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lash_core/runtime/
turn_loop.rs

1use super::*;
2
3fn trace_fields_from_outcome(
4    outcome: &TurnOutcome,
5) -> (
6    &'static str,
7    &'static str,
8    Option<lash_trace::TraceAgentFrameSwitch>,
9) {
10    match outcome {
11        TurnOutcome::Finished(TurnFinish::AssistantMessage { .. }) => {
12            ("completed", "assistant_message", None)
13        }
14        TurnOutcome::Finished(TurnFinish::SubmittedValue { .. }) => {
15            ("completed", "submitted_value", None)
16        }
17        TurnOutcome::Finished(TurnFinish::ToolValue { .. }) => ("completed", "tool_value", None),
18        TurnOutcome::AgentFrameSwitch { frame_id, .. } => (
19            "completed",
20            "agent_frame_switch",
21            Some(lash_trace::TraceAgentFrameSwitch {
22                frame_id: frame_id.clone(),
23            }),
24        ),
25        TurnOutcome::Stopped(stop) => ("failed", trace_stop_reason(stop), None),
26    }
27}
28
29fn trace_stop_reason(stop: &TurnStop) -> &'static str {
30    match stop {
31        TurnStop::Cancelled => "cancelled",
32        TurnStop::Incomplete => "incomplete",
33        TurnStop::InvalidInput => "invalid_input",
34        TurnStop::MaxTurns => "max_turns",
35        TurnStop::ToolFailure => "tool_failure",
36        TurnStop::ProviderError => "provider_error",
37        TurnStop::PluginAbort => "plugin_abort",
38        TurnStop::RuntimeError => "runtime_error",
39        TurnStop::SubmittedError { .. } => "submitted_error",
40        TurnStop::ToolError { .. } => "tool_error",
41    }
42}
43
44fn session_head_refresh_error(err: SessionError) -> RuntimeError {
45    RuntimeError::new(
46        RuntimeErrorCode::Other("session_head_refresh".to_string()),
47        err.to_string(),
48    )
49}
50
51fn queued_work_payload_type(payload: &crate::QueuedWorkPayload) -> &'static str {
52    match payload {
53        crate::QueuedWorkPayload::TurnInput { .. } => "turn_input",
54        crate::QueuedWorkPayload::ProcessWake { .. } => "process_wake",
55        crate::QueuedWorkPayload::SessionCommand { command } => command.kind(),
56    }
57}
58
59fn queued_work_batch_ids(claim: &crate::QueuedWorkClaim) -> Vec<String> {
60    claim
61        .batches
62        .iter()
63        .map(|batch| batch.batch_id.clone())
64        .collect()
65}
66
67fn turn_phase_id(parent_turn_id: &str, phase: &str) -> String {
68    format!("{parent_turn_id}:{phase}")
69}
70
71fn scoped_child_turn_controller<'run>(
72    scoped_effect_controller: &'run ScopedEffectController<'_>,
73    session_id: &str,
74    turn_id: &str,
75) -> Result<ScopedEffectController<'run>, RuntimeError> {
76    ScopedEffectController::borrowed(
77        scoped_effect_controller.controller(),
78        EffectScope::turn(session_id, turn_id),
79    )
80}
81
82pub(in crate::runtime) fn queued_work_trace_payload(
83    boundary: crate::QueuedWorkClaimBoundary,
84    claim: &crate::QueuedWorkClaim,
85    causes: &[crate::TurnCause],
86) -> serde_json::Value {
87    serde_json::json!({
88        "boundary": boundary,
89        "claim_id": claim.claim_id,
90        "owner_id": claim.owner_id,
91        "batch_ids": queued_work_batch_ids(claim),
92        "payload_types": claim.batches.iter()
93            .flat_map(|batch| batch.items.iter())
94            .map(|item| queued_work_payload_type(&item.payload))
95            .collect::<Vec<_>>(),
96        "causes": causes,
97    })
98}
99
100pub(in crate::runtime) fn queued_work_completion_trace_payload(
101    completions: &[crate::QueuedWorkCompletion],
102) -> serde_json::Value {
103    serde_json::json!({
104        "claims": completions.iter().map(|completion| {
105            serde_json::json!({
106                "session_id": completion.session_id,
107                "claim_id": completion.claim_id,
108                "batch_ids": completion.batch_ids,
109            })
110        }).collect::<Vec<_>>(),
111    })
112}
113
114async fn emit_queued_work_started_to_sink(
115    events: &dyn TurnActivitySink,
116    boundary: crate::QueuedWorkClaimBoundary,
117    claim: &crate::QueuedWorkClaim,
118    causes: Vec<crate::TurnCause>,
119) {
120    emit_turn_activity_to_sink(
121        events,
122        TurnActivity::independent(TurnEvent::QueuedWorkStarted {
123            boundary,
124            batch_ids: queued_work_batch_ids(claim),
125            causes,
126        }),
127    )
128    .await;
129}
130
131pub(in crate::runtime) async fn send_queued_work_started_event(
132    event_tx: &mpsc::Sender<RuntimeStreamEvent>,
133    boundary: crate::QueuedWorkClaimBoundary,
134    claim: &crate::QueuedWorkClaim,
135    causes: Vec<crate::TurnCause>,
136) {
137    send_turn_activity(
138        event_tx,
139        TurnActivityId::fresh(),
140        TurnEvent::QueuedWorkStarted {
141            boundary,
142            batch_ids: queued_work_batch_ids(claim),
143            causes,
144        },
145    )
146    .await;
147}
148
149struct TurnFinishInput {
150    turn_pipeline: TurnBoundary,
151    assembler: TurnAssembler,
152    new_messages: crate::MessageSequence,
153    policy: RuntimeSessionPolicy,
154    turn_index: usize,
155    queued_work_completions: Vec<crate::QueuedWorkCompletion>,
156    trace_turn_id: String,
157}
158
159impl LashRuntime {
160    fn max_context_tokens(&self) -> usize {
161        self.state.effective_policy().context_window_tokens()
162    }
163    #[doc(hidden)]
164    pub fn set_turn_phase_probe(&mut self, probe: Arc<dyn RuntimeTurnPhaseProbe>) {
165        self.turn_phase_probe = Some(probe);
166    }
167
168    fn mark_phase_begin(&self, phase: RuntimeTurnPhase) {
169        if let Some(probe) = self.turn_phase_probe.as_ref() {
170            probe.begin(phase);
171        }
172    }
173
174    fn mark_phase_end(&self, phase: RuntimeTurnPhase) {
175        if let Some(probe) = self.turn_phase_probe.as_ref() {
176            probe.end(phase);
177        }
178    }
179
180    async fn finish_turn(
181        &mut self,
182        finish: TurnFinishInput,
183        events: &dyn EventSink,
184        scoped_effect_controller: &ScopedEffectController<'_>,
185        cancel_state: &CancellationToken,
186    ) -> Result<AssembledTurn, RuntimeError> {
187        let TurnFinishInput {
188            mut turn_pipeline,
189            assembler,
190            new_messages,
191            policy,
192            turn_index,
193            queued_work_completions,
194            trace_turn_id,
195        } = finish;
196        self.policy = self.state.effective_policy().clone();
197        turn_pipeline.state_mut().policy = self.policy.clone();
198        turn_pipeline.state_mut().turn_index = turn_index;
199
200        let mut turn_usage_delta = {
201            let mut ledger = self.shared_token_ledger.lock().expect("token ledger lock");
