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18 Commits

Author SHA1 Message Date
efce79b3fa GEN-3g: CP colourpoint het-naming rule — '-Hell' == cchm/ch (breeder C9 answer)
- colourpointName(): A- cchm/ch now yields 'CP-<base>-Hell' (was 'CP-<base>');
  A- cchm/cchm unchanged. Non-agouti branch (Marder/Siam/Zobel/Zobel-Hell)
  unchanged — already used the het token.
- Added 5 new catalog entries: CP-Agouti-Hell, CP-Silberagouti-Hell,
  CP-Algierfuchs-Hell, CP-Polarfuchs-Hell, CP-Orangeschimmel-Hell.
  CP-Fuchs-Hell was already present. Catalog 61 -> 66.
- Regenerated colorVarietySeed.generated.json (66 rows for Pam DATA-2 re-seed).
- Tests: 82 -> 82 (reworded het case) + 1 new GEN-3g describe block. All pass.

Co-Authored-By: Claude Sonnet 4.6 (1M context) <noreply@anthropic.com>
2026-06-06 15:14:23 +02:00
13eb17b453 docs(HUMANQUESTION): C6-Status praezisiert - 27 von 32 Konflikten geklaert, nur D6 (5 Tiere) offen; review-report nach IMPORT-POLISH-Re-Extract (Konflikte 5)
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2026-06-06 15:06:20 +02:00
9ed68ba38a Merge feature/import-polish: decision-matching (name,zucht,dob), specific-wins dedup, parent-FK-backfill (DB-weit via allDbNormToGid), Skarlett-Parse-Fix [god-QA validated]
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2026-06-06 15:04:41 +02:00
dfcd296119 IMPORT-POLISH v2: 3 Korrekturen nach god-Review
FIX-1 ZUCHT: apply_conflict_decisions/apply_dob_remaps matchen jetzt
auf das VOLLE canon_pair-Tupel (nameCanon, zuchtCanon, dob) wenn die
Decision eine Zucht traegt; Fallback name-only wenn keine Zucht.
C3-Regel gewahrt: gleicher Name+DOB, andere Zucht -> kein Hit.
Neuer Regression-Test: Luna ZdkC-Decision trifft nur luna-kc,
nicht luna-bf (andere Zucht).

FIX-2 MERGE: dedup() waehlt das spezifischste Genotyp (fewest '?'
alleles) als sekundaeren Tiebreaker nach locus-count. CC schlaegt C-,
Gg schlaegt G- unabhaengig von der Reihenfolge. 3 neue Merge-Tests
(C- first/CC first/G-vsGg).

FIX-3 BACKFILL allDbNormToGid: ResolveParentForBackfill prueft jetzt
BEIDE Quellen: (a) createdAnimalByName (aktiver Lauf) und
(b) allDbNormToGid (alle DB-Tiere). Decktt den kritischen Fall:
Elterntier in fruehrem Lauf geladen, in diesem Lauf absent vom
Extract. Neuer 3-Lauf-SQLite-Test: Lauf 1 null-Vater, Lauf 2 laedt
Vater, Lauf 3 backfillt via allDbNormToGid.

Gate: 125/125 C#-Tests, Python ALL PASS, has-pending-model-changes=No.

Co-Authored-By: Claude Sonnet 4.6 (1M context) <noreply@anthropic.com>
2026-06-06 15:03:17 +02:00
db85a6e0dc docs(HUMANQUESTION): C9 beantwortet - 'hell' im Farbschlag-Namen = c[h]-Allel (cchm/ch), ohne = cchm/cchm; CP-Fuchs ist Sammelbegriff (Phaenotyp schneeweiss/schwarzaeugig, Loci unbekannt) -> GEN-3g beauftragt
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2026-06-06 14:53:39 +02:00
0c94cfcbf1 IMPORT-POLISH: 4 Importer-Fixes nach Re-Import #2
FIX-1 decision-matching: apply_conflict_decisions/apply_dob_remaps
nutzen jetzt canon_pair(name)[0] als Match-Key (Dedup-Identitaet:
call-name ohne Zucht, v.d.<->von den gefaltet). Workaround-Spelling
v.d. in Victoria Welbys Decision bleibt erhalten; beide Formen
matchen jetzt. Kommentar im decision-Eintrag aktualisiert.

FIX-2 specific-wins: _alleles_compatible aendert '? vs x = False'
-> '? vs x = True' (spezifischer Wert gewinnt). C- vs CC, G- vs Gg,
P? vs PP sind kein Konflikt mehr. Echte Wert-Widersprueche (DD vs Dd,
Ee vs ee, PP vs Pp) bleiben Konflikte. Loest Enya, Ella, Zac
automatisch (Konflikte 8->5 erwartet). 2 bestehende Tests angepasst,
7 neue Tests.

FIX-3 parent-FK backfill: nach dem Wurfchronik-Rueckverknuepfungs-
Block iteriert ImportService.RunAsync ueber bereits importierte
Wuerfe mit null Father/MotherId und setzt fehlende FKs wenn das
Elterntier jetzt ladbar ist. Trockenlauf zaehlt, Execute schreibt.
LitterSummary.ParentFksBackfilled + 2 neue C#-Tests (SQLite).

FIX-4 Skarlett-Artefakt: parse_detail() strippt trailing / +YEAR
aus dem Genotyp-Tail (re.sub). Sterbejahr bleibt als death-Date
erhalten -> Skarlett erscheint als reiner Sterbedatum-Konflikt.
2 neue Python-Tests.

Gate: 124/124 C#-Tests, Python test_extract/test_genotype ALL PASS,
has-pending-model-changes = No.

Co-Authored-By: Claude Sonnet 4.6 (1M context) <noreply@anthropic.com>
2026-06-06 14:53:27 +02:00
5eadd89bb6 REIMPORT-2: Victoria-Welby-Entscheidung greift (v.d.-Schreibweise als Workaround fuer norm_name-Matching), Re-Import #2 ausgefuehrt (+13 Tiere/+31 Wuerfe/+9 Fotos, C hat beide Eltern); HUMANQUESTION D6 = letzte 5 offene Konflikte
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2026-06-06 14:31:14 +02:00
f9a68deb7a Merge feature/web-3: lokale Webseiten-Vorschau (GET /api/preview/{**path} + /webseite/vorschau iframe-Vorschau mit Geraete-Umschalter) [god-QA validated]
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2026-06-06 14:22:31 +02:00
a693095886 ... 2026-06-06 13:38:03 +02:00
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
16 changed files with 727 additions and 151 deletions

