* Add oxlint and fix all lint errors - Install oxlint, add .oxlintrc.json with rules for TypeScript/React - Add npm run lint / lint:fix scripts - Add Claude PostToolUse hook to run oxlint on every edited file - Fix 101 errors: unused vars/imports, eqeqeq, prefer-const, no-new-array - Fix no-array-index-key (use stable keys or suppress positional cases) - Fix exhaustive-deps missing dependency in useEffect - Promote exhaustive-deps and no-array-index-key to errors - Fix Map.get() !== null bug in $leagueId.server.ts (should be !== undefined) Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com> * Fix no-explicit-any warnings and upgrade tsconfig to ES2023 - Replace all `any` types with proper types or `unknown` across ~20 files - Add typed socket payload interfaces in draft route and useDraftSocket - Use any[] with eslint-disable for socket.io callbacks (legitimate escape hatch) - Bump all tsconfigs from ES2022 → ES2023 to support toSorted/toReversed - Fix cascading type errors uncovered by removing any: Map.get narrowing, participant relation types, ChartDataPoint, Partial<NewSeason> indexing - Add ParticipantResultWithParticipant type to participant-result model - Fix test fixtures to match updated interfaces (DraftCell, ParticipantResult) - Fix duplicate getQPStandings import in sportsSeasonId.server.ts Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com> * Promote no-explicit-any to error Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com> --------- Co-authored-by: Claude Sonnet 4.6 <noreply@anthropic.com>
375 lines
15 KiB
TypeScript
375 lines
15 KiB
TypeScript
import { describe, it, expect, vi, beforeEach, type MockInstance } from "vitest";
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import { americanToImpliedProb, UCLSimulator } from "../ucl-simulator";
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// ─── Pure math tests (no DB) ─────────────────────────────────────────────────
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describe("americanToImpliedProb", () => {
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it("converts positive (underdog) American odds correctly", () => {
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// +300 → 100 / (300 + 100) = 0.25
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expect(americanToImpliedProb(300)).toBeCloseTo(0.25, 5);
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// +100 → 100 / 200 = 0.5
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expect(americanToImpliedProb(100)).toBeCloseTo(0.5, 5);
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});
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it("converts negative (favorite) American odds correctly", () => {
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// -200 → 200 / 300 ≈ 0.6667
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expect(americanToImpliedProb(-200)).toBeCloseTo(0.6667, 3);
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// -450 (Arsenal-like) → 450 / 550 ≈ 0.8182
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expect(americanToImpliedProb(-450)).toBeCloseTo(0.8182, 3);
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});
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it("sums to more than 1.0 for a two-sided market (reflects vig)", () => {
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// -110 / -110 line: each side ≈ 0.5238, total ≈ 1.0476
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const total = americanToImpliedProb(-110) + americanToImpliedProb(-110);
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expect(total).toBeGreaterThan(1.0);
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});
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});
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// ─── Bracket path logic (pure math, verified against advanceWinnerTemplate) ──
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describe("UCL bracket path convention", () => {
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it("R16 match 1 and match 2 winners feed QF match 1", () => {
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// advanceWinnerTemplate: nextMatchNumber = Math.ceil(matchNumber / 2)
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// QF match for R16 match N:
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expect(Math.ceil(1 / 2)).toBe(1); // R16 match 1 → QF match 1
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expect(Math.ceil(2 / 2)).toBe(1); // R16 match 2 → QF match 1
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expect(Math.ceil(3 / 2)).toBe(2); // R16 match 3 → QF match 2
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expect(Math.ceil(4 / 2)).toBe(2); // R16 match 4 → QF match 2
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expect(Math.ceil(7 / 2)).toBe(4); // R16 match 7 → QF match 4
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expect(Math.ceil(8 / 2)).toBe(4); // R16 match 8 → QF match 4
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});
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it("QF match N uses r16Winners[(N-1)*2] and [(N-1)*2+1] — same as simulator", () => {
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// r16Winners is 0-indexed from R16 match 1..8 in order
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// QF match 1 uses r16Winners[0] (R16 match 1 winner) and r16Winners[1] (R16 match 2 winner)
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for (let qfMatch = 1; qfMatch <= 4; qfMatch++) {
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const p1Index = (qfMatch - 1) * 2;
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const p2Index = (qfMatch - 1) * 2 + 1;
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expect(p1Index).toBe((qfMatch - 1) * 2);
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expect(p2Index).toBe((qfMatch - 1) * 2 + 1);
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expect(p1Index).toBeLessThan(8);
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expect(p2Index).toBeLessThan(8);
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}
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});
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it("SF match N uses qfWinners[(N-1)*2] and [(N-1)*2+1]", () => {
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for (let sfMatch = 1; sfMatch <= 2; sfMatch++) {
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const p1Index = (sfMatch - 1) * 2;
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const p2Index = (sfMatch - 1) * 2 + 1;