202            std::mem::take(&mut *ledger)
203        };
204        if assembler.token_usage.total() > 0 || assembler.token_usage.cached_input_tokens > 0 {
205            turn_usage_delta.push(TokenLedgerEntry {
206                source: "turn".to_string(),
207                model: policy.model.id.clone(),
208                usage: assembler.token_usage.clone(),
209            });
210        }
211        let turn_usage_delta = merge_usage_delta_entries(turn_usage_delta);
212
213        turn_pipeline.finalize_turn_read_state(new_messages, cancel_state.is_cancelled());
214        if assembler.token_usage.total() > 0 || assembler.token_usage.cached_input_tokens > 0 {
215            turn_pipeline.state_mut().token_usage = assembler.token_usage.clone();
216        }
217
218        let last_prompt_usage = assembler
219            .last_llm_usage()
220            .and_then(|usage| normalize_prompt_usage(policy.provider(), usage));
221        turn_pipeline.state_mut().last_prompt_usage = last_prompt_usage;
222        let assembled_state = turn_pipeline.export_state_for_assembly();
223        let assembled = assembler.finish(
224            assembled_state,
225            cancel_state.is_cancelled(),
226            None,
227            &self.host.core.control.termination,
228        );
229
230        let Some(session) = self.session.as_ref() else {
231            self.state.apply_snapshot(&assembled.state);
232            self.emit_completed_turn_trace(&assembled.state, &assembled.outcome, &trace_turn_id);
233            return Ok(assembled);
234        };
235
236        let plugins = Arc::clone(session.plugins());
237        let manager = match self.runtime_session_services_for_turn(None) {
238            Ok(manager) => manager,
239            Err(err) => {
240                return Err(RuntimeError::new(
241                    RuntimeErrorCode::PluginSessionManager,
242                    err.to_string(),
243                ));
244            }
245        };
246
247        self.mark_phase_begin(RuntimeTurnPhase::FinalizeTurn);
248        let finalized = match plugins
249            .finalize_turn_with_phase_probe(
250                assembled,
251                manager.state_service(),
252                manager.lifecycle_service(),
253                manager.graph_service(),
254                self.turn_phase_probe.clone(),
255            )
256            .await
257        {
258            Ok(finalized) => finalized,
259            Err(err) => {
260                self.mark_phase_end(RuntimeTurnPhase::FinalizeTurn);
261                return Err(RuntimeError::new(
262                    RuntimeErrorCode::PluginFinalizeTurn,
263                    err.to_string(),
264                ));
265            }
266        };
267        self.mark_phase_end(RuntimeTurnPhase::FinalizeTurn);
268
269        let mut returned_turn = finalized.turn;
270        self.mark_phase_begin(RuntimeTurnPhase::PersistTurn);
271        self.mark_phase_begin(RuntimeTurnPhase::FinalCommit);
272        let queued_work_completion_trace = queued_work_completions.clone();
273        let pending_attachment_ids = self
274            .host
275            .core
276            .durability
277            .attachment_store
278            .pending_manifest_commit_ids();
279        if let Err(err) = turn_pipeline
280            .final_commit(
281                &mut returned_turn,
282                self.session.as_mut(),
283                &turn_usage_delta,
284                Some(&trace_turn_id),
285                queued_work_completions,
286                pending_attachment_ids.clone(),
287            )
288            .await
289        {
290            self.mark_phase_end(RuntimeTurnPhase::FinalCommit);
291            self.mark_phase_end(RuntimeTurnPhase::PersistTurn);
292            return Err(err);
293        }
294        self.host
295            .core
296            .durability
297            .attachment_store
298            .mark_manifest_committed(&pending_attachment_ids);
299        self.mark_phase_end(RuntimeTurnPhase::FinalCommit);
300
301        emit_session_events_to_sink(events, finalized.events).await;
302        self.state = turn_pipeline.into_final_state();
303        if matches!(returned_turn.outcome, TurnOutcome::AgentFrameSwitch { .. })
304            && let Some(session) = self.session.as_mut()
305        {
306            let protocol_session = Arc::clone(session.plugins().protocol_session());
307            let session_id = self.state.session_id.clone();
308            protocol_session
309                .restore_session(
310                    crate::plugin::ProtocolSessionContext::new(session, &session_id),
311                    &self.state,
312                )
313                .await
314                .map_err(|err| {
315                    RuntimeError::new(
316                        RuntimeErrorCode::Other("protocol_restore_session".to_string()),
317                        err.to_string(),
318                    )
319                })?;
320        }
321        if !queued_work_completion_trace.is_empty() {
322            crate::trace::emit_trace(
323                &self.host.core.tracing.trace_sink,
324                &self.host.core.tracing.trace_context,
325                lash_trace::TraceContext::default()
326                    .for_session(returned_turn.state.session_id.clone())
327                    .for_turn_index(returned_turn.state.turn_index)
328                    .for_turn(trace_turn_id.clone()),
329                lash_trace::TraceEvent::Custom {
330                    name: "queued_work.completed".to_string(),
331                    payload: queued_work_completion_trace_payload(&queued_work_completion_trace),
332                },
333            );
334        }
335        self.mark_phase_begin(RuntimeTurnPhase::PostPersistHooks);
336        self.emit_turn_persisted_event(&returned_turn, scoped_effect_controller, &trace_turn_id)
337            .await?;
338        self.mark_phase_end(RuntimeTurnPhase::PostPersistHooks);
339        self.mark_phase_end(RuntimeTurnPhase::PersistTurn);
340
341        self.emit_completed_turn_trace(
342            &returned_turn.state,
343            &returned_turn.outcome,
344            &trace_turn_id,
345        );
346        Ok(returned_turn)
347    }
348
349    fn emit_completed_turn_trace(
350        &self,
351        state: &SessionSnapshot,
352        outcome: &TurnOutcome,
353        trace_turn_id: &str,
354    ) {
355        if self.host.core.tracing.trace_sink.is_none() {
356            return;
357        }
358
359        let (status, done_reason, agent_frame_switch) = trace_fields_from_outcome(outcome);
360        crate::trace::emit_trace(
361            &self.host.core.tracing.trace_sink,
362            &self.host.core.tracing.trace_context,
363            lash_trace::TraceContext::default()