View File

@@ -321,6 +321,192 @@ namespace GerbilManager.Tests
Assert.Equal("aa Ccchm ?? eef ?? ?? ?? ??", ImportService.ComposeGenotype(g)); Assert.Equal("aa Ccchm ?? eef ?? ?? ?? ??", ImportService.ComposeGenotype(g));
} }
[Fact]
public async Task ParentFkBackfill_fills_null_litter_parent_on_reimport()
{
// Run 1: litter "Wurf A" has sire "Vater" (conflict=true — not loaded) and dam "Mutter"
// (conflict=false — loaded). After run 1: litter.FatherId = null.
// Run 2: sire "Vater" now conflict=false → loaded as NEW in run 2. Backfill via
// createdAnimalByName sets FatherId. (god steering point 3: run-2 path.)
var dir = Path.Combine(Path.GetTempPath(), "backfill-" + Guid.NewGuid().ToString("N"));
Directory.CreateDirectory(dir);
using var conn = new SqliteConnection("DataSource=:memory:");
conn.Open();
try
{
var littersJson = """
[{"id":"L-A","litterId":"A","date":"01.05.2023","damName":"Mutter [ZdkC]","sireName":"Vater [ZdkC]","totalBorn":3,"zuchtnummer":"","note":""}]
""";
// Run 1: Vater is in conflict -> not loaded
var animals1 = """
[
{"id":"mutter","name":"Mutter [ZdkC]","dob":"01.01.2021","death":"","farbschlag":"","gender":"female","zuchtCanon":"kleinechaote",
"genotype":{"mapped8locus":{},"rawGenotype":"","unmappedTokens":[]},"conflict":false},
{"id":"vater","name":"Vater [ZdkC]","dob":"02.02.2021","death":"","farbschlag":"","gender":"male","zuchtCanon":"kleinechaote",
"genotype":{"mapped8locus":{},"rawGenotype":"","unmappedTokens":[]},"conflict":true},
{"id":"kind","name":"Kind [ZdkC]","dob":"01.05.2023","death":"","farbschlag":"","gender":null,"zuchtCanon":"kleinechaote",
"genotype":{"mapped8locus":{},"rawGenotype":"","unmappedTokens":[]},"conflict":false,
"litterRef":{"litterId":"L-A","method":"geburtsdatum+eltern","confidence":"hoch"}}
]
""";
File.WriteAllText(Path.Combine(dir, "litters.json"), littersJson);
File.WriteAllText(Path.Combine(dir, "animals.json"), animals1);
var opts = new DbContextOptionsBuilder<ApplicationContext>().UseSqlite(conn).Options;
using var db = new ApplicationContext(opts);
await db.Database.EnsureCreatedAsync();
var report1 = await new ImportService(db, dir, dir).RunAsync(execute: true);
Assert.Equal(0, report1.Litters.ParentFksBackfilled);
var litter1 = await db.Litters.SingleAsync(l => l.Name == "Wurf A");
Assert.Null(litter1.FatherId); // Vater was quarantined -> null FK
Assert.NotNull(litter1.MotherId); // Mutter was loaded -> set
// Run 2: Vater now conflict=false -> loaded as NEW animal in this run
var animals2 = """
[
{"id":"mutter","name":"Mutter [ZdkC]","dob":"01.01.2021","death":"","farbschlag":"","gender":"female","zuchtCanon":"kleinechaote",
"genotype":{"mapped8locus":{},"rawGenotype":"","unmappedTokens":[]},"conflict":false},
{"id":"vater","name":"Vater [ZdkC]","dob":"02.02.2021","death":"","farbschlag":"","gender":"male","zuchtCanon":"kleinechaote",
"genotype":{"mapped8locus":{},"rawGenotype":"","unmappedTokens":[]},"conflict":false},
{"id":"kind","name":"Kind [ZdkC]","dob":"01.05.2023","death":"","farbschlag":"","gender":null,"zuchtCanon":"kleinechaote",
"genotype":{"mapped8locus":{},"rawGenotype":"","unmappedTokens":[]},"conflict":false,
"litterRef":{"litterId":"L-A","method":"geburtsdatum+eltern","confidence":"hoch"}}
]
""";
File.WriteAllText(Path.Combine(dir, "animals.json"), animals2);
var report2 = await new ImportService(db, dir, dir).RunAsync(execute: true);
Assert.Equal(1, report2.Litters.ParentFksBackfilled); // backfill happened
var vater = await db.Gerbils.SingleAsync(g => g.ExternalRef == "vater");
var litter2 = await db.Litters.SingleAsync(l => l.Name == "Wurf A");
Assert.Equal(vater.Id, litter2.FatherId); // FK now set
}
finally
{
try { Directory.Delete(dir, recursive: true); } catch { }
}
}
[Fact]
public async Task ParentFkBackfill_uses_allDb_lookup_when_parent_not_in_current_loadable()
{
// god steering point 3: the main case — parent was loaded in a PREVIOUS run (not in
// the current run's animals.json at all). Backfill must find them via allDbNormToGid.
//
// Run 1: litter "Wurf C" + dam loaded, sire quarantined -> FatherId null.
// Run 2: sire loaded (new animal).
// Run 3: animals.json has ONLY the kind (sire absent from extract). Sire is in DB
// from run 2 but NOT in the current run's loadable/createdAnimalByName.
// Backfill must use allDbNormToGid to find him.
var dir = Path.Combine(Path.GetTempPath(), "backfill-db-" + Guid.NewGuid().ToString("N"));
Directory.CreateDirectory(dir);
using var conn = new SqliteConnection("DataSource=:memory:");
conn.Open();
try
{
var littersJson = """
[{"id":"L-C","litterId":"C","date":"10.06.2023","damName":"Dame [ZdkC]","sireName":"Herr [ZdkC]","totalBorn":2,"zuchtnummer":"","note":""}]
""";
// Run 1: sire quarantined
File.WriteAllText(Path.Combine(dir, "litters.json"), littersJson);
File.WriteAllText(Path.Combine(dir, "animals.json"), """
[
{"id":"dame","name":"Dame [ZdkC]","dob":"05.05.2021","death":"","farbschlag":"","gender":"female","zuchtCanon":"kleinechaote",
"genotype":{"mapped8locus":{},"rawGenotype":"","unmappedTokens":[]},"conflict":false},
{"id":"herr","name":"Herr [ZdkC]","dob":"06.06.2021","death":"","farbschlag":"","gender":"male","zuchtCanon":"kleinechaote",
"genotype":{"mapped8locus":{},"rawGenotype":"","unmappedTokens":[]},"conflict":true}
]
""");
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);
Assert.Null((await db.Litters.SingleAsync(l => l.Name == "Wurf C")).FatherId);
// Run 2: sire now loaded
File.WriteAllText(Path.Combine(dir, "animals.json"), """
[
{"id":"dame","name":"Dame [ZdkC]","dob":"05.05.2021","death":"","farbschlag":"","gender":"female","zuchtCanon":"kleinechaote",
"genotype":{"mapped8locus":{},"rawGenotype":"","unmappedTokens":[]},"conflict":false},
{"id":"herr","name":"Herr [ZdkC]","dob":"06.06.2021","death":"","farbschlag":"","gender":"male","zuchtCanon":"kleinechaote",
"genotype":{"mapped8locus":{},"rawGenotype":"","unmappedTokens":[]},"conflict":false}
]
""");
await new ImportService(db, dir, dir).RunAsync(execute: true);
var herrId = (await db.Gerbils.SingleAsync(g => g.ExternalRef == "herr")).Id;
// Run 2 itself may or may not backfill (depends on name normalization alignment).
// For the test we care about run 3.
// Run 3: sire NOT in animals.json at all (absent from new extract).
// litter still has FatherId=null if run 2 didn't backfill; if it did, we simulate
// by manually resetting FatherId to null so run 3 must fix it.
var litter3 = await db.Litters.SingleAsync(l => l.Name == "Wurf C");
litter3.FatherId = null;
await db.SaveChangesAsync();
File.WriteAllText(Path.Combine(dir, "animals.json"), """
[
{"id":"dame","name":"Dame [ZdkC]","dob":"05.05.2021","death":"","farbschlag":"","gender":"female","zuchtCanon":"kleinechaote",
"genotype":{"mapped8locus":{},"rawGenotype":"","unmappedTokens":[]},"conflict":false}
]
""");
// Run 3: sire absent from loadable (NOT in createdAnimalByName), but IS in DB.
var report3 = await new ImportService(db, dir, dir).RunAsync(execute: true);
Assert.Equal(1, report3.Litters.ParentFksBackfilled); // allDbNormToGid path
var litter3After = await db.Litters.SingleAsync(l => l.Name == "Wurf C");
Assert.Equal(herrId, litter3After.FatherId); // FK set from DB lookup
}
finally
{
try { Directory.Delete(dir, recursive: true); } catch { }
}
}
[Fact]
public async Task ParentFkBackfill_dry_run_counts_without_writing()
{
// Dry-run on a DB with an existing null-parent litter should predict the backfill count.
var dir = Path.Combine(Path.GetTempPath(), "backfill-dr-" + Guid.NewGuid().ToString("N"));
Directory.CreateDirectory(dir);
using var conn = new SqliteConnection("DataSource=:memory:");
conn.Open();
try
{
var littersJson = """
[{"id":"L-B","litterId":"B","date":"15.06.2023","damName":"Mami [ZdkC]","sireName":"Papi [ZdkC]","totalBorn":2,"zuchtnummer":"","note":""}]
""";
var animals1 = """
[
{"id":"mami","name":"Mami [ZdkC]","dob":"03.03.2021","death":"","farbschlag":"","gender":"female","zuchtCanon":"kleinechaote",
"genotype":{"mapped8locus":{},"rawGenotype":"","unmappedTokens":[]},"conflict":false},
{"id":"papi","name":"Papi [ZdkC]","dob":"04.04.2021","death":"","farbschlag":"","gender":"male","zuchtCanon":"kleinechaote",
"genotype":{"mapped8locus":{},"rawGenotype":"","unmappedTokens":[]},"conflict":true}
]
""";
File.WriteAllText(Path.Combine(dir, "litters.json"), littersJson);
File.WriteAllText(Path.Combine(dir, "animals.json"), animals1);
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); // run 1
// Run 2 dry-run with papi un-quarantined
var animals2 = animals1.Replace("\"conflict\":true", "\"conflict\":false");
File.WriteAllText(Path.Combine(dir, "animals.json"), animals2);
var dry = await new ImportService(db, dir, dir).RunAsync(execute: false);
Assert.Equal(1, dry.Litters.ParentFksBackfilled); // predicted but not written
var litter = await db.Litters.SingleAsync(l => l.Name == "Wurf B");
Assert.Null(litter.FatherId); // not written in dry-run
}
finally
{
try { Directory.Delete(dir, recursive: true); } catch { }
}
}
[Theory] [Theory]
[InlineData("01.02.2020", 2020, 2, 1)] [InlineData("01.02.2020", 2020, 2, 1)]
[InlineData("5.3.21", 2021, 3, 5)] [InlineData("5.3.21", 2021, 3, 5)]

View File

@@ -86,7 +86,8 @@ namespace GerbilManagerWebAPI.Import
public sealed record ResidencySummary(int Resident, int External, int FlippedByParentRule); public sealed record ResidencySummary(int Resident, int External, int FlippedByParentRule);
public sealed record LitterSummary(int InSource, int Created, int AlreadyImported, public sealed record LitterSummary(int InSource, int Created, int AlreadyImported,
int DerivedFromChart = 0, int DerivedSkipped = 0, int ParentFksDropped = 0); int DerivedFromChart = 0, int DerivedSkipped = 0, int ParentFksDropped = 0,
int ParentFksBackfilled = 0);
public sealed record AnimalSummary( public sealed record AnimalSummary(
int InSource, int InSource,

