1use std::collections::HashMap;
18
19#[derive(Debug)]
23pub struct HealthArgs<'a> {
24 pub mem: Option<&'a str>,
25 pub include: &'a [String],
26 pub limit: Option<usize>,
27 pub target_schema: Option<&'a str>,
28 pub include_config: bool,
29}
30
31#[derive(Debug, Clone)]
36pub struct HealthConfig {
37 pub mutations: serde_json::Value,
38 pub plugin: serde_json::Value,
39}
40
41#[allow(clippy::large_enum_variant)]
48#[derive(Debug, thiserror::Error)]
49pub enum ComposeHealthError {
50 #[error("unknown mem: \"{name}\"")]
54 UnknownMem {
55 name: String,
56 writable_mems: Vec<String>,
57 },
58 #[error("mem \"{0}\" is quarantined")]
63 MemQuarantined(String),
64 #[error("invalid target_schema {raw:?}: {reason}")]
68 InvalidTargetSchema { raw: String, reason: String },
69 #[error(transparent)]
72 Engine(#[from] memstead_base::EngineError),
73}
74
75pub fn compose_health(
80 engine: &mut memstead_base::Engine,
81 args: &HealthArgs,
82 drift_warnings: Vec<memstead_base::WarningHint>,
83 config: &HealthConfig,
84) -> Result<serde_json::Value, ComposeHealthError> {
85 let health = engine.health();
86 let stats = engine.status();
87 let include = args.include;
88 const HEALTH_LIMIT_MAX: usize = 100;
89 let requested_limit = args.limit.unwrap_or(10);
90 let limit = requested_limit.min(HEALTH_LIMIT_MAX);
91
92 let mut warnings: Vec<memstead_base::WarningHint> = drift_warnings;
93 warnings.extend(health.warnings.clone());
94 if requested_limit > HEALTH_LIMIT_MAX {
95 warnings.push(memstead_base::WarningHint::LimitClamped {
96 requested: requested_limit,
97 actual: HEALTH_LIMIT_MAX,
98 });
99 }
100
101 for key in include {
102 if !memstead_base::ops::health::HEALTH_INCLUDE_KEYS.contains(&key.as_str()) {
103 warnings.push(memstead_base::WarningHint::UnknownIncludeKey {
104 key: key.clone(),
105 allowed: memstead_base::ops::health::HEALTH_INCLUDE_KEYS
106 .iter()
107 .map(|s| s.to_string())
108 .collect(),
109 });
110 }
111 }
112
113 let mem_filter: Option<String> = match args.mem {
115 Some(v) if engine.mem_router().is_writable(v) => Some(v.to_string()),
116 Some(v) if engine.quarantine_reason(v).is_some() => {
117 return Err(ComposeHealthError::MemQuarantined(v.to_string()));
118 }
119 Some(v) => {
120 let mut names: Vec<String> = engine
121 .mem_router()
122 .writable_mems()
123 .iter()
124 .cloned()
125 .collect();
126 names.sort();
127 return Err(ComposeHealthError::UnknownMem {
128 name: v.to_string(),
129 writable_mems: names,
130 });
131 }
132 None => None,
133 };
134 let vf = mem_filter.as_deref();
135
136 if let Some(v) = vf {
143 warnings.retain(|w| w.source_mem().is_none_or(|wv| wv == v));
144 }
145
146 let in_mem = |e: &memstead_base::Entity| -> bool {
147 match vf {
148 Some(v) => e.mem == v,
149 None => true,
150 }
151 };
152 let real_count = engine
153 .store()
154 .all_entities()
155 .filter(|e| !e.stub && in_mem(e))
156 .count();
157 let stub_count = engine
158 .store()
159 .all_entities()
160 .filter(|e| e.stub && in_mem(e))
161 .count();
162 let total_count = real_count + stub_count;
163
164 let orphan_ids: Vec<memstead_base::EntityId> = engine
165 .orphans()
166 .into_iter()
167 .filter(|id| match vf {
168 Some(v) => engine.store().get(id).map(|e| e.mem == v).unwrap_or(false),
169 None => true,
170 })
171 .collect();
172 let stub_pairs: Vec<(memstead_base::EntityId, Vec<memstead_base::EntityId>)> = engine
173 .stubs()
174 .into_iter()
175 .filter(|(id, _)| match vf {
