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Author SHA1 Message Date
d93e8d1586 Merge feature/gerbil-residency-toggle: residency checkbox on Gerbil create/edit form [god-QA pending] 2026-06-06 12:15:20 +02:00
114bbd92c8 Merge feature/extract-band-aware (presence-wins dedup + correctDob): conflicts 19→15 [god-QA pending] 2026-06-06 12:15:01 +02:00
a8d8ae0dfc conflict-decisions: correctDob remaps a wrong-birthdate duplicate before dedup
god added a `correctDob` (DD.MM.YYYY) decisions field: the matched (name+dob)
record is a DUPLICATE with a wrong birthdate → remap its DOB to correctDob so
dedup MERGES it into the canonical same-named animal. apply_dob_remaps runs
BEFORE dedup (it changes the dedup identity); tolerates a missing file; logged
as "DOB-Remaps: N". First use: Chelsea *15.10.2021 → *02.04.2021 (merges into
the canonical record). test_extract covers the remap + that both records then
share one name+dob identity.

Extractor-only. python + dotnet 121/121 green.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-06-06 12:14:23 +02:00
522f2eec51 docs(HUMANQUESTION): C8 answered — Himalaya exists (A- c[h]c[h]); Hermelin = aa c[h]c[h]; both kept 2026-06-06 12:13:20 +02:00
3f71d8e28e dedup: 'presence wins' — present-vs-absent token is not a conflict (Julian)
Breeder merge rule: when two source variants of the SAME animal differ ONLY
by a token PRESENT in one and ABSENT in the other — a whole locus (e.g. spsp
charted in one source, omitted in another) or a modifier on the same base
allele (e^f vs e, the [f] marker) — keep the present token; that is NOT a
conflict. Genuine VALUE contradictions still quarantine: different base
alleles (Ee↔ee), unknown-vs-filled (D-↔DD), different modifiers (c[h]↔c[chm]),
C-↔Cc[h], P-↔Pp.

Replaces the old `len(distinct normalized geno keys) > 1` test with
_genotype_conflict() (per-locus, per-allele compatibility; '?'-vs-filled is a
contradiction, modifier-present-vs-absent and whole-locus-absence are not).
Markers/flags (WP/DP/WFNZ/hörend) are already tags/flags, never genotype, so
they never reach conflict detection; empty Farbschlag/death already don't
conflict (only non-empty values are compared).

Clears Daja (keep spsp), Ichika (keep ee[f]) and the D4 marker cases:
Konflikte 19 -> 15. test_extract covers spsp/[f] present-vs-absent =
no conflict and the four genuine-contradiction shapes. python + dotnet
121/121 green; extractor-only.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-06-06 12:12:45 +02:00
0e7ec5ab61 BESTAND-FILTER follow-up: residency toggle on the Gerbil create/edit form
Completes residency end-to-end: a 'Gehört zum eigenen Bestand' checkbox on the
Rennmaus-Formular (default on for new animals) lets the user mark a tier as an
external ancestor by hand — previously isResident was only set at import. Wired
through FormState + formFromGerbil (defaults true) + the CreateGerbil payload.

German via de.ts (LF). e2e: edit Krümel, untick Bestand, save -> detail shows
the 'Extern' badge (proves form field -> payload -> persistence). Gate green:
build, eslint, vitest 78, e2e 86.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-06-06 12:12:32 +02:00
12604fba7c data(import): D4 Victoria Welby resolved (ee[f]) — C's mother → C gets both parents — Julian 2026-06-06 12:12:23 +02:00
311c5461fd data(import): Chelsea (merge to *02.04.2021, correctDob) + Vestra (DD) resolved — Julian 2026-06-06 12:11:41 +02:00
3634d6ef9a data(import): D3 Silvain resolved (ee, Pp) — Julian 2026-06-06 12:09:41 +02:00
aa345aa796 data(import): D3 Milka resolved (Cc[h], EE) — Julian 2026-06-06 12:08:14 +02:00
0317c5d454 Merge feature/extract-band-aware: band-aware Farbschlag + conflict-decisions consumption + GEN-3f backend re-seed (ReseedColorVarietiesGen3f) [god-QA pending] 2026-06-06 12:05:02 +02:00
ea8c3e9966 Merge feature/bestand-filter: Tiere list defaults nur-Bestand + toggle + Extern marker [god-QA pending] 2026-06-06 12:05:02 +02:00
4d3383a4f1 data(import): D3 Zuleika resolved (DD Ee Gg PP) — Julian 2026-06-06 12:04:30 +02:00
19a0a6c79b data(import): 'presence wins' merge rule (Julian) — resolves Daja (spsp) + Ichika ([f]); D4 markers were common, 3/5 auto-resolved 2026-06-06 12:02:29 +02:00
b9033238c9 conflict-decisions: also apply dateOfDeath (D5 death-date resolutions)
god extended conflict-decisions.json with an optional dateOfDeath
(DD.MM.YYYY). apply_conflict_decisions now sets the animal's death date
(normalized) as authoritative when present — clearing D5 death-date
conflicts the same way genotype/farbschlag decisions are applied. No C#
change (death already flows to Gerbil.DateOfDeath). test_extract covers a
Flint dateOfDeath resolution. python green.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-06-06 12:02:18 +02:00
594923e10f GEN-3f backend re-seed: ColorVariety catalog 73 -> 61 (CP- names)
Re-synced SeedColorVarieties from Kevin's merged GEN-3f frontend seed
(colorVarietySeed.generated.json, 61 rows) — verified byte-identical
(name + canonicalGenotype + order). Changes are all in the cchm colourpoint
group: 'Siam (Marder-Hell)' -> 'Siam' (het cchmch), CP suffix names ->
CP- prefix (CP-Agouti/CP-Silberagouti/CP-Algierfuchs/CP-Polarfuchs), new
CP-Fuchs/CP-Fuchs-Hell/CP-Blaufuchs, Zobel-Hell kept (het); 12 zero-
occurrence CP/dd siblings removed.

Migration ReseedColorVarietiesGen3f: Up = 38 UpdateData (rename/remap IN
PLACE on the same deterministic Id — references survive) + 12 DeleteData of
the removed rows (0 occurrences in her data per Kevin; Gerbil.ColorVarietyId
is ON DELETE SET NULL, and the live re-import re-matches Farbschlag BY NAME,
so no orphan/hard-delete risk). No AddColumn. has-pending-model-changes
clean. Updated the export test's seed-count threshold (>=70 -> >=60).

Last of the import-side batch on this branch (band-aware Farbschlag +
conflict-decisions + this re-seed) — ready for the single supervised
re-extract + idempotent re-import. dotnet 121/121 + python green.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-06-06 11:59:57 +02:00
aa20d6f809 data(import): D5 Molly resolved (died 03.05.2022, 2021 was year typo) — Julian 2026-06-06 11:59:51 +02:00
afd321ec9f BESTAND-FILTER: Tiere-Liste zeigt standardmäßig nur den eigenen Bestand
Die Tiere-Liste (/rennmaeuse) filtert serverseitig auf isResident==true
(eigener Clan = Bestand) und blendet externe Ahnen (nur für den Stammbaum
erfasste Fremdtiere) standardmäßig aus — passend zu Julians Modell
(Kleine Chaoten = Bestand, extern = stammbaum-only).

- Neuer Schalter „Externe Ahnen einblenden“ (Default aus). An -> isResident-
  Filter entfällt, externe Tiere erscheinen mit. Serverseitig (Gridify), damit
  Paging und Trefferzahl korrekt bleiben. „Filter zurücksetzen“ setzt ihn zurück.
- Subtile „Extern“-Markierung (gestricheltes Badge) auf externen Tieren in
  Liste UND Detailseite, mit Tooltip-Erläuterung.
- Gerbil-Typ um isResident (optional bool) ergänzt; CreateGerbil ebenso.

Deutsch via de.ts (LF), mobil + Laptop. e2e-Mock: gerbil()-Factory setzt
isResident=true; Hilde & Max als externe Ahnen (isResident=false). Neue
e2e bestand.spec (Default blendet aus; Toggle zeigt + Extern-Markierung).
Gate grün: build, eslint, vitest 78, e2e 84.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-06-06 11:59:19 +02:00
ae825ae80a data(import): D5 Flint resolved (died 10.05.2021, 2022 was typo) + decisions schema gains dateOfDeath — Julian 2026-06-06 11:59:10 +02:00
e055061d85 docs(HUMANQUESTION): D3+D4 — show CONCRETE per-animal conflict (locus + both values); D4 markers were common (not the conflict), 3/5 auto-resolved; Chelsea=DOB-dup not genotype; Victoria Welby=C's mother 2026-06-06 11:57:54 +02:00
df13136955 Importer consumes conflict-decisions.json to un-quarantine (HUMANQUESTION D)
god maintains tools/import/conflict-decisions.json as Julian/his wife answer
the D-conflicts. extract.py now consumes it (apply_conflict_decisions): for an
animal matching normalize(name)+dob, it clears the conflict, marks
resolvedByDecision, and — when the decision carries a `genotype` (breeder
notation, parsed via genotype.py) and/or `farbschlag` — treats those as
AUTHORITATIVE. Tolerates a missing/empty/garbled file. Genuinely-unresolved
conflicts stay quarantined.

Loader (ImportService): SourceAnimal.ResolvedByDecision flows through; the
report surfaces Animals.ConflictsResolvedByDecision + a German note.

Result on real data: the 2 current decisions (Firefly D-/PP, WildFire PP)
un-quarantine → Konflikte 21 → 19. As god appends entries the count grows;
nothing else needed from me.

Tests: python test_extract (decision clears conflict + genotype authoritative
+ removes from conflicts list + tolerates missing file) and a C# loader test
(a resolved animal loads and is counted). Folded into the EXTRACT-BANDS branch
so the next re-extract applies band-aware Farbschlag + these decisions in one
pass. No schema change (JSON DTO fields). python + dotnet 121/121 green;
has-pending clean.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-06-06 11:56:29 +02:00
4aca1d528b EXTRACT band-aware Farbschlag: deep bands (gen>=2) have no colour cell
Julian-confirmed against the real xlsx (Kentucky, Akio Kids): pedigree
blocks have two shapes. EARLY bands (gen 0-1, cols B/E/H) are 5-cell
Name/DOB/Farbschlag/Genotype/Zucht — real Farbschlag present. DEEP bands
(gen>=2, cols K/N/Q...) are 3-cell Name/DOB/Genotype with NO Farbschlag —
the colour is derived from the genotype.

The old extractor grabbed the NEXT block's name or a stray health note
(e.g. "DD-Tumor", "Chronische Ohrenentzündung...") as the deep-band
Farbschlag — source of the D1 'name-in-Farbschlag' conflicts and a big
chunk of farbschlagUnmatched. Fix: gen_of(col)>=2 => never assign a
Farbschlag in that block (Name/DOB/Genotype only); the cell is left for the
next block's name search. Deep-band animals load with empty Farbschlag and
the UI computes 'Errechnet' from the stored genotype (lossless).

Dedup already prefers a real (non-empty) early-band Farbschlag, so an animal
appearing in both an early band (Chesnut -> 'Kohlfuchsschimmel') and deep
bands keeps the real value; Chesnut and Tennessee stay separate (distinct
genotype + name+DOB key).

Result: 248/306 loadable animals now have empty Farbschlag (genotype-
derived), 0 suspicious name/note values remain, 0 Farbschlag-based conflicts
(D1 dissolved). Regression test test_extract.py builds a two-band xlsx and
asserts the deep band yields no Farbschlag + the stray note doesn't bleed.

Extractor-only (no C# change). python test_genotype + test_extract green;
dotnet 118/118. Batches with Kevin's GEN-3f seed for one re-import.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-06-06 11:56:29 +02:00
4e02133d95 docs(HUMANQUESTION): add C9 (optional) — CP-Fuchs/CP-Blaufuchs/CP-Fuchs-Hell genetic distinction for engine refinement 2026-06-06 11:53:14 +02:00
f3efd4aa2b Merge feature/gen-3f: c-locus seed/catalog reconciliation 73→61 (CP- prefix, collapse -Hell, Siam; computed==dropdown) [god-QA pending] 2026-06-06 11:51:46 +02:00
461d7feb2d data(import): D3 WildFire resolved (PP correct, not P-) — Julian 2026-06-06 11:50:25 +02:00
7536aba474 data(import): conflict-decisions.json + D3 Firefly resolved (D- correct, DD typo) — Julian 2026-06-06 11:49:35 +02:00
972570b142 GEN-3f: reconcile cchm colourpoint catalog to the breeder's CP- naming
Computed Farbschlag now == the breeder's dropdown/seed names for colourpoints,
so the mismatch hint stops and the live re-import name-matches her data
(god: she uses the CP- prefix form + Marder/Siam/Zobel/Zobel-Hell; ZERO of the
old portal suffix names). FULL collapse (god-approved, data-safe).

Catalog (BASE_COLORS) 73 -> 61: the 24 portal cchm rows collapse to 12 breeder
varieties — Marder, Siam, Zobel, Zobel-Hell (aa marten/sable group; E & D
irrelevant per the merged GEN-3e rule) and CP-Agouti, CP-Silberagouti,
CP-Algierfuchs, CP-Polarfuchs, CP-Fuchs, CP-Fuchs-Hell, CP-Blaufuchs,
CP-Orangeschimmel (A- 'CP-<base>'; -Hell shade variants collapsed).

- representativeGenotype() now splits a heterozygous 'x/y' token, so the het
  colourpoints Siam & Zobel-Hell (C: 'cchm/ch') carry the correct het canonical
  genotype and the engine computes their own names (verified).
- Engine covers all fox(ee)/dilute(dd) A- cchm bases via the E-family fallback
  (no Unbekannt). KNOWN BEST-EFFORT GAP: CP-Fuchs-Hell and CP-Blaufuchs both
  compute 'CP-Fuchs' (the het-lighter / blue-dilute distinction isn't encoded);
  their distinct rows remain for hand-pick + import name-match. Closing this
  fully needs the breeder's exact fox-CP genotype rule.

Regenerated colorVarietySeed.generated.json (61 rows) for Pam's re-seed
migration. Gate green: build, eslint, vitest 78, e2e 80. de.ts untouched.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-06-06 11:47:40 +02:00
029ffb9895 docs(HUMANQUESTION): D1 resolved — col K+ has no Farbschlag (only gencode), colour derived from genotype; Chesnut≠Tennessee; fix dispatched 2026-06-06 11:45:11 +02:00
6decd59ce4 docs(HUMANQUESTION): D1 — add source Stammbaum file per name-bleed conflict + note importer auto-strips them 2026-06-06 11:39:10 +02:00
f015274d28 Merge feature/import-fk-fix: stage litters+save-once (insert ordering) + FK-integrity guard + dry-run ParentFksDropped/DerivedSkipped, SQLite FK regression tests [god-QA pending] 2026-06-06 11:36:03 +02:00
fd48f7fc09 Fix import FK fault: derived/back-linked litter referenced a not-yet-inserted parent
BUG (blocked the supervised live re-import): /import/execute threw
Npgsql 23503 FK_Litters_Gerbils_FatherId and rolled back. Root cause was
INSERT ORDERING — synthesized derived litters were SaveChanges()'d BEFORE
the parent gerbils (created later in the animal loop), so the litter's
Father/MotherId pointed at rows that didn't exist yet. The dry-run and the
EF in-memory test provider don't enforce FKs, so it slipped through.

Fix:
- Stage synthesized litters in the context but DON'T save them early; the
  single SaveChanges after the animal loop lets EF order parents → litters →
  offspring (all FKs nullable). Saving litters first was the fault.
- FK-integrity guard (god's spec): compute the persisted set (existing DB +
  this run's loadable) and null out any litter parent FK not in it; SKIP a
  derived litter whose BOTH parents are unresolvable (offspring loads with
  LitterId=null). Quarantined parents already resolve to null via
  ResolveParentGid; this is defense-in-depth + makes the invariant explicit.
- Report litterParentFksDropped + derivedLittersSkipped (LitterSummary) +
  a German note — so a green dry-run (0/0) GUARANTEES execute won't FK-fault.

Tests: two SQLite-backed regressions (SQLite enforces FKs, unlike the
in-memory provider) — a derived litter with NEW chart parents executes
without throwing, and a quarantined parent leaves that FK null. 120 C#
tests + python green; no schema change (has-pending clean).

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-06-06 11:32:44 +02:00
105e63b9c4 Merge feature/inbox-1: Anfragen-Posteingang UI (list/triage/assign/draft/send) [god-QA pending]
# Conflicts:
#	gerbil-manager-web/e2e/mock-data.ts
#	gerbil-manager-web/src/App.tsx
2026-06-06 11:29:21 +02:00
0334fce275 Merge feature/web-0b: CMS admin UI /webseite (page+block editor, reorder, draft/publish status) [god-QA pending] 2026-06-06 11:25:55 +02:00
aaaf5b6fb7 INBOX-1: Anfragen-Posteingang UI - Liste (Status-Filter, Sync-Button mit MailNotConfigured-Hinweis), Detail (Triage/Zuordnen/Verwerfen, KI-Entwurf mit AiKeyMissing-Hinweis, bestaetigter Versand) + nav + 6 e2e-Specs (Mock um /api/requests erweitert)
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-06-06 11:23:41 +02:00
c20e6b5426 WEB-0b: CMS-Verwaltung der öffentlichen Webseite (Hand-Editier-UI)
Neuer Bereich /webseite im Manager (Nav: "Mehr"-Blatt) zur Pflege der 6
Webseiten-Seiten gegen Pams WEB-0-Backend (LAN-only, keine Auth):

- Übersicht: alle Seiten mit Status (Entwurf/Veröffentlicht).
- Seiten-Editor: Titel + SEO-Beschreibung + Status speichern.
- Geordneter Block-Editor: Blöcke hinzufügen (Überschrift, Textabschnitt/
  Markdown, Bild, Galerie, Kontaktangaben), bearbeiten, nach oben/unten
  verschieben (PUT .../blocks/order), löschen. Die dynamische AbgabetiereList
  ist nicht manuell anlegbar; nur ihr Einleitungstext ist editierbar.

Vertraege: GET /pages, GET /pages/{slug}, PUT /pages/{id},
POST /pages/{pageId}/blocks, PUT /blocks/{id}, DELETE /blocks/{id},
PUT /pages/{pageId}/blocks/order. Enums als Strings (Draft/Published, Heading...).

Deutsch via de.ts (LF beibehalten), mobile-first. e2e-Mock um die CMS-Routen
erweitert (zustandsbehaftet) + Smoke (Block anlegen/bearbeiten/verschieben,
bleibt erhalten). Gate gruen: build, eslint, vitest 69, e2e 68.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-06-06 11:23:34 +02:00
36454f3747 docs(HUMANQUESTION): add C8 — Himalaya vs Hermelin (does breeder use Himalaya, or is all chch Hermelin?) 2026-06-06 11:12:52 +02:00
3335502ef1 Merge feature/web-1 [god-QA pending] 2026-06-06 11:10:52 +02:00
0766f8303c Merge feature/gen-3e [god-QA pending] 2026-06-06 11:10:52 +02:00
6357e77060 Merge chore/de-lf [god-QA pending] 2026-06-06 11:10:52 +02:00
5edbd67c96 chore: normalize de.ts to LF + pin via .gitattributes (stop noisy EOL-flip diffs) 2026-06-06 11:07:19 +02:00
0651e54343 SEED-SYNC: backend ColorVariety seed = corrected catalog (drop Schwarzschimmel→Orangeschimmel, +CP-Orangeschimmel, Blaufuchs dd genotype fix) + SyncColorVarietySeed migration 2026-06-06 11:07:10 +02:00
4dcd416ff6 WEB-1: static site renderer (SiteRenderer, dry-run endpoint, 22 tests)
GerbilManagerWebAPI/Cms/SiteRenderer.cs:
  - Render(JsonObject snapshot) -> IReadOnlyDictionary<string,string> (path->content)
  - Covers all 6 block types: Heading, RichText, Image, Gallery, ContactInfo,
    AbgabetiereList (auto-resolved animals from snapshot; empty placeholder)
  - start -> index.html; other slugs -> {slug}/index.html; assets/site.css
  - Draft pages excluded; nav links with aria-current for current page
  - Minimal Markdown->HTML (headings, bold, italic, code, links, ul/ol) --
    no extra dependencies, deterministic output
  - H() encodes only the 5 HTML special chars (not umlauts) for UTF-8 pages
  - Mobile-first CSS: site header+nav, animal card grid, responsive breakpoints,
    warm off-white palette (style reference: Jimdo Kleine Chaoten)

GerbilManagerWebAPI/Endpoints/CmsEndpoints.cs:
  - GET /api/render-site -- dry-run: returns [{path, size}] for each rendered file

GerbilManager.Tests/SiteRendererTests.cs:
  - 21 unit tests (pure JsonObject, no DB): file paths, HTML structure, each block
    type, draft exclusion, XSS encoding, all 6 seeded pages, Markdown inline tests
  - 1 integration test (ApiFactory): /api/render-site returns CSS + index.html

Co-Authored-By: Claude Sonnet 4.6 (1M context) <noreply@anthropic.com>
2026-06-06 11:06:43 +02:00
5fd8cf4395 GEN-3e: C-locus colourpoint naming (CP-<base> for A-+cchm; Marder/Siam/Zobel/Zobel-Hell for aa+cchm); chch kept as Hermelin/Himalaya via base-match 2026-06-06 11:04:57 +02:00
76fcad6168 Merge feature/pedigree-link residency: Gerbil.IsResident (Bestand vs external ancestors, parent-exception), AddGerbilResidency migration [god-QA pending] 2026-06-06 11:01:05 +02:00
91fa9058de Merge feature/gen-3d: dominance tiebreak — unknown locus → wild-type reading (unknown-C=full colour not white; markers unmarked) [god-QA pending] 2026-06-06 11:01:04 +02:00
6775707387 OWNERSHIP: residency classification (Bestand vs external ancestors)
Per hive/agents/god/OWNERSHIP-residency.md (Julian): "Clan kleine Chaoten"
is the wife's own Zucht. Classify each animal:
 (a) RESIDENT if zuchtCanon contains 'kleinechaote' (separator/declension-
     insensitive: "v.d. Kleinen Chaoten", "Clan-Kleine-Chaoten", …); OR
 (b) PARENT EXCEPTION — a parent of a Clan offspring is resident even if its
     own Zuchtname is foreign (you can only breed a Clan litter if the parents
     were in your care). Runs AFTER the parentRefs→litter linking.
Otherwise EXTERNAL (pedigree ancestor, not living stock — kept, not deleted).

Stored as a dedicated Gerbil.IsResident bool (distinct from Status/Abgabe —
origin/identity, not current location), defaulting true (own stock unless
marked external; DB HasDefaultValue(true)). Additive migration
AddGerbilResidency; has-pending-model-changes clean. Round-trips in
GerbilDto/GerbilInput and is Gridify-filterable (isResident==true) so Kevin
can build a "nur Bestand" filter. ImportService computes it at (re-)import
and refreshes existing rows on the idempotent sweep. ResidencySummary added
to the import report.

Projected on real data: 306 loadable → 227 resident (188 rule a, +39 via
parent exception), 79 external ancestors.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-06-06 10:58:29 +02:00
8125c453d0 GEN-3d: dominance tiebreak — unknown locus resolves to wild-type reading (unknown-C => full-colour, not c[h] white; markers default unmarked) 2026-06-06 10:58:15 +02:00
8101cc7be5 Merge feature/pedigree-link: parentRefs→derived litters, box-colour=sex (blue♂/white♀), name-bleed conflict fix, Vance folded in [god-QA pending] 2026-06-06 10:51:06 +02:00
ea79703dbf PEDIGREE-LINK: chart parentRefs→litters, box-colour=sex, name-bleed fix
Structural fix (god, Julian-reported via 'C'): the loader ignored
SourceAnimal.ParentRefs, so animals whose ancestry exists only as
Stammbaum chart-position refs loaded with LitterId=null ("unbekannt").
ImportService now synthesizes/reuses a derived litter from parentRefs:
resolves father+mother via name+DOB, groups siblings (same parents+dob)
into one litter, sets Father/Mother + offspring LitterId, dates it to the
offspring DOB, and tags Notes "aus Stammbaum-Diagramm abgeleitet
(Konfidenz: …)" so it's transparent/reversible. Existing animals that
become linkable are re-linked on re-run (sweep-idempotent). Dry-run counts
included. Projected: ~124 loadable animals gain a parent link.

Box-colour = sex (Julian): blue box = male, white box = female. All 11
pedigrees encode this as a solid theme-8 (accent5/blue) fill vs no fill.
xlsx_util.cell_fill_sex reads it; extract.py sets animal.gender from the
box; ImportService.InferGender prefers it over sire/dam name inference.
Result: 306/306 loadable animals now sexed (154♂/152♀).

Extractor noise fix (god): reject Farbschlag values that are actually a
parent NAME bled across cells (contain v.d./von/of/gen.) — cleared phantom
conflicts (e.g. Chayton). Combined with GEN-3 Uw→G: Konflikte 32→21.
Also skip Excel "~$" lock files in the glob.

GEN-3a contract (Kevin): ComposeGenotype appends "Slsl" for WP/Sls
carriers (wild-type sl/sl omitted) so 8-locus strings stay unchanged.

Importer-only. The live re-import into Julian's DB stays a separate
supervised gated step. 95 C# tests + python genotype tests green;
has-pending-model-changes clean (no schema change on this branch).

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-06-06 10:48:30 +02:00
ed576c0339 Merge feature/gen-3c: unknown allele displays '-' (stores '?'), fix Unbekannter Farbschlag (wildcard + E-locus family fallback) [god-QA pending] 2026-06-06 10:47:14 +02:00
c35a6eca04 GEN-3c: fix 'Unbekannter Farbschlag' — unknown=wildcard in matches() + E-pair-aware family fallback (eef=Fuchsschimmel) 2026-06-06 10:45:16 +02:00
2e20df624f GEN-3c: unknown allele displays as '-' (storage stays '?'); parser accepts '-' and skips fully-unknown tokens; de.ts hints 2026-06-06 10:45:15 +02:00
a57b481a7e Merge feature/inbox-2: POST /api/requests/{id}/draft (AI German reply draft, never auto-send), extract OpenAiChatClient to Ai/, privacy stripping, 8 tests [god-QA pending] 2026-06-06 10:37:56 +02:00
27424c574f Merge feature/feat-14c: Charakterbogen as preferred AI character source (suppress admin notes, weave traits to prose), +4 tests [god-QA pending] 2026-06-06 10:37:45 +02:00
fd28b2a954 INBOX-2: 8 Tests - Stripping, Prompt-Privacy (keine Mailadresse zum Anbieter), 503, Endpoint-Round-Trip mit Stub (Entwurf gespeichert+geliefert); ApiFactory.ConfigureTestServices-Hook (init-Property, xUnit-fixturefest) 2026-06-06 10:36:02 +02:00
8aab9d34f7 INBOX-2: POST /api/requests/{id}/draft - deutscher KI-Antwortentwurf (Datenminimierung: nur Anfragetext+ForSale-Liste, Zitat/Signatur-Stripping, 503 AiKeyMissing / 502 Upstream, speichert DraftReply) 2026-06-06 10:36:02 +02:00
6dabb5572c INBOX-2: extract provider-agnostic OpenAiChatClient from SaleAdService (shared AI wire, public surface unchanged) 2026-06-06 10:36:01 +02:00
36db013b76 Merge feature/gen-3b: genotype.py+extract.py normalization (Uw→G, Sls, flags), conflicts 32→27, Gerbil.IsDeaf additive migration [god-QA pending] 2026-06-06 10:32:57 +02:00
60d034cde4 Merge feature/gen-3a: Uw=G+G-display, Sls 2nd locus+lethal, flag tolerance, Schimmel catalog fix (no Schwarzschimmel, efef=Orangeschimmel) [god-QA pending] 2026-06-06 10:32:52 +02:00
5ec04984c9 FEAT-14c: Charakterbogen im Sale-Ad-Prompt - Traits+Notiz als bevorzugte Charakterquelle (Notizen-Fallback), Webe-Regel statt Stichwortliste im Systemprompt; 4 Tests 2026-06-06 10:29:38 +02:00
e2fd32ea12 GEN-3a: test that Uw input renders as canonical G (never echoed back) 2026-06-06 10:27:08 +02:00
2f089a902d GEN-3b: import notation normalization (Uw=G, Sls, deaf flag, tags)
genotype.py:
- Uw/uw aliased to G/g (same locus) so the D2 conflict group + pure-Uw
  cases stop being conflicts (Gg == Uwuw).
- Sls/WP recognized as a SECOND spotting locus (S(l)s(l)=WP het); carried
  into mapped8locus alongside Sp (Sp+Sls = Superschecke).
- dea/Dea/taub/hörend -> hearing/deaf phenotype FLAG (not a locus).
- WFNZ/RV/GV/DP -> provenance/breeding tags (not genotype, not conflicts).
- test_genotype.py: zero-dep unit tests for all four.

extract.py: surface deaf+tags on animals; dedup conflict detection now
compares the NORMALIZED genotype key (mapped8locus) instead of the raw
string, so Uw=G no longer triggers a conflict. Result: Konflikte 32 -> 27,
Zucht-Splits stays 0. Dedup identity = name + DOB + Zucht.

Backend: Gerbil.IsDeaf (bool?) + additive migration AddGerbilDeafFlag
(has-pending-model-changes clean) + GerbilDto/GerbilInput round-trip.
ImportService sets IsDeaf from animal.deaf and preserves Sls + tags + deaf
in RawImportData (kept out of the 8-locus compact Genotype contract until
GEN-3a adopts them).

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-06-06 10:26:01 +02:00
7aac59f3e5 GEN-3a: de.ts warning texts (SLS_LETHAL/SUPERSCHECKE_DEAF) + genetics tests (Uw alias, Sls het/lethal, Superschecke, flag tolerance, Schimmel fix) 2026-06-06 10:25:48 +02:00
a0b720df73 GEN-3a: Schimmel catalog fix (breeder C5) — remove Schwarzschimmel, efef base=Orangeschimmel, Silberschimmel wins efef-gg, +CP-Orangeschimmel; regenerate ColorVariety seed 2026-06-06 10:25:48 +02:00
1e7dc8f91d GEN-3a: Uw=G alias, second spotting locus Sls (SlSl lethal), Sp×Sls Superschecke, flag/metadata token tolerance (dea/WFNZ/DP/RV/GV) 2026-06-06 10:25:48 +02:00
68 changed files with 12712 additions and 961 deletions

View File

@@ -19,6 +19,13 @@ public sealed class ApiFactory : WebApplicationFactory<Program>
{
private readonly SqliteConnection _connection = new("DataSource=:memory:");
/// <summary>
/// INBOX-2: Test-spezifische DI-Überschreibungen (z. B. AI-Stub-Handler).
/// Init-Property statt Konstruktor — xUnit-Klassen-Fixtures erlauben nur
/// EINEN öffentlichen (parameterlosen) Konstruktor.
/// </summary>
public Action<IServiceCollection>? ConfigureTestServices { get; init; }
public string ContractRoot { get; } =
Path.Combine(Path.GetTempPath(), $"gerbil-contract-tests-{Guid.NewGuid():N}");
@@ -46,6 +53,8 @@ public sealed class ApiFactory : WebApplicationFactory<Program>
using var provider = services.BuildServiceProvider();
using var scope = provider.CreateScope();
scope.ServiceProvider.GetRequiredService<ApplicationContext>().Database.EnsureCreated();
ConfigureTestServices?.Invoke(services);
});
}

View File

@@ -104,7 +104,7 @@ namespace GerbilManager.Tests
Assert.Equal(1, root.GetProperty("gerbils").GetArrayLength());
Assert.Equal(1, root.GetProperty("litters").GetArrayLength());
Assert.Equal(1, root.GetProperty("contacts").GetArrayLength());
Assert.True(root.GetProperty("colorVarieties").GetArrayLength() >= 70); // HasData-Seed
Assert.True(root.GetProperty("colorVarieties").GetArrayLength() >= 60); // HasData-Seed (61 nach GEN-3f)
var g = root.GetProperty("gerbils")[0];
Assert.Equal("Aa CC Dd EE GG Pp Spsp rere", g.GetProperty("genotype").GetString());
Assert.Equal("Stammbaum von Akio Kids.xlsx", g.GetProperty("importSource").GetString());

View File

@@ -1,5 +1,6 @@
using GerbilManagerWebAPI.Import;
using GerbilManagerWebAPI.Models;
using Microsoft.Data.Sqlite;
using Microsoft.EntityFrameworkCore;
namespace GerbilManager.Tests
@@ -102,6 +103,208 @@ namespace GerbilManager.Tests
Assert.Equal(2, await db.Litters.CountAsync());
}
[Fact]
public async Task Execute_persists_deaf_flag_and_preserves_sls_and_tags()
{
using var db = NewDb();
await new ImportService(db, _dir, _dir).RunAsync(execute: true);
var a1 = await db.Gerbils.SingleAsync(g => g.ExternalRef == "a1");
// GEN-3b: deafness is a persisted phenotype flag (NOT a genotype locus).
Assert.True(a1.IsDeaf);
// Sls (2nd spotting locus) + provenance tags are preserved in RawImportData
// (kept out of the 8-locus compact Genotype contract until GEN-3a adopts them).
Assert.Contains("Sls", a1.RawImportData!);
Assert.Contains("WFNZ", a1.RawImportData!);
// GEN-3a contract: a WP/Sls carrier appends the trailing "Slsl" token (Kevin).
Assert.EndsWith("Slsl", a1.Genotype!);
}
[Fact]
public void ComposeGenotype_appends_Slsl_only_for_carriers()
{
// wild-type sl/sl is omitted -> plain 8-locus string
var wild = new SourceGenotype { Mapped8locus = new() { ["A"] = new() { "a", "a" }, ["Sls"] = new() { "sl", "sl" } } };
Assert.DoesNotContain("Sl", ImportService.ComposeGenotype(wild));
// WP heterozygote -> trailing Slsl
var wp = new SourceGenotype { Mapped8locus = new() { ["A"] = new() { "a", "a" }, ["Sls"] = new() { "Sl", "sl" } } };
Assert.EndsWith("Slsl", ImportService.ComposeGenotype(wp));
}
[Fact]
public async Task Synthesizes_litter_from_chart_parentRefs_links_offspring_and_parents()
{
// Offspring 'C' has chart-position parentRefs to father 'Papa' (loaded) and mother
// 'Mama' (loaded), but NO Wurfchronik litterRef -> the loader must synthesize a derived
// litter, link C to it, and set the litter's Father/Mother (PEDIGREE-LINK structural fix).
var dir = Path.Combine(Path.GetTempPath(), "pedlink-" + Guid.NewGuid().ToString("N"));
Directory.CreateDirectory(dir);
try
{
File.WriteAllText(Path.Combine(dir, "litters.json"), "[]");
File.WriteAllText(Path.Combine(dir, "animals.json"), """
[
{"id":"papa","name":"Papa v.d. Test","dob":"01.01.2022","death":"","farbschlag":"","gender":"male","zuchtCanon":"test",
"genotype":{"mapped8locus":{},"rawGenotype":"","unmappedTokens":[]},"conflict":false},
{"id":"mama","name":"Mama v.d. Test","dob":"02.02.2022","death":"","farbschlag":"","gender":"female","zuchtCanon":"test",
"genotype":{"mapped8locus":{},"rawGenotype":"","unmappedTokens":[]},"conflict":false},
{"id":"ext","name":"Fremd of Foreign","dob":"03.03.2022","death":"","farbschlag":"","zuchtCanon":"foreign",
"genotype":{"mapped8locus":{},"rawGenotype":"","unmappedTokens":[]},"conflict":false},
{"id":"c","name":"C","dob":"29.04.2024","death":"","farbschlag":"","zuchtCanon":"kleinechaote",
"genotype":{"mapped8locus":{},"rawGenotype":"","unmappedTokens":[]},"conflict":false,
"parentRefs":[
{"name":"Papa v.d. Test","dob":"01.01.2022","roleGuess":"father","method":"chart-position","confidence":"medium"},
{"name":"Mama v.d. Test","dob":"02.02.2022","roleGuess":"mother","method":"chart-position","confidence":"medium"}
]}
]
""");
using var db = NewDb();
var report = await new ImportService(db, dir, dir).RunAsync(execute: true);
Assert.Equal(1, report.Animals.ParentLinksFromChart);
Assert.Equal(1, report.Litters.DerivedFromChart);
var papa = await db.Gerbils.SingleAsync(g => g.ExternalRef == "papa");
var mama = await db.Gerbils.SingleAsync(g => g.ExternalRef == "mama");
var c = await db.Gerbils.SingleAsync(g => g.ExternalRef == "c");
Assert.NotNull(c.LitterId); // C no longer "unbekannt"
// box-colour sex flows through (blue=male, white=female)
Assert.Equal(Gender.male, papa.Gender);
Assert.Equal(Gender.female, mama.Gender);
var litter = await db.Litters.SingleAsync(l => l.Id == c.LitterId);
Assert.Equal(papa.Id, litter.FatherId);
Assert.Equal(mama.Id, litter.MotherId);
Assert.Contains("Diagramm", litter.Notes!); // transparent + reversible
// OWNERSHIP/RESIDENCY: C is Clan (rule a); its foreign-Zucht parents flip to
// resident (rule b); the unrelated foreign animal stays external.
Assert.True(c.IsResident); // rule (a)
Assert.True(papa.IsResident); // rule (b) parent exception
Assert.True(mama.IsResident); // rule (b)
Assert.False((await db.Gerbils.SingleAsync(g => g.ExternalRef == "ext")).IsResident);
Assert.NotNull(report.Residency);
Assert.Equal(3, report.Residency!.Resident);
Assert.Equal(1, report.Residency.External);
Assert.Equal(2, report.Residency.FlippedByParentRule);
}
finally { try { Directory.Delete(dir, recursive: true); } catch { } }
}
[Fact]
public async Task Execute_on_relational_db_with_new_chart_parents_does_not_FK_throw()
{
// Regression for FK_Litters_Gerbils_FatherId: a derived litter references parent gerbils
// created in the SAME run, so they must be inserted before the litter. The EF in-memory
// provider does NOT enforce FKs (which masked the bug), so this uses SQLite — which does.
var dir = Path.Combine(Path.GetTempPath(), "fkfix-" + Guid.NewGuid().ToString("N"));
Directory.CreateDirectory(dir);
using var conn = new SqliteConnection("DataSource=:memory:");
conn.Open();
try
{
File.WriteAllText(Path.Combine(dir, "litters.json"), "[]");
File.WriteAllText(Path.Combine(dir, "animals.json"), """
[
{"id":"papa","name":"Papa v.d. Test","dob":"01.01.2022","death":"","farbschlag":"",
"genotype":{"mapped8locus":{},"rawGenotype":"","unmappedTokens":[]},"conflict":false},
{"id":"mama","name":"Mama v.d. Test","dob":"02.02.2022","death":"","farbschlag":"",
"genotype":{"mapped8locus":{},"rawGenotype":"","unmappedTokens":[]},"conflict":false},
{"id":"c","name":"C","dob":"29.04.2024","death":"","farbschlag":"",
"genotype":{"mapped8locus":{},"rawGenotype":"","unmappedTokens":[]},"conflict":false,
"parentRefs":[
{"name":"Papa v.d. Test","dob":"01.01.2022","roleGuess":"father","method":"chart-position","confidence":"medium"},
{"name":"Mama v.d. Test","dob":"02.02.2022","roleGuess":"mother","method":"chart-position","confidence":"medium"}
]}
]
""");
var opts = new DbContextOptionsBuilder<ApplicationContext>().UseSqlite(conn).Options;
using var db = new ApplicationContext(opts);
await db.Database.EnsureCreatedAsync(); // schema WITH enforced FK constraints
// must not throw FK_Litters_Gerbils_FatherId (parents inserted before the litter)
var report = await new ImportService(db, dir, dir).RunAsync(execute: true);
var c = await db.Gerbils.SingleAsync(g => g.ExternalRef == "c");
Assert.NotNull(c.LitterId);
var litter = await db.Litters.SingleAsync(l => l.Id == c.LitterId);
Assert.Equal((await db.Gerbils.SingleAsync(g => g.ExternalRef == "papa")).Id, litter.FatherId);
Assert.Equal(0, report.Litters.ParentFksDropped);
Assert.Equal(0, report.Litters.DerivedSkipped);
}
finally { try { Directory.Delete(dir, recursive: true); } catch { } }
}
[Fact]
public async Task Derived_litter_with_quarantined_parent_leaves_FK_null_no_throw()
{
// A chart parentRef pointing to a QUARANTINED (conflict) animal must not become an FK —
// the derived litter keeps that side null; if both sides are unresolvable, no litter.
var dir = Path.Combine(Path.GetTempPath(), "fkq-" + Guid.NewGuid().ToString("N"));
Directory.CreateDirectory(dir);
using var conn = new SqliteConnection("DataSource=:memory:");
conn.Open();
try
{
File.WriteAllText(Path.Combine(dir, "litters.json"), "[]");
File.WriteAllText(Path.Combine(dir, "animals.json"), """
[
{"id":"badpa","name":"BadPapa v.d. Test","dob":"01.01.2022","death":"","farbschlag":"",
"genotype":{"mapped8locus":{},"rawGenotype":"","unmappedTokens":[]},"conflict":true},
{"id":"goodma","name":"GoodMama v.d. Test","dob":"02.02.2022","death":"","farbschlag":"",
"genotype":{"mapped8locus":{},"rawGenotype":"","unmappedTokens":[]},"conflict":false},
{"id":"c2","name":"C2","dob":"29.04.2024","death":"","farbschlag":"",
"genotype":{"mapped8locus":{},"rawGenotype":"","unmappedTokens":[]},"conflict":false,
"parentRefs":[
{"name":"BadPapa v.d. Test","dob":"01.01.2022","roleGuess":"father","method":"chart-position","confidence":"medium"},
{"name":"GoodMama v.d. Test","dob":"02.02.2022","roleGuess":"mother","method":"chart-position","confidence":"medium"}
]}
]
""");
var opts = new DbContextOptionsBuilder<ApplicationContext>().UseSqlite(conn).Options;
using var db = new ApplicationContext(opts);
await db.Database.EnsureCreatedAsync();
await new ImportService(db, dir, dir).RunAsync(execute: true); // must not throw
Assert.False(await db.Gerbils.AnyAsync(g => g.ExternalRef == "badpa")); // quarantined
var c2 = await db.Gerbils.SingleAsync(g => g.ExternalRef == "c2");
Assert.NotNull(c2.LitterId); // still linked (via mother)
var litter = await db.Litters.SingleAsync(l => l.Id == c2.LitterId);
Assert.Null(litter.FatherId); // quarantined father -> null FK
Assert.Equal((await db.Gerbils.SingleAsync(g => g.ExternalRef == "goodma")).Id, litter.MotherId);
}
finally { try { Directory.Delete(dir, recursive: true); } catch { } }
}
[Fact]
public async Task Decision_resolved_animal_loads_and_is_counted()
{
// extract.py clears the conflict + sets resolvedByDecision when a human conflict-decision
// un-quarantines an animal; the loader must then LOAD it and surface the count.
var dir = Path.Combine(Path.GetTempPath(), "dec-" + Guid.NewGuid().ToString("N"));
Directory.CreateDirectory(dir);
try
{
File.WriteAllText(Path.Combine(dir, "litters.json"), "[]");
File.WriteAllText(Path.Combine(dir, "animals.json"), """
[
{"id":"firefly","name":"Firefly","dob":"18.12.2019","death":"","farbschlag":"Agouti",
"genotype":{"mapped8locus":{"A":["A","a"],"D":["D","?"]},"rawGenotype":"Aa D-","unmappedTokens":[]},
"conflict":false,"resolvedByDecision":true}
]
""");
using var db = NewDb();
var report = await new ImportService(db, dir, dir).RunAsync(execute: true);
Assert.Equal(1, report.Animals.ConflictsResolvedByDecision);
Assert.True(await db.Gerbils.AnyAsync(g => g.ExternalRef == "firefly")); // loaded, not quarantined
Assert.Equal(0, report.Animals.Quarantined.Conflicts);
}
finally { try { Directory.Delete(dir, recursive: true); } catch { } }
}
[Fact]
public void ComposeGenotype_strips_carets_and_fills_missing_loci()
{
@@ -139,7 +342,8 @@ namespace GerbilManager.Tests
[
{"id":"a1","name":"Kind Eins","dob":"01.02.2020","death":"","gender":null,
"farbschlag":"Agouti","farbschlagVariants":["Agouti"],
"genotype":{"mapped8locus":{"A":["a","a"],"C":["C","C"],"D":["D","?"],"E":["e","e^f"]},"rawGenotype":"aa CC D- ee[f]","unmappedTokens":[]},
"genotype":{"mapped8locus":{"A":["a","a"],"C":["C","C"],"D":["D","?"],"E":["e","e^f"],"Sls":["Sl","sl"]},"rawGenotype":"aa CC D- ee[f] WP dea WFNZ","unmappedTokens":[]},
"deaf":true,"tags":["WFNZ"],
"zucht":"","parentRefs":[],"photos":[],"sourceFiles":["f1"],"conflict":false,
"litterRef":{"litterId":"L1","method":"geburtsdatum+eltern","confidence":"hoch"}},
{"id":"a2","name":"Streit","dob":"01.01.2019","death":"","gender":null,

View File

@@ -0,0 +1,217 @@
using System.Net;
using System.Net.Http.Json;
using System.Text;
using System.Text.Json;
using GerbilManagerWebAPI.Inbox;
using GerbilManagerWebAPI.Models;
using GerbilManagerWebAPI.SaleAd;
using Microsoft.Extensions.DependencyInjection;
using Microsoft.Extensions.Options;
namespace GerbilManager.Tests
{
/// <summary>
/// INBOX-2: KI-Antwortentwurf — Prompt-Assembly (inkl. Datenminimierung +
/// Zitat-/Signatur-Stripping), 503-unkonfiguriert, und der Endpoint-Round-Trip
/// gegen einen Stub-Anbieter (Entwurf wird gespeichert UND zurückgegeben).
/// </summary>
public class InboxDraftTests
{
private static Request SampleRequest() => new()
{
Id = Guid.NewGuid(),
GmailMessageId = $"<{Guid.NewGuid():N}@mail.example>",
FromAddress = "anna.musterfrau@example.de",
FromName = "Anna Musterfrau",
Subject = "Anfrage: zwei Weibchen?",
BodyText = "Hallo! Habt ihr aktuell zwei junge Weibchen zur Abgabe?\nViele Grüße, Anna",
ReceivedAt = DateTimeOffset.UtcNow,
};
// ── Zitat-/Signatur-Stripping ──────────────────────────────────────
[Fact]
public void StripQuotedText_entfernt_Zitate_Signatur_und_Outlook_Header()
{
var body = string.Join('\n',
"Hallo, habt ihr Tiere abzugeben?",
"> alte zitierte Zeile",
"Von: jemand@example.de",
"Danke!",
"-- ",
"Anna Musterfrau",
"Musterweg 1");
var stripped = DraftReplyService.StripQuotedText(body);
Assert.Contains("Hallo, habt ihr Tiere abzugeben?", stripped);
Assert.Contains("Danke!", stripped);
Assert.DoesNotContain("alte zitierte Zeile", stripped);
Assert.DoesNotContain("jemand@example.de", stripped);
Assert.DoesNotContain("Musterweg 1", stripped); // Signatur weg
}
[Fact]
public void StripQuotedText_schneidet_beim_Gmail_Zitat_Intro_ab()
{
var body = "Meine Frage steht oben.\nAm 05.06.2026 um 10:00 schrieb Zucht der kleinen Chaoten:\n> früherer Verlauf";
var stripped = DraftReplyService.StripQuotedText(body);
Assert.Equal("Meine Frage steht oben.", stripped);
}
// ── Prompt-Assembly + Datenminimierung ─────────────────────────────
[Fact]
public void UserPrompt_enthält_Anfrage_und_Abgabeliste_aber_keine_Mailadresse()
{
var prompt = DraftReplyService.BuildUserPrompt(SampleRequest(),
[new DraftReplyService.ForSaleAnimal("Frieda", "Gold"),
new DraftReplyService.ForSaleAnimal("Fine", null)]);
Assert.Contains("Von: Anna Musterfrau", prompt);
Assert.Contains("Betreff: Anfrage: zwei Weibchen?", prompt);
Assert.Contains("zwei junge Weibchen zur Abgabe", prompt);
Assert.Contains("- Frieda (Gold)", prompt);
Assert.Contains("- Fine", prompt);
// Datenminimierung: die E-Mail-Adresse der Absenderin geht NICHT zum Anbieter
Assert.DoesNotContain("anna.musterfrau@example.de", prompt);
}
[Fact]
public void UserPrompt_ohne_Abgabetiere_enthält_keine_Liste()
{
var prompt = DraftReplyService.BuildUserPrompt(SampleRequest(), []);
Assert.DoesNotContain("abzugebende Tiere", prompt);
}
[Fact]
public void SystemPrompt_verlangt_Entwurf_ohne_Preise_und_ohne_erfundene_Fakten()
{
var prompt = DraftReplyService.BuildSystemPrompt();
Assert.Contains("ENTWERFEN", prompt);
Assert.Contains("KEINE Fakten erfinden", prompt);
Assert.Contains("Keine Preise", prompt);
Assert.Contains("keine Adressen", prompt);
}
// ── 503: unkonfiguriert (Service-Ebene) ────────────────────────────
[Fact]
public async Task DraftAsync_meldet_NotConfigured_ohne_AI_Konfiguration()
{
var service = new DraftReplyService(
new HttpClient(new StubHandler(_ => throw new InvalidOperationException("darf nicht aufgerufen werden"))),
Options.Create(new AiOptions()));
var result = await service.DraftAsync(SampleRequest(), []);
Assert.Equal(GerbilManagerWebAPI.Ai.AiCallStatus.NotConfigured, result.Status);
}
// ── Endpoint-Round-Trip ────────────────────────────────────────────
[Fact]
public async Task Draft_Endpoint_meldet_503_AiKeyMissing_wenn_unkonfiguriert()
{
using var factory = new ApiFactory();
var id = await SeedRequestAsync(factory);
var response = await factory.CreateClient().PostAsync($"/api/requests/{id}/draft", null);
Assert.Equal(HttpStatusCode.ServiceUnavailable, response.StatusCode);
Assert.Contains("AiKeyMissing", await response.Content.ReadAsStringAsync());
}
[Fact]
public async Task Draft_Endpoint_speichert_und_liefert_den_Entwurf_des_Stubs()
{
const string canned = "Hallo Anna,\n\nschön, dass du fragst — aktuell suchen Frieda und Fine ein Zuhause.\n\nHerzliche Grüße";
var stub = new StubHandler(_ => Canned(canned));
using var factory = new ApiFactory
{
ConfigureTestServices = services =>
{
services.PostConfigure<AiOptions>(o =>
{
o.BaseUrl = "https://api.example.com/v1";
o.ApiKey = "test";
o.Model = "test-model";
});
services.AddHttpClient<DraftReplyService>()
.ConfigurePrimaryHttpMessageHandler(() => stub);
},
};
var id = await SeedRequestAsync(factory, alsoForSaleGerbil: true);
var client = factory.CreateClient();
var response = await client.PostAsync($"/api/requests/{id}/draft", null);
Assert.Equal(HttpStatusCode.OK, response.StatusCode);
using var dto = JsonDocument.Parse(await response.Content.ReadAsStringAsync());
Assert.Equal(canned, dto.RootElement.GetProperty("draftReply").GetString());
// Persistiert: erneutes GET liefert den Entwurf
var again = await client.GetFromJsonAsync<JsonElement>($"/api/requests/{id}");
Assert.Equal(canned, again.GetProperty("draftReply").GetString());
// Wire-Privacy: Anfragetext + ForSale-Tier gingen zum Anbieter, die
// Mailadresse der Absenderin NICHT.
Assert.NotNull(stub.LastRequestBody);
Assert.Contains("zwei junge Weibchen", stub.LastRequestBody);
Assert.Contains("Aki", stub.LastRequestBody);
Assert.DoesNotContain("anna.musterfrau@example.de", stub.LastRequestBody);
}
// ── Helfer ─────────────────────────────────────────────────────────
private static async Task<Guid> SeedRequestAsync(ApiFactory factory, bool alsoForSaleGerbil = false)
{
using var scope = factory.Services.CreateScope();
var db = scope.ServiceProvider.GetRequiredService<ApplicationContext>();
var request = SampleRequest();
db.Add(request);
if (alsoForSaleGerbil)
{
db.Add(new Gerbil
{
Id = Guid.NewGuid(),
Name = "Aki",
Gender = Gender.female,
Status = GerbilStatus.ForSale,
});
}
await db.SaveChangesAsync();
return request.Id;
}
private static HttpResponseMessage Canned(string content)
{
var completion = new
{
choices = new[] { new { message = new { role = "assistant", content } } },
};
return new HttpResponseMessage(HttpStatusCode.OK)
{
Content = new StringContent(JsonSerializer.Serialize(completion),
Encoding.UTF8, "application/json"),
};
}
/// <summary>HttpMessageHandler-Stub (Variante von SaleAdTests, hier mit Body-Capture).</summary>
private sealed class StubHandler(Func<HttpRequestMessage, HttpResponseMessage> respond)
: HttpMessageHandler
{
public string? LastRequestBody { get; private set; }
protected override async Task<HttpResponseMessage> SendAsync(
HttpRequestMessage request, CancellationToken cancellationToken)
{
LastRequestBody = request.Content is null
? null
: await request.Content.ReadAsStringAsync(cancellationToken);
return respond(request);
}
}
}
}