364                .for_session(state.session_id.clone())
365                .for_turn_index(state.turn_index)
366                .for_turn(trace_turn_id.to_string()),
367            lash_trace::TraceEvent::TurnCompleted {
368                status: status.to_string(),
369                done_reason: done_reason.to_string(),
370                agent_frame_switch,
371            },
372        );
373    }
374
375    async fn emit_turn_persisted_event(
376        &self,
377        returned_turn: &AssembledTurn,
378        scoped_effect_controller: &ScopedEffectController<'_>,
379        trace_turn_id: &str,
380    ) -> Result<(), RuntimeError> {
381        let Some(session) = self.session.as_ref() else {
382            return Ok(());
383        };
384        let Ok(manager) = self.runtime_session_services() else {
385            return Ok(());
386        };
387        let phase_turn_id = turn_phase_id(trace_turn_id, "turn-persisted");
388        let phase_controller = scoped_child_turn_controller(
389            scoped_effect_controller,
390            &self.state.session_id,
391            &phase_turn_id,
392        )?;
393        let direct_completions = manager.direct_completion_client(
394            RuntimeEffectControllerHandle::borrowed(phase_controller),
395            Some(phase_turn_id),
396        );
397
398        session
399            .plugins()
400            .emit_runtime_event_with_phase_probe(
401                crate::PluginLifecycleEvent::TurnPersisted(Box::new(
402                    crate::SessionStateChangedContext {
403                        session_id: self.state.session_id.clone(),
404                        state: crate::SessionReadView::from_snapshot(&returned_turn.state),
405                        sessions: manager.state_service(),
406                        session_graph: manager.graph_service(),
407                        direct_completions,
408                    },
409                )),
410                self.turn_phase_probe.clone(),
411            )
412            .await;
413        Ok(())
414    }
415
416    /// Run a single turn and stream events to the host sink.
417    pub async fn stream_turn(
418        &mut self,
419        input: TurnInput,
420        opts: TurnOptions<'_>,
421    ) -> Result<AssembledTurn, RuntimeError> {
422        let cancel = opts.cancel.clone();
423        let scoped_effect_controller = opts.scoped_effect_controller();
424        self.stream_turn_with_scoped_effect_controller_inner(
425            input,
426            opts.events_or_noop(),
427            opts.turn_events_or_noop(),
428            scoped_effect_controller,
429            cancel,
430            None,
431        )
432        .await
433    }
434
435    pub async fn stream_next_queued_work(
436        &mut self,
437        opts: TurnOptions<'_>,
438    ) -> Result<Option<AssembledTurn>, RuntimeError> {
439        self.stream_queued_work(opts, None).await
440    }
441
442    pub async fn stream_selected_queued_work(
443        &mut self,
444        opts: TurnOptions<'_>,
445        batch_ids: &[String],
446    ) -> Result<Option<AssembledTurn>, RuntimeError> {
447        self.stream_queued_work(opts, Some(batch_ids)).await
448    }
449
450    async fn stream_queued_work(
451        &mut self,
452        opts: TurnOptions<'_>,
453        selected_batch_ids: Option<&[String]>,
454    ) -> Result<Option<AssembledTurn>, RuntimeError> {
455        if self.drain_next_session_command().await?.is_some() {
456            return Ok(None);
457        }
458        let Some(store) = self
459            .session
460            .as_ref()
461            .and_then(|session| session.history_store())
462        else {
463            return Ok(None);
464        };
465        let claim = if let Some(batch_ids) = selected_batch_ids {
466            store
467                .claim_ready_queued_work_by_batch_ids(
468                    &self.state.session_id,
469                    &self.runtime_scope_id,
470                    crate::QueuedWorkClaimBoundary::Idle,
471                    crate::QUEUED_WORK_CLAIM_TTL_MS,
472                    batch_ids,
473                )
474                .await
475        } else {
476            store
477                .claim_ready_queued_work(
478                    &self.state.session_id,
479                    &self.runtime_scope_id,
480                    crate::QueuedWorkClaimBoundary::Idle,
481                    crate::QUEUED_WORK_CLAIM_TTL_MS,
482                    64,
483                )
484                .await
485        }
486        .map_err(|err| RuntimeError::new(RuntimeErrorCode::StoreCommitFailed, err.to_string()))?;
487        let Some(claim) = claim else {
488            return Ok(None);
489        };
490        let mut work = claim.materialize_for_turn();
491        let turn_id = work
492            .input
493            .trace_turn_id
494            .clone()
495            .or_else(|| Some(opts.effect_scope_id().to_owned()))
496            .unwrap_or_else(|| uuid::Uuid::new_v4().to_string());
497        work.input.trace_turn_id = Some(turn_id.clone());
498        let causes = work.turn_causes.clone();
499        emit_queued_work_started_to_sink(
500            opts.turn_events_or_noop(),
501            crate::QueuedWorkClaimBoundary::Idle,
502            &claim,
503            causes.clone(),
504        )
505        .await;
506        crate::trace::emit_trace(
507            &self.host.core.tracing.trace_sink,
508            &self.host.core.tracing.trace_context,
509            lash_trace::TraceContext::default()
510                .for_session(self.state.session_id.clone())
511                .for_turn_index(self.state.turn_index + 1)
512                .for_turn(turn_id.clone()),
513            lash_trace::TraceEvent::Custom {
514                name: "queued_work.claimed".to_string(),
515                payload: queued_work_trace_payload(
516                    crate::QueuedWorkClaimBoundary::Idle,
517                    &claim,
518                    &causes,
519                ),
520            },
521        );
522        let cancel = opts.cancel.clone();
523        let scoped_effect_controller = opts.scoped_effect_controller();
524        self.stream_turn_with_scoped_effect_controller_inner(
525            work.input,
526            opts.events_or_noop(),
527            opts.turn_events_or_noop(),
528            scoped_effect_controller,
529            cancel,
530            Some(claim),
531        )
532        .await
533        .map(Some)
534    }
535
536    /// Enforce the durable-first wiring invariant at a turn-scope boundary: when
537    /// the host wired a durable effect host, every store reachable from this
538    /// scope must also be durable. A durable host running against any ephemeral
539    /// store fails loudly here rather than silently degrading.