View File

@@ -399,10 +399,67 @@ namespace GerbilManagerWebAPI.Import
await _db.SaveChangesAsync(); await _db.SaveChangesAsync();
} }
// PARENT-FK BACKFILL (idempotent re-run): already-imported Wurfchronik litters that
// have null Father/MotherId because the parent was previously quarantined may now be
// resolvable. Two lookup sources — must check BOTH:
// (a) createdAnimalByName: animals loaded/re-linked in THIS run (new or existing).
// (b) allDbNormToGid: ALL gerbils already in the DB, for parents loaded in an
// EARLIER run who are no longer in the current extract (e.g. alreadyImported
// animals absent from this run's animals.json, or name normalization mismatch
// between animals.json and the Wurfchronik sire/dam field).
// Counted for dry-run too; writes only when execute=true.
int parentFksBackfilled = 0;
{
// Build DB-wide normalized-name lookup (supplementary to createdAnimalByName).
var allDbNormToGid = existingRows
.GroupBy(g => Normalize(StripZucht(g.Name)))
.ToDictionary(grp => grp.Key, grp => grp.First().Id);
var existingWithNullParent = await _db.Litters
.Where(l => l.FatherId == null || l.MotherId == null)
.Select(l => new { l.Id, l.Name, l.FatherId, l.MotherId })
.ToListAsync();
var sourceByName = litters
.GroupBy(sl => $"Wurf {sl.LitterId}".Trim())
.ToDictionary(g => g.Key, g => g.First());
Guid? ResolveParentForBackfill(string rawName)
{
var n = Normalize(StripZucht(rawName));
if (n.Length == 0) return null;
if (createdAnimalByName.TryGetValue(n, out var fromLoadable) && persisted.Contains(fromLoadable))
return fromLoadable;
if (allDbNormToGid.TryGetValue(n, out var fromDb) && persisted.Contains(fromDb))
return fromDb;
return null;
}
foreach (var el in existingWithNullParent)
{
if (!sourceByName.TryGetValue(el.Name, out var sl)) continue;
var newF = el.FatherId == null ? ResolveParentForBackfill(sl.SireName) : null;
var newM = el.MotherId == null ? ResolveParentForBackfill(sl.DamName) : null;
if (newF is null && newM is null) continue;
parentFksBackfilled++;
if (execute)
{
var row = await _db.Litters.FirstOrDefaultAsync(l => l.Id == el.Id);
if (row is not null)
{
if (newF is not null) row.FatherId = newF;
if (newM is not null) row.MotherId = newM;
}
}
}
if (execute && parentFksBackfilled > 0) await _db.SaveChangesAsync();
}
notes.Add("Quarantäne (kein Import): Konflikte + Stubs ohne Geburtsdatum + unsichere Wurf-Zuordnungen — warten auf die Prüfung durch die Züchterin."); notes.Add("Quarantäne (kein Import): Konflikte + Stubs ohne Geburtsdatum + unsichere Wurf-Zuordnungen — warten auf die Prüfung durch die Züchterin.");
if (parentLinksAdded > 0) if (parentLinksAdded > 0)
notes.Add($"Stammbaum-Diagramm: {parentLinksAdded} Tiere über Eltern-Verknüpfung einem (abgeleiteten) Wurf zugeordnet ({derivedLitters} abgeleitete Würfe)."); 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($"FK-Integrität: {litterParentFksDropped} Eltern-Verknüpfung(en) verworfen (Elternteil nicht ladbar), {derivedLittersSkipped} abgeleitete Würfe übersprungen (kein ladbares Elternteil). Bei 0/0 ist /import/execute FK-sicher.");
if (parentFksBackfilled > 0)
notes.Add($"Parent-FK-Backfill: {parentFksBackfilled} bereits importierte Würfe haben jetzt eine Eltern-Verknüpfung (Elternteil war zuvor in Quarantäne, jetzt geladen).");
notes.Add($"Bestand/Herkunft: {residentTotal} im Bestand (Clan Kleine Chaoten), {externalTotal} externe Ahnen ({flippedByParentRule} davon über die Eltern-Regel als Bestand erkannt)."); notes.Add($"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); int conflictsResolvedByDecision = loadable.Count(a => a.ResolvedByDecision);
if (conflictsResolvedByDecision > 0) if (conflictsResolvedByDecision > 0)
@@ -411,7 +468,7 @@ namespace GerbilManagerWebAPI.Import
return new ImportReport( return new ImportReport(
Executed: execute, Executed: execute,
Litters: new LitterSummary(litters.Count, littersCreated, littersExisting, derivedLitters, derivedLittersSkipped, litterParentFksDropped), Litters: new LitterSummary(litters.Count, littersCreated, littersExisting, derivedLitters, derivedLittersSkipped, litterParentFksDropped, parentFksBackfilled),
Animals: new AnimalSummary( Animals: new AnimalSummary(
animals.Count, animalsCreated, linked, fbMatched, fbUnmatched, animalsExisting, animals.Count, animalsCreated, linked, fbMatched, fbUnmatched, animalsExisting,
new QuarantineSummary(conflicts, stubs, dateOnly, ambiguous, conflicts + stubs), new QuarantineSummary(conflicts, stubs, dateOnly, ambiguous, conflicts + stubs),

View File

@@ -49,10 +49,10 @@ gelisteten Konflikt-Tiere + Tiere mit Sonder-Kürzeln warten in Quarantäne —
| ~~C3~~ | ✅ **BEANTWORTET** (2026-06-06): Ja, automatisch zusammenführen — **aber nur wenn auch der Zuchtname gleich ist** (Name + Geburtsdatum + Zuchtname = dasselbe Tier). Wird in die Dedup-Regel eingebaut. (Hinweis: der Extraktor fand bisher 0 Fälle mit gleichem Name+Datum aber verschiedenem Zuchtnamen, also ändert sich an den bestehenden Zusammenführungen nichts — die Regel ist die Absicherung.) | — erledigt | | ~~C3~~ | ✅ **BEANTWORTET** (2026-06-06): Ja, automatisch zusammenführen — **aber nur wenn auch der Zuchtname gleich ist** (Name + Geburtsdatum + Zuchtname = dasselbe Tier). Wird in die Dedup-Regel eingebaut. (Hinweis: der Extraktor fand bisher 0 Fälle mit gleichem Name+Datum aber verschiedenem Zuchtnamen, also ändert sich an den bestehenden Zusammenführungen nichts — die Regel ist die Absicherung.) | — erledigt |
| ~~C4~~ | ✅ **BEANTWORTET** (2026-06-06): Ja, **Wurfchronik Teil 2 existiert** — wird gerade überarbeitet, kommt später. Der Importer ist pro Datei wiederholbar (idempotent), also einfach die Datei schicken, sobald fertig → Michael importiert sie nach (keine Doppelungen). | ⏳ Datei folgt, wenn überarbeitet | | ~~C4~~ | ✅ **BEANTWORTET** (2026-06-06): Ja, **Wurfchronik Teil 2 existiert** — wird gerade überarbeitet, kommt später. Der Importer ist pro Datei wiederholbar (idempotent), also einfach die Datei schicken, sobald fertig → Michael importiert sie nach (keine Doppelungen). | ⏳ Datei folgt, wenn überarbeitet |
| ~~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 | | ~~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 | | C6 | **FAST ERLEDIGT** (Stand 06.06. nachmittags): von den ursprünglich 32 Konflikt-Tieren sind **27 geklärt + geladen** (deine D1D5-Antworten + Beibehalten-Regel + „genauer gewinnt"-Regel). **Offen sind nur noch die 5 Tiere in D6**: Hanami (Sterbedatum), Big Ben (PP↔Pp), Vance Jr. (Spsp↔spsp), Kazu (3 Loci), Skarlett (Sterbedatum). | nur diese 5 warten noch auf den Import |
| C7 | *(optional)* Was hat dir bei **Renner Pro** gefehlt? Lieblings-Auswertungen? | mögliche neue Funktionen | | C7 | *(optional)* Was hat dir bei **Renner Pro** gefehlt? Lieblings-Auswertungen? | mögliche neue Funktionen |
| C8 | **„Himalaya" vs. „Hermelin":** Du hast gesagt `c[h]c[h]` = **Hermelin**. In unserem Katalog gibt es aktuell ZWEI Farben mit `c[h]c[h]`: **Hermelin** (`aa c[h]c[h]`, nicht-agouti) und **Himalaya** (`A- c[h]c[h]`, agouti). Gibt es bei dir „Himalaya" überhaupt, oder ist **alles** mit `c[h]c[h]` einfach **Hermelin** (dann nehmen wir „Himalaya" raus, wie bei Schwarzschimmel)? | Farbschlag-Katalog (Himalaya behalten oder entfernen) | | ~~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) | | ~~C9~~ | ✅ **BEANTWORTET** (2026-06-06): **„CP-Fuchs" ist ein Sammelbegriff** — bei diesen Tieren ist unklar, ob es CP-Polarfuchs, CP-Algierfuchs, CP-Kohlfuchs oder CP-Blaufuchs ist (Tiere sind schneeweiß mit schwarzen Augen; Verpaarungen haben die Gene nicht verraten). Bekannt ist nur: **„CP-Fuchs" = `c[chm]c[chm]`**, **„CP-Fuchs hell" = `c[chm]c[h]`**. **Generelle Regel: das Wort „hell" im Farbschlag-Namen bedeutet immer, dass ein `c[h]` im Gencode steckt** (also `c[chm]c[h]`); ohne „hell" = `c[chm]c[chm]`. Die „-Hell"-Vermutung war richtig ✓; Engine-Update beauftragt (GEN-3g): bei unbekannten Unterscheidungs-Loci bleibt der Sammelbegriff „CP-Fuchs" korrekt. — erledigt |
### Hinweis zu C5 — woher kam das falsche „Schwarzschimmel"? (wie gewünscht notiert) ### 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.)* „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.)*
@@ -61,6 +61,8 @@ gelisteten Konflikt-Tiere + Tiere mit Sonder-Kürzeln warten in Quarantäne —
## D. Die 32 Konflikt-Tiere (gleicher Name + Datum, aber widersprüchliche Angaben in mehreren Dateien) ## D. Die 32 Konflikt-Tiere (gleicher Name + Datum, aber widersprüchliche Angaben in mehreren Dateien)
> ✅ **STAND nach Re-Import #2 (06.06.2026):** Alle bisher beantworteten Konflikte sind **live geladen** (+13 Tiere, +31 Würfe, +9 Fotos — u. a. Victoria Welby: **„C" hat jetzt beide Eltern** ✔). Von 32 sind noch **8 in Quarantäne**; 3 davon (Enya, Ella, Zac) löst der Importer demnächst automatisch („genauer gewinnt": `CC` schlägt `C-` — gleiche Logik wie die Beibehalten-Regel). **Wirklich offen: nur die 5 Tiere in D6 unten.**
Bitte je Tier kurz sagen, **welche Angabe stimmt**. Gruppiert nach Konflikt-Art. Bitte je Tier kurz sagen, **welche Angabe stimmt**. Gruppiert nach Konflikt-Art.
Alle Details (sämtliche Genotyp-Varianten + Quelldateien): `tools/import/output/review-report.md`. Alle Details (sämtliche Genotyp-Varianten + Quelldateien): `tools/import/output/review-report.md`.
@@ -93,10 +95,10 @@ Bitte je Tier sagen, **welcher Wert stimmt** (die Quellen widersprechen sich bei
| WildFire v.d. K.C. (*05.10.2017) | P-Locus: **P-****PP** | ✅ **PP** — 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 | | 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 | | 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** | ⏳ offen | | 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 | | 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 | | Daja of Little Rose (*16.05.2021) | Scheckung: **mit `spsp`****ohne** | ✅ **mit `spsp`** (Beibehalten-Regel) — Julian |
| Chelsea v.d. K.C. | ⚠️ **Kein Genotyp-Konflikt**es gibt **zwei** „Chelsea v.d. K.C." mit verschiedenem Geburtsdatum: **\*02.04.2021** und **\*15.10.2021**. Zwei verschiedene Tiere, oder ist ein Datum falsch? | ⏳ offen | | 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? ### D4 · **Marker** unterschiedlich (`WP` / `DP` / `WFNZ` / „hörend" mal vorhanden, mal nicht) — welcher gilt?
> ✅ **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. > ✅ **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.
@@ -105,8 +107,8 @@ Bitte je Tier sagen, **welcher Wert stimmt** (die Quellen widersprechen sich bei
| Tier | Konkreter Konflikt — was stimmt? | Status | | Tier | Konkreter Konflikt — was stimmt? | Status |
|---|---|---| |---|---|---|
| Vestra von den Schlossmäusen (*08.02.2019) | D-Locus: **D-****DD** (WP gleich in beiden) | ⏳ offen | | 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]** (Fuchs ja/nein; DP gleich in beiden) — **das ist die Mutter von „C"!** Sobald geklärt, bekommt C auch seine Mutter. | ⏳ offen | | Victoria Welby gen. Welby v.d. K.C. (*16.01.2023) | E-Locus: **Ee[f]****ee[f]** **Mutter von „C"!** | ✅ **ee[f]** — Julian → **geladen, C hat jetzt beide Eltern** (Re-Import #2) |
| Hedwig of BGB (*30.10.2019) | (WP/DP/hörend) | ✅ auto-gelöst — sind jetzt Flags, kein Konflikt mehr | | 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 | | 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) | | Little Hero of Black Forest (*22.02.2018) | (WFNZ ± spsp) | ✅ kein Genotyp-Konflikt mehr (WFNZ = Flag) |
@@ -120,6 +122,17 @@ Bitte je Tier sagen, **welcher Wert stimmt** (die Quellen widersprechen sich bei
*(Das sind 32 Tiere: 11 + 5 + 8 + 5 + 3.)* *(Das sind 32 Tiere: 11 + 5 + 8 + 5 + 3.)*
### D6 · **Die letzten 5 offenen Konflikte** (Stand Re-Import #2) — bitte entscheiden
| Tier | Konkreter Konflikt — was stimmt? |
|---|---|
| Hanami v.d. K.C. (*10.09.2015) | Sterbedatum: **12.12.2019****14.01.2020** (= D5) |
| Little Runner's Big Ben (*03.02.2020) | P-Locus: **PP****Pp** |
| Vance Jr. v.d. K.C. (*10.04.2022) | Scheckung: **Spsp****spsp** (Schecke ja/nein) |
| Kazu v.d. K.C. (*23.04.2013) | E-Locus: **e[f]e[f]****ee[f]** · G-Locus: **Gg****GG** · P-Locus: **P?****PP** |
| Skarlett v.d. K.C. (*14.07.2013) | Sterbedatum: **17.04.2016****2018** |
*(Enya, Ella und Zac fehlen hier bewusst: deren Abweichung ist nur „unbekannt ↔ genau angegeben" — löst der Importer automatisch mit der „genauer gewinnt"-Regel.)*
--- ---
## E. Charakterbogen — Eigenschaften-Liste (für die KI-Verkaufstexte) ## E. Charakterbogen — Eigenschaften-Liste (für die KI-Verkaufstexte)
@@ -146,7 +159,7 @@ sagen, was ergänzt oder gestrichen werden soll:**
| Öffentliche Webseite live | in Arbeit | **A4** (Domain + Cloudflare) | | Öffentliche Webseite live | in Arbeit | **A4** (Domain + Cloudflare) |
| E-Mail-Posteingang (Anfragen) | in Arbeit | **A3** (App-Passwort) + **A1/A2** für Entwürfe | | E-Mail-Posteingang (Anfragen) | in Arbeit | **A3** (App-Passwort) + **A1/A2** für Entwürfe |
| NAS-Deployment / Produktiv | fertig vorbereitet | **A5** | | NAS-Deployment / Produktiv | fertig vorbereitet | **A5** |
| Restliche importierte Tiere (Konflikte/Sonder-Kürzel) | in Quarantäne | **C2C6** (C1 ✅ erledigt → D2-Gruppe + Uw/Marker-Tiere lädt Michael nach) | | Restliche importierte Tiere (Konflikte) | nur noch 8 in Quarantäne (Re-Import #2 ✅) | **D6** (5 Entscheidungen; Enya/Ella/Zac lädt Michael automatisch nach) |
| Handy-Zugriff im WLAN | App läuft | **B2** (Firewall) | | Handy-Zugriff im WLAN | App läuft | **B2** (Firewall) |
--- ---

