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UHPPOTE controllers self-announce via UDP broadcast, but the frontend had no way to find them — the admin had to type the serial blind. Add a generic discovery capability and surface it in the setup wizard. packages/devices: - DiscoverableDriver capability + DiscoveredDevice type + isDiscoverable() guard on the registry (optional, so any driver can opt in). - uhppote driver implements discover() via uhppoted getDevices (UDP broadcast), mapping each controller's serial/IP/firmware into a DiscoveredDevice; extract shared buildCtx(). apps/server: - GET /api/setup/discover/:driverId (admin-only): runs discover() and health-checks each found device so reachability shows before assigning. - catalog now returns a `discoverable` driver-id list. apps/web: - SetupWizard "Scan for controllers" button for discoverable drivers; lists found devices with health badges; selecting one auto-fills serial + host. api client gains discoverDevices(). wiki: new device-discovery concept; cross-link from registry/setup/uhppote; note the broadcast-permission (EACCES) deployment caveat; index + log. Verified: catalog flags uhppote discoverable; discover runs and fails gracefully without hardware; non-discoverable driver -> 400; missing token -> 401.
46 lines
2.4 KiB
Markdown
46 lines
2.4 KiB
Markdown
---
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type: concept
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tags: [parking, architecture, devices, configurable]
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sources: [parking-system-architecture]
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updated: 2026-06-15
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---
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# Device Registry (selectable drivers)
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How the system goes from "device-agnostic in principle" ([[device-adapter-pattern]]) to
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"**admin picks the device at setup**" in practice. A **registry** holds a catalog of supported
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**drivers**, grouped by category; the [[first-run-setup]] UI reads it so an
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operator can choose a device per lane and fill in its connection config.
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> Implementation-derived (from `packages/devices`), not the source doc.
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## The four categories
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| Category | Examples (drivers) | Interface |
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| --- | --- | --- |
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| **access** | ZKTeco, ESP32 relay (also UHPPOTE) | `AccessControlDevice` — intent-only relay ([[barrier-not-a-door]]) |
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| **reader** | Wiegand-into-controller, TCP/IP reader | `ReaderDevice` — RF/optical; two paths ([[entry-exit-readers]]) |
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| **camera** | Hikvision, Dahua | `CameraDevice` — entry/exit snapshot-on-event |
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| **printer** | (ticket dispenser / booth printer) | `PrinterDevice` |
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## How a driver is described
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Each driver declares: a stable `id`, its `category`, a human `label`/`description`, the
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`transports` it uses (`tcp-ip`, `wiegand`, …), a list of **`configFields`** (host, port,
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credentials, selects — what the setup UI renders), and a `create(config)` **factory** that
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validates config and returns a live adapter. Adding hardware support = registering one more
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driver; **no business-logic change** — this is the [[device-adapter-pattern]] made selectable.
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## Why a registry (not hard-coded wiring)
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- The admin chooses between **multiple devices per category** at install time, per lane
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(mirrors the "mixable per lane" principle — see [[trust-boundary]], [[entry-exit-readers]]).
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- Config is **validated against the driver's declared fields** before persisting.
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- Selections persist in the `lane_devices` table and drive runtime adapter construction.
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- Drivers may optionally implement **[[device-discovery]]** (`discover()`), so the admin can scan
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the LAN instead of typing connection details — UHPPOTE does this today.
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Cameras are modelled as **snapshot-on-event**: the host requests an image at entry/exit; it's
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stored and referenced from the signed event as an **independent record** — a fraud-control input
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to the [[append-only-event-chain]] (cf. [[lpr-camera]] as the recognition-based identity source).
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