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memstead_cli/commands/
projection.rs

1//! `memstead projection` — the binding (projection-promotion) command tree.
2//!
3//! The projection is the unit: one versioned binding per source→mem obligation
4//! (bundle plan `03-projection-promotion`). The tree ships five leaves —
5//! `brief`, `init`, `migrate`, `advance`, `enable`:
6//!
7//! - `brief` renders a binding's run-brief — the Markdown prompt an agent
8//!   consumes — for a canonical binding id `<mem>/<stem>` (D3/D9), or the next
9//!   due binding under `--all` (round-robin + backoff selection).
10//! - `init` scaffolds a fresh v2 single-record binding non-interactively.
11//! - `migrate` converts every prior on-disk generation into v2 records in
12//!   place: gen-1 root folders, the gen-2 four-primitive store, and the v1
13//!   three-file store — folding medium+facet content inline.
14//! - `advance` records disposition-gated sync-baseline advances (D7).
15//! - `enable` adds a missing `build` / `sync` / `verify` operation block to an
16//!   existing binding (D6 — the remedy a refused mutating op cites).
17//!
18//! This tree is the sole binding surface: the retired `ingest` and `pipeline`
19//! command trees folded in here (`ingest brief` → `projection brief`,
20//! `pipeline migrate` → `projection migrate`'s gen-1 path).
21//!
22//! Errors carry `PROJECTION_*` wire tokens (D12); the missing-workspace path is
23//! single-sourced through [`crate::setup::workspace_not_initialised_error`].
24
25use clap::{Args as ClapArgs, Subcommand, ValueEnum};
26use serde_json::json;
27
28use memstead_base::binding::{
29    BuildMode, BuildOperation, CapabilityError, DEFAULT_ADJUDICATION_CAP,
30    DEFAULT_FULL_RESYNC_EVERY, ScaffoldParams, SyncOperation, VerifyOperation, validate_binding,
31};
32use memstead_base::binding_migrate::{
33    BindingMigrateError, check_all_consumed, fold_v1_binding, migrate_gen2_bindings,
34};
35use memstead_base::ingest::advance::{
36    AdvanceError, DispositionInput, ExcludeError, advance_baseline, record_exclusions,
37};
38use memstead_base::ingest::findings::{
39    FindingsError, FullResyncDecision, record_anchor_hash_backfill, record_verified_baseline,
40    verify_binding, verify_binding_full,
41};
42use memstead_base::ingest::report::{
43    DEFAULT_REPORT_BUDGET, compute_fidelity_report, render_fidelity_report,
44};
45use memstead_base::ingest::resolve::{ResolveError, ResolvedSource, resolve_binding_run};
46use memstead_base::ingest::{
47    OperationFilter, OperationKind, RenderBriefError, not_loop_declared, render_ingest_brief,
48    render_sync_brief_for, render_verify_brief_for, select_next_due_operation,
49};
50use memstead_base::pipeline::{IngestTrigger, MediumType};
51use memstead_base::pipeline_store::{
52    ProjectionGeneration, delete_ingest, load_legacy_pipeline_configs, load_pipeline_configs,
53    load_projection_generations, read_binding, remove_mediums_and_facets_trees, write_binding,
54};
55use memstead_base::workspace_store::StoreError;
56use memstead_base::{migrate_legacy_pipeline, read_legacy_pipeline_configs};
57
58use crate::CliError;
59use crate::output::{ExitKind, print_json, print_markdown};
60
61/// Version marker on `projection verify --json`. External contract: bump the
62/// `vN` when the payload's shape changes so a consumer asserting it fails
63/// loudly instead of misparsing. House style — see `memstead-export/v1`
64/// (`commands/export.rs`) and `workspace-dump/v1` (`commands/workspace.rs`).
65pub const JSON_VERIFY_FORMAT: &str = "memstead-verify/v1";
66use crate::setup::{CliContext, workspace_not_initialised_error};
67
68#[derive(ClapArgs, Debug)]
69pub struct Args {
70    #[command(subcommand)]
71    pub command: ProjectionCommand,
72}
73
74#[derive(Subcommand, Debug)]
75pub enum ProjectionCommand {
76    /// Render a binding's run-brief — the Markdown prompt an agent consumes —
77    /// on stdout. Takes the canonical binding id `<mem>/<stem>` (D3), e.g.
78    /// `engine/graph`. Omit the id (or pass `--all`) to select the next due
79    /// (binding, operation) pair by round-robin + backoff and render that
80    /// operation's brief; `--operation` picks which operations rotate (default
81    /// `build` — the classic build-only rotation; `any` rotates every
82    /// loop-declared build / sync / verify pair). An operation participates
83    /// only where its binding block declares `trigger: loop`. Reads the v2
84    /// binding store and the destination mem's schema / writing guidance; the
85    /// assembly lives in the engine, so every consuming surface renders
86    /// byte-identical briefs by construction.
87    ///
88    /// `--verify` renders the **verify brief** (group C) for the named binding:
89    /// measurement + capped-adjudication instructions only, with no
90    /// destination-mutation instruction. `--sync` renders the **sync brief** —
91    /// the sole maintenance-writer prompt, carrying both the cursor slice and the
92    /// open verify findings in one brief with the absorbed reconcile
93    /// conservatism. Both are read-only on the mem; the sync brief's repairs
94    /// reach the mem only when an agent acts on it through the MCP mutation
95    /// surface.
96    Brief(BriefArgs),
97    /// Scaffold a fresh v2 binding non-interactively: ONE record with one
98    /// inline source, at `.memstead/projections/<mem>/<stem>.json`.
99    /// All inputs are flags — no prompts ever (parity across callers). The
100    /// default binding declares build+sync+verify where the medium permits:
101    /// a `web` source scaffolds build-only, with the deferral named in
102    /// `warnings[]`. A `prune` block is scaffolded wherever sync survived,
103    /// with the strongest guarantee the medium supports (never-clobber for a
104    /// git-backed source). Refuses `PROJECTION_EXISTS` (without touching disk)
105    /// when a binding of the same id already exists — never overwrites.
106    Init(InitArgs),
107    /// Migrate every prior on-disk generation into v2 single-record
108    /// bindings, in place. Gen-1 — the root-folder
109    /// `scopes|projections|ingests/` JSON layout — is first materialized
110    /// into the four-primitive store, then folded. Gen-2 — the
111    /// four-primitive store (per-mem `Projection` + flat `Ingest`) — merges
112    /// each ingest into its projection and folds the referenced facets +
113    /// mediums inline. v1 — the three-file store — folds each binding's
114    /// facet references inline the same way, source names preserved
115    /// byte-verbatim (they key sync watermarks). The emptied `mediums/` and
116    /// `facets/` trees are removed; orphan records refuse rather than drop.
117    /// `refinement` mode and dangling refs refuse with a typed error.
118    /// Idempotent on a migrated store. Use `--dry-run` to preview without
119    /// writing.
120    Migrate(MigrateArgs),
121    /// Enable a `build` / `sync` / `verify` operation on an existing binding by
122    /// adding its block (with sensible defaults) if absent. This is the remedy
123    /// a refused *mutating* operation cites (D6): `projection enable sync
124    /// <binding>`. Before writing, the operation is checked against the
125    /// medium-capability matrix (D6) — enabling `sync`/`verify` over a medium
126    /// that cannot support it (e.g. a `web` source) refuses with the capability
127    /// gap and writes nothing. Enabling an already-present operation refuses
128    /// `PROJECTION_OP_ALREADY_ENABLED`; a missing binding refuses
129    /// `PROJECTION_NOT_FOUND`.
130    Enable(EnableArgs),
131    /// Advance a binding's sync baseline by recording per-artifact
132    /// dispositions (D7). The engine freezes the presented changed slice,
133    /// subtracts already-disposed artifacts on re-presentation, appends
134    /// new-HEAD deltas when the source moves mid-pass, and — when the
135    /// remainder empties — advances the destination mem's `#synced` token via
136    /// the sync-state writer (provenance piggybacks that commit). Dispositions
137    /// are durable (`.memstead/state/advance/`), so a partial pass resumes
138    /// across process restarts. The gate accepts **only** artifact ids the
139    /// engine presented — an unknown id refuses the whole call atomically
140    /// (`PROJECTION_ADVANCE_UNKNOWN_ARTIFACT`). In this cycle the agent supplies
141    /// a disposition for **every** artifact explicitly (auto-derivation lands
142    /// later).
143    Advance(AdvanceArgs),
144    /// Declare authored **exclusions** for in-scope source artifacts. Unlike
145    /// `advance` (whose gate accepts only artifacts in the changed slice), this
146    /// gates on enumerable `S(D)` membership, so a stable, unchanged artifact can
147    /// be recorded as deliberately not-modeled with a rationale. Each accepted
148    /// `(artifact, rationale)` lands in the durable exclusion ledger the fidelity
149    /// report consults, so the artifact stops re-surfacing as `uncovered` under
150    /// exhaustive coverage and keeps its reasoning. An artifact outside `S(D)`
151    /// refuses the whole call atomically (`PROJECTION_EXCLUDE_NOT_SOURCE_MEMBER`);
152    /// re-declaring merges into the ledger. The write path for the option-(a)
153    /// process-mem judgment migration, and the general "this in-scope artifact is
154    /// mined and warrants no destination entity, because …" capability.
155    Exclude(ExcludeArgs),
156    /// Measure a binding's fidelity and record durable findings (E3b, group A).
157    /// Read-only on the destination mem's ENTITIES: verify adjudicates its anchors
158    /// against the live source and samples in-scope artifacts, writing findings
159    /// keyed `(hash(D), source_head)` into the engine-owned findings store
160    /// (`.memstead/state/findings/`). A binding-declaration edit or a source-head
161    /// move partitions the keyspace, so prior findings are segregated as
162    /// superseded, never presented as current. Verify mutates no entity — any
163    /// repair routes through the (later) sync brief — but it is not a pure read:
164    /// a completed run records the findings store, backfills observed content
165    /// hashes onto hash-less anchors, and records a `#verified` baseline. It then renders the
166    /// deterministic, token-budgeted **tier-1 fidelity report** (group B) over
167    /// the findings just recorded: grain-classed coverage with tree-anchor
168    /// fan-out on its own axis, anchor-resolution %, freshness vs. both
169    /// `sync_state` tokens (`signal: none` → freshness unknowable), the
170    /// capability-matrix block, and the tier-3 backlog depth — aggregates always
171    /// ship; heavy per-artifact lists greedy-fill under `--budget` and drop to
172    /// hints (forced back in with `--include`).
173    ///
174    /// The anchor figures answer for THIS BINDING'S population only: anchors
175    /// another binding wrote, and anchors pointing outside this binding's
176    /// declared scope, are excluded from every figure and named in the report
177    /// rather than dropped. They are never deleted or rewritten: exclusion is
178    /// a reporting decision. The report states what its denominator counted
179    /// (anchor rows, with the distinct-artifact count beside them, since one
180    /// artifact legitimately carries several rows), and says so when anchors
181    /// recording no producing binding are included by the pre-provenance
182    /// fallback.
183    ///
184    /// A sidecar row whose ENTITY the mem no longer holds is reported as
185    /// dangling and named, in no figure and never as resolving: it is a
186    /// sidecar integrity condition, not an anchor state, and nothing repairs
187    /// it, because the row is the trace of a writer that went around the
188    /// engine. Where the entity end could not be reconciled at all (an
189    /// unloaded, quarantined or partly unparsed mem), the report says so
190    /// rather than reporting a clean anchor axis.
191    Verify(VerifyArgs),
192    /// Answer deny verdicts: is a path (or Glob/Grep pattern) hidden by a
193    /// binding's `deny_paths`? Evaluates each candidate against the named
194    /// binding — or, with `--binding` omitted, the ACTIVE binding (the one
195    /// whose brief was last consumed) — using the engine's own deny dialect:
196    /// the facet-scope glob grammar, resolved against the workspace root (an ingest deny spans every source, so it has no pointer to be relative to), plus
197    /// the literal-base directory-prefix rule (`dev/**` also blocks a read of
198    /// `dev` itself). Single-path form takes the candidate as an argument;
199    /// `--batch` reads `{"cwd": "<dir>", "paths": ["...", ...]}` from stdin
200    /// and answers every candidate in one process — the form a per-tool-call
201    /// consumer (the plugin's PreToolUse deny hook) amortizes subprocess cost
202    /// with. Engine-free and read-only: verdicts come from the binding record
203    /// and the path alone, no workspace boot. Output names the matched deny
204    /// entry on a block; the exit code stays 0 for an answered check — a
205    /// non-zero exit means the check itself could not run (unknown or
206    /// quarantined binding, no active binding, malformed batch).
207    CheckPath(CheckPathArgs),
208}
209
210/// The medium type flag for `projection init` — the CLI-facing mirror of
211/// [`MediumType`] (which carries serde, not clap, derives). Decides the
212/// capability matrix (D6) that filters the default binding's operations.
