st-sync.js wrapped SyncManager but nothing drove it. The player now does: the
leader opens a new sync session on each advance, and every member — the leader
included — binds the video with attachVideo() on a NEW id only.
The leader binds from its own broadcast rather than at announce() time on
purpose. Starting when it announces would put it ahead of its followers by the
width of the network, which is the one desync nobody would think to look for
because the leader always looks correct.
Item selection stays clock-derived under both backends. Native sync replaces
only the seek/nudge drift correction, because setSyncParams has the element hold
its own alignment and correcting it ourselves would fight the platform — every
frame we moved is one it then has to undo. Keeping selection on the shared clock
is also what keeps images and widgets, which have no setSyncParams, advancing
with the videos instead of drifting off alone.
LEADER RULE: reuse the existing election (resolveGroupLeader) rather than adding
a column. It already resolves pinned-if-online, else first online member on the
shared playlist, else first by id — deterministic, stable, and already what the
group-sync payload reports. A second mechanism could only disagree with it.
Added on top: a group whose elected leader is OFFLINE falls back to our
protocol. Ours is leaderless and carries on; native sync has exactly one
broadcaster, so those members would sit waiting for an announcement that never
comes, with the dashboard showing a healthy group throughout.
device_groups.sync_backend ('auto'|'screentinker'|'brightsign') is the operator's
REQUEST; the answer comes from the existing pure resolveSyncBackend() so the
players, the dashboard and the stored setting cannot disagree. The resolved
backend, reason and downgraded flag ride in the group_sync payload and in the
group API, and the dashboard shows the refusal reason instead of a setting that
quietly isn't in force. An unrecognised value is rejected rather than stored,
because the resolver reads anything unknown as 'auto' — a typo would otherwise
return 200 and run a different protocol than the UI displayed.
FIXED WHILE HERE: the player re-entered group sync only when the group ID
changed, with a comment noting the clock protocol has no leader role. Native
sync has one, and neither a protocol switch nor leadership moving alters the
group id — so a player promoted to leader kept behaving as a follower, nobody
announced, and the group sat unsynchronised. The re-enter key now includes the
backend and the leader flag.
971 pass (+17).
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01Uaeo9MvzKoyXuN6ZsbhtkL
|
||
|---|---|---|
| .. | ||
| selftest | ||
| autorun.brs | ||
| autozip.brs | ||
| offline.html | ||
| probe.html | ||
| README.md | ||
| screentinker.json | ||
| st-bridge.js | ||
| st-sync.js | ||
ScreenTinker on BrightSign
The player is the ordinary web player (server/player/index.html) running in an roHtmlWidget.
It already runs unmodified on real hardware — a Series 5 (HD1026, BOS 9.1, Chromium 120) played
4,723 items over 12.4h averaging 9.4s against a 10s slot. So the port is not "can it run". It is
the four things a page cannot do for itself.
autorun.brs the host: owns the widget, identity, outputs, recovery
| @brightsign/messageport (bidirectional)
st-bridge.js the page's half of the same contract
|
server/player/index.html the unmodified player
Files
| file | role |
|---|---|
autorun.brs |
BrightScript host. Builds the widget, supervises it, persists identity, drives a second output, executes what the page cannot. |
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. |
st-sync.js |
Native SyncManager adapter. Inert without the platform module, so the player falls back to its own group sync. |
probe.html |
The original capability probe. Still useful on a new model/OS build. |
offline.html |
Local fallback page — names the server, keeps probing it, and asks the host to restart the player the moment it answers. |
The four things the host exists for
1. It owns the widget lifecycle. A page-initiated location.reload() does not reliably bring
an roHtmlWidget back. On 2026-07-28 a ScreenTinker deploy reloaded every connected player;
the BrightSign was the only one that never returned, and a browser on the same deploy reloaded and
was heartbeating minutes later. So the page never reloads itself here — it posts
{type:"restart"} and the host tears the widget down and builds a new one. Without this, every
deploy silently darkens every BrightSign panel until someone power-cycles it.
2. It recovers. load-error retries with backoff (5s → 15s → 30s → 60s) and after three
failures falls back to a local page, so a dead server shows something truthful instead of white.
