1use axum::{
123 extract::{Path, Query, State},
124 http::{header, HeaderMap, HeaderValue, StatusCode},
125 response::IntoResponse,
126 Json,
127};
128use mlua_swarm::core::engine::Engine;
129use mlua_swarm::core::projection::{
130 ProjectionAdapter, ProjectionError, ProjectionKey, ProjectionRef,
131};
132use mlua_swarm::core::projection_placement::ProjectionPlacement;
133use mlua_swarm::core::step_naming::StepNaming;
134use mlua_swarm::store::output::{ContentRef, OutputEvent, OutputStore, OutputStoreError};
135use mlua_swarm::store::run::{RunRecord, RunStore};
136use mlua_swarm::{RunId, StepId, TaskId};
137use serde::{Deserialize, Serialize};
138use serde_json::Value;
139use sha2::Digest as _;
140use std::sync::Arc;
141
142use crate::tasks::map_task_store_err;
143use crate::{ApiError, AppState};
144
145pub struct McpQueryAdapter {
153 data_store: Arc<dyn OutputStore>,
154 run_store: Arc<dyn RunStore>,
155 engine: Engine,
156}
157
158#[derive(Debug, Clone, Copy, PartialEq, Eq, Serialize, Deserialize, schemars::JsonSchema)]
162#[serde(rename_all = "snake_case")]
163pub enum ProjectionSource {
164 DataPlane,
167 ResultRef,
170}
171
172#[derive(Debug, Clone)]
178pub(crate) struct ResolvedStep {
179 pub(crate) name: String,
182 pub(crate) value: Value,
184 pub(crate) source: ProjectionSource,
186}
187
188fn final_value(event: &OutputEvent) -> Option<Value> {
194 match event {
195 OutputEvent::Final { content, .. } => Some(content_to_value(content)),
196 _ => None,
197 }
198}
199
200fn content_to_value(content: &ContentRef) -> Value {
205 match content {
206 ContentRef::Inline { value } => value.clone(),
207 ContentRef::FileRef {
208 path,
209 mime,
210 size_hint,
211 } => serde_json::json!({
212 "file_ref": path.to_string_lossy(),
213 "mime": mime,
214 "size_hint": size_hint,
215 }),
216 }
217}
218
219fn find_step_id_for_canonical(
228 run: &RunRecord,
229 naming: Option<&StepNaming>,
230 canonical: &str,
231) -> Option<StepId> {
232 run.step_entries
233 .iter()
234 .rev()
235 .find(|entry| {
236 let Some(step_ref) = entry.step_ref.as_deref() else {
237 return false;
238 };
239 match naming {
240 Some(n) => n.canonical_of_producer(step_ref) == Some(canonical),
241 None => step_ref == canonical,
242 }
243 })
244 .map(|entry| entry.step_id.clone())
245}
246
247fn candidate_names<'a>(
256 naming: Option<&'a StepNaming>,
257 canonical: &'a str,
258 raw_step: &'a str,
259) -> Vec<&'a str> {
260 let mut names = vec![canonical];
261 if let Some(entry) = naming.and_then(|n| n.entries().find(|e| e.canonical == canonical)) {
262 for alias in &entry.aliases {
263 if alias != canonical {
264 names.push(alias.as_str());
265 }
266 }
267 }
268 if !names.contains(&raw_step) {
269 names.push(raw_step);
270 }
271 names
272}
273
274impl McpQueryAdapter {
275 pub fn new(
280 data_store: Arc<dyn OutputStore>,
281 run_store: Arc<dyn RunStore>,
282 engine: Engine,
283 ) -> Self {
284 Self {
285 data_store,
286 run_store,
287 engine,
288 }
289 }
290
291 async fn step_naming_for_run(&self, run: &RunRecord) -> Option<Arc<StepNaming>> {
307 resolve_step_naming_for_run(&self.engine, run).await
308 }
309
310 pub(crate) async fn resolve_step_name(&self, run: &RunRecord, raw: &str) -> String {
318 match self.step_naming_for_run(run).await {
319 Some(naming) => naming.resolve(raw).unwrap_or(raw).to_string(),
320 None => raw.to_string(),
321 }
322 }
323
324 async fn resolve_run(
332 &self,
333 task_id: &TaskId,
334 run_id: Option<&str>,
335 ) -> Result<RunRecord, ProjectionError> {
336 match run_id {
337 Some(rid) => {
338 let run_id = RunId::parse(rid.to_string())
339 .map_err(|e| ProjectionError::InvalidKey(format!("run_id: {e}")))?;
340 let run = self.run_store.get(&run_id).await.map_err(|_| {
341 ProjectionError::NotFound(ProjectionKey {
342 task_id: task_id.to_string(),
343 run_id: Some(rid.to_string()),
344 step: None,
345 path: None,
346 })
347 })?;
348 if &run.task_id != task_id {
349 return Err(ProjectionError::NotFound(ProjectionKey {
350 task_id: task_id.to_string(),
351 run_id: Some(rid.to_string()),
352 step: None,
353 path: None,
354 }));
355 }
356 Ok(run)
357 }
358 None => {
359 let mut runs = self.run_store.list_by_task(task_id).await.map_err(|_| {
360 ProjectionError::NotFound(ProjectionKey {
361 task_id: task_id.to_string(),
362 run_id: None,
363 step: None,
364 path: None,
365 })
366 })?;
367 runs.pop().ok_or_else(|| {
368 ProjectionError::NotFound(ProjectionKey {
369 task_id: task_id.to_string(),
370 run_id: None,
371 step: None,
372 path: None,
373 })
374 })
375 }
376 }
377 }
378
379 async fn resolve_async(
399 &self,
400 key: &ProjectionKey,
401 ) -> Result<(RunRecord, Value), ProjectionError> {
402 let task_id = TaskId::parse(key.task_id.clone())
403 .map_err(|e| ProjectionError::InvalidKey(format!("task_id: {e}")))?;
404 let run = self.resolve_run(&task_id, key.run_id.as_deref()).await?;
405
406 let Some(raw_step) = &key.step else {
407 let ctx_data = run.result_ref.clone().unwrap_or(Value::Null);
410 let value = key
411 .resolve(&ctx_data)
412 .cloned()
413 .ok_or_else(|| ProjectionError::NotFound(key.clone()))?;
414 return Ok((run, value));
415 };
416
417 let naming = self.step_naming_for_run(&run).await;
418 let canonical = naming
419 .as_deref()
420 .and_then(|n| n.resolve(raw_step))
421 .unwrap_or(raw_step.as_str())
422 .to_string();
423
424 if let Some(step_id) = find_step_id_for_canonical(&run, naming.as_deref(), &canonical) {
426 match self
427 .data_store
428 .get_latest_by_name_in_run(step_id.as_str(), 1, &canonical)
429 .await
430 {
431 Ok(record) => {
432 if let Some(value) = final_value(&record.event) {
433 let narrowed = match &key.path {
434 None => Some(value),
435 Some(_) => {
436 let path_only = ProjectionKey {
442 task_id: key.task_id.clone(),
443 run_id: key.run_id.clone(),
444 step: None,
445 path: key.path.clone(),
446 };
447 path_only.resolve(&value).cloned()
448 }
449 };
450 if let Some(value) = narrowed {
451 return Ok((run, value));
452 }
453 }
454 }
455 Err(OutputStoreError::NotFound(_)) => {
456 }
459 Err(other) => {
460 return Err(ProjectionError::Io(std::io::Error::other(format!(
461 "OutputStore::get_latest_by_name_in_run: {other}"
462 ))));
463 }
464 }
465 }
466
467 let ctx_data = run.result_ref.clone().unwrap_or(Value::Null);
472 for candidate in candidate_names(naming.as_deref(), &canonical, raw_step) {
473 let candidate_key = ProjectionKey {
474 task_id: key.task_id.clone(),
475 run_id: key.run_id.clone(),
476 step: Some(candidate.to_string()),
477 path: key.path.clone(),
478 };
479 if let Some(value) = candidate_key.resolve(&ctx_data) {
480 return Ok((run, value.clone()));
481 }
482 }
483 Err(ProjectionError::NotFound(key.clone()))
484 }
485
486 pub(crate) async fn list_steps(
492 &self,
493 task_id: &TaskId,
494 run_id: Option<&str>,
495 ) -> Result<(RunRecord, Vec<ResolvedStep>), ProjectionError> {
496 let run = self.resolve_run(task_id, run_id).await?;
497 let steps = self.enumerate_steps(&run).await;
498 Ok((run, steps))
499 }
500
501 pub(crate) async fn list_steps_by_run_id(
509 &self,
510 run_id: &RunId,
511 ) -> Result<(RunRecord, Vec<ResolvedStep>), ProjectionError> {
512 let run = self.run_store.get(run_id).await.map_err(|_| {
513 ProjectionError::NotFound(ProjectionKey {
