Files
houseplan-card/test/plan-optimizer.test.mjs
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2026-08-19 21:10:27 +03:00

358 lines
14 KiB
JavaScript

import test from 'node:test';
import assert from 'node:assert/strict';
import {
collapseIsolatedWallThicknessIslands, optimizePlans, PLAN_MODEL_VERSION,
} from '../test-build/plan-optimizer.js';
import { GRID_PITCH, GRID_STEP_N as S, NORM_W } from '../test-build/space-geometry.js';
import { wallKey } from '../test-build/wall-thickness.js';
const room = (id, x0, x1, openTo) => ({
id,
name: id,
area: null,
poly: [[x0, 0], [x1, 0], [x1, 1], [x0, 1]],
...(openTo ? { open_to: [openTo] } : {}),
});
const exactWall = (a, b, cm) => ({ key: wallKey(a, b, S), a, b, cm });
const microIntervalFixture = (length = S / 3, middleCm = 15, rightCm = 22) => {
const x0 = 0.2, split = 0.5, x1 = 0.8, y = 0.2;
return {
rooms: [{ id: 'r1', poly: [[x0, y], [x1, y], [x1, 0.8], [x0, 0.8]] }],
walls: [
exactWall([x0, y], [split, y], 22),
exactWall([split, y], [split + length, y], middleCm),
exactWall([split + length, y], [x1, y], rightCm),
],
};
};
test('Optimize collapses one isolated thickness micro-interval and is idempotent', () => {
const fixture = microIntervalFixture();
const config = {
model_version: PLAN_MODEL_VERSION,
spaces: [{
id: 'micro', title: 'Micro', view_box: [0, 0, 1, 1], cell_cm: 5,
rooms: fixture.rooms, walls: fixture.walls,
}],
markers: [], settings: {},
};
const before = JSON.parse(JSON.stringify(config));
const first = optimizePlans(config, {});
assert.deepEqual(config, before, 'preview must not mutate its input');
assert.equal(first.changed, true);
assert.equal(first.report.canonicalized, 1);
assert.equal(first.report.wallsMerged, 2);
assert.equal(first.config.spaces[0].walls.length, 1);
assert.equal(first.config.spaces[0].walls[0].cm, 22);
assert.deepEqual(first.config.spaces[0].walls[0].a, [0.2, 0.2]);
assert.deepEqual(first.config.spaces[0].walls[0].b, [0.8, 0.2]);
const second = optimizePlans(first.config, first.layout);
assert.equal(second.changed, false);
assert.equal(second.report.canonicalized, 0);
assert.equal(second.report.wallsMerged, 0);
assert.deepEqual(second.config, first.config);
});
test('micro-interval cleanup has a strict half-step boundary at both coordinate scales', () => {
for (const length of [S / 3, S / 2, S / 2 + S / 100]) {
const fixture = microIntervalFixture(length);
const normalized = collapseIsolatedWallThicknessIslands(
fixture.rooms, fixture.walls, [], S, 5, S, 1,
);
const normalizedMiddle = normalized.find((wall) => wall.a?.[0] === 0.5);
assert.equal(normalizedMiddle?.cm, length < S / 2 ? 22 : 15, `normalized length=${length}`);
const renderRooms = fixture.rooms.map((item) => ({
...item, poly: item.poly.map(([x, y]) => [x * NORM_W, y * NORM_W]),
}));
const rendered = collapseIsolatedWallThicknessIslands(
renderRooms, fixture.walls, [], S, 5, GRID_PITCH, NORM_W,
);
const renderMiddle = rendered.find((wall) => wall.a?.[0] === 0.5);
assert.equal(renderMiddle?.cm, length < S / 2 ? 22 : 15, `render length=${length}`);
}
});
test('micro-interval cleanup preserves ambiguous and topological boundaries', () => {
const unequal = microIntervalFixture(S / 3, 15, 20);
assert.deepEqual(
collapseIsolatedWallThicknessIslands(unequal.rooms, unequal.walls, [], S, 5, S),
unequal.walls,
'different neighbour thicknesses have no unambiguous replacement',
