Files
sudoku-tools/tests/domain/pack2Constraints.test.ts
T

223 lines
7.2 KiB
TypeScript

import { describe, expect, it } from "vitest";
import {
candidatesForCell,
classicRegions,
compilePuzzle,
constraintIsFeasible,
normalizePuzzle,
validatePuzzle,
type PuzzleDefinition,
type VariantConstraint,
} from "../../src/domain";
import { solveExact } from "../../src/solver";
const solved4 = [1, 2, 3, 4, 3, 4, 1, 2, 4, 3, 2, 1, 2, 1, 4, 3] as const;
function puzzle4(overrides: Partial<PuzzleDefinition> = {}): PuzzleDefinition {
return {
version: 1,
size: 4,
givens: new Array<number>(16).fill(0),
regions: classicRegions(4),
constraints: [],
...overrides,
};
}
const packTwoConstraints: readonly VariantConstraint[] = [
{ type: "between-line", cells: [0, 1, 2] },
{ type: "german-whisper", cells: [0, 3, 1] },
{ type: "region-sum-line", cells: [0, 1, 2] },
{ type: "clone", cells: [0, 1], cloneCells: [6, 7] },
{ type: "extra-region", cells: [0, 7, 9, 14] },
];
describe("Pack 2 constraint validation", () => {
it("accepts and clones every production shape", () => {
const source = puzzle4({ constraints: packTwoConstraints });
expect(validatePuzzle(source)).toEqual({ valid: true, issues: [] });
const normalized = normalizePuzzle(source);
expect(normalized.constraints).toEqual(packTwoConstraints);
expect(normalized.constraints).not.toBe(packTwoConstraints);
});
it.each([
{ type: "between-line", cells: [0, 1] },
{ type: "between-line", cells: [0, 1, 0] },
{ type: "german-whisper", cells: [0] },
{ type: "german-whisper", cells: [0, 1], minimumDifference: 0 },
{ type: "german-whisper", cells: [0, 1], minimumDifference: 4 },
{ type: "region-sum-line", cells: [0, 1] },
{ type: "clone", cells: [0, 1], cloneCells: [8] },
{ type: "clone", cells: [0, 1], cloneCells: [8, 8] },
{ type: "extra-region", cells: [0, 1, 2] },
{ type: "extra-region", cells: [0, 1, 2, 3], negated: true },
] as const)("rejects malformed constraint $type", (constraint) => {
const result = validatePuzzle({ ...puzzle4(), constraints: [constraint] });
expect(result.valid).toBe(false);
expect(
result.issues.some(({ path }) => path.startsWith("constraints[0]")),
).toBe(true);
});
it("uses the puzzle's actual regions when checking region-sum crossings", () => {
expect(
validatePuzzle(
puzzle4({ constraints: [{ type: "region-sum-line", cells: [0, 1] }] }),
).issues,
).toContainEqual({
path: "constraints[0].cells",
message: "region-sum line must cross at least one region boundary",
});
expect(
validatePuzzle(
puzzle4({ constraints: [{ type: "region-sum-line", cells: [1, 2] }] }),
).valid,
).toBe(true);
});
});
describe("Pack 2 partial and completed semantics", () => {
it("enforces between-line interiors and its negated truth", () => {
const constraint = { type: "between-line", cells: [0, 1, 2] } as const;
const partial = new Array<number>(16).fill(0);
partial[0] = 1;
partial[2] = 4;
expect(
candidatesForCell(puzzle4({ constraints: [constraint] }), partial, 1),
).toEqual([2, 3]);
expect(
constraintIsFeasible(
constraint,
[2, 0, 3, ...new Array<number>(13).fill(0)],
4,
),
).toBe(false);
expect(constraintIsFeasible(constraint, solved4, 4)).toBe(true);
expect(
constraintIsFeasible({ ...constraint, negated: true }, solved4, 4),
).toBe(false);
expect(
constraintIsFeasible(
{ ...constraint, negated: true },
[1, 4, 3, ...new Array<number>(13).fill(0)],