514 task_id: String::new(),
515 run_id: Some(run_id.to_string()),
516 step: None,
517 path: None,
518 })
519 })?;
520 let steps = self.enumerate_steps(&run).await;
521 Ok((run, steps))
522 }
523
524 async fn enumerate_steps(&self, run: &RunRecord) -> Vec<ResolvedStep> {
531 match self.step_naming_for_run(run).await {
532 Some(naming) => self.enumerate_steps_via_table(run, &naming).await,
533 None => self.enumerate_steps_legacy_union(run).await,
534 }
535 }
536
537 async fn enumerate_steps_via_table(
556 &self,
557 run: &RunRecord,
558 naming: &StepNaming,
559 ) -> Vec<ResolvedStep> {
560 let mut resolved: std::collections::BTreeMap<String, ResolvedStep> =
561 std::collections::BTreeMap::new();
562
563 for entry in &run.step_entries {
564 let Some(step_ref) = entry.step_ref.as_deref() else {
565 continue;
566 };
567 let canonical = naming
568 .canonical_of_producer(step_ref)
569 .unwrap_or(step_ref)
570 .to_string();
571 if let Ok(record) = self
572 .data_store
573 .get_latest_by_name_in_run(entry.step_id.as_str(), 1, &canonical)
574 .await
575 {
576 if let Some(value) = final_value(&record.event) {
577 resolved.insert(
578 canonical.clone(),
579 ResolvedStep {
580 name: canonical,
581 value,
582 source: ProjectionSource::DataPlane,
583 },
584 );
585 }
586 }
587
588 if let Ok(records) = self
604 .data_store
605 .list_for_attempt(entry.step_id.as_str(), 1)
606 .await
607 {
608 for record in records {
609 if let OutputEvent::Artifact { name, content } = &record.event {
610 resolved
611 .entry(name.clone())
612 .or_insert_with(|| ResolvedStep {
613 name: name.clone(),
614 value: content_to_value(content),
615 source: ProjectionSource::DataPlane,
616 });
617 }
618 }
619 }
620 }
621
622 if let Some(Value::Object(map)) = &run.result_ref {
623 for entry in naming.entries() {
624 if resolved.contains_key(&entry.canonical) {
625 continue;
626 }
627 let hit = entry
628 .aliases
629 .iter()
630 .find_map(|alias| map.get(alias))
631 .or_else(|| map.get(&entry.canonical));
632 if let Some(value) = hit {
633 resolved.insert(
634 entry.canonical.clone(),
635 ResolvedStep {
636 name: entry.canonical.clone(),
637 value: value.clone(),
638 source: ProjectionSource::ResultRef,
639 },
640 );
641 }
642 }
643 }
644
645 resolved.into_values().collect()
646 }
647
648 async fn enumerate_steps_legacy_union(&self, run: &RunRecord) -> Vec<ResolvedStep> {
659 let mut out = Vec::new();
660 let mut attempted = std::collections::HashSet::new();
661 let mut resolved_names = std::collections::HashSet::new();
662
663 for entry in &run.step_entries {
664 let Some(name) = &entry.step_ref else {
665 continue;
666 };
667 if !attempted.insert(name.clone()) {
668 continue;
669 }
670 if let Ok(record) = self.data_store.get_latest_by_name(name).await {
671 if let Some(value) = final_value(&record.event) {
672 out.push(ResolvedStep {
673 name: name.clone(),
674 value,
675 source: ProjectionSource::DataPlane,
676 });
677 resolved_names.insert(name.clone());
678 }
679 }
680 }
681
682 if let Some(Value::Object(map)) = &run.result_ref {
683 for (name, value) in map {
684 if resolved_names.contains(name) {
685 continue;
686 }
687 out.push(ResolvedStep {
688 name: name.clone(),
689 value: value.clone(),
690 source: ProjectionSource::ResultRef,
691 });
692 }
693 }
694
695 out
696 }
697}
698
699impl ProjectionAdapter for McpQueryAdapter {
700 fn name(&self) -> &'static str {
701 "mcp-query"
702 }
703
704 fn project(
713 &self,
714 key: &ProjectionKey,
715 ctx_data: &Value,
716 ) -> Result<ProjectionRef, ProjectionError> {
717 if key.task_id.is_empty() {
718 return Err(ProjectionError::InvalidKey(
719 "task_id must not be empty".to_string(),
720 ));
721 }
722 key.resolve(ctx_data)
723 .ok_or_else(|| ProjectionError::NotFound(key.clone()))?;
724 Ok(ProjectionRef::Query {
725 endpoint: format!(
726 "/v1/tasks/{}/runs/{}/steps/{}/content",
727 key.task_id,
728 key.run_id.as_deref().unwrap_or("latest"),
729 key.step.as_deref().unwrap_or("_ctx")
730 ),
731 key: key.clone(),
732 })
733 }
734
735 fn fetch(&self, key: &ProjectionKey) -> Result<Value, ProjectionError> {
736 let handle = tokio::runtime::Handle::try_current().map_err(|e| {
741 ProjectionError::Io(std::io::Error::other(format!(
742 "McpQueryAdapter::fetch requires a Tokio runtime: {e}"
743 )))
744 })?;
745 let (_run, value) =
746 tokio::task::block_in_place(|| handle.block_on(self.resolve_async(key)))?;
747 Ok(value)
748 }
749
750 fn pointer_line(&self, r: &ProjectionRef) -> String {
751 match r {
752 ProjectionRef::Query { endpoint, key } => {
753 format!("projection(mcp-query): {endpoint} task_id={}", key.task_id)
754 }
755 ProjectionRef::File { path } => format!("projection(file): {path}"),
756 }
757 }
758}
759
760#[derive(Debug, Clone, Serialize, schemars::JsonSchema)]
766pub struct StepList {
767 pub task_id: String,
769 pub run_id: String,
772 pub steps: Vec<StepSummary>,
776}
777
778#[derive(Debug, Clone, Serialize, schemars::JsonSchema)]
782pub struct StepSummary {
783 pub name: String,
785 pub size_bytes: u64,
788 pub content_type: String,
793 pub sha256: String,
796 pub source: ProjectionSource,
798 #[serde(default, skip_serializing_if = "Option::is_none")]
806 pub file_path: Option<String>,
807 pub content_url: String,
812 pub preview: String,
815 pub truncated: bool,
819}
820
821#[derive(Debug, Deserialize, Default, schemars::JsonSchema)]
826pub struct StepPathQuery {
827 #[serde(default)]
830 pub path: Option<String>,
831}
832
833fn narrow_step_value(value: &Value, path: Option<&str>) -> Option<Value> {
837 match path {
838 None => Some(value.clone()),
839 Some(p) => {
840 let path_only = ProjectionKey {
841 task_id: String::new(),
842 run_id: None,
843 step: None,
844 path: Some(p.to_string()),
845 };
846 path_only.resolve(value).cloned()
847 }
848 }
849}
850
851fn materialized_file_path(
858 placement: &ProjectionPlacement,
859 root: &str,
860 step_id: &StepId,
861 name: &str,
862) -> std::path::PathBuf {
863 placement.target_path(root, step_id.as_ref(), name)
864}
865
866async fn resolve_materialized_file(
886 state: &AppState,
887 run: &RunRecord,
888 name: &str,
889) -> Option<(std::path::PathBuf, Vec<u8>)> {
890 let naming = resolve_step_naming_for_run(&state.engine, run).await;
891 let step_id = find_step_id_for_canonical(run, naming.as_deref(), name)?;
892 let view = state.engine.agent_context_for(&step_id, 1).await?;
893 let placement = state
894 .engine
895 .projection_placement_for(&step_id)
896 .await
897 .unwrap_or_default();
898 let root = placement.resolve_root(&view)?;
899 let path = materialized_file_path(&placement, &root, &step_id, name);
900 let bytes = std::fs::read(&path).ok()?;
901 Some((path, bytes))
902}
903
904async fn resolve_step_naming_for_run(engine: &Engine, run: &RunRecord) -> Option<Arc<StepNaming>> {
909 for entry in &run.step_entries {
910 if let Some(naming) = engine.step_naming_for(&entry.step_id).await {
911 return Some(naming);
912 }
913 }
914 None
915}
916
917async fn render_step_body(
924 state: &AppState,
925 run: &RunRecord,
926 step: &ResolvedStep,
927 path: Option<&str>,
928) -> Option<(Vec<u8>, &'static str, Option<String>)> {
929 if path.is_none() {
930 if let Some((file_path, bytes)) = resolve_materialized_file(state, run, &step.name).await {
