Skip to main content

memstead_base/ingest/
brief.rs

1//! Run-brief rendering — the engine-side assembly of the Markdown brief an
2//! ingest agent consumes as its prompt.
3//!
4//! The brief is a **rendered string** by deliberate design: an agent reads
5//! it as a prompt, so a rendered Markdown contract (matching the plugin's
6//! `inject.mjs` stdout) is the natural boundary, and parity between clients
7//! is checked on the rendered bytes. Each block function returns a string
8//! ending in a blank line (or the empty string), and the full brief is the
9//! truthy blocks concatenated.
10//!
11//! All three modes are assembled here: [`assemble_discovery_brief`] (with the
12//! header blocks [`render_situation`], [`render_intent`],
13//! [`render_goal_and_avoid`], [`render_operative_data`]),
14//! and [`assemble_one_shot_brief`] — plus the
15//! changed-slice preface ([`render_changed_slice`], rendered from a
16//! [`SourceCursor`]).
17
18use super::guidance::ResolvedGuidance;
19use super::resolve::{ResolvedIngest, ResolvedSource};
20use super::slice::{NoSignalReason, Slice};
21use crate::binding::BuildMode;
22use crate::pipeline::{MediumType, PatternMode};
23
24/// Per-class cap on the rendered changed slice — mirrors the plugin's
25/// `SLICE_CAP`. Beyond it a `…and N more` line stands in.
26const SLICE_CAP: usize = 25;
27
28/// The schema every `ingest/<name>` process mem pins. (The historical
29/// plugin-side twin of this constant is retired — this is the single
30/// authority.)
31pub const PROCESS_MEM_SCHEMA: &str = "ingest@0.5.0";
32
33/// The paired-process-mem state the brief blocks read — the engine-side of
34/// the plugin's `processMem` object. Whether a process mem is present /
35/// skipped (one-shot) / failed-to-create is decided by the orchestration
36/// glue; the blocks render from this resolved view.
37#[derive(Debug, Clone, PartialEq, Eq)]
38pub struct ProcessMemInfo {
39    /// A paired process mem exists and is usable.
40    pub present: bool,
41    /// No process mem is paired (one-shot ingests are ephemeral by design).
42    pub skipped: bool,
43    /// Auto-creation was attempted and failed; the notice explains why.
44    pub notice: Option<String>,
45    /// The process mem's leaf name (the ingest name) — its searchable id.
46    pub leaf_name: String,
47    /// The process mem's org-path label, `ingest/<name>`.
48    pub mem_label: String,
49}
50
51/// The mode string the situation block prints (`discovery` / `one-shot`) —
52/// the same tokens the plugin uses.
53fn mode_label(mode: BuildMode) -> &'static str {
54    match mode {
55        BuildMode::Discovery => "discovery",
56        BuildMode::OneShot => "one-shot",
57    }
58}
59
60/// The medium-type label a source line prints — the lowercase medium `type`.
61fn medium_type_label(t: MediumType) -> &'static str {
62    match t {
63        MediumType::Codebase => "codebase",
64        MediumType::Filesystem => "filesystem",
65        MediumType::Graph => "graph",
66        MediumType::Git => "git",
67        MediumType::Web => "web",
68    }
69}
70
71/// Render the `## Goal` and `## Failure modes to avoid` blocks from resolved
72/// guidance, matching the plugin's `goalAndAvoidBlock`. Each present field
73/// contributes a header, a blank line, its trimmed prose, and a trailing
74/// blank line; the block ends in a blank line. With neither field present
75/// this yields `"\n"` (the plugin's `lines.join('\n') + '\n'` for the
76/// no-pass-through case).
77///
78/// Pass-through-only guidance (a schema declaring `granularity`/`stack`/… but
79/// no goal/avoid) is not yet rendered here — that fallback
80/// (`renderResolvedGuidance`) lands with the pass-through modelling.
81pub fn render_goal_and_avoid(guidance: &ResolvedGuidance) -> String {
82    let mut lines: Vec<String> = Vec::new();
83
84    if let Some(goal) = guidance
85        .goal
86        .as_deref()
87        .map(str::trim)
88        .filter(|s| !s.is_empty())
89    {
90        lines.push("## Goal".to_string());
91        lines.push(String::new());
92        lines.push(goal.to_string());
93        lines.push(String::new());
94    }
95    if let Some(avoid) = guidance
96        .avoid
97        .as_deref()
98        .map(str::trim)
99        .filter(|s| !s.is_empty())
100    {
101        lines.push("## Failure modes to avoid".to_string());
102        lines.push(String::new());
103        lines.push(avoid.to_string());
104        lines.push(String::new());
105    }
106
107    format!("{}\n", lines.join("\n"))
108}
109
110/// Render the opening `## Situation` block — loop semantics, the mutation
111/// mandate, the context-budget signal, and the paired-process-mem line.
112/// Byte-for-byte the plugin's `situationBlock`.
113pub fn render_situation(resolved: &ResolvedIngest, process_mem: &ProcessMemInfo) -> String {
114    let mode = mode_label(resolved.mode);
115    let name = &resolved.name;
116    let mut lines: Vec<String> = Vec::new();
117    lines.push("## Situation".to_string());
118    lines.push(String::new());
119    lines.push(format!(
120        "You are running one iteration of `{name}` ({mode} mode) inside a loop. \
121         Each iteration is a fresh agent with no memory of prior runs; the destination \
122         graph persists between runs and is your continuity. Backoff is mechanical — \
123         when nothing has changed since the last run, the loop skips this ingest silently. \
124         Reporting \"no changes\" is therefore a valid outcome."
125    ));
126    lines.push(String::new());
127    lines.push(
128        "Mutating the destination is this run's mandate: within the destination mem(s) and \
129         paired process mem named under Operative data, create, update, relate, and delete \
130         entities without asking. Project-level instructions that make entity creation/deletion \
131         ask-first govern interactive dev sessions, not ingest iterations — parking creatable \
132         work as a coverage_gap because of that rule defeats the loop. Mems outside the declared \
133         destinations remain off-limits."
134            .to_string(),
135    );
136    lines.push(String::new());
137    lines.push(
138        "Context budget is finite. The `PreCompact` hook fires near the limit and asks you to \
139         stop and report. Multiple cycles inside one run are fine when context allows; depth on \
140         a coherent area beats breadth across unrelated ones."
141            .to_string(),
142    );
143    lines.push(String::new());
144    if process_mem.present {
145        lines.push(format!(
146            "A paired process mem `{}` (schema `{PROCESS_MEM_SCHEMA}`) carries destination-quality \
147             debt prior runs could not address. Its entries are objective claims about destination \
148             state — read them on orientation, write to it when this run also cannot fix some debt, \
149             delete entries the destination has since resolved. Call \
150             `memstead_schema(name={PROCESS_MEM_SCHEMA})` once for the type vocabulary and write rules.",
151            process_mem.mem_label
152        ));
153    } else if let Some(notice) = &process_mem.notice {
154        lines.push(format!(
155            "Note: paired process mem `{}` could not be auto-created — {notice}. The run continues \
156             without it; the operator can retry with `memstead mem init {name} --org-path ingest \
157             --schema {PROCESS_MEM_SCHEMA}`.",
158            process_mem.mem_label
159        ));
160    } else if process_mem.skipped {
161        lines.push(format!(
162            "No process mem is paired with this ingest (mode={mode}; one-shot ingests are \
163             by-design ephemeral)."
164        ));
165    }
166    lines.push(String::new());
167    format!("{}\n", lines.join("\n"))
168}
169
170/// Render the `## About the source` block from the projection's intent, or
171/// the empty string when there is no intent. Byte-for-byte the plugin's
172/// `intentBlock`.
173pub fn render_intent(resolved: &ResolvedIngest) -> String {
174    match resolved
175        .intent
176        .as_deref()
177        .map(str::trim)
178        .filter(|s| !s.is_empty())
179    {
180        Some(intent) => format!("## About the source\n\n{intent}\n\n"),
181        None => String::new(),
182    }
183}
184
185/// Render the `## Operative data` block — the sources (with their scope), the
186/// destination (with its schema), and the paired process mem. Byte-for-byte
187/// the plugin's `operativeDataBlock`. `destination_schema` is the schema ref
188/// the destination mem pins (from `memMeta`), rendered when present.
189///
190/// A source facet's `domains` (web mediums) is not rendered — the engine's
191/// facet scope models allow/deny paths only; the domains slot lands with web
192/// medium support.
193pub fn render_operative_data(
194    resolved: &ResolvedIngest,
195    process_mem: &ProcessMemInfo,
196    destination_schema: Option<&str>,
197    destination_note: Option<&str>,
198    absent_sources: &[String],
199) -> String {
200    let mut lines: Vec<String> = Vec::new();
201    lines.push("## Operative data".to_string());
202    lines.push(String::new());
203
204    // Sources
205    if !resolved.sources.is_empty() {
206        lines.push("### Sources".to_string());
207        lines.push(String::new());
208        let mut reference_mems: Vec<String> = Vec::new();
209        for source in &resolved.sources {
210            match source {
211                ResolvedSource::Primary(p) => {
212                    // Name first, medium type demoted to annotation — the
213                    // provenance section instructs `source` = the declared
214                    // NAME, so this section must teach the same token
215                    // (plan 03a: an agent copying this bullet verbatim
216                    // must not earn an INVALID_ANCHOR).
217                    lines.push(format!(
218                        "- **{}** ({}, primary) — `{}`",
219                        p.name,
220                        medium_type_label(p.medium_type),
221                        p.pointer
222                    ));
223                    // Same obligation as the destination note: an agent
224                    // told to read a tree that is not there has been sent
225                    // on work it cannot do, and cannot tell that from a
226                    // source that is merely empty.
227                    if absent_sources.iter().any(|n| n == &p.name) {
228                        lines.push(
229                            "  - **This source does not resolve to anything on disk.** \
230                             Nothing can be read from it until the path exists or the \
231                             binding's pointer is corrected."
232                                .to_string(),
233                        );
234                    }
235                    let allows: Vec<&str> = p
236                        .scope
237                        .iter()
238                        .filter(|r| r.mode == PatternMode::Allow)
239                        .map(|r| r.path.as_str())
240                        .collect();
241                    let denies: Vec<&str> = p
242                        .scope
243                        .iter()
244                        .filter(|r| r.mode == PatternMode::Deny)
245                        .map(|r| r.path.as_str())
246                        .collect();
247                    // Scope is medium-shaped, and so is the label. A graph
248                    // source selects entities, so calling its selectors
249                    // "Paths" sent the agent looking for a glob tool over a
250                    // mem — which does not exist. The changed slice alone is
251                    // a delta with no baseline; the reference-mem block below
252                    // is the precedent for directing an agent at a mem's
253                    // contents without dumping them, so a primary graph
254                    // source gets the same executable instruction.
255                    let is_graph = p.medium_type == MediumType::Graph;
256                    let (allow_label, deny_label) = if is_graph {
257                        ("Entities", "Excluding")
258                    } else {
259                        ("Paths", "Ignore")
260                    };
261                    if !allows.is_empty() {
262                        lines.push(format!("  - {allow_label}: {}", allows.join(", ")));
263                    }
264                    if !denies.is_empty() {
265                        lines.push(format!("  - {deny_label}: {}", denies.join(", ")));
266                    }
267                    // A scope pattern still in the retired workspace-relative
268                    // dialect selects nothing under the pointer join. The
269                    // brief is the one surface a binding running only build
270                    // and sync ever reads, so the warning must land HERE —
271                    // the verify report and the `--full` refusal reach only
272                    // bindings that verify.
273                    for note in super::cursor::scope_migration_notes(p) {
274                        let rewrite = match &note.suggested {
275                            Some(s) => format!(" — rewrite it as `{s}`"),
276                            None => String::new(),
277                        };
278                        lines.push(format!(
279                            "  - **Scope pattern `{}` is written against the workspace root \
280                             rather than the source pointer, so it selects nothing**{rewrite}.",
281                            note.pattern
282                        ));
283                    }
284                    if is_graph {
285                        lines.push(format!(
286                            "  - Read the source baseline with `memstead_search mem={}` \
287                             (add `entity_type=` to match a `type:` selector). The changed \
288                             slice below is a delta against the last pass — it is not the \
289                             whole source, and an entity absent from it may still be \
290                             unprojected.",
291                            p.pointer
292                        ));
293                    }
294                }
295                ResolvedSource::Reference { mem } => {
296                    lines.push(format!("- **graph** (reference) — mem: {mem}"));
297                    reference_mems.push(mem.clone());
298                }
299            }
300        }
301        lines.push(String::new());
302        if !reference_mems.is_empty() {
303            lines.push(
304                "Sources tagged `(reference)` are read-only context for cross-mem edges — search \
305                 them, never write into them. Only `(primary)` sources are ingested into the \
306                 destination."
307                    .to_string(),
308            );
309            lines.push(String::new());
310            let mem_list = reference_mems
311                .iter()
312                .map(|v| format!("`memstead_search mem={v}`"))
313                .collect::<Vec<_>>()
314                .join(", ");
315            lines.push(format!(
316                "**Cross-mem references:** consult {mem_list} before authoring cross-mem edges. \
317                 The target entity must exist — a wiki-link or relationship to a missing target \
318                 either auto-stubs (silent) or fails authorization (`CROSS_MEM_RELATION`)."
319            ));
320            lines.push(String::new());
321        }
322    }
323
324    // Destination — four-primitive projections carry exactly one, no role.
325    lines.push("### Destination".to_string());
326    lines.push(String::new());
327    let schema_bit = destination_schema
328        .map(|s| format!(" — schema: `{s}`"))
329        .unwrap_or_default();
330    lines.push(format!("- **{}**{schema_bit}", resolved.destination_mem));
331    // No pinned schema means the engine could not resolve the destination as
332    // a mem of this workspace — a binding scaffolded before its mem exists,
333    // which `projection init` deliberately allows. Say so here rather than
334    // describing a destination that is not there: the brief's mandate is to
335    // mutate this mem, and an agent that discovers its absence on the first
336    // create has been told something untrue by the surface that sent it.
337    // The caller supplies this: whether the destination resolves, and what
338    // to do about it, both depend on the workspace shape — which this
339    // renderer cannot see. A remedy naming a command that refuses in the
340    // reader's own workspace is the defect this note exists to prevent.
341    if let Some(note) = destination_note {
342        lines.push(format!("  - {note}"));
343    }
344    lines.push(String::new());
345
346    // Paired process mem
347    if process_mem.present {
348        lines.push("### Paired process mem".to_string());
349        lines.push(String::new());
350        lines.push(format!(
351            "- **{}** — schema: `{PROCESS_MEM_SCHEMA}`. Inspect via `memstead_overview` / \
352             `memstead_search mem={}`.",
353            process_mem.mem_label, process_mem.leaf_name
354        ));
355        lines.push(String::new());
356    }
357
358    format!("{}\n", lines.join("\n"))
359}
360
361/// One baseline token a facet's cursor advances to after a full pass — the
362/// `(sync_state key, medium-typed token)` pair the engine records via the
363/// `set_mem_sync_state` writer. Produced by the cursor; the brief no longer
364/// renders it as an operator command (the agent runs `projection advance`,
365/// which computes and records the token engine-side — D4/D7).
