Files
houseplan-card/test/logic.test.mjs
T
Matysh ae9168f6ec fix v1.44.2: external review CR-1..CR-3
CR-1: the lock invariant is restated precisely (never by an accidental
tap; the door card's labeled button is the ONE sanctioned surface),
unlocking now confirms, and smoke_lock_invariant exercises all five
actuation paths (icon tap, controls[], card entities, _cardToggle,
opening card).

CR-2: attachment migration is transactional — the server COPIES files,
the config is committed with its revision check, and only then the old
folder is removed via the new houseplan/files/cleanup. A rejected save
no longer leaves the stored urls pointing at an emptied folder.

CR-3: migrate returns an exact {source: written} mapping; only confirmed
copies are rewritten, destination name collisions get a unique name
instead of silently linking a pre-existing file, and a failed migration
raises a toast instead of being swallowed.

+1 unit test (119), +1 backend test, +1 smoke (51 total); docs
same-commit
2026-07-27 12:58:27 +03:00

884 lines
43 KiB
JavaScript
Raw Blame History

This file contains ambiguous Unicode characters
This file contains Unicode characters that might be confused with other characters. If you think that this is intentional, you can safely ignore this warning. Use the Escape button to reveal them.
import test from 'node:test';
import assert from 'node:assert/strict';
import {
lqiColor, snapToGrid, segKey, samePoint, pointInPolygon, markerIdForBinding, averageLqi,
fitView, declump, safeUrl, resolveTapAction, floorsOf, subst, spaceDisplayOf, roomFillColor,
splitRoomPath, polyContainsPoly, islandsOf,
kelvinToRgb, glowColorOf, doorSector, hasRoomBehind,
controlsAction, isControllable,
sharedBoundary, openZoneOf, distToSegment,
outlineWithout,
alignGuides, segmentAngle, is45,
swipeTarget, clampScale,
migratePdfUrls,
roomFillModeOf,
contentUrl,
interiorPoint,
segmentCm, formatLength, roomEdges, roomPoly, pointOnBoundary, pointStrictlyInside, roomsOverlap,
mergeRooms, splitRoom, polygonArea, closestPointOnBoundary, isActiveState, snapToWall, openingAmount, fillColorsOf, lerpColor, roomFillStyle, stateIcon, lightColorOf, isAlarmState, parseRoomRef, diffNewDevices,
} from '../test-build/logic.js';
import {
iconFor, compileIconRules, isValidPattern, iconFromDeviceClasses,
} from '../test-build/rules.js';
test('lqiColor: boundaries and midpoint', () => {
assert.equal(lqiColor(40), 'hsl(0, 85%, 55%)');
assert.equal(lqiColor(180), 'hsl(120, 85%, 55%)');
assert.equal(lqiColor(110), 'hsl(60, 85%, 55%)');
assert.equal(lqiColor(0), 'hsl(0, 85%, 55%)');
assert.equal(lqiColor(255), 'hsl(120, 85%, 55%)');
});
test('snapToGrid', () => {
assert.equal(snapToGrid(0, 10), 0);
assert.equal(snapToGrid(14, 10), 10);
assert.equal(snapToGrid(16, 10), 20);
});
test('segKey: direction does not matter', () => {
assert.equal(segKey([0, 0], [10, 5]), segKey([10, 5], [0, 0]));
assert.notEqual(segKey([0, 0], [10, 5]), segKey([0, 0], [10, 6]));
});
test('samePoint with tolerance', () => {
assert.ok(samePoint([1, 1], [1.0005, 0.9995]));
assert.ok(!samePoint([1, 1], [1.5, 1]));
});
test('pointInPolygon: square', () => {
const sq = [[0, 0], [10, 0], [10, 10], [0, 10]];
assert.ok(pointInPolygon([5, 5], sq));
assert.ok(!pointInPolygon([15, 5], sq));
assert.ok(!pointInPolygon([-1, -1], sq));
});
test('pointInPolygon: L-shaped polygon', () => {
const L = [[0, 0], [6, 0], [6, 2], [2, 2], [2, 6], [0, 6]];
assert.ok(pointInPolygon([1, 5], L));
assert.ok(pointInPolygon([5, 1], L));
assert.ok(!pointInPolygon([5, 5], L));
});
test('markerIdForBinding', () => {
let n = 0; const nid = () => 'v_new' + n++;
assert.equal(markerIdForBinding('device:abc', undefined, nid), 'abc');
assert.equal(markerIdForBinding('entity:light.x', undefined, nid), 'lg_light.x');
assert.equal(markerIdForBinding('virtual', 'v_existing', nid), 'v_existing');
assert.equal(markerIdForBinding('virtual', undefined, nid), 'v_new0');
assert.equal(markerIdForBinding('virtual', 'abc', nid), 'v_new1');
});
test('averageLqi', () => {
assert.equal(averageLqi([]), null);
assert.equal(averageLqi([100]), 100);
assert.equal(averageLqi([100, 200]), 150);
assert.equal(averageLqi([1, 2, 2]), 2);
});
test('iconFor: key rules', () => {
// Russian device names below are intentional: iconFor rules match Russian names (see src/rules.ts).