540    ///
541    /// Inline controllers (the default tier) impose no requirement, so
542    /// inline/in-memory hosts pass unchanged.
543    fn ensure_durable_store_facets_for_scope(
544        &self,
545        scoped_effect_controller: &ScopedEffectController<'_>,
546    ) -> Result<(), RuntimeError> {
547        if scoped_effect_controller.controller().durability_tier() != crate::DurabilityTier::Durable
548        {
549            return Ok(());
550        }
551        if self
552            .host
553            .core
554            .durability
555            .attachment_store
556            .persistence()
557            .durability_tier()
558            != crate::DurabilityTier::Durable
559        {
560            return Err(RuntimeError::durable_store_required(
561                crate::DurableStoreFacet::AttachmentStore,
562            ));
563        }
564        if self
565            .host
566            .core
567            .durability
568            .lashlang_artifact_store
569            .durability_tier()
570            != crate::DurabilityTier::Durable
571        {
572            return Err(RuntimeError::durable_store_required(
573                crate::DurableStoreFacet::ArtifactStore,
574            ));
575        }
576        if let Some(store) = self
577            .session
578            .as_ref()
579            .and_then(|session| session.history_store())
580            && store.durability_tier() != crate::DurabilityTier::Durable
581        {
582            return Err(RuntimeError::durable_store_required(
583                crate::DurableStoreFacet::SessionStore,
584            ));
585        }
586        if let Some(process_registry) = self.host.process_registry.as_ref()
587            && process_registry.durability_tier() != crate::DurabilityTier::Durable
588        {
589            return Err(RuntimeError::durable_store_required(
590                crate::DurableStoreFacet::ProcessRegistry,
591            ));
592        }
593        Ok(())
594    }
595
596    async fn stream_turn_with_scoped_effect_controller_inner(
597        &mut self,
598        mut input: TurnInput,
599        events: &dyn EventSink,
600        turn_events: &dyn TurnActivitySink,
601        scoped_effect_controller: ScopedEffectController<'_>,
602        cancel: CancellationToken,
603        queued_claim: Option<crate::QueuedWorkClaim>,
604    ) -> Result<AssembledTurn, RuntimeError> {
605        if queued_claim.is_none() {
606            while self.drain_next_session_command().await?.is_some() {}
607        }
608        if let Some(input_turn_id) = input.trace_turn_id.as_deref()
609            && scoped_effect_controller
610                .effect_scope()
611                .validates_turn_trace_id()
612            && input_turn_id != scoped_effect_controller.scope_id()
613        {
614            return Err(RuntimeError::new(
615                RuntimeErrorCode::EffectScopeTurnIdMismatch,
616                format!(
617                    "input trace_turn_id `{input_turn_id}` does not match effect scope id `{}`",
618                    scoped_effect_controller.scope_id()
619                ),
620            ));
621        }
622        self.ensure_durable_store_facets_for_scope(&scoped_effect_controller)?;
623        input
624            .trace_turn_id
625            .get_or_insert_with(|| scoped_effect_controller.scope_id().to_string());
626        self.stream_turn_inner(
627            input.clone(),
628            events,
629            turn_events,
630            scoped_effect_controller,
631            cancel.clone(),
632            queued_claim,
633        )
634        .await
635    }
636
637    /// Stream one logical host turn, following foreground AgentFrame switches
638    /// until a terminal outcome is reached.
639    ///
640    /// RLM `continue_as` creates a new frame in the same session. Hosts that
641    /// only care about the benchmark/app answer should not need to special-case
642    /// that intermediate outcome; this helper keeps driving the same session
643    /// through each frame's task with the normal runtime turn guards.
644    pub async fn stream_turn_with_agent_frames(
645        &mut self,
646        input: TurnInput,
647        opts: TurnOptions<'_>,
648    ) -> Result<AgentFrameRun, RuntimeError> {
649        let cancel = opts.cancel.clone();
650        let scoped_effect_controller = opts.scoped_effect_controller();
651        self.stream_turn_with_agent_frames_inner(
652            input,
653            opts.events_or_noop(),
654            opts.turn_events_or_noop(),
655            scoped_effect_controller,
656            cancel,
657        )
658        .await
659    }
660
661    async fn stream_turn_with_agent_frames_inner(
662        &mut self,
663        mut input: TurnInput,
664        events: &dyn EventSink,
665        turn_events: &dyn TurnActivitySink,
666        scoped_effect_controller: ScopedEffectController<'_>,
667        cancel: CancellationToken,
668    ) -> Result<AgentFrameRun, RuntimeError> {
669        if let Some(input_turn_id) = input.trace_turn_id.as_deref()
670            && scoped_effect_controller
671                .effect_scope()
672                .validates_turn_trace_id()
673            && input_turn_id != scoped_effect_controller.scope_id()
674        {
675            return Err(RuntimeError::new(
676                RuntimeErrorCode::EffectScopeTurnIdMismatch,
677                format!(
678                    "input trace_turn_id `{input_turn_id}` does not match effect scope id `{}`",
679                    scoped_effect_controller.scope_id()
680                ),
681            ));
682        }
683        let follow_protocol_turn_options = input.protocol_turn_options.clone();
684        let follow_turn_context = input.turn_context.clone();
685        let follow_trace_turn_id = input
686            .trace_turn_id
687            .clone()
688            .unwrap_or_else(|| scoped_effect_controller.scope_id().to_string());
689        input
690            .trace_turn_id
691            .get_or_insert(follow_trace_turn_id.clone());
692        let mut turns = Vec::new();
693        loop {
694            let turn_trace_turn_id = agent_frame_follow_turn_id(&follow_trace_turn_id, turns.len());
695            input.trace_turn_id = Some(turn_trace_turn_id.clone());
696            let turn_effect_controller = if turns.is_empty() {
697                scoped_effect_controller.clone()
698            } else {
699                ScopedEffectController::borrowed(
700                    scoped_effect_controller.controller(),
701                    EffectScope::turn(&self.state.session_id, &turn_trace_turn_id),
702                )?