366#[derive(Debug, Clone, PartialEq, Eq)]
367pub struct SyncCommand {
368    /// The sync-state key, `"<binding-id>/<facet>#synced"` (D4).
369    pub key: String,
370    /// The opaque new-baseline token.
371    pub token: String,
372}
373
374/// A source whose change detection produced **no usable signal** this pass,
375/// with the classified [`NoSignalReason`]. Rendered as a distinct per-source
376/// note in the changed-slice preface, so the agent can tell a *blind* source
377/// (no baseline comparison happened) from a *genuinely-unchanged* one (checked,
378/// did not move — which stays silent).
379#[derive(Debug, Clone, PartialEq, Eq)]
380pub struct NoSignalNote {
381    /// The source's label — the facet ref (primary) or mem id (reference), the
382    /// same token the `<ingest>/<label>` sync-state key is built from.
383    pub source: String,
384    /// Why detection produced no signal.
385    pub reason: NoSignalReason,
386    /// The source's medium, when it is a primary source. Carried so the
387    /// remedy the note prints is one this medium actually accepts — a
388    /// medium-agnostic remedy told a graph source's agent to write `**/*`,
389    /// which the engine then refuses as not an entity selector. `None` for a
390    /// reference mem, which has no facet scope to remedy.
391    pub medium_type: Option<MediumType>,
392}
393
394/// The combined source-cursor across a projection's source facets — the
395/// engine-side of the plugin's `cursor` object that `changedSliceBlock`
396/// consumes. Assembled by [`super::cursor::compute_source_cursor`] from the
397/// per-facet [`super::slice::SliceOutcome`]s.
398#[derive(Debug, Clone, PartialEq, Eq)]
399pub struct SourceCursor {
400    /// The combined changed slice across all source facets.
401    pub union: Slice,
402    /// New-baseline commands for facets that changed.
403    pub write_commands: Vec<SyncCommand>,
404    /// New-baseline commands for facets seen for the first time (reseed).
405    pub reseed: Vec<SyncCommand>,
406    /// Per-source no-signal notes — sources whose detection could not produce a
407    /// slice this pass (unscoped facet, `signal:none`, git failure, missing
408    /// graph snapshot). Rendered distinctly from changed/reseed; a
409    /// genuinely-unchanged source contributes nothing here, so an all-unchanged
410    /// brief still renders no preface (byte-identical to a plain roam).
411    pub no_signal: Vec<NoSignalNote>,
412    /// Whether any facet reported changes (drives the "source moved" copy).
413    pub any_changes: bool,
414    /// Whether any facet's slice was degraded (mtime memo miss → full scan).
415    pub degraded: bool,
416    /// Ingest `deny_paths` entries that matched **no file** anywhere the agent
417    /// can reach (the project tree). A zero-selecting deny is surfaced as a
418    /// rendered warning rather than silently no-op'ing — it catches typos and
419    /// un-migrated legacy bare names (which, as globs, match nothing). Never a
420    /// hard error: the ingest still runs, the entry just does nothing. The
421    /// scaffold's own default hygiene entries are exempt at collection
422    /// (`cursor::dead_deny_entries`) — the engine never calls its own output
423    /// a typo.
424    pub dead_denies: Vec<String>,
425    /// The destination mem whose `sync_state` the baseline tokens live on.
426    pub dest_mem: String,
427    /// The canonical binding id `<mem>/<stem>` (D3) — rendered into the
428    /// `memstead projection advance <binding-id> …` line the changed-slice
429    /// preface now emits instead of a raw `mem set-sync-state` command (D4/D7).
430    pub binding_id: String,
431    /// Touchpoint B: one ordered delivery sequence per primary source that
432    /// declares a delivery preparation. Their unit ids also ride `union`
433    /// (the advance gate accepts them); the class lists never repeat them,
434    /// because a class list is alphabetical and a sequence is not.
435    pub delivery: Vec<DeliverySequence>,
436}
437
438/// One unit of a [`DeliverySequence`], as presented.
439#[derive(Debug, Clone, PartialEq, Eq)]
440pub struct DeliveredUnit {
441    /// The unit's artifact id, `<path>#<key>` ([`crate::preparation::unit_id`]).
442    pub id: String,
443    /// The unit's intrinsic order key; the sequence sorts by it, then by id.
444    pub order_key: String,
445    /// How the unit changed (every unit of a first delivery is `Added`).
446    pub change: crate::preparation::UnitChange,
447    /// Already disposed in the binding's in-progress advance store, so it is
448    /// counted but not re-presented.
449    pub disposed: bool,
450}
451
452/// The ordered delivery sequence of one source under a delivery preparation
453/// (touchpoint B of [`crate::preparation`]): the same source state yields the
454/// same sequence on every pass, first run and change run alike.
455#[derive(Debug, Clone, PartialEq, Eq)]
456pub struct DeliverySequence {
457    /// The source's declared name.
458    pub source: String,
459    /// The declared delivery preparation identifier.
460    pub preparation: String,
461    /// No baseline existed: every unit of the source is delivered, in order.
462    pub first_run: bool,
463    /// For at least one changed file no baseline content was retrievable,
464    /// so every unit of that file is listed rather than only the changed ones.
465    pub degraded: bool,
466    /// How many not-yet-disposed units to present this pass (the build
467    /// operation's `batch_size`; `0` presents all).
468    pub batch: usize,
469    /// Every delivered unit, in the total order.
470    pub units: Vec<DeliveredUnit>,
471}
472
473/// Single-quote a value for the emitted shell command, escaping embedded
474/// single quotes. The digest token is JSON (contains `"` and `:`), so it
475/// must be quoted to survive the shell. Mirrors the plugin's `shellQuote`.
476fn shell_quote(s: &str) -> String {
477    format!("'{}'", s.replace('\'', "'\\''"))
478}
479
480/// Render one changed-slice class (Deleted / Modified / Added), capped at
481/// [`SLICE_CAP`] with a `…and N more` overflow line.
482/// Render one delivery sequence: the not-yet-disposed units in the total
483/// order, numbered by their position in that order (so a unit keeps its
484/// number across the passes of one delivery while earlier units are
485/// disposed), capped at the sequence's batch with the remainder counted,
486/// never reshuffled.
487fn render_delivery_sequence(lines: &mut Vec<String>, seq: &DeliverySequence) {
488    use crate::preparation::UnitChange;
489    lines.push(format!(
490        "### Delivery sequence: `{}` (`{}`)\n",
491        seq.source, seq.preparation
492    ));
493    let opening = if seq.first_run {
494        "First delivery of this source: every unit, in the source's own order."
495    } else {
496        "The units that changed since the last pass, at their positions in the source's own \
497         order."
498    };
499    lines.push(format!(
500        "{opening} Work them top to bottom: the order derives from the units' own keys, never \
501         from discovery or directory order, it is identical on every pass, and a unit assumes \
502         only the units numbered before it. Address a unit as `<path>#<key>` in anchors and \
503         dispositions.\n"
504    ));
505    if seq.degraded {
506        lines.push(
507            "_(No baseline content was retrievable for one or more changed files, so every unit \
508             of those files is listed; precision is coarser this pass only.)_\n"
509                .to_string(),
510        );
511    }
512    let pending: Vec<(usize, &DeliveredUnit)> = seq
513        .units
514        .iter()
515        .enumerate()
516        .filter(|(_, u)| !u.disposed)
517        .collect();
518    let disposed = seq.units.len() - pending.len();
519    let shown = if seq.batch == 0 {
520        pending.len()
521    } else {
522        pending.len().min(seq.batch)
523    };
524    for (position, unit) in &pending[..shown] {
525        let label = match unit.change {
526            UnitChange::Added => "new",
527            UnitChange::Modified => "changed",
528            UnitChange::Deleted => "deleted",
529        };
530        lines.push(format!("{}. `{}` ({label})", position + 1, unit.id));
531    }
532    if pending.len() > shown {
533        lines.push(format!(
534            "- …and {} more, presented in order once these are disposed",
535            pending.len() - shown
536        ));
537    }
538    if disposed > 0 {
539        lines.push(format!(
540            "_({disposed} unit{} of this sequence already disposed this pass.)_",
541            if disposed == 1 { "" } else { "s" }
542        ));
543    }
544    if pending.is_empty() {
545        lines.push(
546            "_(Every unit of this sequence is disposed; the baseline advances when the pass \
547             completes.)_"
548                .to_string(),
549        );
550    }
551    lines.push(String::new());
552}
553
554fn render_slice_class(lines: &mut Vec<String>, label: &str, paths: &[String]) {
555    if paths.is_empty() {
556        return;
557    }
558    let shown = paths.len().min(SLICE_CAP);
559    lines.push(format!("**{label}:**"));
560    for path in &paths[..shown] {
561        lines.push(format!("- `{path}`"));
562    }
563    if paths.len() > shown {
564        lines.push(format!(
565            "- …and {} more {}",
566            paths.len() - shown,
567            label.to_lowercase()
568        ));
569    }
570    lines.push(String::new());
571}
572
573/// The one-line explanation the brief prints for a [`NoSignalReason`] — each
574/// reason renders as distinct text, so the agent can tell the no-signal
575/// conditions apart (and all apart from a genuinely-unchanged source, which
576/// renders nothing at all).
577fn no_signal_reason_text(reason: NoSignalReason, medium: Option<MediumType>) -> &'static str {
578    match reason {
579        // The remedy is medium-shaped, because scope is. Naming a path glob at
580        // a graph source sent the agent to write the one thing the engine
581        // refuses — the brief instructing a write it would then reject.
582        NoSignalReason::Unscoped => match medium {
583            Some(MediumType::Graph) => {
584                "unscoped facet (no allow patterns) — nothing is monitored; write `*` in the \
585                 facet scope to watch the whole mem, or `type:<entity_type>` / `id:<glob>` \
586                 to narrow it (a graph source selects entities, not paths)"
587            }
588            _ => {
589                "unscoped facet (no allow patterns) — nothing is monitored; write `**/*` in the \
590                 facet scope to watch the whole medium"
591            }
592        },
593        NoSignalReason::DetectionNone => {
594            "`signal:none` — change detection is disabled for this source (declared `none`)"
595        }
596        NoSignalReason::GitUnavailable => {
597            "git signal unavailable — no work tree, an unreadable `HEAD`, or an unknown baseline; \
598             a full re-roam is warranted this pass"
599        }
600        NoSignalReason::GraphSnapshotMissing => {
601            "graph snapshot missing — the source mem has no comparable baseline this pass"
602        }
603    }
604}
605
606/// Render the `## Source changes since the last sync` preface — the changed
607/// slice to steer at first, any no-signal sources, plus the `projection advance`
608/// "record your dispositions LAST" section. Extends the plugin's `changedSliceBlock`
609/// with the no-signal notes. Returns the empty string when nothing changed,
610/// nothing needs reseeding, and every source is genuinely unchanged (no
611/// no-signal notes) — making the brief byte-identical to a plain roam.
612pub fn render_changed_slice(cursor: &SourceCursor) -> String {
613    if !cursor.any_changes
614        && cursor.reseed.is_empty()
615        && cursor.no_signal.is_empty()
616        && cursor.dead_denies.is_empty()
617    {
618        return String::new();
619    }
620    let mut lines: Vec<String> = Vec::new();
621    lines.push("## Source changes since the last sync\n".to_string());
622
623    if cursor.any_changes {
624        lines.push(
625            "The source moved since this graph was last synced. Steer this pass at these changed \
626             artifacts **first** — they are where the graph is most likely now wrong.\n"
627                .to_string(),
628        );
629        // Delivery sequences first: for a source under a delivery
630        // preparation the order IS the steering, and their unit ids never
631        // repeat in the alphabetical class lists below.
632        for seq in &cursor.delivery {
633            render_delivery_sequence(&mut lines, seq);
634        }
635        let unit_ids: std::collections::BTreeSet<&str> = cursor
636            .delivery
637            .iter()
638            .flat_map(|s| s.units.iter().map(|u| u.id.as_str()))
639            .collect();
640        let without_units = |v: &[String]| -> Vec<String> {
641            v.iter()
642                .filter(|p| !unit_ids.contains(p.as_str()))
643                .cloned()
644                .collect()
645        };
646        // Deletions first — cheapest, highest-signal drift.
647        render_slice_class(&mut lines, "Deleted", &without_units(&cursor.union.deleted));
648        render_slice_class(
649            &mut lines,
650            "Modified",
651            &without_units(&cursor.union.modified),
652        );
653        render_slice_class(&mut lines, "Added", &without_units(&cursor.union.added));
654        if cursor.degraded {
655            lines.push(
656                "_(Precise change history for one or more facets was unavailable, so its full \
657                 current file set is listed above. Detection still fired from the durable baseline; \
658                 targeting is coarser this pass only.)_\n"
659                    .to_string(),
660            );
661        }
662    }
663
664    if !cursor.reseed.is_empty() {
665        let keys = cursor
666            .reseed
667            .iter()
668            .map(|r| format!("`{}`", r.key))
669            .collect::<Vec<_>>()
670            .join(", ");
671        let it = if cursor.reseed.len() == 1 {
672            "it"
673        } else {
674            "them"
675        };
676        lines.push(format!(
677            "No usable sync baseline exists for {keys} — none was recorded, or the recorded one \
678             is not a commit of the source's repo (foreign or garbage-collected). Treating the \
679             current source state as the baseline. No priority slice from {it} this pass; \
680             proceed as usual.\n"
681        ));
682    }
683
684    if !cursor.no_signal.is_empty() {
685        lines.push(
686            "Some sources produced **no change signal** this pass — detection could not compare \
687             them against a baseline, so they were not steered (roam them as usual). This is \
688             distinct from a source that was checked and had not moved:\n"
689                .to_string(),
690        );
691        for note in &cursor.no_signal {
692            lines.push(format!(
693                "- `{}`: {}",
694                note.source,
695                no_signal_reason_text(note.reason, note.medium_type)
696            ));
697        }
698        lines.push(String::new());
699    }
700
701    if !cursor.dead_denies.is_empty() {
702        lines.push(
703            "**Warning — some `deny_paths` entries match nothing.** The following ingest \
704             `deny_paths` selected **no file** in the project tree, so they exclude nothing from \
705             the slice and hide nothing from the ingest agent. This is usually a typo or a legacy \
706             bare name that never migrated to the workspace-relative glob dialect (e.g. `dev` → \
707             `dev/**`, `VISION.md` → `**/VISION.md`). Fix or remove them:\n"
708                .to_string(),
709        );
710        for entry in &cursor.dead_denies {
711            lines.push(format!("- `{entry}`"));
712        }
713        lines.push(String::new());
714    }
715
716    // Disposition-record instruction — the agent's FINAL step. The advance is
717    // resumable and non-stalling (D7): a partial pass is honored on disk, and a
718    // source that moves mid-pass re-presents (remaining + new) without losing
719    // recorded work. The agent runs `projection advance`, which computes and
720    // records the new baseline token engine-side — the brief no longer renders a
721    // raw `mem set-sync-state` command (D4). The block appears whenever there is
722    // a baseline to advance (a changed facet or a first-sync reseed).
