memstead_schema/schema.rs
1//! In-memory representation of a loaded schema.
2
3use std::collections::HashMap;
4use std::sync::Arc;
5
6use crate::manifest::{
7 Cardinality, CrossMemRelationshipEntry, RelationshipDef, RelationshipMode, SchemaManifest,
8};
9use crate::types::TypeDefinition;
10
11/// A validated, in-memory schema — the product of the loader.
12///
13/// Holds the parsed manifest, the resolved semver version, and the set of
14/// fully-validated type definitions with `edge_weights` precomputed.
15#[derive(Debug)]
16pub struct Schema {
17 pub manifest: SchemaManifest,
18 pub version: semver::Version,
19 pub types: HashMap<String, Arc<TypeDefinition>>,
20}
21
22impl Schema {
23 pub fn get_type(&self, name: &str) -> Option<Arc<TypeDefinition>> {
24 self.types.get(name).cloned()
25 }
26
27 pub fn relationship_known(&self, name: &str) -> bool {
28 self.manifest
29 .relationships
30 .definitions
31 .iter()
32 .any(|d| d.name == name)
33 }
34
35 /// Returns `true` iff `name` is declared with `acyclic: true` in this
36 /// schema. Undeclared names resolve to `false` (permissive): the write
37 /// path already rejects undeclared names in strict mode via
38 /// `relationship_known`, and open mode is explicitly opt-in to cycles.
39 pub fn relationship_acyclic(&self, name: &str) -> bool {
40 self.manifest
41 .relationships
42 .definitions
43 .iter()
44 .any(|d| d.name == name && d.acyclic)
45 }
46
47 /// The declared acyclicity set containing `name`, if any. The
48 /// loader guarantees a rel-type appears in at most one set, so
49 /// the first hit is the only hit.
50 pub fn acyclic_set_containing(&self, name: &str) -> Option<&[String]> {
51 self.manifest
52 .relationships
53 .acyclic_sets
54 .iter()
55 .find(|set| set.iter().any(|n| n == name))
56 .map(|set| set.as_slice())
57 }
58
59 /// Whether this schema declares exactly this acyclicity set
60 /// (order-sensitive, as declared). Used by the boot sweep to
61 /// scope a set's union subgraph to mems whose schema declares it.
62 pub fn has_acyclic_set(&self, set: &[String]) -> bool {
63 self.manifest
64 .relationships
65 .acyclic_sets
66 .iter()
67 .any(|s| s.as_slice() == set)
68 }
69
70 /// Returns `true` iff `source_type`'s `no_self_loop_relationships`
71 /// list declares `rel_type` — the engine then refuses a SELF-LOOP
72 /// (from == to) on that pair, independent of the rel-type's
73 /// `acyclic` flag (which governs longer cycles, a different
74 /// concern). That refusal is the declaration's only effect —
75 /// nothing propagates (the historical "weight-bomb" rationale was
76 /// backed by no weight code anywhere; agent-trust plan 06 renamed
77 /// the field and this predicate to match reality). Unknown
78 /// `source_type` returns `false` (permissive — the type's
79 /// existence is checked elsewhere).
80 pub fn type_refuses_self_loop(&self, source_type: &str, rel_type: &str) -> bool {
81 self.types
82 .get(source_type)
83 .map(|td| td.no_self_loop_relationships.iter().any(|r| r == rel_type))
84 .unwrap_or(false)
85 }
86
87 /// Returns the schema-declared manual-authoring posture for a
88 /// rel-type. Unknown names resolve to `Allow` (permissive — the
89 /// validator path already rejects unknown rel-types in strict
90 /// mode). The
91 /// explicit-author boundary (`memstead_relate`, `memstead_create`'s
92 /// `relations:` inline list, `memstead_update`'s `declare_relations`)
93 /// gates on this; the body-link → relation alias machinery does
94 /// NOT — the alias path is the *intended* way schema-emitted
95 /// rel-types (e.g. REFERENCES) appear on entities.
96 pub fn relationship_manual_authoring(&self, name: &str) -> crate::ManualAuthoring {
97 self.manifest
98 .relationships
99 .definitions
100 .iter()
101 .find(|d| d.name == name)
102 .map(|d| d.manual_authoring)
103 .unwrap_or_default()
104 }
105
106 /// `when_to_use` description for a rel-type, returned as the
107 /// recovery hint on `RELATION_MANUAL_AUTHORING_FORBIDDEN`
108 /// envelopes. `None` when the rel-type is unknown or the schema
109 /// author didn't author the field.
