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When one project solves something every project on the same platform will meet, that solution becomes family canon and every other project on the platform answers it. This is the storage for that. - platforms: a global catalog in the canonical_systems shape, seeded with generic technology names and the file markers step 2's detection reads. - project_platforms: declared / detected / rejected. A rejected row is kept so detection cannot re-add what a person said no to. - family_ideas: a note's family state. No new record type; any note, snippet or lesson becomes an idea. A canon idea must state when it applies (CHECK). - family_idea_platforms: the only scope source. A linked rule topic takes its scope from the idea, so the two cannot disagree. - family_idea_references: reference implementations, explicit not inferred. - family_adoptions: one answer per (project, idea). Variant and exempt require a reason (CHECK). Recheck is derived from the two canon versions, never stored. - family_decisions: the append-only log, with a required reason and the earlier decisions each one followed. The agent decides with no approval step, so precedent is what keeps its calls consistent. Backup v25 carries all seven: platforms by slug, precedent ids remapped through the decision map. Both column guards cover the new tables, and a real-Postgres test exercises the CHECKs and the restore remaps. Co-Authored-By: Claude Opus 5.5 <noreply@anthropic.com>
305 lines
13 KiB
Python
305 lines
13 KiB
Python
"""Real-Postgres checks for family canon's schema (milestone 463 step 1).
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Two kinds of claim live here, and both need a database:
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1. THE CONSTRAINTS. The agent assesses and promotes with no approval step, so
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the few things that must always hold are held by the schema rather than by
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prose a session might skip: a canon idea states when it applies, a variant
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or an exemption says why, a decision has a reason. Each is shown refusing
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the bad row, and each beside a good row so the refusal is not a fixture
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that fails for some other reason.
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2. THE RESTORE REMAPS. Two seams can come back plausible and wrong:
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- platforms travel by SLUG and must land on the destination's own seeded
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rows, not create duplicates of them;
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- `precedent_ids` is a list of ids INSIDE JSON. A restore that copied it
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raw would leave each decision pointing at whatever took the old number —
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populated, plausible, and about the wrong decision.
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"""
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import pytest
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import pytest_asyncio
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from sqlalchemy import select
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from sqlalchemy.exc import IntegrityError
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from scribe.models import async_session
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from scribe.models.family import (
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FamilyAdoption, FamilyDecision, FamilyIdea, FamilyIdeaPlatform,
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FamilyIdeaReference, Platform, ProjectPlatform,
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)
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from scribe.models.note import Note
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from scribe.models.project import Project
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from scribe.models.user import User
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from scribe.services import backup
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from tests.helpers import ensure_user
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pytestmark = [pytest.mark.integration, pytest.mark.usefixtures("_dispose_engine")]
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OWNER_USERNAME = "family_canon_owner"
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RESTORED_USERNAME = "family_canon_restored"
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async def _purge(username: str) -> None:
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"""user -> project / note is ON DELETE CASCADE, and every family table
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cascades from a project or a note, so dropping the user's rows clears
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everything this file made. Platforms are global and never created here
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beyond the migration's seed, so there is nothing of theirs to clear."""
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async with async_session() as s:
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for user in (await s.execute(
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select(User).where(User.username == username)
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)).scalars().all():
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for note in (await s.execute(
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select(Note).where(Note.user_id == user.id)
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)).scalars().all():
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await s.delete(note)
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for project in (await s.execute(
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select(Project).where(Project.user_id == user.id)
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)).scalars().all():
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await s.delete(project)
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if username == RESTORED_USERNAME:
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await s.delete(user)
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await s.commit()
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@pytest_asyncio.fixture(autouse=True)
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async def _no_leftovers():
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"""SETUP ONLY — a database call after a `yield` in an autouse fixture
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orphans a pooled connection (see the backup round-trip siblings)."""
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await _purge(RESTORED_USERNAME)
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await _purge(OWNER_USERNAME)
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async def _platform(slug: str) -> Platform:
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async with async_session() as s:
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return (await s.execute(
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select(Platform).where(Platform.slug == slug, Platform.deleted_at.is_(None))
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)).scalars().one()
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async def _owner_project_and_note() -> tuple[int, int, int]:
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async with async_session() as s:
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owner = await ensure_user(s, OWNER_USERNAME)
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project = Project(user_id=owner.id, title="an app on a platform")
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note = Note(user_id=owner.id, title="an idea", body="the idea")
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s.add_all([project, note])
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await s.commit()
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return owner.id, project.id, note.id
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async def _refused(*rows) -> bool:
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async with async_session() as s:
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s.add_all(list(rows))
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try:
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await s.commit()
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except IntegrityError:
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await s.rollback()
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return True
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return False
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# --- the seed ---------------------------------------------------------------
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async def test_the_migration_seeds_generic_platforms_with_their_markers():
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android = await _platform("android-app")
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assert "AndroidManifest.xml" in android.markers
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# Declare-only platforms carry an empty list, never NULL: detection reads
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# the list and must not have to special-case a missing one.