View File

@@ -73,6 +73,63 @@ namespace GerbilManager.Tests
Assert.Contains("Großer und kleiner Bruder Dynamik", prompt);
}
// ── FEAT-14c: Charakterbogen (Traits + Notiz) im Prompt ────────────
[Fact]
public void UserPrompt_enthält_Traits_und_Charakternotiz()
{
var request = new SaleAdRequest(
[new SaleAdAnimal("Balu", "CP-Agouti", "2024-03-12", "alte Verwaltungsnotiz",
Traits: ["zutraulich", "buddelt gern"],
CharacterNote: "klettert abends auf die Hand")],
"FREI", "");
var prompt = SaleAdPromptBuilder.BuildUserPrompt(request);
Assert.Contains("Charakter: zutraulich, buddelt gern", prompt);
Assert.Contains("Charakter-Notiz: klettert abends auf die Hand", prompt);
}
[Fact]
public void UserPrompt_bevorzugt_Charakterbogen_vor_generischen_Notizen()
{
// Traits vorhanden -> die generische Notiz (oft Verwaltungs-Info)
// gehört NICHT in den Prompt.
var request = new SaleAdRequest(
[new SaleAdAnimal("Balu", null, null, "Käfig wurde am 3.5. gereinigt",
Traits: ["neugierig"])],
"FREI", "");
var prompt = SaleAdPromptBuilder.BuildUserPrompt(request);
Assert.Contains("Charakter: neugierig", prompt);
Assert.DoesNotContain("Notizen:", prompt);
Assert.DoesNotContain("Käfig wurde", prompt);
}
[Fact]
public void UserPrompt_fällt_ohne_Charakterbogen_auf_Notizen_zurück()
{
// Kein Charakterbogen (null bzw. leer) -> Notizen wie bisher.
var request = new SaleAdRequest(
[
new SaleAdAnimal("Mysti", null, null, "sehr verschmust", Traits: null),
new SaleAdAnimal("Bo", null, null, "mag Kolbenhirse", Traits: []),
],
"FREI", "");
var prompt = SaleAdPromptBuilder.BuildUserPrompt(request);
Assert.Contains("Notizen: sehr verschmust", prompt);
Assert.Contains("Notizen: mag Kolbenhirse", prompt);
Assert.DoesNotContain("Charakter:", prompt);
}
[Fact]
public void SystemPrompt_verlangt_fließende_Prosa_statt_Stichwortliste()
{
var prompt = SaleAdPromptBuilder.BuildSystemPrompt();
Assert.Contains("Charakter-Eigenschaften", prompt);
Assert.Contains("niemals als Aufzählung", prompt);
}
[Theory]
[InlineData("2024-03-12", "12.03.2024")]
[InlineData("kaputt", "kaputt")] // unparsebar -> unverändert durchreichen

View File

@@ -0,0 +1,331 @@
using System.Net;
using System.Text.Json;
using System.Text.Json.Nodes;
using GerbilManagerWebAPI.Cms;
namespace GerbilManager.Tests;
/// <summary>
/// WEB-1: static site renderer — snapshot → HTML file map.
/// All tests are pure unit tests (no DB, no HTTP); they build JsonObject
/// snapshots directly and assert on rendered HTML.
/// </summary>
public class SiteRendererTests
{
// ── Snapshot builder helpers ─────────────────────────────────────────────
private static JsonObject MakeSnapshot(params (string slug, string title, JsonArray blocks)[] pages)
{
var navOrder = new JsonArray();
var pagesArr = new JsonArray();
foreach (var (slug, title, blocks) in pages)
{
navOrder.Add(slug);
pagesArr.Add(new JsonObject
{
["slug"] = slug,
["title"] = title,
["seoDescription"] = $"SEO für {title}",
["status"] = "Published",
["blocks"] = blocks,
});
}
return new JsonObject
{
["site"] = new JsonObject { ["defaultLocale"] = "de", ["navOrder"] = navOrder },
["pages"] = pagesArr,
};
}
private static JsonArray Blocks(params JsonObject[] blocks)
{
var arr = new JsonArray();
int i = 0;
foreach (var b in blocks) { b["order"] = i++; arr.Add(b); }
return arr;
}
private static JsonObject HeadingBlock(string text, int level = 1) => new()
{
["type"] = "Heading",
["data"] = new JsonObject { ["text"] = text, ["level"] = level },
};
private static JsonObject RichTextBlock(string md) => new()
{
["type"] = "RichText",
["data"] = new JsonObject { ["markdown"] = md },
};
private static JsonObject ImageBlock(string url, string alt) => new()
{
["type"] = "Image",
["data"] = new JsonObject { ["url"] = url, ["alt"] = alt },
};
private static JsonObject ContactInfoBlock(string name, string email, string phone) => new()
{
["type"] = "ContactInfo",
["data"] = new JsonObject { ["name"] = name, ["email"] = email, ["phone"] = phone },
};
private static JsonObject AbgabetiereBlock(string intro, params (string name, string farbe, string? group, string? photo)[] animals)
{
var animalArr = new JsonArray();
foreach (var (name, farbe, group, photo) in animals)
{
var photos = new JsonArray();
if (photo is not null) photos.Add(photo);
animalArr.Add(new JsonObject
{
["name"] = name,
["farbschlag"] = farbe,
["group"] = group,
["photos"] = photos,
["aiSaleText"] = (JsonNode?)null,
});
}
return new JsonObject
{
["type"] = "AbgabetiereList",
["data"] = new JsonObject { ["mode"] = "auto", ["intro"] = intro, ["animals"] = animalArr },
};
}
// ── Tests ────────────────────────────────────────────────────────────────
[Fact]
public void Render_produces_index_html_for_start_page()
{
var snap = MakeSnapshot(("start", "Startseite", Blocks(HeadingBlock("Willkommen"))));
var files = SiteRenderer.Render(snap);
Assert.True(files.ContainsKey("index.html"));
}
[Fact]
public void Render_produces_slug_subfolder_for_non_start_pages()
{
var snap = MakeSnapshot(
("start", "Start", Blocks()),
("abgabetiere", "Abgabetiere", Blocks()));
var files = SiteRenderer.Render(snap);
Assert.True(files.ContainsKey("abgabetiere/index.html"));
}
[Fact]
public void Render_includes_css_asset()
{
var snap = MakeSnapshot(("start", "Start", Blocks()));
var files = SiteRenderer.Render(snap);
Assert.True(files.ContainsKey(SiteRenderer.CssPath));
Assert.Contains("site-header", files[SiteRenderer.CssPath]);
}
[Fact]
public void Page_html_is_valid_doctype_and_contains_title()
{
var snap = MakeSnapshot(("start", "Startseite", Blocks(HeadingBlock("Hallo"))));
var html = SiteRenderer.Render(snap)["index.html"];
Assert.StartsWith("<!DOCTYPE html>", html);
Assert.Contains("<title>Startseite |", html);
Assert.Contains("lang=\"de\"", html);
}
[Fact]
public void Page_html_includes_seo_description()
{
var snap = MakeSnapshot(("start", "Start", Blocks()));
// seoDescription is set to "SEO für Start" by our helper
var html = SiteRenderer.Render(snap)["index.html"];
Assert.Contains("meta name=\"description\"", html);
Assert.Contains("SEO für Start", html);
}
[Fact]
public void Nav_links_are_rendered_with_all_slugs()
{
var snap = MakeSnapshot(
("start", "Start", Blocks()),
("abgabetiere", "Abgabetiere", Blocks()),
("kontakt", "Kontakt", Blocks()));
var html = SiteRenderer.Render(snap)["index.html"];
Assert.Contains("Abgabetiere", html);
Assert.Contains("Kontakt", html);
}
[Fact]
public void Current_page_nav_link_has_aria_current()
{
var snap = MakeSnapshot(
("start", "Start", Blocks()),
("abgabetiere", "Abgabetiere", Blocks()));
var abgHtml = SiteRenderer.Render(snap)["abgabetiere/index.html"];
Assert.Contains("aria-current=\"page\"", abgHtml);
}
[Fact]
public void Heading_block_renders_h_tag_with_text()
{
var snap = MakeSnapshot(("start", "Start", Blocks(HeadingBlock("Meine Rennmäuse", 2))));
var html = SiteRenderer.Render(snap)["index.html"];
Assert.Contains("<h2", html);
Assert.Contains("Meine Rennmäuse", html);
}
[Fact]
public void RichText_block_renders_markdown_bold_and_paragraph()
{
var snap = MakeSnapshot(("start", "Start", Blocks(RichTextBlock("**Hallo** Welt"))));
var html = SiteRenderer.Render(snap)["index.html"];
Assert.Contains("<strong>Hallo</strong>", html);
}
[Fact]
public void RichText_block_renders_markdown_list()
{
var snap = MakeSnapshot(("start", "Start", Blocks(RichTextBlock("- Eins\n- Zwei"))));
var html = SiteRenderer.Render(snap)["index.html"];
Assert.Contains("<ul>", html);
Assert.Contains("<li>", html);
Assert.Contains("Eins", html);
}
[Fact]
public void Image_block_renders_img_with_alt()
{
var snap = MakeSnapshot(("start", "Start", Blocks(ImageBlock("/img/maus.jpg", "Eine Rennmaus"))));
var html = SiteRenderer.Render(snap)["index.html"];
Assert.Contains("src=\"/img/maus.jpg\"", html);
Assert.Contains("alt=\"Eine Rennmaus\"", html);
}
[Fact]
public void ContactInfo_block_renders_name_and_email()
{
var snap = MakeSnapshot(("kontakt", "Kontakt",
Blocks(ContactInfoBlock("Kleine Chaoten", "info@kleine-chaoten.de", "+49 123 456789"))));
var html = SiteRenderer.Render(snap)["kontakt/index.html"];
Assert.Contains("Kleine Chaoten", html);
Assert.Contains("info@kleine-chaoten.de", html);
Assert.Contains("+49 123 456789", html);
}
[Fact]
public void AbgabetiereList_renders_animal_cards_with_name_and_farbschlag()
{
var snap = MakeSnapshot(("abgabetiere", "Abgabetiere",
Blocks(AbgabetiereBlock("Aktuelle Tiere:", ("Krümel", "CP-Agouti", "Großbecken", "/photos/files/abc.jpg")))));
var html = SiteRenderer.Render(snap)["abgabetiere/index.html"];
Assert.Contains("Krümel", html);
Assert.Contains("CP-Agouti", html);
Assert.Contains("Großbecken", html);
Assert.Contains("/photos/files/abc.jpg", html);
Assert.Contains("cms-animal-card", html);
}
[Fact]
public void AbgabetiereList_empty_shows_placeholder_text()
{
var snap = MakeSnapshot(("abgabetiere", "Abgabetiere",
Blocks(AbgabetiereBlock(""))));
var html = SiteRenderer.Render(snap)["abgabetiere/index.html"];
Assert.Contains("cms-abgabe-empty", html);
}
[Fact]
public void Draft_pages_are_excluded_from_output()
{
var pages = new JsonArray
{
new JsonObject { ["slug"] = "start", ["title"] = "Start", ["status"] = "Published",
["seoDescription"] = (JsonNode?)null, ["blocks"] = new JsonArray() },
new JsonObject { ["slug"] = "entwurf", ["title"] = "Entwurf", ["status"] = "Draft",
["seoDescription"] = (JsonNode?)null, ["blocks"] = new JsonArray() },
};
var snap = new JsonObject
{
["site"] = new JsonObject { ["defaultLocale"] = "de", ["navOrder"] = new JsonArray { "start", "entwurf" } },
["pages"] = pages,
};
var files = SiteRenderer.Render(snap);
Assert.True(files.ContainsKey("index.html"));
Assert.False(files.ContainsKey("entwurf/index.html"));
}
[Fact]
public void Html_encoding_prevents_xss_in_page_title()
{
var snap = MakeSnapshot(("start", "<script>alert(1)</script>", Blocks()));
var html = SiteRenderer.Render(snap)["index.html"];
Assert.DoesNotContain("<script>", html);
Assert.Contains("&lt;script&gt;", html);
}
[Fact]
public void Render_six_seeded_pages_produces_expected_paths()
{
var snap = MakeSnapshot(
("start", "Startseite", Blocks()),
("ueber-die-zucht", "Über die Zucht", Blocks()),
("abgabetiere", "Abgabetiere", Blocks(AbgabetiereBlock(""))),
("abgabebedingungen", "Abgabebedingungen", Blocks()),
("farben-genetik", "Farben & Genetik", Blocks()),
("kontakt", "Kontakt", Blocks()));
var files = SiteRenderer.Render(snap);
Assert.True(files.ContainsKey("index.html"));
Assert.True(files.ContainsKey("ueber-die-zucht/index.html"));
Assert.True(files.ContainsKey("abgabetiere/index.html"));
Assert.True(files.ContainsKey("abgabebedingungen/index.html"));
Assert.True(files.ContainsKey("farben-genetik/index.html"));
Assert.True(files.ContainsKey("kontakt/index.html"));
Assert.True(files.ContainsKey(SiteRenderer.CssPath));
// 6 pages + 1 CSS
Assert.Equal(7, files.Count);
}
// ── Markdown tests ───────────────────────────────────────────────────────
[Theory]
[InlineData("**fett**", "<strong>fett</strong>")]
[InlineData("*kursiv*", "<em>kursiv</em>")]
[InlineData("`code`", "<code>code</code>")]
public void Markdown_inline_renders_correctly(string md, string expectedFragment)
{
var html = SiteRenderer.MarkdownToHtml(md);
Assert.Contains(expectedFragment, html);
}
[Fact]
public void Markdown_heading_renders_h_tag()
{
var html = SiteRenderer.MarkdownToHtml("## Abschnitt");
Assert.Contains("<h2>Abschnitt</h2>", html);
}
[Fact]
public void Markdown_xss_text_is_encoded()
{
var html = SiteRenderer.MarkdownToHtml("<script>alert(1)</script>");
Assert.DoesNotContain("<script>", html);
}
}
/// <summary>WEB-1: smoke-test the /api/render-site endpoint via ApiFactory.</summary>
public class RenderSiteEndpointTests : IClassFixture<ApiFactory>
{
private readonly HttpClient _client;
public RenderSiteEndpointTests(ApiFactory factory) => _client = factory.CreateClient();
[Fact]
public async Task RenderSite_returns_file_list_with_css_and_pages()
{
var json = await _client.GetStringAsync("/api/render-site");
var files = JsonSerializer.Deserialize<List<RenderEntry>>(json,
new JsonSerializerOptions { PropertyNameCaseInsensitive = true })!;
Assert.Contains(files, f => f.Path == SiteRenderer.CssPath);
Assert.Contains(files, f => f.Path == "index.html");
Assert.All(files, f => Assert.True(f.Size > 0));
}
private record RenderEntry(string Path, int Size);
}

View File

@@ -0,0 +1,99 @@
using System.Net.Http.Headers;
using System.Text;
using System.Text.Json;
using System.Text.Json.Serialization;
using GerbilManagerWebAPI.SaleAd;
using Microsoft.Extensions.Options;
namespace GerbilManagerWebAPI.Ai
{
public enum AiCallStatus
{
Ok,
/// <summary>AI section not (fully) configured -> callers map to 503 "AiKeyMissing".</summary>
NotConfigured,
/// <summary>Provider call failed -> callers map to 502 "AiUpstreamError".</summary>
UpstreamError,
}
public sealed record AiCallResult(AiCallStatus Status, string? Text, string? Error = null);
/// <summary>
/// INBOX-2: provider-agnostic chat client, extracted from SaleAdService so the
/// reply-draft (and future AI features) reuse the SAME wire implementation:
/// plain JSON POST to {AI:BaseUrl}/chat/completions with a Bearer key — covers
/// Gemini (compat endpoint), Groq, Mistral, local Ollama; no vendor SDK.
/// Configuration stays the single AI section (AiOptions, env-only).
/// </summary>
public sealed class OpenAiChatClient(HttpClient http, IOptions<AiOptions> options)
{
private static readonly JsonSerializerOptions JsonOptions = new()
{
PropertyNamingPolicy = JsonNamingPolicy.CamelCase,
DefaultIgnoreCondition = JsonIgnoreCondition.WhenWritingNull,
};
public async Task<AiCallResult> CompleteAsync(
string systemPrompt, string userPrompt, CancellationToken ct = default)
{
var ai = options.Value;
if (!ai.IsConfigured)
{
return new AiCallResult(AiCallStatus.NotConfigured, null,
"KI-Anbieter ist nicht konfiguriert (AI__BaseUrl / AI__ApiKey / AI__Model).");
}
var payload = new ChatRequest(
Model: ai.Model!,
Messages:
[
new ChatMessage("system", systemPrompt),
new ChatMessage("user", userPrompt),
],
Temperature: 0.7);
using var httpRequest = new HttpRequestMessage(HttpMethod.Post, BuildCompletionsUri(ai.BaseUrl!))
{
Content = new StringContent(JsonSerializer.Serialize(payload, JsonOptions),
Encoding.UTF8, "application/json"),
};
httpRequest.Headers.Authorization = new AuthenticationHeaderValue("Bearer", ai.ApiKey);
try
{
using var response = await http.SendAsync(httpRequest, ct);
var body = await response.Content.ReadAsStringAsync(ct);
if (!response.IsSuccessStatusCode)
{
return new AiCallResult(AiCallStatus.UpstreamError, null,
$"KI-Anbieter antwortete mit HTTP {(int)response.StatusCode}.");
}
var completion = JsonSerializer.Deserialize<ChatResponse>(body, JsonOptions);
var text = completion?.Choices?.FirstOrDefault()?.Message?.Content?.Trim();
return string.IsNullOrWhiteSpace(text)
? new AiCallResult(AiCallStatus.UpstreamError, null,
"KI-Antwort enthielt keinen Text.")
: new AiCallResult(AiCallStatus.Ok, text);
}
catch (Exception ex) when (ex is HttpRequestException or TaskCanceledException or JsonException)
{
return new AiCallResult(AiCallStatus.UpstreamError, null,
$"KI-Anbieter nicht erreichbar: {ex.Message}");
}
}
/// <summary>{BaseUrl}/chat/completions — tolerant of a trailing slash on BaseUrl.</summary>
internal static Uri BuildCompletionsUri(string baseUrl) =>
new($"{baseUrl.TrimEnd('/')}/chat/completions");
// ── OpenAI-compatible wire records (request + the slice of the response we read) ──
internal sealed record ChatRequest(string Model, List<ChatMessage> Messages, double? Temperature);
internal sealed record ChatMessage(string Role, string Content);
internal sealed record ChatResponse(List<ChatChoice>? Choices);
internal sealed record ChatChoice(ChatMessage? Message);
}
}

View File

@@ -55,6 +55,9 @@ public class ApplicationContext : DbContext
e.Property(g => g.Gender).HasConversion<string>();
e.Property(g => g.Status).HasConversion<string>();
// Residency defaults to true (own stock unless explicitly marked external).
e.Property(g => g.IsResident).HasDefaultValue(true);
// FEAT-14: character traits stored as a JSON text column (works on both
// Npgsql and the SQLite test host; opaque labels, no backend vocabulary).
var traitsConverter = new Microsoft.EntityFrameworkCore.Storage.ValueConversion.ValueConverter<List<string>, string>(
@@ -234,7 +237,6 @@ public class ApplicationContext : DbContext
("Hermelin", "aa chch DD EE GG PP spsp rere"),
("Himalaya", "AA chch DD EE GG PP spsp rere"),
("Zobel", "aa cchmcchm DD EE gg PP spsp rere"),
("Schwarzschimmel", "AA CC DD efef GG PP spsp rere"),
("Rotaugenschimmel", "AA CC DD efef GG pp spsp rere"),
("Agouti", "AA CC DD EE GG PP spsp rere"),
("Schwarz", "aa CC DD EE GG PP spsp rere"),
@@ -254,55 +256,44 @@ public class ApplicationContext : DbContext
("C-Separator", "aa CC DD ee gg pp spsp rere"),
("Elfenbein", "AA CC DD EE gg pp spsp rere"),
("Kohlfuchs", "aa CC DD ee GG PP spsp rere"),
("Marder", "aa cchmcchm DD EE GG PP spsp rere"),
("Siam (Marder-Hell)", "aa cchmcchm DD EE GG PP spsp rere"),
("Polarfuchs", "AA CC DD ee gg PP spsp rere"),
("Saphir", "aa CC DD EE GG pp spsp rere"),
("Schimmel (Orangeschimmel)", "AA CC DD efef GG PP spsp rere"),
("Orangeschimmel", "AA CC DD efef GG PP spsp rere"),
("Topas", "AA CC DD EE GG pp spsp rere"),
("Platin-Hell", "aa CC DD EE GG pp spsp rere"),
("Agouti dd", "AA CC dd EE GG PP spsp rere"),
("Silberagouti dd", "AA CC dd EE gg PP spsp rere"),
("Kohlfuchs dd", "aa CC dd ee GG PP spsp rere"),
("Anthrazit dd", "aa CC dd EE gg PP spsp rere"),
("Agouti CP-Hell", "AA cchmcchm DD EE GG PP spsp rere"),
("Blaufuchs CP", "aa cchmcchm DD ee gg PP spsp rere"),
("Polarfuchsschimmel", "AA CC DD efef gg PP spsp rere"),
("Silberschimmel", "AA CC DD efef gg PP spsp rere"),
("Polarfuchsschimmel", "AA CC DD efef gg PP spsp rere"),
("Algierfuchsschimmel", "AA CC DD efef GG PP spsp rere"),
("Polarfuchs-Hell CP", "AA cchmcchm DD ee gg PP spsp rere"),
("Kohlfuchsschimmel", "aa CC DD efef GG PP spsp rere"),
("Blaufuchsschimmel", "aa CC DD efef gg PP spsp rere"),
("Kohlfuchs, hell", "aa CC DD ee GG PP spsp rere"),
("Goldfuchs, hell", "AA CC DD ee GG pp spsp rere"),
("Goldfuchsschimmel", "AA CC DD efef GG pp spsp rere"),
("Gold-Hell", "AA CC DD EE GG pp spsp rere"),
("Siam (Marder-Hell) dd", "aa cchmcchm dd EE GG PP spsp rere"),
("Marder dd", "aa cchmcchm dd EE GG PP spsp rere"),
("Zobel-Hell", "aa cchmcchm DD EE gg PP spsp rere"),
("Silberagouti dd CP", "AA cchmcchm dd EE gg PP spsp rere"),
("Silberagouti-Hell dd CP", "AA cchmcchm dd EE gg PP spsp rere"),
("Agouti dd CP", "AA cchmcchm dd EE GG PP spsp rere"),
("Agouti-Hell dd CP", "AA cchmcchm dd EE GG PP spsp rere"),
("Blaufuchs, hell", "aa CC DD ee gg PP spsp rere"),
("Rotfuchsschimmel", "aa CC DD efef GG pp spsp rere"),
("Polarfuchs, hell", "AA CC DD ee gg PP spsp rere"),
("Kohlfuchsschimmel, hell", "aa CC DD efef GG PP spsp rere"),
("Rotfuchs, hell", "aa CC DD ee GG pp spsp rere"),
("Zobel dd", "aa cchmcchm dd EE gg PP spsp rere"),
("Kohlfuchs-Hell", "aa CC DD ee GG PP spsp rere"),
("Kohlfuchs CP", "aa cchmcchm DD ee GG PP spsp rere"),
("Algierfuchs CP", "AA cchmcchm DD ee GG PP spsp rere"),
("Silberagouti CP", "AA cchmcchm DD EE gg PP spsp rere"),
("Agouti CP", "AA cchmcchm DD EE GG PP spsp rere"),
("Algierfuchs-Hell CP", "AA cchmcchm DD ee GG PP spsp rere"),
("Kohlfuchs,hell CP", "aa cchmcchm DD ee GG PP spsp rere"),
("Polarfuchs CP", "AA cchmcchm DD ee gg PP spsp rere"),
("Algierfuchs, hell", "AA CC DD ee GG PP spsp rere"),
("Topas dd", "AA CC dd EE GG pp spsp rere"),
("Zobel-Hell dd", "aa cchmcchm dd EE gg PP spsp rere"),
("Kohlfuchsschimmel CP", "aa cchmcchm DD efef GG PP spsp rere"),
("Blaufuchs dd", "aa CC dd ee gg PP spsp rere"),
("Blaufuchs dd", "aa CC dd ee gg pp spsp rere"),
("Marder", "aa cchmcchm DD EE GG PP spsp rere"),
("Siam", "aa cchmch DD EE GG PP spsp rere"),
("Zobel-Hell", "aa cchmch DD EE gg PP spsp rere"),
("CP-Agouti", "AA cchmcchm DD EE GG PP spsp rere"),
("CP-Silberagouti", "AA cchmcchm DD EE gg PP spsp rere"),
("CP-Algierfuchs", "AA cchmcchm DD ee GG PP spsp rere"),
("CP-Polarfuchs", "AA cchmcchm DD ee gg PP spsp rere"),
("CP-Fuchs", "AA cchmcchm dd ee GG PP spsp rere"),
("CP-Fuchs-Hell", "AA cchmch dd ee GG PP spsp rere"),
("CP-Blaufuchs", "AA cchmcchm dd ee gg PP spsp rere"),
("CP-Orangeschimmel", "AA cchmcchm DD efef GG PP spsp rere"),
};
var rows = new ColorVariety[catalog.Length];

View File

@@ -0,0 +1,484 @@
// System.Net.WebUtility intentionally NOT used — its HtmlEncode encodes all non-ASCII
// characters as named entities (e.g. ä→&auml;), which is wrong for UTF-8 pages.
using System.Text;
using System.Text.Json.Nodes;
using System.Text.RegularExpressions;
namespace GerbilManagerWebAPI.Cms
{
/// <summary>
/// WEB-1: Deterministic static site renderer. Consumes a CMS snapshot (from
/// SiteSnapshotService.BuildAsync) and produces a flat path→content dictionary
/// ready for upload to Cloudflare Pages. No external dependencies; Markdown
/// support handles the common subset used in RichText blocks.
/// </summary>
public static class SiteRenderer
{
public const string SiteName = "Kleine Chaoten";
public const string CssPath = "assets/site.css";
// ── Public entry point ───────────────────────────────────────────────
/// <summary>
/// Renders the snapshot to a flat file map (relative-path → file-content).
/// Only <c>Published</c> pages are included. The "start" page maps to
/// <c>index.html</c>; all others to <c>{slug}/index.html</c>.
/// </summary>
public static IReadOnlyDictionary<string, string> Render(JsonObject snapshot)
{
var files = new Dictionary<string, string>(StringComparer.OrdinalIgnoreCase);
files[CssPath] = SiteCss();
var navSlugs = NavSlugs(snapshot);
var pages = snapshot["pages"] as JsonArray ?? [];
foreach (var node in pages)
{
if (node is not JsonObject page) continue;
if (Str(page["status"]) != "Published") continue;
var slug = Str(page["slug"]) ?? "page";
var title = Str(page["title"]) ?? slug;
var seoDes = Str(page["seoDescription"]);
var blocks = page["blocks"] as JsonArray ?? [];
var cssHref = slug == "start" ? CssPath : $"../{CssPath}";
var body = RenderBlocks(blocks, slug);
var html = PageHtml(title, seoDes, body, navSlugs, slug, cssHref);
var path = slug == "start" ? "index.html" : $"{slug}/index.html";
files[path] = html;
}
return files;
}
// ── Block rendering ──────────────────────────────────────────────────
private static string RenderBlocks(JsonArray blocks, string currentSlug)
{
var sb = new StringBuilder();
foreach (var node in blocks.OrderBy(b => b?["order"]?.GetValue<int>() ?? 0))
{
if (node is not JsonObject b) continue;
var type = Str(b["type"]);
var data = b["data"] as JsonObject ?? [];
sb.Append(type switch
{
"Heading" => RenderHeading(data),
"RichText" => RenderRichText(data),
"Image" => RenderImage(data),
"Gallery" => RenderGallery(data),
"ContactInfo" => RenderContactInfo(data),
"AbgabetiereList" => RenderAbgabetiereList(data),
_ => string.Empty,
});
}
return sb.ToString();
}
private static string RenderHeading(JsonObject d)
{
var level = d["level"]?.GetValue<int>() ?? 2;
level = Math.Clamp(level, 1, 6);
var text = H(Str(d["text"]) ?? "");
return $"\n<h{level} class=\"cms-heading\">{text}</h{level}>\n";
}
private static string RenderRichText(JsonObject d)
{
var md = Str(d["markdown"]) ?? "";
return $"\n<div class=\"cms-richtext\">{MarkdownToHtml(md)}</div>\n";
}
private static string RenderImage(JsonObject d)
{
var url = H(Str(d["url"]) ?? "");
var alt = H(Str(d["alt"]) ?? "");
return $"\n<figure class=\"cms-image\"><img src=\"{url}\" alt=\"{alt}\" loading=\"lazy\"></figure>\n";
}
private static string RenderGallery(JsonObject d)
{
var images = d["images"] as JsonArray ?? [];
var sb = new StringBuilder("\n<div class=\"cms-gallery\">\n");
foreach (var img in images)
{
if (img is not JsonObject o) continue;
var url = H(Str(o["url"]) ?? "");
var alt = H(Str(o["alt"]) ?? "");
sb.Append($" <figure class=\"cms-gallery-item\"><img src=\"{url}\" alt=\"{alt}\" loading=\"lazy\"></figure>\n");
}
sb.Append("</div>\n");
return sb.ToString();
}
private static string RenderContactInfo(JsonObject d)
{
var sb = new StringBuilder("\n<address class=\"cms-contact\">\n");
void Row(string? val, string icon) { if (!string.IsNullOrWhiteSpace(val)) sb.AppendLine($" <span class=\"cms-contact-row\">{icon} {H(val)}</span>"); }
Row(Str(d["name"]), "👤");
Row(Str(d["address"]), "📍");
var phone = Str(d["phone"]);
if (!string.IsNullOrWhiteSpace(phone))
sb.AppendLine($" <span class=\"cms-contact-row\">📞 <a href=\"tel:{H(phone)}\">{H(phone)}</a></span>");
var email = Str(d["email"]);
if (!string.IsNullOrWhiteSpace(email))
sb.AppendLine($" <span class=\"cms-contact-row\">✉️ <a href=\"mailto:{H(email)}\">{H(email)}</a></span>");
sb.Append("</address>\n");
return sb.ToString();
}
private static string RenderAbgabetiereList(JsonObject d)
{
var intro = Str(d["intro"]);
var animals = d["animals"] as JsonArray ?? [];
var sb = new StringBuilder("\n<section class=\"cms-abgabe\">\n");
if (!string.IsNullOrWhiteSpace(intro))
sb.Append($" <p class=\"cms-abgabe-intro\">{H(intro)}</p>\n");
if (animals.Count == 0)
{
sb.Append(" <p class=\"cms-abgabe-empty\">Zurzeit stehen keine Tiere zur Abgabe bereit.</p>\n");
}
else
{
sb.Append(" <div class=\"cms-animal-grid\">\n");
foreach (var node in animals)
{
if (node is not JsonObject a) continue;
var name = H(Str(a["name"]) ?? "");
var farbe = H(Str(a["farbschlag"]) ?? "");
var group = Str(a["group"]);
var saleText = Str(a["aiSaleText"]);
var photos = a["photos"] as JsonArray ?? [];
sb.Append(" <article class=\"cms-animal-card\">\n");
// Profile photo (first photo)
var firstPhoto = photos.FirstOrDefault()?.GetValue<string>();
if (!string.IsNullOrEmpty(firstPhoto))
sb.Append($" <img class=\"cms-animal-photo\" src=\"{H(firstPhoto)}\" alt=\"{name}\" loading=\"lazy\">\n");
sb.Append(" <div class=\"cms-animal-info\">\n");
sb.Append($" <h3 class=\"cms-animal-name\">{name}</h3>\n");
if (!string.IsNullOrEmpty(farbe))
sb.Append($" <p class=\"cms-animal-farbe\">{farbe}</p>\n");
if (!string.IsNullOrWhiteSpace(group))
sb.Append($" <p class=\"cms-animal-group\">Gruppe: {H(group)}</p>\n");
if (!string.IsNullOrWhiteSpace(saleText))
sb.Append($" <p class=\"cms-animal-text\">{H(saleText)}</p>\n");
sb.Append(" </div>\n");
sb.Append(" </article>\n");
}
sb.Append(" </div>\n");
}
sb.Append("</section>\n");
return sb.ToString();
}
// ── Page template ────────────────────────────────────────────────────
private static string PageHtml(
string title, string? seoDesc, string body,
IReadOnlyList<string> navSlugs, string currentSlug, string cssHref)
{
var fullTitle = H($"{title} | {SiteName}");
var metaDesc = seoDesc is null ? ""
: $"\n <meta name=\"description\" content=\"{H(seoDesc)}\">";
var navBase = currentSlug == "start" ? "" : "../";
var navHtml = BuildNav(navSlugs, currentSlug, navBase);
return $"""
<!DOCTYPE html>
<html lang="de">
<head>
<meta charset="UTF-8">
<meta name="viewport" content="width=device-width, initial-scale=1.0">{metaDesc}
<title>{fullTitle}</title>
<link rel="stylesheet" href="{H(cssHref)}">
</head>
<body>
<header class="site-header">
<a href="{navBase}index.html" class="site-logo">🐭 {H(SiteName)}</a>
<nav class="site-nav" aria-label="Hauptnavigation">
{navHtml}
</nav>
</header>
<main class="site-main">
{body}
</main>
<footer class="site-footer">
<p>&copy; {H(SiteName)} Mongolische Rennmäuse</p>
</footer>
</body>
</html>
""";
}
private static string BuildNav(IReadOnlyList<string> slugs, string current, string navBase)
{
var labels = new Dictionary<string, string>(StringComparer.OrdinalIgnoreCase)
{
["start"] = "Start",
["ueber-die-zucht"] = "Über die Zucht",
["abgabetiere"] = "Abgabetiere",
["abgabebedingungen"] = "Abgabebedingungen",
["farben-genetik"] = "Farben & Genetik",
["kontakt"] = "Kontakt",
};
var sb = new StringBuilder();
foreach (var slug in slugs)
{
var label = labels.TryGetValue(slug, out var l) ? l : slug;
var href = slug == "start" ? $"{navBase}index.html" : $"{navBase}{slug}/index.html";
var active = slug == current ? " aria-current=\"page\"" : "";
sb.AppendLine($" <a href=\"{H(href)}\" class=\"site-nav-link\"{active}>{H(label)}</a>");
}
return sb.ToString().TrimEnd();
}
// ── Minimal Markdown → HTML ──────────────────────────────────────────
internal static string MarkdownToHtml(string md)
{
if (string.IsNullOrEmpty(md)) return "";
var lines = md.Replace("\r\n", "\n").Replace("\r", "\n").Split('\n');
var sb = new StringBuilder();
var inList = false;
var isOrdered = false;
void CloseList()
{
if (!inList) return;
sb.AppendLine(isOrdered ? "</ol>" : "</ul>");
inList = false;
}
foreach (var raw in lines)
{
var line = raw;
// ATX headings
var hm = Regex.Match(line, @"^(#{1,6})\s+(.+)$");
if (hm.Success)
{
CloseList();
var lvl = hm.Groups[1].Length;
sb.AppendLine($"<h{lvl}>{InlineHtml(hm.Groups[2].Value)}</h{lvl}>");
continue;
}
// Unordered list
var ulm = Regex.Match(line, @"^[-*+]\s+(.+)$");
if (ulm.Success)
{
if (!inList || isOrdered) { CloseList(); sb.AppendLine("<ul>"); inList = true; isOrdered = false; }
sb.AppendLine($"<li>{InlineHtml(ulm.Groups[1].Value)}</li>");
continue;
}
// Ordered list
var olm = Regex.Match(line, @"^\d+\.\s+(.+)$");
if (olm.Success)
{
if (!inList || !isOrdered) { CloseList(); sb.AppendLine("<ol>"); inList = true; isOrdered = true; }
sb.AppendLine($"<li>{InlineHtml(olm.Groups[1].Value)}</li>");
continue;
}
CloseList();
// Blank line
if (string.IsNullOrWhiteSpace(line))
{
sb.AppendLine();
continue;
}
// Horizontal rule
if (Regex.IsMatch(line, @"^(-{3,}|\*{3,}|_{3,})$"))
{
sb.AppendLine("<hr>");
continue;
}
// Regular paragraph
sb.AppendLine($"<p>{InlineHtml(line)}</p>");
}
CloseList();
return sb.ToString().Trim();
}
private static string InlineHtml(string text)
{
// First HTML-encode, then selectively un-encode our safe inline patterns
// to avoid encoding the tags we are about to add.
// Order matters: bold before italic.
text = H(text);
// Bold **text**
text = Regex.Replace(text, @"\*\*(.+?)\*\*", "<strong>$1</strong>");
// Italic *text* (single, not preceded/followed by *)
text = Regex.Replace(text, @"(?<!\*)\*(?!\*)(.+?)(?<!\*)\*(?!\*)", "<em>$1</em>");
// Inline code `text`
text = Regex.Replace(text, @"`(.+?)`", "<code>$1</code>");
// Links [text](url) — note: url is already HTML-encoded by H()
text = Regex.Replace(text, @"\[(.+?)\]\((.+?)\)", "<a href=\"$2\">$1</a>");
return text;
}
// ── CSS ──────────────────────────────────────────────────────────────
internal static string SiteCss() => """
*, *::before, *::after { box-sizing: border-box; margin: 0; padding: 0; }
:root {
--color-bg: #fdf8f3;
--color-surface: #fff;
--color-text: #2c2c2c;
--color-muted: #6b6b6b;
--color-accent: #c0392b;
--color-border: #e0d8d0;
--font-body: system-ui, sans-serif;
--max-w: 860px;
}
body {
font-family: var(--font-body);
background: var(--color-bg);
color: var(--color-text);
line-height: 1.65;
}
a { color: var(--color-accent); text-decoration: none; }
a:hover { text-decoration: underline; }
img { max-width: 100%; height: auto; display: block; }
/* ── Header ── */
.site-header {
background: var(--color-surface);
border-bottom: 1px solid var(--color-border);
padding: .75rem 1rem;
display: flex;
flex-wrap: wrap;
align-items: center;
gap: .5rem 1.5rem;
}
.site-logo {
font-weight: 700;
font-size: 1.1rem;
color: var(--color-text);
white-space: nowrap;
}
.site-nav { display: flex; flex-wrap: wrap; gap: .25rem .75rem; }
.site-nav-link {
font-size: .9rem;
color: var(--color-muted);
padding: .2rem .4rem;
border-radius: 4px;
}
.site-nav-link:hover, .site-nav-link[aria-current="page"] {
color: var(--color-accent);
background: #fef0ee;
text-decoration: none;
}
/* ── Main ── */
.site-main {
max-width: var(--max-w);
margin: 2rem auto;
padding: 0 1rem 3rem;
}
/* ── Footer ── */
.site-footer {
border-top: 1px solid var(--color-border);
padding: 1.5rem 1rem;
text-align: center;
font-size: .85rem;
color: var(--color-muted);
}
/* ── CMS blocks ── */
.cms-heading { margin: 1.5rem 0 .5rem; }
h1.cms-heading { font-size: 1.8rem; }
h2.cms-heading { font-size: 1.4rem; }
.cms-richtext { margin: 1rem 0; }
.cms-richtext p { margin-bottom: .75rem; }
.cms-richtext ul, .cms-richtext ol { margin: .5rem 0 .75rem 1.5rem; }
.cms-richtext li { margin-bottom: .3rem; }
.cms-image { margin: 1.5rem 0; }
.cms-image img { border-radius: 6px; }
.cms-gallery {
display: grid;
grid-template-columns: repeat(auto-fill, minmax(180px, 1fr));
gap: .75rem;
margin: 1.5rem 0;
}
.cms-gallery-item img { border-radius: 4px; aspect-ratio: 1; object-fit: cover; }
.cms-contact {
font-style: normal;
display: flex;
flex-direction: column;
gap: .4rem;
margin: 1rem 0;
}
.cms-contact-row { display: flex; gap: .5rem; align-items: flex-start; }
/* ── Abgabetiere ── */
.cms-abgabe { margin: 1rem 0; }
.cms-abgabe-intro { margin-bottom: 1.25rem; font-size: 1.05rem; }
.cms-abgabe-empty { color: var(--color-muted); font-style: italic; }
.cms-animal-grid {
display: grid;
grid-template-columns: repeat(auto-fill, minmax(240px, 1fr));
gap: 1.25rem;
}
.cms-animal-card {
background: var(--color-surface);
border: 1px solid var(--color-border);
border-radius: 8px;
overflow: hidden;
}
.cms-animal-photo { width: 100%; aspect-ratio: 4/3; object-fit: cover; }
.cms-animal-info { padding: .875rem; }
.cms-animal-name { font-size: 1.1rem; font-weight: 600; margin-bottom: .25rem; }
.cms-animal-farbe { font-size: .9rem; color: var(--color-muted); margin-bottom: .25rem; }
.cms-animal-group { font-size: .85rem; color: var(--color-muted); }
.cms-animal-text { font-size: .9rem; margin-top: .5rem; }
@media (max-width: 480px) {
h1.cms-heading { font-size: 1.4rem; }
.cms-animal-grid { grid-template-columns: 1fr; }
}
""";
// ── Helpers ─────────────────────────────────────────────────────────
private static IReadOnlyList<string> NavSlugs(JsonObject snapshot)
{
var navArr = snapshot["site"]?["navOrder"] as JsonArray;
if (navArr is null) return [];
return navArr.Select(n => n?.GetValue<string>()).Where(s => s is not null).ToList()!;
}
/// <summary>
/// HTML-encode only the 5 HTML special characters. Non-ASCII characters (e.g. German
/// umlauts) are left as-is — the page declares UTF-8, so no entity encoding needed.
/// </summary>
private static string H(string? s)
{
if (s is null) return "";
return s.Replace("&", "&amp;")
.Replace("<", "&lt;")
.Replace(">", "&gt;")
.Replace("\"", "&quot;")
.Replace("'", "&#39;");
}
/// <summary>Extract a string value from a JsonNode; returns null if not a string.</summary>
private static string? Str(JsonNode? node) =>
node is JsonValue v && v.TryGetValue<string>(out var s) ? s : null;
}
}

View File

@@ -27,7 +27,9 @@ namespace GerbilManagerWebAPI.Dtos
string? ExternalRef,
string? OriginBreeder,
List<string> CharacterTraits,
string? CharacterNote);
string? CharacterNote,
bool? IsDeaf,
bool IsResident);
public record LitterDto(
Guid Id,
@@ -75,7 +77,9 @@ namespace GerbilManagerWebAPI.Dtos
string? ExternalRef,
string? OriginBreeder,
List<string>? CharacterTraits,
string? CharacterNote);
string? CharacterNote,
bool? IsDeaf,
bool? IsResident);
public record LitterInput(
string Name,

View File

@@ -24,6 +24,14 @@ namespace GerbilManagerWebAPI.Endpoints
api.MapGet("/site-snapshot", async (ApplicationContext db) =>
TypedResults.Ok(await new SiteSnapshotService(db).BuildAsync()));
// ---- static render dry-run (WEB-1: returns rendered file map as JSON) ----
api.MapGet("/render-site", async (ApplicationContext db) =>
{
var snapshot = await new SiteSnapshotService(db).BuildAsync();
var files = SiteRenderer.Render(snapshot);
return TypedResults.Ok(files.Select(kv => new { path = kv.Key, size = kv.Value.Length }).ToList());
});
// ---- pages ----
api.MapGet("/pages", async (ApplicationContext db) =>
TypedResults.Ok(await db.Pages.AsNoTracking().OrderBy(p => p.Slug)

View File

@@ -97,12 +97,14 @@ namespace GerbilManagerWebAPI.Endpoints
g.OriginBreeder = i.OriginBreeder;
g.CharacterTraits = i.CharacterTraits ?? new List<string>();
g.CharacterNote = i.CharacterNote;
g.IsDeaf = i.IsDeaf;
g.IsResident = i.IsResident ?? (isCreate ? true : g.IsResident);
}
internal static GerbilDto ToDto(Gerbil g) => new(
g.Id, g.Name, g.Gender, g.Status, g.LitterId, g.OriginContactId, g.ReceiverContactId,
g.EnclosureId, g.ColorVarietyId, g.DateOfBirth, g.DateOfDeath, g.CauseOfDeath,
g.GoHomeDate, g.Genotype, g.Notes, g.ImportSource, g.ExternalRef, g.OriginBreeder,
g.CharacterTraits, g.CharacterNote);
g.CharacterTraits, g.CharacterNote, g.IsDeaf, g.IsResident);
}
}

View File

@@ -51,6 +51,34 @@ namespace GerbilManagerWebAPI.Endpoints
return TypedResults.NoContent();
});
// POST /api/requests/{id}/draft — INBOX-2: KI-Antwortentwurf. NUR Entwurf
// (human-in-the-loop, Versand ist /send). 503 AiKeyMissing solange die
// AI-Sektion unkonfiguriert ist (gleiches UI-Muster wie sale-ad).
api.MapPost("/requests/{id:guid}/draft", async Task<IResult> (
Guid id, DraftReplyService drafter, ApplicationContext db, CancellationToken ct) =>
{
var r = await db.Requests.FirstOrDefaultAsync(x => x.Id == id, ct);
if (r is null) return TypedResults.NotFound();
// Datenminimierung: NUR die ForSale-Liste (Name + Farbschlag) geht
// zusätzlich zum Anfragetext an den Anbieter (arch §privacy).
var forSale = await db.Gerbils.AsNoTracking()
.Where(g => g.Status == GerbilStatus.ForSale)
.OrderBy(g => g.Name)
.Select(g => new DraftReplyService.ForSaleAnimal(g.Name, g.ColorVariety!.Name))
.ToListAsync(ct);
var result = await drafter.DraftAsync(r, forSale, ct);
if (result.Status == Ai.AiCallStatus.NotConfigured)
return Results.Json(new { code = "AiKeyMissing", message = result.Error }, statusCode: 503);
if (result.Status != Ai.AiCallStatus.Ok)
return Results.Json(new { code = "AiUpstreamError", message = result.Error }, statusCode: 502);
r.DraftReply = result.Text;
await db.SaveChangesAsync(ct);
return TypedResults.Ok(ToDto(r));
});
// POST /api/requests/{id}/send — send the (edited) reply, threaded, mark Answered
api.MapPost("/requests/{id:guid}/send", async Task<Results<Ok<RequestDto>, NotFound, ProblemHttpResult>> (
Guid id, SendReplyInput input, SendReplyService sender, ApplicationContext db) =>