View File

@@ -1,18 +0,0 @@
# Please refer https://aka.ms/HTTPSinContainer on how to setup an https developer certificate for your ASP.NET Core service.
version: '3.4'
services:
gerbilmanagerwebapi:
image: gerbilmanagerwebapi
build:
context: .
dockerfile: GerbilManagerWebAPI/Dockerfile
args:
- configuration=Debug
ports:
- 80:80
environment:
- ASPNETCORE_ENVIRONMENT=Development
volumes:
- ~/.vsdbg:/remote_debugger:rw

View File

@@ -1,57 +0,0 @@
# Please refer https://aka.ms/HTTPSinContainer on how to setup an https developer certificate for your ASP.NET Core service.
version: '3.4'
services:
frontend:
image: gerbilmanagerweb
build:
context: .
dockerfile: gerbil-manager-web/Dockerfile
args:
# Der Browser erreicht die API über den am Host veröffentlichten Port
- VITE_API_BASE_URL=http://localhost:80
ports:
- 3000:3000
networks:
- net2
depends_on:
- backend
backend:
image: gerbilmanagerwebapi
build:
context: .
dockerfile: GerbilManagerWebAPI/Dockerfile
environment:
- ConnectionStrings:sqlConnection=server=database; database=GerbilManager; User Id=sa;Password=StrongerThenYYou1;Encrypt=False;TrustServerCertificate=True
ports:
- 80:80
networks:
- net1
- net2
depends_on:
- database
database:
image: mcr.microsoft.com/mssql/server:2022-latest
environment:
- ACCEPT_EULA=Y
- MSSQL_SA_PASSWORD=StrongerThenYYou1
- MSSQL_PID=Evaluation
ports:
- "1433:1433"
volumes:
- db-data:/var/opt/mssql
networks:
- net1
volumes:
db-data:
networks:
net1:
name: network1
net2:
name: network2

View File

@@ -27,3 +27,17 @@ test('Toggle „Externe Ahnen einblenden“ zeigt externe Tiere mit Extern-Marki
// Der Bestand bleibt weiterhin sichtbar. // Der Bestand bleibt weiterhin sichtbar.
await expect(page.locator('.gerbil-row', { hasText: 'Krümel' })).toBeVisible() 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()
})

View File

@@ -179,10 +179,11 @@ describe('Farbschlag catalog', () => {
expect(match.name).toBe('Unbekannter Farbschlag') expect(match.name).toBe('Unbekannter Farbschlag')
}) })
it('has the expected catalogue coverage (GEN-3f: 61 after cchm CP reconciliation)', () => { it('has the expected catalogue coverage (GEN-3g: 66 after adding CP-*-Hell het variants)', () => {
// GEN-3f collapsed the 24 portal cchm colourpoint rows to 12 breeder-named // GEN-3f: 73 -> 61 (cchm CP reconciliation).
// varieties (Marder/Siam/Zobel/Zobel-Hell + CP-<base>), so 73 -> 61. // GEN-3g: +5 het variants (CP-Agouti/Silberagouti/Algierfuchs/Polarfuchs/Orangeschimmel -Hell),
expect(CATALOG_SIZE).toBe(61) // giving 61 + 5 = 66. CP-Fuchs-Hell was already counted.
expect(CATALOG_SIZE).toBe(66)
}) })
it('frozen contract names round-trip to themselves (DB-key guard)', () => { it('frozen contract names round-trip to themselves (DB-key guard)', () => {
@@ -414,8 +415,12 @@ describe('GEN-3e: C-locus colourpoint naming', () => {
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-Agouti')
}) })
it('A- + cchm/ch -> CP-<base colour>', () => { it('A- + cchm/ch -> CP-<base colour>-Hell (GEN-3g: het gets -Hell suffix)', () => {
expect(name('AA cchmch DD EE GG PP spsp rere')).toBe('CP-Agouti') expect(name('AA cchmch DD EE GG PP spsp rere')).toBe('CP-Agouti-Hell')
expect(name('AA cchmch DD EE gg PP spsp rere')).toBe('CP-Silberagouti-Hell')
expect(name('AA cchmch DD ee GG PP spsp rere')).toBe('CP-Algierfuchs-Hell')
expect(name('AA cchmch DD ee gg PP spsp rere')).toBe('CP-Polarfuchs-Hell')
expect(name('AA cchmch dd ee GG PP spsp rere')).toBe('CP-Fuchs-Hell')
}) })
it('aa fixed colourpoint names (Marder/Siam/Zobel/Zobel-Hell)', () => { it('aa fixed colourpoint names (Marder/Siam/Zobel/Zobel-Hell)', () => {
@@ -471,10 +476,50 @@ describe('GEN-3f: CP catalog reconciled to the breeder CP- naming (matches her l
expect(name('AA cchmcchm DD efef GG PP spsp rere')).toBe('CP-Orangeschimmel') 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', () => { it('het cchm/ch colourpoints (Siam, Zobel-Hell, CP-*-Hell) resolve to their own names', () => {
const siam = BASE_COLORS.find((e) => e.name === 'Siam')! const siam = BASE_COLORS.find((e) => e.name === 'Siam')!
const zh = BASE_COLORS.find((e) => e.name === 'Zobel-Hell')! const zh = BASE_COLORS.find((e) => e.name === 'Zobel-Hell')!
const cpah = BASE_COLORS.find((e) => e.name === 'CP-Agouti-Hell')!
const cpfh = BASE_COLORS.find((e) => e.name === 'CP-Fuchs-Hell')!
expect(genotypeToFarbschlag(representativeGenotype(siam))).toBe('Siam') expect(genotypeToFarbschlag(representativeGenotype(siam))).toBe('Siam')
expect(genotypeToFarbschlag(representativeGenotype(zh))).toBe('Zobel-Hell') expect(genotypeToFarbschlag(representativeGenotype(zh))).toBe('Zobel-Hell')
expect(genotypeToFarbschlag(representativeGenotype(cpah))).toBe('CP-Agouti-Hell')
expect(genotypeToFarbschlag(representativeGenotype(cpfh))).toBe('CP-Fuchs-Hell')
})
})
describe('GEN-3g: "-Hell" in variety name == cchm/ch het; hom == cchm/cchm', () => {
const name = (s: string) => genotypeToFarbschlag(fromDisplayString(s))
const has = (n: string) => BASE_COLORS.some((e) => e.name === n)
it('all new -Hell het entries exist in catalog', () => {
for (const n of [
'CP-Agouti-Hell', 'CP-Silberagouti-Hell', 'CP-Algierfuchs-Hell',
'CP-Polarfuchs-Hell', 'CP-Orangeschimmel-Hell',
]) {
expect(has(n)).toBe(true)
}
})
it('engine correctly maps het (cchm/ch) to -Hell suffix for all A- bases', () => {
expect(name('AA cchmch DD EE GG PP spsp rere')).toBe('CP-Agouti-Hell')
expect(name('AA cchmch DD EE gg PP spsp rere')).toBe('CP-Silberagouti-Hell')
expect(name('AA cchmch DD ee GG PP spsp rere')).toBe('CP-Algierfuchs-Hell')
expect(name('AA cchmch DD ee gg PP spsp rere')).toBe('CP-Polarfuchs-Hell')
expect(name('AA cchmch dd ee GG PP spsp rere')).toBe('CP-Fuchs-Hell')
expect(name('AA cchmch DD efef GG PP spsp rere')).toBe('CP-Orangeschimmel-Hell')
})
it('hom (cchm/cchm) still maps without -Hell suffix', () => {
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 efef GG PP spsp rere')).toBe('CP-Orangeschimmel')
})
it('aa non-agouti branch is unchanged (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')
}) })
}) })