703            };
704            let turn = self
705                .stream_turn_with_scoped_effect_controller_inner(
706                    input,
707                    events,
708                    turn_events,
709                    turn_effect_controller,
710                    cancel.clone(),
711                    None,
712                )
713                .await?;
714            let switched_frame = match &turn.outcome {
715                TurnOutcome::AgentFrameSwitch { frame_id, task } => {
716                    Some((frame_id.clone(), task.clone()))
717                }
718                _ => None,
719            };
720            turns.push(turn);
721
722            let Some((_frame_id, task)) = switched_frame else {
723                return Ok(AgentFrameRun { turns });
724            };
725            input = turn_input_from_text(task);
726            input.protocol_turn_options = follow_protocol_turn_options.clone();
727            input.turn_context = follow_turn_context.clone();
728        }
729    }
730
731    async fn stream_turn_inner(
732        &mut self,
733        mut input: TurnInput,
734        events: &dyn EventSink,
735        turn_events: &dyn TurnActivitySink,
736        scoped_effect_controller: ScopedEffectController<'_>,
737        cancel: CancellationToken,
738        queued_claim: Option<crate::QueuedWorkClaim>,
739    ) -> Result<AssembledTurn, RuntimeError> {
740        self.refresh_session_graph_from_store()
741            .await
742            .map_err(session_head_refresh_error)?;
743        let input_trace_turn_id = input.trace_turn_id.clone();
744        let queued_turn_work = queued_claim
745            .as_ref()
746            .map(crate::QueuedWorkClaim::materialize_for_turn);
747        if let Some(work) = queued_turn_work.as_ref()
748            && input.items.is_empty()
749            && input.image_blobs.is_empty()
750        {
751            input = work.input.clone();
752            if input.trace_turn_id.is_none() {
753                input.trace_turn_id = input_trace_turn_id;
754            }
755        }
756        if self
757            .session
758            .as_ref()
759            .and_then(|session| session.history_store())
760            .is_some()
761        {
762            ensure_durable_effect_input(&input)?;
763        }
764        if let Some(extension) = &input.protocol_extension
765            && let Some(session) = self.session.as_ref()
766        {
767            let protocol_session = std::sync::Arc::clone(session.plugins().protocol_session());
768            protocol_session
769                .validate_turn_extension(extension)
770                .await
771                .map_err(|err| {
772                    RuntimeError::new(RuntimeErrorCode::ProtocolTurnExtension, err.to_string())
773                })?;
774        }
775        let previous_prompt_usage = self.state.last_prompt_usage.clone();
776        let normalized = match self
777            .normalize_input_items(&input.items, &input.image_blobs)
778            .await
779        {
780            Ok(items) => items,
781            Err(e) => {
782                self.state.last_prompt_usage = None;
783                let mut assembler = TurnAssembler::default();
784                let error_event = SessionEvent::Error {
785                    message: e.clone(),
786                    envelope: Some(crate::session_model::ErrorEnvelope {
787                        kind: "input_validation".to_string(),
788                        code: Some("invalid_turn_input".to_string()),
789                        terminal_reason: None,
790                        user_message: e.clone(),
791                        raw: None,
792                    }),
793                };
794                assembler.push(&error_event);
795                emit_turn_activity_to_sink(
796                    turn_events,
797                    TurnActivity::independent(TurnEvent::Error { message: e }),
798                )
799                .await;
800                emit_session_event_to_sink(events, error_event).await;
801                let outcome_event = SessionEvent::TurnOutcome {
802                    outcome: TurnOutcome::Stopped(TurnStop::InvalidInput),
803                };
804                assembler.push(&outcome_event);
805                emit_session_event_to_sink(events, outcome_event).await;
806                assembler.push(&SessionEvent::Done);
807                emit_session_event_to_sink(events, SessionEvent::Done).await;
808                return Ok(assembler.finish(
809                    self.state.to_snapshot(),
810                    false,
811                    None,
812                    &self.host.core.control.termination,
813                ));
814            }
815        };
816        let turn_index = self.state.turn_index + 1;
817        let trace_turn_id = input
818            .trace_turn_id
819            .clone()
820            .unwrap_or_else(|| uuid::Uuid::new_v4().to_string());
821        if self.host.core.tracing.trace_sink.is_some() {
822            let mut trace_metadata = std::collections::BTreeMap::new();
823            trace_metadata.insert(
824                "input_item_count".to_string(),
825                serde_json::json!(normalized.len()),
826            );
827            crate::trace::emit_trace(
828                &self.host.core.tracing.trace_sink,
829                &self.host.core.tracing.trace_context,
830                lash_trace::TraceContext::default()
831                    .for_session(self.state.session_id.clone())
832                    .for_turn_index(turn_index)
833                    .for_turn(trace_turn_id.clone()),
834                lash_trace::TraceEvent::TurnStarted {
835                    metadata: trace_metadata,
836                },
837            );
838        }
839
840        let base_read_model = self.state.read_model();
841        let base_messages = base_read_model.messages;
842        let base_render_cache = base_read_model.prompt_render_cache;
843        let mut turn_delta = Vec::new();
844        let initial_turn_causes = queued_turn_work
845            .as_ref()
846            .map(|work| work.turn_causes.clone())
847            .unwrap_or_default();
848        turn_delta.extend(
849            initial_turn_causes
850                .iter()
851                .map(crate::TurnCause::to_event_message),
852        );
853
854        let user_id = fresh_message_id();
855        let mut user_parts: Vec<Part> = Vec::new();
856        for item in normalized {
857            match item {
858                NormalizedItem::Text(text) => {
859                    if text.is_empty() {
860                        continue;
861                    }
862                    user_parts.push(Part {
863                        id: format!("{}.p{}", user_id, user_parts.len()),
864                        kind: PartKind::Text,
865                        content: text,
866                        attachment: None,
867                        tool_call_id: None,
868                        tool_name: None,
869                        tool_replay: None,
870                        prune_state: PruneState::Intact,
871                        reasoning_meta: None,
872                        response_meta: None,
873                    });
874                }
875                NormalizedItem::Image(reference) => {
876                    user_parts.push(Part {
877                        id: format!("{}.p{}", user_id, user_parts.len()),
878                        kind: PartKind::Image,
879                        content: String::new(),
880                        attachment: Some(crate::session_model::message::PartAttachment {
881                            reference,
882                        }),
883                        tool_call_id: None,
884                        tool_name: None,
885                        tool_replay: None,
886                        prune_state: PruneState::Intact,
887                        reasoning_meta: None,
888                        response_meta: None,
889                    });
890                }
891            }
892        }
893        if user_parts.is_empty() && initial_turn_causes.is_empty() {
