect("future decision should deserialize");
1497        assert!(matches!(
1498            event,
1499            ThreadEvent::PlanApprovalResolved(PlanApprovalResolvedEvent {
1500                decision: PlanApprovalDecision::Unknown,
1501                automatic: true,
1502                ..
1503            })
1504        ));
1505    }
1506
1507    #[cfg(feature = "serde-json")]
1508    #[test]
1509    fn versioned_json_round_trip() -> Result<(), Box<dyn Error>> {
1510        let event = ThreadEvent::ItemCompleted(ItemCompletedEvent {
1511            item: ThreadItem {
1512                id: "item-1".to_string(),
1513                details: ThreadItemDetails::AgentMessage(AgentMessageItem { text: "hello".to_string() }),
1514            },
1515        });
1516
1517        let payload = json::versioned_to_string(&event)?;
1518        let restored = json::versioned_from_str(&payload)?;
1519
1520        assert_eq!(restored.schema_version, EVENT_SCHEMA_VERSION);
1521        assert_eq!(restored.event, event);
1522        Ok(())
1523    }
1524
1525    #[test]
1526    fn compaction_trigger_serializes_snake_case_and_round_trips() {
1527        for trigger in [
1528            CompactionTrigger::Manual,
1529            CompactionTrigger::Auto,
1530            CompactionTrigger::Recovery,
1531            CompactionTrigger::ModelSwitch,
1532            CompactionTrigger::Unknown,
1533        ] {
1534            let json = serde_json::to_string(&trigger).unwrap();
1535            assert_eq!(json, format!("\"{}\"", trigger.as_str()));
1536            let restored: CompactionTrigger = serde_json::from_str(&json).unwrap();
1537            assert_eq!(restored, trigger);
1538        }
1539    }
1540
1541    #[test]
1542    fn tool_invocation_round_trip() -> Result<(), Box<dyn Error>> {
1543        let event = ThreadEvent::ItemCompleted(ItemCompletedEvent {
1544            item: ThreadItem {
1545                id: "tool_1".to_string(),
1546                details: ThreadItemDetails::ToolInvocation(Box::new(ToolInvocationItem {
1547                    tool_name: "read_file".to_string(),
1548                    arguments: Some(serde_json::json!({ "path": "README.md" })),
1549                    tool_call_id: Some("tool_call_0".to_string()),
1550                    status: ToolCallStatus::Completed,
1551                    outcome: None,
1552                })),
1553            },
1554        });
1555
1556        let json = serde_json::to_string(&event)?;
1557        let restored: ThreadEvent = serde_json::from_str(&json)?;
1558
1559        assert_eq!(restored, event);
1560        Ok(())
1561    }
1562
1563    #[test]
1564    fn tool_outcome_serializes_snake_case() {
1565        for outcome in [
1566            ToolOutcome::Success,
1567            ToolOutcome::Error,
1568            ToolOutcome::PermissionRejected,
1569            ToolOutcome::PermissionCancelled,
1570            ToolOutcome::Followup,
1571            ToolOutcome::HookDenied,
1572            ToolOutcome::InvalidTool,
1573            ToolOutcome::Cancelled,
1574        ] {
1575            let json = serde_json::to_string(&outcome).unwrap();
1576            let restored: ToolOutcome = serde_json::from_str(&json).unwrap();
1577            assert_eq!(restored, outcome);
1578        }
1579    }
1580
1581    #[test]
1582    fn tool_invocation_outcome_round_trip() -> Result<(), Box<dyn Error>> {
1583        let event = ThreadEvent::ItemCompleted(ItemCompletedEvent {
1584            item: ThreadItem {
1585                id: "tool_1".to_string(),
1586                details: ThreadItemDetails::ToolInvocation(Box::new(ToolInvocationItem {
1587                    tool_name: "exec_command".to_string(),
1588                    arguments: Some(serde_json::json!({ "command": ["pwd"] })),
1589                    tool_call_id: Some("tool_call_0".to_string()),
1590                    status: ToolCallStatus::Failed,
1591                    outcome: Some(ToolOutcome::PermissionRejected),
1592                })),
1593            },
1594        });
1595
1596        let json = serde_json::to_string(&event)?;
1597        let restored: ThreadEvent = serde_json::from_str(&json)?;
1598
1599        assert_eq!(restored, event);
1600        Ok(())
1601    }
1602
1603    #[test]
1604    fn tool_output_round_trip_preserves_raw_tool_call_id() -> Result<(), Box<dyn Error>> {
1605        let event = ThreadEvent::ItemCompleted(ItemCompletedEvent {
1606            item: ThreadItem {
1607                id: "tool_1:output".to_string(),
1608                details: ThreadItemDetails::ToolOutput(Box::new(ToolOutputItem {
1609                    call_id: "tool_1".to_string(),
1610                    tool_call_id: Some("tool_call_0".to_string()),
1611                    spool_path: None,
1612                    output: "done".to_string(),
1613                    exit_code: Some(0),
1614                    status: ToolCallStatus::Completed,
1615                })),
1616            },
1617        });
1618
1619        let json = serde_json::to_string(&event)?;
1620        let restored: ThreadEvent = serde_json::from_str(&json)?;
1621
1622        assert_eq!(restored, event);
1623        Ok(())
1624    }
1625
1626    #[test]
1627    fn harness_item_round_trip() -> Result<(), Box<dyn Error>> {
