import { describe, expect, it } from "vitest"; import { nearestSnap, project, rubberband } from "../src/lib/sheet-physics"; describe("project", () => { it("zero velocity, zero displacement", () => { expect(project(0)).toBe(0); }); it("matches the exponential-decay projection formula (1000px/s @ 0.998 ≈ 499px)", () => { expect(project(1000, 0.998)).toBeCloseTo(499, 0); expect(project(-1000, 0.998)).toBeCloseTo(-499, 0); }); it("a lower decay rate projects shorter (0.99 stops faster than 0.998)", () => { expect(Math.abs(project(1000, 0.99))).toBeLessThan(Math.abs(project(1000, 0.998))); }); }); describe("rubberband", () => { it("more overshoot shows more, with diminishing increments (progressive damping)", () => { const d = 800; const r50 = rubberband(50, d); const r100 = rubberband(100, d); const r150 = rubberband(150, d); expect(r100).toBeGreaterThan(r50); expect(r150).toBeGreaterThan(r100); expect(r100 - r50).toBeGreaterThan(r150 - r100); }); it("the displayed overshoot is always less than the actual overshoot", () => { expect(rubberband(100, 800)).toBeLessThan(100); expect(rubberband(1, 800)).toBeLessThan(1); }); }); describe("nearestSnap", () => { it("snaps to the nearest point", () => { const snaps = [0, 300, 800] as const; expect(nearestSnap(120, snaps)).toBe(0); expect(nearestSnap(180, snaps)).toBe(300); expect(nearestSnap(540, snaps)).toBe(300); expect(nearestSnap(700, snaps)).toBe(800); }); it("exactly at the midpoint takes the earlier candidate", () => { expect(nearestSnap(150, [0, 300])).toBe(0); }); });