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The first cut opened "NOT YOURS TO CALL UNPROMPTED", and that is the wrong instrument. A caller reading a prohibition stops NOTICING rule-shaped things rather than noticing them and asking — which trades a small failure for a larger one. The wanted behaviour is more proposals, not fewer. So both docstrings now describe the practice: propose readily, state the four things, and close with a question the operator answers in one word — approve it as written / let's talk about it / no. Named options where the interface has them, three written-out options where it does not. "Approve it as written" is what makes element 1 load-bearing: they approved TEXT, so that text is stored verbatim. "Let's talk about it" is framed as the expected answer rather than a setback. "No" routes the observation to create_note, which records without binding. The argument for asking is also better than consent. The operator's yes is the one moment the rule is certainly in front of them: afterwards a conditional rule is not read aloud at session start, and a project rule is absent from an unfiltered list_rules(). The proposal IS the review. Guard gains the answers-offered-back element and drops the wording that forbade; its header records why the framing changed, so the prohibition does not get reintroduced as a tidy-up. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_011cPyzNnegXHr5iRMzzy5KJ
997 lines
47 KiB
Python
997 lines
47 KiB
Python
"""MCP tools for the Scribe Rulebook system.
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Rulebook / topic / rule CRUD, subscription management, and the rule-to-rule
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edges. Thin wrappers over services/rulebooks.py — ownership is enforced in the
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service, and the record shape comes from rule_brief / rule_detail there rather
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than being rebuilt here.
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(The header used to say "Sixteen tools" and had been wrong for two milestones;
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the count lives in the registration test, which fails when it drifts.)
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Destructive ops (delete_*) require confirmed=True; otherwise return a
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preview-style warning. Mirrors the pattern in delete_event and the design
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spec.
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"""
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from __future__ import annotations
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from scribe.mcp._context import current_user_id
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from scribe.services import dedup as dedup_svc
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from scribe.services import rulebooks as rulebooks_svc
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from scribe.services import trash as trash_svc
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from scribe.services.rule_usage import record_rule_pulled, record_rule_surfaced
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# ── Rulebook CRUD ───────────────────────────────────────────────────────
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async def list_rulebooks() -> dict:
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"""List all rulebooks owned by the current user.
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Returns id, title, description for each.
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"""
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uid = current_user_id()
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rows = await rulebooks_svc.list_rulebooks(uid)
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return {"rulebooks": [rb.to_dict() for rb in rows]}
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async def get_rulebook(rulebook_id: int) -> dict:
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"""Fetch a rulebook by id with its full topic list."""
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uid = current_user_id()
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rb = await rulebooks_svc.get_rulebook(rulebook_id, uid)
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if rb is None:
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raise ValueError(f"rulebook {rulebook_id} not found")
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topics = await rulebooks_svc.list_topics(rulebook_id, uid)
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data = rb.to_dict()
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data["topics"] = [t.to_dict() for t in topics]
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return data
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async def create_rulebook(title: str, description: str = "") -> dict:
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"""Create a new rulebook (a shared, reusable module of general rules).
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Two ways a rulebook reaches projects, set by its always_on flag (toggle via
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update_rulebook):
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- always_on = true -> binds EVERY one of your projects automatically.
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Use for universal cross-project norms that apply across every
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project, not just one.
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- always_on = false -> binds only projects that subscribe
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(subscribe_project_to_rulebook). Use for a THEMED body of rules a
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category of projects shares (e.g. a design system that visual apps
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opt into).
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Either way a rulebook is SHARED, so its rules must stay general — agnostic
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to any single project. Project-specific rules go in create_project_rule.
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Args:
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title: Rulebook name.
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description: Optional short description of what this rulebook covers.
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"""
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uid = current_user_id()
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rb = await rulebooks_svc.create_rulebook(
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user_id=uid, title=title, description=description,
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)
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return rb.to_dict()
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async def update_rulebook(
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rulebook_id: int, title: str = "", description: str = "",
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always_on: bool | None = None,
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) -> dict:
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"""Update an existing rulebook. Only non-empty fields are changed.
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Args:
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rulebook_id: Rulebook to update.
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title: New title. Empty string leaves unchanged.
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description: New description. Empty string leaves unchanged.
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always_on: When True, rules in this rulebook are loaded at session
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start by list_always_on_rules regardless of project context.
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Pass None to leave unchanged.
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"""
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uid = current_user_id()
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fields: dict = {}
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if title:
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fields["title"] = title
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if description:
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fields["description"] = description
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if always_on is not None:
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fields["always_on"] = always_on
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rb = await rulebooks_svc.update_rulebook(rulebook_id, uid, **fields)
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if rb is None:
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raise ValueError(f"rulebook {rulebook_id} not found")
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return rb.to_dict()
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async def delete_rulebook(rulebook_id: int, confirmed: bool = False) -> dict:
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"""Permanently delete a rulebook (cascades to all its topics and rules).
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Pass confirmed=True to actually delete. Without confirmation, returns a
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preview describing what will be cascaded.
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"""
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uid = current_user_id()
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rb = await rulebooks_svc.get_rulebook(rulebook_id, uid)
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if rb is None:
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raise ValueError(f"rulebook {rulebook_id} not found")
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if not confirmed:
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topics = await rulebooks_svc.list_topics(rulebook_id, uid)
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rule_count = 0
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for t in topics:
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rule_count += len(await rulebooks_svc.list_rules(uid, topic_id=t.id))
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return {
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"warning": (
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f"Rulebook {rulebook_id} ('{rb.title}') contains "
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f"{len(topics)} topics and {rule_count} rules; all will be "
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f"deleted. Pass confirmed=True to proceed."
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),
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"confirmed_required": True,
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}
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batch = await trash_svc.delete(uid, "rulebook", rulebook_id)
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return {"deleted": rulebook_id, "title": rb.title, "deleted_batch_id": batch,
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"message": f'Rulebook {rulebook_id} ("{rb.title}") moved to trash. '
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f"Restore with restore('{batch}')."}
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# ── Topic CRUD ─────────────────────────────────────────────────────────
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async def list_topics(rulebook_id: int) -> dict:
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"""List topics inside a rulebook."""
