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Author SHA1 Message Date
5361a292f1 NAMEGEN-2-BE: 5 neue Themen-Kategorien (disney/pokemon/encities/hrcities/usstates)
UsageMap bildet alle Codes auf deutsche Beschreibungen ab; thematische Kategorien
landen unter "Themen-Kategorien" im Prompt (kein Etymologie-Zwang, origin=Kategoriename).
22 neue Tests, 179/179 gruen.
2026-06-07 01:32:56 +02:00
7 changed files with 243 additions and 129 deletions

View File

@@ -8,8 +8,8 @@ using Microsoft.Extensions.Options;
namespace GerbilManager.Tests
{
/// <summary>
/// FEAT-NAMEGEN: NameSuggestionService — prompt assembly, JSON parse (incl. Markdown
/// fence strip), 503-not-configured path, upstream-error path.
/// FEAT-NAMEGEN / NAMEGEN-2-BE: NameSuggestionService — prompt assembly, usage-code mapping,
/// JSON parse (incl. Markdown fence strip), 503-not-configured path, upstream-error path.
/// </summary>
public class NameSuggestionTests
{
@@ -26,6 +26,14 @@ namespace GerbilManager.Tests
Assert.Contains("origin", prompt);
}
[Fact]
public void SystemPrompt_erklärt_thematische_Kategorien()
{
var prompt = NameSuggestionService.BuildSystemPrompt();
Assert.Contains("thematischen Kategorien", prompt);
Assert.Contains("Erfinde KEINE Etymologie", prompt);
}
[Fact]
public void UserPrompt_enthält_Anzahl_und_Anfangsbuchstaben()
{
@@ -33,7 +41,10 @@ namespace GerbilManager.Tests
Assert.Contains("6", prompt);
Assert.Contains("\"A\"", prompt);
Assert.Contains("weibliche", prompt);
Assert.Contains("norn,mythg", prompt);
// codes are mapped to German descriptions
Assert.Contains("Nordische/Altnordische Etymologie", prompt);
Assert.Contains("Griechische Mythologie", prompt);
Assert.Contains("Kulturkreisen", prompt);
}
[Fact]
@@ -54,6 +65,67 @@ namespace GerbilManager.Tests
Assert.DoesNotContain("männliche", prompt);
}
// ── NAMEGEN-2-BE: neue Themen-Kategorien ─────────────────────────────
[Theory]
[InlineData("disney", "Disney-Charaktere")]
[InlineData("pokemon", "Pokémon-Namen")]
[InlineData("encities", "Namen englischer Städte")]
[InlineData("hrcities", "Namen kroatischer Städte")]
[InlineData("usstates", "Namen von US-Bundesstaaten")]
public void UsageMap_enthält_alle_fünf_neuen_Codes(string code, string expectedDescription)
{
Assert.True(NameSuggestionService.UsageMap.TryGetValue(code, out var entry));
Assert.Equal(expectedDescription, entry.Description);
Assert.True(entry.Thematic);
}
[Theory]
[InlineData("disney", "Disney-Charaktere")]
[InlineData("pokemon", "Pokémon-Namen")]
[InlineData("encities", "Namen englischer Städte")]
[InlineData("hrcities", "Namen kroatischer Städte")]
[InlineData("usstates", "Namen von US-Bundesstaaten")]
public void UserPrompt_enthält_Themen_Kategorie_Beschreibung(string code, string expectedDescription)
{
var prompt = NameSuggestionService.BuildUserPrompt(null, null, code, 5);
Assert.Contains(expectedDescription, prompt);
Assert.Contains("Themen-Kategorien", prompt);
Assert.DoesNotContain("Kulturkreisen", prompt);
}
[Fact]
public void UserPrompt_trennt_etym_und_thematische_Kategorien()
{
var prompt = NameSuggestionService.BuildUserPrompt("D", null, "norn,disney", 4);
Assert.Contains("Nordische/Altnordische Etymologie", prompt);
Assert.Contains("Kulturkreisen", prompt);
Assert.Contains("Disney-Charaktere", prompt);
Assert.Contains("Themen-Kategorien", prompt);
}
[Fact]
public void UserPrompt_thematisch_enthält_Geschlecht_Hinweis()
{
var prompt = NameSuggestionService.BuildUserPrompt(null, "female", "encities", 3);
Assert.Contains("Geschlecht-Filter kann ignoriert werden", prompt);
}
[Fact]
public async Task SuggestAsync_parst_thematische_Kategorie_Antwort()
{
var payload = """[{"name":"Dumbo","meaning":"Elefant mit großen Ohren aus dem Disney-Film Dumbo (1941)","origin":"Disney"}]""";
var handler = new StubHandler(_ => Canned(payload));
var service = CreateService("https://api.example.com/v1", "k", "m", handler);
var result = await service.SuggestAsync("D", null, "disney", 1);
Assert.Equal(NameSuggestionStatus.Ok, result.Status);
Assert.NotNull(result.Suggestions);
Assert.Equal("Dumbo", result.Suggestions![0].Name);
Assert.Equal("Disney", result.Suggestions[0].Origin);
}
// ── JSON parsing ──────────────────────────────────────────────────────
[Fact]

View File

@@ -20,6 +20,23 @@ namespace GerbilManagerWebAPI.Names
PropertyNameCaseInsensitive = true,
};
// Known usage codes → (German description, isThematic).