931 return Some((
932 bytes,
933 "text/markdown; charset=utf-8",
934 Some(file_path.to_string_lossy().into_owned()),
935 ));
936 }
937 }
938 let narrowed = narrow_step_value(&step.value, path)?;
939 let body = serde_json::to_vec_pretty(&narrowed).ok()?;
940 Some((body, "application/json", None))
941}
942
943fn build_preview(body: &[u8]) -> (String, bool) {
950 const MAX_PREVIEW_BYTES: usize = 512;
951 if body.len() <= MAX_PREVIEW_BYTES {
952 return (String::from_utf8_lossy(body).into_owned(), false);
953 }
954 let preview = match std::str::from_utf8(body) {
955 Ok(s) => {
956 let mut end = MAX_PREVIEW_BYTES;
957 while end > 0 && !s.is_char_boundary(end) {
958 end -= 1;
959 }
960 s[..end].to_string()
961 }
962 Err(_) => String::from_utf8_lossy(&body[..MAX_PREVIEW_BYTES]).into_owned(),
963 };
964 (format!("{preview}…"), true)
965}
966
967fn build_content_url(
973 base_url: &Option<Arc<str>>,
974 task_id: &TaskId,
975 run_id: &RunId,
976 name: &str,
977 path: Option<&str>,
978) -> String {
979 let mut url = format!("/v1/tasks/{task_id}/runs/{run_id}/steps/{name}/content");
980 if let Some(p) = path {
981 url.push_str("?path=");
982 url.push_str(p);
983 }
984 match base_url {
985 Some(base) => format!("{}{}", base.trim_end_matches('/'), url),
986 None => url,
987 }
988}
989
990async fn build_step_summary(
993 state: &AppState,
994 run: &RunRecord,
995 step: &ResolvedStep,
996 path: Option<&str>,
997) -> Option<StepSummary> {
998 let (body, content_type, file_path) = render_step_body(state, run, step, path).await?;
999 let sha256 = hex::encode(sha2::Sha256::digest(&body));
1000 let size_bytes = body.len() as u64;
1001 let (preview, truncated) = build_preview(&body);
1002 let content_url = build_content_url(&state.base_url, &run.task_id, &run.id, &step.name, path);
1003 Some(StepSummary {
1004 name: step.name.clone(),
1005 size_bytes,
1006 content_type: content_type.to_string(),
1007 sha256,
1008 source: step.source,
1009 file_path,
1010 content_url,
1011 preview,
1012 truncated,
1013 })
1014}
1015
1016pub(crate) async fn resolve_step_pointer_fields(
1027 state: &AppState,
1028 run: &RunRecord,
1029 step: &ResolvedStep,
1030) -> Option<(u64, Option<String>, String, String)> {
1031 let (body, _content_type, file_path) = render_step_body(state, run, step, None).await?;
1032 let sha256 = hex::encode(sha2::Sha256::digest(&body));
1033 let size_bytes = body.len() as u64;
1034 let content_url = build_content_url(&state.base_url, &run.task_id, &run.id, &step.name, None);
1035 Some((size_bytes, file_path, content_url, sha256))
1036}
1037
1038async fn resolve_run_and_steps(
1047 state: &AppState,
1048 id: &str,
1049 run: &str,
1050) -> Result<(McpQueryAdapter, RunRecord, Vec<ResolvedStep>), ApiError> {
1051 let task_id = TaskId::parse(id.to_string())
1052 .map_err(|e| ApiError::bad_request(format!("invalid task id: {e}")))?;
1053 state
1054 .task_store
1055 .get(&task_id)
1056 .await
1057 .map_err(map_task_store_err)?;
1058 let adapter = McpQueryAdapter::new(
1059 state.data_store.clone(),
1060 state.run_store.clone(),
1061 state.engine.clone(),
1062 );
1063 let run_sel = if run == "latest" { None } else { Some(run) };
1064 let (run_record, steps) = adapter
1065 .list_steps(&task_id, run_sel)
1066 .await
1067 .map_err(map_projection_err)?;
1068 Ok((adapter, run_record, steps))
1069}
1070
1071pub async fn steps_list(
1074 State(state): State<AppState>,
1075 Path((id, run)): Path<(String, String)>,
1076) -> Result<Json<StepList>, ApiError> {
1077 let (_adapter, run_record, steps) = resolve_run_and_steps(&state, &id, &run).await?;
1078 let mut summaries = Vec::with_capacity(steps.len());
1079 for step in &steps {
1080 if let Some(summary) = build_step_summary(&state, &run_record, step, None).await {
1081 summaries.push(summary);
1082 }
1083 }
1084 Ok(Json(StepList {
1085 task_id: run_record.task_id.to_string(),
1086 run_id: run_record.id.to_string(),
1087 steps: summaries,
1088 }))
1089}
1090
1091pub async fn step_get(
1097 State(state): State<AppState>,
1098 Path((id, run, step)): Path<(String, String, String)>,
1099 Query(q): Query<StepPathQuery>,
1100) -> Result<Json<StepSummary>, ApiError> {
1101 let (adapter, run_record, steps) = resolve_run_and_steps(&state, &id, &run).await?;
1102 let canonical = adapter.resolve_step_name(&run_record, &step).await;
1103 let resolved = steps
1104 .into_iter()
1105 .find(|s| s.name == canonical)
1106 .ok_or_else(|| ApiError::not_found(format!("step not found: {step}")))?;
1107 let summary = build_step_summary(&state, &run_record, &resolved, q.path.as_deref())
1108 .await
1109 .ok_or_else(|| ApiError::not_found(format!("path not found: {:?}", q.path)))?;
1110 Ok(Json(summary))
1111}
1112
1113pub async fn step_content(
1119 State(state): State<AppState>,
1120 Path((id, run, step)): Path<(String, String, String)>,
1121 Query(q): Query<StepPathQuery>,
1122) -> Result<impl IntoResponse, ApiError> {
1123 let (adapter, run_record, steps) = resolve_run_and_steps(&state, &id, &run).await?;
1124 let canonical = adapter.resolve_step_name(&run_record, &step).await;
1125 let resolved = steps
1126 .into_iter()
1127 .find(|s| s.name == canonical)
1128 .ok_or_else(|| ApiError::not_found(format!("step not found: {step}")))?;
1129 let (body, content_type, _file_path) =
1130 render_step_body(&state, &run_record, &resolved, q.path.as_deref())
1131 .await
1132 .ok_or_else(|| ApiError::not_found(format!("path not found: {:?}", q.path)))?;
1133 let sha256 = hex::encode(sha2::Sha256::digest(&body));
1134 let mut headers = HeaderMap::new();
1135 headers.insert(
1136 header::CONTENT_TYPE,
1137 HeaderValue::from_str(content_type).expect("content_type is a static ASCII literal"),
1138 );
1139 headers.insert(
1140 header::ETAG,
1141 HeaderValue::from_str(&format!("\"sha256:{sha256}\""))
1142 .expect("hex digest is ASCII-safe for a header value"),
1143 );
1144 Ok((StatusCode::OK, headers, body))
1145}
1146
1147fn map_projection_err(e: ProjectionError) -> ApiError {
1148 match e {
1149 ProjectionError::NotFound(key) => {
1150 ApiError::not_found(format!("projection not found for key {key:?}"))
1151 }
1152 ProjectionError::InvalidKey(msg) => ApiError::bad_request(msg),
1153 other => ApiError::engine(other),
1154 }
1155}
1156
1157#[cfg(test)]
1162mod tests {
1163 use super::*;
1164 use crate::TaskLaunchRequest;
1165 use axum::http::StatusCode;
1166 use mlua_swarm::application::BlueprintRef;
1167 use mlua_swarm::blueprint::{
1168 current_schema_version, AgentDef, AgentKind, AgentMeta, Blueprint, BlueprintMetadata,
1169 CompilerHints, CompilerStrategy, ProjectionPlacementSpec,
1170 };
1171 use mlua_swarm::core::config::{CheckPolicy, EngineCfg};
1172 use mlua_swarm::core::engine::Engine;
1173 use mlua_swarm::store::output::InMemoryOutputStore;
1174 use mlua_swarm::store::run::InMemoryRunStore;
1175 use mlua_swarm::store::task::InMemoryTaskStore;
1176 use serde_json::json;
1177 use std::collections::HashMap;
1178 use tokio::sync::Mutex;
1179
1180 fn greeting_blueprint() -> Blueprint {
1188 Blueprint {
1189 schema_version: current_schema_version(),
1190 id: "projection-test-greeting-bp".into(),
1191 flow: serde_json::from_value(json!({
1192 "kind": "step",