213#[derive(Clone, Copy, Debug, ValueEnum)]
214pub enum MediumTypeArg {
215    /// A source tree of code.
216    Codebase,
217    /// A directory of files (non-code).
218    Filesystem,
219    /// A git history.
220    Git,
221    /// Another mem's graph.
222    Graph,
223    /// Web sources (build-only this cycle — no change signal).
224    Web,
225}
226
227impl MediumTypeArg {
228    fn to_medium_type(self) -> MediumType {
229        match self {
230            MediumTypeArg::Codebase => MediumType::Codebase,
231            MediumTypeArg::Filesystem => MediumType::Filesystem,
232            MediumTypeArg::Git => MediumType::Git,
233            MediumTypeArg::Graph => MediumType::Graph,
234            MediumTypeArg::Web => MediumType::Web,
235        }
236    }
237}
238
239#[derive(ClapArgs, Debug)]
240pub struct BriefArgs {
241    /// The canonical binding id `<mem>/<stem>` (D3) — e.g. `engine/graph`.
242    /// Omit (or pass `--all`) to select the next due binding by round-robin +
243    /// backoff. Required with `--verify` / `--sync` (those operate on one
244    /// binding's live findings/cursor, never a rotation).
245    pub binding: Option<String>,
246    /// Select the next due (binding, operation) pair across all bindings
247    /// (round-robin + backoff) and render its brief, instead of naming one.
248    /// Which operations rotate is decided by `--operation` (default: build
249    /// only). Ignored with `--verify` / `--sync`.
250    #[arg(long)]
251    pub all: bool,
252    /// Which operations the `--all` rotation considers. An operation
253    /// participates only where the binding declares its block with
254    /// `trigger: loop` — consent lives in the declaration. `build` (the
255    /// default) keeps the classic build-only rotation; `any` rotates across
256    /// every loop-declared build / sync / verify pair and renders the matching
257    /// brief (the `--json` output names the picked operation).
258    #[arg(long, value_enum, default_value_t = BriefOperationArg::Build, requires = "all", conflicts_with_all = ["verify", "sync"])]
259    pub operation: BriefOperationArg,
260    /// Take the rotation slot this `--all` render selects — advancing the
261    /// round-robin cursor and the per-pair backoff state. WITHOUT this flag a
262    /// `--all` render is a pure read: repeat it as often as you like and the
263    /// rotation stays exactly where it was (a diagnostic re-render must never
264    /// silently skip the next binding). The loop driver that will act on the
265    /// brief passes `--consume`; nothing else should.
266    #[arg(long, requires = "all")]
267    pub consume: bool,
268    /// Render the **verify brief** (group C) for the named binding instead of
269    /// the build brief: measurement + capped-adjudication instructions only.
270    /// It carries no destination-mutation instruction — repairs route through
271    /// the sync brief. Read-only on the mem. Mutually exclusive with `--sync`.
272    #[arg(long, conflicts_with = "sync")]
273    pub verify: bool,
274    /// Render the **sync brief** (group C) for the named binding instead of the
275    /// build brief: the sole maintenance-writer prompt, carrying both the cursor
276    /// slice and the open verify findings in one brief, with the absorbed
277    /// reconcile conservatism. Read-only on the mem (the agent's writes route
278    /// through MCP). Mutually exclusive with `--verify`.
279    #[arg(long, conflicts_with = "verify")]
280    pub sync: bool,
281}
282
283/// The `--operation` value for `projection brief --all` — which operations the
284/// rotation considers. CLI-facing mirror of the engine's [`OperationFilter`]
285/// (which carries no clap derives).
286#[derive(Clone, Copy, Debug, ValueEnum, PartialEq, Eq)]
287pub enum BriefOperationArg {
288    /// Rotate over build pairs only (the default — the classic rotation).
289    Build,
290    /// Rotate over sync pairs only.
291    Sync,
292    /// Rotate over verify pairs only.
293    Verify,
294    /// Rotate over every loop-declared build / sync / verify pair.
295    Any,
296}
297
298impl BriefOperationArg {
299    fn to_filter(self) -> OperationFilter {
300        match self {
301            BriefOperationArg::Build => OperationFilter::Only(OperationKind::Build),
302            BriefOperationArg::Sync => OperationFilter::Only(OperationKind::Sync),
303            BriefOperationArg::Verify => OperationFilter::Only(OperationKind::Verify),
304            BriefOperationArg::Any => OperationFilter::Any,
305        }
306    }
307}
308
309#[derive(ClapArgs, Debug)]
310pub struct InitArgs {
311    /// Destination mem the binding writes into — the `<mem>` half of the
312    /// binding id `<mem>/<stem>` and the per-mem tier the three files live under.
313    #[arg(long)]
314    pub mem: String,
315    /// The medium pointer — a path (codebase / filesystem / git) or a mem id /
316    /// URL (graph / web). Becomes the scaffolded medium's `pointer`.
317    #[arg(long)]
318    pub source: String,
319    /// The medium type — decides the capability matrix (D6) that filters which
320    /// operations the default binding declares.
321    #[arg(long = "medium-type", value_enum)]
322    pub medium_type: MediumTypeArg,
323    /// Intent prose for the agent (the binding's `intent`). Optional.
324    #[arg(long)]
325    pub intent: Option<String>,
326    /// Binding stem — the `<stem>` half of the binding id and the shared file
327    /// name of the scaffolded medium / facet / binding. Defaults to the final
328    /// path component of `--source`.
329    #[arg(long)]
330    pub name: Option<String>,
331}
332
333#[derive(ClapArgs, Debug)]
334pub struct MigrateArgs {
335    /// Preview the produced bindings (and any warnings) without writing them
336    /// to disk or removing the merged ingest files.
337    #[arg(long)]
338    pub dry_run: bool,
339}
340
341/// The operation `projection enable` adds to a binding. Mirror of the binding's
342/// operations block: `build` is always present (required), so enabling it
343/// always refuses as already-enabled; `sync` / `verify` are the enableable
344/// blocks.
345#[derive(Clone, Copy, Debug, ValueEnum, PartialEq, Eq)]
346pub enum EnableOperationArg {
347    /// The build operation (always present — enabling refuses as already-enabled).
348    Build,
349    /// The sync (maintenance-write) operation.
350    Sync,
351    /// The verify (measurement) operation.
352    Verify,
353}
354
355impl EnableOperationArg {
356    fn name(self) -> &'static str {
357        match self {
358            EnableOperationArg::Build => "build",
359            EnableOperationArg::Sync => "sync",
360            EnableOperationArg::Verify => "verify",
361        }
362    }
363}
364
365#[derive(ClapArgs, Debug)]
366pub struct EnableArgs {
367    /// The operation to enable: `build` | `sync` | `verify`.
368    #[arg(value_enum)]
369    pub operation: EnableOperationArg,
370    /// The binding id `<mem>/<stem>` (D3) — e.g. `engine/graph`.
371    pub binding: String,
372}
373
374#[derive(ClapArgs, Debug)]
375pub struct AdvanceArgs {
376    /// The binding id `<mem>/<stem>` (D3) — e.g. `engine/graph`.
377    pub binding: String,
378    /// A JSON object mapping each judged artifact id to its disposition, e.g.
379    /// `'{"src/lib.rs": "worked", "src/old.rs": "irrelevant"}'`. A value may
380    /// instead be an object carrying an authored rationale —
381    /// `'{"src/gen.rs": {"disposition": "excluded", "rationale": "generated, no entity"}}'`
382    /// — and an `excluded` verdict with a rationale is retained in the durable
383    /// exclusion ledger so the artifact stops re-surfacing as `uncovered` and
384    /// keeps its reasoning. Only ids the engine presented in the brief's changed
385    /// slice are accepted — an unknown id refuses the whole call. Pass `'{}'` to
386    /// re-present the remainder without recording anything.
387    #[arg(long)]
388    pub dispositions: String,
389}
390
391#[derive(ClapArgs, Debug)]
392pub struct ExcludeArgs {
393    /// The binding id `<mem>/<stem>` (D3) — e.g. `project/graph`.
394    pub binding: String,
395    /// A JSON object mapping each in-scope source artifact id to the authored
396    /// rationale for excluding it, e.g.
397    /// `'{"docs/legacy.md": "superseded; no entity", "vendor/x.rs": "generated"}'`.
398    /// Every id must be a member of the binding's enumerable source `S(D)` — an
399    /// id outside scope refuses the whole call.
400    #[arg(long)]
401    pub exclusions: String,
402}
403
404#[derive(ClapArgs, Debug)]
405pub struct CheckPathArgs {
406    /// The candidate — a path (absolute, or relative to `--cwd`) or a
407    /// Glob/Grep pattern. Omitted in `--batch` mode.
408    #[arg(required_unless_present = "batch", conflicts_with = "batch")]
409    pub path: Option<String>,
410    /// Binding to check against, canonical `<mem>/<stem>`. Defaults to the
411    /// active binding — the one whose brief was last consumed; refuses typed
412    /// (`NO_ACTIVE_BINDING`) when none is.
413    #[arg(long)]
414    pub binding: Option<String>,
415    /// Batch mode: read one JSON object from stdin —
416    /// `{"cwd": "<dir>", "paths": ["...", ...]}` — and answer every
417    /// candidate. A malformed payload refuses whole (`INVALID_INPUT`), never
418    /// part-answers. The payload's `cwd` wins over `--cwd`.
419    #[arg(long)]
420    pub batch: bool,
421    /// Directory relative candidates resolve against (default: the process
422    /// working directory).
423    #[arg(long)]
424    pub cwd: Option<std::path::PathBuf>,
425}
426
427#[derive(ClapArgs, Debug)]
428pub struct VerifyArgs {
429    /// The binding id `<mem>/<stem>` (D3) — e.g. `engine/graph`.
430    pub binding: String,
431    /// Token budget for the tier-1 fidelity report's **heavy** content
432    /// (per-artifact lists). Aggregated counts always ship in addition; heavy
433    /// lists greedy-fill and drop to `## Hints` when they do not fit. Defaults
434    /// to the house envelope budget.
435    #[arg(long)]
436    pub budget: Option<usize>,
437    /// Force a heavy report section in past the budget (repeatable):
438    /// `uncovered_artifacts` | `tree_fanout` | `superseded_findings`.
439    #[arg(long = "include")]
440    pub include: Vec<String>,
441    /// Full measurement: walk the entire enumerable source `S(D)` (the
442    /// rotating sample scheduler is bypassed), treat the per-run adjudication
443    /// cap as unlimited, and perform the prepared-hash backfill — the
444    /// report's coverage and accuracy figures are computed over everything,
445    /// with no sampling or truncation caveat. Refuses (typed) rather than
446    /// render a fabricated-complete report in two cases, both per facet: a
447    /// facet whose medium is non-enumerable, and a facet whose medium claims
448    /// enumerability but whose own walk yields no artifacts — a sibling facet
449    /// that walked does not excuse it. Without this flag the capped/sampled
450    /// loop economics are unchanged.
451    #[arg(long)]
452    pub full: bool,
453    /// CI-gate mode: exit 6 when the completed run recorded findings, so a
454    /// pull-request gate can branch on three outcomes without parsing output
455    /// — 0 completed-and-clean, 6 completed-with-findings, any other nonzero
456    /// the measurement itself failed. The full report is rendered first,
457    /// either way. Opt-in by design: without this flag the exit behaviour is
458    /// byte-for-byte what it has always been, so no existing consumer breaks.
459    #[arg(long)]
460    pub fail_on_findings: bool,
461}
462
463pub fn run(ctx: &CliContext, args: Args) -> anyhow::Result<()> {
464    match args.command {
465        ProjectionCommand::Brief(a) => brief(ctx, a),
466        ProjectionCommand::Init(a) => init(ctx, a),
467        ProjectionCommand::Migrate(a) => migrate(ctx, a),
468        ProjectionCommand::Enable(a) => enable(ctx, a),
469        ProjectionCommand::Advance(a) => advance(ctx, a),
470        ProjectionCommand::Exclude(a) => exclude(ctx, a),
471        ProjectionCommand::Verify(a) => verify(ctx, a),
472        ProjectionCommand::CheckPath(a) => check_path(ctx, a),
473    }
474}
475
476/// The capability gap that would stop `projection enable <operation>`, if
477/// there is one.
478///
479/// Asks the question `enable` asks: validate a CANDIDATE record carrying the
480/// operation. Validating the record as it stands answers nothing — the
481/// operation is absent, so there is no declaration for the matrix to refuse,
482/// and the gap stays invisible exactly where a caller needs it.
