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memstead_base/ops/
mod.rs

1//! Operation request/response types and the gix-free read paths
2//! (`health`, `search`).
3//!
4//! Per-entity delta envelopes for `memstead_changes_since` live in
5//! [`changes`] — backend-neutral so both the git-branch tree-diff
6//! and any future folder-backend JSONL-walk produce the same shape.
7//! Wire types for the agent-notes payload live in [`agent_notes`] —
8//! pure data shapes, no gix. The producer functions
9//! (`agent_notes_since`, `read_memstead_ref`) stay in
10//! `memstead-git-branch::ops::agent_notes` because they read from a
11//! gitdir.
12//! The git-touching operation submodules (`crud`, `export`) still
13//! live in `memstead-git-branch` and are re-exported into
14//! `memstead_git_branch::ops` for downstream callers.
15
16pub mod agent_notes;
17pub mod branch_reset;
18pub mod changes;
19pub mod commit_envelope;
20pub mod diff;
21pub mod export;
22pub mod health;
23pub mod integrity;
24pub mod labelling;
25#[cfg(not(target_arch = "wasm32"))]
26pub mod search;
27pub mod signals;
28pub mod transport;
29
30pub use agent_notes::{AgentNotesReport, CommitNote};
31pub use branch_reset::{BranchResetOutcome, StrandedCrossMemRef};
32pub use changes::{
33    BackendChanges, ChangeEnvelope, ChangesReport, EMPTY_TREE_SHA, MemChangedNotice,
34    NoticeByChange, NoticeChanges, RENAME_SIMILARITY_DEFAULT, RENAME_SIMILARITY_MAX,
35    RENAME_SIMILARITY_MIN, folder_changes_since,
36};
37pub use commit_envelope::{CommitEnvelope, EntityChange};
38pub use diff::{Diff, DiffConfig, EntityDiff, IncomingRipple};
39pub use export::{MemExportBytes, MemExportError};
40pub use transport::{FetchOutcome, PullOutcome, PushOutcome, RemoteAddOutcome, UpdatedRef};
41
42use crate::entity::EntityId;
43use indexmap::IndexMap;
44use schemars::JsonSchema;
45use serde::{Deserialize, Serialize, Serializer, ser::SerializeStruct};
46use std::collections::HashMap;
47use std::fmt;
48
49/// Allowed `include` keys for `memstead_overview` — single source of
50/// truth shared across the lean MCP server, full MCP server, and the
51/// lean CLI's `overview` command. Mirrors `HEALTH_INCLUDE_KEYS` for
52/// the `health` surface. The CLI `--include` flag validates against
53/// this list and surfaces `UNKNOWN_INCLUDE_KEY` warnings, matching the
54/// MCP tool's behaviour.
55pub const OVERVIEW_INCLUDE_KEYS: &[&str] = &[
56    "community_members",
57    "community_bridges",
58    "mem_distribution",
59    "dangling_links",
60];
61
62// The unknown-filter warning prose lives in the `Display` impl of the
63// typed `WarningHint::UnknownFilterKey` / `WarningHint::UnknownRangeFilterField`
64// variants below. These helpers are shared with that Display impl. They
65// are pure string formatting with no search/tantivy dependency, so they
66// live here (not in the wasm-gated `search` module) and stay available
67// on `wasm32`.
68
69/// Render the type-list clause as quoted items only — `"'X'"` for one
70/// declarer, `"'X', 'Y'"` for many — without a leading "type" /
71/// "types" word. Caller composes the leading word via
72/// [`type_word_for`] so prose contexts like `"of types ..."` don't
73/// produce the duplicate-word output `"of types types '...'"`.
74pub(crate) fn format_types_clause(types: &[String]) -> String {
75    types
76        .iter()
77        .map(|t| format!("'{t}'"))
78        .collect::<Vec<_>>()
79        .join(", ")
80}
81
82/// Leading word to pair with [`format_types_clause`]: `"type"` for a
83/// single declarer, `"types"` for many. Empty slice maps to `"types"`
84/// (callers should not invoke this for an empty list; the typed-
85/// warning sites guard the `is_empty` case already).
86pub(crate) fn type_word_for(types: &[String]) -> &'static str {
87    if types.len() == 1 { "type" } else { "types" }
88}
89
90// ---------------------------------------------------------------------------
91// CRUD types
92// ---------------------------------------------------------------------------
93
94/// Arguments for creating an entity.
95#[derive(Debug, Clone)]
96pub struct CreateArgs {
97    pub title: String,
98    pub mem: String,
99    pub entity_type: String,
100    /// Section contents keyed by section key: `{ "<section-key>": "..." }`.
101    /// Valid keys depend on the schema (see `TypeDefinition::sections`).
102    pub sections: IndexMap<String, String>,
103    /// Metadata overrides: `{ "<field-key>": "value" }`.
104    pub metadata: IndexMap<String, String>,
105    /// Relationships to create: `[{ to: EntityId, type: "USES" }]`.
106    pub relations: Vec<RelateArg>,
107    /// When true, validate and compute the result but do not write to
108    /// disk, mutate the store, create edges, or commit. Response carries
109    /// the prospective `id`, `file_path`, `content_hash`, and any
110    /// `warnings` — `commit_sha` is empty.
111    pub dry_run: bool,
112}
113
114/// Arguments for updating an entity.
115#[derive(Debug, Clone)]
116pub struct UpdateArgs {
117    pub id: EntityId,
118    /// Expected content hash (optimistic locking). Required.
119    pub expected_hash: String,
120    /// Section fields to set: `{ "<section-key>": "new content" }`.
121    pub sections: IndexMap<String, String>,
122    /// Section fields to append to: `{ "<section-key>": "extra content" }`.
123    pub append_sections: IndexMap<String, String>,
124    /// Section fields to patch: `{ "<section-key>": PatchArg { old, new } }`.
125    pub patch_sections: IndexMap<String, PatchArg>,
126    /// Metadata fields to set: `{ "<field-key>": "value" }`.
127    pub metadata: IndexMap<String, String>,
128    /// Metadata keys to remove from the entity. Silent no-op on absent
129    /// keys. Errors on read-only fields (mem, id, type) and on
130    /// schema-required fields for the entity's type.
131    pub metadata_unset: Vec<String>,
132    /// Dry-run mode — return proposed changes without persisting.
133    pub dry_run: bool,
134}
135
136/// Arguments for a patch (substring replacement).
137#[derive(Debug, Clone)]
138pub struct PatchArg {
139    pub old: String,
140    pub new: String,
141    /// When `true`, replace every occurrence of `old` in the target
142    /// section. Default `false` replaces only the first occurrence.
143    pub all: bool,
144}
145
146/// Section-level mutations applied by a single `memstead_update` call.
147/// Each vec lists the section keys that landed in that mutation mode.
148/// Empty inner vecs are serde-omitted so the wire stays quiet; the
149/// struct itself always serialises so the outer `modified_sections` key
150/// is a stable shape regardless of what the call actually touched.
151#[derive(Debug, Clone, Default, Serialize)]
152pub struct ModifiedSections {
153    /// Section keys whose body was replaced wholesale (`sections` input).
154    #[serde(default, skip_serializing_if = "Vec::is_empty")]
155    pub replaced: Vec<String>,
156    /// Section keys whose body received an append (`append_sections`).
157    #[serde(default, skip_serializing_if = "Vec::is_empty")]
158    pub appended: Vec<String>,
159    /// Section keys whose body was patched via find-and-replace
160    /// (`patch_sections`).
161    #[serde(default, skip_serializing_if = "Vec::is_empty")]
162    pub patched: Vec<String>,
163}
164
165/// Metadata-level mutations applied by a single `memstead_update` call.
166/// Same empty-vec-omit convention as `ModifiedSections`; auto-timestamp
167/// metadata fields written by the engine are NOT surfaced here (they are
168/// engine-driven, not user-driven — the caller has nothing to react to).
169#[derive(Debug, Clone, Default, Serialize)]
170pub struct ModifiedMetadata {
171    /// Metadata keys whose value was set or replaced.
172    #[serde(default, skip_serializing_if = "Vec::is_empty")]
173    pub set: Vec<String>,
174    /// Metadata keys that were removed from the frontmatter.
175    #[serde(default, skip_serializing_if = "Vec::is_empty")]
176    pub unset: Vec<String>,
177}
178
179/// Result of an update operation.
180#[derive(Debug, Clone, Serialize)]
181pub struct UpdateResult {
182    pub id: EntityId,
183    pub title: String,
184    /// Section-level mutations grouped by mode. Replaces the former flat
185    /// `modified_fields: Vec<String>` (which leaked mode as a string
186    /// prefix and collided on bare keys with `modified_metadata`).
187    pub modified_sections: ModifiedSections,
188    /// Metadata-level mutations grouped by direction (set vs unset).
189    pub modified_metadata: ModifiedMetadata,
190    pub modified_date: String,
191    /// On a real (non-dry-run) update: the new on-disk content hash after
192    /// the write. On a dry-run: the **current** on-disk hash (unchanged) —
193    /// the value an agent passes back as `expected_hash` on the follow-up
194    /// real call. Pair with `prospective_hash` to predict the post-write
195    /// hash without a second read. Wire key `_hash`.
196    #[serde(rename = "_hash")]
197    pub content_hash: String,
198    /// Dry-run only: the hash the entity *would* have after the proposed
199    /// write. `None` on real (non-dry-run) updates. Lets agents preview a
200    /// change and then call the real update with `expected_hash =
201    /// content_hash` (pinning the disk state) while still knowing what the
202    /// post-write hash will look like. Additive optional field — stable
203    /// shape for callers that ignore it.
204    #[serde(default, skip_serializing_if = "Option::is_none")]
205    pub prospective_hash: Option<String>,
206    /// Per-mem commit SHA produced by this mutation. Agents remember it
207    /// and feed it to `memstead_changes_since` to pick up incremental updates.
208    /// Empty for dry runs (no commit happens).
209    #[serde(default)]
210    pub commit_sha: String,
211    /// Typed non-fatal issues — same shape as `CreateResult::warnings`.
212    /// Pre-Bug-4 this was `Vec<String>` and unused; now carries
213    /// `WarningHint` so e.g. `INLINE_WIKI_LINK_AUTO_STUBBED` from update
214    /// flows out via the same `{code, message, details}` envelope agents
215    /// already branch on for create-time warnings.
216    #[serde(default, skip_serializing_if = "Vec::is_empty")]
217    pub warnings: Vec<WarningHint>,
218}
219
220/// Typed non-fatal issue surfaced from engine operations. Serialises as the
221/// uniform `{ code, message, details }` envelope so a generic warning handler
222/// (log sink, UI, alerting) can read `code` + `message` without branching on
223/// variant. `Display` renders the agent-facing text, reachable via
224/// [`WarningHint::message`]; per-variant structured fields land under
225/// `details`, their shape keyed by `code`.
226///
227/// Shared across `CreateResult`, `RelateResult`, and `HealthSummary`. New
228/// variants are additive; they widen the enum rather than fork a per-site
229/// type so wire-level warning consumers keep a single discriminated union
230/// to branch on. The wire shape matches what [`envelope`] produces for the
231/// MCP error channel, so one decoder handles both surfaces.
232#[derive(Debug, Clone)]
233pub enum WarningHint {
234    /// A required section was empty or missing at create time. Carries
235    /// the type and section keys plus the section's own `write_rules`
236    /// so the agent can self-correct with a follow-up `memstead_update`.
237    /// Type-level `write_rules` no longer ride per warning — they
238    /// ship once at the mutation-response top level on
239    /// `type_guidance` keyed by `entity_type` (F9). Decoders look up
240    /// the guidance via `entity_type` against the top-level map.
241    MissingRequiredSection {
242        entity_type: String,
243        key: String,
244        heading: String,
245        write_rules: Vec<String>,
246    },
247    /// A required metadata field was not supplied at create time and the
248    /// schema does not auto-fill the value (no `default_value`, no
249    /// `init_timestamp`, no `auto_timestamp`). The entity still lands —
250    /// the generator may write an empty / today's-date placeholder into
251    /// the frontmatter — but the warning surfaces the gap so the agent
252    /// follows up via `memstead_update` rather than leaving the entity in a
253    /// stuck state. Payload mirrors [`Self::MissingRequiredSection`] in
254    /// shape so a single decoder handles both. Wire-equivalent shape
255    /// with `EngineError::RequiredFieldUnset`'s `details` payload, since
256    /// the recovery path is the same (read the description / allowed
257    /// enum values from the envelope rather than re-fetching the
258    /// schema).
259    MissingRequiredField {
260        entity_type: String,
261        key: String,
262        description: String,
263        enum_values: Vec<String>,
264    },
265    /// An undeclared relationship was admitted because the mem's schema
266    /// is in open mode. The caller can still suggest the name be added to
267    /// the schema vocabulary.
268    UndeclaredRelationshipOpen { rel_type: String, message: String },
269    /// `memstead_relate` was asked to add an edge that already exists. The
270    /// op is a successful no-op — the warning surfaces what would otherwise
271    /// be silent so an agent relying on `renames` / side-effects can notice
272    /// the call didn't change the graph.
273    DuplicateRelationship {
274        rel_type: String,
275        from: EntityId,
276        to: EntityId,
277    },
278    /// `memstead_relate` with `remove: true` was asked to drop an edge that
279    /// wasn't present. Successful no-op, surfaced so an agent operating on
280    /// a stale mental model sees the mismatch.
281    NoSuchRelationship {
282        rel_type: String,
283        from: EntityId,
284        to: EntityId,
285    },
286    /// An `include` key passed to `memstead_health` was outside the accepted
287    /// set. The key is ignored; the allowed list is echoed back verbatim so
288    /// an agent with a typo can correct on the next call without opening a
289    /// schema doc.
290    UnknownIncludeKey { key: String, allowed: Vec<String> },
291    /// A paged/bounded parameter exceeded its cap. The cap is authoritative
292    /// so the op still ran, but the warning surfaces what the caller
293    /// requested vs. what was served.
294    LimitClamped { requested: usize, actual: usize },
295    /// `memstead_rename` was asked to change the title but normalisation
296    /// (lowercase, diacritic-folding, punctuation-strip, hyphen-collapse)
297    /// mapped the requested title to the existing slug — so the id is
298    /// unchanged and nothing is written to disk. Surfaced so autonomous
299    /// skills don't mistake the silent short-circuit for a successful
300    /// cosmetic rewrite.
301    TitleNormalizedToSlugNoop {
302        requested_title: String,
303        current_slug: String,
304    },
305    /// The title grammar admits any single-line text, but the slug
306    /// alphabet stays narrow — this create/rename derived an id that
307    /// dropped one or more title characters (`&`, `.`, `§`, …). The
308    /// entity lands with the verbatim title; the warning keeps the
309    /// title↔id divergence visible without being fatal, naming each
310    /// distinct dropped character and the derived slug.
311    TitleCharsDroppedFromSlug {
312        title: String,
313        dropped_chars: Vec<char>,
314        slug: String,
315    },
316    /// `memstead_update` produced a post-mutation entity whose regenerated
317    /// markdown is bytes-identical to the on-disk content — no field,
318    /// section, metadata value, relation, or auto-timestamp actually
319    /// changed. The op is a successful no-op: no disk write, no
320    /// commit, `content_hash` unchanged. Surfaced so autonomous skills
321    /// branching on `commit_sha != ""` see an explicit signal, and
322    /// `expected_hash`-based polling stays stable across the no-op.
323    /// Mirrors `TitleNormalizedToSlugNoop` for the rename surface.
324    UpdateNoop { id: EntityId },
325    /// `memstead_search` was called with both `stub=true` and `entity_type`
326    /// set. Stubs carry no `entity_type` (they are ID-only placeholders),
327    /// so the combined filter excludes every stub — the call is an empty
328    /// set by construction. Surfaced so an agent doesn't interpret the
329    /// empty result as "no stubs of this type exist" when in fact no
330    /// stub can ever satisfy the filter. Drop `entity_type` to list stubs.
331    StubFilterExcludesAll { entity_type: String },
332    /// `memstead_search(filters: {<key>: ...})` named a filter key that the
333    /// queried type does not declare. The wire `code()` discriminates
334    /// the two outcomes, so a consumer branches on `code` alone:
335    /// - `declared_on_other_types` **empty** → no reachable schema
336    ///   declares the key → `UNKNOWN_FILTER_KEY`; the filter is truly
337    ///   ignored and the result set equals the same search without it.
338    /// - `declared_on_other_types` **non-empty** → the key is declared
339    ///   on other type(s) and the filter was applied with strict
340    ///   type-narrowing (result restricted to the declaring type(s), or
341    ///   emptied when the call scoped to a non-declaring type) →
342    ///   `FILTER_TYPE_SCOPED`.
343    ///
344    /// `declared_on_other_types` stays on the wire as enrichment, not as
345    /// the disambiguator.
346    UnknownFilterKey {
347        key: String,
348        /// `entity_type` the search call scoped to (`None` for an
349        /// unscoped call).
350        scoped_type: Option<String>,
351        /// Types where the filter IS declared, sorted alphabetically.
352        /// Empty when no reachable schema declares the key at all.
353        declared_on_other_types: Vec<String>,
354    },
355    /// `memstead_search(filters: {<field>: ...})` named a field that the
356    /// schema declares but with `filterable: none` — the filter is
357    /// ignored, the hit set is unconstrained by it.
358    FieldNotFilterable { field: String },
359    /// `memstead_search(filters: {<csv-field>: "a,b"})` passed a comma-bearing
360    /// value to a csv-array field. csv fields match a *single* member, so
361    /// the whole rendered value (e.g. the `tags: dedup,retry` an entity
362    /// displays) can never equal any one member — the filter matches
363    /// nothing. Surfaced so an agent that copied the rendered value gets a
364    /// recoverable signal (split into repeated single-member filters)
365    /// rather than an empty result indistinguishable from a true
366    /// no-match. The filter still applies as written (matches nothing);
367    /// this only adds the advisory.
368    FilterValueMultiMember { key: String, value: String },
369    /// `memstead_search(filters: {<field>: <value>})` passed a value the
370    /// schema field constrains with an `enum_values` allow-list, but the
371    /// value (or, for a csv-array field, one of its comma members) is not a
372    /// member. The filter still applies as written and matches nothing for
373    /// that value, so an empty result is otherwise indistinguishable from a
374    /// true no-match — this surfaces the typo plus the allowed values so an
375    /// agent corrects without opening the schema. Reuses the
376    /// `INVALID_ENUM_VALUE` code from the mutation surface.
377    FilterValueNotInEnum {
378        key: String,
379        value: String,
380        allowed: Vec<String>,
381    },
382    /// `memstead_search(related_to: <id>)` reached a neighbourhood larger
383    /// than the cap. The results were ranked by proximity (nearer first)
384    /// and bounded to the nearest `kept` of `total` reachable entities so a
385    /// hub can't flood the caller. Surfaced so the agent knows the
386    /// neighbourhood was truncated — narrow with `depth`/filters for more.
387    NeighbourhoodCapped { kept: usize, total: usize },
388    /// `memstead_search` trimmed the returned page to fit the token budget.
389    /// The highest-ranked `kept` hits that fit under `budget` are returned;
390    /// the rest of the page is dropped so the response stays under the MCP
391    /// transport cap. `_total` still reflects the full match count — page the
392    /// remainder with `offset`, narrow the query, or raise `token_budget`.
393    SearchResultsTruncated { kept: usize, budget: usize },
394    /// `memstead_search(range_filters: {<key>: ...})` named a key that
395    /// doesn't follow the `min_<field>` / `max_<field>` / `<field>_before`
396    /// / `<field>_after` grammar. The key is ignored.
397    RangeFilterKeyMalformed { key: String },
398    /// `memstead_search(range_filters: {<key>: ...})` named a range-filter
399    /// key whose underlying field the queried type does not declare.
400    /// Same shape and same one-code-per-outcome split as
401    /// [`Self::UnknownFilterKey`]: `code()` is `UNKNOWN_RANGE_FILTER_FIELD`
402    /// when `declared_on_other_types` is empty (truly ignored, result =
403    /// unfiltered) and `RANGE_FILTER_TYPE_SCOPED` when non-empty (applied
404    /// with strict type-narrowing). Includes the literal `key` (the
405    /// prefixed/suffixed form the caller sent) alongside the bare `field`.
406    UnknownRangeFilterField {
407        field: String,
408        /// The literal filter key the caller sent, e.g. `min_count`.
409        key: String,
410        scoped_type: Option<String>,
411        declared_on_other_types: Vec<String>,
412    },
413    /// `memstead_search(range_filters: {<field>: ...})` named a field that
414    /// the schema declares but with a filterability other than `range`.
415    /// The range filter is ignored.
416    FieldNotRangeFilterable { field: String },
417    /// `memstead_search` could not query a target mem's search index —
418    /// either the mem has no index yet (`reason: "missing_index"`)
419    /// or a tantivy execution failure surfaced (`reason:
420    /// "query_failed"` plus the error string).
421    SearchMemIndexUnavailable {
422        mem: String,
423        /// Discriminator: `"missing_index"` or `"query_failed"`.
424        reason: &'static str,
425        /// The underlying error string when `reason == "query_failed"`;
426        /// `None` for `"missing_index"`.
427        error: Option<String>,
428    },
429    // There is deliberately no `RenameSimilarityClamped` variant:
430    // out-of-range `rename_similarity` hard-refuses
431    // (`EngineError::RenameSimilarityOutOfRange` → typed
432    // `INVALID_INPUT`) rather than clamping, so the warning channel has
433    // no story to tell and the typed-warning vocabulary tracks the live
434    // wire shape.