// Thematic categories provide real source names (not etymology); unknown codes fall through as etym.
internal static readonly Dictionary<string, (string Description, bool Thematic)> UsageMap =
new(StringComparer.OrdinalIgnoreCase)
{
["norn"] = ("Nordische/Altnordische Etymologie", false),
["japa"] = ("Japanische Etymologie", false),
["mythg"] = ("Griechische Mythologie", false),
["ger"] = ("Germanische/Deutsche Etymologie", false),
["arb"] = ("Arabische Etymologie", false),
["disney"] = ("Disney-Charaktere", true),
["pokemon"] = ("Pokémon-Namen", true),
["encities"] = ("Namen englischer Städte", true),
["hrcities"] = ("Namen kroatischer Städte", true),
["usstates"] = ("Namen von US-Bundesstaaten", true),
};
public async Task<NameSuggestionResult> SuggestAsync(
string? letter, string? gender, string? usages, int count,
CancellationToken ct = default)
@@ -44,7 +61,11 @@ namespace GerbilManagerWebAPI.Names
"Du bist ein Helfer für Rennmaus-Züchter. " +
"Antworte IMMER mit einem reinen JSON-Array — KEINE Markdown-Code-Blöcke, " +
"KEINE Erklärungen, KEIN Text außerhalb des Arrays. " +
"Jedes Element hat genau die Felder: name, meaning, origin (alle Strings, alle auf Deutsch).";
"Jedes Element hat genau die Felder: name, meaning, origin (alle Strings, alle auf Deutsch). " +
"Bei thematischen Kategorien (Disney, Pokémon, Städte, Bundesstaaten): " +
"origin = Kategoriename (z.B. \"Disney\", \"Pokémon\", \"Englische Stadt\", \"Kroatische Stadt\", \"US-Bundesstaat\"), " +
"meaning = kurzer Kontext aus der Quelle (z.B. Film/Figur-Beschreibung, Lage der Stadt, Bundesstaat-Bezug). " +
"Erfinde KEINE Etymologie für thematische Kategorien.";
internal static string BuildUserPrompt(string? letter, string? gender, string? usages, int count)
{
@@ -55,10 +76,44 @@ namespace GerbilManagerWebAPI.Names
if (!string.IsNullOrWhiteSpace(gender) &&
!gender.Equals("any", StringComparison.OrdinalIgnoreCase))
sb.Append($", passend für {(gender.Equals("female", StringComparison.OrdinalIgnoreCase) ? "weibliche" : "männliche")} Tiere");
bool hasThematic = false;
if (!string.IsNullOrWhiteSpace(usages))
sb.Append($", aus den Kulturkreisen: {usages}");
sb.Append(". Jeder Name muss eine echte etymologische Bedeutung und Herkunft haben ");
sb.Append("(keine erfundenen oder zufälligen Namen). ");
{
var codes = usages.Split(',', StringSplitOptions.RemoveEmptyEntries | StringSplitOptions.TrimEntries);
var etymDescriptions = new List<string>();
var thematicDescriptions = new List<string>();
foreach (var code in codes)
{
if (UsageMap.TryGetValue(code, out var entry))
{
if (entry.Thematic) thematicDescriptions.Add(entry.Description);
else etymDescriptions.Add(entry.Description);
}
else
{
etymDescriptions.Add(code);
}
}
if (etymDescriptions.Count > 0)
sb.Append($", aus den Kulturkreisen: {string.Join(", ", etymDescriptions)}");
if (thematicDescriptions.Count > 0)
sb.Append($", aus den Themen-Kategorien: {string.Join(", ", thematicDescriptions)}");
hasThematic = thematicDescriptions.Count > 0;
}
sb.Append(". ");
if (hasThematic)
{
sb.Append("Für Kulturkreis-Namen: echte etymologische Bedeutung und Herkunft. ");
