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| // SPDX-License-Identifier: BSD-3-Clause | |
| // Copyright (c) 2026, The OpenROAD Authors | |
| import { describe, it } from 'node:test'; | |
| import assert from 'node:assert/strict'; | |
| // Mock WebSocket before importing the manager (needed for the cancel test). | |
| class MockWebSocket { | |
| constructor() { | |
| this.readyState = 1; | |
| this.sent = []; | |
| this.binaryType = null; | |
| queueMicrotask(() => { if (this.onopen) this.onopen(); }); | |
| } | |
| send(data) { this.sent.push(data); } | |
| close() {} | |
| static get OPEN() { return 1; } | |
| } | |
| globalThis.WebSocket = MockWebSocket; | |
| // Minimal Leaflet stand-in so the layer class itself can be built, not just the | |
| // pure helpers. Without this, a name the layer body references but never binds | |
| // (an `export ... from` re-export with no local import, say) goes unnoticed: | |
| // importers resolve it, the module body does not, and it only fails at runtime | |
| // inside Leaflet's _setView. | |
| globalThis.L = { | |
| GridLayer: { | |
| prototype: { | |
| initialize(opts) { this.options = { ...(opts || {}) }; }, | |
| _clampZoom(z) { return z; }, | |
| _removeTile() {}, | |
| }, | |
| extend(proto) { | |
| const Base = globalThis.L.GridLayer.prototype; | |
| function Layer(...args) { this._tiles = {}; this.initialize(...args); } | |
| Layer.prototype = Object.create(Base); | |
| Object.assign(Layer.prototype, proto); | |
| return Layer; | |
| }, | |
| }, | |
| }; | |
| // The tile-layer module references the Leaflet global `L` only inside | |
| // createWebSocketTileLayer's body, so importing it (for the pure helpers) | |
| // does not require Leaflet. | |
| const { buildMapOptions } = await import('../../src/ui-utils.js'); | |
| const { floorClampZoom, buildTileRequest, currentDpr, | |
| createWebSocketTileLayer, createOverlayTileLayer } | |
| = await import('../../src/websocket-tile-layer.js'); | |
| const { TILE_SIZE_CSS, buildTileRequestFor, watchDevicePixelRatio } | |
| = await import('../../src/tile-request.js'); | |
| const { WebSocketManager } = await import('../../src/websocket-manager.js'); | |
| // The seam the tile size exists to prevent: a tile whose CSS size is not a whole | |
| // number of device pixels has a fractional PITCH, so its boundaries cannot all | |
| // sit on the device grid however the panes are placed, and the browser | |
| // antialiases the rest into their neighbours. | |
| describe('TILE_SIZE_CSS', () => { | |
| // Every ratio seen in the wild: display scaling (125/150/166/175/200/250%), | |
| // and those combined with the browser zoom steps that produce eighths and | |
| // tenths. | |
| const RATIOS = [1, 1.1, 1.2, 1.25, 1.3333333333333333, 1.375, 1.5, | |
| 1.6666666269302368, 1.75, 1.8333333333333333, 2, 2.5, 3]; | |
| // Tolerance, not equality: a browser reports 5/3 as the float32 | |
| // 1.6666666269302368, so no integer CSS size is bit-exactly whole in device | |
| // px. The browser quantizes layout to 1/64 device px anyway, so landing | |
| // inside that is as exact as the platform can represent. | |
| const kLayoutUnit = 1 / 64; | |
| it('is a whole number of device pixels at every real ratio', () => { | |
| for (const dpr of RATIOS) { | |
| const device = TILE_SIZE_CSS * dpr; | |
| assert.ok(Math.abs(device - Math.round(device)) < kLayoutUnit, | |
| `${TILE_SIZE_CSS} CSS px at dpr ${dpr} is ${device}`); | |