);
const overlapping = microIntervalFixture();
overlapping.walls.splice(2, 0, { ...overlapping.walls[1], cm: 18 });
assert.deepEqual(
collapseIsolatedWallThicknessIslands(overlapping.rooms, overlapping.walls, [], S, 5, S),
overlapping.walls,
'conflicting exact owners of the same micro-interval are ambiguous',
);
const atVertex = microIntervalFixture();
atVertex.rooms[0].poly.splice(1, 0, [0.5, 0.2]);
assert.deepEqual(
collapseIsolatedWallThicknessIslands(atVertex.rooms, atVertex.walls, [], S, 5, S),
atVertex.walls,
'a room vertex at the island endpoint is a topology boundary',
);
const atOpening = microIntervalFixture();
const cut = [[0.45, 0.2, 0.5, 0.2]];
assert.deepEqual(
collapseIsolatedWallThicknessIslands(atOpening.rooms, atOpening.walls, cut, S, 5, S),
atOpening.walls,
'an open-cut endpoint at the island boundary blocks cleanup',
);
const chain = microIntervalFixture(S / 3, 15, 22);
const y = 0.2, firstEnd = 0.5 + S / 3, secondEnd = firstEnd + S / 3;
chain.walls = [
exactWall([0.2, y], [0.5, y], 22),
exactWall([0.5, y], [firstEnd, y], 15),
exactWall([firstEnd, y], [secondEnd, y], 16),
exactWall([secondEnd, y], [0.8, y], 22),
];
assert.deepEqual(
collapseIsolatedWallThicknessIslands(chain.rooms, chain.walls, [], S, 5, S),
chain.walls,
'a chain of different micro-intervals must not collapse cumulatively',
);
});
test('micro-interval cleanup is endpoint, input-order and room-order invariant without mutation', () => {
const baselineFixture = microIntervalFixture();
const fixture = microIntervalFixture();
const detached = {
id: 'r2', poly: [[0.85, 0.85], [0.95, 0.85], [0.95, 0.95], [0.85, 0.95]],
};
const semantic = (walls) => walls.map((wall) => {
const ends = [wall.a, wall.b]
.map((point) => point.map((value) => Number(value.toFixed(12))).join(','))
.sort();
return `${ends[0]}|${ends[1]}|${wall.cm}`;
}).sort();
const baseline = collapseIsolatedWallThicknessIslands(
[baselineFixture.rooms[0], structuredClone(detached)], baselineFixture.walls, [], S, 5, S,
);
const reversedMiddle = {
...fixture.walls[1],
a: [...fixture.walls[1].b],
b: [...fixture.walls[1].a],
};
const rooms = [detached, {
...fixture.rooms[0], poly: [...fixture.rooms[0].poly].reverse().map((point) => [...point]),
}];
const walls = [fixture.walls[2], reversedMiddle, fixture.walls[0]]
.map((wall) => ({ ...wall, a: [...wall.a], b: [...wall.b] }));
const beforeRooms = structuredClone(rooms);
const beforeWalls = structuredClone(walls);
const result = collapseIsolatedWallThicknessIslands(rooms, walls, [], S, 5, S);
assert.deepEqual(rooms, beforeRooms, 'helper must not mutate rooms or their winding');
assert.deepEqual(walls, beforeWalls, 'helper must not mutate the walls array or entries');
assert.deepEqual(semantic(result), semantic(baseline));
assert.equal(result.find((wall) => wall.a?.[0] === 0.5 || wall.b?.[0] === 0.5)?.cm, 22);
});
test('optimizePlans migrates, aligns and canonicalises idempotently', () => {
const config = {
spaces: [{
id: 'f1', title: 'Floor', view_box: [0, 0, 1, 1], cell_cm: 5,
plan_scale: 0.75,
segments: [[0, 0, 1, 0]],
rooms: [room('a', 0, 0.5, 'b'), room('b', 0.5, 1, 'a')],
walls: [
{ key: wallKey([0, 0], [0.25, 0], S), a: [0, 0], b: [0.25, 0], cm: 20 },
{ key: wallKey([0.25, 0], [0.5, 0], S), a: [0.25, 0], b: [0.5, 0], cm: 20 },
],
decor: [{
id: 't1', kind: 'text', x: S / 3, y: S / 3,