sb.Append("Für Themen-Kategorien: echte Namen aus der Quelle, origin = Kategoriename, ");
sb.Append("Geschlecht-Filter kann ignoriert werden wenn nicht sinnvoll anwendbar. ");
}
else
{
sb.Append("Jeder Name muss eine echte etymologische Bedeutung und Herkunft haben ");
sb.Append("(keine erfundenen oder zufälligen Namen). ");
}
sb.Append($"Antworte mit genau {count} Elementen als reines JSON-Array: ");
sb.Append("[{\"name\":\"...\",\"meaning\":\"...\",\"origin\":\"...\"}]");
return sb.ToString();

View File

@@ -46,8 +46,8 @@ describe('Fraction', () => {
describe('Genotype serialization', () => {
it('round-trips display string <-> structured form', () => {
const g = fromDisplayString('Aa CC Dd EE GG Pp Spsp rere')
expect(toDisplayString(g)).toBe('Aa CC Dd EE GG Pp Spsp')
expect(toDisplayString(fromJSON(toJSON(g)))).toBe('Aa CC Dd EE GG Pp Spsp')
expect(toDisplayString(g)).toBe('Aa CC Dd EE GG Pp Spsp rere')
expect(toDisplayString(fromJSON(toJSON(g)))).toBe('Aa CC Dd EE GG Pp Spsp rere')
})
it('parses multi-char C-series alleles via maximal munch', () => {
@@ -72,8 +72,8 @@ describe('Genotype serialization', () => {
expect(g.P).toEqual(['P', 'p'])
})
it('wild type is AA CC DD EE GG PP spsp (rere omitted)', () => {
expect(toDisplayString(wildType())).toBe('AA CC DD EE GG PP spsp')
it('wild type is AA CC DD EE GG PP spsp rere', () => {
expect(toDisplayString(wildType())).toBe('AA CC DD EE GG PP spsp rere')
})
})
@@ -102,7 +102,7 @@ describe('Worked example from research report', () => {
expect(result.offspring).toHaveLength(1)
const only = result.offspring[0]
expect(only.genotype).toBe('Aa CC DD EE GG Pp spsp')
expect(only.genotype).toBe('Aa CC DD EE GG Pp spsp rere')
expect(only.probability.text).toBe('1')
expect(result.warnings).toHaveLength(0)
})
@@ -223,9 +223,8 @@ describe('Farbschlag catalog', () => {
expect(CATALOG[0]).toMatchObject({ name: 'REW', sortOrder: 0 })
// Every row has a non-empty canonical genotype display string and unique name.
// GEN-3h: bracket notation (e[f], c[chm], c[h]) allowed in tokens.
// GEN-4d: rere omitted from display -> 7 tokens (no Rex, no Sls), 8 (Rex or Sls), 9 (both).
expect(new Set(CATALOG.map((c) => c.name)).size).toBe(CATALOG.length)
expect(CATALOG.every((c) => /^[A-Za-z[\]?-]+( [A-Za-z[\]?-]+){6,8}$/.test(c.canonicalGenotype))).toBe(true)
expect(CATALOG.every((c) => /^[A-Za-z[\]?-]+( [A-Za-z[\]?-]+){7}$/.test(c.canonicalGenotype))).toBe(true)
})
it('genotypeToFarbschlag (DATA-1 denormalization contract) returns the plain name', () => {
@@ -286,7 +285,7 @@ describe('GEN-3a: Uw=G alias', () => {
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',
'AA CC DD EE Gg PP spsp rere',
)
expect(toDisplayString(fromDisplayString('AA CC DD EE uwuw PP spsp rere'))).not.toContain('uw')
})
@@ -298,16 +297,10 @@ describe('GEN-3a: second spotting locus Sls (WP)', () => {
expect(fromDisplayString('AA CC DD EE GG PP spsp rere WP').Sls).toEqual(['Sl', 'sl'])
})
it('toDisplayString omits wild-type Sls and Re, shows Slsl/Rere when non-wildtype', () => {
// GEN-4d: Re (rere) omitted at wildtype, like Sls.