1193 "ref": mlua_swarm::worker::baseline::AG_IDENTITY,
1194 "in": {"op": "path", "at": "$.greeting"},
1195 "out": {"op": "path", "at": "$.out"},
1196 }))
1197 .expect("flow parse"),
1198 agents: vec![AgentDef {
1199 name: mlua_swarm::worker::baseline::AG_IDENTITY.into(),
1200 kind: AgentKind::RustFn,
1201 spec: json!({"fn_id": mlua_swarm::worker::baseline::AG_IDENTITY}),
1202 profile: None,
1203 meta: None,
1204 runner: None,
1205 runner_ref: None,
1206 verdict: None,
1207 }],
1208 operators: vec![],
1209 metas: vec![],
1210 hints: CompilerHints::default(),
1211 strategy: CompilerStrategy::default(),
1212 metadata: BlueprintMetadata::default(),
1213 spawner_hints: Default::default(),
1214 default_agent_kind: AgentKind::Operator,
1215 default_operator_kind: None,
1216 default_init_ctx: None,
1217 default_agent_ctx: None,
1218 default_context_policy: None,
1219 projection_placement: None,
1220 audits: vec![],
1221 degradation_policy: None,
1222 runners: vec![],
1223 default_runner: None,
1224 subprocesses: vec![],
1225 check_policy: None,
1226 blueprint_ref_includes: Vec::new(),
1227 }
1228 }
1229
1230 fn test_state() -> AppState {
1231 let engine = Engine::new_with_layers(EngineCfg::default(), crate::default_layer_registry());
1232 let compiler = mlua_swarm::Compiler::new(crate::default_registry());
1233 let launch = Arc::new(mlua_swarm::TaskLaunchService::new(engine.clone(), compiler));
1234 let data_store: Arc<dyn mlua_swarm::store::output::OutputStore> =
1235 Arc::new(InMemoryOutputStore::new());
1236 engine.set_output_store(data_store.clone());
1242 AppState {
1243 engine,
1244 sessions: Arc::new(Mutex::new(crate::SessionStore::default())),
1245 task_app: Arc::new(mlua_swarm::TaskApplication::new_inline_only(launch)),
1246 ws_operator_factory: None,
1247 data_store,
1248 operator_sessions: Arc::new(Mutex::new(HashMap::new())),
1249 roles_to_sid: Arc::new(Mutex::new(HashMap::new())),
1250 task_store: Arc::new(InMemoryTaskStore::new()),
1251 run_store: Arc::new(InMemoryRunStore::new()),
1252 replay_store: Arc::new(mlua_swarm::store::replay::InMemoryReplayStore::new()),
1253 run_trace_store: Arc::new(mlua_swarm::store::trace::InMemoryRunTraceStore::new()),
1254 base_url: None,
1255 sync_timeout_secs: 300,
1256 }
1257 }
1258
1259 fn greeting_task_req(greeting: &str) -> TaskLaunchRequest {
1260 TaskLaunchRequest {
1261 blueprint: BlueprintRef::Inline {
1262 value: Box::new(greeting_blueprint()),
1263 },
1264 init_ctx: json!({ "greeting": greeting }),
1265 project_root: None,
1266 work_dir: None,
1267 task_metadata: None,
1268 ttl_secs: None,
1269 operator: None,
1270 operator_sid: None,
1271 timeout_secs: None,
1272 goal: Some("projection test goal".to_string()),
1273 detach: false,
1274 check_policy: None,
1275 }
1276 }
1277
1278 fn declared_projection_name_blueprint(projection_name: &str) -> Blueprint {
1284 Blueprint {
1285 schema_version: current_schema_version(),
1286 id: "projection-test-declared-name-bp".into(),
1287 flow: serde_json::from_value(json!({
1288 "kind": "step",
1289 "ref": mlua_swarm::worker::baseline::AG_IDENTITY,
1290 "in": {"op": "path", "at": "$.greeting"},
1291 "out": {"op": "path", "at": "$.out"},
1292 }))
1293 .expect("flow parse"),
1294 agents: vec![AgentDef {
1295 name: mlua_swarm::worker::baseline::AG_IDENTITY.into(),
1296 kind: AgentKind::RustFn,
1297 spec: json!({"fn_id": mlua_swarm::worker::baseline::AG_IDENTITY}),
1298 profile: None,
1299 meta: Some(AgentMeta {
1300 projection_name: Some(projection_name.to_string()),
1301 ..Default::default()
1302 }),
1303 runner: None,
1304 runner_ref: None,
1305 verdict: None,
1306 }],
1307 operators: vec![],
1308 metas: vec![],
1309 hints: CompilerHints::default(),
1310 strategy: CompilerStrategy::default(),
1311 metadata: BlueprintMetadata::default(),
1312 spawner_hints: Default::default(),
1313 default_agent_kind: AgentKind::Operator,
1314 default_operator_kind: None,
1315 default_init_ctx: None,
1316 default_agent_ctx: None,
1317 default_context_policy: None,
1318 projection_placement: None,
1319 audits: vec![],
1320 degradation_policy: None,
1321 runners: vec![],
1322 default_runner: None,
1323 subprocesses: vec![],
1324 check_policy: None,
1325 blueprint_ref_includes: Vec::new(),
1326 }
1327 }
1328
1329 fn declared_task_req(greeting: &str, projection_name: &str) -> TaskLaunchRequest {
1330 TaskLaunchRequest {
1331 blueprint: BlueprintRef::Inline {
1332 value: Box::new(declared_projection_name_blueprint(projection_name)),
1333 },
1334 init_ctx: json!({ "greeting": greeting }),
1335 project_root: None,
1336 work_dir: None,
1337 task_metadata: None,
1338 ttl_secs: None,
1339 operator: None,
1340 operator_sid: None,
1341 timeout_secs: None,
1342 goal: Some("projection test goal (declared name)".to_string()),
1343 detach: false,
1344 check_policy: None,
1345 }
1346 }
1347
1348 fn strict_greeting_blueprint() -> Blueprint {
1357 Blueprint {
1358 check_policy: Some(CheckPolicy::Strict),
1359 ..greeting_blueprint()
1360 }
1361 }
1362
1363 fn strict_greeting_task_req(greeting: &str, project_root: Option<&str>) -> TaskLaunchRequest {
1364 TaskLaunchRequest {
1365 blueprint: BlueprintRef::Inline {
1366 value: Box::new(strict_greeting_blueprint()),
1367 },
1368 init_ctx: json!({ "greeting": greeting }),
1369 project_root: project_root.map(String::from),
1370 work_dir: None,
1371 task_metadata: None,
1372 ttl_secs: None,
1373 operator: None,
1374 operator_sid: None,
1375 timeout_secs: None,
1376 goal: Some("pre-dispatch guard test goal".to_string()),
1377 detach: false,
1378 check_policy: None,
1379 }
1380 }
1381
1382 #[tokio::test]
1389 async fn tasks_start_rejects_strict_launch_with_no_roots_as_400() {
1390 let state = test_state();
1391 let result =
1395 crate::tasks_start(State(state), Json(strict_greeting_task_req("hello", None))).await;
1396 let err = match result {
1397 Err(e) => e,
1398 Ok(_) => {
1399 panic!("strict check_policy + no roots must be rejected before dispatch, got Ok")
1400 }
1401 };
1402 assert_eq!(err.status, StatusCode::BAD_REQUEST);
1403 assert!(
1404 err.message.contains("pre-dispatch"),
1405 "expected a pre-dispatch guard message, got: {}",
1406 err.message
1407 );
1408 }
1409
1410 #[tokio::test]
1415 async fn tasks_start_strict_launch_with_project_root_succeeds() {
1416 let state = test_state();
1417 let reply = crate::tasks_start(
1418 State(state),
1419 Json(strict_greeting_task_req("hello", Some("/repo"))),
1420 )
1421 .await
1422 .expect("strict check_policy + project_root supplied must pass the guard");
1423 assert_eq!(reply.1, StatusCode::OK);
1424 assert_eq!(reply.0.final_ctx["out"]["echoed"], "hello");
1425 }
1426
1427 #[tokio::test]
1437 async fn steps_list_undeclared_step_resolves_to_single_canonical_entry() {
1438 let state = test_state();
1439 let posted = crate::tasks_start(State(state.clone()), Json(greeting_task_req("hello")))
1440 .await
1441 .expect("tasks_start")
1442 .0;
1443
1444 let resp = steps_list(
1445 State(state.clone()),
1446 Path((posted.task_id.to_string(), "latest".to_string())),
1447 )
1448 .await
1449 .expect("steps_list")
1450 .0;
1451
1452 assert_eq!(resp.task_id, posted.task_id.to_string());
1453 assert_eq!(resp.run_id, posted.run_id.to_string());