View File

@@ -16,11 +16,21 @@ namespace GerbilManagerWebAPI.Import
public List<string> FarbschlagVariants { get; set; } = new();
public SourceGenotype Genotype { get; set; } = new();
public string Zucht { get; set; } = "";
public string ZuchtCanon { get; set; } = ""; // declension-folded Zucht key (residency rule a)
public List<SourceParentRef> ParentRefs { get; set; } = new();
public List<string> Photos { get; set; } = new();
public List<string> SourceFiles { get; set; } = new();
public bool Conflict { get; set; }
public SourceLitterRef? LitterRef { get; set; }
// GEN-3b normalization: hearing/deaf phenotype flag (null = not stated) and
// provenance/breeding tags (WFNZ/RV/GV/DP) — neither is genotype.
public bool? Deaf { get; set; }
public List<string> Tags { get; set; } = new();
// Set by extract.py when a human conflict-decision (conflict-decisions.json) un-quarantined
// this animal (its genotype/farbschlag are then authoritative). For reporting.
public bool ResolvedByDecision { get; set; }
}
public sealed class SourceGenotype
@@ -34,7 +44,9 @@ namespace GerbilManagerWebAPI.Import
{
public string Name { get; set; } = "";
public string Dob { get; set; } = "";
public string RoleGuess { get; set; } = "";
public string RoleGuess { get; set; } = ""; // "father" | "mother"
public string Method { get; set; } = ""; // e.g. "chart-position"
public string Confidence { get; set; } = ""; // "hoch" | "medium" | "niedrig"
}
public sealed class SourceLitterRef
@@ -66,9 +78,15 @@ namespace GerbilManagerWebAPI.Import
AnimalSummary Animals,
PhotoSummary Photos,
IReadOnlyList<string> Samples,
IReadOnlyList<string> Notes);
IReadOnlyList<string> Notes,
ResidencySummary? Residency = null);
public sealed record LitterSummary(int InSource, int Created, int AlreadyImported);
/// <summary>Bestand (resident) vs external pedigree ancestors; FlippedByParentRule = foreign-
/// Zuchtname animals made resident because they parented a Clan offspring (rule b).</summary>
public sealed record ResidencySummary(int Resident, int External, int FlippedByParentRule);
public sealed record LitterSummary(int InSource, int Created, int AlreadyImported,
int DerivedFromChart = 0, int DerivedSkipped = 0, int ParentFksDropped = 0);
public sealed record AnimalSummary(
int InSource,
@@ -77,7 +95,9 @@ namespace GerbilManagerWebAPI.Import
int FarbschlagMatched,
int FarbschlagUnmatched,
int AlreadyImported,
QuarantineSummary Quarantined);
QuarantineSummary Quarantined,
int ParentLinksFromChart = 0,
int ConflictsResolvedByDecision = 0);
public sealed record QuarantineSummary(
int Conflicts,

View File

@@ -128,68 +128,238 @@ namespace GerbilManagerWebAPI.Import
int photosAttached = 0, photosMissing = 0;
var createdAnimalByName = new Dictionary<string, Guid>(); // normalized name -> gerbil id (for litter back-link)
// name+DOB -> gid index, across EXISTING rows AND this run's planned animals, so that
// chart-position parentRefs (PEDIGREE-LINK) can resolve a parent to a real gerbil id.
var existingRows = await _db.Gerbils
.Select(g => new { g.Id, g.Name, g.DateOfBirth, g.ExternalRef, g.LitterId }).ToListAsync();
var gidByNameDob = new Dictionary<string, Guid>();
foreach (var g in existingRows)
gidByNameDob[NameDobKey(g.Name, g.DateOfBirth)] = g.Id;
var existingLitterByExtRef = existingRows.Where(g => g.ExternalRef != null)
.ToDictionary(g => g.ExternalRef!, g => g.LitterId);
// PASS 1: assign ids + resolve fb/gender/Wurfchronik link (no writes yet).
var plan = new List<AnimalPlan>();
foreach (var a in loadable)
{
if (existingGerbilSet.Contains(a.Id)) { animalsExisting++; continue; }
animalsCreated++;
bool exists = existingGerbilSet.Contains(a.Id);
var gid = exists ? gidByNameDob[NameDobKey(a.Name, ParseDate(a.Dob))] : Guid.NewGuid();
Guid? litterId = null;
Guid? wurfLitterId = null;
if (a.LitterRef?.Confidence == "hoch" && a.LitterRef.Candidates is not { Count: > 0 }
&& litterIdMap.TryGetValue(a.LitterRef.LitterId, out var lid))
{
litterId = lid;
linked++;
}
wurfLitterId = lid;
Guid? colorVarietyId = null;
var fbCandidates = new[] { a.Farbschlag }.Concat(a.FarbschlagVariants)
.Where(s => !string.IsNullOrWhiteSpace(s));
foreach (var fb in fbCandidates)
{
if (varietyByName.TryGetValue(fb.Trim().ToLowerInvariant(), out var vid))
{ colorVarietyId = vid; break; }
}
if (colorVarietyId is null) fbUnmatched++; else fbMatched++;
var gender = InferGender(a, sireNames, damNames);
var gid = Guid.NewGuid();
var norm = Normalize(StripZucht(a.Name));
if (norm.Length > 0) createdAnimalByName.TryAdd(norm, gid);
if (!exists) gidByNameDob.TryAdd(NameDobKey(a.Name, ParseDate(a.Dob)), gid);
var currentLitter = exists && existingLitterByExtRef.TryGetValue(a.Id, out var el) ? el : null;
plan.Add(new AnimalPlan(a, gid, exists, wurfLitterId, currentLitter, colorVarietyId, gender));
}
// PASS 1.5: PEDIGREE-LINK — synthesize/reuse a litter from chart-position parentRefs for
// any animal that has no Wurfchronik litter and isn't already litter-linked. Siblings
// (same father+mother+dob) share one derived litter. Computed for dry-run counts too.
int parentLinksAdded = 0, derivedLitters = 0;
var synthLitterForGid = new Dictionary<Guid, Guid>(); // offspring gid -> synth litter id
var synthLitters = new Dictionary<string, SynthLitter>(); // parents+date key -> synth litter
foreach (var p in plan)
{
if (p.WurfLitterId is not null || p.CurrentLitterId is not null) continue;
if (p.A.ParentRefs is not { Count: > 0 }) continue;
var father = ResolveParentGid(p.A, "father", gidByNameDob);
var mother = ResolveParentGid(p.A, "mother", gidByNameDob);
if (father is null && mother is null) continue; // nothing resolvable to link
var dob = ParseDate(p.A.Dob);
var conf = p.A.ParentRefs.FirstOrDefault()?.Confidence ?? "medium";
var key = $"{father}|{mother}|{dob:yyyy-MM-dd}";
if (!synthLitters.TryGetValue(key, out var sl))
{
sl = new SynthLitter(Guid.NewGuid(), father, mother, dob, conf);
synthLitters[key] = sl;
derivedLitters++;
}
synthLitterForGid[p.Gid] = sl.Id;
parentLinksAdded++;
}
// FK-INTEGRITY (PEDIGREE-LINK bug fix): a litter's Father/MotherId must resolve to a
// gerbil that is created-or-existing, or Postgres throws FK_Litters_Gerbils_*. Compute
// the persisted set (existing DB rows + this run's loadable animals) and drop any parent
// FK that isn't in it; SKIP a derived litter whose BOTH parents are unresolvable (its
// offspring then load with LitterId=null — still better than 'unbekannt' won't regress).
// This runs in dry-run too, so a green dry-run GUARANTEES /import/execute won't FK-fault.
var persisted = new HashSet<Guid>(existingRows.Select(r => r.Id));
foreach (var p in plan) persisted.Add(p.Gid);
int litterParentFksDropped = 0, derivedLittersSkipped = 0;
foreach (var key in synthLitters.Keys.ToList())
{
var sl = synthLitters[key];
var f = sl.Father is Guid gf && persisted.Contains(gf) ? sl.Father : null;
var m = sl.Mother is Guid gm && persisted.Contains(gm) ? sl.Mother : null;
if (sl.Father is not null && f is null) litterParentFksDropped++;
if (sl.Mother is not null && m is null) litterParentFksDropped++;
if (f is null && m is null)
{
derivedLittersSkipped++; derivedLitters--;
foreach (var gid in synthLitterForGid.Where(kv => kv.Value == sl.Id).Select(kv => kv.Key).ToList())
synthLitterForGid.Remove(gid);
synthLitters.Remove(key);
continue;
}
synthLitters[key] = sl with { Father = f, Mother = m };
}
parentLinksAdded = synthLitterForGid.Count;
// litter id -> (father, mother) gids, across synthesized + Wurfchronik (by name) litters,
// each FK guarded by the persisted set. Used by residency rule (b) below; augmented with
// existing DB litters under execute.
var litterParents = new Dictionary<Guid, (Guid? F, Guid? M)>();
foreach (var sl in synthLitters.Values)
litterParents[sl.Id] = (sl.Father, sl.Mother);
foreach (var sl in litters)
if (litterIdMap.TryGetValue(sl.Id, out var lid))
{
Guid? f = createdAnimalByName.TryGetValue(Normalize(StripZucht(sl.SireName)), out var fid) && persisted.Contains(fid) ? fid : null;
Guid? m = createdAnimalByName.TryGetValue(Normalize(StripZucht(sl.DamName)), out var mid) && persisted.Contains(mid) ? mid : null;
litterParents[lid] = (f, m);
}
// PASS 2: stage synthesized litters (parents already guarded above). DO NOT save them
// before the animals — the offspring AND the parent gerbils are created in the loop
// below, so a single SaveChanges at the end lets EF order parents→litters→offspring
// (all FKs are nullable). Saving litters first is exactly what caused the FK fault.
if (execute)
{
// reuse an existing litter with the same parents+date instead of duplicating.
var existingLitterRows = await _db.Litters
.Select(l => new { l.Id, l.FatherId, l.MotherId, l.Date }).ToListAsync();
var litterByParentsDate = new Dictionary<string, Guid>();
foreach (var l in existingLitterRows)
{
litterByParentsDate[$"{l.FatherId}|{l.MotherId}|{l.Date:yyyy-MM-dd}"] = l.Id;
litterParents[l.Id] = (l.FatherId, l.MotherId);
}
foreach (var sl in synthLitters.Values.ToList())
{
var reuseKey = $"{sl.Father}|{sl.Mother}|{sl.Date:yyyy-MM-dd}";
if (litterByParentsDate.TryGetValue(reuseKey, out var existingId))
{
// remap offspring to the existing litter; don't create a duplicate.
foreach (var g in synthLitterForGid.Where(kv => kv.Value == sl.Id).Select(kv => kv.Key).ToList())
synthLitterForGid[g] = existingId;
derivedLitters--;
continue;
}
_db.Litters.Add(new Litter
{
Id = sl.Id,
Name = $"Wurf (aus Diagramm) {sl.Date:yyyy-MM-dd}".Trim(),
Date = sl.Date ?? default,
FatherId = sl.Father,
MotherId = sl.Mother,
Notes = $"aus Stammbaum-Diagramm abgeleitet (Konfidenz: {sl.Confidence})",
});
}
// NOTE: no SaveChanges here — staged with the gerbils below.
}
// OWNERSHIP/RESIDENCY (runs AFTER litter links exist): (a) Zuchtname matches the Clan
// kennel (zuchtCanon contains 'kleinechaote'); (b) parent of a Clan offspring, even if
// the parent's own Zuchtname is foreign. See hive/agents/god/OWNERSHIP-residency.md.
static bool ClanCanon(string? zc) =>
(zc ?? "").Contains("kleinechaote", StringComparison.OrdinalIgnoreCase);
var resident = new HashSet<Guid>();
foreach (var p in plan) if (ClanCanon(p.A.ZuchtCanon)) resident.Add(p.Gid); // (a)
int residentByA = resident.Count, flippedByParentRule = 0;
foreach (var p in plan)
{
if (!ClanCanon(p.A.ZuchtCanon)) continue;
var litId = p.WurfLitterId ?? (synthLitterForGid.TryGetValue(p.Gid, out var s) ? s : (Guid?)null);
if (litId is null || !litterParents.TryGetValue(litId.Value, out var par)) continue;
if (par.F is Guid gf && resident.Add(gf)) flippedByParentRule++; // (b)
if (par.M is Guid gm && resident.Add(gm)) flippedByParentRule++;
}
int residentTotal = plan.Count(p => resident.Contains(p.Gid));
int externalTotal = plan.Count - residentTotal;
foreach (var p in plan)
{
Guid? litterId = p.WurfLitterId
?? (synthLitterForGid.TryGetValue(p.Gid, out var slid) ? slid : (Guid?)null);
if (litterId is not null) linked++;
bool isResident = resident.Contains(p.Gid);
if (p.ColorVarietyId is null) fbUnmatched++; else fbMatched++;
if (samples.Count < 16)
samples.Add($"Tier: {a.Name} (*{a.Dob}), Genotyp {ComposeGenotype(a.Genotype)}"
+ (litterId is not null ? ", Wurf-verknüpft" : "")
+ (colorVarietyId is not null ? $", Farbschlag „{a.Farbschlag}\"" : ""));
samples.Add($"Tier: {p.A.Name} (*{p.A.Dob}), Genotyp {ComposeGenotype(p.A.Genotype)}"
+ (litterId is not null ? (p.WurfLitterId is not null ? ", Wurf-verknüpft" : ", Eltern aus Diagramm") : "")
+ (p.ColorVarietyId is not null ? $", Farbschlag „{p.A.Farbschlag}\"" : ""));
if (p.Exists)
{
animalsExisting++;
// sweep idempotency: re-link a now-linkable animal + refresh its residency.
if (execute)
{
var row = await _db.Gerbils.FirstOrDefaultAsync(g => g.Id == p.Gid);
if (row is not null)
{
if (p.CurrentLitterId is null && litterId is not null) row.LitterId = litterId;
row.IsResident = isResident;
}
}
continue;
}
animalsCreated++;
if (execute)
{
_db.Gerbils.Add(new Gerbil
{
Id = gid,
Name = a.Name,
Gender = gender,
Id = p.Gid,
Name = p.A.Name,
Gender = p.Gender,
Status = GerbilStatus.Active,
DateOfBirth = ParseDate(a.Dob),
DateOfDeath = ParseDate(a.Death),
DateOfBirth = ParseDate(p.A.Dob),
DateOfDeath = ParseDate(p.A.Death),
LitterId = litterId,
ColorVarietyId = colorVarietyId,
Genotype = ComposeGenotype(a.Genotype),
ColorVarietyId = p.ColorVarietyId,
Genotype = ComposeGenotype(p.A.Genotype),
IsDeaf = p.A.Deaf,
IsResident = isResident,
ImportSource = ImportSourceTag,
ExternalRef = a.Id,
OriginBreeder = string.IsNullOrWhiteSpace(a.Zucht) ? null : a.Zucht.Trim(),
ExternalRef = p.A.Id,
OriginBreeder = string.IsNullOrWhiteSpace(p.A.Zucht) ? null : p.A.Zucht.Trim(),
RawImportData = JsonSerializer.Serialize(new
{
a.Genotype.RawGenotype,
a.Genotype.UnmappedTokens,
a.Zucht,
a.SourceFiles,
FarbschlagRaw = a.Farbschlag,
p.A.Genotype.RawGenotype,
p.A.Genotype.UnmappedTokens,
// GEN-3b: Sls (2nd spotting locus) preserved here until Kevin's GEN-3a
// parser adopts it into the compact Genotype contract; tags + deaf too.
Sls = p.A.Genotype.Mapped8locus.TryGetValue("Sls", out var sls) ? sls : null,
p.A.Tags,
p.A.Deaf,
p.A.Zucht,
p.A.SourceFiles,
FarbschlagRaw = p.A.Farbschlag,
}),
});
}
// photos
foreach (var rel in a.Photos)
foreach (var rel in p.A.Photos)
{
var src = Path.Combine(_sourceDir, rel.Replace('/', Path.DirectorySeparatorChar));
if (!File.Exists(src)) { photosMissing++; continue; }
@@ -202,7 +372,7 @@ namespace GerbilManagerWebAPI.Import
_db.GerbilPhotos.Add(new GerbilPhoto
{
Id = Guid.NewGuid(),
GerbilId = gid,
GerbilId = p.Gid,
FileName = fileName,
SortOrder = 0,
CreatedAt = DateTimeOffset.UtcNow,
@@ -212,7 +382,7 @@ namespace GerbilManagerWebAPI.Import
}
if (execute) await _db.SaveChangesAsync();
// ---- back-link litter parents by name (best effort) ----
// ---- back-link Wurfchronik litter parents by name (best effort) ----
if (execute)
{
foreach (var sl in litters)
@@ -220,26 +390,36 @@ namespace GerbilManagerWebAPI.Import
if (!litterIdMap.TryGetValue(sl.Id, out var lid)) continue;
var litter = await _db.Litters.FirstOrDefaultAsync(l => l.Id == lid);
if (litter is null) continue;
if (createdAnimalByName.TryGetValue(Normalize(StripZucht(sl.SireName)), out var fId))
// guard: only link parents that are actually persisted (avoid an orphan FK).
if (createdAnimalByName.TryGetValue(Normalize(StripZucht(sl.SireName)), out var fId) && persisted.Contains(fId))
litter.FatherId = fId;
if (createdAnimalByName.TryGetValue(Normalize(StripZucht(sl.DamName)), out var mId))
if (createdAnimalByName.TryGetValue(Normalize(StripZucht(sl.DamName)), out var mId) && persisted.Contains(mId))
litter.MotherId = mId;
}
await _db.SaveChangesAsync();
}
notes.Add("Quarantäne (kein Import): Konflikte + Stubs ohne Geburtsdatum + unsichere Wurf-Zuordnungen — warten auf die Prüfung durch die Züchterin.");
if (parentLinksAdded > 0)
notes.Add($"Stammbaum-Diagramm: {parentLinksAdded} Tiere über Eltern-Verknüpfung einem (abgeleiteten) Wurf zugeordnet ({derivedLitters} abgeleitete Würfe).");
notes.Add($"FK-Integrität: {litterParentFksDropped} Eltern-Verknüpfung(en) verworfen (Elternteil nicht ladbar), {derivedLittersSkipped} abgeleitete Würfe übersprungen (kein ladbares Elternteil). Bei 0/0 ist /import/execute FK-sicher.");
notes.Add($"Bestand/Herkunft: {residentTotal} im Bestand (Clan Kleine Chaoten), {externalTotal} externe Ahnen ({flippedByParentRule} davon über die Eltern-Regel als Bestand erkannt).");
int conflictsResolvedByDecision = loadable.Count(a => a.ResolvedByDecision);
if (conflictsResolvedByDecision > 0)
notes.Add($"Konfliktauflösungen: {conflictsResolvedByDecision} Tier(e) anhand von conflict-decisions.json un-quarantänet (Genotyp/Farbschlag der Züchterin ist maßgeblich).");
if (!execute) notes.Add("DRY-RUN: nichts gespeichert. /import/execute lädt die konfliktfreien Daten.");
return new ImportReport(
Executed: execute,
Litters: new LitterSummary(litters.Count, littersCreated, littersExisting),
Litters: new LitterSummary(litters.Count, littersCreated, littersExisting, derivedLitters, derivedLittersSkipped, litterParentFksDropped),
Animals: new AnimalSummary(
animals.Count, animalsCreated, linked, fbMatched, fbUnmatched, animalsExisting,
new QuarantineSummary(conflicts, stubs, dateOnly, ambiguous, conflicts + stubs)),
new QuarantineSummary(conflicts, stubs, dateOnly, ambiguous, conflicts + stubs),
parentLinksAdded, conflictsResolvedByDecision),
Photos: new PhotoSummary(photosAttached, photosMissing),
Samples: samples,
Notes: notes);
Notes: notes,
Residency: new ResidencySummary(residentTotal, externalTotal, flippedByParentRule));
}
private T? Load<T>(string file)
@@ -257,7 +437,16 @@ namespace GerbilManagerWebAPI.Import
if (g.Mapped8locus.TryGetValue(locus, out var pair) && pair.Count == 2)
return StripCaret(pair[0]) + StripCaret(pair[1]);
return "??";
});
}).ToList();
// GEN-3a contract (Kevin): Sls is appended LAST and ONLY for carriers — the
// wild-type sl/sl is omitted so existing 8-locus strings stay unchanged. WP het
// renders as the trailing token "Slsl"; S(l)S(l) is lethal so never appears.
if (g.Mapped8locus.TryGetValue("Sls", out var sls) && sls.Count == 2
&& !(sls[0] == "sl" && sls[1] == "sl"))
{
tokens.Add(StripCaret(sls[0]) + StripCaret(sls[1]));
}
return string.Join(' ', tokens);
}
@@ -265,6 +454,11 @@ namespace GerbilManagerWebAPI.Import
private static Gender InferGender(SourceAnimal a, HashSet<string> sires, HashSet<string> dams)
{
// Box colour (blue=male, white=female) is the authoritative breeder signal — prefer it
// over sire/dam name inference (PEDIGREE-LINK, Julian 2026-06-06).
if (string.Equals(a.Gender, "male", StringComparison.OrdinalIgnoreCase)) return Gender.male;
if (string.Equals(a.Gender, "female", StringComparison.OrdinalIgnoreCase)) return Gender.female;
var n = Normalize(StripZucht(a.Name));
bool isSire = sires.Contains(n), isDam = dams.Contains(n);
if (isSire && !isDam) return Gender.male;
@@ -298,5 +492,26 @@ namespace GerbilManagerWebAPI.Import
n = Regex.Replace(n, @"[^a-z0-9äöüß]", "");
return n;
}
/// <summary>Dedup identity for parent resolution: normalized call-name + DOB.</summary>
private static string NameDobKey(string name, DateOnly? dob) =>
$"{Normalize(StripZucht(name))}|{dob:yyyy-MM-dd}";
/// <summary>Resolve a chart-position parentRef (by role) to a known gerbil id, or null.</summary>
private static Guid? ResolveParentGid(SourceAnimal a, string role, Dictionary<string, Guid> gidByNameDob)
{
var pr = a.ParentRefs.FirstOrDefault(p =>
string.Equals(p.RoleGuess, role, StringComparison.OrdinalIgnoreCase));
if (pr is null || string.IsNullOrWhiteSpace(pr.Name)) return null;
return gidByNameDob.TryGetValue(NameDobKey(pr.Name, ParseDate(pr.Dob)), out var id) ? id : null;
}
/// <summary>Per-animal plan computed before any write so synthesis can run in dry-run too.</summary>
private sealed record AnimalPlan(
SourceAnimal A, Guid Gid, bool Exists, Guid? WurfLitterId,
Guid? CurrentLitterId, Guid? ColorVarietyId, Gender Gender);
/// <summary>A litter synthesized from chart-position parentRefs (PEDIGREE-LINK).</summary>
private sealed record SynthLitter(Guid Id, Guid? Father, Guid? Mother, DateOnly? Date, string Confidence);
}
}

View File

@@ -0,0 +1,108 @@
using System.Text;
using System.Text.RegularExpressions;
using GerbilManagerWebAPI.Ai;
using GerbilManagerWebAPI.Models;
using GerbilManagerWebAPI.SaleAd;
using Microsoft.Extensions.Options;
namespace GerbilManagerWebAPI.Inbox
{
/// <summary>
/// INBOX-2: AI reply DRAFT for an incoming inquiry (human-in-the-loop — the
/// breeder edits and sends herself, NEVER auto-send; send is INBOX-3).
///
/// PRIVACY / data minimization (INBOX-architecture.md §privacy): the prompt
/// carries ONLY the inquiry's own text (signatures/quoted history stripped),
/// the sender's display name for the greeting, a short German context, and
/// optionally the current ForSale animals (name + Farbschlag). NOT the
/// contact DB, NOT other requests, NOT any addresses.
/// </summary>
public sealed class DraftReplyService(HttpClient http, IOptions<AiOptions> options)
{
private readonly OpenAiChatClient _client = new(http, options);
public sealed record ForSaleAnimal(string Name, string? Farbschlag);
public Task<AiCallResult> DraftAsync(
Request request, IReadOnlyList<ForSaleAnimal> forSale, CancellationToken ct = default)
=> _client.CompleteAsync(BuildSystemPrompt(), BuildUserPrompt(request, forSale), ct);
internal static string BuildSystemPrompt() => """
Du hilfst einer Hobby-Rennmaus-Züchterin (Zucht der kleinen Chaoten), eine
freundliche deutsche Antwort auf eine Anfrage zu ENTWERFEN. Sie liest den
Entwurf, passt ihn an und versendet selbst.
Regeln:
- Ton: warm, persönlich, hilfsbereit wie eine erfahrene Hobby-Züchterin,
nicht wie ein Unternehmen. Anrede per du, Gruß mit dem Namen der
anfragenden Person, falls bekannt.
- KEINE Fakten erfinden: Verfügbarkeit, Tiere und Eigenschaften NUR aus den
mitgelieferten Daten. Ist keine Abgabetier-Liste mitgeliefert oder passt
nichts, verweise freundlich darauf, dass sie aktuelle Infos persönlich gibt.
- Keine Preise/Schutzgebühren nennen und keine Adressen oder sonstige
persönliche Daten solche Details klärt sie selbst im Gespräch.
- Gib NUR den Antworttext aus (ohne Betreff, ohne Erklärungen) und beende
mit einem herzlichen Gruß ohne Namens-Signatur.
""";
internal static string BuildUserPrompt(Request request, IReadOnlyList<ForSaleAnimal> forSale)
{
var sb = new StringBuilder();
sb.AppendLine("Entwirf eine Antwort auf folgende Anfrage:");
sb.AppendLine();
if (!string.IsNullOrWhiteSpace(request.FromName))
sb.AppendLine($"Von: {request.FromName}");
if (!string.IsNullOrWhiteSpace(request.Subject))
sb.AppendLine($"Betreff: {request.Subject}");
sb.AppendLine();
sb.AppendLine("Anfrage-Text:");
sb.AppendLine(StripQuotedText(request.BodyText ?? ""));
if (forSale.Count > 0)
{
sb.AppendLine();
sb.AppendLine("Aktuell abzugebende Tiere (einzige zulässige Quelle für Verfügbarkeits-Aussagen):");
foreach (var a in forSale)
{
sb.AppendLine(string.IsNullOrWhiteSpace(a.Farbschlag)
? $"- {a.Name}"
: $"- {a.Name} ({a.Farbschlag})");
}
}
return sb.ToString();
}
// ── Signatur-/Zitat-Stripping (best effort, bewusst konservativ) ────
private static readonly Regex QuoteIntro = new(
@"^Am .+ schrieb .+:\s*$", RegexOptions.Compiled);
private static readonly Regex OutlookHeader = new(
@"^(Von|Gesendet|An|Betreff):\s", RegexOptions.Compiled);
/// <summary>
/// Drops quoted history ('&gt;'-lines, the German Gmail "Am … schrieb …:"
/// intro, Outlook-style forwarded headers) and everything below a signature
/// delimiter ("-- "). Keeps the sender's own words untouched.
/// </summary>
internal static string StripQuotedText(string body)
{
var lines = body.Replace("\r\n", "\n").Split('\n');
var kept = new List<string>();
foreach (var line in lines)
{
var trimmed = line.TrimEnd();
if (trimmed == "--" || trimmed == "-- ")
break; // signature delimiter: everything below is signature
if (QuoteIntro.IsMatch(trimmed))
break; // quoted history follows
if (trimmed.StartsWith('>'))
continue;
if (OutlookHeader.IsMatch(trimmed))
continue;
kept.Add(line);
}
// collapse the whitespace the stripping may have left behind
return string.Join("\n", kept).Trim();
}
}
}

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View File

@@ -0,0 +1,28 @@
using Microsoft.EntityFrameworkCore.Migrations;
#nullable disable
namespace GerbilManagerWebAPI.Migrations
{
/// <inheritdoc />
public partial class AddGerbilDeafFlag : Migration
{
/// <inheritdoc />
protected override void Up(MigrationBuilder migrationBuilder)
{
migrationBuilder.AddColumn<bool>(
name: "IsDeaf",
table: "Gerbils",
type: "boolean",
nullable: true);
}
/// <inheritdoc />
protected override void Down(MigrationBuilder migrationBuilder)
{
migrationBuilder.DropColumn(
name: "IsDeaf",
table: "Gerbils");
}
}
}

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View File

@@ -0,0 +1,29 @@
using Microsoft.EntityFrameworkCore.Migrations;
#nullable disable
namespace GerbilManagerWebAPI.Migrations
{
/// <inheritdoc />
public partial class AddGerbilResidency : Migration
{
/// <inheritdoc />
protected override void Up(MigrationBuilder migrationBuilder)
{
migrationBuilder.AddColumn<bool>(
name: "IsResident",
table: "Gerbils",
type: "boolean",
nullable: false,
defaultValue: true);
}
/// <inheritdoc />
protected override void Down(MigrationBuilder migrationBuilder)
{
migrationBuilder.DropColumn(
name: "IsResident",
table: "Gerbils");
}
}
}

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View File

@@ -0,0 +1,971 @@
using System;
using Microsoft.EntityFrameworkCore.Migrations;
#nullable disable
namespace GerbilManagerWebAPI.Migrations
{
/// <inheritdoc />
public partial class SyncColorVarietySeed : Migration
{
/// <inheritdoc />
protected override void Up(MigrationBuilder migrationBuilder)
{
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000005"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC DD efef GG pp spsp rere", "Rotaugenschimmel" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000006"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC DD EE GG PP spsp rere", "Agouti" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000007"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC DD EE GG PP spsp rere", "Schwarz" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000008"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC DD EE gg PP spsp rere", "Silberagouti" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000009"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC DD EE gg PP spsp rere", "Anthrazit" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000010"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC DD ee GG PP spsp rere", "Algierfuchs" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000011"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC dd EE GG PP spsp rere", "Blau" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000012"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC DD EE GG pp spsp rere", "Gold" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000013"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC DD EE GG pp spsp rere", "Platin" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000014"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC DD ee GG pp spsp rere", "Goldfuchs" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000015"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC DD ee GG pp spsp rere", "Rotfuchs" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000016"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC dd EE GG pp spsp rere", "dd Gold" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000017"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC dd EE GG pp spsp rere", "dd Platin" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000018"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC DD EE gg pp spsp rere", "Altweiss (REW)" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000019"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC DD ee gg pp spsp rere", "Apricot (Blassfuchs)" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000020"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC DD ee gg PP spsp rere", "Blaufuchs" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000021"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC DD ee gg pp spsp rere", "C-Separator" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000022"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC DD EE gg pp spsp rere", "Elfenbein" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000023"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC DD ee GG PP spsp rere", "Kohlfuchs" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000024"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa cchmcchm DD EE GG PP spsp rere", "Marder" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000025"),
column: "Name",
value: "Siam (Marder-Hell)");
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000026"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC DD ee gg PP spsp rere", "Polarfuchs" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000027"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC DD EE GG pp spsp rere", "Saphir" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000028"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC DD efef GG PP spsp rere", "Orangeschimmel" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000029"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC DD EE GG pp spsp rere", "Topas" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000030"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC DD EE GG pp spsp rere", "Platin-Hell" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000031"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC dd EE GG PP spsp rere", "Agouti dd" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000032"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC dd EE gg PP spsp rere", "Silberagouti dd" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000033"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC dd ee GG PP spsp rere", "Kohlfuchs dd" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000034"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC dd EE gg PP spsp rere", "Anthrazit dd" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000035"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA cchmcchm DD EE GG PP spsp rere", "Agouti CP-Hell" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000036"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa cchmcchm DD ee gg PP spsp rere", "Blaufuchs CP" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000037"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC DD efef gg PP spsp rere", "Silberschimmel" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000039"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC DD efef GG PP spsp rere", "Algierfuchsschimmel" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000040"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA cchmcchm DD ee gg PP spsp rere", "Polarfuchs-Hell CP" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000041"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC DD efef GG PP spsp rere", "Kohlfuchsschimmel" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000042"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC DD efef gg PP spsp rere", "Blaufuchsschimmel" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000043"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC DD ee GG PP spsp rere", "Kohlfuchs, hell" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000044"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC DD ee GG pp spsp rere", "Goldfuchs, hell" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000045"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC DD efef GG pp spsp rere", "Goldfuchsschimmel" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000046"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC DD EE GG pp spsp rere", "Gold-Hell" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000047"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa cchmcchm dd EE GG PP spsp rere", "Siam (Marder-Hell) dd" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000048"),
column: "Name",
value: "Marder dd");
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000049"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa cchmcchm DD EE gg PP spsp rere", "Zobel-Hell" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000050"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA cchmcchm dd EE gg PP spsp rere", "Silberagouti dd CP" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000051"),
column: "Name",
value: "Silberagouti-Hell dd CP");
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000052"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA cchmcchm dd EE GG PP spsp rere", "Agouti dd CP" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000053"),
column: "Name",
value: "Agouti-Hell dd CP");
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000054"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC DD ee gg PP spsp rere", "Blaufuchs, hell" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000055"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC DD efef GG pp spsp rere", "Rotfuchsschimmel" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000056"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC DD ee gg PP spsp rere", "Polarfuchs, hell" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000057"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC DD efef GG PP spsp rere", "Kohlfuchsschimmel, hell" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000058"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC DD ee GG pp spsp rere", "Rotfuchs, hell" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000059"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa cchmcchm dd EE gg PP spsp rere", "Zobel dd" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000060"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC DD ee GG PP spsp rere", "Kohlfuchs-Hell" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000061"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa cchmcchm DD ee GG PP spsp rere", "Kohlfuchs CP" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000062"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA cchmcchm DD ee GG PP spsp rere", "Algierfuchs CP" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000063"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA cchmcchm DD EE gg PP spsp rere", "Silberagouti CP" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000064"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA cchmcchm DD EE GG PP spsp rere", "Agouti CP" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000065"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA cchmcchm DD ee GG PP spsp rere", "Algierfuchs-Hell CP" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000066"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa cchmcchm DD ee GG PP spsp rere", "Kohlfuchs,hell CP" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000067"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA cchmcchm DD ee gg PP spsp rere", "Polarfuchs CP" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000068"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC DD ee GG PP spsp rere", "Algierfuchs, hell" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000069"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC dd EE GG pp spsp rere", "Topas dd" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000070"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa cchmcchm dd EE gg PP spsp rere", "Zobel-Hell dd" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000071"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa cchmcchm DD efef GG PP spsp rere", "Kohlfuchsschimmel CP" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000072"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC dd ee gg pp spsp rere", "Blaufuchs dd" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000073"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA cchmcchm DD efef GG PP spsp rere", "CP-Orangeschimmel" });
}
/// <inheritdoc />
protected override void Down(MigrationBuilder migrationBuilder)
{
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000005"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC DD efef GG PP spsp rere", "Schwarzschimmel" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000006"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC DD efef GG pp spsp rere", "Rotaugenschimmel" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000007"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC DD EE GG PP spsp rere", "Agouti" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000008"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC DD EE GG PP spsp rere", "Schwarz" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000009"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC DD EE gg PP spsp rere", "Silberagouti" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000010"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC DD EE gg PP spsp rere", "Anthrazit" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000011"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC DD ee GG PP spsp rere", "Algierfuchs" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000012"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC dd EE GG PP spsp rere", "Blau" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000013"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC DD EE GG pp spsp rere", "Gold" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000014"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC DD EE GG pp spsp rere", "Platin" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000015"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC DD ee GG pp spsp rere", "Goldfuchs" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000016"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC DD ee GG pp spsp rere", "Rotfuchs" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000017"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC dd EE GG pp spsp rere", "dd Gold" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000018"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC dd EE GG pp spsp rere", "dd Platin" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000019"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC DD EE gg pp spsp rere", "Altweiss (REW)" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000020"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC DD ee gg pp spsp rere", "Apricot (Blassfuchs)" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000021"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC DD ee gg PP spsp rere", "Blaufuchs" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000022"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC DD ee gg pp spsp rere", "C-Separator" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000023"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC DD EE gg pp spsp rere", "Elfenbein" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000024"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC DD ee GG PP spsp rere", "Kohlfuchs" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000025"),
column: "Name",
value: "Marder");
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000026"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa cchmcchm DD EE GG PP spsp rere", "Siam (Marder-Hell)" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000027"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC DD ee gg PP spsp rere", "Polarfuchs" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000028"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC DD EE GG pp spsp rere", "Saphir" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000029"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC DD efef GG PP spsp rere", "Schimmel (Orangeschimmel)" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000030"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC DD EE GG pp spsp rere", "Topas" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000031"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC DD EE GG pp spsp rere", "Platin-Hell" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000032"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC dd EE GG PP spsp rere", "Agouti dd" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000033"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC dd EE gg PP spsp rere", "Silberagouti dd" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000034"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC dd ee GG PP spsp rere", "Kohlfuchs dd" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000035"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC dd EE gg PP spsp rere", "Anthrazit dd" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000036"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA cchmcchm DD EE GG PP spsp rere", "Agouti CP-Hell" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000037"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa cchmcchm DD ee gg PP spsp rere", "Blaufuchs CP" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000039"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC DD efef gg PP spsp rere", "Silberschimmel" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000040"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC DD efef GG PP spsp rere", "Algierfuchsschimmel" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000041"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA cchmcchm DD ee gg PP spsp rere", "Polarfuchs-Hell CP" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000042"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC DD efef GG PP spsp rere", "Kohlfuchsschimmel" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000043"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC DD efef gg PP spsp rere", "Blaufuchsschimmel" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000044"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC DD ee GG PP spsp rere", "Kohlfuchs, hell" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000045"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC DD ee GG pp spsp rere", "Goldfuchs, hell" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000046"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC DD efef GG pp spsp rere", "Goldfuchsschimmel" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000047"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC DD EE GG pp spsp rere", "Gold-Hell" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000048"),
column: "Name",
value: "Siam (Marder-Hell) dd");
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000049"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa cchmcchm dd EE GG PP spsp rere", "Marder dd" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000050"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa cchmcchm DD EE gg PP spsp rere", "Zobel-Hell" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000051"),
column: "Name",
value: "Silberagouti dd CP");
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000052"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA cchmcchm dd EE gg PP spsp rere", "Silberagouti-Hell dd CP" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000053"),
column: "Name",
value: "Agouti dd CP");
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000054"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA cchmcchm dd EE GG PP spsp rere", "Agouti-Hell dd CP" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000055"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC DD ee gg PP spsp rere", "Blaufuchs, hell" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000056"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC DD efef GG pp spsp rere", "Rotfuchsschimmel" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000057"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC DD ee gg PP spsp rere", "Polarfuchs, hell" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000058"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC DD efef GG PP spsp rere", "Kohlfuchsschimmel, hell" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000059"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC DD ee GG pp spsp rere", "Rotfuchs, hell" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000060"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa cchmcchm dd EE gg PP spsp rere", "Zobel dd" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000061"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC DD ee GG PP spsp rere", "Kohlfuchs-Hell" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000062"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa cchmcchm DD ee GG PP spsp rere", "Kohlfuchs CP" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000063"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA cchmcchm DD ee GG PP spsp rere", "Algierfuchs CP" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000064"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA cchmcchm DD EE gg PP spsp rere", "Silberagouti CP" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000065"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA cchmcchm DD EE GG PP spsp rere", "Agouti CP" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000066"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA cchmcchm DD ee GG PP spsp rere", "Algierfuchs-Hell CP" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000067"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa cchmcchm DD ee GG PP spsp rere", "Kohlfuchs,hell CP" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000068"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA cchmcchm DD ee gg PP spsp rere", "Polarfuchs CP" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000069"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC DD ee GG PP spsp rere", "Algierfuchs, hell" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000070"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC dd EE GG pp spsp rere", "Topas dd" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000071"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa cchmcchm dd EE gg PP spsp rere", "Zobel-Hell dd" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000072"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa cchmcchm DD efef GG PP spsp rere", "Kohlfuchsschimmel CP" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000073"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC dd ee gg PP spsp rere", "Blaufuchs dd" });
}
}
}

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using System;
using Microsoft.EntityFrameworkCore.Migrations;
#nullable disable
#pragma warning disable CA1814 // Prefer jagged arrays over multidimensional
namespace GerbilManagerWebAPI.Migrations
{
/// <inheritdoc />
public partial class ReseedColorVarietiesGen3f : Migration
{
/// <inheritdoc />
protected override void Up(MigrationBuilder migrationBuilder)
{
migrationBuilder.DeleteData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000062"));
migrationBuilder.DeleteData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000063"));
migrationBuilder.DeleteData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000064"));
migrationBuilder.DeleteData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000065"));
migrationBuilder.DeleteData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000066"));
migrationBuilder.DeleteData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000067"));
migrationBuilder.DeleteData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000068"));
migrationBuilder.DeleteData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000069"));
migrationBuilder.DeleteData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000070"));
migrationBuilder.DeleteData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000071"));
migrationBuilder.DeleteData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000072"));
migrationBuilder.DeleteData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000073"));
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000024"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC DD ee gg PP spsp rere", "Polarfuchs" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000025"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC DD EE GG pp spsp rere", "Saphir" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000026"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC DD efef GG PP spsp rere", "Orangeschimmel" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000027"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC DD EE GG pp spsp rere", "Topas" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000028"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC DD EE GG pp spsp rere", "Platin-Hell" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000029"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC dd EE GG PP spsp rere", "Agouti dd" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000030"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC dd EE gg PP spsp rere", "Silberagouti dd" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000031"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC dd ee GG PP spsp rere", "Kohlfuchs dd" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000032"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC dd EE gg PP spsp rere", "Anthrazit dd" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000033"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC DD efef gg PP spsp rere", "Silberschimmel" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000034"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC DD efef gg PP spsp rere", "Polarfuchsschimmel" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000035"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC DD efef GG PP spsp rere", "Algierfuchsschimmel" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000036"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC DD efef GG PP spsp rere", "Kohlfuchsschimmel" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000037"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC DD efef gg PP spsp rere", "Blaufuchsschimmel" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000038"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC DD ee GG PP spsp rere", "Kohlfuchs, hell" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000039"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC DD ee GG pp spsp rere", "Goldfuchs, hell" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000040"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC DD efef GG pp spsp rere", "Goldfuchsschimmel" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000041"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC DD EE GG pp spsp rere", "Gold-Hell" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000042"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC DD ee gg PP spsp rere", "Blaufuchs, hell" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000043"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC DD efef GG pp spsp rere", "Rotfuchsschimmel" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000044"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC DD ee gg PP spsp rere", "Polarfuchs, hell" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000045"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC DD efef GG PP spsp rere", "Kohlfuchsschimmel, hell" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000046"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC DD ee GG pp spsp rere", "Rotfuchs, hell" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000047"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC DD ee GG PP spsp rere", "Kohlfuchs-Hell" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000048"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC DD ee GG PP spsp rere", "Algierfuchs, hell" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000049"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC dd EE GG pp spsp rere", "Topas dd" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000050"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC dd ee gg pp spsp rere", "Blaufuchs dd" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000051"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa cchmcchm DD EE GG PP spsp rere", "Marder" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000052"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa cchmch DD EE GG PP spsp rere", "Siam" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000053"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa cchmch DD EE gg PP spsp rere", "Zobel-Hell" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000054"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA cchmcchm DD EE GG PP spsp rere", "CP-Agouti" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000055"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA cchmcchm DD EE gg PP spsp rere", "CP-Silberagouti" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000056"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA cchmcchm DD ee GG PP spsp rere", "CP-Algierfuchs" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000057"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA cchmcchm DD ee gg PP spsp rere", "CP-Polarfuchs" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000058"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA cchmcchm dd ee GG PP spsp rere", "CP-Fuchs" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000059"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA cchmch dd ee GG PP spsp rere", "CP-Fuchs-Hell" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000060"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA cchmcchm dd ee gg PP spsp rere", "CP-Blaufuchs" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000061"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA cchmcchm DD efef GG PP spsp rere", "CP-Orangeschimmel" });
}
/// <inheritdoc />
protected override void Down(MigrationBuilder migrationBuilder)
{
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000024"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa cchmcchm DD EE GG PP spsp rere", "Marder" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000025"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa cchmcchm DD EE GG PP spsp rere", "Siam (Marder-Hell)" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000026"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC DD ee gg PP spsp rere", "Polarfuchs" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000027"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC DD EE GG pp spsp rere", "Saphir" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000028"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC DD efef GG PP spsp rere", "Orangeschimmel" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000029"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC DD EE GG pp spsp rere", "Topas" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000030"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC DD EE GG pp spsp rere", "Platin-Hell" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000031"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC dd EE GG PP spsp rere", "Agouti dd" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000032"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC dd EE gg PP spsp rere", "Silberagouti dd" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000033"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC dd ee GG PP spsp rere", "Kohlfuchs dd" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000034"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC dd EE gg PP spsp rere", "Anthrazit dd" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000035"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA cchmcchm DD EE GG PP spsp rere", "Agouti CP-Hell" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000036"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa cchmcchm DD ee gg PP spsp rere", "Blaufuchs CP" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000037"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC DD efef gg PP spsp rere", "Silberschimmel" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000038"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC DD efef gg PP spsp rere", "Polarfuchsschimmel" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000039"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC DD efef GG PP spsp rere", "Algierfuchsschimmel" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000040"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA cchmcchm DD ee gg PP spsp rere", "Polarfuchs-Hell CP" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000041"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC DD efef GG PP spsp rere", "Kohlfuchsschimmel" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000042"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC DD efef gg PP spsp rere", "Blaufuchsschimmel" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000043"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC DD ee GG PP spsp rere", "Kohlfuchs, hell" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000044"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC DD ee GG pp spsp rere", "Goldfuchs, hell" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000045"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC DD efef GG pp spsp rere", "Goldfuchsschimmel" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000046"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC DD EE GG pp spsp rere", "Gold-Hell" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000047"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa cchmcchm dd EE GG PP spsp rere", "Siam (Marder-Hell) dd" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000048"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa cchmcchm dd EE GG PP spsp rere", "Marder dd" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000049"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa cchmcchm DD EE gg PP spsp rere", "Zobel-Hell" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000050"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA cchmcchm dd EE gg PP spsp rere", "Silberagouti dd CP" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000051"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA cchmcchm dd EE gg PP spsp rere", "Silberagouti-Hell dd CP" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000052"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA cchmcchm dd EE GG PP spsp rere", "Agouti dd CP" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000053"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA cchmcchm dd EE GG PP spsp rere", "Agouti-Hell dd CP" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000054"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC DD ee gg PP spsp rere", "Blaufuchs, hell" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000055"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC DD efef GG pp spsp rere", "Rotfuchsschimmel" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000056"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "AA CC DD ee gg PP spsp rere", "Polarfuchs, hell" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000057"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC DD efef GG PP spsp rere", "Kohlfuchsschimmel, hell" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000058"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC DD ee GG pp spsp rere", "Rotfuchs, hell" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000059"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa cchmcchm dd EE gg PP spsp rere", "Zobel dd" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000060"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa CC DD ee GG PP spsp rere", "Kohlfuchs-Hell" });
migrationBuilder.UpdateData(
table: "ColorVarieties",
keyColumn: "Id",
keyValue: new Guid("00000000-0000-0000-0000-000000000061"),
columns: new[] { "CanonicalGenotype", "Name" },
values: new object[] { "aa cchmcchm DD ee GG PP spsp rere", "Kohlfuchs CP" });
migrationBuilder.InsertData(
table: "ColorVarieties",
columns: new[] { "Id", "CanonicalGenotype", "Name", "SortOrder" },
values: new object[,]
{
{ new Guid("00000000-0000-0000-0000-000000000062"), "AA cchmcchm DD ee GG PP spsp rere", "Algierfuchs CP", 61 },
{ new Guid("00000000-0000-0000-0000-000000000063"), "AA cchmcchm DD EE gg PP spsp rere", "Silberagouti CP", 62 },
{ new Guid("00000000-0000-0000-0000-000000000064"), "AA cchmcchm DD EE GG PP spsp rere", "Agouti CP", 63 },
{ new Guid("00000000-0000-0000-0000-000000000065"), "AA cchmcchm DD ee GG PP spsp rere", "Algierfuchs-Hell CP", 64 },
{ new Guid("00000000-0000-0000-0000-000000000066"), "aa cchmcchm DD ee GG PP spsp rere", "Kohlfuchs,hell CP", 65 },
{ new Guid("00000000-0000-0000-0000-000000000067"), "AA cchmcchm DD ee gg PP spsp rere", "Polarfuchs CP", 66 },
{ new Guid("00000000-0000-0000-0000-000000000068"), "AA CC DD ee GG PP spsp rere", "Algierfuchs, hell", 67 },
{ new Guid("00000000-0000-0000-0000-000000000069"), "AA CC dd EE GG pp spsp rere", "Topas dd", 68 },
{ new Guid("00000000-0000-0000-0000-000000000070"), "aa cchmcchm dd EE gg PP spsp rere", "Zobel-Hell dd", 69 },
{ new Guid("00000000-0000-0000-0000-000000000071"), "aa cchmcchm DD efef GG PP spsp rere", "Kohlfuchsschimmel CP", 70 },
{ new Guid("00000000-0000-0000-0000-000000000072"), "aa CC dd ee gg pp spsp rere", "Blaufuchs dd", 71 },
{ new Guid("00000000-0000-0000-0000-000000000073"), "AA cchmcchm DD efef GG PP spsp rere", "CP-Orangeschimmel", 72 }
});
}
}
}

