1b55e2034d
The Dingtian board's inputs are independent of its relays (configurable), so a button on an input can report to the host WITHOUT auto-firing a relay — solving the access-controller-button-flow blocker the UHPPOTE/ZKTeco couldn't. packages/devices: - access-dingtian.ts: `dingtian` access driver implementing AccessControlDevice (relay pulse/latch via UDP string protocol :60001), InputDevice (read inputs + poll-based press/release events, active-LOW), and the new PreconditionDevice. - PreconditionDevice capability on the interface: a device can report config it requires for parking and optionally fix it. Dingtian checks input_link_relay via the HTTP config API and can disable it. - httpPort config field — the web/config API port is separate from UDP control (this unit uses 8080, not the default 80). - Register dingtian; export driver objects from the package. Verified on real hardware (DT-R004 @ 10.0.10.172): status read, relay pulse, input events; disabled input_link_relay via the driver, then confirmed pressing inputs fires NO relay (0000) — host-in-the-loop entry works. Config-write gotcha recorded: config_set.cgi requires "command":"setconfig" injected after "status" (GET omits it) or the POST silently no-ops. apps/server/scripts/dingtian-test.mjs: status / watch / pulse hardware test. wiki: dingtian-relay verified; button-flow marked RESOLVED; index + log.
121 lines
8.0 KiB
Markdown
121 lines
8.0 KiB
Markdown
# Wiki Log
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Append-only chronological record. Each entry: `## [YYYY-MM-DD] <op> | <subject>`.
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Query with `grep "^## \[" log.md | tail -5`.
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## [2026-06-14] ingest | Parking System — Architecture & Design Notes
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First source ingested. Bootstrapped wiki scaffolding (CLAUDE.md schema, index.md,
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overview.md, log.md). Created source summary, 14 entity pages, 9 concept pages, and
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decision records (settled decisions + 6 open questions). Source is a dense design
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doc covering stack, threat model, device architecture, UHPPOTE access control, the
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custom ESP32 controller alternative, readers, and a reference BOM.
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## [2026-06-15] decision | JWT key choice + ESP32 deferred
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From app work, not a new source. Added [[open-questions]] #7 (symmetric vs.
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asymmetric JWT signing key — raised by the commit security review; prefer RS256/EdDSA
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so verifying hosts hold only a public key, mirroring the ATECC608 / challenge-response
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property). Marked [[esp32-custom-controller]] `status: deferred` per decision not to
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implement device-level auth for now (access control stays on UHPPOTE + network
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isolation); noted in [[open-questions]] #6. Updated [[local-jwt-auth]] (hardened secret
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handling + 8h expiry, asymmetric-key pointer) and the index.
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## [2026-06-15] decision | Device-agnostic registry + first-run setup
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From app work. Made the [[device-adapter-pattern]] selectable: added a
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[[device-registry]] (catalog of drivers per category) and a [[first-run-setup]]
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flow so the admin picks a device per lane at install. Categories: access
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(ZKTeco / ESP32 relay), reader (Wiegand / TCP-IP), camera (Hikvision / Dahua,
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snapshot-on-event), printer. Added a `CameraDevice` interface; new `lane_devices`
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+ `setup_state` tables (migration 0001); admin-only setup endpoints. Stub drivers
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for now (no real vendor protocols yet). Verified catalog + assign + validation +
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auth end to end.
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## [2026-06-15] decision | UHPPOTE library chosen + real driver
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Researched Node options for the UHPPOTE controller. Chose the official
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**`uhppoted`** npm package (MIT, actively maintained, full API incl. openDoor,
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get-event(s)/event-index, set-listener, restore-default — covers the whole
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[[event-log-ingestion]] design). Rejected: raw-dgram DIY (reinvents the lib),
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node-red-contrib-uhppoted (wrong model), Go REST sidecar (extra runtime). Added
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it to @parking/devices and implemented a real `uhppote` [[uhppote-controller]]
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access driver (pulseOpen→openDoor, healthCheck→getStatus), registered in the
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catalog. CJS interop: default-import + destructure. Verified it builds, appears
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in the catalog, and degrades to "offline" gracefully without hardware. Real
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on-VLAN test still pending.
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## [2026-06-15] feature | Device discovery (UHPPOTE scan in setup)
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The frontend had no way to find a UHPPOTE — but the controllers self-announce via
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UDP broadcast. Added a generic [[device-discovery]] capability: optional
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`DiscoverableDriver.discover()` on the registry, implemented by the `uhppote`
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driver via `getDevices`. New admin-only `GET /api/setup/discover/:driverId`
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(health-checks each found device); catalog now returns a `discoverable` list.
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SetupWizard gains a "Scan for controllers" button that lists found devices with
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health badges and auto-fills serial + host on selection. Verified: catalog flags
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uhppote; discover runs and fails gracefully without hardware (broadcast EACCES);
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non-discoverable driver → 400; no token → 401. Modeled generically so cameras
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(ONVIF) can add discovery later.
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## [2026-06-15] test+blocker | UHPPOTE hardware bring-up + entry-flow blocker
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Brought up the real UHPPOTE (serial 225088491, fw 09120) end to end. Fixed the
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networking path: WSL2 mirrored mode, then driver bugs — subnet-directed broadcast
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(the lib doesn't enable SO_BROADCAST for global 255.255.255.255), broadcast must
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match the target's subnet for unicast reply routing (health-check timeout fix),
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multi-subnet discovery, and serialized I/O (concurrent calls collided on :60001).
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Added .env loading (Node --env-file), env-gated+fail-closed SETUP_AUTH_BYPASS, and
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an authBypass flag so the wizard drops the token field. Test scripts in
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apps/server/scripts/ (uhppote-listen, uhppote-relay).
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VERIFIED on hardware: discovery; host-commanded openDoor doors 1&2 (physical +
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reason="remote open door"); button presses live (reason="push button ok").
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BLOCKER FOUND: the controller push-button input auto-opens the relay in firmware —
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no command to report-without-opening — so ticket-first entry (button→print→open)
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is impossible as wired. UHPPOTE can't do it on that input; ZKTeco *might* via a
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programmable aux input + PULL SDK but that's unverified and needs a new driver.
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Recorded in [[access-controller-button-flow]] + [[zkteco-controller]]. Entry-lane
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hardware decision paused to focus on the business side.
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## [2026-06-15] feature | Cookie-based auth/authz (login, CSRF)
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Built real authentication: bcrypt login → JWT in an HttpOnly+SameSite=Strict
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cookie, readable CSRF cookie + X-CSRF-Token header (double-submit) on mutations,
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role-guarded routes. Routes: /api/auth/{login,logout,me}. First admin seeded via
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`pnpm --filter @parking/server seed-admin`. Removed the SETUP_AUTH_BYPASS shim
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and the wizard token field; the SPA gates on /api/auth/me and only shows setup to
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admins. Same-origin via the Vite dev proxy and a new prod nginx config
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(deploy/nginx.conf). Verified end to end (curl + browser): wrong pass→401,
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login→cookies set, me→admin, assign without CSRF→403 / with→201, no cookie→401,
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session persists across reload. Updated [[local-jwt-auth]].
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## [2026-06-15] lint+docs | Dev-environment pages (WSL networking, workflow)
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Captured hard-won dev knowledge that was only in commit messages: new
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[[wsl-dev-networking]] (WSL2 NAT blocks UDP broadcast → mirrored mode + the
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multi-interface / subnet-broadcast / IPv6-localhost gotchas that remained) and
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[[local-dev-workflow]] (setup, seed:admin, the dev-server-hang from the broken
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strip-types script → tsx, the 127.0.0.1 proxy fix, .env loading). Corrected the
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earlier "broadcast permission (EACCES)" note in [[device-discovery]] — the real
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cause was the lib not enabling SO_BROADCAST for the global 255.255.255.255;
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documented the three verified broadcast gotchas + serialization. Added a `reference`
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page type to the schema; new "Dev environment" index section.
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## [2026-06-15] decision | Dingtian relay chosen; HTTP over MQTT; unmanned direction
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New relay+input controller on hand (Dingtian 4ch). Its inputs are decoupled from
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relays (configurable via input_link_relay) — solves the [[access-controller-button-flow]]
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blocker the UHPPOTE couldn't. Transport decision [[dingtian-vs-mqtt]]: direct
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HTTP/UDP now (UDP string for relay control on :60001; device input_link_url HTTP
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push for button events), MQTT skipped (broker = infra + failure mode + overkill at
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this scale) but kept for later multi-lane scale. Recorded the stated roadmap to
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**fully unmanned, no-booth** operation in [[autonomous-direction]] and its threat-model
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shift (operator-fraud → unattended-machine threats). New stub [[dingtian-relay]]
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with the full protocol from the SDK. Driver + on-hardware test still to build.
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## [2026-06-15] driver+test | Dingtian driver built; button blocker RESOLVED
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Built the `dingtian` access driver (AccessControlDevice relay control + InputDevice
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poll-based button events + new PreconditionDevice capability). Verified end to end on
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real hardware (DT-R004 @ 10.0.10.172, HTTP config on :8080, UDP control :60001):
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status read, relay pulse, input press/release. Disabled `input_link_relay` via the
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driver's fixPreconditions (GET config → flag 0 + clear maps → POST config_set), then
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confirmed: pressing inputs now fires NO relay (0000 status) — host-in-the-loop entry
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works. The [[access-controller-button-flow]] blocker is RESOLVED. Gotcha recorded in
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[[dingtian-relay]]: config_set requires injecting "command":"setconfig" after "status"
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(GET omits it) or the write silently no-ops. Added httpPort config field (port 8080 ≠
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default 80). Test script apps/server/scripts/dingtian-test.mjs. Next: input HTTP-push
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endpoint + wiring input→ticket→pulseOpen.
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