176 Some(v) => engine.store().get(id).map(|e| e.mem == v).unwrap_or(false),
177 None => true,
178 })
179 .collect();
180
181 let community_count = match vf {
187 Some(v) => memstead_base::graph::community::clusters_in_mem(
188 engine.store(),
189 engine.communities(),
190 v,
191 )
192 .len(),
193 None => engine.communities().count,
194 };
195
196 let (edge_count, edge_types) = {
199 if let Some(v) = vf {
200 let mut counts: HashMap<String, usize> = HashMap::new();
201 let mut total: usize = 0;
202 for id in engine.store().all_ids() {
203 let source_mem = engine.store().get(id).map(|e| e.mem.clone());
204 if let Some(source) = source_mem.as_deref()
205 && source != v
206 {
207 continue;
208 }
209 for edge in engine.store().outgoing(id) {
210 *counts.entry(edge.rel_type.clone()).or_insert(0) += 1;
211 total += 1;
212 }
213 }
214 let mut pairs: Vec<_> = counts.into_iter().collect();
215 pairs.sort_by_key(|p| std::cmp::Reverse(p.1));
216 let arr: Vec<serde_json::Value> = pairs
217 .into_iter()
218 .map(|(t, c)| serde_json::json!({"type": t, "count": c}))
219 .collect();
220 (total, arr)
221 } else {
222 let mut pairs: Vec<_> = stats.edge_types.iter().collect();
223 pairs.sort_by(|a, b| b.1.cmp(a.1));
224 let arr: Vec<serde_json::Value> = pairs
225 .into_iter()
226 .map(|(t, c)| serde_json::json!({"type": t, "count": c}))
227 .collect();
228 (stats.edge_count, arr)
229 }
230 };
231
232 let type_distribution: Vec<serde_json::Value> = {
233 let mut counts: std::collections::HashMap<&str, usize> = std::collections::HashMap::new();
234 for e in engine
235 .store()
236 .all_entities()
237 .filter(|e| !e.stub && in_mem(e))
238 {
239 *counts.entry(&e.entity_type).or_default() += 1;
240 }
241 let mut pairs: Vec<_> = counts.into_iter().collect();
242 pairs.sort_by_key(|p| std::cmp::Reverse(p.1));
243 pairs
244 .into_iter()
245 .map(|(s, c)| serde_json::json!({"type": s, "count": c}))
246 .collect()
247 };
248
249 let writable_mems: Vec<String> = {
250 let mut names: Vec<String> = engine
251 .mem_router()
252 .writable_mems()
253 .iter()
254 .cloned()
255 .collect();
256 names.sort();
257 names
258 };
259 let default_writable_mem: Option<String> = engine.default_writable_mem().map(|s| s.to_string());
264 let read_mems: Vec<String> = {
265 let writable_set: std::collections::HashSet<&String> =
266 engine.mem_router().writable_mems().iter().collect();
267 let mut names: Vec<String> = engine
268 .mem_router()
269 .visible_mems()
270 .iter()
271 .filter(|n| !writable_set.contains(*n))
272 .cloned()
273 .collect();
274 names.sort();
275 names
276 };
277
278 let mem_schemas: Vec<serde_json::Value> = {
291 let mut entries: Vec<serde_json::Value> = Vec::new();
292 let writable_set: std::collections::HashSet<&String> = writable_mems.iter().collect();
293 for name in writable_mems.iter().chain(read_mems.iter()) {
294 if let Some(v) = vf
295 && name != v
296 {
297 continue;
298 }
299 if let Some(m) = engine.mount(name) {
300 let schema_ref = m
305 .schema
306 .as_ref()
307 .map(|s| s.as_display())
308 .unwrap_or_default();
309 let mut entry = serde_json::json!({
310 "mem": name,
311 "schema": schema_ref,
312 "writable": writable_set.contains(name),
313 });
314 if let Some(target) = &m.migration_target {
318 entry["migration_target"] = serde_json::json!(target.as_display());
319 }
320 entries.push(entry);
321 }
322 }
323 entries
324 };
325
326 let orphans_by_schema = engine.orphans_by_schema(&orphan_ids);
337 let scope_mems: Vec<String> = match vf {