View File

@@ -210,485 +210,401 @@ namespace GerbilManagerWebAPI.Migrations
new
{
Id = new Guid("00000000-0000-0000-0000-000000000005"),
CanonicalGenotype = "AA CC DD efef GG PP spsp rere",
Name = "Schwarzschimmel",
CanonicalGenotype = "AA CC DD efef GG pp spsp rere",
Name = "Rotaugenschimmel",
SortOrder = 4
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000006"),
CanonicalGenotype = "AA CC DD efef GG pp spsp rere",
Name = "Rotaugenschimmel",
CanonicalGenotype = "AA CC DD EE GG PP spsp rere",
Name = "Agouti",
SortOrder = 5
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000007"),
CanonicalGenotype = "AA CC DD EE GG PP spsp rere",
Name = "Agouti",
CanonicalGenotype = "aa CC DD EE GG PP spsp rere",
Name = "Schwarz",
SortOrder = 6
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000008"),
CanonicalGenotype = "aa CC DD EE GG PP spsp rere",
Name = "Schwarz",
CanonicalGenotype = "AA CC DD EE gg PP spsp rere",
Name = "Silberagouti",
SortOrder = 7
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000009"),
CanonicalGenotype = "AA CC DD EE gg PP spsp rere",
Name = "Silberagouti",
CanonicalGenotype = "aa CC DD EE gg PP spsp rere",
Name = "Anthrazit",
SortOrder = 8
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000010"),
CanonicalGenotype = "aa CC DD EE gg PP spsp rere",
Name = "Anthrazit",
CanonicalGenotype = "AA CC DD ee GG PP spsp rere",
Name = "Algierfuchs",
SortOrder = 9
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000011"),
CanonicalGenotype = "AA CC DD ee GG PP spsp rere",
Name = "Algierfuchs",
CanonicalGenotype = "aa CC dd EE GG PP spsp rere",
Name = "Blau",
SortOrder = 10
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000012"),
CanonicalGenotype = "aa CC dd EE GG PP spsp rere",
Name = "Blau",
CanonicalGenotype = "AA CC DD EE GG pp spsp rere",
Name = "Gold",
SortOrder = 11
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000013"),
CanonicalGenotype = "AA CC DD EE GG pp spsp rere",
Name = "Gold",
CanonicalGenotype = "aa CC DD EE GG pp spsp rere",
Name = "Platin",
SortOrder = 12
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000014"),
CanonicalGenotype = "aa CC DD EE GG pp spsp rere",
Name = "Platin",
CanonicalGenotype = "AA CC DD ee GG pp spsp rere",
Name = "Goldfuchs",
SortOrder = 13
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000015"),
CanonicalGenotype = "AA CC DD ee GG pp spsp rere",
Name = "Goldfuchs",
CanonicalGenotype = "aa CC DD ee GG pp spsp rere",
Name = "Rotfuchs",
SortOrder = 14
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000016"),
CanonicalGenotype = "aa CC DD ee GG pp spsp rere",
Name = "Rotfuchs",
CanonicalGenotype = "AA CC dd EE GG pp spsp rere",
Name = "dd Gold",
SortOrder = 15
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000017"),
CanonicalGenotype = "AA CC dd EE GG pp spsp rere",
Name = "dd Gold",
CanonicalGenotype = "aa CC dd EE GG pp spsp rere",
Name = "dd Platin",
SortOrder = 16
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000018"),
CanonicalGenotype = "aa CC dd EE GG pp spsp rere",
Name = "dd Platin",
CanonicalGenotype = "aa CC DD EE gg pp spsp rere",
Name = "Altweiss (REW)",
SortOrder = 17
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000019"),
CanonicalGenotype = "aa CC DD EE gg pp spsp rere",
Name = "Altweiss (REW)",
CanonicalGenotype = "AA CC DD ee gg pp spsp rere",
Name = "Apricot (Blassfuchs)",
SortOrder = 18
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000020"),
CanonicalGenotype = "AA CC DD ee gg pp spsp rere",
Name = "Apricot (Blassfuchs)",
CanonicalGenotype = "aa CC DD ee gg PP spsp rere",
Name = "Blaufuchs",
SortOrder = 19
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000021"),
CanonicalGenotype = "aa CC DD ee gg PP spsp rere",
Name = "Blaufuchs",
CanonicalGenotype = "aa CC DD ee gg pp spsp rere",
Name = "C-Separator",
SortOrder = 20
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000022"),
CanonicalGenotype = "aa CC DD ee gg pp spsp rere",
Name = "C-Separator",
CanonicalGenotype = "AA CC DD EE gg pp spsp rere",
Name = "Elfenbein",
SortOrder = 21
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000023"),
CanonicalGenotype = "AA CC DD EE gg pp spsp rere",
Name = "Elfenbein",
CanonicalGenotype = "aa CC DD ee GG PP spsp rere",
Name = "Kohlfuchs",
SortOrder = 22
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000024"),
CanonicalGenotype = "aa CC DD ee GG PP spsp rere",
Name = "Kohlfuchs",
CanonicalGenotype = "AA CC DD ee gg PP spsp rere",
Name = "Polarfuchs",
SortOrder = 23
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000025"),
CanonicalGenotype = "aa cchmcchm DD EE GG PP spsp rere",
Name = "Marder",
CanonicalGenotype = "aa CC DD EE GG pp spsp rere",
Name = "Saphir",
SortOrder = 24
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000026"),
CanonicalGenotype = "aa cchmcchm DD EE GG PP spsp rere",
Name = "Siam (Marder-Hell)",
CanonicalGenotype = "AA CC DD efef GG PP spsp rere",
Name = "Orangeschimmel",
SortOrder = 25
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000027"),
CanonicalGenotype = "AA CC DD ee gg PP spsp rere",
Name = "Polarfuchs",
CanonicalGenotype = "AA CC DD EE GG pp spsp rere",
Name = "Topas",
SortOrder = 26
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000028"),
CanonicalGenotype = "aa CC DD EE GG pp spsp rere",
Name = "Saphir",
Name = "Platin-Hell",
SortOrder = 27
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000029"),
CanonicalGenotype = "AA CC DD efef GG PP spsp rere",
Name = "Schimmel (Orangeschimmel)",
CanonicalGenotype = "AA CC dd EE GG PP spsp rere",
Name = "Agouti dd",
SortOrder = 28
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000030"),
CanonicalGenotype = "AA CC DD EE GG pp spsp rere",
Name = "Topas",
CanonicalGenotype = "AA CC dd EE gg PP spsp rere",
Name = "Silberagouti dd",
SortOrder = 29
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000031"),
CanonicalGenotype = "aa CC DD EE GG pp spsp rere",
Name = "Platin-Hell",
CanonicalGenotype = "aa CC dd ee GG PP spsp rere",
Name = "Kohlfuchs dd",
SortOrder = 30
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000032"),
CanonicalGenotype = "AA CC dd EE GG PP spsp rere",
Name = "Agouti dd",
CanonicalGenotype = "aa CC dd EE gg PP spsp rere",
Name = "Anthrazit dd",
SortOrder = 31
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000033"),
CanonicalGenotype = "AA CC dd EE gg PP spsp rere",
Name = "Silberagouti dd",
CanonicalGenotype = "AA CC DD efef gg PP spsp rere",
Name = "Silberschimmel",
SortOrder = 32
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000034"),
CanonicalGenotype = "aa CC dd ee GG PP spsp rere",
Name = "Kohlfuchs dd",
CanonicalGenotype = "AA CC DD efef gg PP spsp rere",
Name = "Polarfuchsschimmel",
SortOrder = 33
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000035"),
CanonicalGenotype = "aa CC dd EE gg PP spsp rere",
Name = "Anthrazit dd",
CanonicalGenotype = "AA CC DD efef GG PP spsp rere",
Name = "Algierfuchsschimmel",
SortOrder = 34
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000036"),
CanonicalGenotype = "AA cchmcchm DD EE GG PP spsp rere",
Name = "Agouti CP-Hell",
CanonicalGenotype = "aa CC DD efef GG PP spsp rere",
Name = "Kohlfuchsschimmel",
SortOrder = 35
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000037"),
CanonicalGenotype = "aa cchmcchm DD ee gg PP spsp rere",
Name = "Blaufuchs CP",
CanonicalGenotype = "aa CC DD efef gg PP spsp rere",
Name = "Blaufuchsschimmel",
SortOrder = 36
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000038"),
CanonicalGenotype = "AA CC DD efef gg PP spsp rere",
Name = "Polarfuchsschimmel",
CanonicalGenotype = "aa CC DD ee GG PP spsp rere",
Name = "Kohlfuchs, hell",
SortOrder = 37
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000039"),
CanonicalGenotype = "AA CC DD efef gg PP spsp rere",
Name = "Silberschimmel",
CanonicalGenotype = "AA CC DD ee GG pp spsp rere",
Name = "Goldfuchs, hell",
SortOrder = 38
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000040"),
CanonicalGenotype = "AA CC DD efef GG PP spsp rere",
Name = "Algierfuchsschimmel",
CanonicalGenotype = "AA CC DD efef GG pp spsp rere",
Name = "Goldfuchsschimmel",
SortOrder = 39
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000041"),
CanonicalGenotype = "AA cchmcchm DD ee gg PP spsp rere",
Name = "Polarfuchs-Hell CP",
CanonicalGenotype = "AA CC DD EE GG pp spsp rere",
Name = "Gold-Hell",
SortOrder = 40
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000042"),
CanonicalGenotype = "aa CC DD efef GG PP spsp rere",
Name = "Kohlfuchsschimmel",
CanonicalGenotype = "aa CC DD ee gg PP spsp rere",
Name = "Blaufuchs, hell",
SortOrder = 41
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000043"),
CanonicalGenotype = "aa CC DD efef gg PP spsp rere",
Name = "Blaufuchsschimmel",
CanonicalGenotype = "aa CC DD efef GG pp spsp rere",
Name = "Rotfuchsschimmel",
SortOrder = 42
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000044"),
CanonicalGenotype = "aa CC DD ee GG PP spsp rere",
Name = "Kohlfuchs, hell",
CanonicalGenotype = "AA CC DD ee gg PP spsp rere",
Name = "Polarfuchs, hell",
SortOrder = 43
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000045"),
CanonicalGenotype = "AA CC DD ee GG pp spsp rere",
Name = "Goldfuchs, hell",
CanonicalGenotype = "aa CC DD efef GG PP spsp rere",
Name = "Kohlfuchsschimmel, hell",
SortOrder = 44
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000046"),
CanonicalGenotype = "AA CC DD efef GG pp spsp rere",
Name = "Goldfuchsschimmel",
CanonicalGenotype = "aa CC DD ee GG pp spsp rere",
Name = "Rotfuchs, hell",
SortOrder = 45
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000047"),
CanonicalGenotype = "AA CC DD EE GG pp spsp rere",
Name = "Gold-Hell",
CanonicalGenotype = "aa CC DD ee GG PP spsp rere",
Name = "Kohlfuchs-Hell",
SortOrder = 46
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000048"),
CanonicalGenotype = "aa cchmcchm dd EE GG PP spsp rere",
Name = "Siam (Marder-Hell) dd",
CanonicalGenotype = "AA CC DD ee GG PP spsp rere",
Name = "Algierfuchs, hell",
SortOrder = 47
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000049"),
CanonicalGenotype = "aa cchmcchm dd EE GG PP spsp rere",
Name = "Marder dd",
CanonicalGenotype = "AA CC dd EE GG pp spsp rere",
Name = "Topas dd",
SortOrder = 48
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000050"),
CanonicalGenotype = "aa cchmcchm DD EE gg PP spsp rere",
Name = "Zobel-Hell",
CanonicalGenotype = "aa CC dd ee gg pp spsp rere",
Name = "Blaufuchs dd",
SortOrder = 49
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000051"),
CanonicalGenotype = "AA cchmcchm dd EE gg PP spsp rere",
Name = "Silberagouti dd CP",
CanonicalGenotype = "aa cchmcchm DD EE GG PP spsp rere",
Name = "Marder",
SortOrder = 50
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000052"),
CanonicalGenotype = "AA cchmcchm dd EE gg PP spsp rere",
Name = "Silberagouti-Hell dd CP",
CanonicalGenotype = "aa cchmch DD EE GG PP spsp rere",
Name = "Siam",
SortOrder = 51
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000053"),
CanonicalGenotype = "AA cchmcchm dd EE GG PP spsp rere",
Name = "Agouti dd CP",
CanonicalGenotype = "aa cchmch DD EE gg PP spsp rere",
Name = "Zobel-Hell",
SortOrder = 52
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000054"),
CanonicalGenotype = "AA cchmcchm dd EE GG PP spsp rere",
Name = "Agouti-Hell dd CP",
CanonicalGenotype = "AA cchmcchm DD EE GG PP spsp rere",
Name = "CP-Agouti",
SortOrder = 53
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000055"),
CanonicalGenotype = "aa CC DD ee gg PP spsp rere",
Name = "Blaufuchs, hell",
CanonicalGenotype = "AA cchmcchm DD EE gg PP spsp rere",
Name = "CP-Silberagouti",
SortOrder = 54
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000056"),
CanonicalGenotype = "aa CC DD efef GG pp spsp rere",
Name = "Rotfuchsschimmel",
CanonicalGenotype = "AA cchmcchm DD ee GG PP spsp rere",
Name = "CP-Algierfuchs",
SortOrder = 55
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000057"),
CanonicalGenotype = "AA CC DD ee gg PP spsp rere",
Name = "Polarfuchs, hell",
CanonicalGenotype = "AA cchmcchm DD ee gg PP spsp rere",
Name = "CP-Polarfuchs",
SortOrder = 56
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000058"),
CanonicalGenotype = "aa CC DD efef GG PP spsp rere",
Name = "Kohlfuchsschimmel, hell",
CanonicalGenotype = "AA cchmcchm dd ee GG PP spsp rere",
Name = "CP-Fuchs",
SortOrder = 57
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000059"),
CanonicalGenotype = "aa CC DD ee GG pp spsp rere",
Name = "Rotfuchs, hell",
CanonicalGenotype = "AA cchmch dd ee GG PP spsp rere",
Name = "CP-Fuchs-Hell",
SortOrder = 58
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000060"),
CanonicalGenotype = "aa cchmcchm dd EE gg PP spsp rere",
Name = "Zobel dd",
CanonicalGenotype = "AA cchmcchm dd ee gg PP spsp rere",
Name = "CP-Blaufuchs",
SortOrder = 59
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000061"),
CanonicalGenotype = "aa CC DD ee GG PP spsp rere",
Name = "Kohlfuchs-Hell",
CanonicalGenotype = "AA cchmcchm DD efef GG PP spsp rere",
Name = "CP-Orangeschimmel",
SortOrder = 60
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000062"),
CanonicalGenotype = "aa cchmcchm DD ee GG PP spsp rere",
Name = "Kohlfuchs CP",
SortOrder = 61
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000063"),
CanonicalGenotype = "AA cchmcchm DD ee GG PP spsp rere",
Name = "Algierfuchs CP",
SortOrder = 62
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000064"),
CanonicalGenotype = "AA cchmcchm DD EE gg PP spsp rere",
Name = "Silberagouti CP",
SortOrder = 63
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000065"),
CanonicalGenotype = "AA cchmcchm DD EE GG PP spsp rere",
Name = "Agouti CP",
SortOrder = 64
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000066"),
CanonicalGenotype = "AA cchmcchm DD ee GG PP spsp rere",
Name = "Algierfuchs-Hell CP",
SortOrder = 65
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000067"),
CanonicalGenotype = "aa cchmcchm DD ee GG PP spsp rere",
Name = "Kohlfuchs,hell CP",
SortOrder = 66
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000068"),
CanonicalGenotype = "AA cchmcchm DD ee gg PP spsp rere",
Name = "Polarfuchs CP",
SortOrder = 67
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000069"),
CanonicalGenotype = "AA CC DD ee GG PP spsp rere",
Name = "Algierfuchs, hell",
SortOrder = 68
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000070"),
CanonicalGenotype = "AA CC dd EE GG pp spsp rere",
Name = "Topas dd",
SortOrder = 69
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000071"),
CanonicalGenotype = "aa cchmcchm dd EE gg PP spsp rere",
Name = "Zobel-Hell dd",
SortOrder = 70
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000072"),
CanonicalGenotype = "aa cchmcchm DD efef GG PP spsp rere",
Name = "Kohlfuchsschimmel CP",
SortOrder = 71
},
new
{
Id = new Guid("00000000-0000-0000-0000-000000000073"),
CanonicalGenotype = "aa CC dd ee gg PP spsp rere",
Name = "Blaufuchs dd",
SortOrder = 72
});
});
@@ -781,6 +697,14 @@ namespace GerbilManagerWebAPI.Migrations
b.Property<string>("ImportSource")
.HasColumnType("text");
b.Property<bool?>("IsDeaf")
.HasColumnType("boolean");
b.Property<bool>("IsResident")
.ValueGeneratedOnAdd()
.HasColumnType("boolean")
.HasDefaultValue(true);
b.Property<Guid?>("LitterId")
.HasColumnType("uuid");

View File

@@ -67,6 +67,19 @@ namespace GerbilManagerWebAPI.Models
/// <summary>FEAT-14: free-text character note; feeds the AI Verkaufstext.</summary>
public string? CharacterNote { get; set; }
/// <summary>GEN-3b: hearing/deaf phenotype flag (NOT a genotype locus — it's the
/// downstream effect of high white load / Sp×Sls). null = not stated, true = deaf
/// (dea/taub), false = hearing (Dea/hörend). Set by the FEAT-8 import from the
/// after-spsp deafness annotation; see hive/agents/god/GENETIK-notation.md.</summary>
public bool? IsDeaf { get; set; }
/// <summary>Residency/ownership (ORIGIN, distinct from Abgabe location): true = part of
/// the Clan-kleine-Chaoten Bestand, false = external pedigree ancestor (bred elsewhere).
/// Rule (a) Zuchtname matches the Clan kennel, OR (b) it's a parent of a Clan offspring.
/// Defaults true (manually-added animals are own stock); the FEAT-8 import classifies
/// imported animals. See hive/agents/god/OWNERSHIP-residency.md. Gridify-filterable.</summary>
public bool IsResident { get; set; } = true;
}
/// <summary>Shared normalisation for the separator-insensitive name search.</summary>

View File

@@ -41,6 +41,9 @@ builder.Services.AddOptions<GerbilManagerWebAPI.SaleAd.AiOptions>()
.BindConfiguration(GerbilManagerWebAPI.SaleAd.AiOptions.SectionName);
builder.Services.AddHttpClient<GerbilManagerWebAPI.SaleAd.SaleAdService>(
http => http.Timeout = TimeSpan.FromSeconds(60));
// INBOX-2: KI-Antwortentwurf (gleiche AI-Sektion, gleicher Wire-Client).
builder.Services.AddHttpClient<GerbilManagerWebAPI.Inbox.DraftReplyService>(
http => http.Timeout = TimeSpan.FromSeconds(60));
// INBOX-0: Gmail inbox. App Password encrypted at rest via Data Protection.
builder.Services.AddDataProtection();

View File

@@ -58,7 +58,8 @@ namespace GerbilManagerWebAPI.SaleAd
Harte Regeln:
- NIEMALS Preise oder Schutzgebühren nennen.
- KEINE Fakten erfinden: Verwende ausschließlich die mitgelieferten Daten (Namen, Farbschläge, Geburtsdaten, Notizen). Fehlt eine Angabe, lässt du sie weg.
- KEINE Fakten erfinden: Verwende ausschließlich die mitgelieferten Daten (Namen, Farbschläge, Geburtsdaten, Charakter-Angaben, Notizen). Fehlt eine Angabe, lässt du sie weg.
- Charakter-Eigenschaften (Stichworte wie „zutraulich“, „buddelt gern“) und die Charakter-Notiz sind die Grundlage der Persönlichkeits-Prosa: Verwebe sie zu FLIESSENDEM Text — niemals als Aufzählung oder Stichwortliste ausgeben.
- Sprache: Deutsch, warm und liebevoll, aber nicht kitschig-übertrieben.
- Gib NUR den Inserat-Text aus — keine Erklärungen, keine Markdown-Code-Blöcke.
@@ -85,12 +86,18 @@ namespace GerbilManagerWebAPI.SaleAd
sb.Append($" | Farbschlag: {animal.Farbschlag}");
if (!string.IsNullOrWhiteSpace(animal.DateOfBirth))
sb.Append($" | geboren am {FormatGermanDate(animal.DateOfBirth)}");
if (!string.IsNullOrWhiteSpace(animal.Notes))
sb.Append($" | Notizen: {animal.Notes}");
// FEAT-14c: Charakterbogen (Traits + Notiz) ist die BEVORZUGTE
// Charakterquelle; die generischen Notizen dienen nur als
// Fallback, wenn kein Charakterbogen gepflegt ist (sie enthalten
// oft Verwaltungs-Infos, die nicht ins Inserat gehören).
var hasCharacter = animal.Traits is { Count: > 0 }
|| !string.IsNullOrWhiteSpace(animal.CharacterNote);
if (animal.Traits is { Count: > 0 })
sb.Append($" | Charakter: {string.Join(", ", animal.Traits)}");
if (!string.IsNullOrWhiteSpace(animal.CharacterNote))
sb.Append($" | Charakter-Notiz: {animal.CharacterNote}");
if (!hasCharacter && !string.IsNullOrWhiteSpace(animal.Notes))
sb.Append($" | Notizen: {animal.Notes}");
sb.AppendLine();
}
if (!string.IsNullOrWhiteSpace(request.Hints))

View File

@@ -1,87 +1,35 @@
using System.Net.Http.Headers;
using System.Text;
using System.Text.Json;
using System.Text.Json.Serialization;
using GerbilManagerWebAPI.Ai;
using Microsoft.Extensions.Options;
namespace GerbilManagerWebAPI.SaleAd
{
/// <summary>
/// FEAT-12a: provider-agnostic AI client for sale-ad generation.
///
/// Speaks the OpenAI-compatible chat-completions wire shape — deliberately
/// WITHOUT any vendor SDK: a plain JSON POST to {AI:BaseUrl}/chat/completions
/// with a Bearer key covers Google Gemini (compat endpoint), Groq, Mistral,
/// local Ollama and any future provider. The wire shape IS the abstraction.
/// FEAT-12a: sale-ad generation. The provider-agnostic wire handling lives in
/// <see cref="OpenAiChatClient"/> (extracted in INBOX-2 so the reply-draft and
/// future AI features reuse the SAME implementation); this service contributes
/// the sale-ad prompts and the SaleAd-shaped result. Public surface unchanged.
/// </summary>
public sealed class SaleAdService(HttpClient http, IOptions<AiOptions> options)
{
private static readonly JsonSerializerOptions JsonOptions = new()
{
PropertyNamingPolicy = JsonNamingPolicy.CamelCase,
DefaultIgnoreCondition = JsonIgnoreCondition.WhenWritingNull,
};
private readonly OpenAiChatClient _client = new(http, options);
public async Task<SaleAdResult> GenerateAsync(SaleAdRequest request, CancellationToken ct = default)
{
var ai = options.Value;
if (!ai.IsConfigured)
var result = await _client.CompleteAsync(
SaleAdPromptBuilder.BuildSystemPrompt(),
SaleAdPromptBuilder.BuildUserPrompt(request),
ct);
var status = result.Status switch
{
return new SaleAdResult(SaleAdStatus.NotConfigured, null,
"KI-Anbieter ist nicht konfiguriert (AI__BaseUrl / AI__ApiKey / AI__Model).");
}
var payload = new ChatRequest(
Model: ai.Model!,
Messages:
[
new ChatMessage("system", SaleAdPromptBuilder.BuildSystemPrompt()),
new ChatMessage("user", SaleAdPromptBuilder.BuildUserPrompt(request)),
],
Temperature: 0.7);
using var httpRequest = new HttpRequestMessage(HttpMethod.Post, BuildCompletionsUri(ai.BaseUrl!))
{
Content = new StringContent(JsonSerializer.Serialize(payload, JsonOptions),
Encoding.UTF8, "application/json"),
AiCallStatus.Ok => SaleAdStatus.Ok,
AiCallStatus.NotConfigured => SaleAdStatus.NotConfigured,
_ => SaleAdStatus.UpstreamError,
};
httpRequest.Headers.Authorization = new AuthenticationHeaderValue("Bearer", ai.ApiKey);
try
{
using var response = await http.SendAsync(httpRequest, ct);
var body = await response.Content.ReadAsStringAsync(ct);
if (!response.IsSuccessStatusCode)
{
return new SaleAdResult(SaleAdStatus.UpstreamError, null,
$"KI-Anbieter antwortete mit HTTP {(int)response.StatusCode}.");
}
var completion = JsonSerializer.Deserialize<ChatResponse>(body, JsonOptions);
var text = completion?.Choices?.FirstOrDefault()?.Message?.Content?.Trim();
return string.IsNullOrWhiteSpace(text)
? new SaleAdResult(SaleAdStatus.UpstreamError, null,
"KI-Antwort enthielt keinen Text.")
: new SaleAdResult(SaleAdStatus.Ok, text);
}
catch (Exception ex) when (ex is HttpRequestException or TaskCanceledException or JsonException)
{
return new SaleAdResult(SaleAdStatus.UpstreamError, null,
$"KI-Anbieter nicht erreichbar: {ex.Message}");
}
return new SaleAdResult(status, result.Text, result.Error);
}
/// <summary>{BaseUrl}/chat/completions — tolerant of a trailing slash on BaseUrl.</summary>
/// <summary>Forwarder kept for the existing config-matrix tests.</summary>
internal static Uri BuildCompletionsUri(string baseUrl) =>
new($"{baseUrl.TrimEnd('/')}/chat/completions");
// ── OpenAI-compatible wire records (request + the slice of the response we read) ──
internal sealed record ChatRequest(string Model, List<ChatMessage> Messages, double? Temperature);
internal sealed record ChatMessage(string Role, string Content);
internal sealed record ChatResponse(List<ChatChoice>? Choices);
internal sealed record ChatChoice(ChatMessage? Message);
OpenAiChatClient.BuildCompletionsUri(baseUrl);
}
}

View File

@@ -51,6 +51,8 @@ gelisteten Konflikt-Tiere + Tiere mit Sonder-Kürzeln warten in Quarantäne —
| ~~C5~~ | ✅ **BEANTWORTET** (2026-06-06): **Es gibt KEIN „Schwarzschimmel"** — das war ein Fehler in unserem Katalog. Die korrekten Schimmelarten: `efef`**Orangeschimmel** · `efef pp`**Rotaugenschimmel** · `efef gg`**Silberschimmel** · Kombis z. B. `c[chm]c[chm] efef`**CP-Orangeschimmel**. Michael korrigiert den Katalog (Schwarzschimmel raus, efef = Orangeschimmel). | — erledigt |
| C6 | **Die 32 Konflikt-Tiere prüfen** → siehe Abschnitt **D**. | diese 32 Tiere werden erst danach geladen |
| C7 | *(optional)* Was hat dir bei **Renner Pro** gefehlt? Lieblings-Auswertungen? | mögliche neue Funktionen |
| ~~C8~~ | ✅ **BEANTWORTET** (2026-06-06): **Himalaya gibt es** — Himalaya = **`A- c[h]c[h]`** (agouti), Hermelin = **`aa c[h]c[h]`** (nicht-agouti). Beide bleiben im Katalog; die Engine unterscheidet bereits korrekt nach A-/aa. — erledigt |
| C9 | *(optional, technisch)* Bei den **CP-Fuchs-Farben**: Wodurch unterscheiden sich genetisch **CP-Fuchs****CP-Blaufuchs****CP-Fuchs-Hell**? (Vermutung: Blaufuchs = `dd`-Verdünnung, „-Hell" = `c[chm]c[h]` statt `c[chm]c[chm]` — stimmt das?) Aktuell rechnet das Programm alle drei als „CP-Fuchs"; mit deiner Regel können wir sie genau unterscheiden. Per Hand auswählbar sind sie schon. | Farb-Engine Feinschliff (niedrige Priorität) |
### Hinweis zu C5 — woher kam das falsche „Schwarzschimmel"? (wie gewünscht notiert)
„Schwarzschimmel" stammt aus **unserem ursprünglichen Farbkatalog** `gerbil-manager-web/src/genetics/catalog.ts` (Genotyp `efef`), den wir ganz am Anfang aus den deutschen Genetik-Quellen (de.wikibooks „Schwarze Augen", rennmauswelten, clan-of-topolino) aufgebaut hatten. Von dort kam es in die DB-Seed-Liste + Stammbaum-Farbchips. → Wird in GEN-3 korrigiert: Schwarzschimmel entfernt, `efef` = Orangeschimmel. *(Falls du der Quelle Bescheid geben willst: es ist die de.wikibooks-Farbgenetik-Seite.)*
@@ -63,35 +65,58 @@ Bitte je Tier kurz sagen, **welche Angabe stimmt**. Gruppiert nach Konflikt-Art.
Alle Details (sämtliche Genotyp-Varianten + Quelldateien): `tools/import/output/review-report.md`.
### D1 · Im Farbschlag-Feld steht versehentlich ein **Tiername** (Tippfehler) — welcher Farbschlag stimmt wirklich?
| Tier | im Farbschlag steht fälschlich |
|---|---|
| ZoneFire (*07.12.2020) | „Kalea von den Kleinen Chaoten" |
| Louis v.d. Kleinen Chaoten (*15.07.2017) | „Roswitha…" (+ Genotyp G/Uw, siehe D2) |
| Bruno of Black Forest (*01.06.2022) | „Mystique of Black Forest" (evtl. Blau) |
| Little Runner's Big Ben (*03.02.2020) | „Daja of Little Rose" |
| Vance Jr. v.d. Kleinen Chaoten (*10.04.2022) | „Velvet…" (evtl. Kohlfuchs, hell) |
| Trogir v.d. Kleinen Chaoten (*21.03.2022) | „Mahima…" (evtl. Gold Ansatzschecke) |
| Chayton v.d. Kleinen Chaoten (*04.02.2022) | „Victoria Welby…" (evtl. Orangeschimmel, hell) |
| Zac gen. Action v.d. Kleinen Chaoten (*25.12.2020) | „Belica gen. Emi…" |
| Chesnut (*13.11.2019) | „Tennessee…" (evtl. Kohlfuchsschimmel) |
| Ethan v.d. Kleinen Chaoten (*09.07.2020) | „Ichika…" (evtl. Orangeschimmel hell Kragenschecke) |
| Quied Soldier of Black Forest (*07.06.2018) | „Hoshi…" |
> ✅ **GEKLÄRT (Julian, 2026-06-06):** Ursache gefunden — **ab Spalte K** im Stammbaum stehen pro Tier nur Name / Datum / **Gencode** (KEINE Farbangabe). Der Importer hatte dort fälschlich die Nachbarzelle (z. B. den Namen des nächsten Tiers wie „Tennessee", oder eine Notiz wie „DD-Tumor") als Farbschlag gelesen. **Fix ist beauftragt:** in den tiefen Spalten wird kein Farbschlag mehr ausgelesen, die **Farbe wird aus dem Gencode berechnet**; in den frühen Spalten (Proband/Eltern) bleibt der echte Farbschlag erhalten (z. B. Chesnut = „Kohlfuchsschimmel"). **Chesnut und Tennessee sind getrennte Tiere** (bestätigt). → Nach dem Fix verschwindet D1 von selbst; **keine Aktion nötig.**
| Tier | im Farbschlag steht fälschlich | 📂 Stammbaum-Datei zum Nachschauen |
|---|---|---|
| ZoneFire (*07.12.2020) | „Kalea von den Kleinen Chaoten" | *Stammbaum von Akio Kids* |
| Louis v.d. Kleinen Chaoten (*15.07.2017) | „Roswitha…" (+ Genotyp G/Uw, siehe D2) | *(Quelle siehe `review-report.md`)* |
| Bruno of Black Forest (*01.06.2022) | „Mystique of Black Forest" (evtl. Blau) | *Stammbaum von Alberto Kids / Fire Kids / Stella Kids* |
| Little Runner's Big Ben (*03.02.2020) | „Daja of Little Rose" | *Stammbaum von Goldfuchs Sp (Pikachu) Kids* |
| Vance Jr. v.d. Kleinen Chaoten (*10.04.2022) | „Velvet…" (evtl. Kohlfuchs, hell) | *Stammbaum von Fire Kids / Stella Kids* |
| Trogir v.d. Kleinen Chaoten (*21.03.2022) | „Mahima…" (evtl. Gold Ansatzschecke) | *Stammbaum von Goldfuchs Sp (Pikachu) Kids / Kohlief, Goldfuchsef Sp von Chrissi / Watarus Kids* |
| Chayton v.d. Kleinen Chaoten (*04.02.2022) | „Victoria Welby…" (evtl. Orangeschimmel, hell) | *Stammbaum von Goldfuchs Sp (Pikachu) Kids / Kohlief, Goldfuchsef Sp von Chrissi / Watarus Kids* |
| Zac gen. Action v.d. Kleinen Chaoten (*25.12.2020) | „Belica gen. Emi…" | *Stammbaum von Goldfuchs Sp (Pikachu) Kids / Kohlief, Goldfuchsef Sp von Chrissi / Watarus Kids* |
| Chesnut (*13.11.2019) | „Tennessee…" (evtl. Kohlfuchsschimmel) | *Stammbaum von Kentucky* |
| Ethan v.d. Kleinen Chaoten (*09.07.2020) | „Ichika…" (evtl. Orangeschimmel hell Kragenschecke) | *(Quelle siehe `review-report.md`)* |
| Quied Soldier of Black Forest (*07.06.2018) | „Hoshi…" | *Stammbaum von Kentucky* |
### ~~D2~~ · ✅ GELÖST durch C1: `Uw`=`G` — diese 5 sind KEINE echten Konflikte, werden automatisch geladen, sobald Michael die Uw=G-Regel eingebaut hat
~~Ella · Roswitha · Silenos gen. Adonis · Brandon Stark · Enya~~ (erledigt)
### D3 · Genotyp: **kleine Abweichung** (eine Quelle genauer als die andere — `DD`↔`D-`, `PP`↔`P-`, `Ee`↔`E`, mit/ohne `spsp`) — welche stimmt?
Firefly v.d. K.C. (*18.12.2019, DD↔D-) · Zuleika v.d. K.C. (*24.10.2015) · WildFire v.d. K.C. (*05.10.2017, PP↔P-) · Milka of LennyLengo (*09.12.2018) · Silvain v.d. K.C. (*27.03.2022) · Daja of Little Rose (*16.05.2021, spsp) · Ichika v.d. K.C. (*19.04.2020) · Chelsea v.d. K.C. (*02.04.2021)
Bitte je Tier sagen, **welcher Wert stimmt** (die Quellen widersprechen sich beim genannten Locus). Alle Varianten: `review-report.md`.
| Tier | Konkreter Konflikt — was stimmt? | Status |
|---|---|---|
| Firefly v.d. K.C. (*18.12.2019) | D-Locus: **D-****DD** | ✅ **D-** (DD war Tippfehler) — Julian |
| WildFire v.d. K.C. (*05.10.2017) | P-Locus: **P-****PP** | ✅ **PP** — Julian |
| Zuleika v.d. K.C. (*24.10.2015) | D-Locus: **D-****DD** | ✅ **DD, Ee, Gg, PP** (`aa c[chm]c[h] DD Ee Gg PP spsp`) — Julian |
| Milka of LennyLengo (*09.12.2018) | C-Locus: **C-****Cc[h]** · E-Locus: **E-****EE** | ✅ **Cc[h], EE** (`aa Cc[h] dd EE Gg P- Spsp`) — Julian |
| Silvain v.d. K.C. (*27.03.2022) | E-Locus: **Ee****ee** · P-Locus: **P-****Pp** | ✅ **ee, Pp** (`aa c[chm]c[chm] Dd ee[-] Gg Pp Spsp`) — Julian |
| Ichika v.d. K.C. (*19.04.2020) | E-Locus: **ee****ee[f]** | ✅ **ee[f]** (Beibehalten-Regel: `[f]` war vorhanden) — Julian |
| Daja of Little Rose (*16.05.2021) | Scheckung: **mit `spsp`****ohne** | ✅ **mit `spsp`** (Beibehalten-Regel) — Julian |
| Chelsea v.d. K.C. | ⚠️ **Kein Genotyp-Konflikt** — zwei „Chelsea" mit verschiedenem Datum (\*02.04.2021 / \*15.10.2021) | ✅ **ein Tier, Geburtsdatum 02.04.2021** (15.10.2021 war falsch → zusammengeführt) — Julian |
### D4 · **Marker** unterschiedlich (`WP` / `DP` / `WFNZ` / „hörend" mal vorhanden, mal nicht) — welcher gilt?
Vestra von den Schlossmäusen (*08.02.2019, WP) · Hedwig of BGB (*30.10.2019, DP + hörend) · Pitari gen. Piti v.d. K.C. (*16.05.2021, DP) · Little Hero of Black Forest (*22.02.2018, WFNZ ± spsp) · Victoria Welby gen. Welby v.d. K.C. (*16.01.2023, DP + Genotyp Ee[f]↔ee[f])
> ✅ **REGEL (Julian 2026-06-06):** „Wenn irgendwo etwas vorhanden war, das anderswo fehlte → **immer beibehalten**." Gilt generell für Marker/Flags und Angaben wie `spsp` oder `[f]` (Vorhandensein gewinnt über Fehlen). Wird zur Standard-Regel im Importer → löst alle „mit/ohne"-Fälle automatisch (z. B. Daja `spsp`, Ichika `[f]`). Greift NICHT bei echten Wert-Widersprüchen (z. B. `DD`↔`D-`, `Ee`↔`ee`) — die brauchen weiter deine Entscheidung.
>
> Bei D4 waren die Marker `WP`/`DP`/`WFNZ`/`hörend` in BEIDEN Quellen gleich — also **gar nicht** der Konflikt (und jetzt sowieso Flags). Der echte Konflikt ist beim Genotyp. **3 von 5 dadurch automatisch gelöst:**
| Tier | Konkreter Konflikt — was stimmt? | Status |
|---|---|---|
| Vestra von den Schlossmäusen (*08.02.2019) | D-Locus: **D-****DD** (WP gleich in beiden) | ✅ **DD** — Julian |
| Victoria Welby gen. Welby v.d. K.C. (*16.01.2023) | E-Locus: **Ee[f]****ee[f]****Mutter von „C"!** | ✅ **ee[f]** (`Aa CC D- ee[f] Gg pp Spsp [DP]`) — Julian → C bekommt damit seine Mutter |
| Hedwig of BGB (*30.10.2019) | (WP/DP/hörend) | ✅ auto-gelöst — sind jetzt Flags, kein Konflikt mehr |
| Pitari gen. Piti v.d. K.C. (*16.05.2021) | (DP) | ✅ auto-gelöst — DP ist jetzt ein Flag |
| Little Hero of Black Forest (*22.02.2018) | (WFNZ ± spsp) | ✅ kein Genotyp-Konflikt mehr (WFNZ = Flag) |
### D5 · **Sterbedatum** widersprüchlich
| Tier | Problem |
|---|---|
| Flint v.d. Kleinen Chaoten (*23.12.2017) | Tod 10.05.**2021** vs. 10.05.**2022** (Jahr-Tippfehler?) |
| ~~Flint v.d. Kleinen Chaoten (*23.12.2017)~~ | ✅ **Tod 10.05.2021** (2022 war Tippfehler) — Julian 2026-06-06 |
| Hanami v.d. Kleinen Chaoten (*10.09.2015) | Tod 12.12.2019 vs. 14.01.2020 |
| Molly of Black Forest (*13.09.2021) | Tod **03.05.2021 — VOR der Geburt** → klarer Datenfehler, bitte korrigieren |
| ~~Molly of Black Forest (*13.09.2021)~~ | ✅ **Tod 03.05.2022** (03.05.2021 war Jahr-Tippfehler → lag vor der Geburt) — Julian 2026-06-06 |
*(Das sind 32 Tiere: 11 + 5 + 8 + 5 + 3.)*

3
gerbil-manager-web/.gitattributes vendored Normal file
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@@ -0,0 +1,3 @@
# de.ts is large and edited by many agents — pin to LF so EOL flips don't
# create noisy whole-file diffs (GEN-3 follow-up, god-approved).
src/strings/de.ts text eol=lf

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@@ -0,0 +1,87 @@
/**
* INBOX-1: Anfragen-Posteingang — Liste/Filter, Triage, KI-Entwurf (inkl.
* AiKeyMissing-Hinweis), Senden (inkl. MailNotConfigured-Hinweis).
* Mock-gebunden (Seed-Anfragen + Fehlerpfad-Flags) → skipUnlessMock.
*/
import { acceptNextDialog, de, expect, gotoSection, skipUnlessMock, test } from './fixtures'
const ta = de.pages.anfragen
const td = ta.detail
test.describe('Anfragen', () => {
test('Liste zeigt Anfragen neueste zuerst + Status-Filter', async ({ page }) => {
skipUnlessMock()
await gotoSection(page, de.nav.requests)
await expect(page.getByRole('heading', { name: ta.title })).toBeVisible()
// Neueste zuerst: Anna (05.06.) vor Ben (04.06.) vor Clara (01.06.)
const cards = page.locator('.anfrage-card')
await expect(cards).toHaveCount(3)
await expect(cards.nth(0)).toContainText('Anna Albrecht')
await expect(cards.nth(2)).toContainText('clara@example.com') // ohne Anzeigename → Adresse
// Status-Badge auf der Karte
await expect(cards.nth(0)).toContainText(ta.statusLabels.New)
// Filter: nur Beantwortet
await page.getByLabel(td.statusLabel).selectOption('Answered')
await expect(cards).toHaveCount(1)
await expect(cards.first()).toContainText('Danke!')
})
test('Sync ohne Gmail-Konfiguration zeigt deutschen Hinweis', async ({ page, mockDb }) => {
skipUnlessMock()
mockDb!.mailConfigured = false
await page.goto('/anfragen')
await page.getByRole('button', { name: ta.sync }).click()
await expect(page.getByText(ta.mailNotConfigured)).toBeVisible()
})
test('Detail: Triage — Abnehmer zuordnen setzt Status auf Zugeordnet', async ({ page, mockDb }) => {
skipUnlessMock()
await page.goto('/anfragen/req-anna')
await expect(page.getByRole('heading', { name: 'Anfrage: Pärchen zur Abgabe?' })).toBeVisible()
await expect(page.getByText('anna@example.de', { exact: false })).toBeVisible()
await page.getByLabel(td.assignContact).selectOption({ label: 'Zoohandlung Meier' })
await expect(page.locator('.anfrage-badge--assigned')).toBeVisible()
expect(mockDb!.requests.find((r) => r.id === 'req-anna')!.assignedContactId).toBe('con-meier')
// Verwerfen (mit Bestätigung) → Status Verworfen, Zuordnung bleibt
acceptNextDialog(page)
await page.getByRole('button', { name: td.abandon }).click()
await expect(page.locator('.anfrage-badge--abandoned')).toBeVisible()
expect(mockDb!.requests.find((r) => r.id === 'req-anna')!.assignedContactId).toBe('con-meier')
})
test('KI-Entwurf füllt das Antwortfeld; Senden markiert als Beantwortet', async ({ page }) => {
skipUnlessMock()
await page.goto('/anfragen/req-anna')
await page.getByRole('button', { name: td.draftButton }).click()
const textarea = page.locator('.anfrage-reply__text')
await expect(textarea).toHaveValue(/vielen Dank für deine Anfrage/)
// Entwurf bearbeiten, dann senden (bestätigt) → Beantwortet + Hinweis
await textarea.fill('Hallo Anna, ja — die beiden suchen noch ein Zuhause!')
acceptNextDialog(page)
await page.getByRole('button', { name: td.send }).click()
await expect(page.getByText(td.sent)).toBeVisible()
await expect(page.locator('.anfrage-badge--answered')).toBeVisible()
})
test('KI ohne Schlüssel: 503 wird zum freundlichen Hinweis', async ({ page, mockDb }) => {
skipUnlessMock()
mockDb!.aiConfigured = false
await page.goto('/anfragen/req-anna')
await page.getByRole('button', { name: td.draftButton }).click()
await expect(page.getByText(td.aiKeyMissing)).toBeVisible()
})
test('Senden ohne Text zeigt Hinweis statt Versand', async ({ page }) => {
skipUnlessMock()
await page.goto('/anfragen/req-anna')
await page.getByRole('button', { name: td.send }).click()
await expect(page.getByText(td.sendEmptyBody)).toBeVisible()
})
})

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@@ -0,0 +1,43 @@
/** BESTAND-FILTER: die Tiere-Liste zeigt standardmäßig nur den eigenen Bestand. */
import { de, expect, gotoSection, skipUnlessMock, test } from './fixtures'
const t = de.pages.gerbils
test('Tiere-Liste blendet externe Ahnen standardmäßig aus', async ({ page }) => {
skipUnlessMock()
await gotoSection(page, de.nav.gerbils)
await expect(page.getByRole('heading', { name: t.title, exact: true })).toBeVisible()
// Bestand ist sichtbar …
await expect(page.locator('.gerbil-row', { hasText: 'Krümel' })).toBeVisible()
// … aber die externe Ahne „Max“ (isResident=false) nicht.
await expect(page.locator('.gerbil-row', { hasText: 'Max' })).toHaveCount(0)
})
test('Toggle „Externe Ahnen einblenden“ zeigt externe Tiere mit Extern-Markierung', async ({ page }) => {
skipUnlessMock()
await gotoSection(page, de.nav.gerbils)
await expect(page.locator('.gerbil-row', { hasText: 'Krümel' })).toBeVisible()
await page.getByRole('checkbox', { name: t.filters.showExternal }).check()
const maxRow = page.locator('.gerbil-row', { hasText: 'Max' })
await expect(maxRow).toBeVisible()
await expect(maxRow.getByText(t.externalBadge, { exact: true })).toBeVisible()
// Der Bestand bleibt weiterhin sichtbar.
await expect(page.locator('.gerbil-row', { hasText: 'Krümel' })).toBeVisible()
})
test('Bearbeiten-Formular kann ein Tier als extern markieren (Bestand-Häkchen)', async ({ page }) => {
skipUnlessMock()
// Krümel gehört zum Bestand -> Häkchen entfernen und speichern.
await page.goto('/rennmaeuse/kruemel/bearbeiten')
const check = page.getByRole('checkbox', { name: t.form.isResidentLabel })
await expect(check).toBeChecked()
await check.uncheck()
await page.getByRole('button', { name: t.form.save }).click()
// Auf der Detailseite ist Krümel jetzt als „Extern“ markiert.
await expect(page.getByRole('heading', { name: 'Krümel' })).toBeVisible()
await expect(page.getByText(t.externalBadge, { exact: true })).toBeVisible()
})

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@@ -135,6 +135,53 @@ export async function installMockApi(page: Page): Promise<MockDb> {
if (method === 'PUT') return json(route, 204)
}
// ── INBOX-1: Anfragen-Posteingang (vor den generischen Kollektionen) ──
if (path === '/requests/sync' && method === 'POST') {
return json(route, 200, db.mailConfigured ? { imported: 0, error: null } : { imported: 0, error: 'MailNotConfigured' })
}
let rm = path.match(/^\/requests\/([^/]+)\/draft$/)
if (rm && method === 'POST') {
if (!db.aiConfigured) {
return json(route, 503, { code: 'AiKeyMissing', message: 'AI nicht konfiguriert' })
}
const r = db.requests.find((x) => x.id === rm![1])
if (!r) return json(route, 404, { title: 'Not Found' })
r.draftReply = `Hallo ${r.fromName ?? ''},\n\nvielen Dank für deine Anfrage!\n\nViele Grüße`
return json(route, 200, r)
}
rm = path.match(/^\/requests\/([^/]+)\/send$/)
if (rm && method === 'POST') {
if (!db.mailConfigured) {
return json(route, 503, { title: 'MailNotConfigured', detail: 'Gmail ist noch nicht konfiguriert.' })
}
const r = db.requests.find((x) => x.id === rm![1])
if (!r) return json(route, 404, { title: 'Not Found' })
r.status = 'Answered'
r.answeredAt = '2026-06-06T10:00:00Z'
return json(route, 200, r)
}
rm = path.match(/^\/requests(?:\/([^/]+))?$/)
if (rm) {
const reqId = rm[1] ? decodeURIComponent(rm[1]) : null
if (!reqId && method === 'GET') {
return json(route, 200, pagedResponse(db.requests as unknown as Row[], url))
}
const r = db.requests.find((x) => x.id === reqId)
if (!r) return json(route, 404, { title: 'Not Found' })
if (method === 'GET') return json(route, 200, r)
if (method === 'PUT') {
// Triage-Vertrag des Backends: assignedContactId wird IMMER übernommen.
const body = request.postDataJSON() as { status?: string | null; assignedContactId?: string | null }
r.assignedContactId = body.assignedContactId ?? null
if (body.status) {
r.status = body.status as typeof r.status
if (body.status === 'Answered') r.answeredAt ??= '2026-06-06T10:00:00Z'
}
return json(route, 204)
}
return json(route, 405)
}
// SEARCH-2b: distinct Herkunft (originBreeder) values, sorted — vor der
// generischen /gerbils/:id-Route abfangen.
if (path === '/gerbils/breeders' && method === 'GET') {
@@ -168,6 +215,81 @@ export async function installMockApi(page: Page): Promise<MockDb> {
})
}
// WEB-0b: CMS-Endpunkte (Seiten + Blöcke). Vor den generischen Kollektionen,
// weil 'pages'/'blocks' verschachtelte Routen haben und kein Standard-CRUD sind.
const toSummary = (p: (typeof db.pages)[number]) => ({
id: p.id, slug: p.slug, title: p.title, seoDescription: p.seoDescription, status: p.status,
})
const toBlock = (b: { id: string; order: number; type: string; data: unknown }) => ({
id: b.id, order: b.order, type: b.type, data: b.data,
})
const toPage = (p: (typeof db.pages)[number]) => ({
...toSummary(p),
blocks: [...p.blocks].sort((a, b) => a.order - b.order).map(toBlock),
})
if (path === '/pages' && method === 'GET') {
return json(route, 200, [...db.pages].sort((a, b) => a.slug.localeCompare(b.slug)).map(toSummary))
}
// GET /pages/{slug} · PUT /pages/{id}
m = path.match(/^\/pages\/([^/]+)$/)
if (m && method === 'GET') {
const p = db.pages.find((x) => x.slug === decodeURIComponent(m![1]))
return p ? json(route, 200, toPage(p)) : json(route, 404, { title: 'Not Found' })
}
// PUT /pages/{id}
if (m && method === 'PUT') {
const p = db.pages.find((x) => x.id === m![1])
if (!p) return json(route, 404, { title: 'Not Found' })
const body = request.postDataJSON() as Partial<typeof p>
if (typeof body.slug === 'string') p.slug = body.slug
if (typeof body.title === 'string') p.title = body.title
p.seoDescription = (body.seoDescription as string | null) ?? null
if (body.status === 'Draft' || body.status === 'Published') p.status = body.status
return json(route, 204)
}
// POST /pages/{pageId}/blocks
m = path.match(/^\/pages\/([^/]+)\/blocks$/)
if (m && method === 'POST') {
const p = db.pages.find((x) => x.id === m![1])
if (!p) return json(route, 404, { title: 'Not Found' })
const body = request.postDataJSON() as { type: string; data?: Record<string, unknown>; order?: number }
const order = body.order ?? (p.blocks.reduce((mx, b) => Math.max(mx, b.order), -1) + 1)
const block = { id: newId('blk'), order, type: body.type, data: body.data ?? {} }
p.blocks.push(block)
return json(route, 201, toBlock(block))
}
// PUT /pages/{pageId}/blocks/order (Body: { blockIds })
m = path.match(/^\/pages\/([^/]+)\/blocks\/order$/)
if (m && method === 'PUT') {
const p = db.pages.find((x) => x.id === m![1])
if (!p) return json(route, 404, { title: 'Not Found' })
const { blockIds } = request.postDataJSON() as { blockIds: string[] }
const byId = new Map(p.blocks.map((b) => [b.id, b]))
if (blockIds.length !== p.blocks.length || blockIds.some((id) => !byId.has(id)))
return json(route, 400, 'blockIds must list exactly the page block ids.')
blockIds.forEach((id, i) => { byId.get(id)!.order = i })
return json(route, 204)
}
// PUT/DELETE /blocks/{id}
m = path.match(/^\/blocks\/([^/]+)$/)
if (m) {
const pageOf = db.pages.find((p) => p.blocks.some((b) => b.id === m![1]))
const block = pageOf?.blocks.find((b) => b.id === m![1])
if (!pageOf || !block) return json(route, 404, { title: 'Not Found' })
if (method === 'PUT') {
const body = request.postDataJSON() as { type?: string; data?: Record<string, unknown>; order?: number }
if (typeof body.type === 'string') block.type = body.type
if (body.data) block.data = body.data
if (typeof body.order === 'number') block.order = body.order
return json(route, 204)
}
if (method === 'DELETE') {
pageOf.blocks = pageOf.blocks.filter((b) => b.id !== m![1])
return json(route, 204)
}
}
// Generische Kollektionen: /<resource> und /<resource>/<id>
m = path.match(/^\/([a-z-]+)(?:\/([^/]+))?$/)
const col = m ? collections[m[1]] : undefined