| } | |
| }); | |
| it('is why 256 could not stay', () => { | |
| // 256 * 5/3 = 426.67, a third of a pixel off: the pitch itself is | |
| // fractional, so only every third boundary can land on the grid however | |
| // the panes are placed. That is the reported bug. | |
| const device = 256 * 1.6666666269302368; | |
| assert.ok(Math.abs(device - Math.round(device)) > 0.3, | |
| `256 CSS px at 5/3 is ${device}`); | |
| }); | |
| it('keeps the decoded pixel count within a few percent of 256', () => { | |
| // Tiles get smaller and more numerous; total bytes are what the memory | |
| // budget cares about, and they must not grow. | |
| const ratio = (256 / TILE_SIZE_CSS) ** 2; // tiles per old tile | |
| const bytes = ratio * TILE_SIZE_CSS ** 2 / 256 ** 2; | |
| assert.ok(Math.abs(bytes - 1) < 0.01, `decoded bytes x${bytes}`); | |
| }); | |
| }); | |
| describe('tile_px on the wire', () => { | |
| it('is the exact device square the tile is displayed in', () => { | |
| const req = buildTileRequestFor({ x: 1, y: 2, z: 3 }, 'metal1', | |
| { visibility: {} }, 1.6666666269302368, | |
| TILE_SIZE_CSS); | |
| assert.equal(req.tile_px, 400); // 240 * 5/3, exactly | |
| assert.equal(Number.isInteger(req.tile_px), true); | |
| }); | |
| it('follows the tile size it is given, not a fixed 256', () => { | |
| const req = buildTileRequestFor({ x: 0, y: 0, z: 0 }, 'metal1', | |
| { visibility: {} }, 2, 240); | |
| assert.equal(req.tile_px, 480); | |
| }); | |
| }); | |
| describe('watchDevicePixelRatio', () => { | |
| // Without this, tiles rasterized at the old ratio stay on screen stretched | |
| // into the new box — a tile fetched at 1.25 and shown at 1.6667 is a 33% | |
| // upscale, which smears every tile edge into its neighbour. | |
| function fakeWindow(dpr) { | |
| const queries = []; | |
| return { | |
| devicePixelRatio: dpr, | |
| queries, | |
| matchMedia(query) { | |
| const mql = { query, handlers: [], removed: [] }; | |
| mql.addEventListener = (name, fn) => { | |
| assert.equal(name, 'change'); | |
| mql.handlers.push(fn); | |
| }; | |
| mql.removeEventListener = (name, fn) => { | |
| assert.equal(name, 'change'); | |
| mql.removed.push(fn); | |
| }; | |
| queries.push(mql); | |
| return mql; | |
| }, | |
| }; | |
| } | |
| it('watches the ratio in force', () => { | |
| const saved = globalThis.window; | |
| globalThis.window = fakeWindow(1.25); | |
| try { | |
| watchDevicePixelRatio(() => {}); | |
| assert.equal(globalThis.window.queries.length, 1); | |
| assert.ok(globalThis.window.queries[0].query.includes('1.25dppx')); | |
| } finally { | |
| globalThis.window = saved; | |
| } | |
| }); | |
| it('reports the new ratio and watches for the next one', () => { | |
| const saved = globalThis.window; | |
| const win = fakeWindow(1.25); | |
| globalThis.window = win; | |
| try { | |
| const seen = []; | |
| watchDevicePixelRatio((dpr) => seen.push(dpr)); | |
| win.devicePixelRatio = 1.6666666269302368; | |
| win.queries[0].handlers[0](); | |
| assert.deepEqual(seen, [1.6666666269302368]); | |
| // A new query: the old one only ever matches the old ratio, so | |
| // without this a second change would go unnoticed. | |
| assert.equal(win.queries.length, 2); | |
| assert.ok(win.queries[1].query.includes('1.6666666269302368dppx')); | |
| } finally { | |
| globalThis.window = saved; | |
| } | |
| }); | |
| it('stops reporting once unsubscribed', () => { | |
| const saved = globalThis.window; | |
