1use crate::{ActInput, ExecutionContext, ReasonResult};
10use chrono::{DateTime, Utc};
11use everruns_core::events::{TokenUsage, TurnCompletedData};
12use everruns_core::turn::TurnStopReason;
13use everruns_provider::typed_id::{
14 AgentId, ExecId, HarnessId, MessageId, SessionId, TurnId, WorkspaceId,
15};
16use everruns_provider::user_facing_error::codes as user_facing_error_codes;
17use everruns_provider::user_facing_error::{
18 ErrorDisclosure, UserFacingError, UserFacingErrorContext, classify_runtime_error_message,
19};
20use serde::{Deserialize, Serialize};
21use tracing::{debug, info};
22
23#[derive(Debug, Clone, Serialize, Deserialize)]
32pub struct TurnState {
33 pub org_id: i64,
34 pub session_id: SessionId,
35 pub harness_id: HarnessId,
36 pub agent_id: Option<AgentId>,
37 pub input_message_id: MessageId,
38 #[serde(skip_serializing_if = "Option::is_none")]
39 pub turn_id: Option<TurnId>,
40 #[serde(skip_serializing_if = "Option::is_none", default)]
41 pub previous_response_id: Option<String>,
42 #[serde(default = "default_iteration")]
43 pub iteration: u32,
44 #[serde(skip_serializing_if = "Option::is_none", default)]
45 pub request_id: Option<String>,
46 #[serde(skip_serializing_if = "Option::is_none", default)]
47 pub started_at: Option<DateTime<Utc>>,
48 #[serde(skip_serializing_if = "Option::is_none", default)]
49 pub cumulative_usage: Option<TokenUsage>,
50 #[serde(default)]
51 pub tool_call_count: u32,
52 #[serde(default)]
53 pub llm_call_count: u32,
54 #[serde(skip_serializing_if = "Option::is_none", default)]
55 pub time_to_first_token_ms: Option<u64>,
56 #[serde(skip_serializing_if = "Option::is_none", default)]
57 pub final_message_id: Option<MessageId>,
58 #[serde(skip_serializing_if = "Option::is_none", default)]
59 pub final_answer_preview: Option<String>,
60}
61
62fn default_iteration() -> u32 {
63 1
64}
65
66#[derive(Debug, Clone)]
70pub struct ActPlan {
71 pub input: ActInput,
72 pub previous_response_id: Option<String>,
73 pub iteration: u32,
74 pub request_id: Option<String>,
75 pub resume_state: Box<TurnState>,
76}
77
78#[derive(Debug, Clone)]
84pub enum TurnPlan {
85 ScheduleReason(TurnState),
86 ScheduleAct(ActPlan),
87 Complete {
88 stop_reason: TurnStopReason,
89 error: Option<String>,
90 },
91 WaitForToolResults {
92 resume: TurnState,
93 },
94}
95
96#[derive(Debug, Clone)]
104pub enum TurnLifecycleEffect {
105 TurnCompleted {
107 input_message_id: MessageId,
108 data: TurnCompletedData,
109 },
110 SessionIdled {
112 turn_id: TurnId,
113 input_message_id: MessageId,
114 iterations: Option<u32>,
115 usage: Option<TokenUsage>,
116 },
117 TurnFailedWithDisclosure {
120 turn_id: TurnId,
121 input_message_id: MessageId,
122 text: String,
123 user_error: Option<UserFacingError>,
124 disclosure: Option<ErrorDisclosure>,
125 },
126 FireTurnEndHooks {
128 harness_id: HarnessId,
129 agent_id: Option<AgentId>,
130 turn_id: TurnId,
131 success: bool,
132 },
133 WaitingForToolResults,
135}
136
137#[derive(Debug, Clone, Copy, Default)]
139pub struct ActOutcome {
140 pub blocked: bool,
141 pub waiting_for_tool_results: bool,
142}
143
144#[derive(Debug, Clone, Default)]
152pub struct ActSchedulingFacts {
153 pub blueprint_id: Option<String>,
154 pub workspace_id: Option<WorkspaceId>,
155}
156
157pub enum ActivityOutcome {
163 ProcessInput { turn_id: Option<TurnId> },
164 Reason(Box<ReasonResult>),
166 Act(ActOutcome),
167}
168
169#[derive(Debug, Clone, Default)]
176pub struct HostFacts {
177 pub act_scheduling: Option<ActSchedulingFacts>,
178 pub setup_connection_hint_enabled: bool,
179}
180
181fn preview_final_answer(text: &str) -> Option<String> {
182 if text.is_empty() {
183 return None;
184 }
185
186 Some(text.chars().take(2000).collect())
187}
188
189fn add_usage(current: &mut Option<TokenUsage>, next: &TokenUsage) {
190 match current {
191 Some(current) => current.add(next),
192 None => *current = Some(next.clone()),
193 }
194}
195
196impl TurnState {
197 pub(crate) fn with_reason_summary(&self, reason_result: &ReasonResult) -> Self {