483fn operation_capability_gap(
484    binding: &memstead_base::binding::Binding,
485    operation: &'static str,
486) -> Option<String> {
487    let mut candidate = binding.clone();
488    let batch_size = candidate
489        .operations
490        .build
491        .as_ref()
492        .map_or(20, |b| b.batch_size);
493    match operation {
494        "sync" => {
495            candidate.operations.sync = Some(SyncOperation {
496                trigger: IngestTrigger::Manual,
497                batch_size,
498            });
499        }
500        "verify" => {
501            candidate.operations.verify = Some(VerifyOperation {
502                trigger: IngestTrigger::Manual,
503                batch_size,
504                adjudication_cap: DEFAULT_ADJUDICATION_CAP,
505                full_resync_every: DEFAULT_FULL_RESYNC_EVERY,
506            });
507        }
508        // `build` is carried by every medium — no capability row refuses it,
509        // so the enable remedy is always honest for it.
510        _ => return None,
511    }
512    validate_binding(&candidate).err().and_then(|refusals| {
513        refusals
514            .iter()
515            .find(|r| {
516                matches!(
517                    r,
518                    CapabilityError::OperationOutOfScope { operation: op, .. } if *op == operation
519                )
520            })
521            .map(|gap| gap.to_string())
522    })
523}
524
525/// The refusal for a binding that declares no `sync` operation.
526///
527/// `projection enable sync <binding>` is the remedy — but only where the
528/// medium *can* carry sync. Over a medium whose capability row refuses it (a
529/// `web` source), `enable` refuses too, so naming it bounces the reader:
530/// the refusal points at `enable`, `enable` points at the capability gap,
531/// and nothing they can do closes it. Where the gap exists it IS the answer,
532/// so it is what this says.
533///
534/// Both codes are spelled as literals here, at their construction sites, so
535/// the generated error index (xtask) keeps finding them.
536fn absent_sync_error(binding_id: &str, binding: &memstead_base::binding::Binding) -> CliError {
537    if let Some(gap) = operation_capability_gap(binding, "sync") {
538        return CliError::new(
539            ExitKind::Validation,
540            "PROJECTION_CAPABILITY_UNSUPPORTED",
541            format!(
542                "binding `{binding_id}` has no sync operation, and this medium \
543                 cannot carry one: {gap}"
544            ),
545        )
546        .with_details(json!({ "binding": binding_id, "operation": "sync" }));
547    }
548    CliError::new(
549        ExitKind::Validation,
550        "PROJECTION_SYNC_NOT_ENABLED",
551        format!(
552            "binding `{binding_id}` has no sync operation — enable it with \
553             `memstead projection enable sync {binding_id}`"
554        ),
555    )
556    .with_details(json!({
557        "binding": binding_id,
558        "remedy": { "cli": format!("memstead projection enable sync {binding_id}") },
559    }))
560}
561
562/// Map a [`RenderBriefError`] to a typed CLI error (D12). Not-found bindings /
563/// facets / mediums exit `NotFound`; a malformed id is a `Validation` name
564/// error; config-load and mode-unsupported failures are generic. Codes are
565/// spelled as literals at each construction site so the generated error index
566/// (xtask) picks them up.
567fn map_brief_err(binding_id: &str, err: RenderBriefError) -> CliError {
568    let message = err.to_string();
569    let mapped = match &err {
570        RenderBriefError::ConfigLoad(_) => {
571            CliError::new(ExitKind::Generic, "PROJECTION_LOAD_FAILED", message)
572        }
573        // D6/AC4: the binding declares no build op — refuse with the
574        // `projection enable build` remedy the error message already carries.
575        RenderBriefError::BuildOperationAbsent { .. } => CliError::new(
576            ExitKind::Validation,
577            "PROJECTION_BUILD_NOT_ENABLED",
578            message,
579        ),
580        // A malformed findings store while rendering a verify / sync brief.
581        RenderBriefError::FindingsRead { .. } => CliError::new(
582            ExitKind::Generic,
583            "PROJECTION_FINDINGS_READ_FAILED",
584            message,
585        ),
586        RenderBriefError::Resolve(inner) => match inner {
587            ResolveError::BindingNotFound { .. } => {
588                CliError::new(ExitKind::NotFound, "PROJECTION_NOT_FOUND", message)
589            }
590            ResolveError::MalformedProjectionRef { .. } => {
591                CliError::new(ExitKind::Validation, "PROJECTION_INVALID_NAME", message)
592            }
593            // A scope nothing can interpret is a declaration defect the
594            // author must fix — Validation, with the legal forms named in
595            // the message rather than left for the reader to find.
596            ResolveError::UninterpretableScope { .. } => CliError::new(
597                ExitKind::Validation,
598                "PROJECTION_SCOPE_UNINTERPRETABLE",
599                message,
600            ),
601        },
602    };
603    mapped.with_details(json!({ "binding": binding_id }))
604}
605
606fn brief(ctx: &CliContext, args: BriefArgs) -> anyhow::Result<()> {
607    let (_shape, root) = ctx.workspace_shape().ok_or_else(|| {
608        workspace_not_initialised_error(
609            "not inside a Memstead workspace (no `.memstead/workspace.toml` in any ancestor)",
610        )
611    })?;
612
613    let cli_engine = ctx.cli_engine_at(&root)?;
614    let engine = cli_engine.base();
615
616    // Quarantine consult first: a binding whose stored file failed
617    // the load refuses typed with its reason (naming `projection
618    // migrate` for the legacy generations) instead of reporting
619    // not-found (agent-trust plan 04).
620    if let Some(binding_id) = args.binding.as_deref()
621        && let Ok(configs) = load_pipeline_configs(&root)
622        && configs
623            .quarantined
624            .iter()
625            .any(|q| format!("{}/{}", q.mem, q.name) == binding_id)
626    {
627        return Err(binding_miss_error(&configs, binding_id).into());
628    }
629
630    // Group-C briefs: verify / sync render for one named binding (no rotation).
631    // Both are read-only on the destination mem — the sync brief's repairs reach
632    // the mem only when an agent acts on it through the MCP mutation surface.
633    if args.verify || args.sync {
634        let binding_id = args.binding.ok_or_else(|| {
635            CliError::new(
636                ExitKind::Validation,
637                "PROJECTION_BRIEF_BINDING_REQUIRED",
638                format!(
639                    "`projection brief --{}` needs a binding id `<mem>/<stem>` — it renders one \
640                     binding's brief, not an `--all` rotation",
641                    if args.verify { "verify" } else { "sync" }
642                ),
643            )
644        })?;
645        // D6/AC4 (backlog-sweep plan 03, decision 13): the sync brief is the
646        // maintenance-writer prompt — rendering it for a binding whose sync
647        // operation is not enabled spends a loop's work slot on work the
648        // engine will refuse to apply. Gate render exactly like `projection
649        // advance` does, with the one-command remedy in `details`.
650        if args.sync {
651            let configs = load_pipeline_configs(&root).map_err(|e| {
652                CliError::new(
653                    ExitKind::Generic,
654                    "PROJECTION_LOAD_FAILED",
655                    format!("could not load binding store: {e}"),
656                )
657                .with_details(json!({ "error": e.to_string() }))
658            })?;
659            if let Some(record) = configs
660                .bindings
661                .iter()
662                .find(|r| format!("{}/{}", r.mem, r.name) == binding_id)
663                && record.config.operations.sync.is_none()
664            {
665                return Err(absent_sync_error(&binding_id, &record.config).into());
666            }
667        }
668        let (rendered, operation) = if args.verify {
669            (
670                render_verify_brief_for(engine, &root, &binding_id),
671                OperationKind::Verify,
672            )
673        } else {
674            (
675                render_sync_brief_for(engine, &root, &binding_id),
676                OperationKind::Sync,
677            )
678        };
679        let rendered = rendered.map_err(|e| map_brief_err(&binding_id, e))?;
680
681        if ctx.json {
682            print_json(&json!({ "brief": rendered, "operation": operation.as_wire() }))?;
683        } else {
684            print!("{rendered}");
685        }
686        return Ok(());
687    }
688
689    // Resolve which (binding, operation) pair to render: a named binding
690    // (canonical `<mem>/<stem>`, build), or the next due pair in a round-robin
691    // `--all` rotation (which advances the cursor + backoff state). The
692    // rotation's operation set is `--operation` (default: build only — the
693    // classic rotation, byte-stable for existing callers).
694    let (selected, never_rotated) = match args.binding {
695        Some(binding) if !args.all => (Some((binding, OperationKind::Build)), Vec::new()),
696        _ => {
697            let configs = load_pipeline_configs(&root).map_err(|e| {
698                CliError::new(
699                    ExitKind::Generic,
700                    "PROJECTION_LOAD_FAILED",
701                    format!("could not load binding store: {e}"),
702                )
703                .with_details(json!({ "error": e.to_string() }))
704            })?;
705            // Distinguish "nothing is configured" from "everything is backing
706            // off". Both otherwise collapse into the same `None` from
707            // `select_next_due_operation`, but the two outcomes want different
708            // caller responses: an empty store is a setup prompt, a
709            // backing-off pass is a no-op retry. Emit the empty-store signal
710            // explicitly so a caller (the plugin router, a status display) can
711            // branch on it.
712            if configs.bindings.is_empty() {
713                if ctx.json {
714                    print_json(&json!({ "no_bindings": true }))?;
715                } else {
716                    println!("> **[projection] No bindings configured in this workspace yet.**");
717                }
718                return Ok(());
719            }
720            // Criterion 4's --all half (backlog-sweep plan 03): the rotation
721            // drops pairs the binding never loop-declared — by design
722            // (consent lives in the declaration), but never silently. Say
723            // which (binding, op) pairs the requested filter can never
724            // rotate: JSON carries them structurally; markdown puts the note
725            // on stderr so the brief on stdout stays a verbatim prompt.
726            let never_rotated = not_loop_declared(&configs, args.operation.to_filter());
727            if !ctx.json {
728                for (binding, op) in &never_rotated {
729                    eprintln!(
730                        "[projection] skipped from rotation: `{binding}` declares no \
731                         loop-triggered {} operation (enable with `memstead projection \
732                         enable {} {binding}`)",
733                        op.as_wire(),
734                        op.as_wire(),
735                    );
736                }
737            }
738            let picked = select_next_due_operation(
739                engine,
740                &root,
741                &configs,
742                args.operation.to_filter(),
743                args.consume,
744            );
745            (picked, never_rotated)
746        }
747    };
748    let not_rotated_json = never_rotated
749        .iter()
750        .map(|(b, o)| json!({ "binding": b, "operation": o.as_wire() }))
751        .collect::<Vec<_>>();
752
753    let Some((binding_id, operation)) = selected else {
754        // Every eligible pair is backing off (or not due) this pass — a valid
755        // outcome, the loop's quiet yield.
756        if ctx.json {
757            print_json(&json!({ "skipped": true, "not_rotated": not_rotated_json }))?;
758        } else {
759            println!(
760                "> **[projection] Skipped — every eligible binding is backing off this pass.**"
761            );
762        }
763        return Ok(());
764    };
765
766    // Dispatch to the selected operation's renderer: the rotation hands back
767    // build / sync / verify pairs, each with its own brief.
768    let rendered = match operation {
769        OperationKind::Build => render_ingest_brief(engine, &root, &binding_id, args.consume),
770        OperationKind::Sync => render_sync_brief_for(engine, &root, &binding_id),
771        OperationKind::Verify => render_verify_brief_for(engine, &root, &binding_id),
772    }
773    .map_err(|e| map_brief_err(&binding_id, e))?;
774
775    if ctx.json {
776        print_json(&json!({
777            "brief": rendered,
778            "operation": operation.as_wire(),
779            "not_rotated": not_rotated_json,
780        }))?;
781    } else {
782        // The brief *is* the stdout content (the skill pipes it as the agent
783        // prompt) — write it verbatim, no added trailing newline.
784        print!("{rendered}");
785    }
786    Ok(())
787}
788
789/// Is `value` a single, plain path component — safe to use verbatim as a `<mem>`
790/// or `<stem>` dir/file segment and as half of the binding id? Mirrors
791/// `pipeline_store`'s internal component guard so `init` refuses with a clear
792/// typed code up front rather than surfacing a store IO error mid-scaffold.
793fn is_single_component(value: &str) -> bool {
794    !value.is_empty()
795        && value != "."
796        && value != ".."
797        && !value.contains('/')
798        && !value.contains('\\')
799        && !value.contains(':')
800        && !value.contains('\0')
801}
802
803/// Derive a binding stem from a `--source` pointer: its final path component
804/// (trailing slashes trimmed). `../public` → `public`; `home` → `home`;
805/// `https://example.com/manual` → `manual`.
806fn derive_stem(source: &str) -> String {
807    source
808        .trim_end_matches('/')
809        .rsplit('/')
810        .next()
811        .unwrap_or(source)
812        .to_string()
813}
814
815/// Map a store write failure during scaffolding to a typed CLI error.