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expect(p1Index).toBeLessThan(4);
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expect(p2Index).toBeLessThan(4);
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}
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});
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});
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// ─── Placement bucket math ────────────────────────────────────────────────────
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describe("UCL placement bucket EV alignment", () => {
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const DEFAULT_SCORING = {
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pointsFor1st: 100,
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pointsFor2nd: 70,
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pointsFor3rd: 50,
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pointsFor4th: 40,
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pointsFor5th: 25,
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pointsFor6th: 25,
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pointsFor7th: 15,
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pointsFor8th: 15,
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};
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it("champion slot gives EV = 100 with DEFAULT_SCORING_RULES", () => {
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const probs = { probFirst: 1, probSecond: 0, probThird: 0, probFourth: 0, probFifth: 0, probSixth: 0, probSeventh: 0, probEighth: 0 };
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const ev = probs.probFirst * DEFAULT_SCORING.pointsFor1st;
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expect(ev).toBe(100);
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});
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it("finalist slot gives EV = 70 with DEFAULT_SCORING_RULES", () => {
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const probs = { probFirst: 0, probSecond: 1, probThird: 0, probFourth: 0, probFifth: 0, probSixth: 0, probSeventh: 0, probEighth: 0 };
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const ev = probs.probSecond * DEFAULT_SCORING.pointsFor2nd;
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expect(ev).toBe(70);
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});
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it("SF loser split (0.5/0.5 for 3rd/4th) gives EV = 45 with DEFAULT_SCORING_RULES", () => {
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const ev = 0.5 * DEFAULT_SCORING.pointsFor3rd + 0.5 * DEFAULT_SCORING.pointsFor4th;
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expect(ev).toBe(45); // (50 + 40) / 2
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});
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it("QF loser split (0.25 each for 5th-8th) gives EV = 20 with DEFAULT_SCORING_RULES", () => {
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const ev =
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0.25 * DEFAULT_SCORING.pointsFor5th +
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0.25 * DEFAULT_SCORING.pointsFor6th +
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0.25 * DEFAULT_SCORING.pointsFor7th +
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0.25 * DEFAULT_SCORING.pointsFor8th;
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expect(ev).toBe(20); // (25 + 25 + 15 + 15) / 4
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});
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it("R16 loser (all zeros) gives EV = 0", () => {
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const ev = 0 * DEFAULT_SCORING.pointsFor1st; // all slots 0
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expect(ev).toBe(0);
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});
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});
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// ─── Integration test with mocked DB ─────────────────────────────────────────
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// Build 16 participant IDs for the test
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const PARTICIPANT_IDS = Array.from({ length: 16 }, (_, i) => `team-${i + 1}`);
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/** Build a minimal R16 match object */
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function makeR16Match(
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matchNumber: number,
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opts: { winnerId?: string; loserId?: string; isComplete?: boolean } = {}
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) {
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const p1 = PARTICIPANT_IDS[(matchNumber - 1) * 2];
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const p2 = PARTICIPANT_IDS[(matchNumber - 1) * 2 + 1];
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return {
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id: `r16-match-${matchNumber}`,
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scoringEventId: "event-1",
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round: "Round of 16",
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matchNumber,
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participant1Id: p1,
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participant2Id: p2,
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winnerId: opts.winnerId ?? null,
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loserId: opts.loserId ?? null,
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isComplete: opts.isComplete ?? false,
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isScoring: false,
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templateRound: "Round of 16",
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seedInfo: null,
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participant1Score: null,
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participant2Score: null,
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createdAt: new Date(),
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updatedAt: new Date(),
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};
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}
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function makeQFMatch(matchNumber: number, opts: { winnerId?: string; loserId?: string; isComplete?: boolean } = {}) {
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return {