1454 let identity_name = mlua_swarm::worker::baseline::AG_IDENTITY;
1455 assert_eq!(resp.steps.len(), 1, "steps: {:?}", resp.steps);
1456 let entry = &resp.steps[0];
1457 assert_eq!(entry.name, identity_name);
1458 assert_eq!(entry.source, ProjectionSource::DataPlane);
1459 }
1460
1461 #[tokio::test]
1466 async fn step_get_resolves_alias_name_to_canonical_entry() {
1467 let state = test_state();
1468 let posted = crate::tasks_start(State(state.clone()), Json(greeting_task_req("hi")))
1469 .await
1470 .expect("tasks_start")
1471 .0;
1472
1473 let identity_name = mlua_swarm::worker::baseline::AG_IDENTITY;
1474 let via_ref = step_get(
1475 State(state.clone()),
1476 Path((
1477 posted.task_id.to_string(),
1478 "latest".to_string(),
1479 identity_name.to_string(),
1480 )),
1481 Query(StepPathQuery::default()),
1482 )
1483 .await
1484 .expect("step_get via own ref name")
1485 .0;
1486 let via_alias = step_get(
1487 State(state.clone()),
1488 Path((
1489 posted.task_id.to_string(),
1490 "latest".to_string(),
1491 "out".to_string(),
1492 )),
1493 Query(StepPathQuery::default()),
1494 )
1495 .await
1496 .expect("step_get via out-top alias")
1497 .0;
1498
1499 assert_eq!(via_ref.name, identity_name);
1500 assert_eq!(
1501 via_alias.name, identity_name,
1502 "alias lookup must report the canonical name"
1503 );
1504 assert_eq!(
1505 via_ref.sha256, via_alias.sha256,
1506 "same OUTPUT regardless of which name was queried"
1507 );
1508 }
1509
1510 #[tokio::test]
1515 async fn declared_projection_name_e2e_resolves_via_canonical_and_alias() {
1516 let state = test_state();
1517 let posted = crate::tasks_start(
1518 State(state.clone()),
1519 Json(declared_task_req("hi", "plan-out")),
1520 )
1521 .await
1522 .expect("tasks_start")
1523 .0;
1524
1525 let list = steps_list(
1526 State(state.clone()),
1527 Path((posted.task_id.to_string(), "latest".to_string())),
1528 )
1529 .await
1530 .expect("steps_list")
1531 .0;
1532 assert_eq!(list.steps.len(), 1, "steps: {:?}", list.steps);
1533 assert_eq!(list.steps[0].name, "plan-out");
1534 assert_eq!(list.steps[0].source, ProjectionSource::DataPlane);
1535
1536 let by_canonical = step_get(
1537 State(state.clone()),
1538 Path((
1539 posted.task_id.to_string(),
1540 "latest".to_string(),
1541 "plan-out".to_string(),
1542 )),
1543 Query(StepPathQuery::default()),
1544 )
1545 .await
1546 .expect("step_get canonical")
1547 .0;
1548 assert_eq!(by_canonical.name, "plan-out");
1549
1550 let identity_name = mlua_swarm::worker::baseline::AG_IDENTITY;
1551 let by_ref_alias = step_get(
1552 State(state.clone()),
1553 Path((
1554 posted.task_id.to_string(),
1555 "latest".to_string(),
1556 identity_name.to_string(),
1557 )),
1558 Query(StepPathQuery::default()),
1559 )
1560 .await
1561 .expect("step_get ref alias")
1562 .0;
1563 assert_eq!(by_ref_alias.name, "plan-out");
1564 assert_eq!(by_ref_alias.sha256, by_canonical.sha256);
1565
1566 let by_out_alias = step_get(
1567 State(state.clone()),
1568 Path((
1569 posted.task_id.to_string(),
1570 "latest".to_string(),
1571 "out".to_string(),
1572 )),
1573 Query(StepPathQuery::default()),
1574 )
1575 .await
1576 .expect("step_get out-top alias")
1577 .0;
1578 assert_eq!(by_out_alias.name, "plan-out");
1579 assert_eq!(by_out_alias.sha256, by_canonical.sha256);
1580 }
1581
1582 #[tokio::test]
1589 async fn declared_projection_name_materialized_file_stem_is_canonical() {
1590 let dir = tempfile::TempDir::new().unwrap();
1591 let state = test_state();
1592 let mut req = declared_task_req("materialized-declared", "plan-out");
1593 req.work_dir = Some(dir.path().to_string_lossy().into_owned());
1594 let posted = crate::tasks_start(State(state.clone()), Json(req))
1595 .await
1596 .expect("tasks_start")
1597 .0;
1598
1599 let summary = step_get(
1600 State(state.clone()),
1601 Path((
1602 posted.task_id.to_string(),
1603 "latest".to_string(),
1604 "plan-out".to_string(),
1605 )),
1606 Query(StepPathQuery::default()),
1607 )
1608 .await
1609 .expect("step_get")
1610 .0;
1611
1612 let file_path = summary.file_path.expect("materialized file_path present");
1613 assert!(
1614 file_path.ends_with("plan-out.md"),
1615 "materialized file stem must be the canonical name: {file_path}"
1616 );
1617 }
1618
1619 #[tokio::test]
1631 async fn declared_projection_placement_e2e_write_and_read_back_converge() {
1632 let project_root_dir = tempfile::TempDir::new().unwrap();
1633 let state = test_state();
1634 let mut bp = declared_projection_name_blueprint("plan-out");
1635 bp.projection_placement = Some(ProjectionPlacementSpec {
1636 root: Some("project_root".to_string()),
1637 dir_template: Some("custom/{task_id}/out".to_string()),
1638 });
1639 let req = TaskLaunchRequest {
1640 blueprint: BlueprintRef::Inline {
1641 value: Box::new(bp),
1642 },
1643 init_ctx: json!({ "greeting": "materialized-custom-placement" }),
1644 project_root: Some(project_root_dir.path().to_string_lossy().into_owned()),
1645 work_dir: None,
1646 task_metadata: None,
1647 ttl_secs: None,
1648 operator: None,
1649 operator_sid: None,
1650 timeout_secs: None,
1651 goal: Some("projection placement test goal".to_string()),
1652 detach: false,
1653 check_policy: None,
1654 };
1655 let posted = crate::tasks_start(State(state.clone()), Json(req))
1656 .await
1657 .expect("tasks_start")
1658 .0;
1659
1660 let summary = step_get(
1661 State(state.clone()),
1662 Path((
1663 posted.task_id.to_string(),
1664 "latest".to_string(),
1665 "plan-out".to_string(),
1666 )),
1667 Query(StepPathQuery::default()),
1668 )
1669 .await
1670 .expect("step_get")
1671 .0;
1672
1673 let file_path = summary.file_path.expect("materialized file_path present");
1682 let path = std::path::Path::new(&file_path);
1683 assert!(
1684 path.starts_with(project_root_dir.path()),
1685 "file must be rooted at project_root (root_preference=ProjectRoot): {file_path}"
1686 );
1687 assert!(
1688 file_path.ends_with("out/plan-out.md"),
1689 "file must follow the custom dir_template's tail: {file_path}"
1690 );
1691 assert!(
1692 file_path.contains("/custom/"),
1693 "file must follow the custom dir_template's prefix segment: {file_path}"
1694 );
1695 assert!(
1696 path.exists(),
1697 "the write side must have materialized the file the read-back reports: {file_path}"
1698 );
1699 }
1700
1701 #[tokio::test]
1708 async fn declared_projection_name_colliding_with_another_steps_ref_is_rejected_at_register_time(
1709 ) {
1710 use mlua_flow_ir::{Expr, Node as FlowNode};
1711 use mlua_swarm::worker::adapter::WorkerResult;
1712 use mlua_swarm::{RustFnInProcessSpawnerFactory, SpawnerRegistry};
1713
1714 let factory = RustFnInProcessSpawnerFactory::new()
1715 .register_fn("step-a", |inv| async move {
1716 Ok(WorkerResult {
1717 value: json!(inv.prompt),
1718 ok: true,
1719 stats: None,
1720 })
1721 })
1722 .register_fn("step-b", |inv| async move {
1723 Ok(WorkerResult {
1724 value: json!(inv.prompt),
1725 ok: true,
1726 stats: None,
1727 })
1728 });
1729 let mut reg = SpawnerRegistry::new();
1730 reg.register::<RustFnInProcessSpawnerFactory>(Arc::new(factory));
1731
1732 let engine = Engine::new_with_layers(EngineCfg::default(), crate::default_layer_registry());
1733 let data_store: Arc<dyn mlua_swarm::store::output::OutputStore> =
1734 Arc::new(InMemoryOutputStore::new());