435    /// `memstead_create` (or `memstead_rename`) received a `title` with leading
436    /// or trailing whitespace. The engine silently strips the surround
437    /// before slug derivation and storage; the warning records what the
438    /// caller sent vs. what landed so the audit trail can spot the
439    /// drift. Internal whitespace (between words) is preserved
440    /// untouched. Fully-whitespace titles are still refused at the
441    /// validator boundary (those collapse to empty).
442    TitleTrimmed { original: String, trimmed: String },
443    /// An inline wiki-link resolved to an ID of the form
444    /// `<current-mem>--<other-known-mem-suffix>--<slug>`. This is
445    /// almost always drift from a mem-rename — the author wrote
446    /// `[[plugin--slug]]` expecting `plugin` to be the mem prefix, but
447    /// the current mem is `test-mem-plugin`, so the literal
448    /// resolution nests the prefix. Detection only — the load path still
449    /// creates the stub (no silent rewrite). Fix via `memstead_update
450    /// patch_sections` to either the bare slug or the fully-qualified ID.
451    /// Emitted at load / reload / attach time and carried through
452    /// `HealthSummary.warnings`; mutation paths never emit this warning
453    /// to avoid noise on every edit.
454    SuspiciousNestedPrefix {
455        from: EntityId,
456        resolved_id: EntityId,
457        /// Stripped-and-resolved candidate via the two-pass resolver
458        /// (cross-mem lookup first, bare-slug fallback second). `None`
459        /// when no real entity was found — the author must disambiguate.
460        candidate_target: Option<EntityId>,
461        section: String,
462    },
463    /// Inline `[[wiki-link]]` syntax in entity section bodies parsed to
464    /// targets that did not yet resolve, so the engine auto-created stub
465    /// entities for them. A common authoring hazard: an agent illustrating
466    /// link syntax in prose (`[[example:slug]]`) inadvertently creates
467    /// ghost stubs and a REFERENCES edge from the prose entity to each.
468    /// Surfaced so the agent reviews the list and either replaces the
469    /// inline literal with a fenced/quoted form or removes the entity if
470    /// the stub was not intended. Carries the source entity id (`from`)
471    /// and every newly-stubbed `target` id created by THIS call.
472    InlineWikiLinkAutoStubbed {
473        from: EntityId,
474        stubs: Vec<EntityId>,
475    },
476    /// A body wiki-link resolved to the entity's own id, so the
477    /// alias-synthesis pass dropped the would-be self-referential edge
478    /// (F11) — a self-edge carries no navigational value and would render
479    /// as both an Outgoing and an Incoming neighbour of itself. The
480    /// create/update still succeeds (the author may have written their
481    /// own slug); this warns so the dropped link is observable, matching
482    /// the alias pass's other side-effect warnings (`AUTO_STUB_CREATED` /
483    /// `INLINE_WIKI_LINK_AUTO_STUBBED`).
484    SelfLinkIgnored { id: EntityId },
485    /// `memstead_relate` to a cross-mem target whose mem is not (yet)
486    /// mounted in the workspace. The cross-mem link policy permits
487    /// the edge, so the engine auto-stubs the target as a forward
488    /// reference — but with the target mem entirely absent from
489    /// `writable_mems()`, the stub has no `_mem_schema` resolution
490    /// and any later read sees an indeterminate-schema entity. The
491    /// warning makes the missing-mem state visible so an operator
492    /// can distinguish a typo (intended `B` but typed `b`) from a
493    /// deliberate forward reference that expects the mem to be
494    /// created later. (F4)
495    CrossMemTargetMemUncreated {
496        from_mem: String,
497        to_mem: String,
498        target_id: EntityId,
499    },
500    /// A mutation landed without a `note` field while the workspace
501    /// config's `[mutations].require_notes = true` — provenance is
502    /// best-effort, so the engine completes the commit but flags the
503    /// absence so autonomous skills can audit their coverage. The
504    /// mutation still writes to disk and produces a commit; this warning
505    /// exists purely to surface the missed opportunity for a human- /
506    /// agent-readable body line. `tool` carries the MCP tool name
507    /// (`memstead_create`, `memstead_update`, …) so consumers can attribute the
508    /// gap without re-deriving it from the response context.
509    NoteMissing { tool: String },
510    /// A create supplied a value for an auto-managed metadata field
511    /// (`init_timestamp` like `created_date`, or `auto_timestamp` like
512    /// `last_modified`); the engine owns those values, so the supplied
513    /// one was discarded and the engine value stamped instead. The
514    /// entity still lands — this warning closes the silent-drop gap so
515    /// the agent learns its input had no effect without a follow-up
516    /// read. `field` names the discarded key; `supplied` echoes the
517    /// rejected value. (The `memstead_update` path refuses the same keys
518    /// outright with `READ_ONLY_FIELD`; create's posture is
519    /// stamp-and-proceed, so it warns rather than refusing.)
520    IgnoredReadonlyField { field: String, supplied: String },
521    /// The workspace is embedded inside another git repository
522    /// (`outer_repo_root`) whose `.gitignore` does not list
523    /// `mem-repo/`. Without that ignore line, the outer repo would
524    /// either swallow `mem-repo-git` as a nested untracked tree or
525    /// (worse) record it as a submodule via gitlink — both shapes
526    /// silently corrupt the mem-repo identity.
527    ///
528    /// Surfaced from `memstead_health` so the agent / operator can fix
529    /// the outer repo's `.gitignore` (or pass `--no-gitignore` at
530    /// `memstead mem-repo init`/`migrate-from-disk` time and accept the
531    /// risk explicitly).
532    OuterRepoNotIgnoringMemRepo {
533        outer_repo_root: String,
534        workspace_root: String,
535    },
536    /// One or more `required_outgoing` blocks on the entity's type are
537    /// not yet satisfied by its post-application outgoing edges. Tier-2
538    /// — the create/update lands; the warning surfaces every unsatisfied
539    /// block in a single payload so the agent can emit one batched
540    /// `memstead_relate` follow-up.
541    MissingRequiredOutgoing {
542        entity_type: String,
543        entity_id: EntityId,
544        /// Each entry mirrors one unsatisfied `RequiredOutgoing` block:
545        /// the alternative relationship names plus the rendered
546        /// cardinality literal (`"at_least_one"`).
547        missing: Vec<MissingRequiredOutgoingBlock>,
548    },
549    /// A successful write moved a declared aggregate signal across a
550    /// threshold, in either direction. Out-of-band diagnostics beside
551    /// the success payload — never error-shaped, never changing the
552    /// mutation's success semantics (a signal crossing on a
553    /// successful write must not read as a failed write). Levels are
554    /// the wire literals `none` / `notice` / `warn`.
555    SignalThresholdCrossed {
556        entity_id: EntityId,
557        signal: String,
558        value: u64,
559        old_level: String,
560        new_level: String,
561    },
562    /// The written entity violates warn-tier declared `constraints`
563    /// of its type (e.g. `requires_when`: a field required under the
564    /// current value of another field is unset). Block-tier violations
565    /// refuse instead ([`EngineError::ConstraintUnsatisfied`]) — the
566    /// warning only ever carries `severity: warn` entries.
567    ConstraintUnsatisfied {
568        entity_type: String,
569        entity_id: EntityId,
570        violations: Vec<crate::ops::health::UnsatisfiedConstraint>,
571    },
572    /// A markdown file declared the same `## <Heading>` twice or more for a
573    /// schema-declared section key. The parser keeps the first occurrence's
574    /// body and drops the rest — the duplicate headers and their bodies are
575    /// removed from the storage value, so the next read-modify-write cycle
576    /// emits a single heading. Surfaced so the operator (or the next ingest
577    /// cycle) sees that content was discarded; common cause is an agent
578    /// appending a section instead of replacing it.
579    ///
580    /// Emitted at load / reload / attach time only; mutation paths do not
581    /// re-parse the just-written file.
582    DuplicateSectionHeading {
583        entity_id: EntityId,
584        section_key: String,
585        heading: String,
586        occurrences: usize,
587    },
588    /// The engine detected that a sibling writer (another `Engine`
589    /// instance, an out-of-band `git pull`, etc.) advanced the on-disk
590    /// HEAD of `mem` past the engine's cached `last_known_head`, so
591    /// the engine reloaded that mem's slice of the in-memory store
592    /// before serving the current call. The response carries fresh
593    /// content; the warning explains why state shifted under the
594    /// caller. Agents that need the per-entity diff call
595    /// `memstead_changes_since` with the supplied `old_head`.
596    MemReloaded {
597        mem: String,
598        old_head: String,
599        new_head: String,
600        entities_loaded: usize,
601    },
602    /// `memstead_relate` add path landed on a not-yet-real target id and
603    /// the engine materialised a stub at that id (in-memory upsert; the
604    /// file lands when a follow-up `memstead_create` promotes the stub).
605    /// Pre-fix surfaced through a top-level `stub_warning: Option<String>`
606    /// field on the relate response — agents iterating `warnings[]` to
607    /// surface non-fatal findings silently skipped the auto-stub case.
608    /// Carries the materialised stub id so the agent can pin a
609    /// follow-up `memstead_create` (or `memstead_relate remove=true` to drop
610    /// the edge before authoring). `pending` marks the dry-run path:
611    /// the rehearsal validated the add and REPORTS the would-be stub
612    /// without writing it — the code stays `AUTO_STUB_CREATED`
613    /// (response-shape stability), only the message branches, so a
614    /// rehearsed response never claims a performed effect.
615    AutoStubCreated { stub_id: EntityId, pending: bool },
616    /// A duplicate-add `memstead_relate` on a derivation-declared
617    /// rel-type refreshed the edge's baseline (agent-trust plan 12) —
618    /// the agent's explicit "I have reviewed the target's change; the
619    /// derivation still holds". Sidecar-only: `_hash` unchanged, the
620    /// edge unchanged; the response carries this warning so the
621    /// refresh is stated rather than a bare no-op.
622    DerivationBaselineRefreshed {
623        from: EntityId,
624        rel_type: String,
625        to: EntityId,
626    },
627    /// A relation parsed from an entity's `## Relationships` section
628    /// at load time failed validation against the source mem's
629    /// schema (or wiki-link grammar). The entity itself loads
630    /// normally; the offending relation is dropped from the
631    /// in-memory store. `reason` discriminates:
632    /// - `unknown_rel_type` — the rel-type is not declared in the
633    ///   source mem's schema and the schema is in `strict` mode.
634    /// - `shape` — the `(source_type, target_type)` pair is not
635    ///   allowed by the rel-type's `source_types` / `target_types`.
636    /// - `cycle` — adding this relation would close a cycle in an
637    ///   acyclic-declared subgraph (emitted by the post-load
638    ///   second-pass cycle check; not yet implemented).
639    ///
640    /// Hand-edits, external tooling, and embedder editor
641    /// surfaces can inject relations that bypass `memstead_relate`; the
642    /// parse-path validation catches those. Mutation-path writes
643    /// pre-validated by the engine never trip this warning.
644    ///
645    /// `origin` discriminates the source mount's capability:
646    /// `"writable"` (the operator can fix the source markdown via
647    /// `memstead_update` / `memstead_relate` and re-run) or `"readonly"`
648    /// (the source mem is mounted read-only — purely diagnostic,
649    /// the operator either uninstalls the archive or accepts the
650    /// dropped relation).
651    ///
652    /// `recovery` carries an abstract-action payload sufficient to
653    /// reverse the drop without consulting another response. `Some`
654    /// when `origin == "writable"` — the engine can rewrite the
655    /// source markdown via the mutation surface, so a consumer (an
656    /// agent walking `memstead_health`, a bulk-fix orchestrator, a
657    /// UI drift panel) maps `kind` to the concrete call on
658    /// whichever MCP / CLI surface it uses. `None` when
659    /// `origin == "readonly"` — the source markdown is not reachable
660    /// via the engine, so no abstract action exists; the warning's
661    /// message names the operator-level path (uninstall the archive
662    /// or accept the drop).
663    ParsedRelationInvalid {
664        entity_id: EntityId,
665        rel_type: String,
666        target: EntityId,
667        reason: String,
668        origin: String,
669        recovery: Option<ParsedRelationRecovery>,
670    },
671    /// `memstead_delete` (or `memstead_rename`, when implemented) on a
672    /// Write-Mem entity that had **no** Write-Mem referrers but
673    /// **does** have ReadOnly-mount referrers. The on-disk file is
674    /// removed and committed; the in-memory entity is demoted to a
675    /// stub at the same id so the surviving incoming edges from the
676    /// ReadOnly mount(s) keep a valid target. The agent sees
677    /// `memstead_entity <id>` returning a stub immediately and not
678    /// stale data after a server reload — fresh boot from disk
679    /// reconstructs the same stub via the parser's auto-stub-on-
680    /// unresolved-link path. `referrers` carries the surviving
681    /// ReadOnly source ids so the agent can either accept the stub
682    /// or uninstall the archive.
683    ResidualStubForReadOnlyReferrers {
684        id: EntityId,
685        referrers: Vec<EntityId>,
686    },
687    /// `memstead_mem_delete` was called with `delete_files: true` but
688    /// at least one part of the symmetric cleanup did not complete.
689    /// The mem is already unregistered from the router; this
690    /// warning surfaces what survived so an agent reading
691    /// `files_deleted: false` doesn't trigger redundant cleanup or
692    /// blame the wrong layer. `reason` discriminates:
693    /// - `rmdir_failed` — folder-backed mem directory survived
694    ///   `remove_dir_all` (filesystem permission, busy handle, …).
695    ///   `path` names the directory; `error` carries the OS-level
696    ///   diagnostic.
697    /// - `backend_prune_failed` — git-branch backend rejected the
698    ///   ref-edit transaction that prunes
699    ///   `refs/heads/<branch_leaf>` + `__MEMSTEAD:mems/.../config.json`
700    ///   (gitdir IO, concurrent writer racing the ref). `path` is
701    ///   `None`; `error` carries the wrapped backend message.
702    ///
703    /// One emission per failed step — both can land in the same
704    /// response when a folder mount somehow has both an rmdir
705    /// failure and a backend cleanup failure (rare; the folder
706    /// backend's `delete_artifacts` is a no-op default).
707    MemFilesNotDeleted {
708        mem: String,
709        reason: String,
710        path: Option<String>,
711        error: Option<String>,
712    },
713    /// `memstead mem init` detected a pre-existing branch + config
714    /// blob carrying the `unregistered_at` tombstone marker that
715    /// `memstead mem unregister` writes — the operator's deliberate
716    /// "preserve for re-attach" signal. The create path adopted the
717    /// residual entities, cleared the tombstone, and registered the
718    /// branch as a writable mount. Audit visibility for the
719    /// reattach so an agent reading the warnings sees what shape
720    /// the new mount took. `unregistered_at` carries the ISO-8601
721    /// timestamp the tombstone recorded so the operator can correlate
722    /// the reattach with a prior unregister event.
723    MemReattachedAfterUnregister {
724        mem: String,
725        unregistered_at: String,
726    },
727    /// One-time boot migration: legacy `readMems` entries found in a
728    /// writable mem's config were converted into workspace-level
729    /// read-only mounts and the legacy key was removed from the
730    /// config. `mems` lists the migrated read-mem names,
731    /// `from_host_mems` the writable mems whose configs carried them.
732    /// A second boot is silent — the source key is gone.
733    ReadMemsMigratedToMounts {
734        mems: Vec<String>,
735        from_host_mems: Vec<String>,
736    },
737    /// Boot-honesty skew: the mem's engine-owned mutation stamp
738    /// (`MemConfig.mutation_stamp`, written after mutations) records a
739    /// different engine version than the running binary. Informative,
740    /// never fatal — the next mutation under this binary re-stamps.
741    /// Absence of a stamp (a pre-stamp mem) never fires this; only a
742    /// present, disagreeing stamp does. Surfaces on boot output and
743    /// `memstead health` without an include gate.
744    EngineVersionSkew {
745        mem: String,
746        /// Engine version the last mutation was performed under.
747        stamped_engine: String,
748        /// Engine version of the running binary.
749        running_engine: String,
750        /// Resolved schema the last mutation validated against.
751        stamped_schema: String,
752    },
753    /// Generation-behind hint: the mem's pinned schema resolved from
754    /// the BUILT-IN catalogue and the catalogue registers at least
755    /// one strictly-higher version of the same name (real semver
756    /// ordering). Warn-tier, ungated, never blocking — retention
757    /// seals every shipped version, so the pin keeps working; the
758    /// hint names the newest available generation and the migration
759    /// verb. Locally-installed (workspace-storage) pins are silent:
760    /// the engine only knows generations for built-ins. Surfaces on
761    /// boot output and `memstead health` without an include gate,
762    /// like the skew hint above.
763    SchemaGenerationsBehind {
764        mem: String,
765        /// The pinned ref (`name@version`).
766        pinned: String,
767        /// The newest built-in version registered under the same name.
768        newest: String,
769    },
770    /// The mem was created on storage with no version control (a
771    /// folder mount). Provenance means something WEAKER there than the
772    /// headline "every mutation a reasoned commit": mutations ARE
773    /// recorded — each lands in the folder backend's changelog ledger
774    /// (`.memstead/changelog.jsonl`) with its provenance note — but
775    /// there are no commits, the `commit_sha` every mutation returns
776    /// is a synthetic placeholder, and the content is not durable
777    /// until the surrounding repository commits it. Emitted once, at
778    /// creation, to whoever is actually acting; never a refusal —
779    /// folder mems are a supported storage class.
780    FolderMemProvenance { mem: String },
781    /// Authoring-drift health axis: a pinned schema's sealed copy
782    /// carries an install-provenance stamp, and the authoring path it
783    /// names is GONE from the working tree. Distinct from
784    /// [`WarningHint::SchemaAuthoringSourceDiverged`] — a missing
785    /// package and a diverged one need different actions. Only
786    /// stamped schemas are checked: on git-branch workspaces the
787    /// authoring folder is typically absent for unstamped seals, so a
788    /// naive existence check would warn on healthy workspaces.
789    SchemaAuthoringSourceMissing {
790        schema_ref: String,
791        stamped_path: String,
792        mems: Vec<String>,
793    },
794    /// Authoring-drift health axis: the stamped authoring path exists
795    /// but its package no longer parses EQUIVALENT to the sealed copy
796    /// the engine runs on (parsed-schema comparison, never raw bytes —
797    /// editor-header comment lines and serialisation reordering do not
798    /// trip it). `detail` says how: a load failure's message, or the
799    /// parsed-difference marker.
800    SchemaAuthoringSourceDiverged {
801        schema_ref: String,
802        stamped_path: String,
803        mems: Vec<String>,
804        detail: String,
805    },
806    /// Low-tier rot axis for UNSTAMPED pins — distinct from the two
807    /// stamped variants above, whose no-false-positive contract stays
808    /// untouched. The pinned schema's sealed package still loads
809    /// tolerantly (the mem runs fine), but its content no longer passes
810    /// current-language AUTHORING validation — so the package is, as of
811    /// the seal, no longer installable, and the (unstamped, therefore
812    /// unlocatable) authoring source it was sealed from has rotted the
813    /// same way unless someone has since fixed it. `detail` carries the
814    /// authoring-tier load error. Remedy: re-author the package under
815    /// the current language and `memstead schema install` it — which
816    /// re-seals AND stamps, handing the check over to the divergence
817    /// axis. An unstamped package that still parses under the authoring
818    /// tier produces no hint.
819    SchemaUnstampedSourceRot {
820        schema_ref: String,
821        mems: Vec<String>,
822        detail: String,
823    },
824    /// A `## Relationships` row was followed by trailing content that
825    /// did not match the canonical em-dash delimiter (` — `, U+2014
826    /// framed by spaces) — ASCII `--`, ASCII `-`, en-dash U+2013, or
827    /// minus U+2212. The relation parses with `description: None`;
828    /// the trailing content is NOT preserved on the in-memory
829    /// `Relationship`, so the next render of this entity normalises
830    /// the row to the simple form `- **TYPE**: [[X]]`. The warning is
831    /// the operator's signal that content was dropped — restore the
832    /// description with an explicit em-dash if it should round-trip.
833    /// Emitted at parse time (load / reload / attach); mutation paths
834    /// never trip it because they go through the typed `description`
835    /// parameter rather than markdown text.
836    AmbiguousDescriptionDelimiter {
837        from: EntityId,
838        rel_type: String,
839        target: EntityId,
840        /// Literal trailing content captured between `]]` and end of
841        /// line — surfaced verbatim so the operator can paste the
842        /// intended text back in with a canonical delimiter.
843        trailing: String,
844    },
845    /// Parse-time variant of [`crate::EngineError::MissingRequiredDescription`].
846    /// A hand-edited `## Relationships` row used a rel-type whose
847    /// schema declares `per_edge_description: required` without a
848    /// trailing description. The relation still loads (the engine
849    /// does not block the file from booting), but the warning
850    /// surfaces the gap so the operator follows up with `memstead_update`
851    /// / `memstead_relate` to author the missing description.
852    ParseMissingRequiredDescription {
853        from: EntityId,
854        rel_type: String,
855        target: EntityId,
856    },
857    /// Parse-time variant of [`crate::EngineError::DescriptionNotPermitted`].
858    /// A hand-edited `## Relationships` row used a rel-type whose
859    /// schema declares `per_edge_description: forbidden` together
860    /// with a trailing em-dash description. The relation still loads
861    /// (the engine does not block the file from booting); the
862    /// description is dropped from the in-memory `Relationship` and
863    /// the next render normalises the row to the simple form. The
864    /// warning surfaces the violation so the operator either removes
865    /// the text from disk or asks the schema author to widen the
866    /// rel-type's posture.
