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An early wrong assumption named the QR/RFID access reader "GEE" / "GEE/Fondvision" / "GEE-QR-ER80" (and summarized a raw GEE PDF as its datasheet). There is no GEE device — it's the Dingtian DT-008 (dingtian-tech.com/en_us/qr_code_reader.html), the same vendor as the relay board, which is why it integrates the identical HTTP-GET-push way. Code: - Driver symbol geeQrReaderDriver → dingtianQrReaderDriver; label → "Dingtian DT-008 QR/RFID reader (HTTP push)"; comments/description rewritten to the real DT-008 facts (Wiegand 26/34, TCP/IP, USB, RS485 — not RS-232; QR/barcode + ID/IC/NFC — not DataMatrix/1D). - Persisted driverId "gee-qr-reader" → "dingtian-qr-reader" (the registry lookup key + the row created on assign in qr-reader.ts). - Migration 0015 rewrites existing devices.driver_id rows so configured readers keep resolving (applied to the dev DB — 2 rows; the booth applies it on boot). Behaviour is unchanged: naming + the persisted id only. Wiki + memory: - Renamed entities/gee-qr-er80.md → dingtian-dt008-reader.md and sources/gee-qr-er80.md → dingtian-dt008.md; rewrote both to the real DT-008 product-page specs while KEEPING all the verified-on-hardware protocol facts (cjihao serial, .jsp path, Connection: close). Fixed every cross-reference + "GEE" mention in 6 other pages. Memory gee-reader-serial-binding → dingtian-reader-serial-binding. The only surviving "GEE" mentions are deliberate naming-correction notes, the raw PDF filename, and the append-only log history. Full workspace build/lint/test green; dev DB readers verified resolving to the registered dingtian-qr-reader driver. Claude-Session: https://claude.ai/code/session_01Xcm6ikLgGoCxxHrxtjkk5V
131 lines
8.0 KiB
Markdown
131 lines
8.0 KiB
Markdown
---
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type: entity
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tags: [parking, hardware, readers, qr, dingtian]
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sources: [dingtian-dt008]
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updated: 2026-06-28
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status: open
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---
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# Dingtian DT-008 (QR/RFID access reader)
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The project's **QR / barcode / RFID reader** — Dingtian **DT-008**, the **same vendor as the
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[[dingtian-relay|relay board]]** (which is why it integrates the same HTTP-push way). A static
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optical + card scanner for **QR / barcode (simple)** and **ID/IC/NFC cards**. This is the
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**[[ticket-encoding|QR ticket]]** scanner (read at the pay station / exit lane) and a path for **QR
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or RFID [[subscription]]** credentials. Product page: dingtian-tech.com/en_us/qr_code_reader.html.
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(See [[dingtian-dt008|spec summary]] / `raw/`.)
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> **Naming correction (2026-06-28).** Through most of this project this reader was wrongly called
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> **"GEE" / "GEE/Fondvision" / "GEE-QR-ER80"** — a bad early assumption. There is no GEE device; it
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> is the **Dingtian DT-008**. The driver id was renamed `gee-qr-reader` → `dingtian-qr-reader`
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> (migration 0015 rewrites existing rows). All *protocol/behaviour* facts below were observed on the
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> real hardware and remain correct — only the device identity was wrong.
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## What it is
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- **QR/barcode + card.** Reads **QR / simple barcode** AND **ID/IC/NFC cards** (~0.2 s, 0–10 cm).
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(An earlier note guessed "ER80-EM = 125 kHz EM4100 prox" — that was part of the same mis-id.)
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- **Interfaces: Wiegand 26/34, TCP/IP, USB, RS485.** (NOT RS-232 — that was a fictional-datasheet
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claim.) For our integration it talks **HTTP over TCP/IP**; Wiegand is the reader's *output line*
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on a valid read, not the host transport.
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- **Power** 9–16 V DC, 800 mA; **86×86×42 mm**; −30…70 °C. Fits the [[disk-os-hardening|appliance]].
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## How it integrates — HTTP-GET push, server replies the verdict (confirmed via SDK)
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The protocol is settled by the **[[qrcode-sdk|QRCode SDK v1.6.5]]** (not serial as first guessed).
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The reader is configured (Windows tool `QRCode_v1_6_5.exe`) with a **server IP/port** and a "server
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language" (only picks the URL path, e.g. `/qa/mcardsea.php`). **On each scan it HTTP-GETs the host:**
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```
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GET /qa/mcardsea.php?cardid=<QR>&mjihao=<devId>&cjihao=<devSN>&status=<2 chars>&time=<utc>
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```
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`cardid` = scanned data; `status` low digit = **direction (1=in / 0=out)**. The host replies JSON
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`{data:[{cardid,cjihao,mjihao,status,time,output}],code:0}` where reply **`status` 1=valid (beep
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2×) / 0=invalid (beep 1×)**, **`output` 0=Access/1=WG26/2=WG34**, `time` syncs the clock.
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This is **host-in-the-loop and SYNCHRONOUS**: the GET *is* the access query and **our reply is the
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decision** — it drives the reader's beep + output. So unlike a fire-and-forget reader, the endpoint
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must decide (valid/invalid, direction from `status`) and reply, then also emit a `DeviceReadEvent`
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on the `read` bus for the entry/exit/permit flows ([[parking-session]], [[subscription]]) to open the
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barrier. ([[device-input-flow]] is the analogous push pattern; this one also returns a verdict.)
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> **This explains the "no beep":** feedback comes from the server's JSON reply, not locally. A
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> non-JSON / missing reply ⇒ no beep even though the scan worked. So "no beep" ≠ "didn't scan."
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- Pushes over plain **HTTP** to our `10.0.10.x` host (on the device subnet); no serial wiring, no
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Wiegand-decode hardware. Suits the host-in-the-loop model; autonomy is moot anyway
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([[dingtian-relay]] has no onboard ACL).
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- Default IP `192.168.1.99` (set its server IP/port to this host in the vendor tool).
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## Resolved (2026-06-16)
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- Protocol = HTTP GET poll + JSON verdict (above). The earlier "serial/Wiegand, find the baud"
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open questions are **moot** — it's HTTP. Wiegand is the reader's *output line* on a valid read
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(the reply `output` field), not the host transport.
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## As-built (2026-06-16)
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- **Endpoint** `GET/POST /qa/mcardsea.php` (`apps/server/src/routes/qr-reader.ts`, public — the
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reader has no auth, sits on the device subnet). Parses `cardid/mjihao/cjihao/status/time`, runs
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the scan through the **read dispatcher** (permit match → permit flow; else transient exit), and
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replies the **SDK verdict**: `status` 1=valid(beep 2×)/0=invalid(beep 1×), `output` 0, `time`.
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- The read flows were refactored to **return a `ReadOutcome` { accepted, direction, reason }** so the
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endpoint's reply reflects the real accept/reject (the dispatcher decides AND opens the barrier via
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the flows). A fire-and-forget reader ignores the outcome.
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- **Reader identity:** the endpoint matches the device **serial (`cjihao`)** against each reader's
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`config.serial` to find its `devices` row; the dispatcher then resolves the relay that row is
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**bound** to (`config.controllerId` + `relay`) and opens it. See [[entry-exit-points]].
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- Verified via inject: valid permit QR → `status:1` + open; re-scan → permit exit (still valid);
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unknown QR → `status:0`; reader on a barrier-less lane → `status:0`.
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## Verified on hardware (2026-06-16)
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Captured a real scan (vendor-emulator logger on :3000). The reader **does scan, send, and beep** —
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the earlier "no beep" was simply that no server was answering on :3000 with valid JSON. Real GET:
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```
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GET /qa/mcardsea.jsp?cardid=52020056&mjihao=1&cjihao=H05M2AFA&status=11&time=1781634494
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from 10.0.10.7 (referer: http://www.fondvision.com — the OEM is Fondvision)
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```
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- **PATH carries the configured "server language" EXTENSION:** this unit is set to **JSP**, so it
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GETs **`/qa/mcardsea.jsp`** — NOT `.php`. Our endpoint was registered at `.php` only → it would
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have 404'd the real reader. **Fixed:** the route now registers `php/jsp/asp/aspx/cgi`.
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- **`cjihao` = `H05M2AFA`** is the device **serial** — the value our endpoint matches against the
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reader's `config.serial`. So assign the reader with **`config.serial = "H05M2AFA"`** and bind it
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to a controller relay.
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- **`mjihao` = 1** (device id). `cardid` = the scanned barcode (`52020056`). `status=11`.
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- The reader **beeped on the vendor reply with `status:0`** — so it acts on the reply; `0` =
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invalid/1-beep as documented. A matching permit/session will return `status:1` → 2-beep accept.
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## Assignment (as-built 2026-06-16)
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A dedicated **`dingtian-qr-reader`** driver ([[device-registry]], reader category) models the push reader:
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its one config field is **`serial`** (the `cjihao` the device reports). The admin assigns it in the
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[[first-run-setup|setup wizard]] like any device (normal UUID row id), enters the serial, and binds
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it to a controller relay. The QR endpoint resolves the reader by **matching `config.serial` to the
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scan's `cjihao`** — not by row id — so no DB hand-editing. Set the reader's server IP/port to this
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host in the **vendor tool**; assign + enter its serial + bind it here.
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- Verified via inject: assign `dingtian-qr-reader` {serial:"H05M2AFA"} bound to an access relay →
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a `.jsp` scan with that serial + a matching permit QR → `status:1` (2-beep accept) + open; re-scan
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→ permit exit; unknown card → `status:0`; unassigned serial → `status:0` (no relay, graceful).
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- Note `tcpip-reader` is the WRONG model for this device (host-connects-out, a stub) — use
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`dingtian-qr-reader`.
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## Open / next
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- Re-test on hardware against the real app (now `.jsp`-aware + serial-resolved): scan → expect a
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`status:1` 2-beep when the QR matches a permit/open session.
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- `output` is replied as `0` (Access). Confirm on hardware whether the reader needs `1`/`2` (WG26/34)
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to drive its access line, vs. `0`.
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## ⚠️ Reply MUST set `Connection: close` (verified on hardware)
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The reader sends `Connection: keep-alive` but **only acts on the verdict (beep/output) once the TCP
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socket CLOSES**. Fastify's default keeps the connection alive → the reader waits out a **~10 s
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keep-alive timeout before beeping**, even though the server replied in ~15 ms. Every vendor demo
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replies **`Connection: close`** and shuts the socket. Fix: the endpoint sets
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`reply.header("connection","close")`. Symptom if regressed: correct accept/reject but a ~10 s lag
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before the beep. (The request arrives fast; the delay is entirely the reader waiting for close.)
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