1628        let event = ThreadEvent::ItemCompleted(ItemCompletedEvent {
1629            item: ThreadItem {
1630                id: "harness_1".to_string(),
1631                details: ThreadItemDetails::Harness(Box::new(HarnessEventItem {
1632                    event: HarnessEventKind::VerificationFailed,
1633                    message: Some("cargo check failed".to_string()),
1634                    command: Some("cargo check".to_string()),
1635                    path: None,
1636                    exit_code: Some(101),
1637                    attempt: None,
1638                    error_category: None,
1639                    duration_ms: None,
1640                })),
1641            },
1642        });
1643
1644        let json = serde_json::to_string(&event)?;
1645        let restored: ThreadEvent = serde_json::from_str(&json)?;
1646
1647        assert_eq!(restored, event);
1648        Ok(())
1649    }
1650
1651    #[test]
1652    fn blocked_handoff_resolved_uses_stable_wire_name() -> Result<(), Box<dyn Error>> {
1653        let event = ThreadEvent::ItemCompleted(ItemCompletedEvent {
1654            item: ThreadItem {
1655                id: "harness_resolved".to_string(),
1656                details: ThreadItemDetails::Harness(Box::new(HarnessEventItem {
1657                    event: HarnessEventKind::BlockedHandoffResolved,
1658                    message: Some("resolved".to_string()),
1659                    command: None,
1660                    path: None,
1661                    exit_code: None,
1662                    attempt: None,
1663                    error_category: None,
1664                    duration_ms: None,
1665                })),
1666            },
1667        });
1668
1669        let value = serde_json::to_value(&event)?;
1670        assert_eq!(value["item"]["event"], "blocked_handoff_resolved");
1671
1672        let restored: ThreadEvent = serde_json::from_value(value)?;
1673        assert_eq!(restored, event);
1674        Ok(())
1675    }
1676
1677    #[test]
1678    fn thread_completed_round_trip() -> Result<(), Box<dyn Error>> {
1679        let event = ThreadEvent::ThreadCompleted(Box::new(ThreadCompletedEvent {
1680            thread_id: "thread-1".to_string(),
1681            session_id: "session-1".to_string(),
1682            subtype: ThreadCompletionSubtype::ErrorMaxBudgetUsd,
1683            outcome_code: "budget_limit_reached".to_string(),
1684            result: None,
1685            stop_reason: Some("max_tokens".to_string()),
1686            usage: Usage {
1687                input_tokens: 10,
1688                cached_input_tokens: 4,
1689                cache_creation_tokens: 2,
1690                output_tokens: 5,
1691            },
1692            total_cost_usd: serde_json::Number::from_f64(1.25),
1693            num_turns: 3,
1694        }));
1695
1696        let json = serde_json::to_string(&event)?;
1697        let restored: ThreadEvent = serde_json::from_str(&json)?;
1698
1699        assert_eq!(restored, event);
1700        Ok(())
1701    }
1702
1703    #[test]
1704    fn compact_boundary_round_trip() -> Result<(), Box<dyn Error>> {
1705        let event = ThreadEvent::ThreadCompactBoundary(Box::new(ThreadCompactBoundaryEvent {
1706            thread_id: "thread-1".to_string(),
1707            trigger: CompactionTrigger::Recovery,
1708            mode: CompactionMode::Provider,
1709            original_message_count: 12,
1710            compacted_message_count: 5,
1711            history_artifact_path: Some("/tmp/history.jsonl".to_string()),
1712            previous_segment_id: Some("segment-0001".to_string()),
1713            new_segment_id: Some("segment-0002".to_string()),
1714            previous_prefix_hash: Some("prefix-before".to_string()),
1715            new_prefix_hash: Some("prefix-after".to_string()),
1716            previous_catalog_hash: Some("catalog-before".to_string()),
1717            new_catalog_hash: Some("catalog-after".to_string()),
1718        }));
1719
1720        let json = serde_json::to_string(&event)?;
1721        let restored: ThreadEvent = serde_json::from_str(&json)?;
1722
1723        assert_eq!(restored, event);
1724        Ok(())
1725    }
1726
1727    #[test]
1728    fn compact_boundary_deserializes_legacy_payload_without_segment_metadata() -> Result<(), Box<dyn Error>> {
1729        let payload = r#"{
1730            "type":"thread.compact_boundary",
1731            "thread_id":"thread-1",
1732            "trigger":"recovery",
1733            "mode":"provider",
1734            "original_message_count":12,
1735            "compacted_message_count":5
1736        }"#;
1737
1738        let restored: ThreadEvent = serde_json::from_str(payload)?;
1739        let ThreadEvent::ThreadCompactBoundary(event) = restored else {
1740            panic!("expected thread.compact_boundary event");
1741        };
1742
1743        assert_eq!(event.thread_id, "thread-1");
1744        assert_eq!(event.history_artifact_path, None);
1745        assert_eq!(event.previous_segment_id, None);
1746        assert_eq!(event.new_segment_id, None);
1747        assert_eq!(event.previous_prefix_hash, None);
1748        assert_eq!(event.new_prefix_hash, None);
1749        assert_eq!(event.previous_catalog_hash, None);
1750        assert_eq!(event.new_catalog_hash, None);
1751        Ok(())
1752    }
1753}