867    ParseDescriptionNotPermitted {
868        from: EntityId,
869        rel_type: String,
870        target: EntityId,
871    },
872    /// A mem's `Mount.schema` expectation (the pin recorded in the
873    /// workspace `mounts.json`) disagreed with the authoritative pin in
874    /// the mem's own per-mem config. Boot resolves the effective
875    /// schema from the mem config (authoritative — a copied/cloned
876    /// mem is self-resolvable); this warning surfaces the discrepancy
877    /// so neither value is silently dropped. Recovery: align the
878    /// `mounts.json` entry to the mem's config, or correct the config.
879    SchemaPinMismatch {
880        /// Mem whose mount expectation and config pin disagree.
881        mem: String,
882        /// Authoritative pin from the mem's per-mem config.
883        config_pin: String,
884        /// Expectation pin recorded on the workspace mount.
885        mount_pin: String,
886    },
887    /// A mutation wrote a section whose emitted heading differs from a
888    /// heading already present in the file that derives to the same
889    /// section key. The write still commits — refusing would strand
890    /// entities written before the round-trip gate existed — but the
891    /// divergence is surfaced so the caller sees the file's heading
892    /// text shifting under it (the regenerated file carries the
893    /// schema's declared heading; the previous text is replaced).
894    SectionHeadingDivergence {
895        entity_id: EntityId,
896        section_key: String,
897        /// Heading the mutation is writing (the schema's declared one).
898        writing_heading: String,
899        /// Different heading the file carried for the same key.
900        existing_heading: String,
901    },
902    /// A mem's resolved (already-installed) schema declares one or
903    /// more sections whose heading does not derive back to its key —
904    /// the condition new installs are refused for
905    /// (`check_section_heading_roundtrip`). Sealed schemas keep
906    /// loading by contract (refusing at boot would brick the
907    /// workspace), so the violation surfaces here instead: every write
908    /// against such a section forks its content into a second heading
909    /// or the catch-all. Recovery: fix the schema's heading/key pairs
910    /// and reinstall.
911    SchemaHeadingRoundtripViolation {
912        /// Mem whose pinned schema violates the rule.
913        mem: String,
914        /// The pinned `<name>@<version>`.
915        schema_ref: String,
916        /// Every offending `(type, key, heading, derived_key)` tuple.
917        violations: Vec<SchemaHeadingViolation>,
918    },
919}
920
921/// Wire-shape entry inside `SchemaHeadingRoundtripViolation.violations`
922/// — one section whose declared heading does not derive back to its
923/// declared key. Mirrors `memstead_schema::HeadingKeyViolation`, kept
924/// as a local struct so the warning's JSON shape is owned here.
925#[derive(Debug, Clone, PartialEq, Eq, Serialize)]
926pub struct SchemaHeadingViolation {
927    pub type_name: String,
928    pub key: String,
929    pub heading: String,
930    pub derived_key: String,
931}
932
933impl From<&memstead_schema::HeadingKeyViolation> for SchemaHeadingViolation {
934    fn from(v: &memstead_schema::HeadingKeyViolation) -> Self {
935        Self {
936            type_name: v.type_name.clone(),
937            key: v.key.clone(),
938            heading: v.heading.clone(),
939            derived_key: v.derived_key.clone(),
940        }
941    }
942}
943
944/// Wire-shape entry inside `MissingRequiredOutgoing.missing`. Lists the
945/// relationship-name alternatives and the rendered cardinality literal
946/// for one unsatisfied `RequiredOutgoing` block. Custom struct so the
947/// JSON output is `{ "relationships": [...], "cardinality": "at_least_one" }`
948/// — identical to the schema YAML shape, so an agent can copy the
949/// envelope's `details.missing` entry directly into a `memstead_relate`
950/// plan without renaming fields.
951#[derive(Debug, Clone, Serialize)]
952pub struct MissingRequiredOutgoingBlock {
953    pub relationships: Vec<String>,
954    pub cardinality: String,
955    /// The block's declared severity. Serialized only for `block` —
956    /// warn is the default the vocabulary has always had, and existing
957    /// consumers keep their byte-identical `{ relationships,
958    /// cardinality }` shape.
959    #[serde(skip_serializing_if = "severity_is_warn")]
960    pub severity: memstead_schema::ConstraintSeverity,
961    /// The condition that armed a conditional block (`when_field` /
962    /// `when_value` on the declaration). Serialized only when present,
963    /// so unconditional blocks keep their byte-identical shape — and
964    /// the reader of a refusal, warning, or health finding sees which
965    /// trigger armed the obligation.
966    #[serde(skip_serializing_if = "Option::is_none")]
967    pub when_field: Option<String>,
968    #[serde(skip_serializing_if = "Option::is_none")]
969    pub when_value: Option<String>,
970}
971
972fn severity_is_warn(s: &memstead_schema::ConstraintSeverity) -> bool {
973    *s == memstead_schema::ConstraintSeverity::Warn
974}
975
976/// Abstract recovery action attached to a `PARSED_RELATION_INVALID`
977/// warning when the source mem is writable. The shape is tool-
978/// agnostic: it names *what* to do, not *which tool* to call. A
979/// consumer (agent, bulk-fix orchestrator, app surface) maps `kind`
980/// to the concrete call on whichever MCP / CLI path it
981/// uses; the warning's payload itself does not drift when the
982/// mutation surface evolves.
983///
984/// `kind` is the discriminator. Additive — new variants may land as
985/// the recovery taxonomy grows. Current values:
986///
987/// - `"remove_explicit_relation"` — drop the relation from the
988///   source entity's `## Relationships` section. Agents map this to
989///   `memstead_relate { from: source_id, to: target_id, type: rel_type,
990///   remove: true }`. The CLI maps it to the equivalent
991///   `memstead relate --remove` invocation. The bulk-fix consumer reads
992///   `source_id`, `target_id`, `rel_type` straight from the payload.
993///
994/// The mirrored `source_id` / `target_id` / `rel_type` fields are
995/// redundant with the warning's `entity_id` / `target` / `rel_type`
996/// — duplication is intentional. A consumer that branches on
997/// `recovery` and forwards the payload downstream does not need to
998/// stitch the warning's top-level fields back in.
999#[derive(Debug, Clone, PartialEq, Eq, Serialize)]
1000pub struct ParsedRelationRecovery {
1001    pub kind: String,
1002    pub source_id: EntityId,
1003    pub target_id: EntityId,
1004    pub rel_type: String,
1005}
1006
1007impl ParsedRelationRecovery {
1008    /// Stable discriminator for the "drop the relation from the
1009    /// source markdown" recovery — the only abstract action this
1010    /// warning emits today.
1011    pub const KIND_REMOVE_EXPLICIT_RELATION: &'static str = "remove_explicit_relation";
1012
1013    /// Constructor for the standard `remove_explicit_relation`
1014    /// recovery — the only shape produced by the parser today.
1015    /// Emission sites use this so the discriminator string lives in
1016    /// one place.
1017    pub fn remove_explicit_relation(
1018        source_id: EntityId,
1019        target_id: EntityId,
1020        rel_type: String,
1021    ) -> Self {
1022        Self {
1023            kind: Self::KIND_REMOVE_EXPLICIT_RELATION.to_string(),
1024            source_id,
1025            target_id,
1026            rel_type,
1027        }
1028    }
1029}
1030
1031/// Per-entry result of an `apply_parse_recovery` call. One entry per
1032/// `PARSED_RELATION_INVALID` warning the engine observed at the call
1033/// site: the bulk-fix dispatches the writable-origin recoveries and
1034/// reports the read-only-origin warnings as skipped. Wire-equivalent
1035/// across the MCP and CLI surfaces; the renderer chooses the
1036/// shape it prefers.
1037///
1038/// `outcome` is the stable discriminator. Current values:
1039/// - `"removed"` — the source entity was re-rendered; the parse-time-
1040///   dropped row no longer appears in the on-disk markdown. `reason`
1041///   is `None`.
1042/// - `"skipped"` — the engine intentionally did not attempt the
1043///   recovery. `reason` carries a stable code: `"readonly_mount"`
1044///   (source mem is read-only and not engine-writable).
1045/// - `"failed"` — the engine attempted the recovery and the underlying
1046///   mutation surfaced a typed error. `reason` carries the engine's
1047///   `UPPER_SNAKE_CASE` error code (`HASH_MISMATCH`,
1048///   `WIKILINK_WITHOUT_RELATION`, etc.). The original entity-side
1049///   drift survives and will surface again on the next reload.
1050#[derive(Debug, Clone, Serialize)]
1051pub struct ParseRecoveryEntry {
1052    pub entity_id: EntityId,
1053    pub rel_type: String,
1054    pub target: EntityId,
1055    pub outcome: String,
1056    #[serde(default, skip_serializing_if = "Option::is_none")]
1057    pub reason: Option<String>,
1058}
1059
1060impl ParseRecoveryEntry {
1061    pub const OUTCOME_REMOVED: &'static str = "removed";
1062    pub const OUTCOME_SKIPPED: &'static str = "skipped";
1063    pub const OUTCOME_FAILED: &'static str = "failed";
1064
1065    /// Stable reason value for read-only-origin warnings the bulk-fix
1066    /// cannot act on — the source markdown is not engine-writable.
1067    pub const REASON_READONLY_MOUNT: &'static str = "readonly_mount";
1068}
1069
1070/// Outcome of `Engine::apply_parse_recovery`. Carries one
1071/// `ParseRecoveryEntry` per parse-time-dropped relation observed at
1072/// the call site plus the last successful commit sha for callers that
1073/// want to poll `memstead_changes_since` for the per-entity diff. An empty
1074/// `entries` list means the workspace was already clean.
1075///
1076/// Idempotency: re-running on a workspace where the writable drops
1077/// were already cleaned produces an empty `entries` list (no work,
1078/// no commits, no errors).
1079#[derive(Debug, Clone, Default, Serialize)]
1080pub struct ParseRecoveryReport {
1081    #[serde(default, skip_serializing_if = "Vec::is_empty")]
1082    pub entries: Vec<ParseRecoveryEntry>,
1083    /// Last successful commit sha across all per-source re-renders
1084    /// the bulk-fix performed. Empty when no recovery wrote to disk
1085    /// (workspace already clean, only read-only warnings, or every
1086    /// writable attempt failed).
1087    #[serde(default, skip_serializing_if = "String::is_empty")]
1088    pub commit_sha: String,
1089}
1090
1091impl fmt::Display for WarningHint {
1092    fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
1093        match self {
1094            WarningHint::SchemaPinMismatch {
1095                mem,
1096                config_pin,
1097                mount_pin,
1098            } => write!(
1099                f,
1100                "mem '{mem}': the workspace mount expects schema '{mount_pin}' but the \
1101                 mem's own config pins '{config_pin}' — the config pin is authoritative and \
1102                 was used; align the mounts.json entry or the mem config to clear this"
1103            ),
1104            WarningHint::SectionHeadingDivergence {
1105                entity_id,
1106                section_key,
1107                writing_heading,
1108                existing_heading,
1109            } => write!(
1110                f,
1111                "entity '{entity_id}': section '{section_key}' is being written under \
1112                 heading '{writing_heading}' but the file carried '{existing_heading}' for \
1113                 the same section — the write commits and the regenerated file uses \
1114                 '{writing_heading}'; the previous heading text is replaced"
1115            ),
1116            WarningHint::SchemaHeadingRoundtripViolation {
1117                mem,
1118                schema_ref,
1119                violations,
1120            } => {
1121                let list = violations
1122                    .iter()
1123                    .map(|v| {
1124                        format!(
1125                            "type '{}' section '{}' heading '{}' (derives to '{}')",
1126                            v.type_name, v.key, v.heading, v.derived_key
1127                        )
1128                    })
1129                    .collect::<Vec<_>>()
1130                    .join("; ");
1131                write!(
1132                    f,
1133                    "mem '{mem}': pinned schema '{schema_ref}' declares section heading(s) \
1134                     that cannot round-trip to their key(s): {list}. The mem keeps loading, \
1135                     but writes to these sections fork content into a second heading or the \
1136                     catch-all. Fix the schema's heading/key pairs and reinstall — new \
1137                     installs of such a schema are refused"
1138                )
1139            }
1140            WarningHint::MissingRequiredSection {
1141                key,
1142                heading,
1143                write_rules,
1144                ..
1145            } => {
1146                write!(
1147                    f,
1148                    "required section '{key}' (heading \"{heading}\") is empty — \
1149                     entity will show as unhealthy"
1150                )?;
1151                if !write_rules.is_empty() {
1152                    write!(f, ". Writing guidance:")?;
1153                    for rule in write_rules {
1154                        write!(f, "\n  - {rule}")?;
1155                    }
1156                }
1157                Ok(())
1158            }
1159            WarningHint::MissingRequiredField {
1160                key,
1161                entity_type,
1162                description,
1163                enum_values,
1164            } => {
1165                write!(
1166                    f,
1167                    "required metadata field '{key}' on type '{entity_type}' was not \
1168                     supplied — entity landed with a placeholder. {description}"
1169                )?;
1170                if !enum_values.is_empty() {
1171                    write!(f, " Allowed values: [{}].", enum_values.join(", "))?;
1172                }
1173                Ok(())
1174            }
1175            WarningHint::UndeclaredRelationshipOpen { message, .. } => f.write_str(message),
1176            WarningHint::DuplicateRelationship { rel_type, from, to } => write!(
1177                f,
1178                "relationship {rel_type} from {from} to {to} already exists — no-op"
1179            ),
1180            WarningHint::NoSuchRelationship { rel_type, from, to } => write!(
1181                f,
1182                "relationship {rel_type} from {from} to {to} does not exist — no-op"
1183            ),
1184            WarningHint::UnknownIncludeKey { key, allowed } => write!(
1185                f,
1186                "unknown include key '{key}' ignored. Allowed: [{}]",
1187                allowed.join(", ")
1188            ),
1189            WarningHint::LimitClamped { requested, actual } => write!(
1190                f,
1191                "limit clamped from {requested} to {actual} (max for memstead_health)"
1192            ),
1193            WarningHint::TitleNormalizedToSlugNoop {
1194                requested_title,
1195                current_slug,
1196            } => write!(
1197                f,
1198                "requested title '{requested_title}' normalises to the existing slug \
1199                 '{current_slug}' — no change written to disk"
1200            ),
1201            WarningHint::TitleCharsDroppedFromSlug {
1202                title,
1203                dropped_chars,
1204                slug,
1205            } => write!(
1206                f,
1207                "title '{title}' keeps its characters as display text, but the derived \
1208                 slug '{slug}' drops {dropped_chars:?} — link this entity by its slug"
1209            ),
1210            WarningHint::UpdateNoop { id } => write!(
1211                f,
1212                "update on {id} produced bytes-identical content — no \
1213                 disk write, no commit, content_hash unchanged"
1214            ),
1215            WarningHint::StubFilterExcludesAll { entity_type } => write!(
1216                f,
1217                "stub=true combined with entity_type='{entity_type}' excludes every \
1218                 stub — stubs carry no entity_type. Drop entity_type to list stubs."
1219            ),
1220            WarningHint::UnknownFilterKey {
1221                key,
1222                scoped_type,
1223                declared_on_other_types,
1224            } => {
1225                let on_other = !declared_on_other_types.is_empty();
1226                let scoped_matches_other = matches!(
1227                    scoped_type.as_deref(),
1228                    Some(t) if declared_on_other_types.iter().any(|o| o == t)
1229                );
1230                if let Some(t) = scoped_type.as_deref() {
1231                    if on_other && !scoped_matches_other {
1232                        let word = type_word_for(declared_on_other_types);
1233                        let items = format_types_clause(declared_on_other_types);
1234                        return write!(
1235                            f,
1236                            "filter '{key}' applied with strict type-exclusion semantics — exists on {word} {items} but the query scoped to type '{t}', where it is not declared. All entities of type '{t}' will be excluded; scope to a declaring type to apply the filter."
1237                        );
1238                    }
1239                    return write!(
1240                        f,
1241                        "unknown filter key '{key}' for type '{t}' — filter ignored"
1242                    );
1243                }
1244                if on_other {
1245                    let word = type_word_for(declared_on_other_types);
1246                    let items = format_types_clause(declared_on_other_types);
1247                    return write!(
1248                        f,
1249                        "filter '{key}' applied with strict type-exclusion semantics — only entities of {word} {items} will match. Scope explicitly via entity_type=… to suppress this warning."
1250                    );
1251                }
1252                write!(
1253                    f,
1254                    "unknown filter key '{key}' — no reachable schema declares it — filter ignored"
1255                )
1256            }
1257            WarningHint::FieldNotFilterable { field } => {
1258                write!(f, "field '{field}' is not filterable — filter ignored")
1259            }
1260            WarningHint::FilterValueMultiMember { key, value } => write!(
1261                f,
1262                "filter '{key}={value}' targets a csv-array field but the value contains a comma — \
1263                 csv fields match a single member, so the full value matches nothing. Filter on one \
1264                 member at a time (e.g. `{key}={first}`)",
1265                first = value.split(',').next().map(str::trim).unwrap_or("").trim(),
1266            ),
1267            WarningHint::FilterValueNotInEnum {
1268                key,
1269                value,
1270                allowed,
1271            } => write!(
1272                f,
1273                "filter '{key}={value}' is not an allowed value for '{key}' — allowed: [{}]. \
1274                 The filter applies as written and matches nothing.",
1275                allowed.join(", ")
1276            ),
1277            WarningHint::NeighbourhoodCapped { kept, total } => write!(
1278                f,
1279                "related_to neighbourhood has {total} entities; ranked by proximity and bounded to \
1280                 the nearest {kept}. Narrow with `depth` or filters to see fewer, more specific hits."
1281            ),
1282            WarningHint::SearchResultsTruncated { kept, budget } => write!(
1283                f,
1284                "results trimmed to the highest-ranked {kept} hits to fit the {budget}-token budget. \
1285                 `_total` is the full match count — page the rest with `offset`, narrow the query, \
1286                 or raise `token_budget`."
1287            ),
1288            WarningHint::RangeFilterKeyMalformed { key } => write!(
1289                f,
1290                "range filter key '{key}' must start with 'min_'/'max_' or end with '_before'/'_after' — filter ignored"
1291            ),
1292            WarningHint::UnknownRangeFilterField {
1293                field,
1294                key,
1295                scoped_type,
1296                declared_on_other_types,
1297            } => {
1298                let on_other = !declared_on_other_types.is_empty();
1299                let scoped_matches_other = matches!(
1300                    scoped_type.as_deref(),
1301                    Some(t) if declared_on_other_types.iter().any(|o| o == t)
1302                );
1303                if let Some(t) = scoped_type.as_deref() {
1304                    if on_other && !scoped_matches_other {
1305                        let word = type_word_for(declared_on_other_types);
1306                        let items = format_types_clause(declared_on_other_types);
1307                        return write!(
1308                            f,
1309                            "range filter field '{field}' (from key '{key}') applied with strict type-exclusion semantics — exists on {word} {items} but the query scoped to type '{t}', where it is not declared. All entities of type '{t}' will be excluded; scope to a declaring type to apply the filter."
1310                        );
1311                    }
1312                    return write!(
1313                        f,
1314                        "unknown range filter field '{field}' (from key '{key}') for type '{t}' — filter ignored"
1315                    );
1316                }
1317                if on_other {
1318                    let word = type_word_for(declared_on_other_types);
1319                    let items = format_types_clause(declared_on_other_types);
1320                    return write!(
1321                        f,
1322                        "range filter field '{field}' (from key '{key}') applied with strict type-exclusion semantics — only entities of {word} {items} will match. Scope explicitly via entity_type=… to suppress this warning."
1323                    );
1324                }
1325                write!(
1326                    f,
1327                    "unknown range filter field '{field}' (from key '{key}') — no reachable schema declares it — filter ignored"
1328                )
1329            }
1330            WarningHint::FieldNotRangeFilterable { field } => write!(
1331                f,
1332                "field '{field}' is not range-filterable — filter ignored"
1333            ),
1334            WarningHint::SearchMemIndexUnavailable { mem, reason, error } => {
1335                match (*reason, error.as_deref()) {
1336                    ("missing_index", _) => {
1337                        write!(f, "mem '{mem}' has no search index — query returns no hits")
1338                    }
1339                    ("query_failed", Some(e)) => {
1340                        write!(f, "search index for mem '{mem}' errored: {e}")
1341                    }
1342                    _ => write!(f, "search index for mem '{mem}' is unavailable ({reason})"),
1343                }
1344            }
1345            WarningHint::TitleTrimmed { original, trimmed } => write!(
1346                f,
1347                "title trimmed of surrounding whitespace: {original:?} → {trimmed:?}"
1348            ),
1349            WarningHint::SuspiciousNestedPrefix {
1350                from,
1351                resolved_id,
1352                candidate_target,
1353                section,
1354            } => {
1355                write!(
1356                    f,
1357                    "wiki-link in {from}#{section} resolves to nested prefix \
1358                     {resolved_id} — almost certainly mem-rename drift"
1359                )?;
1360                if let Some(cand) = candidate_target {
1361                    write!(f, "; did you mean {cand}?")?;
1362                }
1363                Ok(())
1364            }
1365            WarningHint::InlineWikiLinkAutoStubbed { from, stubs } => {
1366                write!(
1367                    f,
1368                    "{from} contained {n} inline wiki-link(s) that auto-created stub \
1369                     entities — review whether the stubs were intended; if not, \
1370                     remove the inline syntax or wrap the example in a fenced/quoted \
1371                     form. Auto-stubbed targets:",
1372                    n = stubs.len(),
1373                )?;
1374                for s in stubs {
1375                    write!(f, "\n  - {s}")?;
1376                }
1377                Ok(())
1378            }
1379            WarningHint::SelfLinkIgnored { id } => write!(
1380                f,
1381                "{id} contains a body wiki-link to its own id — the self-referential edge \
1382                 was dropped (a self-link carries no navigational value). The entity was \
1383                 created/updated normally; remove the `[[{slug}]]` link if it was a mistake",
1384                slug = id.name(),
1385            ),
1386            WarningHint::CrossMemTargetMemUncreated {
1387                from_mem,
1388                to_mem,
1389                target_id,
1390            } => write!(
1391                f,
1392                "cross-mem relate from '{from_mem}' to '{target_id}': \
1393                 target mem '{to_mem}' is not mounted in the workspace — \
1394                 the auto-stub has no schema resolution until the mem is created. \
1395                 If '{to_mem}' is a typo, fix the relate; if forward-reference \
1396                 is intended, create the mem to promote the stub."