723    let has_baseline_to_advance = !cursor.write_commands.is_empty() || !cursor.reseed.is_empty();
724    if has_baseline_to_advance {
725        lines.push("### Recording your dispositions (do this LAST)\n".to_string());
726        lines.push(
727            "Only after you have worked the changed artifacts above — and only for the artifacts \
728             you actually judged — record a disposition for each, so the next pass targets just \
729             what changes next. This advance is resumable and non-stalling: a partial pass is \
730             honored, and if the source moves mid-pass the remaining slice re-presents \
731             (remaining + new) without losing your recorded work.\n"
732                .to_string(),
733        );
734        lines.push(
735            "Anchored work disposes itself: at advance time, every listed artifact that an \
736             anchor in the destination mem references is marked `worked` automatically (an \
737             explicit disposition you pass wins over the auto-mark). Supply dispositions only \
738             for the residue — artifacts you skipped, judged out of intent, or worked without \
739             anchors. The gate accepts only artifact ids listed above — an unknown id refuses \
740             the whole call. When every artifact is disposed, the sync baseline advances \
741             automatically. Run:\n"
742                .to_string(),
743        );
744        lines.push("```sh".to_string());
745        lines.push(format!(
746            "memstead projection advance {} --dispositions {}",
747            cursor.binding_id,
748            shell_quote(r#"{"<artifact>": "<disposition>", ...}"#)
749        ));
750        lines.push("```".to_string());
751        lines.push(
752            "If you were interrupted before finishing, that is fine — your recorded dispositions \
753             persist, and the next run re-presents only what is left.\n"
754                .to_string(),
755        );
756    }
757
758    format!("{}\n", lines.join("\n"))
759}
760
761/// Assemble the discovery-mode brief — situation, about-the-source, goal/avoid,
762/// operative-data, and the changed-slice preface — concatenating the truthy
763/// blocks, matching the plugin's `parts.filter(Boolean).join('')`.
764/// `changed_slice_preface` is the rendered changed-slice block (empty when
765/// the source has not moved, making the brief byte-identical to a plain roam).
766/// Render the `## Provenance — anchor your writes` block — the build-brief
767/// instruction to attach `anchors[]` to every entity mutation. Rendered by the
768/// engine, never by skill prose: a binary old enough to reject the parameter
769/// never renders the instruction, so the brief cannot version-skew against its
770/// own mutation surface (the reason the plugin-side capability gate exists for
771/// skill-carried prose). The element shape is taught by the mutation tools'
772/// own descriptions; the brief carries only the job.
773pub fn render_anchor_instruction(resolved: &ResolvedIngest) -> String {
774    let mut block = "## Provenance — anchor your writes\n\n\
775     Attach an `anchors` list to every `memstead_create` / `memstead_update`, naming the \
776     source artifact(s) the entity is drawn from (the mutation tools document the element \
777     shape). Anchored writes are what verify measures coverage and drift against, and — on \
778     cursor-driven passes — what the advance gate auto-marks `worked`; an unanchored write \
779     leaves the fidelity report and the disposition window blind to your work.\n\n"
780        .to_string();
781    // Name the producing entry point: each anchor's `source` carries the
782    // binding source NAME it came from, so a discovery run is measurable
783    // per entry point (which entry carries, which delivers nothing).
784    let primary_names: Vec<&str> = resolved
785        .sources
786        .iter()
787        .filter_map(|s| match s {
788            crate::ingest::resolve::ResolvedSource::Primary(src) => Some(src.name.as_str()),
789            crate::ingest::resolve::ResolvedSource::Reference { .. } => None,
790        })
791        .collect();
792    if !primary_names.is_empty() {
793        block.push_str(&format!(
794            "Set each anchor's `source` to the binding source name you drew the artifact \
795             from — this binding declares: {}. The name selects the pointer the \
796             artifact path is joined onto, so the wrong one usually refuses \
797             `INVALID_ANCHOR` (the path resolves under no candidate join). A name \
798             outside the list is NOT itself refused when the path happens to \
799             resolve workspace-relative — that tolerance exists for anchors whose \
800             binding was later renamed — so getting it right is on you, not on a \
801             gate.\n\n",
802            primary_names
803                .iter()
804                .map(|n| format!("`{n}`"))
805                .collect::<Vec<_>>()
806                .join(", ")
807        ));
808    }
809    // A source under a preparation hashes a PREPARED form, which no agent
810    // computes by hand: say so, and say what to do instead.
811    for source in &resolved.sources {
812        let crate::ingest::resolve::ResolvedSource::Primary(src) = source else {
813            continue;
814        };
815        let Some(prep) = src
816            .preparation
817            .as_deref()
818            .and_then(crate::preparation::lookup)
819        else {
820            continue;
821        };
822        let what = match prep.id {
823            crate::preparation::CODE_MAP => {
824                "the file's interface digest (imports, exports, signatures; comments, \
825                 formatting and bodies invisible), and a `tree` anchor the code map of every \
826                 scoped file under it"
827            }
828            crate::preparation::DATED_ENTRIES => {
829                "the unit's own text for a `<path>#<key>` span, the file's bytes otherwise"
830            }
831            crate::preparation::ENTITY_LOAD_BEARING => "the entity's load-bearing sections",
832            _ => prep.description,
833        };
834        block.push_str(&format!(
835            "Anchors on `{}` hash a prepared form (`{}`): {what}. Never compute `hash` \
836             yourself for this source — leave it empty (verify records it on first \
837             observation), or for a `file` or `span` anchor pass the artifact's `content` \
838             and the engine hashes the prepared form (a `tree` anchor takes no content).\n\n",
839            src.name, prep.id
840        ));
841    }
842    block
843}
844
845#[allow(clippy::too_many_arguments)]
846pub fn assemble_discovery_brief(
847    resolved: &ResolvedIngest,
848    guidance: &ResolvedGuidance,
849    process_mem: &ProcessMemInfo,
850    destination_schema: Option<&str>,
851    destination_note: Option<&str>,
852    absent_sources: &[String],
853    changed_slice_preface: &str,
854) -> String {
855    let parts = [
856        render_situation(resolved, process_mem),
857        render_intent(resolved),
858        render_goal_and_avoid(guidance),
859        render_operative_data(
860            resolved,
861            process_mem,
862            destination_schema,
863            destination_note,
864            absent_sources,
865        ),
866        render_anchor_instruction(resolved),
867        changed_slice_preface.to_string(),
868    ];
869    parts
870        .into_iter()
871        .filter(|p| !p.is_empty())
872        .collect::<Vec<_>>()
873        .join("")
874}
875
876/// Render the `## Mode: one-shot — lens routing` block — the destination-set
877/// table, optional routing rule, idempotency contract, end-of-run report
878/// template, and optional archive note. Byte-for-byte the plugin's
879/// `oneShotLensBlock`. `destination_schema` / `destination_purpose` describe
880/// the ingest's single destination (four-primitive projections have one).
881pub fn render_one_shot_lens(
882    resolved: &ResolvedIngest,
883    destination_schema: Option<&str>,
884    destination_purpose: Option<&str>,
885) -> String {
886    let cell = |s: &str| s.replace('|', "\\|").replace('\n', " ");
887    let mut lines: Vec<String> = vec![
888        "## Mode: one-shot — lens routing".to_string(),
889        String::new(),
890        "A lens iterates entities once and writes per-destination, then exits. The agent decides \
891         per-entity which destinations to target (Routing rule). Re-runs use `memstead_update`; \
892         never duplicate."
893            .to_string(),
894        String::new(),
895    ];
896
897    lines.push("### Destination set".to_string());
898    lines.push(String::new());
899    lines.push("| Mem | Schema | Purpose |".to_string());
900    lines.push("|-------|--------|---------|".to_string());
901    let schema = destination_schema.unwrap_or("(none)");
902    let purpose = destination_purpose
903        .filter(|s| !s.is_empty())
904        .unwrap_or("(no purpose declared)");
905    lines.push(format!(
906        "| {} | {} | {} |",
907        cell(&resolved.destination_mem),
908        cell(schema),
909        cell(purpose)
910    ));
911    lines.push(String::new());
912
913    if let Some(routing) = resolved
914        .rules
915        .as_ref()
916        .and_then(|r| r.get("routing"))
917        .and_then(|v| v.as_str())
918        .map(str::trim)
919        .filter(|s| !s.is_empty())
920    {
921        lines.push("### Routing rule".to_string());
922        lines.push(String::new());
923        lines.push("```".to_string());
924        lines.push(routing.to_string());
925        lines.push("```".to_string());
926        lines.push(String::new());
927    }
928
929    lines.push("### Idempotency".to_string());
930    lines.push(String::new());
931    lines.push("- Search the destination before writing; route changes through `memstead_update` against the existing entity if present.".to_string());
932    lines.push("- Skip writes when the lifted content matches what is already there (record as `skipped: already-up-to-date`).".to_string());
933    lines.push(
934        "- Use `memstead_create` only when no entity for that concept exists yet.".to_string(),
935    );
936    lines.push(String::new());
937
938    lines.push("### End-of-run report".to_string());
939    lines.push(String::new());
940    lines.push("After every destination is processed, emit one block per destination on stdout, in Destination-set order:".to_string());
941    lines.push(String::new());
942    lines.push("```".to_string());
943    lines.push(format!("### Report: {}", resolved.name));
944    lines.push(String::new());
945    lines.push("Destination: <mem>".to_string());
946    lines.push("  created: <count>".to_string());
947    lines.push("  updated: <count>".to_string());
948    lines.push("  skipped: <count>".to_string());
949    lines.push("  failed:  <count>".to_string());
950    lines.push("  failures:".to_string());
951    lines.push("    - <entity-key>: <error verbatim>".to_string());
952    lines.push("  skipped-detail:".to_string());
953    lines.push("    - <entity-key>: <one-line reason>".to_string());
954    lines.push("```".to_string());
955    lines.push(String::new());
956    lines.push("Per-destination commits are independent — partial success is the accepted failure mode. No rollback.".to_string());
957    lines.push(String::new());
958
959    let archive = resolved
960        .post_actions
961        .as_ref()
962        .and_then(|p| p.get("archive_source"))
963        .and_then(serde_json::Value::as_bool)
964        .unwrap_or(false);
965    if archive {
966        lines.push("### Archive after run".to_string());
967        lines.push(String::new());
968        lines.push("After the report has been emitted, archive the source planning mem — `post_actions.archive_source` is set on this ingest.".to_string());
969        lines.push(String::new());
970    }
971
972    format!("{}\n", lines.join("\n"))
973}
974
975/// Assemble the one-shot brief — situation, about-the-source, goal/avoid,
976/// operative-data, and the lens-routing block. Mirrors the plugin's one-shot
977/// `parts`. A one-shot ingest has no paired process mem, so `process_mem`
978/// should carry `skipped = true`.
979#[allow(clippy::too_many_arguments)]
980pub fn assemble_one_shot_brief(
981    resolved: &ResolvedIngest,
982    guidance: &ResolvedGuidance,
983    process_mem: &ProcessMemInfo,
984    destination_schema: Option<&str>,
985    destination_note: Option<&str>,
986    absent_sources: &[String],
987    destination_purpose: Option<&str>,
988) -> String {
989    let parts = [
990        render_situation(resolved, process_mem),
991        render_intent(resolved),
992        render_goal_and_avoid(guidance),
993        render_operative_data(
994            resolved,
995            process_mem,
996            destination_schema,
997            destination_note,
998            absent_sources,
999        ),
1000        render_anchor_instruction(resolved),
1001        render_one_shot_lens(resolved, destination_schema, destination_purpose),
1002    ];
1003    parts
1004        .into_iter()
1005        .filter(|p| !p.is_empty())
1006        .collect::<Vec<_>>()
1007        .join("")
1008}
1009
1010// ---------------------------------------------------------------------------
1011// Verify + sync briefs (group C) — the measure/repair surface beside the build
1012// briefs. Verify MEASURES (no destination mutation of any kind, C1); sync is the
1013// SOLE maintenance writer, carrying BOTH the cursor slice and the open findings
1014// in one brief (C2) with the whole of `/reconcile`'s absorbed judgment (C3). A
1015// rule-by-rule absorption map records where each retired reconcile rule now
1016// lives (bundle plan `05-verify-sync-engine`, C4).
1017// ---------------------------------------------------------------------------
1018
1019use super::findings::{Finding, FindingClass, FindingTarget};
1020use super::prune::{PruneDisposition, PruneProposal};
1021
1022/// Per-class cap on the rendered open-findings list — mirrors [`SLICE_CAP`].
1023const FINDINGS_CAP: usize = SLICE_CAP;
1024
1025/// Render the **verify brief** (C1) — the measurement + capped-adjudication
1026/// prompt an agent consumes to *measure* a binding's fidelity.
1027///
1028/// **Refusal (C1), structural:** this function emits **no destination-mutation
1029/// instruction of any kind**. It tells the agent what to measure and adjudicate,
1030/// never what to write into the destination mem — every repair is recorded as a
1031/// finding for the sync brief ([`render_sync_brief`]) to act on. There is no
1032/// create / update / relate / delete instruction anywhere in the rendered text.
1033pub fn render_verify_brief(resolved: &ResolvedIngest, backlog: usize) -> String {
1034    let mut lines: Vec<String> = vec![
1035        "## Verify — measure fidelity, do not mutate".to_string(),
1036        String::new(),
1037    ];
1038    lines.push(format!(
1039        "You are measuring the fidelity of `{}` — how faithfully the destination mem \
1040         `{}` still matches its source. This pass **only measures**: read the source \
1041         and the mem's anchors, judge whether the graph still holds, and record what \
1042         you find. **You** write nothing into the destination mem — the run itself \
1043         records its findings store, backfills observed anchor hashes, and writes a \
1044         `#verified` baseline, which is engine bookkeeping, not your edits.",
1045        resolved.name, resolved.destination_mem
1046    ));
1047    lines.push(String::new());
1048
1049    lines.push(
1050        "Anchors may carry a `source` naming the binding entry point that produced them — \
1051         note it when recording findings, so fidelity stays measurable per source."
1052            .to_string(),
1053    );
1054    lines.push(String::new());
1055
1056    lines.push("### Adjudicate the queued findings (capped)".to_string());
1057    lines.push(String::new());
1058    if backlog == 0 {
1059        lines.push(
1060            "No findings are queued for adjudication this pass. Spot-check the resolving \
1061             anchors and the uncovered-artifact sample the fidelity report lists, and \
1062             record any drift you observe as a finding."