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uid = current_user_id()
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rows = await rulebooks_svc.list_topics(rulebook_id, uid)
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return {"topics": [t.to_dict() for t in rows]}
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async def create_topic(
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rulebook_id: int, title: str,
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description: str = "", order_index: int = 0,
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) -> dict:
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"""Create a topic within a rulebook.
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Args:
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rulebook_id: Rulebook to add the topic to.
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title: Topic name (e.g. "git-workflow").
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description: Optional description.
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order_index: Display order (0-based; default 0).
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"""
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uid = current_user_id()
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topic = await rulebooks_svc.create_topic(
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rulebook_id=rulebook_id, user_id=uid,
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title=title, description=description, order_index=order_index,
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)
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return topic.to_dict()
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async def update_topic(
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topic_id: int, title: str = "",
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description: str = "", order_index: int = -1,
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) -> dict:
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"""Update a topic. Sentinels: title="" / description="" leave unchanged;
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order_index=-1 leaves unchanged.
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"""
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uid = current_user_id()
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fields: dict = {}
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if title:
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fields["title"] = title
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if description:
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fields["description"] = description
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if order_index >= 0:
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fields["order_index"] = order_index
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topic = await rulebooks_svc.update_topic(topic_id, uid, **fields)
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if topic is None:
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raise ValueError(f"topic {topic_id} not found")
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return topic.to_dict()
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async def delete_topic(topic_id: int, confirmed: bool = False) -> dict:
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"""Delete a topic and all its rules. Requires confirmed=True."""
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uid = current_user_id()
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topic = await rulebooks_svc.get_topic(topic_id, uid)
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if topic is None:
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raise ValueError(f"topic {topic_id} not found")
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if not confirmed:
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rules = await rulebooks_svc.list_rules(uid, topic_id=topic_id)
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return {
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"warning": (
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f"Topic {topic_id} ('{topic.title}') contains {len(rules)} "
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f"rules; all will be deleted. Pass confirmed=True to proceed."
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),
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"confirmed_required": True,
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}
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batch = await trash_svc.delete(uid, "topic", topic_id)
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return {"deleted": topic_id, "title": topic.title, "deleted_batch_id": batch,
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"message": f'Topic {topic_id} ("{topic.title}") moved to trash. '
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f"Restore with restore('{batch}')."}
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# ── Rule CRUD ──────────────────────────────────────────────────────────
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def _rule_summary(r) -> dict:
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"""The list-row shape for a rule: what an agent needs to APPLY it. The
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full record (why, how_to_apply, timestamps) is get_rule's job.
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One line, because the shape itself lives in the service — this was one of
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three hand-written copies that had already drifted apart (note 3026).
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"""
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return rulebooks_svc.rule_brief(r)
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async def list_rules(
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rulebook_id: int = 0, topic_id: int = 0, project_id: int = 0,
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) -> dict:
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"""List rules — filter by rulebook, topic, and/or project.
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Args:
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rulebook_id: 0 = no filter; positive = restrict to that rulebook.
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topic_id: 0 = no filter; positive = restrict to that topic.
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project_id: 0 = no filter; positive = restrict to rules applicable
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to that project (via its rulebook subscriptions).
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All filters are AND-combined; ownership-scoped.
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"""
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uid = current_user_id()
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rows = await rulebooks_svc.list_rules(
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user_id=uid,
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rulebook_id=rulebook_id or None,
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topic_id=topic_id or None,
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project_id=project_id or None,
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)
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return {"rules": [_rule_summary(r) for r in rows], "total": len(rows)}
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async def list_always_on_rules(project_id: int = 0) -> dict:
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"""Return all rules from rulebooks flagged always_on for the current user.
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Call this at session start. Treat the returned rules as binding for the
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session — they apply regardless of which project (if any) is in scope.
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Returns the ALWAYS-ON tier only (milestone 307). A `conditional` rule is
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still binding when it applies; it just is not resident — it reaches a
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session through enter_project (when the project works in an area the rule
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is tagged to) or through search(content_type="rule"). Nothing here is a
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behaviour change until rules are actually re-tiered: `tier` defaults to
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always_on, so an existing rulebook returns exactly what it always did.
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Pair with get_project(id).applicable_rules when working on a specific
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project to also load that project's subscription-derived rules.
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A rule carrying `last_verified` asserts a FACT about something outside the
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operator's control — a runner's shell, a tool's existence, a setting
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somewhere. It is still binding; the field says how long ago anyone
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confirmed it, and "never" means nobody has. Follow the rule, and if you
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are already standing where the check could be made, make it: get_rule
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gives you its `verify_with`. Most rules have no such field, which means
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they are decisions and there is nothing to check.
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Args:
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project_id: 0 (default) = the user-wide set. Inside a project, pass
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its id: an always-on rulebook the project EXCLUDED at inception
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(see enter_project's `excluded_always_on`) is left out — the
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project decided not to inherit it.
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"""
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uid = current_user_id()
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rules = await rulebooks_svc.list_always_on_rules(uid, project_id=project_id)
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# AMBIENT source: the resident set, handed over whole. No ranker chose
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# these, so they must not land in the pull-through numerator's denominator
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# — but they must land SOMEWHERE, or the largest rule surface in the
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# product stays the one surface its own scoreboard cannot see (#3473).
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record_rule_surfaced(
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user_id=uid,
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rule_ids=[r.id for r in rules],
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source="list_always_on_rules",
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)
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return {
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"rules": [_rule_summary(r) for r in rules],
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"total": len(rules),
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# A marker for the set you are now holding. It is not for you to read:
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# the write-path hook carries it back and is told if these rules have
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# moved since. Deliberately NOT on rules_payload's applicable_rules —
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# that is a DIFFERENT set (subscription-derived), and one key name
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# over two sets is how a comparison starts reporting phantom changes.