1397            ),
1398            WarningHint::NoteMissing { tool } => write!(
1399                f,
1400                "{tool} called without a `note` while \
1401                 `[mutations].require_notes = true` — commit landed, \
1402                 body carries no provenance line"
1403            ),
1404            WarningHint::IgnoredReadonlyField { field, supplied } => write!(
1405                f,
1406                "'{field}' is auto-managed by the engine — the supplied \
1407                 value '{supplied}' was discarded and the engine value \
1408                 stamped instead"
1409            ),
1410            WarningHint::OuterRepoNotIgnoringMemRepo {
1411                outer_repo_root,
1412                workspace_root,
1413            } => write!(
1414                f,
1415                "workspace at '{workspace_root}' is embedded inside the git \
1416                 repository at '{outer_repo_root}' but the outer .gitignore \
1417                 does not list 'mem-repo/'. Add 'mem-repo/' (or the \
1418                 workspace-relative equivalent) to the outer repo's \
1419                 .gitignore to keep mem-repo-git out of the outer index."
1420            ),
1421            WarningHint::SignalThresholdCrossed {
1422                entity_id,
1423                signal,
1424                value,
1425                old_level,
1426                new_level,
1427            } => write!(
1428                f,
1429                "signal '{signal}' on {entity_id} crossed a declared threshold: \
1430                 {old_level} → {new_level} (value {value})"
1431            ),
1432            WarningHint::MissingRequiredOutgoing {
1433                entity_type,
1434                entity_id,
1435                missing,
1436            } => {
1437                write!(
1438                    f,
1439                    "{entity_id} ({entity_type}) is missing required outgoing edges — \
1440                     schema declares {n} `required_outgoing` block(s) still unsatisfied:",
1441                    n = missing.len(),
1442                )?;
1443                for block in missing {
1444                    write!(
1445                        f,
1446                        "\n  - [{}] cardinality={}",
1447                        block.relationships.join(", "),
1448                        block.cardinality,
1449                    )?;
1450                }
1451                Ok(())
1452            }
1453            WarningHint::ConstraintUnsatisfied {
1454                entity_type,
1455                entity_id,
1456                violations,
1457            } => {
1458                write!(
1459                    f,
1460                    "{entity_id} ({entity_type}) violates {n} declared constraint(s):",
1461                    n = violations.len(),
1462                )?;
1463                for v in violations {
1464                    write!(f, "\n  - {}", v.describe())?;
1465                }
1466                Ok(())
1467            }
1468            WarningHint::DuplicateSectionHeading {
1469                entity_id,
1470                section_key,
1471                heading,
1472                occurrences,
1473            } => write!(
1474                f,
1475                "{entity_id} declared `## {heading}` {occurrences} times — \
1476                 section '{section_key}' kept the first occurrence's body \
1477                 and dropped the rest. The next read-modify-write will \
1478                 collapse the markdown to one heading."
1479            ),
1480            WarningHint::MemReloaded {
1481                mem,
1482                old_head,
1483                new_head,
1484                entities_loaded,
1485            } => write!(
1486                f,
1487                "mem '{mem}' was reloaded — on-disk HEAD advanced from \
1488                 {old_head} to {new_head} (a sibling writer or out-of-band \
1489                 commit landed since the engine last read the mem). \
1490                 {entities_loaded} entities reloaded; response carries \
1491                 fresh content. Re-derive any conclusions that depended on \
1492                 the prior content of this mem before continuing. Call \
1493                 `memstead_changes_since since={old_head}` for the per-entity \
1494                 diff."
1495            ),
1496            WarningHint::AutoStubCreated { stub_id, pending } => {
1497                if *pending {
1498                    write!(
1499                        f,
1500                        "target '{stub_id}' does not exist — a stub would be \
1501                         auto-created by the real call. Promote it via \
1502                         memstead_create first, or let the real call create \
1503                         the stub (adoption preserves the incoming edge)."
1504                    )
1505                } else {
1506                    write!(
1507                        f,
1508                        "target '{stub_id}' did not exist — stub auto-created. \
1509                         Promote it via memstead_create when authoring the real \
1510                         entity (stub adoption preserves the incoming edge)."
1511                    )
1512                }
1513            }
1514            WarningHint::DerivationBaselineRefreshed { from, rel_type, to } => write!(
1515                f,
1516                "derivation baseline refreshed: '{from}' -[{rel_type}]-> '{to}' — the edge \
1517                 already existed; its baseline now records the target's current content \
1518                 hash (reviewed, still holds). Nothing else changed."
1519            ),
1520            WarningHint::ParsedRelationInvalid {
1521                entity_id,
1522                rel_type,
1523                target,
1524                reason,
1525                origin,
1526                recovery: _,
1527            } => {
1528                let recovery_msg = if origin == "readonly" {
1529                    "Source mem is mounted read-only; the engine cannot \
1530                     rewrite the markdown. Either remove the mount \
1531                     (`memstead uninstall <mem>`) or accept the dropped \
1532                     relation."
1533                } else {
1534                    "Fix the source markdown (via memstead_update / \
1535                     memstead_relate — `details.recovery` carries the abstract \
1536                     action) or adjust the schema."
1537                };
1538                write!(
1539                    f,
1540                    "parsed relation {rel_type} from {entity_id} to \
1541                     {target} was dropped — reason: {reason}, origin: \
1542                     {origin}. The entity loaded but the relation does \
1543                     not appear in the in-memory graph. {recovery_msg}"
1544                )
1545            }
1546            WarningHint::ResidualStubForReadOnlyReferrers { id, referrers } => write!(
1547                f,
1548                "{id} was deleted from disk but {n} read-only-mount \
1549                 referrer(s) still target it; the in-memory entity is \
1550                 demoted to a stub at the same id so the surviving \
1551                 incoming edges keep a valid target. Surviving referrers: \
1552                 [{}]. Either accept the stub or remove the source mount \
1553                 (`memstead uninstall <mem>`) — read-only content cannot \
1554                 be rewritten by the engine.",
1555                referrers
1556                    .iter()
1557                    .map(|r| r.to_string())
1558                    .collect::<Vec<_>>()
1559                    .join(", "),
1560                n = referrers.len(),
1561            ),
1562            WarningHint::AmbiguousDescriptionDelimiter {
1563                from,
1564                rel_type,
1565                target,
1566                trailing,
1567            } => write!(
1568                f,
1569                "{from} → {target} ({rel_type}): trailing content {trailing:?} \
1570                 after `]]` did not match the canonical em-dash delimiter ` — ` \
1571                 (U+2014); content dropped, the relation parses with no \
1572                 description. Restore with `memstead_relate {from} {rel_type} \
1573                 {target} --description \"<text>\"` (or hand-edit using \
1574                 ` — `) if the text was intentional."
1575            ),
1576            WarningHint::ParseMissingRequiredDescription {
1577                from,
1578                rel_type,
1579                target,
1580            } => write!(
1581                f,
1582                "{from} → {target} ({rel_type}): rel-type declares \
1583                 `per_edge_description: required` but the row has no \
1584                 trailing em-dash description. Add one via `memstead_relate \
1585                 {from} {rel_type} {target} --description \"<text>\"` (or \
1586                 hand-edit the markdown using ` — `)."
1587            ),
1588            WarningHint::ParseDescriptionNotPermitted {
1589                from,
1590                rel_type,
1591                target,
1592            } => write!(
1593                f,
1594                "{from} → {target} ({rel_type}): rel-type declares \
1595                 `per_edge_description: forbidden` but the markdown row \
1596                 carries a trailing description. The description is \
1597                 dropped from the in-memory graph and the next render \
1598                 normalises the row to the simple form. Drop the trailing \
1599                 text from the source markdown if it should not round-trip."
1600            ),
1601            WarningHint::MemReattachedAfterUnregister {
1602                mem,
1603                unregistered_at,
1604            } => write!(
1605                f,
1606                "mem '{mem}' was reattached to pre-existing storage \
1607                 that carried an `unregistered_at: {unregistered_at}` \
1608                 tombstone marker. The entities from the prior session \
1609                 were adopted; the tombstone has been cleared. If this \
1610                 reattach was unexpected, run `memstead mem delete \
1611                 {mem}` to destroy the storage and start fresh."
1612            ),
1613            WarningHint::ReadMemsMigratedToMounts {
1614                mems,
1615                from_host_mems,
1616            } => write!(
1617                f,
1618                "legacy `readMems` registrations were migrated to \
1619                 workspace-level read-only mounts: [{}] (previously \
1620                 attached to writable mem(s) [{}]). The legacy key was \
1621                 removed from the config; this migration runs once. \
1622                 Remove a migrated read-mem with `memstead uninstall \
1623                 <name>`.",
1624                mems.join(", "),
1625                from_host_mems.join(", "),
1626            ),
1627            WarningHint::EngineVersionSkew {
1628                mem,
1629                stamped_engine,
1630                running_engine,
1631                stamped_schema,
1632            } => write!(
1633                f,
1634                "mem '{mem}': the last mutation was performed by engine \
1635                 v{stamped_engine} (against schema {stamped_schema}); \
1636                 this binary is engine v{running_engine}. Informative \
1637                 only — the next mutation re-stamps. If behaviour \
1638                 differs from the last session, the binary changed \
1639                 between them.",
1640            ),
1641            WarningHint::SchemaGenerationsBehind {
1642                mem,
1643                pinned,
1644                newest,
1645            } => write!(
1646                f,
1647                "mem '{mem}' pins built-in schema {pinned}, but the \
1648                 catalogue registers newer generations up to {newest}. \
1649                 The pin keeps working (retained versions stay sealed); \
1650                 migrate via `memstead mem set-schema` when ready.",
1651            ),
1652            WarningHint::FolderMemProvenance { mem } => write!(
1653                f,
1654                "mem '{mem}' was created on folder storage with no \
1655                 version control. Provenance here is the changelog \
1656                 ledger (`.memstead/changelog.jsonl`), which records \
1657                 every mutation with its note — but there are no \
1658                 commits: the `commit_sha` mutations return is a \
1659                 synthetic placeholder, and the content is not durable \
1660                 until the surrounding repository commits it."
1661            ),
1662            WarningHint::SchemaAuthoringSourceMissing {
1663                schema_ref,
1664                stamped_path,
1665                mems,
1666            } => write!(
1667                f,
1668                "schema '{schema_ref}' (pinned by {}) was installed from \
1669                 '{stamped_path}', and that authoring package is no longer \
1670                 there. The engine keeps running on its sealed copy — \
1671                 nothing is broken — but the source the seal came from is \
1672                 gone: restore or move back the package, or re-install \
1673                 from its new location to re-stamp.",
1674                mems.join(", ")
1675            ),
1676            WarningHint::SchemaAuthoringSourceDiverged {
1677                schema_ref,
1678                stamped_path,
1679                mems,
1680                detail,
1681            } => write!(
1682                f,
1683                "schema '{schema_ref}' (pinned by {}) no longer matches \
1684                 its authoring package at '{stamped_path}': {detail}. The \
1685                 engine keeps running on its sealed copy; if the authoring \
1686                 change is intended, bump the version and `memstead schema \
1687                 install` it.",
1688                mems.join(", ")
1689            ),
1690            WarningHint::SchemaUnstampedSourceRot {
1691                schema_ref,
1692                mems,
1693                detail,
1694            } => write!(
1695                f,
1696                "schema '{schema_ref}' (pinned by {}) has no install-provenance \
1697                 stamp, and its sealed package no longer passes current-language \
1698                 authoring validation: {detail}. The mem keeps running on the \
1699                 tolerantly-loaded seal — nothing is broken — but the package is \
1700                 no longer installable as authored. Re-author it under the \
1701                 current language and `memstead schema install` it (which also \
1702                 stamps it, so future drift is checked).",
1703                mems.join(", ")
1704            ),
1705            WarningHint::MemFilesNotDeleted {
1706                mem,
1707                reason,
1708                path,
1709                error,
1710            } => match (reason.as_str(), path.as_deref(), error.as_deref()) {
1711                ("rmdir_failed", Some(p), Some(e)) => write!(
1712                    f,
1713                    "mem '{mem}' was unregistered but rmdir of \
1714                         {p:?} failed: {e}. Files remain on disk; agent \
1715                         may follow up with manual cleanup."
1716                ),
1717                ("rmdir_failed", Some(p), None) => write!(
1718                    f,
1719                    "mem '{mem}' was unregistered but rmdir of \
1720                         {p:?} failed. Files remain on disk."
1721                ),
1722                ("backend_prune_failed", _, Some(e)) => write!(
1723                    f,
1724                    "mem '{mem}' was unregistered but backend \
1725                         artifact cleanup failed: {e}. The mem-repo \
1726                         branch and/or `__MEMSTEAD:mems/.../config.json` \
1727                         entry may survive; rerun delete with the same \
1728                         arguments or have an operator inspect."
1729                ),
1730                ("backend_prune_failed", _, None) => write!(
1731                    f,
1732                    "mem '{mem}' was unregistered but backend \
1733                         artifact cleanup failed. The mem-repo branch \
1734                         and/or `__MEMSTEAD` config entry may survive."
1735                ),
1736                _ => write!(
1737                    f,
1738                    "mem '{mem}' was unregistered but \
1739                         `delete_files: true` did not run to completion \
1740                         (reason: {reason})."
1741                ),
1742            },
1743        }
1744    }
1745}
1746
1747impl WarningHint {
1748    /// Stable UPPER_SNAKE_CASE identifier. Wire-level contract — never rename
1749    /// an existing value; new variants add new codes. Agents branch on this,
1750    /// not on [`WarningHint::message`].
1751    pub fn code(&self) -> &'static str {
1752        match self {
1753            Self::InlineWikiLinkAutoStubbed { .. } => "INLINE_WIKI_LINK_AUTO_STUBBED",
1754            Self::CrossMemTargetMemUncreated { .. } => "CROSS_MEM_TARGET_MEM_UNCREATED",
1755            Self::MissingRequiredSection { .. } => "MISSING_REQUIRED_SECTION",
1756            Self::MissingRequiredField { .. } => "MISSING_REQUIRED_FIELD",
1757            Self::UndeclaredRelationshipOpen { .. } => "UNDECLARED_RELATIONSHIP_OPEN",
1758            Self::DuplicateRelationship { .. } => "DUPLICATE_RELATIONSHIP",
1759            Self::NoSuchRelationship { .. } => "NO_SUCH_RELATIONSHIP",
1760            Self::UnknownIncludeKey { .. } => "UNKNOWN_INCLUDE_KEY",
1761            Self::LimitClamped { .. } => "LIMIT_CLAMPED",
1762            Self::TitleNormalizedToSlugNoop { .. } => "TITLE_NORMALIZED_TO_SLUG_NOOP",
1763            Self::TitleCharsDroppedFromSlug { .. } => "TITLE_CHARS_DROPPED_FROM_SLUG",
1764            Self::UpdateNoop { .. } => "UPDATE_NOOP",
1765            Self::StubFilterExcludesAll { .. } => "STUB_FILTER_EXCLUDES_ALL",
1766            // One code per outcome:
1767            // a key declared on some OTHER reachable type was applied
1768            // with strict type-narrowing (the filter took effect — it
1769            // restricts the result to the declaring type(s)), so it
1770            // carries a distinct code from a key no schema declares
1771            // (which is truly ignored). A consumer branches on `code`
1772            // alone to learn whether its filter took effect, without
1773            // inspecting `declared_on_other_types`.
1774            Self::UnknownFilterKey {
1775                declared_on_other_types,
1776                ..
1777            } => {
1778                if declared_on_other_types.is_empty() {
1779                    "UNKNOWN_FILTER_KEY"
1780                } else {
1781                    "FILTER_TYPE_SCOPED"
1782                }
1783            }
1784            Self::FieldNotFilterable { .. } => "FIELD_NOT_FILTERABLE",
1785            Self::FilterValueMultiMember { .. } => "FILTER_VALUE_MULTI_MEMBER",
1786            Self::FilterValueNotInEnum { .. } => "INVALID_ENUM_VALUE",
1787            Self::NeighbourhoodCapped { .. } => "NEIGHBOURHOOD_CAPPED",
1788            Self::SearchResultsTruncated { .. } => "SEARCH_RESULTS_TRUNCATED",
1789            Self::RangeFilterKeyMalformed { .. } => "RANGE_FILTER_KEY_MALFORMED",
1790            Self::UnknownRangeFilterField {
1791                declared_on_other_types,
1792                ..
1793            } => {
1794                if declared_on_other_types.is_empty() {
1795                    "UNKNOWN_RANGE_FILTER_FIELD"
1796                } else {
1797                    "RANGE_FILTER_TYPE_SCOPED"
1798                }
1799            }
1800            Self::FieldNotRangeFilterable { .. } => "FIELD_NOT_RANGE_FILTERABLE",
1801            Self::SearchMemIndexUnavailable { .. } => "SEARCH_MEM_INDEX_UNAVAILABLE",
1802            Self::TitleTrimmed { .. } => "TITLE_TRIMMED",
1803            Self::SuspiciousNestedPrefix { .. } => "SUSPICIOUS_NESTED_PREFIX",
1804            Self::NoteMissing { .. } => "NOTE_MISSING",
1805            Self::IgnoredReadonlyField { .. } => "IGNORED_READONLY_FIELD",
1806            Self::OuterRepoNotIgnoringMemRepo { .. } => "OUTER_REPO_NOT_IGNORING_MEM_REPO",
1807            Self::MissingRequiredOutgoing { .. } => "MISSING_REQUIRED_OUTGOING",
1808            Self::SignalThresholdCrossed { .. } => "SIGNAL_THRESHOLD_CROSSED",
1809            Self::ConstraintUnsatisfied { .. } => "CONSTRAINT_UNSATISFIED",
1810            Self::DuplicateSectionHeading { .. } => "DUPLICATE_SECTION_HEADING",
1811            Self::MemReloaded { .. } => "MEM_RELOADED",
1812            Self::SchemaPinMismatch { .. } => "SCHEMA_PIN_MISMATCH",
1813            Self::EngineVersionSkew { .. } => "ENGINE_VERSION_SKEW",
1814            Self::SchemaGenerationsBehind { .. } => "SCHEMA_GENERATIONS_BEHIND",
1815            Self::SchemaHeadingRoundtripViolation { .. } => "SCHEMA_HEADING_ROUNDTRIP_VIOLATION",
1816            Self::SectionHeadingDivergence { .. } => "SECTION_HEADING_DIVERGENCE",
1817            Self::AutoStubCreated { .. } => "AUTO_STUB_CREATED",
1818            Self::DerivationBaselineRefreshed { .. } => "DERIVATION_BASELINE_REFRESHED",
1819            Self::SelfLinkIgnored { .. } => "SELF_LINK_IGNORED",
1820            Self::ParsedRelationInvalid { .. } => "PARSED_RELATION_INVALID",
1821            Self::ResidualStubForReadOnlyReferrers { .. } => "RESIDUAL_STUB_FOR_READONLY_REFERRERS",
1822            Self::MemFilesNotDeleted { .. } => "MEM_FILES_NOT_DELETED",
1823            Self::MemReattachedAfterUnregister { .. } => "MEM_REATTACHED_AFTER_UNREGISTER",
1824            Self::ReadMemsMigratedToMounts { .. } => "READ_MEMS_MIGRATED_TO_MOUNTS",
1825            Self::FolderMemProvenance { .. } => "FOLDER_MEM_PROVENANCE",
1826            Self::SchemaAuthoringSourceMissing { .. } => "SCHEMA_AUTHORING_SOURCE_MISSING",
1827            Self::SchemaAuthoringSourceDiverged { .. } => "SCHEMA_AUTHORING_SOURCE_DIVERGED",
1828            Self::SchemaUnstampedSourceRot { .. } => "SCHEMA_UNSTAMPED_SOURCE_ROT",
1829            Self::AmbiguousDescriptionDelimiter { .. } => "AMBIGUOUS_DESCRIPTION_DELIMITER",
1830            Self::ParseMissingRequiredDescription { .. } => "MISSING_REQUIRED_DESCRIPTION",
1831            Self::ParseDescriptionNotPermitted { .. } => "DESCRIPTION_NOT_PERMITTED",
1832        }
1833    }
1834
1835    /// Human-readable message — delegates to `Display`. May change across
1836    /// releases; use [`WarningHint::code`] for branching.
1837    pub fn message(&self) -> String {
1838        self.to_string()
1839    }
1840
1841    /// Mem that "owns" the warning when one can be attributed.