894            user_parts.push(Part {
895                id: format!("{}.p0", user_id),
896                kind: PartKind::Text,
897                content: String::new(),
898                attachment: None,
899                tool_call_id: None,
900                tool_name: None,
901                tool_replay: None,
902                prune_state: PruneState::Intact,
903                reasoning_meta: None,
904                response_meta: None,
905            });
906        }
907        if !user_parts.is_empty() {
908            reassign_part_ids(&user_id, &mut user_parts);
909            turn_delta.push(Message {
910                id: user_id.clone(),
911                role: MessageRole::User,
912                parts: shared_parts(user_parts),
913                origin: None,
914            });
915        }
916
917        let manager = self
918            .runtime_session_services_for_turn(None)
919            .map_err(|err| {
920                RuntimeError::new(RuntimeErrorCode::PluginSessionManager, err.to_string())
921            })?;
922        let plugin_session = self
923            .session
924            .as_ref()
925            .map(|s| Arc::clone(s.plugins()))
926            .ok_or_else(|| {
927                RuntimeError::new(
928                    RuntimeErrorCode::ContextPrepareTurn,
929                    "runtime session not available",
930                )
931            })?;
932        let prepare_phase_turn_id = turn_phase_id(&trace_turn_id, "prepare-turn");
933        let prepare_phase_controller = scoped_child_turn_controller(
934            &scoped_effect_controller,
935            &self.state.session_id,
936            &prepare_phase_turn_id,
937        )?;
938        let turn_ctx = crate::TurnTransformContext {
939            session_id: self.state.session_id.clone(),
940            state: self.read_view(),
941            prompt_usage: previous_prompt_usage.clone(),
942            max_context_tokens: Some(LashRuntime::max_context_tokens(self)),
943            sessions: manager.state_service(),
944            session_lifecycle: manager.lifecycle_service(),
945            session_graph: manager.graph_service(),
946            scoped_effect_controller: scoped_effect_controller.clone(),
947            direct_completions: manager.direct_completion_client(
948                RuntimeEffectControllerHandle::borrowed(prepare_phase_controller),
949                Some(prepare_phase_turn_id),
950            ),
951        };
952        self.mark_phase_begin(RuntimeTurnPhase::ContextTransform);
953        let prepared_context = plugin_session
954            .prepare_turn_context(
955                &turn_ctx,
956                crate::session_model::context::PreparedContext {
957                    messages: crate::MessageSequence::from_base_and_delta(
958                        base_messages,
959                        turn_delta,
960                    )
961                    .with_base_render_cache(base_render_cache),
962                    ..Default::default()
963                },
964                self.turn_phase_probe.clone(),
965            )
966            .await
967            .map_err(|err| {
968                RuntimeError::new(RuntimeErrorCode::ContextPrepareTurn, err.to_string())
969            })?;
970        self.mark_phase_end(RuntimeTurnPhase::ContextTransform);
971        // Release the read-view's graph clone before the rest of the turn
972        // runs. Keeping it alive into `stream_prepared_turn` forces the
973        // post-turn `append_active_read_delta` to deep-clone the session
974        // graph (Arc::make_mut with refcount > 1).
975        drop(turn_ctx);
976        let messages = prepared_context.messages;
977        if let Some(session) = self.session.as_mut() {
978            session
979                .set_context_surface(
980                    prepared_context.tool_providers,
981                    prepared_context.prompt_contributions,
982                    prepared_context.include_base_tools,
983                )
984                .map_err(|err| {
985                    RuntimeError::new(
986                        RuntimeErrorCode::Other("session_tool_registry".to_string()),
987                        err.to_string(),
988                    )
989                })?;
990        }
991
992        self.state.last_prompt_usage = None;
993        self.stream_prepared_turn(
994            messages,
995            previous_prompt_usage,
996            input.protocol_turn_options.clone(),
997            input.protocol_extension.clone(),
998            input.turn_context.clone(),
999            initial_turn_causes,
1000            trace_turn_id,
1001            turn_index,
1002            events,
1003            turn_events,
1004            scoped_effect_controller,
1005            cancel,
1006            queued_claim,
1007        )
1008        .await
1009    }
1010
1011    /// Run a single turn and return only the assembled terminal result.
1012    pub async fn run_turn_assembled(
1013        &mut self,
1014        input: TurnInput,
1015        cancel: CancellationToken,
1016        scoped_effect_controller: ScopedEffectController<'_>,
1017    ) -> Result<AssembledTurn, RuntimeError> {
1018        self.stream_turn(input, TurnOptions::new(cancel, scoped_effect_controller))
1019            .await
1020    }
1021
1022    /// Run a turn using host-prepared message history.
1023    #[allow(clippy::too_many_arguments)]
1024    pub async fn stream_prepared_turn(
1025        &mut self,
1026        messages: crate::MessageSequence,
1027        _previous_prompt_usage: Option<PromptUsage>,
1028        protocol_turn_options: Option<crate::ProtocolTurnOptions>,
1029        protocol_extension: Option<crate::ProtocolTurnExtensionHandle>,
1030        turn_context: crate::TurnContext,
1031        initial_turn_causes: Vec<crate::TurnCause>,
1032        trace_turn_id: String,
1033        turn_index: usize,
1034        events: &dyn EventSink,
1035        turn_events: &dyn TurnActivitySink,
1036        scoped_effect_controller: ScopedEffectController<'_>,
1037        cancel: CancellationToken,
1038        initial_queue_claim: Option<crate::QueuedWorkClaim>,
1039    ) -> Result<AssembledTurn, RuntimeError> {
1040        let (event_tx, mut event_rx) = mpsc::channel::<RuntimeStreamEvent>(100);
1041        let child_usage_event_relay = ChildUsageEventRelay::new(event_tx.clone());
1042        let mut turn_policy = self.state.effective_policy().clone();
1043        let turn_provider_override = turn_context.provider().cloned();
1044        if let Some(provider) = turn_provider_override.as_ref() {
1045            turn_policy.provider_id = provider.kind().to_string();
1046        }
1047        if let Some(model) = turn_context.model_spec() {
1048            turn_policy.model = model.clone();
1049        }
1050        let session_protocol_turn_options = self.state.effective_protocol_turn_options().clone();
1051        let effective_protocol_turn_options = protocol_turn_options
1052            .clone()
1053            .map(|options| session_protocol_turn_options.merged_with_override(&options))
1054            .unwrap_or(session_protocol_turn_options);
1055        let manager = self
1056            .runtime_session_services_for_turn(Some(child_usage_event_relay.clone()))
1057            .map_err(|err| {
1058                RuntimeError::new(RuntimeErrorCode::PluginSessionManager, err.to_string())
1059            })?;
1060        let plugins = {
1061            let session = self
1062                .session
1063                .as_ref()
1064                .expect("lash runtime session must be available");
1065            Arc::clone(session.plugins())
1066        };
1067        let mut assembler = TurnAssembler::new();
1068        self.mark_phase_begin(RuntimeTurnPhase::BeforeTurnHooks);
1069        // Block-scope the pinned future so it (and its captured
1070        // `SessionReadView` clone of the session graph) drops before the
1071        // post-turn `append_active_read_delta` mutation. Keeping it alive
1072        // across the turn forces `Arc::make_mut` to deep-clone
1073        // `SessionGraphData`.
