mirror of
https://github.com/Matysh/houseplan-card
synced 2026-09-28 19:01:34 +00:00
137 lines
5.2 KiB
JavaScript
137 lines
5.2 KiB
JavaScript
import test from 'node:test';
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import assert from 'node:assert/strict';
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import {
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atomizeWallSegments,
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buildWallFaceGraph,
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findNewWallFaces,
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findNewWallFacesInGraphs,
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normalizeUnifiedWallTool,
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wallChainSegments,
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} from '../test-build/wall-face-graph.js';
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const edge = (key, a, b) => ({ key, a, b });
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const rectangle = [
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edge('top', [0, 0], [100, 0]),
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edge('right', [100, 0], [100, 100]),
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edge('bottom', [100, 100], [0, 100]),
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edge('left', [0, 100], [0, 0]),
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];
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test('legacy Partition token becomes Walls without mutating other tools', () => {
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assert.equal(normalizeUnifiedWallTool('partition'), 'draw');
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assert.equal(normalizeUnifiedWallTool('split'), 'split');
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assert.equal(normalizeUnifiedWallTool(null), null);
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});
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test('open chain converts endpoints and per-segment thickness without mutation', () => {
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const path = [[0, 0], [100, 0], [100, 50]];
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const before = JSON.stringify(path);
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assert.deepEqual(wallChainSegments(path, [0, 25], 15), [
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{ a: [0, 0], b: [100, 0], cm: 0 },
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{ a: [100, 0], b: [100, 50], cm: 25 },
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]);
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assert.equal(JSON.stringify(path), before);
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assert.deepEqual(wallChainSegments([[0, 0]], [], 15), []);
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});
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test('atomizes endpoint, T, proper X and collinear overlap with provenance', () => {
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const sources = [
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edge('horizontal', [0, 0], [100, 0]),
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edge('t', [50, 0], [50, 50]),
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edge('x', [75, -50], [75, 50]),
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edge('overlap', [25, 0], [100, 0]),
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];
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const before = JSON.stringify(sources);
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const atoms = atomizeWallSegments(sources);
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assert.equal(atoms.filter((atom) => atom.a[1] === 0 && atom.b[1] === 0).length, 4);
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assert.ok(atoms.some((atom) => atom.sourceKeys.includes('horizontal')
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&& atom.sourceKeys.includes('overlap')));
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assert.ok(atoms.some((atom) => atom.a[0] === 50 && atom.b[0] === 50));
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assert.ok(atoms.some((atom) => atom.a[0] === 75 && atom.b[0] === 75));
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assert.equal(JSON.stringify(sources), before);
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});
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test('returns the bounded face but never the exterior or a compound cycle', () => {
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const graph = buildWallFaceGraph(rectangle);
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assert.equal(graph.faces.length, 1);
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assert.equal(graph.faces[0].area, 10000);
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const divided = buildWallFaceGraph([
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...rectangle,
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edge('middle', [50, 0], [50, 100]),
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]);
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assert.deepEqual(divided.faces.map((face) => face.area), [5000, 5000]);
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});
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test('face identity and order ignore record order and endpoint direction', () => {
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const first = buildWallFaceGraph(rectangle).faces;
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const second = buildWallFaceGraph([...rectangle].reverse().map((item) => ({
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...item, a: item.b, b: item.a,
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}))).faces;
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assert.deepEqual(second.map((face) => face.key), first.map((face) => face.key));
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assert.deepEqual(second.map((face) => face.area), first.map((face) => face.area));
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});
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test('delta only returns faces introduced by and containing the accepted segment', () => {
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const open = rectangle.slice(0, -1);
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assert.deepEqual(findNewWallFaces(open, rectangle, 'left').map((face) => face.area), [10000]);
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assert.deepEqual(findNewWallFacesInGraphs(
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buildWallFaceGraph(open), buildWallFaceGraph(rectangle), 'left',
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).map((face) => face.area), [10000]);
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assert.equal(findNewWallFaces(rectangle, [
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...rectangle,
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edge('unrelated', [200, 0], [250, 0]),
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], 'unrelated').length, 0);
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});
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test('one segment may create several faces in stable area order', () => {
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const before = rectangle.map((item) => ({
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...item,
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a: [item.a[0] * 2, item.a[1]],
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b: [item.b[0] * 2, item.b[1]],
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}));
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const divider = edge('divider', [80, 0], [80, 100]);
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assert.deepEqual(findNewWallFaces(before, [...before, divider], 'divider')
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.map((face) => face.area), [8000, 12000]);
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const equalDivider = edge('equal-divider', [100, 0], [100, 100]);
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const first = findNewWallFaces(before, [...before, equalDivider], 'equal-divider');
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const second = findNewWallFaces([...before].reverse(), [equalDivider, ...before].reverse(), 'equal-divider');
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assert.deepEqual(first.map((face) => face.key), second.map((face) => face.key));
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});
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test('a large sparse plan stays deterministic without pairwise topology explosion', () => {
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const sparse = Array.from({ length: 2000 }, (_, index) =>
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edge(`s${index}`, [index * 10, 0], [index * 10 + 5, 0]));
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const first = buildWallFaceGraph(sparse);
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const second = buildWallFaceGraph([...sparse].reverse());
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assert.equal(first.atoms.length, 2000);
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assert.equal(first.faces.length, 0);
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assert.deepEqual(second.atoms.map((atom) => atom.key), first.atoms.map((atom) => atom.key));
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});
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test('near misses, gaps and malformed sources do not invent a face', () => {
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const nearMiss = [
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...rectangle.slice(0, -1),
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edge('miss', [0, 100], [0, 0.01]),
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edge('zero', [10, 10], [10, 10]),
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edge('bad', [Number.NaN, 0], [0, 0]),
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];
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assert.equal(buildWallFaceGraph(nearMiss, 0.001).faces.length, 0);
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assert.equal(buildWallFaceGraph([
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...rectangle.slice(1),
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edge('top-a', [0, 0], [40, 0]),
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edge('top-b', [60, 0], [100, 0]),
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]).faces.length, 0);
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});
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test('coincident axes deduplicate atoms while retaining every owner', () => {
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const graph = buildWallFaceGraph([
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...rectangle,
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edge('top-copy', [100, 0], [0, 0]),
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]);
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assert.equal(graph.faces.length, 1);
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const top = graph.atoms.find((atom) => atom.sourceKeys.includes('top'));
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assert.deepEqual(top.sourceKeys, ['top', 'top-copy']);
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});
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