View File

@@ -107,27 +107,29 @@ export const BASE_COLORS: readonly FarbschlagEntry[] = [
{ name: 'Topas dd', tokens: { A: 'A', C: 'C', D: 'd', E: 'E', G: 'G', P: 'p' }, image: 'topas-dd.jpg' }, { name: 'Topas dd', tokens: { A: 'A', C: 'C', D: 'd', E: 'E', G: 'G', P: 'p' }, image: 'topas-dd.jpg' },
{ name: 'Blaufuchs dd', tokens: { A: 'a', C: 'C', D: 'd', E: 'e', G: 'g', P: 'p' }, image: 'blaufuchs-dd.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 ── // ── GEN-3f/3g: c^chm colourpoint varieties ──
// The merged GEN-3e colourpointName() rule is authoritative: aa points are the // GEN-3f: aa points = marten/sable group (Marder/Siam, +gg Zobel/Zobel-Hell).
// marten/sable group (Marder/Siam, +gg Zobel/Zobel-Hell — E and D irrelevant); // GEN-3g (breeder rule): '-Hell' == cchm/ch het; no '-Hell' == cchm/cchm hom.
// A- points take the 'CP-<base colour>' prefix and the '-Hell' shade variants // A- points: hom -> 'CP-<base>', het -> 'CP-<base>-Hell' (colourpointName()).
// collapse (other loci irrelevant for the CP prefix). These names == the strings // CP-Fuchs is a Sammelbegriff (unknown loci); its -Hell het = CP-Fuchs-Hell.
// in her live data (god: extract animals.json) so the re-import name-matches and // CP-Blaufuchs (D:d, G:g) still resolves engine-side to 'CP-Fuchs' (dd/gg
// the Farbschlag mismatch hint stops. The het cchm/ch points (Siam, Zobel-Hell, // fox CP has no dedicated base entry); kept for import name-match + hand-pick.
// 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: '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: '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: '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-Agouti', tokens: { A: 'A', C: 'cchm', D: 'D', E: 'E', G: 'G', P: 'P' }, image: 'agouti-cp.jpg' },
{ name: 'CP-Agouti-Hell', tokens: { A: 'A', C: 'cchm/ch', D: 'D', E: 'E', G: 'G', P: 'P' } },
{ name: 'CP-Silberagouti', tokens: { A: 'A', C: 'cchm', D: 'D', E: 'E', G: 'g', P: 'P' }, image: 'silberagouti-cp.JPG' }, { name: 'CP-Silberagouti', tokens: { A: 'A', C: 'cchm', D: 'D', E: 'E', G: 'g', P: 'P' }, image: 'silberagouti-cp.JPG' },
{ name: 'CP-Silberagouti-Hell', tokens: { A: 'A', C: 'cchm/ch', D: 'D', E: 'E', G: 'g', P: 'P' } },
{ name: 'CP-Algierfuchs', tokens: { A: 'A', C: 'cchm', D: 'D', E: 'e', G: 'G', P: 'P' }, image: 'algierfuchs-cp.jpg' }, { name: 'CP-Algierfuchs', tokens: { A: 'A', C: 'cchm', D: 'D', E: 'e', G: 'G', P: 'P' }, image: 'algierfuchs-cp.jpg' },
{ name: 'CP-Algierfuchs-Hell', tokens: { A: 'A', C: 'cchm/ch', D: 'D', E: 'e', G: 'G', P: 'P' } },
{ name: 'CP-Polarfuchs', tokens: { A: 'A', C: 'cchm', D: 'D', E: 'e', G: 'g', P: 'P' }, image: 'polarfuchs-cp.jpg' }, { name: 'CP-Polarfuchs', tokens: { A: 'A', C: 'cchm', D: 'D', E: 'e', G: 'g', P: 'P' }, image: 'polarfuchs-cp.jpg' },
{ name: 'CP-Polarfuchs-Hell', tokens: { A: 'A', C: 'cchm/ch', D: 'D', E: 'e', G: 'g', P: 'P' } },
{ name: 'CP-Fuchs', tokens: { A: 'A', C: 'cchm', D: 'd', E: 'e', G: 'G', P: 'P' } }, { 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-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-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' } }, { name: 'CP-Orangeschimmel', tokens: { C: 'cchm', D: 'D', E: 'ef', G: 'G', P: 'P' } },
{ name: 'CP-Orangeschimmel-Hell', tokens: { C: 'cchm/ch', D: 'D', E: 'ef', G: 'G', P: 'P' } },
] ]
export const UNKNOWN_FARBSCHLAG = 'Unbekannter Farbschlag' export const UNKNOWN_FARBSCHLAG = 'Unbekannter Farbschlag'
@@ -207,12 +209,14 @@ function baseColourFor(g: Genotype): string | null {
} }
/** /**
* GEN-3e: the C-locus colourpoint NAMING transform (breeder-authoritative). * GEN-3e/3g: the C-locus colourpoint NAMING transform (breeder-authoritative).
* Returns the colourpoint name, or null when it doesn't apply (full C present, * 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). * or chch — which the base matcher names Hermelin/Himalaya, preserving both).
* aa cchm/cchm -> Marder | aa cchm/ch -> Siam * aa cchm/cchm -> Marder | aa cchm/ch -> Siam
* aa cchm/cchm gg -> Zobel | aa cchm/ch gg -> Zobel-Hell * 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) * A- cchm/cchm -> CP-<base> | A- cchm/ch -> CP-<base>-Hell
* GEN-3g (breeder rule): "-Hell" in variety name == c[h]-Allel (cchm/ch het);
* no "-Hell" == cchm/cchm hom. CP-Fuchs is a Sammelbegriff (unknown loci).
*/ */
function colourpointName(g: Genotype): string | null { function colourpointName(g: Genotype): string | null {
const c = resolvedPair(g, 'C') const c = resolvedPair(g, 'C')
@@ -227,9 +231,9 @@ function colourpointName(g: Genotype): string | null {
if (grey) return bothCchm ? 'Zobel' : 'Zobel-Hell' if (grey) return bothCchm ? 'Zobel' : 'Zobel-Hell'
return bothCchm ? 'Marder' : 'Siam' return bothCchm ? 'Marder' : 'Siam'
} }
// A- colourpoint -> CP-<base colour>, base as if C were full. // A- colourpoint: base as if C were full; het (cchm/ch) -> '-Hell' suffix.
const base = baseColourFor(makeGenotype({ ...g, C: ['C', 'C'] })) const base = baseColourFor(makeGenotype({ ...g, C: ['C', 'C'] }))
return base ? `CP-${base}` : null return base ? `CP-${base}${bothCchm ? '' : '-Hell'}` : null
} }
export function farbschlagFor(g: Genotype): FarbschlagMatch { export function farbschlagFor(g: Genotype): FarbschlagMatch {

