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62f3a485ad |
fix(usage): one seam attaches the surfaced-vs-opened chip, and the Knowledge browse uses it (#4230)
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`usage_for_notes` is named for notes and works on every note row, yet the chip reached snippets and rules only. Notes had it nowhere. Lessons had it collected and shown nowhere a person could reach, because #4196 taught `/api/lessons` to attach it and `KnowledgeView` — the only lesson list in the UI — browses through `/api/knowledge`, so `listLessons` still has no consumer. The cause was not a missing line. SEVEN call sites carried their own copy of the same few lines: two REST lists, two REST details, two MCP lists, one MCP detail. Each read perfectly well alone, so "which doors attach usage?" had no answer anywhere in the code — the same asymmetry test_system_tagging_door_parity.py records for System tagging (#4249), where whichever door nobody exercised for a kind is the one that never grew the feature. `attach_usage(rows, key="id")` is now that answer, and all seven go through it. A detail payload is a one-row list, so the single-record doors share the seam rather than keeping a second shape beside it. Deliberately NO try/except: the fail-open already lives in `usage_for_notes`, which reports through `_report_failure("readout")` and returns the zero-filled map. Wrapping it again would swallow the REPORT as well as the error, and a silently-swallowed readout failure is exactly #2663 — every counter reading zero in production for weeks while the writes landed fine. `/api/knowledge` now attaches usage, which closes both holes at once: it is how notes, lessons and processes are all browsed. `KnowledgeView` renders the badge on the card footer, looking the advice up per row because the feed is mixed. The advice moves to utils/deadWeight.ts. Canon #3460 says each caller owns its own const, and that held while each caller showed ONE kind; a mixed feed would need five of its own and the next surface another five. The canon's actual invariant — advice is kind-specific and never baked into the badge — is kept: it is still a prop. The three existing callers now read the same table, so the sentence has one home rather than four. Recorded against #3460 so the next reader is not left re-litigating it. `_row_id` rejects bools explicitly: `int(True)` is 1, so a row carrying a flag under the key would be credited with note #1's counts, and a wrong chip is worse than no chip because it reads as a measurement. A row with no usable id is skipped rather than failing the page. Tests pin the PROPERTY, not one route: no door calls the aggregate directly (AST, so a comment naming it is not a false positive), and every door that shows usage reaches the seam. Plus the N+1 guard — one aggregate per page, asserted on await_count, because the per-row version reads more naturally and is invisible in review. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01821k5B3Ysecp9fNYs92Kuy |
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43ed7f4db7 |
fix(access): tag a record as the user doing it, not as its owner (#4249)
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`set_record_systems` is not a dumb setter. It runs its own `can_write_note` and then links only the Systems the given user can READ. Four of twenty call sites handed it the record's owner instead of the acting user, which did two quiet things at once: the access check became trivially true, since an owner can always write their own record, and the System filter used the owner's visibility rather than the actor's. On a single-user install neither is observable. With a share it is an editor acting with the owner's reach — the shape rule 47 exists to prevent, and the same reasoning routes/notes.py already spells out for `set_supersedes` two lines away. This is NOT a permission change. Every one of the four sites establishes the caller's write access first: routes/lessons.py and routes/snippets.py call `can_write_note(uid, …)`, mcp/tools/processes.py does the same, and mcp/tools/snippets.py reaches `set_record_systems` only after `update_snippet` has raised PermissionError if the caller may not write. So nobody gains or loses the ability to edit anything. What changes is whose reach the tagging runs with, which is exactly the kind of difference that survives review because every call site reads fine on its own. The four: routes/lessons.py:243 owner_uid -> uid routes/snippets.py:211 owner_uid -> uid mcp/tools/snippets.py:486 note.user_id -> uid mcp/tools/processes.py:196 note.user_id -> uid The last one was written earlier in this same session, an hour before the sweep that found it, with a comment confidently explaining why the owner was correct. That is the argument for the guard rather than for care: the unified stance was known and still got it wrong at the next opportunity. So the guard is the point again. `test_every_tagging_write_acts_as_the_caller` walks every `set_record_systems` call in src/ and asserts the first argument is a bare local named `uid` or `user_id` — an attribute access is a record's owner by construction. Verified against `git show HEAD:` as well as the working tree: clean now, four offenders on the code it replaces. Reads are deliberately untouched. `list_record_systems(owner_uid, …)` gates on reading the NOTE, which the caller can do anyway, so it returns the same list either way; it is a different operation and churning it would add noise without changing behaviour. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01821k5B3Ysecp9fNYs92Kuy |
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e2e1ea3667 |
fix(systems): a record can be filed under a System from whichever door wrote it (#4249)
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A System tag is how `list_system_records` gathers an area's pile, so a
record that cannot be tagged is reachable by search and by nothing else.
`update_lesson` did not take `system_ids` while `create_lesson` did, which
made tagging available exactly once — at the moment of least information.
A lesson is usually written at the end of a piece of work, which is
precisely when that argument gets dropped, and after that the record could
never be filed at all.
Filling in the rest of the table found three more gaps, and the issue's own
generalisation was wrong. It read as "the REST door can do something the
MCP door cannot", on three instances in a row. In fact:
* `create_preference` is the exact MIRROR of the lesson bug — update
takes `system_ids`, create does not. The same capability missing from
the opposite end of the same lifecycle.
* `routes/notes.py` handled `system_ids` NOWHERE, while the MCP door
handled both ends. That runs the opposite way round from the premise.
* `create_process` / `update_process` took it at neither door, though a
process is a note and has always been taggable in the data model.
The real pattern is that whichever door nobody exercised for a kind is the
one that never grew the parameter — which is a better statement of #4248
than the one recorded there, and is not something a reviewer reliably
notices, because each door is only ever read on its own.
Milestones are NOT a fifth gap. `RecordSystem.note_id` is a ForeignKey to
`notes.id` and milestones are their own table, so they cannot be tagged at
any door by construction. Pinned in the test so the next pass does not
re-open it.
So the guard is the point, not the four parameters. `update_lesson` alone
would have left the shape that produced it intact. The new test asserts the
TABLE — every kind taggable anywhere is taggable everywhere it is written —
and keys the registry-coverage check on the SIGNATURE rather than on a
grep, so a module that only names the argument in prose is not swept in and
no hand-kept skip list can go stale. A fifth kind fails there rather than
shipping half-wired, the same reasoning test_derived_mirror_generic_door.py
records for derived mirrors (#3734).
One inconsistency found and deliberately not changed here: for the same
operation `routes/tasks.py` scopes `set_record_systems` by the caller while
`routes/lessons.py` and `routes/snippets.py` scope it by the owner. The new
notes code follows tasks.py and says why in a comment (#47 — an editor-share
holder should tag from what they can see rather than inherit the owner's
reach). Recorded in #4249 rather than fixed as a drive-by.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01821k5B3Ysecp9fNYs92Kuy
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5fb41af9b0 |
feat(search): the agent's search can ask for every kind the corpus has (#4250)
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The engine took `note_type` and `task_kind` all along. What was missing was a way to say them: the MCP tool's `content_type` knew `note`, `task` and `all`, and `/api/search` knew the same two — so an agent could not ask "has this snippet already been recorded" or "what lessons apply here" without searching everything and reading past the rest. Browse offered nine kinds from the same data. The cause is that each door kept its own map. `_FACETS` in services/knowledge is where a kind is declared, and #3161 made adding one a single edit by generating the SQL filter, the Python predicate and the door's validation from it — but the two search doors were written before that and never joined. So this adds the third dialect, `search_filters_for`, and one composition over it, `content_type_filters`, and both doors now derive instead of listing. Two names keep a meaning of their own, and the docstrings say so: `all` is no filter, and `note` is BROAD — any non-task, snippets and lessons included — where the browse facet of the same name is narrow (`note_type == 'note'`). They are left different deliberately; narrowing this one would stop returning snippets to every caller that already asks this way. An unrecognised kind is now refused rather than answered. Both doors used to fall through: the MCP tool into a filter matching no row, the route into no filter at all, so `?content_type=snippets` returned the whole corpus while looking like a narrowed search. An empty result set is a claim — "the corpus holds nothing like this" — and an agent acts on that claim by building the thing it could not find, so a typo must not be able to make it. The docstring is the agent-facing contract (#2846), and a test now holds it to the table: every kind `_FACETS` declares has to appear in it, because a filter an agent has not been told about is unreachable however well it is wired. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01821k5B3Ysecp9fNYs92Kuy |
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edbc31f8ca |
feat(lessons): the kind whose whole question is "is this trigger right" was the one kind that could not see its own counts (#4196)
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The lesson slot has recorded surfaced-vs-opened since it shipped. Nothing showed it. `get_lesson`'s REST door attached `usage` to the payload and no view rendered it; the listing did not attach it at all, and neither MCP door did. #4196 asks when a lesson that keeps getting followed should become a rule, and names the trap in the same breath: raw frequency cannot separate "this should bind" from "this trigger is too broad", and the second is the commoner reading by a wide margin. Surfaced-AND-opened can separate them. Neither question is answerable by a reader who cannot see the numbers, which is why this is the first step and not the threshold. NO THRESHOLD IS PROPOSED HERE, deliberately. The corpus today is 10 lessons with 7 recorded surfacings and 3 opens, over about fifteen hours of usage data. A promotion rule fitted to that would be fitting noise — #3311's failure, and the warning lesson #4228 was written to carry. `UsageBadge` already declines to render a verdict under three surfacings for the same reason. So #4196 stays open: its subject, the promotion path, is still unbuilt. What lands is the evidence it needs. - REST `GET /api/lessons` and MCP `list_lessons` attach `usage` to every row, from one aggregate per page rather than a per-row read, which would be N+1 by construction. Every row carries the key zero-filled, so "never surfaced" is a state a reader can see rather than a missing field they have to interpret. - MCP `get_lesson` attaches it too, and reads it BEFORE recording its own pull. That door records a pull on every open — it has to, or the kind sits permanently at zero — which makes the order load-bearing in a way it is not for a kind that only counts. The REST detail door already ordered it this way; the two now agree about what the number means. - `LessonDetailView` renders `UsageBadge` (snippet #3460) rather than re-spelling the chip, with the advice keyed to this kind: a lesson that is repeatedly offered and never opened is usually keyed to a situation nobody is in, so it points at re-keying `when_to_apply`, not at deleting the claim. Guards, in the two styles this pair of doors already uses: the MCP side driven behaviourally through mocks, including the call ORDER for `get_lesson`; the REST side on structure like its siblings in test_lesson_rest_door.py, because the route is decorated and returns a Quart response. Rule 167's falsifier is included. KNOWN GAP, not fixed here: `KnowledgeView` is the only lesson LIST in the UI and it reads `/knowledge`, not `/lessons` — so the REST listing change reaches `frontend/src/api/lessons.ts::listLessons`, which currently has no consumer. The agent-facing listing does reach a reader today. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01821k5B3Ysecp9fNYs92Kuy |