expect(toDisplayString(wildType())).toBe('AA CC DD EE GG PP spsp')
// Rex het → Rere shown
expect(toDisplayString(fromDisplayString('AA CC DD EE GG PP spsp Rere'))).toBe(
'AA CC DD EE GG PP spsp Rere',
)
// WP → Slsl shown, rere still omitted
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 Slsl',
'AA CC DD EE GG PP spsp rere Slsl',
)
})
@@ -337,7 +330,7 @@ describe('GEN-3a: second spotting locus Sls (WP)', () => {
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')
expect(toDisplayString(g)).toBe('AA CC DD EE GG PP spsp rere')
})
it('extractGenotypeFlags reads deafness + tags', () => {
@@ -370,11 +363,11 @@ 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') // displayed as '-'
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',
'Aa C- DD EE GG Pp spsp rere',
)
})
})
@@ -597,15 +590,15 @@ describe('GEN-3h: breeder bracket-notation display + E-locus e-before-ef order',
it('ef displays as e[f], cchm as c[chm], ch as c[h]', () => {
// Fuchsschimmel: E=[ef,ef] hom
expect(toDisplayString(fromDisplayString('AA CC DD efef GG PP spsp rere'))).toBe(
'AA CC DD e[f]e[f] GG PP spsp',
'AA CC DD e[f]e[f] GG PP spsp rere',
)
// C-locus het: cchm + ch
expect(toDisplayString(fromDisplayString('aa cchmch DD EE GG PP spsp rere'))).toBe(
'aa c[chm]c[h] DD EE GG PP spsp',
'aa c[chm]c[h] DD EE GG PP spsp rere',
)
// C-locus hom cchm
expect(toDisplayString(fromDisplayString('aa cchmcchm DD EE GG PP spsp rere'))).toBe(
'aa c[chm]c[chm] DD EE GG PP spsp',
'aa c[chm]c[chm] DD EE GG PP spsp rere',
)
})
@@ -615,24 +608,24 @@ describe('GEN-3h: breeder bracket-notation display + E-locus e-before-ef order',
// Display must swap to [e, ef] per breeder convention.
const g = fromDisplayString('aa CC DD eef Gg Pp spsp rere')
expect(g.E).toEqual(['ef', 'e']) // storage order unchanged
expect(toDisplayString(g)).toBe('aa CC DD ee[f] Gg Pp spsp')
expect(toDisplayString(g)).toBe('aa CC DD ee[f] Gg Pp spsp rere')
})
it('E+e stays Ee (E dominant over e, no swap needed)', () => {
expect(toDisplayString(fromDisplayString('aa CC DD Ee GG PP spsp rere'))).toBe(
'aa CC DD Ee GG PP spsp',
'aa CC DD Ee GG PP spsp rere',
)
})
it('E+ef displays Ee[f] (E dominant stays first, ef renders as e[f])', () => {
expect(toDisplayString(fromDisplayString('aa CC DD Eef GG PP spsp rere'))).toBe(
'aa CC DD Ee[f] GG PP spsp',
'aa CC DD Ee[f] GG PP spsp rere',
)
})
// ── Julian oracle fixtures (HUMANQUESTION D3/D4) ─────────────────────
it('Tier C: oracle display string round-trips exactly (aa C- D- ee[f] Gg Pp spsp)', () => {
const display = 'aa C- D- ee[f] Gg Pp spsp'
it('Tier C: oracle display string round-trips exactly (aa C- D- ee[f] Gg Pp spsp rere)', () => {
const display = 'aa C- D- ee[f] Gg Pp spsp rere'
const g = fromDisplayString(display)
expect(g.E).toEqual(['ef', 'e'])
expect(g.C).toEqual(['C', '?'])
@@ -640,16 +633,16 @@ describe('GEN-3h: breeder bracket-notation display + E-locus e-before-ef order',
// Farbschlag scope is outside GEN-3h; god confirmed colour is correct as-is.
})
it('Zuleika oracle: aa c[chm]c[h] DD Ee Gg PP spsp', () => {
const display = 'aa c[chm]c[h] DD Ee Gg PP spsp'
it('Zuleika oracle: aa c[chm]c[h] DD Ee Gg PP spsp rere', () => {
const display = 'aa c[chm]c[h] DD Ee Gg PP spsp rere'
const g = fromDisplayString(display)
expect(g.C).toEqual(['cchm', 'ch'])
expect(g.E).toEqual(['E', 'e'])
expect(toDisplayString(g)).toBe(display)
})
it('Milka oracle: aa Cc[h] dd EE Gg P- Spsp', () => {
const display = 'aa Cc[h] dd EE Gg P- Spsp'
it('Milka oracle: aa Cc[h] dd EE Gg P- Spsp rere', () => {
const display = 'aa Cc[h] dd EE Gg P- Spsp rere'
const g = fromDisplayString(display)
expect(g.C).toEqual(['C', 'ch'])
expect(g.D).toEqual(['d', 'd'])
@@ -672,7 +665,7 @@ describe('GEN-3h: breeder bracket-notation display + E-locus e-before-ef order',
it('e[-] standalone: parses as [e,?], displays e-', () => {
const g = fromDisplayString('aa CC DD e[-] GG PP spsp rere')
expect(g.E).toEqual(['e', '?'])