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assert (await _platform("postgresql")).markers == []
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# --- the constraints ----------------------------------------------------------
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async def test_a_canon_idea_must_say_when_it_applies():
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_, _, note_id = await _owner_project_and_note()
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assert await _refused(FamilyIdea(note_id=note_id, status="canon", applies_when=" "))
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# A candidate may be vague — that is what a candidate is.
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assert not await _refused(FamilyIdea(note_id=note_id, status="candidate"))
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async def test_a_variant_or_an_exemption_must_say_why():
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_, project_id, note_id = await _owner_project_and_note()
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assert not await _refused(FamilyIdea(
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note_id=note_id, status="canon",
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applies_when="any app that installs its own updates",
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))
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for status in ("variant", "exempt"):
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assert await _refused(FamilyAdoption(
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project_id=project_id, idea_id=note_id, status=status, reason=" ",
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)), f"{status} with a blank reason was accepted"
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# Owed and adopted need no reason: neither is a departure.
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assert not await _refused(FamilyAdoption(
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project_id=project_id, idea_id=note_id, status="owed", decided_via="agent",
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))
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async def test_an_unknown_state_is_refused():
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_, project_id, note_id = await _owner_project_and_note()
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assert not await _refused(FamilyIdea(note_id=note_id))
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android = await _platform("android-app")
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assert await _refused(ProjectPlatform(
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project_id=project_id, platform_id=android.id, state="maybe",
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))
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assert await _refused(FamilyAdoption(
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project_id=project_id, idea_id=note_id, status="declined",
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))
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async def test_a_decision_must_carry_a_reason():
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_, _, note_id = await _owner_project_and_note()
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assert not await _refused(FamilyIdea(note_id=note_id))
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assert await _refused(FamilyDecision(idea_id=note_id, action="propose", reason=" "))
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assert not await _refused(FamilyDecision(
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idea_id=note_id, action="propose", reason="built twice, in two projects",
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))
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# --- the restore ------------------------------------------------------------
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@pytest_asyncio.fixture
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async def source():
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"""An idea with everything family canon can hang off it: a platform scope,
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a reference snippet, a project that declares one platform and rejects
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another, a variant answer, and two decisions where the second cites the
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first as its precedent.
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`decoy` exists so the target database has an ADDITIONAL decision whose id
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could collide with a source precedent id — without it, a raw-copied
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precedent list could happen to point at nothing and read as dropped,
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rather than as pointing at the wrong decision.
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"""
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owner_id, project_id, idea_id = await _owner_project_and_note()
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android = await _platform("android-app")
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container = await _platform("container-image")
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async with async_session() as s:
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snippet = Note(user_id=owner_id, title="the reference", body="code",
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note_type="snippet")
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s.add(snippet)
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s.add(FamilyIdea(note_id=idea_id, status="canon", canon_version=2,
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applies_when="any app that installs its own updates"))
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await s.flush()
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s.add_all([
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FamilyIdeaPlatform(note_id=idea_id, platform_id=android.id),
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FamilyIdeaReference(idea_id=idea_id, snippet_id=snippet.id),
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ProjectPlatform(project_id=project_id, platform_id=android.id, state="declared"),
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ProjectPlatform(project_id=project_id, platform_id=container.id, state="rejected"),
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FamilyAdoption(project_id=project_id, idea_id=idea_id, status="variant",
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reason="updates arrive through the store, not in-app",
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canon_version=1, decided_via="agent"),
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])
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first = FamilyDecision(idea_id=idea_id, action="promote",
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reason="proven in CI, stated in platform terms",
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after={"status": "canon"})
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s.add(first)
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await s.flush()
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second = FamilyDecision(idea_id=idea_id, project_id=project_id, action="assess",
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reason="store-distributed, as in the promotion's terms",
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precedent_ids=[first.id], decided_via="agent")
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s.add(second)
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await s.commit()
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snippet_id = snippet.id
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async with async_session() as s:
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notes = (await s.execute(
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select(Note).where(Note.id.in_([idea_id, snippet_id])).order_by(Note.id)
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)).scalars().all()
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payload = {