338 Some(v) => vec![v.to_string()],
339 None => writable_mems
340 .iter()
341 .chain(read_mems.iter())
342 .cloned()
343 .collect(),
344 };
345 let communities_by_schema = engine.communities_by_schema(&scope_mems);
346
347 let mut result = serde_json::json!({
348 "mem": mem_filter,
349 "summary": {
350 "total_entities": real_count,
351 "total_orphans": orphan_ids.len(),
352 "total_stubs": stub_pairs.len(),
353 "total_stale": health.stale_entities.iter().filter(|e| match vf {
354 Some(v) => engine.store().get(&e.id).map(|ent| ent.mem == v).unwrap_or(false),
355 None => true,
356 }).count(),
357 "total_missing_fields": health.missing_fields.iter().filter(|h| match vf {
358 Some(v) => engine.store().get(&h.id).map(|ent| ent.mem == v).unwrap_or(false),
359 None => true,
360 }).count(),
361 "total_communities": community_count,
362 "orphans_by_schema": orphans_by_schema,
363 "communities_by_schema": communities_by_schema,
364 },
365 "total_nodes": total_count,
366 "real_nodes": real_count,
367 "stub_nodes": stub_count,
368 "total_edges": edge_count,
369 "edge_types": edge_types,
370 "type_distribution": type_distribution,
371 "writable_mems": writable_mems,
372 "default_writable_mem": default_writable_mem,
373 "read_mems": read_mems,
374 "mem_schemas": mem_schemas,
375 });
376 let obj = result.as_object_mut().unwrap();
377 if !warnings.is_empty() {
378 obj.insert("warnings".into(), serde_json::json!(warnings));
379 }
380 if !health.quarantined.is_empty() {
383 obj.insert(
384 "quarantined".into(),
385 serde_json::to_value(&health.quarantined).unwrap_or_default(),
386 );
387 }
388 if let Some(diag) = &health.boot_diagnosis {
389 obj.insert("boot_diagnosis".into(), diag.clone());
390 }
391 if !health.leaf_entities_by_type.is_empty() {
394 obj.insert(
395 "leaf_entities_by_type".into(),
396 serde_json::to_value(&health.leaf_entities_by_type).unwrap_or_default(),
397 );
398 }
399
400 if include.iter().any(|s| s == "orphans") {
401 let orphans_list: Vec<serde_json::Value> = orphan_ids
402 .into_iter()
403 .map(|id| {
404 let title = engine
405 .get_entity(&id)
406 .map(|e| e.title.clone())
407 .unwrap_or_default();
408 serde_json::json!({"id": id.to_string(), "title": title})
409 })
410 .collect();
411 obj.insert("orphans".into(), serde_json::json!(orphans_list));
412 }
413 if include.iter().any(|s| s == "stubs") {
414 let stubs_list: Vec<serde_json::Value> = stub_pairs
415 .into_iter()
416 .map(|(id, refs)| {
417 serde_json::json!({
418 "id": id.to_string(),
419 "referenced_by": refs.iter().map(|r| r.to_string()).collect::<Vec<_>>(),
420 })
421 })
422 .collect();
423 obj.insert("stubs".into(), serde_json::json!(stubs_list));
424 }
425 if include.iter().any(|s| s == "most_connected") {
426 use memstead_base::graph::query::{Connectivity, cmp_by_dependency, connectivity_for};
427 let to_json = |c: Connectivity| {
432 let title = engine
433 .get_entity(&c.id)
434 .map(|e| e.title.clone())
435 .unwrap_or_default();
436 serde_json::json!({
437 "id": c.id.to_string(),
438 "title": title,
439 "total": c.total,
440 "incoming": c.incoming,
441 "outgoing": c.outgoing,
442 "typed_total": c.typed_total,
443 "typed_incoming": c.typed_incoming,
444 "typed_outgoing": c.typed_outgoing,
445 })
446 };
447 let connected: Vec<serde_json::Value> = if let Some(v) = vf {
448 let mut entries: Vec<Connectivity> = engine
454 .store()
455 .all_entities()
456 .filter(|e| !e.stub && e.mem == v)
457 .map(|e| connectivity_for(engine.store(), &e.id, |in_edge| in_edge.from.mem() == v))
458 .collect();
459 entries.sort_by(cmp_by_dependency);
460 entries.truncate(limit);
461 entries.into_iter().map(to_json).collect()
462 } else {
463 engine
464 .most_connected(limit)
465 .into_iter()
466 .map(to_json)
467 .collect()
468 };
469 obj.insert("most_connected".into(), serde_json::json!(connected));
470 }
471 if include.iter().any(|s| s == "missing_fields") {
472 let missing_fields: Vec<serde_json::Value> = health
473 .missing_fields
474 .iter()
475 .filter(|h| match vf {
476 Some(v) => engine
477 .store()
478 .get(&h.id)
479 .map(|e| e.mem == v)
480 .unwrap_or(false),
481 None => true,
482 })
483 .map(|h| {
484 let missing: Vec<&str> = h.issues.iter().map(|i| i.field.as_str()).collect();
490 let issues: Vec<serde_json::Value> = h
491 .issues
492 .iter()
493 .map(|i| {
494 serde_json::json!({
495 "field": i.field,
496 "code": i.code,
497 "message": i.message,
498 })
499 })
500 .collect();
501 serde_json::json!({
502 "id": h.id.to_string(),
503 "title": h.title,
504 "missing": missing,
505 "issues": issues,
506 })
507 })
508 .collect();
509 obj.insert("missing_fields".into(), serde_json::json!(missing_fields));
510 }
511 if include.iter().any(|s| s == "stale") {
512 let stale: Vec<serde_json::Value> = health
513 .stale_entities
514 .iter()
515 .filter(|e| match vf {
516 Some(v) => engine
517 .store()
518 .get(&e.id)
519 .map(|ent| ent.mem == v)
520 .unwrap_or(false),
521 None => true,
522 })
523 .map(|e| {
524 serde_json::json!({
525 "id": e.id.to_string(),
526 "title": e.title,
527 "days_since_modified": e.days_since_modified,
528 })
529 })
530 .collect();
531 obj.insert("stale".into(), serde_json::json!(stale));
532 }
533 if include.iter().any(|s| s == "dangling_links") {
534 let dangling = memstead_base::ops::health::collect_dangling_links(engine.store(), vf);
535 let arr: Vec<serde_json::Value> = dangling
536 .into_iter()
537 .map(|dl| serde_json::to_value(&dl).unwrap())
538 .collect();
539 obj.insert("dangling_links".into(), serde_json::json!(arr));
540 }
541 if include.iter().any(|s| s == "anchors") {
542 obj.insert(
543 "anchors".into(),
544 memstead_base::ops::health::health_anchors_axis(engine),
545 );
546 }
547 if include.iter().any(|s| s == "stale_derivations") {
548 obj.insert(
549 "stale_derivations".into(),
550 memstead_base::ops::health::health_stale_derivations_axis(engine, args.mem),
551 );
552 }
553 if include.iter().any(|s| s == "checks") {
554 obj.insert(
555 "checks".into(),
556 memstead_base::ops::health::health_checks_axis(engine, args.mem),
557 );
558 }
559 if include.iter().any(|s| s == "open_questions") {
560 obj.insert(
561 "open_questions".into(),
562 memstead_base::ops::health::health_open_questions_axis(engine, args.mem),
563 );
564 }
565 if include.iter().any(|s| s == "friction") {
566 let summary = match engine.workspace_root() {
572 Some(root) => memstead_base::friction::FrictionLedger::for_workspace(root).summarize(),
573 None => serde_json::json!({
574 "total": 0,
575 "by_code": {},
576 "by_verb": {},
577 "recent_24h": { "total": 0, "by_code": {} },
578 "ledger_bytes": 0,
579 }),
580 };
581 obj.insert("friction".into(), summary);
582 }
583 if include.iter().any(|s| s == "missing_required_outgoing") {
584 let reports = engine.missing_required_outgoing(vf);
585 let arr: Vec<serde_json::Value> = reports
586 .into_iter()
587 .map(|r| serde_json::to_value(&r).unwrap())
588 .collect();