| const win = fakeWindow(1.25); | |
| globalThis.window = win; | |
| try { | |
| const seen = []; | |
| const stop = watchDevicePixelRatio((dpr) => seen.push(dpr)); | |
| stop(); | |
| win.queries[0].handlers[0](); | |
| assert.deepEqual(seen, []); | |
| } finally { | |
| globalThis.window = saved; | |
| } | |
| }); | |
| it('detaches the pending listener on unsubscribe', () => { | |
| // `once` retires a handler that has fired; the one still waiting on the | |
| // current ratio has not, and would outlive a viewer that is torn down. | |
| const saved = globalThis.window; | |
| const win = fakeWindow(1.25); | |
| globalThis.window = win; | |
| try { | |
| const stop = watchDevicePixelRatio(() => {}); | |
| assert.equal(win.queries[0].removed.length, 0); | |
| stop(); | |
| assert.deepEqual(win.queries[0].removed, | |
| [win.queries[0].handlers[0]]); | |
| } finally { | |
| globalThis.window = saved; | |
| } | |
| }); | |
| it('is a no-op where matchMedia is unavailable', () => { | |
| const saved = globalThis.window; | |
| globalThis.window = { devicePixelRatio: 2 }; | |
| try { | |
| assert.equal(typeof watchDevicePixelRatio(() => {}), 'function'); | |
| } finally { | |
| globalThis.window = saved; | |
| } | |
| }); | |
| }); | |
| describe('buildMapOptions', () => { | |
| it('rests on integer zoom (zoomSnap/zoomDelta = 1)', () => { | |
| // Integer-zoom rest => tiles displayed 1:1 with no fractional CSS | |
| // rescale of the pane, which would re-introduce the moiré beat. | |
| const opts = buildMapOptions(null); | |
| assert.equal(opts.zoomSnap, 1); | |
| assert.equal(opts.zoomDelta, 1); | |
| assert.equal(opts.fadeAnimation, false); | |
| assert.equal(opts.attributionControl, false); | |
| }); | |
| }); | |
| describe('floorClampZoom (upscale-only invariant)', () => { | |
| // The tile pane displays at scale 2^(realZoom - nativeZoom). Flooring the | |
| // real zoom keeps that exponent in [0,1) => scale in [1,2) => the pane is | |
| // only ever upscaled, never downscaled. Upscaling a band-limited tile | |
| // cannot reintroduce the moiré beat; downscaling can. | |
| for (const real of [0.0, 3.0, 3.4, 3.9, 7.99]) { | |
| it(`floors real zoom ${real} so display scale stays in [1,2)`, () => { | |
| const layer = { _map: { getZoom: () => real } }; | |
| const native = floorClampZoom(layer, Math.round(real)); | |
| assert.equal(native, Math.floor(real)); | |
| const displayScale = Math.pow(2, real - native); | |
| assert.ok(displayScale >= 1 && displayScale < 2, | |
| `display scale ${displayScale} must be in [1,2)`); | |
| }); | |
| } | |
| it('falls back to the passed zoom when detached from a map', () => { | |
| assert.equal(floorClampZoom({ _map: null }, 5), 5); | |
| }); | |
| }); | |
| describe('currentDpr', () => { | |
| function withDpr(value, fn) { | |
| const saved = globalThis.window; | |
| globalThis.window = value === undefined ? {} : { devicePixelRatio: value }; | |
| try { return fn(); } finally { globalThis.window = saved; } | |
| } | |
| it('returns the device pixel ratio', () => { | |
| assert.equal(withDpr(2, currentDpr), 2); | |
| }); | |
| it('clamps above 3', () => { | |
| assert.equal(withDpr(8, currentDpr), 3); | |
| }); | |
| it('defaults to 1 when devicePixelRatio is absent', () => { | |
| assert.equal(withDpr(undefined, currentDpr), 1); | |
| }); | |
| it('keeps the ratio exact, because sizes are computed from it', () => { | |
| // NOT rounded: the request's pixel count comes from this, and rounding | |