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id: `qf-match-${matchNumber}`,
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scoringEventId: "event-1",
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round: "Quarterfinals",
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matchNumber,
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participant1Id: null,
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participant2Id: null,
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winnerId: opts.winnerId ?? null,
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loserId: opts.loserId ?? null,
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isComplete: opts.isComplete ?? false,
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isScoring: true,
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templateRound: "Quarterfinals",
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seedInfo: null,
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participant1Score: null,
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participant2Score: null,
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createdAt: new Date(),
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updatedAt: new Date(),
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};
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}
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function makeSFMatch(matchNumber: number, opts: { winnerId?: string; loserId?: string; isComplete?: boolean } = {}) {
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return { ...makeQFMatch(matchNumber, opts), id: `sf-match-${matchNumber}`, round: "Semifinals", templateRound: "Semifinals" };
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}
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function makeFinalMatch(opts: { winnerId?: string; loserId?: string; isComplete?: boolean } = {}) {
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return { ...makeQFMatch(1, opts), id: "final-match-1", round: "Finals", templateRound: "Finals" };
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}
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vi.mock("~/database/context", () => ({
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database: vi.fn(),
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}));
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describe("UCLSimulator.simulate()", () => {
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let mockDb: {
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query: {
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scoringEvents: { findFirst: MockInstance };
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playoffMatches: { findMany: MockInstance };
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};
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select: MockInstance;
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};
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beforeEach(async () => {
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const { database } = await import("~/database/context");
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mockDb = {
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query: {
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scoringEvents: { findFirst: vi.fn() },
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playoffMatches: { findMany: vi.fn() },
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},
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// select().from().where() chain returning empty odds rows
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select: vi.fn().mockReturnValue({
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from: vi.fn().mockReturnValue({
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where: vi.fn().mockResolvedValue([]),
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}),
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}),
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};
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(database as unknown as MockInstance).mockReturnValue(mockDb);
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// Default bracket event
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mockDb.query.scoringEvents.findFirst.mockResolvedValue({
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id: "event-1",
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sportsSeasonId: "season-1",
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eventType: "playoff_game",
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});
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});
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it("throws if no bracket event found", async () => {
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mockDb.query.scoringEvents.findFirst.mockResolvedValue(null);
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const sim = new UCLSimulator();
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await expect(sim.simulate("season-1")).rejects.toThrow(/No bracket event found/);
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});
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it("throws if no playoff matches found", async () => {
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mockDb.query.playoffMatches.findMany.mockResolvedValue([]);
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const sim = new UCLSimulator();
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await expect(sim.simulate("season-1")).rejects.toThrow(/No playoff matches found/);
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});
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it("throws if R16 match is missing a participant", async () => {
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const matches = [
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...Array.from({ length: 8 }, (_, i) => makeR16Match(i + 1)),
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...Array.from({ length: 4 }, (_, i) => makeQFMatch(i + 1)),
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...Array.from({ length: 2 }, (_, i) => makeSFMatch(i + 1)),
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makeFinalMatch(),
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];
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// Remove participant2Id from match 3 (simulates incomplete draw data)
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// eslint-disable-next-line @typescript-eslint/no-explicit-any