816fn init_write_error(binding_id: &str, err: StoreError) -> CliError {
817    CliError::new(
818        ExitKind::Generic,
819        "PROJECTION_INIT_FAILED",
820        format!("could not scaffold binding `{binding_id}`: {err}"),
821    )
822    .with_details(json!({ "binding": binding_id, "error": err.to_string() }))
823}
824
825fn init(ctx: &CliContext, args: InitArgs) -> anyhow::Result<()> {
826    let (_shape, root) = ctx.workspace_shape().ok_or_else(|| {
827        workspace_not_initialised_error(
828            "not inside a Memstead workspace (no `.memstead/workspace.toml` in any ancestor)",
829        )
830    })?;
831
832    let mem = args.mem;
833    let stem = args
834        .name
835        .clone()
836        .unwrap_or_else(|| derive_stem(&args.source));
837
838    // `mem` and `stem` become three file-path components and the binding id —
839    // refuse anything that is not a single plain component before touching disk.
840    for (kind, value) in [("mem", mem.as_str()), ("name", stem.as_str())] {
841        if !is_single_component(value) {
842            return Err(CliError::new(
843                ExitKind::Validation,
844                "PROJECTION_INVALID_NAME",
845                format!(
846                    "invalid {kind} '{}': must be a single path component (no separators, \
847                     traversal segments, ':' or NUL) — pass an explicit --name",
848                    value.escape_default()
849                ),
850            )
851            .with_details(json!({ "kind": kind, "value": value }))
852            .into());
853        }
854    }
855
856    let binding_id = format!("{mem}/{stem}");
857    let medium_type = args.medium_type.to_medium_type();
858
859    // Refuse — without touching disk — when a binding of this id already exists
860    // (D8: `init` never overwrites). The binding occupies the per-mem
861    // projections tier; its presence is the id-collision signal.
862    let binding_path = root
863        .join(".memstead")
864        .join("projections")
865        .join(&mem)
866        .join(format!("{stem}.json"));
867    if binding_path.exists() {
868        return Err(CliError::new(
869            ExitKind::Validation,
870            "PROJECTION_EXISTS",
871            format!(
872                "a binding `{binding_id}` already exists at \
873                 .memstead/projections/{mem}/{stem}.json — `projection init` never overwrites; \
874                 choose a different --name or edit the existing binding"
875            ),
876        )
877        .with_details(json!({ "binding": binding_id }))
878        .into());
879    }
880
881    // The scaffolded record comes from the engine — one definition of "a
882    // fresh binding" (source scoped `**/*`, materialised deny defaults,
883    // matrix-filtered operations, prune where sync survived), shared with
884    // every other front door that creates one.
885    let scaffolded = memstead_base::binding::scaffold_binding(ScaffoldParams {
886        destination_mem: &mem,
887        source_name: &stem,
888        pointer: &args.source,
889        medium_type,
890        intent: args.intent.clone(),
891        additional_deny_paths: Vec::new(),
892    });
893    let binding = scaffolded.binding;
894    let operations = scaffolded.operations;
895    let mut warnings = scaffolded.warnings;
896
897    // Out-of-workspace medium base — a supported shape with one honest
898    // caveat, named NOW, at the layout decision. The operation still succeeds.
899    if let Some(w) =
900        memstead_base::ingest::cursor::out_of_root_layout_warning(&args.source, &root, medium_type)
901    {
902        warnings.push(w);
903    }
904
905    // A source that is not there yet is legal to declare — the tree may
906    // arrive later — but silence here is how the setup ramp produces a
907    // binding that can never yield anything from a mistyped answer. Say it
908    // at the moment the pointer is chosen, where the typo is still in view.
909    if matches!(
910        medium_type,
911        memstead_base::MediumType::Codebase
912            | memstead_base::MediumType::Filesystem
913            | memstead_base::MediumType::Git
914    ) {
915        let base = memstead_base::ingest::cursor::medium_base(&args.source, &root);
916        if !base.exists() {
917            warnings.push(format!(
918                "source '{}' resolves to '{}', which does not exist — the binding is \
919                 declared, but nothing can be read from it until that path is there \
920                 (check the path, or correct the pointer in \
921                 .memstead/projections/{mem}/{stem}.json)",
922                args.source,
923                base.display(),
924            ));
925        }
926    }
927
928    // Write the one record. The id-collision refusal above already
929    // guaranteed a fresh binding, so this path only runs on a clean
930    // scaffold; a store IO failure surfaces the typed
931    // `PROJECTION_INIT_FAILED`.
932    write_binding(&root, &mem, &stem, &binding).map_err(|e| init_write_error(&binding_id, e))?;
933
934    let created = vec![format!(".memstead/projections/{mem}/{stem}.json")];
935
936    if ctx.json {
937        // D8's pinned skill contract: { binding, created, operations, warnings }.
938        print_json(&json!({
939            "binding": binding_id,
940            "created": created,
941            "operations": operations,
942            "warnings": warnings,
943        }))?;
944    } else {
945        let mut out = format!("# Projection init\n\nScaffolded binding `{binding_id}`:\n");
946        for c in &created {
947            out.push_str(&format!("- `{c}`\n"));
948        }
949        out.push_str(&format!("\nOperations: {}\n", operations.join(", ")));
950        if !warnings.is_empty() {
951            out.push_str("\n## Warnings\n\n");
952            for w in &warnings {
953                out.push_str(&format!("- {w}\n"));
954            }
955        }
956        print_markdown(&out);
957    }
958    Ok(())
959}
960
961fn map_migrate_err(err: BindingMigrateError) -> CliError {
962    // Spell each `PROJECTION_*` token as a literal at its own construction site
963    // so the generated error index (xtask) picks them up — a variable `code`
964    // is invisible to the string-literal scanner.
965    let message = err.to_string();
966    match &err {
967        BindingMigrateError::RefinementModeDeleted { .. } => CliError::new(
968            ExitKind::Validation,
969            "PROJECTION_MIGRATE_REFINEMENT",
970            message,
971        ),
972        BindingMigrateError::MalformedProjectionRef { .. } => CliError::new(
973            ExitKind::Validation,
974            "PROJECTION_MIGRATE_MALFORMED_REF",
975            message,
976        ),
977        BindingMigrateError::DanglingProjectionRef { .. }
978        | BindingMigrateError::DanglingFacetRef { .. }
979        | BindingMigrateError::DanglingMediumRef { .. } => CliError::new(
980            ExitKind::Validation,
981            "PROJECTION_MIGRATE_DANGLING_REF",
982            message,
983        ),
984        BindingMigrateError::OrphanRecords { .. } => CliError::new(
985            ExitKind::Validation,
986            "PROJECTION_MIGRATE_ORPHAN_RECORDS",
987            message,
988        ),
989    }
990}
991
992/// Does the workspace root carry a gen-1 legacy pipeline layout — the
993/// pre-four-primitive `scopes|projections|ingests/` JSON folders at the root
994/// (not under `.memstead/`)? Presence of any of the three marks it. This is the
995/// trigger for folding the retired `pipeline migrate` conversion into
996/// `projection migrate` (D10, gen-1 path).
997fn has_legacy_root_layout(root: &std::path::Path) -> bool {
998    ["scopes", "projections", "ingests"]
999        .iter()
1000        .any(|d| root.join(d).is_dir())
1001}
1002
1003/// Map a store load failure during migrate to the typed generic code.
1004fn migrate_load_err(err: StoreError) -> CliError {
1005    CliError::new(
1006        ExitKind::Generic,
1007        "PROJECTION_MIGRATE_FAILED",
1008        format!("could not load pipeline config: {err}"),
1009    )
1010    .with_details(json!({ "error": err.to_string() }))
1011}
1012
1013/// Does the binding's `medium_pointer` (resolved against the workspace root)
1014/// point at the same location as a `reconcile-cursors.json` absolute key? Uses
1015/// canonicalization where both paths exist, else a lexical comparison (D10 —
1016/// "the binding whose medium pointer resolves to that path").
1017fn pointer_resolves_to(root: &std::path::Path, medium_pointer: &str, abs_path: &str) -> bool {
1018    let resolved = if medium_pointer.is_empty() {
1019        root.to_path_buf()
1020    } else {
1021        root.join(medium_pointer)
1022    };
1023    match (
1024        std::fs::canonicalize(&resolved),
1025        std::fs::canonicalize(abs_path),
1026    ) {
1027        (Ok(a), Ok(b)) => a == b,
1028        _ => resolved == std::path::Path::new(abs_path),
1029    }
1030}
1031
1032/// Scan `workspace.toml` for retired pipeline/cursor vocabulary. `projection
1033/// migrate` **never** writes `workspace.toml` (D10) — if it finds a stale
1034/// reference it returns a proposal block for the operator (or the migrating
1035/// session) to apply and commit explicitly, rather than rewriting it.
1036fn propose_workspace_toml(root: &std::path::Path) -> Option<String> {
1037    let path = root.join(".memstead").join("workspace.toml");
1038    let content = std::fs::read_to_string(path).ok()?;
1039    let hits: Vec<(usize, &str)> = content
1040        .lines()
1041        .enumerate()
1042        .filter(|(_, l)| {
1043            let low = l.to_lowercase();
1044            low.contains("reconcile-cursors") || low.contains("ingests/") || low.contains("ingest ")
1045        })
1046        .collect();
1047    if hits.is_empty() {
1048        return None;
1049    }
1050    let mut block = String::from(
1051        "## Proposal: workspace.toml (NOT applied)\n\n`projection migrate` never edits \
1052         `workspace.toml`. It found references to retired pipeline vocabulary — review and \
1053         update these lines by hand, then commit:\n\n",
1054    );
1055    for (i, line) in hits {
1056        block.push_str(&format!("- L{}: `{}`\n", i + 1, line.trim()));
1057    }
1058    Some(block)
1059}
1060
1061/// Binding-miss refusal that honours the quarantine roster
1062/// (agent-trust plan 04): a binding whose stored file failed the v2
1063/// version gate is QUARANTINED, not unknown — the refusal carries the
1064/// typed reason, whose message names `memstead projection migrate`
1065/// for the legacy generations. Healthy-miss keeps the historical
1066/// `PROJECTION_NOT_FOUND`.
1067fn binding_miss_error(configs: &memstead_base::BindingConfigs, binding_id: &str) -> CliError {
1068    if let Some(q) = configs
1069        .quarantined
1070        .iter()
1071        .find(|q| format!("{}/{}", q.mem, q.name) == binding_id)
1072    {
1073        return CliError::new(
1074            ExitKind::Validation,
1075            "PROJECTION_QUARANTINED",
1076            format!(
1077                "binding `{binding_id}` is quarantined — its stored file failed the load and \
1078                 it serves no operations until repaired: [{}] {}",
1079                q.reason_code, q.reason_message
1080            ),
1081        )
1082        .with_details(json!({
1083            "binding": binding_id,
1084            "reason_code": q.reason_code,
1085            "reason_message": q.reason_message,
1086            "path": q.path,
1087        }));
1088    }
1089    CliError::new(
1090        ExitKind::NotFound,
1091        "PROJECTION_NOT_FOUND",
1092        format!(
1093            "no binding `{binding_id}` in this workspace — scaffold one with \
1094             `projection init` or migrate a legacy workspace with `projection migrate`"
1095        ),
1096    )
1097    .with_details(json!({ "binding": binding_id }))
1098}
1099
1100/// Consume a skill-written `reconcile-cursors.json` (D10/AC12): each
1101/// machine-absolute `"<mem>:<abs-path>": <sha>` entry seeds the `#synced`
1102/// baseline of every binding whose medium pointer resolves to that path (via
1103/// the engine's `set_mem_sync_state` writer — the engine owns mem-repo state),
1104/// then the file is **deleted** regardless of whether anything matched
1105/// (cursorless / unmatched bindings stay never-synced). Returns the seeded keys.
1106fn consume_reconcile_cursors(
1107    ctx: &CliContext,
1108    root: &std::path::Path,
1109) -> anyhow::Result<(Vec<String>, Option<String>)> {
1110    let cursor_path = root.join(".memstead").join("reconcile-cursors.json");
1111    if !cursor_path.exists() {
1112        return Ok((Vec::new(), None));
1113    }
1114    let cursors: std::collections::BTreeMap<String, String> = std::fs::read(&cursor_path)
1115        .ok()
1116        .and_then(|b| serde_json::from_slice(&b).ok())
1117        .unwrap_or_default();
1118
1119    let mut seeded: Vec<String> = Vec::new();
1120    if !cursors.is_empty() {
1121        let configs = load_pipeline_configs(root).map_err(migrate_load_err)?;
1122        // Repair-below-boot rule: cursor seeding needs a booted engine
1123        // (`set_mem_sync_state`), but `projection migrate` is itself a
1124        // named boot repair — when the workspace still does not boot
1125        // (e.g. a schema-pin failure alongside the projection
1126        // migration), seeding is explicitly DEFERRED rather than
1127        // deadlocking the repair verb or silently dropping the
1128        // cursors: the file is kept untouched and the notice names the
1129        // follow-up.