1063                .to_string(),
1064        );
1065    } else {
1066        lines.push(format!(
1067            "{backlog} finding(s) are queued for adjudication. Working up to the per-run \
1068             adjudication cap (an operations knob — the remainder stays queued and \
1069             re-presents on a later pass), take each queued finding and compare the \
1070             anchored source content against what the entity records. Classify it: still \
1071             accurate, or drifted. **Record the verdict — this is a measurement, not a \
1072             repair.** A drift you record becomes a finding the sync pass repairs; you do \
1073             not fix it here."
1074        ));
1075    }
1076    lines.push(String::new());
1077
1078    lines.push("### Out of scope for verify — no mutation".to_string());
1079    lines.push(String::new());
1080    lines.push(
1081        "Verify writes **no entity content**. Do not update a \
1082         `specifies` / `constraints` section, do not create or delete an entity, do not \
1083         add or remove a relationship. When measurement shows the graph is wrong, that \
1084         is a **finding** — the sync brief (`memstead projection brief --sync`) is the \
1085         one place those repairs are made. Leave every fix to it. (The run itself does \
1086         record its findings store, backfill observed anchor hashes, and write a \
1087         `#verified` baseline — engine bookkeeping, not your edits.)"
1088            .to_string(),
1089    );
1090    lines.push(String::new());
1091
1092    format!("{}\n", lines.join("\n"))
1093}
1094
1095/// A compact `entity → artifact` (or bare artifact) label for a finding target.
1096fn finding_target_label(target: &FindingTarget) -> String {
1097    match target {
1098        FindingTarget::Anchor { entity, artifact } => format!("`{entity}` → `{artifact}`"),
1099        FindingTarget::Artifact { artifact } => format!("`{artifact}`"),
1100    }
1101}
1102
1103/// Render one class-grouped findings section, capped at [`FINDINGS_CAP`] with a
1104/// `…and N more` overflow line. Skips an empty group entirely.
1105fn render_findings_group(
1106    lines: &mut Vec<String>,
1107    heading: &str,
1108    guidance: &str,
1109    items: &[&Finding],
1110) {
1111    if items.is_empty() {
1112        return;
1113    }
1114    lines.push(format!("### {heading}"));
1115    lines.push(String::new());
1116    lines.push(guidance.to_string());
1117    lines.push(String::new());
1118    let shown = items.len().min(FINDINGS_CAP);
1119    for f in &items[..shown] {
1120        lines.push(format!(
1121            "- {} — {}",
1122            finding_target_label(&f.target),
1123            f.detail
1124        ));
1125    }
1126    if items.len() > shown {
1127        lines.push(format!("- …and {} more", items.len() - shown));
1128    }
1129    lines.push(String::new());
1130}
1131
1132/// Render the open-findings block for the sync brief (C2) — the findings
1133/// `findings_store.current(key)` returned, grouped by class, each carrying the
1134/// conservative repair guidance the reconcile rules (C3) mandate. Empty string
1135/// when there are no open findings. `binding_id` feeds the buildable
1136/// `projection exclude` line in the uncovered group's guidance.
1137fn render_open_findings(findings: &[Finding], binding_id: &str) -> String {
1138    if findings.is_empty() {
1139        return String::new();
1140    }
1141    let mut lines: Vec<String> = vec![
1142        "## Open findings to repair".to_string(),
1143        String::new(),
1144        "The verify pass recorded these against the current source state. Repair them \
1145         conservatively (see the rules below); a finding you judge already correct needs \
1146         no write."
1147            .to_string(),
1148        String::new(),
1149    ];
1150
1151    let group = |class: FindingClass| -> Vec<&Finding> {
1152        findings.iter().filter(|f| f.class == class).collect()
1153    };
1154
1155    // Drifted / wrong — the anchored content changed: update only what moved
1156    // (conservatism rule "never rewrite unchanged sections").
1157    render_findings_group(
1158        &mut lines,
1159        "Drifted — the anchored content changed",
1160        "The source the entity describes moved. Update the affected section to match — \
1161         only the part that changed. If the entity is still accurate, leave it. Either \
1162         way, reset the anchor on the entity in ONE update call: `anchors_unset` the \
1163         row, then write it fresh in the same call's `anchors` (same artifact, grain, \
1164         class and source, no hash) — the next verify backfills the freshly observed \
1165         hash and the drift clears. A hashless re-declare WITHOUT the unset keeps the \
1166         stored baseline by design and clears nothing, and updating the entity alone, \
1167         or advancing the baseline, leaves the anchor drifted just the same.",
1168        &group(FindingClass::Drifted),
1169    );
1170    render_findings_group(
1171        &mut lines,
1172        "Wrong — an adjudicated content mismatch",
1173        "Adjudication found the entity no longer matches its source. Correct the \
1174         mismatched section; do not rewrite what still holds.",
1175        &group(FindingClass::Wrong),
1176    );
1177    // Unresolvable anchor — the artifact is gone: delete only if the concept is
1178    // removed entirely (conservatism rule "no deletion unless concept removed").
1179    render_findings_group(
1180        &mut lines,
1181        "Unresolvable anchor — the artifact is gone",
1182        "The source artifact an anchor references is no longer present. Delete the entity \
1183         **only** if the concept is removed entirely; otherwise leave it. Concept-level \
1184         removals are a prune concern with its own never-clobber / conflict-flag rules — \
1185         do not delete on a hunch here.",
1186        &group(FindingClass::UnresolvableAnchor),
1187    );
1188    // Uncovered — a source artifact with no entity: create only for a clearly-new
1189    // concept (conservatism rule "no new entities unless clearly-new concept").
1190    // The third disposition — deliberately not modeled — routes to `projection
1191    // exclude`, the verb whose gate accepts a stable artifact (`advance` gates on
1192    // the changed slice, so a stable uncovered artifact is undispositionable
1193    // there; three campaign runs hit that wall before this line existed).
1194    let uncovered_guidance = format!(
1195        "An in-scope source artifact has no anchor in the mem. Create an entity for it \
1196         **only** if it is a clearly-new concept with no existing entity; otherwise \
1197         extend the entity that already owns the concept, or leave it for a discovery \
1198         build. A third answer is legitimate: the artifact is mined and deliberately \
1199         warrants no entity. Record that with a rationale — it stops presenting here \
1200         from the next brief on:\n\n```bash\nmemstead projection exclude {binding_id} \
1201         --exclusions '{{\"<artifact>\": \"<rationale>\"}}'\n```"
1202    );
1203    render_findings_group(
1204        &mut lines,
1205        "Uncovered — a source artifact with no entity",
1206        &uncovered_guidance,
1207        &group(FindingClass::Uncovered),
1208    );
1209    // Queued — not yet adjudicated: verify owns these, not sync.
1210    render_findings_group(
1211        &mut lines,
1212        "Queued for adjudication — not yet judged",
1213        "These are not adjudicated yet — that is the verify pass's job, not sync's. \
1214         **Skip them here**; they become repairable only after verify classifies them as \
1215         drifted.",
1216        &group(FindingClass::QueuedForAdjudication),
1217    );
1218
1219    format!("{}\n", lines.join("\n"))
1220}
1221
1222/// Render the prune-proposals block for the sync brief (group F) — the deletion
1223/// proposals prune surfaced, each with its guarantee-appropriate treatment.
1224/// Empty string when there are no proposals.
1225///
1226/// **F3 / A5, structural:** every proposal here is exactly that — a *proposal*.
1227/// Nothing in this text (nor anywhere in the engine) deletes an entity; the
1228/// removal reaches the mem **only** when the agent acts on this brief through the
1229/// MCP mutation surface. `authored` entities never reach this block (prune
1230/// excludes them upstream); `derived` entities are flagged with their inputs,
1231/// never proposed for deletion.
1232fn render_prune_proposals(proposals: &[PruneProposal]) -> String {
1233    if proposals.is_empty() {
1234        return String::new();
1235    }
1236    let mut lines: Vec<String> = vec![
1237        "## Prune — proposed removals (you decide; nothing is auto-deleted)".to_string(),
1238        String::new(),
1239        "The source removed the artifacts these entities describe. Each item below is a \
1240         **proposal**: prune writes nothing — you enact (or reject) the removal through the \
1241         normal MCP mutation surface. An `authored` entity is never proposed here; a `derived` \
1242         entity is flagged, never proposed for deletion."
1243            .to_string(),
1244        String::new(),
1245    ];
1246
1247    let group = |d: PruneDisposition| -> Vec<&PruneProposal> {
1248        proposals.iter().filter(|p| p.disposition == d).collect()
1249    };
1250
1251    // Clean-delete — never-clobber, base retrieved, merge clean: a confident
1252    // (still agent-enacted) delete proposal.
1253    let clean = group(PruneDisposition::CleanDelete);
1254    if !clean.is_empty() {
1255        lines.push("### Clean delete — never-clobber three-way merge is clean".to_string());
1256        lines.push(String::new());
1257        lines.push(
1258            "The source base leg was retrievable and the three-way merge found no model-side \
1259             divergence, so removal is safe. **Confirm, then delete via the mutation surface** — \
1260             this is still your call, not an auto-delete."
1261                .to_string(),
1262        );
1263        lines.push(String::new());
1264        let shown = clean.len().min(FINDINGS_CAP);
1265        for p in &clean[..shown] {
1266            lines.push(format!(
1267                "- `{}` — source artifact(s) gone: {}",
1268                p.entity,
1269                artifact_list(&p.artifacts)
1270            ));
1271        }
1272        if clean.len() > shown {
1273            lines.push(format!("- …and {} more", clean.len() - shown));
1274        }
1275        lines.push(String::new());
1276    }
1277
1278    // Conflict-flag — both sides presented, never an auto-write over an edit.
1279    let conflict = group(PruneDisposition::ConflictFlag);
1280    if !conflict.is_empty() {
1281        lines.push("### Conflict-flag — decide, never overwrite a model-side edit".to_string());
1282        lines.push(String::new());
1283        lines.push(
1284            "No retrievable base leg to merge against (a non-git source, or an anchor with no \
1285             pinned version). **Both sides are shown — decide deliberately.** If the concept is \
1286             truly gone, delete via the mutation surface; if the model side was edited on \
1287             purpose, keep it. Prune never overwrites a model-side edit for you."
1288                .to_string(),
1289        );
1290        lines.push(String::new());
1291        let shown = conflict.len().min(FINDINGS_CAP);
1292        for p in &conflict[..shown] {
1293            lines.push(format!(
1294                "- `{}` — **source side:** artifact(s) gone: {}; **model side:** the entity is \
1295                 still present (may carry edits) — you decide.",
1296                p.entity,
1297                artifact_list(&p.artifacts)
1298            ));
1299        }
1300        if conflict.len() > shown {
1301            lines.push(format!("- …and {} more", conflict.len() - shown));
1302        }
1303        lines.push(String::new());
1304    }
1305
1306    // Derived-flagged — flagged with inputs, never proposed for deletion (F3).
1307    let derived = group(PruneDisposition::DerivedFlagged);
1308    if !derived.is_empty() {
1309        lines.push("### Derived — flagged, NOT proposed for deletion".to_string());
1310        lines.push(String::new());
1311        lines.push(
1312            "These entities were **derived** from other inputs. A derived entity is flagged, \
1313             never auto-proposed for deletion — its inputs may still hold even though one source \
1314             artifact vanished. Re-examine the inputs before removing anything."
1315                .to_string(),
1316        );
1317        lines.push(String::new());
1318        let shown = derived.len().min(FINDINGS_CAP);
1319        for p in &derived[..shown] {
1320            let inputs = if p.derived_inputs.is_empty() {
1321                "(no recorded inputs)".to_string()
1322            } else {
1323                artifact_list(&p.derived_inputs)
1324            };
1325            lines.push(format!(
1326                "- `{}` — derived from: {}; source artifact(s) gone: {}.",
1327                p.entity,
1328                inputs,
1329                artifact_list(&p.artifacts)
1330            ));
1331        }
1332        if derived.len() > shown {
1333            lines.push(format!("- …and {} more", derived.len() - shown));
1334        }
1335        lines.push(String::new());
1336    }
1337
1338    format!("{}\n", lines.join("\n"))
1339}
1340
1341/// A compact backtick-joined artifact list.
1342fn artifact_list(artifacts: &[String]) -> String {
1343    if artifacts.is_empty() {
1344        return "(none)".to_string();
1345    }
1346    artifacts
1347        .iter()
1348        .map(|a| format!("`{a}`"))
1349        .collect::<Vec<_>>()
1350        .join(", ")
1351}
1352
1353/// Render the sync brief's `## Situation` block — the sole-maintenance-writer
1354/// mandate and the commits-nothing / engine-commits-per-mutation posture (C3).
1355fn render_sync_situation(resolved: &ResolvedIngest) -> String {
1356    format!(
1357        "## Sync — repair the graph to match the source\n\n\
1358         You are running the sync pass for `{}`. Sync is the graph's **sole maintenance \
1359         writer**: the only place the destination mem `{}` is repaired to match its \
1360         source. Two inputs steer this pass — the source changes since the last sync, and \
1361         the open verify findings — both below. Work them: update, create, relate, and \
1362         (rarely) delete entities so the graph again matches the source.\n\n\
1363         Every mutation routes through the normal MCP mutation surface, and the engine \
1364         commits each one **per-mutation** to the mem's own gitdir. You **stage nothing \
1365         and commit nothing yourself** — not the graph, not the code. Sync commits \
1366         nothing.\n\n",
1367        resolved.name, resolved.destination_mem
1368    )
1369}
1370
1371/// Render the adopt / onboarding block (C3's first-sync/adopt framing; E1's
1372/// brief half): a mem that predates its binding is onboarding, expected-0%, with
1373/// the concrete backfill path — never a failure or red verdict.
1374fn render_adopt_framing(resolved: &ResolvedIngest) -> String {
1375    format!(
1376        "## First sync — adopting `{}`\n\n\
1377         This mem predates its binding: it has no anchors and no prior sync baseline, so \
1378         **0% anchored is expected — this is onboarding, not a failure.** Do not read it \
1379         as drift or a red verdict. There is no cursor to diff against, so the baseline is \
1380         the **current** source HEAD — do **not** replay the whole history; treat the \
1381         current source state as the starting point, and this is a **first sync**.\n\n\
1382         **Backfill path:** run `memstead projection verify {}` to enumerate the in-scope \
1383         source artifacts that carry no entity yet, then cover the clearly-new concepts \
1384         among them through the normal MCP mutation surface — the same conservative rules \
1385         below apply. Backfilling is incremental: a partial pass is fine, and the next \
1386         sync continues where you left off.\n\n",
1387        resolved.destination_mem, resolved.name
1388    )
1389}
1390
1391/// Render the **stale-claim search** block — the bounded step that closes the
1392/// slice-blinkering blind spot: a changed fact can be claimed by entities
1393/// whose anchors lie entirely outside the changed slice, so steering repairs
1394/// at slice-anchored entities alone leaves those claims standing falsified.