assert.equal(iconFor('Датчик протечки кухня', 'HOBEIAN'), 'mdi:water-alert');
assert.equal(iconFor('Замок Терраса', 'TTLock'), 'mdi:lock');
assert.equal(iconFor('Настенная лампа 1', 'Yandex Bulb'), 'mdi:lightbulb');
assert.equal(iconFor('Ворота', 'Tuya Garage'), 'mdi:garage-variant');
assert.equal(iconFor('Термоголовка', 'Aqara'), 'mdi:radiator');
assert.equal(iconFor('Unknown gadget', 'XYZ'), 'mdi:chip');
});
test('fitView: portrait plan in a wide scene — margins on the sides, whole plan inside', () => {
// vb 100x200 (aspect 0.5), scene aspect 2 → view wider than the plan, height = 200
const v = fitView([0, 0, 100, 200], 2);
assert.equal(v.h, 200);
assert.equal(v.w, 400); // 200*2
assert.equal(v.x, -150); // (100-400)/2 centering
assert.equal(v.y, 0);
// the whole plan is inside the view
assert.ok(v.x <= 0 && v.x + v.w >= 100 && v.y <= 0 && v.y + v.h >= 200);
});
test('fitView: scene aspect matches the plan — view == vb', () => {
const v = fitView([10, 20, 300, 150], 2); // plan aspect = 2 == scene aspect
assert.equal(v.x, 10); assert.equal(v.y, 20); assert.equal(v.w, 300); assert.equal(v.h, 150);
});
test('declump: close points spread apart no closer than minDist and stay within bounds', () => {
const b = { x: 0, y: 0, w: 100, h: 100 };
const pts = [ { x: 50, y: 50 }, { x: 51, y: 50 }, { x: 50, y: 51 } ];
declump(pts, b, 20, 5);
// all pairs no closer than ~minDist (with tolerance for clamping to the bounds)
for (let i = 0; i < pts.length; i++)
for (let j = i + 1; j < pts.length; j++) {
const d = Math.hypot(pts[i].x - pts[j].x, pts[i].y - pts[j].y);
assert.ok(d > 12, `pair ${i},${j} too close: ${d}`);
}
// within the bounds [5..95]
for (const q of pts) {
assert.ok(q.x >= 5 && q.x <= 95 && q.y >= 5 && q.y <= 95);
}
});
test('declump: a single point does not move', () => {
const pts = [{ x: 30, y: 40 }];
declump(pts, { x: 0, y: 0, w: 100, h: 100 }, 20, 5);
assert.deepEqual(pts, [{ x: 30, y: 40 }]);
});
test('averageLqi: empty → null, otherwise the rounded average', () => {
assert.equal(averageLqi([]), null);
assert.equal(averageLqi([100, 200]), 150);
assert.equal(averageLqi([1, 2, 2]), 2);
});
test('safeUrl: allows http(s) and relative paths, cuts dangerous schemes', () => {
assert.equal(safeUrl('https://example.com/a?b=1'), 'https://example.com/a?b=1');
assert.equal(safeUrl('http://x.ru'), 'http://x.ru');
assert.equal(safeUrl('//cdn.x.ru/f.pdf'), '//cdn.x.ru/f.pdf');
assert.equal(safeUrl('/houseplan_files/files/m1/doc.pdf?v=1'), '/houseplan_files/files/m1/doc.pdf?v=1');
assert.equal(safeUrl('docs/manual.pdf'), 'docs/manual.pdf');
assert.equal(safeUrl('javascript:alert(1)'), null);
assert.equal(safeUrl('data:text/html,<script>'), null);
assert.equal(safeUrl('vbscript:x'), null);
assert.equal(safeUrl(''), null);
assert.equal(safeUrl(null), null);
assert.equal(safeUrl(undefined), null);
assert.equal(safeUrl(' https://x.ru '), 'https://x.ru');
});
test('icon rules: custom rules override defaults, first match wins', () => {
const custom = compileIconRules([
{ pattern: 'plug|socket', icon: 'mdi:custom-plug' },
{ pattern: 'plug deluxe', icon: 'mdi:never-reached' },
]);
assert.equal(iconFor('Smart Plug deluxe', '', custom), 'mdi:custom-plug');
// defaults are NOT consulted when custom rules are provided
assert.equal(iconFor('Датчик протечки', '', custom), 'mdi:chip');
});
test('icon rules: invalid regex is skipped, the rest still work', () => {
const compiled = compileIconRules([
{ pattern: '[unclosed', icon: 'mdi:broken' },
{ pattern: 'camera', icon: 'mdi:cctv' },
]);
assert.equal(compiled.length, 1);
assert.equal(iconFor('Backyard camera', '', compiled), 'mdi:cctv');
});
test('icon rules: isValidPattern flags bad regexes', () => {
assert.equal(isValidPattern('plug|socket'), true);
assert.equal(isValidPattern('[unclosed'), false);
});
test('icon rules: defaults are bilingual', () => {
assert.equal(iconFor('Water leak sensor'), 'mdi:water-alert');
assert.equal(iconFor('Датчик протечки кухня'), 'mdi:water-alert');
assert.equal(iconFor('Umidifier presence sensor'), 'mdi:motion-sensor');
});
test('icon rules: device_class fallback', () => {
assert.equal(iconFromDeviceClasses(['temperature']), 'mdi:thermometer');
assert.equal(iconFromDeviceClasses(['unknown', 'motion']), 'mdi:motion-sensor');
assert.equal(iconFromDeviceClasses(['unknown']), null);
assert.equal(iconFromDeviceClasses([]), null);
});
test('tap action: defaults — info everywhere except pure lights (v1.39.0)', () => {
assert.equal(resolveTapAction(undefined, undefined, 'light'), 'toggle'); // лампы кликабельны из коробки
assert.equal(resolveTapAction(undefined, undefined, 'switch'), 'info');
assert.equal(resolveTapAction(null, 'info', 'switch'), 'info');
assert.equal(resolveTapAction(null, 'more-info', 'sensor'), 'more-info');
});
test('tap action: card-wide toggle only touches safe domains', () => {
assert.equal(resolveTapAction(null, 'toggle', 'light'), 'toggle');
assert.equal(resolveTapAction(null, 'toggle', 'switch'), 'toggle');
assert.equal(resolveTapAction(null, 'toggle', 'cover'), 'info'); // garage stays shut
assert.equal(resolveTapAction(null, 'toggle', 'valve'), 'info');
assert.equal(resolveTapAction(null, 'toggle', 'sensor'), 'info');
});
test('tap action: explicit per-device toggle works for cover but never for lock/alarm', () => {
assert.equal(resolveTapAction('toggle', 'info', 'cover'), 'toggle'); // conscious choice