1735 engine.set_output_store(data_store.clone());
1736 let compiler = mlua_swarm::Compiler::new(reg);
1737 let launch = Arc::new(mlua_swarm::TaskLaunchService::new(engine.clone(), compiler));
1738 let state = AppState {
1739 engine,
1740 sessions: Arc::new(Mutex::new(crate::SessionStore::default())),
1741 task_app: Arc::new(mlua_swarm::TaskApplication::new_inline_only(launch)),
1742 ws_operator_factory: None,
1743 data_store,
1744 operator_sessions: Arc::new(Mutex::new(HashMap::new())),
1745 roles_to_sid: Arc::new(Mutex::new(HashMap::new())),
1746 task_store: Arc::new(InMemoryTaskStore::new()),
1747 run_store: Arc::new(InMemoryRunStore::new()),
1748 replay_store: Arc::new(mlua_swarm::store::replay::InMemoryReplayStore::new()),
1749 run_trace_store: Arc::new(mlua_swarm::store::trace::InMemoryRunTraceStore::new()),
1750 base_url: None,
1751 sync_timeout_secs: 300,
1752 };
1753
1754 let flow = FlowNode::Seq {
1755 children: vec![
1756 FlowNode::Step {
1757 ref_: "step-a".to_string(),
1758 in_: Expr::Path {
1759 at: "$.greeting".parse().expect("literal test path: $.greeting"),
1760 },
1761 out: Expr::Path {
1762 at: "$.a_out".parse().expect("literal test path: $.a_out"),
1763 },
1764 },
1765 FlowNode::Step {
1766 ref_: "step-b".to_string(),
1767 in_: Expr::Path {
1768 at: "$.greeting".parse().expect("literal test path: $.greeting"),
1769 },
1770 out: Expr::Path {
1771 at: "$.b_out".parse().expect("literal test path: $.b_out"),
1772 },
1773 },
1774 ],
1775 };
1776 let blueprint = Blueprint {
1777 schema_version: current_schema_version(),
1778 id: "projection-test-collision-bp".into(),
1779 flow,
1780 agents: vec![
1781 AgentDef {
1782 name: "step-a".into(),
1783 kind: AgentKind::RustFn,
1784 spec: json!({"fn_id": "step-a"}),
1785 profile: None,
1786 meta: Some(AgentMeta {
1789 projection_name: Some("step-b".to_string()),
1790 ..Default::default()
1791 }),
1792 runner: None,
1793 runner_ref: None,
1794 verdict: None,
1795 },
1796 AgentDef {
1797 name: "step-b".into(),
1798 kind: AgentKind::RustFn,
1799 spec: json!({"fn_id": "step-b"}),
1800 profile: None,
1801 meta: None,
1802 runner: None,
1803 runner_ref: None,
1804 verdict: None,
1805 },
1806 ],
1807 operators: vec![],
1808 metas: vec![],
1809 hints: CompilerHints::default(),
1810 strategy: CompilerStrategy::default(),
1811 metadata: BlueprintMetadata::default(),
1812 spawner_hints: Default::default(),
1813 default_agent_kind: AgentKind::Operator,
1814 default_operator_kind: None,
1815 default_init_ctx: None,
1816 default_agent_ctx: None,
1817 default_context_policy: None,
1818 projection_placement: None,
1819 audits: vec![],
1820 degradation_policy: None,
1821 runners: vec![],
1822 default_runner: None,
1823 subprocesses: vec![],
1824 check_policy: None,
1825 blueprint_ref_includes: Vec::new(),
1826 };
1827
1828 let req = TaskLaunchRequest {
1829 blueprint: BlueprintRef::Inline {
1830 value: Box::new(blueprint),
1831 },
1832 init_ctx: json!({ "greeting": "hi" }),
1833 project_root: None,
1834 work_dir: None,
1835 task_metadata: None,
1836 ttl_secs: None,
1837 operator: None,
1838 operator_sid: None,
1839 timeout_secs: None,
1840 goal: None,
1841 detach: false,
1842 check_policy: None,
1843 };
1844
1845 let result = crate::tasks_start(State(state), Json(req)).await;
1849 let err = match result {
1850 Err(e) => e,
1851 Ok(_) => {
1852 panic!("declared projection_name colliding with another step's own ref must reject")
1853 }
1854 };
1855 assert_eq!(err.status, StatusCode::BAD_REQUEST);
1856 }
1857
1858 #[tokio::test]
1867 async fn steps_list_run_scoped_lookup_does_not_bleed_across_tasks_sharing_a_producer_name() {
1868 let state = test_state();
1869 let first = crate::tasks_start(State(state.clone()), Json(greeting_task_req("first-task")))
1870 .await
1871 .expect("first tasks_start")
1872 .0;
1873 let second =
1874 crate::tasks_start(State(state.clone()), Json(greeting_task_req("second-task")))
1875 .await
1876 .expect("second tasks_start")
1877 .0;
1878
1879 let first_steps = steps_list(
1880 State(state.clone()),
1881 Path((first.task_id.to_string(), "latest".to_string())),
1882 )
1883 .await
1884 .expect("first steps_list")
1885 .0;
1886 let second_steps = steps_list(
1887 State(state.clone()),
1888 Path((second.task_id.to_string(), "latest".to_string())),
1889 )
1890 .await
1891 .expect("second steps_list")
1892 .0;
1893
1894 let identity_name = mlua_swarm::worker::baseline::AG_IDENTITY;
1895 let first_entry = first_steps
1896 .steps
1897 .iter()
1898 .find(|s| s.name == identity_name)
1899 .expect("first entry present");
1900 let second_entry = second_steps
1901 .steps
1902 .iter()
1903 .find(|s| s.name == identity_name)
1904 .expect("second entry present");
1905 assert_eq!(first_entry.source, ProjectionSource::DataPlane);
1906 assert_eq!(second_entry.source, ProjectionSource::DataPlane);
1907 assert_ne!(
1908 first_entry.sha256, second_entry.sha256,
1909 "each Task's own greeting must resolve, not the globally-latest submission"
1910 );
1911 }
1912
1913 #[tokio::test]
1916 async fn steps_list_latest_resolves_newest_run_explicit_pin_still_works() {
1917 let state = test_state();
1918 let first = crate::tasks_start(State(state.clone()), Json(greeting_task_req("first")))
1919 .await
1920 .expect("tasks_start")
1921 .0;
1922 let (status, rekicked) = crate::tasks::task_rekick(
1923 State(state.clone()),
1924 Path(first.task_id.to_string()),
1925 Some(Json(crate::tasks::RunKickRequest {
1926 init_ctx_override: Some(json!({ "greeting": "second" })),
1927 task_input_override: None,
1928 timeout_secs: None,
1929 detach: false,
1930 operator_sid: None,
1931 })),
1932 )
1933 .await
1934 .expect("task_rekick");
1935 assert_eq!(status, StatusCode::CREATED);
1936
1937 let latest = steps_list(
1938 State(state.clone()),
1939 Path((first.task_id.to_string(), "latest".to_string())),
1940 )
1941 .await
1942 .expect("steps_list latest")
1943 .0;
1944 assert_eq!(latest.run_id, rekicked.0.run_id.to_string());
1945
1946 let pinned = steps_list(
1947 State(state.clone()),
1948 Path((first.task_id.to_string(), first.run_id.to_string())),
1949 )
1950 .await
1951 .expect("steps_list pinned")
1952 .0;
1953 assert_eq!(pinned.run_id, first.run_id.to_string());
1954 }
1955
1956 #[tokio::test]
1959 async fn step_get_preview_is_utf8_boundary_safe_and_truncated_flag_is_correct() {
1960 let state = test_state();
1961 let long_value = "あ".repeat(300); let posted = crate::tasks_start(State(state.clone()), Json(greeting_task_req(&long_value)))
1966 .await
1967 .expect("tasks_start")
1968 .0;
1969
1970 let identity_name = mlua_swarm::worker::baseline::AG_IDENTITY;
1971 let summary = step_get(
1972 State(state.clone()),
1973 Path((
1974 posted.task_id.to_string(),
1975 "latest".to_string(),
1976 identity_name.to_string(),
1977 )),
1978 Query(StepPathQuery::default()),
1979 )
1980 .await
1981 .expect("step_get")
1982 .0;
1983
1984 assert!(
1985 summary.preview.len() <= 512 + "…".len(),
1986 "preview must stay near the 512-byte cap: {} bytes",
1987 summary.preview.len()
1988 );
1989 assert!(
1990 summary.truncated,
1991 "a 900-byte body must be reported truncated"
1992 );
1993 assert!(
1994 summary.preview.ends_with('…'),
1995 "truncated preview must end with an ellipsis: {}",