On top of that, a watchdog: the page beats every 30s and three missed beats rebuild the widget.
That covers the case load-error never reports — a page that loaded fine and then wedged on a
dead socket, a JS exception, or a stalled decoder.
3. Identity lives in the registry. localStorage is tied to the page's origin and quota; the
registry survives reboots, content updates and origin changes. The hardware serial is the stable
id, so two panels imaged from the same card never collide — which is exactly how the web player's
hardware-only fingerprint once merged two identical panels into a single device row.
4. It reaches BrightScript-only capabilities — video mode, a second output, and native
BrightWall sync — on the page's behalf, over @brightsign/messageport.
Where the files go — card OR internal flash
autorun.brs the host
offline.html local fallback, used after three failed loads
screentinker.json optional — server URL, sync backend, output mode
A player will boot autorun.brs from internal flash, not just from a card. Confirmed on real
hardware (XT245, BOS 9.0.189) whose microSD interface is physically dead:
Loading 'FLASH:/autorun.brs'
BSPLAY: https://screentinker.com/player?platform=brightsign&serial=…&model=XT245
That matters far beyond one broken unit — it means a player with no card, or a failed card slot,
is still fully deployable. Push the files over SFTP to /storage/flash (user brightsign, blank
password, once SSH is enabled) and reboot.
StorageRoot() in autorun.brs therefore refuses to assume: it probes for FLASH:/autorun.brs
and falls back to SD:. Hard-coding SD: is exactly the bug that made the first flash boot fail —
the script loaded and then could not find its own index.html.
st-bridge.js and st-sync.js do NOT go on the card. The player pulls them from the server
(/player/st-bridge.js, /player/st-sync.js) so they can never skew from the player that uses
them. A stale copy on a card is precisely the version skew that would leave a panel unable to
restart itself.
autorun.zip — one file instead of four
scripts/build-autorun-zip.sh packages the host, the fallback page and the config into a single
autorun.zip, attached to every GitHub release:
scripts/build-autorun-zip.sh --server https://your-server
Drop it on the root of a player's storage and power-cycle. autozip.brs unpacks it in place,
renames it autorun.zip.done so it never re-extracts, and reboots into the player.
Two rules the format imposes, both of which fail silently if broken:
- The archive must expand to files at its ROOT, with no wrapper directory — a player extracts
to the storage root, so a nested folder puts
autorun.brssomewhere the player never looks and the card appears to do nothing. The build script zips from inside the staging directory and then asserts the layout rather than trusting it. autorun.brsmust NOT sit next toautorun.zipon the storage root; its presence stops the zip being processed at all. It belongs inside the archive.
The rename is what makes it idempotent. Without it the player extracts, reboots, extracts, reboots — a loop that looks exactly like a hardware fault. An extraction failure deliberately does not rename, so a truncated copy is retried after someone replaces it rather than skipped forever.
Requires BrightSignOS 7.0.60+ (roUnzip).
Provisioning
Config resolves screentinker.json on the card > registry > built-in default. The JSON
file is how a batch gets imaged without touching each box:
{ "server_url": "https://screentinker.com", "sync_backend": "auto", "output_mode": "single" }
Dual output
output_mode is single | dual | clone.
- dual — a second widget loads the same player with
&screen=2, so the server can hand it its own playlist. Two independent displays from one player. - clone — the second widget loads
&screen=1: the same content on both outputs.
Confirmed multi-output: XC2055 (dual HDMI) and XC4055 (quad).
⚠️ Do not trust the series-level spec blurb. It credits the whole XT5 family — XT245, XT1145,
XT2145 — with "dual HDMI outputs", but an XT245 in hand is single-output; that phrase appears
to cover HDMI in plus out. Verify the individual model before enabling dual.
Every other model is single-output, so the second widget is only ever created when the config asks for it — an unsupported model keeps working as a normal single-screen player rather than failing to start.