198 let mut next = self.clone();
199 next.llm_call_count = next.llm_call_count.saturating_add(1);
200 next.tool_call_count = next
201 .tool_call_count
202 .saturating_add(reason_result.tool_calls.len() as u32);
203 if let Some(usage) = &reason_result.usage {
204 add_usage(&mut next.cumulative_usage, usage);
205 }
206 if next.time_to_first_token_ms.is_none() {
207 next.time_to_first_token_ms = reason_result.time_to_first_token_ms;
208 }
209 next.final_message_id = reason_result.output_message_id;
210 next.final_answer_preview = preview_final_answer(&reason_result.text);
211 next
212 }
213
214 fn duration_ms(&self, now: DateTime<Utc>) -> Option<u64> {
217 self.started_at
218 .map(|started_at| now.signed_duration_since(started_at))
219 .and_then(|duration| u64::try_from(duration.num_milliseconds()).ok())
220 }
221}
222
223fn classify_reason_failure(reason_result: &ReasonResult) -> UserFacingError {
224 if let Some(user_error) = &reason_result.user_facing_error {
228 return user_error.clone();
229 }
230
231 let from_text =
232 classify_runtime_error_message(&reason_result.text, &UserFacingErrorContext::default());
233
234 let Some(error) = reason_result.error.as_deref() else {
235 return from_text;
236 };
237
238 let from_error = classify_runtime_error_message(error, &UserFacingErrorContext::default());
239
240 if from_error.code == user_facing_error_codes::PROCESSING_ERROR {
241 return from_text;
242 }
243
244 if from_error.code == from_text.code
245 && from_error.fields.is_empty()
246 && !from_text.fields.is_empty()
247 {
248 return from_text;
249 }
250
251 from_error
252}
253
254pub fn reason_schedules_act(state: &TurnState, reason_result: &ReasonResult) -> bool {
262 let max_turn_requests_reached = state.iteration >= reason_result.max_iterations as u32;
263 reason_result.has_tool_calls && reason_result.success && !max_turn_requests_reached
264}
265
266pub fn plan_next_turn(
274 state: &TurnState,
275 outcome: ActivityOutcome,
276 pending_user_message_count: usize,
277 now: DateTime<Utc>,
278 facts: HostFacts,
279) -> (TurnPlan, Vec<TurnLifecycleEffect>) {
280 match outcome {
281 ActivityOutcome::ProcessInput { turn_id } => {
282 (plan_after_process_input(state, turn_id, now), Vec::new())
283 }
284 ActivityOutcome::Reason(reason_result) => plan_after_reason(
285 state,
286 *reason_result,
287 pending_user_message_count,
288 now,
289 facts.act_scheduling,
290 ),
291 ActivityOutcome::Act(outcome) => {
292 plan_after_act(state, outcome, facts.setup_connection_hint_enabled)
293 }
294 }
295}
296
297pub fn plan_after_process_input(
299 state: &TurnState,
300 turn_id: Option<TurnId>,
301 now: DateTime<Utc>,
302) -> TurnPlan {
303 let next = TurnState {
304 turn_id,
305 previous_response_id: None,
306 iteration: 1,
307 started_at: state.started_at.or(Some(now)),
308 ..state.clone()
309 };
310 debug!(session_id = %state.session_id, turn_id = ?turn_id, "planned reason step");
311 TurnPlan::ScheduleReason(next)
312}
313
314pub fn plan_after_reason(
321 state: &TurnState,
322 reason_result: ReasonResult,
323 pending_user_message_count: usize,
324 now: DateTime<Utc>,
325 act_scheduling: Option<ActSchedulingFacts>,
326) -> (TurnPlan, Vec<TurnLifecycleEffect>) {
327 let response_id = reason_result.response_id.clone();
328 let summarized_state = state.with_reason_summary(&reason_result);
329 let max_turn_requests_reached = state.iteration >= reason_result.max_iterations as u32;
330
331 if reason_schedules_act(state, &reason_result) {
332 let facts = act_scheduling.unwrap_or_default();
333 let plan = ActPlan {
334 input: ActInput {
335 org_id: Some(state.org_id),
336 context: ExecutionContext {
337 session_id: state.session_id,
338 turn_id: state.turn_id.unwrap_or_default(),
339 input_message_id: state.input_message_id,
340 exec_id: ExecId::new(),
341 workspace_id: facts.workspace_id,
342 },
343 harness_id: state.harness_id,
344 agent_id: state.agent_id,
345 tool_calls: reason_result.tool_calls,
346 tool_definitions: reason_result.tool_definitions,