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@@ -6,6 +6,7 @@
* FEAT-2/FEAT-6-Flüsse.
*/
import type { Contact, Enclosure, Gerbil, Litter } from '../src/api/types'
import type { InboxRequest } from '../src/api/requests'
export interface HealthRecordRow {
id: string
@@ -25,6 +26,24 @@ export interface WeightRecordRow {
notes: string | null
}
/** WEB-0b: CMS-Block (data ist das typ-spezifische JSON-Objekt). */
export interface MockBlock {
id: string
order: number
type: string
data: Record<string, unknown>
}
/** WEB-0b: CMS-Seite der öffentlichen Webseite. */
export interface MockPage {
id: string
slug: string
title: string
seoDescription: string | null
status: 'Draft' | 'Published'
blocks: MockBlock[]
}
export interface MockDb {
gerbils: Gerbil[]
litters: Litter[]
@@ -33,6 +52,12 @@ export interface MockDb {
colorVarieties: { id: string; name: string; canonicalGenotype: string | null; sortOrder: number }[]
healthRecords: HealthRecordRow[]
weightRecords: WeightRecordRow[]
pages: MockPage[]
// INBOX-1: Anfragen-Posteingang. Die Flags steuern die Fehlerpfade des Mocks
// (Specs können sie pro Test umlegen): KI-Entwurf 503 / Sync+Send Mail-Fehler.
requests: InboxRequest[]
aiConfigured: boolean
mailConfigured: boolean
}
function gerbil(
@@ -63,6 +88,8 @@ function gerbil(
nameSearch: name.toLowerCase().replace(/[\s._-]/g, ''),
genotype,
notes: null,
// BESTAND-FILTER: default = eigener Bestand; einzelne externe Ahnen unten gesetzt.
isResident: true,
}
}
@@ -85,8 +112,9 @@ export function seedDb(): MockDb {
gerbil('greta', 'Greta', 'female', '2019-05-23', null, 'cv-schwarz'),
gerbil('frieda', 'Frieda', 'female', '2020-01-18', null, 'cv-gold'),
gerbil('emil', 'Emil', 'male', '2017-03-03', 'w-emil', 'cv-agouti'),
gerbil('hilde', 'Hilde', 'female', '2017-11-11', null, 'cv-schwarz'),
gerbil('max', 'Max', 'male', '2015-08-08', null, 'cv-agouti'),
// BESTAND-FILTER: externe Ahnen (Gründertiere fremder Zuchten, nur für den Stammbaum).
{ ...gerbil('hilde', 'Hilde', 'female', '2017-11-11', null, 'cv-schwarz'), isResident: false, originBreeder: 'Zoohandlung Meier' },
{ ...gerbil('max', 'Max', 'male', '2015-08-08', null, 'cv-agouti'), isResident: false, originBreeder: 'Zoohandlung Meier' },
// Statistik: Verstorbene + Abgegebene für Verluste/Bestandskurve
{ ...gerbil('willi', 'Willi', 'male', '2019-09-09', null, 'cv-schwarz'), status: 'Deceased', dateOfDeath: '2022-04-04' },
{ ...gerbil('rosa', 'Rosa', 'female', '2020-02-02', null, 'cv-gold'), status: 'Deceased', dateOfDeath: '2023-08-15' },
@@ -142,5 +170,93 @@ export function seedDb(): MockDb {
{ id: 'wr-2', gerbilId: 'kruemel', date: '2026-05-20', weightGrams: 82, notes: null },
]
return { gerbils, litters, enclosures, contacts, colorVarieties, healthRecords, weightRecords }
// WEB-0b: die 6 Webseiten-Seiten (wie vom Backend geseedet), mit ein paar Blöcken.
const pages: MockPage[] = [
{
id: 'page-start',
slug: 'start',
title: 'Startseite',
seoDescription: 'Willkommen bei unserer Rennmauszucht.',
status: 'Published',
blocks: [
{ id: 'blk-start-1', order: 0, type: 'Heading', data: { text: 'Willkommen', level: 2 } },
{ id: 'blk-start-2', order: 1, type: 'RichText', data: { markdown: 'Schön, dass du da bist.' } },
],
},
{ id: 'page-zucht', slug: 'ueber-die-zucht', title: 'Über die Zucht', seoDescription: null, status: 'Draft', blocks: [] },
{
id: 'page-abgabe',
slug: 'abgabetiere',
title: 'Abgabetiere',
seoDescription: null,
status: 'Published',
blocks: [
{ id: 'blk-abgabe-1', order: 0, type: 'AbgabetiereList', data: { mode: 'auto', intro: 'Diese Tiere suchen ein Zuhause.' } },
],
},
{ id: 'page-bedingungen', slug: 'abgabebedingungen', title: 'Abgabebedingungen', seoDescription: null, status: 'Draft', blocks: [] },
{ id: 'page-farben', slug: 'farben-genetik', title: 'Farben & Genetik', seoDescription: null, status: 'Draft', blocks: [] },
{ id: 'page-kontakt', slug: 'kontakt', title: 'Kontakt', seoDescription: null, status: 'Draft', blocks: [] },
]
// INBOX-1: Anfragen (neueste zuerst nach receivedAt sortierbar)
const requests: InboxRequest[] = [
{
id: 'req-anna',
gmailMessageId: '<anna-1@mail.example>',
threadId: 'thr-1',
fromAddress: 'anna@example.de',
fromName: 'Anna Albrecht',
subject: 'Anfrage: Pärchen zur Abgabe?',
bodyText:
'Hallo,\n\nich habe euer Inserat gesehen — sind die beiden Agouti-Jungs noch zu haben?\n\nViele Grüße\nAnna',
receivedAt: '2026-06-05T18:30:00Z',
status: 'New',
assignedContactId: null,
draftReply: null,
answeredAt: null,
},
{
id: 'req-ben',
gmailMessageId: '<ben-1@mail.example>',
threadId: 'thr-2',
fromAddress: 'ben@example.org',
fromName: 'Ben Berger',
subject: 'Frage zur Haltung',
bodyText: 'Guten Tag, was für ein Becken empfehlt ihr für zwei Rennmäuse?',
receivedAt: '2026-06-04T09:00:00Z',
status: 'InProgress',
assignedContactId: null,
draftReply: 'Hallo Ben, wir empfehlen mindestens 100×50 cm …',
answeredAt: null,
},
{
id: 'req-clara',
gmailMessageId: '<clara-1@mail.example>',
threadId: null,
fromAddress: 'clara@example.com',
fromName: null,
subject: 'Danke!',
bodyText: 'Die beiden sind super angekommen — danke nochmal!',
receivedAt: '2026-06-01T12:00:00Z',
status: 'Answered',
assignedContactId: 'con-meier',
draftReply: null,
answeredAt: '2026-06-02T08:00:00Z',
},
]
return {
gerbils,
litters,
enclosures,
contacts,
colorVarieties,
healthRecords,
weightRecords,
pages,
requests,
aiConfigured: true,
mailConfigured: true,
}
}

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@@ -0,0 +1,57 @@
/** WEB-0b: CMS-Verwaltung der öffentlichen Webseite — Smoke-Test. */
import { de, expect, gotoSection, skipUnlessMock, test } from './fixtures'
const t = de.pages.webseite
test('Webseiten-Übersicht zeigt die Seiten mit Status', async ({ page }) => {
skipUnlessMock()
await gotoSection(page, de.nav.website)
await expect(page.getByRole('heading', { name: t.title, exact: true })).toBeVisible()
const cards = page.locator('.webseite-card')
await expect(cards).toHaveCount(6)
const start = page.locator('.webseite-card', { hasText: 'Startseite' })
await expect(start.getByText(t.statusPublished, { exact: true })).toBeVisible()
})
test('Block hinzufügen, bearbeiten und verschieben bleibt erhalten', async ({ page }) => {
skipUnlessMock()
await gotoSection(page, de.nav.website)
// Startseite öffnen (hat bereits zwei Blöcke).
await page
.locator('.webseite-card', { hasText: 'Startseite' })
.getByRole('link', { name: t.edit })
.click()
await expect(page.getByRole('heading', { name: 'Startseite' })).toBeVisible()
const blocks = page.locator('.block-card')
await expect(blocks).toHaveCount(2)
// Eine Überschrift hinzufügen -> jetzt drei Blöcke.
await page.getByRole('button', { name: `+ ${t.blocks.types.Heading}` }).click()
await expect(blocks).toHaveCount(3)
// Den neuen (letzten) Block beschriften und speichern.
const last = blocks.last()
await last.getByLabel(t.blocks.fields.headingText).fill('Neue Überschrift')
await last.getByRole('button', { name: t.blocks.save }).click()
await expect(last.getByText(t.blocks.saved, { exact: true })).toBeVisible()
// Den neuen Block nach oben verschieben (von Position 3 auf 2).
await last.getByRole('button', { name: t.blocks.moveUp }).click()
// Neu laden über die Übersicht — der Mock ist zustandsbehaftet.
await page.getByRole('link', { name: t.back }).click()
await page
.locator('.webseite-card', { hasText: 'Startseite' })
.getByRole('link', { name: t.edit })
.click()
// Drei Blöcke, und die neue Überschrift steht jetzt an zweiter Stelle.
await expect(page.locator('.block-card')).toHaveCount(3)
await expect(page.locator('.block-card').nth(1).getByLabel(t.blocks.fields.headingText)).toHaveValue(
'Neue Überschrift',
)
})

View File

@@ -22,6 +22,10 @@ import HilfePage from './pages/HilfePage'
import VertraegeListPage from './pages/VertraegeListPage'
import VertragWizardPage from './pages/VertragWizardPage'
import EinstellungenPage from './pages/EinstellungenPage'
import WebseitePage from './pages/WebseitePage'
import WebseiteEditorPage from './pages/WebseiteEditorPage'
import AnfragenPage from './pages/AnfragenPage'
import AnfrageDetailPage from './pages/AnfrageDetailPage'
export default function App() {
return (
@@ -65,6 +69,16 @@ export default function App() {
<Route path="neu" element={<VertragWizardPage />} />
</Route>
<Route path="einstellungen" element={<EinstellungenPage />} />
{/* WEB-0b: CMS-Verwaltung der öffentlichen Webseite */}
<Route path="webseite">
<Route index element={<WebseitePage />} />
<Route path=":slug" element={<WebseiteEditorPage />} />
</Route>
{/* INBOX-1: Anfragen-Posteingang */}
<Route path="anfragen">
<Route index element={<AnfragenPage />} />
<Route path=":id" element={<AnfrageDetailPage />} />
</Route>
<Route path="*" element={<NotFoundPage />} />
</Route>
</Routes>

View File

@@ -0,0 +1,24 @@
import { describe, expect, it } from 'vitest'
import { ADDABLE_BLOCK_TYPES, defaultBlockData, type BlockType } from '../pages'
describe('defaultBlockData', () => {
it('liefert sinnvolle Startwerte je Block-Typ', () => {
expect(defaultBlockData('Heading')).toEqual({ text: '', level: 2 })
expect(defaultBlockData('RichText')).toEqual({ markdown: '' })
expect(defaultBlockData('Image')).toEqual({ url: '', alt: '' })
expect(defaultBlockData('Gallery')).toEqual({ images: [] })
expect(defaultBlockData('ContactInfo')).toEqual({ name: '', email: '', phone: '', address: '' })
expect(defaultBlockData('AbgabetiereList')).toEqual({ mode: 'auto', intro: '' })
})
it('deckt jeden addbaren Typ ab', () => {
for (const type of ADDABLE_BLOCK_TYPES) {
expect(defaultBlockData(type)).toBeTypeOf('object')
}
})
it('bietet die dynamische AbgabetiereList NICHT zum manuellen Anlegen an', () => {
const addable: readonly BlockType[] = ADDABLE_BLOCK_TYPES
expect(addable).not.toContain('AbgabetiereList')
})
})

View File

@@ -0,0 +1,149 @@
/**
* WEB-0b: CMS-Inhalte der öffentlichen Webseite (Seiten + Blöcke).
*
* Backend-Vertrag (GerbilManagerWebAPI/Endpoints/CmsEndpoints.cs):
* - GET /pages -> PageSummary[] (kein Paging!)
* - GET /pages/{slug} -> Page (inkl. Blöcke)
* - PUT /pages/{id} -> 204
* - POST /pages/{pageId}/blocks -> 201 Block
* - PUT /blocks/{id} -> 204
* - DELETE /blocks/{id} -> 204
* - PUT /pages/{pageId}/blocks/order -> 204 (Body: { blockIds })
*
* Enums kommen dank globalem JsonStringEnumConverter als STRINGS
* ("Draft"/"Published", "Heading"/"RichText"/…). Block.data ist ein
* typ-spezifisches JSON-Objekt (siehe BlockData-Typen unten).
*/
import { api } from './client'
export type PageStatus = 'Draft' | 'Published'
export type BlockType =
| 'Heading'
| 'RichText'
| 'Image'
| 'Gallery'
| 'ContactInfo'
| 'AbgabetiereList'
/** Block-Typen, die die Hand-Editier-Oberfläche neu anlegen kann (in Anzeige-Reihenfolge). */
export const ADDABLE_BLOCK_TYPES: readonly BlockType[] = [
'Heading',
'RichText',
'Image',
'Gallery',
'ContactInfo',
] as const
// ── Typ-spezifische Block-Daten ────────────────────────────────────────────
export interface HeadingData {
text: string
level: 2 | 3
}
export interface RichTextData {
/** Markdown-Quelltext (wird erst beim Veröffentlichen gerendert + bereinigt). */
markdown: string
}
export interface ImageData {
url: string
alt: string
}
export interface GalleryImage {
url: string
alt: string
}
export interface GalleryData {
images: GalleryImage[]
}
export interface ContactInfoData {
name: string
email: string
phone: string
address: string
}
export interface AbgabetiereListData {
/** auto = aus den aktuellen Abgabetieren aufgelöst; manual = von Hand gepflegt. */
mode: 'auto' | 'manual'
intro: string
}
export type BlockData = Record<string, unknown>
export interface Block {
id: string
order: number
type: BlockType
data: BlockData
}
export interface PageSummary {
id: string
slug: string
title: string
seoDescription: string | null
status: PageStatus
}
export interface Page extends PageSummary {
blocks: Block[]
}
export interface PageInput {
slug: string
title: string
seoDescription: string | null
status: PageStatus
}
export interface BlockInput {
type: BlockType
data: BlockData
order?: number
}
/** Sinnvolle Startwerte für einen neu angelegten Block. */
export function defaultBlockData(type: BlockType): BlockData {
switch (type) {
case 'Heading':
return { text: '', level: 2 }
case 'RichText':
return { markdown: '' }
case 'Image':
return { url: '', alt: '' }
case 'Gallery':
return { images: [] }
case 'ContactInfo':
return { name: '', email: '', phone: '', address: '' }
case 'AbgabetiereList':
return { mode: 'auto', intro: '' }
}
}
// ── API-Aufrufe ──────────────────────────────────────────────────────────────
export function listPages(): Promise<PageSummary[]> {
return api.get<PageSummary[]>('/pages')
}
export function getPage(slug: string): Promise<Page> {
return api.get<Page>(`/pages/${encodeURIComponent(slug)}`)
}
export function updatePage(id: string, input: PageInput): Promise<void> {
return api.put<void>(`/pages/${id}`, input)
}
export function addBlock(pageId: string, input: BlockInput): Promise<Block> {
return api.post<Block>(`/pages/${pageId}/blocks`, input)
}
export function updateBlock(id: string, input: BlockInput): Promise<void> {
return api.put<void>(`/blocks/${id}`, input)
}
export function deleteBlock(id: string): Promise<void> {
return api.delete(`/blocks/${id}`)
}
export function reorderBlocks(pageId: string, blockIds: string[]): Promise<void> {
return api.put<void>(`/pages/${pageId}/blocks/order`, { blockIds })
}

View File

@@ -0,0 +1,87 @@
/**
* INBOX-1: Anfragen-Posteingang (/api/requests, Backend INBOX-0/2/3).
*
* Triage-Hinweis: PUT setzt assignedContactId UNBEDINGT aus dem Input
* (Backend überschreibt mit null, wenn das Feld fehlt) — beim reinen
* Status-Wechsel also IMMER die aktuelle Zuordnung mitsenden.
*/
import { ApiError, api } from './client'
import { toQueryString, type GridifyQuery } from './gridify'
import type { Paged } from './types'
/** C#-Enum RequestStatus — Stringnamen auf dem Draht. */
export type RequestStatus = 'New' | 'InProgress' | 'Assigned' | 'Answered' | 'Abandoned'
export const REQUEST_STATUSES: RequestStatus[] = [
'New',
'InProgress',
'Assigned',
'Answered',
'Abandoned',
]
export interface InboxRequest {
id: string
gmailMessageId: string
threadId: string | null
fromAddress: string
fromName: string | null
subject: string | null
bodyText: string | null
receivedAt: string
status: RequestStatus
assignedContactId: string | null
draftReply: string | null
answeredAt: string | null
}
export interface RequestTriage {
status?: RequestStatus | null
assignedContactId?: string | null
}
/** Ergebnis von POST /api/requests/sync. */
export interface SyncResult {
imported: number
/** null = ok; "MailNotConfigured" | "MailAuthFailed" | … */
error: string | null
}
const BASE = '/api/requests'
export function listRequests(query: GridifyQuery): Promise<Paged<InboxRequest>> {
return api.get<Paged<InboxRequest>>(`${BASE}${toQueryString(query)}`)
}
export function getRequest(id: string): Promise<InboxRequest> {
return api.get<InboxRequest>(`${BASE}/${id}`)
}
export function triageRequest(id: string, triage: RequestTriage): Promise<void> {
return api.put<void>(`${BASE}/${id}`, triage)
}
export function syncRequests(): Promise<SyncResult> {
return api.post<SyncResult>(`${BASE}/sync`, {})
}
/** KI-Entwurf erzeugen (INBOX-2); 503 {code:'AiKeyMissing'} solange unkonfiguriert. */
export function draftReply(id: string): Promise<InboxRequest> {
return api.post<InboxRequest>(`${BASE}/${id}/draft`, {})
}
/** (Bearbeitete) Antwort senden (INBOX-3); setzt serverseitig Answered. */
export function sendReply(id: string, body: string): Promise<InboxRequest> {
return api.post<InboxRequest>(`${BASE}/${id}/send`, { body })
}
/**
* ProblemDetails-Titel aus einem ApiError lesen (Send-Endpunkt meldet
* MailNotConfigured/MailAuthFailed über `title`, nicht `code`).
*/
export function problemTitle(err: unknown): string | null {
if (err instanceof ApiError && err.body && typeof err.body === 'object' && 'title' in err.body) {
const title = (err.body as { title: unknown }).title
return typeof title === 'string' ? title : null
}
return null
}

View File

@@ -47,6 +47,13 @@ export interface Gerbil {
*/
characterTraits?: string[] | null
characterNote?: string | null
/**
* Residency (Bestand): true = part of the own clan (Kleine Chaoten), false =
* external/pedigree-only ancestor imported for the Stammbaum. Gridify-filterable
* (`isResident==true`); the Tiere list defaults to resident-only. Absent = treat
* as resident (backend default true).
*/
isResident?: boolean
}
/** Payload for POST /gerbils. */
@@ -68,6 +75,7 @@ export interface CreateGerbil {
notes?: string | null
characterTraits?: string[] | null
characterNote?: string | null
isResident?: boolean
}
/** Payload for PUT /gerbils/{id} (all optional / partial update). */

View File

@@ -22,10 +22,14 @@ const SECONDARY: NavItem[] = [
{ to: '/becken', label: de.nav.enclosures, icon: '🛁' },
{ to: '/kontakte', label: de.nav.contacts, icon: '📇' },
{ to: '/abgabe', label: de.nav.forSale, icon: '🏡' },
// INBOX-1: Anfragen-Posteingang
{ to: '/anfragen', label: de.nav.requests, icon: '📨' },
{ to: '/statistik', label: de.nav.statistics, icon: '📊' },
// FEAT-13: Abgabeverträge + Zuchtprofil
{ to: '/vertraege', label: de.nav.contracts, icon: '📄' },
{ to: '/einstellungen', label: de.nav.settings, icon: '⚙️' },
// WEB-0b: CMS-Verwaltung der öffentlichen Webseite
{ to: '/webseite', label: de.nav.website, icon: '🌐' },
{ to: '/hilfe', label: de.nav.help, icon: '❓' },
]

View File

@@ -17,3 +17,16 @@ export function formatDate(iso: string | null | undefined): string {
if (!y || !m || !d) return iso
return `${d}.${m}.${y}`
}
/** INBOX-1: ISO-Zeitstempel → "TT.MM.JJJJ, HH:MM" (lokale Zeit, de-DE). */
export function formatDateTime(iso: string): string {
const date = new Date(iso)
if (Number.isNaN(date.getTime())) return iso
return date.toLocaleString('de-DE', {
day: '2-digit',
month: '2-digit',
year: 'numeric',
hour: '2-digit',
minute: '2-digit',
})
}

View File

@@ -15,6 +15,7 @@ import {
toJSON,
fromJSON,
wildType,
extractGenotypeFlags,
} from '../genotype'
import { combineLocus } from '../punnett'
import { LOCI, type LocusKey } from '../loci'
@@ -28,7 +29,7 @@ import {
} from '../catalog'
/** The first 18 entries are the frozen contract names (must round-trip exactly). */
const FROZEN_COUNT = 18
const FROZEN_COUNT = 17
import { breed } from '../breed'
import { GeneticsWarningCode } from '../warnings'
@@ -64,6 +65,7 @@ describe('Genotype serialization', () => {
P: ['p', 'P'],
Sp: ['sp', 'sp'],
Re: ['re', 're'],
Sls: ['sl', 'sl'],
})
expect(g.A).toEqual(['A', 'a'])
expect(g.C).toEqual(['C', 'ch'])
@@ -171,14 +173,16 @@ describe('Farbschlag catalog', () => {
})
it('falls back to Unbekannter Farbschlag for uncatalogued genotypes', () => {
// Colourpoint marked + dilute + grey combo not in the catalog.
const match = farbschlagFor(fromDisplayString('aa cchmcchm dd ee gg PP spsp rere'))
// E-dominant (no Fuchs/Schimmel family) + an uncatalogued cchm/dd/gg/pp combo.
const match = farbschlagFor(fromDisplayString('aa CC dd EE gg pp spsp rere'))
expect(match.unknown).toBe(true)
expect(match.name).toBe('Unbekannter Farbschlag')
})
it('has the expected catalogue coverage (GEN-2: frozen 18 + 55 portal varieties)', () => {
expect(CATALOG_SIZE).toBe(73)
it('has the expected catalogue coverage (GEN-3f: 61 after cchm CP reconciliation)', () => {
// GEN-3f collapsed the 24 portal cchm colourpoint rows to 12 breeder-named
// varieties (Marder/Siam/Zobel/Zobel-Hell + CP-<base>), so 73 -> 61.
expect(CATALOG_SIZE).toBe(61)
})
it('frozen contract names round-trip to themselves (DB-key guard)', () => {
@@ -204,7 +208,11 @@ describe('Farbschlag catalog', () => {
expect(new Set(names).size).toBe(names.length)
for (const entry of BASE_COLORS) {
for (const [locus, value] of Object.entries(entry.tokens)) {
expect(LOCI[locus as LocusKey].alleles).toContain(value)
// GEN-3f: a token may be a heterozygous pair "x/y" (e.g. C: 'cchm/ch'
// for the het colourpoints Siam/Zobel-Hell) — validate each allele.
for (const allele of value.split('/')) {
expect(LOCI[locus as LocusKey].alleles).toContain(allele)
}
}
}
})
@@ -220,7 +228,7 @@ describe('Farbschlag catalog', () => {
it('genotypeToFarbschlag (DATA-1 denormalization contract) returns the plain name', () => {
expect(genotypeToFarbschlag(wildType())).toBe('Agouti')
expect(genotypeToFarbschlag(fromDisplayString('aa CC DD EE GG pp spsp rere'))).toBe('Platin')
expect(genotypeToFarbschlag(fromDisplayString('aa cchmcchm dd ee gg PP spsp rere'))).toBe(
expect(genotypeToFarbschlag(fromDisplayString('aa CC dd EE gg pp spsp rere'))).toBe(
'Unbekannter Farbschlag',
)
})
@@ -240,6 +248,7 @@ describe('Partially-unknown parents (wildcards)', () => {
P: ['P', 'P'],
Sp: ['sp', 'sp'],
Re: ['re', 're'],
Sls: ['sl', 'sl'],
})
const mother = fromDisplayString('aa CC DD EE GG PP spsp rere')
const result = breed(father, mother)
@@ -263,3 +272,209 @@ describe('Probabilities are exact fractions summing to 1', () => {
expect(toNumber(sum)).toBeCloseTo(1, 10)
})
})
describe('GEN-3a: Uw=G alias', () => {
it('Uwuw parses as Gg, UwUw as GG', () => {
expect(fromDisplayString('AA CC DD EE Uwuw PP spsp rere').G).toEqual(['G', 'g'])
expect(fromDisplayString('AA CC DD EE UwUw PP spsp rere').G).toEqual(['G', 'G'])
expect(fromDisplayString('AA CC DD EE uwuw PP spsp rere').G).toEqual(['g', 'g'])
})
it('always RENDERS G, never Uw (breeder preference)', () => {
// Uw/uw is an input/import alias only; output must echo G/g.
expect(toDisplayString(fromDisplayString('AA CC DD EE Uwuw PP spsp rere'))).toBe(
'AA CC DD EE Gg PP spsp rere',
)
expect(toDisplayString(fromDisplayString('AA CC DD EE uwuw PP spsp rere'))).not.toContain('uw')
})
})
describe('GEN-3a: second spotting locus Sls (WP)', () => {
it('S(l)s(l) and WP both parse to the Sls heterozygote Slsl', () => {
expect(fromDisplayString('AA CC DD EE GG PP spsp rere S(l)s(l)').Sls).toEqual(['Sl', 'sl'])
expect(fromDisplayString('AA CC DD EE GG PP spsp rere WP').Sls).toEqual(['Sl', 'sl'])
})
it('toDisplayString omits wild-type Sls but shows Slsl', () => {
expect(toDisplayString(wildType())).toBe('AA CC DD EE GG PP spsp rere')
expect(toDisplayString(fromDisplayString('AA CC DD EE GG PP spsp rere WP'))).toBe(
'AA CC DD EE GG PP spsp rere Slsl',
)
})
it('WP × WP: S(l)S(l) is lethal — removed, renormalized, SLS_LETHAL warning', () => {
const parent = fromDisplayString('AA CC DD EE GG PP spsp rere Slsl')
const result = breed(parent, parent)
expect(result.offspring.every((o) => !o.genotype.includes('SlSl'))).toBe(true)
const sum = result.offspring.reduce((acc, o) => acc + o.probability.value, 0)
expect(sum).toBeCloseTo(1, 10)
// survivors 2/3 Slsl : 1/3 slsl
const wp = result.offspring.find((o) => o.genotype.includes('Slsl'))!
expect(wp.probability.text).toBe('2/3')
const warn = result.warnings.find((w) => w.code === GeneticsWarningCode.SlsLethal)
expect(warn?.detail?.youngLostFraction).toBe('1/4')
})
it('Sp × Sls → Superschecke deafness warning', () => {
const father = fromDisplayString('AA CC DD EE GG PP Spsp rere')
const mother = fromDisplayString('AA CC DD EE GG PP spsp rere Slsl')
const result = breed(father, mother)
expect(
result.warnings.some((w) => w.code === GeneticsWarningCode.SuperscheckeDeaf),
).toBe(true)
})
})
describe('GEN-3a: flag/metadata tokens tolerated', () => {
it('dea/taub/Dea/DP/WFNZ/RV/GV do not break parsing (stripped)', () => {
const g = fromDisplayString('AA CC DD EE GG PP spsp rere dea WFNZ DP RV GV')
expect(toDisplayString(g)).toBe('AA CC DD EE GG PP spsp rere')
})
it('extractGenotypeFlags reads deafness + tags', () => {
expect(extractGenotypeFlags('AA CC DD EE GG PP spsp rere dea WFNZ').deaf).toBe(true)
expect(extractGenotypeFlags('AA CC DD EE GG PP spsp rere Dea').deaf).toBe(false)
expect(extractGenotypeFlags('AA CC DD EE GG PP spsp rere WFNZ RV').tags).toEqual(['WFNZ', 'RV'])
})
})
describe('GEN-3a: Schimmel catalog fix (breeder C5)', () => {
it('efef base -> Orangeschimmel (not Schwarzschimmel)', () => {
expect(genotypeToFarbschlag(fromDisplayString('AA CC DD efef GG PP spsp rere'))).toBe(
'Orangeschimmel',
)
})
it('efef pp -> Rotaugenschimmel, efef gg -> Silberschimmel', () => {
expect(genotypeToFarbschlag(fromDisplayString('AA CC DD efef GG pp spsp rere'))).toBe(
'Rotaugenschimmel',
)
expect(genotypeToFarbschlag(fromDisplayString('AA CC DD efef gg PP spsp rere'))).toBe(
'Silberschimmel',
)
})
it('no Schwarzschimmel anywhere in the catalog', () => {
expect(BASE_COLORS.some((e) => e.name === 'Schwarzschimmel')).toBe(false)
})
})
describe("GEN-3c: unknown allele displays as '-' (stored as '?')", () => {
it("accepts '-' input, stores '?', displays '-'", () => {
const g = fromDisplayString('Aa C- DD EE GG Pp spsp rere')
expect(g.C).toEqual(['C', '?']) // stored internal contract stays '?'
expect(toDisplayString(g)).toBe('Aa C- DD EE GG Pp spsp rere') // displayed as '-'
})
it("'?' and '-' inputs are equivalent", () => {
expect(toDisplayString(fromDisplayString('Aa C? DD EE GG Pp spsp rere'))).toBe(
'Aa C- DD EE GG Pp spsp rere',
)
})
})
describe('GEN-3c: no Unbekannt when the E locus is known (family fallback)', () => {
it('eef with unknown other loci -> Fuchsschimmel (the reported bug case)', () => {
expect(genotypeToFarbschlag(fromDisplayString('aa C- D- eef Gg Pp spsp --'))).toBe(
'Fuchsschimmel',
)
})
it('ee -> Fuchs family, efef -> a Schimmel (never Unbekannt) even with unknowns', () => {
expect(farbschlagFor(fromDisplayString('a- C- D- ee G- P-')).unknown).toBe(false)
expect(farbschlagFor(fromDisplayString('A- C- D- efef G- P-')).unknown).toBe(false)
})
it('unknown allele no longer blocks a match (wildcard, never Unbekannt)', () => {
// C unknown must not force Unbekannt — it resolves to SOME named variety.
expect(farbschlagFor(fromDisplayString('aa C- DD EE GG PP spsp rere')).unknown).toBe(false)
})
})
describe('GEN-3d: dominance tiebreak for unknown loci', () => {
it('unknown-C reads as full-colour, NOT a c^h/c^chm white', () => {
// 'aa C- DD EE GG PP' -> Schwarz (dominant C reading), never PEW/Hermelin/Himalaya.
const name = genotypeToFarbschlag(fromDisplayString('aa C- DD EE GG PP spsp rere'))
expect(name).toBe('Schwarz')
expect(['Pink Eyed White (PEW)', 'Hermelin', 'Himalaya']).not.toContain(name)
})
it('unknown second marker allele defaults UNMARKED, not Schecke (marker-aware)', () => {
// 'sp-' (one sp + unknown) -> sp/sp -> no Schecke (naive most-dominant would wrongly add it).
expect(genotypeToFarbschlag(fromDisplayString('AA CC DD EE GG PP sp- rere'))).toBe('Agouti')
})
it('still: eef with unknowns -> Fuchsschimmel (family pin unaffected by tiebreak)', () => {
expect(genotypeToFarbschlag(fromDisplayString('aa C- D- eef Gg Pp spsp --'))).toBe(
'Fuchsschimmel',
)
})
})
describe('GEN-3e: C-locus colourpoint naming', () => {
const name = (s: string) => genotypeToFarbschlag(fromDisplayString(s))
it('A- + cchm/cchm -> CP-<base colour> (CP-Silberagouti example)', () => {
expect(name('AA cchmcchm DD EE gg PP spsp rere')).toBe('CP-Silberagouti')
expect(name('AA cchmcchm DD EE GG PP spsp rere')).toBe('CP-Agouti')
})
it('A- + cchm/ch -> CP-<base colour>', () => {
expect(name('AA cchmch DD EE GG PP spsp rere')).toBe('CP-Agouti')
})
it('aa fixed colourpoint names (Marder/Siam/Zobel/Zobel-Hell)', () => {
expect(name('aa cchmcchm DD EE GG PP spsp rere')).toBe('Marder')
expect(name('aa cchmch DD EE GG PP spsp rere')).toBe('Siam')
expect(name('aa cchmcchm DD EE gg PP spsp rere')).toBe('Zobel')
expect(name('aa cchmch DD EE gg PP spsp rere')).toBe('Zobel-Hell')
})
it('chch stays Hermelin (aa) / Himalaya (A-); full C => no CP', () => {
expect(name('aa chch DD EE GG PP spsp rere')).toBe('Hermelin')
expect(name('AA chch DD EE GG PP spsp rere')).toBe('Himalaya')
expect(name('AA CC DD EE GG PP spsp rere')).toBe('Agouti') // one full C -> no colourpoint
})
it('colourpoint composes with the Schecke modifier', () => {
expect(name('aa cchmcchm DD EE GG PP Spsp rere')).toBe('Marder Schecke')
})
})
describe('GEN-3f: CP catalog reconciled to the breeder CP- naming (matches her live data)', () => {
const name = (s: string) => genotypeToFarbschlag(fromDisplayString(s))
const has = (n: string) => BASE_COLORS.some((e) => e.name === n)
it('every CP- name her data uses exists as a catalog row (import name-match)', () => {
for (const n of [
'CP-Agouti', 'CP-Silberagouti', 'CP-Algierfuchs', 'CP-Polarfuchs',
'CP-Fuchs', 'CP-Fuchs-Hell', 'CP-Blaufuchs', 'CP-Orangeschimmel',
'Marder', 'Siam', 'Zobel', 'Zobel-Hell',
]) {
expect(has(n)).toBe(true)
}
})
it('the removed portal suffix-names are gone (collapsed)', () => {
for (const n of [
'Agouti CP', 'Agouti CP-Hell', 'Silberagouti CP', 'Algierfuchs CP',
'Polarfuchs CP', 'Blaufuchs CP', 'Kohlfuchs CP', 'Kohlfuchsschimmel CP',
'Marder dd', 'Zobel dd', 'Siam (Marder-Hell)', 'Agouti dd CP',
]) {
expect(has(n)).toBe(false)
}
})
it('the engine computes the agouti CP- names her data uses (E-family fallback covers fox/dilute)', () => {
expect(name('AA cchmcchm DD EE GG PP spsp rere')).toBe('CP-Agouti')
expect(name('AA cchmcchm DD EE gg PP spsp rere')).toBe('CP-Silberagouti')
expect(name('AA cchmcchm DD ee GG PP spsp rere')).toBe('CP-Algierfuchs')
expect(name('AA cchmcchm DD ee gg PP spsp rere')).toBe('CP-Polarfuchs')
// dd agouti fox has no dedicated base -> the eFamily fallback yields 'CP-Fuchs'.
expect(name('AA cchmcchm dd ee GG PP spsp rere')).toBe('CP-Fuchs')
// A- cchm efef -> CP-Orangeschimmel (Schimmel base under full C).
expect(name('AA cchmcchm DD efef GG PP spsp rere')).toBe('CP-Orangeschimmel')
})
it('het cchm/ch colourpoints (Siam, Zobel-Hell) resolve to their own names', () => {
const siam = BASE_COLORS.find((e) => e.name === 'Siam')!
const zh = BASE_COLORS.find((e) => e.name === 'Zobel-Hell')!
expect(genotypeToFarbschlag(representativeGenotype(siam))).toBe('Siam')
expect(genotypeToFarbschlag(representativeGenotype(zh))).toBe('Zobel-Hell')
})
})

View File

@@ -20,9 +20,15 @@
* meta rows dropped, 17 matched the frozen names). Genotypes normalized from
* portal notation (c[chm]->cchm, c[h]->ch, e[f]->ef, '-'/'--' = unknown).
*/
import { LOCUS_ORDER, type LocusKey } from './loci'
import { makeGenotype, toDisplayString, wildType, type AllelePair, type Genotype } from './genotype'
import { phenotypeTokens, type PhenotypeTokens } from './phenotype'
import { LOCI, LOCUS_ORDER, dominantAllele, type LocusKey } from './loci'
import {
makeGenotype,
toDisplayString,
wildType,
WILDCARD,
type AllelePair,
type Genotype,
} from './genotype'
export interface FarbschlagEntry {
/** German variety name. FROZEN for the original 18 (DB keys). */
@@ -41,12 +47,14 @@ export interface FarbschlagEntry {
* portal collision group.
*/
export const BASE_COLORS: readonly FarbschlagEntry[] = [
// ── Frozen 18 (names are DB-key contract; do not rename) ──
// ── Frozen names (DB-key contract; do not rename) ──
// GEN-3a: 'Schwarzschimmel' REMOVED (breeder C5: no such variety; efef base is
// Orangeschimmel — see the GEN-2 block below). This was an authorized exception
// to the frozen-name rule; the ColorVariety seed drops it too.
{ name: 'Pink Eyed White (PEW)', english: 'Pink Eyed White', tokens: { C: 'ch', P: 'p' }, image: 'rotaugen-weiss-pew-d-sep-e-sep.jpg' },
{ name: 'Hermelin', english: 'Dark Tailed White', tokens: { A: 'a', C: 'ch', D: 'D', P: 'P' }, image: 'hermelin.jpeg' },
{ name: 'Himalaya', english: 'Himalayan', tokens: { A: 'A', C: 'ch', D: 'D', P: 'P' }, image: 'himalaya.jpg' },
{ name: 'Zobel', english: 'Sable', tokens: { A: 'a', C: 'cchm', D: 'D', E: 'E', G: 'g', P: 'P' }, image: 'zobel.jpeg' },
{ name: 'Schwarzschimmel', english: 'Black Roan', tokens: { C: 'C', D: 'D', E: 'ef', G: 'G', P: 'P' } },
{ name: 'Rotaugenschimmel', english: 'Red-Eyed Roan', tokens: { C: 'C', D: 'D', E: 'ef', G: 'G', P: 'p' }, image: 'rotaugen-schimmel.jpg' },
{ name: 'Agouti', english: 'Golden Agouti', tokens: { A: 'A', C: 'C', D: 'D', E: 'E', G: 'G', P: 'P' }, image: 'agouti-mit-erklaerung-der-genloci.JPG' },
{ name: 'Schwarz', english: 'Black', tokens: { A: 'a', C: 'C', D: 'D', E: 'E', G: 'G', P: 'P' }, image: 'schwarz.jpg' },
@@ -68,55 +76,58 @@ export const BASE_COLORS: readonly FarbschlagEntry[] = [
{ name: 'C-Separator', tokens: { A: 'a', C: 'C', D: 'D', E: 'e', G: 'g', P: 'p' }, image: 'c-separator.jpg' },
{ name: 'Elfenbein', tokens: { A: 'A', C: 'C', D: 'D', E: 'E', G: 'g', P: 'p' }, image: 'elfenbein.jpg' },
{ name: 'Kohlfuchs', tokens: { A: 'a', C: 'C', D: 'D', E: 'e', G: 'G', P: 'P' }, image: 'kohlfuchs.jpg' },
{ name: 'Marder', tokens: { A: 'a', C: 'cchm', D: 'D', E: 'E', G: 'G', P: 'P' }, image: 'marder.JPG' },
{ name: 'Siam (Marder-Hell)', tokens: { A: 'a', C: 'cchm', D: 'D', E: 'E', G: 'G', P: 'P' }, image: 'siam-marder-hell.JPG' },
{ name: 'Polarfuchs', tokens: { A: 'A', C: 'C', D: 'D', E: 'e', G: 'g', P: 'P' }, image: 'polarfuchs.jpg' },
{ name: 'Saphir', tokens: { A: 'a', C: 'C', D: 'D', E: 'E', G: 'G', P: 'p' }, image: 'saphir.jpg' },
{ name: 'Schimmel (Orangeschimmel)', tokens: { C: 'C', D: 'D', E: 'ef', G: 'G', P: 'P' }, image: 'schimmel-orangeschimmel.jpg' },
// GEN-3a: efef base (otherwise wild C/D/G/P) = Orangeschimmel (breeder C5).
{ name: 'Orangeschimmel', tokens: { C: 'C', D: 'D', E: 'ef', G: 'G', P: 'P' }, image: 'schimmel-orangeschimmel.jpg' },
{ name: 'Topas', tokens: { A: 'A', C: 'C', D: 'D', E: 'E', G: 'G', P: 'p' }, image: 'topas.jpg' },
{ name: 'Platin-Hell', tokens: { A: 'a', C: 'C', D: 'D', E: 'E', G: 'G', P: 'p' }, image: 'platin-hell.jpg' },
{ name: 'Agouti dd', tokens: { A: 'A', C: 'C', D: 'd', E: 'E', G: 'G', P: 'P' }, image: 'agouti-dd.jpg' },
{ name: 'Silberagouti dd', tokens: { A: 'A', C: 'C', D: 'd', E: 'E', G: 'g', P: 'P' }, image: 'silberagouti-dd.jpg' },
{ name: 'Kohlfuchs dd', tokens: { A: 'a', C: 'C', D: 'd', E: 'e', G: 'G', P: 'P' }, image: 'kohlfuchs-dd.jpg' },
{ name: 'Anthrazit dd', tokens: { A: 'a', C: 'C', D: 'd', E: 'E', G: 'g', P: 'P' }, image: 'anthrazit-dd.jpg' },
{ name: 'Agouti CP-Hell', tokens: { A: 'A', C: 'cchm', D: 'D', E: 'E', G: 'G', P: 'P' }, image: 'agouti-cp-hell.JPG' },
{ name: 'Blaufuchs CP', tokens: { A: 'a', C: 'cchm', D: 'D', E: 'e', G: 'g', P: 'P' }, image: 'blaufuchs-cp.jpg' },
{ name: 'Polarfuchsschimmel', tokens: { A: 'A', C: 'C', D: 'D', E: 'ef', G: 'g', P: 'P' }, image: 'polarfuchsschimmel.jpg' },
// GEN-3a: efef gg base = Silberschimmel (breeder C5) — listed before the
// A-specific Polarfuchsschimmel so the canonical efef-gg reverse-matches here.
{ name: 'Silberschimmel', tokens: { C: 'C', D: 'D', E: 'ef', G: 'g', P: 'P' }, image: 'silberschimmel.jpg' },
{ name: 'Polarfuchsschimmel', tokens: { A: 'A', C: 'C', D: 'D', E: 'ef', G: 'g', P: 'P' }, image: 'polarfuchsschimmel.jpg' },
{ name: 'Algierfuchsschimmel', tokens: { A: 'A', C: 'C', D: 'D', E: 'ef', G: 'G', P: 'P' }, image: 'algierfuchsschimmel.jpg' },
{ name: 'Polarfuchs-Hell CP', tokens: { A: 'A', C: 'cchm', D: 'D', E: 'e', G: 'g', P: 'P' }, image: 'polarfuchs-hell-cp.jpg' },
{ name: 'Kohlfuchsschimmel', tokens: { A: 'a', C: 'C', D: 'D', E: 'ef', G: 'G', P: 'P' }, image: 'kohlfuchsschimmel.jpg' },
{ name: 'Blaufuchsschimmel', tokens: { A: 'a', C: 'C', D: 'D', E: 'ef', G: 'g', P: 'P' }, image: 'blaufuchsschimmel.jpg' },
{ name: 'Kohlfuchs, hell', tokens: { A: 'a', C: 'C', D: 'D', E: 'e', G: 'G', P: 'P' }, image: 'kohlfuchs-hell.jpg' },
{ name: 'Goldfuchs, hell', tokens: { A: 'A', C: 'C', D: 'D', E: 'e', G: 'G', P: 'p' }, image: 'goldfuchs-hell.jpg' },
{ name: 'Goldfuchsschimmel', tokens: { A: 'A', C: 'C', D: 'D', E: 'ef', G: 'G', P: 'p' }, image: 'goldfuchsschimmel.jpg' },
{ name: 'Gold-Hell', tokens: { A: 'A', C: 'C', D: 'D', E: 'E', G: 'G', P: 'p' }, image: 'gold-hell.jpg' },
{ name: 'Siam (Marder-Hell) dd', tokens: { A: 'a', C: 'cchm', D: 'd', E: 'E', G: 'G', P: 'P' }, image: 'siam-marder-hell-dd.jpg' },
{ name: 'Marder dd', tokens: { A: 'a', C: 'cchm', D: 'd', E: 'E', G: 'G', P: 'P' }, image: 'marder-dd.jpg' },
{ name: 'Zobel-Hell', tokens: { A: 'a', C: 'cchm', D: 'D', E: 'E', G: 'g', P: 'P' }, image: 'zobel-hell.jpg' },
{ name: 'Silberagouti dd CP', tokens: { A: 'A', C: 'cchm', D: 'd', E: 'E', G: 'g', P: 'P' }, image: 'silberagouti-dd-cp.jpg' },
{ name: 'Silberagouti-Hell dd CP', tokens: { A: 'A', C: 'cchm', D: 'd', E: 'E', G: 'g', P: 'P' }, image: 'silberagouti-hell-dd-cp.jpg' },
{ name: 'Agouti dd CP', tokens: { A: 'A', C: 'cchm', D: 'd', E: 'E', G: 'G', P: 'P' }, image: 'agouti-dd-cp.jpg' },
{ name: 'Agouti-Hell dd CP', tokens: { A: 'A', C: 'cchm', D: 'd', E: 'E', G: 'G', P: 'P' }, image: 'agouti-hell-dd-cp.jpg' },
{ name: 'Blaufuchs, hell', tokens: { A: 'a', C: 'C', D: 'D', E: 'e', G: 'g', P: 'P' }, image: 'blaufuchs-hell.jpeg' },
{ name: 'Rotfuchsschimmel', tokens: { A: 'a', C: 'C', D: 'D', E: 'ef', G: 'G', P: 'p' }, image: 'rotfuchsschimmel.jpg' },
{ name: 'Polarfuchs, hell', tokens: { A: 'A', C: 'C', D: 'D', E: 'e', G: 'g', P: 'P' }, image: 'polarfuchs-hell.jpeg' },
{ name: 'Kohlfuchsschimmel, hell', tokens: { A: 'a', C: 'C', D: 'D', E: 'ef', G: 'G', P: 'P' }, image: 'kohlfuchsschimmel-hell.jpg' },
{ name: 'Rotfuchs, hell', tokens: { A: 'a', C: 'C', D: 'D', E: 'e', G: 'G', P: 'p' }, image: 'rotfuchs-hell.jpg' },
{ name: 'Zobel dd', tokens: { A: 'a', C: 'cchm', D: 'd', E: 'E', G: 'g', P: 'P' }, image: 'zobel-dd.jpg' },
{ name: 'Kohlfuchs-Hell', tokens: { A: 'a', C: 'C', D: 'D', E: 'e', G: 'G', P: 'P' }, image: 'kohlfuchs-hell-2.jpg' },
{ name: 'Kohlfuchs CP', tokens: { A: 'a', C: 'cchm', D: 'D', E: 'e', G: 'G', P: 'P' }, image: 'kohlfuchs-cp.jpg' },
{ name: 'Algierfuchs CP', tokens: { A: 'A', C: 'cchm', D: 'D', E: 'e', G: 'G', P: 'P' }, image: 'algierfuchs-cp.jpg' },
{ name: 'Silberagouti CP', tokens: { A: 'A', C: 'cchm', D: 'D', E: 'E', G: 'g', P: 'P' }, image: 'silberagouti-cp.JPG' },
{ name: 'Agouti CP', tokens: { A: 'A', C: 'cchm', D: 'D', E: 'E', G: 'G', P: 'P' }, image: 'agouti-cp.jpg' },
{ name: 'Algierfuchs-Hell CP', tokens: { A: 'A', C: 'cchm', D: 'D', E: 'e', G: 'G', P: 'P' }, image: 'algierfuchs-hell-cp.jpg' },
{ name: 'Kohlfuchs,hell CP', tokens: { A: 'a', C: 'cchm', D: 'D', E: 'e', G: 'G', P: 'P' }, image: 'kohlfuchs-hell-cp.jpg' },
{ name: 'Polarfuchs CP', tokens: { A: 'A', C: 'cchm', D: 'D', E: 'e', G: 'g', P: 'P' }, image: 'polarfuchs-cp.jpg' },
{ name: 'Algierfuchs, hell', tokens: { A: 'A', C: 'C', D: 'D', E: 'e', G: 'G', P: 'P' }, image: 'algierfuchs-hell.JPG' },
{ name: 'Topas dd', tokens: { A: 'A', C: 'C', D: 'd', E: 'E', G: 'G', P: 'p' }, image: 'topas-dd.jpg' },
{ name: 'Zobel-Hell dd', tokens: { A: 'a', C: 'cchm', D: 'd', E: 'E', G: 'g', P: 'P' }, image: 'zobel-hell-dd.jpg' },
{ name: 'Kohlfuchsschimmel CP', tokens: { A: 'a', C: 'cchm', D: 'D', E: 'ef', G: 'G', P: 'P' }, image: 'kohlfuchsschimmel-cp.JPG' },
{ name: 'Blaufuchs dd', tokens: { A: 'a', C: 'C', D: 'd', E: 'e', G: 'g', P: 'p' }, image: 'blaufuchs-dd.jpg' },
// ── GEN-3f: c^chm colourpoint varieties, reconciled to the breeder's CP- naming ──
// The merged GEN-3e colourpointName() rule is authoritative: aa points are the
// marten/sable group (Marder/Siam, +gg Zobel/Zobel-Hell — E and D irrelevant);
// A- points take the 'CP-<base colour>' prefix and the '-Hell' shade variants
// collapse (other loci irrelevant for the CP prefix). These names == the strings
// in her live data (god: extract animals.json) so the re-import name-matches and
// the Farbschlag mismatch hint stops. The het cchm/ch points (Siam, Zobel-Hell,
// CP-Fuchs-Hell) use the 'cchm/ch' pair token. The agouti fox/dilute points
// (CP-Fuchs/CP-Blaufuchs) resolve through the engine's E-family fallback to
// 'CP-Fuchs'; their distinct dropdown names remain for hand-pick + import match.
{ name: 'Marder', tokens: { A: 'a', C: 'cchm', D: 'D', E: 'E', G: 'G', P: 'P' }, image: 'marder.JPG' },
{ name: 'Siam', tokens: { A: 'a', C: 'cchm/ch', D: 'D', E: 'E', G: 'G', P: 'P' }, image: 'siam-marder-hell.JPG' },
{ name: 'Zobel-Hell', tokens: { A: 'a', C: 'cchm/ch', D: 'D', E: 'E', G: 'g', P: 'P' }, image: 'zobel-hell.jpg' },
{ name: 'CP-Agouti', tokens: { A: 'A', C: 'cchm', D: 'D', E: 'E', G: 'G', P: 'P' }, image: 'agouti-cp.jpg' },
{ name: 'CP-Silberagouti', tokens: { A: 'A', C: 'cchm', D: 'D', E: 'E', G: 'g', P: 'P' }, image: 'silberagouti-cp.JPG' },
{ name: 'CP-Algierfuchs', tokens: { A: 'A', C: 'cchm', D: 'D', E: 'e', G: 'G', P: 'P' }, image: 'algierfuchs-cp.jpg' },
{ name: 'CP-Polarfuchs', tokens: { A: 'A', C: 'cchm', D: 'D', E: 'e', G: 'g', P: 'P' }, image: 'polarfuchs-cp.jpg' },
{ name: 'CP-Fuchs', tokens: { A: 'A', C: 'cchm', D: 'd', E: 'e', G: 'G', P: 'P' } },
{ name: 'CP-Fuchs-Hell', tokens: { A: 'A', C: 'cchm/ch', D: 'd', E: 'e', G: 'G', P: 'P' } },
{ name: 'CP-Blaufuchs', tokens: { A: 'A', C: 'cchm', D: 'd', E: 'e', G: 'g', P: 'P' } },
{ name: 'CP-Orangeschimmel', tokens: { C: 'cchm', D: 'D', E: 'ef', G: 'G', P: 'P' } },
]
export const UNKNOWN_FARBSCHLAG = 'Unbekannter Farbschlag'
@@ -130,26 +141,108 @@ export interface FarbschlagMatch {
readonly unknown: boolean
}
function matches(tokens: PhenotypeTokens, entry: FarbschlagEntry): boolean {
/**
* Expressed token at a locus. GEN-3d: an UNKNOWN allele ('?') is resolved to the
* MOST-DOMINANT allele of the locus (the safer default) rather than acting as a
* match-anything wildcard — so an unknown-C animal reads as full-colour 'C', not
* a c^h/c^chm colourpoint white. The E locus stays PAIR-aware so the Fuchs/
* Schimmel family is distinguishable: ee->'e', e/ef->'eef', ef/ef->'ef'.
* (The Fuchs/Schimmel FAMILY for unknown-E is still handled by eFamily on the
* raw pair, which runs before this.)
*/
function locusToken(g: Genotype, locus: LocusKey): string {
// Default an unknown allele to the WILD-TYPE reading: most-dominant for the
// colour loci (unknown-C => full-colour 'C', not a white), but the recessive
// UNMARKED allele for the spotting/rex markers (unknown-Sp must NOT imply Schecke).
const alleles = LOCI[locus].alleles
const isMarker = locus === 'Sp' || locus === 'Re' || locus === 'Sls'
const fallback = isMarker ? alleles[alleles.length - 1] : alleles[0]
const [x, y] = g[locus].map((a) => (a === WILDCARD ? fallback : a))
if (locus === 'E') {
if (x === y) return x // ee->'e', efef->'ef', EE->'E'
if ((x === 'e' && y === 'ef') || (x === 'ef' && y === 'e')) return 'eef'
return dominantAllele('E', x, y) // E/ef, E/e -> 'E'
}
return dominantAllele(locus, x, y)
}
function matches(g: Genotype, entry: FarbschlagEntry): boolean {
return (Object.keys(entry.tokens) as LocusKey[]).every(
(locus) => tokens[locus] === entry.tokens[locus],
(locus) => locusToken(g, locus) === entry.tokens[locus],
)
}
/**
* GEN-3c family fallback: the E locus alone names the Fuchs/Schimmel family even
* when other loci are unknown (so genotypes never fall through to "Unbekannt").
* ee -> Fuchs | e/ef -> Fuchsschimmel | ef/ef -> Schimmel | e/? -> Fuchs (for now)
* Returns null when E is dominant (full colour) or fully unknown.
*/
function eFamily(g: Genotype): string | null {
const [x, y] = g.E
if (x === 'e' && y === 'e') return 'Fuchs'
if ((x === 'e' && y === 'ef') || (x === 'ef' && y === 'e')) return 'Fuchsschimmel'
if (x === 'ef' && y === 'ef') return 'Schimmel'
if ((x === 'e' || y === 'e') && (x === WILDCARD || y === WILDCARD)) return 'Fuchs'
return null
}
/** Resolve a genotype to its German Farbschlag (with Schecke/Rex modifiers). */
/** Resolve an allele pair to concrete alleles, defaulting unknown to wild-type. */
function resolvedPair(g: Genotype, locus: LocusKey): [string, string] {
const alleles = LOCI[locus].alleles
const isMarker = locus === 'Sp' || locus === 'Re' || locus === 'Sls'
const fallback = isMarker ? alleles[alleles.length - 1] : alleles[0]
const [x, y] = g[locus].map((a) => (a === WILDCARD ? fallback : a))
return [x, y]
}
/** Base colour name (no modifiers, no colourpoint prefix), via E-family + matches. */
function baseColourFor(g: Genotype): string | null {
const family = eFamily(g)
const base = family
? (BASE_COLORS.find((e) => e.tokens.E !== undefined && matches(g, e)) ?? null)
: (BASE_COLORS.find((e) => matches(g, e)) ?? null)
return base?.name ?? family
}
/**
* GEN-3e: the C-locus colourpoint NAMING transform (breeder-authoritative).
* Returns the colourpoint name, or null when it doesn't apply (full C present,
* or chch — which the base matcher names Hermelin/Himalaya, preserving both).
* aa cchm/cchm -> Marder | aa cchm/ch -> Siam
* aa cchm/cchm gg -> Zobel | aa cchm/ch gg -> Zobel-Hell
* A- cchm/cchm | cchm/ch -> CP-<base colour> (base computed as if C were full)
*/
function colourpointName(g: Genotype): string | null {
const c = resolvedPair(g, 'C')
if (c.includes('C')) return null // a full C allele => full colour, no CP
if (c[0] === 'ch' && c[1] === 'ch') return null // chch -> base matcher (Hermelin/Himalaya)
// Remaining: cchm/cchm or cchm/ch (colourpoint, no full C, not chch).
const bothCchm = c[0] === 'cchm' && c[1] === 'cchm'
const agouti = resolvedPair(g, 'A').includes('A')
if (!agouti) {
const [g1, g2] = resolvedPair(g, 'G')
const grey = g1 === 'g' && g2 === 'g'
if (grey) return bothCchm ? 'Zobel' : 'Zobel-Hell'
return bothCchm ? 'Marder' : 'Siam'
}
// A- colourpoint -> CP-<base colour>, base as if C were full.
const base = baseColourFor(makeGenotype({ ...g, C: ['C', 'C'] }))
return base ? `CP-${base}` : null
}
export function farbschlagFor(g: Genotype): FarbschlagMatch {
const tokens = phenotypeTokens(g)
const base = BASE_COLORS.find((e) => matches(tokens, e)) ?? null
const modifiers: string[] = []
if (tokens.Sp === 'Sp') modifiers.push('Schecke')
if (tokens.Re === 'Re') modifiers.push('Rex')
if (locusToken(g, 'Sp') === 'Sp') modifiers.push('Schecke')
if (locusToken(g, 'Re') === 'Re') modifiers.push('Rex')
if (!base) {
const baseName = colourpointName(g) ?? baseColourFor(g)
if (!baseName) {
return { name: UNKNOWN_FARBSCHLAG, base: null, unknown: true }
}
const name = [base.name, ...modifiers].join(' ')
return { name, base, unknown: false }
const name = [baseName, ...modifiers].join(' ')
return { name, base: null, unknown: false }
}
/**
@@ -174,7 +267,14 @@ export function representativeGenotype(entry: FarbschlagEntry): Genotype {
const out = {} as Record<LocusKey, AllelePair>
for (const locus of LOCUS_ORDER) {
const token = entry.tokens[locus]
out[locus] = token ? [token, token] : base[locus]
if (!token) {
out[locus] = base[locus]
continue
}
// GEN-3f: a token may encode a HETEROZYGOUS pair as "x/y" (e.g. the het
// colourpoints Siam/Zobel-Hell use C: 'cchm/ch'); otherwise it's homozygous.
const [a, b] = token.includes('/') ? (token.split('/') as [string, string]) : [token, token]
out[locus] = [a, b]
}
return makeGenotype(out)
}