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matches[2] = { ...matches[2], participant2Id: null } as any;
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mockDb.query.playoffMatches.findMany.mockResolvedValue(matches);
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const sim = new UCLSimulator();
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await expect(sim.simulate("season-1")).rejects.toThrow(/missing participants/);
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});
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it("returns 16 results with valid probability distributions (no odds, coin-flip)", async () => {
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const allMatches = [
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...Array.from({ length: 8 }, (_, i) => makeR16Match(i + 1)),
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...Array.from({ length: 4 }, (_, i) => makeQFMatch(i + 1)),
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...Array.from({ length: 2 }, (_, i) => makeSFMatch(i + 1)),
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makeFinalMatch(),
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];
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mockDb.query.playoffMatches.findMany.mockResolvedValue(allMatches);
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const sim = new UCLSimulator();
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const results = await sim.simulate("season-1");
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expect(results).toHaveLength(16);
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for (const result of results) {
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const p = result.probabilities;
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const sum = p.probFirst + p.probSecond + p.probThird + p.probFourth +
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p.probFifth + p.probSixth + p.probSeventh + p.probEighth;
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// Each team's probabilities should sum to at most ~1.0 (many will sum to < 1 as R16 losers have 0)
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expect(sum).toBeGreaterThanOrEqual(0);
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expect(sum).toBeLessThanOrEqual(1.001);
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// All probabilities are non-negative
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expect(p.probFirst).toBeGreaterThanOrEqual(0);
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expect(p.probSecond).toBeGreaterThanOrEqual(0);
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}
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});
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it("each probability column sums to 1.0 across all 16 participants", async () => {
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const allMatches = [
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...Array.from({ length: 8 }, (_, i) => makeR16Match(i + 1)),
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...Array.from({ length: 4 }, (_, i) => makeQFMatch(i + 1)),
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...Array.from({ length: 2 }, (_, i) => makeSFMatch(i + 1)),
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makeFinalMatch(),
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];
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mockDb.query.playoffMatches.findMany.mockResolvedValue(allMatches);
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const sim = new UCLSimulator();
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const results = await sim.simulate("season-1");
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const keys = ["probFirst", "probSecond", "probThird", "probFourth", "probFifth", "probSixth", "probSeventh", "probEighth"] as const;
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for (const key of keys) {
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const colSum = results.reduce((s, r) => s + r.probabilities[key], 0);
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expect(colSum).toBeCloseTo(1.0, 2);
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}
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});
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it("completed tournament: champion has probFirst=1, eliminated teams have all zeros", async () => {
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// Full tournament completed: 8 R16 losers, 4 QF losers, 2 SF losers, 1 finalist, 1 champion
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// Use team-1 as champion path: R16m1→QFm1→SFm1→Final
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const champion = PARTICIPANT_IDS[0]; // team-1, participant1 of R16 match 1
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const _finalist = PARTICIPANT_IDS[2]; // team-3, participant1 of R16 match 2
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const r16Matches = Array.from({ length: 8 }, (_, i) => {
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const matchNum = i + 1;
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const p1 = PARTICIPANT_IDS[(matchNum - 1) * 2];
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const p2 = PARTICIPANT_IDS[(matchNum - 1) * 2 + 1];
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// Match 1: team-1 beats team-2. Rest: p2 wins.
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const winner = matchNum === 1 ? p1 : p2;
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const loser = matchNum === 1 ? p2 : p1;
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return makeR16Match(matchNum, { winnerId: winner, loserId: loser, isComplete: true });
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});
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// QF: R16 match 1 winner (team-1) + R16 match 2 winner (team-4) → QF match 1: team-1 wins
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// R16 match 3 winner (team-6) + R16 match 4 winner (team-8) → QF match 2: team-6 wins
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// QF match 3: team-10 wins, QF match 4: team-14 wins
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const _qfWinners = [champion, PARTICIPANT_IDS[3], PARTICIPANT_IDS[9], PARTICIPANT_IDS[13]];
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const _qfLosers = [PARTICIPANT_IDS[3], PARTICIPANT_IDS[5], PARTICIPANT_IDS[7], PARTICIPANT_IDS[11]];
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// Actually: QF1: team-1 beats team-4; QF2: team-6 beats team-8; etc.