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91bc0fb01e |
feat(plugin): a high-confidence rule is put in front of a command, not beside its result (#4214)
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Milestone 419 step 3, the pre-act checkpoint. Every rule surface in this plugin returns `additionalContext`, which Claude Code delivers alongside the tool RESULT — so the rule is read after the call is written and lands as commentary on a decision already made. That is the milestone's central finding, measured over a session with seven misses, three caught by the operator and none by this system. The action arm can now return a `deny` instead. The act does not run, the rule's text can be read before the call exists, and the remedy is one `get_rule` call after which the act may be re-submitted unchanged. Nothing reaches the operator: a deny is a message to the model. "CONSEQUENTIAL" IS DERIVED, NOT ENUMERATED. The obvious implementation lists act kinds — a write to product code, a schema change, a bulk classification, a merge. Every one of those is consequential because THIS operator wrote rules about it, and shipping that list is this instance's corpus hard-coded into the product (rule 115). So the corpus decides: an act is consequential when the install's own rules speak to it above the checkpoint bar. A fresh install with no rules never stops anything. FOUR CONDITIONS, EACH PREVENTING A DIFFERENT WRONG. Above the bar; a rule and never a preference (which claims no such force); the band's top hit only (the ranker's confidence claim attaches to its first element); and only a rule the session has NOT opened — `held` is observable from the get_rule PostToolUse hook (#4100), not self-report. WHY "NOT OPENED" RATHER THAN "NO OUTCOME RECORDED". An outcome can be satisfied with one cheap call asserting compliance without producing any, and a checkpoint dismissible that way manufactures exactly the compliance data step 2 was built to measure. Reading a rule cannot be faked in that direction: after `get_rule` the statement is in context, which is the whole of what was wanted. THE BAR IS MEASURED. `retrieval_telemetry(days=30)`: write_path_rule p90 0.7628 max 0.8817; pre_tool_rule p90 0.7373 max 0.8293. 0.80 is above p90 on both and below max on both, so it selects from the top decile of an already selective arm and is still reachable. It ships as a setting with a Settings card, because a cosine distance in one model's geometry over one corpus cannot transfer. TWO GUARDS ON THE WORST CASE: at most one hold per rule and five per session, so a mis-set floor degrades to a noisy session rather than one that cannot proceed. The ledger lives in the swept directory and is named `.ids`, so the existing compaction-clear guards cover it. WRITES ARE NOT HELD, AND THAT IS THE OPERATOR'S DECISION RATHER THAN MINE. `scribe_prior_art.sh` carries a tested property that it never returns a permissionDecision — a recall aid may not stand in the way of a write. Three of the milestone's seven misses were file edits and none are reachable from the command side, so there is a live argument for extending this; that argument is exactly why the boundary is now asserted by a test rather than left to memory. The write-path arm computes and returns the same block so the decision can be revisited with evidence; the hook ignores it, and a change of mind is a hook edit rather than a feature. Verified by lifting `checkpoint_for` and `_rule_band` out of source with `ast` and exercising the shipped functions over 17 populations, by running the ledger and deny envelope in bash (10 cases, including that a refused hold is not written and that a garbled rule id fails closed), and by scripts/check_plugin.py — which caught the unminted plugin version, 0300 -> 0426. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01821k5B3Ysecp9fNYs92Kuy |
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95dc25eaab |
feat(lessons): a lesson is readable, writable and browsable by a human (#3734)
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Step 7's actual UI. Before this the frontend had zero lesson code — the kind existed for agents only, which is rule 27 failing. THE EDITOR ASKS FOR THE TRIGGER BY NAME, and leads with it. Three fields — the trigger, the claim, the detail — never one markdown box. That is the design step 1 settled, and the evidence is blunt: the snippet corpus carries a trigger on every record with no guard anywhere, because a service composes the title from a named parameter. What is at 100% is a named structured field, not a writer remembering a convention. The trigger gets the most room, its own explanation, and a save button that refuses without it and says why. The form shows the composed title live, so the writer is agreeing to a document they can read rather than one assembled out of sight. A 409 from the duplicate gate is rendered as the record that already covers the moment, with a link to improve it and an explicit override — not as a failure. THE BROWSE VOCABULARY GAINS THE KIND, which #3161 warned this step not to get wrong: a facet chip, a badge label, and routing to `/lessons/:id` rather than the note editor, which cannot edit a trigger. The badge is neutral alongside snippet and process — a hue would make the softest record in the corpus look like the loudest, next to a rule that actually binds. BOTH DIRECTIONS OF THE PROVENANCE. The detail page resolves `learned_from` to titles rather than bare ids, because "#4181" tells a reader nothing about whether it is worth opening. And `LessonsTaughtPanel` answers the reverse on the record's own page — the direction the task body calls the one that gets forgotten. It has no author to type it, which is exactly why it tends never to get built. A component, not markup in the task editor, so the same panel mounts on any record a lesson can cite instead of being written a second time (#3207). Silent when empty: most records taught no lesson, and a panel that says "None yet" everywhere is one people learn to skip. GLOBAL-BY-DEFAULT IS MADE LEGIBLE. A lesson meeting you on a project it was not written on reads as a bug unless the page says otherwise, so the origin line says it as a property of the kind rather than as an apology. Design system tokens throughout; no new raw hex. `--fs-error` rather than `--fs-danger` — 31 uses against 1. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01821k5B3Ysecp9fNYs92Kuy |
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d36d68a20f |
feat(lessons): the REST door a human can actually reach (#3734)
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Step 7, part two. Milestone 385 built the lesson kind through the MCP tools, which is the agent's surface. The Vue app speaks REST, so a lesson was a record a person could not create, read, edit or retire — rule 27 failing at the door rather than in the view. `/api/lessons` now offers list, create, read, update and trash, plus `/api/lessons/taught-by/<id>` — the reverse of `learned_from`, which the task body calls the direction that gets forgotten and arguably the more useful one: a reader opening an old issue wants to know what was learned from it, and until now the relation was only navigable from the lesson's side. `lessons_taught_by` reads `data[taught_by]` through `path_exists`, the same jsonpath dialect the snippet location lookup uses, so both reverse lookups hit the GIN index (0070) the same way rather than scanning bodies. Share-aware via `readable_notes_clause`: it renders beside a record the caller can already see, so a lesson shared with them belongs there exactly as their own does. THE TRIGGER IS REFUSED WHEN EMPTY, at create and at update. This is the one place the door is not a thin wrapper, and it is deliberate: the service will store a triggerless lesson quite happily — it saves, reads correctly in every listing, and never surfaces. There is nothing to notice afterwards, because it looks exactly like a lesson that works. Better to refuse it than to hand back a record that looks finished. The refusal says why, so the next reader does not take it for a nag and delete it. `lesson_to_dict` moves into the service and the MCP tool's `_to_dict` becomes an alias for it. Both doors now return one shape — a payload spelled once per door answers the two of them differently the first time a field is added — and both compose through `services/lessons.py`, so a lesson written from the web ranks identically to one written by an agent. The document IS what ranks, so that parity is the whole reason the door is thin. The dedup gate matches the MCP path: two lessons under one trigger compete in a single ranked list for one reserved slot, so a duplicate here displaces rather than merely clutters. NOT DONE YET: this is the door, not the UI. #3734 stays in_progress until the Vue views, the router entries, the Knowledge browse badge and the both-ways sources panel exist — rule 27 is about the operator being able to touch it. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01821k5B3Ysecp9fNYs92Kuy |
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7038e41ec7 |
feat(rules): preferences are writable, and their drift arrives (#3895)
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Milestone 399 step 5. Steps 1-4 put preferences into the backend: a kind column, an inverted write path, a third register in the injected block, a delivery slot. Nothing the operator could touch. Rule 27 forbids leaving it there, and here it matters more than usual, because the UI is the only guard against the risk the milestone named up front — an agent misreads one session, rewrites a preference, and follows the rewritten version forever while the operator never sees the moment it changed. Four things ship. A preference is DISTINGUISHABLE. `kind` reaches the client (the server has always sent it in rule_brief) and a preference carries a chip. Force is the one thing a list of instructions must not leave the reader to infer, and a row that renders identically to a rule teaches the opposite of both facts about a preference: it does not bind, and a session may rewrite it. A preference is WRITABLE. The editor gains the kind as a first-class choice with the test beside it — what happens when someone does not do this — and says plainly, when preference is chosen, that sessions rewrite these without asking and every rewrite is kept. DRIFT ARRIVES. `GET /api/rules/drift` returns one row per rewritten preference carrying its latest rewrite: what it said, what it says now, and the record named by `arose_from_id` that taught the change. Both texts ride along so the list shows the diff without a call per row. The new pane sits beside the staleness sweep, because drift belongs to no one rulebook, and it answers a question the operator would not have thought to ask. REVERSION IS ONE ACTION, and this is the carve-out worth arguing with. Milestone 323 refused a one-click restore for rules — "a binding instruction should not be revertible in one click", because a silent revert erases the only record of why the rewrite happened. That reasoning turns on the rewrite being the operator's own decision. A preference's is not: the agent makes it mid-work without asking, so reverting is a veto over someone else's edit rather than an undo of your own, and a veto costing more than a shrug is not supervision. The route refuses anything but a preference (409), and nothing is erased: the restore goes through update_rule, so it snapshots too and the history GAINS the revert. An integration test pins that, because it is the whole basis for the exception. Tested against real Postgres — every claim is about which rows come back and in what order, which a stand-in session cannot judge. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01821k5B3Ysecp9fNYs92Kuy |
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6240652dce |
feat(retrieval): the operator can see what was tuned, and every write is recorded (#4102)
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The other half of the bargain in milestone 416 step 4. The model moves these dials; this is what makes that reviewable rather than merely automatic. THE HOLE THIS CLOSES Every retrieval floor is an ordinary settings key, and `/api/settings` accepts any key at all. A floor written through it landed correctly and recorded nothing — a tuning history with holes in it, which is worse than no history because it reads as complete. So the generic endpoint now routes registry-owned keys through `set_dial` instead of writing them as plain rows. ROUTED, not refused: refusing would only work for callers that had been updated, while this way the form, a script, and an old client all leave the trail, and there is no version of "forgot to use the other endpoint". Clearing a control is written as an explicit set back to the shipped default, because the operator reverting something is the single most important move this history can record. `set_dial` now also refuses to record a no-op. The Settings form re-sends every field on every save, so without that one press of Save would write six rows saying the operator set six dials to the numbers they were already on — and a history nobody can skim is one nobody reads. WHAT THE OPERATOR GETS `/api/retrieval/surfaces`, `/surfaces/<name>` and `/tuning-history`, with `actor` fixed server-side rather than taken from the payload: a payload-supplied actor would let a model claim to be the operator, and "did I do this, or did the session?" is the first question this list is asked. In Settings: the five missing BUDGETS (until now only auto-inject had one, so the only control over a noisy surface was to raise its bar — which discards that surface's best candidates along with its worst), and a "What has been tuned" panel showing each change, who made it, and the reason given. The operator's own changes are marked. The MCP tool demands a reason; these endpoints do not. That asymmetry is deliberate and stated in routes/retrieval.py: the requirement exists to make the MODEL read the records before moving a number on someone else's behalf, and the operator is that someone — a mandatory justification box on every control would be friction charged to the one participant who owes no explanation. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01821k5B3Ysecp9fNYs92Kuy |