expect(toDisplayString(g)).toBe('aa CC DD e- GG PP spsp')
expect(toDisplayString(g)).toBe('aa CC DD e- GG PP spsp rere')
})
it('CR-1a: Silvain oracle ee[-] parses without crash → [e,?], displays e-', () => {
@@ -684,6 +677,6 @@ describe('GEN-3h: breeder bracket-notation display + E-locus e-before-ef order',
expect(g.C).toEqual(['cchm', 'cchm'])
expect(g.D).toEqual(['D', 'd'])
expect(g.Sp).toEqual(['Sp', 'sp'])
expect(toDisplayString(g)).toBe('aa c[chm]c[chm] Dd e- Gg Pp Spsp')
expect(toDisplayString(g)).toBe('aa c[chm]c[chm] Dd e- Gg Pp Spsp rere')
})
})

View File

@@ -2,425 +2,425 @@
{
"name": "REW",
"english": "Pink Eyed White",
"canonicalGenotype": "AA c[h]c[h] DD EE GG pp spsp",
"canonicalGenotype": "AA c[h]c[h] 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 c[h]c[h] DD EE GG PP spsp",
"canonicalGenotype": "aa c[h]c[h] DD EE GG PP spsp rere",
"sortOrder": 1,
"image": "hermelin.jpeg"
},
{
"name": "Himalaya",
"english": "Himalayan",
"canonicalGenotype": "AA c[h]c[h] DD EE GG PP spsp",
"canonicalGenotype": "AA c[h]c[h] DD EE GG PP spsp rere",
"sortOrder": 2,
"image": "himalaya.jpg"
},
{
"name": "Zobel",
"english": "Sable",
"canonicalGenotype": "aa c[chm]c[chm] DD EE gg PP spsp",
"canonicalGenotype": "aa c[chm]c[chm] DD EE gg PP spsp rere",
"sortOrder": 3,
"image": "zobel.jpeg"
},
{
"name": "Rotaugenschimmel",
"english": "Red-Eyed Roan",
"canonicalGenotype": "AA CC DD e[f]e[f] GG pp spsp",
"canonicalGenotype": "AA CC DD e[f]e[f] GG pp spsp rere",
"sortOrder": 4,
"image": "rotaugen-schimmel.jpg"
},
{
"name": "Agouti",
"english": "Golden Agouti",
"canonicalGenotype": "AA CC DD EE GG PP spsp",
"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",
"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",
"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",
"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",
"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",
"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",
"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",
"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",
"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",
"canonicalGenotype": "aa CC DD ee GG pp spsp rere",
"sortOrder": 14,
"image": "rotfuchs.JPG"
},
{
"name": "Dilute Gold",
"english": "dd Argente Golden",
"canonicalGenotype": "AA CC dd EE GG pp spsp",
"canonicalGenotype": "AA CC dd EE GG pp spsp rere",
"sortOrder": 15,
"image": "gold-dd.jpg"
},
{
"name": "Dilute Platin",
"english": "dd Lilac",
"canonicalGenotype": "aa CC dd EE GG pp spsp",
"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",
"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",
"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",
"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",
"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",
"canonicalGenotype": "AA CC DD EE gg pp spsp rere",
"sortOrder": 21,
"image": "elfenbein.jpg"
},
{
"name": "Kohlfuchs",
"canonicalGenotype": "aa CC DD ee GG PP spsp",
"canonicalGenotype": "aa CC DD ee GG PP spsp rere",
"sortOrder": 22,
"image": "kohlfuchs.jpg"
},
{
"name": "Polarfuchs",
"canonicalGenotype": "AA CC DD ee gg PP spsp",
"canonicalGenotype": "AA CC DD ee gg PP spsp rere",
"sortOrder": 23,
"image": "polarfuchs.jpg"
},
{
"name": "Saphir",
"canonicalGenotype": "aa CC DD EE GG pp spsp",
"canonicalGenotype": "aa CC DD EE GG pp spsp rere",
"sortOrder": 24,