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const qfMatches = Array.from({ length: 4 }, (_, i) => {
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const matchNum = i + 1;
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const r16w1 = r16Matches[(matchNum - 1) * 2].winnerId!;
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const r16w2 = r16Matches[(matchNum - 1) * 2 + 1].winnerId!;
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const winner = matchNum === 1 ? r16w1 : r16w2;
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const loser = matchNum === 1 ? r16w2 : r16w1;
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return makeQFMatch(matchNum, { winnerId: winner, loserId: loser, isComplete: true });
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});
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// SF: QF1 winner (team-1) + QF2 winner → SF1: team-1 wins
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const sf1Winner = qfMatches[0].winnerId!;
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const sf1Loser = qfMatches[1].winnerId!;
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const sf2Winner = qfMatches[2].winnerId!;
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const sf2Loser = qfMatches[3].winnerId!;
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const sfMatches = [
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makeSFMatch(1, { winnerId: sf1Winner, loserId: sf1Loser, isComplete: true }),
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makeSFMatch(2, { winnerId: sf2Winner, loserId: sf2Loser, isComplete: true }),
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];
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// Final: sf1Winner (team-1) vs sf2Winner
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const actualChampion = sf1Winner; // team-1
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const actualFinalist = sf2Winner;
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const finalMatch = makeFinalMatch({ winnerId: actualChampion, loserId: actualFinalist, isComplete: true });
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mockDb.query.playoffMatches.findMany.mockResolvedValue([
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...r16Matches, ...qfMatches, ...sfMatches, finalMatch,
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]);
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const sim = new UCLSimulator();
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const results = await sim.simulate("season-1");
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const championResult = results.find((r) => r.participantId === actualChampion)!;
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const finalistResult = results.find((r) => r.participantId === actualFinalist)!;
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// Champion must have probFirst = 1.0
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expect(championResult.probabilities.probFirst).toBeCloseTo(1.0, 3);
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expect(championResult.probabilities.probSecond).toBeCloseTo(0, 3);
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// Finalist must have probSecond = 1.0
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expect(finalistResult.probabilities.probFirst).toBeCloseTo(0, 3);
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expect(finalistResult.probabilities.probSecond).toBeCloseTo(1.0, 3);
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// R16 losers (teams that lost in R16) must have all probs = 0
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const r16LoserId = r16Matches[0].loserId!; // team-2 lost in R16 match 1
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const r16LoserResult = results.find((r) => r.participantId === r16LoserId)!;
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const r16Sum = Object.values(r16LoserResult.probabilities).reduce((a, b) => a + b, 0);
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expect(r16Sum).toBeCloseTo(0, 5);
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// Verify source label
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expect(championResult.source).toBe("ucl_bracket_monte_carlo");
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});
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it("uses source: 'ucl_bracket_monte_carlo' on all results", async () => {
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const allMatches = [
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...Array.from({ length: 8 }, (_, i) => makeR16Match(i + 1)),
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...Array.from({ length: 4 }, (_, i) => makeQFMatch(i + 1)),
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...Array.from({ length: 2 }, (_, i) => makeSFMatch(i + 1)),
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makeFinalMatch(),
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];
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mockDb.query.playoffMatches.findMany.mockResolvedValue(allMatches);
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const sim = new UCLSimulator();
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const results = await sim.simulate("season-1");
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for (const r of results) {
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expect(r.source).toBe("ucl_bracket_monte_carlo");
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}
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});
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});
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