191 lines
5.8 KiB
TypeScript
191 lines
5.8 KiB
TypeScript
import { describe, expect, it } from "vitest";
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import {
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PuzzleValidationError,
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classicRegions,
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type PuzzleDefinition,
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} from "../../src/domain";
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import { killerDigitCombinations, solveLogically } from "../../src/solver";
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const easy: PuzzleDefinition = {
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version: 1,
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size: 9,
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givens: [
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5, 3, 0, 0, 7, 0, 0, 0, 0, 6, 0, 0, 1, 9, 5, 0, 0, 0, 0, 9, 8, 0, 0, 0, 0,
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6, 0, 8, 0, 0, 0, 6, 0, 0, 0, 3, 4, 0, 0, 8, 0, 3, 0, 0, 1, 7, 0, 0, 0, 2,
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0, 0, 0, 6, 0, 6, 0, 0, 0, 0, 2, 8, 0, 0, 0, 0, 4, 1, 9, 0, 0, 5, 0, 0, 0,
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0, 8, 0, 0, 7, 9,
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],
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regions: classicRegions(9),
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constraints: [],
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};
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const emptyFour: PuzzleDefinition = {
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version: 1,
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size: 4,
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givens: Array<number>(16).fill(0),
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regions: classicRegions(4),
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constraints: [],
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};
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describe("logical solver", () => {
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it("solves a standard puzzle and emits inspectable steps", () => {
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const result = solveLogically(easy);
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expect(result.status).toBe("solved");
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expect(result.values.every((value) => value > 0)).toBe(true);
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expect(result.steps.length).toBeGreaterThan(0);
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expect(result.steps.every((step) => step.explanation.length > 0)).toBe(
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true,
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);
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expect(
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result.steps.some(
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({ technique }) =>
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technique === "naked-single" || technique === "hidden-single",
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),
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).toBe(true);
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});
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it("stops safely at the configured step bound", () => {
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const result = solveLogically(easy, { maxSteps: 1 });
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expect(result.status).toBe("step-limit");
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expect(result.steps).toHaveLength(1);
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});
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it("does not apply positive cage reductions to a false cage", () => {
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const result = solveLogically({
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version: 1,
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size: 4,
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givens: Array<number>(16).fill(0),
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regions: classicRegions(4),
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constraints: [
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{
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type: "killer-cage",
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cells: [0, 1],
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sum: 3,
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noRepeat: false,
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negated: true,
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},
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],
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});
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expect(result.status).toBe("stuck");
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expect(result.steps).toEqual([]);
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expect(result.candidates[0]).toEqual([1, 2, 3, 4]);
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});
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it("resumes after an elimination-only step from exposed candidates", () => {
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const candidates = Array.from({ length: 16 }, () => [1, 2, 3, 4]);
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candidates[0] = [1, 2];
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candidates[1] = [1, 2];
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candidates[4] = [1, 3];
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candidates[5] = [1, 3];
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const first = solveLogically(emptyFour, {
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candidates,
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maxSteps: 1,
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});
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expect(first.steps[0]).toMatchObject({
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technique: "naked-pair",
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focusCells: [0, 1],
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placements: [],
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});
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expect(first.candidates[2]).toEqual([3, 4]);
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expect(first.candidates[3]).toEqual([3, 4]);
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const next = solveLogically(emptyFour, {
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candidates: first.candidates,
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maxSteps: 1,
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});
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expect(next.steps[0]?.placements).toEqual([]);
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expect(next.steps[0]?.eliminations.length).toBeGreaterThan(0);
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expect(next.steps[0]?.eliminations).not.toEqual(
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first.steps[0]?.eliminations,
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);
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// The first elimination remains applied while the solver advances to a
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// different logical effect. This is the key resume contract for guided
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// hints that do not place a digit.
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expect(next.candidates[2]).toEqual([3, 4]);
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expect(next.candidates[3]).toEqual([3, 4]);
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});
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it("intersects supplied restrictions with candidates legal on the board", () => {
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const candidates = Array.from({ length: 81 }, () =>
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Array.from({ length: 9 }, (_, index) => index + 1),
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);
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const result = solveLogically(easy, { candidates, maxSteps: 1 });
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expect(result.candidates[2]).not.toContain(3);
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expect(result.candidates[2]).not.toContain(5);
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expect(result.candidates[2]).not.toContain(6);
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expect(result.candidates[2]).not.toContain(7);
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expect(result.candidates[2]).not.toContain(8);
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expect(result.candidates[2]).not.toContain(9);
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});
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it("reports a valid empty restriction as an invalid logical state", () => {
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const candidates = Array.from({ length: 16 }, () => [1, 2, 3, 4]);
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candidates[0] = [];
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const result = solveLogically(emptyFour, { candidates });
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expect(result.status).toBe("invalid");
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expect(result.steps).toEqual([]);
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expect(result.candidates[0]).toEqual([]);
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});
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it("rejects malformed candidate restrictions with precise issues", () => {
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expect(() =>
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solveLogically(emptyFour, {
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candidates: Array.from({ length: 15 }, () => [1, 2, 3, 4]),
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}),
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).toThrow(PuzzleValidationError);
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try {
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solveLogically(emptyFour, {
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candidates: [
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[1, 1],
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[0, 5],
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...Array.from({ length: 14 }, () => [1, 2, 3, 4]),
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],
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});
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throw new Error("Expected malformed candidates to be rejected");
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} catch (error) {
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expect(error).toBeInstanceOf(PuzzleValidationError);
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expect((error as PuzzleValidationError).issues).toEqual(
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expect.arrayContaining([
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expect.objectContaining({ path: "candidates[0][1]" }),
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expect.objectContaining({ path: "candidates[1][0]" }),
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expect.objectContaining({ path: "candidates[1][1]" }),
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]),
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);
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}
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expect(() =>
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solveLogically(emptyFour, {
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candidates: [
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[1, 2, 3, 4],
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null,
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...Array.from({ length: 14 }, () => [1, 2, 3, 4]),
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] as unknown as readonly (readonly number[])[],
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}),
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).toThrow(PuzzleValidationError);
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});
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it("returns bounded killer combinations", () => {
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expect(
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killerDigitCombinations({ size: 9, count: 2, sum: 10 }).combinations,
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).toEqual([
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[1, 9],
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[2, 8],
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[3, 7],
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[4, 6],
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]);
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expect(
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killerDigitCombinations({ size: 9, count: 2, sum: 10, noRepeat: false })
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.combinations,
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).toContainEqual([5, 5]);
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expect(
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killerDigitCombinations({ size: 16, count: 8, sum: 68, maxResults: 1 })
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.truncated,
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).toBe(true);
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});
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});
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