6d7682ab4a
New concepts/printer-usb-transport.md (the seam, usblp char device, reachability-only status, threat model). open-questions #14: confirm the on-site printer is USB and bake the usblp + udev write-access rule into the appliance image (provisioning, not app code; unverified on hardware). Updated rongta-printer.md (USB transport note), index.md, log.md. Claude-Session: https://claude.ai/code/session_01Xcm6ikLgGoCxxHrxtjkk5V
92 lines
5.2 KiB
Markdown
92 lines
5.2 KiB
Markdown
---
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type: concept
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tags: [parking, device, printer, transport, usb, escpos, provisioning]
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sources: []
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updated: 2026-06-24
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status: settled
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---
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# Printer USB transport (kernel usblp, behind the ESC/POS layer)
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The ESC/POS printer drivers ([[rongta-printer|rongta]], `cashino`) can deliver their byte stream
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over **either a raw TCP socket (port 9100)** or a **local USB character device** (`/dev/usb/lp0`),
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selected per device by `config.transport` (`"tcp-ip" | "usb"`). The original architecture always
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intended one ESC/POS adapter to cover "USB **or** network" (parking-system-architecture §BOM); the
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first implementation shipped TCP-only, and this closes that gap.
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## The seam — render once, dispatch the transport
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Every `render*()` function in `packages/devices/src/drivers/printer-escpos.ts` produces a
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**transport-independent ESC/POS `Buffer`**. Only delivery differs. The transport is resolved **once**
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per driver from config and every print/probe call site stays transport-blind:
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- `transportFromConfig(config)` → a discriminated `Transport` (`{ kind: "tcp", host, port }` or
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`{ kind: "usb", devicePath }`). Anything other than `transport: "usb"` is TCP, so **existing
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host-only configs keep working unchanged** (no migration).
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- `sendTo(t, payload, timeoutMs)` / `probeTo(t, timeoutMs)` dispatch to the TCP pair
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(`sendRaw`/`probe`) or the USB pair (`sendRawUsb`/`probeUsb`).
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Adding a transport = one more arm in the dispatcher; **not a single rendered byte changes**. This is
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why the CP852 map, the Code128/QR builders, roles/failover, and the receipt/ticket/voucher layouts
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are all untouched by USB support.
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## USB transport = the in-box `usblp` char device
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A USB ESC/POS printer plugged into the appliance enumerates as a **character device** (e.g.
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`/dev/usb/lp0`) via the kernel's in-box **`usblp`** driver. We just **open it `O_WRONLY` and write
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the same bytes**:
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- **No native dependency.** A plain `fs` write — no libusb, no CUPS, no native addon. This keeps the
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**MIT/Apache/BSD-only** dependency constraint and the **offline-first, minimal-deps appliance**
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posture (see [[technology-stack]], [[offline-first]]).
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- **`usblp` is raw.** Unlike the TCP path there is **no FIN/half-close dance** (the graceful-close
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fix was a *TCP* concern — an early `destroy()` could RST-truncate the stream; see
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[[rongta-printer]]). A single open + write delivers the job; we always close the handle.
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- **Bounded by a timeout.** A wedged USB printer can block the write (or the open) indefinitely; a
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stuck print must surface as a failure, not hang the entry flow. `withTimeout` rejects after
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`timeoutMs`.
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## Status over USB — reachability only (honesty rule)
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`probeUsb` is "does the char device exist and open writable" — the **USB analogue of the TCP connect
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probe**. A present, openable `/dev/usb/lp0` means `usblp` bound a powered, enumerated printer.
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- The `cashino` driver is reachability-only on **both** transports (it never had a status page).
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- The `rongta` driver's rich `readStatus()` scrapes the board's **HTTP** `/prn_stat.htm` — a
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**network feature**. Over USB there is no such page, so `readStatus()` **degrades to the
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reachability floor** (ready/offline only, never a guessed paper/cover state). A USB Rongta is
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effectively a Cashino for monitoring. This preserves the standing honesty rule from
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[[printer-status-monitoring]]: never report a paper/cover verdict the transport can't actually sense.
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## Threat model
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The USB path is a **local character device** the booth operator (the threat model's adversary)
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cannot reach over the network — narrower attack surface than the unauthenticated TCP print socket on
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the VLAN. Printers are advisory output; nothing about the signed [[append-only-event-chain|ledger]]
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or barrier control is touched.
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## Provisioning dependency (NOT app code) — see open-questions #14
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Driving a USB printer depends on the appliance image:
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1. the **`usblp`** kernel module is loaded (it is in-box on Ubuntu 26.04; CUPS can claim the
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interface first — may need `usblp` to win, or CUPS masked for that device), and
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2. a **udev rule** grants the server process write access to the node (e.g. a group on
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`/dev/usb/lp*`), since the appliance server does not run as root.
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This is a [[appliance-provisioning]] concern, recorded as **open-questions #14** until the on-site
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printer is confirmed USB and the rule is baked into the image and verified on hardware.
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## Status
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Built 2026-06-24 behind the existing render layer. `sendRawUsb`/`probeUsb`/`transportFromConfig`/
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`sendTo`/`probeTo` in `printer-escpos.ts`; `cashino` + `rongta` resolve a `Transport` and dispatch.
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The setup UI offers a **Connection** select (Network / USB) + a **USB device** path field (default
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`/dev/usb/lp0`); host/port are not-required so a USB printer needs neither. Covered by
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`printer-escpos.test.ts` (USB writes the exact rendered bytes; probe present/absent;
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`transportFromConfig` TCP back-compat) and `printer-cashino.test.ts` (a USB-configured driver prints
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to the node and reports ready/offline). The on-hardware confirmation + the udev/usblp provisioning
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are pending (open-questions #14).
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Related: [[rongta-printer]], [[printer-status-monitoring]], [[printer-roles-failover]],
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[[appliance-provisioning]], [[network-isolation]], [[technology-stack]].
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