1130        let mut cli_engine = match ctx.cli_engine_at(root) {
1131            Ok(e) => e,
1132            Err(boot_err) => {
1133                return Ok((
1134                    Vec::new(),
1135                    Some(format!(
1136                        "RECONCILE_CURSORS_DEFERRED: the workspace does not boot yet \
1137                         ({boot_err:#}); reconcile-cursors.json was kept — repair the boot, \
1138                         then re-run `memstead projection migrate` to seed the sync baselines"
1139                    )),
1140                ));
1141            }
1142        };
1143        let engine = cli_engine.base_mut();
1144        for (cursor_key, sha) in &cursors {
1145            // Key is `"<mem>:<abs-path>"` — split on the first ':'.
1146            let Some((_cursor_mem, abs_path)) = cursor_key.split_once(':') else {
1147                continue;
1148            };
1149            for record in &configs.bindings {
1150                let binding_id = format!("{}/{}", record.mem, record.name);
1151                let Ok(resolved) = resolve_binding_run(&binding_id, &record.config) else {
1152                    continue;
1153                };
1154                for source in &resolved.sources {
1155                    if let ResolvedSource::Primary(p) = source
1156                        && pointer_resolves_to(root, &p.pointer, abs_path)
1157                    {
1158                        let key = format!("{binding_id}/{}#synced", p.name);
1159                        // `.is_ok()` dropped the outcome and with it any
1160                        // report that a sibling had moved the config
1161                        // (04/03, criterion 3). A seeding pass that silently
1162                        // merged over someone is worth one line of output.
1163                        if let Ok(outcome) = engine.set_mem_sync_state(
1164                            &resolved.destination_mem,
1165                            &key,
1166                            sha,
1167                            Some("projection migrate: seeded from reconcile-cursors.json"),
1168                        ) {
1169                            for w in &outcome.warnings {
1170                                crate::output::print_markdown(&format!("> {w}"));
1171                            }
1172                            seeded.push(key);
1173                        }
1174                    }
1175                }
1176            }
1177        }
1178    }
1179    // Consumed — delete regardless of matches (D10: the file is retired here).
1180    let _ = std::fs::remove_file(&cursor_path);
1181    Ok((seeded, None))
1182}
1183
1184fn migrate(ctx: &CliContext, args: MigrateArgs) -> anyhow::Result<()> {
1185    let (_shape, root) = ctx.workspace_shape().ok_or_else(|| {
1186        workspace_not_initialised_error(
1187            "not inside a Memstead workspace (no `.memstead/workspace.toml` in any ancestor)",
1188        )
1189    })?;
1190
1191    // Gen-1 root-folder layout (`scopes|projections|ingests/` at the workspace
1192    // root) — the pre-four-primitive generation the retired `pipeline migrate`
1193    // command handled. Fold it in: materialize it into the four-primitive
1194    // `.memstead/` store first (mediums + facets + projections + ingests),
1195    // then fold to v2 below in the same pass. `--dry-run` reads the
1196    // root-folder configs directly without writing anything.
1197    let gen1 = has_legacy_root_layout(&root);
1198    if gen1 && !args.dry_run {
1199        migrate_legacy_pipeline(&root).map_err(|e| {
1200            CliError::new(
1201                ExitKind::Generic,
1202                "PROJECTION_MIGRATE_FAILED",
1203                format!("could not convert root-folder (gen-1) pipeline layout: {e}"),
1204            )
1205            .with_details(json!({ "error": e.to_string() }))
1206        })?;
1207    }
1208
1209    let configs = if gen1 && args.dry_run {
1210        read_legacy_pipeline_configs(&root).map_err(migrate_load_err)?
1211    } else {
1212        load_legacy_pipeline_configs(&root).map_err(migrate_load_err)?
1213    };
1214
1215    // Pure transforms first: any refusal (refinement / dangling / malformed /
1216    // orphan) aborts before a single file is touched — the migration is
1217    // all-or-nothing.
1218    //
1219    // Leg A (gen-2): merge each flat ingest into its projection and fold the
1220    // referenced facets + mediums inline — one v2 record per pipeline.
1221    let mut migrated = migrate_gen2_bindings(&configs).map_err(map_migrate_err)?;
1222
1223    // Leg B (v1 → v2): fold every on-disk `version: 1` binding of the
1224    // retired three-file store the same way, in place. Source names are the
1225    // facet names byte-verbatim, so sync watermarks keep resolving. A
1226    // version-less projection file no ingest schedules is inert leftovers —
1227    // refused with a remedy rather than silently dropped or left to break
1228    // the loader. (Skipped in the gen-1 dry-run, which previews in-memory.)
1229    let mut already_v2 = 0usize;
1230    if !(gen1 && args.dry_run) {
1231        let generations = load_projection_generations(&root).map_err(migrate_load_err)?;
1232        for (mem, name, generation) in generations {
1233            let binding_id = format!("{mem}/{name}");
1234            match generation {
1235                ProjectionGeneration::V2 => already_v2 += 1,
1236                ProjectionGeneration::V1(v1) => {
1237                    let consumed = v1.source_facets.clone();
1238                    let binding = fold_v1_binding(&binding_id, &mem, v1.as_ref(), &configs)
1239                        .map_err(map_migrate_err)?;
1240                    migrated.push(memstead_base::binding_migrate::MigratedBinding {
1241                        id: binding_id,
1242                        mem,
1243                        name,
1244                        ingest_name: String::new(),
1245                        consumed_facets: consumed,
1246                        binding,
1247                        notes: Vec::new(),
1248                    });
1249                }
1250                ProjectionGeneration::VersionLess => {
1251                    if !migrated.iter().any(|m| m.mem == mem && m.name == name) {
1252                        return Err(CliError::new(
1253                            ExitKind::Validation,
1254                            "PROJECTION_MIGRATE_INERT_PROJECTION",
1255                            format!(
1256                                "projection `{binding_id}` is a version-less gen-2 file no \
1257                                 ingest schedules — inert leftovers the loader refuses; delete \
1258                                 .memstead/projections/{mem}/{name}.json (or add an ingest) and \
1259                                 re-run `projection migrate`"
1260                            ),
1261                        )
1262                        .with_details(json!({ "binding": binding_id }))
1263                        .into());
1264                    }
1265                }
1266            }
1267        }
1268        migrated.sort_by(|a, b| a.id.cmp(&b.id));
1269
1270        // Every medium/facet record must have folded into some binding —
1271        // an orphan would be silently dropped by the tree removal, so the
1272        // whole migration refuses instead, naming each leftover.
1273        let consumed: Vec<(String, String)> = migrated
1274            .iter()
1275            .flat_map(|m| m.consumed_facets.iter().map(|f| (m.mem.clone(), f.clone())))
1276            .collect();
1277        check_all_consumed(&configs, &consumed).map_err(map_migrate_err)?;
1278    }
1279
1280    // Validate each produced binding against the capability matrix. A
1281    // capability refusal reflects a pre-existing config problem the binding
1282    // faithfully carries; surface it as a per-binding warning rather than
1283    // aborting the promotion. The folded v2 record validates directly — no
1284    // external resolution.
1285    let mut warnings: Vec<serde_json::Value> = Vec::new();
1286    for m in &migrated {
1287        if let Err(refusals) = validate_binding(&m.binding) {
1288            for r in refusals {
1289                warnings.push(json!({
1290                    "binding": m.id,
1291                    "kind": "capability",
1292                    "message": r.to_string(),
1293                }));
1294            }
1295        }
1296        for note in &m.notes {
1297            warnings.push(json!({
1298                "binding": m.id,
1299                "kind": "note",
1300                "message": note,
1301            }));
1302        }
1303    }
1304
1305    // Emit to disk unless previewing: promote each projection file to its v2
1306    // binding in place, remove each consumed flat ingest, then remove the
1307    // emptied `mediums/` and `facets/` trees (every record folded — the
1308    // orphan check above guaranteed it).
1309    if !args.dry_run {
1310        for m in &migrated {
1311            write_binding(&root, &m.mem, &m.name, &m.binding).map_err(|e| {
1312                CliError::new(
1313                    ExitKind::Generic,
1314                    "PROJECTION_MIGRATE_FAILED",
1315                    format!("could not write binding `{}`: {e}", m.id),
1316                )
1317                .with_details(json!({ "binding": m.id, "error": e.to_string() }))
1318            })?;
1319            if !m.ingest_name.is_empty() {
1320                delete_ingest(&root, &m.ingest_name).map_err(|e| {
1321                    CliError::new(
1322                        ExitKind::Generic,
1323                        "PROJECTION_MIGRATE_FAILED",
1324                        format!("could not remove merged ingest `{}`: {e}", m.ingest_name),
1325                    )
1326                    .with_details(json!({ "ingest": m.ingest_name, "error": e.to_string() }))
1327                })?;
1328            }
1329        }
1330        remove_mediums_and_facets_trees(&root).map_err(|e| {
1331            CliError::new(
1332                ExitKind::Generic,
1333                "PROJECTION_MIGRATE_FAILED",
1334                format!("could not remove the emptied mediums/facets trees: {e}"),
1335            )
1336            .with_details(json!({ "error": e.to_string() }))
1337        })?;
1338    }
1339
1340    // AC12/D10: consume `reconcile-cursors.json` (seed `#synced` baselines, then
1341    // delete it) and surface a `workspace.toml` proposal for any retired-vocab
1342    // references — never rewriting workspace.toml. Both are no-ops in `--dry-run`.
1343    let ((seeded, cursors_deferred), proposal) = if args.dry_run {
1344        ((Vec::new(), None), None)
1345    } else {
1346        (
1347            consume_reconcile_cursors(ctx, &root)?,
1348            propose_workspace_toml(&root),
1349        )
1350    };
1351
1352    let bindings: Vec<&str> = migrated.iter().map(|m| m.id.as_str()).collect();
1353    if ctx.json {
1354        print_json(&json!({
1355            "ok": true,
1356            "dry_run": args.dry_run,
1357            "migrated": migrated.len(),
1358            "already_v2": already_v2,
1359            "bindings": bindings,
1360            "warnings": warnings,
1361            "cursors_seeded": seeded,
1362            "cursors_deferred": cursors_deferred,
1363            "workspace_toml_proposal": proposal,
1364        }))?;
1365    } else {
1366        let verb = if args.dry_run {
1367            "Would migrate"
1368        } else {
1369            "Migrated"
1370        };
1371        let mut out = format!(
1372            "# Projection migration\n\n{verb} {} binding(s) to v2 ({already_v2} already v2):\n",
1373            migrated.len()
1374        );
1375        for id in &bindings {
1376            out.push_str(&format!("- `{id}`\n"));
1377        }
1378        if !warnings.is_empty() {
1379            out.push_str("\n## Warnings\n\n");
1380            for w in &warnings {
1381                out.push_str(&format!(
1382                    "- [{}] `{}`: {}\n",
1383                    w["kind"].as_str().unwrap_or(""),
1384                    w["binding"].as_str().unwrap_or(""),
1385                    w["message"].as_str().unwrap_or(""),
1386                ));
1387            }
1388        }
1389        if !seeded.is_empty() {
1390            out.push_str("\n## Baselines seeded from reconcile-cursors.json\n\n");
1391            for key in &seeded {
1392                out.push_str(&format!("- `{key}`\n"));
1393            }
1394        }
1395        if let Some(notice) = &cursors_deferred {
1396            out.push_str(&format!("\n## Reconcile cursors deferred\n\n{notice}\n"));
1397        }
1398        if let Some(block) = &proposal {
1399            out.push('\n');
1400            out.push_str(block);
1401        }
1402        if !args.dry_run {
1403            out.push_str(
1404                "\nEach projection file was converted to a v2 single-record binding in place \
1405                 (medium + facet content folded inline, source names preserved verbatim); \
1406                 merged ingests and the emptied mediums/ and facets/ trees were removed.\n",
1407            );
1408        }
1409        print_markdown(&out);
1410    }
1411    Ok(())
1412}
1413
1414/// A malformed binding id (not `<mem>/<stem>`, or a half that is not a single
1415/// plain path component) — the same shape guard `init` applies to its
1416/// scaffolded id, spelled here so the failure is typed before any disk touch.
1417fn invalid_binding_id(binding_id: &str) -> CliError {
1418    CliError::new(
1419        ExitKind::Validation,
1420        "PROJECTION_INVALID_NAME",
1421        format!(
1422            "invalid binding id '{}': expected `<mem>/<stem>` with each half a single path \
1423             component (no extra separators, traversal segments, ':' or NUL)",
1424            binding_id.escape_default()
1425        ),
1426    )
1427    .with_details(json!({ "binding": binding_id }))
1428}
1429
1430/// Map a store IO/parse failure while enabling to a typed CLI error. The
1431/// missing-binding case is handled separately (existence pre-check →
1432/// `PROJECTION_NOT_FOUND`); this covers a present-but-unreadable/unparseable
1433/// binding file and write failures.
1434fn enable_failed(binding_id: &str, err: StoreError) -> CliError {
1435    CliError::new(
1436        ExitKind::Generic,
1437        "PROJECTION_ENABLE_FAILED",
1438        format!("could not enable operation on binding `{binding_id}`: {err}"),
1439    )
1440    .with_details(json!({ "binding": binding_id, "error": err.to_string() }))
1441}
1442
1443fn enable(ctx: &CliContext, args: EnableArgs) -> anyhow::Result<()> {
1444    let (_shape, root) = ctx.workspace_shape().ok_or_else(|| {
1445        workspace_not_initialised_error(
1446            "not inside a Memstead workspace (no `.memstead/workspace.toml` in any ancestor)",
1447        )
1448    })?;
1449
1450    let binding_id = args.binding;
1451    let op = args.operation;
1452
1453    // Parse the binding id `<mem>/<stem>`; refuse a malformed shape (or a half
1454    // that is not a single plain path component) before touching disk. Own the
1455    // halves so `binding_id` is free to move into JSON payloads later.
1456    let (mem, stem) = binding_id
1457        .split_once('/')
1458        .filter(|(m, n)| !m.is_empty() && !n.is_empty())
1459        .filter(|(m, n)| is_single_component(m) && is_single_component(n))
1460        .ok_or_else(|| invalid_binding_id(&binding_id))?;
1461    let mem = mem.to_string();
1462    let stem = stem.to_string();
1463
1464    // Missing binding file → PROJECTION_NOT_FOUND (NotFound exit). A present-
1465    // but-unparseable file is kept apart (→ PROJECTION_ENABLE_FAILED) by this
1466    // existence pre-check.
1467    let binding_path = root
1468        .join(".memstead")
1469        .join("projections")
1470        .join(&mem)
1471        .join(format!("{stem}.json"));
1472    if !binding_path.exists() {
1473        return Err(CliError::new(
1474            ExitKind::NotFound,
1475            "PROJECTION_NOT_FOUND",
1476            format!(
1477                "no binding `{binding_id}` at .memstead/projections/{mem}/{stem}.json — \
1478                 scaffold one with `projection init` or migrate a legacy workspace with \
1479                 `projection migrate`"
1480            ),
1481        )
1482        .with_details(json!({ "binding": binding_id }))
1483        .into());
1484    }
1485    // Quarantine consult before the raw read: a legacy/corrupt file
1486    // refuses with its typed reason (naming `projection migrate` for
1487    // the legacy generations) rather than a generic enable failure.
1488    if let Ok(configs) = load_pipeline_configs(&root)
1489        && configs
1490            .quarantined
1491            .iter()
1492            .any(|q| format!("{}/{}", q.mem, q.name) == binding_id)
1493    {
1494        return Err(binding_miss_error(&configs, &binding_id).into());
1495    }
1496    let mut binding =
1497        read_binding(&root, &mem, &stem).map_err(|e| enable_failed(&binding_id, e))?;
1498
1499    // Already present? Refuse without a partial write. Every operation block is
1500    // optional now (D1/AC4), so `build` is enableable too (the remedy a
1501    // build-less binding's brief refusal cites).
1502    let already = match op {
1503        EnableOperationArg::Build => binding.operations.build.is_some(),
1504        EnableOperationArg::Sync => binding.operations.sync.is_some(),
1505        EnableOperationArg::Verify => binding.operations.verify.is_some(),
1506    };
1507    if already {
1508        return Err(CliError::new(
1509            ExitKind::Validation,
1510            "PROJECTION_OP_ALREADY_ENABLED",
1511            format!(
1512                "operation `{}` is already enabled on binding `{binding_id}` — nothing to do",
1513                op.name()
1514            ),
1515        )
1516        .with_details(json!({ "binding": binding_id, "operation": op.name() }))
1517        .into());
1518    }
1519
1520    // Add the operation block with sensible defaults: `batch_size` mirrors the
1521    // build op's when present, else 20. Sync/verify default `trigger: manual`;
1522    // build defaults to a discovery/loop schedule (the common obligation shape).
1523    let batch_size = binding
1524        .operations
1525        .build
1526        .as_ref()
1527        .map_or(20, |b| b.batch_size);
1528    match op {
1529        EnableOperationArg::Build => {
1530            binding.operations.build = Some(BuildOperation {
1531                mode: BuildMode::Discovery,
1532                trigger: IngestTrigger::Loop,
1533                batch_size,
1534                post_actions: None,
1535            });
1536        }
1537        EnableOperationArg::Sync => {
1538            binding.operations.sync = Some(SyncOperation {
1539                trigger: IngestTrigger::Manual,
1540                batch_size,
1541            });
1542        }
1543        EnableOperationArg::Verify => {
1544            binding.operations.verify = Some(VerifyOperation {
1545                trigger: IngestTrigger::Manual,
1546                batch_size,
1547                adjudication_cap: DEFAULT_ADJUDICATION_CAP,
1548                full_resync_every: DEFAULT_FULL_RESYNC_EVERY,
1549            });
1550        }
1551    }
1552
1553    // Matrix validation: the v2 record carries its sources inline, so the
1554    // candidate validates directly — refuse if a source's medium half cannot
1555    // support the operation being enabled (e.g. `sync`/`verify` over a `web`
1556    // source). Refusals about *other* operations reflect pre-existing config
1557    // and do not block this enable (mirrors `migrate`'s treat-as-warning
1558    // posture). No write on refusal — the file stays byte-identical.
1559    if let Err(refusals) = validate_binding(&binding)
1560        && let Some(err) = refusals.iter().find(|r| {
1561            matches!(
1562                r,
1563                CapabilityError::OperationOutOfScope { operation, .. } if *operation == op.name()
1564            )
1565        })
1566    {
1567        return Err(CliError::new(
1568            ExitKind::Validation,
1569            "PROJECTION_CAPABILITY_UNSUPPORTED",
1570            err.to_string(),
1571        )
1572        .with_details(json!({ "binding": binding_id, "operation": op.name() }))
1573        .into());
1574    }
1575
1576    write_binding(&root, &mem, &stem, &binding).map_err(|e| enable_failed(&binding_id, e))?;
1577
1578    let mut operations: Vec<&str> = Vec::new();
1579    if binding.operations.build.is_some() {
1580        operations.push("build");
1581    }
1582    if binding.operations.sync.is_some() {
1583        operations.push("sync");
1584    }
1585    if binding.operations.verify.is_some() {
1586        operations.push("verify");
1587    }
1588
1589    if ctx.json {
1590        print_json(&json!({
1591            "binding": binding_id,
1592            "enabled": op.name(),
1593            "operations": operations,
1594        }))?;
1595    } else {
1596        print_markdown(&format!(
1597            "# Projection enable\n\nEnabled `{}` on binding `{binding_id}`.\n\nOperations: {}\n",
1598            op.name(),
1599            operations.join(", ")
1600        ));
1601    }
1602    Ok(())
1603}
1604
1605/// `projection check-path` — deny verdicts for tool-call candidates, engine-
1606/// free: binding records are pure file I/O and the dialect evaluation needs
1607/// no store, so the check stays cheap enough to run on every tool call.
1608fn check_path(ctx: &CliContext, args: CheckPathArgs) -> anyhow::Result<()> {
1609    let (_shape, root) = ctx.workspace_shape().ok_or_else(|| {
1610        workspace_not_initialised_error(
1611            "not inside a Memstead workspace (no `.memstead/workspace.toml` in any ancestor)",
1612        )
1613    })?;
1614
1615    // Batch payload first: its `cwd` outranks the flag, and a malformed
1616    // payload refuses before any binding work — never a part-answer.
1617    let (candidates, payload_cwd): (Vec<String>, Option<std::path::PathBuf>) = if args.batch {
1618        let mut raw = String::new();
1619        std::io::Read::read_to_string(&mut std::io::stdin(), &mut raw)
1620            .map_err(|e| batch_invalid(format!("stdin unreadable: {e}")))?;
1621        let value: serde_json::Value =
1622            serde_json::from_str(&raw).map_err(|e| batch_invalid(format!("not JSON: {e}")))?;
1623        let paths = value
1624            .get("paths")
1625            .and_then(|p| p.as_array())
1626            .ok_or_else(|| batch_invalid("missing `paths` array".to_string()))?;
1627        let mut out = Vec::with_capacity(paths.len());
1628        for p in paths {
1629            match p.as_str() {
1630                Some(s) => out.push(s.to_string()),
1631                None => {
1632                    return Err(batch_invalid(format!("non-string entry in `paths`: {p}")).into());
1633                }
1634            }
1635        }
1636        let cwd = match value.get("cwd") {
1637            None | Some(serde_json::Value::Null) => None,
1638            Some(serde_json::Value::String(s)) => Some(std::path::PathBuf::from(s)),
1639            Some(other) => {
1640                return Err(batch_invalid(format!("`cwd` is not a string: {other}")).into());
1641            }
1642        };
1643        (out, cwd)
1644    } else {
1645        (vec![args.path.clone().expect("clap requires PATH")], None)
1646    };
1647
1648    // The binding: named, or the active one (published by the last consuming
1649    // brief render). No active binding is a typed refusal, never an implicit
1650    // "allowed" — the caller decides that an unanswerable check fails open.
1651    let binding_id = match args.binding.clone() {
1652        Some(id) => id,
1653        None => memstead_base::ingest::read_active_binding_file(&root).ok_or_else(|| {
1654            CliError::new(
1655                ExitKind::NotFound,
1656                "NO_ACTIVE_BINDING",
1657                "no active binding — no consuming brief render has published one; name a \
1658                 binding explicitly with --binding <mem>/<stem>",
1659            )
1660        })?,
1661    };
1662
1663    let configs = load_pipeline_configs(&root).map_err(|e| {
1664        CliError::new(
1665            ExitKind::Generic,
1666            "PROJECTION_LOAD_FAILED",
1667            format!("binding store unreadable: {e}"),
1668        )
1669    })?;
1670    let binding = configs
1671        .bindings
1672        .iter()
1673        .find(|r| format!("{}/{}", r.mem, r.name) == binding_id)
1674        .map(|r| &r.config)
1675        .ok_or_else(|| binding_miss_error(&configs, &binding_id))?;
1676
1677    let cwd = match payload_cwd.or(args.cwd) {
1678        Some(dir) => dir,
1679        None => std::env::current_dir()?,
1680    };
1681    let verdicts =
1682        memstead_base::ingest::check_deny_paths(&binding.deny_paths, &candidates, &cwd, &root);
1683
1684    if ctx.json {
1685        print_json(&json!({
1686            "binding": binding_id,
1687            "results": verdicts
1688                .iter()
1689                .map(|v| json!({
1690                    "path": v.path,
1691                    "denied": v.denied,
1692                    "matched": v.matched,
1693                }))
1694                .collect::<Vec<_>>(),
1695        }))?;
1696    } else {
1697        let mut out = format!("# Check path — binding `{binding_id}`\n\n");
1698        for v in &verdicts {
1699            match &v.matched {
1700                Some(entry) => {
1701                    out.push_str(&format!("- DENIED `{}` — matched `{entry}`\n", v.path));
1702                }
1703                None => out.push_str(&format!("- allowed `{}`\n", v.path)),
1704            }
1705        }
1706        print_markdown(&out);
1707    }
1708    Ok(())
1709}
1710
1711/// A malformed `--batch` payload: refuse whole, name the defect.
1712fn batch_invalid(reason: String) -> CliError {
1713    CliError::new(
1714        ExitKind::Validation,
1715        "INVALID_INPUT",
1716        format!(
1717            "--batch expects one JSON object on stdin — {{\"cwd\": \"<dir>\", \
1718             \"paths\": [\"...\"]}} — {reason}"
1719        ),
1720    )
1721}
1722
1723/// Map a `resolve_binding_run` failure to a typed CLI error. With inline
1724/// sources the dangling facet/medium refusals are gone; a malformed id is the
1725/// Validation-shaped name error, everything else generic.
1726fn map_resolve_err(binding_id: &str, err: ResolveError) -> CliError {
1727    let message = err.to_string();
1728    let mapped = match err {
1729        ResolveError::MalformedProjectionRef { .. } => {
1730            CliError::new(ExitKind::Validation, "PROJECTION_INVALID_NAME", message)
1731        }
1732        ResolveError::UninterpretableScope { .. } => CliError::new(
1733            ExitKind::Validation,
1734            "PROJECTION_SCOPE_UNINTERPRETABLE",
1735            message,
1736        ),
1737        _ => CliError::new(ExitKind::Generic, "PROJECTION_ADVANCE_FAILED", message),
1738    };
1739    mapped.with_details(json!({ "binding": binding_id }))
1740}
1741
1742/// Map an [`AdvanceError`] to a typed CLI error. The unknown-artifact refusal
1743/// is the D7 gate (Validation); a malformed id is a Validation-shaped name
1744/// error; store / engine failures are generic. Codes are spelled as literals at
1745/// each site so the generated error index picks them up.
1746fn map_advance_err(binding_id: &str, err: AdvanceError) -> CliError {
1747    let message = err.to_string();
1748    match &err {
1749        AdvanceError::MalformedId(_) => {
1750            CliError::new(ExitKind::Validation, "PROJECTION_INVALID_NAME", message)
1751                .with_details(json!({ "binding": binding_id }))
1752        }
1753        AdvanceError::UnknownArtifact {
1754            artifacts,
1755            suggestions,
1756            ..
1757        } => {
1758            // `corrected_artifacts` maps each medium-relative-looking id to
1759            // the workspace-relative id the slice actually presented — the
1760            // machine-readable half of the message's remedy.
1761            let corrected: serde_json::Map<String, serde_json::Value> = suggestions
1762                .iter()
1763                .map(|(supplied, corrected)| {
1764                    (
1765                        supplied.clone(),
1766                        serde_json::Value::String(corrected.clone()),
1767                    )
1768                })
1769                .collect();
1770            CliError::new(
1771                ExitKind::Validation,
1772                "PROJECTION_ADVANCE_UNKNOWN_ARTIFACT",
1773                message,
1774            )
1775            .with_details(json!({
1776                "binding": binding_id,
1777                "unknown_artifacts": artifacts,
1778                "corrected_artifacts": corrected,
1779            }))
1780        }
1781        AdvanceError::Store(_) | AdvanceError::Engine(_) => {
1782            CliError::new(ExitKind::Generic, "PROJECTION_ADVANCE_FAILED", message)
1783                .with_details(json!({ "binding": binding_id }))
1784        }
1785    }
1786}
1787
1788fn advance(ctx: &CliContext, args: AdvanceArgs) -> anyhow::Result<()> {
1789    let (_shape, root) = ctx.workspace_shape().ok_or_else(|| {
1790        workspace_not_initialised_error(
1791            "not inside a Memstead workspace (no `.memstead/workspace.toml` in any ancestor)",
1792        )
1793    })?;
1794
1795    let binding_id = args.binding;
1796
1797    // Parse the dispositions payload up front — a malformed `--dispositions`
1798    // refuses cheaply (before loading configs or an engine) with a typed code.
1799    let dispositions: std::collections::BTreeMap<String, DispositionInput> =
1800        serde_json::from_str(&args.dispositions).map_err(|e| {
1801            CliError::new(
1802                ExitKind::Validation,
1803                "PROJECTION_INVALID_DISPOSITIONS",
1804                format!(
1805                    "--dispositions must be a JSON object mapping artifact id → either a \
1806                     disposition string (e.g. \"worked\") or an object \
1807                     {{\"disposition\": \"excluded\", \"rationale\": \"...\"}}: {e}"
1808                ),
1809            )
1810            .with_details(json!({ "error": e.to_string() }))
1811        })?;
1812
1813    // Find the binding by canonical id in the v1 store.
1814    let configs = load_pipeline_configs(&root).map_err(|e| {
1815        CliError::new(
1816            ExitKind::Generic,
1817            "PROJECTION_ADVANCE_FAILED",
1818            format!("could not load pipeline config: {e}"),
1819        )
1820        .with_details(json!({ "error": e.to_string() }))
1821    })?;
1822    let record = configs
1823        .bindings
1824        .iter()
1825        .find(|r| format!("{}/{}", r.mem, r.name) == binding_id)
1826        .ok_or_else(|| binding_miss_error(&configs, &binding_id))?;
1827
1828    // D6/AC4: advance is the sync (maintenance-write) path — refuse when the
1829    // binding declares no `sync` operation, carrying the one-command remedy
1830    // `projection enable sync <binding>` (which, run verbatim, makes it
1831    // succeed) — except over a medium whose capability row refuses sync
1832    // outright, where the gap is named instead of a remedy that would bounce.
1833    if record.config.operations.sync.is_none() {
1834        return Err(absent_sync_error(&binding_id, &record.config).into());
1835    }
1836
1837    let resolved = resolve_binding_run(&binding_id, &record.config)
1838        .map_err(|e| map_resolve_err(&binding_id, e))?;
1839
1840    // The engine is mutable — a completing advance writes the `#synced`
1841    // baseline token through the sync-state writer.
1842    let mut cli_engine = ctx.cli_engine_at(&root)?;
1843    let engine = cli_engine.base_mut();
1844
1845    let outcome = advance_baseline(engine, &root, &resolved, &dispositions)
1846        .map_err(|e| map_advance_err(&binding_id, e))?;
1847
1848    if ctx.json {
1849        print_json(&json!({
1850            "binding": outcome.binding,
1851            "completed": outcome.completed,
1852            "disposed": outcome.disposed,
1853            "pending": outcome.pending,
1854            "remainder": outcome.remainder,
1855            "tokens_written": outcome.tokens_written,
1856            "warnings": outcome.warnings,
1857        }))?;
1858    } else {
1859        let mut out = format!(
1860            "# Projection advance\n\nBinding `{}`: {} artifact(s) disposed, {} remaining.\n",
1861            outcome.binding, outcome.disposed, outcome.pending
1862        );
1863        if outcome.completed {
1864            if outcome.disposed == 0 && outcome.pending == 0 {
1865                out.push_str(
1866                    "\nNo artifacts were presented this pass — the sync baseline advanced.\n",
1867                );
1868            } else {
1869                out.push_str(
1870                    "\nEvery presented artifact is disposed — the sync baseline advanced.\n",
1871                );
1872            }
1873            if !outcome.tokens_written.is_empty() {
1874                out.push_str("\nBaseline tokens written:\n");
1875                for key in &outcome.tokens_written {
1876                    out.push_str(&format!("- `{key}`\n"));
1877                }
1878            }
1879        } else {
1880            out.push_str(
1881                "\nRemainder still pending — re-run `projection advance` after judging the rest \
1882                 (a brief re-render shows what is left).\n",
1883            );
1884        }
1885        if !outcome.warnings.is_empty() {
1886            out.push_str("\n## Warnings\n\n");
1887            for w in &outcome.warnings {
1888                out.push_str(&format!("- {w}\n"));
1889            }
1890        }
1891        print_markdown(&out);
1892    }
1893    Ok(())
1894}
1895
1896/// Map an [`ExcludeError`] to a typed CLI error. The non-member refusal is the
1897/// S(D)-membership gate (Validation); a malformed id is a Validation-shaped name
1898/// error; store failures are generic. Codes are spelled as literals at each site
1899/// so the generated error index picks them up.
1900fn map_exclude_err(binding_id: &str, err: ExcludeError) -> CliError {
1901    let message = err.to_string();
1902    match &err {
1903        ExcludeError::MalformedId(_) => {
1904            CliError::new(ExitKind::Validation, "PROJECTION_INVALID_NAME", message)
1905                .with_details(json!({ "binding": binding_id }))
1906        }
1907        ExcludeError::NotSourceMember { artifacts, .. } => CliError::new(
1908            ExitKind::Validation,
1909            "PROJECTION_EXCLUDE_NOT_SOURCE_MEMBER",
1910            message,
1911        )
1912        .with_details(json!({ "binding": binding_id, "not_source_members": artifacts })),
1913        ExcludeError::Store(_) => {
1914            CliError::new(ExitKind::Generic, "PROJECTION_EXCLUDE_FAILED", message)
1915                .with_details(json!({ "binding": binding_id }))
1916        }
1917    }
1918}
1919
1920fn exclude(ctx: &CliContext, args: ExcludeArgs) -> anyhow::Result<()> {
1921    let (_shape, root) = ctx.workspace_shape().ok_or_else(|| {
1922        workspace_not_initialised_error(
1923            "not inside a Memstead workspace (no `.memstead/workspace.toml` in any ancestor)",
1924        )
1925    })?;
1926
1927    let binding_id = args.binding;
1928
1929    // Parse the exclusions payload up front — a malformed `--exclusions` refuses
1930    // cheaply (before loading configs) with a typed code.
1931    let exclusions: std::collections::BTreeMap<String, String> =
1932        serde_json::from_str(&args.exclusions).map_err(|e| {
1933            CliError::new(
1934                ExitKind::Validation,
1935                "PROJECTION_INVALID_EXCLUSIONS",
1936                format!(
1937                    "--exclusions must be a JSON object mapping in-scope artifact id → \
1938                     rationale string: {e}"
1939                ),
1940            )
1941            .with_details(json!({ "error": e.to_string() }))
1942        })?;
1943
1944    // Find the binding by canonical id in the v1 store.
1945    let configs = load_pipeline_configs(&root).map_err(|e| {
1946        CliError::new(
1947            ExitKind::Generic,
1948            "PROJECTION_EXCLUDE_FAILED",
1949            format!("could not load pipeline config: {e}"),
1950        )
1951        .with_details(json!({ "error": e.to_string() }))
1952    })?;
1953    let record = configs
1954        .bindings
1955        .iter()
1956        .find(|r| format!("{}/{}", r.mem, r.name) == binding_id)
1957        .ok_or_else(|| binding_miss_error(&configs, &binding_id))?;
1958
1959    let resolved = resolve_binding_run(&binding_id, &record.config)
1960        .map_err(|e| map_resolve_err(&binding_id, e))?;
1961
1962    // The S(D) membership gate now spans every enumerable medium, including
1963    // graph — whose artifact set lives in the store, not on disk. So the
1964    // exclude path needs an engine exactly as verify does.
1965    let mut cli_engine = ctx.cli_engine_at(&root)?;
1966    let engine = cli_engine.base_mut();
1967
1968    let outcome = record_exclusions(engine, &root, &resolved, &exclusions)
1969        .map_err(|e| map_exclude_err(&binding_id, e))?;
1970
1971    if ctx.json {
1972        print_json(&json!({
1973            "binding": outcome.binding,
1974            "excluded": outcome.excluded,
1975            "added": outcome.added,
1976        }))?;
1977    } else {
1978        print_markdown(&format!(
1979            "# Projection exclude\n\nBinding `{}`: {} artifact(s) newly excluded, \
1980             {} in the ledger.\n",
1981            outcome.binding, outcome.added, outcome.excluded
1982        ));
1983    }
1984    Ok(())
1985}
1986
1987/// Render a one-block human note for the full-enumeration scheduling decision
1988/// (D3), prepended to the verify report so the typed signal is never silent: a
1989/// scheduled full walk that fired, a not-yet-due countdown, disabled scheduling,
1990/// and — critically — any non-enumerable refusal. Empty for the quiet cases
1991/// keeps a rotating-sample run byte-clean.
1992fn render_full_resync_note(decision: &FullResyncDecision) -> String {
1993    match decision {
1994        FullResyncDecision::Disabled => String::new(),
1995        FullResyncDecision::NotDue { .. } => String::new(),
1996        // An explicit full measurement (`--full`): every facet walked in
1997        // full, scheduler bypassed, cap unlimited — stated up front so the
1998        // report below reads as computed, not sampled.
1999        FullResyncDecision::Forced { walked_facets } => {
2000            let facets = if walked_facets.is_empty() {
2001                "(no primary facets)".to_string()
2002            } else {
2003                walked_facets.join(", ")
2004            };
2005            format!(
2006                "> **Full measurement (`--full`)** — full-enumeration walk over: {facets}. \
2007                 Sampling scheduler bypassed; adjudication cap unlimited. Coverage and \
2008                 accuracy figures below are computed over the whole source, not sampled.\n\n"
2009            )
2010        }
2011        FullResyncDecision::Due {
2012            walked_facets,
2013            refused,
2014            ..
2015        } => {
2016            let mut s = String::from("> **Scheduled full resync (D3)** — ");
2017            if walked_facets.is_empty() {
2018                s.push_str("no enumerable facet to walk this run.");
2019            } else {
2020                s.push_str(&format!(
2021                    "full-enumeration coverage walk fired for: {}.",
2022                    walked_facets.join(", ")
2023                ));
2024            }
2025            for r in refused {
2026                s.push_str(&format!(
2027                    "\n> **Refused (cannot fully walk):** `{}` ({}) — {}",
2028                    r.facet, r.medium_type, r.reason
2029                ));
2030            }
2031            s.push_str("\n\n");
2032            s
2033        }
2034    }
2035}
2036
2037/// `projection verify <binding>` — measure fidelity and record durable findings
2038/// (group A). Read-only on the destination mem's *entities*; a completed run
2039/// makes three sanctioned bookkeeping writes — the findings store, the
2040/// prepared-hash backfill onto hash-less anchors, and the `#verified` baseline
2041/// through the engine's sync-state writer. An aborted or failed run makes none
2042/// of them; in particular it never advances the baseline token.