1842    /// Workspace-/request-scoped variants return `None` — `memstead_health`'s
1843    /// mem filter keeps those visible regardless of scope, while
1844    /// mem-attributable variants drop out when the filter doesn't
1845    /// match. The contract mirrors the data fields the same filter
1846    /// gates (counts, distributions, detail lists are source-mem
1847    /// scoped; rosters stay global).
1848    pub fn source_mem(&self) -> Option<&str> {
1849        match self {
1850            Self::SuspiciousNestedPrefix { from, .. } => Some(from.mem()),
1851            Self::DuplicateSectionHeading { entity_id, .. } => Some(entity_id.mem()),
1852            Self::SchemaPinMismatch { mem, .. } => Some(mem.as_str()),
1853            Self::SchemaHeadingRoundtripViolation { mem, .. } => Some(mem.as_str()),
1854            Self::SectionHeadingDivergence { entity_id, .. } => Some(entity_id.mem()),
1855            Self::MemReloaded { mem, .. } => Some(mem.as_str()),
1856            Self::MemFilesNotDeleted { mem, .. } => Some(mem.as_str()),
1857            Self::MemReattachedAfterUnregister { mem, .. } => Some(mem.as_str()),
1858            Self::ReadMemsMigratedToMounts { .. } => None,
1859            Self::EngineVersionSkew { mem, .. } => Some(mem.as_str()),
1860            Self::SchemaGenerationsBehind { mem, .. } => Some(mem.as_str()),
1861            Self::FolderMemProvenance { mem } => Some(mem.as_str()),
1862            Self::MissingRequiredOutgoing { entity_id, .. } => Some(entity_id.mem()),
1863            Self::SignalThresholdCrossed { entity_id, .. } => Some(entity_id.mem()),
1864            Self::ConstraintUnsatisfied { entity_id, .. } => Some(entity_id.mem()),
1865            Self::DuplicateRelationship { from, .. } => Some(from.mem()),
1866            Self::NoSuchRelationship { from, .. } => Some(from.mem()),
1867            Self::InlineWikiLinkAutoStubbed { from, .. } => Some(from.mem()),
1868            Self::SelfLinkIgnored { id } => Some(id.mem()),
1869            Self::CrossMemTargetMemUncreated { from_mem, .. } => Some(from_mem.as_str()),
1870            Self::AutoStubCreated { stub_id, .. } => Some(stub_id.mem()),
1871            Self::DerivationBaselineRefreshed { from, .. } => Some(from.mem()),
1872            Self::UpdateNoop { id } => Some(id.mem()),
1873            Self::ParsedRelationInvalid { entity_id, .. } => Some(entity_id.mem()),
1874            Self::ResidualStubForReadOnlyReferrers { id, .. } => Some(id.mem()),
1875            Self::AmbiguousDescriptionDelimiter { from, .. } => Some(from.mem()),
1876            Self::ParseMissingRequiredDescription { from, .. } => Some(from.mem()),
1877            Self::ParseDescriptionNotPermitted { from, .. } => Some(from.mem()),
1878            // Search-mem-index unavailability is attributable to the
1879            // failing mem; the filter-key warnings are request-
1880            // derived (the agent's filter payload) and fall through
1881            // to `None` below to stay visible to the caller.
1882            Self::SearchMemIndexUnavailable { mem, .. } => Some(mem.as_str()),
1883            // Workspace- or request-scoped — no mem to attribute.
1884            // OuterRepoNotIgnoringMemRepo concerns the embedding repo,
1885            // not a specific mem; an agent should see it under any
1886            // filter. UnknownIncludeKey / LimitClamped / NoteMissing /
1887            // TitleNormalizedToSlugNoop / StubFilterExcludesAll /
1888            // UndeclaredRelationshipOpen / MissingRequiredSection /
1889            // MissingRequiredField are request-derived (mutation
1890            // payload or schema-level), so the mem is the
1891            // request's mem — `None` here keeps them visible to
1892            // the caller that triggered them.
1893            _ => None,
1894        }
1895    }
1896
1897    /// One representative of every `WarningHint` variant — the single
1898    /// source of truth consumed by stability tests (`envelope_*`,
1899    /// `code_values_are_upper_snake_case`) and by the MCP description
1900    /// drift-guard (`every_warning_code_appears_in_a_description`).
1901    /// Adding a new variant without extending this list fails those tests;
1902    /// that's the forcing function.
1903    pub fn all_samples() -> Vec<WarningHint> {
1904        vec![
1905            WarningHint::EngineVersionSkew {
1906                mem: "m".into(),
1907                stamped_engine: "0.3.0".into(),
1908                running_engine: "0.4.0".into(),
1909                stamped_schema: "default@1.0.0".into(),
1910            },
1911            WarningHint::SchemaGenerationsBehind {
1912                mem: "m".into(),
1913                pinned: "default@1.0.0".into(),
1914                newest: "1.2.0".into(),
1915            },
1916            WarningHint::MissingRequiredSection {
1917                entity_type: "t".into(),
1918                key: "k".into(),
1919                heading: "H".into(),
1920                write_rules: vec![],
1921            },
1922            WarningHint::MissingRequiredField {
1923                entity_type: "decision".into(),
1924                key: "decided_on".into(),
1925                description: "Date the decision was accepted.".into(),
1926                enum_values: vec![],
1927            },
1928            WarningHint::UndeclaredRelationshipOpen {
1929                rel_type: "X".into(),
1930                message: "m".into(),
1931            },
1932            WarningHint::DuplicateRelationship {
1933                rel_type: "X".into(),
1934                from: EntityId("a".into()),
1935                to: EntityId("b".into()),
1936            },
1937            WarningHint::NoSuchRelationship {
1938                rel_type: "X".into(),
1939                from: EntityId("a".into()),
1940                to: EntityId("b".into()),
1941            },
1942            WarningHint::UnknownIncludeKey {
1943                key: "x".into(),
1944                allowed: vec![],
1945            },
1946            WarningHint::LimitClamped {
1947                requested: 1,
1948                actual: 1,
1949            },
1950            WarningHint::SearchResultsTruncated {
1951                kept: 12,
1952                budget: 12_000,
1953            },
1954            WarningHint::TitleNormalizedToSlugNoop {
1955                requested_title: "Hello World!".into(),
1956                current_slug: "hello-world".into(),
1957            },
1958            WarningHint::TitleCharsDroppedFromSlug {
1959                title: "Acme Inc. & Co".into(),
1960                dropped_chars: vec!['.', '&'],
1961                slug: "acme-inc-co".into(),
1962            },
1963            WarningHint::UpdateNoop {
1964                id: EntityId("specs--example".into()),
1965            },
1966            WarningHint::StubFilterExcludesAll {
1967                entity_type: "spec".into(),
1968            },
1969            // Non-empty `declared_on_other_types` → code FILTER_TYPE_SCOPED.
1970            WarningHint::UnknownFilterKey {
1971                key: "nonexistent_field".into(),
1972                scoped_type: Some("spec".into()),
1973                declared_on_other_types: vec!["decision".into()],
1974            },
1975            // Empty `declared_on_other_types` → code UNKNOWN_FILTER_KEY.
1976            WarningHint::UnknownFilterKey {
1977                key: "stauts".into(),
1978                scoped_type: None,
1979                declared_on_other_types: vec![],
1980            },
1981            WarningHint::FieldNotFilterable {
1982                field: "title".into(),
1983            },
1984            WarningHint::RangeFilterKeyMalformed {
1985                key: "weird_key".into(),
1986            },
1987            // Empty `declared_on_other_types` → code UNKNOWN_RANGE_FILTER_FIELD.
1988            WarningHint::UnknownRangeFilterField {
1989                field: "count".into(),
1990                key: "min_count".into(),
1991                scoped_type: None,
1992                declared_on_other_types: vec![],
1993            },
1994            // Non-empty → code RANGE_FILTER_TYPE_SCOPED.
1995            WarningHint::UnknownRangeFilterField {
1996                field: "priority".into(),
1997                key: "min_priority".into(),
1998                scoped_type: Some("spec".into()),
1999                declared_on_other_types: vec!["decision".into()],
2000            },
2001            WarningHint::FieldNotRangeFilterable {
2002                field: "tags".into(),
2003            },
2004            WarningHint::SearchMemIndexUnavailable {
2005                mem: "specs".into(),
2006                reason: "missing_index",
2007                error: None,
2008            },
2009            WarningHint::SuspiciousNestedPrefix {
2010                from: EntityId("test-mem-plugin--audit-skill".into()),
2011                resolved_id: EntityId("test-mem-plugin--plugin--memstead-mcp-tool-surface".into()),
2012                candidate_target: Some(EntityId(
2013                    "test-mem-plugin--memstead-mcp-tool-surface".into(),
2014                )),
2015                section: "constraints".into(),
2016            },
2017            WarningHint::InlineWikiLinkAutoStubbed {
2018                from: EntityId("specs--demo".into()),
2019                stubs: vec![EntityId("specs--example-target".into())],
2020            },
2021            WarningHint::CrossMemTargetMemUncreated {
2022                from_mem: "specs".into(),
2023                to_mem: "memos".into(),
2024                target_id: EntityId("memos--example".into()),
2025            },
2026            WarningHint::NoteMissing {
2027                tool: "memstead_update".into(),
2028            },
2029            WarningHint::OuterRepoNotIgnoringMemRepo {
2030                outer_repo_root: "/repos/demo".into(),
2031                workspace_root: "/repos/demo/memstead".into(),
2032            },
2033            WarningHint::MissingRequiredOutgoing {
2034                entity_type: "decision".into(),
2035                entity_id: EntityId("planning--decision-x".into()),
2036                missing: vec![
2037                    MissingRequiredOutgoingBlock {
2038                        relationships: vec!["CHOSEN".into()],
2039                        cardinality: "at_least_one".into(),
2040                        severity: memstead_schema::ConstraintSeverity::Warn,
2041                        when_field: None,
2042                        when_value: None,
2043                    },
2044                    MissingRequiredOutgoingBlock {
2045                        relationships: vec!["REJECTED".into()],
2046                        cardinality: "at_least_one".into(),
2047                        severity: memstead_schema::ConstraintSeverity::Warn,
2048                        when_field: None,
2049                        when_value: None,
2050                    },
2051                ],
2052            },
2053            WarningHint::DuplicateSectionHeading {
2054                entity_id: EntityId("plugin--hooks-subsystem".into()),
2055                section_key: "realization".into(),
2056                heading: "Realization".into(),
2057                occurrences: 3,
2058            },
2059            WarningHint::MemReloaded {
2060                mem: "test-mem-plugin".into(),
2061                old_head: "abc123".into(),
2062                new_head: "def456".into(),
2063                entities_loaded: 42,
2064            },
2065            WarningHint::AutoStubCreated {
2066                stub_id: EntityId("specs--future-target".into()),
2067                pending: false,
2068            },
2069            WarningHint::ParsedRelationInvalid {
2070                entity_id: EntityId("specs--example-source".into()),
2071                rel_type: "EXECUTES".into(),
2072                target: EntityId("specs--example-target".into()),
2073                reason: "shape".into(),
2074                origin: "writable".into(),
2075                recovery: Some(ParsedRelationRecovery::remove_explicit_relation(
2076                    EntityId("specs--example-source".into()),
2077                    EntityId("specs--example-target".into()),
2078                    "EXECUTES".into(),
2079                )),
2080            },
2081            WarningHint::ResidualStubForReadOnlyReferrers {
2082                id: EntityId("specs--archived-target".into()),
2083                referrers: vec![EntityId("archive--archived-source".into())],
2084            },
2085            WarningHint::MemFilesNotDeleted {
2086                mem: "plan-example".into(),
2087                reason: "backend_prune_failed".into(),
2088                path: None,
2089                error: Some("ref-edit transaction rejected".into()),
2090            },
2091            WarningHint::MemReattachedAfterUnregister {
2092                mem: "plan-example".into(),
2093                unregistered_at: "2026-05-17T08:43:29Z".into(),
2094            },
2095            WarningHint::FolderMemProvenance {
2096                mem: "plan-example".into(),
2097            },
2098            WarningHint::SchemaAuthoringSourceMissing {
2099                schema_ref: "authored@0.1.0".into(),
2100                stamped_path: "/workspace/authored".into(),
2101                mems: vec!["specs".into()],
2102            },
2103            WarningHint::SchemaAuthoringSourceDiverged {
2104                schema_ref: "authored@0.1.0".into(),
2105                stamped_path: "/workspace/authored".into(),
2106                mems: vec!["specs".into()],
2107                detail: "the parsed authoring package differs from the sealed copy".into(),
2108            },
2109            WarningHint::SchemaUnstampedSourceRot {
2110                schema_ref: "authored@0.1.0".into(),
2111                mems: vec!["specs".into()],
2112                detail: "type 'decision': `propagating_relationships` was renamed".into(),
2113            },
2114            WarningHint::AmbiguousDescriptionDelimiter {
2115                from: EntityId("specs--example-source".into()),
2116                rel_type: "OTHER".into(),
2117                target: EntityId("specs--example-target".into()),
2118                trailing: " -- legacy delimiter".into(),
2119            },
2120            WarningHint::ParseMissingRequiredDescription {
2121                from: EntityId("specs--example-source".into()),
2122                rel_type: "OTHER".into(),
2123                target: EntityId("specs--example-target".into()),
2124            },
2125            WarningHint::ParseDescriptionNotPermitted {
2126                from: EntityId("specs--example-source".into()),
2127                rel_type: "IMPLEMENTS".into(),
2128                target: EntityId("specs--example-target".into()),
2129            },
2130        ]
2131    }
2132
2133    fn details_payload(&self) -> serde_json::Value {
2134        match self {
2135            Self::MissingRequiredSection {
2136                entity_type,
2137                key,
2138                heading,
2139                write_rules,
2140            } => serde_json::json!({
2141                "entity_type": entity_type,
2142                "key": key,
2143                "heading": heading,
2144                "write_rules": write_rules,
2145            }),
2146            Self::MissingRequiredField {
2147                entity_type,
2148                key,
2149                description,
2150                enum_values,
2151            } => serde_json::json!({
2152                "entity_type": entity_type,
2153                "key": key,
2154                "field_description": description,
2155                "enum_values": enum_values,
2156            }),
2157            Self::UndeclaredRelationshipOpen { rel_type, .. } => {
2158                serde_json::json!({ "rel_type": rel_type })
2159            }
2160            Self::DuplicateRelationship { rel_type, from, to } => {
2161                serde_json::json!({ "rel_type": rel_type, "from": from, "to": to })
2162            }
2163            Self::NoSuchRelationship { rel_type, from, to } => {
2164                serde_json::json!({ "rel_type": rel_type, "from": from, "to": to })
2165            }
2166            Self::UnknownIncludeKey { key, allowed } => {
2167                serde_json::json!({ "key": key, "allowed": allowed })
2168            }
2169            Self::LimitClamped { requested, actual } => {
2170                serde_json::json!({ "requested": requested, "actual": actual })
2171            }
2172            Self::TitleNormalizedToSlugNoop {
2173                requested_title,
2174                current_slug,
2175            } => serde_json::json!({
2176                "requested_title": requested_title,
2177                "current_slug": current_slug,
2178            }),
2179            Self::TitleCharsDroppedFromSlug {
2180                title,
2181                dropped_chars,
2182                slug,
2183            } => serde_json::json!({
2184                "title": title,
2185                "dropped_chars": dropped_chars,
2186                "slug": slug,
2187            }),
2188            Self::UpdateNoop { id } => serde_json::json!({ "id": id }),
2189            Self::StubFilterExcludesAll { entity_type } => {
2190                serde_json::json!({ "entity_type": entity_type })
2191            }
2192            Self::UnknownFilterKey {
2193                key,
2194                scoped_type,
2195                declared_on_other_types,
2196            } => serde_json::json!({
2197                "key": key,
2198                "scoped_type": scoped_type,
2199                "declared_on_other_types": declared_on_other_types,
2200            }),
2201            Self::FieldNotFilterable { field } => serde_json::json!({ "field": field }),
2202            Self::FilterValueMultiMember { key, value } => {
2203                serde_json::json!({ "key": key, "value": value })
2204            }
2205            Self::FilterValueNotInEnum {
2206                key,
2207                value,
2208                allowed,
2209            } => {
2210                serde_json::json!({ "key": key, "value": value, "allowed": allowed })
2211            }
2212            Self::NeighbourhoodCapped { kept, total } => {
2213                serde_json::json!({ "kept": kept, "total": total })
2214            }
2215            Self::SearchResultsTruncated { kept, budget } => {
2216                serde_json::json!({ "kept": kept, "budget": budget })
2217            }
2218            Self::RangeFilterKeyMalformed { key } => serde_json::json!({ "key": key }),
2219            Self::UnknownRangeFilterField {
2220                field,
2221                key,
2222                scoped_type,
2223                declared_on_other_types,
2224            } => serde_json::json!({
2225                "field": field,
2226                "key": key,
2227                "scoped_type": scoped_type,
2228                "declared_on_other_types": declared_on_other_types,
2229            }),
2230            Self::FieldNotRangeFilterable { field } => serde_json::json!({ "field": field }),
2231            Self::SearchMemIndexUnavailable { mem, reason, error } => serde_json::json!({
2232                "mem": mem,
2233                "reason": reason,
2234                "error": error,
2235            }),
2236            Self::TitleTrimmed { original, trimmed } => serde_json::json!({
2237                "original": original,
2238                "trimmed": trimmed,
2239            }),
2240            Self::SuspiciousNestedPrefix {
2241                from,
2242                resolved_id,
2243                candidate_target,
2244                section,
2245            } => serde_json::json!({
2246                "from": from,
2247                "resolved_id": resolved_id,
2248                "candidate_target": candidate_target,
2249                "section": section,
2250            }),
2251            Self::InlineWikiLinkAutoStubbed { from, stubs } => serde_json::json!({
2252                "from": from,
2253                "stubs": stubs,
2254            }),
2255            Self::SelfLinkIgnored { id } => serde_json::json!({ "id": id }),
2256            Self::CrossMemTargetMemUncreated {
2257                from_mem,
2258                to_mem,
2259                target_id,
2260            } => serde_json::json!({
2261                "from_mem": from_mem,
2262                "to_mem": to_mem,
2263                "target_id": target_id,
2264            }),
2265            Self::NoteMissing { tool } => serde_json::json!({ "tool": tool }),
2266            Self::IgnoredReadonlyField { field, supplied } => {
2267                serde_json::json!({ "field": field, "supplied": supplied })
2268            }
2269            Self::OuterRepoNotIgnoringMemRepo {
2270                outer_repo_root,
2271                workspace_root,
2272            } => serde_json::json!({
2273                "outer_repo_root": outer_repo_root,
2274                "workspace_root": workspace_root,
2275            }),
2276            Self::MissingRequiredOutgoing {
2277                entity_type,
2278                entity_id,
2279                missing,
2280            } => serde_json::json!({
2281                "entity_type": entity_type,
2282                "entity_id": entity_id,
2283                "missing": missing,
2284            }),
2285            Self::SignalThresholdCrossed {
2286                entity_id,
2287                signal,
2288                value,
2289                old_level,
2290                new_level,
2291            } => serde_json::json!({
2292                "entity": entity_id,
2293                "signal": signal,
2294                "value": value,
2295                "old_level": old_level,
2296                "new_level": new_level,
2297            }),
2298            Self::ConstraintUnsatisfied {
2299                entity_type,
2300                entity_id,
2301                violations,
2302            } => serde_json::json!({
2303                "entity_type": entity_type,
2304                "entity_id": entity_id,
2305                "violations": violations,
2306            }),
2307            Self::DuplicateSectionHeading {
2308                entity_id,
2309                section_key,
2310                heading,
2311                occurrences,
2312            } => serde_json::json!({
2313                "entity_id": entity_id,
2314                "section_key": section_key,
2315                "heading": heading,
2316                "occurrences": occurrences,
2317            }),
2318            Self::MemReloaded {
2319                mem,
2320                old_head,
2321                new_head,
2322                entities_loaded,
2323            } => serde_json::json!({
2324                "mem": mem,
2325                "old_head": old_head,
2326                "new_head": new_head,
2327                "entities_loaded": entities_loaded,
2328            }),
2329            Self::AutoStubCreated { stub_id, .. } => serde_json::json!({ "stub_id": stub_id }),
2330            Self::DerivationBaselineRefreshed { from, rel_type, to } => serde_json::json!({
2331                "from": from,
2332                "rel_type": rel_type,
2333                "to": to,
2334            }),
2335            Self::ParsedRelationInvalid {
2336                entity_id,
2337                rel_type,
2338                target,
2339                reason,
2340                origin,
2341                recovery,
2342            } => {
2343                serde_json::json!({
2344                    "entity_id": entity_id,
2345                    "rel_type": rel_type,
2346                    "target": target,
2347                    "reason": reason,
2348                    "origin": origin,
2349                    "recovery": recovery,
2350                })
2351            }
2352            Self::ResidualStubForReadOnlyReferrers { id, referrers } => serde_json::json!({
2353                "id": id,
2354                "referrers": referrers,
2355            }),
2356            Self::MemFilesNotDeleted {
2357                mem,
2358                reason,
2359                path,
2360                error,
2361            } => serde_json::json!({
2362                "mem": mem,
2363                "reason": reason,
2364                "path": path,
2365                "error": error,
2366            }),
2367            Self::MemReattachedAfterUnregister {
2368                mem,
2369                unregistered_at,
2370            } => serde_json::json!({
2371                "mem": mem,
2372                "unregistered_at": unregistered_at,
2373            }),
2374            Self::EngineVersionSkew {
2375                mem,
2376                stamped_engine,
2377                running_engine,
2378                stamped_schema,
2379            } => {
2380                serde_json::json!({
2381                    "mem": mem,
2382                    "stamped_engine": stamped_engine,
2383                    "running_engine": running_engine,
2384                    "stamped_schema": stamped_schema,
2385                })
2386            }
2387            Self::SchemaGenerationsBehind {
2388                mem,
2389                pinned,
2390                newest,
2391            } => serde_json::json!({
2392                "mem": mem,
2393                "pinned": pinned,
2394                "newest": newest,
2395            }),
2396            Self::ReadMemsMigratedToMounts {
2397                mems,
2398                from_host_mems,
2399            } => serde_json::json!({
2400                "mems": mems,
2401                "from_host_mems": from_host_mems,
2402            }),
2403            Self::FolderMemProvenance { mem } => serde_json::json!({
2404                "mem": mem,
2405                "ledger": ".memstead/changelog.jsonl",
2406                "commit_sha": "synthetic placeholder (no version control)",
2407                "durability": "content persists only when the surrounding repository commits it",
2408            }),
2409            Self::SchemaAuthoringSourceMissing {
2410                schema_ref,
2411                stamped_path,
2412                mems,
2413            } => serde_json::json!({
2414                "schema_ref": schema_ref,
2415                "stamped_path": stamped_path,
2416                "mems": mems,
2417            }),
2418            Self::SchemaAuthoringSourceDiverged {
2419                schema_ref,
2420                stamped_path,
2421                mems,
2422                detail,
2423            } => serde_json::json!({
2424                "schema_ref": schema_ref,
2425                "stamped_path": stamped_path,
2426                "mems": mems,
2427                "detail": detail,
2428            }),
2429            Self::SchemaUnstampedSourceRot {
2430                schema_ref,
2431                mems,
2432                detail,
2433            } => serde_json::json!({
2434                "schema_ref": schema_ref,
2435                "mems": mems,
2436                "detail": detail,
2437            }),
2438            Self::AmbiguousDescriptionDelimiter {
2439                from,
2440                rel_type,
2441                target,
2442                trailing,
2443            } => serde_json::json!({
2444                "from": from,
2445                "rel_type": rel_type,
2446                "target": target,
2447                "trailing": trailing,
2448            }),
2449            Self::ParseMissingRequiredDescription {
2450                from,
2451                rel_type,
2452                target,
2453            } => {
2454                serde_json::json!({ "from": from, "rel_type": rel_type, "target": target })
2455            }
2456            Self::ParseDescriptionNotPermitted {
2457                from,
2458                rel_type,
2459                target,
2460            } => {
2461                serde_json::json!({ "from": from, "rel_type": rel_type, "target": target })
2462            }
2463            Self::SchemaPinMismatch {
2464                mem,
2465                config_pin,
2466                mount_pin,
2467            } => {
2468                serde_json::json!({
2469                    "mem": mem,
2470                    "config_pin": config_pin,
2471                    "mount_pin": mount_pin,
2472                })
2473            }
2474            Self::SchemaHeadingRoundtripViolation {
2475                mem,
2476                schema_ref,
2477                violations,
2478            } => {
2479                serde_json::json!({
2480                    "mem": mem,
2481                    "schema_ref": schema_ref,
2482                    "violations": violations,
2483                })
2484            }
2485            Self::SectionHeadingDivergence {
2486                entity_id,
2487                section_key,
2488                writing_heading,
2489                existing_heading,
2490            } => {
2491                serde_json::json!({
2492                    "entity_id": entity_id,
2493                    "section_key": section_key,
2494                    "writing_heading": writing_heading,
2495                    "existing_heading": existing_heading,
2496                })
2497            }
2498        }
2499    }
2500}
2501
2502impl Serialize for WarningHint {
2503    fn serialize<S: Serializer>(&self, serializer: S) -> Result<S::Ok, S::Error> {
2504        // Direct struct emission — avoids the intermediate `Value` allocation
2505        // `envelope(...).serialize(serializer)` would incur. Wire shape is
2506        // bit-identical to `envelope(...)`'s output; DRY lives at the
2507        // constructor level via the shared `envelope` helper used by the MCP
2508        // error path (`engine_err_with_suggestions`).