110 pub fn relationship_when_to_use(&self, name: &str) -> Option<String> {
111 self.manifest
112 .relationships
113 .definitions
114 .iter()
115 .find(|d| d.name == name)
116 .and_then(|d| d.when_to_use.clone())
117 }
118
119 pub fn mode(&self) -> RelationshipMode {
120 self.manifest.relationships.mode
121 }
122
123 pub fn id(&self) -> (String, semver::Version) {
124 (self.manifest.name.clone(), self.version.clone())
125 }
126
127 pub fn suggest_type(&self, name: &str) -> Option<String> {
128 closest_match(name, self.types.keys().map(String::as_str))
129 }
130
131 /// Look up a relationship definition by name. `None` for unknown
132 /// names; the `_default` sentinel is reachable but never a real
133 /// edge's rel_type.
134 pub fn relationship_def(&self, name: &str) -> Option<&RelationshipDef> {
135 self.manifest
136 .relationships
137 .definitions
138 .iter()
139 .find(|d| d.name == name)
140 }
141
142 /// Cardinality hint declared on `name`. `None` for unknown names or
143 /// for relationships with no declared cardinality (the default —
144 /// shape-free).
145 pub fn relationship_cardinality(&self, name: &str) -> Option<Cardinality> {
146 self.relationship_def(name)
147 .and_then(|d| d.cardinality_per_source)
148 }
149
150 pub fn suggest_relationship(&self, name: &str) -> Option<String> {
151 closest_match(
152 name,
153 self.manifest
154 .relationships
155 .definitions
156 .iter()
157 .map(|d| d.name.as_str()),
158 )
159 }
160
161 /// Schema-level `alias_target_rel_type` pointer — names the rel-type
162 /// that body wiki-links `[[target]]` should auto-emit as
163 /// engine-synthesised relations. `None` means the schema is opt-out
164 /// of alias synthesis (unbacked body wiki-links continue to refuse
165 /// with `WIKILINK_WITHOUT_RELATION`). The loader has already
166 /// validated that the named rel-type is declared.
167 pub fn alias_target_rel_type(&self) -> Option<&str> {
168 self.manifest.alias_target_rel_type.as_deref()
169 }
170
171 /// Look up the cross-mem entry whose `to_schema` matches the
172 /// target schema's *name*. Returns `None` when this schema declares
173 /// no outbound entry for that domain.
174 ///
175 /// Eligibility is name-based: a schema names a domain, and a
176 /// version is one iteration of describing it. The target mem's
177 /// pinned version never participates in the match, so a version
178 /// bump on the target side cannot invalidate the declaration. The
179 /// loader guarantees `to_schema` is a validated bare schema name,
180 /// so plain string equality is exact here.
181 pub fn cross_mem_entry(&self, target_name: &str) -> Option<&CrossMemRelationshipEntry> {
182 self.manifest
183 .cross_mem_relationships
184 .iter()
185 .find(|entry| entry.to_schema == target_name)
186 }
187
188 /// Every cross-mem entry applicable to `target_name`, in priority
189 /// order: the exact-name entry first, then the `to_schema: "*"`
190 /// wildcard entry (loader-bound to this schema's
191 /// `alias_target_rel_type`). Consumers resolve a rel-type by
192 /// first hit across the returned entries, so an exact declaration
193 /// for a destination schema never SHADOWS the wildcard for the
194 /// alias rel-type — a schema carrying structural declarations for
195 /// one destination keeps its wildcarded alias links to that same
196 /// destination. Empty when neither entry exists. This is the ONE
197 /// matcher behind edge validation, the load-path edge filter, and
198 /// the per-edge-description posture lookup — a wildcard honoured
199 /// in one place is honoured in all three.