589 obj.insert("missing_required_outgoing".into(), serde_json::json!(arr));
590 }
591 if include.iter().any(|s| s == "constraints") {
592 let reports = engine.constraint_findings(vf);
593 let arr: Vec<serde_json::Value> = reports
594 .into_iter()
595 .map(|r| serde_json::to_value(&r).unwrap())
596 .collect();
597 obj.insert("constraints".into(), serde_json::json!(arr));
598 let defects = engine.schema_format_defects();
599 if !defects.is_empty() {
600 obj.insert(
601 "schema_format_defects".into(),
602 serde_json::to_value(&defects).unwrap(),
603 );
604 }
605 }
606 if include.iter().any(|s| s == "tags") {
607 let (distribution, folded, untagged) =
608 memstead_base::ops::health::collect_tag_distribution(engine.store(), vf, limit);
609 obj.insert(
610 "tag_distribution".into(),
611 serde_json::to_value(&distribution).unwrap(),
612 );
613 obj.insert(
614 "tag_distribution_folded".into(),
615 serde_json::to_value(&folded).unwrap(),
616 );
617 obj.insert(
618 "untagged_entities".into(),
619 serde_json::to_value(&untagged).unwrap(),
620 );
621 }
622 let wants_conformance = include
628 .iter()
629 .any(|s| s == "conformance" || s == "integrity");
630 if wants_conformance {
631 let wants_consistency = include.iter().any(|s| s == "integrity");
632 let target: Option<memstead_schema::SchemaRef> = match args.target_schema {
633 None => None,
634 Some(raw) => match raw.parse::<memstead_schema::SchemaRef>() {
635 Ok(r) => Some(r),
636 Err(reason) => {
637 return Err(ComposeHealthError::InvalidTargetSchema {
638 raw: raw.to_string(),
639 reason,
640 });
641 }
642 },
643 };
644 let scan_mems: Vec<String> = match vf {
645 Some(v) => vec![v.to_string()],
646 None => {
647 let mut all = writable_mems.clone();
648 all.sort();
649 all
650 }
651 };
652 let mut findings = Vec::new();
653 for v in &scan_mems {
654 findings.extend(engine.conformance_findings(v, target.as_ref())?);
655 if wants_consistency {
656 findings.extend(engine.consistency_findings(v)?);
657 }
658 }
659 obj.insert("findings".into(), serde_json::to_value(&findings).unwrap());
660 }
661
662 if args.include_config || include.iter().any(|s| s == "config") {
671 let entries = memstead_base::ops::health::config_projection(
672 engine,
673 &writable_mems,
674 config.mutations.clone(),
675 config.plugin.clone(),
676 );
677 for (k, v) in entries {
678 obj.insert(k, v);
679 }
680 }
681
682 Ok(result)
683}
684
685pub fn render_health_markdown(v: &serde_json::Value) -> String {
693 use std::fmt::Write as _;
694 let mut s = String::new();
695 let _ = writeln!(s, "# Graph health");
696 if let Some(mem) = v.get("mem").and_then(|x| x.as_str()) {
697 let _ = writeln!(s, "\nMem filter: `{mem}`");
698 }
699
700 if let Some(sum) = v.get("summary").and_then(|x| x.as_object()) {
701 let _ = writeln!(s, "\n## Summary");
702 for key in [
703 "total_entities",
704 "total_orphans",
705 "total_stubs",
706 "total_stale",
707 "total_missing_fields",
708 "total_communities",
709 ] {
710 if let Some(n) = sum.get(key).and_then(|x| x.as_u64()) {
711 let _ = writeln!(s, "- {}: {n}", key.replace('_', " "));
712 }
713 }
714 render_count_map(&mut s, sum.get("orphans_by_schema"), "Orphans by schema");
715 render_count_map(
716 &mut s,
717 sum.get("communities_by_schema"),
718 "Communities by schema",
719 );
720 }
721
722 for key in ["total_nodes", "real_nodes", "stub_nodes", "total_edges"] {
723 if let Some(n) = v.get(key).and_then(|x| x.as_u64()) {
724 let _ = writeln!(s, "- {}: {n}", key.replace('_', " "));
