Every fixture, test document, tool example and document now uses an invented kitchen-and-baking handbook series, written in this repository. The package's behaviour is unchanged; src/ changes are comments and help text only. - Generated fixtures are regenerated from their generators. Their structural counts are identical before and after: elements, images, rows, cells, headings, bookmarks and the witness inventory's per-document totals. The image-inbox and accounting documents are renamed kapittel-84-*. - tools/okf_accounting_gate.py: the two options that named one real corpus each are replaced by a generic, repeatable --corpus PATH with no default. Row 5 compares the PDF pair alone. Gate verdict unchanged: RED rows 2, 3, 6. - tools/okf_witness.py: the STS JSON reader for one publisher's delivery is removed, along with its three twins and five tests. The mutation harness loses W09. - docs/: 13 dated reports that documented runs on a retired reference corpus are removed, and 40 are neutralized. Dead links are removed, and no new dangling path is introduced. - The synthetic MCP-gate corpus and the residual probe words are neutral. Valgt: keep the `okf quality --fasit` bar value (the measured fraction, one corpus) and rewrite only its provenance, because the verdict stays unchanged and the number names nothing. Term check with the local list: 0 of 411 tracked files, 0 file names, 0 of 27 binary fixtures. Suite after git add: 2457 passed, 1 skipped. The base tree had 2460 passed and 2 skipped; five tests went with the JSON reader and four were added by the term check. ruff, ruff format and mypy --strict src/ are clean. Co-Authored-By: Claude Opus 5.5 <noreply@anthropic.com>
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Index ordering as a consumer-controlled property
Status: assessment complete, nothing built. Requested by order
20260827T123301Z-3790625395 from .claude, which asked explicitly for a
judgement and not for code.
Verdict: accept the finding, accept the mechanism, correct its shape. An index's order is a performance property, a consumer cannot control it today, and a profile-named ordering key is the right way to give them control. But naming a key is necessary and not sufficient, and the insufficiency is where the requester's own measured gain actually lives.
What was asked
A downstream consumer measured four faceted arms against one corpus, 32 questions, locked scoring, shared denominator 17. Arm F4 was arm F3 with exactly one variable moved — the index's sort order — and scored 14/17 against F3's 12/17. The single-variable claim was verified against the files rather than assumed: line sets identical in 32 of 32 cells, byte lengths identical in 32 of 32, order different in 32 of 32.
The request: make the index's sort key something a profile can NAME, on the same footing as the facet keys, per this library's standing rule that a profile names a key and the caller owns its value (D5).
What is true today, measured
Door C sorts its index on the concept path, and nothing else:
importer.py:421 iterates sorted(documents), a plain lexicographic sort over
concept paths, with no policy field anywhere in the chain that could redirect
it. FacetPolicy (profiles.py:388) governs what an entry CARRIES; no object
governs how entries are ARRANGED. So the second half of the requester's premise
holds exactly as stated: a consumer cannot control this today, at all.
For a UUID-named corpus that yields the 51.4% ascending-neighbour figure the order reports — which is to say, chance. The content was present in all three indexes; T8-1 failed because the answer was unfindable, not absent.
Why naming a key is not enough
A sort needs three things, and D5's formula seats only two of them. A profile can name the key; a caller can own the value. Neither of those is the comparator — how two values are placed relative to each other — and that is the part carrying the measured gain.
Measured, on this repo's own interpreter:
sorted(["Q100.9", "Q100.10", "Q100.2", "Q100.20", "Q100.1", "Q99.1"])
-> ['Q100.1', 'Q100.10', 'Q100.2', 'Q100.20', 'Q100.9', 'Q99.1']
Two independent inversions: Q100.10 sorts before Q100.2, and Q99.1 lands
after the entire Q100 family. A sort_key: req_number resolved through
Python's default ordering would therefore have handed that consumer a
different wrong order, not the 100.0% ascending they measured over 24 338
pairs. Their result came from comparing numerically. The key name alone does
not carry that.
The library already knows this lesson one module over. structure._version_key
(structure.py:375) exists for precisely this reason, and its comment says so:
"Lexicographic order would put the 2026 edition of a document before its 9th
revision." The gap is that the lesson is applied to versions and not to index
order.
The shape we would build
Not FacetPolicy.sort_key. Ordering is not a property of what an entry carries,
and putting it there would couple two questions that vary independently — a
consumer may well want title faceted and req_number ordering. It belongs on
IndexPolicy, beside name and facets.
Three fields, not one:
sort_key— the frontmatter key to order on, named by the profile.sort_order— a member of a CLOSED set,lexicographicornatural, wherenaturalis the digit-run comparison_version_keyalready implements. Closed, and never a caller-supplied callable: a callable makes the emitted bytes depend on the caller's code rather than on the profile, which would break the determinism contract that a from-scratch rebuild equals an incremental update. A profile has to be comparable across runs and across repositories, and a function is not.sort_missing— where a concept lacking the key goes. It needs an answer, because a corpus is never uniformly numbered.
And one invariant: the new ordering must be a refinement of the existing one, never a replacement. The final tie-break stays the concept path, so any two entries the new key cannot separate keep the total order they have now. Without that, S8b's determinism requirement is traded away for retrieval quality, and a non-deterministic index is a worse failure than a badly ordered one.
Relation to the segmentation voyage
The plan at .claude/projects/2026-08-30-door-b-concept-granularity/plan.md
Step 10 routes every index write through one named helper, _index_sort_key,
currently (is_nav, target), and pins that name in the step's manifest as a
must_contain check. That seam is real and machine-enforced, and it is what
makes this order a later parameter rather than a refactor.
Two qualifications, because the seam does not do as much as it looks like it
does. It is Door B's writer, and this order concerns Door C; the two
doors have separate index writers today. And a seam is a place to put a
comparator, not a comparator. When this is built, both doors should route
through one shared helper so a profile field has a single implementation to
reach — otherwise a profile would name an ordering that one door honours and
the other silently ignores, which is the IndexPolicy.per_directory trap
(profiles.py:863) repeating itself.
Recommendation
Build it, but not now, and not in this shape without the comparator. Door C's
index writer and Door B's are both inside or adjacent to the surface the
segmentation voyage owns for its next several sessions; changing index ordering
underneath it would collide with a byte-stability pin over four profiles. The
right sequence is: land the voyage, then add sort_key / sort_order /
sort_missing to IndexPolicy as a parameter on the seam that voyage leaves
behind, unifying the two doors' writers in the same change.
What we are NOT saying: that ordering explains the whole gap. The requester was explicit that one cell, T8-4, still separates F4 from F and is unexplained, and attached no hypothesis to it. Neither do we. The recommendation stands on the narrower claim the measurement actually supports — the ordering matters materially, and a consumer cannot reach it.