1996 summary.preview
1997 );
1998 assert!(summary.preview.chars().all(|c| c != '\u{FFFD}'));
2004 }
2005
2006 #[tokio::test]
2009 async fn step_content_in_memory_fallback_is_json_with_matching_etag() {
2010 let state = test_state();
2011 let posted = crate::tasks_start(State(state.clone()), Json(greeting_task_req("hi")))
2012 .await
2013 .expect("tasks_start")
2014 .0;
2015
2016 let resp = step_content(
2017 State(state.clone()),
2018 Path((
2019 posted.task_id.to_string(),
2020 "latest".to_string(),
2021 "out".to_string(),
2022 )),
2023 Query(StepPathQuery::default()),
2024 )
2025 .await
2026 .expect("step_content")
2027 .into_response();
2028
2029 assert_eq!(resp.status(), StatusCode::OK);
2030 let content_type = resp
2031 .headers()
2032 .get(header::CONTENT_TYPE)
2033 .expect("content-type header")
2034 .to_str()
2035 .expect("ascii");
2036 assert_eq!(content_type, "application/json");
2037 let etag = resp
2038 .headers()
2039 .get(header::ETAG)
2040 .expect("etag header")
2041 .to_str()
2042 .expect("ascii")
2043 .to_string();
2044 let body_bytes = axum::body::to_bytes(resp.into_body(), usize::MAX)
2045 .await
2046 .expect("body bytes");
2047 let expected_sha = hex::encode(sha2::Sha256::digest(&body_bytes));
2048 assert_eq!(etag, format!("\"sha256:{expected_sha}\""));
2049 let parsed: Value = serde_json::from_slice(&body_bytes).expect("valid json body");
2050 assert_eq!(parsed["echoed"], json!("hi"));
2051 }
2052
2053 #[tokio::test]
2058 async fn step_content_materialized_file_is_served_as_markdown() {
2059 let dir = tempfile::TempDir::new().unwrap();
2060 let state = test_state();
2061 let mut req = greeting_task_req("materialized");
2062 req.work_dir = Some(dir.path().to_string_lossy().into_owned());
2063 let posted = crate::tasks_start(State(state.clone()), Json(req))
2064 .await
2065 .expect("tasks_start")
2066 .0;
2067
2068 let identity_name = mlua_swarm::worker::baseline::AG_IDENTITY;
2069 let resp = step_content(
2070 State(state.clone()),
2071 Path((
2072 posted.task_id.to_string(),
2073 "latest".to_string(),
2074 identity_name.to_string(),
2075 )),
2076 Query(StepPathQuery::default()),
2077 )
2078 .await
2079 .expect("step_content")
2080 .into_response();
2081
2082 assert_eq!(resp.status(), StatusCode::OK);
2083 let content_type = resp
2084 .headers()
2085 .get(header::CONTENT_TYPE)
2086 .expect("content-type header")
2087 .to_str()
2088 .expect("ascii");
2089 assert_eq!(content_type, "text/markdown; charset=utf-8");
2090 let body_bytes = axum::body::to_bytes(resp.into_body(), usize::MAX)
2091 .await
2092 .expect("body bytes");
2093 let body_str = String::from_utf8(body_bytes.to_vec()).expect("utf8 body");
2094 assert!(
2095 body_str.contains("```json"),
2096 "materialized file must carry the fenced json block: {body_str}"
2097 );
2098 }
2099
2100 #[tokio::test]
2103 async fn step_content_path_narrow_returns_json_fragment() {
2104 let state = test_state();
2105 let posted = crate::tasks_start(State(state.clone()), Json(greeting_task_req("narrowed")))
2106 .await
2107 .expect("tasks_start")
2108 .0;
2109
2110 let resp = step_content(
2111 State(state.clone()),
2112 Path((
2113 posted.task_id.to_string(),
2114 "latest".to_string(),
2115 "out".to_string(),
2116 )),
2117 Query(StepPathQuery {
2118 path: Some("echoed".to_string()),
2119 }),
2120 )
2121 .await
2122 .expect("step_content narrowed")
2123 .into_response();
2124
2125 assert_eq!(resp.status(), StatusCode::OK);
2126 let content_type = resp
2127 .headers()
2128 .get(header::CONTENT_TYPE)
2129 .expect("content-type header")
2130 .to_str()
2131 .expect("ascii");
2132 assert_eq!(content_type, "application/json");
2133 let body_bytes = axum::body::to_bytes(resp.into_body(), usize::MAX)
2134 .await
2135 .expect("body bytes");
2136 let parsed: Value = serde_json::from_slice(&body_bytes).expect("valid json body");
2137 assert_eq!(parsed, json!("narrowed"));
2138 }
2139
2140 #[tokio::test]
2143 async fn steps_list_unknown_task_returns_404() {
2144 let state = test_state();
2145 let err = steps_list(
2146 State(state),
2147 Path(("T-does-not-exist".to_string(), "latest".to_string())),
2148 )
2149 .await
2150 .expect_err("unknown task must 404");
2151 assert_eq!(err.status, StatusCode::NOT_FOUND);
2152 }
2153
2154 #[tokio::test]
2155 async fn steps_list_unknown_run_returns_404() {
2156 let state = test_state();
2157 let posted = crate::tasks_start(State(state.clone()), Json(greeting_task_req("hi")))
2158 .await
2159 .expect("tasks_start")
2160 .0;
2161 let err = steps_list(
2162 State(state),
2163 Path((posted.task_id.to_string(), "R-does-not-exist".to_string())),
2164 )
2165 .await
2166 .expect_err("unknown run must 404");
2167 assert_eq!(err.status, StatusCode::NOT_FOUND);
2168 }
2169
2170 #[tokio::test]
2171 async fn step_get_unknown_step_returns_404() {
2172 let state = test_state();
2173 let posted = crate::tasks_start(State(state.clone()), Json(greeting_task_req("hi")))
2174 .await
2175 .expect("tasks_start")
2176 .0;
2177 let err = step_get(
2178 State(state),
2179 Path((
2180 posted.task_id.to_string(),
2181 "latest".to_string(),
2182 "does-not-exist".to_string(),
2183 )),
2184 Query(StepPathQuery::default()),
2185 )
2186 .await
2187 .expect_err("unknown step must 404");
2188 assert_eq!(err.status, StatusCode::NOT_FOUND);
2189 }
2190
2191 #[tokio::test]
2194 async fn old_ctx_route_returns_404_not_found_by_router() {
2195 let engine = Engine::new(EngineCfg::default());
2196 let router = mlua_swarm_server_router_for_test(engine);
2197 let listener = tokio::net::TcpListener::bind("127.0.0.1:0")
2198 .await
2199 .expect("bind ephemeral port");
2200 let addr = listener.local_addr().expect("local addr");
2201 tokio::spawn(async move {
2202 let _ = axum::serve(listener, router).await;
2203 });
2204 let client = reqwest::Client::new();
2205 let resp = client
2206 .get(format!("http://{addr}/v1/tasks/T-anything/ctx"))
2207 .send()
2208 .await
2209 .expect("request");
2210 assert_eq!(resp.status(), reqwest::StatusCode::NOT_FOUND);
2211 }
2212
2213 fn mlua_swarm_server_router_for_test(engine: Engine) -> axum::Router {
2217 crate::build_router(engine)
2218 }
2219
2220 #[test]
2223 fn mcp_query_adapter_project_builds_query_ref() {
2224 let adapter = McpQueryAdapter::new(
2225 Arc::new(InMemoryOutputStore::new()),
2226 Arc::new(InMemoryRunStore::new()),
2227 Engine::new(EngineCfg::default()),
2228 );
2229 let key = ProjectionKey {
2230 task_id: "T-abc".to_string(),
2231 run_id: None,
2232 step: Some("planner".to_string()),
2233 path: None,
2234 };
2235 let ctx_data = json!({"planner": {"plan": "do it"}});
2236 let reference = adapter.project(&key, &ctx_data).expect("project");
2237 match &reference {
2238 ProjectionRef::Query { endpoint, key: k } => {
2239 assert!(endpoint.contains("/steps/planner/content"));
2240 assert_eq!(k, &key);
2241 }
2242 other => panic!("expected Query ref, got {other:?}"),
2243 }
2244 let line = adapter.pointer_line(&reference);
2245 assert!(line.contains("T-abc"));
2246 }
2247
2248 #[test]
2249 fn mcp_query_adapter_project_rejects_key_not_present_in_ctx_data() {
2250 let adapter = McpQueryAdapter::new(
2251 Arc::new(InMemoryOutputStore::new()),
2252 Arc::new(InMemoryRunStore::new()),