text: 'Now {}', entity: 'sensor.temp', attr: 'state', size: 'm',
}, {
id: 'l1', kind: 'line', x1: 0, y1: 0, x2: 1, y2: 0, width: 3,
}],
}],
markers: [{
id: 'm1', binding: 'virtual', display: 'ripple',
vacuum: { trail: false },
}],
settings: {},
};
const layout = { m1: { s: 'f1', x: S / 3, y: S / 3 } };
const first = optimizePlans(config, layout);
assert.equal(first.changed, true);
assert.equal(first.config.model_version, PLAN_MODEL_VERSION);
assert.equal('segments' in first.config.spaces[0], false);
assert.equal(first.config.markers[0].display, 'icon_ripple');
assert.deepEqual(first.config.markers[0].vacuum, { trail_mode: 'never' });
assert.equal(first.config.spaces[0].decor[0].text, 'Now {sensor.temp}');
assert.equal(first.config.spaces[0].decor[0].size_cm, 24);
assert.equal('scale' in first.config.spaces[0].decor[0], false);
assert.equal(first.config.spaces[0].decor[1].width_cm, 3.6);
assert.equal('width' in first.config.spaces[0].decor[1], false);
assert.equal(first.config.spaces[0].plan_scale_x, 0.75);
assert.equal(first.config.spaces[0].plan_scale_y, 0.75);
assert.equal('plan_scale' in first.config.spaces[0], false);
assert.equal('entity' in first.config.spaces[0].decor[0], false);
assert.equal(first.config.spaces[0].open_spans.length, 1);
assert.equal(first.config.spaces[0].walls.length, 1);
assert.equal(first.layout.m1.x % S, 0);
const second = optimizePlans(first.config, first.layout);
assert.equal(second.changed, false);
assert.deepEqual(second.config, first.config);
assert.deepEqual(second.layout, first.layout);
});
test('legacy physical decor fields are clamped to the persisted schema', () => {
const result = optimizePlans({
spaces: [{
id: 'f1', title: 'Floor', view_box: [0, 0, 1, 1], cell_cm: 1000,
rooms: [],
decor: [
{ id: 'wide', kind: 'line', x1: 0, y1: 0, x2: 1, y2: 0, width: 300 },
{ id: 'thin', kind: 'line', x1: 0, y1: 0, x2: 1, y2: 0, width: 0 },
{ id: 'huge', kind: 'text', x: 0, y: 0, text: 'X', scale: 20 },
],
}],
markers: [], settings: {},
}, {});
const [wide, thin, huge] = result.config.spaces[0].decor;
assert.equal(wide.width_cm, 100);
assert.equal(thin.width_cm, 0.1);
assert.equal(huge.size_cm, 2000);
});
test('invalid legacy plan_scale is preserved instead of being counted as migrated', () => {
const result = optimizePlans({
model_version: PLAN_MODEL_VERSION,
spaces: [{
id: 'f1', title: 'Floor', view_box: [0, 0, 1, 1],
plan_scale: 'broken', rooms: [],
}],
markers: [], settings: {},
}, {});
assert.equal(result.config.spaces[0].plan_scale, 'broken');
assert.equal(result.report.migrated, 0);
});
test('model version bookkeeping does not claim a data migration', () => {
const result = optimizePlans({
model_version: PLAN_MODEL_VERSION - 1,
spaces: [], markers: [], settings: {},
}, {});
assert.equal(result.changed, false);
assert.equal(result.config.model_version, PLAN_MODEL_VERSION - 1);
assert.equal(result.report.modelTo, PLAN_MODEL_VERSION - 1);
assert.equal(result.report.migrated, 0);
});
test('optimizer never downgrades a model from a newer client', () => {
const future = PLAN_MODEL_VERSION + 1;
const result = optimizePlans({
model_version: future,
spaces: [], markers: [], settings: {},
}, {});
assert.equal(result.changed, false);
assert.equal(result.config.model_version, future);
assert.equal(result.report.modelTo, future);
});
test('legacy filled shapes receive the canonical fill fields', () => {