"image": "saphir.jpg"
},
{
"name": "Orangeschimmel",
"canonicalGenotype": "AA CC DD e[f]e[f] GG PP spsp",
"canonicalGenotype": "AA CC DD e[f]e[f] GG PP spsp rere",
"sortOrder": 25,
"image": "schimmel-orangeschimmel.jpg"
},
{
"name": "Topas",
"canonicalGenotype": "AA CC DD EE GG pp spsp",
"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",
"canonicalGenotype": "aa CC DD EE GG pp spsp rere",
"sortOrder": 27,
"image": "platin-hell.jpg"
},
{
"name": "Dilute Agouti",
"canonicalGenotype": "AA CC dd EE GG PP spsp",
"canonicalGenotype": "AA CC dd EE GG PP spsp rere",
"sortOrder": 28,
"image": "agouti-dd.jpg"
},
{
"name": "Dilute Silberagouti",
"canonicalGenotype": "AA CC dd EE gg PP spsp",
"canonicalGenotype": "AA CC dd EE gg PP spsp rere",
"sortOrder": 29,
"image": "silberagouti-dd.jpg"
},
{
"name": "Dilute Kohlfuchs",
"canonicalGenotype": "aa CC dd ee GG PP spsp",
"canonicalGenotype": "aa CC dd ee GG PP spsp rere",
"sortOrder": 30,
"image": "kohlfuchs-dd.jpg"
},
{
"name": "Dilute Anthrazit",
"canonicalGenotype": "aa CC dd EE gg PP spsp",
"canonicalGenotype": "aa CC dd EE gg PP spsp rere",
"sortOrder": 31,
"image": "anthrazit-dd.jpg"
},
{
"name": "Dilute Algierfuchs",
"canonicalGenotype": "AA CC dd ee GG PP spsp",
"canonicalGenotype": "AA CC dd ee GG PP spsp rere",
"sortOrder": 32
},
{
"name": "Dilute Goldfuchs",
"canonicalGenotype": "AA CC dd ee GG pp spsp",
"canonicalGenotype": "AA CC dd ee GG pp spsp rere",
"sortOrder": 33
},
{
"name": "Dilute Rotfuchs",
"canonicalGenotype": "aa CC dd ee GG pp spsp",
"canonicalGenotype": "aa CC dd ee GG pp spsp rere",
"sortOrder": 34
},
{
"name": "Dilute Polarfuchs",
"canonicalGenotype": "AA CC dd ee gg PP spsp",
"canonicalGenotype": "AA CC dd ee gg PP spsp rere",
"sortOrder": 35
},
{
"name": "Silberschimmel",
"canonicalGenotype": "AA CC DD e[f]e[f] gg PP spsp",
"canonicalGenotype": "AA CC DD e[f]e[f] gg PP spsp rere",
"sortOrder": 36,
"image": "silberschimmel.jpg"
},
{
"name": "Polarfuchsschimmel",
"canonicalGenotype": "AA CC DD e[f]e[f] gg PP spsp",
"canonicalGenotype": "AA CC DD e[f]e[f] gg PP spsp rere",
"sortOrder": 37,
"image": "polarfuchsschimmel.jpg"
},
{
"name": "Algierfuchsschimmel",
"canonicalGenotype": "AA CC DD e[f]e[f] GG PP spsp",
"canonicalGenotype": "AA CC DD e[f]e[f] GG PP spsp rere",
"sortOrder": 38,
"image": "algierfuchsschimmel.jpg"
},
{
"name": "Kohlfuchsschimmel",
"canonicalGenotype": "aa CC DD e[f]e[f] GG PP spsp",
"canonicalGenotype": "aa CC DD e[f]e[f] GG PP spsp rere",
"sortOrder": 39,
"image": "kohlfuchsschimmel.jpg"
},
{
"name": "Blaufuchsschimmel",
"canonicalGenotype": "aa CC DD e[f]e[f] gg PP spsp",
"canonicalGenotype": "aa CC DD e[f]e[f] gg PP spsp rere",
"sortOrder": 40,
"image": "blaufuchsschimmel.jpg"
},
{
"name": "Kohlfuchs, hell",
"canonicalGenotype": "aa CC DD ee GG PP spsp",
"canonicalGenotype": "aa CC DD ee GG PP spsp rere",
"sortOrder": 41,
"image": "kohlfuchs-hell.jpg"
},
{
"name": "Goldfuchs, hell",
"canonicalGenotype": "AA CC DD ee GG pp spsp",
"canonicalGenotype": "AA CC DD ee GG pp spsp rere",
"sortOrder": 42,
"image": "goldfuchs-hell.jpg"
},
{
"name": "Goldfuchsschimmel",
"canonicalGenotype": "AA CC DD e[f]e[f] GG pp spsp",
"canonicalGenotype": "AA CC DD e[f]e[f] GG pp spsp rere",
"sortOrder": 43,
"image": "goldfuchsschimmel.jpg"
},
{
"name": "Gold-Hell",
"canonicalGenotype": "AA CC DD EE GG pp spsp",
"canonicalGenotype": "AA CC DD EE GG pp spsp rere",