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ad26b3f458 |
feat(retrieval): the ledger records what was OPENED, not merely what was shown (#4100)
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Milestone 386 made a repeat REFERENCED rather than withheld, and the line it chose says "You saw it earlier this session". Nothing ever checked that. The arms emit a TEASER — title, trigger, get_rule(N) — so a session can be shown a rule twenty times and never read a word of it, and a compaction summarises the teaser away leaving nothing behind. The server was asserting something about the reader's context it had no way to know. Three states now, where there were two: never surfaced "it is not in this session's loaded set" named, unopened "Mentioned earlier this session but not opened — read it…" opened "You opened it earlier this session; pull it… again" The middle one is the honest one and the one that was missing. It keeps the full invitation, because a session that skipped a teaser is in nearly the position of one never shown it. HOW "OPENED" BECOMES OBSERVABLE. A new PostToolUse hook watches the get_rule call itself and appends to `<sid>.opened.ids`. PostToolUse does fire for MCP tools — the event's own output schema carries `updatedMCPToolOutput`, which would be meaningless otherwise — and the matcher is `mcp__.*__get_rule` so the server segment, which varies by install, is not pinned. This is NOT the self-report 386 rejected. That objection was to ASKING a model whether it holds a rule, which is unverifiable. A tool call is an event the harness reports whether anyone asks. Recording what a session DID and believing what it SAYS about itself are different kinds of evidence. Both ledgers clear together on compact/clear. Keeping `.opened.ids` across a compaction would have the arms telling a freshly-summarised session "you opened it earlier" about a rule now nowhere in its context — a more confident version of the bug being removed. Same reader (scribe_rules_live) for both, so ageing, last-entry-wins and the bare-id format are defined once. Also closes two smoke-coverage holes the checker was reporting as SKIP: the new recorder, and scribe_precompact_preserve.sh from #3680. The latter needed STATIC_FLOOR to become a set — PreCompact's contract is inverted, its stdout BECOMES the summarizer's instructions, so silence is its failure mode and a generic read of it looks like a leak. Step 2 of milestone 416, and a hard prerequisite for step 4: while suppression keys on shown, widening k marks records "seen" faster than they are read, and the ledger would degrade in proportion to the improvement. Plugin minted 2026.09.16.1232 -> 2026.09.16.2102. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01821k5B3Ysecp9fNYs92Kuy |
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07bdbf1647 |
feat(rules)!: a rule cannot be created, or edited into, having no trigger (#4099)
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`when_to_apply` is not metadata. `rule_document` embeds a rule as
`{title} — {trigger}` / `When to apply: {trigger}\n\n{statement}`, the trigger
appearing twice so purpose dominates a short vector — the shape note 2485
measured on snippets (a 0.153 top-to-second gap against 0.010–0.023 for
everything else). Without one the document silently becomes title + statement:
a DIFFERENT shape, ranked against a corpus it does not match, with nothing to
report it. Every bar and every rank in the system assumes one shape.
`create_preference` has refused an empty trigger since it shipped. The two rule
creators defaulted it to "" — so the shape was enforced for the record kind
that guides and optional for the kind that binds.
The guard lives in the SERVICE, because both doors reach it: the MCP tools and
the frontend's fast path in routes/rulebooks.py. Written in either alone, the
other could still create a rule that never fires. The route keeps a matching
check for the STATUS CODE only (400, not the 404 it maps ValueError to).
update_rule refuses to EMPTY an existing trigger, checked after the mutation so
it covers `clear=[...]`, an emptied form input, and any route added later.
Deliberately asked as "did this edit remove one" rather than "does one exist":
a rule predating the guard has none, and refusing to save it would freeze
precisely the unreachable records that most need fixing.
Deliberately not following arose_from_id, which the human door exempts itself
from because provenance is about auditing what the AGENT changed. That reasoning
does not reach this field — a missing trigger is not a missing explanation, it
is a rule that does not work, and it fails an operator as badly as a session.
15 test fixtures across 6 files were creating rules with no trigger. They now
pass one; that they did not is the point — curation is not a guarantee.
Step 1 of milestone 416 "Retrieval stops guessing a bar". First because every
later step assumes one document shape, and it is much cheaper to guarantee
before a corpus grows than to backfill after.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01821k5B3Ysecp9fNYs92Kuy
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aa94c73d9e |
feat(plugin): a directory says which project it belongs to, git repo or not (#4085)
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All six hooks scoped their requests one way: `git remote get-url origin`,
resolved server-side through the repo bindings. That key does not exist
outside a git repo, so a session in a plain directory was unscoped in every
hook at once — no project context, no prior-art scoping, no project rules —
and silently, because a missing remote is indistinguishable from a remote
nobody bound.
A `.scribe` file is the second key, read by the shared scribe_scope_query so a
directory scopes the same way everywhere:
{"instance": "https://scribe.example.com", "project_id": 2, "project": "…"}
`instance` is why the file is not just a number: an id is a different project
on every Scribe, so a marker that travels — a copied directory, a shared
machine, a repo someone else clones — would otherwise scope the session to the
wrong project without a word. Compared host-only, and a mismatch drops the id:
no project beats the wrong project. A bare integer is accepted too, since it
is what a person writes by hand. The marker beats a git remote — someone put
the file there on purpose — which is also how a directory overrides its
binding.
Two things it found on the way:
* An explicit project_id that did not resolve rendered NO message at all —
the branch hung off `if project_id` as an `elif`, so a caller holding a
pointer it believed in got a context that silently omitted the project it
had asked for. Now reported.
* The refusal reason was a global set inside a function every caller reads
through `$( )`. The assignment died with the subshell, leaving the caller
to read an unset variable under `set -u` — which aborts the hook and costs
the whole session's SessionStart context, to fetch a warning about a file.
It comes back through stdout with the id instead, and a test pins it.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01821k5B3Ysecp9fNYs92Kuy
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4e4020c040 |
feat(rules): move a rule between global and project scope, keeping its id, history, areas and edges (#4063)
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A rule's home is its reach: a rulebook topic makes it global, a project makes it that project's. There was no way to change one, so a project rule decided to be global could only be recreated and the original trashed — losing the id every record cites, its edit history, its area tags and its relations. - services.rulebooks.move_rule(rule_id, user_id, topic_id= | project_id=): exactly one destination (the model's CHECK), owned by the caller, not the rule's current home. A topic already holding a live rule with the same title is refused with a message naming that rule, instead of uq_rule_per_topic failing the commit. Someone else's rule reads as not found. - Deliberately NOT done, and said in the docstring: no version (a version is what a rule said, milestone 323 decision 4), no duplicate gate (nothing new enters the corpus), no re-embed (retrieval reads the home at query time). - Both doors: MCP move_rule, REST POST /api/rules/<id>/move (rule 33). - UI: RuleHomePicker, one component in the rule editor (a global rule) and a project's rules tab (a project rule), so the two cannot drift on what a destination is. - using-scribe names move_rule under "Where a new rule goes". Plugin 2026.09.15.1626. Milestone 414 step 3. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01821k5B3Ysecp9fNYs92Kuy |
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0bcd4b5540 |
feat(rules)!: retire rulebook subscriptions and per-project suppressions (#4052)
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A rule's home is its scope now: a rule in a rulebook topic is global, a rule on a project applies to that project, and retrieval reads that directly (#4074). A subscription had stopped changing anything a session received; a suppression muted rules from a subscription. Operator, 2026-09-15: "we have global and project scoped rules, we don't need the subscriptions now." What goes, whole (rule 22): - Migration 0101 drops project_rulebook_subscriptions, project_rule_suppressions and project_topic_suppressions, and strips subscribe_rulebooks (and 394's leftover exclude_always_on_rulebooks) from stored inception choices. - Service, MCP and REST: subscribe/unsubscribe and the four suppress/unsuppress operations. The Subscribers checklist, the subscribe chips, the skip buttons and the Suppressed section in the rules UI. - Inception asks two questions (design system, seed Systems). create_project and decide_project_inception lose subscribe_rulebooks. - Backup v15 stops exporting the three sections; older archives still restore, the keys simply unread. Trash no longer hard-deletes suppression rows. What changes meaning: - get_applicable_rules is a project's LISTING: its own rules, plus the global rules tagged to an area it works in. Untagged global rules apply everywhere and arrive by retrieval, so they are not listed. A co_surfaces partner on a different project is not dragged in. - list_rules(project_id) lists that project's own rules. - rules_payload drops subscribed_rulebooks and suppressed_*; the handshake's brief form is project_rules alone. - using-scribe's "Where a new rule goes" and inception sections, tool docstrings and docs say global vs project. Plugin 2026.09.15.1620. Milestone 414 step 2. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01821k5B3Ysecp9fNYs92Kuy |
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dd80e2bc86 |
feat(409): a Stop hook checks that a reply closing a task has the completion sections (#4014)
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Everything else Scribe gives an agent arrives before the reply is written. A
Stop hook is the one moment the finished reply exists, so it is the last
chance to fix a report the operator can't read, and the only place adherence
to the shape can be measured.
- plugin/hooks/scribe_report_check.sh (Stop): deterministic, no model call.
1. Did this turn close a task? That means an update_task/create_task call
with status "done" since the turn's prompt, whose tool_result is not an
error. Otherwise it stays silent, which covers most turns (one grep).
2. Does the reply that ends the turn say where the work sits (a record by
id and title, or step N of M), what needs the operator, and what comes
next? Matched on those words, not on exact headings.
3. If sections are missing, it blocks once. With stop_hook_active set, a
rewrite is recorded (passed_after_rewrite / missing_after_rewrite) and
never blocked again. A block loop started by another plugin (no marker
from this hook) is left alone.
- Measured: every checked reply is reported to GET /api/plugin/report-check
(passed / blocked / after rewrite). Turns that close nothing are not
reported; they would cost a request per turn and add nothing to the rate.
Outcomes go to app_logs as category "plugin", action "report_check".
- It blocks only when the block was recorded, and only in the server's words.
The endpoint returns the block reason, so the hook carries timing and
transport only (PACKAGING.md), and an unconfigured or unreachable instance
never stops a session.
- The transcript format is read from real transcripts and marked in the hook
as observed rather than documented. The Stop contract (transcript_path,
stop_hook_active, decision/reason, no matcher, SubagentStop separate) was
checked against the Claude Code hooks docs. A prompt-type hook was not
needed: the deterministic check passed a real completion report from this
session and blocked a stripped one.
- A pipefail trap was caught while exercising the hook: `tail | grep -q`
reports failure exactly when grep matches, because tail dies of SIGPIPE.
The prefilter reads through process substitution; the section checks use
here-strings.
- Tests: an end-to-end hook suite over synthetic transcripts and the shared
HTTP sink (silence, pass, server-worded block, rewrite recorded, foreign
loop, errored write, earlier turn, unwritten reply, no recorded check, bare
id), and service tests for the reason wording and the outcome record. Smoke
event added to check_plugin; README and PACKAGING list the hook and
endpoint. Plugin version minted.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
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46d9134b10 |
feat(409): a task write returns where the task sits (#4010)
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Step 1 of milestone 409 "Response shapes". An agent reporting finished work
is asked to say which milestone it belongs to, which step of how many, and
what is next. Without those facts to hand it reconstructs them, and a
reconstruction reads exactly like the truth when it is wrong.
create_task and update_task (MCP) and the REST create/update task routes now
return a placement block: project; and for a task in a milestone, the
milestone, position {step, of}, progress {completed, total, pct} and next
(the next open step, falling back to the earliest open one before it).
- Step order is creation order, not get_milestone listing order, which
reshuffles on every update.
- Siblings are read through readable_notes_clause; position and progress
are computed over that same readable set, so a collaborator is never shown
a step title they cannot open, and a note share alone reveals no plan.
- Fail-open and omitted when empty, like every in-band decoration.
- _no_embedding moves into conftest as one opt-in fixture for both
integration modules that need it.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
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c149ef31a3 | wip(394): steps 6+7 — backend path and instruction surfaces | ||
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44e0b0541f |
feat(rules): rules retrieve against the operator's message (#3852)
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The third rule arm, and the one the other two cannot reach. `write_path_rule` is keyed on code, `pre_tool_rule` on a command — both things the session is about to DO. A rule that governs what to SAY has no such trigger: extract intent from loose phrasing, raise a conflict before acting, hand off an action with its reason, end a finding with an offer all bind on a RESPONSE, and no tool call precedes one. The operator's message is the only query that exists before a response is composed. That hook searched notes alone, so no rule had ever been retrieved against a thing the operator actually said — and residency was the only surface those rules had, which is what milestone 394 removes. A SEPARATE FUNCTION, not a branch in build_autoinject_hint, because of its early returns. That arm bails when auto-inject is disabled, when the query is blank, when nothing clears the note bar — every one a statement about NOTES. Folded in, an operator who turned the awareness menu off would silently lose their rules, a coupling with no symptom since both look like a quiet hook. Two functions, two sets of gates, composed in the route. Guarded as "the rule arm never asks the notes arm's config", which is the structural fact. Joins _ARMS rather than getting its own test file. #3497's history is that the pre-tool arm inherited a defect from its sibling by being MODELLED on it instead of sharing with it, and a third arm modelled on two is two chances to repeat that. Repeat rendering, fresh-only counting, log-before-bailout, the kind register and the two-recorders identity are properties of every arm or of none. The bar is INHERITED and says so. 0.72 was tuned against code and commands; prose is a different query shape against the same documents, and triggers are written in the vocabulary of the moment — which for most rules is act vocabulary. Starting at the only number with evidence behind it and logging every call from the first deploy is what makes it settleable; guessing lower would put an unmeasured bar in front of a corpus that binds. k=3, anchored on this hook's own budget rather than the act arms'. RULEHINT_LIMIT is 1 because that arm fires before every Bash call; this one fires once per turn, beside a notes menu already spending three slots. And a prompt genuinely contains more than one act — "merge to main and then start on X" is two — where a command is one thing. `prompt_rule` added to RANKED_SOURCES: a ranker picked it, and a ranked source missing from that tuple is silently counted as bulk delivery and drops out of the pull-through denominator. The hook reads and writes the SHARED rule ledger under scribe-priorart, not a private one — one session keeps one list, aged (#3751), so a rule named here is not re-announced before the next Bash call. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_011cPyzNnegXHr5iRMzzy5KJ |
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89d16d89a9 |
feat(rules): a preference updates without asking, and says what taught it (#3849 step 2)
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The write path, and the step where a preference stops being a relabelled rule. `create_preference` / `update_preference` on the MCP surface, plus `kind` on update_rule and both HTTP doors. SEPARATE TOOLS, NOT A `kind=` ARGUMENT. create_rule's docstring IS the approval gate (#3557): propose, offer three answers, wait. That is right for a rule — the person it binds should have agreed. A preference inverts it, and one reached through create_rule would be read through that prose, so the caller would hesitate over exactly the act this kind exists to make routine. Two doors, two contracts, one table. Reads stay shared: a preference IS a rule row, and "what governs this" wants both. Two required fields, each buying something: - `when_to_apply`, because the trigger is two-thirds of the embedded document. Without one the record is written, stored, and silently never delivered — indistinguishable from one nobody wrote. - `arose_from_id`, the price of the ungated write. A corpus that drifts with no record of what taught each change cannot be audited, and the operator's veto over drift is worth exactly as much as their ability to read why it happened. The near-duplicate gate is what lets this corpus be written freely and stay small: the second preference about a thing updates the first. It is title-scoped and kind-blind, so it also catches a preference restating a rule that already binds. The asymmetry is guarded as two PRESENCE facts — the rule door still asks, the preference door still says write it — never as an absence. An absence check passes against a docstring that was deleted or rewritten into something else, which is snippet #3352's warning and would read as coverage here while proving nothing. `_plain_detail` moved to tests/helpers on its second copy, per that module's own reason for existing (#2825). Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_011cPyzNnegXHr5iRMzzy5KJ |
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d5ac8408f6 |
feat(telemetry): record WHAT the bar turned away, not only how close it came (#3807)
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#3670 added `best_available_score` so a threshold could be judged from its rejections. It records how CLOSE the bar came to firing and not WHAT it refused, and that is the half a decision actually needs. Live, pre_tool_rule sits at a ~0.72 bar with a near-miss p90 of 0.7071 — about 117 declines a day within 0.013 of firing. Dropping to 0.707 would take that arm from 22 hits a day to roughly 139: six-fold, on a surface that runs before every Bash call. The percentile says the mass is there. Nothing said whether it was worth showing. NEITHER OBVIOUS INSTRUMENT ANSWERS IT. Pull-through cannot: the injected rule line already carries title and trigger, so a session can comply without ever calling get_rule, and rule pull-through understates usefulness by construction. Reading the rejected records can — and `result_ids` holds only what was RETURNED, so on a zero-result call the near-missed record had no name at all. So the id, from the SAME ranked candidate as the score. Both searches unpack `best` once and read both fields off it, because splitting that into two expressions is exactly how a later edit pairs a score with its neighbour's id — and a score attached to the wrong record is worse than no id, since it invites judging the wrong one and concluding the bar is fine. write_path withholds the id on the same condition it withholds the score (#3739): a surviving id beside a null score names a record without saying what it scored, the pair disagreeing in the other direction. THE READ PATH IS A LISTING, NOT A STATISTIC — an id cannot be percentiled, and a reader tuning a bar needs to go and read the records. Opt-in via `near_miss_samples` (0-20, default 0) so the ordinary readout keeps its size, and deliberately NOT a window function: this module's one production outage was a grouped query Postgres rejected, swallowed by the broad except, every counter reading zero while the mocked tests passed (#2663). One flat ordered query, overfetched, bucketed in Python — the shape that lesson prescribes. Migration 0097, nullable and unbackfilled. Not a foreign key: the table spans record types and `source` says which, exactly as result_ids works. The integration guard pins the listing as PER SOURCE. A global LIMIT would let a noisy source eat the whole quota and leave the surface being tuned showing nothing — which reads as "nothing was close", the misreading this milestone has spent itself correcting. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_011cPyzNnegXHr5iRMzzy5KJ |
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623464323e |
fix(telemetry): a search that never ran is not a decline (#3765)
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`best_available_score` was added by #3670 so a bar could be judged from what it rejected, and it arrived null on four unrelated causes: the corpus offered nothing, the query was empty, the embedder was down, or the DATABASE QUERY FAILED. Only the first is a measurement. The fourth is the #2663 shape — a swallowed failure rendering as a clean zero — inside the field added to fix an instance of the #2663 shape. Found while trying to explain why reuse_slot returned nothing on 45 of 45 calls, and auto_inject on 153 of 161. That investigation is still open; what it established first is that the readout could not answer it. THE FIX IS NOT A NEW COLUMN. A call that never searched writes no row, so every remaining null means one thing: searched, and nothing came close. That is the convention the pre-tool arm already follows for a blank command — "a row here would report a call that never happened and drag the clear-rate down with phantom declines" — extended from the case a caller can see in advance to the ones only the search knows about. Both searches stamp `report["searched"]` FALSE before anything can return and True only where a real result set exists, so every early return leaves it false. It has to be the first thing done to the dict: a return added above that line would leave the key absent. ABSENT IS A THIRD STATE AND IT DEFAULTS TO TRUE. A caller that passes no report cannot know, and the safe reading there is the old behaviour. Only a real search can report False, so absent means "nobody asked" and never "it failed" — which is also why 66 existing mocked searches across twelve test files keep working unchanged rather than being rewritten to simulate a flag they do not care about. A FAILURE IS NOT MADE INVISIBLE. semantic_search_notes already logs a WARNING on a query failure, which is where a broken search belongs: a counter cannot say "I am broken" without a reader already trusting it. Three tests, and the middle one is what makes them discriminate — a blanket `return` passes the first and fails the second, because a call that searched and came back empty is the only evidence a threshold is too high (#3497). Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_011cPyzNnegXHr5iRMzzy5KJ |
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e7c1af32a0 |
fix(telemetry): the bar can only be judged from what it rejected (#3670)
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`cleared_threshold` was documented as the number to read first. It was a tautology. The search applies the threshold before returning, so every returned result cleared it by construction and a call with no results has no top_score to compare — the condition was true exactly when `result_count > 0`. It was `calls - zero_result_calls` under a name that promised a second opinion, and `zero + cleared == calls` held on all nineteen source/window readings ever taken, today's live seven included. The reading procedure built on it asked the reader to compare a number with itself, and a threshold change was unobservable through it: raise the bar and both numbers move together, so the field could never show a bar set too high. REPLACED, NOT JUST REMOVED. The question the table exists to answer is whether the bar is in the right place, and that is only answerable from the calls that returned NOTHING: how close did the best rejected candidate come? A 0.72 bar turning away a stream of 0.71s is set too high by a hair; the same bar turning away 0.30s is working. Both render as a zero-result call today and nothing separates them, because the losing score is discarded inside the search. So both searches now rank WITHOUT the bar and apply it in Python. The qualifying set is provably identical — rows arrive ordered by distance, so every above-bar row sorts ahead of every below-bar one, and an over-fetch that returned N above-bar rows returns the same N plus some losers. What changes is that the losers are visible instead of dropped in the query. `report` carries the score out without changing what a search RETURNS: eight of eleven call sites want hits and nothing else. New column (migration 0096), nullable and unbackfilled. A row written before this genuinely does not know, and a 0.0 would read as "the corpus held nothing remotely relevant" — a claim invented out of a caller's silence, which is the substitution this whole milestone corrects. The new aggregate is a percentile_cont WITHIN GROUP over a CASE, one step from the shape that produced #2663, where a rejected query was swallowed by the broad except and every counter read zero. It carries an integration guard for that reason: only real Postgres can say it parses, and the symptom of failure is silence. Also adds a guard that no int field in a bucket equals `calls - zero_result_calls`. That identity is what `cleared_threshold` satisfied for its whole life, and it survived because it had its own name and nobody added the two numbers beside it. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_011cPyzNnegXHr5iRMzzy5KJ |
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2ee24b9d2b |
feat(rules): rules before tools — a PreToolUse arm keyed on the action (#3476)
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The only just-in-time rule surface was registered on `Write|Edit` and queried with `code or path`, so a rule could be retrieved at the moment of a code write and nowhere else. Every rule about which tool to reach for — don't curl the forge, don't stand up a stack, don't run the suite locally, don't branch — was unreachable exactly when it mattered, and residency in the always-on preload was the only surface it had. That is the pressure that grew the resident set to 31 against #3089's ceiling of ~23; it was never a judgment anybody made. A reflex generates no query, so an instruction to check the rules cannot catch one. A mechanical trigger can: the tool call IS the query, and a reflex has to become a tool call before it can do anything. `build_tool_rule_hint` is deliberately tool-agnostic — a name and a string — so widening the matcher later is a hooks.json edit with no server change. The hook starts on Bash, which is where the action reflexes live. The two pre-tool arms share ONE session ledger of already-named rules (`<state>/<sid>.rules.ids`). Two ledgers would mean a rule named by one arm gets re-offered by the other, and the hint that fires most often is exactly the one that must not repeat itself. A test asserts both scripts build the same path, and another checks the shell hook and the Python route agree on every query-arg name (rule 33) — a rename there fails silently, looking like a surface that never finds anything rather than a broken one. Deliberately silent on outage, unlike the prior-art hook: a write is occasional, a Bash call is not, and an outage line before every command is what gets a channel muted. `tier="conditional"` matches the write arm and is the transition point — an always-on rule is already resident, so re-tier one and it starts arriving here instead of in every session's preamble. `pre_tool_rule` joins RANKED_SOURCES: this arm chose what it showed, so a pull can settle whether the choice landed. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_011cPyzNnegXHr5iRMzzy5KJ |
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6627cfc2f0 |
feat(rules): a usage badge on the rule list, and the badge becomes canon instead of a second copy (#3319)
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Milestone 333 step 5, and rule 27 — the counter had a tuning point from step 4 and no operator-facing one until now. The task said to reuse the snippet badge's classes rather than mint a parallel set, citing the eight duplicated CSS families the ledger already carries (#3207). `.usage-tag` lived in SnippetListView's SCOPED block, so "reuse" was not available: copying it into the rule pane would have been the ninth family, and importing it is not a thing a scoped block permits. So it was promoted rather than copied. Three pieces, each of which existed once and now exists once: - `components.css` gains `.usage-tag` / `.usage-dead`, geometry and colour only, with the scoped original deleted rather than left behind. - `UsageBadge.vue` holds the logic the two lists would otherwise duplicate — the >=3 dead-weight threshold, the empty-string-renders-nothing rule, the tooltip. - `types/usage.ts` holds `RecordUsage`, one client type over two tables. `SnippetUsage` becomes an alias, so no existing consumer changes. THE ADVICE IS A PROP, and that is the substance rather than the plumbing. The counts read identically for every kind; the remedy does not. A snippet offered and never opened should probably be rewritten or deleted — one action. A rule in the same position has TWO possible causes and the operator has to pick: its trigger may fire on the wrong work, in which case `when_to_apply` wants rewording, or it may genuinely not be wanted. Baking "delete it" into the component would give the wrong nudge half the time on the surface where being wrong is most expensive, since a deleted rule stops binding behaviour. The route zero-fills every row through `usage_for_rules`, one aggregate per page — per-row would be N+1 by construction. That matters more here than for snippets: every rule on every existing install predates `rule_usage_events`, so the zero-filled shape IS the common case for a while, and a route that attached the key only where it found events would leave the badge reading undefined on almost every row. `usage_for_rules` had no test at all — step 1 covered the write path and the zero shape and left the aggregate uncovered, which only became load-bearing when a list started rendering it. It now has an integration test over real Postgres, including that a rule with no events comes back zero-filled rather than absent. Recorded as snippet #3460, per the design system's own instruction that the component layer lives as snippets rather than as prose. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01TcCs1CcQ1ormdnzSshKqvN |
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8f7f447fda |
feat(telemetry): the rule arm records what it showed, and get_rule records the read (#3316)
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Milestone 333 step 2. Step 1 built the table; a counter nobody calls reads zero and looks exactly like a surface nobody uses, which is #2663's shape. SURFACED — the standing-rule arm in build_write_path_hint, beside the record_retrieval it already made. Two tables, and the split is not arbitrary: retrieval_logs is one row per CALL keyed on the score distribution a threshold is tuned from; rule_usage_events is one row per RULE per event, the grain "was this hint ever acted on" needs and the grain a JSONB result_ids array cannot be indexed at. The comment there said rule ids had nowhere to go — that note_usage_events remaps ids on restore, so a rule id would return attached to whatever note took that number. Still true of the NOTE table, and precisely why step 1 built its own. Rewritten to say the gap is closed rather than leaving a stale rationale that would have someone re-derive the same dead end. Records `fresh`, i.e. AFTER exclude_rule_ids. A rule the session already holds was considered and not shown; counting it would inflate the denominator with claims the agent never saw, and the ratio would then fall for a reason that has nothing to do with whether hints land. PULLED — two doors, both after their access check so a refused read is not a pull. mcp_get_rule is the one that matters: the arm's own message ends "Read it with get_rule(N)", so that call is the exact action a landed hint produces. rest_rule carries the other prefix, and the prefix is load-bearing — "is this rule dead weight?" is served by any pull, "did that injected hint land?" by agent pulls only. NOT a pull: rule_history. It loads the rule for its title and its own output says "The current wording is on the rule itself — get_rule(N)", so counting it would credit a read of the history as a read of the rule and double-count anyone who then follows that pointer. list_always_on_rules and enter_project are likewise bulk resident loads, not somebody choosing to open one record. tests/test_rule_usage_wiring.py is cross-cutting on purpose: the surfaced end is in plugin_context, the pull end in two other modules, and "both ends meet" is a property no module-shaped file asserts. It covers the exclusion boundary, that a failing recorder cannot break the write, that a refused read records nothing, and two completeness guards — every door records, and the bulk loaders still do not. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01TcCs1CcQ1ormdnzSshKqvN |
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69ce7afc45 |
fix(ci): /api/version reported the channel where the build belongs (rule 149)
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CI set BUILD_VERSION to the CHANNEL — literally "dev", "main", or the tag —
so a running instance answered "which build are you?" with the name of a
branch: {"version":"main"}. The cost was concrete rather than theoretical.
During #3244's live acceptance a deploy was behaving as though it held older
code, and the one endpoint whose job is to settle that could not.
Rule 149's three values, now three fields:
version the NAME, YYYY.MM.DD.HHMM from COMMIT time — "is this the same
code?", so two lanes carrying one commit report one string
build the ORDERING KEY, minutes since 2020-01-01 from BUILD time —
"may this be installed over that?", and the only value anything
may compare
channel its own field. Never a suffix, never a segment of the name
Plus `commit`, so the artifact's claim about itself can be checked against
the :<sha> it was published under (rule 145) — which is exactly the question
that could not be answered tonight.
THE TWO CLOCKS ARE DELIBERATE and look like an inconsistency. The name comes
from the commit so two lanes building one source agree; the key comes from
the build so it cannot go backwards when an older commit is rebuilt. A test
pins both derivations against being "tidied" into one.
ABSENT RATHER THAN EMPTY when unknown. A local build has no ordering key and
no channel; emitting "" or a placeholder would let it claim a position in an
update order it is not part of. A malformed key is dropped rather than passed
through — a reader that cannot order is correct, one that orders on garbage
is not. The key is an int, because a string ordering key is how a comparison
silently becomes lexicographic ("9" > "10").
The payload builder is extracted from the route so it can be tested as a
dict rather than through app startup and a request context.