Synchronisation — ours or theirs
Both, chosen per group. server/lib/sync-backend.js decides and resolveSyncBackend() is pure,
so the decision is tested without a fleet (server/test/sync-backend.test.js).
| backend | reach | accuracy |
|---|---|---|
screentinker |
Android, web, Tizen, BrightSign — any mix | to the second; clock-derived, no leader, survives a server outage |
brightsign |
BrightSign only | frame-accurate (BrightWall) |
auto picks native sync when every member is a BrightSign and ours otherwise. Explicit
settings are honoured, with one refusal: native sync selected for a group containing a
non-BrightSign display downgrades and reports why. A group that half-syncs is worse than one
that syncs to the second everywhere — and the failure would be invisible from the dashboard,
because the BrightSigns would look perfectly synchronised while the odd panel drifted alone.
A player paired before this port is still recognised, by its BrightSign user agent.
How the choice reaches a screen
device_groups.sync_backend (auto | screentinker | brightsign) is the operator's request.
The server resolves it per push through resolveSyncBackend() and sends the answer — plus the
reason and a downgraded flag — in the group_sync payload, so the players, the dashboard and the
stored setting can never disagree about which protocol is running.
Three things force a fallback to our protocol, and each is reported rather than applied silently:
| condition | why native sync cannot run |
|---|---|
| any non-BrightSign member | BrightWall cannot include a foreign screen |
| members on different subnets | it is multicast; it does not cross networks |
| the elected leader is offline | it is leader/follower — nobody would broadcast |
That last one has no equivalent in our protocol, which is leaderless and carries on regardless.
Leadership uses the existing election (resolveGroupLeader): the pinned leader if it is an online
member on the shared playlist, else the first online member, else the first member by id.
Item selection stays clock-derived under both backends. Native sync only replaces the
seek/nudge drift correction, because setSyncParams has the video element hold its own alignment —
and correcting it ourselves would fight the platform. That also keeps images and widgets, which have
no setSyncParams, advancing with the videos instead of drifting off on their own.
Command parity
The web player handles four of the ~20 fleet commands — launch, refresh, screen_on,
screen_off — because a browser tab genuinely cannot do more. A BrightSign can, through the host
and the platform APIs:
| command | web player | BrightSign |
|---|---|---|
screen_on / screen_off |
black overlay; panel stays lit | CEC Image View On / Standby — the display actually sleeps |
reboot |
ignored | real reboot via RebootSystem in the host |
set_volume |
— | applied to current and future media |
refresh |
location.reload() |
widget rebuilt by the host (reload is unreliable here) |
⚠️ Nothing in the DOM can cover video
With hwz_default: "on" the widget decodes video onto a hardware plane, and the graphics plane
— everything in the DOM — sits behind it. Blanking the screen took three attempts on real hardware,
and each failure taught the same lesson from a different angle:
- Black overlay → the video played straight through it. A
z-index: 9999div cannot cover a hardware plane. - Pause + hide the element → playback stopped, but the last decoded frame stayed on screen. Hiding a DOM element does nothing to the plane; the plane is not part of the DOM.
- Pause +
removeAttribute('src')+load()→ releases the plane. Black at last.
Coming back out re-mounts through nextItem(), because a torn-down element cannot be resurrected.
The playlist keeps advancing while the screen is off, so each newly started item is torn down too,
caught on the play event in the capture phase — otherwise the next video lights the panel back up.
Any feature that assumes an overlay can hide video needs rethinking here: screen blanking, masking, fades over video.
displayPower() (CEC) is best effort and deliberately not load-bearing — it returns false when
CEC is unavailable and the media teardown does the real work. Our XT245 reports
failed to get cec clock in the kernel log and does not respond to CEC at all, which is exactly why
blanking must not depend on it. Plenty of displays ignore broadcast CEC or need direct addressing. Volume is re-applied on every play event in the capture phase, because
media elements are created per item across several code paths and setting it once would otherwise
last only until the playlist advanced.
Still Android-only, and correctly inert here: the Tier-2 device-owner commands (kiosk_lock,
install_apk, shell, block_uninstall, …) and set_brightness / set_screen_timeout, which
have no BrightSign equivalent — a signage player has no per-window brightness or screen timeout.
