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An XT245 with liquid-corroded microSD lines could not read any card, in any
format, with known-good code — the kernel log shows the mmc1 host probing at
400kHz and no card ever answering, while mmc0 (eMMC) is healthy. That unit
turned out to be fully deployable anyway: the player boots FLASH:/autorun.brs
straight from internal storage.
Loading 'FLASH:/autorun.brs'
BSPLAY: https://screentinker.com/player?platform=brightsign&model=XT245
So the card is not the only path, and a dead slot is not the end of a player.
Files go to /storage/flash over SFTP and the player runs them on the next boot.
The first attempt failed because the script hard-coded SD: for its own assets:
it loaded from flash and then could not find index.html. StorageRoot() now
probes for FLASH:/autorun.brs and falls back to SD:, and every path that reads a
sibling file — screentinker.json, offline.html, the crash-dump directory — goes
through it.
selftest/ is the bisect that settled the hardware fault: the dev-cookbook's own
html-starter pattern, so the script is not a variable. When known-good code
failed identically, the medium was proven at fault rather than our port.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01Uaeo9MvzKoyXuN6ZsbhtkL
199 lines
11 KiB
Markdown
199 lines
11 KiB
Markdown
# ScreenTinker on BrightSign
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The player is the ordinary web player (`server/player/index.html`) running in an `roHtmlWidget`.
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It already runs unmodified on real hardware — a Series 5 (HD1026, BOS 9.1, Chromium 120) played
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4,723 items over 12.4h averaging 9.4s against a 10s slot. So the port is not "can it run". It is
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the four things a page cannot do for itself.
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```
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autorun.brs the host: owns the widget, identity, outputs, recovery
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| @brightsign/messageport (bidirectional)
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st-bridge.js the page's half of the same contract
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server/player/index.html the unmodified player
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```
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## Files
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| file | role |
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|---|---|
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| `autorun.brs` | BrightScript host. Builds the widget, supervises it, persists identity, drives a second output, executes what the page cannot. |
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| `st-bridge.js` | Loaded by the player on this platform. Registry identity, restart-instead-of-reload, heartbeat, sync-backend reporting. Degrades to no-ops everywhere else, so it is safe to load unconditionally. |
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| `st-sync.js` | Native SyncManager adapter. Inert without the platform module, so the player falls back to its own group sync. |
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| `probe.html` | The original capability probe. Still useful on a new model/OS build. |
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| `offline.html` | Local fallback page — names the server, keeps probing it, and asks the host to restart the player the moment it answers. |
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## The four things the host exists for
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**1. It owns the widget lifecycle.** A page-initiated `location.reload()` does not reliably bring
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an `roHtmlWidget` back. On 2026-07-28 a ScreenTinker deploy reloaded every connected player;
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the BrightSign was the only one that never returned, and a browser on the same deploy reloaded and
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was heartbeating minutes later. So the page never reloads itself here — it posts
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`{type:"restart"}` and the host tears the widget down and builds a new one. Without this, every
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deploy silently darkens every BrightSign panel until someone power-cycles it.
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**2. It recovers.** `load-error` retries with backoff (5s → 15s → 30s → 60s) and after three
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failures falls back to a local page, so a dead server shows something truthful instead of white.
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On top of that, a watchdog: the page beats every 30s and three missed beats rebuild the widget.
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That covers the case `load-error` never reports — a page that loaded fine and then wedged on a
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dead socket, a JS exception, or a stalled decoder.
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**3. Identity lives in the registry.** `localStorage` is tied to the page's origin and quota; the
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registry survives reboots, content updates and origin changes. The hardware serial is the stable
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id, so two panels imaged from the same card never collide — which is exactly how the web player's
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hardware-only fingerprint once merged two identical panels into a single device row.
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**4. It reaches BrightScript-only capabilities** — video mode, a second output, and native
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BrightWall sync — on the page's behalf, over `@brightsign/messageport`.
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## Where the files go — card OR internal flash
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```
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autorun.brs the host
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offline.html local fallback, used after three failed loads
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screentinker.json optional — server URL, sync backend, output mode
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```
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**A player will boot `autorun.brs` from internal flash, not just from a card.** Confirmed on real
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hardware (XT245, BOS 9.0.189) whose microSD interface is physically dead:
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```
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Loading 'FLASH:/autorun.brs'
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BSPLAY: https://screentinker.com/player?platform=brightsign&serial=…&model=XT245
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```
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That matters far beyond one broken unit — it means a player with no card, or a failed card slot,
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is still fully deployable. Push the files over SFTP to `/storage/flash` (user `brightsign`, blank
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password, once SSH is enabled) and reboot.
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`StorageRoot()` in `autorun.brs` therefore refuses to assume: it probes for `FLASH:/autorun.brs`
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and falls back to `SD:`. Hard-coding `SD:` is exactly the bug that made the first flash boot fail —
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the script loaded and then could not find its own `index.html`.
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**`st-bridge.js` and `st-sync.js` do NOT go on the card.** The player pulls them from the server
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(`/player/st-bridge.js`, `/player/st-sync.js`) so they can never skew from the player that uses
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them. A stale copy on a card is precisely the version skew that would leave a panel unable to
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restart itself.
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## Provisioning
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Config resolves `screentinker.json` on the card **>** registry **>** built-in default. The JSON
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file is how a batch gets imaged without touching each box:
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```json
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{ "server_url": "https://screentinker.com", "sync_backend": "auto", "output_mode": "single" }
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```
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## Dual output
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`output_mode` is `single` | `dual` | `clone`.
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- **dual** — a second widget loads the same player with `&screen=2`, so the server can hand it its
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own playlist. Two independent displays from one player.
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- **clone** — the second widget loads `&screen=1`: the same content on both outputs.
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Confirmed multi-output: **XC2055** (dual HDMI) and **XC4055** (quad).
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⚠️ **Do not trust the series-level spec blurb.** It credits the whole XT5 family — XT245, XT1145,
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XT2145 — with "dual HDMI outputs", but an **XT245 in hand is single-output**; that phrase appears
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to cover HDMI *in* plus *out*. Verify the individual model before enabling `dual`.
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Every other model is single-output, so the second widget is only ever created when the config asks
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for it — an unsupported model keeps working as a normal single-screen player rather than failing to
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start.
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## Synchronisation — ours or theirs
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Both, chosen per group. `server/lib/sync-backend.js` decides and `resolveSyncBackend()` is pure,
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so the decision is tested without a fleet (`server/test/sync-backend.test.js`).
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| backend | reach | accuracy |
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| `screentinker` | Android, web, Tizen, BrightSign — any mix | to the second; clock-derived, no leader, survives a server outage |
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| `brightsign` | BrightSign only | frame-accurate (BrightWall) |
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`auto` picks native sync when **every** member is a BrightSign and ours otherwise. Explicit
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settings are honoured, with one refusal: native sync selected for a group containing a
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non-BrightSign display **downgrades and reports why**. A group that half-syncs is worse than one
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that syncs to the second everywhere — and the failure would be invisible from the dashboard,
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because the BrightSigns would look perfectly synchronised while the odd panel drifted alone.
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A player paired before this port is still recognised, by its BrightSign user agent.
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## What is NOT done yet
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Stated plainly so nobody reads this as finished:
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- **No server-side plumbing**: no `sync_backend` column, no dashboard control, nothing sends
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`set-sync-backend` down, and nothing consumes the `bs_model` / `bs_serial` / `bs_screen` fields
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the player now reports. The resolver is ready for all of it.
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- **Native sync is implemented but not yet driven by the playlist engine.** `st-sync.js` wraps
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SyncManager and is tested (`server/test/brightsign-sync.test.js`), but nothing in the player
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calls `announce()` on item advance or binds `attachVideo()` yet, and no leader is designated.
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That wiring is the next step and wants hardware to validate.
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```js
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const SyncManager = require('@brightsign/syncmanager'); // BrightSignOS 8.2.10+
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const sync = new SyncManager('', 'ScreenTinkerSync', '224.0.126.10', 1539);
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sync.leader = true; // followers just omit this
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sync.addEventListener('syncevent', (e) => { // BOTH roles listen
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if (e.id === lastId) return; // 1Hz rebroadcast — dedupe!
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lastId = e.id;
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video.setSyncParams(e.domain, e.id, e.iso_timestamp); // extension on <video>
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video.load(); video.play();
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});
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sync.synchronize('item_' + Date.now(), 1000); // leader only; msDelay to prep
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```
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Three properties that shaped the design: it is **leader/follower** where ours is leaderless (and
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the leader starts from its OWN broadcast, or it runs ahead of the group); it synchronises
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**video only**, so images and widgets get item-boundary alignment at best; and it is
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**multicast**, so the whole group must share one L2 network — the resolver now treats differing
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subnets as evidence against it.
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Also: MP4/MOV are fine, MPEG-TS needs its presentation timestamp starting at 0, MPEG-PS is
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unsupported. `synchronize()` rebroadcasts at 1Hz so late-powered players still join, which is
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why the dedupe above is mandatory rather than an optimisation — without it every player reloads
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its video once a second, forever.
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- **Addressing a specific HDMI connector from JS is unverified.** `@brightsign/videooutput`
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documents `setMode({width,height,refreshRate})` with no output index. Dual output above assumes
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a second widget maps to the second connector; that needs hardware confirmation.
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- **Registry from a remote origin is still unproven** — the original probe question. If injection
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turns out to be origin-dependent, identity moves to a local shim page that owns the registry and
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passes it to the hosted player in an iframe via `postMessage`.
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- **Nothing here has run on hardware.** It is written against the BrightDeveloper docs and
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checked line-by-line against the `brightsign/dev-cookbook` examples, which corrected four
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config keys, the registry API and a hard SyncManager requirement (see below).
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## Verified against the dev-cookbook
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`autorun.brs` and `st-bridge.js` were reviewed against the real examples rather than the prose:
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- **`brightsign_js_objects_enabled: true` is required** alongside `nodejs_enabled` for
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`require("@brightsign/*")` (`syncmanager-js/autorun.brs`). Without it the bridge degrades to
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no-ops and the player silently loses identity *and* restart delegation — the failure would look
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like "BrightSign just doesn't work" rather than a missing flag.
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- **`storage_path` is a directory name** (`"/cache"`), not a volume, and **`storage_quota` is a
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string** (`indexeddb-caching/autorun.brs`).
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- **`security_params: { websecurity: true }`** and `hwz_default: "on"` are the shapes the examples
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use; local URLs carry the volume (`file:/SD:/index.html`).
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- **The registry API is asynchronous and section-oriented**: `read(section, key)` returns a
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**Promise** and writes take an object — `write(section, {k: v})`. The bridge prefetches into a
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cache and exposes `onReady()`; the player waits for it before its first connect, because
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registering early would pair the panel as a new display and strand its real row.
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- **SyncManager needs `networking/ptp_domain = "0"`, applied by a reboot**
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(`syncmanager-js/autorun.brs`). Done only when this player is configured for native sync, and
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read-before-write so it reboots at most once rather than every boot.
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- Confirmed correct as written: `@brightsign/messageport` (`new`, `addEventListener('bsmessage')`,
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`PostBSMessage`), the `roHtmlWidgetEvent` loop, and `RebootSystem()`.
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- The notes state a widget URL may be **"an externally hosted page"** with the same access to the
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BrightSign JS APIs, which is the answer the original probe was built to get — still worth
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confirming on hardware, but the documented answer is the favourable one.
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## Model notes
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Target **Series 5** (Chromium 120) or newer. **Series 4 is pinned to Chromium 87**, and Series 4
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and older have fixed graphics/JS memory splits (XTx43/44: 512MB/512MB; HDx23: 256MB/128MB) where
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Series 5 allocates dynamically. Image size defaults to 2048x1280x32bpp (3840x2160 on XT/4K models)
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and is raised with `roVideoMode.SetImageSizeThreshold()`.
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