Tests pin the SHAPE the lanes emit, not the values, including the midnight
leading-zero case rule 149 names specifically — and assert CI never stamps a
branch name as the version again.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
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5c9bb40777 |
feat(rules): a session is told when its rules move under it (#3244, milestone 323 step 5)
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The rules payload carries a marker; the write-path hook hands it back; the server says which rules moved. Nothing is said when nothing moved. THE COUNT IS NOT DECORATION. max(updated_at) alone cannot see a DELETED rule — it moves no timestamp — and that is the single change that takes an instruction OUT of force, which is the one a session most needs to hear about. The marker is `<max updated_at>|<count>`, and a deletion is reported through the count because there is no row left to name. THE HOOK IS THE CARRIER because it already fires before a write, which is the moment acting on a stale rule costs something. One comparison, no payload, no extra round trip. WHERE THE MARKER IS CAPTURED, and it could not be anywhere else: the SessionStart hook, from /api/plugin/context. The model also receives one from list_always_on_rules, but a hook cannot see an MCP tool's result — so the value the write path compares has to be stored where a shell script can reach it. Keyed by session id in the state dir the prior-art hook already uses, so "changed since" means since THIS session loaded its rules. NOT ON rules_payload, against the task's letter. Those are applicable_rules — a different, subscription-derived set. One key name over two sets is how a comparison starts reporting phantom changes, and the write path compares against the always-on set. WHAT IT CANNOT SEE is stated in both the service and the write-path arm as a table, because a reader who finds an etag will assume it covers staleness generally: another session edits a rule mid-flight | caught the session is misremembering a rule read hours ago | caught compaction summarised the rules out of context | NOT caught The third is the most common, and the marker is blind to it — the etag was in context too and went with the rules. The SessionStart nudge is that case's only mechanism and must not be softened because this shipped. A test asserts both modules still explain that. Instance-agnostic (rule 115): an install with no rules produces a stable marker rather than an error, and "no rules" reads as a state rather than as a change. An unreadable or absent marker reports nothing — a signal that cries wolf is worse than none, because it trains a reader to skip the line that will one day be true. The arm fails open like every other arm on this hook. The delivery is tested through the real build_write_path_hint rather than the helper alone: the feature IS a line arriving in a session, and the arithmetic being right proves nothing about that. Live acceptance is deploy-gated and not yet recorded on the task. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> |
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0704988528 |
feat(rules): the history is readable — service, REST and MCP (#3242, milestone 323 step 3)
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`list_rule_versions` / `get_rule_version` in the rulebooks service, a pair of REST routes beside the note-version ones, and an MCP `rule_history` tool. The ACL-scoped reads live in services/rulebooks.py rather than in services/rule_versions.py because rulebooks already imports rule_versions for the write path and the reverse would be a cycle. It is also the honest split: rule_versions owns what a version IS, rulebooks owns who may read one. Scoping is through the RULE, never the version's user_id, and both directions of that mistake are now pinned by tests. That column is the ACTOR — scoping by it would hand someone the snapshots they personally wrote on a rule that has since moved out of their reach, and would hide from the rule's owner every edit anyone else made. `get_rule_version` takes the rule id as well as the version id so the ownership check and the fetch agree about which rule is in play; the test for that uses a second rule the caller genuinely owns, because a nonexistent id would pass on the ownership check alone and prove nothing. An unreadable rule returns None, not an empty list. The two mean different things — "not your rule" versus "never reworded" — and the MCP tool keeps them apart: None raises, empty says so in band. THE DIFF QUESTION, ANSWERED — and the task's premise was half wrong. It says "notes have DiffView.vue and a diff endpoint already". The component exists and is reusable as-is: it takes `DiffLine[]` and nothing note-shaped, so step 4 can render a rule diff with it unchanged. The ENDPOINT does not exist — diffs are computed client-side by `computeDiff` in useAssist.ts. So no diff route is needed here, and none was written. For the MCP door the answer is different again: an agent has no client to compute a diff, but it also does not need one. Each entry holds the text the edit REPLACED, so "what did this say before the most recent change?" is the first entry, and the text that change produced is the rule as it stands. The docstring says so, and a test pins that sentence — read the other way round, every diff comes out backwards. No restore, per the task. Putting an old wording back goes through update_rule, which snapshots what it replaces, so the undo stays visible like any other edit. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> |
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1ec44071d2 |
feat(ui): a note's check is editable, dated and sweepable (#3167, milestone 317 step 4)
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Rule 27: no UI, no ship. Three surfaces. THE EDITOR ASKS, but only where the answer can be saved: the fields appear for a plain note and not for a task or a snippet, matching the service gate from step 2 so the form never offers a write the save would reject. The labels are phrased as the QUESTION rather than the field name — "how would someone check this is still true?" and, underneath, "could this become false without anyone editing it?". "Verify with" gets filled in on every note; the question gets filled in on the few that can go stale. `expires_when` appears only once a check exists, and asks for a state rather than a date in the placeholder itself. THE NOTE SHOWS ITS AGE beside the field — "checked 2026-08-28" or "never checked", italic, and nothing at all when no check exists. No red/amber ramp, matching RuleSweepPane: a colour scale would restate the sweep's ordering and force an invented staleness threshold. "Never" is marked because it is categorically different from a date, not a worse one. THE SWEEP is a pane in the Knowledge view, not beside the rules sweep — operator's call, taken over a unified "everything due" surface and over a second pane under /rules. Notes stay where notes live. The cost, accepted knowingly: no single screen shows every unconfirmed record. It REPLACES the feed rather than filtering it, because a facet answers "show me this kind" and this answers "show me what nobody has confirmed" — a question the type chips cannot narrow without under-reporting. Two REST routes for it, since step 3 built only the service and the MCP door. Along the way: NoteEditorView spelled its write payload out at three call sites (save, create, auto-save), so every new field had to be added three times — which is how one of them ends up not carrying it. Now one `payload()` and one `snapshot()`. Known and filed, not fixed: NoteSweepPane copies ~12 scoped CSS rules from RuleSweepPane (#3207). The clean extraction needs prefixed names, because `.age`, `.row-title`, `.lede` and `.actions` all exist scoped in other components and an unscoped global would leak into them — which means editing the shipped rules sweep, blind, inside a step whose acceptance is the operator looking at a different surface. |
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700ef20eb0 |
feat(notes): a note's check is writable through both doors, and empty means empty (#3164, milestone 317 step 2)
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The rules path's three lessons (#3096), inherited: EMPTY MEANS NULL. The sweep's whole signal is `verify_with IS NULL` = "this is a decision, there is nothing to go and check". A "" that is not NULL makes a norm look like a constraint nobody has verified — and never-checked sorts FIRST, so it would sit at the top of the sweep forever. CLEARING IS EXPLICIT. At the MCP door "" means "leave this alone", so an agent updating a body does not wipe a check it was never asked about — which leaves no value meaning "remove it". `clear` names the field, and naming it cannot happen by accident. The REST door, where a cleared form input arrives as "", reaches the same place through normalisation: two idioms, one outcome. THE STAMP CERTIFIES A CHECK, NOT A RECORD. Rewrite or clear `verify_with` and `verified_at` is dropped, so the note re-enters the sweep. A note wrongly listed as due costs one look; a note wrongly vouched for costs exactly what the sweep exists to catch. `verified_at` is also no longer settable through an ordinary edit — a stamp says somebody performed THIS check, and minting one from a write that ran no check is the one thing that would make the sweep lie. And one this path adds: not every record may carry a check. A task's decay is its status — a done issue records what happened rather than asserting something that can go false — and a snippet already has verify_snippet, which compares its recorded location and code against the repo and expires its own verdict. Both are refused with a message naming the alternative, never dropped silently (minted_kind's reasoning, #3129), and the gate lives at the service so the two doors cannot come to disagree. Written as an INVARIANT over the resulting record, not a filter on which fields were passed. That is what catches the sideways route — a checked note being turned into a task, a write that names no check at all and would sail past any per-field gate. The MCP docstrings carry the norm-vs-constraint test, because at that door the docstring IS the contract and a field described only as "how to verify this" gets filled in on every note. Step 5 does this properly across the instruction surfaces; this is the minimum that stops the field being misused on arrival. tests/helpers gains `drive_update_note` — the patch stack for driving update_note, written twice before this and now once. The note-shaped fakes gain the trio explicitly, for fake_note's own stated reason: an unset attribute is a truthy MagicMock, and a truthy verify_with reads as a check that is there. |
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f80401d58e |
fix(knowledge): the browse vocabulary catches up three kinds, and a snippet's mirror survives the generic door (#3128 recs 2-6)
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Spike #3128 found the storage sound and the retrieval vocabulary frozen before `issue` shipped (0065). Five things, in the order they had to land. **The mirror (rec 5, the data-integrity one).** `notes.data` is DERIVED from a snippet's body, but only `update_snippet` knew that. `update_note` is a hasattr loop with no snippet awareness, and both doors reach it — so PATCH /api/notes/<snippet_id> {body} rewrote the body and left the mirror behind. `snippet_fields` PREFERS the mirror, so the row went on reporting its old repo/path/symbol to the location reverse lookup and to prior-art recall while displaying its new body: surfaced with full authority, and wrong. `snippets.recompose_data` rebuilds it from the body, carrying `verification` and `provenance` (neither is in the body to parse). An explicit `data` still wins, so every snippet-service write is untouched. **One facet table (rec 3), before adding any facet.** The type predicate was written three times — SQL, Python over semantic candidates, and a ternary computing the `is_task` pre-filter — and agreed only by luck. Adding `issue` to the SQL arm alone would have set the pre-filter to is_task=False, handed the Python arm a candidate set with no tasks in it, and returned an empty semantic half for the Issues facet forever with nothing red. `_FACETS` now generates all three. The Python arm also regains the `status IS NULL` half its SQL twin always had. **Issue and spike become facets (rec 2).** 435 issues — 17% of every task — were filterable nowhere on the human surface, while retired `plan` (90 rows) had a chip of its own. `_VALID_TYPES` was a hand-kept copy and is now derived. `plan` stays a valid facet for its legacy rows; it loses its chip. **Snippets stop being half-present in the feed (rec 4).** All 90 were in the All list, in no count, wearing an empty badge, and opening in the note editor. Counts now group by task_kind — every kind for the same two round-trips, which is why `issue` had no number — and total includes snippets, so the All chip matches the list it labels. Snippet cards route to /snippets/:id. **The prose that excused it (rec 6).** `snippet_fields` and the `data` column both still said pre-0070 rows were "never backfilled". True when 0070 landed, false since `backfill_snippet_data` shipped, and it read as licence for a stale mirror. Tests: the pre-filter can never exclude a row its own facet accepts (the regression, parameterised over every facet); both dialects select exactly their own rows; an unknown facet matches nothing; the mirror follows a body or title write, carries the verdict, and yields to an explicit `data`. `compiled_sql` moves to tests/helpers rather than becoming a third copy. Write-up: note #3161. |
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69d93898d9 |
fix(tasks): a task's kind is correctable — the Kind select stops lying (#3129)
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`kind` was accepted at CREATE on both doors and dropped at UPDATE on both: update_task had no such parameter, and the REST PATCH allow-list never read the field. So a task filed under the wrong kind could never be corrected. The frontend made it worse by looking like it worked. TaskEditorView binds a Kind select, marks the form dirty, and HAS ALWAYS SENT `kind` in the update payload — the store even types it. The route ignored it, returned 200, the view optimistically updated, the toast said "Task saved", and the old value came back on reload. Silent success, same class as #2709. Found by trying to re-file #3126 as a spike after deploying 0091. It could not be done; the task had to be recreated as #3128 and the original cancelled. One seam, not two doors. `minted_kind()` lives in services/notes.py because the REST route cannot import an MCP tool module and a second spelling of the list is how the doors would come to disagree. Both create and update route through it, so a bogus kind is now a readable error rather than a CheckViolationError surfacing as a 500. TaskKind joins TaskStatus and TaskPriority as a real enum, and update_note validates task_kind exactly as it already validated those two — the field had been reaching setattr through the hasattr guard with no validation at all, unnoticed only because no door ever offered it. The `-> plan` question #3129 raised is answered in code rather than left implicit: MINTABLE_KINDS is work/issue/spike, deliberately NARROWER than the column's CHECK. `plan` stays a valid stored value because historical plan-tasks carry it and must stay writable; it is simply not a value any door hands out, and the refusal names start_planning because a caller reaching for it wants a plan. The whitelist and the policy answer different questions and are not the same list. Every new test reads the value BACK. One that only asserted the call succeeded would have passed against the broken code — the route returned 200 while dropping the field, which is how this survived long enough to be found by hand. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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410d616c22 |