What is NOT done yet
Stated plainly so nobody reads this as finished:
-
Nothing consumes the
bs_model/bs_serial/bs_screenfields the player reports. Device telemetry (temperature, storage) also has no schema to land in yet. -
Native sync is wired but UNPROVEN on hardware. The player drives it end to end — the leader announces on each advance, every member (leader included) binds via
attachVideo()on a new id, and the resolved backend is chosen per group and pushed down. It cannot be verified with one player: a single unit is trivially "in sync with itself". Two BrightSigns on one subnet are needed to confirm frame alignment, that the leader does not run ahead, and that the 1Hz repeat causes no visible reload.const SyncManager = require('@brightsign/syncmanager'); // BrightSignOS 8.2.10+ const sync = new SyncManager('', 'ScreenTinkerSync', '224.0.126.10', 1539); sync.leader = true; // followers just omit this sync.addEventListener('syncevent', (e) => { // BOTH roles listen if (e.id === lastId) return; // 1Hz rebroadcast — dedupe! lastId = e.id; video.setSyncParams(e.domain, e.id, e.iso_timestamp); // extension on <video> video.load(); video.play(); }); sync.synchronize('item_' + Date.now(), 1000); // leader only; msDelay to prepThree properties that shaped the design: it is leader/follower where ours is leaderless (and the leader starts from its OWN broadcast, or it runs ahead of the group); it synchronises video only, so images and widgets get item-boundary alignment at best; and it is multicast, so the whole group must share one L2 network — the resolver now treats differing subnets as evidence against it.
Also: MP4/MOV are fine, MPEG-TS needs its presentation timestamp starting at 0, MPEG-PS is unsupported.
synchronize()rebroadcasts at 1Hz so late-powered players still join, which is why the dedupe above is mandatory rather than an optimisation — without it every player reloads its video once a second, forever. -
Addressing a specific HDMI connector from JS is unverified.
@brightsign/videooutputdocumentssetMode({width,height,refreshRate})with no output index. Dual output above assumes a second widget maps to the second connector; that needs hardware confirmation. -
Registry from a remote origin is still unproven — the original probe question. If injection turns out to be origin-dependent, identity moves to a local shim page that owns the registry and passes it to the hosted player in an iframe via
postMessage. -
Nothing here has run on hardware. It is written against the BrightDeveloper docs and checked line-by-line against the
brightsign/dev-cookbookexamples, which corrected four config keys, the registry API and a hard SyncManager requirement (see below).
Verified against the dev-cookbook
autorun.brs and st-bridge.js were reviewed against the real examples rather than the prose:
brightsign_js_objects_enabled: trueis required alongsidenodejs_enabledforrequire("@brightsign/*")(syncmanager-js/autorun.brs). Without it the bridge degrades to no-ops and the player silently loses identity and restart delegation — the failure would look like "BrightSign just doesn't work" rather than a missing flag.storage_pathis a directory name ("/cache"), not a volume, andstorage_quotais a string (indexeddb-caching/autorun.brs).security_params: { websecurity: true }andhwz_default: "on"are the shapes the examples use; local URLs carry the volume (file:/SD:/index.html).- The registry API is asynchronous and section-oriented:
read(section, key)returns a Promise and writes take an object —write(section, {k: v}). The bridge prefetches into a cache and exposesonReady(); the player waits for it before its first connect, because registering early would pair the panel as a new display and strand its real row. - SyncManager needs
networking/ptp_domain = "0", applied by a reboot (syncmanager-js/autorun.brs). Done only when this player is configured for native sync, and read-before-write so it reboots at most once rather than every boot. - Confirmed correct as written:
@brightsign/messageport(new,addEventListener('bsmessage'),PostBSMessage), theroHtmlWidgetEventloop, andRebootSystem(). - The notes state a widget URL may be "an externally hosted page" with the same access to the BrightSign JS APIs, which is the answer the original probe was built to get — still worth confirming on hardware, but the documented answer is the favourable one.
Model notes
Target Series 5 (Chromium 120) or newer. Series 4 is pinned to Chromium 87, and Series 4
and older have fixed graphics/JS memory splits (XTx43/44: 512MB/512MB; HDx23: 256MB/128MB) where
Series 5 allocates dynamically. Image size defaults to 2048x1280x32bpp (3840x2160 on XT/4K models)
and is raised with roVideoMode.SetImageSizeThreshold().