725 }
726 }
727
728 for (key, title) in [
730 ("orphans", "Orphans"),
731 ("stubs", "Stubs"),
732 ("most_connected", "Most connected"),
733 ("missing_fields", "Missing fields"),
734 ("stale", "Stale"),
735 ("dangling_links", "Dangling links"),
736 ("missing_required_outgoing", "Missing required outgoing"),
737 ("constraints", "Constraint violations"),
738 ("findings", "Findings"),
739 ] {
740 if let Some(arr) = v.get(key).and_then(|x| x.as_array()) {
741 let _ = writeln!(s, "\n## {title} ({})", arr.len());
742 for item in arr {
743 let _ = writeln!(s, "- {}", summarize_health_item(item));
744 }
745 }
746 }
747
748 if let Some(obj) = v.get("anchors").and_then(|x| x.as_object()) {
751 let _ = writeln!(s, "\n## Anchors ({} mems)", obj.len());
752 for (mem, counts) in obj {
753 let _ = writeln!(
754 s,
755 "- `{mem}`: resolved {}, drifted {}, recheck {}, unresolvable {}",
756 counts["resolved"].as_u64().unwrap_or(0),
757 counts["drifted"].as_u64().unwrap_or(0),
758 counts["recheck"].as_u64().unwrap_or(0),
759 counts["unresolvable"].as_u64().unwrap_or(0),
760 );
761 }
762 }
763
764 if let Some(obj) = v.get("checks").and_then(|x| x.as_object()) {
769 let _ = writeln!(s, "\n## Checks ({} mems)", obj.len());
770 for (mem, c) in obj {
771 let count = |key: &str| c.get(key).and_then(|x| x.as_u64()).unwrap_or(0);
772 let gate = |key: &str| {
773 c.get("independence")
774 .and_then(|g| g.get(key))
775 .and_then(|e| e.get("count"))
776 .and_then(|x| x.as_u64())
777 .unwrap_or(0)
778 };
779 let _ = writeln!(
780 s,
781 "- `{mem}`: never_checked {}, checked_ok {}, check_failed {}, \
782 check_stale {}; independence: self_checked {}, \
783 confirmed_independent {}, unconfirmable {}",
784 count("never_checked"),
785 count("checked_ok"),
786 count("check_failed"),
787 count("check_stale"),
788 gate("self_checked"),
789 gate("confirmed_independent"),
790 gate("unconfirmable"),
791 );
792 }
793 }
794
795 if let Some(obj) = v.get("stale_derivations").and_then(|x| x.as_object()) {
798 let total: usize = obj
799 .values()
800 .filter_map(|a| a.as_array().map(|a| a.len()))
801 .sum();
802 let _ = writeln!(s, "\n## Stale derivations ({total} findings)");
803 for (mem, findings) in obj {
804 for f in findings.as_array().into_iter().flatten() {
805 let _ = writeln!(
806 s,
807 "- `{mem}`: {} -[{}]-> {} ({})",
808 f.get("source").and_then(|x| x.as_str()).unwrap_or(""),
809 f.get("rel_type").and_then(|x| x.as_str()).unwrap_or(""),
810 f.get("target").and_then(|x| x.as_str()).unwrap_or(""),
811 f.get("state").and_then(|x| x.as_str()).unwrap_or(""),
812 );
813 }
814 }
815 }
816
817 if let Some(arr) = v.get("quarantined").and_then(|x| x.as_array()) {
822 let _ = writeln!(s, "\n## Quarantined mems ({})", arr.len());
823 for q in arr {
824 let _ = writeln!(
825 s,
826 "- `{}` [{}] {}",
827 q.get("mem").and_then(|x| x.as_str()).unwrap_or(""),
828 q.get("reason_code").and_then(|x| x.as_str()).unwrap_or(""),
829 q.get("reason_message")
830 .and_then(|x| x.as_str())
831 .unwrap_or(""),
832 );
833 }
834 }
835
836 if let Some(arr) = v.get("warnings").and_then(|x| x.as_array())
837 && !arr.is_empty()
838 {
839 let _ = writeln!(s, "\n## Warnings ({})", arr.len());
840 for w in arr {
841 let code = w.get("code").and_then(|x| x.as_str()).unwrap_or("");
842 let msg = w.get("message").and_then(|x| x.as_str()).unwrap_or("");
843 let _ = writeln!(s, "- [{code}] {msg}");
844 }
845 }
846
847 s
848}
849