View File

@@ -1,440 +1,381 @@
[
{
"name": "Pink Eyed White (PEW)",
"canonicalGenotype": "AA chch DD EE GG pp spsp rere",
"sortOrder": 0,
"image": "rotaugen-weiss-pew-d-sep-e-sep.jpg"
},
{
"name": "Hermelin",
"canonicalGenotype": "aa chch DD EE GG PP spsp rere",
"sortOrder": 1,
"image": "hermelin.jpeg"
},
{
"name": "Himalaya",
"canonicalGenotype": "AA chch DD EE GG PP spsp rere",
"sortOrder": 2,
"image": "himalaya.jpg"
},
{
"name": "Zobel",
"canonicalGenotype": "aa cchmcchm DD EE gg PP spsp rere",
"sortOrder": 3,
"image": "zobel.jpeg"
},
{
"name": "Schwarzschimmel",
"canonicalGenotype": "AA CC DD efef GG PP spsp rere",
"sortOrder": 4,
"image": null
},
{
"name": "Rotaugenschimmel",
"canonicalGenotype": "AA CC DD efef GG pp spsp rere",
"sortOrder": 5,
"image": "rotaugen-schimmel.jpg"
},
{
"name": "Agouti",
"canonicalGenotype": "AA CC DD EE GG PP spsp rere",
"sortOrder": 6,
"image": "agouti-mit-erklaerung-der-genloci.JPG"
},
{
"name": "Schwarz",
"canonicalGenotype": "aa CC DD EE GG PP spsp rere",
"sortOrder": 7,
"image": "schwarz.jpg"
},
{
"name": "Silberagouti",
"canonicalGenotype": "AA CC DD EE gg PP spsp rere",
"sortOrder": 8,
"image": "silberagouti.jpg"
},
{
"name": "Anthrazit",
"canonicalGenotype": "aa CC DD EE gg PP spsp rere",
"sortOrder": 9,
"image": "anthrazit.jpg"
},
{
"name": "Algierfuchs",
"canonicalGenotype": "AA CC DD ee GG PP spsp rere",
"sortOrder": 10,
"image": "algierfuchs.jpg"
},
{
"name": "Blau",
"canonicalGenotype": "aa CC dd EE GG PP spsp rere",
"sortOrder": 11,
"image": "blau-schwarz-dd.JPG"
},
{
"name": "Gold",
"canonicalGenotype": "AA CC DD EE GG pp spsp rere",
"sortOrder": 12,
"image": "gold.jpg"
},
{
"name": "Platin",
"canonicalGenotype": "aa CC DD EE GG pp spsp rere",
"sortOrder": 13,
"image": "platin.JPG"
},
{
"name": "Goldfuchs",
"canonicalGenotype": "AA CC DD ee GG pp spsp rere",
"sortOrder": 14,
"image": "goldfuchs.jpg"
},
{
"name": "Rotfuchs",
"canonicalGenotype": "aa CC DD ee GG pp spsp rere",
"sortOrder": 15,
"image": "rotfuchs.JPG"
},
{
"name": "dd Gold",
"canonicalGenotype": "AA CC dd EE GG pp spsp rere",
"sortOrder": 16,
"image": "gold-dd.jpg"
},
{
"name": "dd Platin",
"canonicalGenotype": "aa CC dd EE GG pp spsp rere",
"sortOrder": 17,
"image": "platin-dd.jpg"
},
{
"name": "Altweiss (REW)",
"canonicalGenotype": "aa CC DD EE gg pp spsp rere",
"sortOrder": 18,
"image": "altweiss-rew.jpeg"
},
{
"name": "Apricot (Blassfuchs)",
"canonicalGenotype": "AA CC DD ee gg pp spsp rere",
"sortOrder": 19,
"image": "apricot-blassfuchs.jpg"
},
{
"name": "Blaufuchs",
"canonicalGenotype": "aa CC DD ee gg PP spsp rere",
"sortOrder": 20,
"image": "blaufuchs.jpg"
},
{
"name": "C-Separator",
"canonicalGenotype": "aa CC DD ee gg pp spsp rere",
"sortOrder": 21,
"image": "c-separator.jpg"
},
{
"name": "Elfenbein",
"canonicalGenotype": "AA CC DD EE gg pp spsp rere",
"sortOrder": 22,
"image": "elfenbein.jpg"
},
{
"name": "Kohlfuchs",
"canonicalGenotype": "aa CC DD ee GG PP spsp rere",
"sortOrder": 23,
"image": "kohlfuchs.jpg"
},
{
"name": "Marder",
"canonicalGenotype": "aa cchmcchm DD EE GG PP spsp rere",
"sortOrder": 24,
"image": "marder.JPG"
},
{
"name": "Siam (Marder-Hell)",
"canonicalGenotype": "aa cchmcchm DD EE GG PP spsp rere",
"sortOrder": 25,
"image": "siam-marder-hell.JPG"
},
{
"name": "Polarfuchs",
"canonicalGenotype": "AA CC DD ee gg PP spsp rere",
"sortOrder": 26,
"image": "polarfuchs.jpg"
},
{
"name": "Saphir",
"canonicalGenotype": "aa CC DD EE GG pp spsp rere",
"sortOrder": 27,
"image": "saphir.jpg"
},
{
"name": "Schimmel (Orangeschimmel)",
"canonicalGenotype": "AA CC DD efef GG PP spsp rere",
"sortOrder": 28,
"image": "schimmel-orangeschimmel.jpg"
},
{
"name": "Topas",
"canonicalGenotype": "AA CC DD EE GG pp spsp rere",
"sortOrder": 29,
"image": "topas.jpg"
},
{
"name": "Platin-Hell",
"canonicalGenotype": "aa CC DD EE GG pp spsp rere",
"sortOrder": 30,
"image": "platin-hell.jpg"
},
{
"name": "Agouti dd",
"canonicalGenotype": "AA CC dd EE GG PP spsp rere",
"sortOrder": 31,
"image": "agouti-dd.jpg"
},
{
"name": "Silberagouti dd",
"canonicalGenotype": "AA CC dd EE gg PP spsp rere",
"sortOrder": 32,
"image": "silberagouti-dd.jpg"
},
{
"name": "Kohlfuchs dd",
"canonicalGenotype": "aa CC dd ee GG PP spsp rere",
"sortOrder": 33,
"image": "kohlfuchs-dd.jpg"
},
{
"name": "Anthrazit dd",
"canonicalGenotype": "aa CC dd EE gg PP spsp rere",
"sortOrder": 34,
"image": "anthrazit-dd.jpg"
},
{
"name": "Agouti CP-Hell",
"canonicalGenotype": "AA cchmcchm DD EE GG PP spsp rere",
"sortOrder": 35,
"image": "agouti-cp-hell.JPG"
},
{
"name": "Blaufuchs CP",
"canonicalGenotype": "aa cchmcchm DD ee gg PP spsp rere",
"sortOrder": 36,
"image": "blaufuchs-cp.jpg"
},
{
"name": "Polarfuchsschimmel",
"canonicalGenotype": "AA CC DD efef gg PP spsp rere",
"sortOrder": 37,
"image": "polarfuchsschimmel.jpg"
},
{
"name": "Silberschimmel",
"canonicalGenotype": "AA CC DD efef gg PP spsp rere",
"sortOrder": 38,
"image": "silberschimmel.jpg"
},
{
"name": "Algierfuchsschimmel",
"canonicalGenotype": "AA CC DD efef GG PP spsp rere",
"sortOrder": 39,
"image": "algierfuchsschimmel.jpg"
},
{
"name": "Polarfuchs-Hell CP",
"canonicalGenotype": "AA cchmcchm DD ee gg PP spsp rere",
"sortOrder": 40,
"image": "polarfuchs-hell-cp.jpg"
},
{
"name": "Kohlfuchsschimmel",
"canonicalGenotype": "aa CC DD efef GG PP spsp rere",
"sortOrder": 41,
"image": "kohlfuchsschimmel.jpg"
},
{
"name": "Blaufuchsschimmel",
"canonicalGenotype": "aa CC DD efef gg PP spsp rere",
"sortOrder": 42,
"image": "blaufuchsschimmel.jpg"
},
{
"name": "Kohlfuchs, hell",
"canonicalGenotype": "aa CC DD ee GG PP spsp rere",
"sortOrder": 43,
"image": "kohlfuchs-hell.jpg"
},
{
"name": "Goldfuchs, hell",
"canonicalGenotype": "AA CC DD ee GG pp spsp rere",
"sortOrder": 44,
"image": "goldfuchs-hell.jpg"
},
{
"name": "Goldfuchsschimmel",
"canonicalGenotype": "AA CC DD efef GG pp spsp rere",
"sortOrder": 45,
"image": "goldfuchsschimmel.jpg"
},
{
"name": "Gold-Hell",
"canonicalGenotype": "AA CC DD EE GG pp spsp rere",
"sortOrder": 46,
"image": "gold-hell.jpg"
},
{
"name": "Siam (Marder-Hell) dd",
"canonicalGenotype": "aa cchmcchm dd EE GG PP spsp rere",
"sortOrder": 47,
"image": "siam-marder-hell-dd.jpg"
},
{
"name": "Marder dd",
"canonicalGenotype": "aa cchmcchm dd EE GG PP spsp rere",
"sortOrder": 48,
"image": "marder-dd.jpg"
},
{
"name": "Zobel-Hell",
"canonicalGenotype": "aa cchmcchm DD EE gg PP spsp rere",
"sortOrder": 49,
"image": "zobel-hell.jpg"
},
{
"name": "Silberagouti dd CP",
"canonicalGenotype": "AA cchmcchm dd EE gg PP spsp rere",
"sortOrder": 50,
"image": "silberagouti-dd-cp.jpg"
},
{
"name": "Silberagouti-Hell dd CP",
"canonicalGenotype": "AA cchmcchm dd EE gg PP spsp rere",
"sortOrder": 51,
"image": "silberagouti-hell-dd-cp.jpg"
},
{
"name": "Agouti dd CP",
"canonicalGenotype": "AA cchmcchm dd EE GG PP spsp rere",
"sortOrder": 52,
"image": "agouti-dd-cp.jpg"
},
{
"name": "Agouti-Hell dd CP",
"canonicalGenotype": "AA cchmcchm dd EE GG PP spsp rere",
"sortOrder": 53,
"image": "agouti-hell-dd-cp.jpg"
},
{
"name": "Blaufuchs, hell",
"canonicalGenotype": "aa CC DD ee gg PP spsp rere",
"sortOrder": 54,
"image": "blaufuchs-hell.jpeg"
},
{
"name": "Rotfuchsschimmel",
"canonicalGenotype": "aa CC DD efef GG pp spsp rere",
"sortOrder": 55,
"image": "rotfuchsschimmel.jpg"
},
{
"name": "Polarfuchs, hell",
"canonicalGenotype": "AA CC DD ee gg PP spsp rere",
"sortOrder": 56,
"image": "polarfuchs-hell.jpeg"
},
{
"name": "Kohlfuchsschimmel, hell",
"canonicalGenotype": "aa CC DD efef GG PP spsp rere",
"sortOrder": 57,
"image": "kohlfuchsschimmel-hell.jpg"
},
{
"name": "Rotfuchs, hell",
"canonicalGenotype": "aa CC DD ee GG pp spsp rere",
"sortOrder": 58,
"image": "rotfuchs-hell.jpg"
},
{
"name": "Zobel dd",
"canonicalGenotype": "aa cchmcchm dd EE gg PP spsp rere",
"sortOrder": 59,
"image": "zobel-dd.jpg"
},
{
"name": "Kohlfuchs-Hell",
"canonicalGenotype": "aa CC DD ee GG PP spsp rere",
"sortOrder": 60,
"image": "kohlfuchs-hell-2.jpg"
},
{
"name": "Kohlfuchs CP",
"canonicalGenotype": "aa cchmcchm DD ee GG PP spsp rere",
"sortOrder": 61,
"image": "kohlfuchs-cp.jpg"
},
{
"name": "Algierfuchs CP",
"canonicalGenotype": "AA cchmcchm DD ee GG PP spsp rere",
"sortOrder": 62,
"image": "algierfuchs-cp.jpg"
},
{
"name": "Silberagouti CP",
"canonicalGenotype": "AA cchmcchm DD EE gg PP spsp rere",
"sortOrder": 63,
"image": "silberagouti-cp.JPG"
},
{
"name": "Agouti CP",
"canonicalGenotype": "AA cchmcchm DD EE GG PP spsp rere",
"sortOrder": 64,
"image": "agouti-cp.jpg"
},
{
"name": "Algierfuchs-Hell CP",
"canonicalGenotype": "AA cchmcchm DD ee GG PP spsp rere",
"sortOrder": 65,
"image": "algierfuchs-hell-cp.jpg"
},
{
"name": "Kohlfuchs,hell CP",
"canonicalGenotype": "aa cchmcchm DD ee GG PP spsp rere",
"sortOrder": 66,
"image": "kohlfuchs-hell-cp.jpg"
},
{
"name": "Polarfuchs CP",
"canonicalGenotype": "AA cchmcchm DD ee gg PP spsp rere",
"sortOrder": 67,
"image": "polarfuchs-cp.jpg"
},
{
"name": "Algierfuchs, hell",
"canonicalGenotype": "AA CC DD ee GG PP spsp rere",
"sortOrder": 68,
"image": "algierfuchs-hell.JPG"
},
{
"name": "Topas dd",
"canonicalGenotype": "AA CC dd EE GG pp spsp rere",
"sortOrder": 69,
"image": "topas-dd.jpg"
},
{
"name": "Zobel-Hell dd",
"canonicalGenotype": "aa cchmcchm dd EE gg PP spsp rere",
"sortOrder": 70,
"image": "zobel-hell-dd.jpg"
},
{
"name": "Kohlfuchsschimmel CP",
"canonicalGenotype": "aa cchmcchm DD efef GG PP spsp rere",
"sortOrder": 71,
"image": "kohlfuchsschimmel-cp.JPG"
},
{
"name": "Blaufuchs dd",
"canonicalGenotype": "aa CC dd ee gg PP spsp rere",
"sortOrder": 72,
"image": "blaufuchs-dd.jpg"
}
]
[
{
"name": "Pink Eyed White (PEW)",
"english": "Pink Eyed White",
"canonicalGenotype": "AA chch DD EE GG pp spsp rere",
"sortOrder": 0,
"image": "rotaugen-weiss-pew-d-sep-e-sep.jpg"
},
{
"name": "Hermelin",
"english": "Dark Tailed White",
"canonicalGenotype": "aa chch DD EE GG PP spsp rere",
"sortOrder": 1,
"image": "hermelin.jpeg"
},
{
"name": "Himalaya",
"english": "Himalayan",
"canonicalGenotype": "AA chch DD EE GG PP spsp rere",
"sortOrder": 2,
"image": "himalaya.jpg"
},
{
"name": "Zobel",
"english": "Sable",
"canonicalGenotype": "aa cchmcchm DD EE gg PP spsp rere",
"sortOrder": 3,
"image": "zobel.jpeg"
},
{
"name": "Rotaugenschimmel",
"english": "Red-Eyed Roan",
"canonicalGenotype": "AA CC DD efef GG pp spsp rere",
"sortOrder": 4,
"image": "rotaugen-schimmel.jpg"
},
{
"name": "Agouti",
"english": "Golden Agouti",
"canonicalGenotype": "AA CC DD EE GG PP spsp rere",
"sortOrder": 5,
"image": "agouti-mit-erklaerung-der-genloci.JPG"
},
{
"name": "Schwarz",
"english": "Black",
"canonicalGenotype": "aa CC DD EE GG PP spsp rere",
"sortOrder": 6,
"image": "schwarz.jpg"
},
{
"name": "Silberagouti",
"english": "Grey Agouti",
"canonicalGenotype": "AA CC DD EE gg PP spsp rere",
"sortOrder": 7,
"image": "silberagouti.jpg"
},
{
"name": "Anthrazit",
"english": "Slate",
"canonicalGenotype": "aa CC DD EE gg PP spsp rere",
"sortOrder": 8,
"image": "anthrazit.jpg"
},
{
"name": "Algierfuchs",
"english": "Dark-Eyed Honey",
"canonicalGenotype": "AA CC DD ee GG PP spsp rere",
"sortOrder": 9,
"image": "algierfuchs.jpg"
},
{
"name": "Blau",
"english": "Blue",
"canonicalGenotype": "aa CC dd EE GG PP spsp rere",
"sortOrder": 10,
"image": "blau-schwarz-dd.JPG"
},
{
"name": "Gold",
"english": "Argente Golden",
"canonicalGenotype": "AA CC DD EE GG pp spsp rere",
"sortOrder": 11,
"image": "gold.jpg"
},
{
"name": "Platin",
"english": "Lilac",
"canonicalGenotype": "aa CC DD EE GG pp spsp rere",
"sortOrder": 12,
"image": "platin.JPG"
},
{
"name": "Goldfuchs",
"english": "Yellow Fox",
"canonicalGenotype": "AA CC DD ee GG pp spsp rere",
"sortOrder": 13,
"image": "goldfuchs.jpg"
},
{
"name": "Rotfuchs",
"english": "Argente Nutmeg",
"canonicalGenotype": "aa CC DD ee GG pp spsp rere",
"sortOrder": 14,
"image": "rotfuchs.JPG"
},
{
"name": "dd Gold",
"english": "dd Argente Golden",
"canonicalGenotype": "AA CC dd EE GG pp spsp rere",
"sortOrder": 15,
"image": "gold-dd.jpg"
},
{
"name": "dd Platin",
"english": "dd Lilac",
"canonicalGenotype": "aa CC dd EE GG pp spsp rere",
"sortOrder": 16,
"image": "platin-dd.jpg"
},
{
"name": "Altweiss (REW)",
"canonicalGenotype": "aa CC DD EE gg pp spsp rere",
"sortOrder": 17,
"image": "altweiss-rew.jpeg"
},
{
"name": "Apricot (Blassfuchs)",
"canonicalGenotype": "AA CC DD ee gg pp spsp rere",
"sortOrder": 18,
"image": "apricot-blassfuchs.jpg"
},
{
"name": "Blaufuchs",
"canonicalGenotype": "aa CC DD ee gg PP spsp rere",
"sortOrder": 19,
"image": "blaufuchs.jpg"
},
{
"name": "C-Separator",
"canonicalGenotype": "aa CC DD ee gg pp spsp rere",
"sortOrder": 20,
"image": "c-separator.jpg"
},
{
"name": "Elfenbein",
"canonicalGenotype": "AA CC DD EE gg pp spsp rere",
"sortOrder": 21,
"image": "elfenbein.jpg"
},
{
"name": "Kohlfuchs",
"canonicalGenotype": "aa CC DD ee GG PP spsp rere",
"sortOrder": 22,
"image": "kohlfuchs.jpg"
},
{
"name": "Polarfuchs",
"canonicalGenotype": "AA CC DD ee gg PP spsp rere",
"sortOrder": 23,
"image": "polarfuchs.jpg"
},
{
"name": "Saphir",
"canonicalGenotype": "aa CC DD EE GG pp spsp rere",
"sortOrder": 24,
"image": "saphir.jpg"
},
{
"name": "Orangeschimmel",
"canonicalGenotype": "AA CC DD efef GG PP spsp rere",
"sortOrder": 25,
"image": "schimmel-orangeschimmel.jpg"
},
{
"name": "Topas",
"canonicalGenotype": "AA CC DD EE GG pp spsp rere",
"sortOrder": 26,
"image": "topas.jpg"
},
{
"name": "Platin-Hell",
"canonicalGenotype": "aa CC DD EE GG pp spsp rere",
"sortOrder": 27,
"image": "platin-hell.jpg"
},
{
"name": "Agouti dd",
"canonicalGenotype": "AA CC dd EE GG PP spsp rere",
"sortOrder": 28,
"image": "agouti-dd.jpg"
},
{
"name": "Silberagouti dd",
"canonicalGenotype": "AA CC dd EE gg PP spsp rere",
"sortOrder": 29,
"image": "silberagouti-dd.jpg"
},
{
"name": "Kohlfuchs dd",
"canonicalGenotype": "aa CC dd ee GG PP spsp rere",
"sortOrder": 30,
"image": "kohlfuchs-dd.jpg"
},
{
"name": "Anthrazit dd",
"canonicalGenotype": "aa CC dd EE gg PP spsp rere",
"sortOrder": 31,
"image": "anthrazit-dd.jpg"
},
{
"name": "Silberschimmel",
"canonicalGenotype": "AA CC DD efef gg PP spsp rere",
"sortOrder": 32,
"image": "silberschimmel.jpg"
},
{
"name": "Polarfuchsschimmel",
"canonicalGenotype": "AA CC DD efef gg PP spsp rere",
"sortOrder": 33,
"image": "polarfuchsschimmel.jpg"
},
{
"name": "Algierfuchsschimmel",
"canonicalGenotype": "AA CC DD efef GG PP spsp rere",
"sortOrder": 34,
"image": "algierfuchsschimmel.jpg"
},
{
"name": "Kohlfuchsschimmel",
"canonicalGenotype": "aa CC DD efef GG PP spsp rere",
"sortOrder": 35,
"image": "kohlfuchsschimmel.jpg"
},
{
"name": "Blaufuchsschimmel",
"canonicalGenotype": "aa CC DD efef gg PP spsp rere",
"sortOrder": 36,
"image": "blaufuchsschimmel.jpg"
},
{
"name": "Kohlfuchs, hell",
"canonicalGenotype": "aa CC DD ee GG PP spsp rere",
"sortOrder": 37,
"image": "kohlfuchs-hell.jpg"
},
{
"name": "Goldfuchs, hell",
"canonicalGenotype": "AA CC DD ee GG pp spsp rere",
"sortOrder": 38,
"image": "goldfuchs-hell.jpg"
},
{
"name": "Goldfuchsschimmel",
"canonicalGenotype": "AA CC DD efef GG pp spsp rere",
"sortOrder": 39,
"image": "goldfuchsschimmel.jpg"
},
{
"name": "Gold-Hell",
"canonicalGenotype": "AA CC DD EE GG pp spsp rere",
"sortOrder": 40,
"image": "gold-hell.jpg"
},
{
"name": "Blaufuchs, hell",
"canonicalGenotype": "aa CC DD ee gg PP spsp rere",
"sortOrder": 41,
"image": "blaufuchs-hell.jpeg"
},
{
"name": "Rotfuchsschimmel",
"canonicalGenotype": "aa CC DD efef GG pp spsp rere",
"sortOrder": 42,
"image": "rotfuchsschimmel.jpg"
},
{
"name": "Polarfuchs, hell",
"canonicalGenotype": "AA CC DD ee gg PP spsp rere",
"sortOrder": 43,
"image": "polarfuchs-hell.jpeg"
},
{
"name": "Kohlfuchsschimmel, hell",
"canonicalGenotype": "aa CC DD efef GG PP spsp rere",
"sortOrder": 44,
"image": "kohlfuchsschimmel-hell.jpg"
},
{
"name": "Rotfuchs, hell",
"canonicalGenotype": "aa CC DD ee GG pp spsp rere",
"sortOrder": 45,
"image": "rotfuchs-hell.jpg"
},
{
"name": "Kohlfuchs-Hell",
"canonicalGenotype": "aa CC DD ee GG PP spsp rere",
"sortOrder": 46,
"image": "kohlfuchs-hell-2.jpg"
},
{
"name": "Algierfuchs, hell",
"canonicalGenotype": "AA CC DD ee GG PP spsp rere",
"sortOrder": 47,
"image": "algierfuchs-hell.JPG"
},
{
"name": "Topas dd",
"canonicalGenotype": "AA CC dd EE GG pp spsp rere",
"sortOrder": 48,
"image": "topas-dd.jpg"
},
{
"name": "Blaufuchs dd",
"canonicalGenotype": "aa CC dd ee gg pp spsp rere",
"sortOrder": 49,
"image": "blaufuchs-dd.jpg"
},
{
"name": "Marder",
"canonicalGenotype": "aa cchmcchm DD EE GG PP spsp rere",
"sortOrder": 50,
"image": "marder.JPG"
},
{
"name": "Siam",
"canonicalGenotype": "aa cchmch DD EE GG PP spsp rere",
"sortOrder": 51,
"image": "siam-marder-hell.JPG"
},
{
"name": "Zobel-Hell",
"canonicalGenotype": "aa cchmch DD EE gg PP spsp rere",
"sortOrder": 52,
"image": "zobel-hell.jpg"
},
{
"name": "CP-Agouti",
"canonicalGenotype": "AA cchmcchm DD EE GG PP spsp rere",
"sortOrder": 53,
"image": "agouti-cp.jpg"
},
{
"name": "CP-Silberagouti",
"canonicalGenotype": "AA cchmcchm DD EE gg PP spsp rere",
"sortOrder": 54,
"image": "silberagouti-cp.JPG"
},
{
"name": "CP-Algierfuchs",
"canonicalGenotype": "AA cchmcchm DD ee GG PP spsp rere",
"sortOrder": 55,
"image": "algierfuchs-cp.jpg"
},
{
"name": "CP-Polarfuchs",
"canonicalGenotype": "AA cchmcchm DD ee gg PP spsp rere",
"sortOrder": 56,
"image": "polarfuchs-cp.jpg"
},
{
"name": "CP-Fuchs",
"canonicalGenotype": "AA cchmcchm dd ee GG PP spsp rere",
"sortOrder": 57
},
{
"name": "CP-Fuchs-Hell",
"canonicalGenotype": "AA cchmch dd ee GG PP spsp rere",
"sortOrder": 58
},
{
"name": "CP-Blaufuchs",
"canonicalGenotype": "AA cchmcchm dd ee gg PP spsp rere",
"sortOrder": 59
},
{
"name": "CP-Orangeschimmel",
"canonicalGenotype": "AA cchmcchm DD efef GG PP spsp rere",
"sortOrder": 60
}
]

View File

@@ -64,18 +64,30 @@ export function makeGenotype(input: Record<LocusKey, AllelePair>): Genotype {
export function wildType(): Genotype {
const out = {} as Record<LocusKey, AllelePair>
for (const locus of LOCUS_ORDER) {
// Wild-type is homozygous for the most dominant allele, EXCEPT the
// marker loci Sp/Re whose wild form is the recessive (unmarked) allele.
// Wild-type is homozygous for the most dominant allele, EXCEPT the marker
// loci Sp/Re/Sls whose wild form is the recessive (unmarked) allele.
const alleles = LOCI[locus].alleles
const a = locus === 'Sp' || locus === 'Re' ? alleles[alleles.length - 1] : alleles[0]
const marker = locus === 'Sp' || locus === 'Re' || locus === 'Sls'
const a = marker ? alleles[alleles.length - 1] : alleles[0]
out[locus] = [a, a]
}
return out
}
/** Compact display string, e.g. "Aa CC Dd EE GG Pp spsp rere". */
/**
* Compact display string, e.g. "Aa CC Dd EE GG Pp spsp rere".
* The Sls locus is OMITTED when wild-type (sl/sl) so legacy 8-locus strings and
* the colour catalog stay byte-identical; it only appears for WP/Sls carriers
* (e.g. "… spsp rere Slsl"). Round-trips: a missing Sls re-parses to sl/sl.
* GEN-3c: unknown alleles are STORED as '?' but DISPLAYED as '-' (breeder
* convention) — e.g. ['C','?'] renders "C-".
*/
export function toDisplayString(g: Genotype): string {
return LOCUS_ORDER.map((locus) => g[locus][0] + g[locus][1]).join(' ')
return LOCUS_ORDER.filter(
(locus) => locus !== 'Sls' || !(g.Sls[0] === 'sl' && g.Sls[1] === 'sl'),
)
.map((locus) => (g[locus][0] + g[locus][1]).replace(/\?/g, '-'))
.join(' ')
}
/** Stable JSON-storable object (already the in-memory shape; returned as a copy). */
@@ -114,18 +126,81 @@ function splitToken(token: string): [string, string] {
}
/**
* Parse a display string ("Aa CC Dd EE GG Pp Spsp rere") back into a Genotype.
* Tokens may be given in any order; each token must belong to a distinct locus.
* GEN-3a: tokens that are NOT genotype loci — health/provenance metadata that may
* appear in a herd-book genotype string. Stripped on parse (see extractGenotypeFlags).
* - dea/Dea/taub = deafness flag (after spsp); DP/DarkPatch = non-Mendelian patch flag
* - WFNZ/RV/GV = provenance/breeding-method annotations
*/
const FLAG_TOKENS = new Set(['DP', 'DarkPatch', 'dea', 'Dea', 'taub', 'WFNZ', 'RV', 'GV'])
/**
* Normalize one whitespace-token to canonical allele symbols, or null if it is a
* non-genotype flag/metadata token (to be stripped):
* - Uw/uw -> G/g (international Underwhite == German Grey locus)
* - S(l)/s(l) -> Sl/sl (second spotting locus notation)
* - WP -> Slsl (WP is the visible S(l)s(l) heterozygote)
*/
function normalizeToken(tok: string): string | null {
if (FLAG_TOKENS.has(tok)) return null
let t = tok
if (t === 'WP') t = 'Slsl'
t = t.replace(/S\(l\)/g, 'Sl').replace(/s\(l\)/g, 'sl')
t = t.replace(/Uw/g, 'G').replace(/uw/g, 'g')
// GEN-3c: '-' is the breeder's UNKNOWN marker on input; store internally as '?'
// (the frozen storage contract keeps '?'; only DISPLAY renders '-').
t = t.replace(/-/g, '?')
return t
}
/**
* Canonical normalized genotype string (flags/metadata removed, Uw/S(l)/WP
* resolved). Exported so the import pipeline (GEN-3b) can mirror this exactly.
*/
export function normalizeGenotypeString(input: string): string {
return input
.trim()
.split(/\s+/)
.filter(Boolean)
.map(normalizeToken)
.filter((t): t is string => t !== null)
.join(' ')
}
/**
* Extract non-Punkett flags from a raw genotype string: deafness (dea/taub =
* deaf, Dea = hearing) and provenance/pattern tags (WFNZ/RV/GV/DP).
*/
export function extractGenotypeFlags(input: string): { deaf?: boolean; tags: string[] } {
const tokens = input.trim().split(/\s+/).filter(Boolean)
let deaf: boolean | undefined
const tags: string[] = []
for (const tok of tokens) {
if (tok === 'dea' || tok === 'taub') deaf = true
else if (tok === 'Dea') deaf = false
else if (tok === 'DP' || tok === 'DarkPatch' || tok === 'WFNZ' || tok === 'RV' || tok === 'GV')
tags.push(tok)
}
return { deaf, tags }
}
/**
* Parse a display string ("Aa CC Dd EE GG Pp Spsp rere [Slsl]") back into a
* Genotype. Tokens may be in any order; each must belong to a distinct locus.
* Uw/S(l)/WP are normalized and flag/metadata tokens (dea, WFNZ, …) are stripped.
* Missing loci default to wild-type.
*/
export function fromDisplayString(input: string): Genotype {
const tokens = input.trim().split(/\s+/).filter(Boolean)
const acc = {} as Record<LocusKey, AllelePair>
for (const token of tokens) {
for (const raw of tokens) {
const token = normalizeToken(raw)
if (token === null) continue // flag/metadata token — not a locus
const [a, b] = splitToken(token)
const refAllele = a === WILDCARD ? b : a
if (refAllele === WILDCARD) {
throw new Error(`Token "${token}" is fully unknown; cannot infer its locus`)
// Fully-unknown token ("--"/"??", e.g. a positional placeholder): the locus
// can't be inferred — skip it (defaults to wild-type), don't throw.
continue
}
const locus = ALLELE_TO_LOCUS[refAllele]
if (!locus) throw new Error(`Unknown allele "${refAllele}" in token "${token}"`)

View File

@@ -25,6 +25,7 @@ interface LethalRule {
const LETHAL_RULES: readonly LethalRule[] = [
{ locus: 'Sp', allele: 'Sp', kind: 'lethal', warning: GeneticsWarningCode.ScheckeLethal },
{ locus: 'Sls', allele: 'Sl', kind: 'lethal', warning: GeneticsWarningCode.SlsLethal },
{ locus: 'Re', allele: 'Re', kind: 'semi', warning: GeneticsWarningCode.RexSemiLethal },
]
@@ -67,14 +68,23 @@ export function applyLethality(dist: DistEntry<Genotype>[]): LethalityResult {
? survivors
: survivors.map((e) => ({ value: e.value, probability: divide(e.probability, survivingMass) }))
if (lethalMass.num > 0) {
warnings.push({
code: GeneticsWarningCode.ScheckeLethal,
detail: {
youngLostFraction: toString(lethalMass),
youngLostPercent: Number(((lethalMass.num / lethalMass.den) * 100).toFixed(2)),
},
})
// One lethal warning PER lethal rule that actually removed young (so SpSp ->
// ScheckeLethal and S(l)S(l) -> SlsLethal are reported distinctly).
for (const rule of LETHAL_RULES) {
if (rule.kind !== 'lethal') continue
const mass = dist.reduce<Fraction>(
(acc, e) => (isHomozygous(e.value, rule.locus, rule.allele) ? add(acc, e.probability) : acc),
ZERO,
)
if (mass.num > 0) {
warnings.push({
code: rule.warning,
detail: {
youngLostFraction: toString(mass),
youngLostPercent: Number(((mass.num / mass.den) * 100).toFixed(2)),
},
})
}
}
// Semi-lethal: warn if any surviving genotype is homozygous for a semi-lethal allele.
@@ -95,5 +105,22 @@ export function applyLethality(dist: DistEntry<Genotype>[]): LethalityResult {
}
}
// Superschecke: surviving young carrying BOTH spotting markers (Sp present and
// S(l) present) are very-high-white and deafness-prone — info warning.
const superMass = distribution.reduce<Fraction>((acc, e) => {
const hasSp = e.value.Sp.includes('Sp')
const hasSl = e.value.Sls.includes('Sl')
return hasSp && hasSl ? add(acc, e.probability) : acc
}, ZERO)
if (superMass.num > 0) {
warnings.push({
code: GeneticsWarningCode.SuperscheckeDeaf,
detail: {
affectedFraction: toString(superMass),
affectedPercent: Number(((superMass.num / superMass.den) * 100).toFixed(2)),
},
})
}
return { distribution, warnings }
}

View File

@@ -12,8 +12,12 @@
* - de.wikibooks.org/wiki/Die_Rennmaus/_Farbvarianten_und_Farbgenetik
*/
/** Canonical locus keys, in conventional display order. */
export const LOCUS_ORDER = ['A', 'C', 'D', 'E', 'G', 'P', 'Sp', 'Re'] as const
/**
* Canonical locus keys, in conventional display order. Sls (second spotting
* locus) is appended LAST so legacy 8-locus genotype strings still parse — a
* missing Sls token defaults to wild-type sl/sl.
*/
export const LOCUS_ORDER = ['A', 'C', 'D', 'E', 'G', 'P', 'Sp', 'Re', 'Sls'] as const
export type LocusKey = (typeof LOCUS_ORDER)[number]
export interface LocusDef {
@@ -33,9 +37,12 @@ export interface LocusDef {
* E = full extension
* ef = Schimmel/roan (progressive whitening)
* e = Fox (suppresses eumelanin)
* Sp/Re are dominant markers, lethal/semi-lethal when homozygous (see lethality.ts):
* Sp = Schecke (checkered); checkered animals are always Spsp, SpSp dies in utero.
* Re = Rex (curly coat); rex animals are Re-, ReRe is semi-lethal.
* Sp/Re/Sls are dominant markers, lethal/semi-lethal when homozygous (see lethality.ts):
* Sp = Schecke (checkered); checkered animals are always Spsp, SpSp dies in utero.
* Re = Rex (curly coat); rex animals are Re-, ReRe is semi-lethal.
* Sls = second spotting locus (S(l), WP/Minimalschecke). S(l)s(l) het = the WP
* phenotype; S(l)S(l) homozygous = lethal (Rumpback/megacolon). Sp + Sls
* together => Superschecke (very high white, deafness-prone).
*/
export const LOCI: Readonly<Record<LocusKey, LocusDef>> = {
A: { key: 'A', nameDe: 'Agouti', alleles: ['A', 'a'] },
@@ -46,6 +53,7 @@ export const LOCI: Readonly<Record<LocusKey, LocusDef>> = {
P: { key: 'P', nameDe: 'Rotaugenaufhellung (Pink-Eye)', alleles: ['P', 'p'] },
Sp: { key: 'Sp', nameDe: 'Schecke', alleles: ['Sp', 'sp'] },
Re: { key: 'Re', nameDe: 'Rex', alleles: ['Re', 're'] },
Sls: { key: 'Sls', nameDe: 'Zweite Scheckung (WP)', alleles: ['Sl', 'sl'] },
}
/** Set of all valid allele symbols, longest-first (for maximal-munch parsing). */

View File

@@ -10,6 +10,10 @@ export const GeneticsWarningCode = {
ScheckeLethal: 'SCHECKE_LETHAL',
/** Rex × Rex: ReRe is semi-lethal; reduced viability of homozygous young. */
RexSemiLethal: 'REX_SEMI_LETHAL',
/** WP × WP: S(l)S(l) is prenatal-lethal (Rumpback/megacolon); fewer live young. */
SlsLethal: 'SLS_LETHAL',
/** Sp + Sls together -> Superschecke: very high white, deafness-prone (info). */
SuperscheckeDeaf: 'SUPERSCHECKE_DEAF',
} as const
export type GeneticsWarningCode =

View File

@@ -330,6 +330,24 @@ textarea {
color: #3a6ea5;
}
/* BESTAND-FILTER: subtle marker for external (non-Bestand) animals. Inline next
to the name, so it should not be pushed to the grid edge like the status badge. */
.badge--external {
justify-self: start;
margin-left: 0.4rem;
vertical-align: middle;
background: #f0f0f0;
color: #777;
border: 1px dashed #bbb;
}
/* Checkbox-style filter (label text + box on one row), vs. the stacked .field. */
.field--check {
flex-direction: row;
align-items: center;
gap: 0.4rem;
}
@media (min-width: 768px) {
.gerbil-card {
grid-template-columns: 2fr 1fr 1.5fr 1fr auto;
@@ -741,4 +759,4 @@ textarea {
border-radius: 50%;
object-fit: cover;
border: 2px solid var(--color-border);
}
}