1395///
1396/// The shape is deliberately bounded, and the prose binds itself to **the
1397/// changed facts extracted from the slice**: a cosmetic change (formatting,
1398/// comments, moves that alter no fact) yields an empty fact set, and an empty
1399/// fact set instructs nothing — no whole-mem sweep, no live-verify of every
1400/// entity, no rewrite license. Rendered only when the cursor carries actual
1401/// changed artifacts (never for reseed-only / no-signal-only passes).
1402fn render_stale_claim_search(resolved: &ResolvedIngest) -> String {
1403    format!(
1404        "## Stale claims beyond the slice — search, then judge\n\n\
1405         A changed fact can be claimed by an entity whose anchors are all outside the \
1406         changed slice — anchor-steered repairs alone would leave that claim standing \
1407         falsified. Extract the **changed facts** from the changed artifacts above: \
1408         renamed identifiers, changed values or defaults, changed behaviors (e.g. an \
1409         exit code, a flag's meaning), removed or moved concepts. For each changed \
1410         fact, search the destination mem `{}` for claims about it (`memstead_search` \
1411         and its variants — try the new name, the old name/value, and close synonyms), \
1412         and judge **only** the entities whose claims actually mention a changed fact: \
1413         repair a claim the change falsifies, leave everything else untouched.\n\n\
1414         This is a bounded fact-search, not a live-verify of every entity and not a \
1415         rewrite license. If the changes carry no factual claims (formatting, \
1416         comments, cosmetic moves), the fact set is empty and this step ends with no \
1417         search and no edits.\n\n",
1418        resolved.destination_mem
1419    )
1420}
1421
1422/// Render the sync brief's conservatism block — the whole of `/reconcile`'s
1423/// absorbed judgment (C3): the five conservatism rules, edge-removal
1424/// conservatism, and rationale-not-changelog.
1425fn render_sync_conservatism() -> String {
1426    let lines: Vec<&str> = vec![
1427        "## How to repair — be conservative",
1428        "",
1429        "Repair only what the source changes and the findings above actually justify:",
1430        "",
1431        // The five conservatism rules.
1432        "- **Unsure whether an entity is affected — skip it.** A missed update is a later \
1433         finding; a wrong rewrite is damage.",
1434        "- **Do not create a new entity unless the change clearly introduces a new concept \
1435         with no existing entity.** Prefer updating the entity that already owns the \
1436         concept.",
1437        "- **Do not delete an entity unless the change removes the concept entirely.** \
1438         Deletions a prune pass surfaces follow prune's own never-clobber / conflict-flag \
1439         rules — never delete on a hunch here.",
1440        "- **Never rewrite a section that has not changed** — touch only the part the \
1441         change or finding actually affects.",
1442        "- **No speculative edges — add only relationships the diff literally introduces** \
1443         (a new `use` / `import` / dependency you can point at in the change).",
1444        // Edge-removal conservatism.
1445        "- **A dropped dependency FLAGS, it does not auto-remove.** If the change removes an \
1446         import or dependency, leave the matching edge intact and note it for a later \
1447         audit — removals are ambiguous (temporary refactor vs. permanent cut), and a \
1448         stale edge is less damaging than an erased real one. **Edge removal is out of \
1449         scope for sync.**",
1450        // Rationale-not-changelog.
1451        "- **Rationale is reasoning, not a changelog.** When you record why a change was \
1452         made, append the *reasoning* (why this approach, which trade-offs) — never \
1453         `[commit <hash>]` log-style entries.",
1454        "",
1455    ];
1456
1457    format!("{}\n", lines.join("\n"))
1458}
1459
1460/// Render the **sync brief** (C2/C3) — the *single* channel through which
1461/// maintenance-writing work reaches an agent.
1462///
1463/// One brief carries **both** inputs: the cursor slice (`cursor`, rendered via
1464/// [`render_changed_slice`], which also carries the first-sync reseed framing and
1465/// the disposition-recording step) and the open verify findings (`findings`, the
1466/// store's `current(key)` slice). It absorbs the whole of `/reconcile`'s judgment
1467/// (C3): the five conservatism rules, edge-removal conservatism,
1468/// rationale-not-changelog, the commits-nothing / engine-commits-per-mutation
1469/// posture, and — when `adopt` is set — the first-sync/adopt onboarding framing
1470/// (E1's brief half). A rule-by-rule absorption map records where each retired
1471/// reconcile rule now lives (bundle plan `05-verify-sync-engine`, C4).
1472///
1473/// A slice that carries actual changed artifacts additionally renders the
1474/// bounded **stale-claim search** step ([`render_stale_claim_search`]) — the
1475/// beyond-the-slice fact search that catches claims falsified by the change in
1476/// entities whose anchors never intersect the slice.
1477///
1478/// Prune proposals (group F) ride this same brief — F3's single-writer
1479/// invariant: every prune removal reaches the mem only via an agent acting on
1480/// this sync brief. They are rendered as proposals only; nothing is auto-deleted.
1481///
1482/// When nothing has moved, no findings are open, no prune proposals exist, and
1483/// this is not an adopt pass, the brief renders a compact "nothing to sync" note
1484/// instead of the repair machinery — a valid, silent outcome mirroring the build
1485/// brief's no-op roam.
1486pub fn render_sync_brief(
1487    resolved: &ResolvedIngest,
1488    cursor: &SourceCursor,
1489    findings: &[Finding],
1490    prune: &[PruneProposal],
1491    adopt: bool,
1492) -> String {
1493    let preface = render_changed_slice(cursor);
1494    let open_findings = render_open_findings(findings, &resolved.name);
1495    let prune_block = render_prune_proposals(prune);
1496    let has_work =
1497        adopt || !preface.is_empty() || !open_findings.is_empty() || !prune_block.is_empty();
1498
1499    let mut parts: Vec<String> = vec![render_sync_situation(resolved)];
1500
1501    if !has_work {
1502        parts.push(
1503            "## Nothing to sync\n\nThe source has not moved since the last sync, no \
1504             verify findings are open, and no prune proposals stand. There is nothing to \
1505             repair this pass — reporting \"no changes\" is a valid outcome.\n\n"
1506                .to_string(),
1507        );
1508        return parts
1509            .into_iter()
1510            .filter(|p| !p.is_empty())
1511            .collect::<Vec<_>>()
1512            .join("");
1513    }
1514
1515    if adopt {
1516        parts.push(render_adopt_framing(resolved));
1517    }
1518    parts.push(preface);
1519    // The stale-claim search rides only a slice that carries actual changed
1520    // artifacts — its facts are extracted FROM those artifacts, so a pass
1521    // with no changes (findings-only, reseed-only, prune-only) renders none.
1522    if cursor.any_changes {
1523        parts.push(render_stale_claim_search(resolved));
1524    }
1525    parts.push(open_findings);
1526    parts.push(prune_block);
1527    parts.push(render_anchor_instruction(resolved));
1528    parts.push(render_sync_conservatism());
1529
1530    parts
1531        .into_iter()
1532        .filter(|p| !p.is_empty())
1533        .collect::<Vec<_>>()
1534        .join("")
1535}
1536
1537#[cfg(test)]
1538mod tests {
1539    use super::*;
1540    use crate::ingest::resolve::Source;
1541    use crate::pipeline::{IngestTrigger, PatternEntry};
1542
1543    fn guidance(goal: Option<&str>, avoid: Option<&str>) -> ResolvedGuidance {
1544        ResolvedGuidance {
1545            goal: goal.map(str::to_string),
1546            avoid: avoid.map(str::to_string),
1547        }
1548    }
1549
1550    /// Goal and avoid both present: two headers, trimmed prose, block ends in
1551    /// a blank line — byte-for-byte the plugin's `goalAndAvoidBlock`.
1552    #[test]
1553    fn renders_goal_and_avoid_blocks() {
1554        let out = render_goal_and_avoid(&guidance(Some("  build coverage  "), Some("no stubs")));
1555        assert_eq!(
1556            out,
1557            "## Goal\n\nbuild coverage\n\n## Failure modes to avoid\n\nno stubs\n\n"
1558        );
1559    }
1560
1561    /// Goal only: a single header block ending in a blank line.
1562    #[test]
1563    fn renders_goal_only() {
1564        assert_eq!(
1565            render_goal_and_avoid(&guidance(Some("build coverage"), None)),
1566            "## Goal\n\nbuild coverage\n\n"
1567        );
1568    }
1569
1570    /// Avoid only: a single header block ending in a blank line.
1571    #[test]
1572    fn renders_avoid_only() {
1573        assert_eq!(
1574            render_goal_and_avoid(&guidance(None, Some("no stubs"))),
1575            "## Failure modes to avoid\n\nno stubs\n\n"
1576        );
1577    }
1578
1579    /// Neither present (and no pass-through): a lone newline, matching the
1580    /// plugin's `lines.join('\n') + '\n'` on an empty block.
1581    #[test]
1582    fn empty_guidance_yields_a_newline() {
1583        assert_eq!(render_goal_and_avoid(&guidance(None, None)), "\n");
1584        // An all-whitespace field is treated as absent.
1585        assert_eq!(render_goal_and_avoid(&guidance(Some("   "), None)), "\n");
1586    }
1587
1588    fn primary(medium_type: MediumType, scope: Vec<PatternEntry>) -> ResolvedSource {
1589        ResolvedSource::Primary(Source {
1590            name: "f".to_string(),
1591            medium_type,
1592            pointer: "../src".to_string(),
1593            change_detection: None,
1594            scope,
1595            engagement: None,
1596            preparation: None,
1597        })
1598    }
1599
1600    fn resolved(name: &str, intent: Option<&str>, sources: Vec<ResolvedSource>) -> ResolvedIngest {
1601        ResolvedIngest {
1602            name: name.to_string(),
1603            mode: BuildMode::Discovery,
1604            trigger: IngestTrigger::Loop,
1605            batch_size: 20,
1606            deny_paths: vec![],
1607            projection_ref: format!("{name}/p"),
1608            projection_mem: name.to_string(),
1609            projection_name: "p".to_string(),
1610            intent: intent.map(str::to_string),
1611            sources,
1612            destination_mem: name.to_string(),
1613            rules: None,
1614            post_actions: None,
1615        }
1616    }
1617
1618    fn process_present(name: &str) -> ProcessMemInfo {
1619        ProcessMemInfo {
1620            present: true,
1621            skipped: false,
1622            notice: None,
1623            leaf_name: name.to_string(),
1624            mem_label: format!("ingest/{name}"),
1625        }
1626    }
1627
1628    fn allow(path: &str) -> PatternEntry {
1629        PatternEntry {
1630            path: path.to_string(),
1631            mode: PatternMode::Allow,
1632        }
1633    }
1634
1635    fn deny(path: &str) -> PatternEntry {
1636        PatternEntry {
1637            path: path.to_string(),
1638            mode: PatternMode::Deny,
1639        }
1640    }
1641
1642    /// The about-the-source block trims the intent; no intent → empty string.
1643    #[test]
1644    fn renders_intent() {
1645        let r = resolved("macos", Some("  Swift app source.  "), vec![]);
1646        assert_eq!(
1647            render_intent(&r),
1648            "## About the source\n\nSwift app source.\n\n"
1649        );
1650        let none = resolved("macos", None, vec![]);
1651        assert_eq!(render_intent(&none), "");
1652    }
1653
1654    /// The situation block prints the name/mode, the three fixed paragraphs,
1655    /// and the present-process-mem line, ending in a blank line.
1656    #[test]
1657    fn renders_situation_with_present_process_mem() {
1658        let r = resolved("macos", None, vec![]);
1659        let out = render_situation(&r, &process_present("macos"));
1660        assert!(out.starts_with("## Situation\n\nYou are running one iteration of `macos` (discovery mode) inside a loop."));
1661        assert!(out.contains("Mutating the destination is this run's mandate:"));
1662        assert!(out.contains("The `PreCompact` hook fires near the limit"));
1663        assert!(out.contains("A paired process mem `ingest/macos` (schema `ingest@0.5.0`) carries destination-quality debt"));
1664        assert!(
1665            out.ends_with("write rules.\n\n"),
1666            "block ends in a blank line"
1667        );
1668    }
1669
1670    /// The skipped (one-shot) and failed-to-create process-mem branches each
1671    /// render their own note.
1672    #[test]
1673    fn situation_process_mem_branches() {
1674        let mut r = resolved("os", None, vec![]);
1675        r.mode = BuildMode::OneShot;
1676        let skipped = ProcessMemInfo {
1677            present: false,
1678            skipped: true,
1679            notice: None,
1680            leaf_name: "os".to_string(),
1681            mem_label: "ingest/os".to_string(),
1682        };
1683        assert!(
1684            render_situation(&r, &skipped)
1685                .contains("No process mem is paired with this ingest (mode=one-shot;")
1686        );
1687
1688        let failed = ProcessMemInfo {
1689            present: false,
1690            skipped: false,
1691            notice: Some("engine offline".to_string()),
1692            leaf_name: "os".to_string(),
1693            mem_label: "ingest/os".to_string(),
1694        };
1695        let out = render_situation(&resolved("os", None, vec![]), &failed);
1696        assert!(out.contains("could not be auto-created — engine offline."));
1697        assert!(out.contains("memstead mem init os --org-path ingest --schema ingest@0.5.0"));
1698    }
1699
1700    /// Operative data: a primary source with paths/ignore, a reference mem
1701    /// with its cross-mem note, the destination with its schema, and the
1702    /// paired process mem — byte-for-byte the plugin's block.
1703    #[test]
1704    fn renders_operative_data_full() {
1705        let r = resolved(
1706            "macos",
1707            None,
1708            vec![
1709                primary(
1710                    MediumType::Codebase,
1711                    vec![allow("src/**/*.swift"), deny("src/gen/**")],
1712                ),
1713                ResolvedSource::Reference {
1714                    mem: "engine".to_string(),
1715                },
1716            ],
1717        );
1718        let out = render_operative_data(
1719            &r,
1720            &process_present("macos"),
1721            Some("macos-code@0.1.0"),
1722            None,
1723            &[],
1724        );
1725        let expected = "\
1726## Operative data
1727
1728### Sources
1729
1730- **f** (codebase, primary) — `../src`
1731  - Paths: src/**/*.swift
1732  - Ignore: src/gen/**
1733- **graph** (reference) — mem: engine
1734
1735Sources tagged `(reference)` are read-only context for cross-mem edges — search them, never write into them. Only `(primary)` sources are ingested into the destination.
1736
1737**Cross-mem references:** consult `memstead_search mem=engine` before authoring cross-mem edges. The target entity must exist — a wiki-link or relationship to a missing target either auto-stubs (silent) or fails authorization (`CROSS_MEM_RELATION`).