assert.equal(resolveTapAction('toggle', 'toggle', 'lock'), 'info'); // hard security block
assert.equal(resolveTapAction('toggle', 'toggle', 'alarm_control_panel'), 'info');
assert.equal(resolveTapAction('toggle', 'info', undefined), 'info'); // no entity → nothing to toggle
});
test('tap action: per-device override beats the card default', () => {
assert.equal(resolveTapAction('info', 'toggle', 'light'), 'info');
assert.equal(resolveTapAction('more-info', 'toggle', 'light'), 'more-info');
});
test('floorsOf: sorts by level, tolerates missing registry and odd entries', () => {
assert.deepEqual(floorsOf({}), []);
assert.deepEqual(floorsOf({ floors: null }), []);
const hass = { floors: {
a: { floor_id: 'attic', name: 'Attic', level: 2 },
g: { floor_id: 'ground', name: 'Ground', level: 0 },
x: { floor_id: 'x', name: 'No level' },
bad: null,
}};
const res = floorsOf(hass);
assert.deepEqual(res.map((f) => f.id), ['ground', 'attic', 'x']);
});
test('subst: replaces every occurrence of a placeholder, ignores unknown', () => {
assert.equal(subst('{n} of {n} ({x})', { n: 2, x: 'y' }), '2 of 2 (y)');
assert.equal(subst('no vars'), 'no vars');
assert.equal(subst('keep {unknown}', { n: 1 }), 'keep {unknown}');
});
test('spaceDisplayOf: defaults differ for spaces with and without a plan', () => {
const withPlan = spaceDisplayOf({ plan_url: '/x.svg' });
assert.equal(withPlan.showBorders, false);
assert.equal(withPlan.showNames, false);
assert.equal(withPlan.fill, 'none');
const noPlan = spaceDisplayOf({ plan_url: null });
assert.equal(noPlan.showBorders, true);
assert.equal(noPlan.showNames, true);
const s = spaceDisplayOf({ plan_url: null, settings: { show_borders: false, room_color: '#ff0000', room_opacity: 2, fill_mode: 'lqi' } });
assert.equal(s.showBorders, false);
assert.equal(s.color, '#ff0000');
assert.equal(s.opacity, 1);
assert.equal(s.fill, 'lqi');
const g = spaceDisplayOf({ settings: { room_color: 'javascript:alert(1)', fill_mode: 'weird' } });
assert.equal(g.color, '#3ea6ff');
assert.equal(g.fill, 'none');
});
test('roomFillColor: lqi gradient, light tri-state, none', () => {
assert.equal(roomFillColor('none', 200, 'on'), null);
assert.equal(roomFillColor('lqi', null, 'on'), null);
assert.equal(roomFillColor('lqi', 180, 'none'), 'hsl(120, 85%, 55%)');
assert.equal(roomFillColor('light', null, 'on'), '#ffd45c');
assert.equal(roomFillColor('light', null, 'off'), '#9aa0a6');
assert.equal(roomFillColor('light', null, 'none'), null);
});
test('roomFillColor temp: blue/green/yellow bands, swapped bounds tolerated, no reading → no fill', () => {
assert.equal(roomFillColor('temp', null, 'none', 18, 20, 25), '#4fc3f7'); // cold
assert.equal(roomFillColor('temp', null, 'none', 20, 20, 25), '#66d17a'); // lower bound inclusive
assert.equal(roomFillColor('temp', null, 'none', 25, 20, 25), '#66d17a'); // upper bound inclusive
assert.equal(roomFillColor('temp', null, 'none', 26.5, 20, 25), '#ffd45c'); // hot
assert.equal(roomFillColor('temp', null, 'none', 18, 25, 20), '#4fc3f7'); // swapped bounds
assert.equal(roomFillColor('temp', null, 'none', null, 20, 25), null);
assert.equal(roomFillColor('temp', null, 'none', undefined, 20, 25), null);
});
test('spaceDisplayOf: temp bounds default to 20..25 and accept overrides', () => {
const d = spaceDisplayOf({ plan_url: '/x.svg' });
assert.equal(d.tempMin, 20);
assert.equal(d.tempMax, 25);
const o = spaceDisplayOf({ settings: { temp_min: 18.5, temp_max: 23 } });
assert.equal(o.tempMin, 18.5);
assert.equal(o.tempMax, 23);
});
test('segmentCm: cells scaled by cm-per-cell', () => {
assert.equal(segmentCm([0, 0], [30, 40], 10, 5), 25); // 50 units / pitch 10 = 5 cells * 5cm
assert.ok(Math.abs(segmentCm([0, 0], [240, 0], 1000 / 240, 5) - 288) < 1e-9);
});
test('formatLength: metric metres with 2 decimals', () => {
assert.equal(formatLength(25, false), '0.25 m');
assert.equal(formatLength(125, false), '1.25 m');
assert.equal(formatLength(0, false), '0.00 m');
});
test('formatLength: imperial feet + inches, with inch rollover', () => {
assert.equal(formatLength(124.46, true), '4 1″');
assert.equal(formatLength(30.48, true), '1 0″');
assert.equal(formatLength(29.464, true), '1 0″');
});
test('roomEdges: a line exists only as a room edge; polygons and rects both yield walls', () => {
const sq = { poly: [[0, 0], [1, 0], [1, 1], [0, 1]] };
assert.equal(roomEdges([sq]).length, 4); // closed outline → 4 walls
assert.equal(roomEdges([{ x: 0, y: 0, w: 1, h: 1 }]).length, 4); // legacy rect room
assert.equal(roomEdges([]).length, 0); // no rooms → no lines at all
assert.equal(roomEdges([{ poly: [[0, 0], [1, 1]] }]).length, 0); // not a closed room → nothing
});
test('roomEdges: a wall shared by two rooms is emitted once, and survives deleting either room', () => {
const left = { id: 'a', poly: [[0, 0], [0.5, 0], [0.5, 1], [0, 1]] };
const right = { id: 'b', poly: [[0.5, 0], [1, 0], [1, 1], [0.5, 1]] }; // shares x=0.5 wall
const both = roomEdges([left, right]);
assert.equal(both.length, 7); // 4 + 4 - 1 shared, deduped regardless of direction
const shared = (segs) => segs.some((s) => s[0] === 0.5 && s[2] === 0.5);
assert.ok(shared(both));
// deleting 'left' → the shared wall stays, because 'right' still contributes it
assert.ok(shared(roomEdges([right])));
// deleting both → no lines remain
assert.equal(roomEdges([]).length, 0);
});
const SQ = [[0, 0], [2, 0], [2, 2], [0, 2]];
test('pointStrictlyInside: a point on a wall is NOT inside (shared walls are normal)', () => {
assert.ok(pointStrictlyInside([1, 1], SQ)); // middle
assert.ok(!pointStrictlyInside([2, 1], SQ)); // on a wall mid-span (T-junction vertex)
assert.ok(!pointStrictlyInside([0, 0], SQ)); // on a corner
assert.ok(!pointStrictlyInside([3, 1], SQ)); // outside
assert.ok(pointOnBoundary([2, 1], SQ));
assert.ok(!pointOnBoundary([1, 1], SQ));
});
test('roomsOverlap: sharing a wall or a corner is legal; real overlap is not', () => {
const right = [[2, 0], [4, 0], [4, 2], [2, 2]]; // shares the whole x=2 wall
assert.ok(!roomsOverlap(SQ, right));
// neighbour's wall is LONGER than ours — the real dacha case (collinear partial overlap)
const tall = [[2, -1], [4, -1], [4, 3], [2, 3]];
assert.ok(!roomsOverlap(SQ, tall));
// touching only at a corner
assert.ok(!roomsOverlap(SQ, [[2, 2], [3, 2], [3, 3], [2, 3]]));
// apart
assert.ok(!roomsOverlap(SQ, [[5, 5], [6, 5], [6, 6], [5, 6]]));
// genuine partial overlap
assert.ok(roomsOverlap(SQ, [[1, 1], [3, 1], [3, 3], [1, 3]]));
});
test('roomsOverlap v1.34: nesting is legal (islands), duplicates and crossings are not', () => {
// nested & enclosing — legal since island rooms
assert.ok(!roomsOverlap(SQ, [[0.5, 0.5], [1.5, 0.5], [1.5, 1.5], [0.5, 1.5]]));
assert.ok(!roomsOverlap([[-1, -1], [3, -1], [3, 3], [-1, 3]], SQ));
// a duplicate outline is still an overlap
assert.ok(roomsOverlap(SQ, SQ));
// a cross: no vertex of either lies inside the other, but the edges cross
assert.ok(roomsOverlap([[0, 0.5], [3, 0.5], [3, 1.5], [0, 1.5]],
[[0.5, -1], [1.5, -1], [1.5, 3], [0.5, 3]]));
// genuine partial overlap is still rejected
assert.ok(roomsOverlap(SQ, [[1, 1], [3, 1], [3, 3], [1, 3]]));
});
test('polyContainsPoly & islandsOf', () => {
const outer = [[0, 0], [10, 0], [10, 10], [0, 10]];
const col = [[4, 4], [6, 4], [6, 6], [4, 6]];
const tiny = [[4.5, 4.5], [5, 4.5], [5, 5], [4.5, 5]]; // внутри col
const partial = [[8, 8], [12, 8], [12, 12], [8, 12]];
assert.ok(polyContainsPoly(outer, col));
assert.ok(!polyContainsPoly(col, outer));
assert.ok(!polyContainsPoly(outer, outer)); // дубликат — не вложенность
assert.ok(!polyContainsPoly(outer, partial));
// прямые острова: col — да; tiny — нет (он остров col, не outer)
const isl = islandsOf(outer, [col, tiny, partial]);
assert.deepEqual(isl, [col]);
assert.deepEqual(islandsOf(col, [tiny]), [tiny]);
});
test('roomPoly: polygon rooms as-is, legacy rect rooms as four corners', () => {
assert.equal(roomPoly({ poly: SQ }), SQ);
assert.deepEqual(roomPoly({ x: 0, y: 0, w: 2, h: 2 }), SQ);
assert.equal(roomPoly({}), null);
});
test('polygonArea: shoelace, orientation-independent', () => {
assert.equal(polygonArea([[0, 0], [2, 0], [2, 2], [0, 2]]), 4);
assert.equal(polygonArea([[0, 0], [0, 2], [2, 2], [2, 0]]), 4); // reversed winding
assert.equal(polygonArea([[0, 0], [1, 1]]), 0);
});
test('mergeRooms: only rooms sharing a wall merge; the union is one simple outline', () => {
const a = [[0, 0], [2, 0], [2, 2], [0, 2]];
const full = mergeRooms(a, [[2, 0], [4, 0], [4, 2], [2, 2]]); // whole wall shared
assert.equal(polygonArea(full), 8);
assert.equal(full.length, 4); // collapses to one rectangle
// the neighbour's wall is LONGER than ours — the real dacha case
const partial = mergeRooms(a, [[2, -1], [4, -1], [4, 3], [2, 3]]);
assert.equal(polygonArea(partial), 4 + 8);
assert.ok(partial.length >= 6); // an L/T-shaped outline
});
test('mergeRooms: refuses a corner touch, rooms apart, and a union with a hole', () => {
const a = [[0, 0], [2, 0], [2, 2], [0, 2]];
assert.equal(mergeRooms(a, [[2, 2], [4, 2], [4, 4], [2, 4]]), null); // corner only
assert.equal(mergeRooms(a, [[5, 5], [6, 5], [6, 6], [5, 6]]), null); // apart
const u = [[0, 0], [6, 0], [6, 2], [4, 2], [4, 6], [6, 6], [6, 8], [0, 8]];
assert.equal(mergeRooms(u, [[6, 2], [8, 2], [8, 6], [6, 6]]), null); // would enclose a hole
});
test('splitRoom: a wall-to-wall chord cuts the room in two, areas are preserved', () => {
const sq = [[0, 0], [4, 0], [4, 4], [0, 4]];
const parts = splitRoom(sq, [0, 2], [4, 2]); // straight across
assert.ok(parts);
assert.equal(polygonArea(parts[0]) + polygonArea(parts[1]), polygonArea(sq));
assert.equal(polygonArea(parts[0]), 8);
assert.equal(polygonArea(parts[1]), 8);
// an off-centre cut → a bigger and a smaller part (the bigger one keeps the room)
const off = splitRoom(sq, [0, 1], [4, 1]);
const areas = [polygonArea(off[0]), polygonArea(off[1])].sort((x, y) => x - y);
assert.deepEqual(areas, [4, 12]);
});
test('splitRoom: refuses cuts that are not clean wall-to-wall chords', () => {
const sq = [[0, 0], [4, 0], [4, 4], [0, 4]];
assert.equal(splitRoom(sq, [1, 1], [3, 3]), null); // ends not on a wall
assert.equal(splitRoom(sq, [0, 2], [0, 2]), null); // same point
assert.equal(splitRoom(sq, [0, 0], [4, 0]), null); // along a wall → zero-area sliver
// an L-shaped room: a chord that would leave the room is refused
const L = [[0, 0], [4, 0], [4, 2], [2, 2], [2, 4], [0, 4]];
assert.equal(splitRoom(L, [4, 1], [1, 4]), null);
});
test('closestPointOnBoundary: projects a click onto the nearest wall', () => {
const sq = [[0, 0], [10, 0], [10, 10], [0, 10]];
assert.deepEqual(closestPointOnBoundary([5, -3], sq), [5, 0]); // above the bottom edge
assert.deepEqual(closestPointOnBoundary([13, 5], sq), [10, 5]); // right of the right edge
assert.deepEqual(closestPointOnBoundary([5, 4], sq), [5, 0]); // inside → nearest edge (bottom)
assert.equal(closestPointOnBoundary([0, 0], [[0, 0]]), null); // no edges
});
test('isActiveState: a sensor outage calms the plan down, it never pulses forever', () => {
assert.ok(isActiveState('on'));
assert.ok(isActiveState('open'));
assert.ok(isActiveState('home'));
assert.ok(isActiveState('detected'));
assert.ok(!isActiveState('off'));
assert.ok(!isActiveState('unavailable'));
assert.ok(!isActiveState('unknown'));
assert.ok(!isActiveState(undefined));
assert.ok(!isActiveState(null));
});
test('snapToWall: projects onto the nearest derived wall with its angle; misses return null', () => {
const rooms = [{ poly: [[0, 0], [10, 0], [10, 10], [0, 10]] }];
const s = snapToWall([4, 0.6], rooms, 1); // near the top wall
assert.deepEqual([s.x, s.y], [4, 0]);
assert.equal(Math.abs(s.angle) % 180, 0); // horizontal wall
const v = snapToWall([10.4, 7], rooms, 1); // near the right wall
assert.deepEqual([v.x, v.y], [10, 7]);
assert.equal(Math.abs(v.angle), 90);
assert.equal(snapToWall([5, 5], rooms, 1), null); // middle of the room: no wall within reach
});
test('openingAmount: doors default open, windows closed; outages freeze the default', () => {
assert.equal(openingAmount('door', null), 1);
assert.equal(openingAmount('window', null), 0);
assert.equal(openingAmount('door', 'unavailable'), 1);
assert.equal(openingAmount('window', 'unknown'), 0);
assert.equal(openingAmount('door', 'on'), 1);
assert.equal(openingAmount('door', 'off'), 0);
assert.equal(openingAmount('window', 'open'), 1);
// invert flips on/off but never the outage default
assert.equal(openingAmount('door', 'on', true), 0);
assert.equal(openingAmount('door', 'off', true), 1);
assert.equal(openingAmount('door', 'unavailable', true), 1);
});
test('snapToWall: the angle is normalized to [-90, 90) so opposite edge directions cannot flip a dragged opening', () => {
// the same wall as seen from two neighbouring rooms (opposite winding)
const a = [{ poly: [[0, 0], [10, 0], [10, 10], [0, 10]] }];
const b = [{ poly: [[10, 0], [0, 0], [0, 10], [10, 10]] }]; // reversed
const sa = snapToWall([5, 0.4], a, 1);
const sb = snapToWall([5, 0.4], b, 1);
assert.equal(sa.angle, sb.angle);
assert.ok(sa.angle >= -90 && sa.angle < 90);
const v = snapToWall([10.3, 5], a, 1); // vertical wall
assert.ok(v.angle >= -90 && v.angle < 90);
});
test('fillColorsOf: defaults, merge, malformed entries dropped', () => {
const d = fillColorsOf({});
assert.equal(d.light_on.c, '#ffd45c');
const o = fillColorsOf({ fill_colors: { light_on: { c: '#ff0000', a: 0.5 }, temp_hot: { c: 'javascript:x', a: 9 } } });
assert.equal(o.light_on.c, '#ff0000');
assert.equal(o.light_on.a, 0.5);
assert.equal(o.temp_hot.c, '#ffd45c'); // malformed hex → default
assert.equal(o.temp_hot.a, 1); // clamped
});
test('lerpColor: endpoints and midpoint', () => {
assert.equal(lerpColor('#000000', '#ffffff', 0), '#000000');
assert.equal(lerpColor('#000000', '#ffffff', 1), '#ffffff');
assert.equal(lerpColor('#000000', '#ffffff', 0.5), '#808080');
assert.equal(lerpColor('#000000', '#ffffff', -5), '#000000'); // clamped
});
test('roomFillStyle: palette-driven fills, lqi gradient between custom endpoints', () => {
const colors = fillColorsOf({ fill_colors: { lqi_low: { c: '#000000', a: 0.1 }, lqi_high: { c: '#ffffff', a: 0.3 } } });
assert.equal(roomFillStyle('lqi', 110, 'none', null, 20, 25, colors).c, '#808080'); // mid of 40..180
assert.equal(roomFillStyle('lqi', null, 'none', null, 20, 25, colors), null);
assert.deepEqual(roomFillStyle('light', null, 'on', null, 20, 25, colors), colors.light_on);
assert.deepEqual(roomFillStyle('temp', 18, 'none', 18, 20, 25, colors), colors.temp_cold);
assert.equal(roomFillStyle('none', 100, 'on', 22, 20, 25, colors), null);
});
test('spaceDisplayOf: show_lqi tri-state (null = follow the card option)', () => {
assert.equal(spaceDisplayOf({}).showLqi, null);
assert.equal(spaceDisplayOf({ settings: { show_lqi: false } }).showLqi, false);
assert.equal(spaceDisplayOf({ settings: { show_lqi: true } }).showLqi, true);
});
test('roomFillStyle light_none: alpha 0 keeps no-fill; a custom color fills lightless rooms', () => {
const def = fillColorsOf({});
assert.equal(roomFillStyle('light', null, 'none', null, 20, 25, def), null); // default: unchanged
const c = fillColorsOf({ fill_colors: { light_none: { c: '#123456', a: 0.2 } } });
assert.deepEqual(roomFillStyle('light', null, 'none', null, 20, 25, c), { c: '#123456', a: 0.2 });
});
test('stateIcon: doors/locks/bulbs reflect state; custom icons and outages never morph', () => {
assert.equal(stateIcon('mdi:door', 'binary_sensor', 'door', 'on', false), 'mdi:door-open');
assert.equal(stateIcon('mdi:door', 'binary_sensor', 'door', 'off', false), 'mdi:door-closed');
assert.equal(stateIcon('mdi:window-closed', 'binary_sensor', 'window', 'on', false), 'mdi:window-open');
assert.equal(stateIcon('mdi:garage-variant', 'binary_sensor', 'garage_door', 'on', false), 'mdi:garage-open-variant');
assert.equal(stateIcon('mdi:lock', 'lock', undefined, 'unlocked', false), 'mdi:lock-open-variant');
assert.equal(stateIcon('mdi:lightbulb', 'light', undefined, 'on', false), 'mdi:lightbulb-on');
assert.equal(stateIcon('mdi:lightbulb', 'light', undefined, 'off', false), 'mdi:lightbulb');
assert.equal(stateIcon('mdi:door', 'binary_sensor', 'door', 'unavailable', false), 'mdi:door');