const result = optimizePlans({
model_version: PLAN_MODEL_VERSION,
spaces: [{
id: 'f1', title: 'Floor', view_box: [0, 0, 1, 1], rooms: [],
decor: [{
id: 'r1', kind: 'rect', x: 0, y: 0, w: 0.2, h: 0.2,
color: '#123456', fill: true,
}],
}],
markers: [], settings: {},
}, {});
assert.equal(result.config.spaces[0].decor[0].fill_color, '#123456');
assert.equal(result.config.spaces[0].decor[0].fill_opacity, 0.25);
});
test('optimizer removes legacy self-control without inventing a light source', () => {
const result = optimizePlans({
model_version: PLAN_MODEL_VERSION - 1,
spaces: [],
markers: [{
id: 'hood', binding: 'entity:switch.hood',
controls: ['switch.hood', 'input_boolean.legacy', 'light.mirror', 'light.mirror'],
}],
settings: {},
}, {});
assert.deepEqual(result.config.markers[0].controls, [
'input_boolean.legacy', 'light.mirror', 'light.mirror',
]);
assert.equal(result.config.markers[0].is_light, undefined);
assert.equal(result.config.model_version, PLAN_MODEL_VERSION);
assert.equal(result.report.migrated, 1);
});
test('optimizer repairs legacy cell_cm values into the server schema range', () => {
const result = optimizePlans({
spaces: [
{ id: 'high', title: 'High', view_box: [0, 0, 1, 1], cell_cm: 5000, rooms: [] },
{ id: 'low', title: 'Low', view_box: [0, 0, 1, 1], cell_cm: 0.01, rooms: [] },
{ id: 'bad', title: 'Bad', view_box: [0, 0, 1, 1], cell_cm: 'NaN', rooms: [] },
{ id: 'zero', title: 'Zero', view_box: [0, 0, 1, 1], cell_cm: 0, rooms: [] },
{ id: 'null', title: 'Null', view_box: [0, 0, 1, 1], cell_cm: null, rooms: [] },
{ id: 'negative', title: 'Negative', view_box: [0, 0, 1, 1], cell_cm: -2, rooms: [] },
],
markers: [], settings: {},
}, {});
assert.deepEqual(result.config.spaces.map((space) => space.cell_cm), [1000, 0.1, 5, 5, 5, 5]);
assert.equal(result.report.migrated, 6);
});
test('optimizer separates legacy Glow from data fill without losing explicit booleans', () => {
const result = optimizePlans({
spaces: [{
id: 'legacy', title: 'Legacy', view_box: [0, 0, 1, 1],
settings: { fill_mode: 'glow', glow_enabled: false, future: 'kept' },
rooms: [
{ ...room('a', 0, 0.5), settings: { fill_mode: 'glow', future: 1 } },
{ ...room('b', 0.5, 1), settings: { fill_mode: 'glow', glow: false } },
],
}],
markers: [], settings: {},
}, {});
const space = result.config.spaces[0];
assert.equal(space.settings.fill_mode, 'none');
assert.equal(space.settings.glow_enabled, false);
assert.equal(space.settings.future, 'kept');
assert.deepEqual(space.rooms[0].settings, { future: 1, glow: true });
assert.deepEqual(space.rooms[1].settings, { glow: false });
assert.equal(result.report.migrated, 3);
assert.equal(result.report.glowSpacesMigrated, 1);
assert.equal(result.report.glowRoomsMigrated, 2);
const again = optimizePlans(result.config, result.layout);
assert.equal(again.changed, false);
});
test('optimizer canonicalises only an explicitly stored square-column angle', () => {
const result = optimizePlans({
spaces: [{
id: 'f1', title: 'Floor', view_box: [0, 0, 1, 1], rooms: [],
wall_columns: [
{ id: 'implicit', shape: 'square', center: [0.2, 0.2], cm: 30 },
{ id: 'explicit', shape: 'square', center: [0.4, 0.4], cm: 30, angle: 95 },
],
}],
markers: [], settings: {},
}, {});
const [implicit, explicit] = result.config.spaces[0].wall_columns;
assert.equal('angle' in implicit, false);
assert.equal(explicit.angle, 5);
});