"sortOrder": 44,
"image": "gold-hell.jpg"
},
{
"name": "Blaufuchs, hell",
"canonicalGenotype": "aa CC DD ee gg PP spsp",
"canonicalGenotype": "aa CC DD ee gg PP spsp rere",
"sortOrder": 45,
"image": "blaufuchs-hell.jpeg"
},
{
"name": "Rotfuchsschimmel",
"canonicalGenotype": "aa CC DD e[f]e[f] GG pp spsp",
"canonicalGenotype": "aa CC DD e[f]e[f] GG pp spsp rere",
"sortOrder": 46,
"image": "rotfuchsschimmel.jpg"
},
{
"name": "Polarfuchs, hell",
"canonicalGenotype": "AA CC DD ee gg PP spsp",
"canonicalGenotype": "AA CC DD ee gg PP spsp rere",
"sortOrder": 47,
"image": "polarfuchs-hell.jpeg"
},
{
"name": "Kohlfuchsschimmel, hell",
"canonicalGenotype": "aa CC DD e[f]e[f] GG PP spsp",
"canonicalGenotype": "aa CC DD e[f]e[f] GG PP spsp rere",
"sortOrder": 48,
"image": "kohlfuchsschimmel-hell.jpg"
},
{
"name": "Rotfuchs, hell",
"canonicalGenotype": "aa CC DD ee GG pp spsp",
"canonicalGenotype": "aa CC DD ee GG pp spsp rere",
"sortOrder": 49,
"image": "rotfuchs-hell.jpg"
},
{
"name": "Kohlfuchs-Hell",
"canonicalGenotype": "aa CC DD ee GG PP spsp",
"canonicalGenotype": "aa CC DD ee GG PP spsp rere",
"sortOrder": 50,
"image": "kohlfuchs-hell-2.jpg"
},
{
"name": "Algierfuchs, hell",
"canonicalGenotype": "AA CC DD ee GG PP spsp",
"canonicalGenotype": "AA CC DD ee GG PP spsp rere",
"sortOrder": 51,
"image": "algierfuchs-hell.JPG"
},
{
"name": "Dilute Topas",
"canonicalGenotype": "AA CC dd EE GG pp spsp",
"canonicalGenotype": "AA CC dd EE GG pp spsp rere",
"sortOrder": 52,
"image": "topas-dd.jpg"
},
{
"name": "Dilute Blaufuchs",
"canonicalGenotype": "aa CC dd ee gg pp spsp",
"canonicalGenotype": "aa CC dd ee gg pp spsp rere",
"sortOrder": 53,
"image": "blaufuchs-dd.jpg"
},
{
"name": "Marder",
"canonicalGenotype": "aa c[chm]c[chm] DD EE GG PP spsp",
"canonicalGenotype": "aa c[chm]c[chm] DD EE GG PP spsp rere",
"sortOrder": 54,
"image": "marder.JPG"
},
{
"name": "Siam",
"canonicalGenotype": "aa c[chm]c[h] DD EE GG PP spsp",
"canonicalGenotype": "aa c[chm]c[h] DD EE GG PP spsp rere",
"sortOrder": 55,
"image": "siam-marder-hell.JPG"
},
{
"name": "Zobel-Hell",
"canonicalGenotype": "aa c[chm]c[h] DD EE gg PP spsp",
"canonicalGenotype": "aa c[chm]c[h] DD EE gg PP spsp rere",
"sortOrder": 56,
"image": "zobel-hell.jpg"
},
{
"name": "CP-Agouti",
"canonicalGenotype": "AA c[chm]c[chm] DD EE GG PP spsp",
"canonicalGenotype": "AA c[chm]c[chm] DD EE GG PP spsp rere",
"sortOrder": 57,
"image": "agouti-cp.jpg"
},
{
"name": "CP-Agouti-Hell",
"canonicalGenotype": "AA c[chm]c[h] DD EE GG PP spsp",
"canonicalGenotype": "AA c[chm]c[h] DD EE GG PP spsp rere",
"sortOrder": 58
},
{
"name": "CP-Silberagouti",
"canonicalGenotype": "AA c[chm]c[chm] DD EE gg PP spsp",
"canonicalGenotype": "AA c[chm]c[chm] DD EE gg PP spsp rere",
"sortOrder": 59,
"image": "silberagouti-cp.JPG"
},
{
"name": "CP-Silberagouti-Hell",
"canonicalGenotype": "AA c[chm]c[h] DD EE gg PP spsp",
"canonicalGenotype": "AA c[chm]c[h] DD EE gg PP spsp rere",
"sortOrder": 60
},
{
"name": "CP-Algierfuchs",
"canonicalGenotype": "AA c[chm]c[chm] DD ee GG PP spsp",
"canonicalGenotype": "AA c[chm]c[chm] DD ee GG PP spsp rere",
"sortOrder": 61,
"image": "algierfuchs-cp.jpg"
},
{
"name": "CP-Algierfuchs-Hell",
"canonicalGenotype": "AA c[chm]c[h] DD ee GG PP spsp",
"canonicalGenotype": "AA c[chm]c[h] DD ee GG PP spsp rere",
"sortOrder": 62
},
{
"name": "CP-Polarfuchs",
"canonicalGenotype": "AA c[chm]c[chm] DD ee gg PP spsp",