1738
1739### Destination
1740
1741- **macos** — schema: `macos-code@0.1.0`
1742
1743### Paired process mem
1744
1745- **ingest/macos** — schema: `ingest@0.5.0`. Inspect via `memstead_overview` / `memstead_search mem=macos`.
1746\n";
1747        assert_eq!(out, expected);
1748    }
1749
1750    /// Operative data without references or a destination schema: no cross-mem
1751    /// note, a bare destination line.
1752    #[test]
1753    fn renders_operative_data_minimal() {
1754        let r = resolved("g", None, vec![primary(MediumType::Filesystem, vec![])]);
1755        let skipped = ProcessMemInfo {
1756            present: false,
1757            skipped: true,
1758            notice: None,
1759            leaf_name: "g".to_string(),
1760            mem_label: "ingest/g".to_string(),
1761        };
1762        let out = render_operative_data(&r, &skipped, None, Some("**absent** — probe"), &[]);
1763        // The bullet carries the pointer: an agent told to read a source
1764        // must be able to see WHICH tree it was pointed at.
1765        assert!(out.contains("- **f** (filesystem, primary) — `"));
1766        assert!(!out.contains("Cross-mem references"), "no reference note");
1767        assert!(out.contains("### Destination\n\n- **g**\n"));
1768        // The caller decides the destination note — this renderer only
1769        // places it, because the remedy depends on the workspace shape.
1770        assert!(
1771            out.contains("**absent** — probe"),
1772            "the caller's destination note must be rendered: {out}",
1773        );
1774        assert!(
1775            !out.contains("Paired process mem"),
1776            "skipped process mem omitted"
1777        );
1778    }
1779
1780    /// A source whose scope still speaks the retired workspace-relative
1781    /// dialect is warned about IN THE BRIEF — the operative-data block, the
1782    /// one surface a binding running only build and sync ever reads. Without
1783    /// it the notes reach only the verify report and the `--full` refusal,
1784    /// and such a binding is never told its scope selects nothing.
1785    #[test]
1786    fn operative_data_warns_on_retired_scope_dialect() {
1787        let r = resolved(
1788            "g",
1789            None,
1790            // Pointer `../src` (the helper's default): one pattern in the
1791            // retired dialect (begins with the pointer), one converged.
1792            vec![primary(
1793                MediumType::Filesystem,
1794                vec![allow("../src/**/*.md"), allow("notes/**")],
1795            )],
1796        );
1797        let skipped = ProcessMemInfo {
1798            present: false,
1799            skipped: true,
1800            notice: None,
1801            leaf_name: "g".to_string(),
1802            mem_label: "ingest/g".to_string(),
1803        };
1804        let out = render_operative_data(&r, &skipped, None, None, &[]);
1805        assert!(
1806            out.contains("workspace root"),
1807            "the block names the retired dialect: {out}"
1808        );
1809        assert!(
1810            out.contains("../src/**/*.md"),
1811            "the offending pattern is named: {out}"
1812        );
1813        assert!(
1814            out.contains("`**/*.md`"),
1815            "the mechanical rewrite is offered: {out}"
1816        );
1817
1818        // A converged scope renders no warning.
1819        let clean = resolved(
1820            "g",
1821            None,
1822            vec![primary(MediumType::Filesystem, vec![allow("**/*.md")])],
1823        );
1824        let out2 = render_operative_data(&clean, &skipped, None, None, &[]);
1825        assert!(
1826            !out2.contains("workspace root"),
1827            "no warning without a retired-dialect pattern: {out2}"
1828        );
1829    }
1830
1831    /// The discovery assembly concatenates the truthy blocks in order; an
1832    /// empty changed-slice preface (source unmoved) drops out.
1833    #[test]
1834    fn assembles_discovery_brief() {
1835        let r = resolved(
1836            "macos",
1837            Some("Swift source."),
1838            vec![primary(MediumType::Codebase, vec![allow("src/**")])],
1839        );
1840        let g = guidance(Some("build coverage"), None);
1841        let pm = process_present("macos");
1842        let brief = assemble_discovery_brief(&r, &g, &pm, Some("s@1"), None, &[], "");
1843
1844        // Blocks appear in order and the empty preface is dropped.
1845        let sit = brief.find("## Situation").unwrap();
1846        let src = brief.find("## About the source").unwrap();
1847        let goal = brief.find("## Goal").unwrap();
1848        let op = brief.find("## Operative data").unwrap();
1849        let anchors = brief.find("## Provenance — anchor your writes").unwrap();
1850        assert!(
1851            sit < src && src < goal && goal < op && op < anchors,
1852            "blocks in brief order"
1853        );
1854        assert!(
1855            !brief.contains("## Source changes"),
1856            "no changed-slice block when preface empty"
1857        );
1858
1859        // A non-empty preface is appended verbatim at the end.
1860        let with_slice = assemble_discovery_brief(
1861            &r,
1862            &g,
1863            &pm,
1864            Some("s@1"),
1865            None,
1866            &[],
1867            "## Source changes\n\n…\n\n",
1868        );
1869        assert!(with_slice.ends_with("## Source changes\n\n…\n\n"));
1870    }
1871
1872    fn slice(deleted: &[&str], modified: &[&str], added: &[&str]) -> Slice {
1873        Slice {
1874            deleted: deleted.iter().map(|s| s.to_string()).collect(),
1875            modified: modified.iter().map(|s| s.to_string()).collect(),
1876            added: added.iter().map(|s| s.to_string()).collect(),
1877        }
1878    }
1879
1880    fn cmd(key: &str, token: &str) -> SyncCommand {
1881        SyncCommand {
1882            key: key.to_string(),
1883            token: token.to_string(),
1884        }
1885    }
1886
1887    fn note(source: &str, reason: NoSignalReason) -> NoSignalNote {
1888        NoSignalNote {
1889            medium_type: None,
1890            source: source.to_string(),
1891            reason,
1892        }
1893    }
1894
1895    /// The provenance block names a prepared-form source and scopes the
1896    /// `content` advice to file and span anchors; a binding without a
1897    /// preparation carries no such paragraph.
1898    #[test]
1899    fn anchor_instruction_names_prepared_form_sources() {
1900        let mut resolved = resolved("home", None, vec![primary(MediumType::Codebase, vec![])]);
1901        let plain = render_anchor_instruction(&resolved);
1902        assert!(!plain.contains("hash a prepared form"));
1903        if let Some(ResolvedSource::Primary(src)) = resolved.sources.first_mut() {
1904            src.preparation = Some(crate::preparation::CODE_MAP.to_string());
1905        }
1906        let prepared = render_anchor_instruction(&resolved);
1907        assert!(
1908            prepared.contains("hash a prepared form (`code-map`)"),
1909            "{prepared}"
1910        );
1911        assert!(prepared.contains("interface digest"));
1912        assert!(prepared.contains("for a `file` or `span` anchor pass the artifact's `content`"));
1913        assert!(prepared.contains("a `tree` anchor takes no content"));
1914    }
1915
1916    /// A delivery sequence renders in its total order, numbered by position,
1917    /// capped at the batch with the remainder counted, disposed units
1918    /// subtracted but counted, and its unit ids kept out of the alphabetical
1919    /// class lists (a file-level id in the same slice still lists there).
1920    #[test]
1921    fn changed_slice_renders_delivery_sequences_in_order() {
1922        use crate::preparation::UnitChange;
1923        let unit = |id: &str, order: &str, change: UnitChange, disposed: bool| DeliveredUnit {
1924            id: id.to_string(),
1925            order_key: order.to_string(),
1926            change,
1927            disposed,
1928        };
1929        let units = vec![
1930            unit(
1931                "log/b.md#2026-08-20T00:00:00",
1932                "2026-08-20T00:00:00",
1933                UnitChange::Added,
1934                true,
1935            ),
1936            unit(
1937                "log/a.md#2026-08-21T00:00:00",
1938                "2026-08-21T00:00:00",
1939                UnitChange::Deleted,
1940                false,
1941            ),
1942            unit(
1943                "log/b.md#2026-08-22T00:00:00",
1944                "2026-08-22T00:00:00",
1945                UnitChange::Modified,
1946                false,
1947            ),
1948            unit(
1949                "log/a.md#2026-08-23T00:00:00",
1950                "2026-08-23T00:00:00",
1951                UnitChange::Added,
1952                false,
1953            ),
1954        ];
1955        let cursor = SourceCursor {
1956            // `slice(deleted, modified, added)`.
1957            union: slice(
1958                &["log/a.md#2026-08-21T00:00:00"],
1959                &["log/b.md#2026-08-22T00:00:00"],
1960                &[
1961                    "log/a.md#2026-08-23T00:00:00",
1962                    "log/b.md#2026-08-20T00:00:00",
1963                    "other/x.rs",
1964                ],
1965            ),
1966            write_commands: vec![],
1967            reseed: vec![],
1968            no_signal: vec![],
1969            any_changes: true,
1970            degraded: false,
1971            dead_denies: vec![],
1972            dest_mem: "home".to_string(),
1973            binding_id: "home/log".to_string(),
1974            delivery: vec![DeliverySequence {
1975                source: "log".to_string(),
1976                preparation: "dated-entries".to_string(),
1977                first_run: false,
1978                degraded: true,
1979                batch: 2,
1980                units,
1981            }],
1982        };
1983        let out = render_changed_slice(&cursor);
1984        assert!(
1985            out.contains("### Delivery sequence: `log` (`dated-entries`)"),
1986            "{out}"
1987        );
1988        assert!(out.contains("The units that changed since the last pass"));
1989        assert!(out.contains("No baseline content was retrievable"));
1990        let listed: Vec<&str> = out
1991            .lines()
1992            .filter(|l| l.starts_with(|c: char| c.is_ascii_digit()))
1993            .collect();
1994        assert_eq!(
1995            listed,
1996            vec![
1997                "2. `log/a.md#2026-08-21T00:00:00` (deleted)",
1998                "3. `log/b.md#2026-08-22T00:00:00` (changed)",
1999            ],
2000            "positions are total-order positions; the disposed first unit is skipped"
2001        );
2002        assert!(out.contains("…and 1 more, presented in order once these are disposed"));
2003        assert!(out.contains("1 unit of this sequence already disposed"));
2004        // The class lists carry only the file-level id.
2005        assert!(out.contains("**Added:**\n- `other/x.rs`\n"), "{out}");
2006        assert!(!out.contains("**Modified:**"));
2007        assert!(!out.contains("**Deleted:**"));
2008    }
2009
2010    /// No changes and no reseed → the block is empty (brief stays a plain roam).
2011    #[test]
2012    fn changed_slice_empty_when_nothing_moved() {
2013        let cursor = SourceCursor {
2014            union: slice(&[], &[], &[]),
2015            write_commands: vec![],
2016            reseed: vec![],
2017            no_signal: vec![],
2018            any_changes: false,
2019            degraded: false,
2020            dead_denies: vec![],
2021            dest_mem: "engine".to_string(),
2022            binding_id: "engine/graph".to_string(),
2023            delivery: vec![],
2024        };
2025        assert_eq!(render_changed_slice(&cursor), "");
2026    }
2027
2028    /// A zero-selecting deny entry surfaces as a rendered warning even when
2029    /// nothing else moved — it is never a silent no-op. The entry name and the
2030    /// migration hint both appear.
2031    #[test]
2032    fn changed_slice_renders_dead_deny_warning() {
2033        let cursor = SourceCursor {
2034            union: slice(&[], &[], &[]),
2035            write_commands: vec![],
2036            reseed: vec![],
2037            no_signal: vec![],
2038            any_changes: false,
2039            degraded: false,
2040            dead_denies: vec!["dev".to_string(), "typo/**".to_string()],
2041            dest_mem: "engine".to_string(),
2042            binding_id: "engine/graph".to_string(),
2043            delivery: vec![],
2044        };
2045        let out = render_changed_slice(&cursor);
2046        assert!(out.contains("deny_paths` entries match nothing"));
2047        assert!(out.contains("- `dev`"));
2048        assert!(out.contains("- `typo/**`"));
2049    }
2050
2051    /// A changed pass renders deleted-first, then the recording block — built
2052    /// here from single-line literals transcribed from the plugin so any
2053    /// line-continuation drift in the impl is caught.
2054    #[test]
2055    fn changed_slice_renders_slice_and_recording() {
2056        let cursor = SourceCursor {
2057            union: slice(&["a.rs"], &["b.rs"], &[]),
2058            write_commands: vec![cmd("engine-graph/source", "HEADSHA")],
2059            reseed: vec![],
2060            no_signal: vec![],
2061            any_changes: true,
2062            degraded: false,
2063            dead_denies: vec![],
2064            dest_mem: "engine".to_string(),
2065            binding_id: "engine/graph".to_string(),
2066            delivery: vec![],
2067        };
2068        let expected_lines = [
2069            "## Source changes since the last sync\n",
2070            "The source moved since this graph was last synced. Steer this pass at these changed artifacts **first** — they are where the graph is most likely now wrong.\n",
2071            "**Deleted:**",
2072            "- `a.rs`",
2073            "",
2074            "**Modified:**",
2075            "- `b.rs`",
2076            "",
2077            "### Recording your dispositions (do this LAST)\n",
2078            "Only after you have worked the changed artifacts above — and only for the artifacts you actually judged — record a disposition for each, so the next pass targets just what changes next. This advance is resumable and non-stalling: a partial pass is honored, and if the source moves mid-pass the remaining slice re-presents (remaining + new) without losing your recorded work.\n",
2079            "Anchored work disposes itself: at advance time, every listed artifact that an anchor in the destination mem references is marked `worked` automatically (an explicit disposition you pass wins over the auto-mark). Supply dispositions only for the residue — artifacts you skipped, judged out of intent, or worked without anchors. The gate accepts only artifact ids listed above — an unknown id refuses the whole call. When every artifact is disposed, the sync baseline advances automatically. Run:\n",
2080            "```sh",
2081            r#"memstead projection advance engine/graph --dispositions '{"<artifact>": "<disposition>", ...}'"#,
2082            "```",
2083            "If you were interrupted before finishing, that is fine — your recorded dispositions persist, and the next run re-presents only what is left.\n",
2084        ];
2085        assert_eq!(
2086            render_changed_slice(&cursor),
2087            format!("{}\n", expected_lines.join("\n"))
2088        );
2089    }
2090
2091    /// The reseed-only path names the first-sync keys and still emits the
2092    /// recording block (the reseed baselines).
2093    #[test]
2094    fn changed_slice_reseed_only() {
2095        let cursor = SourceCursor {
2096            union: slice(&[], &[], &[]),
2097            write_commands: vec![],
2098            reseed: vec![cmd("ing/f", "TOK")],
2099            no_signal: vec![],
2100            any_changes: false,
2101            degraded: false,
2102            dead_denies: vec![],
2103            dest_mem: "d".to_string(),
2104            binding_id: "d/p".to_string(),
2105            delivery: vec![],
2106        };
2107        let out = render_changed_slice(&cursor);
2108        assert!(out.starts_with("## Source changes since the last sync\n\n"));
2109        assert!(out.contains(
2110            "No usable sync baseline exists for `ing/f` — none was recorded, or the recorded one is not a commit of the source's repo (foreign or garbage-collected). Treating the current source state as the baseline. No priority slice from it this pass; proceed as usual."
2111        ));
2112        assert!(out.contains(
2113            r#"memstead projection advance d/p --dispositions '{"<artifact>": "<disposition>", ...}'"#
2114        ));
2115        assert!(
2116            !out.contains("The source moved"),
2117            "no 'moved' copy when only reseeding"
2118        );
2119    }
2120
2121    /// Every no-signal reason renders a distinct, named note under the preface,
2122    /// distinguishable from one another and from a genuinely-unchanged source
2123    /// (which renders nothing). With no changes and no reseed there is no
2124    /// recording block, but the preface is non-empty — a source's blindness is
2125    /// visible. `signal:none` renders literally.
2126    #[test]
2127    fn changed_slice_renders_no_signal_reasons_distinguishably() {
2128        let cursor = SourceCursor {
2129            union: slice(&[], &[], &[]),
2130            write_commands: vec![],
2131            reseed: vec![],
2132            no_signal: vec![
2133                note("code-facet", NoSignalReason::Unscoped),
2134                note("plan-facet", NoSignalReason::DetectionNone),
2135                note("git-facet", NoSignalReason::GitUnavailable),
2136                note("ref-mem", NoSignalReason::GraphSnapshotMissing),
2137            ],
2138            any_changes: false,
2139            degraded: false,
2140            dead_denies: vec![],
2141            dest_mem: "d".to_string(),
2142            binding_id: "d/p".to_string(),
2143            delivery: vec![],
2144        };
2145        let out = render_changed_slice(&cursor);
2146        assert!(out.starts_with("## Source changes since the last sync\n"));
2147        assert!(out.contains("Some sources produced **no change signal**"));
2148        // Each source is named and carries its own distinct reason text.
2149        assert!(out.contains("- `code-facet`: unscoped facet (no allow patterns)"));
2150        assert!(
2151            out.contains("- `plan-facet`: `signal:none`"),
2152            "detection-none renders the literal signal:none state"
2153        );
2154        assert!(out.contains("- `git-facet`: git signal unavailable"));
2155        assert!(out.contains("- `ref-mem`: graph snapshot missing"));
2156        // The four reason texts are mutually distinct.
2157        let texts = [
2158            no_signal_reason_text(NoSignalReason::Unscoped, None),
2159            no_signal_reason_text(NoSignalReason::DetectionNone, None),
2160            no_signal_reason_text(NoSignalReason::GitUnavailable, None),
2161            no_signal_reason_text(NoSignalReason::GraphSnapshotMissing, None),
2162        ];
2163        for (i, a) in texts.iter().enumerate() {
2164            for b in &texts[i + 1..] {
2165                assert_ne!(a, b, "each no-signal reason must render distinctly");
2166            }
2167        }
2168        // No baseline to advance → no recording block, no "moved" copy.
2169        assert!(!out.contains("### Recording your dispositions"));
2170        assert!(!out.contains("The source moved"));
2171    }
2172
2173    /// A changed source and a no-signal source coexist: the changed slice AND
2174    /// the no-signal note both render in the one preface, and the changed
2175    /// source still emits its recording command.
2176    #[test]
2177    fn changed_slice_mixes_changes_and_no_signal() {
2178        let cursor = SourceCursor {
2179            union: slice(&[], &["b.rs"], &[]),
2180            write_commands: vec![cmd("ing/f", "HEAD")],
2181            reseed: vec![],
2182            no_signal: vec![note("other", NoSignalReason::Unscoped)],
2183            any_changes: true,
2184            degraded: false,
2185            dead_denies: vec![],
2186            dest_mem: "d".to_string(),
2187            binding_id: "d/p".to_string(),
2188            delivery: vec![],
2189        };
2190        let out = render_changed_slice(&cursor);
2191        assert!(out.contains("The source moved"));
2192        assert!(out.contains("**Modified:**"));
2193        assert!(out.contains("- `other`: unscoped facet"));
2194        assert!(out.contains("### Recording your dispositions"));
2195        assert!(out.contains(
2196            r#"memstead projection advance d/p --dispositions '{"<artifact>": "<disposition>", ...}'"#
2197        ));
2198    }
2199
2200    /// The one-shot lens block: destination-set table, routing rule (when set),
2201    /// idempotency, report template, and archive note (when set).
2202    #[test]
2203    fn renders_one_shot_lens_block() {
2204        let mut r = resolved("os", Some("plan source"), vec![]);
2205        r.rules = Some(serde_json::json!({ "routing": "route each entity to its spec" }));
2206        r.post_actions = Some(serde_json::json!({ "archive_source": true }));
2207
2208        let out = render_one_shot_lens(&r, Some("planning@0.1.0"), Some("the plan graph"));
2209        assert!(out.starts_with("## Mode: one-shot — lens routing\n\n"));
2210        assert!(out.contains(
2211            "### Destination set\n\n| Mem | Schema | Purpose |\n|-------|--------|---------|\n| os | planning@0.1.0 | the plan graph |\n"
2212        ));
2213        assert!(out.contains("### Routing rule\n\n```\nroute each entity to its spec\n```\n"));
2214        assert!(out.contains("### Idempotency"));
2215        assert!(out.contains("### Report: os"));
2216        assert!(out.contains("### Archive after run"));
2217        assert!(out.ends_with("is set on this ingest.\n\n"));
2218
2219        // No routing / no archive → those sections are omitted; a bare schema
2220        // and default purpose fall back.
2221        let bare = resolved("os", None, vec![]);
2222        let out2 = render_one_shot_lens(&bare, None, None);
2223        assert!(out2.contains("| os | (none) | (no purpose declared) |"));
2224        assert!(!out2.contains("### Routing rule"));
2225        assert!(!out2.contains("### Archive after run"));
2226        assert!(out2.contains("### End-of-run report"));
2227    }
2228
2229    /// The one-shot brief assembles situation (one-shot mode) + intent +
2230    /// goal/avoid + operative-data + the lens block; no process mem, no slice.
2231    #[test]
2232    fn assembles_one_shot_brief() {
2233        let mut r = resolved(
2234            "os",
2235            Some("src"),
2236            vec![primary(MediumType::Filesystem, vec![])],
2237        );
2238        r.mode = BuildMode::OneShot;
2239        let g = guidance(Some("goal"), None);
2240        let skipped = ProcessMemInfo {
2241            present: false,
2242            skipped: true,
2243            notice: None,
2244            leaf_name: "os".to_string(),
2245            mem_label: "ingest/os".to_string(),
2246        };
2247        let brief =
2248            assemble_one_shot_brief(&r, &g, &skipped, Some("s@1"), None, &[], Some("purpose"));
2249        assert!(brief.contains("(one-shot mode)"));
2250        assert!(brief.contains("No process mem is paired with this ingest (mode=one-shot;"));
2251        assert!(brief.contains("## Mode: one-shot — lens routing"));
2252        assert!(
2253            brief.contains("## Provenance — anchor your writes"),
2254            "one-shot carries the anchor instruction"
2255        );
2256        assert!(
2257            !brief.contains("## Source changes"),
2258            "one-shot has no changed-slice"
2259        );
2260    }
2261
2262    /// Beyond SLICE_CAP entries an overflow line stands in; the degraded flag
2263    /// adds the coarse-targeting note. Also exercises shell-quoting a JSON
2264    /// digest token (embedded quotes).
2265    #[test]
2266    fn changed_slice_caps_and_degrades_and_quotes() {
2267        let many: Vec<String> = (0..SLICE_CAP + 3).map(|i| format!("f{i}.rs")).collect();
2268        let cursor = SourceCursor {
2269            union: Slice {
2270                deleted: vec![],
2271                modified: vec![],
2272                added: many,
2273            },
2274            write_commands: vec![cmd("ing/f", r#"{"v":1,"aggregate":"x"}"#)],
2275            reseed: vec![],
2276            no_signal: vec![],
2277            any_changes: true,
2278            degraded: true,
2279            dead_denies: vec![],
2280            dest_mem: "d".to_string(),
2281            binding_id: "d/p".to_string(),
2282            delivery: vec![],
2283        };
2284        let out = render_changed_slice(&cursor);
2285        assert!(out.contains(&format!("- …and {} more added", 3)));
2286        assert!(out.contains("Precise change history for one or more facets was unavailable"));
2287        // The brief renders the `projection advance` line (the token is no longer
2288        // an operator command — the engine computes and records it, D4/D7).
2289        assert!(out.contains(
2290            r#"memstead projection advance d/p --dispositions '{"<artifact>": "<disposition>", ...}'"#
2291        ));
2292    }
2293
2294    // ---- verify + sync briefs (group C) ----------------------------------
2295
2296    fn finding(class: FindingClass, target: FindingTarget, detail: &str) -> Finding {
2297        Finding {
2298            key: crate::ingest::findings::FindingKey {
2299                binding_hash: "h".to_string(),
2300                source_head: "s".to_string(),
2301            },
2302            facet: "src".to_string(),
2303            target,
2304            class,
2305            detail: detail.to_string(),
2306            created_at: "1".to_string(),
2307        }
2308    }
2309
2310    fn anchor_target(entity: &str, artifact: &str) -> FindingTarget {
2311        FindingTarget::Anchor {
2312            entity: entity.to_string(),
2313            artifact: artifact.to_string(),
2314        }
2315    }
2316
2317    fn artifact_target(artifact: &str) -> FindingTarget {
2318        FindingTarget::Artifact {
2319            artifact: artifact.to_string(),
2320        }
2321    }
2322
2323    fn empty_cursor() -> SourceCursor {
2324        SourceCursor {
2325            union: slice(&[], &[], &[]),
2326            write_commands: vec![],
2327            reseed: vec![],
2328            no_signal: vec![],
2329            any_changes: false,
2330            degraded: false,
2331            dead_denies: vec![],
2332            dest_mem: "engine".to_string(),
2333            binding_id: "engine/graph".to_string(),
2334            delivery: vec![],
2335        }
2336    }
2337
2338    /// C1 — the verify brief measures + adjudicates, and carries NO
2339    /// destination-mutation instruction of any kind. It names the sync brief as
2340    /// the repair home and prints its explicit no-mutation refusal.
2341    #[test]
2342    fn verify_brief_measures_and_refuses_mutation() {
2343        let r = resolved("engine", None, vec![]);
2344        let out = render_verify_brief(&r, 3);
2345        // Measurement + capped adjudication instructions.
2346        assert!(out.starts_with("## Verify — measure fidelity, do not mutate"));
2347        assert!(out.contains("3 finding(s) are queued for adjudication"));
2348        assert!(out.contains("per-run adjudication cap"));
2349        assert!(out.contains("this is a measurement, not a repair"));
2350        // C1 REFUSAL: structurally no destination-mutation instruction. The
2351        // brief never tells the agent to write into the mem — it says the
2352        // opposite, and hands repairs to the sync brief.
2353        //
2354        // Reworded 2026-08-20. This assertion used to pin "Verify writes
2355        // **nothing** into the destination mem", which was false: a completed
2356        // run records its findings store, backfills observed anchor hashes and
2357        // writes a `#verified` baseline. The refusal this test exists to
2358        // protect is about ENTITY CONTENT — that is what an agent reading the
2359        // brief must not touch — so the claim is narrowed to what is true
2360        // rather than deleted, and the bookkeeping is asserted alongside it so
2361        // the correction cannot silently regress.
2362        assert!(out.contains("Verify writes **no entity content**"));
2363        assert!(out.contains("`#verified` baseline"));
2364        assert!(out.contains("memstead projection brief --sync"));
2365        // No create/update/relate/delete *instruction* — the only occurrences of
2366        // those verbs are in the negated "do not …" refusal line.
2367        assert!(out.contains("do not create or delete an entity"));
2368        assert!(!out.contains("via `memstead_create`"));
2369        assert!(!out.contains("Run `memstead_update`"));
2370
2371        // Backlog 0 → the spot-check phrasing, still no mutation instruction.
2372        let zero = render_verify_brief(&r, 0);
2373        assert!(zero.contains("No findings are queued for adjudication"));
2374        assert!(zero.contains("record any drift you observe as a finding"));
2375        assert!(zero.contains("Verify writes **no entity content**"));
2376    }
2377
2378    /// C2 — the sync brief carries BOTH inputs in ONE render: the cursor slice
2379    /// (the changed artifacts) AND the open findings (`current(key)`), plus the
2380    /// commits-nothing posture.
2381    #[test]
2382    fn sync_brief_carries_both_cursor_and_findings() {
2383        let r = resolved("engine", None, vec![]);
2384        let cursor = SourceCursor {
2385            union: slice(&["gone.rs"], &["moved.rs"], &[]),
2386            write_commands: vec![cmd("engine/graph/src#synced", "HEAD")],
2387            reseed: vec![],
2388            no_signal: vec![],
2389            any_changes: true,
2390            degraded: false,
2391            dead_denies: vec![],
2392            dest_mem: "engine".to_string(),
2393            binding_id: "engine/graph".to_string(),
2394            delivery: vec![],
2395        };
2396        let findings = vec![
2397            finding(
2398                FindingClass::Drifted,
2399                anchor_target("engine--e", "src/moved.rs"),
2400                "prepared-content hash drifted",
2401            ),
2402            finding(
2403                FindingClass::Uncovered,
2404                artifact_target("src/new.rs"),
2405                "in scope, no anchor",
2406            ),
2407        ];
2408        let out = render_sync_brief(&r, &cursor, &findings, &[], false);
2409        // Both inputs present in one brief (C2).
2410        assert!(out.contains("## Source changes since the last sync"));
2411        assert!(out.contains("`moved.rs`"));
2412        assert!(out.contains("## Open findings to repair"));
2413        assert!(out.contains("`engine--e` → `src/moved.rs`"));
2414        assert!(out.contains("`src/new.rs`"));
2415        // Sole-writer + commits-nothing posture (C3).
2416        assert!(out.contains("sole maintenance writer"));
2417        assert!(out.contains("commits each one **per-mutation**"));
2418        assert!(out.contains("Sync commits nothing."));
2419    }
2420
2421    /// C3 — the sync brief carries the whole absorbed reconcile judgment: the
2422    /// five conservatism rules, edge-removal conservatism, and
2423    /// rationale-not-changelog. Each rule is quoted verbatim so absorption is
2424    /// verifiable against the C4 diff artifact.
2425    #[test]
2426    fn sync_brief_absorbs_reconcile_conservatism() {
2427        let r = resolved("engine", None, vec![]);
2428        let findings = vec![finding(
2429            FindingClass::Uncovered,
2430            artifact_target("src/x.rs"),
2431            "d",
2432        )];
2433        let out = render_sync_brief(&r, &empty_cursor(), &findings, &[], false);
2434        // Five conservatism rules.
2435        assert!(out.contains("Unsure whether an entity is affected — skip it."));
2436        assert!(out.contains(
2437            "Do not create a new entity unless the change clearly introduces a new concept"
2438        ));
2439        assert!(
2440            out.contains("Do not delete an entity unless the change removes the concept entirely.")
2441        );
2442        assert!(out.contains("Never rewrite a section that has not changed"));
2443        assert!(out.contains(
2444            "No speculative edges — add only relationships the diff literally introduces"
2445        ));
2446        // Edge-removal conservatism — flags, never auto-removes.
2447        assert!(out.contains("A dropped dependency FLAGS, it does not auto-remove."));
2448        assert!(out.contains("Edge removal is out of scope for sync."));
2449        // Rationale-not-changelog.
2450        assert!(out.contains("Rationale is reasoning, not a changelog."));
2451        assert!(out.contains("`[commit <hash>]` log-style entries"));
2452    }
2453
2454    /// C3 — the first-sync/adopt framing (E1's brief half): a mem predating its
2455    /// binding is onboarding, expected-0%, with the backfill path — never a
2456    /// failure. The changed-slice reseed carries the per-facet first-sync note.
2457    #[test]
2458    fn sync_brief_renders_adopt_framing() {
2459        let mut r = resolved("engine", None, vec![]);
2460        // In a real ResolvedIngest, `name` is the canonical binding id
2461        // `<mem>/<stem>` while `destination_mem` is the mem — the header uses the
2462        // mem, the backfill command uses the binding id.
2463        r.name = "engine/graph".to_string();
2464        let out = render_sync_brief(&r, &empty_cursor(), &[], &[], true);
2465        assert!(out.contains("## First sync — adopting `engine`"));
2466        assert!(out.contains("0% anchored is expected — this is onboarding, not a failure."));
2467        assert!(out.contains("do **not** replay the whole history"));
2468        assert!(out.contains("**Backfill path:**"));
2469        assert!(out.contains("memstead projection verify engine/graph"));
2470    }
2471
2472    /// The reseed (first-sync, no cursor) framing lives in the embedded
2473    /// changed-slice preface — the sync brief inherits it for free.
2474    #[test]
2475    fn sync_brief_inherits_first_sync_reseed_framing() {
2476        let r = resolved("engine", None, vec![]);
2477        let mut cursor = empty_cursor();
2478        cursor.reseed = vec![cmd("engine/graph/src#synced", "TOK")];
2479        let out = render_sync_brief(&r, &cursor, &[], &[], false);
2480        assert!(out.contains("No usable sync baseline exists for"));
2481        assert!(out.contains("Treating the current source state as the baseline"));
2482    }
2483
2484    /// A no-work sync pass (nothing moved, no findings, not adopt) renders a
2485    /// compact "nothing to sync" note and no repair machinery — a valid outcome.
2486    #[test]
2487    fn sync_brief_nothing_to_sync() {
2488        let r = resolved("engine", None, vec![]);
2489        let out = render_sync_brief(&r, &empty_cursor(), &[], &[], false);
2490        assert!(out.contains("## Nothing to sync"));
2491        assert!(!out.contains("## How to repair"));
2492        assert!(!out.contains("## Open findings"));
2493    }
2494
2495    /// C2 REFUSAL complement — the sync brief is the ONLY render carrying repair
2496    /// instructions; the verify brief carries none. The verify brief has no
2497    /// "## How to repair" / "## Open findings to repair" block; the sync brief
2498    /// has both.
2499    #[test]
2500    fn only_sync_brief_carries_repair_instructions() {
2501        let r = resolved("engine", None, vec![]);
2502        let findings = vec![finding(
2503            FindingClass::Drifted,
2504            anchor_target("engine--e", "src/a.rs"),
2505            "d",
2506        )];
2507        let verify = render_verify_brief(&r, 1);
2508        let sync = render_sync_brief(&r, &empty_cursor(), &findings, &[], false);
2509        // Verify: no repair section, no repair verbs as instructions.
2510        assert!(!verify.contains("## How to repair"));
2511        assert!(!verify.contains("Update the affected section"));
2512        // Sync: both repair sections present.
2513        assert!(sync.contains("## How to repair — be conservative"));
2514        assert!(sync.contains("## Open findings to repair"));
2515        assert!(sync.contains("Update the affected section to match"));
2516    }
2517
2518    /// Criterion — a changed slice renders the bounded **stale-claim search**
2519    /// step: extract the changed facts, search the destination mem for claims
2520    /// about them, judge only entities whose claims mention a changed fact.
2521    #[test]
2522    fn sync_brief_changed_slice_renders_stale_claim_search() {
2523        let r = resolved("engine", None, vec![]);
2524        let cursor = SourceCursor {
2525            union: slice(&[], &["moved.rs"], &[]),
2526            write_commands: vec![cmd("engine/graph/src#synced", "HEAD")],
2527            reseed: vec![],
2528            no_signal: vec![],
2529            any_changes: true,
2530            degraded: false,
2531            dead_denies: vec![],
2532            dest_mem: "engine".to_string(),
2533            binding_id: "engine/graph".to_string(),
2534            delivery: vec![],
2535        };
2536        let out = render_sync_brief(&r, &cursor, &[], &[], false);
2537        assert!(out.contains("## Stale claims beyond the slice — search, then judge"));
2538        // The search is bound to the changed facts and the destination mem.
2539        assert!(out.contains("Extract the **changed facts** from the changed artifacts above"));
2540        assert!(out.contains("search the destination mem `engine`"));
2541        assert!(out.contains("`memstead_search`"));
2542        assert!(out.contains("judge **only** the entities whose claims actually mention"));
2543        // Bounded shape, spelled out: not a live-verify, not a rewrite license,
2544        // and an empty fact set (cosmetic change) instructs nothing.
2545        assert!(out.contains("not a live-verify of every entity"));
2546        assert!(out.contains("not a rewrite license"));
2547        assert!(out.contains("the fact set is empty and this step ends with no"));
2548        // REFUSAL complement: the never-rewrite-unchanged-sections rule still
2549        // rides the same brief — idempotence stays protected.
2550        assert!(out.contains("Never rewrite a section that has not changed"));
2551    }
2552
2553    /// REFUSAL — the stale-claim search is absent from every pass whose cursor
2554    /// carries no changed artifacts: findings-only, reseed-only (first sync),
2555    /// and nothing-to-sync briefs instruct no fact search and no mem sweep.
2556    #[test]
2557    fn sync_brief_without_changes_renders_no_stale_claim_search() {
2558        let r = resolved("engine", None, vec![]);
2559        let heading = "## Stale claims beyond the slice";
2560
2561        // Findings-only pass (source unmoved).
2562        let findings = vec![finding(
2563            FindingClass::Uncovered,
2564            artifact_target("src/x.rs"),
2565            "d",
2566        )];
2567        let out = render_sync_brief(&r, &empty_cursor(), &findings, &[], false);
2568        assert!(!out.contains(heading), "findings-only pass must not search");
2569
2570        // Reseed-only pass (first sync, no diffable slice).
2571        let mut reseed_cursor = empty_cursor();
2572        reseed_cursor.reseed = vec![cmd("engine/graph/src#synced", "TOK")];
2573        let out = render_sync_brief(&r, &reseed_cursor, &[], &[], false);
2574        assert!(!out.contains(heading), "reseed-only pass must not search");
2575
2576        // Nothing-to-sync pass.
2577        let out = render_sync_brief(&r, &empty_cursor(), &[], &[], false);
2578        assert!(!out.contains(heading));
2579    }
2580
2581    /// A large findings group caps at FINDINGS_CAP with an overflow line —
2582    /// mirroring the changed-slice cap, so no facet renders unbounded.
2583    #[test]
2584    fn sync_brief_caps_large_findings_group() {
2585        let r = resolved("engine", None, vec![]);
2586        let findings: Vec<Finding> = (0..FINDINGS_CAP + 4)
2587            .map(|i| {
2588                finding(
2589                    FindingClass::Uncovered,
2590                    artifact_target(&format!("src/f{i}.rs")),
2591                    "d",
2592                )
2593            })
2594            .collect();
2595        let out = render_sync_brief(&r, &empty_cursor(), &findings, &[], false);
2596        assert!(out.contains("- …and 4 more"));
2597        // The last few beyond the cap are not rendered inline.
2598        assert!(!out.contains(&format!("src/f{}.rs", FINDINGS_CAP + 3)));
2599    }
2600
2601    /// Criterion 8 (loop economics) — the default loop path's sync brief is
2602    /// **locked block-by-block** for a representative changed-slice pass: the
2603    /// heading sequence below is the whole brief, in this order, and nothing
2604    /// else. The only blocks this plan added to the loop path are the
2605    /// stale-claim search (criterion 1) and the head-durable findings
2606    /// presentation (criterion 2) — both locked here in place. The inventory
2607    /// operation (`projection verify --full` + the `/sync --inventory` repair
2608    /// loop) added NO block and NO line to this render, so a new block
2609    /// appearing (or one moving) fails this test and must be a deliberate
2610    /// loop-economics decision.
2611    #[test]
2612    fn sync_brief_block_sequence_locked_for_changed_slice() {
2613        let r = resolved("engine", None, vec![]);
2614        let cursor = SourceCursor {
2615            union: slice(&["gone.rs"], &["moved.rs"], &["new.rs"]),
2616            write_commands: vec![cmd("engine/graph/src#synced", "HEAD")],
2617            reseed: vec![],
2618            no_signal: vec![],
2619            any_changes: true,
2620            degraded: false,
2621            dead_denies: vec![],
2622            dest_mem: "engine".to_string(),
2623            binding_id: "engine/graph".to_string(),
2624            delivery: vec![],
2625        };
2626        let findings = vec![
2627            finding(
2628                FindingClass::Drifted,
2629                anchor_target("engine--e", "src/moved.rs"),
2630                "prepared-content hash drifted",
2631            ),
2632            finding(
2633                FindingClass::Uncovered,
2634                artifact_target("src/new.rs"),
2635                "in scope, no anchor",
2636            ),
2637        ];
2638        let out = render_sync_brief(&r, &cursor, &findings, &[], false);
2639        let headings: Vec<&str> = out
2640            .lines()
2641            .filter(|l| l.starts_with("## ") || l.starts_with("### "))
2642            .collect();
2643        assert_eq!(
2644            headings,
2645            vec![
2646                "## Sync — repair the graph to match the source",
2647                "## Source changes since the last sync",
2648                "### Recording your dispositions (do this LAST)",
2649                "## Stale claims beyond the slice — search, then judge",
2650                "## Open findings to repair",
2651                "### Drifted — the anchored content changed",
2652                "### Uncovered — a source artifact with no entity",
2653                // Deliberate addition (anchor-source plan): the sync
2654                // brief now carries the provenance instruction so
2655                // repair writes are anchored — and name their source.
2656                "## Provenance — anchor your writes",
2657                "## How to repair — be conservative",
2658            ],
2659            "the loop-path sync brief carries exactly these blocks, in this order"
2660        );
2661        // The brief closes on the conservatism block's final rule — nothing
2662        // (inventory or otherwise) rides after it.
2663        assert!(out.ends_with("`[commit <hash>]` log-style entries.\n\n"));
2664    }
2665
2666    /// Criterion 8 REFUSAL — no brief on the default (non-inventory) path
2667    /// carries any inventory machinery: not the build briefs (discovery /
2668    /// one-shot), not the verify brief, not the sync brief in any of its
2669    /// shapes (changed slice, findings-only, nothing-to-sync, adopt). The
2670    /// inventory operation lives entirely in `projection verify --full` and
2671    /// the `/sync --inventory` skill routing; the engine-side byte-compat of
2672    /// the no-flag sampled verify is asserted in
2673    /// `findings::tests::full_verify_uncaps_adjudication_and_walks_whole_source`
2674    /// (extended there, not duplicated here). The minute-loop pays nothing
2675    /// for inventory.
2676    #[test]
2677    fn no_default_path_brief_carries_inventory_machinery() {
2678        // Terms that exist only on the inventory surface (flag, skill mode,
2679        // report framing, termination rule). Matched case-insensitively.
2680        let inventory_terms = [
2681            "--full",
2682            "inventory",
2683            "full measurement",
2684            "did not converge",
2685            "quiescence",
2686        ];
2687        let assert_clean = |label: &str, text: &str| {
2688            let lower = text.to_lowercase();
2689            for term in inventory_terms {
2690                assert!(
2691                    !lower.contains(term),
2692                    "{label} must carry no inventory machinery (found {term:?})"
2693                );
2694            }
2695        };
2696
2697        let r = resolved("engine", None, vec![]);
2698        let g = guidance(Some("build coverage"), None);
2699        let pm = process_present("engine");
2700
2701        // Build briefs — with and without a changed-slice preface.
2702        let changed_cursor = SourceCursor {
2703            union: slice(&[], &["moved.rs"], &[]),
2704            write_commands: vec![cmd("engine/graph/src#synced", "HEAD")],
2705            reseed: vec![],
2706            no_signal: vec![],
2707            any_changes: true,
2708            degraded: false,
2709            dead_denies: vec![],
2710            dest_mem: "engine".to_string(),
2711            binding_id: "engine/graph".to_string(),
2712            delivery: vec![],
2713        };
2714        let preface = render_changed_slice(&changed_cursor);
2715        assert_clean(
2716            "discovery build brief (plain roam)",
2717            &assemble_discovery_brief(&r, &g, &pm, Some("s@1"), None, &[], ""),
2718        );
2719        assert_clean(
2720            "discovery build brief (changed slice)",
2721            &assemble_discovery_brief(&r, &g, &pm, Some("s@1"), None, &[], &preface),
2722        );
2723        assert_clean(
2724            "one-shot build brief",
2725            &assemble_one_shot_brief(&r, &g, &pm, Some("s@1"), None, &[], Some("purpose")),
2726        );
2727
2728        // Verify brief — with and without an adjudication backlog.
2729        assert_clean("verify brief (backlog)", &render_verify_brief(&r, 3));
2730        assert_clean("verify brief (no backlog)", &render_verify_brief(&r, 0));
2731
2732        // Sync brief — every shape the loop renders.
2733        let findings = vec![finding(
2734            FindingClass::Drifted,
2735            anchor_target("engine--e", "src/moved.rs"),
2736            "d",
2737        )];
2738        assert_clean(
2739            "sync brief (changed slice + findings)",
2740            &render_sync_brief(&r, &changed_cursor, &findings, &[], false),
2741        );
2742        assert_clean(
2743            "sync brief (findings-only)",
2744            &render_sync_brief(&r, &empty_cursor(), &findings, &[], false),
2745        );
2746        assert_clean(
2747            "sync brief (nothing to sync)",
2748            &render_sync_brief(&r, &empty_cursor(), &[], &[], false),
2749        );
2750        assert_clean(
2751            "sync brief (adopt)",
2752            &render_sync_brief(&r, &empty_cursor(), &[], &[], true),
2753        );
2754    }
2755}