850fn render_count_map(s: &mut String, val: Option<&serde_json::Value>, title: &str) {
854 use std::fmt::Write as _;
855 let Some(map) = val.and_then(|x| x.as_object()) else {
856 return;
857 };
858 if map.is_empty() {
859 return;
860 }
861 let _ = writeln!(s, "- {title}:");
862 for (k, n) in map {
863 let label = if k.is_empty() {
864 "(unpinned)"
865 } else {
866 k.as_str()
867 };
868 let _ = writeln!(s, " - {label}: {}", n.as_u64().unwrap_or(0));
869 }
870}
871
872fn summarize_health_item(item: &serde_json::Value) -> String {
875 if let Some(id) = item.get("id").and_then(|x| x.as_str()) {
876 match item.get("title").and_then(|x| x.as_str()) {
877 Some(t) if !t.is_empty() => format!("{id} — {t}"),
878 _ => id.to_string(),
879 }
880 } else if let Some(from) = item.get("from").and_then(|x| x.as_str()) {
881 let target = item.get("target_id").and_then(|x| x.as_str()).unwrap_or("");
882 format!("{from} → {target}")
883 } else {
884 serde_json::to_string(item).unwrap_or_default()
885 }
886}
887
888#[cfg(test)]
889mod tests {
890 use super::render_health_markdown;
891 use serde_json::json;
892
893 fn base_payload() -> serde_json::Value {
894 json!({
895 "summary": { "total_entities": 1 },
896 "total_nodes": 1,
897 })
898 }
899
900 #[test]
907 fn render_health_markdown_covers_checks_derivations_and_quarantine() {
908 let mut v = base_payload();
910 v["checks"] = json!({
911 "specs": {
912 "never_checked": 2, "checked_ok": 1,
913 "check_failed": 0, "check_stale": 0,
914 "independence": {
915 "self_checked": { "count": 0, "items": [] },
916 "confirmed_independent": { "count": 0, "items": [] },
917 "unconfirmable": { "count": 1, "items": ["specs--a"] },
918 },
919 }
920 });
921 v["stale_derivations"] = json!({
922 "specs": [{
923 "source": "specs--a", "rel_type": "DERIVES_FROM",
924 "target": "specs--b", "state": "stale",
925 "baseline": "aaa", "current": "bbb",
926 }]
927 });
928 v["quarantined"] = json!([{
929 "mem": "broken",
930 "reason_code": "SCHEMA_NOT_FOUND",
931 "reason_message": "no schema; repair via memstead mem set-schema",
932 }]);
933 let md = render_health_markdown(&v);
934 assert!(md.contains("## Checks (1 mems)"), "{md}");
935 assert!(
936 md.contains(
937 "- `specs`: never_checked 2, checked_ok 1, check_failed 0, \
938 check_stale 0; independence: self_checked 0, \
939 confirmed_independent 0, unconfirmable 1"
940 ),
941 "{md}"
942 );
943 assert!(md.contains("## Stale derivations (1 findings)"), "{md}");
944 assert!(
945 md.contains("- `specs`: specs--a -[DERIVES_FROM]-> specs--b (stale)"),
946 "{md}"
947 );
948 assert!(md.contains("## Quarantined mems (1)"), "{md}");
949 assert!(
950 md.contains(
951 "- `broken` [SCHEMA_NOT_FOUND] no schema; repair via memstead mem set-schema"
952 ),
953 "{md}"
954 );
955
956 let mut empty = base_payload();
958 empty["checks"] = json!({});
959 empty["stale_derivations"] = json!({ "specs": [] });
960 let md = render_health_markdown(&empty);
961 assert!(md.contains("## Checks (0 mems)"), "{md}");
962 assert!(md.contains("## Stale derivations (0 findings)"), "{md}");
963
964 let base_md = render_health_markdown(&base_payload());
967 for heading in ["## Checks", "## Stale derivations", "## Quarantined mems"] {
968 assert!(
969 !base_md.contains(heading),
970 "absent key must render nothing: {base_md}"
971 );
972 }
973 let appended = render_health_markdown(&v);
974 assert!(
975 appended.starts_with(&base_md),
976 "sections append; the base output stays byte-identical"
977 );
978 }
979}