2509        let details = self.details_payload();
2510        let mut state = serializer.serialize_struct("WarningHint", 3)?;
2511        state.serialize_field("code", self.code())?;
2512        state.serialize_field("message", &self.message())?;
2513        state.serialize_field("details", &details)?;
2514        state.end()
2515    }
2516}
2517
2518/// Build the uniform `{ code, message, details }` envelope used on both the
2519/// warning wire (`WarningHint`'s custom `Serialize`) and the MCP error wire
2520/// (`tool_error_with_payload` payloads in `engine_err_with_suggestions`).
2521/// Agents and other decoders branch on `code` (UPPER_SNAKE_CASE, stable)
2522/// and parse `details` by `code` when they need structured fields.
2523pub fn envelope(
2524    code: &str,
2525    message: impl Into<String>,
2526    details: serde_json::Value,
2527) -> serde_json::Value {
2528    serde_json::json!({
2529        "code": code,
2530        "message": message.into(),
2531        "details": details,
2532    })
2533}
2534
2535/// Result of a create operation.
2536#[derive(Debug, Clone, Serialize)]
2537pub struct CreateResult {
2538    pub id: EntityId,
2539    pub title: String,
2540    pub mem: String,
2541    pub file_path: String,
2542    pub created_date: String,
2543    /// Post-write content hash under the real path; the **prospective**
2544    /// hash under `dry_run` — bit-identical to what a real call with the
2545    /// same inputs would produce. Wire key `_hash`.
2546    #[serde(rename = "_hash")]
2547    pub content_hash: String,
2548    /// Per-mem commit SHA — see `UpdateResult::commit_sha`. Empty under
2549    /// `dry_run`.
2550    #[serde(default)]
2551    pub commit_sha: String,
2552    /// Typed non-fatal issues — missing required sections (with writing
2553    /// guidance) and open-mode relationship admissions.
2554    #[serde(default, skip_serializing_if = "Vec::is_empty")]
2555    pub warnings: Vec<WarningHint>,
2556    /// Type-level `write_rules` keyed by `entity_type` — the
2557    /// MISSING_REQUIRED_SECTION / MISSING_REQUIRED_FIELD warnings on
2558    /// `warnings[]` reference this top-level map via their
2559    /// `entity_type` field rather than each carrying the (identical,
2560    /// type-axis) array (F9). Stable empty shape (`{}`) ships when no
2561    /// such warnings fire — consumers don't branch on field presence.
2562    #[serde(default)]
2563    pub type_guidance: std::collections::BTreeMap<String, Vec<String>>,
2564    /// Number of incoming edges adopted from a pre-existing stub at this
2565    /// id (real path) or that would be adopted (dry_run). `None` means
2566    /// no pre-existing stub / no incoming refs — field is serde-omitted.
2567    #[serde(skip_serializing_if = "Option::is_none")]
2568    pub incoming_count: Option<usize>,
2569    /// Incoming edges present at this id at create time. Real path:
2570    /// edges preserved during stub adoption. Dry_run: edges that would
2571    /// be adopted if committed. Sorted by (rel_type, from) for
2572    /// determinism. Empty vec is serde-omitted.
2573    #[serde(default, skip_serializing_if = "Vec::is_empty")]
2574    pub incoming: Vec<IncomingRef>,
2575}
2576
2577/// Serialisable projection of `store::InEdge` for `CreateResult.incoming`.
2578/// `source` is the lowercase `EdgeSource` variant:
2579/// `"explicit" | "hierarchy" | "body_link"`.
2580#[derive(Debug, Clone, Serialize)]
2581pub struct IncomingRef {
2582    pub from: EntityId,
2583    pub rel_type: String,
2584    pub source: String,
2585}
2586
2587/// Project `&[store::InEdge]` into a sorted `Vec<IncomingRef>`. Ordering
2588/// by (rel_type, from) ascending — deterministic output despite the
2589/// underlying HashMap iteration order.
2590pub fn project_incoming(edges: &[crate::store::InEdge]) -> Vec<IncomingRef> {
2591    let mut out: Vec<IncomingRef> = edges
2592        .iter()
2593        .map(|e| IncomingRef {
2594            from: e.from.clone(),
2595            rel_type: e.rel_type.clone(),
2596            source: match e.source {
2597                crate::store::EdgeSource::Explicit => "explicit",
2598                crate::store::EdgeSource::Hierarchy => "hierarchy",
2599                crate::store::EdgeSource::BodyLink => "body_link",
2600            }
2601            .to_string(),
2602        })
2603        .collect();
2604    out.sort_by(|a, b| a.rel_type.cmp(&b.rel_type).then(a.from.0.cmp(&b.from.0)));
2605    out
2606}
2607
2608/// Result of a delete operation.
2609#[derive(Debug, Clone, Serialize)]
2610pub struct DeleteResult {
2611    pub id: EntityId,
2612    pub relations_removed: usize,
2613    /// Per-mem commit SHA — see `UpdateResult::commit_sha`.
2614    #[serde(default)]
2615    pub commit_sha: String,
2616    /// Stub entities that became orphaned by this delete (their last
2617    /// incoming edge disappeared with this entity) and were garbage-
2618    /// collected. Empty vec is serde-omitted.
2619    #[serde(default, skip_serializing_if = "Vec::is_empty")]
2620    pub orphan_stubs_removed: Vec<EntityId>,
2621}
2622
2623/// Result of a rename operation.
2624#[derive(Debug, Clone, Serialize)]
2625pub struct RenameResult {
2626    pub old_id: EntityId,
2627    pub new_id: EntityId,
2628    pub old_path: String,
2629    pub new_path: String,
2630    /// Content hash of the renamed entity after the write. Sources by branch:
2631    ///   - Real rename (slug change): post-write hash from the re-parsed
2632    ///     entity, including the `modified_date` bump applied by
2633    ///     `rename_entity` and any wiki-link rewrites in referrers.
2634    ///   - Slug-noop short-circuit: the unchanged on-disk hash (no write
2635    ///     happened).
2636    ///
2637    /// Pass this as `expected_hash` on the next hash-protected op
2638    /// (`memstead_update`, `memstead_rename`, `memstead_delete`) on the entity — no
2639    /// `memstead_entity` re-read required. Mirrors `RelateResult._hash`.
2640    /// Wire key `_hash`.
2641    #[serde(default, rename = "_hash", skip_serializing_if = "String::is_empty")]
2642    pub content_hash: String,
2643    /// Per-mem commit SHA — see `UpdateResult::commit_sha`. Empty on the
2644    /// no-op same-title rename (no file change, no commit).
2645    #[serde(default)]
2646    pub commit_sha: String,
2647    /// Typed non-fatal issues. The slug-noop short-circuit
2648    /// (`TitleNormalizedToSlugNoop`) surfaces here when a requested title
2649    /// normalises to the existing slug — the op stays a silent no-op on
2650    /// disk, but the warning tells autonomous skills not to trust
2651    /// `old_id == new_id` as "cosmetic rewrite landed".
2652    #[serde(default, skip_serializing_if = "Vec::is_empty")]
2653    pub warnings: Vec<WarningHint>,
2654}
2655
2656/// Arguments for a relate/unrelate operation.
2657#[derive(Debug, Clone)]
2658pub struct RelateArg {
2659    pub to: EntityId,
2660    pub rel_type: String,
2661    /// Optional per-edge description text. Validated against the
2662    /// rel-type's `per_edge_description` posture at call time —
2663    /// `forbidden` rejects `Some`; `required` rejects `None`.
2664    /// Empty / whitespace-only strings normalise to `None` before
2665    /// validation.
2666    pub description: Option<String>,
2667}
2668
2669/// One repair-shaped relation removal on `memstead_update` —
2670/// `relations_unset: [{ rel_type, target }]`. Symmetric with
2671/// `metadata_unset`: an absent `(rel_type, target)` pair is a silent
2672/// no-op. Only accepted when the target entity currently fails the
2673/// conformance check (`REPAIR_NOT_NEEDED` otherwise) — the everyday
2674/// detach path stays `memstead_relate(remove)`.
2675#[derive(Debug, Clone, serde::Deserialize)]
2676pub struct RelationUnsetArg {
2677    pub rel_type: String,
2678    pub target: EntityId,
2679}
2680
2681/// Result of a relate operation.
2682#[derive(Debug, Clone, Serialize)]
2683pub struct RelateResult {
2684    pub from: EntityId,
2685    pub to: EntityId,
2686    pub rel_type: String,
2687    pub source: String,
2688    /// Content hash of the source entity after the relate. On successful
2689    /// add/remove, reflects the re-rendered file (Relationships section
2690    /// updated); on duplicate-add and remove-nonexistent no-ops, reflects
2691    /// the unchanged file. Pass this as `expected_hash` on the next
2692    /// hash-protected op (`memstead_update`, `memstead_rename`, `memstead_delete`) on
2693    /// the source — no `memstead_entity` re-read required. Wire key `_hash`.
2694    #[serde(default, rename = "_hash", skip_serializing_if = "String::is_empty")]
2695    pub content_hash: String,
2696    /// Per-mem commit SHA — see `UpdateResult::commit_sha`.
2697    #[serde(default)]
2698    pub commit_sha: String,
2699    /// Typed non-fatal issues — open-mode schema admissions, duplicate-add
2700    /// no-ops (`DuplicateRelationship`), remove-nonexistent no-ops
2701    /// (`NoSuchRelationship`). Previously silent edge cases now surface here.
2702    #[serde(default, skip_serializing_if = "Vec::is_empty")]
2703    pub warnings: Vec<WarningHint>,
2704    /// True if the op wrote to disk (real add or real remove). False on
2705    /// duplicate-add and remove-nonexistent-edge. Internal signal — the
2706    /// wrapper gates reindex + vcs_commit on this; the MCP wire relies on
2707    /// `commit_sha.is_empty()` as the external no-op indicator.
2708    #[serde(skip)]
2709    pub disk_changed: bool,
2710    /// Stub entities that became orphaned by an edge removal (their last
2711    /// incoming edge was this one) and were garbage-collected. Only
2712    /// populated on `remove: true` calls where the edge actually existed;
2713    /// empty on add paths and no-op removes. Empty vec is serde-omitted.
2714    #[serde(default, skip_serializing_if = "Vec::is_empty")]
2715    pub orphan_stubs_removed: Vec<EntityId>,
2716}
2717
2718fn is_zero(n: &usize) -> bool {
2719    *n == 0
2720}
2721
2722/// Result of an **atomic** batch update — all-or-nothing.
2723///
2724/// A batch either applies in full as a single commit (`applied: true`)
2725/// or, if any item fails (validation, hash mismatch, missing entity),
2726/// applies *nothing* and refuses (`applied: false`) with the offending
2727/// item named. There is no partial-application middle state: a refused
2728/// batch leaves the on-disk mem and the in-memory store byte-identical
2729/// to the pre-call state.
2730#[derive(Debug, Clone, Serialize)]
2731pub struct BatchResult {
2732    /// `true` when every item applied (one commit); `false` when the
2733    /// batch was refused (a single item failed → nothing committed).
2734    pub applied: bool,
2735    /// One entry per submitted item, in submission order. On an applied
2736    /// batch every entry's `action` is `"updated"` (a real write) or
2737    /// `"noop"` (content unchanged). On a refused batch the failing
2738    /// item's `action` is `"error"` with a populated `error` envelope,
2739    /// and every other item's `action` is `"not_applied"`.
2740    pub results: Vec<BatchEntry>,
2741    /// Count of applied items when `applied`; `0` when refused.
2742    pub succeeded: usize,
2743    /// Number of FAILING entries whose error envelopes were suppressed
2744    /// beyond the reporting cap (bounded reporting for very large
2745    /// failing batches — the entries still carry `action: "error"`,
2746    /// only the detailed envelope is omitted). `0` when every failure
2747    /// is fully reported.
2748    #[serde(default, skip_serializing_if = "is_zero")]
2749    pub errors_suppressed: usize,
2750    /// Count of failed items when refused (≥1); `0` when applied.
2751    pub failed: usize,
2752    /// Ids of stub entities GC'd because a removed edge in this batch
2753    /// was their last incoming reference — the batch sibling of the
2754    /// single relate response's `orphan_stubs_removed`. Empty (and
2755    /// serde-omitted) for batch-create / batch-update and for batches
2756    /// that removed nothing.
2757    #[serde(default, skip_serializing_if = "Vec::is_empty")]
2758    pub orphan_stubs_removed: Vec<EntityId>,
2759    /// The single batch commit SHA when the batch applied and produced
2760    /// at least one write — an honest `memstead_changes_since` cursor /
2761    /// revert handle for the whole batch. Empty when the batch was
2762    /// refused, when it was empty, or when every item was a no-op (no
2763    /// commit happens). For a batch spanning multiple mems this names
2764    /// the last mem committed; single-mem batches (the common case)
2765    /// name their one commit.
2766    #[serde(default)]
2767    pub commit_sha: String,
2768}
2769
2770#[derive(Debug, Clone, Serialize)]
2771pub struct BatchEntry {
2772    pub id: EntityId,
2773    pub action: String,
2774    /// Structured error envelope when this entry failed. Mirrors the
2775    /// `{code, message, details}` shape single-update errors carry on
2776    /// the wire so a mixed-success batch is structurally uniform —
2777    /// consumers branch on `code` rather than prose-parsing a string.
2778    /// Empty (`None`) for successful entries.
2779    pub error: Option<BatchError>,
2780}
2781
2782/// Per-item error envelope on a batch result. The shape matches the
2783/// MCP wire envelope for single-entry failures: `code` is the stable
2784/// `UPPER_SNAKE_CASE` token from [`crate::EngineError::code()`];
2785/// `details` carries the variant-specific recovery payload (e.g.
2786/// declared list, allowed enum values, hash-mismatch current) when
2787/// available, or an empty object for variants without a structured
2788/// payload.
2789#[derive(Debug, Clone, Serialize)]
2790pub struct BatchError {
2791    pub code: String,
2792    pub message: String,
2793    pub details: serde_json::Value,
2794}
2795
2796// ---------------------------------------------------------------------------
2797// Search types
2798// ---------------------------------------------------------------------------
2799
2800/// Flat query shape for full-text search. Four optional fields, all
2801/// combined with implicit AND across fields.
2802///
2803/// Within `any`: at least one term must match (OR semantics). Entities
2804/// matching more terms rank higher automatically — no explicit `and`.
2805/// Within `not`: none of the listed terms may appear. `phrase` requires
2806/// exact adjacency (case- and diacritic-folded). `field` narrows the match
2807/// region for all three to a single indexed field; `None` = match anywhere
2808/// indexed.
2809///
2810/// Empty/unset everywhere ⇒ no text predicate; `search` behaves as a
2811/// metadata-only filter (subsumes the former `list` semantics).
2812///
2813/// No stemming, wildcards, or regex — the caller expands morphology and
2814/// synonyms by enumerating variants in `any`.
2815#[derive(Debug, Clone, Default, Serialize, Deserialize, JsonSchema)]
2816pub struct Query {
2817    /// Terms where at least one must match (OR semantics).
2818    #[serde(default, skip_serializing_if = "Vec::is_empty")]
2819    pub any: Vec<String>,
2820    /// Terms that must not match (exclusion).
2821    #[serde(default, skip_serializing_if = "Vec::is_empty")]
2822    pub not: Vec<String>,
2823    /// Exact phrase that must appear (case- and diacritic-folded).
2824    #[serde(default, skip_serializing_if = "Option::is_none")]
2825    pub phrase: Option<String>,
2826    /// Restrict `any` / `not` / `phrase` to a single field (title or section
2827    /// key). `None` = match anywhere indexed.
2828    #[serde(default, skip_serializing_if = "Option::is_none")]
2829    pub field: Option<String>,
2830}
2831
2832impl Query {
2833    /// True if no text predicate is set — caller falls back to the
2834    /// metadata-only filter path.
2835    pub fn is_empty(&self) -> bool {
2836        self.any.is_empty() && self.not.is_empty() && self.phrase.is_none()
2837    }
2838}
2839
2840/// Scope filters for search and list operations.
2841#[derive(Debug, Clone, Default)]
2842pub struct SearchScope {
2843    /// Structured flat query. All text matching flows through this field;
2844    /// see [`Query`] for semantics. `None` (or an empty query) makes
2845    /// `search` behave as a metadata-only filter.
2846    pub query: Option<Query>,
2847    pub mem: Option<String>,
2848    pub entity_type: Option<String>,
2849    pub limit: Option<usize>,
2850    pub offset: Option<usize>,
2851    /// Equality filters on metadata fields: `{ "level": "M0" }`.
2852    pub filters: HashMap<String, String>,
2853    /// Range filters: `{ "min_coverage": "0.5", "max_coverage": "1.0" }`.
2854    pub range_filters: HashMap<String, String>,
2855    /// Only entities with this edge type (incoming or outgoing).
2856    pub edge_type: Option<String>,
2857    /// Only entities reachable from this entity within `depth` hops.
2858    pub related_to: Option<EntityId>,
2859    pub depth: Option<usize>,
2860    /// Relationship types to follow from primary hits to pull in graph-proximal
2861    /// neighbours.
2862    pub expand_via: Option<Vec<String>>,
2863    /// Maximum hops to traverse via `expand_via` (default: 1 when `expand_via`
2864    /// is set).
2865    pub expand_depth: Option<usize>,
2866    /// Traversal direction for `related_to` AND `expand_via`, applied at
2867    /// EVERY hop (depth > 1 is a pure transitive closure in the chosen
2868    /// direction, never a mixed walk). Defaults to `both` — the
2869    /// historical undirected behaviour, so a query omitting the
2870    /// selector returns exactly what it always returned.
2871    pub direction: crate::graph::query::TraversalDirection,
2872    /// Filter by stub status. `None` = no filter (returns both stubs and real
2873    /// entities); `Some(true)` = only stubs; `Some(false)` = only real entities.
2874    pub stub: Option<bool>,
2875    /// Token budget bounding the returned hit payload (search path only).
2876    /// `None` uses the engine default. A page whose hits exceed the budget is
2877    /// greedily trimmed (at least one hit always returns) with a
2878    /// `SEARCH_RESULTS_TRUNCATED` warning; `total` still reflects the full
2879    /// match count so the agent can page with `offset`.
2880    pub token_budget: Option<usize>,
2881}
2882
2883/// Per-hit score components surfaced so agents can understand ranking.
2884///
2885/// Note: this is illustrative feedback, not a numerically authoritative
2886/// decomposition — tantivy's `Explanation` for `BoostQuery` over
2887/// `BooleanQuery` does not always sum cleanly. Agents should treat these
2888/// as proportions, not exact sums.
2889#[derive(Debug, Clone, Serialize, JsonSchema)]
2890pub struct ScoreBreakdown {
2891    pub bm25: f32,
2892    pub title_boost: f32,
2893    pub field_weights: HashMap<String, f32>,
2894    /// `Some(f32)` on expanded hits only, carrying the depth-based decay
2895    /// factor (`0.5.powi(depth)`). `None` on primary hits.
2896    #[serde(default, skip_serializing_if = "Option::is_none")]
2897    pub expansion_decay: Option<f32>,
2898}
2899
2900/// One snippet-level match recorded per (term, field). `heading_path` is
2901/// `Some` when the match falls under an H3–H6 sub-heading; elements are
2902/// ordered outermost → innermost.
2903#[derive(Debug, Clone, Serialize, JsonSchema)]
2904pub struct TermMatch {
2905    pub field: String,
2906    pub snippet: String,
2907    #[serde(default, skip_serializing_if = "Option::is_none")]
2908    pub heading_path: Option<Vec<String>>,
2909}
2910
2911/// Metadata attached to hits reached via graph expansion. The
2912/// primary hit that seeded the expansion is identified by `of`; `via_edge`
2913/// is the exact `rel_type` string; `depth` counts hops from the seed.
2914#[derive(Debug, Clone, Serialize, JsonSchema)]
2915pub struct ExpansionInfo {
2916    pub of: EntityId,
2917    pub via_edge: String,
2918    pub depth: usize,
2919    /// The direction the first-reaching edge was traversed in (`out` =
2920    /// away from the seed, `in` = at the seed) — keeps a `both` result
2921    /// interpretable. Additive: clients that ignore it decode unchanged.
2922    pub via_direction: crate::graph::query::TraversalDirection,
2923}
2924
2925/// One sub-section-level facet entry. `path` is ordered outermost →
2926/// innermost, prefixed with the H2 section key (e.g. `["specifies",
2927/// "Response Shapes", "Markdown Output"]`). Structured vector (not a
2928/// delimiter-joined string) so headings containing punctuation don't break
2929/// the key.
2930#[derive(Debug, Clone, Serialize, JsonSchema)]
2931pub struct SubsectionFacet {
2932    pub path: Vec<String>,
2933    pub count: usize,
2934}
2935
2936/// Fixed set of facet dimensions computed over the unpaginated hit set.
2937/// Tier 1 freezes the dimensions; extend later only if empirical use
2938/// demands it. Zero-count entries are excluded to keep the payload small.
2939#[derive(Debug, Clone, Default, Serialize, JsonSchema)]
2940pub struct Facets {
2941    pub by_type: HashMap<String, usize>,
2942    pub by_mem: HashMap<String, usize>,
2943    pub by_level: HashMap<String, usize>,
2944    pub by_status: HashMap<String, usize>,
2945    pub by_confidence: HashMap<String, usize>,
2946    pub by_subsection: Vec<SubsectionFacet>,
2947    /// `"primary"` / `"expanded"` — counts of primary vs. graph-expanded
2948    /// hits. Always present; `expanded` is `0` when no expansion ran.
2949    pub by_expansion: HashMap<String, usize>,
2950}
2951
2952/// A search result hit.
2953#[derive(Debug, Clone, Serialize)]
2954pub struct SearchHit {
2955    pub id: EntityId,
2956    pub title: String,
2957    pub mem: String,
2958    pub entity_type: String,
2959    pub stub: bool,
2960    pub score: f32,
2961    pub tokens: usize,
2962    /// The entity's `last_modified` stamp (RFC-3339 date) — list/roster
2963    /// consumers (the app's Liste, agents asking "what moved lately")
2964    /// sort on it without per-entity reads. `None` for stubs and hits
2965    /// built outside the engine ops.
2966    #[serde(default, skip_serializing_if = "Option::is_none")]
2967    pub last_modified: Option<String>,
2968    pub snippet: Option<String>,
2969    /// Lead/key section bodies for the hit. The `search` op leaves this
2970    /// **empty** — search finds entities, `memstead_entity` reads their
2971    /// bodies; carrying every required section per hit overflowed the MCP
2972    /// transport cap. The `list` op still populates it (its human-facing
2973    /// roster consumers read the lead section as a one-line summary).
2974    /// Empty maps are omitted from the serialized envelope.
2975    #[serde(default, skip_serializing_if = "HashMap::is_empty")]
2976    pub sections: HashMap<String, String>,
2977    /// Score component breakdown — populated when the call supplied a
2978    /// text predicate; `None` on the metadata-only path.
2979    #[serde(default, skip_serializing_if = "Option::is_none")]
2980    pub score_breakdown: Option<ScoreBreakdown>,
2981    /// Per-term match details keyed by query term — populated when the
2982    /// call supplied a text predicate; `None` on the metadata-only path.
2983    #[serde(default, skip_serializing_if = "Option::is_none")]
2984    pub matched_terms: Option<HashMap<String, Vec<TermMatch>>>,
2985    /// Expansion metadata — populated on hits reached via graph
2986    /// expansion; `None` on primary hits.
2987    #[serde(default, skip_serializing_if = "Option::is_none")]
2988    pub expansion: Option<ExpansionInfo>,
2989    /// Lead-section summary resolved against the hit's *own* mem schema
2990    /// at search time (see [`SummaryPair`]). The renderer cannot resolve
2991    /// it correctly on its own — the global `type_by_name` only sees the
2992    /// `default` schema, so a `software`-schema hit (`requirement` →
2993    /// `Statement`, `actor` → `Role`) would miss its anchor section and
2994    /// render `—`. `#[serde(skip)]` keeps `SearchHit`'s wire shape
2995    /// unchanged; the value surfaces on the envelope's `summary_heading` /
2996    /// `summary_value`. `None` only on hits built outside the engine
2997    /// search op (FFI/bridge and test fixtures), where the renderer falls
2998    /// back to the default-schema lookup.
2999    #[serde(skip)]
3000    pub summary: Option<SummaryPair>,
3001}
3002
3003/// Lead-section `(heading, value)` for a search/list hit, resolved
3004/// against the hit's own mem schema at search time. Carried in-memory
3005/// from the search op to the renderers; see [`SearchHit::summary`].
3006#[derive(Debug, Clone)]
3007pub struct SummaryPair {
3008    pub heading: String,
3009    pub value: String,
3010}
3011
3012/// Search result with metadata.
3013#[derive(Debug, Clone, Serialize)]
3014pub struct SearchResult {
3015    pub total: usize,
3016    pub returned: usize,
3017    pub offset: usize,
3018    /// Sum of estimated tokens across all matching entities (pre-pagination).
3019    /// Lets agents judge read cost before paging.
3020    pub total_tokens: usize,
3021    pub hits: Vec<SearchHit>,
3022    /// Faceted counts over the unpaginated hit set. Stable closed
3023    /// struct; zero-count entries are excluded.
3024    #[serde(default, skip_serializing_if = "Option::is_none")]
3025    pub facets: Option<Facets>,
3026    /// Non-fatal issues surfaced to the caller. Structured
3027    /// `WarningHint` shape (`{code, details, message}`) — same wire
3028    /// envelope every other tool's warnings already use. Agents
3029    /// branch on `code`; the message field carries the existing
3030    /// remediation prose.
3031    #[serde(default, skip_serializing_if = "Vec::is_empty")]
3032    pub warnings: Vec<WarningHint>,
3033}
3034
3035/// List result with token totals.
3036#[derive(Debug, Clone, Serialize)]
3037pub struct ListResult {
3038    pub total: usize,
3039    pub returned: usize,
3040    pub offset: usize,
3041    pub total_tokens: usize,
3042    pub hits: Vec<SearchHit>,
3043    /// Non-fatal issues surfaced to the caller — same structured
3044    /// shape as `SearchResult.warnings`.
3045    #[serde(default, skip_serializing_if = "Vec::is_empty")]
3046    pub warnings: Vec<WarningHint>,
3047}
3048
3049// ---------------------------------------------------------------------------
3050// Health types
3051// ---------------------------------------------------------------------------
3052
3053/// Health check result for one entity.
3054#[derive(Debug, Clone, Serialize)]
3055pub struct HealthReport {
3056    pub id: EntityId,
3057    pub title: String,
3058    pub score: f32,
3059    pub issues: Vec<HealthIssue>,
3060}
3061
3062/// Machine-readable condition discriminator for a [`HealthIssue`] —
3063/// the enumeration lives here, with the issue type, and is never
3064/// re-derived per projection. A projection that lists issues carries
3065/// the code; the code is NEVER only a message-string prefix (a
3066/// projection that drops messages would silently collapse distinct
3067/// conditions — the exact misdirection `SECTION_HEADING_MISMATCH`
3068/// exists to prevent).
3069#[derive(Debug, Clone, Copy, PartialEq, Eq, Serialize)]
3070#[serde(rename_all = "SCREAMING_SNAKE_CASE")]
3071pub enum HealthIssueCode {
3072    /// The required section/field is genuinely absent or empty.
3073    Missing,
3074    /// The section's content is present in the file but sits under a
3075    /// heading that does not derive back to the section key — NOT
3076    /// missing; fix the schema's heading/key pair.
3077    SectionHeadingMismatch,
3078    /// The entity carries a relationship whose rel-type the mem's
3079    /// schema does not declare.
3080    UndeclaredRelationship,
3081    /// An existing edge violates the rel-type's declared
3082    /// `source_types` / `target_types` shape.
3083    InvalidRelShape,
3084}
3085
3086impl HealthIssueCode {
3087    /// Stable wire string — matches the serde `SCREAMING_SNAKE_CASE`
3088    /// serialization, exposed for text renderers.
3089    pub fn as_wire(&self) -> &'static str {
3090        match self {
3091            HealthIssueCode::Missing => "MISSING",
3092            HealthIssueCode::SectionHeadingMismatch => "SECTION_HEADING_MISMATCH",
3093            HealthIssueCode::UndeclaredRelationship => "UNDECLARED_RELATIONSHIP",
3094            HealthIssueCode::InvalidRelShape => "INVALID_REL_SHAPE",
3095        }
3096    }
3097}
3098
3099#[derive(Debug, Clone, Serialize)]
3100pub struct HealthIssue {
3101    pub field: String,
3102    /// Which condition this issue reports — see [`HealthIssueCode`].
3103    pub code: HealthIssueCode,
3104    pub message: String,
3105}
3106
3107/// One quarantine-roster entry on [`HealthSummary`]: the mem, the
3108/// typed reason code, and the full reason message (repair command
3109/// included — plan-01 material).
3110#[derive(Debug, Clone, serde::Serialize, serde::Deserialize)]
3111pub struct QuarantinedMemReport {
3112    pub mem: String,
3113    pub reason_code: String,
3114    pub reason_message: String,
3115}
3116
3117/// One per-file load failure surfaced on the health report. `file` is
3118/// the path the loader reported (absolute for folder mounts after the
3119/// reload-normalization pass); `error` is the loader's message, which
3120/// names the remedy where one exists (the merge-conflict refusal names
3121/// `memstead conflicts resolve`).
3122#[derive(Debug, Clone, serde::Serialize)]
3123pub struct LoadErrorReport {
3124    pub file: String,
3125    pub error: String,
3126}
3127
3128/// Aggregated health report for the whole graph.
3129#[derive(Debug, Clone, Serialize)]
3130pub struct HealthSummary {
3131    pub stale_entities: Vec<StaleEntity>,
3132    pub missing_fields: Vec<HealthReport>,
3133    pub orphan_count: usize,
3134    pub stub_count: usize,
3135    /// Typed non-fatal issues visible to every caller of `Engine::health()`.
3136    /// Populated in two layers: `Engine.load_warnings` contributes drift
3137    /// warnings surfaced during mem load / reload / attach
3138    /// (`SuspiciousNestedPrefix`, future load-time checks); the MCP
3139    /// handler additionally appends request-scoped warnings (unknown
3140    /// `include` keys, clamped `limit`) on top of whatever the engine
3141    /// merged. Empty on the happy path.
3142    #[serde(default, skip_serializing_if = "Vec::is_empty")]
3143    pub warnings: Vec<WarningHint>,
3144    /// Quarantine roster: mems that failed their mem-level boot step
3145    /// and serve nothing until repaired + reloaded. Always present in
3146    /// `Engine::health()` output when non-empty — a boot-honesty fact,
3147    /// never behind an include gate. Empty (and omitted from the wire)
3148    /// on a healthy workspace, keeping default output byte-unchanged.
3149    #[serde(default, skip_serializing_if = "Vec::is_empty")]
3150    pub quarantined: Vec<QuarantinedMemReport>,
3151    /// Per-file load failures: entity files the loader refused (git
3152    /// merge-conflict markers, unreadable bytes, parser failures). The
3153    /// same boot-honesty class as `quarantined` — always present when
3154    /// non-empty, never behind an include gate — because each entry's
3155    /// message names the remedy (e.g. the conflict refusal names
3156    /// `memstead conflicts resolve`), and a remedy no surface renders
3157    /// is a capability nobody finds at the moment it is needed. Empty
3158    /// (and omitted from the wire) on a clean workspace.
3159    #[serde(default, skip_serializing_if = "Vec::is_empty")]
3160    pub load_errors: Vec<LoadErrorReport>,
3161    /// Workspace-level boot diagnosis from a diagnostic-shell engine
3162    /// (`{code, message}`): why the real workspace could not boot at
3163    /// all. Absent on every ordinarily booted engine.
3164    #[serde(default, skip_serializing_if = "Option::is_none")]
3165    pub boot_diagnosis: Option<serde_json::Value>,
3166    /// Real-entity count per leaf-declared type (`<schema_ref>:<type>`
3167    /// keys) — the population the orphan axis exempts because those
3168    /// types are terminal by construction (agent-trust plan 06).
3169    /// Visible, never vanished. Empty (and omitted from the wire) for
3170    /// schemas that declare nothing, keeping default output
3171    /// byte-unchanged.
3172    #[serde(default, skip_serializing_if = "std::collections::BTreeMap::is_empty")]
3173    pub leaf_entities_by_type: std::collections::BTreeMap<String, usize>,
3174    /// Inline wiki-links in entity section bodies that resolve to stub
3175    /// targets (no on-disk markdown file). Populated only when the caller
3176    /// opts in via `include=["dangling_links"]`; `None` otherwise, so
3177    /// absence-of-key means "not requested" and presence-of-empty-array
3178    /// means "requested, zero findings". Scan is handler-driven (same
3179    /// pattern as `warnings` above), so non-MCP callers of
3180    /// `Engine::health()` always see `None` unless they invoke
3181    /// [`health::collect_dangling_links`] directly.
3182    #[serde(default, skip_serializing_if = "Option::is_none")]
3183    pub dangling_links: Option<Vec<DanglingLink>>,
3184    /// Integrity findings (`{ id, axis, code, detail }`) over the
3185    /// conformance axis — and, under `include=["integrity"]`, the
3186    /// consistency axis too. Populated only when the caller opts in
3187    /// via `include=["conformance"]` / `include=["integrity"]`;
3188    /// `None` otherwise (same handler-driven pattern as
3189    /// `dangling_links`: absence means "not requested", an empty
3190    /// array means "requested, fully integral").
3191    #[serde(default, skip_serializing_if = "Option::is_none")]
3192    pub findings: Option<Vec<integrity::IntegrityFinding>>,
3193    /// Tag distribution (count per distinct tag, case-sensitive) over non-stub
3194    /// entities. Populated only when the caller opts in via `include=["tags"]`.
3195    /// Case-variant drift is surfaced via the sibling field [`tag_distribution_folded`].
3196    #[serde(default, skip_serializing_if = "Option::is_none")]
3197    pub tag_distribution: Option<Vec<TagDistribution>>,
3198    /// Case-drift audit sidecar: entries where two or more casings of the same
3199    /// canonical tag (lowercase) both appear in authored tags. Only entries with
3200    /// `variants.len() > 1` are returned — the default read of `tag_distribution`
3201    /// stays untouched. Populated alongside `tag_distribution`.
3202    #[serde(default, skip_serializing_if = "Option::is_none")]
3203    pub tag_distribution_folded: Option<Vec<FoldedTag>>,
3204    /// Count of non-stub entities whose `tags` metadata is missing, empty,
3205    /// or resolves to zero effective tags after splitting on `,` and trimming.
3206    /// Populated alongside `tag_distribution` when `include=["tags"]`.
3207    #[serde(default, skip_serializing_if = "Option::is_none")]
3208    pub untagged_entities: Option<UntaggedStats>,
3209}
3210
3211#[derive(Debug, Clone, Serialize)]
3212pub struct StaleEntity {
3213    pub id: EntityId,
3214    pub title: String,
3215    pub days_since_modified: u64,
3216}
3217
3218/// One entry in the tag distribution surface: an authored tag string, the
3219/// number of non-stub entities carrying it, and the per-entity-type breakdown
3220/// of those hits. Comparison is case-sensitive — `decision` and `Decision`
3221/// count as distinct entries here (see `tag_distribution_folded` for the
3222/// drift-aware sidecar).
3223#[derive(Debug, Clone, Serialize)]
3224pub struct TagDistribution {
3225    pub tag: String,
3226    pub count: usize,
3227    pub by_entity_type: HashMap<String, usize>,
3228}
3229
3230/// Case-drift audit entry. Surfaces when two or more casings of the same
3231/// canonical (lowercased) tag appear in the authored graph — the agent-hostile
3232/// bug where `decision` and `Decision` look like two healthy low-count tags
3233/// in the case-sensitive primary surface.
3234#[derive(Debug, Clone, Serialize)]
3235pub struct FoldedTag {
3236    /// Lowercase form — the canonical key.
3237    pub canonical: String,
3238    /// Sum of counts across every casing variant.
3239    pub total: usize,
3240    /// Authored casings (as-written), each with its individual count.
3241    /// Sorted by `count` descending; ties broken by `tag` ascending.
3242    pub variants: Vec<TagVariant>,
3243}
3244
3245#[derive(Debug, Clone, Serialize)]
3246pub struct TagVariant {
3247    pub tag: String,
3248    pub count: usize,
3249}
3250
3251/// Aggregate count of non-stub entities with zero effective tags, broken
3252/// down by `entity_type`. "Untagged" collapses three states: missing `tags`
3253/// metadata, empty string value, and comma-only value (e.g. `","`).
3254#[derive(Debug, Clone, Serialize)]
3255pub struct UntaggedStats {
3256    pub total: usize,
3257    pub by_entity_type: HashMap<String, usize>,
3258}
3259
3260/// One dangling wiki-link finding surfaced by
3261/// `memstead_health include=["dangling_links"]`. A link is dangling when its
3262/// resolved target is a stub (i.e. the markdown file does not exist on disk).
3263/// This is the post-delete / renamed-without-rewrite / typo signal.
3264#[derive(Debug, Clone, Serialize)]
3265pub struct DanglingLink {
3266    pub from: EntityId,
3267    /// Canonical ID the wiki-link resolves to. Stub-typed in the store.
3268    pub target_id: EntityId,
3269    /// Resolved mem-relative path segment of the target ID (e.g. `gone`
3270    /// for `specs--gone`). This is the normalised form the engine records —
3271    /// not the literal `[[…]]` characters as authored. Widening `WikiLink`
3272    /// to preserve the authored form is a future-work item if agents need
3273    /// grep-to-source precision.
3274    pub target_path: String,
3275    /// Section key in which the link appears (e.g. `"purpose"`). `None`
3276    /// only if the link appears outside any typed section — unusual but
3277    /// possible in free-form prose before the first heading.
3278    #[serde(skip_serializing_if = "Option::is_none")]
3279    pub section: Option<String>,
3280}
3281
3282// ---------------------------------------------------------------------------
3283// Export types
3284// ---------------------------------------------------------------------------
3285
3286/// Export result.
3287///
3288/// Workspace-wide `export_markdown` returns this struct with
3289/// `skipped_mounts` populated for every mount whose active backend
3290/// doesn't support
3291/// markdown regeneration in place (git-branch, archive). Per-mem
3292/// export against an incompatible backend short-circuits with
3293/// `EngineError::MarkdownExportUnsupportedBackend` instead.
3294#[derive(Debug, Clone, Serialize)]
3295pub struct ExportResult {
3296    pub written: usize,
3297    pub unchanged: usize,
3298    /// Mounts that the workspace-wide export declined to write
3299    /// because their backend doesn't support markdown regeneration.
3300    /// Empty on the happy path (every mount is folder-backed).