200 pub fn cross_mem_entries(&self, target_name: &str) -> Vec<&CrossMemRelationshipEntry> {
201 let mut out = Vec::with_capacity(2);
202 if target_name != "*"
203 && let Some(exact) = self
204 .manifest
205 .cross_mem_relationships
206 .iter()
207 .find(|entry| entry.to_schema == target_name)
208 {
209 out.push(exact);
210 }
211 if let Some(wildcard) = self
212 .manifest
213 .cross_mem_relationships
214 .iter()
215 .find(|entry| entry.to_schema == "*")
216 {
217 out.push(wildcard);
218 }
219 out
220 }
221
222 /// Load the embedded `default` builtin schema.
223 ///
224 /// Backed by the embedded YAML bundle under `builtins/schemas/default/`
225 /// that ships with every binary. Cached via `OnceLock` so repeated
226 /// calls are cheap.
227 pub fn builtin_default() -> Arc<Schema> {
228 use std::sync::OnceLock;
229 static CACHE: OnceLock<Arc<Schema>> = OnceLock::new();
230 CACHE
231 .get_or_init(|| {
232 crate::builtins::load_builtin_schemas()
233 .expect("embedded default schema must load")
234 .into_iter()
235 .find(|s| s.manifest.name == "default")
236 .expect("default schema must be embedded")
237 })
238 .clone()
239 }
240}
241
242pub(crate) fn closest_match<'a>(
243 needle: &str,
244 candidates: impl IntoIterator<Item = &'a str>,
245) -> Option<String> {
246 // Noise floor of `chars/2`: beyond that the input shares almost
247 // nothing with the vocabulary, so a "did you mean" suggestion is
248 // noise dressed as a hint (MCP F1 — a confidently-wrong suggestion
249 // misleads). Mirrors `nearest_str_match` in memstead-base verbatim, so
250 // `closest_match`-backed codes (`UNKNOWN_SECTION`, `INVALID_REL_TYPE`)
251 // gate consistently with the already-floored `INVALID_ENUM_VALUE`.
252 // Returns `None` when nothing is close — the caller omits `suggestion`
253 // while still shipping the full declared-list recovery payload.
254 let noise_floor = (needle.chars().count() / 2).max(1);
255 let mut best: Option<(usize, String)> = None;
256 for cand in candidates {
257 let d = strsim::levenshtein(needle, cand);
258 if d == 0 || d > noise_floor {
259 continue;
260 }
261 match &best {
262 Some((bd, _)) if *bd <= d => {}
263 _ => best = Some((d, cand.to_string())),
264 }
265 }
266 best.map(|(_, c)| c)
267}
268
269#[cfg(test)]
270mod closest_match_tests {
271 use super::closest_match;
272
273 /// MCP F1: a token with no close declared candidate yields no
274 /// suggestion (the `chars/2` noise floor rejects it) — a confidently-
275 /// wrong "did you mean" is noise dressed as a hint.
276 #[test]
277 fn far_token_yields_no_suggestion() {
278 let candidates = ["identity", "purpose", "context"];
279 // distance to every candidate (14/17/14) far exceeds the
280 // chars/2 floor (9) — the egregious wrong-suggestion case.
281 assert_eq!(
282 closest_match("nonexistent_section", candidates.into_iter()),
283 None,
284 "a semantically-unrelated token must not get a suggestion",
285 );
286 // A rel-type token sharing nothing with the vocabulary (distance
287 // well past floor) is suppressed too.
288 assert_eq!(
289 closest_match(
290 "TOTALLY_UNRELATED",
291 ["MOTIVATES", "REFERENCES", "PART_OF"].into_iter()
292 ),
293 None,
294 "a far rel-type token must not get a suggestion",
295 );
296 }
297
298 /// MCP F1 complement: a genuine near-typo (within `chars/2`) still
299 /// gets its suggestion.
300 #[test]
301 fn near_typo_still_suggests() {
302 let candidates = ["identity", "purpose", "context"];
303 assert_eq!(
304 closest_match("identty", candidates.into_iter()),
305 Some("identity".to_string()),
306 "a one-edit typo must still suggest the intended candidate",
307 );
308 }
309
310 /// An exact match is not a "did you mean" — `closest_match` is for
311 /// unknown tokens, so a zero-distance hit returns None (matches
312 /// `nearest_str_match`).
313 #[test]
314 fn exact_match_returns_none() {
315 let candidates = ["identity", "purpose"];
316 assert_eq!(closest_match("identity", candidates.into_iter()), None);
317 }
318}