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"rules_etag": rulebooks_svc.rules_etag(rules),
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}
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async def get_rule(rule_id: int) -> dict:
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"""Fetch a rule by id — full statement + why + how_to_apply.
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Also carries what a listing leaves out: the global `systems` this rule is
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about, and its `relations`. Read the relations before acting on the rule —
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a rule with a `co_surfaces` edge is half of a shape, and an `overrides`
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edge means one of the pair is not in force here.
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"""
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uid = current_user_id()
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rule = await rulebooks_svc.get_rule(rule_id, uid)
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if rule is None:
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raise ValueError(f"rule {rule_id} not found")
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# THE pull that matters. The write-path rule arm's own message ends "Read
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# it with get_rule(N)", so this is the exact action the hint asks for and
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# the only evidence that one landed. Recorded after the access check, so a
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# refused read is not counted as a pull.
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record_rule_pulled(user_id=uid, rule_id=int(rule.id), source="mcp_get_rule")
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return await rulebooks_svc.rule_detail(uid, rule)
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async def create_rule(
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topic_id: int, title: str, statement: str, when_to_apply: str = "",
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why: str = "", how_to_apply: str = "", order_index: int = 0,
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tier: str = "always_on", system_ids: list[int] | None = None,
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arose_from_id: int = 0, verify_with: str = "", expires_when: str = "",
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force: bool = False,
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) -> dict:
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"""Create a new rule in a rulebook (a SHARED rule — keep it general).
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PROPOSE RULES READILY, AND WRITE ONE WHEN THE OPERATOR SAYS YES. Noticing
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that something has hardened into a standing instruction is valuable work,
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and a session that notices it and says nothing has thrown the observation
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away. So raise it whenever you see one. The single step that belongs
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between noticing and writing is the operator's yes: a rule binds every
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future session, and they are the person it binds.
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Their yes is also the only moment the rule is reliably IN FRONT of them.
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After the write it may not be again for months — a conditional rule is not
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read aloud at session start, and a project-scoped one does not appear in
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an unfiltered list_rules() at all. So the proposal is the review.
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When the operator asks for a rule in so many words, that IS the yes —
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write it and move on. The loop below is for the rule you thought of.
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A PROPOSAL CARRIES FOUR THINGS, and the fourth is the one that decides it:
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1. WHAT it would require — the statement, in the words it would carry,
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not a gloss of them. The operator is agreeing to text.
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2. INTENT — what it changes about how work gets done, and what goes
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wrong today without it. "Be careful about X" is not an intent; the
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behaviour that would differ tomorrow is.
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3. WHY NOW — the incident, observation or decision behind it. Pass that
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record as arose_from_id, and say it in the conversation too: the
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field is for the reader six months out, the sentence is for the
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person deciding.
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4. HOW IT WOULD BE ENFORCED — a test, a CI check, a hook, a schema
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constraint, a duplicate gate, a review step... or nothing, in which
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case say so plainly: "nothing — this is prose a session has to
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remember." Answer this one honestly and it will sometimes dissolve
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the rule, which is the point rather than a side effect. What a test
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can assert should BE that test; a rule is what remains when nothing
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mechanical can hold the thing. A rulebook grows by default and
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shrinks only on purpose, so a question that prevents a rule is worth
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more than any question that improves one's wording.
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THEN CLOSE WITH A QUESTION THEY CAN ANSWER IN ONE WORD. Offer three
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answers, and make the middle one the easy one:
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* "Approve it AS WRITTEN" — you create it with the statement exactly as
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shown. This is what makes element 1 load-bearing: they approved TEXT,
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so that text is what gets stored, verbatim.
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* "LET'S TALK ABOUT IT" — the wording, the scope, the tier, whether it
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wants to be a rule at all. Most good rules arrive this way, so treat
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this answer as the expected one rather than a setback.
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* "NO" — let it go. If the observation is still worth keeping, it is a
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note (create_note): recorded, findable, and binding on nobody.
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Where the interface offers structured choices, ask it that way — a
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question with named options is answered in a click, while the same
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question inside a paragraph is answered by scrolling past. Where it does
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not, write the three options out as three options. Either way ask once
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and let the answer stand; re-raising a declined proposal argues a rule
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into existence, which is the thing this whole loop exists to prevent.
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A rulebook rule is shared by every project that gets the rulebook: an
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always_on rulebook binds ALL your projects; a subscribed rulebook binds the
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projects that opt in. So a rulebook rule must read as a general standard —
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never pin it to one project's files, paths, or quirks. For a rule that
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applies to a single project only, use create_project_rule instead (no
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rulebook+topic ceremony). If it's a standard a CATEGORY of projects shares,
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put it in a themed subscribed rulebook, not the always-on one.
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Write it general WITHOUT hedging for the exceptions. A project that needs
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to strengthen, narrow or replace this rule writes its own and links it
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with relate_rules(kind="overrides"), and one that adds local specifics
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uses "elaborates" — so the general form does not have to anticipate every
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project it will ever reach. A rulebook rule padded with "unless…" clauses
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for two projects is two project rules that were never written.
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Before writing a rule at all, check whether another entity already models
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the thing. A rule is prose an agent must remember and apply; the others
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are structure a tool can resolve, render and check. Visual standards are a
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DESIGN SYSTEM (tokens inherit, resolve per mode, render to a stylesheet —
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none of that survives being prose). A repeatable procedure is a PROCESS.
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Reusable code is a SNIPPET. Reach for a rule only when the thing genuinely
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is a standing instruction about how to work and nothing else can hold it.
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ONE RULE = ONE THING YOU COULD VIOLATE. If a clause can be broken on its
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own, and fixing that breakage doesn't require the neighbouring clauses, it
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is a separate rule. Rules that FAIL TOGETHER get linked with relate_rules
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(kind="co_surfaces"), never merged into one row: a merged rule cannot be
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cited, surfaced or suppressed a clause at a time, and it grows without
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limit because adding to it is always cheaper than adding a rule.