3301    #[serde(default, skip_serializing_if = "Vec::is_empty")]
3302    pub skipped_mounts: Vec<SkippedMount>,
3303}
3304
3305/// One mount declined by `export_markdown` because the active
3306/// backend doesn't support in-place markdown regeneration.
3307///
3308/// `reason` is a stable token (today: `"backend_does_not_support_markdown_export"`);
3309/// `active_backend` matches [`crate::workspace::MountStorage::backend_id`].
3310#[derive(Debug, Clone, Serialize)]
3311pub struct SkippedMount {
3312    pub mem: String,
3313    pub active_backend: String,
3314    pub reason: String,
3315}
3316
3317/// Result of a `.mem` mem-archive export.
3318#[derive(Debug, Clone, Serialize)]
3319pub struct MemExportResult {
3320    pub archive_path: String,
3321    pub name: String,
3322    pub version: String,
3323    pub entity_count: usize,
3324    pub size_bytes: u64,
3325    /// Cross-mem edges in the exported slice whose target won't travel
3326    /// inside this single-mem archive — `install` will reject the
3327    /// archive for each one. Surfaced at export time
3328    /// (`DANGLING_CROSS_MEM_EDGE_IN_EXPORT`) so the operator sees the
3329    /// install-time failure before sharing. Empty for a self-contained
3330    /// export.
3331    #[serde(default, skip_serializing_if = "Vec::is_empty")]
3332    pub dangling_cross_mem_edges: Vec<crate::validator::DanglingCrossMemEdge>,
3333}
3334
3335/// Result of `Engine::set_mem_version`. Carries the (mem,
3336/// old_version, new_version) triple so callers (CLI, MCP) can surface
3337/// the change without an extra read.
3338#[derive(Debug, Clone, Serialize)]
3339pub struct SetMemVersionOutcome {
3340    pub mem: String,
3341    /// Previous version. `None` when the mem config carried no
3342    /// version field before this call (pre-gate / externally-imported
3343    /// config, or the residual `MEM_CONFIG_INCOMPLETE` path).
3344    #[serde(default, skip_serializing_if = "Option::is_none")]
3345    pub old_version: Option<semver::Version>,
3346    pub new_version: semver::Version,
3347    /// Concurrent-drift warnings detected at the pre-write probe —
3348    /// e.g. `MemReloaded` when a sibling engine committed between
3349    /// this engine's last snapshot and the set-version write. Empty
3350    /// on the happy path. F1.
3351    #[serde(default, skip_serializing_if = "Vec::is_empty")]
3352    pub warnings: Vec<WarningHint>,
3353}
3354
3355/// Result of `Engine::set_mem_title`. Same shape discipline as
3356/// [`SetMemDescriptionOutcome`].
3357#[derive(Debug, Clone, Serialize)]
3358pub struct SetMemTitleOutcome {
3359    pub mem: String,
3360    #[serde(default, skip_serializing_if = "Option::is_none")]
3361    pub old_title: Option<String>,
3362    #[serde(default, skip_serializing_if = "Option::is_none")]
3363    pub new_title: Option<String>,
3364    #[serde(default, skip_serializing_if = "Vec::is_empty")]
3365    pub warnings: Vec<WarningHint>,
3366}
3367
3368/// Result of `Engine::set_mem_subject`. The block sets/clears as a
3369/// unit; old/new carry the whole block.
3370#[derive(Debug, Clone, Serialize)]
3371pub struct SetMemSubjectOutcome {
3372    pub mem: String,
3373    #[serde(default, skip_serializing_if = "Option::is_none")]
3374    pub old_subject: Option<memstead_schema::MemSubject>,
3375    #[serde(default, skip_serializing_if = "Option::is_none")]
3376    pub new_subject: Option<memstead_schema::MemSubject>,
3377    #[serde(default, skip_serializing_if = "Vec::is_empty")]
3378    pub warnings: Vec<WarningHint>,
3379}
3380
3381/// Result of `Engine::set_mem_description`. Carries the (mem,
3382/// old_description, new_description) triple so callers can surface
3383/// the change without an extra read.
3384#[derive(Debug, Clone, Serialize)]
3385pub struct SetMemDescriptionOutcome {
3386    pub mem: String,
3387    /// Previous description. `None` when the mem config carried no
3388    /// description before this call (the common case — mem creation
3389    /// seeds none).
3390    #[serde(default, skip_serializing_if = "Option::is_none")]
3391    pub old_description: Option<String>,
3392    /// The description now persisted; `None` when the call cleared it.
3393    #[serde(default, skip_serializing_if = "Option::is_none")]
3394    pub new_description: Option<String>,
3395    /// Concurrent-drift warnings detected at the pre-write probe.
3396    /// Empty on the happy path.
3397    #[serde(default, skip_serializing_if = "Vec::is_empty")]
3398    pub warnings: Vec<WarningHint>,
3399}
3400
3401/// Result of `Engine::set_mem_sync_state`. Carries the (mem, key,
3402/// previous-token) triple so callers (CLI, MCP) can surface the change
3403/// without an extra read. The token values are opaque to the engine —
3404/// see `MemConfig::sync_state`.
3405#[derive(Debug, Clone, Serialize)]
3406pub struct SetMemSyncStateOutcome {
3407    pub mem: String,
3408    /// The sync-state key that was set or cleared (opaque; the ingest
3409    /// layer keys per `(ingest, facet)`).
3410    pub key: String,
3411    /// Previous token under `key`, `None` when the key was unset before
3412    /// this call. Lets callers report set-vs-overwrite without a read.
3413    #[serde(default, skip_serializing_if = "Option::is_none")]
3414    pub previous: Option<String>,
3415    /// True when an empty token cleared an existing key. `false` for a
3416    /// set/overwrite and for a clear of an already-absent key (a no-op).
3417    pub removed: bool,
3418    /// Concurrent-drift warnings detected at the pre-write probe — e.g.
3419    /// `MemReloaded` when a sibling engine committed between this
3420    /// engine's last snapshot and the write. Empty on the happy path.
3421    #[serde(default, skip_serializing_if = "Vec::is_empty")]
3422    pub warnings: Vec<WarningHint>,
3423}
3424
3425// ---------------------------------------------------------------------------
3426// Context types
3427// ---------------------------------------------------------------------------
3428
3429/// Context around an entity — neighbors, community, related entities.
3430#[derive(Debug, Clone, Serialize)]
3431pub struct ContextResult {
3432    pub entity_id: EntityId,
3433    pub community: Option<String>,
3434    pub neighbors: Vec<NeighborInfo>,
3435}
3436
3437#[derive(Debug, Clone, Serialize)]
3438pub struct NeighborInfo {
3439    pub id: EntityId,
3440    pub title: String,
3441    pub relationship: String,
3442    pub direction: Direction,
3443}
3444
3445#[derive(Debug, Clone, Serialize)]
3446pub enum Direction {
3447    Outgoing,
3448    Incoming,
3449}
3450
3451// ---------------------------------------------------------------------------
3452// Status
3453// ---------------------------------------------------------------------------
3454
3455/// Graph status — node / edge counts and schema distribution. Renamed from
3456/// the former `Stats` when the `stats` command became `status` (bundle plan
3457/// `03-projection-promotion`, D11); the fields are unchanged so every caller's
3458/// payload stays byte-compatible.
3459#[derive(Debug, Clone, Serialize)]
3460pub struct Status {
3461    pub entity_count: usize,
3462    pub edge_count: usize,
3463    pub edge_types: HashMap<String, usize>,
3464    pub community_count: usize,
3465    pub mem_count: usize,
3466    pub types_in_use: Vec<String>,
3467}
3468
3469// ---------------------------------------------------------------------------
3470// Reload result
3471// ---------------------------------------------------------------------------
3472
3473#[derive(Debug, Clone, Serialize)]
3474pub struct ReloadResult {
3475    pub added: Vec<EntityId>,
3476    pub changed: Vec<EntityId>,
3477    pub removed: Vec<EntityId>,
3478}
3479
3480/// Per-mem reload outcome — produced by [`Engine::reload_one_mem`]
3481/// and surfaced verbatim in the `memstead_reload` MCP tool's response when
3482/// an explicit operator-triggered reload runs against a single mem.
3483/// Auto-reloads on the read path consume this internally and emit a
3484/// [`WarningHint::MemReloaded`] (which carries `mem`, `old_head`,
3485/// `new_head`, `entities_loaded` — the diff list is intentionally
3486/// omitted from the lean warning payload; agents that need it call
3487/// `memstead_changes_since` themselves with the supplied `old_head`).
3488///
3489/// `head_before` / `head_after` are hex-rendered SHAs (or
3490/// `EMPTY_TREE_SHA` for the no-baseline case) so the wire shape
3491/// matches what `memstead_changes_since` already accepts as `since`.
3492/// `changed_entity_ids` is the list of non-stub IDs whose
3493/// `content_hash` differs between the pre- and post-reload store
3494/// snapshots, plus every newly-added or newly-removed id — same
3495/// semantic as `ReloadResult { added, changed, removed }` flattened
3496/// into a single set so callers don't have to merge three lists.
3497#[derive(Debug, Clone, Serialize)]
3498pub struct ReloadReport {
3499    pub mem: String,
3500    pub head_before: String,
3501    pub head_after: String,
3502    pub entities_loaded: usize,
3503    pub changed_entity_ids: Vec<EntityId>,
3504}
3505
3506/// What `Engine::full_refresh` changed — and, just as deliberately,
3507/// what it SKIPPED. The refresh is additive-only: removals never take
3508/// effect warm, and this report is how the caller learns whether its
3509/// next call will succeed instead of guessing.
3510#[derive(Debug, Clone, Default, Serialize)]
3511pub struct FullRefreshReport {
3512    /// Schema versions (`name@version`) newly resolvable.
3513    pub schemas_added: Vec<String>,
3514    /// In-memory schema versions absent from the re-scanned sources —
3515    /// the removal was skipped; they stay resolvable until restart.
3516    pub schema_removals_skipped: Vec<String>,
3517    /// Mems newly mounted (cold-loaded like any boot-time mount).
3518    pub mems_mounted: Vec<String>,
3519    /// Mounted writable mems absent from the re-scanned manifest —
3520    /// the removal was skipped; they stay live until restart.
3521    pub mem_removals_skipped: Vec<String>,
3522    /// Per-item failures: a source or mount that failed to refresh.
3523    /// Failed items never surface as newly available; the others
3524    /// proceed.
3525    pub failures: Vec<RefreshFailure>,
3526    /// Wall-clock cost of the refresh (the bounded-cost report).
3527    pub elapsed_ms: u64,
3528}
3529
3530/// One failed refresh item — `item` is `schema-source:<which>`,
3531/// `mount:<mem>`, `mount-manifest`, or `workspace`.
3532#[derive(Debug, Clone, Serialize)]
3533pub struct RefreshFailure {
3534    pub item: String,
3535    pub error: String,
3536}
3537
3538#[cfg(test)]
3539mod tests {
3540    use super::*;
3541
3542    // Locks the wire shape of `Query` across every combination of
3543    // set/unset fields. Agents compose queries on the fly; a drift here
3544    // silently changes the MCP tool's JSON contract.
3545    #[test]
3546    fn query_json_roundtrip_every_combination() {
3547        let cases: Vec<Query> = vec![
3548            Query::default(),
3549            Query {
3550                any: vec!["auth".into()],
3551                ..Default::default()
3552            },
3553            Query {
3554                not: vec!["mock".into()],
3555                ..Default::default()
3556            },
3557            Query {
3558                phrase: Some("client side agent".into()),
3559                ..Default::default()
3560            },
3561            Query {
3562                field: Some("identity".into()),
3563                ..Default::default()
3564            },
3565            Query {
3566                any: vec!["a".into(), "b".into()],
3567                not: vec!["x".into()],
3568                phrase: Some("ex act".into()),
3569                field: Some("purpose".into()),
3570            },
3571        ];
3572        for q in &cases {
3573            let json = serde_json::to_string(q).expect("serialize");
3574            let back: Query = serde_json::from_str(&json).expect("deserialize");
3575            assert_eq!(q.any, back.any, "any field round-trip: {json}");
3576            assert_eq!(q.not, back.not, "not field round-trip: {json}");
3577            assert_eq!(q.phrase, back.phrase, "phrase field round-trip: {json}");
3578            assert_eq!(q.field, back.field, "field field round-trip: {json}");
3579            assert_eq!(q.is_empty(), back.is_empty());
3580        }
3581    }
3582
3583    // Empty fields stay out of the wire shape — agents see a lean object.
3584    #[test]
3585    fn query_default_serializes_as_empty_object() {
3586        let q = Query::default();
3587        let json = serde_json::to_string(&q).unwrap();
3588        assert_eq!(json, "{}", "default query must serialize as `{{}}`");
3589    }
3590
3591    // Null / missing keys all round-trip to the same default via serde.
3592    #[test]
3593    fn query_accepts_missing_and_null_fields() {
3594        let with_missing: Query = serde_json::from_str("{}").unwrap();
3595        let with_nulls: Query =
3596            serde_json::from_str(r#"{"any":[],"not":[],"phrase":null,"field":null}"#).unwrap();
3597        assert!(with_missing.is_empty());
3598        assert!(with_nulls.is_empty());
3599    }
3600
3601    // Schema is generated via schemars so MCP agents see the full
3602    // structured contract. Cheap smoke test — locks that the four known
3603    // fields appear and nothing regresses to an action-discriminator.
3604    #[test]
3605    fn query_json_schema_exposes_four_fields() {
3606        let schema = schemars::schema_for!(Query);
3607        let rendered = serde_json::to_string(&schema).unwrap();
3608        for field in ["any", "not", "phrase", "field"] {
3609            assert!(
3610                rendered.contains(&format!("\"{field}\"")),
3611                "schema must mention `{field}`: {rendered}"
3612            );
3613        }
3614    }
3615
3616    // ------------------------------------------------------------------
3617    // WarningHint wire-envelope snapshots. Each variant locks `code`
3618    // (stable UPPER_SNAKE_CASE), a message substring (phrasing may
3619    // drift — we assert a durable anchor), and the `details` key-set.
3620    // Arrays are asserted shape-only because their content depends on
3621    // the active schema / allowed-include list.
3622    // ------------------------------------------------------------------
3623
3624    fn to_envelope(w: &WarningHint) -> serde_json::Value {
3625        serde_json::to_value(w).expect("WarningHint serializes")
3626    }
3627
3628    #[test]
3629    fn warning_hint_missing_required_section_envelope() {
3630        // F9: type-level write_rules moved out of per-warning details
3631        // to the mutation response's top-level `type_guidance` map.
3632        // The warning now carries only section-axis fields.
3633        let w = WarningHint::MissingRequiredSection {
3634            entity_type: "spec".into(),
3635            key: "purpose".into(),
3636            heading: "Purpose".into(),
3637            write_rules: vec!["one sentence".into(), "state the why".into()],
3638        };
3639        let json = to_envelope(&w);
3640        assert_eq!(json["code"], "MISSING_REQUIRED_SECTION");
3641        assert!(
3642            json["message"]
3643                .as_str()
3644                .unwrap()
3645                .contains("required section")
3646        );
3647        assert_eq!(json["details"]["entity_type"], "spec");
3648        assert_eq!(json["details"]["key"], "purpose");
3649        assert_eq!(json["details"]["heading"], "Purpose");
3650        assert!(json["details"]["write_rules"].is_array());
3651        // type_write_rules no longer rides on the per-warning envelope.
3652        assert!(json["details"].get("type_write_rules").is_none());
3653    }
3654
3655    #[test]
3656    fn warning_hint_undeclared_relationship_open_envelope() {
3657        let w = WarningHint::UndeclaredRelationshipOpen {
3658            rel_type: "USES".into(),
3659            message: "USES admitted in open mode".into(),
3660        };
3661        let json = to_envelope(&w);
3662        assert_eq!(json["code"], "UNDECLARED_RELATIONSHIP_OPEN");
3663        // Display delegates to the stored message — substring anchor is safe.
3664        assert!(json["message"].as_str().unwrap().contains("open mode"));
3665        assert_eq!(json["details"]["rel_type"], "USES");
3666        // Consistency rule: details must not duplicate the envelope message.
3667        assert!(json["details"].get("message").is_none());
3668        // Only rel_type belongs under details for this variant.
3669        assert_eq!(json["details"].as_object().unwrap().len(), 1);
3670    }
3671
3672    #[test]
3673    fn warning_hint_duplicate_relationship_envelope() {
3674        let w = WarningHint::DuplicateRelationship {
3675            rel_type: "USES".into(),
3676            from: EntityId("specs--a".into()),
3677            to: EntityId("specs--b".into()),
3678        };
3679        let json = to_envelope(&w);
3680        assert_eq!(json["code"], "DUPLICATE_RELATIONSHIP");
3681        assert!(json["message"].as_str().unwrap().contains("already exists"));
3682        assert_eq!(json["details"]["rel_type"], "USES");
3683        assert_eq!(json["details"]["from"], "specs--a");
3684        assert_eq!(json["details"]["to"], "specs--b");
3685    }
3686
3687    #[test]
3688    fn warning_hint_no_such_relationship_envelope() {
3689        let w = WarningHint::NoSuchRelationship {
3690            rel_type: "USES".into(),
3691            from: EntityId("specs--a".into()),
3692            to: EntityId("specs--b".into()),
3693        };
3694        let json = to_envelope(&w);
3695        assert_eq!(json["code"], "NO_SUCH_RELATIONSHIP");
3696        assert!(json["message"].as_str().unwrap().contains("does not exist"));
3697        assert_eq!(json["details"]["rel_type"], "USES");
3698        assert_eq!(json["details"]["from"], "specs--a");
3699        assert_eq!(json["details"]["to"], "specs--b");
3700    }
3701
3702    #[test]
3703    fn warning_hint_unknown_include_key_envelope() {
3704        let w = WarningHint::UnknownIncludeKey {
3705            key: "bogus".into(),
3706            allowed: vec!["orphans".into(), "stubs".into()],
3707        };
3708        let json = to_envelope(&w);
3709        assert_eq!(json["code"], "UNKNOWN_INCLUDE_KEY");
3710        assert!(json["message"].as_str().unwrap().contains("bogus"));
3711        assert_eq!(json["details"]["key"], "bogus");
3712        assert!(json["details"]["allowed"].is_array());
3713    }
3714
3715    #[test]
3716    fn warning_hint_limit_clamped_envelope() {
3717        let w = WarningHint::LimitClamped {
3718            requested: 1000,
3719            actual: 100,
3720        };
3721        let json = to_envelope(&w);
3722        assert_eq!(json["code"], "LIMIT_CLAMPED");
3723        assert!(json["message"].as_str().unwrap().contains("clamped"));
3724        assert_eq!(json["details"]["requested"].as_u64(), Some(1000));
3725        assert_eq!(json["details"]["actual"].as_u64(), Some(100));
3726    }
3727
3728    #[test]
3729    fn warning_hint_title_normalized_to_slug_noop_envelope() {
3730        let w = WarningHint::TitleNormalizedToSlugNoop {
3731            requested_title: "Hello World!".into(),
3732            current_slug: "hello-world".into(),
3733        };
3734        let json = to_envelope(&w);
3735        assert_eq!(json["code"], "TITLE_NORMALIZED_TO_SLUG_NOOP");
3736        assert!(
3737            json["message"]
3738                .as_str()
3739                .unwrap()
3740                .contains("no change written to disk")
3741        );
3742        assert_eq!(json["details"]["requested_title"], "Hello World!");
3743        assert_eq!(json["details"]["current_slug"], "hello-world");
3744    }
3745
3746    // Top-level envelope shape lock — every WarningHint emits exactly
3747    // three keys and nothing else. Protects against accidental field
3748    // additions at the envelope level.
3749    #[test]
3750    fn warning_hint_envelope_has_exactly_three_top_level_keys() {
3751        for w in &WarningHint::all_samples() {
3752            let json = to_envelope(w);
3753            let obj = json.as_object().expect("envelope is an object");
3754            assert_eq!(
3755                obj.len(),
3756                3,
3757                "{} must emit exactly 3 top-level keys; got {:?}",
3758                w.code(),
3759                obj.keys().collect::<Vec<_>>()
3760            );
3761            assert!(obj.contains_key("code"));
3762            assert!(obj.contains_key("message"));
3763            assert!(obj.contains_key("details"));
3764        }
3765    }
3766
3767    // Stability lock — `code()` values are a public wire contract. Every
3768    // variant must expose an UPPER_SNAKE_CASE identifier. Catches
3769    // accidental rename / case drift in a single test.
3770    #[test]
3771    fn warning_hint_code_values_are_upper_snake_case() {
3772        let re = regex::Regex::new(r"^[A-Z][A-Z0-9_]*$").unwrap();
3773        for w in &WarningHint::all_samples() {
3774            let code = w.code();
3775            assert!(
3776                re.is_match(code),
3777                "code() violates UPPER_SNAKE_CASE: {code}"
3778            );
3779        }
3780    }
3781
3782    // Envelope helper emits the same shape as WarningHint::serialize — one
3783    // constructor, two callers (warnings + MCP error path).
3784    #[test]
3785    fn envelope_shape_is_code_message_details() {
3786        let v = envelope("FOO_BAR", "hello", serde_json::json!({ "x": 1 }));
3787        assert_eq!(v["code"], "FOO_BAR");
3788        assert_eq!(v["message"], "hello");
3789        assert_eq!(v["details"]["x"], 1);
3790        assert_eq!(
3791            v.as_object().unwrap().len(),
3792            3,
3793            "envelope has exactly 3 top-level keys"
3794        );
3795    }
3796}