assert.equal(stateIcon('mdi:custom', 'lock', undefined, 'unlocked', true), 'mdi:custom'); // user icon wins
assert.equal(stateIcon('mdi:cctv', 'camera', undefined, 'recording', false), 'mdi:cctv'); // unknown pair
});
test('lightColorOf: rgb of an on light; off/unavailable/no-color → null', () => {
assert.equal(lightColorOf({ state: 'on', attributes: { rgb_color: [255, 20, 40] } }), 'rgb(255, 20, 40)');
assert.equal(lightColorOf({ state: 'off', attributes: { rgb_color: [255, 20, 40] } }), null);
assert.equal(lightColorOf({ state: 'on', attributes: {} }), null);
assert.equal(lightColorOf({ state: 'unavailable', attributes: { rgb_color: [1, 2, 3] } }), null);
assert.equal(lightColorOf(undefined), null);
});
test('isAlarmState: leak/smoke/gas/siren fire; doors and outages do not', () => {
assert.ok(isAlarmState('binary_sensor', 'moisture', 'on'));
assert.ok(isAlarmState('binary_sensor', 'smoke', 'on'));
assert.ok(isAlarmState('siren', undefined, 'on'));
assert.ok(!isAlarmState('binary_sensor', 'door', 'on'));
assert.ok(!isAlarmState('binary_sensor', 'smoke', 'off'));
assert.ok(!isAlarmState('binary_sensor', 'smoke', 'unavailable'));
});
test('parseRoomRef: area rooms, sub-area rooms by id, malformed refs', () => {
assert.deepEqual(parseRoomRef('f1#kitchen'), { space: 'f1', area: 'kitchen', roomId: null });
assert.deepEqual(parseRoomRef('f1#@r7'), { space: 'f1', area: null, roomId: 'r7' });
assert.equal(parseRoomRef(''), null);
assert.equal(parseRoomRef('f1#'), null);
assert.equal(parseRoomRef('f1#@'), null);
assert.equal(parseRoomRef('#kitchen'), null);
assert.equal(parseRoomRef(null), null);
});
test('diffNewDevices: first run seeds the baseline silently; later additions are fresh', () => {
const first = diffNewDevices(['a', 'b'], undefined);
assert.deepEqual(first, { fresh: [], known: ['a', 'b'] });
const none = diffNewDevices(['a', 'b'], ['a', 'b']);
assert.deepEqual(none.fresh, []);
assert.equal(none.known.length, 2);
const added = diffNewDevices(['a', 'b', 'c'], ['a', 'b']);
assert.deepEqual(added.fresh, ['c']);
assert.deepEqual(added.known, ['a', 'b', 'c']);
// removed devices stay in known (harmless, keeps the list append-only)
const removed = diffNewDevices(['a'], ['a', 'b']);
assert.deepEqual(removed.fresh, []);
});
test('spaceDisplayOf: room-card metric flags default to off', () => {
const d0 = spaceDisplayOf({ plan_url: 'x', settings: {} });
assert.deepEqual([d0.labelTemp, d0.labelHum, d0.labelLqi, d0.labelLight], [false, false, false, false]);
const d1 = spaceDisplayOf({ plan_url: 'x', settings: { label_temp: true, label_light: true } });
assert.deepEqual([d1.labelTemp, d1.labelHum, d1.labelLqi, d1.labelLight], [true, false, false, true]);
});
test('splitRoomPath: polyline cut of a square', () => {
const sq = [[0, 0], [10, 0], [10, 10], [0, 10]];
// Г-образный разрез: верхняя стена (4,0) → внутрь (4,6) → правая стена (10,6)
const parts = splitRoomPath(sq, [[4, 0], [4, 6], [10, 6]], 1e-6);
assert.ok(parts);
const [p1, p2] = parts;
const area = (p) => Math.abs(p.reduce((a, _, i) => {
const [x1, y1] = p[i], [x2, y2] = p[(i + 1) % p.length];
return a + x1 * y2 - x2 * y1;
}, 0)) / 2;
assert.ok(Math.abs(area(p1) + area(p2) - 100) < 1e-6);
// меньшая часть — прямоугольник 6x6 минус... фактически площадь 4*6+... проверим что обе > 0
assert.ok(area(p1) > 0 && area(p2) > 0);
});
test('splitRoomPath: two points == classic straight chord', () => {
const sq = [[0, 0], [10, 0], [10, 10], [0, 10]];
const parts = splitRoomPath(sq, [[5, 0], [5, 10]], 1e-6);
assert.ok(parts);
});
test('splitRoomPath rejects bad paths', () => {
const sq = [[0, 0], [10, 0], [10, 10], [0, 10]];
// промежуточная точка снаружи
assert.equal(splitRoomPath(sq, [[4, 0], [4, -3], [10, 6]], 1e-6), null);
// сегмент пересекает стену (выходит и возвращается)
assert.equal(splitRoomPath(sq, [[4, 0], [14, 5], [10, 6]], 1e-6), null);
// конец не на стене
assert.equal(splitRoomPath(sq, [[4, 0], [5, 5]], 1e-6), null);
// самопересечение пути
assert.equal(splitRoomPath(sq, [[2, 0], [8, 8], [8, 2], [2, 8], [0, 4]], 1e-6), null);
// менее двух точек
assert.equal(splitRoomPath(sq, [[4, 0]], 1e-6), null);
});
test('kelvinToRgb: warm is orange-ish, cool is blue-ish white', () => {
const warm = kelvinToRgb(2700);
assert.equal(warm[0], 255);
assert.ok(warm[2] < 200 && warm[1] < 230);
const cool = kelvinToRgb(6600);
assert.ok(cool[0] > 245 && cool[1] > 240 && cool[2] > 245);
// clamps
assert.ok(kelvinToRgb(100)[0] === 255);
});
test('glowColorOf: rgb wins, then color temp, then fallback; off = null', () => {
assert.equal(glowColorOf({ state: 'off', attributes: {} }, '#fff'), null);
assert.equal(glowColorOf(null, '#fff'), null);
const rgb = glowColorOf({ state: 'on', attributes: { rgb_color: [10, 20, 30], brightness: 128 } }, '#fff');
assert.equal(rgb.c, 'rgb(10, 20, 30)');
assert.ok(Math.abs(rgb.bri - 0.5) < 0.01);
const ct = glowColorOf({ state: 'on', attributes: { color_temp_kelvin: 2700 } }, '#fff');
assert.ok(ct.c.startsWith('rgb(255'));
const mireds = glowColorOf({ state: 'on', attributes: { color_temp: 370 } }, '#fff'); // ~2700K
assert.ok(mireds.c.startsWith('rgb(255'));
const fb = glowColorOf({ state: 'on', attributes: {} }, '#abcdef');
assert.equal(fb.c, '#abcdef');
assert.equal(fb.bri, 1);
});
test('doorSector: sector through a door, clamped and guarded', () => {
const s = [0, 0];
const sec = doorSector(s, [10, -2], [10, 2], 50);
assert.ok(sec && sec.length === 10 + 0); // вершина + 9 точек дуги
assert.deepEqual(sec[0], [0, 0]);
for (const p of sec.slice(1)) {
const d = Math.hypot(p[0], p[1]);
assert.ok(Math.abs(d - 50) < 1e-6);
assert.ok(p[0] > 0); // сектор смотрит в сторону двери
}
// дверь за радиусом
assert.equal(doorSector(s, [60, -2], [60, 2], 50), null);
// источник на краю двери
assert.equal(doorSector(s, [0, 0], [10, 2], 50), null);
});
test('hasRoomBehind: neighbour room yes, street no', () => {
const neighbour = [[10, -5], [20, -5], [20, 5], [10, 5]];
// дверь в стене x=10 (стена вертикальна: угол 90°), источник слева в (5,0)
assert.ok(hasRoomBehind([10, 0], 90, [5, 0], [neighbour], 1));
// за дверью пусто
assert.ok(!hasRoomBehind([10, 0], 90, [5, 0], [], 1));
assert.ok(!hasRoomBehind([10, 0], 90, [5, 0], [[[30, 30], [40, 30], [40, 40], [30, 40]]], 1));
});
test('controlsAction: HA-group semantics', () => {
assert.equal(controlsAction(['off', 'off']), 'turn_on');
assert.equal(controlsAction(['off', 'on']), 'turn_off');
assert.equal(controlsAction(['on', 'on']), 'turn_off');
assert.equal(controlsAction([undefined, 'off']), 'turn_on');
assert.equal(controlsAction([]), 'turn_on');
});
test('isControllable: lights and switches only', () => {
assert.ok(isControllable('light.kitchen'));
assert.ok(isControllable('switch.pump'));
assert.ok(!isControllable('lock.front'));
assert.ok(!isControllable('cover.gate'));
assert.ok(!isControllable('alarm_control_panel.home'));
});
test('sharedBoundary: exact, partial-collinear and none', () => {
const A = [[0, 0], [2, 0], [2, 2], [0, 2]];
// точное общее ребро x=2
const B = [[2, 0], [4, 0], [4, 2], [2, 2]];
const s1 = sharedBoundary(A, B);
assert.equal(s1.length >= 1, true);
const len = (s) => Math.hypot(s[2] - s[0], s[3] - s[1]);
assert.ok(Math.abs(Math.max(...s1.map(len)) - 2) < 1e-6);
// частичное коллинеарное наложение (дачный случай): стена соседа длиннее
const C = [[2, -1], [4, -1], [4, 3], [2, 3]];
const s2 = sharedBoundary(A, C);
assert.ok(Math.abs(Math.max(...s2.map(len)) - 2) < 1e-6); // перекрытие = наша стена
// нет наложения
assert.equal(sharedBoundary(A, [[5, 5], [6, 5], [6, 6], [5, 6]]).length, 0);
// перпендикулярное касание — не граница
assert.equal(sharedBoundary(A, [[2, 2], [3, 2], [3, 3], [2, 3]]).filter((s) => len(s) > 1e-6).length, 0);
});
test('openZoneOf: transitive, either-direction links', () => {
const rooms = [
{ id: 'a', open_to: ['b'] },
{ id: 'b' }, // связь только со стороны a
{ id: 'c', open_to: ['b'] }, // b↔c со стороны c
{ id: 'd' }, // не связан
];
const z = openZoneOf('a', rooms);
assert.deepEqual([...z].sort(), ['a', 'b', 'c']);
assert.deepEqual([...openZoneOf('d', rooms)], ['d']);
});
test('distToSegment', () => {
assert.equal(distToSegment([0, 5], [0, 0, 0, 10]), 0);
assert.equal(distToSegment([3, 5], [0, 0, 0, 10]), 3);
assert.ok(Math.abs(distToSegment([-3, -4], [0, 0, 0, 10]) - 5) < 1e-9);
});
test('outlineWithout: removes the cut stretch, keeps the rest', () => {
const sq = [[0, 0], [10, 0], [10, 10], [0, 10]];
// вырез середины нижней стены: 3..7
const pieces = outlineWithout(sq, [[3, 0, 7, 0]]);
const len = (s) => Math.hypot(s[2] - s[0], s[3] - s[1]);
const total = pieces.reduce((a, s) => a + len(s), 0);
assert.ok(Math.abs(total - (40 - 4)) < 1e-6);
// куски нижней стены: 0..3 и 7..10
const bottom = pieces.filter((s) => s[1] === 0 && s[3] === 0);
assert.equal(bottom.length, 2);
// вырез целого ребра
const p2 = outlineWithout(sq, [[0, 0, 10, 0]]);
assert.ok(Math.abs(p2.reduce((a, s) => a + len(s), 0) - 30) < 1e-6);
// без вырезов — весь периметр
assert.ok(Math.abs(outlineWithout(sq, []).reduce((a, s) => a + len(s), 0) - 40) < 1e-6);
});
test('resolveTapAction: pure lights toggle by default (v1.39.0)', () => {
assert.equal(resolveTapAction(null, null, 'light'), 'toggle');
assert.equal(resolveTapAction('', undefined, 'light'), 'toggle');
// явный выбор пользователя сильнее дефолта
assert.equal(resolveTapAction('info', null, 'light'), 'info');
// не-световые домены не трогаем
assert.equal(resolveTapAction(null, null, 'switch'), 'info');
assert.equal(resolveTapAction(null, null, 'sensor'), 'info');
// замок никогда
assert.equal(resolveTapAction('toggle', null, 'lock'), 'info');
});
test('alignGuides: nearest per axis, indication only', () => {
const cands = [[10, 50], [10, 90], [70, 20], [40, 40]];
const g = alignGuides([10, 60], cands, 0.5);
const gx = g.find((x) => x.axis === 'x');
assert.ok(gx && gx.at === 10 && gx.from[1] === 50); // ближайший по Y из выровненных по X
// выравнивание по Y
const g2 = alignGuides([30, 20], cands, 0.5);
const gy = g2.find((x) => x.axis === 'y');
assert.ok(gy && gy.at === 20 && gy.from[0] === 70);
// вне допуска — пусто
assert.equal(alignGuides([11, 60], cands, 0.5).length, 0);
// совпадающая точка не гид сама себе
assert.equal(alignGuides([10, 50], [[10, 50]], 0.5).length, 0);
// максимум два гида
const g3 = alignGuides([10, 20], cands, 0.5);
assert.ok(g3.length <= 2);
});
test('segmentAngle & is45', () => {
assert.equal(segmentAngle([0, 0], [10, 0]), 0);
assert.equal(segmentAngle([0, 0], [0, 10]), 90);
assert.equal(segmentAngle([0, 0], [10, 10]), 45);
assert.equal(segmentAngle([0, 0], [-10, 0]), 180);
assert.ok(is45(45) && is45(90) && is45(315) && is45(0));
assert.ok(is45(44.8) && is45(45.3));
assert.ok(!is45(30) && !is45(52));
});
test('swipeTarget: kiosk swipe rules', () => {
const ids = ['f1', 'f2', 'garden'];
// влево → следующее, вправо → предыдущее, по кругу
assert.equal(swipeTarget(-100, 5, 1, ids, 'f1'), 'f2');
assert.equal(swipeTarget(100, 5, 1, ids, 'f1'), 'garden');
assert.equal(swipeTarget(-100, 0, 1, ids, 'garden'), 'f1');
// при зуме — не свайп
assert.equal(swipeTarget(-100, 0, 2, ids, 'f1'), null);
// короткий или диагональный жест — не свайп
assert.equal(swipeTarget(-30, 0, 1, ids, 'f1'), null);
assert.equal(swipeTarget(-80, 70, 1, ids, 'f1'), null);
// одно пространство — некуда
assert.equal(swipeTarget(-100, 0, 1, ['f1'], 'f1'), null);
});
test('clampScale', () => {
assert.equal(clampScale(2), 2);
assert.equal(clampScale(9), 3);
assert.equal(clampScale(0.1), 0.5);
assert.equal(clampScale('x'), 1);
assert.equal(clampScale(undefined, 1.5), 1.5);
});
test('migratePdfUrls: only confirmed copies are rewritten (review CR-3)', () => {
const pdfs = [
{ name: 'a.pdf', url: '/houseplan_files/files/v_old1/a.pdf?v=1' },
{ name: 'b.pdf', url: '/houseplan_files/files/v_old1/b.pdf?v=2' },
];
// сервер скопировал только a.pdf, причём переименовал из-за коллизии
const out = migratePdfUrls(pdfs, 'v_old1', 'dev99', { 'a.pdf': 'a (2).pdf' });
assert.equal(out[0].url, '/houseplan_files/files/dev99/a%20(2).pdf?v=1');
assert.equal(out[1].url, pdfs[1].url, 'нескопированный файл ссылается на старую папку');
// пустой маппинг = ничего не переносим
assert.deepEqual(migratePdfUrls(pdfs, 'v_old1', 'dev99', {}).map((p) => p.url),
pdfs.map((p) => p.url));
});
test('migratePdfUrls: rebinding rewrites file urls', () => {
const pdfs = [
{ name: 'a.pdf', url: '/houseplan_files/files/v_old1/a.pdf?v=1' },
{ name: 'b.pdf', url: '/houseplan_files/files/other/b.pdf?v=2' },
];
const out = migratePdfUrls(pdfs, 'v_old1', 'dev99');
assert.equal(out[0].url, '/houseplan_files/files/dev99/a.pdf?v=1');
assert.equal(out[1].url, pdfs[1].url); // чужие пути не трогаем
// без смены id — как есть
assert.equal(migratePdfUrls(pdfs, 'x', 'x'), pdfs);
});
test('roomFillModeOf: tier-3 override beats the space, junk inherits', () => {
assert.equal(roomFillModeOf('temp', { settings: { fill_mode: 'light' } }), 'light');
assert.equal(roomFillModeOf('glow', { settings: { fill_mode: 'none' } }), 'none'); // выход из тьмы
assert.equal(roomFillModeOf('temp', {}), 'temp');
assert.equal(roomFillModeOf('temp', null), 'temp');
assert.equal(roomFillModeOf('temp', { settings: { fill_mode: 'glow' } }), 'temp'); // glow нельзя выбрать per-room
});
test('splitRoomPath: both ends on the SAME edge carve a niche (audit G1)', () => {
const sq = [[0, 0], [10, 0], [10, 10], [0, 10]];
const A = (p) => Math.round(polygonArea(p) * 1000) / 1000;
// ИНВАРИАНТ разреза: части в сумме дают исходную площадь
const invariant = (pts, label) => {
const r = splitRoomPath(sq, pts);
assert.ok(r, label + ': разрез должен приниматься');
assert.ok(Math.abs(A(r[0]) + A(r[1]) - A(sq)) < 1e-6,
label + ': сумма частей ' + (A(r[0]) + A(r[1])) + ' != ' + A(sq));
return r;
};
const niche = invariant([[2, 0], [2, 3], [8, 3], [8, 0]], 'ниша снизу');
assert.deepEqual([A(niche[0]), A(niche[1])].sort((x, y) => x - y), [18, 82]);
invariant([[2, 10], [2, 7], [8, 7], [8, 10]], 'ниша сверху');
invariant([[0, 2], [3, 2], [3, 8], [0, 8]], 'ниша слева');
invariant([[8, 0], [8, 3], [2, 3], [2, 0]], 'обратный порядок точек');
invariant([[1, 0], [3, 4], [5, 1], [7, 4], [9, 0]], 'зигзаг');
// вырожденная ниша нулевой площади — отказ
assert.equal(splitRoomPath(sq, [[2, 0], [2, 1e-9], [8, 0]]), null);
// старые формы разрезов сохраняют инвариант
invariant([[5, 0], [5, 10]], 'прямая хорда');
invariant([[4, 0], [4, 6], [10, 6]], 'Г-образный');
});
test('contentUrl: legacy static paths become authenticated ones (audit B1)', () => {
assert.equal(contentUrl('/houseplan_files/plans/f1.svg?v=1'), '/api/houseplan/content/plans/_/f1.svg?v=1');
assert.equal(contentUrl('/houseplan_files/files/dev1/a.pdf?v=2'), '/api/houseplan/content/files/dev1/a.pdf?v=2');
// новые и внешние адреса не трогаем
assert.equal(contentUrl('/api/houseplan/content/files/x/y.pdf'), '/api/houseplan/content/files/x/y.pdf');
assert.equal(contentUrl('https://example.com/a.pdf'), 'https://example.com/a.pdf');
assert.equal(contentUrl(''), '');
assert.equal(contentUrl(null), '');
});
test('interiorPoint / polyContainsPoly on concave rooms (audit G2)', () => {
// U-образная комната: среднее вершин лежит СНАРУЖИ
const u = [[0, 0], [10, 0], [10, 10], [9, 10], [9, 2], [1, 2], [1, 10], [0, 10]];
const mean = [u.reduce((s, p) => s + p[0], 0) / u.length, u.reduce((s, p) => s + p[1], 0) / u.length];
assert.equal(pointStrictlyInside(mean, u), false, 'предпосылка: среднее снаружи');
const ip = interiorPoint(u);
assert.ok(ip && pointStrictlyInside(ip, u), 'interiorPoint обязана быть внутри');
// вложенность вогнутых теперь распознаётся
const outer = [[-1, -1], [11, -1], [11, 11], [8.5, 11], [8.5, 2.5], [1.5, 2.5], [1.5, 11], [-1, 11]];
assert.equal(polyContainsPoly(outer, u), true);
assert.equal(roomsOverlap(outer, u), false);
// дубликат по-прежнему НЕ вложенность
assert.equal(polyContainsPoly(u, u), false);
});
test('segKey: one wall, one key at any precision (audit G3)', () => {
assert.equal(segKey([1.000001, 1], [1.000002, 2]), segKey([1.000002, 1], [1.000001, 2]));
assert.equal(segKey([0, 0], [1, 1], 3), segKey([1, 1], [0, 0], 3));
// разные стены — разные ключи
assert.notEqual(segKey([0, 0], [1, 1]), segKey([0, 0], [2, 2]));
});