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Args:
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topic_id: The topic to attach the rule to.
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title: A short imperative title (e.g. "dev is home").
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statement: The actionable instruction (required). 1-2 sentences.
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when_to_apply: WHEN this rule fires — the trigger, not the
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instruction. State the moment or the material: "before any git
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push", "when adding a value to a CHECK-gated column", "when a
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release is being cut". Write it even though the parameter is
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optional: it decides the tier below, it is how the rule is found
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when it matters, and a rule nobody can place is a rule nobody
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applies.
|
|
This field is also the rule's RETRIEVAL SURFACE — it and the
|
|
statement are what a search is matched against, so it should
|
|
carry the SYMPTOM, not just the situation: the words someone
|
|
would actually type while stuck. Measured (note 3078): a rule
|
|
whose trigger named only its situation did not surface at all
|
|
for the problem it solves; adding the symptom to the same field
|
|
brought it back as the top hit. Where a rule prevents a specific
|
|
failure, put that failure's vocabulary here — the error text,
|
|
the wrong behaviour, the dead end.
|
|
tier: "always_on" (default) or "conditional".
|
|
The test: 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. If you had to name something, it is
|
|
conditional — and conditional costs nothing when it is irrelevant,
|
|
which is what lets it be as long as it needs to be.
|
|
system_ids: Ids from list_canonical_systems — the global AREAS this
|
|
rule is about. This is what lets a rule reach a project that is
|
|
working in that area, so a CI rule surfaces on a CI change.
|
|
arose_from_id: The note or task that CAUSED this rule (an incident, a
|
|
decision). Prefer this over naming the record inside `why`, which
|
|
cannot be followed and does not survive a rewording.
|
|
why: Optional rationale — the reason the rule exists.
|
|
how_to_apply: Optional operationalization — when / where it kicks in.
|
|
verify_with: How to CHECK this rule is still true. Set it only when
|
|
the rule asserts a fact about something outside your control — a
|
|
runner's shell, a bot's config, whether a tool exists. Those go
|
|
false silently, with nobody present. Give a command, a path, a
|
|
URL or a query; something runnable beats prose, because prose
|
|
has to be re-interpreted by whoever finds it.
|
|
LEAVE IT EMPTY for a rule that is a DECISION — a preference, a
|
|
standard, a way of working. A decision has no truth value: it
|
|
changes when you change it, and you know that you did. An empty
|
|
verify_with is not a gap, it is the marker for "there is nothing
|
|
to go and check," and the whole signal is worthless the moment
|
|
it is filled in out of tidiness.
|
|
expires_when: The STATE under which this rule stops being true —
|
|
"when the runner can be given a bash shell", "when the dashboard
|
|
approval setting is turned off". Deliberately not a date: a
|
|
constraint expires when the ground under it moves, not on a
|
|
schedule. Pairs with verify_with; both empty is the normal case.
|
|
order_index: Display order within the topic (default 0).
|
|
force: Bypass the near-duplicate gate. By default, a title-identical rule
|
|
already in this topic BLOCKS creation and returns its id so you update
|
|
it instead. Set true only for a genuinely distinct rule.
|
|
"""
|
|
uid = current_user_id()
|
|
if not force:
|
|
dup = await dedup_svc.find_duplicate_rule(title, topic_id=topic_id)
|
|
if dup is not None:
|
|
return dedup_svc.duplicate_response(dup, "rule")
|
|
rule = await rulebooks_svc.create_rule(
|
|
topic_id=topic_id, user_id=uid,
|
|
title=title, statement=statement, when_to_apply=when_to_apply,
|
|
tier=tier, arose_from_id=arose_from_id,
|
|
why=why, how_to_apply=how_to_apply, order_index=order_index,
|
|
verify_with=verify_with, expires_when=expires_when,
|
|
)
|
|
return await rulebooks_svc.rule_detail(uid, rule, system_ids)
|
|
|
|
|
|
async def create_project_rule(
|
|
project_id: int, statement: str, title: str = "", when_to_apply: str = "",
|
|
why: str = "", how_to_apply: str = "", order_index: int = 0,
|
|
tier: str = "always_on", system_ids: list[int] | None = None,
|
|
arose_from_id: int = 0, verify_with: str = "", expires_when: str = "",
|
|
force: bool = False,
|
|
) -> dict:
|
|
"""Create a rule scoped to a single project (no rulebook needed).
|
|
|
|
Use this for anything SPECIFIC to one project — its files, paths, layout,
|
|
or quirks. This is the correct home for the project-specific detail that
|
|
must NOT go into a shared rulebook (where it would leak to every other
|
|
project that gets the rulebook). General standards belong in a rulebook
|
|
instead (create_rule). It bypasses the Rulebook -> Topic -> Rule ceremony;
|
|
the rule is returned in get_project's applicable_rules (under
|
|
project_rules) and in list_rules(project_id=...).
|
|
|
|
PROPOSE, THEN WRITE ON A YES — create_rule's opening carries the whole
|
|
loop: the four things a proposal states (what it would require, its
|
|
intent, why now, and how it would be enforced) and the one-word question
|
|
that closes it (approve as written / talk about it / no). All of it
|
|
applies here unchanged. Reach for that loop MORE readily on this surface,
|
|
not less: a project rule stays out of an unfiltered list_rules(), and a
|
|
conditional one stays out of session start too, so the operator's yes is
|
|
the one moment this rule is certain to have been seen by the person it
|
|
binds.
|
|
|
|
Check first whether a rule is the right shape at all — create_rule's
|
|
opening asks that question and it applies identically here. A visual
|
|
standard is a design system; a procedure is a process (create_process);
|
|
reusable code is a snippet (create_snippet). Each of those is structure a
|
|
tool can resolve, render and check, where a rule is only prose someone
|
|
has to remember and apply.