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"version": backup.BACKUP_VERSION,
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"users": backup._user_rows([await s.get(User, owner_id)]),
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"projects": backup._project_rows([await s.get(Project, project_id)]),
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"notes": backup._note_rows(notes),
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**backup._family_sections(
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(await s.execute(select(Platform))).scalars().all(),
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(await s.execute(select(ProjectPlatform).where(
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ProjectPlatform.project_id == project_id))).scalars().all(),
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[await s.get(FamilyIdea, idea_id)],
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(await s.execute(select(FamilyIdeaPlatform).where(
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FamilyIdeaPlatform.note_id == idea_id))).scalars().all(),
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(await s.execute(select(FamilyIdeaReference).where(
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FamilyIdeaReference.idea_id == idea_id))).scalars().all(),
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(await s.execute(select(FamilyAdoption).where(
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FamilyAdoption.idea_id == idea_id))).scalars().all(),
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(await s.execute(select(FamilyDecision).where(
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FamilyDecision.idea_id == idea_id).order_by(FamilyDecision.id)
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)).scalars().all(),
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),
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}
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payload["users"][0]["username"] = RESTORED_USERNAME
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return {"payload": payload}
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@pytest_asyncio.fixture
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async def restored(source):
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async with async_session() as s:
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before = len((await s.execute(select(Platform))).scalars().all())
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stats = await backup.restore_full_backup(source["payload"])
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async with async_session() as s:
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user = (await s.execute(
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select(User).where(User.username == RESTORED_USERNAME)
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)).scalars().one()
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project = (await s.execute(
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select(Project).where(Project.user_id == user.id)
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)).scalars().one()
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notes = (await s.execute(
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select(Note).where(Note.user_id == user.id)
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)).scalars().all()
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note_ids = [n.id for n in notes]
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return {
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"stats": stats,
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"platforms_before": before,
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"platforms_after": len((await s.execute(select(Platform))).scalars().all()),
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"project": project,
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"notes": {n.note_type: n for n in notes},
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"idea": (await s.execute(
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select(FamilyIdea).where(FamilyIdea.note_id.in_(note_ids))
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)).scalars().one(),
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"memberships": (await s.execute(
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select(ProjectPlatform).where(ProjectPlatform.project_id == project.id)
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)).scalars().all(),
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"adoption": (await s.execute(
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select(FamilyAdoption).where(FamilyAdoption.project_id == project.id)
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)).scalars().one(),
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"decisions": (await s.execute(
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select(FamilyDecision).where(FamilyDecision.idea_id.in_(note_ids))
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.order_by(FamilyDecision.id)
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)).scalars().all(),
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"references": (await s.execute(
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select(FamilyIdeaReference).where(FamilyIdeaReference.idea_id.in_(note_ids))
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)).scalars().all(),
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}
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async def test_platforms_match_by_slug_and_create_nothing(restored):
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assert restored["stats"]["platforms"] == 0
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assert restored["platforms_after"] == restored["platforms_before"]
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async def test_a_rejected_platform_survives_so_detection_cannot_re_add_it(restored):
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states = {m.state for m in restored["memberships"]}
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assert states == {"declared", "rejected"}
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async def test_the_idea_and_its_answer_come_back_whole(restored):
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idea = restored["idea"]
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assert idea.status == "canon"
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assert idea.canon_version == 2
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adoption = restored["adoption"]
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assert adoption.status == "variant"
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assert adoption.reason == "updates arrive through the store, not in-app"
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# Assessed against version 1 of a version-2 idea: the derived recheck
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# signal must survive the trip, which needs both numbers intact.
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assert adoption.canon_version < idea.canon_version
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async def test_the_reference_points_at_the_RESTORED_snippet(restored):
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[ref] = restored["references"]
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assert ref.snippet_id == restored["notes"]["snippet"].id
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async def test_a_precedent_is_remapped_to_the_RESTORED_decision(restored):
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"""The trap: precedent_ids is a list of ids inside JSON. Copied raw, it
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would name the SOURCE decision's id — which in a shared database is a
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real row, the wrong one."""
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first, second = restored["decisions"]
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assert first.action == "promote" and second.action == "assess"
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assert second.precedent_ids == [first.id]
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assert second.project_id == restored["project"].id
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