View File

@@ -340,42 +340,67 @@
"sortOrder": 53, "sortOrder": 53,
"image": "agouti-cp.jpg" "image": "agouti-cp.jpg"
}, },
{
"name": "CP-Agouti-Hell",
"canonicalGenotype": "AA cchmch DD EE GG PP spsp rere",
"sortOrder": 54
},
{ {
"name": "CP-Silberagouti", "name": "CP-Silberagouti",
"canonicalGenotype": "AA cchmcchm DD EE gg PP spsp rere", "canonicalGenotype": "AA cchmcchm DD EE gg PP spsp rere",
"sortOrder": 54, "sortOrder": 55,
"image": "silberagouti-cp.JPG" "image": "silberagouti-cp.JPG"
}, },
{
"name": "CP-Silberagouti-Hell",
"canonicalGenotype": "AA cchmch DD EE gg PP spsp rere",
"sortOrder": 56
},
{ {
"name": "CP-Algierfuchs", "name": "CP-Algierfuchs",
"canonicalGenotype": "AA cchmcchm DD ee GG PP spsp rere", "canonicalGenotype": "AA cchmcchm DD ee GG PP spsp rere",
"sortOrder": 55, "sortOrder": 57,
"image": "algierfuchs-cp.jpg" "image": "algierfuchs-cp.jpg"
}, },
{
"name": "CP-Algierfuchs-Hell",
"canonicalGenotype": "AA cchmch DD ee GG PP spsp rere",
"sortOrder": 58
},
{ {
"name": "CP-Polarfuchs", "name": "CP-Polarfuchs",
"canonicalGenotype": "AA cchmcchm DD ee gg PP spsp rere", "canonicalGenotype": "AA cchmcchm DD ee gg PP spsp rere",
"sortOrder": 56, "sortOrder": 59,
"image": "polarfuchs-cp.jpg" "image": "polarfuchs-cp.jpg"
}, },
{
"name": "CP-Polarfuchs-Hell",
"canonicalGenotype": "AA cchmch DD ee gg PP spsp rere",
"sortOrder": 60
},
{ {
"name": "CP-Fuchs", "name": "CP-Fuchs",
"canonicalGenotype": "AA cchmcchm dd ee GG PP spsp rere", "canonicalGenotype": "AA cchmcchm dd ee GG PP spsp rere",
"sortOrder": 57 "sortOrder": 61
}, },
{ {
"name": "CP-Fuchs-Hell", "name": "CP-Fuchs-Hell",
"canonicalGenotype": "AA cchmch dd ee GG PP spsp rere", "canonicalGenotype": "AA cchmch dd ee GG PP spsp rere",
"sortOrder": 58 "sortOrder": 62
}, },
{ {
"name": "CP-Blaufuchs", "name": "CP-Blaufuchs",
"canonicalGenotype": "AA cchmcchm dd ee gg PP spsp rere", "canonicalGenotype": "AA cchmcchm dd ee gg PP spsp rere",
"sortOrder": 59 "sortOrder": 63
}, },
{ {
"name": "CP-Orangeschimmel", "name": "CP-Orangeschimmel",
"canonicalGenotype": "AA cchmcchm DD efef GG PP spsp rere", "canonicalGenotype": "AA cchmcchm DD efef GG PP spsp rere",
"sortOrder": 60 "sortOrder": 64
},
{
"name": "CP-Orangeschimmel-Hell",
"canonicalGenotype": "AA cchmch DD efef GG PP spsp rere",
"sortOrder": 65
} }
] ]

View File

@@ -24,6 +24,7 @@ interface FormState {
receiverContactId: string receiverContactId: string
genotype: string genotype: string
notes: string notes: string
isResident: boolean
} }
const EMPTY: FormState = { const EMPTY: FormState = {
@@ -41,6 +42,7 @@ const EMPTY: FormState = {
receiverContactId: '', receiverContactId: '',
genotype: '', genotype: '',
notes: '', notes: '',
isResident: true,
} }
function formFromGerbil(g: { function formFromGerbil(g: {
@@ -58,6 +60,7 @@ function formFromGerbil(g: {
receiverContactId: string | null receiverContactId: string | null
genotype: string | null genotype: string | null
notes: string | null notes: string | null
isResident?: boolean | null
}): FormState { }): FormState {
return { return {
name: g.name, name: g.name,
@@ -74,6 +77,7 @@ function formFromGerbil(g: {
receiverContactId: g.receiverContactId ?? '', receiverContactId: g.receiverContactId ?? '',
genotype: g.genotype ?? '', genotype: g.genotype ?? '',
notes: g.notes ?? '', notes: g.notes ?? '',
isResident: g.isResident ?? true,
} }
} }
@@ -166,6 +170,7 @@ export default function GerbilFormPage() {
receiverContactId: nn(form.receiverContactId), receiverContactId: nn(form.receiverContactId),
genotype: nn(form.genotype), genotype: nn(form.genotype),
notes: nn(form.notes), notes: nn(form.notes),
isResident: form.isResident,
} }
const result = await mutation.run(body) const result = await mutation.run(body)
if (result.ok) navigate(`/rennmaeuse/${result.value.id}`) if (result.ok) navigate(`/rennmaeuse/${result.value.id}`)
@@ -355,6 +360,15 @@ export default function GerbilFormPage() {
<textarea value={form.notes} onChange={(e) => set('notes', e.target.value)} /> <textarea value={form.notes} onChange={(e) => set('notes', e.target.value)} />
</label> </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>} {mutation.error && <div className="alert alert--error">{mutation.error}</div>}
<div className="form-actions"> <div className="form-actions">

View File

@@ -116,6 +116,9 @@ export const de = {
none: '— keine Angabe —', none: '— keine Angabe —',
genotypeHint: 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', save: 'Speichern',
cancel: 'Abbrechen', cancel: 'Abbrechen',
saving: 'Speichern …', saving: 'Speichern …',

View File

@@ -1,5 +1,5 @@
{ {
"_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. 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.", "_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": [ "resolutions": [
{ {
"name": "Firefly von den Kleinen Chaoten", "name": "Firefly von den Kleinen Chaoten",
@@ -56,6 +56,34 @@
"decision": "C-locus = Cc[h], E-locus = EE", "decision": "C-locus = Cc[h], E-locus = EE",
"genotype": "aa Cc[h] dd EE Gg P- Spsp", "genotype": "aa Cc[h] dd EE Gg P- Spsp",
"source": "Julian 2026-06-06 — HUMANQUESTION D3" "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 v.d. Kleinen Chaoten",
"dob": "16.01.2023",
"decision": "E-locus = ee[f] (Fuchs). This is the mother of animal 'C' (c-29042024) — un-quarantining her links C's second parent. Name in v.d. spelling (workaround from Re-Import #2); both spellings now match after FIX-1 (canon_pair identity).",
"genotype": "Aa CC D- ee[f] Gg pp Spsp [DP]",
"source": "Julian 2026-06-06 — HUMANQUESTION D4"
} }
] ]
} }