"canonicalGenotype": "AA c[chm]c[chm] DD ee gg PP spsp rere",
"sortOrder": 63,
"image": "polarfuchs-cp.jpg"
},
{
"name": "CP-Polarfuchs-Hell",
"canonicalGenotype": "AA c[chm]c[h] DD ee gg PP spsp",
"canonicalGenotype": "AA c[chm]c[h] DD ee gg PP spsp rere",
"sortOrder": 64
},
{
"name": "CP-Fuchs",
"canonicalGenotype": "AA c[chm]c[chm] dd ee GG PP spsp",
"canonicalGenotype": "AA c[chm]c[chm] dd ee GG PP spsp rere",
"sortOrder": 65
},
{
"name": "CP-Fuchs-Hell",
"canonicalGenotype": "AA c[chm]c[h] dd ee GG PP spsp",
"canonicalGenotype": "AA c[chm]c[h] dd ee GG PP spsp rere",
"sortOrder": 66
},
{
"name": "CP-Blaufuchs",
"canonicalGenotype": "AA c[chm]c[chm] dd ee gg PP spsp",
"canonicalGenotype": "AA c[chm]c[chm] dd ee gg PP spsp rere",
"sortOrder": 67
},
{
"name": "CP-Orangeschimmel",
"canonicalGenotype": "AA c[chm]c[chm] DD e[f]e[f] GG PP spsp",
"canonicalGenotype": "AA c[chm]c[chm] DD e[f]e[f] GG PP spsp rere",
"sortOrder": 68
},
{
"name": "CP-Orangeschimmel-Hell",
"canonicalGenotype": "AA c[chm]c[h] DD e[f]e[f] GG PP spsp",
"canonicalGenotype": "AA c[chm]c[h] DD e[f]e[f] GG PP spsp rere",
"sortOrder": 69
}
]

View File

@@ -101,21 +101,18 @@ function displayPair(locus: LocusKey, pair: AllelePair): AllelePair {
}
/**
* Compact display string, e.g. "Aa CC Dd EE GG Pp spsp".
* The Re locus is OMITTED when wild-type (re/re) — Julian: only show Rex when a
* Rex allele is present (Rere/ReRe). Matches the 7-locus notation used by the
* breeder. The Sls locus is likewise 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 Slsl"). Round-trips: missing Re → re/re; missing
* Sls → sl/sl. GEN-3c: unknown alleles stored as '?' displayed as '-' (breeder
* convention). GEN-3h: bracket notation (e[f], c[chm], c[h]); E-locus display
* order E > e > e[f].
* 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-".
* GEN-3h: sub-alleles use breeder bracket notation (e[f], c[chm], c[h]);
* E-locus display order is E > e > e[f] (e before e[f] in het pairs).
*/
export function toDisplayString(g: Genotype): string {
return LOCUS_ORDER.filter(
(locus) =>
!(locus === 'Re' && g.Re[0] === 're' && g.Re[1] === 're') &&
!(locus === 'Sls' && g.Sls[0] === 'sl' && g.Sls[1] === 'sl'),
(locus) => locus !== 'Sls' || !(g.Sls[0] === 'sl' && g.Sls[1] === 'sl'),
)
.map((locus) => {
const [a, b] = displayPair(locus, g[locus])

View File

@@ -27,7 +27,7 @@ import { getInbreedingCoefficient } from '../api/pedigree'
import type { Gender, Gerbil } from '../api/types'
import { useApi } from '../hooks/useApi'
import { formatDate, genderLabel } from '../format/labels'
import { UNKNOWN_FARBSCHLAG, fromDisplayString, genotypeToFarbschlag, toDisplayString } from '../genetics'
import { UNKNOWN_FARBSCHLAG, fromDisplayString, genotypeToFarbschlag } from '../genetics'
import {
DEFAULT_GENERATIONS,
ancestorsAt,
@@ -512,11 +512,7 @@ function PrintCell({
</div>
)}
{farbschlag && <div className="stammbaum-print__sub">{farbschlag}</div>}
{g.genotype && gen <= 2 && (
<div className="stammbaum-print__geno">
{toDisplayString(fromDisplayString(g.genotype))}
</div>
)}
{g.genotype && gen <= 2 && <div className="stammbaum-print__geno">{g.genotype}</div>}
</div>
)
}

View File

@@ -128,6 +128,7 @@ export default function WurfDetailPage() {
</ul>
)}
<h3>{t.detail.expectedColors}</h3>
{expected ? (
<BreedingResultView result={expected} title={t.detail.expectedColors} />
) : (