feat(rules): the staleness sweep — which standing rules assert a fact nobody has confirmed (#3097, milestone 312 step 3)
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The query the last two steps were storage for. `rules_due_for_verification` returns every rule carrying a `verify_with`, ordered by `verified_at` ASC NULLS FIRST, each row carrying the check IN FULL — the opposite call from rule_brief, because the reader is about to go and run it. NULLS FIRST is the ordering this turns on. Postgres sorts NULLs last on an ASC ordering, which would put the rules nobody has ever confirmed BEHIND every rule someone once looked at. Exactly backwards: a claim with no evidence at all outranks an old one. Rules with no check never appear, and that is the property that keeps the list worth reading. Most rules are decisions — no truth value, nothing to go and check. If they appeared here the sweep would be the rulebook. `mark_rule_verified(rule_id, still_true)` closes the loop, asymmetrically: passing writes a stamp, FAILING WRITES NOTHING. There is no "verified false" state because a rule whose check failed is not in a special condition, it is wrong — and recording the failure as a flag would let it sit there being false with the sweep satisfied that someone had looked. So it stays at the top until someone corrects or retires it, and the response says so. An unrecognised `tier` filter raises rather than falling back. _valid_tier's silent always_on default is right for a WRITE — a typo should leave a rule binding — and wrong for a FILTER, where the same fallback quietly answers a different question and returns a short list that reads as good news. Deliberately NOT filterable by project: a project reaches rules through project scope, subscriptions, always-on rulebooks and exclusions, and a filter missing one of those paths would UNDER-report — the exact failure this surface exists to prevent. Said so in the docstring rather than shipping a half-correct filter. Ownership-scoped like every other rule read (owned rulebook, or owned project), in ONE statement with an OR across the XOR rather than two queries merged in Python, so the ordering is the database's and cannot disagree with itself. Note that rules have no sharing ACL in this schema — no rule_shares, no rulebook_shares — so there is no wider set for access.py to consult here. Also fixes a test title that had been lying for ten tools: "all sixteen tools" asserted 26. The number now lives only in the assertion. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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c61925be76 |
feat(rules): the write path carries a rule's check, and empty finally means empty (#3096, milestone 312 step 2)
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verify_with / expires_when now reach a rule through both doors and come back on every read. The open question this step existed to settle was how to UNSET a nullable field, and the answer is one convention per door: - MCP: "" still means "leave unchanged" — an agent filling three fields must not wipe the other five — so clearing is explicit, clear_fields=["..."]. Naming the field is the one form that cannot happen by accident. - REST: a cleared form input arrives as "", and the service normalises "" to NULL for every nullable rule column, so an emptied input does what it looks like it does. Two idioms, one outcome, and the normalisation is what makes the step-3 sweep correct: `verify_with IS NOT NULL` would otherwise be true for every rule ever touched through the UI, and the sweep would list the whole rulebook and mean nothing. to_dict renders "" and NULL identically, so this is only visible against a real column — hence the integration module rather than a mock. Editing verify_with drops verified_at. A stamp certifies A CHECK, not a rule; reword the check and the old stamp vouches for something that no longer exists. Safe direction, same asymmetry as _valid_tier: a rule wrongly listed as due costs one look, a rule wrongly vouched for costs the thing the sweep exists to catch. Editing anything else leaves the stamp alone, or a rulebook tidy-up would reset every constraint and the ordering would carry nothing. Reads: rule_brief attaches `last_verified` ONLY to a rule that carries a check — its presence is the signal, and it says both "this asserts a fact that can go false" and "here is how long ago anyone confirmed it". "never" rather than null, per #2483. The check text itself stays in get_rule; a listing needs to know which rules can rot, not how to test them. Search hits carry the full trio, since a hit is exactly the moment someone is about to act on a rule. Also folds in the #3078 finding, which had been sitting as a note: create_rule now teaches that when_to_apply is the retrieval surface and must carry the SYMPTOM — the words you would type while stuck — not just the situation. fake_rule gains the three fields as None for the reason the helper already documents one line up: unnamed, verify_with is a truthy MagicMock and every stand-in rule would claim a check it does not have. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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02c1e37620 |
feat(rules): the write path can notice a standing rule it was never given (#3031, milestone 307 step 5, hook arm)
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A conditional rule is not resident, so a session can be about to violate one it was never handed. This arm notices: when what is being written resembles a rule's trigger, the hint names it and says to read it before deciding it does not apply. A SUGGESTION, and the plan was wrong about why it could be more. It claimed the hook "already resolves a path to an area" — it does not, and nothing in Scribe maps a path to a System or a canonical area (build_write_path_hint resolves paths against snippet LOCATIONS, a different index; the learned-alias idea belongs to another project). Correction logged on the task. Rather than invent path→area inference to make a stale claim true, the arm does what D7 already decided and what this surface already IS: tags bind at enter_project, meaning suggests here. The header of the hook says NEVER BLOCKS; dressing a hint up as binding would have been the actual mistake. CONDITIONAL RULES ONLY. An always-on rule is already in the session, so re-offering it is noise — and noise on a hint that fires on every write is how a hint gets ignored. Telemetry goes to retrieval_logs, NOT note_usage_events, and that is a correctness call rather than a preference: note_usage ids are REMAPPED on a backup restore, so a rule id written there would come back attached to whatever note took that number — silently corrupting the evidence the next true-up is supposed to read. retrieval_logs is never restored and `source` already separates surfaces. record_retrieval's `results` type widened to match what it actually needs (an `.id`), instead of passing a Rule to something annotated Note. The rule dedup gets its OWN state file and query parameter, like the three channels before it — #2708's lesson was that one shared channel lets a hint of one class silence a different class that had never been shown. Plugin version bumped: a hook change clients cannot see did not ship (#1040). The stub is autouse in conftest rather than added to forty-odd call sites: the arm loads an embedding model, and every existing test that stubs the NOTES search would otherwise pull a real model in through the one arm it had no way to know about. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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ffb7a0fe38 |
feat(rules): both doors carry the trigger, the tier, the areas and the edges (#3029, milestone 307 step 3, surfaces)
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MCP and REST both gain when_to_apply / tier / system_ids / arose_from_id on create and update, plus relate_rules / unrelate_rules for the typed edges, and get_rule now returns a rule's areas and relations alongside it. rule_detail() is a SERVICE function, not one per door. It started as a copy in each — identical, and the prior-art hook flagged it immediately, which is the same lesson rules_payload (#2858) already recorded: a second copy drifts. Both doors call the one seam, so create, update and get cannot disagree about what a rule looks like coming back. The authoring guidance lands in create_rule's docstring rather than in a rule, per rule 119 as the operator described it: this is behaviour every instance should inherit, not one operator's preference. It states the test — ONE RULE = ONE THING YOU COULD VIOLATE. Rules that FAIL TOGETHER get linked with relate_rules(kind="co_surfaces"), never merged into one row. — and names why merging loses: a merged rule cannot be cited, surfaced or suppressed a clause at a time, and it grows without limit because adding to it is always cheaper than adding a rule. create_project_rule says the same about "overrides", which is what FabledCurator's 85/86 should have been instead of near-copies that drift from their parent. The tier arg carries the test itself: can you name the trigger WITHOUT naming a system, an artifact type or a moment? If the honest answer is "whenever you are working", it is always_on. Tests: the applicable-rules cases fabricated raw tuples matching the old column lists, so they move to the entity shape via fake_rule; new cases pin rule_brief (a DATE not a stamp, the depth left to get_rule, no null keys) and that an unknown tier falls back to BINDING. fake_rule gains when_to_apply / tier / arose_from_id for the note-2109 reason the helper exists: unnamed, they would be truthy MagicMocks. The tool tests stub the new rule_detail seam — they are about argument forwarding and have no database. The module header's "Sixteen tools" had been wrong for two milestones; the registration count test is what actually catches that, so the header now says so instead of carrying a number. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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c58529718b |
feat(systems): the catalog reaches the moment a name is minted, and gets a face (#3028, milestone 307 step 2)
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Step 1 found the reason the standard names never held, and it is sharper than "prose doesn't fire": the list WAS real and it WAS seeded — but only on the inception path, for a project with zero Systems. Ad-hoc create_system never consulted it, which is how Forge minted "CI and Release" and Portal minted "CI & release" after the constant already existed. This wires the vocabulary to the moment that mints a name. - services/systems.assess_system_name: the local duplicate gate AND the catalog lookup, in ONE service function both doors call. The gate lived only in the MCP tool, which is exactly how the web UI shipped without a check the agent surface enforced (#2482). REST now answers 409 with the System that already covers the area. - An `exact` catalog hit is APPLIED (mechanical — the names differ only in spelling). An `overlap` is only OFFERED, on both doors: applying a judgment call silently is how a cross-project rule surfaces in the wrong project. - canonical_systems.best_overlap is the ONE scorer behind the create-time offer and the review sweep, so the two surfaces can never name different areas for one System. It also takes the catalog the caller already holds, so the review is not an N+1. UI (folded in from step 1 — rule 27, that step shipped with no human surface): - SystemsSection: a Shared area picker on create and edit, the area on each card, and a collapsed review of proposals that appears only when there is something to decide. `exact` and `overlap` never share a style — one is mechanical, the other is the reviewer's judgment, and presenting them alike is how a wrong mapping gets waved through. - Settings → Admin → Areas: the catalog itself, showing each entry's slug, because the slug is what decides whether two names are the same area and a rename moves it. - A picker rather than a live matcher: reproducing the slug rule in TypeScript would give this feature two matchers to keep in step — the exact drift the catalog exists to end. The server stays authoritative. tests/helpers.fake_system gains canonical_id=None: an unnamed attribute is an auto-MagicMock and therefore truthy, which is the trap that helper exists for (note 2109) and a nullable FK walks straight into it. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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a97547fbc6 |
feat(systems): the area vocabulary becomes a global table so a rule can point at one (#3027, milestone 307 step 1)
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The eight standard area names already existed — as STANDARD_SYSTEMS, a tuple in
services/systems.py that milestone 297 seeds at inception. A constant cannot be
a foreign key, so nothing outside a project could reference an area: systems.
project_id is NOT NULL, and a rule that spans projects would have to chain
itself to one project's row. And because the list only ever applied on the
inception-seed path, three spellings of one area reached this instance anyway
(CI & runners / CI and Release / CI & release).
- canonical_systems: global, no user_id — a shared project inherits the
vocabulary instead of re-earning it. Migration 0087 seeds the same eight.
- systems.canonical_id: nullable, SET NULL. Association only — no System is
renamed and record_systems is untouched, so no record's tags move.
- canonical_slug folds &/and, case and punctuation, so spelling variants map
mechanically and a real difference ("CI & runners") becomes a proposal a
human confirms. propose_mappings reports; set_system_canonical is the only
writer.
- seed_standard_systems now reads the catalog and maps as it mints, so a
project born standard never needs a reconciliation pass.
- Catalog writes are admin-only; reads are open — a global list anyone can
extend stops being shared.
- backup: carried by SLUG, not id (ids are per-install). Restore reuses the
target's own rows and only creates entries an admin added on the source; an
unknown slug restores unmapped rather than failing.
Rule 22: STANDARD_SYSTEMS is removed, not deprecated. Rule 115: nothing seeded
names an app, repo or house convention. Design in note 3026.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
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2324c15418 |
feat(write-path): the derive arm — the hint names a duplicate family (no canon) or a canon elsewhere for the shapes being written; exclude_derive channel (#2900, milestone 299 step 2)
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shape_ledger.write_time_derive asks the ledger what it knows about each named (kind, symbol): a derive-grouped family (identical body / same name in N other files) -> "derive it now, do not add a copy"; a canonical row at another path -> "canon #N at <path>, reuse". Judged rows at the path and the canon own file stay silent. Rendered by _derive_line beside the divergence line; keyed (group id / canon:<id>) on a third per-session dedup channel in the hook (.derive.ids -> exclude_derive=). Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> |
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00c7badc3f |
feat(inception): UI — New-project modal step 2, InceptionCard on the project page, Rules tab shows excluded always-on rulebooks; REST exclusion routes (#2883, milestone 297 step 5)
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- components/InceptionCard.vue: the one form, two homes — mode="create" in the New-project modal's second step (emits the choices; the create carries `inception`), mode="decide" on ProjectView for the owner of an undecided project (loads that project's defaults, records the decision). Always-on rulebooks listed checked (uncheck = exclude), others unchecked (check = subscribe), design system select, seed-Systems toggle (disabled once the project has Systems). Tokens only; modal canon (#2855); .btn-* canon. - ProjectView: the card while undecided, one "Inheritance decided <date> via … · …" line after; onDecided refreshes the project. - ProjectRulesTab: "Excluded always-on rulebooks" section with include-back. - api/inception.ts (types, fetchInceptionDefaults, decideInception); api/rulebooks.ts: ApplicableRules.excluded_always_on, exclude/include wrappers; REST POST/DELETE /api/projects/<id>/exclusions/rulebooks/<rb>. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> |
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c7a58bb610 |
feat(inception): the doors — create_project/decide_project_inception take the decision, enter_project asks until decided, REST inception endpoints, _INSTRUCTIONS (#2882, milestone 297 step 4)
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- MCP create_project(..., exclude_always_on_rulebooks, subscribe_rulebooks, design_system_id (0 unstated / -1 none / n), seed_systems): any inception arg → inception.decide(via="mcp") after the create; none → undecided with an inception_hint. New decide_project_inception(project_id, …) records or re-records; nothing given = an inherit-all decision, stated. - enter_project carries `inception` ONLY for the caller's own, undecided project: inception_ask() = the project's current defaults + what to ask the operator once + the exact call (the #2683 ask shape). Absent otherwise. - REST: POST /api/projects accepts `inception` (validated before the create); POST /api/projects/<id>/inception decides/re-decides; GET …/inception/defaults is the card's payload; GET project already carries inception via to_dict. - _INSTRUCTIONS: ORIENT names the ask; START a project names the questions — never create a project bare by default (product behaviour, P#119). Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> |
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64c641ce80 |
refactor(routes): one supersession seam for REST and MCP; PUT/PATCH notes share a handler; shared mask/not-found/caller helpers (#2829, milestone 296 area 5)
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Reading the 28 route modules against each other and against the MCP tools: - routes/notes.py carried a PUT and a PATCH handler that were the same function minus the supersedes contract on one of them — one handler now serves both verbs, so both carry it. - The two _attach_supersession copies (REST + MCP) become supersession_svc.attach_relations(uid, note_id, data, hint=) — the seam the two surfaces must agree through; only the agent surface adds the one-sentence reading hint. - Three local _uid() wrappers over g.user.id → scribe.auth.get_current_user_id like every other module; design_systems' private _not_found → routes.utils. not_found; the four "********" literals → settings_svc.SECRET_MASK with the read/write contract written once. - routes/plugin.py: the project_id/repo resolution block and the comma-separated id parse were copied into three endpoints — _project_scope() and _int_list() now. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> |
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475f0857c9 |
feat(ledger): write-path stamping — a pulled canon the session then instantiates lands as a hook instance row (#2791, milestone 294 step 5)
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The prior-art hook now names the shapes being written (shapes=kind:name — every definition in the payload, or the one enclosing an Edit found by walking the file upward) and the server stamps them as instance rows when the session PULLED a snippet inside PULL_WINDOW that the payload references by symbol or that the semantic arm scored for this very payload. classified_by=hook, evidence in reason; never overrides a judgment or a canonical row, overridable by classify_shapes. Offered-but-unopened stamps nothing. Pulled-and-already-seen snippets stay in the semantic query as evidence without re-entering the deduped menu. A brand-new shape gets a provisional row the next sync confirms or vanishes. Read-scoped keys get the hint, never the stamp. Plugin 0.1.34. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> |
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9b1597a3c9 |
feat(ledger): coverage refresh feeds the shape ledger; the readout inverts to accounting (#2788, milestone 294 step 2)
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compute_coverage is now the ledger's sync point: every walk upserts the extracted shapes (new → unclassified, the todo state; surviving → last-seen bump; vanished → stamped, kept as history), re-files judgments whose snippet target went away, and mechanically stamps snippet reference locations as canonical — the one always-safe rule, self-healing only for its own stamps (an agent's judgment is never unwound by machinery). The covering predicate moves to shape_ledger.location_covers as the single home (match_shapes retired with its consumer); coverage's payload and line invert from 'N/M shapes recorded' to shape ACCOUNTING per note 2786: accounted/total with a canonical·instance·variant·exempt breakdown, and unclassified — THE todo — with its largest directories. Cache key bumps to v2 so pre-ledger blobs honestly read 'not measured yet' instead of rendering in a shape no longer spoken. Readout is deliberately project-wide (all repos' live rows), while the walk serves whichever repos the owner's keyring reaches this refresh. Integration tests pin the new contract: rows for every extracted shape, mechanical canonical stamps carrying snippet ids, idempotent recompute, agent judgments surviving recompute AND vanish/return, vanished rows leaving the readout but keeping their history. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> |
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1faf8f3ece |
feat(forge): per-user forge connections — keyring, host-keyed resolution, project pin (#2778)
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A forge token is a user's credential, not an instance's. The single admin-settings config is replaced by per-user keyring rows (one per forge host), and every server-side forge read runs on the PROJECT OWNER's keyring: - forge_connections table + projects.forge_connection_id pin (migration 0078, which also carries the existing admin config into the first admin's row and deletes the old setting keys — no legacy dual-read) - get_forge() replaced by get_forges(owner_id, project_id) -> ForgeSelector; resolve(repo) picks the connection whose host serves the repo. A pinned project uses ONLY its pinned connection; a stale pin (ownership moved) is ignored, never honored across users - env FORGE_* config survives as an implicit entry for admin owners only; a stored row for the same host beats it - consumers threaded: pull-time freshness (owner of the note), coverage (owner of the project), coverage routes' configured flag - routes: /api/settings/forge-connections CRUD + per-connection test (own-rows only, tokens never returned); /api/admin/forge shrinks to /api/admin/forge-webhook (secret only); PUT /api/projects/<id>/forge pins, owner-or-admin asking, owner's connections only - UI: Git Forges card moves to Settings -> Integrations as a connection list; webhook secret stays in the admin Config tab; owner-only forge select on the project coverage card - backups exclude forge_connections (credentials, api_keys precedent) and the pin, so restores fall back to keyring resolution Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> |
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3162332a13 |
feat(prior-art): edit-time record-sync nudge — the sync class (#2708)
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A snippet recorded AT the exact file being edited is not a reuse suggestion — it IS the record of the file being changed. The write-path hint now renders those as their own SYNC class: 'snippet #N records this file — updating the record is part of the edit (update_snippet / verify_snippet)'. Nearby and semantic hits stay the reuse menu. The two classes dedup on separate per-session channels (exclude_ids vs exclude_sync_ids, .ids vs .sync.ids in the hook), so a reuse hint shown early in a session can no longer silence the record-sync nudge when the recorded file itself is edited later. Sync surfacing is measured under its own note_usage source (write_path_sync) — its pull-through rate is the scoreboard for whether edit-time sync actually happens, per decision #2707 (no forge connection; records stay current in the session that has the context). Plugin 0.1.31. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> |
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765635bbf2 |
feat(forge): GitHub adapter — second implementation keeps the seam a contract (#2693, milestone 288 step 8)
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ForgeAdapter is now a named base class carrying the shared plumbing (host join, error taxonomy, contents decoding, archive, default_branch, latest_commit); GiteaForge keeps its exact behavior and GitHubForge joins with the real differences: api.github.com / GHE /api/v3 host mapping, Bearer auth, a commits call for the provenance stamp (GitHub's contents payload only carries the blob sha), and the codeload tarball redirect. The contract grew latest_commit, and with it the cached-SHA short-circuit in pull-time freshness: a stored provenance commit that still heads the recorded path confirms 'current' without a content transfer — the economy that fits pulls inside GitHub's rate limits; every surprise falls back to the full fetch. Webhook deliveries now also accept X-Hub-Signature-256 (sha256=<hex>); the payload shape was already common. Settings card copy covers both forges' token scopes; the kind selector already flowed from the server. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> |
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cbccb6bd5d |
feat(coverage): pattern-library coverage measurement (#2692, milestone 288 step 7)
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Server-side shape enumeration per bound repo — one archive download via the forge adapter, definitions extracted with a Python mirror of the write-path hook's awk rules (shared test vectors pin the two together) — compared against recorded snippet locations by path+symbol. Summary is cached in the settings KV with a freshness stamp; recomputed on webhook push (spawned off the delivery path) or explicit refresh, never in a request path. Surfaces: GET/POST /api/projects/<id>/coverage[/refresh], a project-page card (estimate-labeled, largest-gaps chips), and a one-line evidence-carrying entry in enter_project read from cache only. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> |
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89b07f7857 |
feat(forge): push webhook flags drift at the moment the repo moves (#2691)
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Second adapter consumer. POST /api/webhooks/forge validates Gitea's
X-Gitea-Signature (HMAC-SHA256, constant-time; no secret configured =
the endpoint 404s out of existence), extracts changed/removed paths,
and flags matched snippets by writing verification.invalidated_by
{commit_sha, at, path, removed} — the existing attention vocabulary
extended, not a new flag: needs_attention includes it, both filter
dialects (Python + jsonpath SQL) include it in 'attention' and exclude
it from 'ok', and recording ANY fresh verdict clears it by construction
because compose_verification builds a new dict. Unverified snippets are
skipped (already in their own bucket); replayed deliveries at the same
head commit are no-ops; processing failures return 200 with a WARNING +
AppLog canary so the forge never marks deliveries failed and operators
never disable the hook over a transient (#2663's lesson).
Matching goes through repo BINDINGS: recorded location repos are
free-form names ('Scribe') that cannot address a forge, so a snippet
reaches its forge repo through its project's binding — which also fixes
step 5's pull-time resolution for every real record via the same
fallback. O(bindings + snippets-in-project + changed files).
Settings: webhook secret beside the forge config (masked, sentinel-
skipped, Docker-secret env channel, endpoint documented in the UI).
Tests: signature gate, payload parsing, path semantics, both filter
dialects extended in the drift-check guard file, and real-Postgres
end-to-end (flag lands, attention lists it, replay quiet, re-verify
clears, unbound repo untouched).
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
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