2043fn verify(ctx: &CliContext, args: VerifyArgs) -> anyhow::Result<()> {
2044    let (_shape, root) = ctx.workspace_shape().ok_or_else(|| {
2045        workspace_not_initialised_error(
2046            "not inside a Memstead workspace (no `.memstead/workspace.toml` in any ancestor)",
2047        )
2048    })?;
2049
2050    let binding_id = args.binding;
2051
2052    let configs = load_pipeline_configs(&root).map_err(|e| {
2053        CliError::new(
2054            ExitKind::Generic,
2055            "PROJECTION_VERIFY_FAILED",
2056            format!("could not load pipeline config: {e}"),
2057        )
2058        .with_details(json!({ "error": e.to_string() }))
2059    })?;
2060    let record = configs
2061        .bindings
2062        .iter()
2063        .find(|r| format!("{}/{}", r.mem, r.name) == binding_id)
2064        .ok_or_else(|| binding_miss_error(&configs, &binding_id))?;
2065
2066    let resolved = resolve_binding_run(&binding_id, &record.config)
2067        .map_err(|e| map_resolve_err(&binding_id, e))?;
2068
2069    // The measurement pass takes a shared engine borrow (A5 — structurally
2070    // incapable of a mem mutation); the mutable binding exists only for the
2071    // completed-run baseline write below.
2072    let mut cli_engine = ctx.cli_engine_at(&root)?;
2073    let engine = cli_engine.base_mut();
2074
2075    // A malformed anchors sidecar reads as "no anchors", which a fidelity
2076    // pass would faithfully report as every artifact uncovered — findings,
2077    // and under `--fail-on-findings` a red build blaming the mem for a file
2078    // the engine could not parse. Refuse instead: the measurement cannot be
2079    // trusted, so this is an operational failure with its own code, never a
2080    // findings exit. Same posture the binding store takes when its own
2081    // record fails to load.
2082    if let Some(err) = engine.anchors_sidecar_error(&resolved.destination_mem) {
2083        return Err(CliError::new(
2084            ExitKind::Validation,
2085            "ANCHORS_SIDECAR_UNREADABLE",
2086            format!(
2087                "verify refused for `{binding_id}`: the anchors sidecar for mem `{}` \
2088does not parse ({err}) — every anchor would read as absent and every artifact \
2089as uncovered, which is a measurement this run cannot honestly make. Repair or \
2090remove the sidecar and re-run",
2091                resolved.destination_mem
2092            ),
2093        )
2094        .with_details(json!({
2095            "binding": binding_id,
2096            "mem": resolved.destination_mem,
2097            "error": err,
2098        }))
2099        .into());
2100    }
2101
2102    let run = if args.full {
2103        verify_binding_full
2104    } else {
2105        verify_binding
2106    };
2107    let outcome = run(engine, &root, &record.config, &resolved).map_err(|e| match &e {
2108        // A vanished/unmounted source is a typed refusal, not a failed
2109        // measurement: nothing was observed, no findings were recorded,
2110        // and the `#verified` baseline is deliberately left untouched
2111        // (a transient unmount must never clobber real recorded state).
2112        FindingsError::SourceUnreachable { source_name, path } => CliError::new(
2113            ExitKind::Validation,
2114            "SOURCE_UNREACHABLE",
2115            format!(
2116                "verify refused for `{binding_id}`: source '{source_name}' resolves to \
2117                 `{path}`, which cannot be read (absent, or present but not \
2118                 enumerable) — restore or remount the source (or \
2119                 repoint its pointer); the recorded `#verified` baseline was left \
2120                 untouched"
2121            ),
2122        )
2123        .with_details(json!({
2124            "binding": binding_id,
2125            "source": source_name,
2126            "path": path,
2127        })),
2128        // `--full` over a non-enumerable medium: the existing typed
2129        // capability refusal — a full measurement promises complete
2130        // figures, so the run refuses instead of rendering a report
2131        // with fabricated completeness. Nothing was observed or
2132        // recorded.
2133        FindingsError::FullWalkNonEnumerable(refusal) => CliError::new(
2134            ExitKind::Validation,
2135            "PROJECTION_CAPABILITY_UNSUPPORTED",
2136            format!("verify --full refused for `{binding_id}`: {e}"),
2137        )
2138        .with_details(json!({
2139            "binding": binding_id,
2140            "facet": refusal.facet,
2141            "medium_type": refusal.medium_type,
2142            "reason": refusal.reason,
2143        })),
2144        _ => CliError::new(
2145            ExitKind::Generic,
2146            "PROJECTION_VERIFY_FAILED",
2147            format!("verify failed for `{binding_id}`: {e}"),
2148        )
2149        .with_details(json!({ "binding": binding_id, "error": e.to_string() })),
2150    })?;
2151
2152    // The run completed — record its prepared-hash backfill: every hash the
2153    // pass observed for a hash-less hash-bearing anchor lands on that anchor
2154    // in the engine-owned anchors sidecar (measurement bookkeeping — no
2155    // entity content is touched). Before the report, so the rendered
2156    // anchor-resolution figures reflect the recorded hashes. Idempotent: a
2157    // pass over fully-backfilled anchors observes an empty worklist.
2158    // Bookkeeping-write failures are reported AFTER the report, never
2159    // instead of it. Both of these say "verify completed and findings were
2160    // recorded" — a run that completed owes the caller its measurement, and
2161    // returning here would hand a CI job a red build with nothing to read.
2162    // Same render-then-fail ordering the findings gate uses, extended to the
2163    // paths that can fail between the measurement and the render.
2164    let backfill_result = record_anchor_hash_backfill(
2165        engine,
2166        &resolved.destination_mem,
2167        &outcome,
2168        Some("projection verify: prepared-hash backfill onto hash-less anchors"),
2169    );
2170    let hashes_backfilled = *backfill_result.as_ref().unwrap_or(&0);
2171
2172    // Assemble + render the tier-1 fidelity report (group B) over the findings
2173    // the pass just recorded. Read-only — no destination-mem mutation.
2174    let budget = args.budget.unwrap_or(DEFAULT_REPORT_BUDGET);
2175    let report = compute_fidelity_report(engine, &root, &record.config, &resolved, &outcome.key);
2176    let rendered = render_fidelity_report(&report, budget, &args.include);
2177
2178    // The run completed — record its `#verified` baseline per observed facet
2179    // head through the engine's sync-state writer (the backlog-prescribed
2180    // writer; a failed run returned above and never reaches this).
2181    let baseline_result = record_verified_baseline(
2182        engine,
2183        &resolved.destination_mem,
2184        &outcome,
2185        Some("projection verify: completed-run #verified baseline"),
2186    );
2187    let verified_baseline = baseline_result.as_ref().cloned().unwrap_or_default();
2188
2189    // The rollup is derived from the assembled report, so the headline a
2190    // human reads, the `rollup` block a consumer parses, and the gate exit
2191    // code below are all the same judgement — they cannot disagree.
2192    let rollup = report.rollup();
2193
2194    if ctx.json {
2195        print_json(&json!({
2196            // Version marker in the house style (`memstead-export/v1`,
2197            // `workspace-dump/v1`): consumers assert it before parsing, so a
2198            // future shape change fails loudly instead of misparsing. This
2199            // payload is external contract — see the verify-in-CI guide.
2200            "format": JSON_VERIFY_FORMAT,
2201            // The coverage rule (memstead_base::ops::coverage): the
2202            // axes the rollup verdict answers for; the per-run
2203            // blind-spots inside `rollup` are the refinement.
2204            "verdict_coverage": crate::coverage::PROJECTION_VERIFY
2205                .axis_coverage()
2206                .expect("projection verify is a verdict surface")
2207                .wire_line(),
2208            "rollup": rollup,
2209            "binding": outcome.binding,
2210            "key": {
2211                "binding_hash": outcome.key.binding_hash,
2212                "source_head": outcome.key.source_head,
2213            },
2214            "recorded": outcome.recorded,
2215            "superseded": outcome.superseded,
2216            "backlog": outcome.backlog,
2217            // The tier-3 full-enumeration scheduling decision (D3) — surfaced
2218            // (never a silent skip): whether a scheduled full walk fired, is not
2219            // yet due, is disabled, and any typed non-enumerable refusals.
2220            "full_resync": outcome.full_resync,
2221            // The completed run's `#verified` baseline keys, written through
2222            // the engine's sync-state writer.
2223            "verified_baseline": verified_baseline,
2224            // How many hash-less hash-bearing anchors gained a recorded
2225            // prepared-content hash this run (the completed-run backfill
2226            // write into the engine-owned anchors sidecar). 0 once every
2227            // anchor carries its hash — the backfill is idempotent.
2228            "hash_backfilled": hashes_backfilled,
2229            "report": report,
2230            "report_mode": rendered.mode,
2231            "report_markdown": rendered.markdown,
2232        }))?;
2233    } else {
2234        // The rendered report IS the stdout content (agent-consumable brief);
2235        // prepend the scheduled full-walk decision so D3's typed signal (a full
2236        // sweep, or a non-enumerable refusal) is never silent in human mode,
2237        // and append the recorded `#verified` baseline so the completed-run
2238        // write is visible.
2239        let baseline_note = if verified_baseline.is_empty() {
2240            String::new()
2241        } else {
2242            format!(
2243                "\n> **Verified baseline recorded** — {}\n",
2244                verified_baseline
2245                    .iter()
2246                    .map(|k| format!("`{k}`"))
2247                    .collect::<Vec<_>>()
2248                    .join(", ")
2249            )
2250        };
2251        let backfill_note = if hashes_backfilled == 0 {
2252            String::new()
2253        } else {
2254            format!(
2255                "\n> **Prepared-hash backfill recorded** — {hashes_backfilled} hash-less \
2256                 anchor(s) now carry their observed prepared-content hash; subsequent \
2257                 verifies adjudicate them deterministically.\n"
2258            )
2259        };
2260        // The coverage rule: the axes the rollup verdict answers for,
2261        // in the human rendering too (the JSON envelope stamps above;
2262        // memstead_base::ops::coverage).
2263        let coverage_note = crate::coverage::PROJECTION_VERIFY
2264            .axis_coverage()
2265            .map(|cov| format!("\n**Verdict coverage:** {}\n", cov.wire_line()))
2266            .unwrap_or_default();
2267        print_markdown(&format!(
2268            "{}{}{}{}{}",
2269            render_full_resync_note(&outcome.full_resync),
2270            rendered.markdown,
2271            coverage_note,
2272            backfill_note,
2273            baseline_note
2274        ));
2275    }
2276
2277    // --- Bookkeeping-write failures, now that the report has been rendered ---
2278    // A failed write is an operational failure with its own code, never the
2279    // findings exit: the measurement's own answer is already on stdout above,
2280    // and this says the run could not finish recording it.
2281    if let Err(e) = backfill_result {
2282        return Err(CliError::new(
2283            ExitKind::Generic,
2284            "PROJECTION_VERIFY_BACKFILL_FAILED",
2285            format!(
2286                "verify completed and findings were recorded for `{binding_id}` (the report is \
2287above), but recording the prepared-hash backfill onto the anchors sidecar failed: {e}"
2288            ),
2289        )
2290        .with_details(json!({ "binding": binding_id, "error": e.to_string() }))
2291        .into());
2292    }
2293    if let Err(e) = baseline_result {
2294        return Err(CliError::new(
2295            ExitKind::Generic,
2296            "PROJECTION_VERIFY_BASELINE_FAILED",
2297            format!(
2298                "verify completed and findings were recorded for `{binding_id}` (the report is \
2299above), but writing the `#verified` baseline failed: {e} — the next run will treat this \
2300binding as never verified"
2301            ),
2302        )
2303        .with_details(json!({ "binding": binding_id, "error": e.to_string() }))
2304        .into());
2305    }
2306
2307    // --- CI gate (opt-in) ---
2308    // Report first, then fail: `main` prints the error envelope and nothing
2309    // else, so a findings exit that returned before this point would hand a
2310    // CI job a red build with no report to read. Same ordering `health
2311    // --strict` uses, with the ambiguity that one has removed — this code is
2312    // dedicated, so a job can tell "the mem drifted" from "the engine failed
2313    // to boot".
2314    if args.fail_on_findings && rollup.findings_total > 0 {
2315        return Err(CliError::new(
2316            ExitKind::Findings,
2317            "PROJECTION_VERIFY_FINDINGS",
2318            format!(
2319                "verify completed for `{binding_id}` and recorded {} finding(s) — {}",
2320                rollup.findings_total, rollup.because
2321            ),
2322        )
2323        .with_details(json!({
2324            "binding": binding_id,
2325            "verdict": rollup.verdict.wire(),
2326            "findings_total": rollup.findings_total,
2327            "findings_by_class": report.findings_by_class,
2328            "actions": rollup.actions,
2329        }))
2330        .into());
2331    }
2332    Ok(())
2333}