| // first asks for 401 px to fill a 400 px box (see test-dpr.js). The | |
| // two-decimal rounding applies to the payload's `dpr` field alone. | |
| assert.equal(withDpr(1.75, currentDpr), 1.75); | |
| assert.equal(withDpr(4 / 3, currentDpr), 4 / 3); | |
| assert.equal(withDpr(1.6666666269302368, currentDpr), | |
| 1.6666666269302368); | |
| }); | |
| it('still clamps, because the clamp bounds tile memory', () => { | |
| // A tile is rendered at (tileSize*dpr*supersample)^2 bytes. | |
| assert.equal(withDpr(8, currentDpr), 3); | |
| assert.equal(withDpr(0.5, currentDpr), 1); | |
| }); | |
| }); | |
| describe('buildTileRequest', () => { | |
| const ctx = { | |
| visibility: { stdcells: true, phys_bump: false }, | |
| selectability: { stdcells: true }, | |
| visibleLayers: new Set(['M1', 'M2']), | |
| selectableLayers: null, | |
| app: null, | |
| }; | |
| it('carries z/x/y, layer, visibility flags and the HiDPI dpr', () => { | |
| const saved = globalThis.window; | |
| globalThis.window = { devicePixelRatio: 2 }; | |
| try { | |
| const req = buildTileRequest({ z: 3, x: 1, y: 2 }, 'M1', ctx); | |
| assert.equal(req.type, 'tile'); | |
| assert.equal(req.layer, 'M1'); | |
| assert.equal(req.z, 3); | |
| assert.equal(req.x, 1); | |
| assert.equal(req.y, 2); | |
| assert.equal(req.dpr, 2); | |
| assert.deepEqual(req.visible_layers, ['M1', 'M2']); | |
| assert.equal(req.stdcells, true); | |
| assert.equal(req.phys_bump, false); | |
| assert.equal(req.s_stdcells, true); | |
| } finally { | |
| globalThis.window = saved; | |
| } | |
| }); | |
| it('omits pattern when the layer is solid or unset', () => { | |
| // No app → no pattern field. | |
| assert.equal('pattern' in buildTileRequest( | |
| { z: 0, x: 0, y: 0 }, 'M1', ctx), false); | |
| // app.layerPatterns present but M1 solid (default) → still omitted. | |
| const solidCtx = { ...ctx, app: { layerPatterns: { M2: 2 } } }; | |
| assert.equal('pattern' in buildTileRequest( | |
| { z: 0, x: 0, y: 0 }, 'M1', solidCtx), false); | |
| }); | |
| it('carries the per-layer fill pattern when non-solid', () => { | |
| const patCtx = { ...ctx, app: { layerPatterns: { M1: 3 } } }; | |
| const req = buildTileRequest({ z: 0, x: 0, y: 0 }, 'M1', patCtx); | |
| assert.equal(req.pattern, 3); | |
| }); | |
| }); | |
| describe('WebSocketManager.cancel', () => { | |
| it('notifies the server and drops the pending entry', async () => { | |
| const mgr = new WebSocketManager('ws://fake'); | |
| await mgr.readyPromise; | |
| mgr.pending.set(5, { resolve: () => {}, reject: () => {} }); | |
| mgr.socket.sent = []; | |
| mgr.cancel(5); | |
| assert.equal(mgr.pending.has(5), false); | |
| const cancel = mgr.socket.sent | |
| .map((s) => JSON.parse(s)) | |
| .find((m) => m.type === 'cancel'); | |
| assert.ok(cancel, 'a cancel message must be sent to the server'); | |
| assert.equal(cancel.cancel_id, 5); | |
| // The fire-and-forget cancel must not itself be tracked as pending. | |
| assert.equal(mgr.pending.has(cancel.id), false); | |
| }); | |
| it('sends nothing when there was no pending request to cancel', async () => { | |
| const mgr = new WebSocketManager('ws://fake'); | |
| await mgr.readyPromise; | |
| mgr.socket.sent = []; | |
| mgr.cancel(9999); | |
| assert.equal(mgr.socket.sent.length, 0); | |
| }); | |
| it('is a no-op in static (cache) mode', () => { | |
| const mgr = WebSocketManager.fromCache({ | |
| zoom: 1, json: {}, tiles: {}, overlays: {}, | |
| }); | |
| assert.doesNotThrow(() => mgr.cancel(1)); | |
| }); | |
| }); | |
| describe('the layer body must resolve every name it references', () => { | |
| // Regression test for a real breakage: floorClampZoom was re-exported with | |
| // `export { floorClampZoom } from './tile-request.js'`, which does NOT | |
| // create a local binding. Importers still resolved the name, and the | |
| // existing tests all imported it directly, so everything looked fine — but | |
| // _clampZoom referenced an undefined name and the map failed to load with | |
| // "ReferenceError: floorClampZoom is not defined" from inside GridLayer's | |
| // _setView. Building the class and calling through it is what catches this. | |
| function build() { | |
| const Layer = createWebSocketTileLayer( | |
| { stdcells: true }, new Set(['metal1']), null, null, null); | |
| return new Layer({ nextId: 1, request: () => new Promise(() => {}), | |
| cancel() {} }, 'metal1', {}); | |
| } | |
| it('resolves _clampZoom through the real layer', () => { | |
| const layer = build(); | |
| layer._map = { getZoom: () => 3.7 }; | |
| assert.doesNotThrow(() => layer._clampZoom(4)); | |
| assert.equal(layer._clampZoom(4), 3); | |
| }); | |
| it('falls back to the passed zoom with no map', () => { | |
| const layer = build(); | |
| layer._map = null; | |
| assert.equal(layer._clampZoom(5), 5); | |
| }); | |
| it('builds the overlay layer class too', () => { | |
| assert.doesNotThrow(() => createOverlayTileLayer({}, null)); | |
| }); | |
| // createTile builds an <img>; this file runs without jsdom, so stand one up | |
| // for the duration. Only what the layer touches needs to exist. | |
| function withFakeDocument(fn) { | |
| const saved = globalThis.document; | |
| globalThis.document = { | |
| createElement: () => ({ setAttribute() {} }), | |
| }; | |
| try { | |
| return fn(); | |
| } finally { | |
| globalThis.document = saved; | |
| } | |
| } | |
| // Build an overlay layer whose requests are captured, with `tileSize` as | |
| // Leaflet would report it. | |
| function overlayRequests(tileSize) { | |
| const sent = []; | |
| const OverlayLayer = createOverlayTileLayer({}, null); | |
| const layer = new OverlayLayer( | |
| { nextId: 1, | |
| request: (msg) => { sent.push(msg); return new Promise(() => {}); }, | |
| cancel() {} }, | |
| {}); | |
| // Leaflet derives this from the tileSize option; stub it so createTile | |
| // can run without a map. | |
| layer.getTileSize = () => ({ x: tileSize, y: tileSize }); | |
| withFakeDocument(() => layer.createTile({ x: 1, y: 2, z: 3 }, () => {})); | |
| return sent; | |
| } | |
| // The wiring, not the helper: tileSizeFields can be perfect and still not be | |
| // called. An overlay sized differently from the layer tiles under it is | |
| // rescaled by the browser and slides off the shapes it annotates. | |
| it('sends the sizing fields on an overlay request', () => { | |
| const sent = overlayRequests(240); | |
| assert.equal(sent.length, 1); | |
| assert.equal(sent[0].type, 'overlay_tile'); | |
| assert.equal(sent[0].tile_px, Math.round(240 * currentDpr())); | |
| assert.ok(sent[0].dpr > 0); | |
| }); | |
| it('sizes an overlay request from its own tile size', () => { | |
| // A static report's layers are 256; the overlay must follow them. | |
| const sent = overlayRequests(256); | |
| assert.equal(sent[0].tile_px, Math.round(256 * currentDpr())); | |
| }); | |
| }); | |