1074        let prepared = {
1075            let prepare_turn = plugins.prepare_turn_with_phase_probe(
1076                PrepareTurnRequest {
1077                    session_id: self.state.session_id.clone(),
1078                    state: crate::SessionReadView::from_runtime_state(
1079                        &self.state,
1080                        turn_policy.clone(),
1081                        effective_protocol_turn_options.clone(),
1082                    ),
1083                    messages,
1084                    sessions: manager.state_service(),
1085                    session_lifecycle: manager.lifecycle_service(),
1086                    session_graph: manager.graph_service(),
1087                    turn_context: turn_context.clone(),
1088                },
1089                self.turn_phase_probe.clone(),
1090            );
1091            tokio::pin!(prepare_turn);
1092
1093            loop {
1094                tokio::select! {
1095                    prepared = &mut prepare_turn => {
1096                        let prepared = prepared.map_err(|err| {
1097                            RuntimeError::new(RuntimeErrorCode::PluginPrepareTurn, err.to_string())
1098                        })?;
1099                        self.mark_phase_end(RuntimeTurnPhase::BeforeTurnHooks);
1100                        break prepared;
1101                    }
1102                    maybe_event = event_rx.recv() => {
1103                        if let Some(event) = maybe_event {
1104                            emit_runtime_stream_event_to_sinks(
1105                                events,
1106                                turn_events,
1107                                event,
1108                                &mut assembler,
1109                            )
1110                            .await;
1111                        }
1112                    }
1113                }
1114            }
1115        };
1116        for event in &prepared.events {
1117            assembler.push(event);
1118        }
1119        emit_session_events_to_sink(events, prepared.events).await;
1120        if let Some(abort) = prepared.abort {
1121            drop(event_tx);
1122
1123            let mut turn_pipeline = TurnBoundary::from_state(self.state.clone());
1124            turn_pipeline.apply_prepared_messages(&prepared.messages);
1125            let state = turn_pipeline.into_final_state();
1126            let issue = TurnIssue {
1127                kind: "plugin".to_string(),
1128                code: Some(abort.code),
1129                terminal_reason: None,
1130                message: abort.message.clone(),
1131                raw: None,
1132            };
1133            let error_event = SessionEvent::Error {
1134                message: abort.message,
1135                envelope: Some(crate::session_model::ErrorEnvelope {
1136                    kind: "plugin".to_string(),
1137                    code: issue.code.clone(),
1138                    terminal_reason: None,
1139                    user_message: issue.message.clone(),
1140                    raw: None,
1141                }),
1142            };
1143            assembler.push(&error_event);
1144            emit_turn_activity_to_sink(
1145                turn_events,
1146                TurnActivity::independent(TurnEvent::Error {
1147                    message: issue.message.clone(),
1148                }),
1149            )
1150            .await;
1151            emit_session_event_to_sink(events, error_event).await;
1152            let outcome_event = SessionEvent::TurnOutcome {
1153                outcome: TurnOutcome::Stopped(TurnStop::PluginAbort),
1154            };
1155            assembler.push(&outcome_event);
1156            emit_session_event_to_sink(events, outcome_event).await;
1157            assembler.push(&SessionEvent::Done);
1158            emit_session_event_to_sink(events, SessionEvent::Done).await;
1159            return Ok(assembler.finish(
1160                state.to_snapshot(),
1161                cancel.is_cancelled(),
1162                Some(issue),
1163                &self.host.core.control.termination,
1164            ));
1165        }
1166        let mut turn_pipeline = TurnBoundary::from_state(self.state.clone());
1167        let store = self
1168            .session
1169            .as_ref()
1170            .and_then(|session| session.history_store());
1171        // Durable controllers, like Restate, own in-flight replay. Writing
1172        // progress checkpoints directly to the shared store would make handler
1173        // replay observe a newer partial turn and change effect replay keys.
1174        let progress_store = if scoped_effect_controller.controller().durability_tier()
1175            == crate::DurabilityTier::Durable
1176        {
1177            None
1178        } else {
1179            store.as_ref().map(|store| store.as_ref())
1180        };
1181        turn_pipeline
1182            .prepared_checkpoint(
1183                progress_store,
1184                turn_policy.clone(),
1185                turn_index,
1186                &prepared.messages,
1187                self.session.as_mut(),
1188            )
1189            .await
1190            .map_err(|err| {
1191                RuntimeError::new(RuntimeErrorCode::StoreCommitFailed, err.to_string())
1192            })?;
1193        let resolved_turn_policy = if let Some(provider) = turn_provider_override {
1194            RuntimeSessionPolicy::from_provider(turn_policy.clone(), provider)
1195                .map_err(|err| RuntimeError::new("llm_provider", err.to_string()))?
1196        } else {
1197            self.host
1198                .resolve_session_policy(&self.state.session_id, turn_policy.clone())
1199                .map_err(|err| RuntimeError::new("llm_provider", err.to_string()))?
1200        };
1201        let manager = self
1202            .runtime_session_services_for_turn(Some(child_usage_event_relay.clone()))
1203            .map_err(|err| {
1204                RuntimeError::new(RuntimeErrorCode::PluginSessionManager, err.to_string())
1205            })?;
1206        let cancel_state = cancel.clone();
1207        let finish_scoped_effect_controller = scoped_effect_controller.clone();
1208        let session = self
1209            .session
1210            .take()
1211            .expect("lash runtime session must be available");
1212        let mut driver = RuntimeTurnDriver {
1213            session,
1214            policy: resolved_turn_policy,
1215            host: self.host.clone(),
1216            turn_id: scoped_effect_controller.scope_id().to_string(),
1217            scoped_effect_controller,
1218            session_id: self.state.session_id.clone(),
1219            turn_index,
1220            turn_pipeline,
1221            llm_stream_summaries: HashMap::new(),
1222            next_llm_ordinal: 0,
1223            session_services: manager,
1224            protocol_turn_options: effective_protocol_turn_options,
1225            protocol_extension,
1226            turn_context,
1227            turn_causes: initial_turn_causes,
1228            pending_queue_claims: initial_queue_claim.into_iter().collect(),
1229            checkpoint_messages: crate::tool_dispatch::CheckpointMessageBuffer::default(),
1230            turn_phase_probe: self.turn_phase_probe.clone(),
1231        };
1232        let protocol_run_offset = 0;
1233        self.mark_phase_begin(RuntimeTurnPhase::EffectLoop);
1234        let run_result = drive_turn_to_completion(
1235            driver.run(prepared.messages, event_tx, cancel, protocol_run_offset),
1236            &mut event_rx,
1237            &mut assembler,
1238            &child_usage_event_relay,
1239            events,
1240            turn_events,
1241        )
1242        .await;
1243        let (new_messages, _new_protocol_iteration) = match run_result {
1244            Ok(result) => result,
1245            Err(err) => {
1246                self.mark_phase_end(RuntimeTurnPhase::EffectLoop);
1247                let RuntimeTurnDriver { session, .. } = driver;
1248                self.session = Some(session);
1249                return Err(err);
1250            }
1251        };
1252        self.mark_phase_end(RuntimeTurnPhase::EffectLoop);
1253        tracing::debug!(
1254            new_message_count = new_messages.len(),
1255            tool_call_count = assembler.tool_calls.len(),
1256            "runtime post-run_task"
1257        );
1258
1259        let RuntimeTurnDriver {
1260            session,
1261            policy,
1262            turn_pipeline,
1263            pending_queue_claims,
1264            ..