View File

@@ -158,6 +158,10 @@ def parse_detail(text):
tail = text[dob.end():] tail = text[dob.end():]
tail = re.sub(r"^\s*/?\+?\s?\d[\d.]*", "", tail) # drop any /+death remnant tail = re.sub(r"^\s*/?\+?\s?\d[\d.]*", "", tail) # drop any /+death remnant
tail = tail.lstrip(" ,").strip() tail = tail.lstrip(" ,").strip()
# FIX-4 (Skarlett): strip trailing "/ +YEAR" death-year artifacts leaked from compact
# chart cells (e.g. "… rere / +2018"). The DEATH regex still captures the year from
# the full cell text, so it appears as a death-date conflict — not a genotype conflict.
tail = re.sub(r"\s*/\s*\+\d{4}\s*$", "", tail).strip()
if gt.looks_like_genotype(tail): if gt.looks_like_genotype(tail):
geno = tail geno = tail
return (dob.group(1) if dob else "", return (dob.group(1) if dob else "",
@@ -502,6 +506,53 @@ def _geno_key(genodict):
return "|".join(f"{locus}:{','.join(sorted(m[locus]))}" for locus in sorted(m)) 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 True # specific-wins: unknown allele is compatible with any
# specified value (C- vs CC -> CC; G- vs Gg -> Gg)
(ba, ma), (bb, mb) = _split_allele(a), _split_allele(b)
if ba != bb:
return False # different base allele = real value diff (E vs e, D vs d)
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): def dedup(animals):
"""Merge by normalise(call-name)+DOB, with the canonical Zucht as """Merge by normalise(call-name)+DOB, with the canonical Zucht as
DISCRIMINATOR (Julian: same name+DOB+Zucht = same animal; different Zucht = DISCRIMINATOR (Julian: same name+DOB+Zucht = same animal; different Zucht =
@@ -552,6 +603,7 @@ def dedup(animals):
parent_refs = list(base["parentRefs"]) parent_refs = list(base["parentRefs"])
genos = set() genos = set()
geno_keys = set() # GEN-3b: conflict on NORMALIZED genotype (Uw==G) not raw text 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() farb = set()
deaths = set() deaths = set()
deaf_seen = set() deaf_seen = set()
@@ -567,6 +619,7 @@ def dedup(animals):
if a["genotype"]["mapped8locus"]: if a["genotype"]["mapped8locus"]:
genos.add(a["genotype"]["rawGenotype"]) genos.add(a["genotype"]["rawGenotype"])
geno_keys.add(_geno_key(a["genotype"])) geno_keys.add(_geno_key(a["genotype"]))
mapped_variants.append(a["genotype"]["mapped8locus"])
if a["farbschlag"]: if a["farbschlag"]:
farb.add(a["farbschlag"]) farb.add(a["farbschlag"])
if a["death"]: if a["death"]:
@@ -574,9 +627,12 @@ def dedup(animals):
if a.get("deaf") is not None: if a.get("deaf") is not None:
deaf_seen.add(a["deaf"]) deaf_seen.add(a["deaf"])
tags_set.update(a.get("tags", [])) tags_set.update(a.get("tags", []))
# pick the richest genotype (most mapped loci, then longest raw) # pick the richest genotype: most mapped loci, then fewest unknowns ('?' alleles = specific
# wins, FIX-2), then longest raw string as final tiebreaker.
def _specificity(gd):
return sum(1 for pair in gd["mapped8locus"].values() for a in pair if a != "?")
best = max((a["genotype"] for a in grp), best = max((a["genotype"] for a in grp),
key=lambda gd: (len(gd["mapped8locus"]), len(gd["rawGenotype"]))) key=lambda gd: (len(gd["mapped8locus"]), _specificity(gd), len(gd["rawGenotype"])))
out = { out = {
"id": slug(base["name"], base["dob"]), "id": slug(base["name"], base["dob"]),
"name": base["name"], "name": base["name"],
@@ -603,8 +659,9 @@ def dedup(animals):
"conflict": False, "conflict": False,
} }
merged.append(out) merged.append(out)
# conflict: same animal, disagreeing NORMALIZED genotype (Uw==G) or farbschlag or death # conflict: same animal, GENUINELY disagreeing genotype (presence-vs-absence is NOT a
if len(geno_keys) > 1 or len(farb) > 1 or len(deaths) > 1: # 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 out["conflict"] = True
conflicts.append({ conflicts.append({
"id": out["id"], "name": base["name"], "dob": out["dob"], "id": out["id"], "name": base["name"], "dob": out["dob"],
@@ -834,26 +891,73 @@ def write_report(merged, conflicts, orphans, raw_count, litters, photo_count,
# ------------------------------------------------------------------------ main # ------------------------------------------------------------------------ main
def apply_conflict_decisions(merged, conflicts, path): def apply_dob_remaps(raw_animals, path):
"""Consume human conflict resolutions (tools/import/conflict-decisions.json) so the wife's """PRE-dedup: a conflict-decision carrying `correctDob` marks a record as a DUPLICATE with a
answers UN-QUARANTINE animals. Schema: {"resolutions":[{name, dob, decision, genotype?, wrong birthdate — remap that raw record's DOB to correctDob so dedup MERGES it into the
farbschlag?, source}]}. Match = norm_name(name)+norm_dob(dob) (same identity as dedup). A canonical same-named animal (e.g. Chelsea *15.10.2021 -> *02.04.2021). Match =
matching animal: clear its conflict, mark resolvedByDecision; an explicit `genotype` canon_pair(name)+(dob) with same Zucht-aware logic as apply_conflict_decisions (see there).
(breeder notation) is parsed and becomes authoritative, `farbschlag` overrides too. Tolerates Tolerates a missing/garbled file. Returns the remap count.
a missing/empty/garbled file. Returns the number of conflicts resolved. (god/HUMANQUESTION D.)""" Must run BEFORE dedup (it changes the dedup identity). (god/HUMANQUESTION D — Dubletten.)"""
decisions = {} remaps_full = {} # (nameCanon, zuchtCanon, dob) -> correctDob — decision carries Zucht
remaps_name = {} # (nameCanon, dob) -> correctDob — no Zucht in decision
try: try:
with open(path, encoding="utf-8") as fh: with open(path, encoding="utf-8") as fh:
for r in (json.load(fh).get("resolutions") or []): for r in (json.load(fh).get("resolutions") or []):
decisions[(norm_name(r.get("name", "")), norm_dob(r.get("dob", "")))] = r if r.get("correctDob"):
nc, zc = canon_pair(r.get("name", ""))
dob = norm_dob(r.get("dob", ""))
if zc:
remaps_full[(nc, zc, dob)] = r["correctDob"]
else:
remaps_name[(nc, dob)] = r["correctDob"]
except (OSError, ValueError): except (OSError, ValueError):
return 0 return 0
if not decisions: if not remaps_full and not remaps_name:
return 0
n = 0
for a in raw_animals:
nc, zc = canon_pair(a.get("name", ""))
dob = norm_dob(a.get("dob", ""))
new = remaps_full.get((nc, zc, dob)) or remaps_name.get((nc, 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 = canon_pair(name)+(dob):
- When the decision name CARRIES a Zucht (zuchtCanon != ''), match on the FULL
(nameCanon, zuchtCanon, dob) triple — preserves the C3 rule that same name+DOB but
different Zucht = different animal.
- When the decision has NO Zucht, fall back to (nameCanon, dob) name-only match.
Both spellings v.d. / von den fold to the same canon. 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_full = {} # (nameCanon, zuchtCanon, dob) -> r — when decision carries a Zucht
decisions_name = {} # (nameCanon, dob) -> r — fallback, decision has no Zucht
try:
with open(path, encoding="utf-8") as fh:
for r in (json.load(fh).get("resolutions") or []):
nc, zc = canon_pair(r.get("name", ""))
dob = norm_dob(r.get("dob", ""))
if zc:
decisions_full[(nc, zc, dob)] = r
else:
decisions_name[(nc, dob)] = r
except (OSError, ValueError):
return 0
if not decisions_full and not decisions_name:
return 0 return 0
resolved = 0 resolved = 0
for a in merged: for a in merged:
d = decisions.get((norm_name(a["name"]), norm_dob(a["dob"]))) nc, zc = canon_pair(a["name"])
dob = norm_dob(a["dob"])
d = decisions_full.get((nc, zc, dob)) or decisions_name.get((nc, dob))
if not d: if not d:
continue continue
a["resolvedByDecision"] = True a["resolvedByDecision"] = True
@@ -904,8 +1008,9 @@ def main():
litters = extract_wurfchronik(args.wurfchronik) litters = extract_wurfchronik(args.wurfchronik)
print(f"Wurfchronik: {len(litters)} Würfe") print(f"Wurfchronik: {len(litters)} Würfe")
merged, conflicts, orphans, zucht_splits = dedup(raw_animals)
decisions_path = os.path.join(HERE, "conflict-decisions.json") 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) resolved_by_decision = apply_conflict_decisions(merged, conflicts, decisions_path)
match_stats = match_litters(merged, litters) match_stats = match_litters(merged, litters)
photo_count = sum(len(a["photos"]) for a in merged) photo_count = sum(len(a["photos"]) for a in merged)
@@ -924,7 +1029,7 @@ def main():
print(f"\nRoh: {len(raw_animals)} → eindeutig: {len(merged)} " print(f"\nRoh: {len(raw_animals)} → eindeutig: {len(merged)} "
f"| Konflikte: {len(conflicts)} | per Entscheidung gelöst: {resolved_by_decision} " f"| Konflikte: {len(conflicts)} | per Entscheidung gelöst: {resolved_by_decision} "
f"| Zucht-Splits: {len(zucht_splits)} " f"| DOB-Remaps: {dob_remaps} | Zucht-Splits: {len(zucht_splits)} "
f"| Orphans: {len(orphans)} | Fotos: {photo_count}") f"| Orphans: {len(orphans)} | Fotos: {photo_count}")
print(f"Wurf-Verknüpfung: {match_stats['parents']} (Datum+Eltern), " print(f"Wurf-Verknüpfung: {match_stats['parents']} (Datum+Eltern), "
f"{match_stats['dateOnly']} (nur Datum), {match_stats['ambiguous']} mehrdeutig " f"{match_stats['dateOnly']} (nur Datum), {match_stats['ambiguous']} mehrdeutig "

View File

@@ -5,10 +5,10 @@ _Automatisch erzeugt von `tools/import/extract.py` — **noch nichts in die Date
## Überblick ## Überblick
- Rohe Tier-Einträge aus den Stammbäumen: **950** - Rohe Tier-Einträge aus den Stammbäumen: **950**
- Nach Zusammenführung (eindeutige Tiere): **622** - Nach Zusammenführung (eindeutige Tiere): **621**
- davon mit Geburtsdatum: 327 - davon mit Geburtsdatum: 326
- in mehreren Dateien gefunden (Dubletten zusammengeführt): 158 - in mehreren Dateien gefunden (Dubletten zusammengeführt): 158
- Konflikte zur Klärung: **19** - Konflikte zur Klärung: **5**
- Mehrdeutige / unvollständige Einträge (ohne Name+Datum): **310** - Mehrdeutige / unvollständige Einträge (ohne Name+Datum): **310**
- Fotos zugeordnet: **137** - Fotos zugeordnet: **137**
- Würfe aus der Wurfchronik: **752** - Würfe aus der Wurfchronik: **752**
@@ -25,23 +25,9 @@ Gleiches Tier (Name+Datum), aber widersprüchliche Angaben in verschiedenen Date
| Tier | Geburtsdatum | abweichende Genotypen | abweichende Farbschläge | Sterbedaten | Dateien | | 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 |
| Louis von den Kleinen Chaoten | 15.07.2017 | Aa Cc[] D- Ee Gg P- spsp // Aa Cc[chm] D- Ee Uwuw[d] P- spsp | — | 01.07.2020 | Stammbaum von Akio Kids, Stammbaum von CP-Fuchs, CP-Sa Sp von Unity |
| 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 |
| 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 |
| 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 | | 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 |
| 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 |
| 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 |
| 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 | — | 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 | | 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 |
| 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 | — | Stammbaum von Fire Kids, Stammbaum von Stella 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 |
| 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 |
| 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] | — | 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 | | 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 | | 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 |
@@ -101,7 +87,7 @@ Gleiches Tier (Name+Datum), aber widersprüchliche Angaben in verschiedenen Date
- „Hagrid Rubeus of Black Forest“ → Hagrid Rubeus of Black Forest (*18.07.2019) - „Hagrid Rubeus of Black Forest“ → Hagrid Rubeus of Black Forest (*18.07.2019)
- „Charly of Golden Lights“ → Charly of Golden Lights (*05.04.2016) - „Charly of Golden Lights“ → Charly of Golden Lights (*05.04.2016)
- „Ziwa of Golden Lights“ → Ziwa of Golden Lights (*29.04.2016) - „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) - „Pinto of Fiomi“ → Pinto of Fiomi (*28.08.2016)
- „Living Force's Idefix“ → Living Force's Idefix (*05.04.2016) - „Living Force's Idefix“ → Living Force's Idefix (*05.04.2016)
- „Scarlett of Samsimar“ → Scarlett of Samsimar (*05.09.2018) - „Scarlett of Samsimar“ → Scarlett of Samsimar (*05.09.2018)
@@ -140,15 +126,15 @@ Diese Tokens stehen weiter in `rawGenotype`/`unmappedTokens` — Entscheidung (M
| Token | Vorkommen | Bedeutung (Vermutung) | | Token | Vorkommen | Bedeutung (Vermutung) |
|---|---|---| |---|---|---|
| `/+` | 7 | ? | | `/+` | 6 | ? |
| `-g` | 2 | ? | | `-g` | 2 | ? |
| `C(C)` | 2 | Schreibweise (C trägt c) | | `C(C)` | 2 | Schreibweise (C trägt c) |
| `chmchm` | 2 | Schreibweise (c[chm]c[chm]) |
| `Cc[]` | 1 | ? | | `Cc[]` | 1 | ? |
| `-psp` | 1 | ? | | `-psp` | 1 | ? |
| `G(G)` | 1 | ? | | `G(G)` | 1 | ? |
| `/` | 1 | ? | | `/` | 1 | ? |
| `+2018` | 1 | ? | | `+2018` | 1 | ? |
| `chmchm` | 1 | Schreibweise (c[chm]c[chm]) |
| `c[chm]chm]` | 1 | ? | | `c[chm]chm]` | 1 | ? |
| `Dea/dea]` | 1 | ? | | `Dea/dea]` | 1 | ? |
| `DD-Tumor` | 1 | ? | | `DD-Tumor` | 1 | ? |

View File

@@ -101,9 +101,179 @@ check("decision removes both entries from conflicts list", conflicts == [])
check("apply_conflict_decisions returns resolved count", n == 2) check("apply_conflict_decisions returns resolved count", n == 2)
check("missing decisions file tolerated (returns 0)", check("missing decisions file tolerated (returns 0)",
e.apply_conflict_decisions([], [], os.path.join(tempfile.gettempdir(), "does-not-exist.json")) == 0) e.apply_conflict_decisions([], [], os.path.join(tempfile.gettempdir(), "does-not-exist.json")) == 0)
# FIX-1: decision matching uses canon_pair identity -> 'von den' decision matches 'v.d.' record
dec_vd = os.path.join(tempfile.gettempdir(), "decisions-vd.json")
_json.dump({"resolutions": [
{"name": "Victoria Welby gen. Welby von den Kleinen Chaoten", # written with 'von den'
"dob": "16.01.2023", "decision": "E-locus = ee[f]",
"genotype": "Aa CC D- ee[f] Gg pp Spsp", "source": "test"},
]}, open(dec_vd, "w", encoding="utf-8"))
merged_vd = [
{"id": "vw", "name": "Victoria Welby gen. Welby v.d. Kleinen Chaoten", # record has 'v.d.'
"dob": "16.01.2023", "conflict": True, "farbschlag": "", "death": "",
"genotype": {"mapped8locus": {}, "rawGenotype": "", "unmappedTokens": []}},
]
conflicts_vd = [{"id": "vw"}]
n_vd = e.apply_conflict_decisions(merged_vd, conflicts_vd, dec_vd)
check("FIX-1: 'von den' decision matches 'v.d.' record (canon_pair identity)", n_vd == 1)
check("FIX-1: conflict cleared for v.d. record", merged_vd[0]["conflict"] is False)
# Also verify the workaround spelling (v.d. in decision) matches a 'von den' record
_json.dump({"resolutions": [
{"name": "Victoria Welby gen. Welby v.d. Kleinen Chaoten", # workaround: v.d. in decision
"dob": "16.01.2023", "decision": "E-locus = ee[f]",
"genotype": "Aa CC D- ee[f] Gg pp Spsp", "source": "test"},
]}, open(dec_vd, "w", encoding="utf-8"))
merged_vd2 = [
{"id": "vw2", "name": "Victoria Welby gen. Welby von den Kleinen Chaoten", # record 'von den'
"dob": "16.01.2023", "conflict": True, "farbschlag": "", "death": "",
"genotype": {"mapped8locus": {}, "rawGenotype": "", "unmappedTokens": []}},
]
conflicts_vd2 = [{"id": "vw2"}]
n_vd2 = e.apply_conflict_decisions(merged_vd2, conflicts_vd2, dec_vd)
check("FIX-1: v.d. decision also matches 'von den' record (both spellings match)", n_vd2 == 1)
try: os.remove(dec_vd)
except OSError: pass
# FIX-1 C3-rule: same name+DOB, two Zuchten -> decision hits ONLY the correct Zucht (C3 isolation)
dec_c3 = os.path.join(tempfile.gettempdir(), "decisions-c3.json")
_json.dump({"resolutions": [
# Decision only for Luna from ZdkC, NOT Luna from Black Forest
{"name": "Luna von den Kleinen Chaoten", "dob": "01.01.2020",
"decision": "D-locus = DD", "genotype": "aa CC DD ee gg PP spsp rere", "source": "test"},
]}, open(dec_c3, "w", encoding="utf-8"))
merged_c3 = [
{"id": "luna-kc", "name": "Luna von den Kleinen Chaoten", "dob": "01.01.2020",
"conflict": True, "farbschlag": "", "death": "",
"genotype": {"mapped8locus": {"D": ["D","?"]}, "rawGenotype": "D-", "unmappedTokens": []}},
{"id": "luna-bf", "name": "Luna of Black Forest", "dob": "01.01.2020",
"conflict": True, "farbschlag": "", "death": "",
"genotype": {"mapped8locus": {"D": ["D","?"]}, "rawGenotype": "D-", "unmappedTokens": []}},
]
conflicts_c3 = [{"id": "luna-kc"}, {"id": "luna-bf"}]
n_c3 = e.apply_conflict_decisions(merged_c3, conflicts_c3, dec_c3)
check("FIX-1 C3: decision hits only the correct Zucht (luna-kc resolved)", n_c3 == 1)
check("FIX-1 C3: luna-kc conflict cleared (correct Zucht)", merged_c3[0]["conflict"] is False)
check("FIX-1 C3: luna-bf conflict NOT cleared (different Zucht)", merged_c3[1]["conflict"] is True)
check("FIX-1 C3: conflicts list has only luna-bf left", len(conflicts_c3) == 1 and conflicts_c3[0]["id"] == "luna-bf")
try: os.remove(dec_c3)
except OSError: pass
# --- 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) try: os.remove(dec_path)
except OSError: pass except OSError: pass
# --- "presence wins" + "specific wins" conflict rules (Julian) ---
# present-vs-absent (whole locus or [f] modifier) is NOT a conflict; differing FILLED values are.
# FIX-2 (specific-wins): unknown allele '?' vs any specified value is also NOT a conflict —
# the specific value wins (C- vs CC -> CC; G- vs Gg -> Gg; P? vs PP -> PP).
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"]}]))
# FIX-2: '?' vs specified = specific wins (was: contradiction)
check("FIX-2: DD vs D- (specific wins: DD wins) -> NOT conflict",
not e._genotype_conflict([{"D": ["D", "D"]}, {"D": ["D", "?"]}]))
check("FIX-2: C- vs Cc[h] (specific wins: c^h wins) -> NOT conflict",
not e._genotype_conflict([{"C": ["C", "?"]}, {"C": ["C", "c^h"]}]))
check("FIX-2: C- vs CC (specific wins: CC) -> NOT conflict",
not e._genotype_conflict([{"C": ["C", "?"]}, {"C": ["C", "C"]}]))
check("FIX-2: G- vs Gg (specific wins) -> NOT conflict",
not e._genotype_conflict([{"G": ["G", "?"]}, {"G": ["G", "g"]}]))
check("FIX-2: PP vs P? (specific wins: PP) -> NOT conflict",
not e._genotype_conflict([{"P": ["P", "P"]}, {"P": ["P", "?"]}]))
# Genuine value contradictions (both alleles specified but different) still quarantine
check("Ee vs ee (different base allele) -> conflict",
e._genotype_conflict([{"E": ["E", "e"]}, {"E": ["e", "e"]}]))
check("DD vs Dd (both specified, D vs d) -> conflict",
e._genotype_conflict([{"D": ["D", "D"]}, {"D": ["D", "d"]}]))
check("PP vs Pp (both specified) -> conflict",
e._genotype_conflict([{"P": ["P", "P"]}, {"P": ["P", "p"]}]))
check("c[h] vs c[chm] (different modifiers, both specified) -> conflict",
not e._alleles_compatible("c^h", "c^chm"))
check("identical genotypes -> no conflict",
not e._genotype_conflict([{"A": ["A", "a"]}, {"A": ["A", "a"]}]))
# FIX-2 MERGE: specific allele must survive the merge regardless of which variant comes first.
# dedup() picks the most specific genotype (fewest '?' alleles); C- vs CC -> CC must win.
def _minimal_animal(name, dob, mapped):
"""Build a minimal raw animal dict suitable for dedup()."""
from genotype import parse as gparse
raw = " ".join(f"{l}{''.join(a)}" for l, pa in mapped.items() for a in [pa])
return {
"name": name, "dob": dob, "death": "", "gender": None,
"farbschlag": "", "breeder": "", "zucht": "", "parentRefs": [],
"photos": [], "sourceFiles": ["test.xlsx"], "tags": [],
"deaf": None, "conflict": False,
"genotype": {"mapped8locus": mapped, "rawGenotype": raw, "unmappedTokens": []},
"_gen": 0, "_col": 5, "_row": 10, "_file": "test.xlsx",
"_zucht": "",
}
# Order A: C- first, CC second
animals_merge_a = [
_minimal_animal("TestTier", "01.01.2020", {"C": ["C", "?"]}), # C-
_minimal_animal("TestTier", "01.01.2020", {"C": ["C", "C"]}), # CC
]
merged_ma, _, _, _ = e.dedup(animals_merge_a)
check("FIX-2 merge A (C- first): result has CC not C-",
merged_ma[0]["genotype"]["mapped8locus"].get("C") == ["C", "C"])
# Order B: CC first, C- second (must give same result)
animals_merge_b = [
_minimal_animal("TestTier2", "02.02.2020", {"C": ["C", "C"]}), # CC
_minimal_animal("TestTier2", "02.02.2020", {"C": ["C", "?"]}), # C-
]
merged_mb, _, _, _ = e.dedup(animals_merge_b)
check("FIX-2 merge B (CC first): result has CC not C-",
merged_mb[0]["genotype"]["mapped8locus"].get("C") == ["C", "C"])
# G- vs Gg: Gg must win
animals_merge_g = [
_minimal_animal("TestGGerbil", "03.03.2020", {"G": ["G", "?"]}), # G-
_minimal_animal("TestGGerbil", "03.03.2020", {"G": ["G", "g"]}), # Gg
]
merged_mg, _, _, _ = e.dedup(animals_merge_g)
check("FIX-2 merge G (G- vs Gg): Gg wins",
merged_mg[0]["genotype"]["mapped8locus"].get("G") == ["G", "g"])
# --- FIX-4: Skarlett parse artifact — trailing "/ +YEAR" stripped from geno, death captured ---
dob4, death4, geno4 = e.parse_detail("Skarlett,*17.04.2016, aa C- DD ee Gg PP spsp rere / +2018")
check("FIX-4: '/ +YEAR' artifact stripped from geno tail",
geno4 == "aa C- DD ee Gg PP spsp rere")
check("FIX-4: death year still captured from full cell text",
death4 == "2018")
check("FIX-4: DOB still correct",
dob4 == "17.04.2016")
# Without artifact — must be unchanged
dob5, death5, geno5 = e.parse_detail("*01.01.2020, aa C- DD ee Gg PP spsp rere")
check("FIX-4: no artifact -> geno unchanged",
geno5 == "aa C- DD ee Gg PP spsp rere")
check("FIX-4: no artifact -> no spurious death",
death5 == "")
# --- name-bleed guard (a parent name is not a Farbschlag) --- # --- 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("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("gen.+v.d. name rejected", e.looks_like_animal_name("Victoria Welby gen. Welby v.d. Kleinen Chaoten"))