--- type: entity tags: [parking, hardware, access-control, relay] sources: [] updated: 2026-06-15 --- # Dingtian Relay Controller A network **relay + input** board (the unit on hand is the **4-channel** variant: 4 relays + 4 inputs). Chosen to drive the entry/exit lane because — unlike the [[uhppote-controller]] — its **inputs are independent of its relays**, which solves the [[access-controller-button-flow]] blocker (a button on an input does not auto-open a relay; the host decides). SDK: `dingtian/4ch/sdk_v2_0_0/` (programming manual, examples). MIT-compatible use; no vendor runtime needed. ## ⚠️ The one gotcha: `input_link_relay` By **default the device links each input to auto-fire its matching relay** (`input_link_relay: 1`, `on_action_on: [[0],[1],…]` in the config) — i.e. the *same* auto-open problem as the UHPPOTE. The difference: **it is configurable.** Set `input_link_relay: 0` (or clear the action mappings) so an input only *reports* and the host commands the relay. **This config step is mandatory** for the ticket-first entry flow. See [[autonomous-direction]]. ## Protocol (Dingtian string — what we use) Transport options: UDP/TCP string, UDP binary, HTTP CGI, Modbus, MQTT. We use **HTTP + UDP** — see [[dingtian-vs-mqtt]]. - **Relay control — UDP *binary*, port 60000 (authenticated):** the driver's `pulseOpen` sends a binary "write relay with jogging" frame carrying the `relay_pw` (the only relay option with a password). Frame (verified on hardware): `FF AA 03 ` — relayByte bit0=on, bits1-7= channel-1; jog is 100 ms units, LSB-first; password 16-bit LSB-first (0 = none). The relay jogs ON then auto-releases, so we never time a close ([[barrier-not-a-door]]). *(The simpler string protocol — `1`+ch on, `2`+ch off, `11*` jog — works too but has no auth; we use it only for the read-only status query.)* - **Status / inputs — send `00`** → `「relays」:「inputs」:「count」`, e.g. **`0000:1111:4`** (4ch: relays off, inputs high). `0` = OFF/Low, `1` = ON/High. Poll-based. - **Input push — `input_link_url`:** device **HTTP POSTs to a host URL on input change** — the push path for button events without a broker. - **Discovery:** UDP multicast `224.0.2.11:60000`, send `\x05\xAA` (devices reply). Defaults: IP `192.168.1.100`, UDP `60000` (binary) / `60001` (string). - Binary protocol (port 60000) adds optional **password** + multicast; bitmask relay/input maps. ## Driver & config API The `dingtian` driver ([[device-registry]]) implements three capabilities: `AccessControlDevice` (relay pulse/latch over UDP), `InputDevice` (read inputs + poll-based press/release events ~50 ms), and `PreconditionDevice` (below). Config fields include a separate **`httpPort`** — the device's web/config API is on a configurable HTTP port (this unit: **8080**, not the default 80), distinct from the UDP control port 60001. ### Precondition: input_link_relay must be OFF The driver reads the device's JSON config (`GET /api/v2/config.cgi`) and **checks `input_link_relay`**; if enabled it reports a fixable issue, and `fixPreconditions()` writes the correction (`POST /api/v2/config_set.cgi`) — setting the flag to 0 and clearing `on_action_on`, preserving everything else (network, etc.). This is the generic [[device-registry|precondition]] capability: the app doesn't own full device config (that's the vendor web UI), only the few settings our flow depends on. > **Write gotcha (cost real debugging):** the GET config payload **omits** a `"command"` field, but > the set endpoint **requires `"command":"setconfig"`** injected right after `"status"`. Without it > the POST returns/looks like success but silently does nothing (and the device may reset). With it, > POST returns `{"status":0}` and the change sticks. JSON node order must be preserved. ## Input push (no polling) — the chosen architecture The device **pushes** button events to the backend; the backend decides. **No polling.** The driver's `configureInputPush()` writes the device's `input_link_url` config to point each input at the backend: input N HTTP-GETs `…/api/devices/dingtian//input//on` (and `/off`) on press/release. The backend ([[fastify]] route `routes/devices.ts`) translates each push into an internal device event ([[device-input-flow]]); the entry flow then prints a ticket and commands the relay via UDP. See [[device-input-flow]] for the full path + trust model. > The input-poll path in the driver (`onInput`) remains as a dev/fallback aid, but **push is the > real path** — lower latency, and it can be authenticated (the device supports Basic/Digest + > HTTPS on the push), unlike the open UDP control direction. ## Status — VERIFIED on hardware (DT-R004, sw V3.1.5461A, 10.0.10.172) - ✅ status read (`0000:1111:4`), relay pulse, input press/release events (active-LOW, idle HIGH). - ✅ **`input_link_relay` disabled via the driver** → pressing an input reports the event and **fires NO relay** (`0000` after presses). The [[access-controller-button-flow]] blocker is **solved**. - ✅ **Input HTTP-push end to end** — configured the device via `configureInputPush()`, then real button presses (all 4 inputs) **pushed to the backend** (`/input/N/on` + `/off` per press, source = the device IP). No polling. Host-in-the-loop entry (`button → backend → ticket → backend opens relay`) is real. - ⬜ Next: wire the actual entry flow (input event → signed event + print ticket → `pulseOpen`).