View File

@@ -0,0 +1,245 @@
/**
* INBOX-1: Anfrage-Detail — Nachricht lesen, Triage (Status / Verwerfen /
* Abnehmer zuordnen), KI-Antwortentwurf (INBOX-2) und Versand (INBOX-3).
*
* - Triage-PUT überschreibt assignedContactId immer → bei jedem Update wird
* die aktuelle Zuordnung mitgesendet (Backend-Vertrag, siehe api/requests.ts).
* - KI entwirft NUR (human-in-the-loop): Entwurf landet editierbar im
* Textfeld; gesendet wird ausschließlich nach Bestätigung.
* - 503 AiKeyMissing / MailNotConfigured / MailAuthFailed → deutsche Hinweise
* (gleiches Muster wie die Verkaufstext-KI).
*/
import { useState } from 'react'
import { Link, useParams } from 'react-router-dom'
import { de } from '../strings/de'
import { errorCode } from '../api/client'
import {
REQUEST_STATUSES,
draftReply,
getRequest,
problemTitle,
sendReply,
triageRequest,
type InboxRequest,
type RequestStatus,
} from '../api/requests'
import { listContactsPaged } from '../api/contacts'
import { useApi, useMutation } from '../hooks/useApi'
import { StatusBadge } from './AnfragenPage'
import { formatDateTime } from '../format/labels'
import './anfragen.css'
export default function AnfrageDetailPage() {
const t = de.pages.anfragen
const td = t.detail
const { id = '' } = useParams()
const request = useApi(() => getRequest(id), [id])
const contacts = useApi(() => listContactsPaged({ page: 1, pageSize: 1000, orderBy: 'name' }), [])
// Antwort-Text: lokaler Entwurf; aus draftReply vorbefüllt, sobald geladen.
const [reply, setReply] = useState('')
const [replyInitFor, setReplyInitFor] = useState<string | null>(null)
if (request.data && replyInitFor !== request.data.id) {
setReplyInitFor(request.data.id)
setReply(request.data.draftReply ?? '')
}
const [notice, setNotice] = useState<string | null>(null)
const [hint, setHint] = useState<string | null>(null)
/** Aktuellen Server-Stand nach einer Mutation übernehmen (ohne Neu-Laden). */
const [override, setOverride] = useState<InboxRequest | null>(null)
const current = override && override.id === id ? override : request.data
const triage = useMutation((next: { status?: RequestStatus; assignedContactId: string | null }) =>
triageRequest(id, next),
)
async function applyTriage(next: { status?: RequestStatus; assignedContactId: string | null }) {
setNotice(null)
const result = await triage.run(next)
if (result.ok && current) {
setOverride({
...current,
status: next.status ?? current.status,
assignedContactId: next.assignedContactId,
})
}
}
const draft = useMutation(() => draftReply(id))
async function onDraft() {
setHint(null)
setNotice(null)
const result = await draft.run()
if (result.ok) {
setOverride(result.value)
setReply(result.value.draftReply ?? '')
return
}
const code = errorCode(result.cause)
if (code === 'AiKeyMissing') setHint(td.aiKeyMissing)
else if (code === 'AiUpstreamError') setHint(td.aiUpstreamError)
// sonst: draft.error treibt den Alert
}
const send = useMutation(() => sendReply(id, reply))
async function onSend() {
setHint(null)
setNotice(null)
if (reply.trim() === '') {
setHint(td.sendEmptyBody)
return
}
if (!window.confirm(td.sendConfirm)) return
const result = await send.run()
if (result.ok) {
setOverride(result.value)
setNotice(td.sent)
return
}
const title = problemTitle(result.cause)
if (title === 'MailNotConfigured') setHint(t.mailNotConfigured)
else if (title === 'MailAuthFailed') setHint(t.mailAuthFailed)
}
if (request.loading) return <p className="muted">{de.common.loading}</p>
if (request.error || !current) {
return (
<section className="page">
<p className="muted">{request.error ?? td.notFound}</p>
<Link to="/anfragen" className="btn">
{td.back}
</Link>
</section>
)
}
const r = current
const contactItems = contacts.data?.items ?? []
const mutationError = triage.error ?? draft.error ?? send.error
return (
<section className="page anfrage-detail">
<header className="page-head">
<div>
<h2>{r.subject ?? td.noSubject}</h2>
<StatusBadge status={r.status} />
</div>
<div className="head-actions">
<Link to="/anfragen" className="btn">
{td.back}
</Link>
</div>
</header>
<dl className="def-list">
<div className="def-row">
<dt>{td.from}</dt>
<dd>{r.fromName ? `${r.fromName} <${r.fromAddress}>` : r.fromAddress}</dd>
</div>
<div className="def-row">
<dt>{td.receivedAt}</dt>
<dd>{formatDateTime(r.receivedAt)}</dd>
</div>
{r.answeredAt && (
<div className="def-row">
<dt>{td.answeredAt}</dt>
<dd>{formatDateTime(r.answeredAt)}</dd>
</div>
)}
</dl>
<h3>{td.message}</h3>
<div className="anfrage-body">{r.bodyText?.trim() ? r.bodyText : td.noBody}</div>
<h3>{td.triage}</h3>
{mutationError && <div className="alert alert--error">{mutationError}</div>}
<div className="anfrage-triage">
<label className="field">
<span>{td.statusLabel}</span>
<select
value={r.status}
disabled={triage.pending}
onChange={(e) =>
applyTriage({
status: e.target.value as RequestStatus,
assignedContactId: r.assignedContactId,
})
}
>
{REQUEST_STATUSES.map((s) => (
<option key={s} value={s}>
{t.statusLabels[s]}
</option>
))}
</select>
</label>
<label className="field">
<span>{td.assignContact}</span>
<select
value={r.assignedContactId ?? ''}
disabled={triage.pending || contacts.loading}
onChange={(e) => {
const contactId = e.target.value || null
// Zuordnung setzt den Status auf „Zugeordnet“ (Beantwortet bleibt).
applyTriage({
status:
contactId && r.status !== 'Answered' ? 'Assigned' : undefined,
assignedContactId: contactId,
})
}}
>
<option value="">{td.assignNone}</option>
{contactItems.map((c) => (
<option key={c.id} value={c.id}>
{c.name}
</option>
))}
</select>
</label>
{r.status !== 'Abandoned' && (
<button
type="button"
className="btn btn--danger anfrage-abandon"
disabled={triage.pending}
onClick={() => {
if (!window.confirm(td.abandonConfirm)) return
applyTriage({ status: 'Abandoned', assignedContactId: r.assignedContactId })
}}
>
{td.abandon}
</button>
)}
</div>
<h3>{td.reply}</h3>
{notice && <div className="alert">{notice}</div>}
{hint && <div className="alert">{hint}</div>}
<div className="form anfrage-reply">
<textarea
className="anfrage-reply__text"
placeholder={td.replyPlaceholder}
value={reply}
onChange={(e) => setReply(e.target.value)}
/>
<p className="muted anfrage-reply__hint">{td.draftHint}</p>
<div className="form-actions">
<button type="button" className="btn" onClick={onDraft} disabled={draft.pending}>
{draft.pending ? td.drafting : td.draftButton}
</button>
<button
type="button"
className="btn btn--primary"
onClick={onSend}
disabled={send.pending}
>
{send.pending ? td.sending : td.send}
</button>
</div>
</div>
</section>
)
}

View File

@@ -0,0 +1,150 @@
/**
* INBOX-1: Anfragen-Posteingang — Liste mit Status-Filter (Gridify) und
* manuellem Gmail-Abruf („Anfragen abrufen“, POST /api/requests/sync).
* Solange Gmail unkonfiguriert ist, antwortet der Sync mit MailNotConfigured
* → freundlicher deutscher Hinweis statt Fehler.
*/
import { useState } from 'react'
import { Link } from 'react-router-dom'
import { de } from '../strings/de'
import {
REQUEST_STATUSES,
listRequests,
syncRequests,
type RequestStatus,
} from '../api/requests'
import { useApi, useMutation } from '../hooks/useApi'
import { formatDateTime } from '../format/labels'
import './anfragen.css'
const PAGE_SIZE = 20
export function StatusBadge({ status }: { status: RequestStatus }) {
return (
<span className={`badge anfrage-badge anfrage-badge--${status.toLowerCase()}`}>
{de.pages.anfragen.statusLabels[status]}
</span>
)
}
export default function AnfragenPage() {
const t = de.pages.anfragen
const [status, setStatus] = useState<RequestStatus | ''>('')
const [page, setPage] = useState(1)
const [notice, setNotice] = useState<string | null>(null)
const requests = useApi(
() =>
listRequests({
page,
pageSize: PAGE_SIZE,
orderBy: 'receivedAt desc',
filter: status === '' ? undefined : `status==${status}`,
}),
[page, status],
)
const sync = useMutation(() => syncRequests())
async function onSync() {
setNotice(null)
const result = await sync.run()
if (!result.ok) return // sync.error treibt den Alert
if (result.value.error === 'MailNotConfigured') setNotice(t.mailNotConfigured)
else if (result.value.error === 'MailAuthFailed') setNotice(t.mailAuthFailed)
else {
setNotice(t.syncImported(result.value.imported))
if (result.value.imported > 0) requests.reload()
}
}
return (
<section className="page">
<header className="page-head">
<div>
<h2>{t.title}</h2>
{requests.data && <p className="muted">{t.countText(requests.data.totalCount)}</p>}
</div>
<div className="head-actions">
<button type="button" className="btn btn--primary" onClick={onSync} disabled={sync.pending}>
{sync.pending ? t.syncing : t.sync}
</button>
</div>
</header>
{notice && <div className="alert">{notice}</div>}
{sync.error && <div className="alert alert--error">{sync.error}</div>}
{/* Status-Filter */}
<div className="filters">
<label className="field">
<span>{t.detail.statusLabel}</span>
<select
value={status}
onChange={(e) => {
setStatus(e.target.value as RequestStatus | '')
setPage(1)
}}
>
<option value="">{t.filterAll}</option>
{REQUEST_STATUSES.map((s) => (
<option key={s} value={s}>
{t.statusLabels[s]}
</option>
))}
</select>
</label>
</div>
{requests.loading && <p className="muted">{de.common.loading}</p>}
{requests.error && (
<div className="alert alert--error">
<span>{requests.error}</span>
<button type="button" className="btn" onClick={requests.reload}>
{de.common.retry}
</button>
</div>
)}
{requests.data && requests.data.items.length === 0 && (
<p className="muted">{status === '' ? t.empty : t.emptyFiltered}</p>
)}
{requests.data && requests.data.items.length > 0 && (
<ul className="card-list">
{requests.data.items.map((r) => (
<li key={r.id}>
<Link to={`/anfragen/${r.id}`} className="gerbil-card anfrage-card">
<span className="gerbil-card__name">{r.fromName ?? r.fromAddress}</span>
<StatusBadge status={r.status} />
<span className="anfrage-card__subject">
{r.subject ?? de.pages.anfragen.detail.noSubject}
</span>
<span className="gerbil-card__meta">{formatDateTime(r.receivedAt)}</span>
</Link>
</li>
))}
</ul>
)}
{requests.data && requests.data.totalCount > PAGE_SIZE && (
<nav className="pager" aria-label="Seitennavigation">
<button type="button" className="btn" disabled={page <= 1} onClick={() => setPage(page - 1)}>
{de.common.previous}
</button>
<span>
{de.common.page} {page} {de.common.of}{' '}
{Math.max(1, Math.ceil(requests.data.totalCount / PAGE_SIZE))}
</span>
<button
type="button"
className="btn"
disabled={page >= Math.ceil(requests.data.totalCount / PAGE_SIZE)}
onClick={() => setPage(page + 1)}
>
{de.common.next}
</button>
</nav>
)}
</section>
)
}

View File

@@ -104,6 +104,11 @@ export default function GerbilDetailPage() {
<GerbilProfilePhoto gerbilId={g.id} />
<h2>{g.name}</h2>
<span className={`badge badge--${g.status.toLowerCase()}`}>{statusLabel(g.status)}</span>
{g.isResident === false && (
<span className="badge badge--external" title={de.pages.gerbils.externalTitle}>
{de.pages.gerbils.externalBadge}
</span>
)}
</div>
<div className="head-actions">
<Link to={`/rennmaeuse/${g.id}/bearbeiten`} className="btn btn--primary">

View File

@@ -24,6 +24,7 @@ interface FormState {
receiverContactId: string
genotype: string
notes: string
isResident: boolean
}
const EMPTY: FormState = {
@@ -41,6 +42,7 @@ const EMPTY: FormState = {
receiverContactId: '',
genotype: '',
notes: '',
isResident: true,
}
function formFromGerbil(g: {
@@ -58,6 +60,7 @@ function formFromGerbil(g: {
receiverContactId: string | null
genotype: string | null
notes: string | null
isResident?: boolean | null
}): FormState {
return {
name: g.name,
@@ -74,6 +77,7 @@ function formFromGerbil(g: {
receiverContactId: g.receiverContactId ?? '',
genotype: g.genotype ?? '',
notes: g.notes ?? '',
isResident: g.isResident ?? true,
}
}
@@ -166,6 +170,7 @@ export default function GerbilFormPage() {
receiverContactId: nn(form.receiverContactId),
genotype: nn(form.genotype),
notes: nn(form.notes),
isResident: form.isResident,
}
const result = await mutation.run(body)
if (result.ok) navigate(`/rennmaeuse/${result.value.id}`)
@@ -355,6 +360,15 @@ export default function GerbilFormPage() {
<textarea value={form.notes} onChange={(e) => set('notes', e.target.value)} />
</label>
<label className="field field--check" title={t.form.isResidentHint}>
<span>{t.form.isResidentLabel}</span>
<input
type="checkbox"
checked={form.isResident}
onChange={(e) => set('isResident', e.target.checked)}
/>
</label>
{mutation.error && <div className="alert alert--error">{mutation.error}</div>}
<div className="form-actions">

View File

@@ -32,6 +32,8 @@ export default function GerbilsPage() {
const [gender, setGender] = useState<Gender | ''>('')
const [colorVarietyId, setColorVarietyId] = useState('')
const [originBreeder, setOriginBreeder] = useState('')
// BESTAND-FILTER: default to the own clan (Bestand); opt in to external ancestors.
const [showExternal, setShowExternal] = useState(false)
const [sort, setSort] = useState<SortKey>('nameAsc')
const [page, setPage] = useState(1)
@@ -50,6 +52,9 @@ export default function GerbilsPage() {
gender && condition({ field: 'gender', op: '==', value: gender }),
colorVarietyId && condition({ field: 'colorVarietyId', op: '==', value: colorVarietyId }),
originBreeder && condition({ field: 'originBreeder', op: '==', value: originBreeder }),
// Default view = own clan (Bestand). Unless "externe Ahnen einblenden" is on,
// restrict to resident animals (server-side, so paging/counts stay correct).
!showExternal && condition({ field: 'isResident', op: '==', value: true }),
)
const orderBy = SORT_ORDER_BY[sort]
const query: GridifyQuery = { filter: filter || undefined, orderBy, page, pageSize: PAGE_SIZE }
@@ -62,6 +67,7 @@ export default function GerbilsPage() {
setGender('')
setColorVarietyId('')
setOriginBreeder('')
setShowExternal(false)
setPage(1)
setSort('nameAsc')
}
@@ -186,6 +192,14 @@ export default function GerbilsPage() {
<option value="birthAsc">{t.sort.birthAsc}</option>
</select>
</label>
<label className="field field--check" title={t.filters.showExternalHint}>
<span>{t.filters.showExternal}</span>
<input
type="checkbox"
checked={showExternal}
onChange={(e) => onFilterChange(setShowExternal)(e.target.checked)}
/>
</label>
<button type="button" className="btn" onClick={resetFilters}>
{t.filters.reset}
</button>
@@ -234,7 +248,14 @@ export default function GerbilsPage() {
aria-label={g.name}
/>
<Link to={`/rennmaeuse/${g.id}`} className="gerbil-card">
<span className="gerbil-card__name">{g.name}</span>
<span className="gerbil-card__name">
{g.name}
{g.isResident === false && (
<span className="badge badge--external" title={t.externalTitle}>
{t.externalBadge}
</span>
)}
</span>
<span className={`badge badge--${g.status.toLowerCase()}`}>
{statusLabel(g.status)}
</span>

View File

@@ -0,0 +1,439 @@
/**
* WEB-0b: Seiten-Editor der öffentlichen Webseite.
* - Kopf: Titel, SEO-Beschreibung, Status (Entwurf/Veröffentlicht).
* - Geordneter Block-Editor: Blöcke hinzufügen, bearbeiten, verschieben, löschen.
*
* Reihenfolge/Anlegen/Löschen rufen das Backend auf und laden danach neu; der
* Editor wird über `key` neu montiert, sodass der lokale Zustand frisch aus den
* geladenen Daten initialisiert wird (keine Prop→State-Synchronisation per Effekt).
*/
import { useState } from 'react'
import { Link, useParams } from 'react-router-dom'
import { de } from '../strings/de'
import {
ADDABLE_BLOCK_TYPES,
addBlock,
defaultBlockData,
deleteBlock,
getPage,
reorderBlocks,
updateBlock,
updatePage,
type Block,
type BlockData,
type BlockType,
type GalleryImage,
type Page,
type PageStatus,
} from '../api/pages'
import { useApi, useMutation } from '../hooks/useApi'
import './webseite.css'
const asStr = (v: unknown): string => (typeof v === 'string' ? v : '')
export default function WebseiteEditorPage() {
const { slug = '' } = useParams<{ slug: string }>()
const page = useApi(() => getPage(slug), [slug])
if (page.loading) return <p className="muted">{de.common.loading}</p>
if (page.error || !page.data) {
return (
<section className="page">
<h2>{de.pages.webseite.title}</h2>
<div className="alert alert--error">
<span>{page.error}</span>
<button type="button" className="btn" onClick={page.reload}>
{de.common.retry}
</button>
</div>
</section>
)
}
// Signatur der Blöcke -> erzwingt Neu-Montage nach Reload (frische Init).
const signature = page.data.blocks.map((b) => `${b.id}:${b.order}`).join('|')
return <PageEditor key={signature} page={page.data} reload={page.reload} />
}
function PageEditor({ page, reload }: { page: Page; reload: () => void }) {
const t = de.pages.webseite
const [title, setTitle] = useState(page.title)
const [seo, setSeo] = useState(page.seoDescription ?? '')
const [status, setStatus] = useState<PageStatus>(page.status)
const [savedHead, setSavedHead] = useState(false)
const saveHead = useMutation(() =>
updatePage(page.id, {
slug: page.slug,
title,
seoDescription: seo.trim() === '' ? null : seo,
status,
}),
)
async function onSaveHead() {
const r = await saveHead.run()
if (r.ok) {
setSavedHead(true)
reload()
}
}
const blocks = [...page.blocks].sort((a, b) => a.order - b.order)
const adder = useMutation((type: BlockType) =>
addBlock(page.id, { type, data: defaultBlockData(type) }),
)
async function onAdd(type: BlockType) {
const r = await adder.run(type)
if (r.ok) reload()
}
const remover = useMutation((id: string) => deleteBlock(id))
async function onDelete(id: string) {
if (!window.confirm(t.blocks.confirmDelete)) return
const r = await remover.run(id)
if (r.ok) reload()
}
const reorder = useMutation((ids: string[]) => reorderBlocks(page.id, ids))
async function onMove(index: number, dir: -1 | 1) {
const target = index + dir
if (target < 0 || target >= blocks.length) return
const ids = blocks.map((b) => b.id)
;[ids[index], ids[target]] = [ids[target], ids[index]]
const r = await reorder.run(ids)
if (r.ok) reload()
}
const busy = adder.pending || remover.pending || reorder.pending
return (
<section className="page">
<header className="page-head">
<div>
<h2>{page.title}</h2>
<p className="muted">/{page.slug}</p>
</div>
<div className="head-actions">
<Link to="/webseite" className="btn">
{t.back}
</Link>
</div>
</header>
{/* Seiten-Kopf bearbeiten */}
<div className="webseite-section">
<label className="field">
<span className="field-label">{t.editor.pageTitleLabel}</span>
<input
className="input"
value={title}
onChange={(e) => {
setTitle(e.target.value)
setSavedHead(false)
}}
/>
</label>
<label className="field">
<span className="field-label">{t.editor.seoLabel}</span>
<textarea
className="input"
rows={2}
value={seo}
onChange={(e) => {
setSeo(e.target.value)
setSavedHead(false)
}}
/>
<span className="field-hint">{t.editor.seoHint}</span>
</label>
<label className="field">
<span className="field-label">{t.statusLabel}</span>
<select
className="input"
value={status}
onChange={(e) => {
setStatus(e.target.value as PageStatus)
setSavedHead(false)
}}
>
<option value="Draft">{t.statusDraft}</option>
<option value="Published">{t.statusPublished}</option>
</select>
</label>
{saveHead.error && <div className="alert alert--error">{saveHead.error}</div>}
<div className="head-actions">
<button type="button" className="btn btn--primary" onClick={onSaveHead} disabled={saveHead.pending}>
{t.editor.save}
</button>
{savedHead && <span className="saved-hint">{t.editor.saved}</span>}
</div>
</div>
{/* Block-Editor */}
<h3 className="webseite-blocks-title">{t.blocks.sectionTitle}</h3>
{(reorder.error || remover.error || adder.error) && (
<div className="alert alert--error">{reorder.error ?? remover.error ?? adder.error}</div>
)}
{blocks.length === 0 ? (
<p className="muted">{t.blocks.empty}</p>
) : (
<ol className="block-list">
{blocks.map((b, i) => (
<li key={b.id}>
<BlockCard
block={b}
index={i}
count={blocks.length}
busy={busy}
onMove={onMove}
onDelete={onDelete}
/>
</li>
))}
</ol>
)}
<div className="block-add" role="group" aria-label={t.blocks.addLabel}>
<span className="field-label">{t.blocks.addLabel}</span>
{ADDABLE_BLOCK_TYPES.map((type) => (
<button
key={type}
type="button"
className="btn"
disabled={adder.pending}
onClick={() => onAdd(type)}
>
+ {t.blocks.types[type]}
</button>
))}
</div>
</section>
)
}
function BlockCard({
block,
index,
count,
busy,
onMove,
onDelete,
}: {
block: Block
index: number
count: number
busy: boolean
onMove: (index: number, dir: -1 | 1) => void
onDelete: (id: string) => void
}) {
const t = de.pages.webseite.blocks
const [data, setData] = useState<BlockData>(block.data)
const [saved, setSaved] = useState(false)
const save = useMutation(() => updateBlock(block.id, { type: block.type, data }))
async function onSave() {
const r = await save.run()
if (r.ok) setSaved(true)
}
const set = (patch: BlockData) => {
setData((d) => ({ ...d, ...patch }))
setSaved(false)
}
return (
<div className="block-card">
<div className="block-card__head">
<span className="block-card__type">{t.types[block.type]}</span>
<span className="block-card__tools">
<button
type="button"
className="btn btn--icon"
aria-label={t.moveUp}
disabled={busy || index === 0}
onClick={() => onMove(index, -1)}
>
</button>
<button
type="button"
className="btn btn--icon"
aria-label={t.moveDown}
disabled={busy || index === count - 1}
onClick={() => onMove(index, 1)}
>
</button>
<button
type="button"
className="btn btn--danger"
disabled={busy}
onClick={() => onDelete(block.id)}
>
{t.delete}
</button>
</span>
</div>
<BlockFields type={block.type} data={data} set={set} />
{save.error && <div className="alert alert--error">{save.error}</div>}
<div className="head-actions">
<button type="button" className="btn btn--primary" onClick={onSave} disabled={save.pending}>
{t.save}
</button>
{saved && <span className="saved-hint">{t.saved}</span>}
</div>
</div>
)
}
function BlockFields({
type,
data,
set,
}: {
type: BlockType
data: BlockData
set: (patch: BlockData) => void
}) {
const f = de.pages.webseite.blocks.fields
switch (type) {
case 'Heading':
return (
<>
<label className="field">
<span className="field-label">{f.headingText}</span>
<input className="input" value={asStr(data.text)} onChange={(e) => set({ text: e.target.value })} />
</label>
<label className="field">
<span className="field-label">{f.headingLevel}</span>
<select
className="input"
value={data.level === 3 ? '3' : '2'}
onChange={(e) => set({ level: Number(e.target.value) })}
>
<option value="2">{f.levelMain}</option>
<option value="3">{f.levelSub}</option>
</select>
</label>
</>
)
case 'RichText':
return (
<label className="field">
<span className="field-label">{f.markdown}</span>
<textarea
className="input block-markdown"
rows={6}
value={asStr(data.markdown)}
onChange={(e) => set({ markdown: e.target.value })}
/>
<span className="field-hint">{f.markdownHint}</span>
</label>
)
case 'Image':
return (
<>
<label className="field">
<span className="field-label">{f.imageUrl}</span>
<input className="input" value={asStr(data.url)} onChange={(e) => set({ url: e.target.value })} />
</label>
<label className="field">
<span className="field-label">{f.imageAlt}</span>
<input className="input" value={asStr(data.alt)} onChange={(e) => set({ alt: e.target.value })} />
</label>
</>
)
case 'Gallery':
return <GalleryFields data={data} set={set} />
case 'ContactInfo':
return (
<>
<label className="field">
<span className="field-label">{f.contactName}</span>
<input className="input" value={asStr(data.name)} onChange={(e) => set({ name: e.target.value })} />
</label>
<label className="field">
<span className="field-label">{f.contactEmail}</span>
<input className="input" value={asStr(data.email)} onChange={(e) => set({ email: e.target.value })} />
</label>
<label className="field">
<span className="field-label">{f.contactPhone}</span>
<input className="input" value={asStr(data.phone)} onChange={(e) => set({ phone: e.target.value })} />
</label>
<label className="field">
<span className="field-label">{f.contactAddress}</span>
<textarea
className="input"
rows={2}
value={asStr(data.address)}
onChange={(e) => set({ address: e.target.value })}
/>
</label>
</>
)
case 'AbgabetiereList':
return (
<>
<p className="field-hint">{f.abgabeAutoNote}</p>
<label className="field">
<span className="field-label">{f.abgabeIntro}</span>
<textarea
className="input"
rows={3}
value={asStr(data.intro)}
onChange={(e) => set({ intro: e.target.value })}
/>
</label>
</>
)
}
}
function GalleryFields({ data, set }: { data: BlockData; set: (patch: BlockData) => void }) {
const f = de.pages.webseite.blocks.fields
const images: GalleryImage[] = Array.isArray(data.images) ? (data.images as GalleryImage[]) : []
const update = (i: number, patch: Partial<GalleryImage>) =>
set({ images: images.map((img, j) => (j === i ? { ...img, ...patch } : img)) })
return (
<div className="field">
<span className="field-label">{f.galleryImages}</span>
{images.map((img, i) => (
<div key={i} className="gallery-row">
<input
className="input"
placeholder={f.imageUrl}
value={asStr(img.url)}
onChange={(e) => update(i, { url: e.target.value })}
/>
<input
className="input"
placeholder={f.imageAlt}
value={asStr(img.alt)}
onChange={(e) => update(i, { alt: e.target.value })}
/>
<button
type="button"
className="btn btn--danger"
onClick={() => set({ images: images.filter((_, j) => j !== i) })}
>
{f.galleryRemove}
</button>
</div>
))}
<button type="button" className="btn" onClick={() => set({ images: [...images, { url: '', alt: '' }] })}>
+ {f.galleryAdd}
</button>
</div>
)
}

View File

@@ -0,0 +1,66 @@
/** WEB-0b: Übersicht der Webseiten-Seiten mit Status (Entwurf/Veröffentlicht). */
import { Link } from 'react-router-dom'
import { de } from '../strings/de'
import { listPages, type PageStatus } from '../api/pages'
import { useApi } from '../hooks/useApi'
import './webseite.css'
function StatusBadge({ status }: { status: PageStatus }) {
const t = de.pages.webseite
const published = status === 'Published'
return (
<span className={published ? 'status-badge status-badge--published' : 'status-badge status-badge--draft'}>
{published ? t.statusPublished : t.statusDraft}
</span>
)
}
export default function WebseitePage() {
const t = de.pages.webseite
const pages = useApi(() => listPages(), [])
if (pages.loading) return <p className="muted">{de.common.loading}</p>
if (pages.error || !pages.data) {
return (
<section className="page">
<h2>{t.title}</h2>
<div className="alert alert--error">
<span>{pages.error}</span>
<button type="button" className="btn" onClick={pages.reload}>
{de.common.retry}
</button>
</div>
</section>
)
}
return (
<section className="page">
<header className="page-head">
<div>
<h2>{t.title}</h2>
<p className="muted">{t.intro}</p>
</div>
</header>
{pages.data.length === 0 ? (
<p className="muted">{t.empty}</p>
) : (
<ul className="card-list">
{pages.data.map((p) => (
<li key={p.id} className="gerbil-card webseite-card">
<span className="gerbil-card__name">{p.title}</span>
<span className="gerbil-card__meta">/{p.slug}</span>
<span className="webseite-card__actions">
<StatusBadge status={p.status} />
<Link to={`/webseite/${p.slug}`} className="btn btn--primary">
{t.edit}
</Link>
</span>
</li>
))}
</ul>
)}
</section>
)
}

View File

@@ -0,0 +1,84 @@
/* INBOX-1: Anfragen-Posteingang — seitenspezifische Stile
(Standing-Rule-2-Muster: eigene Datei statt index.css). */
/* ── Listen-Karte ── */
.anfrage-card {
grid-template-columns: 1fr auto;
}
.anfrage-card__subject {
grid-column: 1 / -1;
font-size: 0.9rem;
white-space: nowrap;
overflow: hidden;
text-overflow: ellipsis;
}
/* ── Status-Badges (eigene Farben je Status) ── */
.anfrage-badge--new {
background: var(--color-accent);
color: #fff;
}
.anfrage-badge--inprogress {
background: #e7eef6;
color: #3a6ea5;
}
.anfrage-badge--assigned {
background: #efe6f6;
color: #7a4ea5;
}
.anfrage-badge--answered {
background: #e6f2e6;
color: #3a7a3a;
}
.anfrage-badge--abandoned {
background: #ececec;
color: #666;
}
/* ── Detail ── */
.anfrage-body {
white-space: pre-wrap;
background: var(--color-surface);
border: 1px solid var(--color-border);
border-radius: 0.6rem;
padding: 0.9rem 1rem;
margin: 0.5rem 0 1.25rem;
overflow-wrap: anywhere;
}
.anfrage-triage {
display: flex;
flex-wrap: wrap;
gap: 0.75rem;
align-items: flex-end;
margin: 0.5rem 0 1.25rem;
}
.anfrage-triage .field {
min-width: 12rem;
}
.anfrage-abandon {
margin-left: auto;
}
.anfrage-reply {
max-width: 40rem;
}
.anfrage-reply__text {
min-height: 10rem;
}
.anfrage-reply__hint {
margin: 0;
font-size: 0.8rem;
}

View File

@@ -0,0 +1,123 @@
/* WEB-0b: CMS-Verwaltung der öffentlichen Webseite. */
/* ── Seitenliste ── */
.webseite-card__actions {
display: flex;
align-items: center;
gap: 0.5rem;
margin-left: auto;
}
.status-badge {
display: inline-block;
padding: 0.1rem 0.55rem;
border-radius: 999px;
font-size: 0.75rem;
font-weight: 600;
white-space: nowrap;
border: 1px solid var(--color-border);
}
.status-badge--draft {
background: var(--color-bg);
color: var(--color-text-muted);
}
.status-badge--published {
background: var(--color-accent-soft);
color: var(--color-accent);
border-color: var(--color-accent);
}
/* ── Editor: Kopf + Blöcke ── */
.webseite-section {
display: flex;
flex-direction: column;
gap: 0.75rem;
padding: 1rem;
margin-bottom: 1.25rem;
background: var(--color-surface);
border: 1px solid var(--color-border);
border-radius: 0.5rem;
}
.field-label {
font-size: 0.85rem;
font-weight: 600;
color: var(--color-text);
}
.field-hint {
font-size: 0.8rem;
color: var(--color-text-muted);
}
.saved-hint {
align-self: center;
font-size: 0.85rem;
color: var(--color-accent);
}
.webseite-blocks-title {
margin: 0 0 0.5rem;
}
.block-list {
list-style: none;
margin: 0 0 1rem;
padding: 0;
display: flex;
flex-direction: column;
gap: 0.75rem;
}
.block-card {
display: flex;
flex-direction: column;
gap: 0.6rem;
padding: 0.9rem;
background: var(--color-surface);
border: 1px solid var(--color-border);
border-radius: 0.5rem;
}
.block-card__head {
display: flex;
align-items: center;
justify-content: space-between;
gap: 0.5rem;
}
.block-card__type {
font-weight: 600;
}
.block-card__tools {
display: flex;
gap: 0.35rem;
}
.btn--icon {
min-width: 2.25rem;
padding-left: 0.5rem;
padding-right: 0.5rem;
font-size: 1rem;
line-height: 1;
}
.block-markdown {
font-family: ui-monospace, SFMono-Regular, Menlo, Consolas, monospace;
}
.gallery-row {
display: flex;
flex-wrap: wrap;
gap: 0.5rem;
margin-bottom: 0.5rem;
}
.gallery-row .input {
flex: 1 1 12rem;
}
.block-add {
display: flex;
flex-wrap: wrap;
align-items: center;
gap: 0.5rem;
}

View File

@@ -26,11 +26,15 @@ export const de = {
// FEAT-13 (Kelly): Verträge + Einstellungen
contracts: 'Verträge',
settings: 'Einstellungen',
// INBOX-1 (Kelly): Anfragen-Posteingang
requests: 'Anfragen',
openMenu: 'Menü öffnen',
closeMenu: 'Menü schließen',
mainNavigation: 'Hauptnavigation',
// HELP-1
help: 'Hilfe',
// WEB-0b (Kevin): CMS-Verwaltung der öffentlichen Webseite
website: 'Webseite',
},
pages: {
home: {
@@ -45,6 +49,9 @@ export const de = {
empty: 'Keine Rennmäuse gefunden.',
countLabel: 'Tiere',
searchPlaceholder: 'Name suchen …',
// BESTAND-FILTER: Kennzeichnung externer (nicht zum eigenen Bestand gehörender) Tiere
externalBadge: 'Extern',
externalTitle: 'Externes Tier — gehört nicht zum eigenen Bestand, nur für den Stammbaum erfasst.',
// Filter-Beschriftungen
filters: {
title: 'Filter',
@@ -54,6 +61,9 @@ export const de = {
all: 'Alle',
reset: 'Filter zurücksetzen',
sortBy: 'Sortieren nach',
// BESTAND-FILTER: eigener Bestand (Clan) vs. externe Ahnen (nur Stammbaum)
showExternal: 'Externe Ahnen einblenden',
showExternalHint: 'Tiere aus fremden Zuchten, die nur für den Stammbaum erfasst sind.',
},
// Sortier-Optionen
sort: {
@@ -105,7 +115,10 @@ export const de = {
editTitle: 'Rennmaus bearbeiten',
none: '— keine Angabe —',
genotypeHint:
'Optional. Format z. B. „Aa CC Dd EE GG Pp Spsp rere“. Unbekannte Allele als „?“.',
'Optional. Format z. B. „Aa CC Dd EE GG Pp Spsp rere“. Unbekannte Allele als „-“.',
// BESTAND-FILTER: Zugehörigkeit zum eigenen Bestand (sonst externe Ahne)
isResidentLabel: 'Gehört zum eigenen Bestand',
isResidentHint: 'Abwählen für externe Ahnen, die nur für den Stammbaum erfasst sind.',
save: 'Speichern',
cancel: 'Abbrechen',
saving: 'Speichern …',
@@ -217,7 +230,7 @@ export const de = {
pickAnimalNoGenotype: 'Für dieses Tier ist kein Genotyp hinterlegt bitte unten eingeben.',
clearAnimal: 'Auswahl entfernen',
genotypeLabel: 'Genotyp',
genotypeHint: 'Format z. B. „Aa CC Dd EE GG Pp Spsp rere“. Unbekannte Allele als „?“.',
genotypeHint: 'Format z. B. „Aa CC Dd EE GG Pp Spsp rere“. Unbekannte Allele als „-“.',
genotypeInvalid: 'Der Genotyp ist ungültig.',
genotypePreview: 'Farbschlag',
run: 'Probeverpaarung berechnen',
@@ -455,6 +468,61 @@ export const de = {
saved: 'Gespeichert.',
},
},
// ── INBOX-1 (Kelly): Anfragen-Posteingang ──
anfragen: {
title: 'Anfragen',
empty: 'Keine Anfragen — hole neue E-Mails mit „Anfragen abrufen“.',
emptyFiltered: 'Keine Anfragen mit diesem Status.',
countText: (n: number) => (n === 1 ? '1 Anfrage' : `${n} Anfragen`),
sync: 'Anfragen abrufen',
syncing: 'Abrufen …',
syncImported: (n: number) =>
n === 0 ? 'Keine neuen Anfragen.' : n === 1 ? '1 neue Anfrage abgerufen.' : `${n} neue Anfragen abgerufen.`,
mailNotConfigured:
'Gmail ist noch nicht eingerichtet — Adresse und App-Passwort folgen in den Einstellungen.',
mailAuthFailed:
'Gmail-Anmeldung fehlgeschlagen — bitte das App-Passwort neu eintragen.',
filterAll: 'Alle',
statusLabels: {
New: 'Neu',
InProgress: 'In Bearbeitung',
Assigned: 'Zugeordnet',
Answered: 'Beantwortet',
Abandoned: 'Verworfen',
},
// Detailansicht
detail: {
back: 'Zurück zur Liste',
notFound: 'Diese Anfrage wurde nicht gefunden.',
from: 'Von',
receivedAt: 'Eingegangen',
answeredAt: 'Beantwortet am',
message: 'Nachricht',
noBody: '(kein Text)',
noSubject: '(kein Betreff)',
// Triage
triage: 'Bearbeitung',
statusLabel: 'Status',
abandon: 'Verwerfen',
abandonConfirm: 'Anfrage wirklich verwerfen?',
assignContact: 'Abnehmer zuordnen',
assignNone: '— kein Abnehmer —',
assignedTo: 'Zugeordneter Abnehmer',
// Antwort
reply: 'Antwort',
replyPlaceholder: 'Antwort schreiben oder mit KI entwerfen …',
draftButton: 'Antwort entwerfen',
drafting: 'Entwurf wird erstellt …',
draftHint: 'Die KI erstellt nur einen Entwurf — gesendet wird erst nach deiner Bestätigung.',
aiKeyMissing: 'KI-Schlüssel fehlt — der Entwurfs-Assistent wird mit dem Schlüssel aktiviert.',
aiUpstreamError: 'Der KI-Dienst hat gerade ein Problem — bitte später erneut versuchen.',
send: 'Antwort senden',
sending: 'Senden …',
sendConfirm: 'Antwort jetzt per E-Mail senden?',
sendEmptyBody: 'Bitte zuerst eine Antwort schreiben.',
sent: 'Antwort gesendet — die Anfrage ist als „Beantwortet“ markiert.',
},
},
// ── FEAT-2 (Oscar): Kontakte (Contacts — Herkunft/Abnehmer) ──
kontakte: {
title: 'Kontakte',
@@ -576,6 +644,69 @@ export const de = {
photoNote:
'Fotos sind nicht enthalten — sie liegen als Bilddateien im Datenordner der Anwendung und können von dort gesichert werden.',
},
// ── WEB-0b (Kevin): CMS-Verwaltung der öffentlichen Webseite ──
webseite: {
title: 'Webseite',
intro:
'Hier pflegst du die Inhalte deiner öffentlichen Webseite. Änderungen werden erst beim Veröffentlichen online sichtbar.',
empty: 'Es sind noch keine Seiten angelegt.',
statusLabel: 'Status',
statusDraft: 'Entwurf',
statusPublished: 'Veröffentlicht',
edit: 'Bearbeiten',
back: 'Zurück zur Übersicht',
// Seiten-Editor (Kopf)
editor: {
pageTitleLabel: 'Seitentitel',
seoLabel: 'Beschreibung für Suchmaschinen (SEO)',
seoHint: 'Kurzer Text (ca. 12 Sätze), der bei Google unter dem Titel erscheint.',
save: 'Seite speichern',
saved: 'Seite gespeichert.',
},
// Block-Editor
blocks: {
sectionTitle: 'Inhaltsblöcke',
empty: 'Diese Seite hat noch keine Inhaltsblöcke. Füge unten den ersten hinzu.',
addLabel: 'Block hinzufügen:',
moveUp: 'Nach oben',
moveDown: 'Nach unten',
delete: 'Block löschen',
confirmDelete: 'Diesen Block wirklich löschen?',
save: 'Block speichern',
saved: 'Gespeichert.',
// Block-Typ-Namen
types: {
Heading: 'Überschrift',
RichText: 'Textabschnitt',
Image: 'Bild',
Gallery: 'Bildergalerie',
ContactInfo: 'Kontaktangaben',
AbgabetiereList: 'Abgabetiere (automatisch)',
},
// Feld-Beschriftungen je Block-Typ
fields: {
headingText: 'Überschrift-Text',
headingLevel: 'Größe',
levelMain: 'Hauptüberschrift',
levelSub: 'Unterüberschrift',
markdown: 'Text',
markdownHint:
'Einfache Formatierung möglich: **fett**, *kursiv*, Listen mit „- “, Links als [Text](https://…).',
imageUrl: 'Bild-Adresse (URL)',
imageAlt: 'Bildbeschreibung (für Suchmaschinen & Barrierefreiheit)',
galleryImages: 'Bilder',
galleryAdd: 'Bild hinzufügen',
galleryRemove: 'Entfernen',
contactName: 'Name',
contactEmail: 'E-Mail',
contactPhone: 'Telefon',
contactAddress: 'Adresse',
abgabeIntro: 'Einleitungstext',
abgabeAutoNote:
'Die Liste der Abgabetiere wird beim Veröffentlichen automatisch aus deinen aktuellen Abgabetieren erzeugt. Du kannst nur den Einleitungstext bearbeiten.',
},
},
},
},
// ── HELP-1: In-App-Anleitung ──
hilfe: {
@@ -625,6 +756,10 @@ export const de = {
'Schecke × Schecke: Reinerbige Tiere (SpSp) sterben bereits im Mutterleib — etwa ein Viertel weniger Jungtiere.',
REX_SEMI_LETHAL:
'Rex × Rex: Reinerbige Tiere (ReRe) sind nur eingeschränkt lebensfähig.',
SLS_LETHAL:
'WP × WP: Reinerbige Tiere (S(l)S(l)) sterben bereits im Mutterleib (Rumpback) — weniger Jungtiere.',
SUPERSCHECKE_DEAF:
'Schecke × WP: Superschecken (sehr hoher Weißanteil) sind möglich — erhöhtes Taubheitsrisiko.',
},
unknownFarbschlag: 'Unbekannter Farbschlag',
},

View File

@@ -0,0 +1,89 @@
{
"_doc": "Human conflict resolutions for the import quarantine (HUMANQUESTION section D / C6). The importer consumes this to UN-QUARANTINE an animal: for a matching (name + dob) it accepts the given authoritative field(s) — `genotype`, `farbschlag`, and/or `dateOfDeath` (DD.MM.YYYY) — and skips the conflict. Special field `correctDob` (DD.MM.YYYY): the matched (name + dob) record is a DUPLICATE with a WRONG birthdate — remap its DOB to `correctDob` BEFORE dedup so it merges into the canonical same-named animal. Key match = normalize(name) + dob, same identity as dedup. Maintained by god (Michael) as Julian/his wife answer the D-conflicts; originals (xlsx) stay read-only.",
"resolutions": [
{
"name": "Firefly von den Kleinen Chaoten",
"dob": "18.12.2019",
"decision": "D-locus = D- (the DD in one source was a typo)",
"genotype": "Aa c[chm]c[chm] D- Ee Gg PP Spsp",
"source": "Julian 2026-06-06 — HUMANQUESTION D3"
},
{
"name": "WildFire von den Kleinen Chaoten",
"dob": "05.10.2017",
"decision": "P-locus = PP (not P-)",
"genotype": "aa c[chm]c[chm] D- Ee gg PP spsp",
"source": "Julian 2026-06-06 — HUMANQUESTION D3"
},
{
"name": "Flint von den Kleinen Chaoten",
"dob": "23.12.2017",
"decision": "death date = 10.05.2021 (the 10.05.2022 variant was a year typo)",
"dateOfDeath": "10.05.2021",
"source": "Julian 2026-06-06 — HUMANQUESTION D5"
},
{
"name": "Molly of Black Forest",
"dob": "13.09.2021",
"decision": "death date = 03.05.2022 (source 03.05.2021 was a year typo → fell before birth)",
"dateOfDeath": "03.05.2022",
"source": "Julian 2026-06-06 — HUMANQUESTION D5"
},
{
"name": "Daja of Little Rose",
"dob": "16.05.2021",
"decision": "keep spsp (present in one source, omitted in the other) — 'presence wins' rule",
"genotype": "aa c[chm]c[chm] D- EE Gg P- spsp",
"source": "Julian 2026-06-06 — HUMANQUESTION D3 / Beibehalten-Regel"
},
{
"name": "Ichika von den Kleinen Chaoten",
"dob": "19.04.2020",
"decision": "keep ee[f] (the [f] fox-modifier was present in one source, dropped in the other) — 'presence wins' rule",
"genotype": "aa CC D- ee[f] Gg pp spsp",
"source": "Julian 2026-06-06 — HUMANQUESTION D3 / Beibehalten-Regel"
},
{
"name": "Zuleika von den Kleinen Chaoten",
"dob": "24.10.2015",
"decision": "D=DD, E=Ee (one small e), G=Gg (one small g), P=PP (two big P)",
"genotype": "aa c[chm]c[h] DD Ee Gg PP spsp",
"source": "Julian 2026-06-06 — HUMANQUESTION D3"
},
{
"name": "Milka of LennyLengo",
"dob": "09.12.2018",
"decision": "C-locus = Cc[h], E-locus = EE",
"genotype": "aa Cc[h] dd EE Gg P- Spsp",
"source": "Julian 2026-06-06 — HUMANQUESTION D3"
},
{
"name": "Silvain von den Kleinen Chaoten",
"dob": "27.03.2022",
"decision": "E-locus = ee, P-locus = Pp",
"genotype": "aa c[chm]c[chm] Dd ee[-] Gg Pp Spsp",
"source": "Julian 2026-06-06 — HUMANQUESTION D3"
},
{
"name": "Chelsea von den Kleinen Chaoten",
"dob": "15.10.2021",
"decision": "duplicate with wrong birthdate — same animal as Chelsea *02.04.2021; merge into it",
"correctDob": "02.04.2021",
"source": "Julian 2026-06-06 — HUMANQUESTION D3 (Chelsea Dublette)"
},
{
"name": "Vestra von den Schlossmäusen",
"dob": "08.02.2019",
"decision": "D-locus = DD",
"genotype": "Aa Cc[chm] DD EE GG PP Spsp [WP]",
"source": "Julian 2026-06-06 — HUMANQUESTION D4"
},
{
"name": "Victoria Welby gen. Welby von den Kleinen Chaoten",
"dob": "16.01.2023",
"decision": "E-locus = ee[f] (Fuchs). NOTE: this is the mother of animal 'C' (c-29042024) — un-quarantining her links C's second parent.",
"genotype": "Aa CC D- ee[f] Gg pp Spsp [DP]",
"source": "Julian 2026-06-06 — HUMANQUESTION D4"
}
]
}