|
|
|
|
ONE RULE = ONE THING YOU COULD VIOLATE — see create_rule. A rule that
|
|
STRICTENS or REPLACES an inherited one is not a fresh rule: write it, then
|
|
relate_rules(kind="overrides") to the rule it supersedes, so the pair stays
|
|
connected instead of drifting into a contradiction nobody notices. A rule
|
|
that merely adds local detail to an inherited one uses "elaborates".
|
|
|
|
Args:
|
|
project_id: The project to attach the rule to.
|
|
statement: The actionable instruction (required). 1-2 sentences.
|
|
title: Short imperative title. If empty, derived from the first ~50
|
|
characters of statement.
|
|
when_to_apply: WHEN this rule fires — the trigger, not the
|
|
instruction, and the rule's retrieval surface: name the SYMPTOM,
|
|
the words someone would type while stuck. See create_rule for the
|
|
full argument. It informs the tier below rather than deciding it,
|
|
since a project rule's tier turns on area-scope, not on whether
|
|
the trigger can be named.
|
|
tier: "always_on" (default) or "conditional". The SAME two values as
|
|
create_rule, judged against a different cost — do not import that
|
|
tool's test wholesale. There, always_on means every session in
|
|
every project, so the bar is high: the trigger must be nameless
|
|
("whenever you are working"). Here the rule is already scoped to
|
|
one project by construction, so always_on costs only that
|
|
project's sessions and the bar is correspondingly lower. A
|
|
project rule that names something specific is still ordinarily
|
|
always_on — being specific is what project rules are FOR.
|
|
Reach for conditional when the rule is about one AREA of a large
|
|
project — a CI quirk, a migration gotcha, one subsystem's
|
|
convention — so it arrives with that area instead of resident in
|
|
every session. The failure to avoid is local: forty always-on
|
|
rules on one project reproduces, inside that project, exactly the
|
|
preload bloat that made every rule compete for the same budget.
|
|
system_ids: Ids from list_canonical_systems — the global AREAS this
|
|
rule is about. Worth setting even on a project rule: it is what
|
|
lets a conditional one surface when the project is working in
|
|
that area.
|
|
arose_from_id: The note or task that CAUSED this rule. Reach for it
|
|
harder here than on a rulebook rule — a project rule usually
|
|
comes from one traceable incident in this repo, where a family
|
|
rule is more often a standing preference with no single origin.
|
|
The link is what lets a later reader judge whether the incident
|
|
still describes the project.
|
|
why: Optional rationale — the reason the rule exists.
|
|
how_to_apply: Optional operationalization — when / where it kicks in.
|
|
verify_with: How to check this rule is still true — see create_rule.
|
|
Set it when the rule asserts a fact about someone else's software;
|
|
leave it empty when the rule is a decision. Project rules are the
|
|
likelier home for a real check: they name this project's files,
|
|
paths and quirks, which is exactly the kind of claim that rots.
|
|
expires_when: The state under which the rule stops being true — see
|
|
create_rule. A state, not a date.
|
|
order_index: Display order within the project's rule list (default 0).
|
|
force: Bypass the near-duplicate gate. By default, a title-identical rule
|
|
already on this project BLOCKS creation and returns its id so you
|
|
update it instead. Set true only for a genuinely distinct rule.
|
|
"""
|
|
uid = current_user_id()
|
|
derived_title = title.strip() or statement.strip().split(".")[0][:50]
|
|
if not force:
|
|
dup = await dedup_svc.find_duplicate_rule(derived_title, project_id=project_id)
|
|
if dup is not None:
|
|
return dedup_svc.duplicate_response(dup, "rule")
|
|
rule = await rulebooks_svc.create_project_rule(
|
|
project_id=project_id, user_id=uid,
|
|
title=derived_title, statement=statement, when_to_apply=when_to_apply,
|
|
tier=tier, arose_from_id=arose_from_id,
|
|
why=why, how_to_apply=how_to_apply, order_index=order_index,
|
|
verify_with=verify_with, expires_when=expires_when,
|
|
)
|
|
return await rulebooks_svc.rule_detail(uid, rule, system_ids)
|
|
|
|
|
|
async def update_rule(
|
|
rule_id: int, title: str = "", statement: str = "", when_to_apply: str = "",
|
|
why: str = "", how_to_apply: str = "", order_index: int = -1,
|
|
tier: str = "", system_ids: list[int] | None = None, arose_from_id: int = 0,
|
|
verify_with: str = "", expires_when: str = "",
|
|
clear_fields: list[str] | None = None,
|
|
) -> dict:
|
|
"""Update a rule. Empty strings / order_index=-1 leave fields unchanged.
|
|
|
|
Adding `when_to_apply` and a `tier` to an existing rule is the ordinary way
|
|
a rule stops being preloaded into every session and starts arriving when it
|
|
is relevant. `system_ids` REPLACES the rule's areas (pass [] to clear).
|
|
|
|
TO EMPTY A FIELD, NAME IT: clear_fields=["verify_with"]. Passing "" cannot
|
|
do it — "" means "leave this alone" here, which is what lets you update
|
|
two fields without wiping the other six. Clearable: why, how_to_apply,
|
|
when_to_apply, verify_with, expires_when, arose_from_id. Clearing and
|
|
setting the same field in one call clears it first, so the new value wins.
|
|
|
|
Editing `verify_with` DROPS the rule's verification stamp. The stamp
|
|
certifies a check, not a rule; once the check is reworded the old stamp
|
|
vouches for something that no longer exists, so the rule re-enters the
|
|
staleness sweep as never-verified.
|
|
|
|
Args:
|
|
verify_with: How to check the rule is still true — set it when the
|
|
rule asserts a fact about someone else's software, leave it empty
|
|
when the rule is a decision. See create_rule.
|
|
expires_when: The state under which the rule stops being true. A
|
|
state, not a date. See create_rule.
|
|
clear_fields: Names of fields to empty, as above.
|
|
"""
|
|
uid = current_user_id()
|
|
fields: dict = {}
|
|
if title:
|
|
fields["title"] = title
|
|
if statement:
|
|
fields["statement"] = statement
|
|
if when_to_apply:
|
|
fields["when_to_apply"] = when_to_apply
|
|
if tier:
|
|
fields["tier"] = tier
|
|
if arose_from_id:
|
|
fields["arose_from_id"] = arose_from_id
|
|
if why:
|
|
fields["why"] = why
|
|
if how_to_apply:
|
|
fields["how_to_apply"] = how_to_apply
|
|
if verify_with:
|
|
fields["verify_with"] = verify_with
|
|
if expires_when:
|
|
fields["expires_when"] = expires_when
|
|
if order_index >= 0:
|
|
fields["order_index"] = order_index
|
|
rule = await rulebooks_svc.update_rule(
|
|
rule_id, uid, clear=clear_fields or (), **fields,
|
|
)
|
|
if rule is None:
|
|
raise ValueError(f"rule {rule_id} not found")
|
|
return await rulebooks_svc.rule_detail(uid, rule, system_ids)
|
|
|
|
|
|
async def rule_history(rule_id: int, version_id: int = 0) -> dict:
|
|
"""What a rule USED TO SAY, newest change first.
|
|
|
|
Read this before you argue with a rule, and before you rewrite one. A
|
|
rule that has been reworded may have been reworded for a reason you are
|
|
about to rediscover the hard way — and the wording it replaced is often
|
|
the fastest way to see what the current one is guarding against. The
|
|
rescoping of rule 79 is the case this exists for: the superseded
|
|
statement had to be hand-copied into a task log to survive the edit.
|
|
|
|
EACH ENTRY HOLDS THE TEXT THE EDIT REPLACED, not the text it introduced.
|
|
So "what did this say before the most recent change?" is the first entry,
|
|
and the text the change PRODUCED is the rule as it stands now — read that
|
|
with get_rule. Pair the two and you have the diff.
|
|
|
|
An empty history is ordinary and means the rule has never been reworded,
|
|
not that its history was lost. Nothing is written before milestone 323,
|
|
so a rule edited before then starts empty too.
|
|
|
|
Args:
|
|
rule_id: The rule whose history to read.
|
|
version_id: 0 (default) lists the history — when each change
|
|
happened, by whom, and the title as it then stood. Pass an id
|
|
from that list to read that snapshot IN FULL. The list omits
|
|
statement and why on purpose: a rule's statement runs to
|
|
thousands of characters, and a history carrying every field would
|
|
cost more to read than the answer is worth.
|
|
|
|
There is deliberately no restore. Putting an old wording back is a
|
|
decision, so it goes through update_rule — which snapshots what it
|
|
replaces, leaving the undo visible in the history like any other edit. A
|
|
one-click revert would erase the only record of why the rewrite happened.
|
|
"""
|
|
uid = current_user_id()
|
|
if version_id:
|
|
version = await rulebooks_svc.get_rule_version(rule_id, version_id, uid)
|
|
if version is None:
|
|
raise ValueError(
|
|
f"version {version_id} not found on rule {rule_id}"
|
|
)
|
|
return version.to_dict(include_text=True)
|
|
|
|
versions = await rulebooks_svc.list_rule_versions(rule_id, uid)
|
|
if versions is None:
|
|
raise ValueError(f"rule {rule_id} not found")
|
|
# Fail-open, like the deletes: a missing title must not turn a readable
|
|
# history into an error.
|
|
try:
|
|
rule = await rulebooks_svc.get_rule(rule_id, uid)
|
|
except Exception:
|
|
rule = None
|
|
return {
|
|
"rule_id": rule_id,
|
|
"title": rule.title if rule else "",
|
|
"versions": [v.to_dict(include_text=False) for v in versions],
|
|
"total": len(versions),
|
|
# Said in-band because an empty list is the ordinary case and reads
|
|
# like a missing feature otherwise.
|
|
"note": (
|
|
"Each entry holds the text the edit REPLACED. The current wording "
|
|
"is on the rule itself — get_rule(%d)." % rule_id
|
|
if versions else
|
|
"This rule has never been reworded."
|
|
),
|
|
}
|
|
|
|
|
|
async def delete_rule(rule_id: int, confirmed: bool = False) -> dict:
|
|
"""Move a rule to the trash (recoverable). Requires confirmed=True."""
|
|
uid = current_user_id()
|
|
rule = await rulebooks_svc.get_rule(rule_id, uid)
|
|
if rule is None:
|
|
raise ValueError(f"rule {rule_id} not found")
|
|
if not confirmed:
|
|
return {
|
|
"warning": (
|
|
f"Rule {rule_id} ('{rule.title}') will be moved to the trash "
|
|
f"(recoverable via restore). Pass confirmed=True to proceed."
|
|
),
|
|
"confirmed_required": True,
|
|
}
|
|
batch = await trash_svc.delete(uid, "rule", rule_id)
|
|
return {"deleted": rule_id, "title": rule.title, "deleted_batch_id": batch,
|
|
"message": f'Rule {rule_id} ("{rule.title}") moved to trash. '
|
|
f"Restore with restore('{batch}')."}
|
|
|
|
|
|
# ── Subscriptions ──────────────────────────────────────────────────────
|
|
|
|
async def subscribe_project_to_rulebook(
|
|
project_id: int, rulebook_id: int,
|
|
) -> dict:
|
|
"""Subscribe a project to a rulebook — its rules then bind that project.
|
|
|
|
Subscription is the opt-in path for a non-always_on rulebook: a reusable,
|
|
themed module of GENERAL rules shared across the projects that subscribe.
|
|
Subscribe a project because it fits the rulebook's theme (e.g. a visual app
|
|
-> the design-system rulebook), not to host rules about this one project —
|
|
those belong in create_project_rule.
|
|
"""
|
|
uid = current_user_id()
|
|
await rulebooks_svc.subscribe_project(
|
|
project_id=project_id, rulebook_id=rulebook_id, user_id=uid,
|
|
)
|
|
return {"project_id": project_id, "rulebook_id": rulebook_id, "subscribed": True}
|
|
|
|
|
|
async def unsubscribe_project_from_rulebook(
|
|
project_id: int, rulebook_id: int,
|
|
) -> dict:
|
|
"""Remove a project's subscription to a rulebook."""
|
|
uid = current_user_id()
|
|
await rulebooks_svc.unsubscribe_project(
|
|
project_id=project_id, rulebook_id=rulebook_id, user_id=uid,
|
|
)
|
|
return {"project_id": project_id, "rulebook_id": rulebook_id, "subscribed": False}
|
|
|
|
|
|
# ── Suppressions — project-level mute of rulebook rules / topics ────────
|
|
|
|
async def exclude_always_on_rulebook(project_id: int, rulebook_id: int) -> dict:
|
|
"""Opt a project OUT of a whole always-on rulebook (milestone 297).
|
|
|
|
Always-on rulebooks bind every project implicitly; an inception decision
|
|
can say "not this one, not here". The exclusion is total for that project
|
|
— list_always_on_rules(project_id), enter_project/get_project rules and
|
|
the session-start context all leave it out and name it under
|
|
`excluded_always_on`. Owner-only; the rulebook must be always_on (a
|
|
subscribed rulebook is left with unsubscribe_project_from_rulebook).
|
|
Idempotent; include_always_on_rulebook reverses it. Normally reached via
|
|
decide_project_inception, not by hand.
|
|
"""
|
|
uid = current_user_id()
|
|
await rulebooks_svc.exclude_always_on_rulebook_for_project(
|
|
project_id=project_id, rulebook_id=rulebook_id, user_id=uid,
|
|
)
|
|
return {"project_id": project_id, "rulebook_id": rulebook_id, "excluded": True}
|
|
|
|
|
|
async def include_always_on_rulebook(project_id: int, rulebook_id: int) -> dict:
|
|
"""Reverse exclude_always_on_rulebook: the always-on rulebook binds this
|
|
project again. Idempotent."""
|
|
uid = current_user_id()
|
|
await rulebooks_svc.include_always_on_rulebook_for_project(
|
|
project_id=project_id, rulebook_id=rulebook_id, user_id=uid,
|
|
)
|
|
return {"project_id": project_id, "rulebook_id": rulebook_id, "excluded": False}
|
|
|
|
|
|
async def suppress_rule_for_project(
|
|
project_id: int, rule_id: int,
|
|
) -> dict:
|
|
"""Mute a single rulebook rule for one project.
|
|
|
|
The rule stays in its rulebook for other projects; only this project
|
|
skips it. Idempotent. Use unsuppress_rule_for_project to re-enable.
|
|
Project-scoped rules (create_project_rule) are NOT suppressible — delete
|
|
them with delete_rule instead.
|
|
"""
|
|
uid = current_user_id()
|
|
await rulebooks_svc.suppress_rule_for_project(
|
|
project_id=project_id, rule_id=rule_id, user_id=uid,
|
|
)
|
|
return {"project_id": project_id, "rule_id": rule_id, "suppressed": True}
|
|
|
|
|
|
async def unsuppress_rule_for_project(
|
|
project_id: int, rule_id: int,
|
|
) -> dict:
|
|
"""Re-enable a previously-suppressed rule for one project. Idempotent."""
|
|
uid = current_user_id()
|
|
await rulebooks_svc.unsuppress_rule_for_project(
|
|
project_id=project_id, rule_id=rule_id, user_id=uid,
|
|
)
|
|
return {"project_id": project_id, "rule_id": rule_id, "suppressed": False}
|
|
|
|
|
|
async def suppress_topic_for_project(
|
|
project_id: int, topic_id: int,
|
|
) -> dict:
|
|
"""Mute every rule under a topic for one project.
|
|
|
|
Equivalent to suppressing each rule in the topic individually, but
|
|
auto-includes new rules added to the topic later. Idempotent.
|
|
"""
|
|
uid = current_user_id()
|
|
await rulebooks_svc.suppress_topic_for_project(
|
|
project_id=project_id, topic_id=topic_id, user_id=uid,
|
|
)
|
|
return {"project_id": project_id, "topic_id": topic_id, "suppressed": True}
|
|
|
|
|
|
async def unsuppress_topic_for_project(
|
|
project_id: int, topic_id: int,
|
|
) -> dict:
|
|
"""Re-enable a previously-suppressed topic for one project. Idempotent."""
|
|
uid = current_user_id()
|
|
await rulebooks_svc.unsuppress_topic_for_project(
|
|
project_id=project_id, topic_id=topic_id, user_id=uid,
|
|
)
|
|
return {"project_id": project_id, "topic_id": topic_id, "suppressed": False}
|
|
|
|
|
|
|
|
|
|
async def relate_rules(
|
|
from_rule_id: int, to_rule_id: int, kind: str, note: str = "",
|
|
) -> dict:
|
|
"""Draw a typed edge between two rules. Both must be yours.
|
|
|
|
Reach for this INSTEAD of merging or duplicating:
|
|
|
|
- kind="co_surfaces" — these two fail together, so they must arrive
|
|
together. Use it when you are tempted to fold one rule into another
|
|
because "either could surface without the other": that instinct is
|
|
right and merging is the wrong fix, because a merged rule cannot be
|
|
cited, suppressed or surfaced a clause at a time. Symmetric — draw it
|
|
once, it reads from both ends.
|
|
- kind="overrides" — this rule supersedes that one for its scope. Use it
|
|
when a project rule is stricter than, or replaces, an inherited one,
|
|
instead of writing a near-copy that will drift from its parent.
|
|
- kind="elaborates" — this rule adds local specifics to that one, and
|
|
should arrive with it rather than instead of it.
|
|
|
|
Idempotent: re-drawing an existing edge returns it.
|
|
|
|
Args:
|
|
note: WHY the edge holds. Worth writing for the same reason a rule
|
|
carries `why` — a later reader deciding whether it still applies
|
|
needs the reasoning, not just the fact.
|
|
"""
|
|
uid = current_user_id()
|
|
relation = await rulebooks_svc.add_rule_relation(
|
|
uid, from_rule_id, to_rule_id, kind, note,
|
|
)
|
|
if relation is None:
|
|
raise ValueError(
|
|
f"rule {from_rule_id} or {to_rule_id} not found (both must be yours)"
|
|
)
|
|
return relation.to_dict()
|
|
|
|
|
|
async def unrelate_rules(relation_id: int) -> dict:
|
|
"""Remove one edge between rules (from relate_rules / get_rule.relations)."""
|
|
uid = current_user_id()
|
|
if not await rulebooks_svc.remove_rule_relation(uid, relation_id):
|
|
raise ValueError(f"relation {relation_id} not found")
|
|
return {"deleted": relation_id}
|
|
|
|
# ── The staleness sweep (milestone 312) ────────────────────────────────
|
|
|
|
async def rules_due_for_verification(
|
|
older_than_days: int = 0, tier: str = "", never_only: bool = False,
|
|
) -> dict:
|
|
"""Which standing rules assert a FACT that nobody has confirmed lately.
|
|
|
|
A rulebook holds two kinds of thing. Most rules are DECISIONS — how the
|
|
operator wants to work. They have no truth value and cannot rot. A few
|
|
assert a fact about someone else's software: what a CI runner does, which
|
|
tools exist, what a setting is currently set to. Those go false silently,
|
|
with nobody present, and they keep being handed to every session as
|
|
binding instructions long after they stopped being true.
|
|
|
|
This lists the second kind, oldest verification first, never-checked at
|
|
the top. Each row carries the rule's `verify_with` in full — you are
|
|
about to go and run it — plus `expires_when`, and `days_since_verified`.
|
|
|
|
Reach for it when you are curating the rulebook, when a rule's advice
|
|
just contradicted what you observed, or periodically. Then, for each row:
|
|
run the check, and call mark_rule_verified with what you found.
|
|
|
|
Rules with no `verify_with` never appear here. That is correct: they are
|
|
decisions, and there is nothing to go and check. Do not "fix" their
|
|
absence by giving them checks — the list is only worth reading while
|
|
everything on it genuinely can go false.
|
|
|
|
Args:
|
|
older_than_days: only rules last verified longer ago than this.
|
|
Never-checked rules always qualify. 0 = no age filter.
|
|
tier: "always_on" or "conditional" to narrow. An always-on constraint
|
|
that has gone false is the expensive kind — it is preloaded into
|
|
every session, so a wrong one is wrong everywhere at once.
|
|
never_only: only rules nobody has ever verified.
|
|
|
|
NOT filterable by project, deliberately: a project reaches rules through
|
|
project scope, subscriptions, always-on rulebooks and exclusions, and a
|
|
filter that missed one of those paths would UNDER-report — which is the
|
|
exact failure this whole surface exists to prevent. Read the whole list.
|
|
"""
|
|
uid = current_user_id()
|
|
rules = await rulebooks_svc.rules_due_for_verification(
|
|
uid, older_than_days=older_than_days, tier=tier, never_only=never_only,
|
|
)
|
|
return {
|
|
"rules": [rulebooks_svc.verification_row(r) for r in rules],
|
|
"total": len(rules),
|
|
}
|
|
|
|
|
|
async def mark_rule_verified(rule_id: int, still_true: bool = True) -> dict:
|
|
"""Record that you ran a rule's check — and what it said.
|
|
|
|
Call this AFTER actually running the rule's `verify_with`, never on the
|
|
strength of the rule sounding plausible. A stamp nobody earned is worse
|
|
than no stamp: it moves the rule to the bottom of the sweep and buys it
|
|
another long silence.
|
|
|
|
`still_true=False` writes NOTHING. A rule whose check failed is not in a
|
|
special state to be recorded — it is WRONG, and the only honest next
|
|
moves are to correct it, retire it, or find out why. So it stays at the
|
|
top of the sweep until someone deals with it, and the response tells you
|
|
what the rule said would end it.
|
|
|
|
Args:
|
|
rule_id: the rule whose check you ran.
|
|
still_true: True if the check passed. False if the fact it asserts is
|
|
no longer true — say so, that is the outcome worth having.
|
|
"""
|
|
uid = current_user_id()
|
|
rule = await rulebooks_svc.mark_rule_verified(rule_id, uid, still_true)
|
|
if rule is None:
|
|
raise ValueError(
|
|
f"rule {rule_id} not found, or carries no verify_with "
|
|
f"(nothing to verify is not the same as verified)"
|
|
)
|
|
data = await rulebooks_svc.rule_detail(uid, rule)
|
|
if still_true:
|
|
data["verified"] = True
|
|
return data
|
|
data["verified"] = False
|
|
data["next"] = (
|
|
"This rule is no longer true and is still binding on every session "
|
|
"that loads it. Correct it with update_rule, retire it with "
|
|
"delete_rule, or open a task to work out what replaced it. Its "
|
|
"verified_at is deliberately untouched, so it stays at the top of "
|
|
"rules_due_for_verification until one of those happens."
|
|
)
|
|
return data
|
|
|
|
|
|
def register(mcp) -> None:
|
|
for fn in (
|
|
list_rulebooks, get_rulebook, create_rulebook, update_rulebook, delete_rulebook,
|
|
list_topics, create_topic, update_topic, delete_topic,
|
|
list_rules, list_always_on_rules, get_rule,
|
|
create_rule, create_project_rule, update_rule, delete_rule,
|
|
relate_rules, unrelate_rules,
|
|
subscribe_project_to_rulebook, unsubscribe_project_from_rulebook,
|
|
suppress_rule_for_project, unsuppress_rule_for_project,
|
|
suppress_topic_for_project, unsuppress_topic_for_project,
|
|
exclude_always_on_rulebook, include_always_on_rulebook,
|
|
rules_due_for_verification, mark_rule_verified,
|
|
rule_history,
|
|
):
|
|
mcp.tool(name=fn.__name__)(fn)
|