4,
),
).toBe(true);
});
it("runs exact dynamic feasibility for default and explicit German whispers", () => {
const constraint = {
type: "german-whisper",
cells: [0, 5, 10],
} as const;
const partial = new Array<number>(16).fill(0);
partial[0] = 2;
expect(
candidatesForCell(puzzle4({ constraints: [constraint] }), partial, 5),
).toEqual([4]);
const impossible = new Array<number>(16).fill(0);
impossible[5] = 2;
expect(
constraintIsFeasible(
{ ...constraint, minimumDifference: 3 },
impossible,
4,
),
).toBe(false);
const complete = [1, 4, 2, ...new Array<number>(13).fill(0)];
const short = { type: "german-whisper", cells: [0, 1, 2] } as const;
expect(constraintIsFeasible(short, complete, 4)).toBe(true);
expect(constraintIsFeasible({ ...short, negated: true }, complete, 4)).toBe(
false,
);
complete[1] = 2;
expect(constraintIsFeasible({ ...short, negated: true }, complete, 4)).toBe(
true,
);
});
it("balances contiguous region sums using the supplied region map", () => {
const constraint = {
type: "region-sum-line",
cells: [0, 1, 2],
} as const;
const partial = new Array<number>(16).fill(0);
partial[0] = 1;
partial[2] = 3;
expect(
candidatesForCell(puzzle4({ constraints: [constraint] }), partial, 1),
).toEqual([2]);
expect(constraintIsFeasible(constraint, solved4, 4)).toBe(true);
expect(
constraintIsFeasible({ ...constraint, negated: true }, solved4, 4),
).toBe(false);
const unequal = [...solved4];
unequal[2] = 4;
expect(
constraintIsFeasible({ ...constraint, negated: true }, unequal, 4),
).toBe(true);
});
it("enforces ordered clone equality and exact negated state", () => {
const constraint = {
type: "clone",
cells: [0, 1],
cloneCells: [6, 7],
} as const;
const partial = new Array<number>(16).fill(0);
partial[0] = 1;
partial[1] = 2;
partial[6] = 1;
expect(
candidatesForCell(puzzle4({ constraints: [constraint] }), partial, 7),
).toEqual([2]);
expect(constraintIsFeasible(constraint, solved4, 4)).toBe(true);
expect(
constraintIsFeasible({ ...constraint, negated: true }, solved4, 4),
).toBe(false);
const mismatch = [...solved4];
mismatch[7] = 3;
expect(constraintIsFeasible(constraint, mismatch, 4)).toBe(false);
expect(
constraintIsFeasible({ ...constraint, negated: true }, mismatch, 4),
).toBe(true);
});
it("compiles extra regions as all-different units and remote peers", () => {
const constraint = {
type: "extra-region",
cells: [0, 7, 9, 14],
} as const;
const compiled = compilePuzzle(
normalizePuzzle(puzzle4({ constraints: [constraint] })),
);
expect(
compiled.units.filter(({ kind }) => kind === "extra-region"),
).toEqual([{ kind: "extra-region", index: 0, cells: constraint.cells }]);
const partial = new Array<number>(16).fill(0);
partial[0] = 1;
expect(candidatesForCell(compiled, partial, 7)).not.toContain(1);
expect(compilePuzzle(normalizePuzzle(puzzle4())).peers[7]?.has(0)).toBe(
false,
);
});
});
describe("Pack 2 exact solving", () => {
it.each(
packTwoConstraints.map(
(constraint) => [constraint.type, constraint] as const,
),
)("solves a puzzle containing %s", (_type, constraint) => {
const givens: number[] = [...solved4];
givens[5] = 0;
givens[10] = 0;
const result = solveExact(puzzle4({ givens, constraints: [constraint] }));
expect(result.count).toBe(1);
expect(result.truncated).toBe(false);
expect(result.solutions[0]).toEqual(solved4);
});
});