2253 Engine::new(EngineCfg::default()),
2254 );
2255 let key = ProjectionKey {
2256 task_id: "T-abc".to_string(),
2257 run_id: None,
2258 step: Some("missing".to_string()),
2259 path: None,
2260 };
2261 let err = adapter.project(&key, &json!({"planner": {}})).unwrap_err();
2262 assert!(matches!(err, ProjectionError::NotFound(_)));
2263 }
2264
2265 #[tokio::test(flavor = "multi_thread")]
2266 async fn mcp_query_adapter_fetch_bridges_to_resolve_async() {
2267 let state = test_state();
2268 let posted = crate::tasks_start(State(state.clone()), Json(greeting_task_req("bridged")))
2269 .await
2270 .expect("tasks_start")
2271 .0;
2272
2273 let adapter = McpQueryAdapter::new(
2274 state.data_store.clone(),
2275 state.run_store.clone(),
2276 state.engine.clone(),
2277 );
2278 let key = ProjectionKey {
2279 task_id: posted.task_id.to_string(),
2280 run_id: None,
2281 step: Some("out".to_string()),
2282 path: Some("echoed".to_string()),
2283 };
2284 let value = adapter.fetch(&key).expect("fetch");
2292 assert_eq!(value, json!("bridged"));
2293 }
2294
2295 #[tokio::test]
2308 async fn resolve_async_path_narrows_within_data_plane_final_content() {
2309 let state = test_state();
2310 let posted = crate::tasks_start(State(state.clone()), Json(greeting_task_req("hi")))
2311 .await
2312 .expect("tasks_start")
2313 .0;
2314
2315 let adapter = McpQueryAdapter::new(
2316 state.data_store.clone(),
2317 state.run_store.clone(),
2318 state.engine.clone(),
2319 );
2320 let key = ProjectionKey {
2321 task_id: posted.task_id.to_string(),
2322 run_id: None,
2323 step: Some(mlua_swarm::worker::baseline::AG_IDENTITY.to_string()),
2324 path: Some("echoed".to_string()),
2325 };
2326 let (_run, value) = adapter.resolve_async(&key).await.expect("resolve_async");
2327 assert_eq!(value, json!("hi"));
2328 }
2329
2330 #[tokio::test(flavor = "multi_thread")]
2341 async fn steps_list_returns_in_flight_step_output_before_run_completes() {
2342 use mlua_flow_ir::{Expr, Node as FlowNode};
2343 use mlua_swarm::worker::adapter::WorkerResult;
2344 use mlua_swarm::{RustFnInProcessSpawnerFactory, SpawnerRegistry};
2345
2346 let started = Arc::new(tokio::sync::Notify::new());
2347 let gate = Arc::new(tokio::sync::Notify::new());
2348 let started_bg = started.clone();
2349 let gate_bg = gate.clone();
2350
2351 let factory = RustFnInProcessSpawnerFactory::new()
2352 .register_fn("step1", |inv| async move {
2353 Ok(WorkerResult {
2354 value: json!({ "step1_out": inv.prompt }),
2355 ok: true,
2356 stats: None,
2357 })
2358 })
2359 .register_fn("step2", move |_inv| {
2360 let started = started_bg.clone();
2361 let gate = gate_bg.clone();
2362 async move {
2363 started.notify_one();
2364 gate.notified().await;
2365 Ok(WorkerResult {
2366 value: json!("step2 done"),
2367 ok: true,
2368 stats: None,
2369 })
2370 }
2371 });
2372 let mut reg = SpawnerRegistry::new();
2373 reg.register::<RustFnInProcessSpawnerFactory>(Arc::new(factory));
2374
2375 let engine = Engine::new_with_layers(EngineCfg::default(), crate::default_layer_registry());
2376 let data_store: Arc<dyn mlua_swarm::store::output::OutputStore> =
2377 Arc::new(InMemoryOutputStore::new());
2378 engine.set_output_store(data_store.clone());
2379 let compiler = mlua_swarm::Compiler::new(reg);
2380 let launch = Arc::new(mlua_swarm::TaskLaunchService::new(engine.clone(), compiler));
2381 let state = AppState {
2382 engine,
2383 sessions: Arc::new(Mutex::new(crate::SessionStore::default())),
2384 task_app: Arc::new(mlua_swarm::TaskApplication::new_inline_only(launch)),
2385 ws_operator_factory: None,
2386 data_store,
2387 operator_sessions: Arc::new(Mutex::new(HashMap::new())),
2388 roles_to_sid: Arc::new(Mutex::new(HashMap::new())),
2389 task_store: Arc::new(InMemoryTaskStore::new()),
2390 run_store: Arc::new(InMemoryRunStore::new()),
2391 replay_store: Arc::new(mlua_swarm::store::replay::InMemoryReplayStore::new()),
2392 run_trace_store: Arc::new(mlua_swarm::store::trace::InMemoryRunTraceStore::new()),
2393 base_url: None,
2394 sync_timeout_secs: 300,
2395 };
2396
2397 let flow = FlowNode::Seq {
2398 children: vec![
2399 FlowNode::Step {
2400 ref_: "step1".to_string(),
2401 in_: Expr::Path {
2402 at: "$.greeting".parse().expect("literal test path: $.greeting"),
2403 },
2404 out: Expr::Path {
2405 at: "$.step1".parse().expect("literal test path: $.step1"),
2406 },
2407 },
2408 FlowNode::Step {
2409 ref_: "step2".to_string(),
2410 in_: Expr::Path {
2411 at: "$.step1".parse().expect("literal test path: $.step1"),
2412 },
2413 out: Expr::Path {
2414 at: "$.step2".parse().expect("literal test path: $.step2"),
2415 },
2416 },
2417 ],
2418 };
2419 let blueprint = Blueprint {
2420 schema_version: current_schema_version(),
2421 id: "projection-test-in-flight-bp".into(),
2422 flow,
2423 agents: vec![
2424 AgentDef {
2425 name: "step1".into(),
2426 kind: AgentKind::RustFn,
2427 spec: json!({"fn_id": "step1"}),
2428 profile: None,
2429 meta: None,
2430 runner: None,
2431 runner_ref: None,
2432 verdict: None,
2433 },
2434 AgentDef {
2435 name: "step2".into(),
2436 kind: AgentKind::RustFn,
2437 spec: json!({"fn_id": "step2"}),
2438 profile: None,
2439 meta: None,
2440 runner: None,
2441 runner_ref: None,
2442 verdict: None,
2443 },
2444 ],
2445 operators: vec![],
2446 metas: vec![],
2447 hints: CompilerHints::default(),
2448 strategy: CompilerStrategy::default(),
2449 metadata: BlueprintMetadata::default(),
2450 spawner_hints: Default::default(),
2451 default_agent_kind: AgentKind::Operator,
2452 default_operator_kind: None,
2453 default_init_ctx: None,
2454 default_agent_ctx: None,
2455 default_context_policy: None,
2456 projection_placement: None,
2457 audits: vec![],
2458 degradation_policy: None,
2459 runners: vec![],
2460 default_runner: None,
2461 subprocesses: vec![],
2462 check_policy: None,
2463 blueprint_ref_includes: Vec::new(),
2464 };
2465
2466 let req = TaskLaunchRequest {
2467 blueprint: BlueprintRef::Inline {
2468 value: Box::new(blueprint),
2469 },
2470 init_ctx: json!({ "greeting": "hi" }),
2471 project_root: None,
2472 work_dir: None,
2473 task_metadata: None,
2474 ttl_secs: None,
2475 operator: None,
2476 operator_sid: None,
2477 timeout_secs: None,
2478 goal: None,
2479 detach: false,
2480 check_policy: None,
2481 };
2482
2483 let state_bg = state.clone();
2484 let launch_handle =
2485 tokio::spawn(async move { crate::tasks_start(State(state_bg), Json(req)).await });
2486
2487 started.notified().await;
2491
2492 let in_flight_tasks = state.task_store.list().await.expect("task_store list");
2493 assert_eq!(in_flight_tasks.len(), 1, "exactly one Task minted");
2494 let task_id = in_flight_tasks[0].id.clone();
2495
2496 let resp = steps_list(
2497 State(state.clone()),
2498 Path((task_id.to_string(), "latest".to_string())),
2499 )
2500 .await
2501 .expect("steps_list while step2 is still in flight");
2502 let step1_entry = resp
2503 .steps
2504 .iter()
2505 .find(|s| s.name == "step1")
2506 .expect("step1 must already be visible");
2507 assert_eq!(step1_entry.source, ProjectionSource::DataPlane);
2508
2509 gate.notify_one();
2512 let posted = launch_handle.await.expect("join").expect("tasks_start").0;
2513 assert_eq!(posted.final_ctx["step2"], json!("step2 done"));
2514 }
2515}