347 locale: reason_result.locale,
348 blueprint_id: facts.blueprint_id,
349 network_access: reason_result.network_access,
350 parallel_tool_calls: reason_result.parallel_tool_calls,
353 },
354 previous_response_id: response_id,
355 iteration: state.iteration,
356 request_id: state.request_id.clone(),
357 resume_state: Box::new(summarized_state),
358 };
359 return (TurnPlan::ScheduleAct(plan), Vec::new());
360 }
361
362 if reason_result.success && pending_user_message_count > 0 && !max_turn_requests_reached {
363 if pending_user_message_count > 1 {
364 info!(
365 session_id = %state.session_id,
366 pending_user_message_count,
367 "multiple steering messages arrived during turn"
368 );
369 }
370
371 let next = TurnState {
372 previous_response_id: response_id,
373 iteration: state.iteration.saturating_add(1),
374 ..summarized_state
375 };
376 return (TurnPlan::ScheduleReason(next), Vec::new());
377 }
378
379 let turn_id = state.turn_id.unwrap_or_default();
380 let mut effects = Vec::new();
381
382 if reason_result.success {
383 effects.push(TurnLifecycleEffect::TurnCompleted {
384 input_message_id: state.input_message_id,
385 data: TurnCompletedData {
386 turn_id,
387 iterations: state.iteration,
388 duration_ms: summarized_state.duration_ms(now),
389 usage: summarized_state.cumulative_usage.clone(),
390 input_content: None,
391 final_message_id: summarized_state.final_message_id,
392 final_answer_preview: summarized_state.final_answer_preview.clone(),
393 time_to_first_token_ms: summarized_state.time_to_first_token_ms,
394 tool_call_count: Some(summarized_state.tool_call_count),
395 llm_call_count: Some(summarized_state.llm_call_count),
396 status: Some("completed".to_string()),
397 },
398 });
399 effects.push(TurnLifecycleEffect::SessionIdled {
400 turn_id,
401 input_message_id: state.input_message_id,
402 iterations: Some(state.iteration),
403 usage: summarized_state.cumulative_usage.clone(),
404 });
405 } else {
406 let user_error = classify_reason_failure(&reason_result);
407 effects.push(TurnLifecycleEffect::TurnFailedWithDisclosure {
408 turn_id,
409 input_message_id: state.input_message_id,
410 text: reason_result.text.clone(),
411 user_error: Some(user_error),
412 disclosure: reason_result.error_disclosure,
413 });
414 }
415
416 effects.push(TurnLifecycleEffect::FireTurnEndHooks {
419 harness_id: state.harness_id,
420 agent_id: state.agent_id,
421 turn_id,
422 success: reason_result.success,
423 });
424
425 let stop_reason = if !reason_result.success {
426 match TurnStopReason::from_provider_finish_reason(reason_result.finish_reason.as_deref()) {
427 TurnStopReason::Refusal => TurnStopReason::Refusal,
428 _ => TurnStopReason::Error,
429 }
430 } else if max_turn_requests_reached
431 && (reason_result.has_tool_calls || pending_user_message_count > 0)
432 {
433 TurnStopReason::MaxTurnRequests
434 } else {
435 TurnStopReason::from_provider_finish_reason(reason_result.finish_reason.as_deref())
436 };
437
438 (
439 TurnPlan::Complete {
440 stop_reason,
441 error: reason_result.error,
442 },
443 effects,
444 )
445}
446
447pub fn plan_after_act(
453 state: &TurnState,
454 outcome: ActOutcome,
455 setup_connection_hint_enabled: bool,
456) -> (TurnPlan, Vec<TurnLifecycleEffect>) {
457 if outcome.blocked {
458 return (
459 TurnPlan::Complete {
460 stop_reason: TurnStopReason::EndTurn,
461 error: None,
462 },
463 Vec::new(),
464 );
465 }
466
467 let should_pause_for_tool_results =
468 outcome.waiting_for_tool_results && setup_connection_hint_enabled;
469
470 let next = TurnState {
471 iteration: state.iteration.saturating_add(1),
472 ..state.clone()
473 };
474
475 if should_pause_for_tool_results {
476 return (
477 TurnPlan::WaitForToolResults { resume: next },
478 vec![TurnLifecycleEffect::WaitingForToolResults],
479 );
480 }
481
482 if outcome.waiting_for_tool_results {
483 info!(
484 session_id = %state.session_id,
485 "setup_connection hint absent, continuing turn instead of pausing"
486 );
487 }
488
489 (TurnPlan::ScheduleReason(next), Vec::new())
490}