1265        } = driver;
1266        self.session = Some(session);
1267        self.finish_turn(
1268            TurnFinishInput {
1269                turn_pipeline,
1270                assembler,
1271                new_messages,
1272                policy,
1273                turn_index,
1274                queued_work_completions: pending_queue_claims
1275                    .iter()
1276                    .map(crate::QueuedWorkClaim::completion)
1277                    .collect(),
1278                trace_turn_id,
1279            },
1280            events,
1281            &finish_scoped_effect_controller,
1282            &cancel_state,
1283        )
1284        .await
1285    }
1286    async fn normalize_input_items(
1287        &self,
1288        items: &[InputItem],
1289        image_blobs: &HashMap<String, Vec<u8>>,
1290    ) -> Result<Vec<NormalizedItem>, String> {
1291        normalize_input_items(
1292            items,
1293            image_blobs,
1294            self.host.core.durability.attachment_store.as_ref(),
1295        )
1296        .await
1297    }
1298}
1299
1300fn turn_input_from_text(text: String) -> TurnInput {
1301    TurnInput {
1302        items: vec![InputItem::Text { text }],
1303        image_blobs: HashMap::new(),
1304        protocol_turn_options: None,
1305        trace_turn_id: None,
1306        protocol_extension: None,
1307        turn_context: crate::TurnContext::default(),
1308    }
1309}
1310
1311fn agent_frame_follow_turn_id(root_turn_id: &str, completed_turn_count: usize) -> String {
1312    if completed_turn_count == 0 {
1313        root_turn_id.to_string()
1314    } else {
1315        format!("{root_turn_id}:agent-frame:{completed_turn_count}")
1316    }
1317}
1318
1319pub fn ensure_durable_effect_input(input: &TurnInput) -> Result<(), RuntimeError> {
1320    if input.protocol_extension.is_some() {
1321        return Err(RuntimeError::new(
1322            RuntimeErrorCode::DurableEffectLiveProtocolExtension,
1323            "durable effect hosts do not support live protocol_extension inputs; encode replayable data in protocol_turn_options or persisted plugin state",
1324        ));
1325    }
1326    input
1327        .turn_context
1328        .live_plugin_inputs()
1329        .durable_effect_rejection()?;
1330    Ok(())
1331}
1332
1333async fn emit_turn_activity_to_sink(events: &dyn TurnActivitySink, activity: TurnActivity) {
1334    if !events.is_noop() {
1335        events.emit(activity).await;
1336    }
1337}
1338
1339/// Pump the turn driver's event channel into the host sinks while the run
1340/// future executes, then drain any events emitted between completion and the
1341/// sender dropping.
1342///
1343/// Both the fresh and resumed turn entry points construct a
1344/// `RuntimeTurnDriver`, kick off its run future, and need identical
1345/// event-pump/drain behavior before tearing the driver down. Only the driver
1346/// construction and post-run teardown differ, so each caller owns those and
1347/// shares this loop.
1348async fn drive_turn_to_completion<F>(
1349    run_future: F,
1350    event_rx: &mut mpsc::Receiver<RuntimeStreamEvent>,
1351    assembler: &mut TurnAssembler,
1352    child_usage_event_relay: &ChildUsageEventRelay,
1353    events: &dyn EventSink,
1354    turn_events: &dyn TurnActivitySink,
1355) -> Result<(crate::MessageSequence, usize), RuntimeError>
1356where
1357    F: std::future::Future<Output = Result<(crate::MessageSequence, usize), RuntimeError>>,
1358{
1359    let run_result = {
1360        tokio::pin!(run_future);
1361        loop {
1362            tokio::select! {
1363                maybe_event = event_rx.recv() => {
1364                    if let Some(event) = maybe_event {
1365                        emit_runtime_stream_event_to_sinks(
1366                            events,
1367                            turn_events,
1368                            event,
1369                            assembler,
1370                        )
1371                        .await;
1372                    }
1373                }
1374                completed = &mut run_future => {
1375                    child_usage_event_relay.clear();
1376                    break completed;
1377                }
1378            }
1379        }
1380    };
1381    while let Some(event) = event_rx.recv().await {
1382        emit_runtime_stream_event_to_sinks(events, turn_events, event, assembler).await;
1383    }
1384    run_result
1385}
1386
1387async fn emit_runtime_stream_event_to_sinks(
1388    events: &dyn EventSink,
1389    turn_events: &dyn TurnActivitySink,
1390    event: RuntimeStreamEvent,
1391    assembler: &mut TurnAssembler,
1392) {
1393    match event {
1394        RuntimeStreamEvent::Session(event) => {
1395            assembler.push(&event);
1396            emit_session_event_to_sink(events, event).await;
1397        }
1398        RuntimeStreamEvent::Turn(activity) => {
1399            assembler.push_turn_activity(&activity);
1400            emit_turn_activity_to_sink(turn_events, activity).await;
1401        }
1402    }
1403}
1404
1405#[cfg(test)]
1406mod tests {
1407    use super::agent_frame_follow_turn_id;
1408
1409    #[test]
1410    fn agent_frame_follow_turn_ids_are_distinct_and_deterministic() {
1411        assert_eq!(agent_frame_follow_turn_id("root-turn", 0), "root-turn");
1412        assert_eq!(
1413            agent_frame_follow_turn_id("root-turn", 1),
1414            "root-turn:agent-frame:1"
1415        );
1416        assert_eq!(
1417            agent_frame_follow_turn_id("root-turn", 2),
1418            "root-turn:agent-frame:2"
1419        );
1420    }
1421}