Étend les tests ajoutés pour le catalogue de techniques culinaires : - tech-step-matcher.test.ts : normalizeText (cédille/ligature, texte déjà normalisé, chaîne vide), matchTechStep (listes/description vides, plusieurs mappings pointant vers le même techStep, respect des frontières de mot — évite les faux positifs type "recuire"/ "précuit"), et loadTechStepMappingRules (filtrage par locale contre une vraie base, locale sans mapping). - reference.test.ts : ordre alphabétique par key, idempotence du reseed (pas de doublon en rappelant seedReferenceData sans truncate). - recipe.test.ts : détection indépendante par étape sur une recette à plusieurs étapes (ordre préservé, y compris une étape sans match), et résolution de bout en bout du mapping le plus spécifique quand une description matche plusieurs techniques. 129 tests passent (13 nouveaux). Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
128 lines
5 KiB
TypeScript
128 lines
5 KiB
TypeScript
import { expect } from "chai";
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import request from "supertest";
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import { createApp } from "../src/app.js";
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import { prisma } from "../src/db/prisma.js";
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import { seedReferenceData } from "../src/db/reference-seed-data.js";
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import { resetDatabase } from "../test-support/reset-db.js";
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describe("Reference data", () => {
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const app = createApp();
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beforeEach(async () => {
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await resetDatabase();
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});
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after(async () => {
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await prisma.$disconnect();
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});
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describe("GET /reference/diets", () => {
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it("returns the seeded regimes, no session required", async () => {
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const res = await request(app).get("/reference/diets");
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expect(res.status).to.equal(200);
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expect(res.body).to.have.length(5);
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expect(res.body.map((d: { key: string }) => d.key)).to.include("vegetarian");
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expect(res.body[0]).to.have.keys(["id", "key"]);
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});
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});
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describe("GET /reference/allergies", () => {
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it("returns the seeded allergens with their key resolved, no session required", async () => {
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const res = await request(app).get("/reference/allergies");
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expect(res.status).to.equal(200);
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expect(res.body).to.have.length(14);
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expect(res.body.map((a: { key: string }) => a.key)).to.include("peanuts");
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expect(res.body[0]).to.have.keys(["id", "key", "kind"]);
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});
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it("classifies Gluten and Sulfites as intolerances, the rest as allergies", async () => {
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const res = await request(app).get("/reference/allergies");
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const byKey = (key: string) => res.body.find((a: { key: string }) => a.key === key);
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expect(byKey("gluten").kind).to.equal("INTOLERANCE");
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expect(byKey("sulfites").kind).to.equal("INTOLERANCE");
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expect(byKey("peanuts").kind).to.equal("ALLERGY");
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expect(res.body.filter((a: { kind: string }) => a.kind === "INTOLERANCE")).to.have.length(2);
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});
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});
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describe("GET /reference/ingredients", () => {
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it("returns the seeded ingredients, no session required", async () => {
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const res = await request(app).get("/reference/ingredients");
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expect(res.status).to.equal(200);
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expect(res.body.length).to.be.greaterThan(0);
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expect(res.body.map((i: { key: string }) => i.key)).to.include("tomato");
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expect(res.body[0]).to.have.keys([
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"id",
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"key",
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"icon",
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"category",
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"subcategory",
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"reproducible",
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"allergens",
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"diets",
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]);
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});
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it("resolves each ingredient's linked allergens, empty for one with none", async () => {
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const res = await request(app).get("/reference/ingredients");
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const byKey = (key: string) => res.body.find((i: { key: string }) => i.key === key);
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expect(byKey("egg").allergens.map((a: { key: string }) => a.key)).to.include("eggs");
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expect(byKey("tomato").allergens).to.deep.equal([]);
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});
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});
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describe("GET /reference/units", () => {
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it("returns the seeded units, no session required", async () => {
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const res = await request(app).get("/reference/units");
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expect(res.status).to.equal(200);
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expect(res.body).to.have.length(14);
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expect(res.body.map((u: { key: string }) => u.key)).to.include("gram");
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expect(res.body[0]).to.have.keys(["id", "key", "type", "toBaseFactor"]);
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});
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it("resolves MASS/VOLUME toBaseFactor against their type's base unit, COUNT units all at 1", async () => {
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const res = await request(app).get("/reference/units");
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const byKey = (key: string) => res.body.find((u: { key: string }) => u.key === key);
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expect(byKey("gram")).to.include({ type: "MASS", toBaseFactor: 1 });
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expect(byKey("kilogram")).to.include({ type: "MASS", toBaseFactor: 1000 });
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expect(byKey("liter")).to.include({ type: "VOLUME", toBaseFactor: 1000 });
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expect(byKey("piece")).to.include({ type: "COUNT", toBaseFactor: 1 });
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expect(byKey("pinch")).to.include({ type: "COUNT", toBaseFactor: 1 });
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});
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});
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describe("GET /reference/tech-steps", () => {
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it("returns the seeded techniques, no session required", async () => {
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const res = await request(app).get("/reference/tech-steps");
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expect(res.status).to.equal(200);
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expect(res.body).to.have.length(25);
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expect(res.body.map((t: { key: string }) => t.key)).to.include("simmer");
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expect(res.body[0]).to.have.keys(["id", "key"]);
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});
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it("orders techniques alphabetically by key", async () => {
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const res = await request(app).get("/reference/tech-steps");
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const keys = res.body.map((t: { key: string }) => t.key);
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expect(keys).to.deep.equal([...keys].sort());
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});
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it("reseeding is idempotent — no duplicate techniques or mappings", async () => {
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// resetDatabase already seeded once in beforeEach; seed a second time
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// on top of that without truncating, the way a redeploy would.
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await seedReferenceData(prisma);
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const res = await request(app).get("/reference/tech-steps");
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expect(res.body).to.have.length(25);
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expect(await prisma.techStepMapping.count()).to.equal(25);
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});
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});
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});
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