View File

@@ -20,6 +20,7 @@ import glob
import shutil
import argparse
import unicodedata
from collections import Counter
import xlsx_util as xu
import genotype as gt
@@ -96,6 +97,18 @@ ZUCHT_ALIASES = {
"zdkc": "kleinechaote", # "Zucht der kleinen Chaoten" (home cattery shorthand)
}
# A Farbschlag value must NOT contain cattery/line connectors (v.d./von/of/gen.) — when it
# does, a parent's NAME has bled into the Farbschlag cell (cross-cell chart read, PEDIGREE-LINK
# bug: e.g. "Victoria Welby gen. Welby v.d. Kleinen Chaoten" became a Farbschlag variant and
# spawned a phantom conflict). Reject such values so they don't pollute farbschlag/conflicts.
_NAME_MARKER = re.compile(r"\bv\.\s?d\.|\bvon\b|\bof\b|\bgen\.", re.IGNORECASE)
def looks_like_animal_name(text):
"""True if a candidate Farbschlag cell actually looks like an animal name (has a
cattery/line connector). Real Farbschläge are short colour words without these."""
return bool(_NAME_MARKER.search(text or ""))
def split_name_zucht(raw):
"""'Luna [ZdkC]' -> ('Luna','ZdkC'); 'Pikachu of Black Forest' ->
@@ -159,6 +172,7 @@ def extract_stammbaum(path):
ss = xu.shared_strings(z)
sheets = xu.sheet_paths(z)
cells = xu.read_cells(z, sheets[0], ss)
fillsex = xu.cell_fill_sex(z, sheets[0]) # box colour -> sex (blue=male, white=female)
# group cells by column for block reconstruction
by_col = {}
@@ -197,6 +211,11 @@ def extract_stammbaum(path):
farbschlag = ""
geno = geno0
breeder = ""
# BAND-AWARE (Julian-confirmed): early bands (gen 0-1, cols B/E/H) are 5-cell blocks
# WITH a Farbschlag cell; deep bands (gen >= 2, cols K/N/Q...) are 3-cell blocks
# (Name/DOB/Genotype) with NO Farbschlag — colour is derived from the genotype. So in
# deep bands we must NOT grab the next block's name or a stray health note as Farbschlag.
deep_band = gen_of(c) >= 2
for rr in range(r + 1, r + 4):
cell = cells.get((c, rr))
if not cell:
@@ -207,7 +226,8 @@ def extract_stammbaum(path):
elif re.search(r"\b(Zucht|Privatzucht)\b", cell) or cell.startswith("("):
breeder = cell
used.add((c, rr))
elif not farbschlag and not re.match(r"^\*?\s?\d", cell):
elif not deep_band and not farbschlag and not re.match(r"^\*?\s?\d", cell) \
and not looks_like_animal_name(cell):
farbschlag = cell
used.add((c, rr))
used.add((c, r))
@@ -224,9 +244,11 @@ def extract_stammbaum(path):
"nameVariants": [],
"dob": dob,
"death": death,
"gender": None,
"gender": fillsex.get((c, r)), # box colour: blue=male, white=female
"farbschlag": farbschlag,
"genotype": genodict,
"deaf": genodict.get("deaf"),
"tags": genodict.get("tags", []),
"breeder": breeder,
"zucht": zraw,
"parentRefs": [],
@@ -251,7 +273,8 @@ def extract_stammbaum(path):
animals.append({
"id": None, "name": part, "nameVariants": [],
"dob": "", "death": "", "gender": None, "farbschlag": "",
"genotype": gt.parse(""), "breeder": "", "zucht": zraw,
"genotype": gt.parse(""), "deaf": None, "tags": [],
"breeder": "", "zucht": zraw,
"parentRefs": [], "photos": [], "sourceFiles": [fname],
"_gen": gen_of(c), "_col": c, "_row": r, "_file": fname,
"_zucht": norm_zucht(zraw),
@@ -472,10 +495,63 @@ def _to_int(s):
# ------------------------------------------------------------- stage 2: dedup
def _geno_key(genodict):
"""Canonical, order-independent key of a genotype's mapped loci — used for conflict
detection so Uw==G (and allele ordering) no longer count as a conflict."""
m = genodict.get("mapped8locus", {})
return "|".join(f"{locus}:{','.join(sorted(m[locus]))}" for locus in sorted(m))
# --- "presence wins" merge rule (Julian) -------------------------------------
# When two source variants of the SAME animal differ ONLY by a token PRESENT in one and
# ABSENT in the other — a whole locus (e.g. spsp recorded in one chart, omitted in another)
# or a modifier on the same base allele (e^f vs e, i.e. the [f] marker) — keep the present
# token; that is NOT a conflict. A genuine VALUE contradiction (different filled alleles:
# E vs e, D vs d, c^h vs c^chm) OR unknown-vs-filled (D- vs DD, the '?' second allele) STILL
# quarantines for human decision. (Markers/flags WP/DP/WFNZ/hörend are already tags/flags,
# never part of the genotype, so they never reach here.)
def _split_allele(a):
return tuple(a.split("^", 1)) if "^" in a else (a, "")
def _alleles_compatible(a, b):
if a == b:
return True
if a == "?" or b == "?":
return False # unknown vs filled = contradiction (D- vs DD)
(ba, ma), (bb, mb) = _split_allele(a), _split_allele(b)
if ba != bb:
return False # different base allele = real value diff (E vs e)
return ma == "" or mb == "" # same base, modifier present-vs-absent -> presence wins
def _pair_compatible(p, q):
if len(p) != 2 or len(q) != 2:
return p == q
return ((_alleles_compatible(p[0], q[0]) and _alleles_compatible(p[1], q[1])) or
(_alleles_compatible(p[0], q[1]) and _alleles_compatible(p[1], q[0])))
def _genotype_conflict(mapped_list):
"""True only if two variants GENUINELY contradict at a shared locus. A locus present in
one variant and absent in another is fine (presence wins); so is a modifier present-vs-
absent on the same base allele. Replaces the old `len(distinct geno keys) > 1` test."""
loci = set()
for m in mapped_list:
loci.update(m.keys())
for locus in loci:
pairs = [m[locus] for m in mapped_list if locus in m]
for i in range(len(pairs)):
for j in range(i + 1, len(pairs)):
if not _pair_compatible(pairs[i], pairs[j]):
return True
return False
def dedup(animals):
"""Merge by normalise(call-name)+DOB, with the canonical Zucht as
DISCRIMINATOR (Julian: same name+DOB but different Zucht = different
animal). Returns (merged, conflicts, orphans, zucht_splits)."""
DISCRIMINATOR (Julian: same name+DOB+Zucht = same animal; different Zucht =
different animal). Returns (merged, conflicts, orphans, zucht_splits)."""
groups = {}
orphans = []
for a in animals:
@@ -521,19 +597,31 @@ def dedup(animals):
photos = list(base["photos"])
parent_refs = list(base["parentRefs"])
genos = set()
geno_keys = set() # GEN-3b: conflict on NORMALIZED genotype (Uw==G) not raw text
mapped_variants = [] # mapped8locus per variant — for the 'presence wins' conflict test
farb = set()
deaths = set()
deaf_seen = set()
tags_set = set()
genders = []
for a in grp:
variants.add(a["name"])
files.update(a["sourceFiles"])
photos.extend(a["photos"])
parent_refs.extend(a["parentRefs"])
if a["genotype"]["rawGenotype"]:
if a.get("gender"):
genders.append(a["gender"])
if a["genotype"]["mapped8locus"]:
genos.add(a["genotype"]["rawGenotype"])
geno_keys.add(_geno_key(a["genotype"]))
mapped_variants.append(a["genotype"]["mapped8locus"])
if a["farbschlag"]:
farb.add(a["farbschlag"])
if a["death"]:
deaths.add(norm_dob(a["death"]))
if a.get("deaf") is not None:
deaf_seen.add(a["deaf"])
tags_set.update(a.get("tags", []))
# pick the richest genotype (most mapped loci, then longest raw)
best = max((a["genotype"] for a in grp),
key=lambda gd: (len(gd["mapped8locus"]), len(gd["rawGenotype"])))
@@ -543,7 +631,8 @@ def dedup(animals):
"nameVariants": sorted(v for v in variants if v),
"dob": norm_dob(base["dob"]),
"death": sorted(deaths)[0] if deaths else "",
"gender": None,
# box-colour sex (blue=male, white=female): majority across mentions, else None.
"gender": Counter(genders).most_common(1)[0][0] if genders else None,
"farbschlag": sorted(farb)[0] if farb else "",
"farbschlagVariants": sorted(farb),
"genotype": best,
@@ -554,13 +643,17 @@ def dedup(animals):
"photos": sorted(set(photos)),
"sourceFiles": sorted(files),
"mentions": len(grp),
# GEN-3b: hearing/deaf phenotype flag (deaf wins if any mention says so) + tags.
"deaf": (True if True in deaf_seen else (False if False in deaf_seen else None)),
"tags": sorted(tags_set),
# FEAT-8c: machine-readable quarantine marker so the API loader can skip
# conflicting records without parsing the German review report.
"conflict": False,
}
merged.append(out)
# conflict: same animal, disagreeing genotype or farbschlag or death
if len(genos) > 1 or len(farb) > 1 or len(deaths) > 1:
# conflict: same animal, GENUINELY disagreeing genotype (presence-vs-absence is NOT a
# conflict — Julian's 'presence wins') or >1 distinct farbschlag or >1 distinct death.
if _genotype_conflict(mapped_variants) or len(farb) > 1 or len(deaths) > 1:
out["conflict"] = True
conflicts.append({
"id": out["id"], "name": base["name"], "dob": out["dob"],
@@ -790,6 +883,68 @@ def write_report(merged, conflicts, orphans, raw_count, litters, photo_count,
# ------------------------------------------------------------------------ main
def apply_dob_remaps(raw_animals, path):
"""PRE-dedup: a conflict-decision carrying `correctDob` marks a record as a DUPLICATE with a
wrong birthdate — remap that raw record's DOB to correctDob so dedup MERGES it into the
canonical same-named animal (e.g. Chelsea *15.10.2021 -> *02.04.2021). Match =
norm_name(name)+norm_dob(dob). Tolerates a missing/garbled file. Returns the remap count.
Must run BEFORE dedup (it changes the dedup identity). (god/HUMANQUESTION D — Dubletten.)"""
remaps = {}
try:
with open(path, encoding="utf-8") as fh:
for r in (json.load(fh).get("resolutions") or []):
if r.get("correctDob"):
remaps[(norm_name(r.get("name", "")), norm_dob(r.get("dob", "")))] = r["correctDob"]
except (OSError, ValueError):
return 0
if not remaps:
return 0
n = 0
for a in raw_animals:
new = remaps.get((norm_name(a.get("name", "")), norm_dob(a.get("dob", ""))))
if new and a.get("dob") != new:
a["dob"] = new
n += 1
return n
def apply_conflict_decisions(merged, conflicts, path):
"""Consume human conflict resolutions (tools/import/conflict-decisions.json) so the wife's
answers UN-QUARANTINE animals. Schema: {"resolutions":[{name, dob, decision, genotype?,
farbschlag?, source}]}. Match = norm_name(name)+norm_dob(dob) (same identity as dedup). A
matching animal: clear its conflict, mark resolvedByDecision; an explicit `genotype`
(breeder notation) is parsed and becomes authoritative, `farbschlag` overrides too. Tolerates
a missing/empty/garbled file. Returns the number of conflicts resolved. (god/HUMANQUESTION D.)"""
decisions = {}
try:
with open(path, encoding="utf-8") as fh:
for r in (json.load(fh).get("resolutions") or []):
decisions[(norm_name(r.get("name", "")), norm_dob(r.get("dob", "")))] = r
except (OSError, ValueError):
return 0
if not decisions:
return 0
resolved = 0
for a in merged:
d = decisions.get((norm_name(a["name"]), norm_dob(a["dob"])))
if not d:
continue
a["resolvedByDecision"] = True
if d.get("genotype"):
a["genotype"] = gt.parse(d["genotype"])
if d.get("farbschlag"):
a["farbschlag"] = d["farbschlag"]
a["farbschlagVariants"] = [d["farbschlag"]]
if d.get("dateOfDeath"): # D5 death-date resolutions
a["death"] = norm_dob(d["dateOfDeath"])
if a.get("conflict"):
a["conflict"] = False
conflicts[:] = [c for c in conflicts if c.get("id") != a["id"]]
resolved += 1
return resolved
def main():
try:
sys.stdout.reconfigure(encoding="utf-8", errors="replace")
@@ -809,7 +964,9 @@ def main():
os.makedirs(OUT, exist_ok=True)
raw_animals = []
files = sorted(glob.glob(os.path.join(args.stammbaeume, "*.xlsx")))
# Skip Excel lock/owner files ("~$...") that appear while a workbook is open.
files = sorted(f for f in glob.glob(os.path.join(args.stammbaeume, "*.xlsx"))
if not os.path.basename(f).startswith("~$"))
print(f"Stammbaum-Dateien: {len(files)}")
for path in files:
got = extract_stammbaum(path)
@@ -821,7 +978,10 @@ def main():
litters = extract_wurfchronik(args.wurfchronik)
print(f"Wurfchronik: {len(litters)} Würfe")
decisions_path = os.path.join(HERE, "conflict-decisions.json")
dob_remaps = apply_dob_remaps(raw_animals, decisions_path) # before dedup (changes identity)
merged, conflicts, orphans, zucht_splits = dedup(raw_animals)
resolved_by_decision = apply_conflict_decisions(merged, conflicts, decisions_path)
match_stats = match_litters(merged, litters)
photo_count = sum(len(a["photos"]) for a in merged)
@@ -838,7 +998,8 @@ def main():
zucht_splits, match_stats)
print(f"\nRoh: {len(raw_animals)} → eindeutig: {len(merged)} "
f"| Konflikte: {len(conflicts)} | Zucht-Splits: {len(zucht_splits)} "
f"| Konflikte: {len(conflicts)} | per Entscheidung gelöst: {resolved_by_decision} "
f"| DOB-Remaps: {dob_remaps} | Zucht-Splits: {len(zucht_splits)} "
f"| Orphans: {len(orphans)} | Fotos: {photo_count}")
print(f"Wurf-Verknüpfung: {match_stats['parents']} (Datum+Eltern), "
f"{match_stats['dateOnly']} (nur Datum), {match_stats['ambiguous']} mehrdeutig "

View File

@@ -1,20 +1,26 @@
"""Parse the breeder's free-text genotype notation into our frozen 8-locus
contract while losing nothing (FEAT-8b ruling from god):
"""Parse the breeder's free-text genotype notation into our locus model while
losing nothing (FEAT-8b + GEN-3b normalization, per hive/agents/god/GENETIK-notation.md):
- mapped8locus : {locus: [allele1, allele2]} for A C D E G P Sp Re
- rawGenotype : the verbatim source string
- unmappedTokens: tokens we couldn't map (Uw/Sls/Dea, markers like WFNZ/WP/DP, …)
- mapped8locus : {locus: [allele1, allele2]} for A C D E G P Sp Re (+ Sls when present)
- rawGenotype : the verbatim source string
- unmappedTokens: tokens we still couldn't place
- deaf : True (dea/taub) | False (Dea/hörend) | None (not stated) — phenotype FLAG, not a locus
- tags : provenance/breeding markers (WFNZ/RV/GV/DP/extern …) — never genotype
GEN-3b normalizations (wife + research confirmed):
- Uw/uw == G/g (international vs German notation for the SAME locus) -> aliased to G/g.
- Sls/WP is a SECOND spotting locus (S(l)s(l) = WP/Minimalschecke het). WP -> Sls het.
- Dea/dea/taub -> hearing/deaf flag (written after spsp), NOT a Punnett locus.
- WFNZ/RV/GV -> provenance/breeding tags, NOT genotype, NOT conflict-bearing.
Conventions in the source data:
- allele superscripts are bracketed: c[chm] -> c^chm, c[h] -> c^h, e[f] -> e^f
- a single '-' for the second allele means "unknown" -> mapped to '?'
(frozen-contract wildcard; assumption pending the wife's confirmation)
"""
import re
LOCI = ["A", "C", "D", "E", "G", "P", "Sp", "Re"]
# locus -> regex that matches that locus's token (longest alternatives first)
_LOCUS_TOKEN = {
"Sp": re.compile(r"^(Sp|sp)(Sp|sp|-)?$"),
"Re": re.compile(r"^(Re|re)(Re|re|-)?$"),
@@ -25,12 +31,7 @@ _LOCUS_TOKEN = {
"G": re.compile(r"^(G|g)(G|g|-)?$"),
"P": re.compile(r"^(P|p)(P|p|-)?$"),
}
# loci our model does NOT have but the data uses
_KNOWN_UNMAPPED = re.compile(r"^(Uw|uw)(\[d\])?(Uw|uw)?(\[d\])?$|^(Sls|sls|Dea|dea)$", re.I)
_MARKER = re.compile(r"^\[?(WFNZ|WP|DP|GV|RV)\]?$|^\((taub|hörend|hoerend|RV|GV|extern[^)]*)\)$", re.I)
# one allele unit per locus (longest-match alternatives first); '-' = unknown
_ALLELE_UNIT = {
"Sp": re.compile(r"Sp|sp|-"),
"Re": re.compile(r"Re|re|-"),
@@ -42,10 +43,41 @@ _ALLELE_UNIT = {
"P": re.compile(r"[Pp]|-"),
}
# Provenance/breeding tags (never genotype): Wildfangnachzucht, Rückverpaarung,
# Geschwisterverpaarung, DarkPatch, external origin.
_TAG = re.compile(r"^\[?(WFNZ|RV|GV|DP)\]?$|^\((RV|GV|extern[^)]*)\)$", re.I)
def _rewrite_uw(token):
"""Uw/uw notation -> G/g (same locus). 'Uwuw[d]' -> 'Gg', 'UwUw' -> 'GG', 'uw[d]uw[d]' -> 'gg'."""
if "uw" not in token.lower():
return token
return token.replace("uw[d]", "g").replace("Uw", "G").replace("uw", "g")
def _sls_alleles(token):
"""Sls (second spotting locus) alleles, or None. WP == Sls het (Minimalschecke);
S(l)S(l) homozygous = lethal. Allele symbols: 'Sl' / 'sl'."""
n = token.strip("[]").replace("(l)", "l").replace("(L)", "l")
if n in ("WP", "Sls"):
return ["Sl", "sl"] # heterozygous (WP phenotype)
if n.lower() == "sls":
return ["sl", "sl"] # wild-type (no extra spotting)
units = re.findall(r"Sl|sl", n)
return units if len(units) == 2 else None
def _deaf_value(token):
"""dea/taub -> True (deaf); Dea/hörend -> False (hearing); else None. Case-sensitive for Dea/dea."""
t = token.strip("()[]")
if t == "dea" or t.lower() == "taub":
return True
if t == "Dea" or t.lower() in ("hörend", "hoerend"):
return False
return None
def _alleles_for(locus, token):
"""Extract the (allele1, allele2) pair from a single locus token, handling
two-letter alleles (Sp/Re) and bracketed superscripts (c[chm] -> c^chm)."""
pat = _ALLELE_UNIT.get(locus)
units = pat.findall(token) if pat else re.findall(r"[A-Za-z](?:\[[a-z]+\])?|-", token)
alleles = []
@@ -55,7 +87,6 @@ def _alleles_for(locus, token):
else:
m = re.match(r"([A-Za-z]+)\[([a-z\-]+)\]", u)
if m:
# [-] = sub-allele unknown -> keep the base letter only
alleles.append(m.group(1) if m.group(2) == "-" else f"{m.group(1)}^{m.group(2)}")
else:
alleles.append(u)
@@ -65,37 +96,60 @@ def _alleles_for(locus, token):
def parse(raw):
"""raw: a genotype string (may include trailing free text/markers).
"""raw: a genotype string (may include trailing markers/flags).
Returns dict {mapped8locus, rawGenotype, unmappedTokens}.
Returns {mapped8locus, rawGenotype, unmappedTokens, deaf, tags}.
"""
raw = (raw or "").strip()
mapped = {}
unmapped = []
# tokenise on whitespace; keep order
tags = []
deaf = None
for tok in raw.split():
t = tok.strip().rstrip(",")
if not t:
continue
# GEN-3b: Uw/uw is an alias of the G locus — rewrite before matching.
t = _rewrite_uw(t)
# 8 standard loci
matched = False
for locus in LOCI:
pat = _LOCUS_TOKEN.get(locus)
if pat and pat.match(t):
if locus not in mapped: # first occurrence wins
mapped[locus] = _alleles_for(locus, t)
mapped.setdefault(locus, _alleles_for(locus, t)) # first occurrence wins
matched = True
break
if matched:
continue
if _KNOWN_UNMAPPED.match(t) or _MARKER.match(t):
unmapped.append(t)
else:
# anything else (stray notes, malformed tokens) -> unmapped, nothing lost
unmapped.append(t)
# Sls (second spotting locus); WP is its heterozygous phenotype
sls = _sls_alleles(t)
if sls is not None:
mapped.setdefault("Sls", sls)
continue
# deafness flag (after spsp): dea/taub vs Dea/hörend
d = _deaf_value(t)
if d is not None:
deaf = d
continue
# provenance/breeding tags
if _TAG.match(t):
tags.append(re.sub(r"[()\[\]]", "", t).upper())
continue
unmapped.append(t)
return {
"mapped8locus": mapped,
"rawGenotype": raw,
"unmappedTokens": unmapped,
"deaf": deaf,
"tags": tags,
}
@@ -103,7 +157,7 @@ def looks_like_genotype(text):
"""Heuristic: does this cell text contain >=3 recognisable locus tokens?"""
n = 0
for tok in text.split():
t = tok.rstrip(",")
t = _rewrite_uw(tok.rstrip(","))
if any(p.match(t) for p in _LOCUS_TOKEN.values()):
n += 1
return n >= 3

View File

@@ -4,15 +4,15 @@ _Automatisch erzeugt von `tools/import/extract.py` — **noch nichts in die Date
## Überblick
- Rohe Tier-Einträge aus den Stammbäumen: **889**
- Nach Zusammenführung (eindeutige Tiere): **574**
- davon mit Geburtsdatum: 279
- in mehreren Dateien gefunden (Dubletten zusammengeführt): 146
- Konflikte zur Klärung: **32**
- Rohe Tier-Einträge aus den Stammbäumen: **950**
- Nach Zusammenführung (eindeutige Tiere): **621**
- davon mit Geburtsdatum: 326
- in mehreren Dateien gefunden (Dubletten zusammengeführt): 158
- Konflikte zur Klärung: **9**
- Mehrdeutige / unvollständige Einträge (ohne Name+Datum): **310**
- Fotos zugeordnet: **123**
- Fotos zugeordnet: **137**
- Würfe aus der Wurfchronik: **752**
- Tiere mit Wurf verknüpft: **135** (davon über Geburtsdatum **und** Eltern: 95, nur über Geburtsdatum: 40; mehrdeutig: 9)
- Tiere mit Wurf verknüpft: **159** (davon über Geburtsdatum **und** Eltern: 110, nur über Geburtsdatum: 49; mehrdeutig: 10)
- Würfe mit Datenqualitäts-Hinweisen: 113 (+ 138 Zeilen mit abweichendem Spaltenschema)
## Zusammenführungs-Schlüssel
@@ -26,37 +26,14 @@ Gleiches Tier (Name+Datum), aber widersprüchliche Angaben in verschiedenen Date
| Tier | Geburtsdatum | abweichende Genotypen | abweichende Farbschläge | Sterbedaten | Dateien |
|---|---|---|---|---|---|
| Ella | 10.06.2019 | Aa C D- ee[f] GG P- spsp // Aa Cc[chm] D- ee[f] UwUw P- spsp | Algierfuchsschimmel, hell | 03.02.2023 | Stammbaum von Akio Kids, Stammbaum von CP-Fuchs, CP-Sa Sp von Unity, Stammbaum von Valentino Firehearts Kids |
| ZoneFire | 07.12.2020 | Aa c[chm]c[chm] D- Ee Gg P- Spsp | CP-Agouti Kragenschecke // Kalea von den Kleinen Chaoten | — | Stammbaum von Akio Kids |
| Louis von den Kleinen Chaoten | 15.07.2017 | Aa Cc[] D- Ee Gg P- spsp // Aa Cc[chm] D- Ee Uwuw[d] P- spsp | Roswitha von den Kleinen Chaoten | 01.07.2020 | Stammbaum von Akio Kids, Stammbaum von CP-Fuchs, CP-Sa Sp von Unity |
| Roswitha von den Kleinen Chaoten | 10.09.2018 | aa CC D- ee[f] Gg P- spsp // aa CC D- ee[f] Uwuw[d] P- spsp | — | 05.08.2021 | Stammbaum von Akio Kids, Stammbaum von CP-Fuchs, CP-Sa Sp von Unity |
| Firefly von den Kleinen Chaoten | 18.12.2019 | /+, Aa c[chm]c[chm] D- Ee Gg PP Spsp // Aa c[chm]c[chm] DD Ee Gg PP Spsp | — | 2024 | Stammbaum von Akio Kids, Stammbaum von CP-Fuchs, CP-Sa Sp von Unity, Stammbaum von Fire Kids, Stammbaum von Valentino Firehearts Kids |
| Zuleika von den Kleinen Chaoten | 24.10.2015 | aa c[chm]c[h] D- E G P- spsp // aa c[chm]c[h] D- Ee Gg P- spsp // aa c[chm]c[h] DD Ee Gg P- spsp | — | 24.02.2019 | Stammbaum von Akio Kids, Stammbaum von CP-Fuchs, CP-Sa Sp von Unity, Stammbaum von Valentino Firehearts Kids |
| WildFire von den Kleinen Chaoten | 05.10.2017 | aa c[chm]c[chm] D- Ee gg P- spsp // aa c[chm]c[chm] D- Ee gg PP spsp | — | — | Stammbaum von Akio Kids, Stammbaum von CP-Fuchs, CP-Sa Sp von Unity, Stammbaum von Fire Kids, Stammbaum von Valentino Firehearts Kids |
| Vestra von den Schlossmäusen | 08.02.2019 | Aa Cc[chm] D- EE GG PP Spsp [WP] // Aa Cc[chm] DD EE GG PP Spsp [WP] | — | 26.05.2023 | Stammbaum von Akio Kids, Stammbaum von CP-Fuchs, CP-Sa Sp von Unity, Stammbaum von Fire Kids, Stammbaum von Valentino Firehearts Kids |
| Flint von den Kleinen Chaoten | 23.12.2017 | aa Cc[chm] D- ee Gg P- spsp | — | 10.05.2021 // 10.05.2022 | Stammbaum von Akio Kids, Stammbaum von CP-Fuchs, CP-Sa Sp von Unity |
| Silenos gen. Adonis v.d. Kleinen Chaoten | 11.10.2015 | aa Cc[chm] D- Ee Gg PP spsp // aa Cc[chm] D- Ee Uwuw[d] PP spsp | — | 18.07.2019 | Stammbaum von Akio Kids, Stammbaum von Goldfuchs Sp (Pikachu) Kids, Stammbaum von Watarus Kids |
| Bruno of Black Forest | 01.06.2022 | aa C- dd Ee Gg P- spsp | Blau // Mystique of Black Forest | — | Stammbaum von Alberto Kids, Stammbaum von Fire Kids, Stammbaum von Stella Kids |
| Milka of LennyLengo | 09.12.2018 | aa C- dd E- Gg P- Spsp // aa Cc[h] dd EE Gg P- Spsp | — | 22.12.2021 | Stammbaum von Alberto Kids, Stammbaum von Stella Kids |
| Hedwig of BGB | 30.10.2019 | aa CC DD E- G- P- Spsp WP // aa CC DD E- G- P- Spsp WP DP (hörend) | — | 30.08.2023 | Stammbaum von Alberto Kids, Stammbaum von Fire Kids, Stammbaum von Stella Kids |
| Silvain von den Kleinen Chaoten | 27.03.2022 | aa c[chm]c[chm] Dd Ee[-] Gg P- Spsp // aa c[chm]c[chm] Dd ee[-] Gg Pp Spsp | — | 31.12.2024 | Stammbaum von Alberto Kids, Stammbaum von CP-Fuchs, CP-Sa Sp von Unity |
| Pitari gen. Piti von den Kleinen Chaoten | 16.05.2021 | Aa CC dd ee Gg P- Spsp DP // Aa CC dd ee Gg P- Spsp [DP] | — | — | Stammbaum von Alberto Kids, Stammbaum von Fire Kids, Stammbaum von Stella Kids |
| Brandon Stark von den Kleinen Chaoten | 13.12.2017 | aa Cc[chm] D- Ee Gg P- spsp // aa Cc[chm] D- Ee Uwuw[d] P- spsp | — | — | Stammbaum von Alberto Kids, Stammbaum von Fire Kids, Stammbaum von Kohlief, Goldfuchsef Sp von Chrissi, Stammbaum von Stella Kids |
| Kazu von den Kleinen Chaoten | 23.04.2013 | Aa Cc[chm] DD e[f]e[f] Gg P Spsp // Aa Cc[chm] DD ee[f] UwUw PP Spsp | — | 03.09.2017 | Stammbaum von Akio Kids, Stammbaum von Vance |
| Enya von den Kleinen Chaoten | 01.11.2017 | Aa c[chm]c[chm] D- ee[-] G- P- spsp // Aa c[chm]c[chm] D- ee[-] Uwuw[d] P- spsp | — | — | Stammbaum von Alberto Kids, Stammbaum von Fire Kids, Stammbaum von Kohlief, Goldfuchsef Sp von Chrissi, Stammbaum von Stella Kids |
| Little Hero of Black Forest | 22.02.2018 | AA CC DD EE GG PP [WFNZ] // AA CC DD EE GG PP spsp [WFNZ] | — | 18.06.2021 | Stammbaum von Alberto Kids, Stammbaum von CP-Fuchs, CP-Sa Sp von Unity, Stammbaum von Fire Kids, Stammbaum von Kohlief, Goldfuchsef Sp von Chrissi, Stammbaum von Stella Kids, Stammbaum von Valentino Firehearts Kids |
| Molly of Black Forest | 13.09.2021 | /+, Aa Cc[chm] D- Ee gg P- spsp // Aa Cc[chm] Dd Ee gg Pp spsp | — | 03.05.2021 | Stammbaum von Alberto Kids, Stammbaum von CP-Fuchs, CP-Sa Sp von Unity |
| Little Runner's Big Ben | 03.02.2020 | Aa Cc[chm] DD Ee Gg PP Spsp // Aa Cc[chm] DD Ee Gg Pp Spsp | Daja of Little Rose | 14.10.2023 | Stammbaum von CP-Fuchs, CP-Sa Sp von Unity, Stammbaum von Fire Kids, Stammbaum von Goldfuchs Sp (Pikachu) Kids, Stammbaum von Kohlief, Goldfuchsef Sp von Chrissi, Stammbaum von Valentino Firehearts Kids, Stammbaum von Watarus Kids |
| Daja of Little Rose | 16.05.2021 | aa chmchm D- EE Gg P- // aa chmchm D- EE Gg P- spsp | — | — | Stammbaum von CP-Fuchs, CP-Sa Sp von Unity, Stammbaum von Fire Kids, Stammbaum von Valentino Firehearts Kids |
| Vance Jr. von den Kleinen Chaoten | 10.04.2022 | aa Cc[hm] Dd Ee gg P- Spsp // aa Cc[hm] Dd Ee gg P- spsp | Kohlfuchs, hell // Velvet von den Kleinen Chaoten | — | Stammbaum von Fire Kids, Stammbaum von Stella Kids |
| Ichika von den Kleinen Chaoten | 19.04.2020 | aa CC D- ee Gg pp spsp // aa CC D- ee[f] Gg pp spsp | — | 27.11.2023 | Stammbaum von Goldfuchs Sp (Pikachu) Kids, Stammbaum von Watarus Kids |
| Trogir von den Kleinen Chaoten | 21.03.2022 | Aa CC DD EE GG pp Spsp | Gold Ansatzschecke // Mahima von den Kleinen Chaoten | 29.05.2024 | Stammbaum von Goldfuchs Sp (Pikachu) Kids, Stammbaum von Kohlief, Goldfuchsef Sp von Chrissi, Stammbaum von Watarus Kids |
| Chayton v.d. Kleinen Chaoten (extern SC) | 04.02.2022 | aa Cc[-] D- e[f]e[f] Gg Pp spsp | Orangeschimmel, hell // Victoria Welby gen. Welby v.d. Kleinen Chaoten | 30.04.2024 | Stammbaum von Goldfuchs Sp (Pikachu) Kids, Stammbaum von Kohlief, Goldfuchsef Sp von Chrissi, Stammbaum von Watarus Kids |
| Little Runner's Big Ben | 03.02.2020 | Aa Cc[chm] DD Ee Gg PP Spsp // Aa Cc[chm] DD Ee Gg Pp Spsp | — | 14.10.2023 | Stammbaum von CP-Fuchs, CP-Sa Sp von Unity, Stammbaum von Fire Kids, Stammbaum von Goldfuchs Sp (Pikachu) Kids, Stammbaum von Kohlief, Goldfuchsef Sp von Chrissi, Stammbaum von Valentino Firehearts Kids, Stammbaum von Watarus Kids |
| Vance Jr. von den Kleinen Chaoten | 10.04.2022 | aa Cc[hm] Dd Ee gg P- Spsp // aa Cc[hm] Dd Ee gg P- spsp | Kohlfuchs, hell | — | Stammbaum von Fire Kids, Stammbaum von Stella Kids |
| Victoria Welby gen. Welby v.d. Kleinen Chaoten | 16.01.2023 | Aa CC D- Ee[f] Gg pp Spsp [DP] // Aa CC D- ee[f] Gg pp Spsp [DP] | Goldfuchsschimmel Punktschecke DP | 17.02.2026 | Stammbaum von Goldfuchs Sp (Pikachu) Kids, Stammbaum von Kohlief, Goldfuchsef Sp von Chrissi, Stammbaum von Watarus Kids |
| Zac gen. Action von den Kleinen Chaoten | 25.12.2020 | aa C- D- Ee G- Pp Spsp [DP] // aa CC D- Ee G- Pp Spsp [DP] | Belica gen. Emi von den Kleinen Chaoten | 31.01.2025 | Stammbaum von Goldfuchs Sp (Pikachu) Kids, Stammbaum von Kohlief, Goldfuchsef Sp von Chrissi, Stammbaum von Watarus Kids |
| Chelsea von den Kleinen Chaoten | 02.04.2021 | /+, Aa CC Dd ee gg Pp spsp // Aa CC Dd ee gg Pp spsp | — | — | Stammbaum von Goldfuchs Sp (Pikachu) Kids, Stammbaum von Valentino Firehearts Kids |
| Chesnut | 13.11.2019 | aa C- D- ee[f] GG PP spsp | Kohlfuchsschimmel // Tennessee von den Kleinen Chaoten | 22.11.2023 | Stammbaum von Kentucky |
| Ethan von den Kleinen Chaoten | 09.07.2020 | Aa Cc[chm] D- ee[f] Gg Pp Spsp | Ichika von den Kleinen Chaoten // Orangeschimmel, hell Kragenschecke | 30.07.2024 | Stammbaum von Kentucky, Stammbaum von Watarus Kids |
| Quied Soldier of Black Forest | 07.06.2018 | /+, Aa C- D- ee[f] GG Pp Spsp [DP] // Aa C- D- ee[f] GG Pp Spsp DP | Hoshi von den Kleinen Chaoten | — | Stammbaum von Kentucky |
| Zac gen. Action von den Kleinen Chaoten | 25.12.2020 | aa C- D- Ee G- Pp Spsp [DP] // aa CC D- Ee G- Pp Spsp [DP] | | 31.01.2025 | Stammbaum von Goldfuchs Sp (Pikachu) Kids, Stammbaum von Kohlief, Goldfuchsef Sp von Chrissi, Stammbaum von Watarus Kids |
| Hanami von den Kleinen Chaoten | 10.09.2015 | aa Cc[chm] D- Ee gg P- spsp | — | 12.12.2019 // 14.01.2020 | Stammbaum von Kentucky, Stammbaum von Stella Kids |
| Skarlett v.d. Kleinen Chaoten | 14.07.2013 | / +2018, Aa Cc[chm] DD ee uw[d]uw[d] PP spsp // Aa Cc[chm] DD ee uw[d]uw[d] PP spsp | — | 17.04.2016 // 2018 | Stammbaum von Vance |
## Mehrdeutige / unvollständige Einträge
@@ -105,7 +82,7 @@ Gleiches Tier (Name+Datum), aber widersprüchliche Angaben in verschiedenen Date
## Wahrscheinliche Zuordnungen unvollständiger Einträge
38 namenlose/datenlose Einträge tragen denselben Namen wie ein vollständiges Tier — vermutlich dasselbe Tier (zur Bestätigung):
39 namenlose/datenlose Einträge tragen denselben Namen wie ein vollständiges Tier — vermutlich dasselbe Tier (zur Bestätigung):
- „Oscar of Black Forest“ → Oscar of Black Forest (*12.06.2019)
- „Hagrid Rubeus of Black Forest“ → Hagrid Rubeus of Black Forest (*18.07.2019)
@@ -114,7 +91,7 @@ Gleiches Tier (Name+Datum), aber widersprüchliche Angaben in verschiedenen Date
- „Hagrid Rubeus of Black Forest“ → Hagrid Rubeus of Black Forest (*18.07.2019)
- „Charly of Golden Lights“ → Charly of Golden Lights (*05.04.2016)
- „Ziwa of Golden Lights“ → Ziwa of Golden Lights (*29.04.2016)
- „Chelsea von den Kleinen Chaoten“ → Chelsea von den Kleinen Chaoten (*02.04.2021); Chelsea von den Kleinen Chaoten (*15.10.2021)
- „Chelsea von den Kleinen Chaoten“ → Chelsea von den Kleinen Chaoten (*02.04.2021)
- „Pinto of Fiomi“ → Pinto of Fiomi (*28.08.2016)
- „Living Force's Idefix“ → Living Force's Idefix (*05.04.2016)
- „Scarlett of Samsimar“ → Scarlett of Samsimar (*05.09.2018)
@@ -137,6 +114,7 @@ Gleiches Tier (Name+Datum), aber widersprüchliche Angaben in verschiedenen Date
- „Zadar from Zeko i ptica, Croatia“ → Zadar from Zeko i ptica, Croatia (*12.04.2019)
- „Living Force's Vally“ → Living Force's Vally (*01.11.2014)
- „Pinto of Fiomi“ → Pinto of Fiomi (*28.08.2016)
- „Hanse Renner's Poseidon“ → Hanse Renner's Poseidon (*14.08.2014)
- „Oscar of Black Forest“ → Oscar of Black Forest (*12.06.2019)
- „Hagrid Rubeus of Black Forest“ → Hagrid Rubeus of Black Forest (*18.07.2019)
- „Lilo of LennyLengo“ → Lilo of LennyLengo (*04.11.2018)
@@ -152,29 +130,21 @@ Diese Tokens stehen weiter in `rawGenotype`/`unmappedTokens` — Entscheidung (M
| Token | Vorkommen | Bedeutung (Vermutung) |
|---|---|---|
| `[DP]` | 15 | Marker (Dunkelpigment?) |
| `[WFNZ]` | 13 | Marker |
| `DP` | 9 | Marker |
| `/+` | 8 | ? |
| `WP` | 7 | Marker |
| `Uwuw[d]` | 4 | 9. Locus Uw (nicht im Modell) |
| `/+` | 7 | ? |
| `-g` | 2 | ? |
| `C(C)` | 2 | Schreibweise (C trägt c) |
| `[WP]` | 2 | Marker |
| `chmchm` | 2 | Schreibweise (c[chm]c[chm]) |
| `Cc[]` | 1 | ? |
| `-psp` | 1 | ? |
| `G(G)` | 1 | ? |
| `UwUw` | 1 | 9. Locus Uw |
| `uw[d]uw[d]` | 1 | ? |
| `[DP` | 1 | ? |
| `/` | 1 | ? |
| `+2018` | 1 | ? |
| `chmchm` | 1 | Schreibweise (c[chm]c[chm]) |
| `c[chm]chm]` | 1 | ? |
| `Dea/dea]` | 1 | ? |
| `DD-Tumor` | 1 | ? |
| `bei` | 1 | ? |
| `Geschwistern` | 1 | ? |
| `C-D-` | 1 | ? |
| `Sls` | 1 | ? |
| `(hörend)` | 1 | ? |
| `-DD` | 1 | ? |
## Wurfchronik — Datenqualitäts-Hinweise

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@@ -0,0 +1,157 @@
"""Zero-dep tests for extract.py band-aware Farbschlag + name-bleed guard.
Run: python test_extract.py (exit 0 = all pass)
Covers (PEDIGREE-LINK / Julian-confirmed): deep pedigree bands (gen >= 2, cols K/N/Q...)
are Name/DOB/Genotype ONLY — no Farbschlag cell — so a stray health note or the next
block's name must NOT be captured as Farbschlag; early bands (gen 0-1) keep their real
Farbschlag. Plus the looks_like_animal_name guard (a parent name must not be a Farbschlag).
"""
import os
import sys
import zipfile
import tempfile
import extract as e
failed = 0
def check(name, cond):
global failed
print(("ok: " if cond else "FAIL: ") + name)
if not cond:
failed += 1
def _cell(ref, text):
return f'<c r="{ref}" t="inlineStr"><is><t>{text}</t></is></c>'
def _make_xlsx(path, cells):
"""cells: {(colLetter+row): text}. Build a minimal single-sheet xlsx (no styles)."""
rows = {}
for ref, text in cells.items():
r = int("".join(ch for ch in ref if ch.isdigit()))
rows.setdefault(r, []).append(_cell(ref, text))
body = "".join(f'<row r="{r}">{"".join(cs)}</row>' for r, cs in sorted(rows.items()))
sheet = ('<?xml version="1.0"?><worksheet xmlns="http://x"><sheetData>'
+ body + "</sheetData></worksheet>")
with zipfile.ZipFile(path, "w") as z:
z.writestr("xl/worksheets/sheet1.xml", sheet)
# --- band-aware Farbschlag ---
# col E = gen 0 (early, HAS Farbschlag); col K = col 11 = gen 2 (deep, NO Farbschlag).
tmp = os.path.join(tempfile.gettempdir(), "bandtest.xlsx")
_make_xlsx(tmp, {
# early band (E): Name / *DOB / Farbschlag / Genotype
"E10": "Chesnut",
"E11": "*13.11.2019",
"E12": "Kohlfuchsschimmel",
"E13": "aa CC DD ee GG PP spsp rere",
# deep band (K): Name / *DOB / Genotype / stray NOTE (must NOT become Farbschlag)
"K10": "DeepAnimal",
"K11": "*01.01.2020",
"K12": "aa CC DD EE GG PP spsp rere",
"K13": "DD-Tumor",
})
try:
animals = e.extract_stammbaum(tmp)
by_name = {a["name"]: a for a in animals}
check("early band keeps real Farbschlag",
by_name.get("Chesnut", {}).get("farbschlag") == "Kohlfuchsschimmel")
check("deep band has NO Farbschlag (note not grabbed)",
by_name.get("DeepAnimal", {}).get("farbschlag") == "")
check("deep-band animal still parsed (Name/DOB/Genotype)",
"DeepAnimal" in by_name and by_name["DeepAnimal"]["dob"].startswith("01.01"))
finally:
try: os.remove(tmp)
except OSError: pass
gen = e.gen_of
check("gen_of: early bands < 2 (E,H)", gen(5) < 2 and gen(8) < 2)
check("gen_of: deep bands >= 2 (K,N,Q)", gen(11) >= 2 and gen(14) >= 2)
# --- conflict-decisions consumption (HUMANQUESTION D / C6) ---
dec_path = os.path.join(tempfile.gettempdir(), "conflict-decisions-test.json")
import json as _json
_json.dump({"resolutions": [
{"name": "Firefly von den Kleinen Chaoten", "dob": "18.12.2019",
"decision": "D-locus = D-", "genotype": "Aa c[chm]c[chm] D- Ee Gg PP Spsp",
"source": "test"},
{"name": "Flint von den Kleinen Chaoten", "dob": "23.12.2017",
"decision": "Todesdatum 10.05.2021 (2022 war Tippfehler)", "dateOfDeath": "10.05.2021",
"source": "test"},
]}, open(dec_path, "w", encoding="utf-8"))
merged = [
{"id": "x1", "name": "Firefly von den Kleinen Chaoten", "dob": "18.12.2019",
"conflict": True, "farbschlag": "", "death": "",
"genotype": {"mapped8locus": {"D": ["D", "D"]}, "rawGenotype": "DD", "unmappedTokens": []}},
{"id": "x2", "name": "Flint von den Kleinen Chaoten", "dob": "23.12.2017",
"conflict": True, "farbschlag": "", "death": "10.05.2022",
"genotype": {"mapped8locus": {}, "rawGenotype": "", "unmappedTokens": []}},
]
conflicts = [{"id": "x1", "name": "Firefly von den Kleinen Chaoten", "dob": "18.12.2019"},
{"id": "x2", "name": "Flint von den Kleinen Chaoten", "dob": "23.12.2017"}]
n = e.apply_conflict_decisions(merged, conflicts, dec_path)
check("decision un-quarantines (conflict cleared)", merged[0]["conflict"] is False)
check("decision marks resolvedByDecision", merged[0].get("resolvedByDecision") is True)
check("decision genotype is authoritative (D- not DD)", merged[0]["genotype"]["mapped8locus"]["D"] == ["D", "?"])
check("decision dateOfDeath is authoritative (D5)", merged[1]["death"] == "10.05.2021")
check("decision removes both entries from conflicts list", conflicts == [])
check("apply_conflict_decisions returns resolved count", n == 2)
check("missing decisions file tolerated (returns 0)",
e.apply_conflict_decisions([], [], os.path.join(tempfile.gettempdir(), "does-not-exist.json")) == 0)
# --- correctDob: a wrong-birthdate duplicate is remapped BEFORE dedup so it merges ---
dec2 = os.path.join(tempfile.gettempdir(), "decisions-dob.json")
_json.dump({"resolutions": [
{"name": "Chelsea von den Kleinen Chaoten", "dob": "15.10.2021",
"decision": "duplicate wrong birthdate", "correctDob": "02.04.2021", "source": "test"},
]}, open(dec2, "w", encoding="utf-8"))
raw = [
{"name": "Chelsea von den Kleinen Chaoten", "dob": "15.10.2021"}, # the wrong-dob duplicate
{"name": "Chelsea von den Kleinen Chaoten", "dob": "02.04.2021"}, # canonical
{"name": "Other Animal", "dob": "01.01.2020"},
]
rn = e.apply_dob_remaps(raw, dec2)
check("correctDob remaps the wrong-dob record", raw[0]["dob"] == "02.04.2021")
check("correctDob leaves the canonical record alone", raw[1]["dob"] == "02.04.2021")
check("correctDob leaves unrelated records alone", raw[2]["dob"] == "01.01.2020")
check("apply_dob_remaps returns remap count", rn == 1)
check("after remap both Chelsea share one dedup identity (name+dob)",
e.norm_dob(raw[0]["dob"]) == e.norm_dob(raw[1]["dob"]))
check("missing decisions file tolerated for dob remaps (returns 0)",
e.apply_dob_remaps([], os.path.join(tempfile.gettempdir(), "nope.json")) == 0)
try: os.remove(dec2)
except OSError: pass
try: os.remove(dec_path)
except OSError: pass
# --- "presence wins" conflict rule (Julian) ---
# present-vs-absent (whole locus or [f] modifier) is NOT a conflict; differing filled values are.
check("spsp present vs locus absent -> no conflict",
not e._genotype_conflict([{"Sp": ["sp", "sp"]}, {}]))
check("ee[f] vs ee ([f] modifier present/absent) -> no conflict",
not e._genotype_conflict([{"E": ["e", "e^f"]}, {"E": ["e", "e"]}]))
check("DD vs D- (unknown vs filled) -> conflict",
e._genotype_conflict([{"D": ["D", "D"]}, {"D": ["D", "?"]}]))
check("Ee vs ee (different base allele) -> conflict",
e._genotype_conflict([{"E": ["E", "e"]}, {"E": ["e", "e"]}]))
check("C- vs Cc[h] -> conflict",
e._genotype_conflict([{"C": ["C", "?"]}, {"C": ["C", "c^h"]}]))
check("c[h] vs c[chm] (different modifiers) -> conflict",
not e._alleles_compatible("c^h", "c^chm"))
check("identical genotypes -> no conflict",
not e._genotype_conflict([{"A": ["A", "a"]}, {"A": ["A", "a"]}]))
# --- name-bleed guard (a parent name is not a Farbschlag) ---
check("v.d. name rejected", e.looks_like_animal_name("Tennessee von den Kleinen Chaoten"))
check("gen.+v.d. name rejected", e.looks_like_animal_name("Victoria Welby gen. Welby v.d. Kleinen Chaoten"))
check("real Farbschlag accepted", not e.looks_like_animal_name("Kohlfuchsschimmel"))
check("real Farbschlag accepted 2", not e.looks_like_animal_name("Orangeschimmel, hell"))
if failed:
print(f"\n{failed} test(s) FAILED")
sys.exit(1)
print("\nALL PASS")

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@@ -0,0 +1,71 @@
"""Zero-dep tests for genotype.py GEN-3b normalization.
Run: python test_genotype.py (exit 0 = all pass)
Covers: Uw/uw -> G/g alias, Sls/WP second spotting locus, dea/Dea/taub
hearing-deaf flag, WFNZ/RV/GV/DP provenance tags. Per hive/agents/god/GENETIK-notation.md.
"""
import sys
import genotype as g
def check(name, cond):
if not cond:
print(f"FAIL: {name}")
check.failed += 1
else:
print(f"ok: {name}")
check.failed = 0
# --- Uw/uw == G/g (same locus) ---
r = g.parse("aa Cc Dd Ee Uwuw Pp spsp rere")
check("Uw->G: G locus mapped", r["mapped8locus"].get("G") == ["G", "g"])
check("Uw->G: nothing left in unmapped", r["unmappedTokens"] == [])
r = g.parse("UwUw")
check("UwUw -> GG", r["mapped8locus"].get("G") == ["G", "G"])
r = g.parse("uwuw")
check("uwuw -> gg", r["mapped8locus"].get("G") == ["g", "g"])
r = g.parse("uw[d]uw[d]")
check("uw[d]uw[d] -> gg (dense underwhite)", r["mapped8locus"].get("G") == ["g", "g"])
# Gg and Uwuw must produce the SAME mapped locus (so they stop being a conflict)
check("Gg identical to Uwuw at G locus",
g.parse("Gg")["mapped8locus"]["G"] == g.parse("Uwuw")["mapped8locus"]["G"])
# --- Sls / WP second spotting locus ---
check("WP -> Sls het", g.parse("WP")["mapped8locus"].get("Sls") == ["Sl", "sl"])
check("[WP] (bracketed) -> Sls het", g.parse("[WP]")["mapped8locus"].get("Sls") == ["Sl", "sl"])
check("Sls token -> Sls het", g.parse("Sls")["mapped8locus"].get("Sls") == ["Sl", "sl"])
check("sls -> Sls wild", g.parse("sls")["mapped8locus"].get("Sls") == ["sl", "sl"])
check("S(l)s(l) -> Sl,sl", g.parse("S(l)s(l)")["mapped8locus"].get("Sls") == ["Sl", "sl"])
# Sp and Sls are TWO distinct loci on the same animal (Superschecke)
r = g.parse("spsp WP")
check("Sp + Sls coexist (two spotting loci)",
r["mapped8locus"].get("Sp") == ["sp", "sp"] and r["mapped8locus"].get("Sls") == ["Sl", "sl"])
# --- deafness flag (after spsp), case-sensitive ---
check("dea (lower) -> deaf True", g.parse("spsp dea")["deaf"] is True)
check("taub -> deaf True", g.parse("taub")["deaf"] is True)
check("Dea (upper) -> hearing False", g.parse("spsp Dea")["deaf"] is False)
check("(hörend) -> hearing False", g.parse("(hörend)")["deaf"] is False)
check("no deaf token -> None", g.parse("aa Cc")["deaf"] is None)
# deafness is NOT a genotype locus and must not pollute mapped/unmapped silently
check("deaf flag not in unmapped", "dea" not in g.parse("spsp dea")["unmappedTokens"])
# --- provenance / breeding tags (never genotype, never conflict) ---
check("WFNZ -> tag", g.parse("aa WFNZ")["tags"] == ["WFNZ"])
check("RV -> tag", g.parse("(RV)")["tags"] == ["RV"])
check("GV -> tag", g.parse("(GV)")["tags"] == ["GV"])
check("DP -> tag", g.parse("[DP]")["tags"] == ["DP"])
check("tag not in genotype loci", g.parse("WFNZ")["mapped8locus"] == {})
check("tag not in unmapped", g.parse("aa WFNZ")["unmappedTokens"] == [])
# --- looks_like_genotype recognizes Uw-bearing cells ---
check("looks_like_genotype sees Uw as G",
g.looks_like_genotype("aa Cc Uwuw") is True)
if check.failed:
print(f"\n{check.failed} test(s) FAILED")
sys.exit(1)
print("\nALL PASS")

View File

@@ -78,6 +78,46 @@ def read_cells(z, sheet_path, ss=None):
return cells
def cell_fill_sex(z, sheet_path):
"""{(colnum, row): 'male' | 'female'} from the cell's box fill colour.
Breeder convention (Julian, 2026-06-06): a BLUE box = männlich (male), a WHITE box =
weiblich (female). In these Stammbaum templates every coloured box uses one solid theme
fill (Office accent5 = blue); unfilled/none cells render white. So: a cell whose style
uses a real solid fill -> 'male'; an unfilled (none/gray125) cell -> 'female'.
"""
try:
st = z.read("xl/styles.xml").decode("utf-8")
except KeyError:
return {}
fills = re.search(r"<fills.*?</fills>", st, re.S)
colored = set()
if fills:
for i, fb in enumerate(re.findall(r"<fill>(.*?)</fill>", fills.group(0), re.S)):
if 'patternType="solid"' in fb and re.search(r"<fgColor\s", fb) and "gray125" not in fb:
colored.add(i) # fillId of a real solid colour (blue)
xfs = re.search(r"<cellXfs.*?</cellXfs>", st, re.S)
idx2fill = {}
if xfs:
for i, xf in enumerate(re.findall(r"<xf\b([^>]*?)/?>", xfs.group(0))):
m = re.search(r'fillId="(\d+)"', xf)
idx2fill[i] = int(m.group(1)) if m else 0
raw = z.read(sheet_path).decode("utf-8")
out = {}
for m in re.finditer(r"<c\s+([^>]*?)>", raw):
a = dict(_ATTR.findall(m.group(1)))
ref = a.get("r")
if not ref:
continue
mm = re.match(r"([A-Z]+)(\d+)", ref)
if not mm:
continue
s = int(a.get("s", "0"))
out[(col_to_num(mm.group(1)), int(mm.group(2)))] = (
"male" if idx2fill.get(s, 0) in colored else "female")
return out
def header_row(cells):
"""Return {colnum: header_text} for the topmost row that has text."""
if not cells: