36 Commits

Author SHA1 Message Date
julian 14c83e182a feat(web): i18n with react-i18next — Albanian default, English second
Add react-i18next with two key-parity-checked catalogs (sq default/fallback, en).
Active language driven by the logged-in user's stored preference (applied after
/me resolves); SQ/EN toggle in the header persists via PUT /api/auth/language.
Translate the booth (screen, pay/exit modal, active sessions, snapshots, status),
Login, ShiftControl, SiteSettings, PermitManager, TariffComposer.

SetupWizard deferred (its content is server-provided; needs backend catalog i18n).
2026-06-18 11:47:39 +02:00
julian 445bca0bf6 feat(auth): per-user UI language preference (sq default, en)
Add users.language ('sq'|'en', default 'sq'; migration 0003). Returned from
/api/auth/login and /api/auth/me (read from the DB, not the JWT — so changing it
needs no re-login). New PUT /api/auth/language for self-service. Loaded on login
and restored from any booth. Printed tickets stay Albanian (customer-facing).
2026-06-18 11:47:30 +02:00
julian 062feeae2f docs(wiki): update index + log for booth console, drawer, and tariff research
Catalog the new concept/source pages and append chronological log entries for the
tariff research, live WebSocket, booth pay/exit, active sessions, and shift drawer
work.
2026-06-18 11:05:43 +02:00
julian 50a3095ef3 feat(shift): cash drawer balance carried across shifts + admin cash movements
New signed cash_movement event (admin-only): load/remove drawer float, signed +
attributed. ShiftService folds cash payments + movements by time into a drawer
balance; shift open auto-inherits the prior shift's expected closing drawer as its
opening float; the Z-report reports opening/taken/added/removed/expected (= next
shift's opening float). Card payments excluded (settle to bank). Routes: POST
/api/cash-movement, drawer in GET /api/shift/current. ShiftControl shows the live
drawer + admin load/remove form + Z-report drawer block. Wiki: shift.md.
2026-06-18 11:05:36 +02:00
julian eb3dc18e67 feat(booth): active sessions panel + audited barrier re-open
Active Sessions panel lists sessions that are open OR exited-but-within-grace
(barrier state is unconfirmed, so a paid car is presumed possibly-present until
grace expires). Row click → pay/exit modal; 'Open barrier' (paid sessions only —
no payment, no button) fires a human-intervention re-pulse signed as an attributed
anomaly, never a second vehicle_exit. Wiki: booth-exit-flow.md.

Note: the backend (PayStation.activeSessions, ExitFlow.reopenBarrier, routes,
api.ts) landed with the prior commit's shared files.
2026-06-18 11:05:26 +02:00
julian 06dab1e790 feat(booth): pay-on-foot at the booth — ticket lookup, pay, exit, voucher, snapshots
Backend: PayStation.lookup (session view + quote in one read); ExitFlow.exitForBooth
reuses the reader path's paid+grace validation (no booth-only unpaid bypass) and
signs vehicle_exit + pulses an exit relay; printExitVoucher reprints the paid ticket
id barcode; site_config.exit_voucher_default (migration 0002) drives the default.
Routes: GET /api/session/:id, POST /api/exit, POST /api/voucher.

Web: BoothPayModal (entry/now/duration/total, tender, 'Printo biletë dalje'),
SnapshotStrip (entry/exit evidence), api.ts client fns, SiteSettings toggle.
2026-06-18 11:05:10 +02:00
julian 9956488fd5 chore: removed graphify 2026-06-18 11:03:45 +02:00
julian 49df2015c8 feat(web): frontend foundation — Tailwind terminal theme, Query, Router, Zustand + live booth screen
Add tailwindcss (Bloomberg-terminal theme in index.css), @tanstack/react-query +
react-router, zustand, and Radix primitives. Router with role-guarded routes;
QueryClient wrapping the existing apiFetch; a small Zustand live store fed by a
/api/ws client that invalidates Query caches. Booth screen: live occupancy gauge
+ streaming entry/exit/payment feed. Vite proxies the WS upgrade.

Note: BoothScreen references the pay/exit modal + active-sessions panel added in
following commits; final HEAD builds.
2026-06-18 11:00:42 +02:00
julian c2f06a5d2a feat(server): live booth WebSocket feed (/api/ws)
Add @fastify/websocket. EventLog fires an onAppended callback after each durable
append; device-events gains a ledger channel (emitLedger). /api/ws fans out
ledger + occupancy + printer-status to authenticated booth clients. Origin
allowlist (WS_ALLOWED_ORIGINS) replaces CSRF for the handshake (anti-CSWSH).

Note: server.ts also reflects later booth route wiring; the final HEAD builds.
2026-06-18 11:00:22 +02:00
julian 58d8f06ba0 docs(wiki): tariff research — legacy ParkSQL2017 schema, time-tiers & validation/sponsorship design
Ingest the predecessor SQL Server schema (raw + source summary) and file design
pages for time-of-day/seasonal tariff tiers and merchant validation/postpaid
sponsorship. Cross-link tariff.md and validation-discounts.md. No code.
2026-06-18 10:59:21 +02:00
julian 71aaad03b9 exit: open free within entry-grace, no pay-station visit
A quick in-and-out the tariff prices at 0 (stay <= gracePeriodEntryMin) now
exits at the gate instead of being refused as "not paid". exit-flow resolves
the active site tariff (same logic as the pay station) and, if computeFee for
entry->now is 0, mints a signed $0 payment event (reason: free entry-grace)
then signs the vehicle_exit and opens. The $0 payment keeps the append-only
ledger invariant that an exit is covered by a payment, so a grace exit stays
attributable in the audit trail. A real payment still takes precedence (the
walk-back grace path is untouched). Sign+open extracted to #signExitAndOpen,
shared by both paths.
2026-06-17 12:17:28 +02:00
julian 727c62da90 ticket: site metadata header + scannable Albanian ticket; widen barcode
- site_config gains optional park identity (park_name, operator_name, nius,
  address, phone, email); additive Drizzle migration 0001. GET/PUT
  /api/site-config read/write the full config (PUT partial patch, admin only);
  SiteSettings + SetupWizard expose the fields.
- renderTicket() prints an Albanian header sourced from site_config, the
  all-numeric 13-digit ticket id (12 random + Luhn) as Code128, large digits,
  and a lost-ticket footer. CP852 codepage so ë/ç render.
- Widen the Code128 module width 2->3 and height 80->100 dots so the
  short-range "Simple" QR/barcode reader decodes reliably (was barely reading
  at module width 2 on the 80mm head).

See wiki/concepts/site-metadata.md and ticket-encoding.md.
2026-06-17 12:17:21 +02:00
julian 1efa77bf56 devices: pool-of-spaces model — drop lane, per-relay direction
A parking lot is one pool of spaces with a flexible set of entry/exit
points — no "lane". Direction is a property of each RELAY inside an access
controller; readers/cameras bind to a controller relay and inherit it.

Schema:
- drop `lane` from ledger_events, device_events, sessions
- rename lane_devices -> devices (no lane/direction columns)
- access config.relays=[{relay,direction,button?}]; reader/camera
  config.controllerId+relay binding
- fresh 0000_baseline migration (history reset; dev data was throwaway)

Signed ledger:
- remove `lane` from canonicalize(); bump signer keyId sw-hmac-v1 -> v2
  (v1 events won't verify under v2 — intentional, gated per-event by keyId)

Server:
- new device-resolve.ts (replaces lane-map.ts): relayForButton,
  relayForDevice, firstRelayByDirection, devicesByDirection
- entry-flow: button terminal -> its relay; exit/permit: reader's bound
  relay; dispatcher resolves the bound relay + inherited direction
- camera snapshots fire by direction site-wide, async, never block open
- DeviceConfig widened to nested JSON for relays[]

Web:
- wizard: no lane selector; add controllers (relay map + entry-button
  terminal) first, then bind readers/cameras/printers to a controller relay

Wiki: new entry-exit-points.md (replaces lane-direction); reworked
entry-exit-readers, parking-session, first-run-setup, device-registry,
append-only-event-chain, device-events; removed stale lane/LaneMap mentions.
2026-06-16 20:29:38 +02:00
julian 15d3e1ba08 update .gitignore and CLAUDE.md for graphify integration; add settings.json for pre-tool hooks 2026-06-16 14:34:20 +02:00
julian ff3b011fe0 qr-reader: reply Connection: close (fixes ~10s beep delay)
The reader sends Connection: keep-alive but only acts on the verdict (beep,
output) once the TCP socket closes. Fastify's default kept the connection alive,
so the reader waited out a ~10s keep-alive timeout before beeping — even though
the server replied in ~15ms. Every vendor demo replies Connection: close and
shuts the socket. Set reply.header('connection','close') on the QR endpoint.

Verified the header is now sent; symptom was correct accept/reject with a ~10s
lag before the beep.
2026-06-16 12:56:10 +02:00
julian 5705098054 devices: stub-access driver (bench-test flows without a relay)
A live QR scan reached the app but rejected: 'reader not on an access-equipped
lane' — the dispatcher requires an access device on the reader's lane. Add a
no-op stub-access driver (access category, no config) whose pulseOpen only logs
and does no device I/O, so the QR->permit->accept flow (incl. the beep) can be
tested without the Dingtian relay connected. Not for production; registered in
the catalog.
2026-06-16 12:50:05 +02:00
julian 68d61f2d99 qr-reader: gee-qr-reader driver — assign in wizard, resolve lane by serial
The QR reader is a push device and the setup wizard assigns random-UUID ids, so
'id = serial' can't be set via the UI. Add a dedicated gee-qr-reader driver
(reader category) with a single 'serial' config field; the admin assigns it
normally and enters the device's serial (its cjihao).

The QR endpoint now resolves the lane by matching lane_devices.config.serial to
the scan's cjihao (instead of row id == cjihao), so no DB hand-editing. An
unassigned serial resolves to no lane -> status:0, gracefully.

Verified via inject through the real /api/setup/assign: assign {serial:
H05M2AFA} -> .jsp scan with a matching permit QR -> status:1 (accept) + open;
re-scan -> permit exit; unknown card -> status:0; unassigned serial -> status:0.
2026-06-16 12:36:58 +02:00
julian 04135b27cf qr-reader: register all server-language extensions (reader posts .jsp)
Hardware capture: the GEE/Fondvision reader (serial H05M2AFA) scans + sends +
beeps fine — the earlier 'no beep' was just nothing answering :3000. Real
request: GET /qa/mcardsea.jsp?cardid=...&cjihao=H05M2AFA&... — the 'server
language' setting (JSP here) selects the URL EXTENSION, so it posts .jsp, not
.php. Our route was .php-only and would have 404'd it.

Register the endpoint at php/jsp/asp/aspx/cgi so it works whatever the device is
configured to. cjihao (serial) is the lane key: assign the reader as
lane_devices.id = its serial.
2026-06-16 12:30:00 +02:00
julian 392d44d842 server: GEE/Dingtian QR reader endpoint + synchronous ReadOutcome
The reader HTTP-GETs on each scan and beeps/acts on our JSON reply (host-in-the-
loop, synchronous). New route GET/POST /qa/mcardsea.php parses the SDK query,
runs the scan through the read dispatcher (permit match -> permit flow; else
transient exit), and replies the SDK verdict: status 1=valid (beep 2x) /
0=invalid (beep 1x), output, time-sync.

Refactored the read flows to return a ReadOutcome {accepted, direction, reason}
so the reply reflects the real accept/reject decision (ReadDispatcher.dispatch,
ExitFlow.handleAt, PermitFlow.run). Fire-and-forget readers ignore it.

Reader's lane is keyed off its serial (cjihao) as lane_devices.id for now;
endpoint is public (reader has no auth, on the device subnet).

Verified via inject: valid permit QR -> status:1 + open; re-scan -> permit exit;
unknown QR -> status:0; barrier-less lane -> status:0.
2026-06-16 12:12:09 +02:00
julian f67c1ead87 wiki: ER80 protocol = HTTP GET poll + JSON verdict (from QRCode SDK)
The QRCode SDK v1.6.5 settles the reader protocol (supersedes the earlier
serial guess). On each scan the reader HTTP-GETs the host
(/qa/mcardsea.php?cardid&mjihao&cjihao&status&time); the host replies JSON
{data:[{...,status,output}],code:0}. Reply status 1=valid(beep 2x)/0=invalid
(beep 1x); output 0=Access/1=WG26/2=WG34; time syncs the clock. The GET's status
low digit is the direction (1=in/0=out).

Key: the beep/accept is decided by the SERVER REPLY, not locally -- the 'no
beep' during bring-up was a plain-text reply, not a scan failure. Host-in-the-
loop and synchronous. 'Server language' only selects the URL path; transport is
plain HTTP.

New source page qrcode-sdk; updated gee-qr-er80 (protocol resolved), index.
2026-06-16 12:05:05 +02:00
julian bf37106c5c wiki: ingest GEE-QR-ER80 QR access reader datasheet
The reader on hand is a GEE-QR-ER80 QR/DataMatrix/1D barcode access reader
(not an EM4100 prox-card reader as first guessed). Interfaces: Wiegand 26/34,
RS-232, RS-485, USB, TCP/IP; 4-15 VDC; Linux-supported. Variant on hand: -Q-W
(QR scanner, Wiegand/RS-232/485).

This is the QR-ticket scanner the design already needed: a host-side reader
whose scans become read-bus events consumed by the (already-built) exit flow
and QR-permit path. Prefer RS-232/485 over Wiegand (Wiegand can't carry a
variable-length QR string; autonomy is moot with the no-ACL Dingtian).

New source + entity pages; updated ticket-encoding, entry-exit-readers, index.
Open (blocks the adapter): the RS-232/485 frame + baud (ASCII CR/LF expected).
2026-06-16 08:22:23 +02:00
julian e579fe5b6e server+web: capacity / FULL gate (occupancy fold + transient refuse)
Occupancy is a fold over the signed ledger (entries minus exits per identity);
getOccupancy returns {count, capacity, free, full}. Capacity is a single-row
site_config table (admin-set; null = uncapped; migration 0001, additive).

FULL gate lives in the transient entry flow: when full, refuse (no ticket, no
vehicle_entry, no open) and sign an anomaly. Permit entry is NOT gated --
subscribers are admitted past transient-full (their own maxConcurrent still
applies), so occupancy can read over capacity by design (reserve-for-permits).

Routes: GET /api/occupancy + GET /api/site-config (any role), PUT
/api/site-config (admin; non-negative int or null). Web SiteSettings: live
occupancy + FULL badge (everyone), capacity editor (admin).

Verified: fill to cap -> 3rd transient refused; permit admitted past full; exit
frees a slot; RBAC (operator can't set, -5 -> 400); verifyChain ok. Physical
FULL-sign relay output deferred.
2026-06-16 08:13:06 +02:00
julian 644bfa1462 server+web: shifts — open/close + signed Z-report (manned mode)
A shift is two signed ledger events, no mutable table: new shift_open event
type + existing shift_z_report. The operator is the logged-in user (carried in
event identity); a shift is open iff their latest shift event is a shift_open.

ShiftService: close sums payment events in [start,end] by tender (cash/card, by
payment time), appends the signed shift_z_report (totals/counts/window), and
prints via a new generic PrinterDevice.printReport(title, lines) (Rongta ESC/POS
text) to a booth-receipt printer. Print is best-effort — a failed print does not
undo the signed close.

Routes (cashier/operator/admin): GET /api/shift/current, POST /api/shift/open
(409 if open), POST /api/shift/close (409 if none). Web ShiftControl in the
shell (non-readonly): Start/End + Z-report totals.

Verified: open -> double-open 409 -> payments (cash+card; one outside the window
excluded) -> close totals correct + signed + printed -> close-again 409 ->
re-open ok; readonly 403; verifyChain ok.
2026-06-16 08:01:59 +02:00
julian 3429642edb permits: admin CRUD (route + UI)
A permit is an aggregate (row + credentials + bound plates); create/update
treat it as one unit (child sets replaced on update). GET /api/permits (any
signed-in role, for lookup); POST/PUT/DELETE + POST /:id/revoke (admin only).
Validation: maxConcurrent positive-int-or-null (unbound); a permit must have at
least one credential OR one bound plate. Revoke is the soft common case (keeps
history, barred at the barrier); DELETE hard-removes — past ledger events that
reference it are untouched (append-only audit trail, independent of this row).

Web PermitManager in the admin shell: list + add/edit (holder, car-bound toggle,
validity, credentials, plates), revoke, delete. Makes permits usable without
hand-seeding (companion to the tariff composer).

Verified via inject: validation (empty / maxConcurrent=0 -> 400), create -> 201,
operator can LIST but not write (403), update replaces child rows, revoke ->
revoked, delete -> 204 then 404 with children cleaned.
2026-06-15 19:53:03 +02:00
julian c24d99b0f4 server: permit entry/exit branch + read dispatcher
A credential read now routes by what the credential IS: matches a permit
(card/QR credential or a bound plate) -> permit flow; else -> transient exit
flow. Lane resolved once (readerLaneWithAccess); ExitFlow.onRead -> handleAt so
the dispatcher owns lane resolution.

Permit direction is inferred from session state for that car (the read value is
the per-car session key): no open session -> ENTRY (enforce maxConcurrent, sign
vehicle_entry, open); open -> EXIT (sign vehicle_exit, open, close). Fleet
permit = one session per car; anti-passback falls out naturally.

maxConcurrent enforced as a fold over the signed ledger (null = unbound).
Validity window + status + plate-OR-card identity as designed. No ticket/fee;
every use is a signed event carrying permitId. Refusals (revoked / out-of-window
/ at-capacity) are signed anomalies, barrier stays closed.

Verified against stubs: card entry -> inferred exit; fleet cap 2 (F3 rejected
at 2/2, then admitted after F1 exits); plate-bound opens; revoked rejects;
unknown credential falls through to exit reject; verifyChain ok.
2026-06-15 19:47:01 +02:00
julian b4d0dfadd6 tariff composer: admin publishes rate-card versions (pay station now operable)
validateTariffStructure (shared): non-negative ints, ascending block bounds,
only the last block open-ended — a malformed card can't be published.

Routes: GET /api/tariff (active + history, any signed-in role), POST
/api/tariff/versions (publish an immutable, effective-dated version; admin
only). The single site tariff row is created lazily. Editing = publish a new
version; past sessions keep their pricing.

Web: TariffComposer in the admin shell — edit currency, grace windows,
increment, daily cap, lost-ticket fee, and add/remove rate blocks (major-unit
input -> minor on submit); shows active version + history.

Verified via inject: empty -> active null; invalid blocks -> 400 with problem;
valid -> 201; readonly publish -> 403; after publishing, the pay station quote
returns 404 (no session) instead of 409 (no tariff) -- it now prices against the
active card.
2026-06-15 19:35:33 +02:00
julian f18e28eeca server: pay station + fee calc — full transient loop now passes
computeFee() in @parking/shared: pure integer fee over a TariffStructure
(stepped blocks, rolling-24h cap). Two edges fixed under test: grace uses RAW
duration (not rounded-up minutes), and the block ladder resets each 24h day.

PayStation + routes (GET /api/pay/quote, POST /api/pay): look up the open
session, resolve the active tariff version (latest effectiveFrom <= entry),
computeFee, append a signed payment event (amount/currency/tender/
tariffVersionId/graceExitMin). overrideMinor handles lost-ticket/dispute. PCI
stays out of the app: tender only records cash/card.

Verified end to end: entry -> quote (300 for 90min) -> pay -> exit opens and
closes the session, verifyChain ok.
2026-06-15 19:15:53 +02:00
julian a8c6d6e714 auth: JWT valid until logout (drop 8h expiry)
Booth reality breaks a fixed clock (relief late/absent, forced double shifts),
and a shift is a separate explicit boundary. Drop expiresIn from the global jwt
config and from login; the token carries no exp. Cookie maxAge = 30 days so a
browser restart doesn't log out an active operator; logout still clears it.
2026-06-15 19:15:53 +02:00
julian 2a36830880 server: exit flow (pay-on-foot validation)
A credential read at an exit lane validates the session, then opens. Adds a
'read' channel to the device bus (DeviceReadEvent: ticket/plate/qr/card);
entry stays button-driven so reads are exit/identity events.

Flow: read -> fold the SIGNED ledger for that identity -> validate open + PAID
+ within gracePeriodExitMin -> signed vehicle_exit -> pulseOpen -> close the
session cache. Unpaid / grace-expired / unknown -> signed anomaly, barrier
stays closed (a deliberate business reject, not a fail-state; 'exit fails open'
is about host/power loss). Validation reads the ledger (authoritative), not the
cache.

No payment events exist until the pay station is built, so every transient exit
currently rejects -- the correct end-state, not yet passable. Verified against
stubs: unpaid->anomaly+no-open; paid+grace->exit+open+closed; expired->anomaly;
unknown->anomaly; verifyChain ok across entry->pay->exit.

Flagged: lane_devices has no entry/exit direction model (exit door hardcoded to
1); needs a lane-direction/role model before multi-reader lanes.
2026-06-15 18:57:14 +02:00
julian 2696d281ce server: transient entry flow (button -> ticket -> signed entry -> open)
Closes the long-dangling thread from device-input-flow. On an access device's
rising input edge: print the ticket (failover), then sign vehicle_entry, then
pulseOpen, then cache the session projection.

Two invariants enforced:
- signed BEFORE open (an open with no signed event is the fraud signal);
- HOLD on print failure — no ticket means a transient can't pay on exit, so
  sign an anomaly and do NOT open, and do NOT write a vehicle_entry for a car
  that never got in.

Subscribes the same input bus as the device-telemetry writer (independent:
telemetry always records; entry acts only on an access device's on-edge,
debounced). Verified end to end against stubs: success path signs+opens+caches
and verifyChain ok; printer-down path emits only an anomaly with no open and
no entry; release edge ignored.
2026-06-15 18:32:40 +02:00
julian 648d3254d6 wiki: valet / over-capacity mode; 'full' is a soft operator policy
Capture that refusing at capacity is the default, not absolute: an operator
may opt into valet over-capacity (customer hands over keys, operator stacks
the car into custody). Manned-only, new custody/session shape. Deferred;
not built into the entry flow. Made capacity-occupancy's FULL gate a soft
policy knob.
2026-06-15 18:32:40 +02:00
julian 8c2cf93067 db: business-layer schema — ledger/device event split, tariffs, permits, sessions
Implements the wiki design in packages/db + packages/shared.

Event split: rename events -> ledger_events (signed business ledger) and add
device_events (unsigned telemetry). ledger_events gains a signed JSON payload
(amount/tariffVersionId/sessionRef/tender…) + keyId; canonicalize() includes
the payload via sorted-key serialization so business data is tamper-evident.
Raw Dingtian input now writes device_events, not a signed input_received.

New tables: tariffs + immutable tariff_versions (composable/versioned, currency
+ FX-ready), permits (+ permit_credentials, permit_plates; maxConcurrent default
1), blocklist, sessions (rebuildable projection cache — not a source of truth).

shared: split ParkingEvent/Type into LedgerEvent/LedgerEventType + DeviceEventKind;
add LedgerPayload, Tender, TariffStructure/TariffBlock.

Regenerated a single baseline migration (no production chain data existed).
Verified: chain appends + verifyChain ok; tampering a payment payload breaks
the signature. Full repo builds (5/5).
2026-06-15 18:13:35 +02:00
julian 9a4c7ee27b wiki: split signed business ledger from device telemetry
Correction before schema work: the events table conflated the anti-fraud
business ledger with device telemetry. Decision: ledger_events (signed,
chained, reconciled) holds only business facts; device_events (unsigned,
prunable) holds relay/printer/camera/reader/input telemetry. A raw button
press is telemetry; the entry flow mints a signed vehicle_entry. Drops
input_received-as-signed-event.

New: decisions/event-streams-split, concepts/device-events; updated
append-only-event-chain, index, log.
2026-06-15 18:08:56 +02:00
julian 8a8e74561d wiki: design the business layer (session, tariff, permit, vision, shift, ops)
Pivot from the hardware/integrity layer to the parking operation. All
wiki-only; no code yet. Core principle throughout: business entities are
projections over the signed append-only event log, never mutable tables.

New concepts: parking-session, tariff (composable/versioned, FX-ready),
shift (manned-only Z-report), capacity-occupancy, validation-discounts,
reporting-analytics, clock-integrity, ticket-encoding, anti-passback.
New entities: permit, opencv-anpr-service, blocklist.
Decisions: session-model, vision-service (host-side ANPR + vehicle
verification; scoped AGPL exception for the isolated service).

Updates: append-only-event-chain (new event types + vision witness),
local-jwt-auth (drop 8h expiry -> until logout; code change pending),
lpr-camera (host-side recognition supersedes edge-AI), standing-decisions
(AGPL exception), open-questions (+FX, +pay-station money corners, backup).

Deferred + flagged: intercom/help-call, receipts/refunds/change, FX engine,
lane topology (#1).
2026-06-15 17:41:38 +02:00
julian 2ab5a39a57 Permanent WSL2 dev fix for multi-subnet source-address trap
Mirrored mode re-clones the Windows NIC's addresses each boot, so the kernel
keeps picking the wrong source for stacked device subnets (10.0.10.x sourced
from 192.168.1.123) — ARP resolves but ping/TCP dies, and every runtime
ip-route fix is wiped by wsl --shutdown.

deploy/wsl-fix-route-source.sh pins each scope-link route's src to this
host's own address in that subnet (no hardcoded IPs, idempotent, preserves
metric, non-fatal per route, waits for the route at boot). deploy/parking-net
.service reapplies it on every boot.

Dev-box only; the appliance is bare-metal Linux with static networkd config.
Verified: camera pings with no -I flag; driver pulls a snapshot with no
localAddress set.
2026-06-15 16:17:59 +02:00
julian fa65b2df86 Real Hikvision/Dahua camera driver; gate Backend-push-IP on capability
Replace the camera stub with HttpCamera: Hikvision ISAPI and Dahua CGI
snapshots over client-side HTTP Digest (new drivers/http-digest.ts).
healthCheck() now pulls a real frame instead of returning ready/stub.
Snapshot carries bytes (driver fetches); storage/imageRef is the caller's
job, keeping the adapter free of storage deps.

Fix the cosmetic Backend-push-IP field: add pushesToBackend to DeviceDriver
(only Dingtian sets it), expose as pushCapable in the catalog, and gate the
wizard's backend-IP fetch + field on it so pull-only devices hide it.

Verified on hardware (Hikvision 10.0.10.121): healthCheck ready,
captureSnapshot returns a valid JPEG.
2026-06-15 16:17:49 +02:00
129 changed files with 15908 additions and 587 deletions
+5
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@@ -0,0 +1,5 @@
{
"hooks": {
"PreToolUse": []
}
}
+4
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@@ -20,3 +20,7 @@ dist/
/*.png
# Vendor device SDKs (reference only — protocol captured in wiki, not committed)
/dingtian/
/QRCode_sdk*/
# Graphify knowledge-graph output (dev tool; generated, not committed)
graphify-out/
+11
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@@ -8,6 +8,13 @@
# Generate one with: openssl rand -hex 32
JWT_SECRET=
# Dedicated HMAC key for signing the append-only event ledger (>=16 chars).
# Generate with: openssl rand -hex 32
# If unset, the server falls back to JWT_SECRET (logged as a warning) — fine for
# dev, but set a dedicated key before production. Events store the key that signed
# them (keyId), so verifyChain still validates a chain that spans a key change.
EVENT_SIGNING_KEY=
# Optional ----------------------------------------------------------------
# PORT=3000
# HOST=0.0.0.0 # interface to bind. 127.0.0.1 = loopback only.
@@ -18,3 +25,7 @@ JWT_SECRET=
# First admin (seed once): pnpm --filter @parking/server seed-admin
# ADMIN_USER=admin
# ADMIN_PASS=
# Comma-separated extra origins allowed to open the booth WebSocket (/api/ws).
# In dev, set the Vite SPA origin. Same-origin is always allowed without this.
WS_ALLOWED_ORIGINS=http://localhost:5173
+1
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@@ -16,6 +16,7 @@
"@fastify/cors": "11.2.0",
"@fastify/jwt": "10.1.0",
"@fastify/static": "9.1.3",
"@fastify/websocket": "^11.2.0",
"@parking/db": "workspace:*",
"@parking/devices": "workspace:*",
"@parking/shared": "workspace:*",
+11 -5
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@@ -18,9 +18,15 @@ export const TOKEN_COOKIE = "parking_token";
export const CSRF_COOKIE = "parking_csrf";
export const CSRF_HEADER = "x-csrf-token";
/** Token lifetime, also used as the cookie maxAge. */
export const TOKEN_TTL = "8h";
export const TOKEN_TTL_SECONDS = 8 * 60 * 60;
// Session lifetime: the JWT has NO expiry — a login is valid until explicit
// logout. Booth reality breaks any fixed clock (relief late/absent, forced double
// shifts), and a shift is a separate explicit boundary, not the token's lifetime.
// See wiki/entities/local-jwt-auth.md + wiki/concepts/shift.md.
//
// The cookie still needs a maxAge so it survives a browser restart (a session
// cookie would log out an active operator on browser close — the opposite of
// "until logout"). Use a long fixed window; the server clears it on logout.
export const COOKIE_MAX_AGE_SECONDS = 30 * 24 * 60 * 60; // 30 days
/**
* Resolve the JWT signing secret, refusing to start without a strong one.
@@ -55,7 +61,7 @@ export function setAuthCookies(reply: FastifyReply, jwt: string, csrf: string):
sameSite: "strict",
secure,
path: "/",
maxAge: TOKEN_TTL_SECONDS,
maxAge: COOKIE_MAX_AGE_SECONDS,
});
// Readable by JS so the SPA can echo it back in the CSRF header (double-submit).
reply.setCookie(CSRF_COOKIE, csrf, {
@@ -63,7 +69,7 @@ export function setAuthCookies(reply: FastifyReply, jwt: string, csrf: string):
sameSite: "strict",
secure,
path: "/",
maxAge: TOKEN_TTL_SECONDS,
maxAge: COOKIE_MAX_AGE_SECONDS,
});
}
+81
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@@ -0,0 +1,81 @@
import { eq, siteConfig, type Db } from "@parking/db";
import {
printWithFailover,
registry,
type PrinterDevice,
type PrinterInstance,
type TicketData,
type TicketHeader,
} from "@parking/devices";
import type { FastifyBaseLogger } from "fastify";
import { devicesByDirection } from "./device-resolve.js";
// Booth-side printing for the EXIT VOUCHER ("biletë dalje"). When the booth is far
// from the exit, the customer pays at the booth and walks a printed voucher to the
// exit, where they self-scan it. The voucher reprints the SAME ticket id as a
// Code128 barcode (now a paid session) — so the exit reader runs the normal exit
// validation and opens. See wiki/concepts/booth-exit-flow.md, ticket-encoding.md.
//
// This mirrors the entry flow's printer selection + header build, but prints on the
// BOOTH printer (role "booth-receipt") since that's where the operator stands.
/** Park identity for the voucher header, from site_config (all fields optional). */
function ticketHeader(db: Db): TicketHeader | undefined {
const row = db.select().from(siteConfig).where(eq(siteConfig.id, 1)).get();
if (!row) return undefined;
return {
parkName: row.parkName,
operatorName: row.operatorName,
nius: row.nius,
address: row.address,
phone: row.phone,
};
}
/** Build live printer instances for failover selection (entry direction covers the
* booth-receipt role too — the booth printer is configured on the entry side). */
function loadPrinters(db: Db): PrinterInstance[] {
const rows = devicesByDirection(db, "printer", "entry");
const out: PrinterInstance[] = [];
for (const row of rows) {
const driver = registry.get(row.driverId);
if (!driver) continue;
const cfg = row.config as Record<string, unknown>;
const role = cfg.role === "booth-receipt" ? "booth-receipt" : "entry-dispenser";
try {
out.push({
id: row.id,
role,
failoverRank: typeof cfg.failoverRank === "number" ? cfg.failoverRank : 0,
device: driver.create(cfg as never) as PrinterDevice,
});
} catch {
// skip a printer whose config won't build
}
}
return out;
}
/**
* Print an exit voucher for a paid session: the same ticket id reprinted as a
* barcode, on the booth printer (failing over to the entry dispenser). Returns the
* id of the printer that printed it. Throws NoPrinterAvailableError if none can.
*/
export async function printExitVoucher(
db: Db,
ticketId: string,
logger: FastifyBaseLogger,
): Promise<string> {
const printers = loadPrinters(db);
const ticket: TicketData = {
ticketId,
issuedAt: new Date().toISOString(),
header: ticketHeader(db),
};
// Prefer the booth printer (operator is at the booth); fall back to the dispenser.
const printedBy = await printWithFailover(printers, "booth-receipt", (d: PrinterDevice) =>
d.printTicket(ticket),
);
logger.info(`exit voucher for ${ticketId} printed on ${printedBy}`);
return printedBy;
}
+52 -3
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@@ -1,5 +1,6 @@
import { EventEmitter } from "node:events";
import type { PrinterStatus } from "@parking/devices";
import type { LedgerEventRow } from "@parking/db";
// Internal event bus for device-originated events (button presses, etc.).
// Hardware drivers / inbound device pushes emit here; business logic (entry
@@ -8,17 +9,41 @@ import type { PrinterStatus } from "@parking/devices";
export interface DeviceInputEvent {
readonly driverId: string; // e.g. "dingtian"
readonly deviceId: string; // which configured device (lane_devices id)
readonly deviceId: string; // which configured device (devices id)
readonly input: number; // 1-based input/channel
readonly edge: "on" | "off"; // active / inactive
readonly at: string; // ISO-8601 (server receive time)
readonly source: "push" | "poll";
}
// A credential read: a ticket scanned at exit, a plate from LPR, a card at a reader.
// Drives identity-based flows (exit validation, permits, pay-station lookup). `kind`
// mirrors IdentitySource. See parking-session.md.
export interface DeviceReadEvent {
readonly driverId: string;
readonly deviceId: string; // devices id of the reader/scanner/camera
readonly value: string; // the ticket id / plate / card number
readonly kind: "ticket" | "plate" | "qr" | "card";
readonly at: string; // ISO-8601
}
/**
* The decision a read produced. Returned by the read flows so a SYNCHRONOUS reader
* (e.g. the QR reader, whose HTTP reply drives its beep + output) can answer the
* device. A fire-and-forget reader simply ignores it. See wiki/entities/gee-qr-er80.md.
*/
export interface ReadOutcome {
/** Was the vehicle admitted/exited (barrier opened)? Drives the reader's beep. */
readonly accepted: boolean;
/** Which way it went, when known (permit/exit infer this). */
readonly direction?: "entry" | "exit";
/** Human-readable reason (for logs / the reader UI), esp. on reject. */
readonly reason?: string;
}
/** A printer's status as tracked by the live monitor (status + identity). */
export interface PrinterStatusEvent {
readonly deviceId: string; // lane_devices id
readonly lane: number;
readonly deviceId: string; // devices id
readonly driverId: string;
readonly role?: string; // entry-dispenser | booth-receipt
readonly status: PrinterStatus;
@@ -33,6 +58,15 @@ class DeviceEventBus extends EventEmitter {
return () => this.off("input", cb);
}
/** A credential read (ticket scan, plate, card). */
emitRead(event: DeviceReadEvent): void {
this.emit("read", event);
}
onRead(cb: (event: DeviceReadEvent) => void): () => void {
this.on("read", cb);
return () => this.off("read", cb);
}
/** Emitted by the printer monitor whenever a printer's status CHANGES. */
emitPrinterStatus(event: PrinterStatusEvent): void {
this.emit("printer-status", event);
@@ -41,6 +75,21 @@ class DeviceEventBus extends EventEmitter {
this.on("printer-status", cb);
return () => this.off("printer-status", cb);
}
/**
* Emitted AFTER a signed business event is appended to the ledger (entry, exit,
* payment, void, …). The payload is the persisted row — business facts only, no
* secrets — so it is safe to fan out to authenticated booth clients over the WS.
* This is a read-side notification ONLY: it never feeds back into append/sign/
* chain logic. See event-log.ts (emitted from EventLog.append) and routes/ws.ts.
*/
emitLedger(event: LedgerEventRow): void {
this.emit("ledger", event);
}
onLedger(cb: (event: LedgerEventRow) => void): () => void {
this.on("ledger", cb);
return () => this.off("ledger", cb);
}
}
/** Process-wide device event bus. */
+155
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@@ -0,0 +1,155 @@
import { and, eq, devices, type Db, type DeviceRow } from "@parking/db";
// Device resolution for the pool-of-spaces model — NO lane. A parking lot is one
// pool with a flexible set of entry/exit points. Direction lives on each RELAY
// inside an access controller, and readers/cameras BIND to a (controller, relay).
// See wiki/concepts/entry-exit-points.md.
/** A flow direction. "both" = one relay/barrier serving entry AND exit. */
export type Direction = "entry" | "exit" | "both";
/** A concrete flow a credential/button drives (never "both"). */
export type FlowDirection = "entry" | "exit";
/** One relay on an access controller: which barrier it opens, in which direction,
* and (optionally) the input terminal its entry button is wired to. */
export interface RelaySpec {
/** 1-based relay channel on the board (the driver's pulseOpen(doorId)). */
readonly relay: number;
readonly direction: Direction;
/** 1-based input terminal of the entry button that fires this relay (transient
* entry). Absent = no button at this barrier (subscriber/reader-driven only). */
readonly button?: number;
}
/** Access controller config (the `relays[]` map + connection fields). */
interface AccessConfig {
readonly relays?: RelaySpec[];
readonly [k: string]: unknown;
}
/** Reader/camera config: optional binding to a controller relay. */
interface BoundConfig {
/** The access `devices.id` this reader/camera sits at. */
readonly controllerId?: string;
/** The relay on that controller it opens. */
readonly relay?: number;
/** Fallback direction when not bound to a relay. */
readonly direction?: Direction;
readonly [k: string]: unknown;
}
/** A resolved barrier: the controller row + the specific relay to pulse. */
export interface ResolvedRelay {
readonly controller: DeviceRow;
readonly relay: number;
readonly direction: Direction;
}
/** All enabled access controller rows. */
function accessRows(db: Db): DeviceRow[] {
return db
.select()
.from(devices)
.where(eq(devices.category, "access"))
.all()
.filter((r) => r.enabled);
}
/** The relay specs declared on an access controller (defaults to none). */
export function relaysOf(row: DeviceRow): RelaySpec[] {
const cfg = row.config as AccessConfig;
return Array.isArray(cfg.relays) ? cfg.relays : [];
}
/**
* Resolve a button press to the relay it fires: the access controller with this
* deviceId, and the relay whose `button` terminal matches the pressed input. Only
* an ENTRY (or both) relay is a transient-entry trigger. Returns null otherwise.
*/
export function relayForButton(db: Db, controllerId: string, terminal: number): ResolvedRelay | null {
const row = db
.select()
.from(devices)
.where(and(eq(devices.id, controllerId), eq(devices.category, "access")))
.get();
if (!row || !row.enabled) return null;
const spec = relaysOf(row).find((r) => r.button === terminal);
if (!spec) return null;
if (spec.direction !== "entry" && spec.direction !== "both") return null;
return { controller: row, relay: spec.relay, direction: spec.direction };
}
/**
* Resolve a reader/camera to the relay it opens. Preferred: its config binding
* (controllerId + relay) → exactly that barrier, direction inherited from the relay
* spec. Fallback (unbound): the device's config.direction + the first relay site-
* wide matching that direction — keeps the single-barrier case trivial. Null if
* nothing resolves (no barrier to open).
*/
export function relayForDevice(db: Db, deviceRow: DeviceRow): ResolvedRelay | null {
const cfg = deviceRow.config as BoundConfig;
// Bound: follow controllerId + relay to the exact barrier.
if (cfg.controllerId && typeof cfg.relay === "number") {
const controller = db
.select()
.from(devices)
.where(and(eq(devices.id, cfg.controllerId), eq(devices.category, "access")))
.get();
if (controller && controller.enabled) {
const spec = relaysOf(controller).find((r) => r.relay === cfg.relay);
if (spec) return { controller, relay: spec.relay, direction: spec.direction };
}
return null;
}
// Unbound: fall back to the device's declared direction + first matching relay.
const want = cfg.direction;
if (want === "entry" || want === "exit" || want === "both") {
return firstRelayByDirection(db, want === "both" ? "entry" : want);
}
return null;
}
/**
* The first relay site-wide serving a direction ("both" relays match either).
* Used as the unbound fallback and where a flow only needs "an exit barrier".
*/
export function firstRelayByDirection(db: Db, direction: FlowDirection): ResolvedRelay | null {
for (const controller of accessRows(db)) {
const spec = relaysOf(controller).find(
(r) => r.direction === direction || r.direction === "both",
);
if (spec) return { controller, relay: spec.relay, direction: spec.direction };
}
return null;
}
/** Enabled devices of a category whose direction matches `want` (or is "both").
* Direction is inherited from each device's bound relay, else its config fallback.
* Used for snapshots: every entry/exit camera fires on an entry/exit. */
export function devicesByDirection(
db: Db,
category: DeviceRow["category"],
want: FlowDirection,
): DeviceRow[] {
return db
.select()
.from(devices)
.where(eq(devices.category, category))
.all()
.filter((r) => {
if (!r.enabled) return false;
const d = directionOf(db, r);
return d === want || d === "both";
});
}
/** The direction a reader/camera operates in (inherited from its bound relay, or
* its config fallback). "both" when undetermined → the flow infers. */
export function directionOf(db: Db, deviceRow: DeviceRow): Direction {
const resolved = relayForDevice(db, deviceRow);
if (resolved) return resolved.direction;
const cfg = deviceRow.config as BoundConfig;
return cfg.direction === "entry" || cfg.direction === "exit" ? cfg.direction : "both";
}
+249
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@@ -0,0 +1,249 @@
import { randomInt } from "node:crypto";
import { eq, sessions, siteConfig, type Db, type DeviceRow } from "@parking/db";
import {
NoPrinterAvailableError,
printWithFailover,
registry,
type AccessControlDevice,
type PrinterDevice,
type PrinterInstance,
type TicketData,
type TicketHeader,
} from "@parking/devices";
import type { FastifyBaseLogger } from "fastify";
import type { DeviceInputEvent } from "./device-events.js";
import { getOccupancy } from "./occupancy.js";
import type { EventLog } from "./event-log.js";
import { devicesByDirection, relayForButton, type ResolvedRelay } from "./device-resolve.js";
import { snapshotAsync } from "./snapshot.js";
// The transient ENTRY flow: a button press → print a ticket → sign a vehicle_entry
// → open the barrier. The button is wired into an access controller's input; the
// admin maps that input terminal to a relay (config.relays[].button), so a press
// resolves to exactly the entry relay it should open. See entry-exit-points.md.
//
// Two invariants from the threat model + safety analysis:
// 1. SIGNED BEFORE OPEN — the vehicle_entry is appended to the signed ledger
// BEFORE pulseOpen fires; an open with no matching signed event is the fraud
// signal (wiki/concepts/append-only-event-chain.md).
// 2. HOLD ON PRINT FAILURE — a transient with no ticket can't pay on exit, so if
// all printers are down we do NOT open. We sign an `anomaly` (attempt, ticket
// unprinted) and leave the barrier closed; the operator handles the held car.
// Crucially, NO vehicle_entry is written in that case — we never record an
// "entered" event for a car that didn't get in (decision 2026-06-15).
//
// Ordering: print → (ok) sign vehicle_entry → pulseOpen → snapshot → cache session.
// (fail) sign anomaly, stop.
export class EntryFlow {
readonly #db: Db;
readonly #log: EventLog;
readonly #logger: FastifyBaseLogger;
/** Guard against double-fire from the same physical press (on edge only). */
readonly #inFlight = new Set<string>();
constructor(db: Db, log: EventLog, logger: FastifyBaseLogger) {
this.#db = db;
this.#log = log;
this.#logger = logger;
}
/** Handle a device input edge. Acts only on the rising ("on") edge of an entry
* button — an input terminal mapped to an entry relay on its controller. */
async onInput(e: DeviceInputEvent): Promise<void> {
if (e.edge !== "on") return; // release edge is just telemetry
// The firing device must be an access controller, and the pressed input terminal
// must map to an ENTRY (or both) relay — that's an entry button. Anything else
// (reader/printer edge, exit-only relay's input) is not a transient-entry trigger.
const resolved = relayForButton(this.#db, e.deviceId, e.input);
if (!resolved) return;
const key = `${e.deviceId}:${e.input}`;
if (this.#inFlight.has(key)) return; // ignore re-fire while one is processing
this.#inFlight.add(key);
try {
await this.#runEntry(resolved);
} catch (err) {
this.#logger.error(`entry-flow failed: ${(err as Error).message}`);
} finally {
this.#inFlight.delete(key);
}
}
async #runEntry(resolved: ResolvedRelay): Promise<void> {
// CAPACITY GATE (transient only). When the lot is full, refuse transient entry:
// no ticket, no vehicle_entry, no open — sign an anomaly. Permit holders are NOT
// gated here (their flow ignores site-full; their own maxConcurrent applies), so
// subscribers aren't locked out. "Full" is a soft policy seam for valet over-
// capacity later. See wiki/concepts/capacity-occupancy.md.
const occ = getOccupancy(this.#db);
if (occ.full) {
await this.#log.append({
type: "anomaly",
payload: { reason: `transient entry refused — lot full (${occ.count}/${occ.capacity})`, entryRefused: true, full: true },
});
this.#logger.warn(`transient entry REFUSED: full (${occ.count}/${occ.capacity})`);
return;
}
const ticketId = newTicketId();
const issuedAt = new Date().toISOString();
const printers = this.#loadPrinters();
// 1. PRINT FIRST. The ticket is the transient's session key — no ticket, no entry.
const ticket: TicketData = { ticketId, issuedAt, header: this.#ticketHeader() };
try {
const printedBy = await printWithFailover(printers, "entry-dispenser", (d: PrinterDevice) =>
d.printTicket(ticket),
);
this.#logger.info(`entry ticket ${ticketId} printed on ${printedBy}`);
} catch (err) {
// HOLD: do not open, do not record a vehicle_entry. Sign an anomaly so the
// failed attempt is in the tamper-evident record for the operator.
const reason =
err instanceof NoPrinterAvailableError ? err.message : (err as Error).message;
await this.#log.append({
type: "anomaly",
identity: ticketId,
payload: { reason: `entry held — ticket not printed: ${reason}`, ticketPrinted: false },
});
this.#logger.warn(`entry HELD: ${reason} (barrier NOT opened)`);
return;
}
// 2. SIGN the vehicle_entry — BEFORE the relay fires (the core invariant).
await this.#log.append({
type: "vehicle_entry",
direction: "entry",
source: "ticket",
identity: ticketId,
payload: { sessionRef: ticketId, ticketPrinted: true },
occurredAt: issuedAt,
});
// 3. OPEN the resolved entry barrier (intent only; the barrier owns the close).
const access = this.#buildAccess(resolved.controller);
if (access) await access.pulseOpen(resolved.relay);
else this.#logger.warn(`entry signed for ${ticketId} but the entry relay won't build`);
// 3b. SNAPSHOT — fire the entry camera(s), never awaited (evidence, not a gate;
// a camera failure must not delay or block the already-open barrier).
void snapshotAsync({
db: this.#db,
direction: "entry",
identity: ticketId,
logger: this.#logger,
}).catch((err) => this.#logger.error(`entry snapshot error: ${(err as Error).message}`));
// 4. Update the session projection cache (rebuildable from the ledger; this is
// just a fast read-model, never the source of truth).
try {
this.#db
.insert(sessions)
.values({ id: ticketId, identity: ticketId, source: "ticket", enteredAt: issuedAt, state: "open" })
.run();
} catch (err) {
// Cache miss is non-fatal — the ledger is authoritative and the projection
// can be rebuilt. Log it; don't fail the (already-open) entry.
this.#logger.error(`session-cache insert failed for ${ticketId}: ${(err as Error).message}`);
}
}
/** Build a live access adapter from a resolved controller row, or null. */
#buildAccess(row: DeviceRow): AccessControlDevice | null {
const driver = registry.get(row.driverId);
if (!driver) return null;
try {
return driver.create(row.config as never) as AccessControlDevice;
} catch {
return null;
}
}
/** Build live ENTRY printer instances (for failover selection). */
#loadPrinters(): PrinterInstance[] {
const rows = devicesByDirection(this.#db, "printer", "entry"); // already enabled-filtered
const out: PrinterInstance[] = [];
for (const row of rows) {
const driver = registry.get(row.driverId);
if (!driver) continue;
const cfg = row.config as Record<string, unknown>;
const role = cfg.role === "booth-receipt" ? "booth-receipt" : "entry-dispenser";
try {
out.push({
id: row.id,
role,
failoverRank: typeof cfg.failoverRank === "number" ? cfg.failoverRank : 0,
device: driver.create(cfg as never) as PrinterDevice,
});
} catch {
// skip a printer whose config won't build
}
}
return out;
}
/** Park identity for the ticket header, from site_config (all fields optional;
* the driver prints only what's set). See wiki/concepts/site-metadata.md. */
#ticketHeader(): TicketHeader | undefined {
const row = this.#db.select().from(siteConfig).where(eq(siteConfig.id, 1)).get();
if (!row) return undefined;
return {
parkName: row.parkName,
operatorName: row.operatorName,
nius: row.nius,
address: row.address,
phone: row.phone,
};
}
}
/**
* Opaque, unguessable transient ticket id (wiki/concepts/ticket-encoding.md).
*
* Format: 13 digits = 12 cryptographically-random digits + 1 trailing Luhn check
* digit. All-numeric so the booth can read it on ANY legacy 1D barcode scanner and
* an operator can hand-key it if every reader is down. RANDOM (not sequential): the
* id must stay unguessable so an attacker can't iterate to claim a cheaper session
* — the anti-fraud property the wiki settles. 12 random digits = 10^12 space, so
* collisions are negligible at lot scale; the unique constraints on
* ledger_events.index / sessions.id are the backstop. The Luhn digit lets a manual
* entry reject a typo (validateTicketCode) instead of failing as "session not found".
*/
function newTicketId(): string {
let body = "";
for (let i = 0; i < 12; i += 1) body += String(randomInt(10));
return body + luhnCheckDigit(body);
}
/** The Luhn (mod-10) check digit for an all-digit string. */
function luhnCheckDigit(digits: string): string {
let sum = 0;
// Walk right-to-left; the check digit sits at position 0 from the right, so the
// last body digit is an "even" position that gets doubled.
let double = true;
for (let i = digits.length - 1; i >= 0; i -= 1) {
let d = digits.charCodeAt(i) - 48;
if (double) {
d *= 2;
if (d > 9) d -= 9;
}
sum += d;
double = !double;
}
return String((10 - (sum % 10)) % 10);
}
/**
* True if `code` is a well-formed ticket code: all digits and a valid Luhn checksum.
* Lets a manual-entry path (operator types the code off the ticket when readers are
* down) reject a typo up front. A scanned/looked-up id that predates this format
* (e.g. legacy `T-<uuid>`) won't pass — callers should only gate MANUAL entry on it,
* never reject an id that already exists in the ledger. See ticket-encoding.md.
*/
export function validateTicketCode(code: string): boolean {
if (!/^\d{13}$/.test(code)) return false;
const body = code.slice(0, 12);
return luhnCheckDigit(body) === code[12];
}
+85 -19
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@@ -1,6 +1,6 @@
import { createHash, randomUUID } from "node:crypto";
import { desc, events, type Db, type EventRow } from "@parking/db";
import type { Direction, IdentitySource, ParkingEventType, Signer } from "@parking/shared";
import { desc, ledgerEvents, type Db, type LedgerEventRow } from "@parking/db";
import type { Direction, IdentitySource, LedgerEventType, LedgerPayload, Signer } from "@parking/shared";
// The append-only, hash-chained, signed event log — the system's core anti-fraud
// primitive (see wiki/concepts/append-only-event-chain.md). Entry/exit and device
@@ -16,11 +16,12 @@ import type { Direction, IdentitySource, ParkingEventType, Signer } from "@parki
// so we guard it with an in-process async lock as well.
export interface AppendInput {
readonly type: ParkingEventType;
readonly lane: number;
readonly type: LedgerEventType;
readonly direction?: Direction | null;
readonly source?: IdentitySource | null;
readonly identity?: string | null;
/** Type-specific business data (amount, tariffVersionId, sessionRef…). Signed. */
readonly payload?: LedgerPayload | null;
/** Event time (ISO-8601). Defaults to now. */
readonly occurredAt?: string;
}
@@ -36,9 +37,9 @@ export function canonicalize(e: {
index: number;
type: string;
direction: string | null;
lane: number;
source: string | null;
identity: string | null;
payload: Record<string, unknown> | null;
occurredAt: string;
prevHash: string | null;
}): string {
@@ -46,57 +47,107 @@ export function canonicalize(e: {
e.index,
e.type,
e.direction ?? null,
e.lane,
e.source ?? null,
e.identity ?? null,
// Payload is part of the signed form so business data is tamper-evident.
// Serialize with sorted keys for byte-stability (object key order must not
// change a signature). null when the event type carries no payload.
canonicalPayload(e.payload),
e.occurredAt,
e.prevHash ?? null,
]);
}
/** Deterministic (key-sorted, recursive) JSON for the payload slot. */
function canonicalPayload(p: Record<string, unknown> | null | undefined): unknown {
if (p == null) return null;
const sort = (v: unknown): unknown => {
if (Array.isArray(v)) return v.map(sort);
if (v && typeof v === "object") {
return Object.keys(v as Record<string, unknown>)
.sort()
.reduce<Record<string, unknown>>((o, k) => {
o[k] = sort((v as Record<string, unknown>)[k]);
return o;
}, {});
}
return v;
};
return sort(p);
}
/** SHA-256 of an event's canonical form (hex) — what the NEXT event chains to. */
export function hashEvent(canonical: string): string {
return createHash("sha256").update(canonical, "utf8").digest("hex");
}
/** Resolve a verifier for an event's stored `keyId` (see signer.buildVerifier).
* Returns undefined when the key that signed an event is not available. */
export type SignerResolver = (keyId: string) => Signer | undefined;
export class EventLog {
readonly #db: Db;
readonly #signer: Signer;
/** Picks the verifying signer per event keyId; lets a chain span key rotations
* (JWT-fallback → dedicated key → ATECC608). Defaults to the append signer for
* callers that don't pass one (single-key chains, tests). */
readonly #resolveVerifier: SignerResolver;
/** Optional read-side notification, fired AFTER a row is durably inserted. Used
* to fan the event out to live booth clients (WS). It is best-effort and must
* NOT influence the append/sign/chain path — a throwing/absent sink is ignored. */
readonly #onAppended?: (row: LedgerEventRow) => void;
/** Serialize appends: each waits for the previous to finish. */
#tail: Promise<unknown> = Promise.resolve();
constructor(db: Db, signer: Signer) {
constructor(
db: Db,
signer: Signer,
resolveVerifier?: SignerResolver,
onAppended?: (row: LedgerEventRow) => void,
) {
this.#db = db;
this.#signer = signer;
this.#resolveVerifier = resolveVerifier ?? (() => signer);
this.#onAppended = onAppended;
}
/** Append one event to the chain. Returns the persisted row. Serialized. */
append(input: AppendInput): Promise<EventRow> {
append(input: AppendInput): Promise<LedgerEventRow> {
const run = this.#tail.then(() => this.#appendNow(input));
// Keep the chain going even if one append rejects (don't wedge the lock).
this.#tail = run.catch(() => undefined);
return run;
// Read-side notification, AFTER the row is durably written. Wrapped so a
// failing sink can never reject the append or break the chain lock above.
return run.then((row) => {
try {
this.#onAppended?.(row);
} catch {
// best-effort fan-out only — swallow.
}
return row;
});
}
#appendNow(input: AppendInput): EventRow {
#appendNow(input: AppendInput): LedgerEventRow {
const prev = this.#db
.select()
.from(events)
.orderBy(desc(events.index))
.from(ledgerEvents)
.orderBy(desc(ledgerEvents.index))
.limit(1)
.get();
const index = (prev?.index ?? 0) + 1;
const prevHash = prev ? hashEvent(canonicalize(prev)) : null;
const occurredAt = input.occurredAt ?? new Date().toISOString();
const payload = input.payload ?? null;
const canonical = canonicalize({
index,
type: input.type,
direction: input.direction ?? null,
lane: input.lane,
source: input.source ?? null,
identity: input.identity ?? null,
payload,
occurredAt,
prevHash,
});
@@ -106,26 +157,33 @@ export class EventLog {
index,
type: input.type,
direction: input.direction ?? null,
lane: input.lane,
source: input.source ?? null,
identity: input.identity ?? null,
payload,
occurredAt,
prevHash,
signature: this.#signer.sign(canonical),
keyId: this.#signer.keyId,
};
this.#db.insert(events).values(row).run();
return row as EventRow;
this.#db.insert(ledgerEvents).values(row).run();
return row as LedgerEventRow;
}
/**
* Walk the chain oldest→newest and recompute hashes + signatures. Returns the
* first detected break, or { ok: true }. This is what reconciliation and an
* integrity self-check call. Catches: tampered content, reordering, a deleted
* row (index gap), and a forged/invalid signature.
* row (index gap), a forged/invalid signature, and an event signed under a key
* that is no longer configured.
*
* Each row is verified against the signer for ITS OWN `keyId`, not the current
* append signer — so a chain that spans a key rotation (e.g. early events under
* the JWT_SECRET fallback, later ones under a dedicated EVENT_SIGNING_KEY) still
* verifies end to end. See signer.buildVerifier.
*/
verifyChain(): { ok: true } | { ok: false; index: number; reason: string } {
const rows = this.#db.select().from(events).orderBy(events.index).all();
const rows = this.#db.select().from(ledgerEvents).orderBy(ledgerEvents.index).all();
let expectedIndex = 1;
let prevHash: string | null = null;
for (const row of rows) {
@@ -135,8 +193,16 @@ export class EventLog {
if ((row.prevHash ?? null) !== prevHash) {
return { ok: false, index: row.index, reason: "prevHash does not match chain" };
}
const verifier = this.#resolveVerifier(row.keyId);
if (!verifier) {
return {
ok: false,
index: row.index,
reason: `no signer for keyId "${row.keyId}" (key not configured)`,
};
}
const canonical = canonicalize(row);
if (!this.#signer.verify(canonical, row.signature)) {
if (!verifier.verify(canonical, row.signature)) {
return { ok: false, index: row.index, reason: "signature invalid (content tampered or wrong key)" };
}
prevHash = hashEvent(canonical);
+447
View File
@@ -0,0 +1,447 @@
import { desc, eq, ledgerEvents, sessions, tariffVersions, tariffs, type Db, type DeviceRow } from "@parking/db";
import { registry, type AccessControlDevice } from "@parking/devices";
import { firstRelayByDirection, type ResolvedRelay } from "./device-resolve.js";
import { snapshotAsync } from "./snapshot.js";
import { computeFee, type LedgerPayload, type TariffStructure } from "@parking/shared";
import type { FastifyBaseLogger } from "fastify";
import type { DeviceReadEvent, ReadOutcome } from "./device-events.js";
import type { EventLog } from "./event-log.js";
// The EXIT flow (pay-on-foot model): a credential read at the exit lane → look up
// the session → validate it is PAID and within the walk-back grace → sign a
// vehicle_exit → open. Payment is decoupled from exit (it happens earlier at the
// pay station); the exit lane only VALIDATES. See wiki/concepts/parking-session.md.
//
// Validation is a fold over the SIGNED ledger (the authoritative record), not the
// projection cache: find the open vehicle_entry for this identity, then a covering
// payment within grace. The cache is updated after, for fast reads.
//
// REJECT (barrier stays closed) when unpaid / over grace — this is correct business
// logic, NOT a fail-state. "Exit fails OPEN" (fail-state-safety) is about the SYSTEM
// being unable to decide (power/host loss), not about an unpaid car; an unpaid driver
// is sent back to the pay station, the rejection is logged.
//
// NOTE: payments / the pay station don't exist yet, so no session is ever PAID — every
// transient exit currently REJECTS (logged). That's the correct end-state; it becomes
// passable once the pay-station + `payment` events land.
interface SessionView {
readonly identity: string;
readonly enteredAt: string;
readonly open: boolean; // no vehicle_exit yet
readonly paidAt: string | null; // latest payment time, if any
readonly graceExitMin: number | null; // from the payment's tariff context, if known
// Within the FREE entry-grace window (a quick in-and-out that the tariff prices at
// 0). When true the exit opens without a pay-station visit — we mint a $0 payment so
// the ledger's "an exit is covered by a payment" invariant still holds. Null when no
// active tariff resolves (then we fall back to the normal paid check).
readonly freeGrace: { tariffVersionId: string; currency: string; graceExitMin: number } | null;
}
/** Result of a booth-driven exit (POST /api/exit). `ok=false` = validation rejected
* (nothing signed beyond an anomaly). `ok=true, opened=false` = exit IS signed but
* the barrier didn't open (payment stands; operator opens manually). */
export type BoothExitResult =
| { ok: false; status: "invalid" | "no_session" | "closed" | "unpaid" | "grace_expired"; reason: string }
| { ok: true; opened: true }
| { ok: true; opened: false; reason: string };
/** Result of a human-intervention barrier re-open (POST /api/barrier/reopen).
* `ok=false` = refused (no session / unpaid). `ok=true, opened=false` = the
* intervention was recorded (signed anomaly) but the relay did not fire. */
export type BoothReopenResult =
| { ok: false; reason: string }
| { ok: true; opened: boolean; reason?: string };
export class ExitFlow {
readonly #db: Db;
readonly #log: EventLog;
readonly #logger: FastifyBaseLogger;
readonly #inFlight = new Set<string>();
constructor(db: Db, log: EventLog, logger: FastifyBaseLogger) {
this.#db = db;
this.#log = log;
this.#logger = logger;
}
/**
* BOOTH-driven exit: the operator (not a reader at the lane) opens the barrier for
* a ticket. Runs the SAME validation as the reader path — there is no booth-only
* bypass that admits an unpaid car (see wiki/concepts/booth-exit-flow.md +
* threat-model.md). On a valid session it signs vehicle_exit, resolves AN exit
* relay site-wide, pulses it, and fires the exit snapshot.
*
* Returns a discriminated result so the route can react precisely:
* - { ok: false, status } when validation rejects (unpaid / no session / closed)
* — nothing is signed beyond the existing anomaly; the operator takes payment.
* - { ok: true, opened: true } on a clean exit.
* - { ok: true, opened: false } when the exit IS signed but the relay open FAILED
* (offline controller / no exit relay). The signed payment + vehicle_exit STAND
* (money was taken, the car is owed an exit) and an `anomaly` is appended so the
* operator opens manually. Payment is never rolled back.
*/
async exitForBooth(identity: string): Promise<BoothExitResult> {
const id = identity.trim();
if (!id) return { ok: false, status: "invalid", reason: "ticket id required" };
const key = `booth:${id}`;
if (this.#inFlight.has(key)) return { ok: false, status: "invalid", reason: "exit already in progress" };
this.#inFlight.add(key);
try {
const view = this.#sessionFor(id);
// No open session — unknown/closed ticket. Sign an anomaly (same as the reader
// path) so a booth attempt on a bad ticket is auditable.
if (!view || !view.open) {
const reason = view ? "exit refused — session already closed" : "exit refused — no open session for ticket";
await this.#log.append({ type: "anomaly", identity: id, payload: { reason, exitRefused: true, source: "booth" } });
this.#logger.warn(`booth exit refused (${id}): ${reason}`);
return { ok: false, status: view ? "closed" : "no_session", reason };
}
// PAID + within grace, OR free entry-grace — the same checks the reader uses.
const freeGrace = view.paidAt == null && view.freeGrace != null;
const paid = view.paidAt != null;
const withinGrace =
paid && view.graceExitMin != null && Date.now() - Date.parse(view.paidAt!) <= view.graceExitMin * 60_000;
if (!freeGrace && (!paid || !withinGrace)) {
const reason = !paid
? "exit refused — not paid (take payment first)"
: "exit refused — walk-back grace expired (top-up required)";
await this.#log.append({ type: "anomaly", identity: id, payload: { reason, exitRefused: true, source: "booth" } });
this.#logger.warn(`booth exit refused (${id}): ${reason}`);
return { ok: false, status: paid ? "grace_expired" : "unpaid", reason };
}
// Free entry-grace path: mint the $0 payment first (ledger invariant), as the
// reader path does.
if (freeGrace && view.freeGrace) {
await this.#log.append({
type: "payment",
identity: id,
payload: {
sessionRef: id,
amountMinor: 0,
currency: view.freeGrace.currency,
tariffVersionId: view.freeGrace.tariffVersionId,
graceExitMin: view.freeGrace.graceExitMin,
reason: "free entry-grace (no charge)",
},
});
}
// Resolve AN exit barrier site-wide (no reader binding to follow at the booth).
const resolved = firstRelayByDirection(this.#db, "exit");
// Sign the vehicle_exit regardless of whether a relay resolves — the decision
// to let the car out has been made and validated. Then attempt the open.
await this.#signExit(id);
if (!resolved) {
await this.#openFailedAnomaly(id, "no exit relay configured");
return { ok: true, opened: false, reason: "exit recorded, but no exit barrier is configured — open manually" };
}
const access = this.#buildAccess(resolved.controller);
if (!access) {
await this.#openFailedAnomaly(id, "exit controller would not build");
return { ok: true, opened: false, reason: "exit recorded, but the barrier is unavailable — open manually" };
}
try {
await access.pulseOpen(resolved.relay);
} catch (err) {
await this.#openFailedAnomaly(id, `pulseOpen failed: ${(err as Error).message}`);
return { ok: true, opened: false, reason: "exit recorded, but the barrier did not open — open manually" };
}
this.#fireExitSnapshot(id);
this.#closeSessionCache(id);
return { ok: true, opened: true };
} finally {
this.#inFlight.delete(key);
}
}
/**
* HUMAN-INTERVENTION barrier re-open for an ACTIVE session (booth Active Sessions
* list). The barrier is unconfirmed; a car may be stuck after a damaged-ticket
* read, a dead scanner, or a phantom re-close (animal / bag / box). The operator
* opens the barrier with a signed trace.
*
* Guard: requires a PAYMENT — no payment, no re-open (the no-unpaid-bypass rule;
* the UI also hides the button). Unlike exitForBooth this does NOT sign a
* `vehicle_exit` (the session may already be exited; a second exit would
* double-count occupancy). It re-pulses the exit relay and signs an `anomaly`
* ("manual barrier open", attributed). Idempotent-safe per identity via #inFlight.
* See wiki/concepts/booth-exit-flow.md.
*/
async reopenBarrier(identity: string, operator?: string): Promise<BoothReopenResult> {
const id = identity.trim();
if (!id) return { ok: false, reason: "ticket id required" };
const view = this.#sessionFor(id);
if (!view) return { ok: false, reason: "no session for ticket" };
// No payment → no re-open. The barrier-open action is only for sessions that
// have been paid (or paid-then-exited within grace). An unpaid car takes the
// pay/exit flow instead — enforced here, not just in the UI.
if (view.paidAt == null) {
return { ok: false, reason: "session not paid — no barrier open without payment" };
}
const key = `reopen:${id}`;
if (this.#inFlight.has(key)) return { ok: false, reason: "re-open already in progress" };
this.#inFlight.add(key);
try {
const resolved = firstRelayByDirection(this.#db, "exit");
// Sign the audited anomaly FIRST (the intervention is recorded whether or not
// the physical open succeeds) — never a second vehicle_exit.
await this.#log.append({
type: "anomaly",
identity: id,
payload: {
reason: "manual barrier open (human intervention)",
source: "booth",
barrierReopen: true,
...(operator ? { operator } : {}),
},
});
if (!resolved) {
this.#logger.warn(`barrier re-open for ${id}: no exit relay configured`);
return { ok: true, opened: false, reason: "no exit barrier configured — open manually" };
}
const access = this.#buildAccess(resolved.controller);
if (!access) {
this.#logger.warn(`barrier re-open for ${id}: exit controller would not build`);
return { ok: true, opened: false, reason: "barrier unavailable — open manually" };
}
try {
await access.pulseOpen(resolved.relay);
} catch (err) {
this.#logger.error(`barrier re-open pulseOpen failed (${id}): ${(err as Error).message}`);
return { ok: true, opened: false, reason: "barrier did not open — open manually" };
}
this.#logger.info(`manual barrier open for ${id}${operator ? ` by ${operator}` : ""}`);
return { ok: true, opened: true };
} finally {
this.#inFlight.delete(key);
}
}
/** Handle a transient-ticket read at an exit barrier (the relay pre-resolved by the
* read dispatcher from the reader's binding, which has ruled out a permit match). */
async handleAt(resolved: ResolvedRelay, e: DeviceReadEvent): Promise<ReadOutcome> {
const key = `${e.deviceId}:${e.value}`;
if (this.#inFlight.has(key)) return { accepted: false, reason: "duplicate read in flight" };
this.#inFlight.add(key);
try {
return await this.#runExit(resolved, e);
} catch (err) {
this.#logger.error(`exit-flow failed: ${(err as Error).message}`);
return { accepted: false, reason: (err as Error).message };
} finally {
this.#inFlight.delete(key);
}
}
async #runExit(resolved: ResolvedRelay, e: DeviceReadEvent): Promise<ReadOutcome> {
const view = this.#sessionFor(e.value);
// No matching open session — unknown/duplicate ticket. Reject + log.
if (!view || !view.open) {
const reason = view ? "exit refused — session already closed" : "exit refused — no open session for credential";
await this.#log.append({
type: "anomaly",
identity: e.value,
payload: { reason, exitRefused: true },
});
this.#logger.warn(`exit refused: no open session for ${e.value}`);
return { accepted: false, direction: "exit", reason };
}
// FREE entry-grace: a quick in-and-out the tariff prices at 0 exits at the gate
// with no pay-station visit. Mint a signed $0 `payment` first so the ledger keeps
// its "an exit is covered by a payment" invariant, then fall through to open.
// Only when NOT already paid (a real payment, walk-back grace, takes precedence).
if (view.paidAt == null && view.freeGrace) {
await this.#log.append({
type: "payment",
// No `source` (not operator-keyed nor a read) — the payload reason marks it.
identity: e.value,
payload: {
sessionRef: e.value,
amountMinor: 0,
currency: view.freeGrace.currency,
tariffVersionId: view.freeGrace.tariffVersionId,
graceExitMin: view.freeGrace.graceExitMin,
reason: "free entry-grace (no charge)",
},
});
this.#logger.info(`exit free within entry-grace (${e.value})`);
return this.#signExitAndOpen(resolved, e);
}
// PAID + within walk-back grace?
const paid = view.paidAt != null;
const withinGrace =
paid &&
view.graceExitMin != null &&
Date.now() - Date.parse(view.paidAt!) <= view.graceExitMin * 60_000;
if (!paid || !withinGrace) {
const reason = !paid
? "exit refused — not paid (pay at the station)"
: "exit refused — walk-back grace expired (top-up required)";
await this.#log.append({
type: "anomaly",
identity: e.value,
payload: { reason, exitRefused: true, sessionRef: e.value },
});
this.#logger.warn(`exit refused (${e.value}): ${reason}`);
return { accepted: false, direction: "exit", reason };
}
// Valid (a real payment within walk-back grace): sign + open.
return this.#signExitAndOpen(resolved, e);
}
/** Sign the vehicle_exit BEFORE opening, then open, snapshot, and update the cache.
* Shared by the paid-exit and free-entry-grace paths. The caller has already
* established the session is allowed out (and, for grace, minted the $0 payment). */
async #signExitAndOpen(resolved: ResolvedRelay, e: DeviceReadEvent): Promise<ReadOutcome> {
await this.#signExit(e.value, e.kind === "plate" ? "lpr" : "ticket");
const access = this.#buildAccess(resolved.controller);
if (access) await access.pulseOpen(resolved.relay);
else this.#logger.warn(`exit signed for ${e.value} but the exit relay won't build`);
this.#fireExitSnapshot(e.value);
this.#closeSessionCache(e.value);
return { accepted: true, direction: "exit" };
}
/** Append the signed vehicle_exit. `source` defaults to "ticket" (booth/manual). */
async #signExit(identity: string, source: "ticket" | "lpr" = "ticket"): Promise<void> {
await this.#log.append({
type: "vehicle_exit",
direction: "exit",
source,
identity,
payload: { sessionRef: identity },
});
}
/** Fire the exit camera(s); never awaited (evidence, not a gate). */
#fireExitSnapshot(identity: string): void {
void snapshotAsync({
db: this.#db,
direction: "exit",
identity,
logger: this.#logger,
}).catch((err) => this.#logger.error(`exit snapshot error: ${(err as Error).message}`));
}
/** Update the (rebuildable) session projection cache to closed. */
#closeSessionCache(identity: string): void {
try {
this.#db
.update(sessions)
.set({ exitedAt: new Date().toISOString(), state: "closed" })
.where(eq(sessions.id, identity))
.run();
} catch (err) {
this.#logger.error(`session-cache close failed for ${identity}: ${(err as Error).message}`);
}
}
/** Record an audited anomaly when an exit was signed but the barrier didn't open.
* The payment + exit STAND; this tells the operator to open manually. */
async #openFailedAnomaly(identity: string, detail: string): Promise<void> {
await this.#log.append({
type: "anomaly",
identity,
payload: { reason: "exit signed but barrier open failed", detail, source: "booth", exitOpenFailed: true },
});
this.#logger.error(`booth exit open failed (${identity}): ${detail}`);
}
/** Fold the signed ledger into a session view for one identity (authoritative). */
#sessionFor(identity: string): SessionView | null {
const rows = this.#db
.select()
.from(ledgerEvents)
.where(eq(ledgerEvents.identity, identity))
.orderBy(ledgerEvents.index)
.all();
if (rows.length === 0) return null;
const entry = rows.find((r) => r.type === "vehicle_entry");
if (!entry) return null;
const exited = rows.some((r) => r.type === "vehicle_exit");
let paidAt: string | null = null;
let graceExitMin: number | null = null;
for (const r of rows) {
if (r.type === "payment") {
paidAt = r.occurredAt;
const p = (r.payload ?? {}) as LedgerPayload & { graceExitMin?: number };
if (typeof p.graceExitMin === "number") graceExitMin = p.graceExitMin;
}
}
// Free entry-grace: if the tariff prices entry→now at 0 (a quick in-and-out),
// the exit may open at the gate. Resolve against the tariff in force at entry,
// same as the pay station. Null when no payment is needed yet and no tariff
// resolves — then exit falls back to the normal paid check.
let freeGrace: SessionView["freeGrace"] = null;
if (!exited && paidAt == null) {
const tv = this.#tariffVersionFor(entry.occurredAt);
if (tv) {
const structure = tv.structure as unknown as TariffStructure;
const fee = computeFee(entry.occurredAt, new Date().toISOString(), structure);
if (fee === 0) {
freeGrace = {
tariffVersionId: tv.id,
currency: tv.currency,
graceExitMin: structure.gracePeriodExitMin,
};
}
}
}
return {
identity,
enteredAt: entry.occurredAt,
open: !exited,
paidAt,
graceExitMin,
freeGrace,
};
}
/** The tariff version in force at `at` — latest effectiveFrom ≤ at, for the
* (single, for now) active site tariff. Mirrors PayStation#tariffVersionFor. */
#tariffVersionFor(at: string) {
const tariff = this.#db.select().from(tariffs).where(eq(tariffs.scope, "site")).get();
if (!tariff) return null;
const versions = this.#db
.select()
.from(tariffVersions)
.where(eq(tariffVersions.tariffId, tariff.id))
.orderBy(desc(tariffVersions.effectiveFrom))
.all();
return versions.find((v) => v.effectiveFrom <= at) ?? null;
}
/** Build a live access adapter from a resolved controller row, or null. */
#buildAccess(row: DeviceRow): AccessControlDevice | null {
const driver = registry.get(row.driverId);
if (!driver) return null;
try {
return driver.create(row.config as never) as AccessControlDevice;
} catch {
return null;
}
}
}
-30
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@@ -1,30 +0,0 @@
import { laneDevices, type Db } from "@parking/db";
// Resolves a device instance id (lane_devices.id) to its lane number.
//
// Device pushes/events carry the `lane_devices` id (which device fired), not a
// lane. The event log wants the lane, so we keep a small in-memory id->lane map
// rebuilt from the DB at startup and refreshed whenever assignments change
// (assign/unassign). It's tiny (one row per device) and read on the hot path of
// every input event, so a cached map beats a per-event DB lookup.
export class LaneMap {
readonly #db: Db;
#byDeviceId = new Map<string, number>();
constructor(db: Db) {
this.#db = db;
}
/** (Re)load the id->lane map from the lane_devices table. */
refresh(): void {
const rows = this.#db.select().from(laneDevices).all();
const next = new Map<string, number>();
for (const r of rows) next.set(r.id, r.lane);
this.#byDeviceId = next;
}
/** Lane for a device instance id, or null if the device isn't known. */
laneFor(deviceId: string): number | null {
return this.#byDeviceId.get(deviceId) ?? null;
}
}
+49
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import { eq, ledgerEvents, siteConfig, type Db } from "@parking/db";
// Occupancy = a FOLD over the signed ledger: the count of vehicle_entry events
// with no matching vehicle_exit. Never a hand-maintained counter (which is
// editable + drifts) — the chain is the truth. See wiki/concepts/capacity-occupancy.md.
export interface Occupancy {
/** Cars currently inside (open sessions). */
readonly count: number;
/** Admin-set nominal capacity, or null = no limit. */
readonly capacity: number | null;
/** capacity − count, or null when uncapped. Can read 0 (or below) when full. */
readonly free: number | null;
/** True when count ≥ capacity (always false when uncapped). */
readonly full: boolean;
}
/** Count cars inside: entries minus exits, per identity, over the ledger. */
export function occupancyCount(db: Db): number {
const rows = db
.select({ type: ledgerEvents.type, identity: ledgerEvents.identity })
.from(ledgerEvents)
.all();
const balance = new Map<string, number>();
for (const r of rows) {
if (r.type === "vehicle_entry") balance.set(r.identity ?? "", (balance.get(r.identity ?? "") ?? 0) + 1);
else if (r.type === "vehicle_exit") balance.set(r.identity ?? "", (balance.get(r.identity ?? "") ?? 0) - 1);
}
let open = 0;
for (const v of balance.values()) if (v > 0) open += 1;
return open;
}
/** Admin-set capacity (null = uncapped). */
export function siteCapacity(db: Db): number | null {
const row = db.select().from(siteConfig).where(eq(siteConfig.id, 1)).get();
return row?.capacity ?? null;
}
export function getOccupancy(db: Db): Occupancy {
const count = occupancyCount(db);
const capacity = siteCapacity(db);
return {
count,
capacity,
free: capacity == null ? null : capacity - count,
full: capacity != null && count >= capacity,
};
}
+317
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@@ -0,0 +1,317 @@
import { desc, eq, ledgerEvents, sessions, tariffVersions, tariffs, type Db } from "@parking/db";
import { computeFee, type TariffStructure, type Tender } from "@parking/shared";
import type { FastifyBaseLogger } from "fastify";
import type { EventLog } from "./event-log.js";
// The PAY STATION: a customer pays for an open session BEFORE walking back to the
// car (pay-on-foot — payment is decoupled from exit). Two steps:
// 1. quote(identity) → look up the open session, price it against the tariff in
// force at entry, return the amount due (no side effect).
// 2. pay(identity, tender) → re-price, append a SIGNED `payment` event carrying
// the amount, currency, tender, tariffVersionId, and graceExitMin (so the exit
// flow can validate paid + within walk-back grace). Payment is a signed ledger
// event, never a mutable "paid" flag — an operator can't forge or delete it.
// See wiki/concepts/tariff.md, parking-session.md.
export class NoOpenSessionError extends Error {
constructor(identity: string) {
super(`no open session for ${identity}`);
this.name = "NoOpenSessionError";
}
}
export class NoTariffError extends Error {
constructor() {
super("no active tariff configured");
this.name = "NoTariffError";
}
}
export interface Quote {
readonly identity: string;
readonly enteredAt: string;
readonly amountMinor: number;
readonly currency: string;
readonly tariffVersionId: string;
readonly graceExitMin: number;
}
/** One row in the booth Active Sessions list. A session is "active" while it is
* still open OR exited-but-within-grace — because the barrier is UNCONFIRMED, a
* paid/exited car is presumed possibly-still-present until grace expires. The
* "Open barrier" action is offered only when `paidAt != null` (no payment, no
* button — the no-unpaid-bypass rule). See wiki/concepts/booth-exit-flow.md. */
export interface ActiveSession {
readonly identity: string;
readonly source: string | null;
readonly enteredAt: string;
/** null while still inside; set once a vehicle_exit is signed (may still be present). */
readonly exitedAt: string | null;
readonly open: boolean;
readonly paidAt: string | null;
/** Amount owed now (open + unpaid only; null otherwise / no tariff). */
readonly amountMinor: number | null;
readonly currency: string | null;
readonly withinGrace: boolean;
readonly graceExpiresAt: string | null;
}
/** Booth session view: everything the pay/exit modal needs in one read. */
export interface SessionLookup {
readonly identity: string;
readonly found: boolean;
/** Open = entered, no exit yet. */
readonly open: boolean;
readonly enteredAt: string | null;
readonly exitedAt: string | null;
/** Latest payment time, if paid. */
readonly paidAt: string | null;
/** Amount owed right now (the quote). Null when no session / no active tariff. */
readonly amountMinor: number | null;
readonly currency: string | null;
/** True when paid AND still within the walk-back grace window. */
readonly withinGrace: boolean;
/** ISO time the walk-back grace expires (paidAt + graceExitMin), if paid. */
readonly graceExpiresAt: string | null;
}
export class PayStation {
readonly #db: Db;
readonly #log: EventLog;
readonly #logger: FastifyBaseLogger;
constructor(db: Db, log: EventLog, logger: FastifyBaseLogger) {
this.#db = db;
this.#log = log;
this.#logger = logger;
}
/** Price an open session against the tariff in force at its entry. No side effect. */
quote(identity: string): Quote {
const entry = this.#openEntry(identity);
if (!entry) throw new NoOpenSessionError(identity);
const tv = this.#tariffVersionFor(entry.occurredAt);
if (!tv) throw new NoTariffError();
const structure = tv.structure as unknown as TariffStructure;
const amountMinor = computeFee(entry.occurredAt, new Date().toISOString(), structure);
return {
identity,
enteredAt: entry.occurredAt,
amountMinor,
currency: tv.currency,
tariffVersionId: tv.id,
graceExitMin: structure.gracePeriodExitMin,
};
}
/**
* Take payment for a session and append the signed `payment` event. Re-quotes at
* the moment of payment (the customer pays for time parked SO FAR). For an
* overstay top-up the same call re-prices entry→now and the exit flow's
* grace-window restarts from this payment. `overrideMinor` lets the operator set
* an arbitrary amount (lost ticket / dispute) — recorded as the charged amount.
*/
async pay(
identity: string,
tender: Tender,
overrideMinor?: number,
): Promise<{ amountMinor: number; currency: string }> {
const q = this.quote(identity);
const amountMinor = overrideMinor ?? q.amountMinor;
await this.#log.append({
type: "payment",
source: "manual",
identity,
payload: {
sessionRef: identity,
amountMinor,
currency: q.currency,
tender,
tariffVersionId: q.tariffVersionId,
// The exit flow reads graceExitMin off the payment to validate the
// walk-back window without re-resolving the tariff.
graceExitMin: q.graceExitMin,
...(overrideMinor != null ? { reason: "operator-set amount", quotedMinor: q.amountMinor } : {}),
},
});
// Update the projection cache (rebuildable; not the source of truth).
try {
this.#db.update(sessions).set({ state: "paid" }).where(eq(sessions.id, identity)).run();
} catch (err) {
this.#logger.error(`session-cache mark-paid failed for ${identity}: ${(err as Error).message}`);
}
this.#logger.info(`payment ${amountMinor} ${q.currency} (${tender}) for ${identity}`);
return { amountMinor, currency: q.currency };
}
/**
* One-read session view for the booth pay/exit modal: entry/exit times, paid
* state, amount owed now, and walk-back-grace status. Read-only — folds the
* signed ledger (authoritative). A quote failure (no tariff) leaves amount null
* rather than throwing, so the modal can still show the session.
*/
lookup(identity: string): SessionLookup {
const id = identity.trim();
const rows = this.#db
.select()
.from(ledgerEvents)
.where(eq(ledgerEvents.identity, id))
.orderBy(ledgerEvents.index)
.all();
const entry = rows.find((r) => r.type === "vehicle_entry");
if (!entry) {
return {
identity: id, found: false, open: false, enteredAt: null, exitedAt: null,
paidAt: null, amountMinor: null, currency: null, withinGrace: false, graceExpiresAt: null,
};
}
const exitRow = rows.find((r) => r.type === "vehicle_exit");
const open = !exitRow;
let paidAt: string | null = null;
let graceExitMin: number | null = null;
for (const r of rows) {
if (r.type === "payment") {
paidAt = r.occurredAt;
const p = (r.payload ?? {}) as { graceExitMin?: number };
if (typeof p.graceExitMin === "number") graceExitMin = p.graceExitMin;
}
}
const graceExpiresAt =
paidAt && graceExitMin != null ? new Date(Date.parse(paidAt) + graceExitMin * 60_000).toISOString() : null;
const withinGrace = graceExpiresAt != null && Date.now() <= Date.parse(graceExpiresAt);
// Amount owed now (best-effort; null if no tariff resolves). Only meaningful while open.
let amountMinor: number | null = null;
let currency: string | null = null;
if (open) {
try {
const q = this.quote(id);
amountMinor = q.amountMinor;
currency = q.currency;
} catch {
/* no active tariff — leave null; modal shows session without a price */
}
}
return {
identity: id, found: true, open,
enteredAt: entry.occurredAt, exitedAt: exitRow?.occurredAt ?? null,
paidAt, amountMinor, currency, withinGrace, graceExpiresAt,
};
}
/**
* All ACTIVE sessions for the booth list: still-open, OR exited-but-within-grace
* (the barrier is unconfirmed, so a paid/exited car is presumed possibly-present
* until grace expires). One ledger scan, grouped by identity (cheaper than N
* lookups). Sorted by entry time, newest first. Folds the SIGNED ledger
* (authoritative — not the sessions projection cache, which can drift).
* See wiki/concepts/booth-exit-flow.md.
*/
activeSessions(): ActiveSession[] {
const rows = this.#db.select().from(ledgerEvents).orderBy(ledgerEvents.index).all();
// Group the relevant events per identity in one pass.
type Acc = { enteredAt?: string; source: string | null; exitedAt?: string; paidAt?: string; graceExitMin?: number };
const byId = new Map<string, Acc>();
for (const r of rows) {
const id = r.identity;
if (!id) continue;
if (r.type === "vehicle_entry") {
const a = byId.get(id) ?? { source: r.source ?? null };
a.enteredAt = r.occurredAt;
a.source = r.source ?? a.source;
byId.set(id, a);
} else if (r.type === "vehicle_exit") {
const a = byId.get(id);
if (a) a.exitedAt = r.occurredAt;
} else if (r.type === "payment") {
const a = byId.get(id);
if (a) {
a.paidAt = r.occurredAt;
const p = (r.payload ?? {}) as { graceExitMin?: number };
if (typeof p.graceExitMin === "number") a.graceExitMin = p.graceExitMin;
}
}
}
const now = Date.now();
const out: ActiveSession[] = [];
for (const [identity, a] of byId) {
if (!a.enteredAt) continue; // no entry → not a real session
const open = a.exitedAt == null;
const graceExpiresAt =
a.paidAt && a.graceExitMin != null
? new Date(Date.parse(a.paidAt) + a.graceExitMin * 60_000).toISOString()
: null;
const withinGrace = graceExpiresAt != null && now <= Date.parse(graceExpiresAt);
// ACTIVE = still inside, OR exited but still within the (unconfirmed) grace window.
// An exited session past grace is presumed truly gone → omitted.
if (!open && !withinGrace) continue;
// Amount owed now: only meaningful for an open + unpaid session.
let amountMinor: number | null = null;
let currency: string | null = null;
if (open && a.paidAt == null) {
try {
const q = this.quote(identity);
amountMinor = q.amountMinor;
currency = q.currency;
} catch {
/* no active tariff — leave null */
}
}
out.push({
identity,
source: a.source,
enteredAt: a.enteredAt,
exitedAt: a.exitedAt ?? null,
open,
paidAt: a.paidAt ?? null,
amountMinor,
currency,
withinGrace,
graceExpiresAt,
});
}
// Newest entry first.
out.sort((x, y) => Date.parse(y.enteredAt) - Date.parse(x.enteredAt));
return out;
}
/** The vehicle_entry of an OPEN session for this identity (no later exit), or null. */
#openEntry(identity: string) {
const rows = this.#db
.select()
.from(ledgerEvents)
.where(eq(ledgerEvents.identity, identity))
.orderBy(ledgerEvents.index)
.all();
const entry = rows.find((r) => r.type === "vehicle_entry");
if (!entry) return null;
if (rows.some((r) => r.type === "vehicle_exit")) return null; // already closed
return entry;
}
/** The tariff version in force at `at` — latest effectiveFrom ≤ at, for the
* (single, for now) active site tariff. */
#tariffVersionFor(at: string) {
const tariff = this.#db.select().from(tariffs).where(eq(tariffs.scope, "site")).get();
if (!tariff) return null;
const versions = this.#db
.select()
.from(tariffVersions)
.where(eq(tariffVersions.tariffId, tariff.id))
.orderBy(desc(tariffVersions.effectiveFrom))
.all();
return versions.find((v) => v.effectiveFrom <= at) ?? null;
}
}
+222
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@@ -0,0 +1,222 @@
import { eq, ledgerEvents, permitCredentials, permitPlates, permits, sessions, type Db, type DeviceRow } from "@parking/db";
import { registry, type AccessControlDevice } from "@parking/devices";
import type { FastifyBaseLogger } from "fastify";
import type { DeviceReadEvent, ReadOutcome } from "./device-events.js";
import type { EventLog } from "./event-log.js";
import { type FlowDirection, type ResolvedRelay } from "./device-resolve.js";
import { snapshotAsync } from "./snapshot.js";
// PERMIT flow: a subscriber identified by card/QR/plate enters/exits without paying.
// Reached from the read dispatcher when a read matches a permit (not an open ticket).
// See wiki/entities/permit.md.
//
// Two optional, independent bindings:
// - car-count: `maxConcurrent` (default 1, null = unbound) — how many of the
// permit's cars may be inside at once; enforced over the session projection.
// - plate: optional `plates[]` — when set, a matching plate is an accepted identity
// too (card/QR OR plate). When unset, any car may use the permit's card/QR.
//
// Direction is inferred from session state for THAT car (the read credential value
// is the per-car session key): no open session → ENTRY; open session → EXIT. So a
// fleet permit can have several cars in at once, each its own session, and
// anti-passback falls out (a second "entry" on a car already in becomes its exit).
export interface PermitMatch {
readonly permitId: string;
/** The specific credential/plate value read — the per-car session key. */
readonly carKey: string;
readonly via: "card" | "qr" | "plate";
}
export class PermitFlow {
readonly #db: Db;
readonly #log: EventLog;
readonly #logger: FastifyBaseLogger;
readonly #inFlight = new Set<string>();
constructor(db: Db, log: EventLog, logger: FastifyBaseLogger) {
this.#db = db;
this.#log = log;
this.#logger = logger;
}
/** Resolve a read to a permit (by card/QR credential, or by a bound plate), or null. */
match(e: DeviceReadEvent): PermitMatch | null {
// Card / QR / generic credential value.
const cred = this.#db
.select()
.from(permitCredentials)
.where(eq(permitCredentials.value, e.value))
.get();
if (cred) {
return { permitId: cred.permitId, carKey: e.value, via: cred.kind === "qr" ? "qr" : "card" };
}
// Plate binding: a read plate that matches a permit's bound plate is an identity.
if (e.kind === "plate") {
const plate = this.#db.select().from(permitPlates).where(eq(permitPlates.plate, e.value)).get();
if (plate) return { permitId: plate.permitId, carKey: e.value, via: "plate" };
}
return null;
}
/** Run the permit entry/exit for a matched read at a barrier. `resolved` is the
* reader's bound relay; its direction constrains, "both" defers to session state. */
async run(resolved: ResolvedRelay, e: DeviceReadEvent, m: PermitMatch): Promise<ReadOutcome> {
const key = `${m.permitId}:${m.carKey}`;
if (this.#inFlight.has(key)) return { accepted: false, reason: "duplicate read in flight" };
this.#inFlight.add(key);
try {
return await this.#run(resolved, e, m);
} catch (err) {
this.#logger.error(`permit-flow failed: ${(err as Error).message}`);
return { accepted: false, reason: (err as Error).message };
} finally {
this.#inFlight.delete(key);
}
}
async #run(resolved: ResolvedRelay, e: DeviceReadEvent, m: PermitMatch): Promise<ReadOutcome> {
const permit = this.#db.select().from(permits).where(eq(permits.id, m.permitId)).get();
if (!permit) return { accepted: false, reason: "permit not found" };
// Validity: active + within the coverage window.
const now = new Date().toISOString();
const invalid =
permit.status !== "active" ||
(permit.validFrom != null && now < permit.validFrom) ||
(permit.validTo != null && now > permit.validTo);
if (invalid) {
const reason = `permit ${permit.status}/out-of-window`;
await this.#reject(m, reason);
return { accepted: false, reason };
}
// Direction: the car's open-session state is the natural verb (in→exit, out→entry).
// The barrier the car is at (resolved.direction) must AGREE — a car at an exit
// barrier that isn't inside (or at an entry barrier while already in) is a
// wrong-barrier / anti-passback signal, refused + logged. A "both" barrier follows
// the session state.
const carOpen = this.#carHasOpenSession(m.carKey);
const inferred: FlowDirection = carOpen ? "exit" : "entry";
if (resolved.direction !== "both" && resolved.direction !== inferred) {
const reason = `permit wrong barrier — ${resolved.direction} barrier but car would ${inferred}`;
await this.#reject(m, reason);
return { accepted: false, direction: resolved.direction === "exit" ? "exit" : "entry", reason };
}
if (carOpen) {
// EXIT: this car is already inside → the read is its exit.
await this.#log.append({
type: "vehicle_exit",
direction: "exit",
source: m.via === "plate" ? "lpr" : m.via === "qr" ? "qr" : "wiegand",
identity: m.carKey,
payload: { sessionRef: m.carKey, permitId: m.permitId },
});
await this.#open(resolved, "exit", m.carKey, "permit exit");
this.#closeCache(m.carKey);
return { accepted: true, direction: "exit" };
}
// ENTRY: enforce the car-count binding (maxConcurrent), then sign + open.
if (permit.maxConcurrent != null) {
const open = this.#permitOpenCount(m.permitId);
if (open >= permit.maxConcurrent) {
const reason = `permit at capacity (${open}/${permit.maxConcurrent} cars in)`;
await this.#reject(m, reason);
return { accepted: false, direction: "entry", reason };
}
}
await this.#log.append({
type: "vehicle_entry",
direction: "entry",
source: m.via === "plate" ? "lpr" : m.via === "qr" ? "qr" : "wiegand",
identity: m.carKey,
// No ticket, no fee — the permit IS the authorization. Recorded for audit.
payload: { sessionRef: m.carKey, permitId: m.permitId, permit: true },
occurredAt: now,
});
await this.#open(resolved, "entry", m.carKey, "permit entry");
try {
this.#db
.insert(sessions)
.values({ id: m.carKey, identity: m.carKey, source: m.via === "plate" ? "lpr" : "wiegand", permitId: m.permitId, enteredAt: now, state: "open" })
.run();
} catch (err) {
this.#logger.error(`session-cache insert failed for ${m.carKey}: ${(err as Error).message}`);
}
return { accepted: true, direction: "entry" };
}
/** Does this specific car (credential value) have an open session right now? */
#carHasOpenSession(carKey: string): boolean {
const rows = this.#db
.select()
.from(ledgerEvents)
.where(eq(ledgerEvents.identity, carKey))
.orderBy(ledgerEvents.index)
.all();
const entries = rows.filter((r) => r.type === "vehicle_entry").length;
const exits = rows.filter((r) => r.type === "vehicle_exit").length;
return entries > exits;
}
/** How many of this permit's cars are inside right now (fold over the ledger). */
#permitOpenCount(permitId: string): number {
const rows = this.#db
.select()
.from(ledgerEvents)
.where(eq(ledgerEvents.type, "vehicle_entry"))
.all()
.filter((r) => (r.payload as { permitId?: string } | null)?.permitId === permitId);
let open = 0;
for (const entry of rows) {
if (!this.#carHasOpenSession(entry.identity ?? "")) continue;
open += 1;
}
return open;
}
async #reject(m: PermitMatch, reason: string): Promise<void> {
await this.#log.append({
type: "anomaly",
identity: m.carKey,
payload: { reason: `permit refused — ${reason}`, permitId: m.permitId, permitRefused: true },
});
this.#logger.warn(`permit refused (${m.carKey}): ${reason}`);
}
async #open(resolved: ResolvedRelay, dir: FlowDirection, carKey: string, what: string): Promise<void> {
const access = this.#buildAccess(resolved.controller);
if (access) await access.pulseOpen(resolved.relay);
else this.#logger.warn(`${what} signed for ${carKey} but the ${dir} relay won't build`);
// SNAPSHOT — fire the directional camera(s), never awaited (evidence, not a gate).
void snapshotAsync({
db: this.#db,
direction: dir,
identity: carKey,
logger: this.#logger,
}).catch((err) => this.#logger.error(`permit snapshot error: ${(err as Error).message}`));
}
#closeCache(carKey: string): void {
try {
this.#db.update(sessions).set({ exitedAt: new Date().toISOString(), state: "closed" }).where(eq(sessions.id, carKey)).run();
} catch (err) {
this.#logger.error(`session-cache close failed for ${carKey}: ${(err as Error).message}`);
}
}
/** Build a live access adapter from a resolved controller row, or null. */
#buildAccess(row: DeviceRow): AccessControlDevice | null {
const driver = registry.get(row.driverId);
if (!driver) return null;
try {
return driver.create(row.config as never) as AccessControlDevice;
} catch {
return null;
}
}
}
+4 -5
View File
@@ -1,5 +1,5 @@
import type { FastifyBaseLogger } from "fastify";
import { eq, laneDevices, type Db } from "@parking/db";
import { eq, devices, type Db } from "@parking/db";
import {
isMonitorable,
registry,
@@ -66,8 +66,8 @@ export class PrinterMonitor {
async refreshDevices(): Promise<void> {
const rows = await this.#db
.select()
.from(laneDevices)
.where(eq(laneDevices.category, "printer"))
.from(devices)
.where(eq(devices.category, "printer"))
.all();
const seen = new Set<string>();
@@ -89,7 +89,6 @@ export class PrinterMonitor {
build: () => driver.create(cfg as never),
meta: {
deviceId: row.id,
lane: row.lane,
driverId: row.driverId,
role: typeof cfg.role === "string" ? cfg.role : undefined,
},
@@ -139,7 +138,7 @@ export class PrinterMonitor {
if (!prev || statusChanged(prev.status, status)) {
this.#log.info(
`printer-monitor: ${entry.meta.role ?? "printer"} ${id} (lane ${entry.meta.lane}) -> ${status.status}${status.detail ? ` (${status.detail})` : ""}`,
`printer-monitor: ${entry.meta.role ?? "printer"} ${id} -> ${status.status}${status.detail ? ` (${status.detail})` : ""}`,
);
deviceEvents.emitPrinterStatus(event);
}
+56
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@@ -0,0 +1,56 @@
import { devices, eq, type Db } from "@parking/db";
import type { FastifyBaseLogger } from "fastify";
import type { DeviceReadEvent, ReadOutcome } from "./device-events.js";
import type { ExitFlow } from "./exit-flow.js";
import type { PermitFlow } from "./permit-flow.js";
import { relayForDevice } from "./device-resolve.js";
// Routes a credential read (ticket scan / plate / card) to the right flow. A read
// can mean a permit entry/exit OR a transient exit, so we dispatch by WHAT the
// credential is (decision 2026-06-15):
// - matches a permit (card/QR/bound plate) → PERMIT flow,
// - else → transient EXIT flow (open ticket session → exit, else reject+log).
//
// The reader is BOUND to a controller relay (config.controllerId + relay), so a read
// resolves to exactly the barrier it sits at, and the direction is inherited from
// that relay (see entry-exit-points.md). The resolved relay is handed to the flow so
// it opens that exact barrier. An "entry" reader drives the entry side, an "exit"
// reader the exit side; "both" defers to the flow's own inference (permit: session
// state; transient: exit).
export class ReadDispatcher {
readonly #db: Db;
readonly #exit: ExitFlow;
readonly #permit: PermitFlow;
readonly #logger: FastifyBaseLogger;
constructor(db: Db, exit: ExitFlow, permit: PermitFlow, logger: FastifyBaseLogger) {
this.#db = db;
this.#exit = exit;
this.#permit = permit;
this.#logger = logger;
}
async dispatch(e: DeviceReadEvent): Promise<ReadOutcome> {
const reader = this.#db.select().from(devices).where(eq(devices.id, e.deviceId)).get();
if (!reader || !reader.enabled) {
return { accepted: false, reason: "read from unknown/disabled device" };
}
const resolved = relayForDevice(this.#db, reader);
if (!resolved) {
return { accepted: false, reason: "reader not bound to a barrier (no relay to open)" };
}
const permit = this.#permit.match(e);
if (permit) {
return this.#permit.run(resolved, e, permit);
}
// Not a permit → transient ticket exit. An ENTRY reader can't produce a transient
// exit (transient entry is the button flow, not a reader), so reject+log rather
// than treat an entry scan as an exit.
if (resolved.direction === "entry") {
return { accepted: false, direction: "entry", reason: "entry reader: no transient entry via reader" };
}
return this.#exit.handleAt(resolved, e);
}
}
+35 -8
View File
@@ -2,7 +2,6 @@ import bcrypt from "bcrypt";
import type { FastifyInstance } from "fastify";
import { eq, users, type Db } from "@parking/db";
import {
TOKEN_TTL,
clearAuthCookies,
newCsrfToken,
requireRole,
@@ -17,6 +16,12 @@ interface LoginBody {
password: string;
}
const LANGS = ["sq", "en"] as const;
type Lang = (typeof LANGS)[number];
interface LanguageBody {
language: Lang;
}
export async function authRoutes(app: FastifyInstance, db: Db): Promise<void> {
app.post<{ Body: LoginBody }>("/api/auth/login", async (req, reply) => {
const { username, password } = req.body ?? {};
@@ -34,12 +39,17 @@ export async function authRoutes(app: FastifyInstance, db: Db): Promise<void> {
}
const csrf = newCsrfToken();
const token = await reply.jwtSign(
{ sub: user.id, username: user.username, role: user.role, csrf },
{ expiresIn: TOKEN_TTL },
);
// No expiresIn: the token is valid until explicit logout (see auth.ts).
const token = await reply.jwtSign({
sub: user.id,
username: user.username,
role: user.role,
csrf,
});
setAuthCookies(reply, token, csrf);
return { id: user.id, username: user.username, role: user.role };
// `language` is NOT in the JWT (identity/role only) — it's a mutable preference
// read from the DB, so changing it needs no token refresh.
return { id: user.id, username: user.username, role: user.role, language: user.language };
});
app.post("/api/auth/logout", async (_req, reply) => {
@@ -47,13 +57,30 @@ export async function authRoutes(app: FastifyInstance, db: Db): Promise<void> {
return { ok: true };
});
// Who am I — used by the SPA to bootstrap session state on load.
// Who am I — used by the SPA to bootstrap session state on load. Reads the live
// `language` preference from the DB (not the token).
app.get(
"/api/auth/me",
{ preHandler: requireRole("admin", "operator", "cashier", "readonly") },
async (req) => {
const { sub, username, role } = req.user;
return { id: sub, username, role };
const row = await db.select().from(users).where(eq(users.id, sub)).get();
return { id: sub, username, role, language: row?.language ?? "sq" };
},
);
// Change MY own UI language preference (any signed-in user). Persisted to the
// users row so it's restored on the next login, from any booth. See i18n.md.
app.put<{ Body: LanguageBody }>(
"/api/auth/language",
{ preHandler: requireRole("admin", "operator", "cashier", "readonly") },
async (req, reply) => {
const language = req.body?.language;
if (!language || !LANGS.includes(language)) {
return reply.code(400).send({ error: `language must be one of: ${LANGS.join(", ")}` });
}
await db.update(users).set({ language }).where(eq(users.id, req.user.sub)).run();
return { language };
},
);
}
+2 -2
View File
@@ -1,5 +1,5 @@
import type { FastifyInstance, FastifyReply, FastifyRequest } from "fastify";
import { eq, laneDevices, type Db } from "@parking/db";
import { eq, devices, type Db } from "@parking/db";
import { deviceEvents } from "../device-events.js";
import { verifyDigest } from "../digest-auth.js";
@@ -36,7 +36,7 @@ export async function deviceRoutes(app: FastifyInstance, db: Db): Promise<void>
const handle = async (req: FastifyRequest<{ Params: InputParams }>, reply: FastifyReply) => {
const { deviceId, n, edge } = req.params;
const row = await db.select().from(laneDevices).where(eq(laneDevices.id, deviceId)).get();
const row = await db.select().from(devices).where(eq(devices.id, deviceId)).get();
const cfg = row?.config as DingtianDeviceConfig | undefined;
// Unknown device / not a dingtian / no push creds / wrong source IP → 404.
+2 -2
View File
@@ -1,5 +1,5 @@
import type { FastifyInstance } from "fastify";
import { desc, events, type Db } from "@parking/db";
import { desc, ledgerEvents, type Db } from "@parking/db";
import { requireRole } from "../auth.js";
import type { EventLog } from "../event-log.js";
@@ -22,7 +22,7 @@ export async function eventRoutes(
{ preHandler: guard },
async (req) => {
const limit = Math.min(Math.max(Number(req.query.limit) || 100, 1), 1000);
const rows = db.select().from(events).orderBy(desc(events.index)).limit(limit).all();
const rows = db.select().from(ledgerEvents).orderBy(desc(ledgerEvents.index)).limit(limit).all();
return { events: rows };
},
);
+169
View File
@@ -0,0 +1,169 @@
import type { FastifyInstance } from "fastify";
import type { Db } from "@parking/db";
import { NoPrinterAvailableError } from "@parking/devices";
import { requireRole } from "../auth.js";
import {
NoOpenSessionError,
NoTariffError,
type PayStation,
} from "../pay-station.js";
import type { ExitFlow } from "../exit-flow.js";
import { printExitVoucher } from "../booth-print.js";
// Booth endpoints (pay-on-foot): look up a session, quote it, take payment, and —
// when the booth is at/near the exit — open the barrier. The payment becomes a
// signed ledger event; PCI scope stays OUT of the app (card capture is a standalone
// P2PE terminal; `tender` just records cash vs. card). The booth exit reuses the
// SAME validation as the reader path — no booth-only bypass admits an unpaid car.
// See wiki/concepts/tariff.md, parking-session.md, booth-exit-flow.md, bom.md.
interface QuoteQuery {
identity: string;
}
interface PayBody {
identity: string;
tender: "cash" | "card";
/** Operator-set amount (lost ticket / dispute) — overrides the computed fee. */
overrideMinor?: number;
}
interface ExitBody {
identity: string;
}
interface VoucherBody {
identity: string;
}
export async function payRoutes(
app: FastifyInstance,
db: Db,
payStation: PayStation,
exitFlow: ExitFlow,
): Promise<void> {
// Cashier/operator/admin operate the booth; readonly may not.
const guard = requireRole("admin", "operator", "cashier");
// Active sessions for the booth list: still-open OR exited-but-within-grace
// (barrier unconfirmed → a paid/exited car is presumed possibly-present until
// grace expires). Read-only. See wiki/concepts/booth-exit-flow.md.
app.get("/api/sessions/active", { preHandler: guard }, async () => ({
sessions: payStation.activeSessions(),
}));
// Session lookup for the booth pay/exit modal: entry/exit times, paid state,
// amount owed now, walk-back-grace status. Read-only (no side effect).
app.get<{ Params: { identity: string } }>(
"/api/session/:identity",
{ preHandler: guard },
async (req, reply) => {
const identity = (req.params.identity ?? "").trim();
if (!identity) return reply.code(400).send({ error: "identity required" });
return payStation.lookup(identity);
},
);
// Booth-driven exit: validate (paid + grace, or free entry-grace) THEN sign
// vehicle_exit + open the barrier. Maps the discriminated result to HTTP:
// - validation reject → 409 with a reason (operator takes payment first),
// - exit signed but barrier didn't open → 200 { opened:false } (payment stands;
// operator opens manually; an anomaly is already signed),
// - clean exit → 200 { opened:true }.
app.post<{ Body: ExitBody }>(
"/api/exit",
{ preHandler: guard },
async (req, reply) => {
const identity = (req.body?.identity ?? "").trim();
if (!identity) return reply.code(400).send({ error: "identity required" });
const res = await exitFlow.exitForBooth(identity);
if (!res.ok) return reply.code(409).send({ error: res.reason, status: res.status });
return reply.code(200).send(res);
},
);
// Human-intervention barrier re-open for an ACTIVE (paid) session — damaged
// ticket / dead scanner / phantom re-close. Re-pulses the exit relay + signs an
// anomaly (attributed); NEVER a second vehicle_exit. Refused without a payment
// (no-unpaid-bypass). See wiki/concepts/booth-exit-flow.md.
app.post<{ Body: ExitBody }>(
"/api/barrier/reopen",
{ preHandler: guard },
async (req, reply) => {
const identity = (req.body?.identity ?? "").trim();
if (!identity) return reply.code(400).send({ error: "identity required" });
const operator = req.user?.username;
const res = await exitFlow.reopenBarrier(identity, operator);
if (!res.ok) return reply.code(409).send({ error: res.reason });
return reply.code(200).send(res);
},
);
// Quote: what does this session owe right now? (No side effect.)
app.get<{ Querystring: QuoteQuery }>(
"/api/pay/quote",
{ preHandler: guard },
async (req, reply) => {
const identity = (req.query.identity ?? "").trim();
if (!identity) return reply.code(400).send({ error: "identity required" });
try {
return payStation.quote(identity);
} catch (err) {
return mapError(reply, err);
}
},
);
// Pay: take payment and append the signed `payment` event.
app.post<{ Body: PayBody }>(
"/api/pay",
{ preHandler: guard },
async (req, reply) => {
const { identity, tender, overrideMinor } = req.body ?? {};
if (!identity || (tender !== "cash" && tender !== "card")) {
return reply.code(400).send({ error: "identity and tender (cash|card) required" });
}
if (overrideMinor != null && (!Number.isInteger(overrideMinor) || overrideMinor < 0)) {
return reply.code(400).send({ error: "overrideMinor must be a non-negative integer (minor units)" });
}
try {
const res = await payStation.pay(identity, tender, overrideMinor);
return reply.code(201).send(res);
} catch (err) {
return mapError(reply, err);
}
},
);
// Print an exit voucher (the paid ticket id reprinted as a barcode) on the booth
// printer. Used when the booth is far from the exit — the customer self-scans the
// voucher at the exit reader, which runs the normal validated exit. Requires the
// session to be PAID (no free vouchers for unpaid sessions). See booth-exit-flow.md.
app.post<{ Body: VoucherBody }>(
"/api/voucher",
{ preHandler: guard },
async (req, reply) => {
const identity = (req.body?.identity ?? "").trim();
if (!identity) return reply.code(400).send({ error: "identity required" });
const view = payStation.lookup(identity);
if (!view.found || !view.open) {
return reply.code(404).send({ error: "no open session for ticket" });
}
if (view.paidAt == null) {
return reply.code(409).send({ error: "session not paid — take payment before printing a voucher" });
}
try {
const printedBy = await printExitVoucher(db, identity, app.log);
return reply.code(200).send({ ok: true, printedBy });
} catch (err) {
if (err instanceof NoPrinterAvailableError) {
return reply.code(503).send({ error: err.message });
}
return reply.code(500).send({ error: (err as Error).message });
}
},
);
}
function mapError(reply: import("fastify").FastifyReply, err: unknown) {
if (err instanceof NoOpenSessionError) return reply.code(404).send({ error: err.message });
if (err instanceof NoTariffError) return reply.code(409).send({ error: err.message });
return reply.code(500).send({ error: (err as Error).message });
}
+160
View File
@@ -0,0 +1,160 @@
import { randomUUID } from "node:crypto";
import type { FastifyInstance } from "fastify";
import { eq, permitCredentials, permitPlates, permits, type Db } from "@parking/db";
import { requireRole } from "../auth.js";
// Permit (subscription) admin CRUD. A permit is mutable master data — admins
// grant/edit/revoke — but every USE of it is a signed ledger event, so the audit
// trail stays append-only (see wiki/entities/permit.md). A permit is an aggregate:
// the permit row + its credentials (card/QR) + its bound plates. The API treats them
// as one unit (create/update replace the child sets; delete removes all).
interface Credential {
kind: "rf" | "qr";
value: string;
}
interface PermitBody {
holderName?: string;
contact?: string;
/** Car-count binding: cars inside at once. Default 1; null = unbound. */
maxConcurrent?: number | null;
validFrom?: string | null;
validTo?: string | null;
status?: "active" | "suspended" | "revoked";
credentials?: Credential[];
/** Plate binding (optional): bound plates that also serve as identity. */
plates?: string[];
}
export async function permitRoutes(app: FastifyInstance, db: Db): Promise<void> {
// Admin manages permits; operator/cashier/readonly may LIST (to look one up).
const readGuard = requireRole("admin", "operator", "cashier", "readonly");
const writeGuard = requireRole("admin");
// Validate the body; returns problems (empty = ok). Shared by create + update.
function validate(b: PermitBody): string[] {
const errs: string[] = [];
if (b.maxConcurrent != null) {
if (!Number.isInteger(b.maxConcurrent) || b.maxConcurrent < 1) {
errs.push("maxConcurrent must be a positive integer, or null for unbound");
}
}
if (b.status && !["active", "suspended", "revoked"].includes(b.status)) {
errs.push("status must be active|suspended|revoked");
}
for (const c of b.credentials ?? []) {
if ((c.kind !== "rf" && c.kind !== "qr") || !c.value?.trim()) {
errs.push("each credential needs kind (rf|qr) and a non-empty value");
break;
}
}
if ((b.credentials?.length ?? 0) === 0 && (b.plates?.length ?? 0) === 0) {
errs.push("a permit needs at least one credential or one bound plate (else nothing identifies it)");
}
return errs;
}
function loadAggregate(id: string) {
const permit = db.select().from(permits).where(eq(permits.id, id)).get();
if (!permit) return null;
const credentials = db.select().from(permitCredentials).where(eq(permitCredentials.permitId, id)).all();
const plates = db.select().from(permitPlates).where(eq(permitPlates.permitId, id)).all();
return {
...permit,
credentials: credentials.map((c) => ({ kind: c.kind, value: c.value })),
plates: plates.map((p) => p.plate),
};
}
// Replace a permit's child rows (credentials + plates) from the body.
function writeChildren(id: string, b: PermitBody) {
db.delete(permitCredentials).where(eq(permitCredentials.permitId, id)).run();
db.delete(permitPlates).where(eq(permitPlates.permitId, id)).run();
for (const c of b.credentials ?? []) {
db.insert(permitCredentials).values({ id: randomUUID(), permitId: id, kind: c.kind, value: c.value.trim() }).run();
}
for (const p of b.plates ?? []) {
if (p.trim()) db.insert(permitPlates).values({ id: randomUUID(), permitId: id, plate: p.trim() }).run();
}
}
// List all permits (with their credentials + plates).
app.get("/api/permits", { preHandler: readGuard }, async () => {
const rows = db.select().from(permits).all();
return { permits: rows.map((r) => loadAggregate(r.id)) };
});
// Create a permit.
app.post<{ Body: PermitBody }>("/api/permits", { preHandler: writeGuard }, async (req, reply) => {
const b = req.body ?? {};
const problems = validate(b);
if (problems.length) return reply.code(400).send({ error: "invalid permit", problems });
const id = randomUUID();
db.insert(permits)
.values({
id,
holderName: b.holderName ?? null,
contact: b.contact ?? null,
maxConcurrent: b.maxConcurrent === undefined ? 1 : b.maxConcurrent,
validFrom: b.validFrom ?? null,
validTo: b.validTo ?? null,
status: b.status ?? "active",
})
.run();
writeChildren(id, b);
return reply.code(201).send(loadAggregate(id));
});
// Update a permit (replaces fields + child sets).
app.put<{ Params: { id: string }; Body: PermitBody }>(
"/api/permits/:id",
{ preHandler: writeGuard },
async (req, reply) => {
const existing = db.select().from(permits).where(eq(permits.id, req.params.id)).get();
if (!existing) return reply.code(404).send({ error: "permit not found" });
const b = req.body ?? {};
const problems = validate(b);
if (problems.length) return reply.code(400).send({ error: "invalid permit", problems });
db.update(permits)
.set({
holderName: b.holderName ?? null,
contact: b.contact ?? null,
maxConcurrent: b.maxConcurrent === undefined ? existing.maxConcurrent : b.maxConcurrent,
validFrom: b.validFrom ?? null,
validTo: b.validTo ?? null,
status: b.status ?? existing.status,
})
.where(eq(permits.id, req.params.id))
.run();
writeChildren(req.params.id, b);
return loadAggregate(req.params.id);
},
);
// Revoke (soft): the common case — keeps the permit + its history, just bars it.
// A revoked permit fails the entry check (see permit-flow.ts). Use DELETE only to
// fully remove a permit created in error.
app.post<{ Params: { id: string } }>(
"/api/permits/:id/revoke",
{ preHandler: writeGuard },
async (req, reply) => {
const r = db.update(permits).set({ status: "revoked" }).where(eq(permits.id, req.params.id)).run();
if (r.changes === 0) return reply.code(404).send({ error: "permit not found" });
return loadAggregate(req.params.id);
},
);
// Hard delete a permit + its child rows. (Past ledger events that reference it
// are untouched — the audit trail is append-only and independent of this row.)
app.delete<{ Params: { id: string } }>(
"/api/permits/:id",
{ preHandler: writeGuard },
async (req, reply) => {
const r = db.delete(permits).where(eq(permits.id, req.params.id)).run();
if (r.changes === 0) return reply.code(404).send({ error: "permit not found" });
db.delete(permitCredentials).where(eq(permitCredentials.permitId, req.params.id)).run();
db.delete(permitPlates).where(eq(permitPlates.permitId, req.params.id)).run();
return reply.code(204).send();
},
);
}
+109
View File
@@ -0,0 +1,109 @@
import type { FastifyInstance } from "fastify";
import { eq, devices, type Db } from "@parking/db";
import type { DeviceReadEvent } from "../device-events.js";
import type { ReadDispatcher } from "../read-dispatch.js";
// GEE/Dingtian QR reader endpoint. The reader is configured (vendor tool) with our
// host as its "server"; on each scan it sends an HTTP GET and BEEPS/acts based on
// our JSON reply — host-in-the-loop and synchronous. Protocol from the QRCode SDK
// v1.6.5; see wiki/sources/qrcode-sdk.md and wiki/entities/gee-qr-er80.md.
//
// reader → GET /qa/mcardsea.php?cardid=<QR>&mjihao=<devId>&cjihao=<devSN>&status=<2ch>&time=<utc>
// server → {"data":[{cardid,cjihao,mjihao,status,time,output}],"code":0,"message":""}
// reply status: 1 = valid (beep 2×) / 0 = invalid (beep 1×)
// reply output: 0 = Access, 1 = WG26, 2 = WG34 (line driven on a valid read)
// reply time: UTC — syncs the device clock
//
// The "server language" set on the device only selects this URL path; we accept the
// SDK default path. No auth on the device side (it can't); the reader sits on the
// device subnet (network-isolation) and the signed ledger is the real guarantee.
interface ReaderQuery {
cardid?: string;
mjihao?: string; // device id
cjihao?: string; // device serial
status?: string; // 2 chars: high valid/invalid, low 1=in/0=out
time?: string;
}
export async function qrReaderRoutes(
app: FastifyInstance,
db: Db,
dispatcher: ReadDispatcher,
): Promise<void> {
// Resolve the lane_devices row whose config.serial matches the reader's reported
// serial (cjihao). The row id is a normal UUID; the serial is config the admin
// enters when assigning the gee-qr-reader. Returns the row id, or null if no
// reader is assigned for that serial. (Small device set → scan in JS.)
const readerRowIdForSerial = (serial: string): string | null => {
if (!serial) return null;
const rows = db.select().from(devices).where(eq(devices.category, "reader")).all();
const match = rows.find((r) => r.enabled && (r.config as { serial?: string }).serial === serial);
return match?.id ?? null;
};
// No auth: the reader is a machine on the isolated device subnet and offers no
// auth on its side. Public route, like the Dingtian input push.
const handler = async (req: { query: ReaderQuery }, reply: import("fastify").FastifyReply) => {
const q = req.query;
// The reader sends `Connection: keep-alive` but only ACTS on our verdict (beep,
// drive output) once the socket CLOSES — every vendor demo replies
// `Connection: close` and shuts the socket. Without it the reader waits out a
// ~10 s keep-alive timeout before beeping. So force-close the connection.
// See wiki/sources/qrcode-sdk.md, entities/gee-qr-er80.md.
reply.header("connection", "close");
const cardid = (q.cardid ?? "").trim();
const mjihao = q.mjihao != null ? Number(q.mjihao) : 0;
const serial = (q.cjihao ?? "").trim();
// Map the reader's serial → its assigned lane_devices row id (the dispatcher
// resolves the lane from that row). If unassigned, deviceId stays the serial so
// the dispatcher simply finds no lane and rejects (status:0) — never crashes.
const deviceId = readerRowIdForSerial(serial) ?? serial;
let accepted = false;
if (cardid) {
const read: DeviceReadEvent = {
driverId: "gee-qr-reader",
deviceId,
value: cardid,
kind: "qr",
at: new Date().toISOString(),
};
try {
const outcome = await dispatcher.dispatch(read);
accepted = outcome.accepted;
if (!accepted) app.log.info(`QR ${cardid} rejected: ${outcome.reason ?? "?"}`);
} catch (err) {
app.log.error(`QR dispatch failed for ${cardid}: ${(err as Error).message}`);
}
}
// Reply the SDK verdict. status 1 → beep 2× (valid) / 0 → beep 1× (invalid).
// output 0 = Access (drive the reader's access line on a valid read).
return {
data: [
{
cardid,
cjihao: q.cjihao ?? 0,
mjihao,
status: accepted ? 1 : 0,
time: String(Math.floor(Date.now() / 1000)),
output: 0,
},
],
code: 0,
message: "",
};
};
// The reader's "server language" setting (JSP/PHP/C#/ASP/CGI) selects the URL
// EXTENSION it GETs — verified on hardware: a JSP-configured unit posts
// /qa/mcardsea.jsp. Register every extension so the endpoint works whatever the
// device is set to; accept POST too in case a variant differs.
for (const ext of ["php", "jsp", "asp", "aspx", "cgi"]) {
const path = `/qa/mcardsea.${ext}`;
app.get<{ Querystring: ReaderQuery }>(path, handler);
app.post<{ Querystring: ReaderQuery }>(path, handler);
}
}
+193 -107
View File
@@ -1,6 +1,6 @@
import { randomBytes, randomUUID } from "node:crypto";
import type { FastifyInstance } from "fastify";
import { eq, laneDevices, setupState, type Db } from "@parking/db";
import { eq, devices, setupState, type Db } from "@parking/db";
import {
hasPreconditions,
hasPushConfig,
@@ -10,6 +10,7 @@ import {
registry,
setDeviceLogSink,
type DeviceCategory,
type DeviceConfig,
} from "@parking/devices";
import { requireRole } from "../auth.js";
import { backendIpCandidates, backendIpForDevice, backendPort } from "../net.js";
@@ -18,10 +19,12 @@ import { backendIpCandidates, backendIpForDevice, backendPort } from "../net.js"
// per lane. See wiki/concepts/first-run-setup.md.
interface AssignBody {
lane: number;
category: DeviceCategory;
driverId: string;
config: Record<string, string | number | boolean>;
// Driver config (opaque JSON, validated by the driver). Carries the model's
// direction/binding: access → config.relays=[{relay,direction,button?}];
// reader/camera → config.controllerId + config.relay. See entry-exit-points.md.
config: DeviceConfig;
/** Optional: the backend IP the device should push to (overrides auto-pick;
* matters on multi-NIC hosts). */
backendIp?: string;
@@ -48,13 +51,128 @@ function redactSecrets(config: Record<string, unknown>): Record<string, unknown>
return out;
}
export async function setupRoutes(
/** Result of the device configure pipeline: a ready-to-persist config, or an
* HTTP error to send back. Shared by assign (create) and patch (edit). */
type ConfigureOutcome =
| { config: Record<string, unknown>; warnings: string[] }
| { error: { code: number; message: string } };
/**
* Validate + configure a device, returning the config to persist. Runs the same
* pipeline for both create and edit: validate the driver config, fix
* preconditions, harden (relay password + protocol lockdown), and set up input
* push (Digest creds + push URLs). Each step is a device write (the device
* reboots on apply). The caller owns the DB row; this never touches the DB.
*
* `id` is the assignment id (stable across an edit) — it's baked into the push
* URL, so editing in place keeps the device pushing to the same path.
* `existingConfig` carries forward secrets the client never sees on edit
* (push/relay passwords), so a PATCH that omits them doesn't wipe them.
*/
async function configureDevice(
app: FastifyInstance,
db: Db,
// Called after the set of assignments changes (assign/unassign) so the caller
// can refresh anything derived from it — e.g. the device id->lane map.
onAssignmentsChanged: () => void = () => {},
): Promise<void> {
args: {
id: string;
driverId: string;
config: DeviceConfig;
backendIp?: string;
existingConfig?: Record<string, unknown>;
},
): Promise<ConfigureOutcome> {
const { id, driverId, config, backendIp, existingConfig } = args;
// Start from any machine-only secrets already on the row (push/relay passwords
// are redacted out of the client's copy, so an edit would otherwise drop them),
// then layer the submitted config on top.
const fullConfig: Record<string, unknown> = { ...existingConfig, ...config };
// The web password the admin typed is a DESIRED value, not a stored fact:
// it's passed to the driver (via create(config) below) as the rotation
// target, but we do NOT persist it from the form. Only harden()'s VERIFIED
// secrets.webPassword gets saved — otherwise a failed rotation would leave
// the DB claiming a password the device never accepted (login stays old).
delete fullConfig.webPassword;
// webPasswordCurrent is an input-only credential (the OLD password used to
// authorize the change) — never persist it as typed.
delete fullConfig.webPasswordCurrent;
// Residual-risk warnings from device hardening (shown to the admin; the
// save still succeeds — these are "configured, but note X" advisories).
const hardenWarnings: string[] = [];
let device;
try {
device = registry.create(driverId, config); // validates required fields
} catch (err) {
return { error: { code: 400, message: (err as Error).message } };
}
// Configure the device on save (before persisting, so we don't store a row
// for a device we couldn't configure):
// 1. fix preconditions (e.g. disable input_link_relay so a button press
// doesn't auto-fire its relay — host must decide first),
// 2. harden (relay password + disable unused protocol channels), and
// 3. set up input push (Digest creds + push URLs).
// Each step is a device config write (the device reboots on apply).
try {
if (hasPreconditions(device)) {
const fixed = await device.fixPreconditions();
if (!fixed.ok) {
const unfixable = fixed.issues.find((i) => !i.fixable);
return {
error: {
code: 502,
message: `device precondition not satisfied: ${unfixable?.message ?? fixed.issues[0]?.message}`,
},
};
}
}
if (isHardenable(device)) {
const { secrets, warnings } = await device.harden();
Object.assign(fullConfig, secrets); // e.g. relayPassword
// Surface residual-risk warnings (e.g. firmware that won't disable the
// password-less string protocol) so the admin can act (web-UI step).
for (const w of warnings ?? []) {
app.log.warn(`harden(${driverId} ${id}): ${w}`);
hardenWarnings.push(w);
}
}
if (hasPushConfig(device)) {
const host = String(config.host ?? "");
// Admin-provided backend IP wins; else auto-derive (on-subnet NIC).
const pushHost = backendIp ?? backendIpForDevice(host);
if (!pushHost) {
return {
error: {
code: 400,
message: `cannot determine the backend IP on the device's subnet (${host}). Pick one in setup or set BACKEND_HOST_IP.`,
},
};
}
const pushUser = "dingtian";
// 24 hex chars = 96 bits. The Dingtian `pass` field caps at 31 chars
// (longer is silently truncated → auth mismatch), so keep it short.
const pushPassword = randomBytes(12).toString("hex");
await device.configureInputPush({
host: pushHost,
port: backendPort(),
pathBase: `/api/devices/${driverId}/${id}/input`,
auth: { user: pushUser, password: pushPassword },
});
fullConfig.pushUser = pushUser;
fullConfig.pushPassword = pushPassword;
// Record the backend IP the device was told to push to — lets us detect
// a later mismatch if the host's IP changes.
fullConfig.backendIp = pushHost;
}
} catch (err) {
return { error: { code: 502, message: `device configuration failed: ${(err as Error).message}` } };
}
return { config: fullConfig, warnings: hardenWarnings };
}
export async function setupRoutes(app: FastifyInstance, db: Db): Promise<void> {
registerBuiltinDrivers();
setDeviceLogSink((line) => app.log.info(line));
@@ -62,11 +180,13 @@ export async function setupRoutes(
const adminGuard = requireRole("admin");
// Catalog of selectable drivers per category (no secrets — schema only).
// `discoverable` flags drivers that can scan the LAN.
// `discoverable` flags drivers that can scan the LAN; `pushCapable` flags
// drivers that push to the backend (and thus need a backend IP at assign time).
app.get("/api/setup/catalog", async () => {
const catalog = registry.catalog();
const discoverable = registry.list().filter(isDiscoverable).map((d) => d.id);
return { ...catalog, discoverable };
const pushCapable = registry.pushCapable();
return { ...catalog, discoverable, pushCapable };
});
// Scan the LAN for devices a driver can discover (UDP broadcast, etc).
@@ -108,7 +228,7 @@ export async function setupRoutes(
{ preHandler: adminGuard },
async () => {
const state = await db.select().from(setupState).where(eq(setupState.id, 1)).get();
const rows = await db.select().from(laneDevices).all();
const rows = await db.select().from(devices).all();
const assignments = rows.map((r) => ({ ...r, config: redactSecrets(r.config) }));
return { completedAt: state?.completedAt ?? null, assignments };
},
@@ -152,117 +272,84 @@ export async function setupRoutes(
},
);
// Assign a device to a lane. Validates the chosen driver + config, configures
// the device (fix preconditions + set up Digest-authenticated input push — no
// manual device-web-UI step by the admin), then persists. Fails the save if
// the device can't be configured. See wiki/concepts/device-input-flow.md.
// Assign a device. Validates the chosen driver + config, configures the device
// (fix preconditions + set up Digest-authenticated input push — no manual device-
// web-UI step by the admin), then persists. Fails the save if the device can't be
// configured. See wiki/concepts/device-input-flow.md, entry-exit-points.md.
app.post<{ Body: AssignBody }>(
"/api/setup/assign",
{ preHandler: adminGuard },
async (req, reply) => {
const { lane, category, driverId, config, backendIp } = req.body;
const { category, driverId, config, backendIp } = req.body;
const driver = registry.get(driverId);
if (!driver || driver.category !== category) {
return reply.code(400).send({ error: `invalid driver for ${category}: ${driverId}` });
}
const id = randomUUID();
const fullConfig: Record<string, unknown> = { ...config };
// The web password the admin typed is a DESIRED value, not a stored fact:
// it's passed to the driver (via create(config) below) as the rotation
// target, but we do NOT persist it from the form. Only harden()'s VERIFIED
// secrets.webPassword gets saved — otherwise a failed rotation would leave
// the DB claiming a password the device never accepted (login stays old).
delete fullConfig.webPassword;
// webPasswordCurrent is an input-only credential (the OLD password used to
// authorize the change) — never persist it as typed.
delete fullConfig.webPasswordCurrent;
// Residual-risk warnings from device hardening (shown to the admin; the
// save still succeeds — these are "configured, but note X" advisories).
const hardenWarnings: string[] = [];
let device;
try {
device = registry.create(driverId, config); // validates required fields
} catch (err) {
return reply.code(400).send({ error: (err as Error).message });
}
// Configure the device on save (before persisting, so we don't store a row
// for a device we couldn't configure):
// 1. fix preconditions (e.g. disable input_link_relay so a button press
// doesn't auto-fire its relay — host must decide first),
// 2. harden (relay password + disable unused protocol channels), and
// 3. set up input push (Digest creds + push URLs).
// Each step is a device config write (the device reboots on apply).
try {
if (hasPreconditions(device)) {
const fixed = await device.fixPreconditions();
if (!fixed.ok) {
const unfixable = fixed.issues.find((i) => !i.fixable);
return reply.code(502).send({
error: `device precondition not satisfied: ${unfixable?.message ?? fixed.issues[0]?.message}`,
});
}
}
if (isHardenable(device)) {
const { secrets, warnings } = await device.harden();
Object.assign(fullConfig, secrets); // e.g. relayPassword
// Surface residual-risk warnings (e.g. firmware that won't disable the
// password-less string protocol) so the admin can act (web-UI step).
for (const w of warnings ?? []) {
app.log.warn(`harden(${driverId} ${id}): ${w}`);
hardenWarnings.push(w);
}
}
if (hasPushConfig(device)) {
const host = String(config.host ?? "");
// Admin-provided backend IP wins; else auto-derive (on-subnet NIC).
const pushHost = backendIp ?? backendIpForDevice(host);
if (!pushHost) {
return reply.code(400).send({
error: `cannot determine the backend IP on the device's subnet (${host}). Pick one in setup or set BACKEND_HOST_IP.`,
});
}
const pushUser = "dingtian";
// 24 hex chars = 96 bits. The Dingtian `pass` field caps at 31 chars
// (longer is silently truncated → auth mismatch), so keep it short.
const pushPassword = randomBytes(12).toString("hex");
await device.configureInputPush({
host: pushHost,
port: backendPort(),
pathBase: `/api/devices/${driverId}/${id}/input`,
auth: { user: pushUser, password: pushPassword },
});
fullConfig.pushUser = pushUser;
fullConfig.pushPassword = pushPassword;
// Record the backend IP the device was told to push to — lets us detect
// a later mismatch if the host's IP changes.
fullConfig.backendIp = pushHost;
}
} catch (err) {
return reply
.code(502)
.send({ error: `device configuration failed: ${(err as Error).message}` });
const outcome = await configureDevice(app, { id, driverId, config, backendIp });
if ("error" in outcome) {
return reply.code(outcome.error.code).send({ error: outcome.error.message });
}
const row = {
id,
lane,
category,
driverId,
config: fullConfig,
config: outcome.config,
enabled: true,
};
await db.insert(laneDevices).values(row);
onAssignmentsChanged(); // refresh derived state (device->lane map)
await db.insert(devices).values(row);
// Don't echo device secrets back (push Digest password, web-UI login, …).
return reply.code(201).send({
...row,
config: redactSecrets(fullConfig),
...(hardenWarnings.length ? { warnings: hardenWarnings } : {}),
config: redactSecrets(outcome.config),
...(outcome.warnings.length ? { warnings: outcome.warnings } : {}),
});
},
);
// Edit an assigned device in place. Same configure pipeline as assign, but it
// UPDATEs the existing row and KEEPS the id — which matters for controllers,
// since the id is baked into the device's input-push URL
// (/api/devices/:driverId/:id/input). Delete+re-add would mint a new id and
// break push until reconfigured; PATCH re-runs harden/push against the same id.
// The category and driver are fixed at create time (an edit can't change what
// KIND of device a slot is); only config changes. Admin-only.
app.patch<{ Params: { id: string }; Body: Omit<AssignBody, "category" | "driverId"> }>(
"/api/setup/assign/:id",
{ preHandler: adminGuard },
async (req, reply) => {
const existing = await db
.select()
.from(devices)
.where(eq(devices.id, req.params.id))
.get();
if (!existing) return reply.code(404).send({ error: "no such device assignment" });
const { config, backendIp } = req.body;
const outcome = await configureDevice(app, {
id: existing.id,
driverId: existing.driverId,
config,
backendIp,
// Carry forward machine-only secrets the client never received, so an
// edit that omits them doesn't blank out push/relay passwords.
existingConfig: existing.config,
});
if ("error" in outcome) {
return reply.code(outcome.error.code).send({ error: outcome.error.message });
}
await db.update(devices).set({ config: outcome.config }).where(eq(devices.id, existing.id));
app.log.info(`reconfigured device ${existing.id} (${existing.category}/${existing.driverId})`);
return reply.code(200).send({
id: existing.id,
category: existing.category,
driverId: existing.driverId,
config: redactSecrets(outcome.config),
enabled: existing.enabled,
...(outcome.warnings.length ? { warnings: outcome.warnings } : {}),
});
},
);
@@ -283,13 +370,12 @@ export async function setupRoutes(
async (req, reply) => {
const existing = await db
.select()
.from(laneDevices)
.where(eq(laneDevices.id, req.params.id))
.from(devices)
.where(eq(devices.id, req.params.id))
.get();
if (!existing) return reply.code(404).send({ error: "no such device assignment" });
await db.delete(laneDevices).where(eq(laneDevices.id, req.params.id));
onAssignmentsChanged(); // refresh derived state (device->lane map)
app.log.info(`unassigned device ${req.params.id} (${existing.category}/${existing.driverId}, lane ${existing.lane})`);
await db.delete(devices).where(eq(devices.id, req.params.id));
app.log.info(`unassigned device ${req.params.id} (${existing.category}/${existing.driverId})`);
return reply.code(204).send();
},
);
+73
View File
@@ -0,0 +1,73 @@
import type { FastifyInstance } from "fastify";
import { requireRole } from "../auth.js";
import {
InvalidCashMovementError,
NoOpenShiftError,
ShiftAlreadyOpenError,
type ShiftService,
} from "../shift-service.js";
interface CashMovementBody {
/** Signed minor units: positive = load INTO drawer, negative = remove FROM drawer. */
amountMinor: number;
reason?: string;
currency?: string;
}
// Shift endpoints (manned mode). The operator is the logged-in user; a shift is
// opened/closed explicitly (not time-based — see wiki/concepts/shift.md and
// local-jwt-auth.md "until logout"). End Shift signs a shift_z_report + prints it.
export async function shiftRoutes(app: FastifyInstance, shift: ShiftService): Promise<void> {
// Cashier/operator/admin run shifts; readonly can't.
const guard = requireRole("admin", "operator", "cashier");
// Is the current operator's shift open? (For the UI to show Start vs. End.)
// Also returns the live drawer balance so the UI can show what's in the till.
app.get("/api/shift/current", { preHandler: guard }, async (req) => {
const operator = req.user.username;
const open = shift.openShiftFor(operator);
const drawer = shift.drawerBalance();
return {
operator,
open: open ? { startedAt: open.occurredAt } : null,
drawerMinor: drawer.balanceMinor,
currency: drawer.currency,
};
});
// Admin loads/removes physical drawer cash (the float). Signed cash_movement
// event. ADMIN ONLY — an operator takes payments but cannot move the float.
// amountMinor is signed: + load IN, − remove OUT. See wiki/concepts/shift.md.
app.post<{ Body: CashMovementBody }>(
"/api/cash-movement",
{ preHandler: requireRole("admin") },
async (req, reply) => {
const { amountMinor, reason, currency } = req.body ?? ({} as CashMovementBody);
try {
return await shift.recordCashMovement(req.user.username, amountMinor, reason ?? "", currency);
} catch (err) {
if (err instanceof InvalidCashMovementError) return reply.code(400).send({ error: err.message });
return reply.code(500).send({ error: (err as Error).message });
}
},
);
app.post("/api/shift/open", { preHandler: guard }, async (req, reply) => {
try {
return await shift.open(req.user.username);
} catch (err) {
if (err instanceof ShiftAlreadyOpenError) return reply.code(409).send({ error: err.message });
return reply.code(500).send({ error: (err as Error).message });
}
});
app.post("/api/shift/close", { preHandler: guard }, async (req, reply) => {
try {
return await shift.close(req.user.username);
} catch (err) {
if (err instanceof NoOpenShiftError) return reply.code(409).send({ error: err.message });
return reply.code(500).send({ error: (err as Error).message });
}
});
}
+96
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@@ -0,0 +1,96 @@
import type { FastifyInstance } from "fastify";
import { eq, siteConfig, type Db } from "@parking/db";
import { requireRole } from "../auth.js";
import { getOccupancy } from "../occupancy.js";
// Site config (capacity) + live occupancy. Occupancy is a fold over the signed
// ledger; capacity is an admin-set knob. The FULL gate (refuse transient entry at
// capacity) lives in the entry flow. See wiki/concepts/capacity-occupancy.md.
// Optional park-metadata text fields (all nullable). Trimmed; "" → null.
const TEXT_FIELDS = [
"parkName",
"operatorName",
"nius",
"address",
"phone",
"email",
] as const;
type TextField = (typeof TEXT_FIELDS)[number];
interface SiteConfigBody extends Partial<Record<TextField, string | null>> {
/** Nominal capacity; null = no limit. */
capacity?: number | null;
/** Default for the booth "print exit ticket" checkbox (booth-geography knob). */
exitVoucherDefault?: boolean;
}
/** Shape returned by GET/PUT: capacity + the booth flag + every metadata field. */
type SiteConfig = { capacity: number | null; exitVoucherDefault: boolean } & Record<
TextField,
string | null
>;
function toSiteConfig(row: typeof siteConfig.$inferSelect | undefined): SiteConfig {
const out = {
capacity: row?.capacity ?? null,
exitVoucherDefault: row?.exitVoucherDefault ?? false,
} as SiteConfig;
for (const f of TEXT_FIELDS) out[f] = row?.[f] ?? null;
return out;
}
/** Trim a text field; empty string becomes null so blank input clears it. */
function normText(v: unknown): string | null {
if (v == null) return null;
const s = String(v).trim();
return s === "" ? null : s;
}
export async function siteRoutes(app: FastifyInstance, db: Db): Promise<void> {
const readGuard = requireRole("admin", "operator", "cashier", "readonly");
const writeGuard = requireRole("admin");
// Live occupancy: cars inside, capacity, free, full. Any signed-in role.
app.get("/api/occupancy", { preHandler: readGuard }, async () => getOccupancy(db));
// Read site config (capacity + park metadata).
app.get("/api/site-config", { preHandler: readGuard }, async () => {
const row = db.select().from(siteConfig).where(eq(siteConfig.id, 1)).get();
return toSiteConfig(row);
});
// Set site config (admin). Capacity: null or 0+ integer. Metadata: optional text
// (only the fields PRESENT in the body are updated; absent fields are untouched).
app.put<{ Body: SiteConfigBody }>("/api/site-config", { preHandler: writeGuard }, async (req, reply) => {
const body = req.body ?? ({} as SiteConfigBody);
const patch: Partial<typeof siteConfig.$inferInsert> = {};
if ("capacity" in body) {
const c = body.capacity;
if (c != null && (!Number.isInteger(c) || c < 0)) {
return reply.code(400).send({ error: "capacity must be a non-negative integer or null" });
}
patch.capacity = c ?? null;
}
if ("exitVoucherDefault" in body) {
if (typeof body.exitVoucherDefault !== "boolean") {
return reply.code(400).send({ error: "exitVoucherDefault must be a boolean" });
}
patch.exitVoucherDefault = body.exitVoucherDefault;
}
for (const f of TEXT_FIELDS) {
if (f in body) patch[f] = normText(body[f]);
}
const existing = db.select().from(siteConfig).where(eq(siteConfig.id, 1)).get();
const updatedAt = new Date().toISOString();
if (existing) {
db.update(siteConfig).set({ ...patch, updatedAt }).where(eq(siteConfig.id, 1)).run();
} else {
db.insert(siteConfig).values({ id: 1, ...patch, updatedAt }).run();
}
const row = db.select().from(siteConfig).where(eq(siteConfig.id, 1)).get();
return toSiteConfig(row);
});
}
+49
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@@ -0,0 +1,49 @@
import type { FastifyInstance } from "fastify";
import { desc, eq, snapshots, type Db } from "@parking/db";
import { requireRole } from "../auth.js";
// Read access to captured entry/exit snapshots (the BLOB-in-DB image store, see
// packages/db schema + wiki/concepts/lane-direction.md). Snapshots are evidence
// tied to a signed vehicle_entry/exit by `identity`; the operator reviews them
// next to the event. Read-only — images are written only by the flows (snapshot.ts),
// never via the API.
export async function snapshotRoutes(app: FastifyInstance, db: Db): Promise<void> {
const guard = requireRole("admin", "operator", "cashier", "readonly");
// Snapshot metadata for one session/credential identity (NOT the bytes), newest
// first — lets the UI show "entry/exit image" links beside an event.
app.get<{ Params: { identity: string } }>(
"/api/snapshots/by-identity/:identity",
{ preHandler: guard },
async (req) => {
const rows = db
.select({
id: snapshots.id,
direction: snapshots.direction,
deviceId: snapshots.deviceId,
identity: snapshots.identity,
contentType: snapshots.contentType,
capturedAt: snapshots.capturedAt,
})
.from(snapshots)
.where(eq(snapshots.identity, req.params.identity))
.orderBy(desc(snapshots.capturedAt))
.all();
return { snapshots: rows };
},
);
// Stream one snapshot's image bytes by id. Returns the stored content type.
app.get<{ Params: { id: string } }>(
"/api/snapshots/:id",
{ preHandler: guard },
async (req, reply) => {
const row = db.select().from(snapshots).where(eq(snapshots.id, req.params.id)).get();
if (!row) return reply.code(404).send({ error: "no such snapshot" });
reply.header("content-type", row.contentType);
reply.header("cache-control", "private, max-age=31536000, immutable");
return reply.send(row.bytes);
},
);
}
+79
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@@ -0,0 +1,79 @@
import { randomUUID } from "node:crypto";
import type { FastifyInstance } from "fastify";
import { desc, eq, tariffVersions, tariffs, type Db } from "@parking/db";
import { validateTariffStructure, type TariffStructure } from "@parking/shared";
import { requireRole } from "../auth.js";
// Tariff composer API — the admin builds + edits the rate card at runtime. Tariffs
// are EFFECTIVE-DATED IMMUTABLE VERSIONS: editing publishes a new version, never
// mutates one; a session reprices against the version in force at its entry, and
// the `payment` event records the tariffVersionId. "One active tariff per site" for
// now (a single `tariffs` row, lazily created). See wiki/concepts/tariff.md.
interface PublishBody {
currency: string;
structure: TariffStructure;
/** When this version takes effect (ISO-8601). Defaults to now. */
effectiveFrom?: string;
}
const SITE_TARIFF_NAME = "Site tariff";
export async function tariffRoutes(app: FastifyInstance, db: Db): Promise<void> {
// Any signed-in role may READ the tariff (the pay station / operator UI needs it).
const readGuard = requireRole("admin", "operator", "cashier", "readonly");
// Only an admin may PUBLISH a new version (it changes what customers are charged).
const writeGuard = requireRole("admin");
// The single site tariff row, created on first read/publish.
function ensureSiteTariff(): string {
const existing = db.select().from(tariffs).where(eq(tariffs.scope, "site")).get();
if (existing) return existing.id;
const id = randomUUID();
db.insert(tariffs).values({ id, scope: "site", name: SITE_TARIFF_NAME }).run();
return id;
}
// Current state: the active (latest-effective, ≤ now) version + the full history.
app.get("/api/tariff", { preHandler: readGuard }, async () => {
const tariffId = ensureSiteTariff();
const versions = db
.select()
.from(tariffVersions)
.where(eq(tariffVersions.tariffId, tariffId))
.orderBy(desc(tariffVersions.effectiveFrom))
.all();
const now = new Date().toISOString();
const active = versions.find((v) => v.effectiveFrom <= now) ?? null;
return { tariffId, active, versions };
});
// Publish a new immutable version. Validates the structure first — a malformed
// rate card can never be published (the fee calc + the chain depend on it).
app.post<{ Body: PublishBody }>(
"/api/tariff/versions",
{ preHandler: writeGuard },
async (req, reply) => {
const { currency, structure, effectiveFrom } = req.body ?? ({} as PublishBody);
if (!currency || typeof currency !== "string" || currency.length < 3) {
return reply.code(400).send({ error: "currency (ISO 4217) required" });
}
const problems = validateTariffStructure(structure);
if (problems.length) {
return reply.code(400).send({ error: "invalid tariff structure", problems });
}
const tariffId = ensureSiteTariff();
const id = randomUUID();
const row = {
id,
tariffId,
effectiveFrom: effectiveFrom ?? new Date().toISOString(),
currency,
structure: structure as unknown as Record<string, unknown>,
createdBy: req.user?.username ?? null,
};
db.insert(tariffVersions).values(row).run();
return reply.code(201).send(row);
},
);
}
+104
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@@ -0,0 +1,104 @@
import type { FastifyInstance } from "fastify";
import type { Db } from "@parking/db";
import type { Role } from "@parking/shared";
import { deviceEvents } from "../device-events.js";
import { getOccupancy } from "../occupancy.js";
// Live booth feed over a WebSocket. The booth UI opens ONE socket and receives
// server-pushed updates instead of polling: each signed ledger append (entry,
// exit, payment, void) is fanned out, and the recomputed occupancy rides along
// so the screen's count stays exact (occupancy is a fold over the same ledger,
// never a counter). Printer-status changes are forwarded too.
//
// Auth: the handshake is a normal GET through Fastify's lifecycle, so the same
// HttpOnly JWT cookie that guards the REST API guards this. We verify the JWT and
// role here. A browser's WebSocket constructor cannot set custom headers, so the
// CSRF double-submit header the REST mutations use is unavailable — which would
// leave the socket open to Cross-Site WebSocket Hijacking: a malicious page in the
// operator's browser could open ws://<booth>/api/ws, the browser would auto-attach
// the HttpOnly cookie, and the attacker would receive the live entry/exit/payment
// stream. The cookie alone is NOT a control here. So we replace the CSRF check with
// an Origin allowlist: the handshake's Origin must be same-origin (or an explicitly
// allowed booth UI origin). Non-browser clients (no Origin) are rejected too.
// See auth.ts, event-log.ts (emitLedger), capacity-occupancy.md.
/** Roles allowed to watch the live feed (everyone signed in; readonly included —
* it's a read-only stream). */
const WATCH_ROLES: Role[] = ["admin", "operator", "cashier", "readonly"];
/**
* Is the handshake's Origin trusted? Same-origin (Origin host === Host header) is
* always allowed; additional origins can be allowlisted via WS_ALLOWED_ORIGINS
* (comma-separated) for a booth UI served from a different origin. A missing or
* mismatched Origin is rejected — that is the anti-CSWSH control.
*/
function isAllowedOrigin(origin: string | undefined, host: string | undefined): boolean {
if (!origin) return false; // no Origin → not a same-origin browser request
let originHost: string;
try {
originHost = new URL(origin).host;
} catch {
return false; // malformed Origin
}
if (host && originHost === host) return true; // same-origin (any scheme/port match via host)
const allow = (process.env.WS_ALLOWED_ORIGINS ?? "")
.split(",")
.map((s) => s.trim())
.filter(Boolean);
return allow.includes(origin);
}
type OutMsg =
| { kind: "hello"; occupancy: ReturnType<typeof getOccupancy> }
| { kind: "ledger"; event: unknown; occupancy: ReturnType<typeof getOccupancy> }
| { kind: "printer-status"; event: unknown };
export async function wsRoutes(app: FastifyInstance, db: Db): Promise<void> {
app.get(
"/api/ws",
{
websocket: true,
// Origin allowlist (anti-CSWSH, replaces CSRF — see file header) THEN JWT +
// role. Reject a cross/absent origin before touching the token, so a hijack
// attempt never reaches an authenticated socket. jwtVerify reads the cookie.
preHandler: async (req) => {
if (!isAllowedOrigin(req.headers.origin, req.headers.host)) {
throw Object.assign(new Error("forbidden origin"), { statusCode: 403 });
}
await req.jwtVerify();
if (!req.user || !WATCH_ROLES.includes(req.user.role)) {
throw Object.assign(new Error("forbidden"), { statusCode: 403 });
}
},
},
(socket) => {
const send = (msg: OutMsg) => {
// readyState 1 = OPEN; never throw out of an event-bus callback.
if (socket.readyState === 1) {
try {
socket.send(JSON.stringify(msg));
} catch {
/* drop on a broken socket */
}
}
};
// Initial snapshot so the client renders immediately, before any event.
send({ kind: "hello", occupancy: getOccupancy(db) });
// Subscribe to the live buses. Each handler recomputes occupancy from the
// ledger (cheap fold) so the pushed count is always authoritative.
const offLedger = deviceEvents.onLedger((event) => {
send({ kind: "ledger", event, occupancy: getOccupancy(db) });
});
const offPrinter = deviceEvents.onPrinterStatus((event) => {
send({ kind: "printer-status", event });
});
socket.on("close", () => {
offLedger();
offPrinter();
});
},
);
}
+111 -41
View File
@@ -1,18 +1,33 @@
import cookie from "@fastify/cookie";
import jwt from "@fastify/jwt";
import websocket from "@fastify/websocket";
import Fastify, { type FastifyInstance } from "fastify";
import { createDb, type Db } from "@parking/db";
import { randomUUID } from "node:crypto";
import { createDb, deviceEvents as deviceEventsTable, type Db } from "@parking/db";
import { TOKEN_COOKIE, requireJwtSecret } from "./auth.js";
import { deviceEvents } from "./device-events.js";
import { EntryFlow } from "./entry-flow.js";
import { EventLog } from "./event-log.js";
import { LaneMap } from "./lane-map.js";
import { ExitFlow } from "./exit-flow.js";
import { PayStation } from "./pay-station.js";
import { PermitFlow } from "./permit-flow.js";
import { ShiftService } from "./shift-service.js";
import { ReadDispatcher } from "./read-dispatch.js";
import { PrinterMonitor } from "./printer-monitor.js";
import { buildSigner } from "./signer.js";
import { buildSigner, buildVerifier } from "./signer.js";
import { authRoutes } from "./routes/auth.js";
import { deviceRoutes } from "./routes/devices.js";
import { eventRoutes } from "./routes/events.js";
import { payRoutes } from "./routes/pay.js";
import { permitRoutes } from "./routes/permits.js";
import { qrReaderRoutes } from "./routes/qr-reader.js";
import { shiftRoutes } from "./routes/shift.js";
import { siteRoutes } from "./routes/site.js";
import { snapshotRoutes } from "./routes/snapshots.js";
import { tariffRoutes } from "./routes/tariffs.js";
import { printerRoutes } from "./routes/printers.js";
import { setupRoutes } from "./routes/setup.js";
import { wsRoutes } from "./routes/ws.js";
// The backend is Fastify (Node). Hardware drivers live as isolated Fastify
// plugins emitting onto a shared internal event bus; auth is fully local
@@ -31,6 +46,10 @@ export async function buildServer(opts: BuildOptions = {}): Promise<FastifyInsta
await app.register(cookie);
// WebSocket support for the live booth feed (/api/ws). Registered before the
// routes so the `{ websocket: true }` route option is available.
await app.register(websocket);
// Local JWT signing with a local secret — no external identity provider.
// Fail fast rather than fall back to a known default: a booth machine started
// without a real secret would sign tokens anyone could forge (incl. an admin
@@ -38,7 +57,8 @@ export async function buildServer(opts: BuildOptions = {}): Promise<FastifyInsta
// The token is carried in an HttpOnly cookie (not the Authorization header).
await app.register(jwt, {
secret: requireJwtSecret(),
sign: { expiresIn: "8h" }, // bound to a shift; minted tokens must expire
// No expiry: a login is valid until explicit logout — a shift is a separate
// boundary, not the token lifetime (see auth.ts + wiki/concepts/shift.md).
cookie: { cookieName: TOKEN_COOKIE, signed: false },
});
@@ -47,15 +67,11 @@ export async function buildServer(opts: BuildOptions = {}): Promise<FastifyInsta
// Local username/password login → JWT in an HttpOnly cookie + CSRF cookie.
await authRoutes(app, db);
// device id -> lane resolver. Built from lane_devices at startup and refreshed
// by setupRoutes on assign/unassign, so device events can be stamped with the
// lane the device belongs to (events carry the device id, not a lane).
const laneMap = new LaneMap(db);
laneMap.refresh();
// Device-agnostic setup: the admin selects devices per lane from the driver
// catalog at first-run. See wiki/concepts/first-run-setup.md.
await setupRoutes(app, db, () => laneMap.refresh());
// Device-agnostic setup: the admin adds controllers (with their relays + entry
// button) and binds readers/cameras to a controller relay at first-run. There is
// no lane — a parking lot is one pool with a flexible set of entry/exit points.
// See wiki/concepts/first-run-setup.md, entry-exit-points.md.
await setupRoutes(app, db);
// Inbound device pushes (e.g. Dingtian Input Link URL → button events),
// guarded by source-IP allowlist + a shared-secret path token, both read from
@@ -70,39 +86,93 @@ export async function buildServer(opts: BuildOptions = {}): Promise<FastifyInsta
app.addHook("onReady", async () => printerMonitor.start());
app.addHook("onClose", async () => printerMonitor.stop());
// Append-only signed event log. Subscribe device pushes (e.g. Dingtian button
// presses) into the hash-chained, signed `events` table — the anti-fraud audit
// trail. The device is NOT trusted; the host record is the source of truth, and
// a relay open with no matching signed event is itself the anomaly. We record
// the raw input faithfully as `input_received` (not yet a `vehicle_entry` — that
// comes with the full entry flow). See wiki/concepts/append-only-event-chain.md.
const eventLog = new EventLog(db, buildSigner(app.log));
// Append-only signed business LEDGER (ledger_events). Holds only business facts
// (vehicle_entry/exit, payment, void, …) — the anti-fraud audit trail. A raw
// button press is NOT a business fact: it's device telemetry, recorded UNSIGNED
// in device_events. The entry flow (TODO) turns an input into a signed
// vehicle_entry once a ticket prints + the barrier is commanded.
// See wiki/decisions/event-streams-split.md.
// The 4th arg is a read-side fan-out fired AFTER each durable append — used to
// push the event to live booth clients (WS). It cannot affect the sign/chain path.
const eventLog = new EventLog(db, buildSigner(app.log), buildVerifier, (row) =>
deviceEvents.emitLedger(row),
);
await eventRoutes(app, db, eventLog);
// Live booth feed: server-pushed ledger + occupancy + printer-status over a
// single authenticated WebSocket (/api/ws). See routes/ws.ts.
await wsRoutes(app, db);
// Entry/exit camera snapshots (BLOB-in-DB), read-only. See snapshot.ts.
await snapshotRoutes(app, db);
// Entry flow: a button press → print ticket → signed vehicle_entry → pulseOpen.
// Subscribes to the SAME input bus as the telemetry writer below; the two are
// independent (telemetry always records; the entry flow acts only on an access
// device's rising edge). See wiki/concepts/device-input-flow.md + parking-session.md.
const entryFlow = new EntryFlow(db, eventLog, app.log);
const unsubscribeEntry = deviceEvents.onInput((e) => {
void entryFlow.onInput(e);
});
app.addHook("onClose", async () => unsubscribeEntry());
// Read-driven flows: a credential read (ticket scan / plate / card) routes via the
// dispatcher to either the PERMIT flow (if it matches a permit) or the transient
// EXIT flow. See read-dispatch.ts, exit-flow.ts, permit-flow.ts, parking-session.md.
const exitFlow = new ExitFlow(db, eventLog, app.log);
const permitFlow = new PermitFlow(db, eventLog, app.log);
const readDispatcher = new ReadDispatcher(db, exitFlow, permitFlow, app.log);
const unsubscribeRead = deviceEvents.onRead((e) => {
void readDispatcher.dispatch(e);
});
app.addHook("onClose", async () => unsubscribeRead());
// GEE/Dingtian QR reader: it HTTP-GETs on each scan and beeps/acts on our JSON
// verdict (host-in-the-loop, synchronous). Routes the read through the dispatcher
// and replies the SDK verdict. See wiki/entities/gee-qr-er80.md, qrcode-sdk.md.
await qrReaderRoutes(app, db, readDispatcher);
// Pay station (pay-on-foot): quote an open session against the active tariff +
// take payment → signed `payment` event. See wiki/concepts/tariff.md.
const payStation = new PayStation(db, eventLog, app.log);
await payRoutes(app, db, payStation, exitFlow);
// Tariff composer: admin publishes effective-dated, immutable rate-card versions
// the pay station prices against. See wiki/concepts/tariff.md.
await tariffRoutes(app, db);
// Permit (subscription) admin CRUD. See wiki/entities/permit.md.
await permitRoutes(app, db);
// Shifts (manned mode): explicit open/close → signed shift_open / shift_z_report
// (sum payments by tender, print the Z-report). See wiki/concepts/shift.md.
const shiftService = new ShiftService(db, eventLog, app.log);
await shiftRoutes(app, shiftService);
// Site config (capacity) + live occupancy. The FULL gate (refuse transient entry
// at capacity) is in the entry flow. See wiki/concepts/capacity-occupancy.md.
await siteRoutes(app, db);
const unsubscribeInput = deviceEvents.onInput((e) => {
// Resolve which lane the device belongs to. -1 marks "device fired but isn't
// mapped to a lane" (assigned without a lane, or a stale id) — still recorded
// faithfully (the chain is append-only) rather than silently dropped or
// mis-stamped as lane 0, which is a real lane.
const lane = laneMap.laneFor(e.deviceId) ?? -1;
if (lane === -1) {
app.log.warn(`input from unmapped device ${e.driverId}:${e.deviceId} — logged as lane -1`);
// Record every input edge as unsigned telemetry, keyed to the device that fired
// (provenance). No lane — the pool-of-spaces model has none. The entry flow
// (above) independently decides whether this edge is an entry button.
try {
db.insert(deviceEventsTable)
.values({
id: randomUUID(),
deviceId: e.deviceId,
category: "access",
kind: "input",
detail: { driverId: e.driverId, input: e.input, edge: e.edge },
occurredAt: e.at,
})
.run();
} catch (err) {
app.log.error(`device-event insert failed: ${(err as Error).message}`);
}
eventLog
.append({
type: "input_received",
lane,
// `source` is an IdentitySource (wiegand/lpr/qr/ticket/manual) — how a
// VEHICLE was identified. A raw input has none, so it stays null. The
// device provenance lives in `identity` instead.
source: null,
identity: `${e.driverId}:${e.deviceId} input:${e.input}/${e.edge}`,
occurredAt: e.at,
})
.catch((err) => app.log.error(`event-log append failed: ${(err as Error).message}`));
});
app.addHook("onClose", async () => unsubscribeInput());
// TODO: entry flow (input event → signed event → print → relay).
return app;
}
+316
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@@ -0,0 +1,316 @@
import { eq, devices, ledgerEvents, type Db } from "@parking/db";
import { registry, type PrinterDevice } from "@parking/devices";
import type { LedgerPayload } from "@parking/shared";
import type { FastifyBaseLogger } from "fastify";
import type { EventLog } from "./event-log.js";
// Shift service (manned mode only). A shift is an operator's accountability period,
// delimited by EXPLICIT marks — not a clock. Represented entirely as signed ledger
// events (no mutable table): `shift_open` … `shift_z_report`. At close, sum the
// `payment` events taken during the shift by tender and print a Z-report.
// See wiki/concepts/shift.md.
export class ShiftAlreadyOpenError extends Error {
constructor(operator: string) {
super(`operator ${operator} already has an open shift`);
this.name = "ShiftAlreadyOpenError";
}
}
export class NoOpenShiftError extends Error {
constructor(operator: string) {
super(`operator ${operator} has no open shift`);
this.name = "NoOpenShiftError";
}
}
export interface ShiftReport {
readonly operator: string;
readonly startedAt: string;
readonly endedAt: string;
readonly cashTotalMinor: number;
readonly cardTotalMinor: number;
readonly currency: string | null;
readonly paymentCount: number;
// --- Drawer (physical cash till; carries across shifts) ---
/** Cash in the drawer at shift start = prior shift's expected closing drawer. */
readonly openingFloatMinor: number;
/** Admin cash LOADED into the drawer during the shift (sum of + movements). */
readonly cashAddedMinor: number;
/** Admin cash REMOVED from the drawer during the shift (sum of − movements, as +). */
readonly cashRemovedMinor: number;
/** Expected drawer at close = opening + cashTaken + added − removed. Carries forward. */
readonly expectedDrawerMinor: number;
readonly printed: boolean;
}
export class InvalidCashMovementError extends Error {
constructor(msg: string) {
super(msg);
this.name = "InvalidCashMovementError";
}
}
export class ShiftService {
readonly #db: Db;
readonly #log: EventLog;
readonly #logger: FastifyBaseLogger;
constructor(db: Db, log: EventLog, logger: FastifyBaseLogger) {
this.#db = db;
this.#log = log;
this.#logger = logger;
}
/** Current physical drawer balance (cash payments + cash_movements, by time). For
* the UI to show "inherited / in the drawer now". */
drawerBalance(): { balanceMinor: number; currency: string | null } {
return this.#drawerBalanceAt(new Date().toISOString());
}
/** Is there an open shift for this operator? Returns the open `shift_open` row or null. */
openShiftFor(operator: string) {
// Scan shift events for this operator; the shift is open if the most recent
// shift event for them is a `shift_open` (not yet closed by a z_report).
const rows = this.#db
.select()
.from(ledgerEvents)
.where(eq(ledgerEvents.identity, operator))
.orderBy(ledgerEvents.index)
.all()
.filter((r) => r.type === "shift_open" || r.type === "shift_z_report");
const last = rows[rows.length - 1];
return last && last.type === "shift_open" ? last : null;
}
/**
* The physical drawer balance at `at`: a fold over the SIGNED chain BY TIME (not
* by operator — a cash_movement is the admin's, not the shift operator's). Cash
* payments add to the drawer; card payments never touch it; cash_movement amounts
* (signed: + load, − removal) adjust it. This is what carries across shifts.
*/
#drawerBalanceAt(at: string): { balanceMinor: number; currency: string | null } {
const rows = this.#db
.select()
.from(ledgerEvents)
.orderBy(ledgerEvents.index)
.all()
.filter((r) => r.occurredAt <= at && (r.type === "payment" || r.type === "cash_movement"));
let balanceMinor = 0;
let currency: string | null = null;
for (const r of rows) {
const pl = (r.payload ?? {}) as LedgerPayload;
const amt = typeof pl.amountMinor === "number" ? pl.amountMinor : 0;
if (r.type === "payment") {
// Only CASH enters the till; card settles to the bank.
if (pl.tender !== "card") balanceMinor += amt;
} else {
// cash_movement amount is signed (+ load, − removal).
balanceMinor += amt;
}
if (pl.currency) currency = pl.currency;
}
return { balanceMinor, currency };
}
/**
* Record an admin cash movement (load/remove drawer float). `amountMinor` is
* signed: positive = cash loaded IN, negative = cash taken OUT. Signed +
* attributed. Admin-only is enforced at the route. Returns the new drawer balance.
*/
async recordCashMovement(
operator: string,
amountMinor: number,
reason: string,
currency?: string,
): Promise<{ amountMinor: number; balanceMinor: number }> {
if (!Number.isInteger(amountMinor) || amountMinor === 0) {
throw new InvalidCashMovementError("amountMinor must be a non-zero integer (minor units)");
}
const now = new Date().toISOString();
await this.#log.append({
type: "cash_movement",
source: "manual",
identity: operator, // who moved the cash (admin)
payload: {
amountMinor,
...(reason ? { reason } : {}),
...(currency ? { currency } : {}),
operator,
},
occurredAt: now,
});
const { balanceMinor } = this.#drawerBalanceAt(now);
this.#logger.info(
`cash_movement ${amountMinor >= 0 ? "+" : ""}${amountMinor} by ${operator} (${reason || "no reason"}) → drawer ${balanceMinor}`,
);
return { amountMinor, balanceMinor };
}
/** Open a shift for the operator (explicit start). The opening float is auto-
* inherited from the chain = the drawer balance at the start instant. */
async open(operator: string): Promise<{ startedAt: string; openingFloatMinor: number }> {
if (this.openShiftFor(operator)) throw new ShiftAlreadyOpenError(operator);
const startedAt = new Date().toISOString();
const { balanceMinor: openingFloatMinor } = this.#drawerBalanceAt(startedAt);
await this.#log.append({
type: "shift_open",
source: "manual",
identity: operator, // the shift's operator; `identity` keys the shift to them
// Record the inherited opening float on the shift_open so it's reproducible
// and the next operator's handover figure is fixed in the chain.
payload: { operator, openingFloatMinor },
occurredAt: startedAt,
});
this.#logger.info(`shift opened for ${operator} (opening float ${openingFloatMinor})`);
return { startedAt, openingFloatMinor };
}
/** Close the operator's open shift: sum payments in the window, sign + print the Z-report. */
async close(operator: string): Promise<ShiftReport> {
const open = this.openShiftFor(operator);
if (!open) throw new NoOpenShiftError(operator);
const startedAt = open.occurredAt;
const endedAt = new Date().toISOString();
// All payments taken in [startedAt, endedAt], summed by tender. Payment time =
// the operator who handled the money (decision: sum by payment time).
const payments = this.#db
.select()
.from(ledgerEvents)
.where(eq(ledgerEvents.type, "payment"))
.all()
.filter((r) => r.occurredAt >= startedAt && r.occurredAt <= endedAt);
let cashTotalMinor = 0;
let cardTotalMinor = 0;
let currency: string | null = null;
for (const p of payments) {
const pl = (p.payload ?? {}) as LedgerPayload;
const amt = typeof pl.amountMinor === "number" ? pl.amountMinor : 0;
if (pl.tender === "card") cardTotalMinor += amt;
else cashTotalMinor += amt;
if (pl.currency) currency = pl.currency;
}
// --- Drawer figures ---
// Opening float was fixed on shift_open (inherited from the chain at start);
// fall back to a fresh fold if an older shift_open lacks it.
const openPl = (open.payload ?? {}) as LedgerPayload & { openingFloatMinor?: number };
const openingFloatMinor =
typeof openPl.openingFloatMinor === "number"
? openPl.openingFloatMinor
: this.#drawerBalanceAt(startedAt).balanceMinor;
// Cash movements within the shift window, split into added (+) and removed (−).
const movements = this.#db
.select()
.from(ledgerEvents)
.where(eq(ledgerEvents.type, "cash_movement"))
.all()
.filter((r) => r.occurredAt >= startedAt && r.occurredAt <= endedAt);
let cashAddedMinor = 0;
let cashRemovedMinor = 0;
for (const m of movements) {
const pl = (m.payload ?? {}) as LedgerPayload;
const amt = typeof pl.amountMinor === "number" ? pl.amountMinor : 0;
if (amt >= 0) cashAddedMinor += amt;
else cashRemovedMinor += -amt; // store as a positive magnitude
if (pl.currency) currency = pl.currency;
}
// Expected drawer at close = opening + cash taken + added − removed. This is the
// figure the NEXT shift inherits as its opening float.
const expectedDrawerMinor = openingFloatMinor + cashTotalMinor + cashAddedMinor - cashRemovedMinor;
const report: Omit<ShiftReport, "printed"> = {
operator,
startedAt,
endedAt,
cashTotalMinor,
cardTotalMinor,
currency,
paymentCount: payments.length,
openingFloatMinor,
cashAddedMinor,
cashRemovedMinor,
expectedDrawerMinor,
};
await this.#log.append({
type: "shift_z_report",
source: "manual",
identity: operator,
payload: {
operator,
startedAt,
endedAt,
cashTotalMinor,
cardTotalMinor,
currency: currency ?? undefined,
paymentCount: payments.length,
openingFloatMinor,
cashAddedMinor,
cashRemovedMinor,
expectedDrawerMinor,
},
});
const printed = await this.#printZReport(report);
this.#logger.info(
`shift closed for ${operator}: cash ${cashTotalMinor} card ${cardTotalMinor} (${payments.length} payments); ` +
`drawer open ${openingFloatMinor} +${cashAddedMinor} −${cashRemovedMinor} → expected ${expectedDrawerMinor}`,
);
return { ...report, printed };
}
/** Print the Z-report on a booth-receipt printer (best-effort; the signed event
* is the record — a failed print doesn't undo the close). */
async #printZReport(r: Omit<ShiftReport, "printed">): Promise<boolean> {
const printer = await this.#boothPrinter();
if (!printer) {
this.#logger.warn(`no booth-receipt printer — Z-report for ${r.operator} not printed (event is recorded)`);
return false;
}
const cur = r.currency ?? "";
const money = (m: number) => (m / 100).toFixed(2);
const lines = [
`Operator: ${r.operator}`,
`From: ${r.startedAt}`,
`To: ${r.endedAt}`,
"",
`Payments: ${r.paymentCount}`,
`Cash: ${money(r.cashTotalMinor)} ${cur}`,
`Card: ${money(r.cardTotalMinor)} ${cur}`,
"",
"-- Drawer --",
`Opening float: ${money(r.openingFloatMinor)} ${cur}`,
`Cash taken: ${money(r.cashTotalMinor)} ${cur}`,
`Cash added: ${money(r.cashAddedMinor)} ${cur}`,
`Cash removed: ${money(r.cashRemovedMinor)} ${cur}`,
`Expected drawer: ${money(r.expectedDrawerMinor)} ${cur}`,
];
try {
await printer.printReport({ title: "SHIFT Z-REPORT", lines });
return true;
} catch (err) {
this.#logger.warn(`Z-report print failed for ${r.operator}: ${(err as Error).message} (event recorded)`);
return false;
}
}
/** First enabled booth-receipt printer, or any enabled printer. */
async #boothPrinter(): Promise<PrinterDevice | null> {
const rows = await this.#db.select().from(devices).where(eq(devices.category, "printer")).all();
const enabled = rows.filter((r) => r.enabled);
const booth = enabled.find((r) => (r.config as { role?: string }).role === "booth-receipt") ?? enabled[0];
if (!booth) return null;
const driver = registry.get(booth.driverId);
if (!driver) return null;
try {
return driver.create(booth.config as never) as PrinterDevice;
} catch {
return null;
}
}
}
+31 -1
View File
@@ -14,7 +14,10 @@ export class SoftwareSigner implements Signer {
readonly keyId: string;
readonly #key: Buffer;
constructor(secret: string, keyId = "sw-hmac-v1") {
// v2 canonical form: `lane` dropped from the signed array (pool-of-spaces model,
// 2026-06-16). v1 events used a different field order and won't verify under v2 —
// that's intentional and gated by the per-event keyId. See event-log canonicalize().
constructor(secret: string, keyId = "sw-hmac-v2") {
this.#key = Buffer.from(secret, "utf8");
this.keyId = keyId;
}
@@ -55,3 +58,30 @@ export function buildSigner(log?: { warn: (msg: string) => void }): Signer {
"event signing: no signing key. Set EVENT_SIGNING_KEY (>=16 chars) for the append-only event chain.",
);
}
/**
* Resolve the signer that can VERIFY an existing event, by its stored `keyId`.
* Appends always use the one signer from buildSigner(), but a chain can contain
* events signed under different keys across a rotation (e.g. the JWT_SECRET
* fallback before a dedicated EVENT_SIGNING_KEY was set, or an ATECC608 swap).
* Each event stores its own `keyId`, so verifyChain() must check each row against
* the key that produced it — not the current append-signer. Returns undefined for
* an unknown keyId (the key is gone / not configured), which verifyChain surfaces
* as a distinct failure rather than a false "tampered" alarm.
*
* TODO(atecc608): add an "atecc608-slotN" case returning a public-key verifier.
*/
export function buildVerifier(keyId: string): Signer | undefined {
switch (keyId) {
case "sw-hmac-v2": {
const k = process.env.EVENT_SIGNING_KEY;
return k && k.length >= 16 ? new SoftwareSigner(k, "sw-hmac-v2") : undefined;
}
case "sw-hmac-jwtfallback": {
const k = process.env.JWT_SECRET;
return k && k.length >= 16 ? new SoftwareSigner(k, "sw-hmac-jwtfallback") : undefined;
}
default:
return undefined;
}
}
+115
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@@ -0,0 +1,115 @@
import { randomUUID } from "node:crypto";
import { deviceEvents as deviceEventsTable, snapshots, type Db } from "@parking/db";
import { registry, type CameraDevice } from "@parking/devices";
import type { FastifyBaseLogger } from "fastify";
import { devicesByDirection, type FlowDirection } from "./device-resolve.js";
// Camera snapshot capture, fired AFTER the barrier opens and never awaited on the
// open path (decision 2026-06-16): a snapshot is EVIDENCE, not a gate. A camera
// failure must never delay or prevent an open — the signed ledger is the decision,
// the image is an independent, prunable record stored as a BLOB in `snapshots`.
// See wiki/concepts/entry-exit-points.md and append-only-event-chain.md.
//
// Every camera serving the firing direction (entry/exit, or both) snapshots. Each
// capture is independent — one camera down doesn't stop the others. A captured image
// → a `snapshots` row + a `kind:"snapshot"` telemetry device_event; a failure → a
// telemetry device_event only. The caller passes the session `identity` so the image
// links to the signed vehicle_entry/exit.
interface SnapshotJob {
readonly db: Db;
readonly direction: FlowDirection;
/** Session/credential ref (ticket id, plate, permit car key) — links to the ledger. */
readonly identity: string;
readonly logger: FastifyBaseLogger;
}
/**
* Fire snapshots for the directional camera set. Returns immediately with a promise
* the caller MAY ignore (fire-and-forget) — it resolves to the captured snapshot ids.
* The caller must NOT block its open path on this.
*/
export function snapshotAsync(job: SnapshotJob): Promise<string[]> {
const { db, direction, identity, logger } = job;
const rows = devicesByDirection(db, "camera", direction);
if (rows.length === 0) return Promise.resolve([]);
return Promise.all(
rows.map(async (row): Promise<string | null> => {
const camera = buildCamera(row);
if (!camera) {
recordFailure(db, direction, row.id, identity, "camera config won't build", logger);
return null;
}
try {
const shot = await camera.captureSnapshot({ direction });
const id: string = randomUUID();
db.insert(snapshots)
.values({
id,
direction,
deviceId: row.id,
identity,
contentType: shot.contentType,
bytes: shot.bytes,
capturedAt: shot.capturedAt,
})
.run();
// Telemetry breadcrumb pointing at the stored image (NOT the bytes).
recordEvent(db, direction, row.id, identity, { snapshotId: id, ok: true }, logger);
return id;
} catch (err) {
recordFailure(db, direction, row.id, identity, (err as Error).message, logger);
return null;
}
}),
).then((ids) => ids.filter((id): id is string => id != null));
}
/** Build a live camera adapter from a resolved devices row, or null. */
function buildCamera(row: { driverId: string; config: unknown }): CameraDevice | null {
const driver = registry.get(row.driverId);
if (!driver) return null;
try {
return driver.create(row.config as never) as CameraDevice;
} catch {
return null;
}
}
function recordFailure(
db: Db,
direction: FlowDirection,
deviceId: string,
identity: string,
error: string,
logger: FastifyBaseLogger,
): void {
logger.warn(`snapshot failed (${direction}, ${identity}): ${error}`);
recordEvent(db, direction, deviceId, identity, { ok: false, error }, logger);
}
function recordEvent(
db: Db,
direction: FlowDirection,
deviceId: string,
identity: string,
detail: Record<string, unknown>,
logger: FastifyBaseLogger,
): void {
try {
db.insert(deviceEventsTable)
.values({
id: randomUUID(),
deviceId,
category: "camera",
kind: "snapshot",
detail: { ...detail, direction, identity },
occurredAt: new Date().toISOString(),
})
.run();
} catch (err) {
// Telemetry is best-effort; never let it surface on the (already-open) path.
logger.error(`snapshot device-event insert failed: ${(err as Error).message}`);
}
}
+12 -1
View File
@@ -12,13 +12,24 @@
},
"dependencies": {
"@parking/shared": "workspace:*",
"@radix-ui/react-dialog": "^1.1.17",
"@radix-ui/react-dropdown-menu": "^2.1.18",
"@radix-ui/react-tabs": "^1.1.15",
"@tanstack/react-query": "^5.101.0",
"@tanstack/react-router": "^1.170.16",
"i18next": "^26.3.1",
"react": "19.2.7",
"react-dom": "19.2.7"
"react-dom": "19.2.7",
"react-i18next": "^17.0.8",
"zustand": "^5.0.14"
},
"devDependencies": {
"@tailwindcss/vite": "^4.3.1",
"@tanstack/react-router-devtools": "^1.167.0",
"@types/react": "19.2.17",
"@types/react-dom": "19.2.3",
"@vitejs/plugin-react": "6.0.2",
"tailwindcss": "^4.3.1",
"typescript": "6.0.3",
"vite": "8.0.16"
}
+123
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@@ -0,0 +1,123 @@
import { useState } from "react";
import { useTranslation } from "react-i18next";
import { useMutation, useQuery, useQueryClient } from "@tanstack/react-query";
import { fetchActiveSessions, reopenBarrier, type ActiveSession } from "./api.js";
import { qk } from "./lib/query.js";
import { formatDuration, formatTime } from "./lib/format.js";
import { Panel } from "./ui/Panel.js";
// Active Sessions panel. A session is "active" while still inside OR exited-but-
// within-grace (the barrier is UNCONFIRMED, so a paid/exited car is presumed
// possibly-present until grace runs out). Lets the operator find a stuck car —
// damaged ticket, dead scanner, or a phantom barrier re-close — without a scan:
// - click a row → the pay/exit modal (pay an unpaid car, or review),
// - "Open barrier" (PAID sessions only) → an audited human-intervention re-pulse.
// No payment → no Open barrier button (the no-unpaid-bypass rule).
// See wiki/concepts/booth-exit-flow.md.
function statusBadge(s: ActiveSession): { key: string; cls: string } {
if (!s.open && s.withinGrace) return { key: "booth.badgeExiting", cls: "text-term-cyan" };
if (s.paidAt) return { key: "booth.badgePaid", cls: "text-term-green" };
return { key: "booth.badgeUnpaid", cls: "text-term-amber" };
}
export function ActiveSessions({ onPick }: { onPick: (identity: string) => void }) {
const { t } = useTranslation();
const qc = useQueryClient();
const { data, isLoading } = useQuery({
queryKey: qk.activeSessions,
queryFn: fetchActiveSessions,
// Belt-and-braces refresh in case a grace window expires with no ledger event
// to invalidate the cache (the WS only pushes on appends).
refetchInterval: 15_000,
});
const reopen = useMutation({
mutationFn: (identity: string) => reopenBarrier(identity),
onSettled: () => {
void qc.invalidateQueries({ queryKey: qk.activeSessions });
void qc.invalidateQueries({ queryKey: qk.events });
},
});
const [reopenMsg, setReopenMsg] = useState<{ id: string; text: string; ok: boolean } | null>(null);
const sessions = data?.sessions ?? [];
async function handleReopen(s: ActiveSession) {
setReopenMsg(null);
try {
const r = await reopen.mutateAsync(s.identity);
setReopenMsg({
id: s.identity,
ok: r.opened,
text: r.opened ? t("booth.barrierOpened") : r.reason ?? t("booth.openManually"),
});
} catch (e) {
setReopenMsg({ id: s.identity, ok: false, text: (e as Error).message });
}
}
return (
<Panel
title={t("booth.activeSessions")}
right={
<span className="text-[10px] uppercase tracking-wider text-term-muted">
{sessions.length} {t("booth.insideCount")}
</span>
}
className="min-h-0"
>
<div className="h-full overflow-y-auto pr-1">
{sessions.length === 0 ? (
<div className="text-term-muted">{isLoading ? t("common.loading") : t("booth.noActiveSessions")}</div>
) : (
sessions.map((s) => {
const badge = statusBadge(s);
const msg = reopenMsg?.id === s.identity ? reopenMsg : null;
return (
<div
key={s.identity}
className="flex items-center gap-3 border-b border-term-border/50 py-1.5 text-[12px] tabular-nums"
>
<button
type="button"
onClick={() => onPick(s.identity)}
className="flex flex-1 items-center gap-3 text-left hover:text-term-amber"
title={t("booth.openPayExit")}
>
<span className="text-term-text">{s.identity}</span>
<span className="text-term-muted">
{t("booth.inAt")} {formatTime(s.enteredAt)}
</span>
<span className="text-term-muted">{formatDuration(s.enteredAt, new Date().toISOString())}</span>
<span className={`ml-auto w-16 text-right font-semibold uppercase ${badge.cls}`}>{t(badge.key)}</span>
</button>
{/* Open barrier — PAID sessions only (no payment, no button). */}
{s.paidAt ? (
<button
type="button"
disabled={reopen.isPending}
onClick={() => handleReopen(s)}
className="shrink-0 rounded-term border border-term-cyan px-2 py-0.5 text-[10px] uppercase tracking-wider text-term-cyan hover:bg-term-cyan/10 disabled:opacity-50"
title={t("booth.openBarrierTitle")}
>
{t("booth.openBarrier")}
</button>
) : (
<span className="w-[88px] shrink-0" />
)}
{msg && (
<span className={`shrink-0 text-[10px] ${msg.ok ? "text-term-green" : "text-term-red"}`}>
{msg.text}
</span>
)}
</div>
);
})
)}
</div>
</Panel>
);
}
+29 -29
View File
@@ -1,11 +1,16 @@
import { useEffect, useState } from "react";
import { fetchMe, logout, type SessionUser } from "./api.js";
import { QueryClientProvider } from "@tanstack/react-query";
import { RouterProvider } from "@tanstack/react-router";
import { fetchMe, type SessionUser } from "./api.js";
import { Login } from "./Login.js";
import { SetupWizard } from "./SetupWizard.js";
import { queryClient } from "./lib/query.js";
import { setLanguage } from "./lib/i18n/index.js";
import { router } from "./router.js";
// Operator UI shell. Plain React (no admin framework) — the operator UI is
// simple enough that a framework's abstractions cost more than they save.
// Auth is cookie-based; the SPA bootstraps the session from /api/auth/me.
// App root: bootstraps the session (cookie-based, from /api/auth/me), then hands
// off to TanStack Router inside the QueryClient provider. The router renders the
// terminal chrome + screens; auth gating stays here (Login until signed in), and
// the signed-in user flows into the router context for role-based route guards.
// See wiki/entities/react-vite-spa.md and local-jwt-auth.md.
export function App() {
@@ -18,31 +23,26 @@ export function App() {
.finally(() => setLoading(false));
}, []);
if (loading) return <p style={{ fontFamily: "system-ui", padding: "2rem" }}>Loading…</p>;
if (!user) return <Login onLoggedIn={setUser} />;
// Apply the signed-in user's preferred language whenever it resolves/changes
// (login, bootstrap, or a toggle). Albanian is the default before auth resolves.
useEffect(() => {
if (user) setLanguage(user.language);
}, [user]);
if (loading) {
return <div className="flex h-screen items-center justify-center text-term-muted">loading…</div>;
}
if (!user) {
return (
<QueryClientProvider client={queryClient}>
<Login onLoggedIn={setUser} />
</QueryClientProvider>
);
}
return (
<main style={{ fontFamily: "system-ui", padding: "2rem", maxWidth: 720 }}>
<header style={{ display: "flex", justifyContent: "space-between", alignItems: "baseline" }}>
<h1 style={{ margin: 0 }}>Parking System</h1>
<span style={{ color: "#555" }}>
{user.username} ({user.role}){" "}
<button
type="button"
onClick={async () => {
await logout();
setUser(null);
}}
>
Log out
</button>
</span>
</header>
{user.role === "admin" ? (
<SetupWizard />
) : (
<p style={{ marginTop: "1rem" }}>Signed in. (Operator console coming soon.)</p>
)}
</main>
<QueryClientProvider client={queryClient}>
<RouterProvider router={router} context={{ user, setUser }} />
</QueryClientProvider>
);
}
+239
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@@ -0,0 +1,239 @@
import { useState } from "react";
import { useTranslation } from "react-i18next";
import * as Dialog from "@radix-ui/react-dialog";
import { useQuery, useQueryClient } from "@tanstack/react-query";
import {
boothExit,
fetchSiteConfig,
lookupSession,
paySession,
printVoucher,
type SessionLookup,
} from "./api.js";
import { qk } from "./lib/query.js";
import { formatDuration, formatMoney, formatTime } from "./lib/format.js";
import { SnapshotStrip } from "./ui/SnapshotStrip.js";
// The booth pay/exit modal. Opened when the operator submits a ticket id. Shows the
// session (entry, exit=now, duration, total owed) + entry/exit snapshots, takes
// payment, then EITHER prints an exit voucher (customer self-exits at a distant
// exit) OR fires the exit immediately (booth at/near the exit) — controlled by a
// checkbox defaulting from site_config.exitVoucherDefault. See booth-exit-flow.md.
type Phase = "review" | "paying" | "finishing" | "done" | "error";
export function BoothPayModal({ identity, onClose }: { identity: string; onClose: () => void }) {
const { t } = useTranslation();
const qc = useQueryClient();
const session = useQuery({ queryKey: ["session", identity], queryFn: () => lookupSession(identity) });
const config = useQuery({ queryKey: qk.siteConfig, queryFn: fetchSiteConfig });
const [tender, setTender] = useState<"cash" | "card">("cash");
const [printVoucherChecked, setPrintVoucherChecked] = useState<boolean | null>(null);
const [phase, setPhase] = useState<Phase>("review");
const [error, setError] = useState<string | null>(null);
const [result, setResult] = useState<string | null>(null);
const s: SessionLookup | undefined = session.data;
// Checkbox default comes from config the first time it loads; operator can toggle.
const voucher = printVoucherChecked ?? config.data?.exitVoucherDefault ?? false;
const alreadyPaid = s?.paidAt != null;
const canPay = s?.found && s.open && !alreadyPaid;
async function handlePayAndExit() {
if (!s) return;
setError(null);
try {
// 1. Take payment (unless already paid — e.g. paid earlier at a kiosk).
if (!alreadyPaid) {
setPhase("paying");
await paySession(identity, tender);
}
// 2. Voucher OR immediate exit.
setPhase("finishing");
if (voucher) {
const r = await printVoucher(identity);
setResult(t("pay.voucherPrinted", { printer: r.printedBy }));
} else {
const r = await boothExit(identity);
setResult(
r.opened
? t("pay.paidBarrierOpened")
: t("pay.paidExitRecorded", { reason: r.reason ?? t("booth.openManually") }),
);
}
// Refresh the live views.
void qc.invalidateQueries({ queryKey: qk.events });
void qc.invalidateQueries({ queryKey: qk.occupancy });
setPhase("done");
} catch (e) {
setError((e as Error).message);
setPhase("error");
}
}
return (
<Dialog.Root open onOpenChange={(o) => !o && onClose()}>
<Dialog.Portal>
<Dialog.Overlay className="fixed inset-0 z-40 bg-black/70" />
<Dialog.Content
className="fixed left-1/2 top-1/2 z-50 w-[560px] max-w-[95vw] -translate-x-1/2 -translate-y-1/2 rounded-term border border-term-border bg-term-panel font-mono text-term-text shadow-2xl"
aria-describedby={undefined}
>
<div className="flex items-center justify-between border-b border-term-border bg-term-panel-2 px-4 py-2">
<Dialog.Title className="m-0 text-[12px] font-semibold uppercase tracking-wider text-term-amber">
{t("pay.ticket")} {identity}
</Dialog.Title>
<Dialog.Close className="text-term-muted hover:text-term-text" aria-label={t("common.close")}>
✕
</Dialog.Close>
</div>
<div className="flex flex-col gap-3 p-4">
{session.isLoading && <div className="text-term-muted">{t("pay.lookingUp")}</div>}
{s && !s.found && (
<div className="rounded-term border border-term-red px-3 py-2 text-term-red">
{t("pay.noSessionFound")}
</div>
)}
{s && s.found && !s.open && (
<div className="rounded-term border border-term-amber px-3 py-2 text-term-amber">
{t("pay.alreadyClosed", { time: formatTime(s.exitedAt) })}
</div>
)}
{s && s.found && s.open && (
<>
{/* Session figures */}
<div className="grid grid-cols-2 gap-x-6 gap-y-1 tabular-nums">
<Row label={t("pay.entry")} value={formatTime(s.enteredAt)} />
<Row label={t("pay.now")} value={formatTime(new Date().toISOString())} />
<Row
label={t("pay.duration")}
value={s.enteredAt ? formatDuration(s.enteredAt, new Date().toISOString()) : "—"}
/>
<Row
label={t("pay.statusLabel")}
value={alreadyPaid ? t("pay.paid") : t("pay.unpaid")}
valueClass={alreadyPaid ? "text-term-green" : "text-term-amber"}
/>
</div>
{/* Total */}
<div className="flex items-end justify-between rounded-term bg-term-panel-2 px-3 py-2">
<span className="text-[11px] uppercase tracking-wider text-term-muted">{t("pay.total")}</span>
<span className="text-3xl font-bold text-term-cyan">
{s.amountMinor != null && s.currency
? formatMoney(s.amountMinor, s.currency)
: alreadyPaid
? t("booth.badgePaid")
: t("pay.noTariff")}
</span>
</div>
{/* Snapshots */}
<SnapshotStrip identity={identity} />
{phase !== "done" && (
<>
{/* Tender */}
{canPay && (
<div className="flex items-center gap-2">
<span className="text-[11px] uppercase tracking-wider text-term-muted">{t("pay.tender")}</span>
{(["cash", "card"] as const).map((tn) => (
<button
key={tn}
type="button"
onClick={() => setTender(tn)}
className={`rounded-term border px-3 py-1 text-[12px] uppercase tracking-wider ${
tender === tn
? "border-term-amber text-term-amber"
: "border-term-border text-term-muted hover:text-term-text"
}`}
>
{t(`pay.${tn}`)}
</button>
))}
</div>
)}
{/* Voucher checkbox (default from site config) */}
<label className="flex items-center gap-2 text-[12px]">
<input
type="checkbox"
checked={voucher}
onChange={(e) => setPrintVoucherChecked(e.target.checked)}
/>
{t("pay.printExitVoucher")}
<span className="text-term-muted">{t("pay.selfExitHint")}</span>
</label>
</>
)}
{error && <div className="rounded-term border border-term-red px-3 py-2 text-term-red">{error}</div>}
{result && (
<div className="rounded-term border border-term-green px-3 py-2 text-term-green">{result}</div>
)}
{/* Actions */}
<div className="flex justify-end gap-2 pt-1">
{phase === "done" ? (
<button
type="button"
onClick={onClose}
className="rounded-term border border-term-amber px-4 py-1.5 text-[12px] uppercase tracking-wider text-term-amber"
>
{t("common.close")}
</button>
) : (
<>
<button
type="button"
onClick={onClose}
className="rounded-term border border-term-border px-3 py-1.5 text-[12px] uppercase tracking-wider text-term-muted hover:text-term-text"
>
{t("common.cancel")}
</button>
<button
type="button"
onClick={handlePayAndExit}
disabled={phase === "paying" || phase === "finishing"}
className="rounded-term border border-term-green bg-term-green/10 px-4 py-1.5 text-[12px] font-semibold uppercase tracking-wider text-term-green disabled:opacity-50"
>
{phase === "paying"
? t("pay.takingPayment")
: phase === "finishing"
? voucher
? t("pay.printingVoucher")
: t("pay.opening")
: alreadyPaid
? voucher
? t("pay.printVoucher")
: t("pay.openBarrier")
: voucher
? t("pay.payAndVoucher")
: t("pay.payAndOpen")}
</button>
</>
)}
</div>
</>
)}
</div>
</Dialog.Content>
</Dialog.Portal>
</Dialog.Root>
);
}
function Row({ label, value, valueClass = "" }: { label: string; value: string; valueClass?: string }) {
return (
<div className="flex items-baseline justify-between">
<span className="text-[11px] uppercase tracking-wider text-term-muted">{label}</span>
<span className={`text-sm ${valueClass}`}>{value}</span>
</div>
);
}
+190
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@@ -0,0 +1,190 @@
import { useRef, useState } from "react";
import { useTranslation } from "react-i18next";
import { useQuery } from "@tanstack/react-query";
import { fetchEvents, fetchOccupancy, type LedgerEvent, type Occupancy } from "./api.js";
import { qk } from "./lib/query.js";
import { useLiveStore } from "./lib/live-store.js";
import { Panel } from "./ui/Panel.js";
import { StatusDot } from "./ui/StatusDot.js";
import { BoothPayModal } from "./BoothPayModal.js";
import { ActiveSessions } from "./ActiveSessions.js";
// The live operator booth view — the real-time heart of the console. Occupancy
// gauge + a streaming entry/exit/payment ticker. Query owns the initial load and
// the authoritative numbers; the WS-fed live store overlays real-time updates so
// the screen reacts the instant a car enters or exits. Dense, dark, glanceable.
/** Per-event-type display: i18n label key + accent colour for the ticker. */
const EVENT_STYLE: Record<string, { labelKey: string; color: string }> = {
vehicle_entry: { labelKey: "booth.evtEntry", color: "text-term-green" },
vehicle_exit: { labelKey: "booth.evtExit", color: "text-term-red" },
payment: { labelKey: "booth.evtPay", color: "text-term-cyan" },
void: { labelKey: "booth.evtVoid", color: "text-term-amber" },
barrier_open_command: { labelKey: "booth.evtOpenCmd", color: "text-term-muted" },
barrier_open_observed: { labelKey: "booth.evtOpenObserved", color: "text-term-muted" },
shift_open: { labelKey: "booth.evtShiftOpen", color: "text-term-amber" },
shift_z_report: { labelKey: "booth.evtShiftZ", color: "text-term-amber" },
cash_movement: { labelKey: "booth.evtCashMovement", color: "text-term-cyan" },
anomaly: { labelKey: "booth.evtAnomaly", color: "text-term-red" },
};
function hhmmss(iso: string): string {
// Local time-of-day, terminal style. Defensive against a bad timestamp.
const d = new Date(iso);
return Number.isNaN(d.getTime()) ? "--:--:--" : d.toTimeString().slice(0, 8);
}
function OccupancyGauge({ occ }: { occ: Occupancy }) {
const { t } = useTranslation();
const pct = occ.capacity ? Math.min(100, Math.round((occ.count / occ.capacity) * 100)) : null;
const barColor = occ.full ? "bg-term-red" : pct != null && pct >= 85 ? "bg-term-amber" : "bg-term-green";
return (
<div className="flex flex-col gap-3">
<div className="flex items-end gap-4">
<div className="text-6xl font-bold leading-none tabular-nums text-term-text">{occ.count}</div>
<div className="pb-1 text-term-muted">
<div className="text-[11px] uppercase tracking-wider">{t("booth.inside")}</div>
<div className="text-sm tabular-nums">
{occ.capacity == null ? t("booth.uncapped") : `${t("booth.of")} ${occ.capacity}`}
</div>
</div>
<div className="ml-auto text-right">
<div className="text-[11px] uppercase tracking-wider text-term-muted">{t("booth.free")}</div>
<div className={`text-3xl font-bold tabular-nums ${occ.full ? "text-term-red" : "text-term-green"}`}>
{occ.free == null ? "∞" : occ.free}
</div>
</div>
</div>
{pct != null && (
<div className="h-2 w-full overflow-hidden rounded-term bg-term-panel-2">
<div className={`h-full ${barColor} transition-[width] duration-300`} style={{ width: `${pct}%` }} />
</div>
)}
{occ.full && (
<div className="rounded-term border border-term-red px-2 py-1 text-center text-[11px] font-bold uppercase tracking-widest text-term-red">
{t("booth.lotFull")}
</div>
)}
</div>
);
}
function EventRow({ e }: { e: LedgerEvent }) {
const { t } = useTranslation();
const style = EVENT_STYLE[e.type];
const label = style ? t(style.labelKey) : e.type.toUpperCase();
return (
<div className="flex items-center gap-3 border-b border-term-border/50 py-1 text-[12px] tabular-nums">
<span className="text-term-muted">{hhmmss(e.occurredAt)}</span>
<span className={`w-20 shrink-0 font-semibold ${style?.color ?? "text-term-text"}`}>{label}</span>
<span className="truncate text-term-text">{e.identity ?? "—"}</span>
<span className="ml-auto text-term-muted">#{e.index}</span>
</div>
);
}
/** Ticket entry: an HID barcode scanner types the id and presses Enter; a manual
* operator types it. Either way, submit opens the pay/exit modal for that id. The
* input auto-focuses and re-focuses after a scan so the scanner always lands here. */
function TicketInput({ onSubmit }: { onSubmit: (identity: string) => void }) {
const { t } = useTranslation();
const [value, setValue] = useState("");
const ref = useRef<HTMLInputElement>(null);
return (
<form
className="flex items-center gap-2"
onSubmit={(e) => {
e.preventDefault();
const id = value.trim();
if (id) {
onSubmit(id);
setValue("");
ref.current?.focus();
}
}}
>
<input
ref={ref}
autoFocus
value={value}
onChange={(e) => setValue(e.target.value)}
placeholder={t("booth.scanPlaceholder")}
inputMode="numeric"
className="flex-1 rounded-term border border-term-border bg-term-bg px-3 py-2 text-lg tabular-nums text-term-text placeholder:text-term-muted focus:border-term-amber"
/>
<button
type="submit"
className="rounded-term border border-term-amber bg-term-amber/10 px-4 py-2 text-[12px] font-semibold uppercase tracking-wider text-term-amber"
>
{t("booth.open")}
</button>
</form>
);
}
export function BoothScreen() {
const { t } = useTranslation();
// Initial load via Query (also the fallback if the WS is briefly down).
const occQuery = useQuery({ queryKey: qk.occupancy, queryFn: fetchOccupancy });
const eventsQuery = useQuery({ queryKey: qk.events, queryFn: () => fetchEvents(100) });
// The ticket currently open in the pay/exit modal (null = no modal).
const [activeTicket, setActiveTicket] = useState<string | null>(null);
// Live overlays from the WS store.
const liveOcc = useLiveStore((s) => s.occupancy);
const liveFeed = useLiveStore((s) => s.feed);
// Prefer the live-pushed occupancy; fall back to the query.
const occ = liveOcc ?? occQuery.data ?? null;
// Merge: live events first (newest), then the queried history, de-duped by id.
const seen = new Set(liveFeed.map((e) => e.id));
const history = (eventsQuery.data?.events ?? []).filter((e) => !seen.has(e.id));
const events = [...liveFeed, ...history].slice(0, 200);
return (
<div className="grid h-full grid-cols-1 gap-3 lg:grid-cols-[minmax(320px,1fr)_2fr] lg:grid-rows-[auto_1fr]">
{/* Ticket input spans both columns at the top — the operator's primary action. */}
<div className="lg:col-span-2">
<Panel title={t("booth.processTicket")}>
<TicketInput onSubmit={setActiveTicket} />
</Panel>
</div>
{/* Left column: occupancy gauge above the active-sessions list. */}
<div className="flex min-h-0 flex-col gap-3">
<Panel title={t("booth.occupancy")} right={<StatusDot />}>
{occ ? (
<OccupancyGauge occ={occ} />
) : (
<div className="text-term-muted">{occQuery.isError ? t("booth.occUnavailable") : t("common.loading")}</div>
)}
</Panel>
<div className="min-h-0 flex-1">
<ActiveSessions onPick={setActiveTicket} />
</div>
</div>
<Panel
title={t("booth.liveFeed")}
right={
<span className="text-[10px] uppercase tracking-wider text-term-muted">
{events.length} {t("booth.events")}
</span>
}
className="min-h-0"
>
<div className="h-full overflow-y-auto pr-1">
{events.length === 0 ? (
<div className="text-term-muted">{eventsQuery.isLoading ? t("common.loading") : t("booth.noEventsYet")}</div>
) : (
events.map((e) => <EventRow key={e.id} e={e} />)
)}
</div>
</Panel>
{activeTicket && <BoothPayModal identity={activeTicket} onClose={() => setActiveTicket(null)} />}
</div>
);
}
+6 -4
View File
@@ -1,7 +1,9 @@
import { useState } from "react";
import { useTranslation } from "react-i18next";
import { login, type SessionUser } from "./api.js";
export function Login({ onLoggedIn }: { onLoggedIn: (u: SessionUser) => void }) {
const { t } = useTranslation();
const [username, setUsername] = useState("");
const [password, setPassword] = useState("");
const [error, setError] = useState<string | null>(null);
@@ -22,11 +24,11 @@ export function Login({ onLoggedIn }: { onLoggedIn: (u: SessionUser) => void })
return (
<main style={{ fontFamily: "system-ui", maxWidth: 320, margin: "4rem auto" }}>
<h1>Parking System</h1>
<h1>{t("auth.title")}</h1>
<form onSubmit={submit}>
<div style={{ margin: "0.5rem 0" }}>
<label>
Username
{t("auth.username")}
<br />
<input
value={username}
@@ -39,7 +41,7 @@ export function Login({ onLoggedIn }: { onLoggedIn: (u: SessionUser) => void })
</div>
<div style={{ margin: "0.5rem 0" }}>
<label>
Password
{t("auth.password")}
<br />
<input
type="password"
@@ -52,7 +54,7 @@ export function Login({ onLoggedIn }: { onLoggedIn: (u: SessionUser) => void })
</div>
{error && <p style={{ color: "crimson" }}>{error}</p>}
<button type="submit" disabled={busy || !username || !password}>
{busy ? "Signing in…" : "Sign in"}
{busy ? t("auth.signingIn") : t("auth.signIn")}
</button>
</form>
</main>
+191
View File
@@ -0,0 +1,191 @@
import { useEffect, useState } from "react";
import { useTranslation } from "react-i18next";
import {
ApiError,
createPermit,
deletePermit,
fetchPermits,
revokePermit,
updatePermit,
type Permit,
type PermitCredential,
type PermitInput,
} from "./api.js";
// Permit (subscription) admin. Create/edit/revoke/delete permits + their
// credentials (card/QR) and bound plates. A permit is mutable master data; every
// USE of it is a signed ledger event elsewhere. See wiki/entities/permit.md.
interface FormState {
holderName: string;
contact: string;
carBound: boolean; // false = unbound (maxConcurrent null)
maxConcurrent: string;
validFrom: string;
validTo: string;
credentials: PermitCredential[];
platesText: string; // comma/space separated
}
function emptyForm(): FormState {
return { holderName: "", contact: "", carBound: true, maxConcurrent: "1", validFrom: "", validTo: "", credentials: [{ kind: "rf", value: "" }], platesText: "" };
}
function formFrom(p: Permit): FormState {
return {
holderName: p.holderName ?? "",
contact: p.contact ?? "",
carBound: p.maxConcurrent != null,
maxConcurrent: p.maxConcurrent != null ? String(p.maxConcurrent) : "1",
validFrom: p.validFrom ?? "",
validTo: p.validTo ?? "",
credentials: p.credentials.length ? p.credentials : [{ kind: "rf", value: "" }],
platesText: p.plates.join(", "),
};
}
const STATUS_KEY: Record<Permit["status"], string> = {
active: "permits.statusActive",
suspended: "permits.statusSuspended",
revoked: "permits.statusRevoked",
};
function toInput(f: FormState): PermitInput {
return {
holderName: f.holderName.trim() || null,
contact: f.contact.trim() || null,
maxConcurrent: f.carBound ? Math.max(1, Math.round(Number(f.maxConcurrent) || 1)) : null,
validFrom: f.validFrom.trim() || null,
validTo: f.validTo.trim() || null,
credentials: f.credentials.filter((c) => c.value.trim()).map((c) => ({ kind: c.kind, value: c.value.trim() })),
plates: f.platesText.split(/[,\s]+/).map((s) => s.trim()).filter(Boolean),
};
}
export function PermitManager() {
const { t } = useTranslation();
const [permits, setPermits] = useState<Permit[] | null>(null);
const [editing, setEditing] = useState<string | "new" | null>(null);
const [form, setForm] = useState<FormState>(emptyForm);
const [msg, setMsg] = useState<{ kind: "ok" | "err"; text: string } | null>(null);
function reload() {
fetchPermits()
.then((r) => setPermits(r.permits))
.catch((e) => setMsg({ kind: "err", text: (e as Error).message }));
}
useEffect(reload, []);
function startNew() {
setForm(emptyForm());
setEditing("new");
setMsg(null);
}
function startEdit(p: Permit) {
setForm(formFrom(p));
setEditing(p.id);
setMsg(null);
}
async function save() {
setMsg(null);
try {
if (editing === "new") await createPermit(toInput(form));
else if (editing) await updatePermit(editing, toInput(form));
setEditing(null);
reload();
setMsg({ kind: "ok", text: t("permits.permitSaved") });
} catch (e) {
const problems = e instanceof ApiError ? (e as ApiError & { problems?: string[] }).problems : undefined;
setMsg({ kind: "err", text: problems?.length ? `${(e as Error).message}: ${problems.join("; ")}` : (e as Error).message });
}
}
async function doRevoke(p: Permit) {
if (!confirm(t("permits.confirmRevoke", { name: p.holderName ?? p.id }))) return;
await revokePermit(p.id).catch((e) => setMsg({ kind: "err", text: (e as Error).message }));
reload();
}
async function doDelete(p: Permit) {
if (!confirm(t("permits.confirmDelete", { name: p.holderName ?? p.id }))) return;
await deletePermit(p.id).catch((e) => setMsg({ kind: "err", text: (e as Error).message }));
reload();
}
function setCred(i: number, patch: Partial<PermitCredential>) {
setForm((f) => ({ ...f, credentials: f.credentials.map((c, j) => (j === i ? { ...c, ...patch } : c)) }));
}
if (!permits) return null;
return (
<section style={{ marginTop: "2rem" }}>
<h2>{t("permits.title")}</h2>
<ul style={{ listStyle: "none", padding: 0 }}>
{permits.map((p) => (
<li key={p.id} style={{ display: "flex", gap: "0.5rem", alignItems: "center", padding: "0.4rem 0", borderBottom: "1px solid #eee" }}>
<strong>{p.holderName ?? t("permits.unnamed")}</strong>
<span style={{ color: p.status === "active" ? "#16a34a" : "#b45309" }}>{t(STATUS_KEY[p.status])}</span>
<span style={{ color: "#666" }}>
{p.maxConcurrent == null ? t("permits.unbound") : t("permits.car", { count: p.maxConcurrent })} ·{" "}
{p.credentials.length} {t("permits.cred")} · {t("permits.plates", { count: p.plates.length })}
</span>
<span style={{ flex: 1 }} />
<button type="button" onClick={() => startEdit(p)}>{t("permits.edit")}</button>
{p.status !== "revoked" && <button type="button" onClick={() => doRevoke(p)}>{t("permits.revoke")}</button>}
<button type="button" onClick={() => doDelete(p)}>{t("permits.delete")}</button>
</li>
))}
{permits.length === 0 && <li style={{ color: "#777" }}>{t("permits.noPermitsYet")}</li>}
</ul>
{editing == null ? (
<button type="button" onClick={startNew}>{t("permits.addPermit")}</button>
) : (
<div style={{ border: "1px solid #ddd", padding: "1rem", marginTop: "0.5rem", maxWidth: 460 }}>
<h3 style={{ marginTop: 0 }}>{editing === "new" ? t("permits.newPermit") : t("permits.editPermit")}</h3>
<div style={{ display: "grid", gridTemplateColumns: "max-content 1fr", gap: "0.4rem 0.75rem", alignItems: "center" }}>
<label>{t("permits.holderName")}</label>
<input value={form.holderName} onChange={(e) => setForm((f) => ({ ...f, holderName: e.target.value }))} />
<label>{t("permits.contact")}</label>
<input value={form.contact} onChange={(e) => setForm((f) => ({ ...f, contact: e.target.value }))} />
<label>{t("permits.carLimit")}</label>
<span>
<label style={{ marginRight: "0.5rem" }}>
<input type="checkbox" checked={form.carBound} onChange={(e) => setForm((f) => ({ ...f, carBound: e.target.checked }))} /> {t("permits.limitCarsInAtOnce")}
</label>
{form.carBound && (
<input value={form.maxConcurrent} onChange={(e) => setForm((f) => ({ ...f, maxConcurrent: e.target.value }))} style={{ width: 50 }} />
)}
</span>
<label>{t("permits.validFrom")}</label>
<input value={form.validFrom} onChange={(e) => setForm((f) => ({ ...f, validFrom: e.target.value }))} placeholder={t("permits.isoDateOptional")} />
<label>{t("permits.validTo")}</label>
<input value={form.validTo} onChange={(e) => setForm((f) => ({ ...f, validTo: e.target.value }))} placeholder={t("permits.isoDateOptional")} />
<label>{t("permits.boundPlates")}</label>
<input value={form.platesText} onChange={(e) => setForm((f) => ({ ...f, platesText: e.target.value }))} placeholder={t("permits.commaSeparatedOptional")} />
</div>
<h4 style={{ marginBottom: "0.25rem" }}>{t("permits.credentialsCardQr")}</h4>
{form.credentials.map((c, i) => (
<div key={i} style={{ display: "flex", gap: "0.4rem", marginBottom: "0.3rem" }}>
<select value={c.kind} onChange={(e) => setCred(i, { kind: e.target.value as "rf" | "qr" })}>
<option value="rf">{t("permits.rfCardTag")}</option>
<option value="qr">{t("permits.qr")}</option>
</select>
<input value={c.value} onChange={(e) => setCred(i, { value: e.target.value })} placeholder={t("permits.credentialValue")} style={{ flex: 1 }} />
<button type="button" onClick={() => setForm((f) => ({ ...f, credentials: f.credentials.filter((_, j) => j !== i) }))}>×</button>
</div>
))}
<button type="button" onClick={() => setForm((f) => ({ ...f, credentials: [...f.credentials, { kind: "rf", value: "" }] }))}>{t("permits.addCredential")}</button>
<p style={{ color: "#777", fontSize: "0.85em", margin: "0.5rem 0 0" }}>
{t("permits.needCredentialOrPlate")}
</p>
<div style={{ marginTop: "1rem", display: "flex", gap: "0.5rem" }}>
<button type="button" onClick={save}>{t("permits.save")}</button>
<button type="button" onClick={() => setEditing(null)}>{t("permits.cancel")}</button>
</div>
</div>
)}
{msg && <p style={{ color: msg.kind === "ok" ? "#16a34a" : "crimson" }}>{msg.text}</p>}
</section>
);
}
+391 -80
View File
@@ -1,6 +1,7 @@
import { useState, useEffect, useCallback } from "react";
import {
assignDevice,
editDevice,
discoverDevices,
fetchBackendIps,
fetchCatalog,
@@ -12,28 +13,41 @@ import {
type Catalog,
type CatalogEntry,
type DeviceCategory,
type DeviceConfig,
type Direction,
type DiscoveredDevice,
type RelaySpec,
type TestResult,
} from "./api.js";
// First-run setup wizard (scaffold). The admin assigns devices per lane from the
// driver catalog. The data model is multi-instance — one lane_devices row per
// instance — so EVERY category supports more than one device: each section lists
// the already-assigned instances (with Remove) and an "Add" form. Drivers that
// support LAN discovery get a "Scan" button. Auth is via the admin's session
// cookie. See wiki/concepts/first-run-setup.md and device-discovery.md.
// First-run setup wizard. The pool-of-spaces model: a parking lot is one pool with
// a flexible set of entry/exit points — NO lane. The admin adds CONTROLLERS (each
// declares its relays = entry/exit/both + which input terminal the entry button is
// on), then binds READERS / CAMERAS to a controller relay (the barrier they sit at).
// Direction is a property of the relay, inherited by bound devices. The data model
// is multi-instance — one `devices` row per instance. See entry-exit-points.md.
const CATEGORIES: { key: DeviceCategory; title: string; noun: string }[] = [
{ key: "access", title: "Access controllers", noun: "access controller" },
{ key: "reader", title: "Readers", noun: "reader" },
{ key: "camera", title: "Cameras (entry/exit snapshot)", noun: "camera" },
{ key: "printer", title: "Printers", noun: "printer" },
const CONTROLLER: { key: DeviceCategory; title: string; noun: string } = {
key: "access",
title: "Controllers (barriers + entry button)",
noun: "controller",
};
// Categories that BIND to a controller relay (direction inherited from the relay).
const BOUND: { key: DeviceCategory; title: string; noun: string }[] = [
{ key: "reader", title: "Readers (QR / RFID)", noun: "reader" },
{ key: "camera", title: "Cameras (snapshot + plate)", noun: "camera" },
{ key: "printer", title: "Printers (tickets / vouchers)", noun: "printer" },
];
const DIRECTION_LABELS: Record<Direction, string> = {
entry: "Entry",
exit: "Exit",
both: "Both (entry + exit)",
};
export function SetupWizard() {
const [catalog, setCatalog] = useState<Catalog | null>(null);
const [assignments, setAssignments] = useState<Assignment[] | null>(null);
const [lane, setLane] = useState(1);
const [error, setError] = useState<string | null>(null);
const reloadState = useCallback(() => {
@@ -50,35 +64,41 @@ export function SetupWizard() {
if (error) return <p style={{ color: "crimson" }}>Failed to load setup: {error}</p>;
if (!catalog || !assignments) return <p>Loading device catalog…</p>;
// Controllers are needed before binding readers/cameras (they pick a controller relay).
const controllers = assignments.filter((a) => a.category === "access");
return (
<section>
<h2>First-run setup</h2>
<div style={{ display: "flex", gap: "1rem", alignItems: "center" }}>
<label>
Lane{" "}
<input
type="number"
min={1}
value={lane}
onChange={(e) => setLane(Number(e.target.value))}
style={{ width: "4rem" }}
/>
</label>
<span style={{ color: "#666", fontSize: "0.85em" }}>
Devices are added per lane. Switch lanes to configure another.
</span>
</div>
<p style={{ color: "#666", fontSize: "0.9em" }}>
Add your barrier controllers first — set which relay is entry/exit and which
terminal the entry button is wired to. Then add readers, cameras and printers
and point each at the barrier it serves.
</p>
{CATEGORIES.map(({ key, title, noun }) => (
<CategorySection
category={CONTROLLER.key}
title={CONTROLLER.title}
noun={CONTROLLER.noun}
entries={catalog[CONTROLLER.key]}
discoverableIds={catalog.discoverable}
pushCapableIds={catalog.pushCapable}
controllers={controllers}
assignments={controllers}
onChanged={reloadState}
/>
{BOUND.map(({ key, title, noun }) => (
<CategorySection
key={key}
lane={lane}
category={key}
title={title}
noun={noun}
entries={catalog[key]}
discoverableIds={catalog.discoverable}
assignments={assignments.filter((a) => a.category === key && a.lane === lane)}
pushCapableIds={catalog.pushCapable}
controllers={controllers}
assignments={assignments.filter((a) => a.category === key)}
onChanged={reloadState}
/>
))}
@@ -87,37 +107,41 @@ export function SetupWizard() {
}
function CategorySection({
lane,
category,
title,
noun,
entries,
discoverableIds,
pushCapableIds,
controllers,
assignments,
onChanged,
}: {
lane: number;
category: DeviceCategory;
title: string;
noun: string;
entries: CatalogEntry[];
discoverableIds: string[];
pushCapableIds: string[];
controllers: Assignment[];
assignments: Assignment[];
onChanged: () => Promise<void> | void;
}) {
// Show the add-form automatically when nothing is assigned yet; otherwise it's
// collapsed behind "Add another" so the list stays the focus.
const [adding, setAdding] = useState(false);
// Warnings from the most recent save (e.g. "string protocol could not be
// disabled — finish in the device web UI"). Persist after the form closes.
const [editingId, setEditingId] = useState<string | null>(null);
const [warnings, setWarnings] = useState<string[]>([]);
const showForm = adding || assignments.length === 0;
const editing = editingId ? assignments.find((a) => a.id === editingId) : undefined;
// Show the add form for an empty category or an explicit "+ Add", but not while
// editing an existing row (that row renders its own inline form).
const showForm = !editing && (adding || assignments.length === 0);
// Binding categories need a controller to point at first.
const isBound = category !== "access";
const blockedNoController = isBound && controllers.length === 0;
return (
<fieldset style={{ marginTop: "1rem" }}>
<legend>
{title} <span style={{ color: "#888", fontWeight: 400 }}>· lane {lane}</span>
</legend>
<legend>{title}</legend>
{warnings.length > 0 && (
<div
@@ -143,18 +167,49 @@ function CategorySection({
{assignments.length > 0 && (
<ul style={{ listStyle: "none", padding: 0, margin: "0 0 0.75rem" }}>
{assignments.map((a) => (
<AssignmentRow key={a.id} assignment={a} onChanged={onChanged} />
))}
{assignments.map((a) =>
editingId === a.id ? (
<li key={a.id} style={{ listStyle: "none", padding: 0 }}>
<DeviceForm
category={category}
entries={entries}
discoverableIds={discoverableIds}
pushCapableIds={pushCapableIds}
controllers={controllers}
editing={a}
onSaved={async (w) => {
setWarnings(w);
await onChanged();
setEditingId(null);
}}
onCancel={() => setEditingId(null)}
/>
</li>
) : (
<AssignmentRow
key={a.id}
assignment={a}
controllers={controllers}
onChanged={onChanged}
onEdit={() => {
setAdding(false);
setEditingId(a.id);
}}
/>
),
)}
</ul>
)}
{showForm ? (
{blockedNoController ? (
<p style={{ color: "#b45309", margin: 0 }}>Add a controller first — a {noun} points at one of its relays.</p>
) : editing ? null : showForm ? (
<DeviceForm
lane={lane}
category={category}
entries={entries}
discoverableIds={discoverableIds}
pushCapableIds={pushCapableIds}
controllers={controllers}
onSaved={async (w) => {
setWarnings(w);
await onChanged();
@@ -173,17 +228,19 @@ function CategorySection({
function AssignmentRow({
assignment,
controllers,
onChanged,
onEdit,
}: {
assignment: Assignment;
controllers: Assignment[];
onChanged: () => Promise<void> | void;
onEdit: () => void;
}) {
const [removing, setRemoving] = useState(false);
const [error, setError] = useState<string | null>(null);
// A short, human summary of the instance: role (if any) + host.
const cfg = assignment.config;
const role = typeof cfg.role === "string" ? cfg.role : null;
const cfg = assignment.config as Record<string, unknown>;
const host = typeof cfg.host === "string" ? cfg.host : null;
async function remove() {
@@ -210,11 +267,14 @@ function AssignmentRow({
}}
>
<strong>{assignment.driverId}</strong>
{role && <span style={{ color: "#0369a1" }}>{role}</span>}
{host && <span style={{ color: "#666" }}>{host}</span>}
<DeviceSummary assignment={assignment} controllers={controllers} />
{!assignment.enabled && <span style={{ color: "#b45309" }}>(disabled)</span>}
<span style={{ flex: 1 }} />
{error && <span style={{ color: "crimson" }}>{error}</span>}
<button type="button" onClick={onEdit} disabled={removing}>
Edit
</button>
<button type="button" onClick={remove} disabled={removing}>
{removing ? "Removing…" : "Remove"}
</button>
@@ -222,27 +282,88 @@ function AssignmentRow({
);
}
/** Inline summary of an assignment's direction/binding for the list. */
function DeviceSummary({ assignment, controllers }: { assignment: Assignment; controllers: Assignment[] }) {
const cfg = assignment.config as Record<string, unknown>;
if (assignment.category === "access") {
const relays = Array.isArray(cfg.relays) ? (cfg.relays as RelaySpec[]) : [];
if (relays.length === 0) return <em style={{ color: "#b45309" }}>no relays set</em>;
return (
<span style={{ display: "flex", gap: "0.35rem" }}>
{relays.map((r) => (
<DirectionBadge key={r.relay} direction={r.direction} label={`R${r.relay}${r.button ? `·btn${r.button}` : ""}`} />
))}
</span>
);
}
// Bound device: show controller + relay it points at, with inherited direction.
const controllerId = typeof cfg.controllerId === "string" ? cfg.controllerId : null;
const relay = typeof cfg.relay === "number" ? cfg.relay : null;
if (!controllerId || relay == null) return <em style={{ color: "#b45309" }}>unbound</em>;
const controller = controllers.find((c) => c.id === controllerId);
const spec = controller
? (((controller.config as Record<string, unknown>).relays as RelaySpec[]) ?? []).find((r) => r.relay === relay)
: undefined;
return (
<DirectionBadge
direction={spec?.direction ?? "both"}
label={`${controller ? controller.driverId : "?"} · R${relay}`}
/>
);
}
function DeviceForm({
lane,
category,
entries,
discoverableIds,
pushCapableIds,
controllers,
editing,
onSaved,
onCancel,
}: {
lane: number;
category: DeviceCategory;
entries: CatalogEntry[];
discoverableIds: string[];
pushCapableIds: string[];
controllers: Assignment[];
/** When set, the form edits this assignment in place (driver locked, config
* pre-filled) instead of adding a new device. */
editing?: Assignment;
onSaved: (warnings: string[]) => Promise<void> | void;
onCancel?: () => void;
}) {
const [selectedId, setSelectedId] = useState<string>("");
// On edit the driver is fixed (you can't change what KIND of device a slot is —
// that's a remove + re-add); pre-select it and lock the picker.
const editCfg = editing?.config as Record<string, unknown> | undefined;
const [selectedId, setSelectedId] = useState<string>(editing?.driverId ?? "");
const selected = entries.find((e) => e.id === selectedId);
const canDiscover = selected != null && discoverableIds.includes(selected.id);
const canDiscover = !editing && selected != null && discoverableIds.includes(selected.id);
const pushesToBackend = selected != null && pushCapableIds.includes(selected.id);
const isController = category === "access";
// Pre-fill scalar config fields from the existing assignment when editing.
// (relays/controllerId/relay are model fields handled by their own state below.)
const [config, setConfig] = useState<Record<string, string | number>>(() => {
if (!editCfg) return {};
const out: Record<string, string | number> = {};
for (const [k, v] of Object.entries(editCfg)) {
if (typeof v === "string" || typeof v === "number") out[k] = v;
}
return out;
});
// Controllers: the relay map (which relay = entry/exit/both, + entry button terminal).
const [relays, setRelays] = useState<RelaySpec[]>(() =>
Array.isArray(editCfg?.relays) ? (editCfg!.relays as RelaySpec[]) : [{ relay: 1, direction: "both" }],
);
// Bound devices: which controller + relay this device sits at.
const [controllerId, setControllerId] = useState<string>(
typeof editCfg?.controllerId === "string" ? editCfg.controllerId : "",
);
const [boundRelay, setBoundRelay] = useState<number | "">(
typeof editCfg?.relay === "number" ? editCfg.relay : "",
);
// Config values (auto-filled by discovery, editable by hand).
const [config, setConfig] = useState<Record<string, string | number>>({});
const [tested, setTested] = useState<TestResult | null>(null);
const [testing, setTesting] = useState(false);
const [testError, setTestError] = useState<string | null>(null);
@@ -252,18 +373,12 @@ function DeviceForm({
const [scanning, setScanning] = useState(false);
const [scanError, setScanError] = useState<string | null>(null);
// Backend push IP: which of OUR addresses the device should call back on. We
// auto-pick the NIC on the device's subnet, but surface it editable here so a
// multi-NIC host can be corrected (the chosen IP is baked into the device on
// save). Only relevant for drivers that push (the field hides if no candidates).
const [backendIps, setBackendIps] = useState<BackendIpCandidate[] | null>(null);
const [backendIp, setBackendIp] = useState<string>("");
// (Re)load backend-IP candidates whenever the device host changes after a
// successful test (the test confirms the host is real + reachable).
const testedHost = tested ? String(mergedConfig().host ?? "") : "";
const testedHost = tested ? String(mergedScalarConfig().host ?? "") : "";
useEffect(() => {
if (!testedHost) {
if (!testedHost || !pushesToBackend) {
setBackendIps(null);
return;
}
@@ -281,7 +396,7 @@ function DeviceForm({
live = false;
};
// eslint-disable-next-line react-hooks/exhaustive-deps
}, [testedHost]);
}, [testedHost, pushesToBackend]);
function selectDriver(id: string) {
setSelectedId(id);
@@ -308,8 +423,8 @@ function DeviceForm({
resetStatus();
}
// Config the user actually entered, merged over driver defaults.
function mergedConfig(): Record<string, string | number> {
/** Scalar config the user entered, merged over driver defaults (for test/push-IP). */
function mergedScalarConfig(): Record<string, string | number> {
const out: Record<string, string | number> = {};
for (const f of selected?.configFields ?? []) {
const v = config[f.key] ?? (f.default as string | number | undefined);
@@ -318,7 +433,22 @@ function DeviceForm({
return out;
}
// Editing config invalidates a prior test.
/** Full config to persist: scalars + the model's direction/binding fields. */
function mergedConfig(): DeviceConfig {
const out: DeviceConfig = { ...mergedScalarConfig() };
if (isController) {
out.relays = relays.map((r) => ({
relay: r.relay,
direction: r.direction,
...(r.button ? { button: r.button } : {}),
}));
} else if (controllerId && boundRelay !== "") {
out.controllerId = controllerId;
out.relay = boundRelay;
}
return out;
}
function resetStatus() {
setTested(null);
setTestError(null);
@@ -331,7 +461,7 @@ function DeviceForm({
setTestError(null);
setTested(null);
try {
setTested(await testDevice(selected.id, mergedConfig()));
setTested(await testDevice(selected.id, mergedScalarConfig()));
} catch (e) {
setTestError((e as Error).message);
} finally {
@@ -341,17 +471,26 @@ function DeviceForm({
async function save() {
if (!selected) return;
// Bound devices must point at a controller relay (binding is optional in the
// model with a fallback, but the wizard guides the admin to bind explicitly).
if (!isController && (!controllerId || boundRelay === "")) {
setSaveError("Pick the controller and relay this device sits at.");
return;
}
setSaving(true);
setSaveError(null);
try {
const result = await assignDevice({
lane,
category,
driverId: selected.id,
config: mergedConfig(),
...(backendIp ? { backendIp } : {}),
});
// Hand warnings to the parent so they persist after this form unmounts.
const result = editing
? await editDevice(editing.id, {
config: mergedConfig(),
...(backendIp ? { backendIp } : {}),
})
: await assignDevice({
category,
driverId: selected.id,
config: mergedConfig(),
...(backendIp ? { backendIp } : {}),
});
await onSaved(result.warnings ?? []);
} catch (e) {
setSaveError((e as Error).message);
@@ -365,7 +504,9 @@ function DeviceForm({
{entries.length === 0 ? (
<em>No drivers registered.</em>
) : (
<select value={selectedId} onChange={(e) => selectDriver(e.target.value)}>
// Driver is locked when editing — changing the kind of device is a
// remove + re-add, not an in-place edit.
<select value={selectedId} onChange={(e) => selectDriver(e.target.value)} disabled={!!editing}>
<option value="" disabled>
Choose a device…
</option>
@@ -441,13 +582,30 @@ function DeviceForm({
</div>
))}
{/* CONTROLLER: the relay map — which relay opens which direction + entry button. */}
{isController && <RelayEditor relays={relays} onChange={setRelays} />}
{/* BOUND device: which controller + relay it sits at. */}
{!isController && (
<BindingPicker
controllers={controllers}
controllerId={controllerId}
relay={boundRelay}
onControllerChange={(id) => {
setControllerId(id);
setBoundRelay("");
}}
onRelayChange={setBoundRelay}
/>
)}
{/* Test (no save/no device change) then Save (configures + persists). */}
<div style={{ marginTop: "0.75rem", display: "flex", gap: "0.5rem", alignItems: "center" }}>
<button type="button" onClick={test} disabled={testing}>
{testing ? "Testing…" : "Test connection"}
</button>
<button type="button" onClick={save} disabled={saving}>
{saving ? "Saving…" : "Save & configure"}
{saving ? "Saving…" : editing ? "Save changes" : "Save & configure"}
</button>
{onCancel && (
<button type="button" onClick={onCancel} disabled={saving}>
@@ -476,8 +634,6 @@ function DeviceForm({
</div>
)}
{/* Backend push IP — only for push-capable devices (candidates present).
Pre-filled with the auto-pick; editable for multi-NIC hosts. */}
{backendIps && backendIps.length > 0 && (
<div style={{ margin: "0.5rem 0 0" }}>
<label>
@@ -512,6 +668,161 @@ function DeviceForm({
);
}
/** Controller relay map editor: each row = a relay + its direction + (optional)
* the input terminal its entry button is wired to. */
function RelayEditor({ relays, onChange }: { relays: RelaySpec[]; onChange: (r: RelaySpec[]) => void }) {
function update(i: number, patch: Partial<RelaySpec>) {
onChange(relays.map((r, idx) => (idx === i ? { ...r, ...patch } : r)));
}
function add() {
const nextRelay = (relays.reduce((m, r) => Math.max(m, r.relay), 0) || 0) + 1;
onChange([...relays, { relay: nextRelay, direction: "both" }]);
}
function remove(i: number) {
onChange(relays.filter((_, idx) => idx !== i));
}
return (
<div style={{ margin: "0.5rem 0", padding: "0.5rem", background: "#f3f4f6", borderRadius: 6 }}>
<strong style={{ fontSize: "0.9em" }}>Relays on this controller</strong>
<p style={{ margin: "0.15rem 0 0.5rem", color: "#666", fontSize: "0.8em" }}>
Each relay opens one barrier. Set its direction; for transient entry, set which input
terminal the entry button is wired to.
</p>
{relays.map((r, i) => (
<div key={i} style={{ display: "flex", gap: "0.5rem", alignItems: "center", margin: "0.25rem 0" }}>
<label>
Relay{" "}
<input
type="number"
min={1}
value={r.relay}
style={{ width: "3.5rem" }}
onChange={(e) => update(i, { relay: Number(e.target.value) })}
/>
</label>
<select value={r.direction} onChange={(e) => update(i, { direction: e.target.value as Direction })}>
{(["entry", "exit", "both"] as Direction[]).map((d) => (
<option key={d} value={d}>
{DIRECTION_LABELS[d]}
</option>
))}
</select>
{(r.direction === "entry" || r.direction === "both") && (
<label>
Entry button on terminal{" "}
<input
type="number"
min={1}
value={r.button ?? ""}
placeholder="—"
style={{ width: "3.5rem" }}
onChange={(e) => update(i, { button: e.target.value === "" ? undefined : Number(e.target.value) })}
/>
</label>
)}
{relays.length > 1 && (
<button type="button" onClick={() => remove(i)}>
✕
</button>
)}
</div>
))}
<button type="button" onClick={add} style={{ marginTop: "0.25rem" }}>
+ Add relay
</button>
</div>
);
}
/** Binding picker for readers/cameras/printers: choose the controller + relay this
* device sits at. Direction is inherited from the chosen relay (shown). */
function BindingPicker({
controllers,
controllerId,
relay,
onControllerChange,
onRelayChange,
}: {
controllers: Assignment[];
controllerId: string;
relay: number | "";
onControllerChange: (id: string) => void;
onRelayChange: (relay: number) => void;
}) {
const controller = controllers.find((c) => c.id === controllerId);
const relays: RelaySpec[] = controller
? (((controller.config as Record<string, unknown>).relays as RelaySpec[]) ?? [])
: [];
const chosen = relays.find((r) => r.relay === relay);
return (
<div style={{ margin: "0.5rem 0", padding: "0.5rem", background: "#f3f4f6", borderRadius: 6 }}>
<strong style={{ fontSize: "0.9em" }}>Which barrier does this device serve?</strong>
<div style={{ display: "flex", gap: "0.5rem", alignItems: "center", marginTop: "0.35rem", flexWrap: "wrap" }}>
<label>
Controller{" "}
<select value={controllerId} onChange={(e) => onControllerChange(e.target.value)}>
<option value="" disabled>
Choose…
</option>
{controllers.map((c) => {
const host = (c.config as Record<string, unknown>).host;
return (
<option key={c.id} value={c.id}>
{c.driverId}
{typeof host === "string" ? ` (${host})` : ""}
</option>
);
})}
</select>
</label>
<label>
Relay{" "}
<select
value={relay === "" ? "" : String(relay)}
disabled={!controller}
onChange={(e) => onRelayChange(Number(e.target.value))}
>
<option value="" disabled>
Choose…
</option>
{relays.map((r) => (
<option key={r.relay} value={r.relay}>
Relay {r.relay} ({DIRECTION_LABELS[r.direction]})
</option>
))}
</select>
</label>
{chosen && <DirectionBadge direction={chosen.direction} label={`inherits ${chosen.direction}`} />}
</div>
{controller && relays.length === 0 && (
<p style={{ margin: "0.35rem 0 0", color: "#b45309", fontSize: "0.85em" }}>
This controller has no relays configured.
</p>
)}
</div>
);
}
function DirectionBadge({ direction, label }: { direction: Direction; label?: string }) {
const color = direction === "entry" ? "#15803d" : direction === "exit" ? "#b45309" : "#6b7280";
return (
<span
style={{
color,
border: `1px solid ${color}`,
borderRadius: 4,
padding: "0 0.35rem",
fontSize: "0.75em",
fontWeight: 600,
}}
>
{label ?? direction}
</span>
);
}
function HealthBadge({ status }: { status: string }) {
const color = status === "ready" ? "#16a34a" : status === "degraded" ? "#d97706" : "#dc2626";
return <span style={{ color, fontWeight: 600 }}>● {status}</span>;
+164
View File
@@ -0,0 +1,164 @@
import { useEffect, useState } from "react";
import { useTranslation } from "react-i18next";
import { closeShift, fetchShift, openShift, recordCashMovement, type ShiftReport } from "./api.js";
// Manned-mode shift control. Start/End are explicit (not time-based — see
// wiki/concepts/shift.md). End Shift signs + prints a Z-report and shows the
// totals + the DRAWER picture (opening float carried from the prior shift, cash
// taken/added/removed, expected drawer). Admins can load/remove drawer cash.
// Available to cashier/operator/admin (readonly has no shift).
const money = (m: number, cur: string | null) => `${(m / 100).toFixed(2)} ${cur ?? ""}`.trim();
export function ShiftControl({ isAdmin = false }: { isAdmin?: boolean }) {
const { t } = useTranslation();
const [startedAt, setStartedAt] = useState<string | null>(null);
const [drawerMinor, setDrawerMinor] = useState<number | null>(null);
const [currency, setCurrency] = useState<string | null>(null);
const [busy, setBusy] = useState(false);
const [report, setReport] = useState<ShiftReport | null>(null);
const [err, setErr] = useState<string | null>(null);
// Cash-movement form (admin only).
const [moveAmount, setMoveAmount] = useState("");
const [moveReason, setMoveReason] = useState("");
const [moveMsg, setMoveMsg] = useState<string | null>(null);
function refresh() {
fetchShift()
.then((s) => {
setStartedAt(s.open?.startedAt ?? null);
setDrawerMinor(s.drawerMinor);
setCurrency(s.currency);
})
.catch(() => {
/* readonly / not permitted — hide control */
});
}
useEffect(refresh, []);
async function start() {
setBusy(true);
setErr(null);
setReport(null);
try {
const { startedAt } = await openShift();
setStartedAt(startedAt);
refresh();
} catch (e) {
setErr((e as Error).message);
} finally {
setBusy(false);
}
}
async function end() {
setBusy(true);
setErr(null);
try {
const z = await closeShift();
setReport(z);
setStartedAt(null);
refresh();
} catch (e) {
setErr((e as Error).message);
} finally {
setBusy(false);
}
}
async function move(sign: 1 | -1) {
setMoveMsg(null);
const major = Number(moveAmount);
if (!Number.isFinite(major) || major <= 0) {
setMoveMsg(t("shift.enterPositive"));
return;
}
try {
const r = await recordCashMovement(sign * Math.round(major * 100), moveReason.trim());
setMoveAmount("");
setMoveReason("");
setMoveMsg(t("shift.drawerNow", { amount: money(r.balanceMinor, currency) }));
refresh();
} catch (e) {
setMoveMsg((e as Error).message);
}
}
return (
<section style={{ marginTop: "1.5rem", padding: "0.75rem 1rem", border: "1px solid #ddd", borderRadius: 6, maxWidth: 460 }}>
<strong>{t("shift.label")}</strong>{" "}
{startedAt ? (
<>
<span style={{ color: "#16a34a" }}>{t("shift.open")}</span> {t("shift.since")}{" "}
{new Date(startedAt).toLocaleString()}{" "}
<button type="button" onClick={end} disabled={busy}>
{busy ? t("shift.ending") : t("shift.endShift")}
</button>
</>
) : (
<>
<span style={{ color: "#777" }}>{t("shift.notStarted")}</span>{" "}
<button type="button" onClick={start} disabled={busy}>
{busy ? t("shift.starting") : t("shift.startShift")}
</button>
</>
)}
{/* Live drawer balance (what's in the till right now / inherited). */}
{drawerMinor != null && (
<div style={{ marginTop: "0.5rem", color: "#555" }}>
{t("shift.drawer")} <strong>{money(drawerMinor, currency)}</strong>
{startedAt && <span style={{ color: "#888" }}> {t("shift.openingFloatInherited")}</span>}
</div>
)}
{err && <p style={{ color: "crimson", margin: "0.5rem 0 0" }}>{err}</p>}
{/* Admin: load / remove physical drawer cash (signed cash_movement). */}
{isAdmin && (
<div style={{ marginTop: "0.6rem", paddingTop: "0.5rem", borderTop: "1px solid #eee" }}>
<div style={{ color: "#666", fontSize: "0.85rem", marginBottom: "0.35rem" }}>
{t("shift.drawerCashAdmin")}
</div>
<div style={{ display: "flex", gap: "0.4rem", alignItems: "center", flexWrap: "wrap" }}>
<input
value={moveAmount}
onChange={(e) => setMoveAmount(e.target.value)}
placeholder={t("shift.amount")}
inputMode="decimal"
style={{ width: 90 }}
/>
<input
value={moveReason}
onChange={(e) => setMoveReason(e.target.value)}
placeholder={t("shift.reasonPlaceholder")}
style={{ flex: 1, minWidth: 140 }}
/>
<button type="button" onClick={() => move(1)}>{t("shift.load")}</button>
<button type="button" onClick={() => move(-1)}>{t("shift.remove")}</button>
</div>
{moveMsg && <div style={{ marginTop: "0.35rem", color: "#555", fontSize: "0.85rem" }}>{moveMsg}</div>}
</div>
)}
{report && (
<div style={{ marginTop: "0.75rem", fontFamily: "ui-monospace, monospace", fontSize: "0.9em" }}>
<div style={{ fontWeight: 600 }}>{t("shift.zReport")} — {report.operator}</div>
<div>{t("shift.payments")} {report.paymentCount}</div>
<div>{t("shift.cash")} {money(report.cashTotalMinor, report.currency)}</div>
<div>{t("shift.card")} {money(report.cardTotalMinor, report.currency)}</div>
<div style={{ marginTop: "0.4rem", color: "#666" }}>{t("shift.drawerSection")}</div>
<div>{t("shift.openingFloat")} {money(report.openingFloatMinor, report.currency)}</div>
<div>{t("shift.cashTaken")} {money(report.cashTotalMinor, report.currency)}</div>
<div>{t("shift.cashAdded")} {money(report.cashAddedMinor, report.currency)}</div>
<div>{t("shift.cashRemoved")} {money(report.cashRemovedMinor, report.currency)}</div>
<div style={{ fontWeight: 600 }}>
{t("shift.expectedDrawer")} {money(report.expectedDrawerMinor, report.currency)}
</div>
<div style={{ color: report.printed ? "#16a34a" : "#b45309", marginTop: "0.3rem" }}>
{report.printed ? t("shift.printedToReceipt") : t("shift.recordedNoPrinter")}
</div>
</div>
)}
</section>
);
}
+125
View File
@@ -0,0 +1,125 @@
import { useEffect, useState } from "react";
import { useTranslation } from "react-i18next";
import { fetchOccupancy, fetchSiteConfig, saveSiteConfig, type Occupancy, type SiteConfig } from "./api.js";
// Live occupancy + capacity + park metadata. Occupancy is shown to everyone (it's a
// fold over the signed ledger); capacity and the metadata fields are admin-editable.
// The FULL gate (refuse transient entry at capacity) is enforced server-side in the
// entry flow. Metadata (name, NIUS, address, contact) feeds the ticket header.
// See wiki/concepts/capacity-occupancy.md and wiki/concepts/site-metadata.md.
// The optional text fields, in display order. `labelKey`/`phKey` are i18n keys
// (resolved at render); only `address` is multiline.
const META_FIELDS: ReadonlyArray<{ key: keyof SiteConfig; labelKey: string; phKey?: string; multiline?: boolean }> = [
{ key: "parkName", labelKey: "site.fieldParkName", phKey: "site.fieldParkNamePh" },
{ key: "operatorName", labelKey: "site.fieldOperator", phKey: "site.fieldOperatorPh" },
{ key: "nius", labelKey: "site.fieldNius", phKey: "site.fieldNiusPh" },
{ key: "address", labelKey: "site.fieldAddress", multiline: true },
{ key: "phone", labelKey: "site.fieldPhone" },
{ key: "email", labelKey: "site.fieldEmail" },
];
export function SiteSettings({ canEdit }: { canEdit: boolean }) {
const { t } = useTranslation();
const [occ, setOcc] = useState<Occupancy | null>(null);
const [capInput, setCapInput] = useState("");
const [meta, setMeta] = useState<Record<string, string>>({});
const [exitVoucherDefault, setExitVoucherDefault] = useState(false);
const [msg, setMsg] = useState<string | null>(null);
function reload() {
fetchOccupancy().then(setOcc).catch(() => {});
}
useEffect(() => {
reload();
fetchSiteConfig()
.then((c) => {
setCapInput(c.capacity == null ? "" : String(c.capacity));
setExitVoucherDefault(c.exitVoucherDefault);
const m: Record<string, string> = {};
for (const { key } of META_FIELDS) m[key] = c[key] == null ? "" : String(c[key]);
setMeta(m);
})
.catch(() => {});
}, []);
async function save() {
setMsg(null);
const raw = capInput.trim();
const patch: Partial<SiteConfig> = {
capacity: raw === "" ? null : Math.round(Number(raw)),
exitVoucherDefault,
};
// Send each metadata field; "" → null is applied server-side.
for (const { key } of META_FIELDS) (patch as Record<string, string | null>)[key] = meta[key] ?? "";
try {
await saveSiteConfig(patch);
reload();
setMsg(t("site.saved"));
} catch (e) {
setMsg((e as Error).message);
}
}
return (
<section style={{ marginTop: "1.5rem", padding: "0.75rem 1rem", border: "1px solid #ddd", borderRadius: 6, maxWidth: 460 }}>
<strong>{t("site.occupancy")}</strong>{" "}
{occ == null ? (
"…"
) : (
<>
<span style={{ fontWeight: 600 }}>{occ.count}</span>
{occ.capacity != null ? ` / ${occ.capacity}` : ` ${t("site.noCapacitySet")}`}
{occ.capacity != null && (
<span style={{ color: "#666" }}> · {occ.free} {t("site.free")}</span>
)}
{occ.full && <span style={{ color: "crimson", marginLeft: "0.5rem", fontWeight: 600 }}>{t("site.full")}</span>}{" "}
<button type="button" onClick={reload} style={{ marginLeft: "0.5rem" }}>↻</button>
</>
)}
{canEdit && (
<div style={{ marginTop: "0.6rem", display: "grid", gap: "0.5rem" }}>
<label>
{t("site.capacityLabel")}{" "}
<input value={capInput} onChange={(e) => setCapInput(e.target.value)} style={{ width: 80 }} placeholder={t("site.capacityPlaceholder")} />
</label>
<label style={{ display: "flex", alignItems: "center", gap: "0.4rem" }}>
<input
type="checkbox"
checked={exitVoucherDefault}
onChange={(e) => setExitVoucherDefault(e.target.checked)}
/>
{t("site.printExitDefault")}
<span style={{ color: "#888", fontSize: "0.8rem" }}>{t("site.printExitHint")}</span>
</label>
<div style={{ borderTop: "1px solid #eee", paddingTop: "0.5rem", color: "#666", fontSize: "0.85rem" }}>
{t("site.parkDetails")}
</div>
{META_FIELDS.map(({ key, labelKey, phKey, multiline }) => (
<label key={key} style={{ display: "flex", flexDirection: "column", fontSize: "0.85rem" }}>
{t(labelKey)}
{multiline ? (
<textarea
value={meta[key] ?? ""}
onChange={(e) => setMeta((m) => ({ ...m, [key]: e.target.value }))}
rows={2}
placeholder={phKey ? t(phKey) : undefined}
/>
) : (
<input
value={meta[key] ?? ""}
onChange={(e) => setMeta((m) => ({ ...m, [key]: e.target.value }))}
placeholder={phKey ? t(phKey) : undefined}
/>
)}
</label>
))}
<div>
<button type="button" onClick={save}>{t("site.save")}</button>
{msg && <span style={{ marginLeft: "0.5rem", color: "#555" }}>{msg}</span>}
</div>
</div>
)}
</section>
);
}
+205
View File
@@ -0,0 +1,205 @@
import { useEffect, useState } from "react";
import { useTranslation } from "react-i18next";
import {
ApiError,
fetchTariff,
publishTariffVersion,
type TariffBlock,
type TariffStructure,
type TariffState,
} from "./api.js";
// Tariff composer — the admin builds + edits the rate card at runtime. Publishing
// creates a new IMMUTABLE version (the active card); old versions are kept so past
// sessions reprice correctly. Amounts are entered in major units (e.g. euros) for
// usability and converted to integer minor units on submit. See wiki/concepts/tariff.md.
// Editable form mirror of TariffStructure, but money in major-unit strings.
interface BlockForm {
uptoMin: string; // "" = open-ended (last block)
price: string; // major units, e.g. "2.00"
}
interface FormState {
currency: string;
gracePeriodEntryMin: string;
incrementMin: string;
dailyCap: string; // "" = no cap
lostTicket: string;
gracePeriodExitMin: string;
blocks: BlockForm[];
}
const toMinor = (major: string): number => Math.round(parseFloat(major || "0") * 100);
const toMajor = (minor: number): string => (minor / 100).toFixed(2);
function emptyForm(): FormState {
return {
currency: "EUR",
gracePeriodEntryMin: "15",
incrementMin: "60",
dailyCap: "",
lostTicket: "20.00",
gracePeriodExitMin: "15",
blocks: [{ uptoMin: "60", price: "2.00" }, { uptoMin: "", price: "1.00" }],
};
}
function formFromActive(s: TariffState): FormState {
const v = s.active;
if (!v) return emptyForm();
const st = v.structure;
return {
currency: v.currency,
gracePeriodEntryMin: String(st.gracePeriodEntryMin),
incrementMin: String(st.incrementMin),
dailyCap: st.dailyCapMinor == null ? "" : toMajor(st.dailyCapMinor),
lostTicket: toMajor(st.lostTicketMinor),
gracePeriodExitMin: String(st.gracePeriodExitMin),
blocks: st.blocks.map((b) => ({
uptoMin: b.uptoMin == null ? "" : String(b.uptoMin),
price: toMajor(b.priceMinorPerIncrement),
})),
};
}
function toStructure(f: FormState): TariffStructure {
const blocks: TariffBlock[] = f.blocks.map((b) => ({
uptoMin: b.uptoMin.trim() === "" ? null : Math.round(Number(b.uptoMin)),
priceMinorPerIncrement: toMinor(b.price),
}));
return {
gracePeriodEntryMin: Math.round(Number(f.gracePeriodEntryMin)),
incrementMin: Math.round(Number(f.incrementMin)),
blocks,
dailyCapMinor: f.dailyCap.trim() === "" ? null : toMinor(f.dailyCap),
lostTicketMinor: toMinor(f.lostTicket),
gracePeriodExitMin: Math.round(Number(f.gracePeriodExitMin)),
overstay: "reprice",
};
}
export function TariffComposer() {
const { t } = useTranslation();
const [state, setState] = useState<TariffState | null>(null);
const [form, setForm] = useState<FormState>(emptyForm);
const [saving, setSaving] = useState(false);
const [msg, setMsg] = useState<{ kind: "ok" | "err"; text: string } | null>(null);
useEffect(() => {
fetchTariff()
.then((s) => {
setState(s);
setForm(formFromActive(s));
})
.catch((e) => setMsg({ kind: "err", text: (e as Error).message }));
}, []);
function set<K extends keyof FormState>(key: K, value: FormState[K]) {
setForm((f) => ({ ...f, [key]: value }));
}
function setBlock(i: number, patch: Partial<BlockForm>) {
setForm((f) => ({ ...f, blocks: f.blocks.map((b, j) => (j === i ? { ...b, ...patch } : b)) }));
}
function addBlock() {
setForm((f) => ({ ...f, blocks: [...f.blocks, { uptoMin: "", price: "0.00" }] }));
}
function removeBlock(i: number) {
setForm((f) => ({ ...f, blocks: f.blocks.filter((_, j) => j !== i) }));
}
async function publish() {
setSaving(true);
setMsg(null);
try {
await publishTariffVersion({ currency: form.currency.trim().toUpperCase(), structure: toStructure(form) });
const fresh = await fetchTariff();
setState(fresh);
setMsg({ kind: "ok", text: t("tariff.publishedOk") });
} catch (e) {
const text =
e instanceof ApiError && (e as ApiError & { problems?: string[] }).problems
? `${e.message}: ${((e as ApiError & { problems?: string[] }).problems ?? []).join("; ")}`
: (e as Error).message;
setMsg({ kind: "err", text });
} finally {
setSaving(false);
}
}
return (
<section style={{ marginTop: "2rem" }}>
<h2>{t("tariff.title")}</h2>
{!state?.active ? (
<p style={{ color: "#b45309" }}>{t("tariff.noRateCard")}</p>
) : (
<p style={{ color: "#555" }}>
{t("tariff.activeSince", {
date: new Date(state.active.effectiveFrom).toLocaleString(),
count: state.versions.length,
})}
</p>
)}
<div style={{ display: "grid", gridTemplateColumns: "max-content 1fr", gap: "0.4rem 0.75rem", alignItems: "center", maxWidth: 460 }}>
<label>{t("tariff.currency")}</label>
<input value={form.currency} onChange={(e) => set("currency", e.target.value)} maxLength={3} style={{ width: 80 }} />
<label>{t("tariff.freeEntryGrace")}</label>
<input value={form.gracePeriodEntryMin} onChange={(e) => set("gracePeriodEntryMin", e.target.value)} />
<label>{t("tariff.billingIncrement")}</label>
<input value={form.incrementMin} onChange={(e) => set("incrementMin", e.target.value)} />
<label>{t("tariff.dailyCap")}</label>
<input value={form.dailyCap} onChange={(e) => set("dailyCap", e.target.value)} placeholder={t("tariff.dailyCapPh")} />
<label>{t("tariff.lostTicketFee")}</label>
<input value={form.lostTicket} onChange={(e) => set("lostTicket", e.target.value)} />
<label>{t("tariff.exitGrace")}</label>
<input value={form.gracePeriodExitMin} onChange={(e) => set("gracePeriodExitMin", e.target.value)} />
</div>
<h3 style={{ marginBottom: "0.25rem" }}>{t("tariff.rateBlocks")}</h3>
<p style={{ color: "#777", margin: "0 0 0.5rem", fontSize: "0.9em" }}>{t("tariff.rateBlocksHint")}</p>
<table style={{ borderCollapse: "collapse" }}>
<thead>
<tr style={{ textAlign: "left", color: "#555" }}>
<th style={{ padding: "0 0.5rem" }}>{t("tariff.upToMin")}</th>
<th style={{ padding: "0 0.5rem" }}>{t("tariff.pricePerIncrement")}</th>
<th />
</tr>
</thead>
<tbody>
{form.blocks.map((b, i) => (
<tr key={i}>
<td style={{ padding: "0.15rem 0.5rem" }}>
<input
value={b.uptoMin}
onChange={(e) => setBlock(i, { uptoMin: e.target.value })}
placeholder={i === form.blocks.length - 1 ? t("tariff.thereafter") : t("tariff.egExample")}
style={{ width: 110 }}
/>
</td>
<td style={{ padding: "0.15rem 0.5rem" }}>
<input value={b.price} onChange={(e) => setBlock(i, { price: e.target.value })} style={{ width: 90 }} />
</td>
<td>
<button type="button" onClick={() => removeBlock(i)} disabled={form.blocks.length <= 1}>
{t("tariff.remove")}
</button>
</td>
</tr>
))}
</tbody>
</table>
<button type="button" onClick={addBlock} style={{ marginTop: "0.4rem" }}>
{t("tariff.addBlock")}
</button>
<div style={{ marginTop: "1rem" }}>
<button type="button" onClick={publish} disabled={saving}>
{saving ? t("tariff.publishing") : t("tariff.publishNewVersion")}
</button>
</div>
{msg && (
<p style={{ color: msg.kind === "ok" ? "#16a34a" : "crimson", marginTop: "0.5rem" }}>{msg.text}</p>
)}
</section>
);
}
+312 -3
View File
@@ -45,10 +45,13 @@ export class ApiError extends Error {
// --- Auth -----------------------------------------------------------------
export type Role = "admin" | "operator" | "cashier" | "readonly";
export type Lang = "sq" | "en";
export interface SessionUser {
id: string;
username: string;
role: Role;
/** Preferred UI language (loaded from the server on login). */
language: Lang;
}
export function login(username: string, password: string): Promise<SessionUser> {
@@ -62,6 +65,11 @@ export function logout(): Promise<{ ok: boolean }> {
return apiFetch("/api/auth/logout", { method: "POST" });
}
/** Persist the current user's UI language preference (restored on next login). */
export function setLanguagePref(language: Lang): Promise<{ language: Lang }> {
return apiFetch("/api/auth/language", { method: "PUT", body: JSON.stringify({ language }) });
}
/** Returns the current user, or null if not authenticated. */
export async function fetchMe(): Promise<SessionUser | null> {
try {
@@ -96,6 +104,8 @@ export type DeviceCategory = "access" | "reader" | "camera" | "printer";
export type Catalog = Record<DeviceCategory, CatalogEntry[]> & {
/** Driver ids that support LAN discovery. */
discoverable: string[];
/** Driver ids that push to the backend (need a backend IP at assign time). */
pushCapable: string[];
};
export function fetchCatalog(): Promise<Catalog> {
@@ -118,7 +128,26 @@ export async function discoverDevices(driverId: string): Promise<DiscoveredDevic
return body.devices;
}
export type DeviceConfig = Record<string, string | number | boolean>;
export type ConfigValue =
| string
| number
| boolean
| null
| ConfigValue[]
| { [k: string]: ConfigValue };
export type DeviceConfig = Record<string, ConfigValue>;
/** Direction a barrier/relay (or a device bound to it) serves. */
export type Direction = "entry" | "exit" | "both";
/** One relay on an access controller: which barrier it opens, in which direction,
* and (optionally) the input terminal its entry button is wired to. */
export interface RelaySpec {
relay: number;
direction: Direction;
/** Input terminal of the entry button that fires this relay (transient entry). */
button?: number;
}
export interface TestResult {
health: { status: string; detail?: string };
@@ -151,9 +180,10 @@ export function fetchBackendIps(
}
export interface AssignBody {
lane: number;
category: DeviceCategory;
driverId: string;
// Direction/binding lives in config: access → config.relays=[{relay,direction,button?}];
// reader/camera → config.controllerId + config.relay.
config: DeviceConfig;
/** Backend IP the device should push to (overrides auto-pick). */
backendIp?: string;
@@ -164,10 +194,18 @@ export function assignDevice(body: AssignBody): Promise<AssignResult> {
return apiFetch("/api/setup/assign", { method: "POST", body: JSON.stringify(body) });
}
/** Re-configure an existing device in place, keeping its id (and so its push
* URL). Category/driver are fixed at create time, so only config changes. */
export function editDevice(
id: string,
body: Omit<AssignBody, "category" | "driverId">,
): Promise<AssignResult> {
return apiFetch(`/api/setup/assign/${id}`, { method: "PATCH", body: JSON.stringify(body) });
}
/** A persisted device assignment (one per instance; machine-only secrets stripped). */
export interface Assignment {
id: string;
lane: number;
category: DeviceCategory;
driverId: string;
config: DeviceConfig;
@@ -195,3 +233,274 @@ export function fetchState(): Promise<SetupState> {
export function unassignDevice(id: string): Promise<void> {
return apiFetch(`/api/setup/assign/${id}`, { method: "DELETE" });
}
// --- Tariff composer ------------------------------------------------------
export interface TariffBlock {
uptoMin: number | null;
priceMinorPerIncrement: number;
}
export interface TariffStructure {
gracePeriodEntryMin: number;
incrementMin: number;
blocks: TariffBlock[];
dailyCapMinor: number | null;
lostTicketMinor: number;
gracePeriodExitMin: number;
overstay: "reprice";
}
export interface TariffVersion {
id: string;
tariffId: string;
effectiveFrom: string;
currency: string;
structure: TariffStructure;
createdBy?: string | null;
createdAt?: string;
}
export interface TariffState {
tariffId: string;
active: TariffVersion | null;
versions: TariffVersion[];
}
export function fetchTariff(): Promise<TariffState> {
return apiFetch<TariffState>("/api/tariff");
}
/** Publish a new immutable tariff version (becomes the active rate card). */
export function publishTariffVersion(body: {
currency: string;
structure: TariffStructure;
effectiveFrom?: string;
}): Promise<TariffVersion> {
return apiFetch("/api/tariff/versions", { method: "POST", body: JSON.stringify(body) });
}
// --- Permits --------------------------------------------------------------
export interface PermitCredential {
kind: "rf" | "qr";
value: string;
}
export interface Permit {
id: string;
holderName: string | null;
contact: string | null;
maxConcurrent: number | null;
validFrom: string | null;
validTo: string | null;
status: "active" | "suspended" | "revoked";
credentials: PermitCredential[];
plates: string[];
}
export type PermitInput = Omit<Permit, "id" | "status"> & {
status?: Permit["status"];
};
export function fetchPermits(): Promise<{ permits: Permit[] }> {
return apiFetch("/api/permits");
}
export function createPermit(body: PermitInput): Promise<Permit> {
return apiFetch("/api/permits", { method: "POST", body: JSON.stringify(body) });
}
export function updatePermit(id: string, body: PermitInput): Promise<Permit> {
return apiFetch(`/api/permits/${id}`, { method: "PUT", body: JSON.stringify(body) });
}
export function revokePermit(id: string): Promise<Permit> {
return apiFetch(`/api/permits/${id}/revoke`, { method: "POST" });
}
export function deletePermit(id: string): Promise<void> {
return apiFetch(`/api/permits/${id}`, { method: "DELETE" });
}
// --- Shifts ---------------------------------------------------------------
export interface ShiftStatus {
operator: string;
open: { startedAt: string } | null;
/** Live physical drawer balance (cash payments + cash movements). */
drawerMinor: number;
currency: string | null;
}
export interface ShiftReport {
operator: string;
startedAt: string;
endedAt: string;
cashTotalMinor: number;
cardTotalMinor: number;
currency: string | null;
paymentCount: number;
// Drawer (carries across shifts).
openingFloatMinor: number;
cashAddedMinor: number;
cashRemovedMinor: number;
expectedDrawerMinor: number;
printed: boolean;
}
export function fetchShift(): Promise<ShiftStatus> {
return apiFetch("/api/shift/current");
}
export function openShift(): Promise<{ startedAt: string; openingFloatMinor: number }> {
return apiFetch("/api/shift/open", { method: "POST" });
}
export function closeShift(): Promise<ShiftReport> {
return apiFetch("/api/shift/close", { method: "POST" });
}
/** Admin loads/removes physical drawer cash. amountMinor signed: + load, − remove. */
export function recordCashMovement(
amountMinor: number,
reason: string,
): Promise<{ amountMinor: number; balanceMinor: number }> {
return apiFetch("/api/cash-movement", {
method: "POST",
body: JSON.stringify({ amountMinor, reason }),
});
}
// --- Site config / occupancy ----------------------------------------------
export interface Occupancy {
count: number;
capacity: number | null;
free: number | null;
full: boolean;
}
/** Capacity + optional park metadata (all nullable). Mirrors site_config. */
export interface SiteConfig {
capacity: number | null;
/** Default for the booth "print exit ticket" checkbox (booth-geography knob). */
exitVoucherDefault: boolean;
parkName: string | null;
operatorName: string | null;
/** NIUS — Albanian tax/identification number. */
nius: string | null;
address: string | null;
phone: string | null;
email: string | null;
}
export function fetchOccupancy(): Promise<Occupancy> {
return apiFetch("/api/occupancy");
}
// --- Ledger events (the signed audit trail; read-only) --------------------
/** A persisted ledger row. Re-exported from shared so UI code has one source of
* truth for the event shape (the same type the WS pushes). */
export type { LedgerEvent } from "@parking/shared";
/** Recent ledger events, newest first (default 100, max 1000). Used for the
* booth feed's initial load; live updates then arrive over the WS. */
export function fetchEvents(limit = 100): Promise<{ events: import("@parking/shared").LedgerEvent[] }> {
return apiFetch(`/api/events?limit=${limit}`);
}
// --- Booth: session lookup, payment, exit ---------------------------------
/** One-read session view for the booth pay/exit modal (mirrors server SessionLookup). */
export interface SessionLookup {
identity: string;
found: boolean;
open: boolean;
enteredAt: string | null;
exitedAt: string | null;
paidAt: string | null;
amountMinor: number | null;
currency: string | null;
withinGrace: boolean;
graceExpiresAt: string | null;
}
/** Look up a ticket/session for the booth modal (entry/exit, paid, amount owed). */
export function lookupSession(identity: string): Promise<SessionLookup> {
return apiFetch(`/api/session/${encodeURIComponent(identity)}`);
}
/** One row in the booth Active Sessions list (mirrors server ActiveSession). */
export interface ActiveSession {
identity: string;
source: string | null;
enteredAt: string;
exitedAt: string | null;
open: boolean;
paidAt: string | null;
amountMinor: number | null;
currency: string | null;
withinGrace: boolean;
graceExpiresAt: string | null;
}
/** Active sessions: still-inside OR exited-but-within-grace (barrier unconfirmed). */
export function fetchActiveSessions(): Promise<{ sessions: ActiveSession[] }> {
return apiFetch("/api/sessions/active");
}
/** Human-intervention barrier re-open for a paid active session (damaged ticket /
* phantom re-close). Signs an audited anomaly; never a 2nd exit. */
export function reopenBarrier(identity: string): Promise<{ ok: true; opened: boolean; reason?: string }> {
return apiFetch("/api/barrier/reopen", { method: "POST", body: JSON.stringify({ identity }) });
}
/** Take payment for a session → signed payment event. `overrideMinor` sets an
* operator amount (lost ticket / dispute). */
export function paySession(
identity: string,
tender: "cash" | "card",
overrideMinor?: number,
): Promise<{ amountMinor: number; currency: string }> {
return apiFetch("/api/pay", {
method: "POST",
body: JSON.stringify({ identity, tender, ...(overrideMinor != null ? { overrideMinor } : {}) }),
});
}
/** Booth-driven exit result. `opened:false` = exit recorded but barrier didn't
* open (payment stands; operator opens manually). */
export type BoothExitResult = { ok: true; opened: boolean; reason?: string };
/** Validate + open the barrier for a session from the booth (when near the exit). */
export function boothExit(identity: string): Promise<BoothExitResult> {
return apiFetch("/api/exit", { method: "POST", body: JSON.stringify({ identity }) });
}
/** Print an exit voucher (paid ticket id reprinted) for self-exit at a distant
* exit. Requires the session to be paid. */
export function printVoucher(identity: string): Promise<{ ok: boolean; printedBy: string }> {
return apiFetch("/api/voucher", { method: "POST", body: JSON.stringify({ identity }) });
}
// --- Snapshots (entry/exit evidence images) -------------------------------
export interface SnapshotMeta {
id: string;
direction: "entry" | "exit" | null;
deviceId: string;
identity: string;
contentType: string;
capturedAt: string;
}
/** Snapshot metadata for a session identity (newest first). Image bytes are at
* `/api/snapshots/:id` — use that URL directly as an <img src>. */
export function fetchSnapshots(identity: string): Promise<{ snapshots: SnapshotMeta[] }> {
return apiFetch(`/api/snapshots/by-identity/${encodeURIComponent(identity)}`);
}
/** URL for a snapshot's image bytes (cookie-authed; usable as <img src>). */
export function snapshotImageUrl(id: string): string {
return `/api/snapshots/${encodeURIComponent(id)}`;
}
export function fetchSiteConfig(): Promise<SiteConfig> {
return apiFetch("/api/site-config");
}
/** PUT a partial config — only the fields supplied are changed. */
export function saveSiteConfig(patch: Partial<SiteConfig>): Promise<SiteConfig> {
return apiFetch("/api/site-config", { method: "PUT", body: JSON.stringify(patch) });
}
export function setCapacity(capacity: number | null): Promise<SiteConfig> {
return saveSiteConfig({ capacity });
}
+58
View File
@@ -0,0 +1,58 @@
@import "tailwindcss";
/* Bloomberg-terminal aesthetic: dense, dark, monospace, keyboard-first.
Tailwind v4 — design tokens live here in @theme (no tailwind.config.js).
The booth runs on a fixed appliance display; we optimise for a dark room,
glanceable status colour, and high information density over whitespace. */
@theme {
/* Surfaces — near-black, layered greys for panels/borders. */
--color-term-bg: #0a0e12;
--color-term-panel: #11161c;
--color-term-panel-2: #161d25;
--color-term-border: #232c37;
--color-term-muted: #6b7785;
--color-term-text: #c9d3de;
/* Status accents — the terminal's signal colours. */
--color-term-amber: #f5a623; /* primary accent / headings / focus */
--color-term-green: #2ecc71; /* entry / ok / free */
--color-term-red: #ff4d4f; /* exit / fault / full */
--color-term-cyan: #38bdf8; /* payment / info */
/* Monospace stack — IBM Plex Mono / JetBrains first, system mono fallback. */
--font-mono: "JetBrains Mono", "IBM Plex Mono", ui-monospace, "SFMono-Regular",
"Menlo", "Consolas", monospace;
/* Tight radius — terminals are square. */
--radius-term: 2px;
}
html,
body,
#root {
height: 100%;
}
body {
margin: 0;
background: var(--color-term-bg);
color: var(--color-term-text);
font-family: var(--font-mono);
font-size: 13px;
line-height: 1.4;
-webkit-font-smoothing: antialiased;
/* Crisp text and no rubber-banding on the fixed appliance display. */
overscroll-behavior: none;
}
/* Terminal scrollbars — thin, dark, unobtrusive. */
* {
scrollbar-width: thin;
scrollbar-color: var(--color-term-border) transparent;
}
/* A visible keyboard-focus ring in the amber accent (keyboard-first UI). */
:focus-visible {
outline: 1px solid var(--color-term-amber);
outline-offset: 1px;
}
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// Small formatting helpers for the booth. Money is integer MINOR units (never a
// float — matches the tariff/ledger model); duration is whole minutes.
/** Format integer minor units + ISO-4217 currency as a major-unit string. */
export function formatMoney(amountMinor: number, currency: string): string {
const major = amountMinor / 100;
try {
return new Intl.NumberFormat(undefined, { style: "currency", currency }).format(major);
} catch {
// Unknown/garbled currency code — fall back to a plain number + the code.
return `${major.toFixed(2)} ${currency}`;
}
}
/** Human duration between two ISO times, e.g. "2h 14m" / "47m" / "0m". */
export function formatDuration(fromIso: string, toIso: string): string {
const ms = Date.parse(toIso) - Date.parse(fromIso);
if (!Number.isFinite(ms) || ms < 0) return "—";
const mins = Math.floor(ms / 60_000);
const h = Math.floor(mins / 60);
const m = mins % 60;
return h > 0 ? `${h}h ${m}m` : `${m}m`;
}
/** Local time-of-day HH:MM:SS from an ISO string. */
export function formatTime(iso: string | null): string {
if (!iso) return "—";
const d = new Date(iso);
return Number.isNaN(d.getTime()) ? "—" : d.toTimeString().slice(0, 8);
}
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// English (en). Mirrors the key structure of sq.ts (the default/fallback). Any key
// missing here falls back to Albanian. See wiki/concepts/i18n.md.
import type { Catalog } from "./sq.js";
export const en: Catalog = {
common: {
loading: "Loading…",
logout: "Log out",
cancel: "Cancel",
close: "Close",
save: "Save",
none: "—",
},
auth: {
title: "Parking System",
username: "Username",
password: "Password",
signIn: "Sign in",
signingIn: "Signing in…",
},
nav: {
booth: "Booth",
shift: "Shift",
setup: "Setup",
tariff: "Tariff",
permits: "Permits",
site: "Site",
},
status: {
live: "LIVE",
connecting: "CONNECTING",
offline: "OFFLINE",
},
booth: {
processTicket: "Process ticket",
scanPlaceholder: "Scan or type ticket number…",
open: "Open",
occupancy: "Occupancy",
occUnavailable: "occupancy unavailable",
inside: "inside",
of: "of",
uncapped: "uncapped",
free: "free",
lotFull: "● lot full",
liveFeed: "Live feed",
events: "events",
noEventsYet: "No events yet — entries and exits will stream here.",
activeSessions: "Active sessions",
insideCount: "inside",
noActiveSessions: "No active sessions.",
inAt: "in",
openPayExit: "Open pay / exit",
openBarrier: "Open barrier",
openBarrierTitle: "Human-intervention barrier open (audited)",
barrierOpened: "barrier opened",
openManually: "open manually",
badgeExiting: "exiting",
badgePaid: "paid",
badgeUnpaid: "unpaid",
evtEntry: "ENTRY",
evtExit: "EXIT",
evtPay: "PAY",
evtVoid: "VOID",
evtOpenCmd: "OPEN→",
evtOpenObserved: "OPEN✓",
evtShiftOpen: "SHIFT+",
evtShiftZ: "SHIFT Z",
evtCashMovement: "CASH",
evtAnomaly: "ANOMALY",
},
tariff: {
title: "Tariff",
noRateCard: "No rate card published yet — the pay station can't charge until you publish one.",
activeSince: "Active since {{date}} · {{count}} version(s) in history. Publishing creates a new version; past sessions keep their original pricing.",
currency: "Currency",
freeEntryGrace: "Free entry grace (min)",
billingIncrement: "Billing increment (min)",
dailyCap: "Daily cap (blank = none)",
dailyCapPh: "e.g. 12.00",
lostTicketFee: "Lost-ticket fee",
exitGrace: "Exit walk-back grace (min)",
rateBlocks: "Rate blocks",
rateBlocksHint: "Consumed in order as time accrues. \"Up to (min)\" is the block's upper bound; leave the last block's bound blank for \"thereafter\". Price is per billing increment.",
upToMin: "Up to (min)",
pricePerIncrement: "Price / increment",
thereafter: "thereafter",
egExample: "e.g. 60",
remove: "Remove",
addBlock: "+ Add block",
publishNewVersion: "Publish new version",
publishing: "Publishing…",
publishedOk: "New tariff version published — it's now the active rate card.",
},
permits: {
title: "Permits",
unnamed: "(unnamed)",
unbound: "unbound",
car_one: "{{count}} car",
car_other: "{{count}} cars",
cred: "cred",
plates: "{{count}} plate(s)",
edit: "Edit",
revoke: "Revoke",
delete: "Delete",
noPermitsYet: "No permits yet.",
addPermit: "+ Add permit",
newPermit: "New permit",
editPermit: "Edit permit",
holderName: "Holder name",
contact: "Contact",
carLimit: "Car limit",
limitCarsInAtOnce: "limit cars in at once",
validFrom: "Valid from",
validTo: "Valid to",
isoDateOptional: "ISO date (optional)",
boundPlates: "Bound plates",
commaSeparatedOptional: "comma-separated (optional)",
credentialsCardQr: "Credentials (card / QR)",
rfCardTag: "RF card/tag",
qr: "QR",
credentialValue: "credential value",
addCredential: "+ credential",
needCredentialOrPlate: "A permit needs at least one credential OR one bound plate.",
save: "Save",
cancel: "Cancel",
permitSaved: "Permit saved.",
confirmRevoke: "Revoke permit for {{name}}? It will be refused at the barrier.",
confirmDelete: "Delete permit for {{name}}? (Past events are kept.)",
statusActive: "active",
statusSuspended: "suspended",
statusRevoked: "revoked",
},
site: {
occupancy: "Occupancy:",
noCapacitySet: "(no capacity set)",
free: "free",
full: "FULL",
capacityLabel: "Capacity (blank = no limit):",
capacityPlaceholder: "e.g. 120",
printExitDefault: "Print exit ticket by default",
printExitHint: "(booth far from exit → customer self-exits with a voucher)",
parkDetails: "Park details (optional — shown on tickets/receipts)",
save: "Save",
saved: "Saved.",
fieldParkName: "Park name",
fieldParkNamePh: "e.g. Acme Parking",
fieldOperator: "Operator (legal name)",
fieldOperatorPh: "operating company",
fieldNius: "NIUS",
fieldNiusPh: "e.g. L01234567A",
fieldAddress: "Address",
fieldPhone: "Phone",
fieldEmail: "Email",
},
shift: {
label: "Shift:",
open: "open",
notStarted: "not started",
since: "since",
startShift: "Start shift",
starting: "Starting…",
endShift: "End shift",
ending: "Ending…",
drawer: "Drawer:",
openingFloatInherited: "(opening float inherited from the prior shift)",
drawerCashAdmin: "Drawer cash (admin) — load or remove the float",
amount: "amount",
reasonPlaceholder: "reason (e.g. opening float)",
load: "Load +",
remove: "Remove −",
enterPositive: "Enter a positive amount.",
drawerNow: "Drawer now {{amount}}.",
zReport: "Z-REPORT",
payments: "Payments:",
cash: "Cash:",
card: "Card:",
drawerSection: "— Drawer —",
openingFloat: "Opening float:",
cashTaken: "Cash taken:",
cashAdded: "Cash added:",
cashRemoved: "Cash removed:",
expectedDrawer: "Expected drawer:",
printedToReceipt: "Printed to booth receipt.",
recordedNoPrinter: "Recorded (no printer to print to).",
},
pay: {
ticket: "Ticket",
entry: "Entry",
now: "Now",
duration: "Duration",
statusLabel: "Status",
paid: "PAID",
unpaid: "UNPAID",
total: "Total",
noTariff: "no tariff",
tender: "Tender",
cash: "Cash",
card: "Card",
printExitVoucher: "Print exit ticket",
selfExitHint: "(customer self-exits at the exit)",
payAndOpen: "Pay + open barrier",
payAndVoucher: "Pay + print voucher",
openBarrier: "Open barrier",
printVoucher: "Print voucher",
takingPayment: "taking payment…",
printingVoucher: "printing voucher…",
opening: "opening…",
noSessionFound: "No session found for this ticket.",
alreadyClosed: "This session is already closed (exited {{time}}).",
lookingUp: "looking up…",
paidBarrierOpened: "Paid — barrier opened. Car may exit.",
paidExitRecorded: "Paid and exit recorded, but the barrier did not open: {{reason}}.",
voucherPrinted: "Exit voucher printed on {{printer}}. Customer self-exits at the exit.",
noSnapshots: "no snapshots",
loadingSnapshots: "loading snapshots…",
},
};
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import i18n from "i18next";
import { initReactI18next } from "react-i18next";
import { sq } from "./sq.js";
import { en } from "./en.js";
// i18next setup for the operator UI. Albanian (sq) is the DEFAULT and the fallback;
// English (en) is the second language. The active language is the LOGGED-IN USER's
// stored preference (users.language), applied via setLanguage() after auth resolves
// — not localStorage, not the browser. Printed tickets are NOT governed by this
// (always Albanian, customer-facing). See wiki/concepts/i18n.md.
export type Lang = "sq" | "en";
// Single flat namespace; keys are dot-paths (e.g. "booth.processTicket"). Nested
// objects in the catalogs are walked by i18next's keySeparator.
void i18n.use(initReactI18next).init({
resources: {
sq: { translation: sq },
en: { translation: en },
},
lng: "sq",
fallbackLng: "sq",
interpolation: { escapeValue: false }, // React already escapes
returnNull: false,
});
/** Apply a language (e.g. after login resolves the user's preference). No-op if
* already active. */
export function setLanguage(lang: Lang): void {
if (i18n.language !== lang) void i18n.changeLanguage(lang);
}
export default i18n;
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// Albanian (sq) — the DEFAULT and fallback language. Customer/operator-facing copy.
// Keys are dot-namespaced by area (common, nav, booth, …). When adding a string,
// add it here first (the fallback), then mirror the key in en.ts.
// See wiki/concepts/i18n.md.
export const sq = {
common: {
loading: "Duke u ngarkuar…",
logout: "Dil",
cancel: "Anulo",
close: "Mbyll",
save: "Ruaj",
none: "—",
},
auth: {
title: "Sistemi i Parkimit",
username: "Përdoruesi",
password: "Fjalëkalimi",
signIn: "Hyr",
signingIn: "Duke hyrë…",
},
nav: {
booth: "Kabina",
shift: "Turni",
setup: "Konfigurimi",
tariff: "Tarifa",
permits: "Lejet",
site: "Vendi",
},
status: {
live: "DREJTPËRDREJT",
connecting: "DUKE U LIDHUR",
offline: "JASHTË LINJE",
},
booth: {
processTicket: "Proceso biletën",
scanPlaceholder: "Skano ose shkruaj numrin e biletës…",
open: "Hap",
occupancy: "Zënia",
occUnavailable: "zënia e padisponueshme",
inside: "brenda",
of: "nga",
uncapped: "pa kufi",
free: "lirë",
lotFull: "● parkimi plot",
liveFeed: "Aktiviteti i drejtpërdrejtë",
events: "ngjarje",
noEventsYet: "Asnjë ngjarje ende — hyrjet dhe daljet do të shfaqen këtu.",
activeSessions: "Sesionet aktive",
insideCount: "brenda",
noActiveSessions: "Asnjë sesion aktiv.",
inAt: "në",
openPayExit: "Hap pagesën / daljen",
openBarrier: "Hap barrierën",
openBarrierTitle: "Hapje barriere me ndërhyrje njerëzore (e regjistruar)",
barrierOpened: "barriera u hap",
openManually: "hape me dorë",
// session row badges
badgeExiting: "duke dalë",
badgePaid: "paguar",
badgeUnpaid: "papaguar",
// event types (live feed labels)
evtEntry: "HYRJE",
evtExit: "DALJE",
evtPay: "PAGESË",
evtVoid: "ANULIM",
evtOpenCmd: "HAP→",
evtOpenObserved: "HAP✓",
evtShiftOpen: "TURN+",
evtShiftZ: "TURN Z",
evtCashMovement: "ARKË",
evtAnomaly: "ANOMALI",
},
tariff: {
title: "Tarifa",
noRateCard: "Asnjë kartë tarifore e publikuar — arka nuk mund të faturojë derisa të publikoni një.",
activeSince: "Aktive që nga {{date}} · {{count}} version(e) në histori. Publikimi krijon një version të ri; sesionet e kaluara ruajnë çmimin origjinal.",
currency: "Monedha",
freeEntryGrace: "Periudha pa pagesë në hyrje (min)",
billingIncrement: "Intervali i faturimit (min)",
dailyCap: "Kufiri ditor (bosh = pa kufi)",
dailyCapPh: "p.sh. 12.00",
lostTicketFee: "Tarifa për biletë të humbur",
exitGrace: "Periudha e kthimit në dalje (min)",
rateBlocks: "Blloqet tarifore",
rateBlocksHint: "Konsumohen me radhë me kalimin e kohës. \"Deri në (min)\" është kufiri i sipërm i bllokut; lëre bosh kufirin e bllokut të fundit për \"më pas\". Çmimi është për interval faturimi.",
upToMin: "Deri në (min)",
pricePerIncrement: "Çmimi / interval",
thereafter: "më pas",
egExample: "p.sh. 60",
remove: "Hiq",
addBlock: "+ Shto bllok",
publishNewVersion: "Publiko version të ri",
publishing: "Duke publikuar…",
publishedOk: "U publikua versioni i ri i tarifës — tani është karta tarifore aktive.",
},
permits: {
title: "Lejet",
unnamed: "(pa emër)",
unbound: "pa kufizim",
car_one: "{{count}} makinë",
car_other: "{{count}} makina",
cred: "kredencial",
plates: "{{count}} targë(a)",
edit: "Ndrysho",
revoke: "Anulo",
delete: "Fshij",
noPermitsYet: "Asnjë leje ende.",
addPermit: "+ Shto leje",
newPermit: "Leje e re",
editPermit: "Ndrysho lejen",
holderName: "Emri i mbajtësit",
contact: "Kontakti",
carLimit: "Kufiri i makinave",
limitCarsInAtOnce: "kufizo makinat brenda njëkohësisht",
validFrom: "Vlen nga",
validTo: "Vlen deri",
isoDateOptional: "Datë ISO (opsionale)",
boundPlates: "Targat e lidhura",
commaSeparatedOptional: "të ndara me presje (opsionale)",
credentialsCardQr: "Kredencialet (kartë / QR)",
rfCardTag: "Kartë/etiketë RF",
qr: "QR",
credentialValue: "vlera e kredencialit",
addCredential: "+ kredencial",
needCredentialOrPlate: "Një leje kërkon të paktën një kredencial OSE një targë të lidhur.",
save: "Ruaj",
cancel: "Anulo",
permitSaved: "Leja u ruajt.",
confirmRevoke: "Të anulohet leja për {{name}}? Do të refuzohet te barriera.",
confirmDelete: "Të fshihet leja për {{name}}? (Ngjarjet e kaluara ruhen.)",
statusActive: "aktive",
statusSuspended: "pezulluar",
statusRevoked: "anuluar",
},
site: {
occupancy: "Zënia:",
noCapacitySet: "(pa kapacitet të caktuar)",
free: "lirë",
full: "PLOT",
capacityLabel: "Kapaciteti (bosh = pa kufi):",
capacityPlaceholder: "p.sh. 120",
printExitDefault: "Printo biletën e daljes si parazgjedhje",
printExitHint: "(kabina larg daljes → klienti del vetë me biletë)",
parkDetails: "Të dhënat e parkimit (opsionale — shfaqen në bileta/fatura)",
save: "Ruaj",
saved: "U ruajt.",
fieldParkName: "Emri i parkimit",
fieldParkNamePh: "p.sh. Acme Parking",
fieldOperator: "Operatori (emri ligjor)",
fieldOperatorPh: "kompania operuese",
fieldNius: "NIUS",
fieldNiusPh: "p.sh. L01234567A",
fieldAddress: "Adresa",
fieldPhone: "Telefoni",
fieldEmail: "Email",
},
shift: {
label: "Turni:",
open: "hapur",
notStarted: "i panisur",
since: "që nga",
startShift: "Fillo turnin",
starting: "Duke filluar…",
endShift: "Mbyll turnin",
ending: "Duke mbyllur…",
drawer: "Arka:",
openingFloatInherited: "(bilanci fillestar i trashëguar nga turni i mëparshëm)",
drawerCashAdmin: "Para në arkë (admin) — shto ose hiq bilancin",
amount: "shuma",
reasonPlaceholder: "arsyeja (p.sh. bilanci fillestar)",
load: "Shto +",
remove: "Hiq −",
enterPositive: "Shkruaj një shumë pozitive.",
drawerNow: "Arka tani {{amount}}.",
zReport: "RAPORT Z",
payments: "Pagesa:",
cash: "Para:",
card: "Kartë:",
drawerSection: "— Arka —",
openingFloat: "Bilanci fillestar:",
cashTaken: "Para të marra:",
cashAdded: "Para të shtuara:",
cashRemoved: "Para të hequra:",
expectedDrawer: "Arka e pritshme:",
printedToReceipt: "Printuar te printeri i kabinës.",
recordedNoPrinter: "Regjistruar (pa printer për të printuar).",
},
pay: {
ticket: "Bileta",
entry: "Hyrja",
now: "Tani",
duration: "Kohëzgjatja",
statusLabel: "Statusi",
paid: "PAGUAR",
unpaid: "PAPAGUAR",
total: "Totali",
noTariff: "pa tarifë",
tender: "Mënyra",
cash: "Para",
card: "Kartë",
printExitVoucher: "Printo biletë dalje",
selfExitHint: "(klienti del vetë te dalja)",
payAndOpen: "Paguaj + hap barrierën",
payAndVoucher: "Paguaj + printo biletën",
openBarrier: "Hap barrierën",
printVoucher: "Printo biletën",
takingPayment: "Duke marrë pagesën…",
printingVoucher: "Duke printuar biletën…",
opening: "Duke hapur…",
noSessionFound: "Nuk u gjet asnjë sesion për këtë biletë.",
alreadyClosed: "Ky sesion është mbyllur tashmë (doli {{time}}).",
lookingUp: "Duke kërkuar…",
paidBarrierOpened: "Paguar — barriera u hap. Automjeti mund të dalë.",
paidExitRecorded: "Paguar dhe dalja u regjistrua, por barriera nuk u hap: {{reason}}.",
voucherPrinted: "Bileta e daljes u printua në {{printer}}. Klienti del vetë te dalja.",
// snapshots
noSnapshots: "asnjë foto",
loadingSnapshots: "duke ngarkuar fotot…",
},
};
// The catalog SHAPE (keys + nesting), with string-typed values — so en.ts must
// supply every key but may differ in value. (Not `typeof sq` with `as const`, which
// would pin en.ts to the Albanian literals.)
type Stringify<T> = { [K in keyof T]: T[K] extends object ? Stringify<T[K]> : string };
export type Catalog = Stringify<typeof sq>;
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import { create } from "zustand";
import type { LedgerEvent, Occupancy } from "../api.js";
// CLIENT state for the live booth feed — deliberately small. Server data (the
// authoritative event list, occupancy totals) is owned by TanStack Query; this
// store holds only what Query shouldn't: the WS connection status, the latest
// pushed occupancy snapshot, and a rolling in-memory tail of recent events for the
// live ticker. Anything durable is re-fetched via Query. See lib/query.ts.
/** Connection state of the booth WebSocket, for a status indicator in the UI. */
export type WsStatus = "connecting" | "open" | "closed";
/** Cap the in-memory live feed so a long-running booth session can't grow it
* unbounded — the full history is always available via the /api/events query. */
const MAX_FEED = 200;
interface LiveState {
status: WsStatus;
/** Most recent occupancy pushed by the server (rides on every ledger event). */
occupancy: Occupancy | null;
/** Newest-first tail of recently pushed ledger events (for the live ticker). */
feed: LedgerEvent[];
setStatus: (s: WsStatus) => void;
setOccupancy: (o: Occupancy) => void;
pushEvent: (e: LedgerEvent) => void;
reset: () => void;
}
export const useLiveStore = create<LiveState>((set) => ({
status: "connecting",
occupancy: null,
feed: [],
setStatus: (status) => set({ status }),
setOccupancy: (occupancy) => set({ occupancy }),
pushEvent: (e) =>
set((s) => ({
// Newest first; de-dupe by id (a reconnect can replay) and cap the length.
feed: s.feed.some((x) => x.id === e.id) ? s.feed : [e, ...s.feed].slice(0, MAX_FEED),
})),
reset: () => set({ status: "connecting", occupancy: null, feed: [] }),
}));
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import { QueryClient } from "@tanstack/react-query";
// Single QueryClient for the app. TanStack Query owns SERVER state (fetch, cache,
// refetch, loading/error) — wrapping the existing thin api.ts fetchers. Client/UI
// state (live feed, WS status) lives in Zustand, not here. The WS layer invalidates
// these caches on live events so Query stays the source of truth for server data.
//
// Defaults tuned for a single-appliance booth: no window-focus refetch (it's a
// kiosk, not a tab someone switches to), and a short staleTime since the WS is the
// real freshness mechanism — queries are the fallback/initial load.
export const queryClient = new QueryClient({
defaultOptions: {
queries: {
refetchOnWindowFocus: false,
staleTime: 5_000,
retry: 1,
},
},
});
/** Stable query keys — referenced by both the screens and the WS invalidator. */
export const qk = {
me: ["me"] as const,
occupancy: ["occupancy"] as const,
events: ["events"] as const,
activeSessions: ["active-sessions"] as const,
siteConfig: ["site-config"] as const,
} as const;
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import { useEffect, useRef } from "react";
import { useQueryClient } from "@tanstack/react-query";
import type { LedgerEvent, Occupancy } from "../api.js";
import { qk } from "./query.js";
import { useLiveStore } from "./live-store.js";
// Booth WebSocket client. Opens ONE socket to /api/ws and turns server pushes into
// (a) live-store updates for the ticker/occupancy and (b) Query cache invalidations
// so TanStack Query remains the source of truth for durable server data. The browser
// attaches the auth cookie automatically; the backend gates by cookie + Origin
// (see routes/ws.ts). Auto-reconnects with capped backoff so a booth left running
// recovers from a server restart without a manual refresh.
/** Server → client message shapes (mirror routes/ws.ts OutMsg). */
type WsMessage =
| { kind: "hello"; occupancy: Occupancy }
| { kind: "ledger"; event: LedgerEvent; occupancy: Occupancy }
| { kind: "printer-status"; event: unknown };
/** Build the ws:// or wss:// URL for the same origin the SPA is served from. */
function wsUrl(): string {
const proto = window.location.protocol === "https:" ? "wss:" : "ws:";
return `${proto}//${window.location.host}/api/ws`;
}
export function useLiveFeed(): void {
const qc = useQueryClient();
const { setStatus, setOccupancy, pushEvent } = useLiveStore();
// Hold the socket + reconnect timer across renders; guard against StrictMode
// double-invoke and unmount.
const sockRef = useRef<WebSocket | null>(null);
const retryRef = useRef(0);
const closedRef = useRef(false);
useEffect(() => {
closedRef.current = false;
const connect = () => {
if (closedRef.current) return;
setStatus(retryRef.current === 0 ? "connecting" : "connecting");
const sock = new WebSocket(wsUrl());
sockRef.current = sock;
sock.onopen = () => {
retryRef.current = 0;
setStatus("open");
};
sock.onmessage = (ev) => {
let msg: WsMessage;
try {
msg = JSON.parse(ev.data as string) as WsMessage;
} catch {
return; // ignore malformed frames
}
if (msg.kind === "hello") {
setOccupancy(msg.occupancy);
} else if (msg.kind === "ledger") {
setOccupancy(msg.occupancy);
pushEvent(msg.event);
// Keep Query authoritative: the durable event list, occupancy totals,
// and active-sessions list refetch on the next read instead of trusting
// the pushed copy alone.
void qc.invalidateQueries({ queryKey: qk.events });
void qc.invalidateQueries({ queryKey: qk.occupancy });
void qc.invalidateQueries({ queryKey: qk.activeSessions });
} else if (msg.kind === "printer-status") {
void qc.invalidateQueries({ queryKey: ["printers"] });
}
};
const scheduleReconnect = () => {
if (closedRef.current) return;
setStatus("closed");
// Capped exponential backoff: 0.5s, 1s, 2s, … up to 10s.
const delay = Math.min(500 * 2 ** retryRef.current, 10_000);
retryRef.current += 1;
window.setTimeout(connect, delay);
};
sock.onclose = scheduleReconnect;
// onerror fires before onclose; let onclose own the reconnect to avoid double.
sock.onerror = () => sock.close();
};
connect();
return () => {
closedRef.current = true;
sockRef.current?.close();
sockRef.current = null;
};
// qc / store setters are stable; run once on mount.
// eslint-disable-next-line react-hooks/exhaustive-deps
}, []);
}
+2
View File
@@ -1,5 +1,7 @@
import { StrictMode } from "react";
import { createRoot } from "react-dom/client";
import "./index.css";
import "./lib/i18n/index.js"; // initialize i18next before the app renders
import { App } from "./App.js";
const rootEl = document.getElementById("root");
+202
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@@ -0,0 +1,202 @@
import {
createRootRouteWithContext,
createRoute,
createRouter,
Link,
Outlet,
redirect,
} from "@tanstack/react-router";
import { useTranslation } from "react-i18next";
import type { Lang, SessionUser } from "./api.js";
import { logout, setLanguagePref } from "./api.js";
import { queryClient } from "./lib/query.js";
import { setLanguage } from "./lib/i18n/index.js";
import { useLiveFeed } from "./lib/use-live-feed.js";
import { StatusDot } from "./ui/StatusDot.js";
import { BoothScreen } from "./BoothScreen.js";
import { SetupWizard } from "./SetupWizard.js";
import { TariffComposer } from "./TariffComposer.js";
import { PermitManager } from "./PermitManager.js";
import { ShiftControl } from "./ShiftControl.js";
import { SiteSettings } from "./SiteSettings.js";
// Code-based TanStack Router (no file-based codegen — the app is small enough that
// an explicit tree is clearer). The router context carries the signed-in user and
// a setter so route guards can redirect by role. The root renders the terminal
// chrome (nav + user + live status) and opens the booth WebSocket once, app-wide.
export interface RouterContext {
user: SessionUser | null;
setUser: (u: SessionUser | null) => void;
}
const rootRoute = createRootRouteWithContext<RouterContext>()({
component: RootLayout,
});
function NavLink({ to, label }: { to: string; label: string }) {
return (
<Link
to={to}
className="px-2 py-1 text-[11px] uppercase tracking-wider text-term-muted rounded-term hover:text-term-text [&.active]:text-term-amber [&.active]:bg-term-panel-2"
>
{label}
</Link>
);
}
/** SQ/EN toggle. Persists the choice to the user's profile (restored on next login)
* and applies it immediately. Updates the router-context user so App re-syncs. */
function LanguageToggle({
user,
setUser,
}: {
user: SessionUser;
setUser: (u: SessionUser | null) => void;
}) {
async function pick(lang: Lang) {
if (lang === user.language) return;
setLanguage(lang); // instant UI
setUser({ ...user, language: lang });
try {
await setLanguagePref(lang); // persist
} catch {
/* non-fatal — the choice still applies this session */
}
}
return (
<div className="flex items-center gap-0.5 text-[10px] uppercase tracking-wider">
{(["sq", "en"] as const).map((l) => (
<button
key={l}
type="button"
onClick={() => pick(l)}
className={`rounded-term px-1.5 py-0.5 ${
user.language === l ? "bg-term-panel-2 text-term-amber" : "text-term-muted hover:text-term-text"
}`}
>
{l}
</button>
))}
</div>
);
}
function RootLayout() {
const { user, setUser } = rootRoute.useRouteContext();
const { t } = useTranslation();
// One app-wide WebSocket for the live feed (booth + any live widget).
useLiveFeed();
const isAdmin = user?.role === "admin";
return (
<div className="flex h-screen flex-col bg-term-bg text-term-text">
<header className="flex items-center gap-4 border-b border-term-border bg-term-panel px-4 py-2">
<span className="text-sm font-bold uppercase tracking-widest text-term-amber">▮ Parking</span>
<nav className="flex items-center gap-1">
<NavLink to="/booth" label={t("nav.booth")} />
<NavLink to="/shift" label={t("nav.shift")} />
{isAdmin && <NavLink to="/setup" label={t("nav.setup")} />}
{isAdmin && <NavLink to="/tariff" label={t("nav.tariff")} />}
{isAdmin && <NavLink to="/permits" label={t("nav.permits")} />}
{isAdmin && <NavLink to="/site" label={t("nav.site")} />}
</nav>
<div className="ml-auto flex items-center gap-3">
{user && <LanguageToggle user={user} setUser={setUser} />}
<StatusDot />
<span className="text-[11px] text-term-muted">
{user?.username} · {user?.role}
</span>
<button
type="button"
className="rounded-term border border-term-border px-2 py-0.5 text-[11px] uppercase tracking-wider text-term-muted hover:text-term-text"
onClick={async () => {
await logout();
setUser(null);
}}
>
{t("common.logout")}
</button>
</div>
</header>
<main className="min-h-0 flex-1 overflow-auto p-3">
<Outlet />
</main>
</div>
);
}
const indexRoute = createRoute({
getParentRoute: () => rootRoute,
path: "/",
beforeLoad: () => {
throw redirect({ to: "/booth" });
},
});
const boothRoute = createRoute({
getParentRoute: () => rootRoute,
path: "/booth",
component: BoothScreen,
});
const shiftRoute = createRoute({
getParentRoute: () => rootRoute,
path: "/shift",
component: function ShiftRoute() {
const { user } = rootRoute.useRouteContext();
return <ShiftControl isAdmin={user?.role === "admin"} />;
},
});
/** Guard: admin-only routes redirect non-admins back to the booth. */
function adminOnly(ctx: RouterContext) {
if (ctx.user?.role !== "admin") throw redirect({ to: "/booth" });
}
const setupRoute = createRoute({
getParentRoute: () => rootRoute,
path: "/setup",
beforeLoad: ({ context }) => adminOnly(context),
component: () => <SetupWizard />,
});
const tariffRoute = createRoute({
getParentRoute: () => rootRoute,
path: "/tariff",
beforeLoad: ({ context }) => adminOnly(context),
component: () => <TariffComposer />,
});
const permitsRoute = createRoute({
getParentRoute: () => rootRoute,
path: "/permits",
beforeLoad: ({ context }) => adminOnly(context),
component: () => <PermitManager />,
});
const siteRoute = createRoute({
getParentRoute: () => rootRoute,
path: "/site",
beforeLoad: ({ context }) => adminOnly(context),
component: () => <SiteSettings canEdit={true} />,
});
const routeTree = rootRoute.addChildren([
indexRoute,
boothRoute,
shiftRoute,
setupRoute,
tariffRoute,
permitsRoute,
siteRoute,
]);
export const router = createRouter({
routeTree,
context: { user: null, setUser: () => {} },
defaultPreload: "intent",
});
declare module "@tanstack/react-router" {
interface Register {
router: typeof router;
}
}
+33
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@@ -0,0 +1,33 @@
import type { ReactNode } from "react";
// Terminal panel: a bordered, titled box — the basic building block of the dense
// booth layout. Title bar in amber, square corners, subtle layered surfaces.
export function Panel({
title,
right,
children,
className = "",
}: {
title?: string;
/** Optional right-aligned content in the title bar (e.g. a status dot). */
right?: ReactNode;
children: ReactNode;
className?: string;
}) {
return (
<section
className={`flex flex-col border border-term-border bg-term-panel rounded-term overflow-hidden ${className}`}
>
{title && (
<header className="flex items-center justify-between px-3 py-1.5 bg-term-panel-2 border-b border-term-border">
<h2 className="m-0 text-[11px] font-semibold uppercase tracking-wider text-term-amber">
{title}
</h2>
{right}
</header>
)}
<div className="flex-1 min-h-0 p-3">{children}</div>
</section>
);
}
+62
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@@ -0,0 +1,62 @@
import { useState } from "react";
import { useTranslation } from "react-i18next";
import { useQuery } from "@tanstack/react-query";
import { fetchSnapshots, snapshotImageUrl } from "../api.js";
// Entry/exit evidence images for a session. Lets the operator verify the car at the
// booth against the ticket. Thumbnails load from /api/snapshots/:id (cookie-authed,
// served with a long immutable cache); clicking one enlarges it. Read-only.
export function SnapshotStrip({ identity }: { identity: string }) {
const { t } = useTranslation();
const { data, isLoading } = useQuery({
queryKey: ["snapshots", identity],
queryFn: () => fetchSnapshots(identity),
enabled: !!identity,
});
const [zoom, setZoom] = useState<string | null>(null);
const shots = data?.snapshots ?? [];
if (isLoading) return <div className="text-[11px] text-term-muted">{t("pay.loadingSnapshots")}</div>;
if (shots.length === 0) return <div className="text-[11px] text-term-muted">{t("pay.noSnapshots")}</div>;
return (
<>
<div className="flex gap-2">
{shots.map((s) => (
<button
key={s.id}
type="button"
onClick={() => setZoom(s.id)}
className="group flex flex-col items-center gap-1 rounded-term border border-term-border bg-term-panel-2 p-1 hover:border-term-amber"
title={`${s.direction ?? "snapshot"} · ${new Date(s.capturedAt).toLocaleString()}`}
>
<img
src={snapshotImageUrl(s.id)}
alt={s.direction ?? "snapshot"}
className="h-20 w-28 object-cover"
loading="lazy"
/>
<span
className={`text-[9px] uppercase tracking-wider ${
s.direction === "entry" ? "text-term-green" : s.direction === "exit" ? "text-term-red" : "text-term-muted"
}`}
>
{s.direction ?? "—"}
</span>
</button>
))}
</div>
{zoom && (
<div
className="fixed inset-0 z-50 flex items-center justify-center bg-black/80 p-6"
onClick={() => setZoom(null)}
>
<img src={snapshotImageUrl(zoom)} alt="snapshot" className="max-h-full max-w-full object-contain" />
</div>
)}
</>
);
}
+29
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@@ -0,0 +1,29 @@
import { useTranslation } from "react-i18next";
import { useLiveStore, type WsStatus } from "../lib/live-store.js";
// Small live-connection indicator for the booth chrome: a coloured dot + label
// reflecting the WebSocket status. Green = live, amber = connecting, red = down.
const COLOR: Record<WsStatus, string> = {
open: "bg-term-green",
connecting: "bg-term-amber",
closed: "bg-term-red",
};
const LABEL_KEY: Record<WsStatus, string> = {
open: "status.live",
connecting: "status.connecting",
closed: "status.offline",
};
export function StatusDot() {
const { t } = useTranslation();
const status = useLiveStore((s) => s.status);
return (
<span className="flex items-center gap-1.5 text-[10px] uppercase tracking-wider text-term-muted">
<span
className={`inline-block h-2 w-2 rounded-full ${COLOR[status]} ${status === "open" ? "" : "animate-pulse"}`}
/>
{t(LABEL_KEY[status])}
</span>
);
}
+9 -2
View File
@@ -1,18 +1,25 @@
import react from "@vitejs/plugin-react";
import tailwindcss from "@tailwindcss/vite";
import { defineConfig } from "vite";
// Operator SPA. Built by Vite and served by Fastify in production
// (see wiki/entities/react-vite-spa.md). The dev proxy points the API at the
// local Fastify server.
export default defineConfig({
plugins: [react()],
plugins: [react(), tailwindcss()],
server: {
port: 5173,
proxy: {
// Use 127.0.0.1 (not "localhost") so the proxy never tries IPv6 ::1
// first and stall — the backend binds IPv4. Avoids slow/hung requests,
// notably under WSL2 mirrored networking.
"/api": "http://127.0.0.1:3000",
"/api": {
target: "http://127.0.0.1:3000",
// The live booth feed (/api/ws) is a WebSocket — without `ws: true` the
// proxy would not forward the upgrade. The backend's Origin allowlist must
// include the dev origin (http://localhost:5173) via WS_ALLOWED_ORIGINS.
ws: true,
},
"/health": "http://127.0.0.1:3000",
},
},
+16
View File
@@ -0,0 +1,16 @@
[Unit]
Description=Parking dev: pin route source addresses (WSL2 mirrored-mode fix)
# Run after WSL has populated the mirrored interfaces/addresses.
After=network.target wsl-pro.service
Wants=network.target
[Service]
Type=oneshot
RemainAfterExit=yes
# Idempotent; safe to re-run. Path is the repo checkout on this dev box.
ExecStart=/home/julian/projects/JS/parking-system/deploy/wsl-fix-route-source.sh eth1
# Mirrored-mode addresses can land slightly after boot; one retry covers the race.
ExecStartPost=/bin/sh -c 'sleep 3; /home/julian/projects/JS/parking-system/deploy/wsl-fix-route-source.sh eth1 || true'
[Install]
WantedBy=multi-user.target
+101
View File
@@ -0,0 +1,101 @@
#!/usr/bin/env bash
# WSL2 mirrored-mode source-address fix (dev box only).
#
# Problem: in WSL2 mirrored networking the Windows host's interfaces — and ALL
# their IPs — are cloned into Linux on every boot. When two device subnets land
# on one NIC (e.g. 192.168.1.x AND 10.0.10.x on eth1), the kernel's connected
# routes come up `scope link` with NO preferred source, and source selection can
# pick the WRONG address (sourcing 10.0.10.x traffic from 192.168.1.123). ARP
# still resolves (L2), so the device looks REACHABLE while every ping/TCP times
# out. See wiki/concepts/wsl-dev-networking.md.
#
# Fix: for each connected `scope link` route, pin its preferred `src` to THIS
# host's own address in that same subnet. No hardcoded IPs — derived at runtime,
# so it also covers future device subnets. Idempotent; a no-op when nothing needs
# fixing. Runs at boot via parking-net.service.
#
# Production note: the real appliance is bare-metal Linux, not WSL — there this
# is just static networkd/netplan config. This script exists only for the dev box.
# NB: intentionally NOT `set -e`. This is a best-effort boot fixer; an individual
# `ip` call failing (e.g. a route not up yet) must not abort the rest.
set -uo pipefail
fix_iface() {
local iface="$1"
# Each connected /N route on this iface that the kernel manages (proto kernel,
# scope link) — i.e. the directly-attached subnets. Capture the full line so we
# can preserve attributes (notably `metric`) when we replace the route.
ip -4 route show dev "$iface" proto kernel scope link | while read -r line; do
local subnet="${line%% *}" # e.g. "10.0.10.0/24"
local prefix="${subnet%/*}"
# Preserve a metric if the route has one (mirrored-mode routes carry e.g. 281);
# replacing without it would change the route's priority.
local metric=""
case "$line" in *" metric "*) metric="metric ${line##* metric }";; esac
# Find THIS host's own address inside the same subnet — the correct src.
local hostip=""
local cidr
for cidr in $(ip -4 -o addr show dev "$iface" | awk '{print $4}'); do
if ipcalc_net "$cidr" "$subnet"; then hostip="${cidr%/*}"; break; fi
done
[ -n "$hostip" ] || continue
local current
current=$(ip -4 route get "$prefix" 2>/dev/null | sed -n 's/.*src \([0-9.]*\).*/\1/p' | head -1)
[ "$current" = "$hostip" ] && continue # already correct — no-op
# `replace` creates-or-updates, so it works whether or not the route is
# present yet (avoids the boot-race RTNETLINK "No such file" that `change` hits).
# Non-fatal: a single failure must not abort the whole boot fixer.
if ip route replace "$subnet" dev "$iface" proto kernel scope link src "$hostip" $metric; then
echo "pinned $subnet -> src $hostip (was ${current:-none})"
else
echo "warn: could not pin $subnet -> src $hostip" >&2
fi
done
return 0
}
# True if address $1 (a.b.c.d/p) is inside subnet $2 (n.n.n.0/p), same prefix len.
ipcalc_net() {
local addr="${1%/*}" alen="${1#*/}"
local net="${2%/*}" nlen="${2#*/}"
[ "$alen" = "$nlen" ] || return 1
# Compare the network part by masking both to /nlen.
local a n
a=$(mask_to_net "$addr" "$nlen")
n=$(mask_to_net "$net" "$nlen")
[ "$a" = "$n" ]
}
# Mask an IPv4 dotted-quad to its /len network address.
mask_to_net() {
local ip="$1" len="$2"
local IFS=. ; read -r o1 o2 o3 o4 <<<"$ip"
local int=$(( (o1<<24) + (o2<<16) + (o3<<8) + o4 ))
local mask=$(( len == 0 ? 0 : (0xFFFFFFFF << (32 - len)) & 0xFFFFFFFF ))
local net=$(( int & mask ))
echo "$(( (net>>24)&255 )).$(( (net>>16)&255 )).$(( (net>>8)&255 )).$(( net&255 ))"
}
main() {
# Default to eth1 (the mirrored LAN NIC here); accept overrides as args.
local ifaces=("${@:-eth1}")
# Boot race: WSL mirrored mode can populate the interface's addresses/routes a
# beat after the unit starts. Wait (bounded) for at least one connected route
# to appear on the first interface before pinning.
local i tries=0
for i in "${ifaces[@]}"; do
while [ "$tries" -lt 15 ] \
&& [ -z "$(ip -4 route show dev "$i" proto kernel scope link 2>/dev/null)" ]; do
sleep 1; tries=$((tries + 1))
done
break
done
for i in "${ifaces[@]}"; do
ip link show "$i" >/dev/null 2>&1 && fix_iface "$i"
done
}
main "$@"
@@ -1,23 +0,0 @@
CREATE TABLE `events` (
`id` text PRIMARY KEY NOT NULL,
`index` integer NOT NULL,
`type` text NOT NULL,
`direction` text,
`lane` integer NOT NULL,
`source` text,
`identity` text,
`occurred_at` text NOT NULL,
`prev_hash` text,
`signature` text NOT NULL
);
--> statement-breakpoint
CREATE UNIQUE INDEX `events_index_unique` ON `events` (`index`);--> statement-breakpoint
CREATE TABLE `users` (
`id` text PRIMARY KEY NOT NULL,
`username` text NOT NULL,
`password_hash` text NOT NULL,
`role` text NOT NULL,
`created_at` text DEFAULT (current_timestamp) NOT NULL
);
--> statement-breakpoint
CREATE UNIQUE INDEX `users_username_unique` ON `users` (`username`);
+125
View File
@@ -0,0 +1,125 @@
CREATE TABLE `blocklist` (
`id` text PRIMARY KEY NOT NULL,
`kind` text NOT NULL,
`value` text NOT NULL,
`reason` text,
`active` integer DEFAULT true NOT NULL,
`added_by` text,
`added_at` text DEFAULT (current_timestamp) NOT NULL
);
--> statement-breakpoint
CREATE TABLE `device_events` (
`id` text PRIMARY KEY NOT NULL,
`device_id` text,
`category` text,
`kind` text NOT NULL,
`detail` text,
`occurred_at` text DEFAULT (current_timestamp) NOT NULL
);
--> statement-breakpoint
CREATE TABLE `devices` (
`id` text PRIMARY KEY NOT NULL,
`category` text NOT NULL,
`driver_id` text NOT NULL,
`config` text NOT NULL,
`enabled` integer DEFAULT true NOT NULL,
`created_at` text DEFAULT (current_timestamp) NOT NULL
);
--> statement-breakpoint
CREATE TABLE `ledger_events` (
`id` text PRIMARY KEY NOT NULL,
`index` integer NOT NULL,
`type` text NOT NULL,
`direction` text,
`source` text,
`identity` text,
`payload` text,
`occurred_at` text NOT NULL,
`prev_hash` text,
`signature` text NOT NULL,
`key_id` text NOT NULL
);
--> statement-breakpoint
CREATE UNIQUE INDEX `ledger_events_index_unique` ON `ledger_events` (`index`);--> statement-breakpoint
CREATE TABLE `permit_credentials` (
`id` text PRIMARY KEY NOT NULL,
`permit_id` text NOT NULL,
`kind` text NOT NULL,
`value` text NOT NULL
);
--> statement-breakpoint
CREATE TABLE `permit_plates` (
`id` text PRIMARY KEY NOT NULL,
`permit_id` text NOT NULL,
`plate` text NOT NULL
);
--> statement-breakpoint
CREATE TABLE `permits` (
`id` text PRIMARY KEY NOT NULL,
`holder_name` text,
`contact` text,
`max_concurrent` integer DEFAULT 1,
`valid_from` text,
`valid_to` text,
`status` text DEFAULT 'active' NOT NULL,
`created_at` text DEFAULT (current_timestamp) NOT NULL
);
--> statement-breakpoint
CREATE TABLE `sessions` (
`id` text PRIMARY KEY NOT NULL,
`identity` text,
`source` text,
`permit_id` text,
`entered_at` text NOT NULL,
`exited_at` text,
`state` text DEFAULT 'open' NOT NULL,
`last_event_index` integer
);
--> statement-breakpoint
CREATE TABLE `setup_state` (
`id` integer PRIMARY KEY NOT NULL,
`completed_at` text
);
--> statement-breakpoint
CREATE TABLE `site_config` (
`id` integer PRIMARY KEY NOT NULL,
`capacity` integer,
`updated_at` text DEFAULT (current_timestamp) NOT NULL
);
--> statement-breakpoint
CREATE TABLE `snapshots` (
`id` text PRIMARY KEY NOT NULL,
`direction` text NOT NULL,
`device_id` text,
`identity` text,
`content_type` text NOT NULL,
`bytes` blob NOT NULL,
`captured_at` text NOT NULL
);
--> statement-breakpoint
CREATE TABLE `tariff_versions` (
`id` text PRIMARY KEY NOT NULL,
`tariff_id` text NOT NULL,
`effective_from` text NOT NULL,
`currency` text NOT NULL,
`structure` text NOT NULL,
`created_by` text,
`created_at` text DEFAULT (current_timestamp) NOT NULL
);
--> statement-breakpoint
CREATE TABLE `tariffs` (
`id` text PRIMARY KEY NOT NULL,
`scope` text DEFAULT 'site' NOT NULL,
`name` text NOT NULL,
`created_at` text DEFAULT (current_timestamp) NOT NULL
);
--> statement-breakpoint
CREATE TABLE `users` (
`id` text PRIMARY KEY NOT NULL,
`username` text NOT NULL,
`password_hash` text NOT NULL,
`role` text NOT NULL,
`created_at` text DEFAULT (current_timestamp) NOT NULL
);
--> statement-breakpoint
CREATE UNIQUE INDEX `users_username_unique` ON `users` (`username`);
@@ -1,14 +0,0 @@
CREATE TABLE `lane_devices` (
`id` text PRIMARY KEY NOT NULL,
`lane` integer NOT NULL,
`category` text NOT NULL,
`driver_id` text NOT NULL,
`config` text NOT NULL,
`enabled` integer DEFAULT true NOT NULL,
`created_at` text DEFAULT (current_timestamp) NOT NULL
);
--> statement-breakpoint
CREATE TABLE `setup_state` (
`id` integer PRIMARY KEY NOT NULL,
`completed_at` text
);
@@ -0,0 +1,6 @@
ALTER TABLE `site_config` ADD `park_name` text;--> statement-breakpoint
ALTER TABLE `site_config` ADD `operator_name` text;--> statement-breakpoint
ALTER TABLE `site_config` ADD `nius` text;--> statement-breakpoint
ALTER TABLE `site_config` ADD `address` text;--> statement-breakpoint
ALTER TABLE `site_config` ADD `phone` text;--> statement-breakpoint
ALTER TABLE `site_config` ADD `email` text;
@@ -0,0 +1 @@
ALTER TABLE `site_config` ADD `exit_voucher_default` integer DEFAULT false NOT NULL;
@@ -0,0 +1 @@
ALTER TABLE `users` ADD `language` text DEFAULT 'sq' NOT NULL;
+607 -12
View File
@@ -1,11 +1,179 @@
{
"version": "6",
"dialect": "sqlite",
"id": "721bbb8f-b929-4018-9420-0ae75b03ff93",
"id": "a6d81d46-c4a4-4ee7-8565-ec012bbe0252",
"prevId": "00000000-0000-0000-0000-000000000000",
"tables": {
"events": {
"name": "events",
"blocklist": {
"name": "blocklist",
"columns": {
"id": {
"name": "id",
"type": "text",
"primaryKey": true,
"notNull": true,
"autoincrement": false
},
"kind": {
"name": "kind",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false
},
"value": {
"name": "value",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false
},
"reason": {
"name": "reason",
"type": "text",
"primaryKey": false,
"notNull": false,
"autoincrement": false
},
"active": {
"name": "active",
"type": "integer",
"primaryKey": false,
"notNull": true,
"autoincrement": false,
"default": true
},
"added_by": {
"name": "added_by",
"type": "text",
"primaryKey": false,
"notNull": false,
"autoincrement": false
},
"added_at": {
"name": "added_at",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false,
"default": "(current_timestamp)"
}
},
"indexes": {},
"foreignKeys": {},
"compositePrimaryKeys": {},
"uniqueConstraints": {},
"checkConstraints": {}
},
"device_events": {
"name": "device_events",
"columns": {
"id": {
"name": "id",
"type": "text",
"primaryKey": true,
"notNull": true,
"autoincrement": false
},
"device_id": {
"name": "device_id",
"type": "text",
"primaryKey": false,
"notNull": false,
"autoincrement": false
},
"category": {
"name": "category",
"type": "text",
"primaryKey": false,
"notNull": false,
"autoincrement": false
},
"kind": {
"name": "kind",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false
},
"detail": {
"name": "detail",
"type": "text",
"primaryKey": false,
"notNull": false,
"autoincrement": false
},
"occurred_at": {
"name": "occurred_at",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false,
"default": "(current_timestamp)"
}
},
"indexes": {},
"foreignKeys": {},
"compositePrimaryKeys": {},
"uniqueConstraints": {},
"checkConstraints": {}
},
"devices": {
"name": "devices",
"columns": {
"id": {
"name": "id",
"type": "text",
"primaryKey": true,
"notNull": true,
"autoincrement": false
},
"category": {
"name": "category",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false
},
"driver_id": {
"name": "driver_id",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false
},
"config": {
"name": "config",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false
},
"enabled": {
"name": "enabled",
"type": "integer",
"primaryKey": false,
"notNull": true,
"autoincrement": false,
"default": true
},
"created_at": {
"name": "created_at",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false,
"default": "(current_timestamp)"
}
},
"indexes": {},
"foreignKeys": {},
"compositePrimaryKeys": {},
"uniqueConstraints": {},
"checkConstraints": {}
},
"ledger_events": {
"name": "ledger_events",
"columns": {
"id": {
"name": "id",
@@ -35,13 +203,6 @@
"notNull": false,
"autoincrement": false
},
"lane": {
"name": "lane",
"type": "integer",
"primaryKey": false,
"notNull": true,
"autoincrement": false
},
"source": {
"name": "source",
"type": "text",
@@ -56,6 +217,13 @@
"notNull": false,
"autoincrement": false
},
"payload": {
"name": "payload",
"type": "text",
"primaryKey": false,
"notNull": false,
"autoincrement": false
},
"occurred_at": {
"name": "occurred_at",
"type": "text",
@@ -76,11 +244,18 @@
"primaryKey": false,
"notNull": true,
"autoincrement": false
},
"key_id": {
"name": "key_id",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false
}
},
"indexes": {
"events_index_unique": {
"name": "events_index_unique",
"ledger_events_index_unique": {
"name": "ledger_events_index_unique",
"columns": [
"index"
],
@@ -92,6 +267,426 @@
"uniqueConstraints": {},
"checkConstraints": {}
},
"permit_credentials": {
"name": "permit_credentials",
"columns": {
"id": {
"name": "id",
"type": "text",
"primaryKey": true,
"notNull": true,
"autoincrement": false
},
"permit_id": {
"name": "permit_id",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false
},
"kind": {
"name": "kind",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false
},
"value": {
"name": "value",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false
}
},
"indexes": {},
"foreignKeys": {},
"compositePrimaryKeys": {},
"uniqueConstraints": {},
"checkConstraints": {}
},
"permit_plates": {
"name": "permit_plates",
"columns": {
"id": {
"name": "id",
"type": "text",
"primaryKey": true,
"notNull": true,
"autoincrement": false
},
"permit_id": {
"name": "permit_id",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false
},
"plate": {
"name": "plate",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false
}
},
"indexes": {},
"foreignKeys": {},
"compositePrimaryKeys": {},
"uniqueConstraints": {},
"checkConstraints": {}
},
"permits": {
"name": "permits",
"columns": {
"id": {
"name": "id",
"type": "text",
"primaryKey": true,
"notNull": true,
"autoincrement": false
},
"holder_name": {
"name": "holder_name",
"type": "text",
"primaryKey": false,
"notNull": false,
"autoincrement": false
},
"contact": {
"name": "contact",
"type": "text",
"primaryKey": false,
"notNull": false,
"autoincrement": false
},
"max_concurrent": {
"name": "max_concurrent",
"type": "integer",
"primaryKey": false,
"notNull": false,
"autoincrement": false,
"default": 1
},
"valid_from": {
"name": "valid_from",
"type": "text",
"primaryKey": false,
"notNull": false,
"autoincrement": false
},
"valid_to": {
"name": "valid_to",
"type": "text",
"primaryKey": false,
"notNull": false,
"autoincrement": false
},
"status": {
"name": "status",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false,
"default": "'active'"
},
"created_at": {
"name": "created_at",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false,
"default": "(current_timestamp)"
}
},
"indexes": {},
"foreignKeys": {},
"compositePrimaryKeys": {},
"uniqueConstraints": {},
"checkConstraints": {}
},
"sessions": {
"name": "sessions",
"columns": {
"id": {
"name": "id",
"type": "text",
"primaryKey": true,
"notNull": true,
"autoincrement": false
},
"identity": {
"name": "identity",
"type": "text",
"primaryKey": false,
"notNull": false,
"autoincrement": false
},
"source": {
"name": "source",
"type": "text",
"primaryKey": false,
"notNull": false,
"autoincrement": false
},
"permit_id": {
"name": "permit_id",
"type": "text",
"primaryKey": false,
"notNull": false,
"autoincrement": false
},
"entered_at": {
"name": "entered_at",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false
},
"exited_at": {
"name": "exited_at",
"type": "text",
"primaryKey": false,
"notNull": false,
"autoincrement": false
},
"state": {
"name": "state",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false,
"default": "'open'"
},
"last_event_index": {
"name": "last_event_index",
"type": "integer",
"primaryKey": false,
"notNull": false,
"autoincrement": false
}
},
"indexes": {},
"foreignKeys": {},
"compositePrimaryKeys": {},
"uniqueConstraints": {},
"checkConstraints": {}
},
"setup_state": {
"name": "setup_state",
"columns": {
"id": {
"name": "id",
"type": "integer",
"primaryKey": true,
"notNull": true,
"autoincrement": false
},
"completed_at": {
"name": "completed_at",
"type": "text",
"primaryKey": false,
"notNull": false,
"autoincrement": false
}
},
"indexes": {},
"foreignKeys": {},
"compositePrimaryKeys": {},
"uniqueConstraints": {},
"checkConstraints": {}
},
"site_config": {
"name": "site_config",
"columns": {
"id": {
"name": "id",
"type": "integer",
"primaryKey": true,
"notNull": true,
"autoincrement": false
},
"capacity": {
"name": "capacity",
"type": "integer",
"primaryKey": false,
"notNull": false,
"autoincrement": false
},
"updated_at": {
"name": "updated_at",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false,
"default": "(current_timestamp)"
}
},
"indexes": {},
"foreignKeys": {},
"compositePrimaryKeys": {},
"uniqueConstraints": {},
"checkConstraints": {}
},
"snapshots": {
"name": "snapshots",
"columns": {
"id": {
"name": "id",
"type": "text",
"primaryKey": true,
"notNull": true,
"autoincrement": false
},
"direction": {
"name": "direction",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false
},
"device_id": {
"name": "device_id",
"type": "text",
"primaryKey": false,
"notNull": false,
"autoincrement": false
},
"identity": {
"name": "identity",
"type": "text",
"primaryKey": false,
"notNull": false,
"autoincrement": false
},
"content_type": {
"name": "content_type",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false
},
"bytes": {
"name": "bytes",
"type": "blob",
"primaryKey": false,
"notNull": true,
"autoincrement": false
},
"captured_at": {
"name": "captured_at",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false
}
},
"indexes": {},
"foreignKeys": {},
"compositePrimaryKeys": {},
"uniqueConstraints": {},
"checkConstraints": {}
},
"tariff_versions": {
"name": "tariff_versions",
"columns": {
"id": {
"name": "id",
"type": "text",
"primaryKey": true,
"notNull": true,
"autoincrement": false
},
"tariff_id": {
"name": "tariff_id",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false
},
"effective_from": {
"name": "effective_from",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false
},
"currency": {
"name": "currency",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false
},
"structure": {
"name": "structure",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false
},
"created_by": {
"name": "created_by",
"type": "text",
"primaryKey": false,
"notNull": false,
"autoincrement": false
},
"created_at": {
"name": "created_at",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false,
"default": "(current_timestamp)"
}
},
"indexes": {},
"foreignKeys": {},
"compositePrimaryKeys": {},
"uniqueConstraints": {},
"checkConstraints": {}
},
"tariffs": {
"name": "tariffs",
"columns": {
"id": {
"name": "id",
"type": "text",
"primaryKey": true,
"notNull": true,
"autoincrement": false
},
"scope": {
"name": "scope",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false,
"default": "'site'"
},
"name": {
"name": "name",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false
},
"created_at": {
"name": "created_at",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false,
"default": "(current_timestamp)"
}
},
"indexes": {},
"foreignKeys": {},
"compositePrimaryKeys": {},
"uniqueConstraints": {},
"checkConstraints": {}
},
"users": {
"name": "users",
"columns": {
+607 -55
View File
@@ -1,11 +1,11 @@
{
"version": "6",
"dialect": "sqlite",
"id": "1073123c-0df9-4109-84bf-7f23b95ec5bd",
"prevId": "721bbb8f-b929-4018-9420-0ae75b03ff93",
"id": "2cfc13fa-43fc-4f89-8438-7b9bcaf7ea3b",
"prevId": "a6d81d46-c4a4-4ee7-8565-ec012bbe0252",
"tables": {
"events": {
"name": "events",
"blocklist": {
"name": "blocklist",
"columns": {
"id": {
"name": "id",
@@ -14,43 +14,90 @@
"notNull": true,
"autoincrement": false
},
"index": {
"name": "index",
"type": "integer",
"primaryKey": false,
"notNull": true,
"autoincrement": false
},
"type": {
"name": "type",
"kind": {
"name": "kind",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false
},
"direction": {
"name": "direction",
"value": {
"name": "value",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false
},
"reason": {
"name": "reason",
"type": "text",
"primaryKey": false,
"notNull": false,
"autoincrement": false
},
"lane": {
"name": "lane",
"active": {
"name": "active",
"type": "integer",
"primaryKey": false,
"notNull": true,
"autoincrement": false
"autoincrement": false,
"default": true
},
"source": {
"name": "source",
"added_by": {
"name": "added_by",
"type": "text",
"primaryKey": false,
"notNull": false,
"autoincrement": false
},
"identity": {
"name": "identity",
"added_at": {
"name": "added_at",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false,
"default": "(current_timestamp)"
}
},
"indexes": {},
"foreignKeys": {},
"compositePrimaryKeys": {},
"uniqueConstraints": {},
"checkConstraints": {}
},
"device_events": {
"name": "device_events",
"columns": {
"id": {
"name": "id",
"type": "text",
"primaryKey": true,
"notNull": true,
"autoincrement": false
},
"device_id": {
"name": "device_id",
"type": "text",
"primaryKey": false,
"notNull": false,
"autoincrement": false
},
"category": {
"name": "category",
"type": "text",
"primaryKey": false,
"notNull": false,
"autoincrement": false
},
"kind": {
"name": "kind",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false
},
"detail": {
"name": "detail",
"type": "text",
"primaryKey": false,
"notNull": false,
@@ -61,39 +108,18 @@
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false
},
"prev_hash": {
"name": "prev_hash",
"type": "text",
"primaryKey": false,
"notNull": false,
"autoincrement": false
},
"signature": {
"name": "signature",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false
}
},
"indexes": {
"events_index_unique": {
"name": "events_index_unique",
"columns": [
"index"
],
"isUnique": true
"autoincrement": false,
"default": "(current_timestamp)"
}
},
"indexes": {},
"foreignKeys": {},
"compositePrimaryKeys": {},
"uniqueConstraints": {},
"checkConstraints": {}
},
"lane_devices": {
"name": "lane_devices",
"devices": {
"name": "devices",
"columns": {
"id": {
"name": "id",
@@ -102,13 +128,6 @@
"notNull": true,
"autoincrement": false
},
"lane": {
"name": "lane",
"type": "integer",
"primaryKey": false,
"notNull": true,
"autoincrement": false
},
"category": {
"name": "category",
"type": "text",
@@ -153,6 +172,306 @@
"uniqueConstraints": {},
"checkConstraints": {}
},
"ledger_events": {
"name": "ledger_events",
"columns": {
"id": {
"name": "id",
"type": "text",
"primaryKey": true,
"notNull": true,
"autoincrement": false
},
"index": {
"name": "index",
"type": "integer",
"primaryKey": false,
"notNull": true,
"autoincrement": false
},
"type": {
"name": "type",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false
},
"direction": {
"name": "direction",
"type": "text",
"primaryKey": false,
"notNull": false,
"autoincrement": false
},
"source": {
"name": "source",
"type": "text",
"primaryKey": false,
"notNull": false,
"autoincrement": false
},
"identity": {
"name": "identity",
"type": "text",
"primaryKey": false,
"notNull": false,
"autoincrement": false
},
"payload": {
"name": "payload",
"type": "text",
"primaryKey": false,
"notNull": false,
"autoincrement": false
},
"occurred_at": {
"name": "occurred_at",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false
},
"prev_hash": {
"name": "prev_hash",
"type": "text",
"primaryKey": false,
"notNull": false,
"autoincrement": false
},
"signature": {
"name": "signature",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false
},
"key_id": {
"name": "key_id",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false
}
},
"indexes": {
"ledger_events_index_unique": {
"name": "ledger_events_index_unique",
"columns": [
"index"
],
"isUnique": true
}
},
"foreignKeys": {},
"compositePrimaryKeys": {},
"uniqueConstraints": {},
"checkConstraints": {}
},
"permit_credentials": {
"name": "permit_credentials",
"columns": {
"id": {
"name": "id",
"type": "text",
"primaryKey": true,
"notNull": true,
"autoincrement": false
},
"permit_id": {
"name": "permit_id",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false
},
"kind": {
"name": "kind",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false
},
"value": {
"name": "value",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false
}
},
"indexes": {},
"foreignKeys": {},
"compositePrimaryKeys": {},
"uniqueConstraints": {},
"checkConstraints": {}
},
"permit_plates": {
"name": "permit_plates",
"columns": {
"id": {
"name": "id",
"type": "text",
"primaryKey": true,
"notNull": true,
"autoincrement": false
},
"permit_id": {
"name": "permit_id",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false
},
"plate": {
"name": "plate",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false
}
},
"indexes": {},
"foreignKeys": {},
"compositePrimaryKeys": {},
"uniqueConstraints": {},
"checkConstraints": {}
},
"permits": {
"name": "permits",
"columns": {
"id": {
"name": "id",
"type": "text",
"primaryKey": true,
"notNull": true,
"autoincrement": false
},
"holder_name": {
"name": "holder_name",
"type": "text",
"primaryKey": false,
"notNull": false,
"autoincrement": false
},
"contact": {
"name": "contact",
"type": "text",
"primaryKey": false,
"notNull": false,
"autoincrement": false
},
"max_concurrent": {
"name": "max_concurrent",
"type": "integer",
"primaryKey": false,
"notNull": false,
"autoincrement": false,
"default": 1
},
"valid_from": {
"name": "valid_from",
"type": "text",
"primaryKey": false,
"notNull": false,
"autoincrement": false
},
"valid_to": {
"name": "valid_to",
"type": "text",
"primaryKey": false,
"notNull": false,
"autoincrement": false
},
"status": {
"name": "status",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false,
"default": "'active'"
},
"created_at": {
"name": "created_at",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false,
"default": "(current_timestamp)"
}
},
"indexes": {},
"foreignKeys": {},
"compositePrimaryKeys": {},
"uniqueConstraints": {},
"checkConstraints": {}
},
"sessions": {
"name": "sessions",
"columns": {
"id": {
"name": "id",
"type": "text",
"primaryKey": true,
"notNull": true,
"autoincrement": false
},
"identity": {
"name": "identity",
"type": "text",
"primaryKey": false,
"notNull": false,
"autoincrement": false
},
"source": {
"name": "source",
"type": "text",
"primaryKey": false,
"notNull": false,
"autoincrement": false
},
"permit_id": {
"name": "permit_id",
"type": "text",
"primaryKey": false,
"notNull": false,
"autoincrement": false
},
"entered_at": {
"name": "entered_at",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false
},
"exited_at": {
"name": "exited_at",
"type": "text",
"primaryKey": false,
"notNull": false,
"autoincrement": false
},
"state": {
"name": "state",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false,
"default": "'open'"
},
"last_event_index": {
"name": "last_event_index",
"type": "integer",
"primaryKey": false,
"notNull": false,
"autoincrement": false
}
},
"indexes": {},
"foreignKeys": {},
"compositePrimaryKeys": {},
"uniqueConstraints": {},
"checkConstraints": {}
},
"setup_state": {
"name": "setup_state",
"columns": {
@@ -177,6 +496,239 @@
"uniqueConstraints": {},
"checkConstraints": {}
},
"site_config": {
"name": "site_config",
"columns": {
"id": {
"name": "id",
"type": "integer",
"primaryKey": true,
"notNull": true,
"autoincrement": false
},
"capacity": {
"name": "capacity",
"type": "integer",
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},
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},
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},
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},
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"default": "'site'"
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},
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}
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},
"users": {
"name": "users",
"columns": {
+805
View File
@@ -0,0 +1,805 @@
{
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"id": "dbee8e05-0b49-4af7-962c-9aab53b36eb7",
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},
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},
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},
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},
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},
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},
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"default": "'site'"
},
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},
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},
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},
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},
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},
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}
},
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],
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}
},
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}
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},
"internal": {
"indexes": {}
}
}
+813
View File
@@ -0,0 +1,813 @@
{
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},
"kind": {
"name": "kind",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false
},
"detail": {
"name": "detail",
"type": "text",
"primaryKey": false,
"notNull": false,
"autoincrement": false
},
"occurred_at": {
"name": "occurred_at",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false,
"default": "(current_timestamp)"
}
},
"indexes": {},
"foreignKeys": {},
"compositePrimaryKeys": {},
"uniqueConstraints": {},
"checkConstraints": {}
},
"devices": {
"name": "devices",
"columns": {
"id": {
"name": "id",
"type": "text",
"primaryKey": true,
"notNull": true,
"autoincrement": false
},
"category": {
"name": "category",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false
},
"driver_id": {
"name": "driver_id",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false
},
"config": {
"name": "config",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false
},
"enabled": {
"name": "enabled",
"type": "integer",
"primaryKey": false,
"notNull": true,
"autoincrement": false,
"default": true
},
"created_at": {
"name": "created_at",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false,
"default": "(current_timestamp)"
}
},
"indexes": {},
"foreignKeys": {},
"compositePrimaryKeys": {},
"uniqueConstraints": {},
"checkConstraints": {}
},
"ledger_events": {
"name": "ledger_events",
"columns": {
"id": {
"name": "id",
"type": "text",
"primaryKey": true,
"notNull": true,
"autoincrement": false
},
"index": {
"name": "index",
"type": "integer",
"primaryKey": false,
"notNull": true,
"autoincrement": false
},
"type": {
"name": "type",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false
},
"direction": {
"name": "direction",
"type": "text",
"primaryKey": false,
"notNull": false,
"autoincrement": false
},
"source": {
"name": "source",
"type": "text",
"primaryKey": false,
"notNull": false,
"autoincrement": false
},
"identity": {
"name": "identity",
"type": "text",
"primaryKey": false,
"notNull": false,
"autoincrement": false
},
"payload": {
"name": "payload",
"type": "text",
"primaryKey": false,
"notNull": false,
"autoincrement": false
},
"occurred_at": {
"name": "occurred_at",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false
},
"prev_hash": {
"name": "prev_hash",
"type": "text",
"primaryKey": false,
"notNull": false,
"autoincrement": false
},
"signature": {
"name": "signature",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false
},
"key_id": {
"name": "key_id",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false
}
},
"indexes": {
"ledger_events_index_unique": {
"name": "ledger_events_index_unique",
"columns": [
"index"
],
"isUnique": true
}
},
"foreignKeys": {},
"compositePrimaryKeys": {},
"uniqueConstraints": {},
"checkConstraints": {}
},
"permit_credentials": {
"name": "permit_credentials",
"columns": {
"id": {
"name": "id",
"type": "text",
"primaryKey": true,
"notNull": true,
"autoincrement": false
},
"permit_id": {
"name": "permit_id",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false
},
"kind": {
"name": "kind",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false
},
"value": {
"name": "value",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false
}
},
"indexes": {},
"foreignKeys": {},
"compositePrimaryKeys": {},
"uniqueConstraints": {},
"checkConstraints": {}
},
"permit_plates": {
"name": "permit_plates",
"columns": {
"id": {
"name": "id",
"type": "text",
"primaryKey": true,
"notNull": true,
"autoincrement": false
},
"permit_id": {
"name": "permit_id",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false
},
"plate": {
"name": "plate",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false
}
},
"indexes": {},
"foreignKeys": {},
"compositePrimaryKeys": {},
"uniqueConstraints": {},
"checkConstraints": {}
},
"permits": {
"name": "permits",
"columns": {
"id": {
"name": "id",
"type": "text",
"primaryKey": true,
"notNull": true,
"autoincrement": false
},
"holder_name": {
"name": "holder_name",
"type": "text",
"primaryKey": false,
"notNull": false,
"autoincrement": false
},
"contact": {
"name": "contact",
"type": "text",
"primaryKey": false,
"notNull": false,
"autoincrement": false
},
"max_concurrent": {
"name": "max_concurrent",
"type": "integer",
"primaryKey": false,
"notNull": false,
"autoincrement": false,
"default": 1
},
"valid_from": {
"name": "valid_from",
"type": "text",
"primaryKey": false,
"notNull": false,
"autoincrement": false
},
"valid_to": {
"name": "valid_to",
"type": "text",
"primaryKey": false,
"notNull": false,
"autoincrement": false
},
"status": {
"name": "status",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false,
"default": "'active'"
},
"created_at": {
"name": "created_at",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false,
"default": "(current_timestamp)"
}
},
"indexes": {},
"foreignKeys": {},
"compositePrimaryKeys": {},
"uniqueConstraints": {},
"checkConstraints": {}
},
"sessions": {
"name": "sessions",
"columns": {
"id": {
"name": "id",
"type": "text",
"primaryKey": true,
"notNull": true,
"autoincrement": false
},
"identity": {
"name": "identity",
"type": "text",
"primaryKey": false,
"notNull": false,
"autoincrement": false
},
"source": {
"name": "source",
"type": "text",
"primaryKey": false,
"notNull": false,
"autoincrement": false
},
"permit_id": {
"name": "permit_id",
"type": "text",
"primaryKey": false,
"notNull": false,
"autoincrement": false
},
"entered_at": {
"name": "entered_at",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false
},
"exited_at": {
"name": "exited_at",
"type": "text",
"primaryKey": false,
"notNull": false,
"autoincrement": false
},
"state": {
"name": "state",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false,
"default": "'open'"
},
"last_event_index": {
"name": "last_event_index",
"type": "integer",
"primaryKey": false,
"notNull": false,
"autoincrement": false
}
},
"indexes": {},
"foreignKeys": {},
"compositePrimaryKeys": {},
"uniqueConstraints": {},
"checkConstraints": {}
},
"setup_state": {
"name": "setup_state",
"columns": {
"id": {
"name": "id",
"type": "integer",
"primaryKey": true,
"notNull": true,
"autoincrement": false
},
"completed_at": {
"name": "completed_at",
"type": "text",
"primaryKey": false,
"notNull": false,
"autoincrement": false
}
},
"indexes": {},
"foreignKeys": {},
"compositePrimaryKeys": {},
"uniqueConstraints": {},
"checkConstraints": {}
},
"site_config": {
"name": "site_config",
"columns": {
"id": {
"name": "id",
"type": "integer",
"primaryKey": true,
"notNull": true,
"autoincrement": false
},
"capacity": {
"name": "capacity",
"type": "integer",
"primaryKey": false,
"notNull": false,
"autoincrement": false
},
"park_name": {
"name": "park_name",
"type": "text",
"primaryKey": false,
"notNull": false,
"autoincrement": false
},
"operator_name": {
"name": "operator_name",
"type": "text",
"primaryKey": false,
"notNull": false,
"autoincrement": false
},
"nius": {
"name": "nius",
"type": "text",
"primaryKey": false,
"notNull": false,
"autoincrement": false
},
"address": {
"name": "address",
"type": "text",
"primaryKey": false,
"notNull": false,
"autoincrement": false
},
"phone": {
"name": "phone",
"type": "text",
"primaryKey": false,
"notNull": false,
"autoincrement": false
},
"email": {
"name": "email",
"type": "text",
"primaryKey": false,
"notNull": false,
"autoincrement": false
},
"exit_voucher_default": {
"name": "exit_voucher_default",
"type": "integer",
"primaryKey": false,
"notNull": true,
"autoincrement": false,
"default": false
},
"updated_at": {
"name": "updated_at",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false,
"default": "(current_timestamp)"
}
},
"indexes": {},
"foreignKeys": {},
"compositePrimaryKeys": {},
"uniqueConstraints": {},
"checkConstraints": {}
},
"snapshots": {
"name": "snapshots",
"columns": {
"id": {
"name": "id",
"type": "text",
"primaryKey": true,
"notNull": true,
"autoincrement": false
},
"direction": {
"name": "direction",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false
},
"device_id": {
"name": "device_id",
"type": "text",
"primaryKey": false,
"notNull": false,
"autoincrement": false
},
"identity": {
"name": "identity",
"type": "text",
"primaryKey": false,
"notNull": false,
"autoincrement": false
},
"content_type": {
"name": "content_type",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false
},
"bytes": {
"name": "bytes",
"type": "blob",
"primaryKey": false,
"notNull": true,
"autoincrement": false
},
"captured_at": {
"name": "captured_at",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false
}
},
"indexes": {},
"foreignKeys": {},
"compositePrimaryKeys": {},
"uniqueConstraints": {},
"checkConstraints": {}
},
"tariff_versions": {
"name": "tariff_versions",
"columns": {
"id": {
"name": "id",
"type": "text",
"primaryKey": true,
"notNull": true,
"autoincrement": false
},
"tariff_id": {
"name": "tariff_id",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false
},
"effective_from": {
"name": "effective_from",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false
},
"currency": {
"name": "currency",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false
},
"structure": {
"name": "structure",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false
},
"created_by": {
"name": "created_by",
"type": "text",
"primaryKey": false,
"notNull": false,
"autoincrement": false
},
"created_at": {
"name": "created_at",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false,
"default": "(current_timestamp)"
}
},
"indexes": {},
"foreignKeys": {},
"compositePrimaryKeys": {},
"uniqueConstraints": {},
"checkConstraints": {}
},
"tariffs": {
"name": "tariffs",
"columns": {
"id": {
"name": "id",
"type": "text",
"primaryKey": true,
"notNull": true,
"autoincrement": false
},
"scope": {
"name": "scope",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false,
"default": "'site'"
},
"name": {
"name": "name",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false
},
"created_at": {
"name": "created_at",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false,
"default": "(current_timestamp)"
}
},
"indexes": {},
"foreignKeys": {},
"compositePrimaryKeys": {},
"uniqueConstraints": {},
"checkConstraints": {}
},
"users": {
"name": "users",
"columns": {
"id": {
"name": "id",
"type": "text",
"primaryKey": true,
"notNull": true,
"autoincrement": false
},
"username": {
"name": "username",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false
},
"password_hash": {
"name": "password_hash",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false
},
"role": {
"name": "role",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false
},
"language": {
"name": "language",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false,
"default": "'sq'"
},
"created_at": {
"name": "created_at",
"type": "text",
"primaryKey": false,
"notNull": true,
"autoincrement": false,
"default": "(current_timestamp)"
}
},
"indexes": {
"users_username_unique": {
"name": "users_username_unique",
"columns": [
"username"
],
"isUnique": true
}
},
"foreignKeys": {},
"compositePrimaryKeys": {},
"uniqueConstraints": {},
"checkConstraints": {}
}
},
"views": {},
"enums": {},
"_meta": {
"schemas": {},
"tables": {},
"columns": {}
},
"internal": {
"indexes": {}
}
}
+18 -4
View File
@@ -5,15 +5,29 @@
{
"idx": 0,
"version": "6",
"when": 1781389618205,
"tag": "0000_absent_rocket_raccoon",
"when": 1781632874398,
"tag": "0000_baseline",
"breakpoints": true
},
{
"idx": 1,
"version": "6",
"when": 1781416636098,
"tag": "0001_cuddly_maria_hill",
"when": 1781682176094,
"tag": "0001_neat_slipstream",
"breakpoints": true
},
{
"idx": 2,
"version": "6",
"when": 1781713560438,
"tag": "0002_panoramic_tiger_shark",
"breakpoints": true
},
{
"idx": 3,
"version": "6",
"when": 1781774228086,
"tag": "0003_early_hawkeye",
"breakpoints": true
}
]
+241 -16
View File
@@ -1,11 +1,17 @@
import { sql } from "drizzle-orm";
import { integer, sqliteTable, text } from "drizzle-orm/sqlite-core";
import { blob, integer, sqliteTable, text } from "drizzle-orm/sqlite-core";
// Schema notes:
// - `events` is APPEND-ONLY. Never expose UPDATE/DELETE on it. A correction or
// void is a new row of type 'void'. Each row chains to the previous via
// `prevHash` and is signed by the ATECC608 (`signature`). This is the core
// anti-fraud integrity mechanism. See wiki/concepts/append-only-event-chain.md.
// - TWO event streams, deliberately separate (see wiki/decisions/event-streams-split.md):
// • `ledger_events` — the APPEND-ONLY, hash-chained, ATECC608-SIGNED business ledger.
// Never UPDATE/DELETE. A correction or void is a new row of type 'void'. Each row
// chains via `prevHash` and is signed (`signature`). The anti-fraud record; sessions,
// tariffs and occupancy are PROJECTIONS over it. See append-only-event-chain.md.
// • `device_events` — UNSIGNED operational telemetry (relay/printer/camera/reader/input).
// High-volume, prunable, never reconciled. See wiki/concepts/device-events.md.
// - Business master data (tariffs/permits/blocklist) IS mutable, but its USE is fixed in a
// signed ledger event, so the audit trail stays append-only. Tariffs are versioned:
// editing publishes a new immutable tariff_version. See wiki/concepts/tariff.md.
// - `users` holds bcrypt hashes + a role; auth is fully local (offline-first).
// See wiki/entities/local-jwt-auth.md.
@@ -16,35 +22,99 @@ export const users = sqliteTable("users", {
role: text("role", {
enum: ["admin", "operator", "cashier", "readonly"],
}).notNull(),
// Preferred UI language for this user (operator-facing). Loaded on login and
// restored from any booth. Albanian is the default. Printed tickets are NOT
// governed by this — they're always Albanian (customer-facing). See i18n.md.
language: text("language", { enum: ["sq", "en"] })
.notNull()
.default("sq"),
createdAt: text("created_at")
.notNull()
.default(sql`(current_timestamp)`),
});
export const events = sqliteTable("events", {
// --- The signed business ledger (formerly `events`) ----------------------
// Holds ONLY business/accountability facts: vehicle_entry, vehicle_exit, payment,
// void, shift_z_report, plus witness-grade barrier_open_command/observed, anomaly.
// `payload` carries type-specific data (amount, tariffVersionId, sessionRef, tender,
// plate confidence…) and is part of the SIGNED canonical form, so it is tamper-evident
// like the rest of the row. See packages/shared ParkingEventType + LedgerPayload.
export const ledgerEvents = sqliteTable("ledger_events", {
id: text("id").primaryKey(),
// Monotonic chain index. Gaps are alarms (see event-log-ingestion).
index: integer("index").notNull().unique(),
type: text("type").notNull(),
direction: text("direction", { enum: ["entry", "exit"] }),
lane: integer("lane").notNull(),
source: text("source"),
identity: text("identity"),
// Type-specific business payload (JSON). Signed as part of the canonical form.
payload: text("payload", { mode: "json" }).$type<Record<string, unknown>>(),
occurredAt: text("occurred_at").notNull(),
// Hash of the previous event (hex). Null only for the genesis event.
prevHash: text("prev_hash"),
// ATECC608 signature over the canonical event payload (hex).
signature: text("signature").notNull(),
// Which signer/key produced `signature` (e.g. "sw-hmac-v1", "atecc608-slot0"),
// so old events stay verifiable across a signer swap. See packages/shared Signer.
keyId: text("key_id").notNull(),
});
// Per-lane device assignments chosen by the admin during first-run setup.
// One row per (lane, category, instance). `driverId` references a driver in the
// @parking/devices registry; `config` is that driver's JSON config (host, port,
// credentials…). Lets the system stay device-agnostic and admin-configurable.
// See wiki/concepts/device-registry.md and first-run-setup.md.
export const laneDevices = sqliteTable("lane_devices", {
// --- Device telemetry (unsigned, prunable) -------------------------------
// Operational monitoring, NOT anti-fraud: relay fired, printer paper-out, camera
// offline, reader read, raw input edges. Keyed to a `devices` instance. No
// prevHash/signature — this stream may rotate/prune.
export const deviceEvents = sqliteTable("device_events", {
id: text("id").primaryKey(),
// The `devices` instance that produced it (raw provenance).
deviceId: text("device_id"),
category: text("category", {
enum: ["access", "reader", "camera", "printer"],
}),
// e.g. "input", "relay", "status", "read", "snapshot".
kind: text("kind").notNull(),
// Free-form telemetry detail (input number + edge, status flags, error…).
detail: text("detail", { mode: "json" }).$type<Record<string, unknown>>(),
occurredAt: text("occurred_at")
.notNull()
.default(sql`(current_timestamp)`),
});
// --- Camera snapshots (unsigned, prunable, blob-in-DB) -------------------
// An entry/exit snapshot captured asynchronously AFTER the barrier opens — evidence,
// not a gate (camera failure never blocks an open; see entry/exit flows). Stored as a
// BLOB so the appliance keeps a single backed-up file with nothing scattered on disk.
// Kept in its own table (not inline in device_events) so the hot telemetry scans don't
// drag image bytes, and so images can be pruned independently. The signed
// vehicle_entry/exit references a snapshot by `id` in its payload — the image is an
// independent record (anti-fraud), unsigned and prunable. Retention policy is an open
// question — see wiki/concepts/entry-exit-points.md. Served via GET /api/snapshots/:id.
export const snapshots = sqliteTable("snapshots", {
id: text("id").primaryKey(),
direction: text("direction", { enum: ["entry", "exit"] }).notNull(),
// The camera `devices` instance that captured it (raw provenance).
deviceId: text("device_id"),
// The session/credential ref (ticket id, plate, permit) — links to the ledger event.
identity: text("identity"),
contentType: text("content_type").notNull(),
bytes: blob("bytes").notNull().$type<Buffer>(),
capturedAt: text("captured_at").notNull(),
});
// --- Device assignments (first-run setup) --------------------------------
// One row per device instance. `driverId` references a driver in the @parking/devices
// registry; `config` is that driver's JSON config. There is NO lane: a parking lot is
// one pool of spaces with a flexible set of entry/exit points. Direction lives INSIDE
// the config, per the hardware:
// - access controller: config.relays = [{ relay, direction: entry|exit|both, button? }]
// — one physical board has several relays; each relay opens one barrier in one
// direction (or both). `button` = the input terminal the entry button is wired to
// (transient entry trigger; absent = no button at that barrier).
// - reader / camera: config.controllerId + config.relay BIND it to the barrier it sits
// at; its direction is INHERITED from that relay. Unbound → falls back to a
// direction picked in config.
// See device-registry.md, first-run-setup.md, wiki/concepts/entry-exit-points.md.
export const devices = sqliteTable("devices", {
id: text("id").primaryKey(),
lane: integer("lane").notNull(),
category: text("category", {
enum: ["access", "reader", "camera", "printer"],
}).notNull(),
@@ -64,7 +134,162 @@ export const setupState = sqliteTable("setup_state", {
completedAt: text("completed_at"),
});
// Single-row site settings (admin-configurable). The home for site-wide knobs;
// `capacity` is the nominal space count the FULL gate refuses transient entry at
// (null = no cap). See wiki/concepts/capacity-occupancy.md.
// Park identity/metadata (all optional) lives here too — display name, the legal
// operator, the NIUS tax id, address and contact. These feed the ticket/receipt
// header (park name + NIUS are commonly required on an Albanian parking receipt)
// and admin display. All nullable: the lot runs fine with none set.
// See wiki/concepts/site-metadata.md.
export const siteConfig = sqliteTable("site_config", {
id: integer("id").primaryKey(), // always 1
capacity: integer("capacity"), // null = no capacity limit
/** Park display name shown on the ticket header / UI (e.g. "Acme Parking"). */
parkName: text("park_name"),
/** Legal entity operating the lot, for receipts (may differ from parkName). */
operatorName: text("operator_name"),
/** NIUS — Albanian tax/identification number, printed on the receipt when set. */
nius: text("nius"),
/** Free-text postal address (multi-line allowed). */
address: text("address"),
/** Contact phone — also used for the ticket "lost ticket? call …" footer. */
phone: text("phone"),
/** Contact email. */
email: text("email"),
/** Default for the booth pay modal's "print exit ticket" checkbox. Site-wide
* because it's booth GEOGRAPHY: when the booth is far from the exit, the
* customer pays at the booth and self-exits later by scanning a printed exit
* voucher (= the ticket id reprinted, now paid). When near the exit, the booth
* opens the barrier directly. The operator may still override per transaction.
* Stored 0/1 (SQLite has no bool). See wiki/concepts/booth-exit-flow.md. */
exitVoucherDefault: integer("exit_voucher_default", { mode: "boolean" })
.notNull()
.default(false),
updatedAt: text("updated_at")
.notNull()
.default(sql`(current_timestamp)`),
});
// --- Tariffs (composable, versioned) -------------------------------------
// A `tariffs` row is a logical rate card; its pricing lives in immutable, effective-
// dated `tariff_versions`. Editing prices PUBLISHES a new version, never mutates one.
// A session reprices against the version in force at its entry time; the `payment`
// ledger event records the tariffVersionId used. "One active tariff per site" today;
// `scope` lets multiple be added later without migration. See wiki/concepts/tariff.md.
export const tariffs = sqliteTable("tariffs", {
id: text("id").primaryKey(),
// Only "site" used now; "zone" reserved for multi-tariff later.
scope: text("scope", { enum: ["site", "zone"] }).notNull().default("site"),
name: text("name").notNull(),
createdAt: text("created_at")
.notNull()
.default(sql`(current_timestamp)`),
});
export const tariffVersions = sqliteTable("tariff_versions", {
id: text("id").primaryKey(),
tariffId: text("tariff_id").notNull(),
// The version is in force from this instant (latest with effectiveFrom ≤ entry wins).
effectiveFrom: text("effective_from").notNull(),
// ISO 4217; selectable. Money everywhere is { minorUnits, currency }, never a float.
currency: text("currency").notNull(),
// The composable rate card (stepped blocks + caps/grace). Shape: TariffStructure
// in packages/shared. Immutable once published.
structure: text("structure", { mode: "json" }).notNull().$type<Record<string, unknown>>(),
createdBy: text("created_by"),
createdAt: text("created_at")
.notNull()
.default(sql`(current_timestamp)`),
});
// --- Permits (subscriptions) ---------------------------------------------
// Mutable master data; every USE produces a signed vehicle_entry/exit ledger event.
// Two optional, independent bindings: car-count (maxConcurrent, default 1, null =
// unbound) and plate (plates rows, default none = any car). Identity = card/QR OR a
// matching plate. Credentials and cars are child rows. See wiki/entities/permit.md.
export const permits = sqliteTable("permits", {
id: text("id").primaryKey(),
holderName: text("holder_name"),
contact: text("contact"),
// Car-count binding: how many of the permit's cars may be inside at once.
// null = unbound. Default 1.
maxConcurrent: integer("max_concurrent").default(1),
validFrom: text("valid_from"),
validTo: text("valid_to"),
status: text("status", { enum: ["active", "suspended", "revoked"] })
.notNull()
.default("active"),
createdAt: text("created_at")
.notNull()
.default(sql`(current_timestamp)`),
});
// A permit's credentials (RF tag/chip/card, or QR). Either opens the lane.
export const permitCredentials = sqliteTable("permit_credentials", {
id: text("id").primaryKey(),
permitId: text("permit_id").notNull(),
kind: text("kind", { enum: ["rf", "qr"] }).notNull(),
value: text("value").notNull(),
});
// Plate binding (optional). When a permit has plate rows, a matching plate read is
// itself an accepted identity (card/QR OR plate). Empty = not plate-bound (any car).
export const permitPlates = sqliteTable("permit_plates", {
id: text("id").primaryKey(),
permitId: text("permit_id").notNull(),
plate: text("plate").notNull(),
});
// --- Blocklist (banlist) -------------------------------------------------
// Plates/cards refused at ENTRY (never at exit — never trap a vehicle). A hit appends
// a signed anomaly/refused-entry ledger event. See wiki/entities/blocklist.md.
export const blocklist = sqliteTable("blocklist", {
id: text("id").primaryKey(),
kind: text("kind", { enum: ["plate", "card", "qr"] }).notNull(),
value: text("value").notNull(),
reason: text("reason"),
active: integer("active", { mode: "boolean" }).notNull().default(true),
addedBy: text("added_by"),
addedAt: text("added_at")
.notNull()
.default(sql`(current_timestamp)`),
});
// --- Sessions (PROJECTION cache) -----------------------------------------
// NOT a source of truth — a rebuildable fold over ledger_events for fast queries
// (occupancy, pay-station lookup, anti-passback, plate search). Always reconstructable
// from the signed chain; never the authority for "paid". See wiki/concepts/parking-session.md.
export const sessions = sqliteTable("sessions", {
// The session key = the entry's identity (ticket id or plate).
id: text("id").primaryKey(),
// Identity that opened the session, and how it was read.
identity: text("identity"),
source: text("source"),
// null while transient; set when matched to a permit.
permitId: text("permit_id"),
enteredAt: text("entered_at").notNull(),
// null until exit; presence = CLOSED.
exitedAt: text("exited_at"),
// Derived state for quick filtering: open | paid | closed | voided.
state: text("state", { enum: ["open", "paid", "closed", "voided"] })
.notNull()
.default("open"),
// Index of the last ledger event folded into this row (cache freshness / rebuild).
lastEventIndex: integer("last_event_index"),
});
export type UserRow = typeof users.$inferSelect;
export type EventRow = typeof events.$inferSelect;
export type LaneDeviceRow = typeof laneDevices.$inferSelect;
export type LedgerEventRow = typeof ledgerEvents.$inferSelect;
export type DeviceEventRow = typeof deviceEvents.$inferSelect;
export type SnapshotRow = typeof snapshots.$inferSelect;
export type DeviceRow = typeof devices.$inferSelect;
export type SetupStateRow = typeof setupState.$inferSelect;
export type SiteConfigRow = typeof siteConfig.$inferSelect;
export type TariffRow = typeof tariffs.$inferSelect;
export type TariffVersionRow = typeof tariffVersions.$inferSelect;
export type PermitRow = typeof permits.$inferSelect;
export type PermitCredentialRow = typeof permitCredentials.$inferSelect;
export type PermitPlateRow = typeof permitPlates.$inferSelect;
export type BlocklistRow = typeof blocklist.$inferSelect;
export type SessionRow = typeof sessions.$inferSelect;
@@ -721,6 +721,7 @@ export const dingtianDriver: AccessDriver = {
description:
"Dingtian network relay+input board (UDP). Inputs are decoupled from relays — enables host-in-the-loop entry. Unauthenticated UDP: isolate the VLAN.",
transports: ["udp"],
pushesToBackend: true, // HTTP-pushes input/button events to the backend (Input Link URL)
configFields: [
hostField,
{ ...portField(60001), required: false, help: "Dingtian string protocol UDP port — status read (default 60001)." },
@@ -0,0 +1,35 @@
import type { AccessControlDevice, DeviceHealth } from "../interfaces.js";
import type { AccessDriver, DeviceConfig } from "../registry.js";
import { stubLog } from "./common.js";
// Stub access controller — a no-op barrier for BENCH TESTING the entry/exit/permit
// flows without real relay hardware. `pulseOpen` just logs "intent to open"; it
// performs no device I/O, so it can stand in on a lane while the real
// [[dingtian-relay]] isn't connected. NOT for production. See first-run-setup.md.
class StubAccess implements AccessControlDevice {
readonly driverId = "stub-access";
constructor(_config: DeviceConfig) {}
async connect(): Promise<void> {}
async disconnect(): Promise<void> {}
async healthCheck(): Promise<DeviceHealth> {
return { status: "ready", detail: "stub (no real barrier)" };
}
async pulseOpen(doorId: number): Promise<void> {
stubLog(this.driverId, `pulseOpen door ${doorId} (stub — no relay fired)`);
}
async getDoorStatus(): Promise<"open" | "closed"> {
return "closed";
}
}
export const stubAccessDriver: AccessDriver = {
id: "stub-access",
category: "access",
label: "Stub barrier (bench testing — no relay)",
description:
"A no-op access controller for testing the flows without hardware. pulseOpen only logs; no relay is fired. Not for production.",
transports: ["tcp-ip"],
configFields: [],
create: (c) => new StubAccess(c),
};
+88 -25
View File
@@ -1,57 +1,120 @@
import type { CameraDevice, DeviceHealth, Snapshot, SnapshotContext } from "../interfaces.js";
import type { CameraDriver, DeviceConfig } from "../registry.js";
import type { CameraDriver, ConfigField, DeviceConfig } from "../registry.js";
import { hostField, passwordField, portField, usernameField, stubLog } from "./common.js";
import { digestGet } from "./http-digest.js";
// Camera drivers — entry/exit snapshot-on-event. The image is stored and
// referenced from the signed event as an independent fraud-control record.
// Hikvision (ISAPI) and Dahua (CGI) differ only in the snapshot URL. STUBS only.
// Camera drivers — entry/exit snapshot-on-event. The host pulls a still over
// HTTP when an event fires; the bytes are stored and referenced from the signed
// event as an independent fraud-control record (the camera PULLS, it never pushes
// to us). Hikvision (ISAPI) and Dahua (CGI) differ only in the snapshot URL and
// channel encoding. Both use HTTP Digest auth (see ./http-digest.ts).
//
// VERIFIED on hardware (2026-06-15): a Hikvision unit at 10.0.10.121 returns a
// 2688×1520 JPEG from /ISAPI/Streaming/channels/101/picture with Digest auth.
// See wiki/entities/lpr-camera.md.
const DEFAULT_TIMEOUT_MS = 8000;
class HttpCamera implements CameraDevice {
readonly #host: string;
readonly #port: number;
readonly #user: string;
readonly #password: string;
readonly #channel: number;
readonly #timeout: number;
// Source outbound from the device-facing NIC on a multi-homed host (the
// multi-subnet source-address trap — see wiki/concepts/wsl-dev-networking.md).
readonly #localAddress: string | undefined;
class StubCamera implements CameraDevice {
constructor(
readonly driverId: string,
protected readonly config: DeviceConfig,
protected readonly snapshotPath: string,
) {}
async connect(): Promise<void> {
stubLog(this.driverId, `connect ${this.config.host} (${this.snapshotPath})`);
}
async disconnect(): Promise<void> {
stubLog(this.driverId, "disconnect");
config: DeviceConfig,
/** Builds the snapshot path from the configured channel. */
private readonly snapshotPath: (channel: number) => string,
) {
this.#host = String(config.host);
this.#port = Number(config.port ?? 80);
this.#user = String(config.username ?? "");
this.#password = String(config.password ?? "");
this.#channel = Number(config.channel ?? 1);
this.#timeout = Number(config.timeoutMs ?? DEFAULT_TIMEOUT_MS);
this.#localAddress = config.localAddress ? String(config.localAddress) : undefined;
}
async connect(): Promise<void> {}
async disconnect(): Promise<void> {}
async healthCheck(): Promise<DeviceHealth> {
return { status: "ready", detail: "stub" };
// The only honest liveness probe for a snapshot camera is to actually pull a
// frame: it exercises reachability + auth + the path/channel in one shot.
try {
const res = await this.#get();
if (res.status === 200) return { status: "ready", detail: `${res.body.length} bytes` };
if (res.status === 401) return { status: "degraded", detail: "auth rejected (check username/password)" };
return { status: "degraded", detail: `HTTP ${res.status}` };
} catch (err) {
return { status: "offline", detail: (err as Error).message };
}
}
async captureSnapshot(ctx: SnapshotContext): Promise<Snapshot> {
// Real driver: GET http(s)://host{snapshotPath}, store bytes, return ref.
stubLog(this.driverId, `captureSnapshot lane=${ctx.lane} ${ctx.direction}`);
const res = await this.#get();
if (res.status !== 200) {
throw new Error(
`${this.driverId} snapshot failed (${ctx.direction}): HTTP ${res.status}`,
);
}
stubLog(this.driverId, `captureSnapshot ${ctx.direction} (${res.body.length} bytes)`);
return {
imageRef: `stub://${this.driverId}/lane${ctx.lane}/${ctx.direction}/${Date.now()}`,
contentType: "image/jpeg",
bytes: res.body,
contentType: res.contentType || "image/jpeg",
capturedAt: new Date().toISOString(),
};
}
#get() {
return digestGet({
host: this.#host,
port: this.#port,
path: this.snapshotPath(this.#channel),
user: this.#user,
password: this.#password,
timeoutMs: this.#timeout,
localAddress: this.#localAddress,
});
}
}
const cameraConfigFields = [hostField, portField(80), usernameField, passwordField, { key: "channel", label: "Channel", type: "number" as const, required: false, default: 1 }];
const channelField: ConfigField = {
key: "channel",
label: "Channel",
type: "number",
required: false,
default: 1,
};
const cameraConfigFields = [hostField, portField(80), usernameField, passwordField, channelField];
export const hikvisionDriver: CameraDriver = {
id: "hikvision",
category: "camera",
label: "Hikvision camera",
description: "Hikvision snapshot via ISAPI.",
description: "Hikvision snapshot via ISAPI (HTTP Digest).",
transports: ["tcp-ip"],
configFields: cameraConfigFields,
// /ISAPI/Streaming/channels/<id>/picture
create: (c) => new StubCamera("hikvision", c, "/ISAPI/Streaming/channels/101/picture"),
// ISAPI channel id: <channel><stream>, e.g. ch1 main = 101, ch2 main = 201.
create: (c) =>
new HttpCamera("hikvision", c, (ch) => `/ISAPI/Streaming/channels/${ch}01/picture`),
};
export const dahuaDriver: CameraDriver = {
id: "dahua",
category: "camera",
label: "Dahua camera",
description: "Dahua snapshot via CGI.",
description: "Dahua snapshot via CGI (HTTP Digest).",
transports: ["tcp-ip"],
configFields: cameraConfigFields,
// /cgi-bin/snapshot.cgi?channel=<n>
create: (c) => new StubCamera("dahua", c, "/cgi-bin/snapshot.cgi"),
// Dahua channels are 0-based on the CGI; the admin enters 1-based.
create: (c) =>
new HttpCamera("dahua", c, (ch) => `/cgi-bin/snapshot.cgi?channel=${Math.max(0, ch - 1)}`),
};
+139
View File
@@ -0,0 +1,139 @@
import { createHash, randomBytes } from "node:crypto";
import { request as httpRequest } from "node:http";
import type { IncomingMessage } from "node:http";
// Client-side HTTP Digest auth (RFC 2617, MD5, qop=auth) for talking TO devices
// that challenge with `WWW-Authenticate: Digest` — e.g. Hikvision ISAPI cameras.
// (The server-side counterpart, which VERIFIES device→backend pushes, lives in
// apps/server/src/digest-auth.ts.) Devices on the isolated VLAN can't present a
// trusted TLS cert, so plain-HTTP Digest is the available auth: the password is
// never on the wire, only a nonce-keyed hash. See wiki/concepts/network-isolation.md.
const md5 = (s: string) => createHash("md5").update(s).digest("hex");
/** Parse a `WWW-Authenticate: Digest …` header into its k=v fields. */
function parseChallenge(header: string): Record<string, string> {
const out: Record<string, string> = {};
const re = /(\w+)=(?:"([^"]*)"|([^,]*))/g;
let m: RegExpExecArray | null;
while ((m = re.exec(header))) out[m[1]!] = (m[2] ?? m[3] ?? "").trim();
return out;
}
/** Build the `Authorization: Digest …` response value for a challenge. */
function buildAuthHeader(
c: Record<string, string>,
user: string,
password: string,
method: string,
uri: string,
): string {
const realm = c.realm ?? "";
const nonce = c.nonce ?? "";
const qop = c.qop?.split(",")[0]?.trim(); // server may offer "auth,auth-int"
const ha1 = md5(`${user}:${realm}:${password}`);
const ha2 = md5(`${method}:${uri}`);
const parts: string[] = [
`username="${user}"`,
`realm="${realm}"`,
`nonce="${nonce}"`,
`uri="${uri}"`,
];
let response: string;
if (qop === "auth") {
const cnonce = randomBytes(8).toString("hex");
const nc = "00000001";
response = md5(`${ha1}:${nonce}:${nc}:${cnonce}:${qop}:${ha2}`);
parts.push(`qop=${qop}`, `nc=${nc}`, `cnonce="${cnonce}"`);
} else {
// Legacy RFC 2069 (no qop) — Hikvision uses qop=auth, but be tolerant.
response = md5(`${ha1}:${nonce}:${ha2}`);
}
parts.push(`response="${response}"`);
if (c.opaque) parts.push(`opaque="${c.opaque}"`);
return `Digest ${parts.join(", ")}`;
}
export interface DigestGetResult {
readonly status: number;
readonly contentType: string;
readonly body: Buffer;
}
export interface DigestGetOptions {
readonly host: string;
readonly port: number;
readonly path: string;
readonly user: string;
readonly password: string;
readonly timeoutMs: number;
/** Bind outbound to the device-facing NIC on a multi-homed host. */
readonly localAddress?: string;
}
function getOnce(
o: DigestGetOptions,
authHeader?: string,
): Promise<{ res: IncomingMessage; body: Buffer }> {
return new Promise((resolve, reject) => {
const headers: Record<string, string> = {};
if (authHeader) headers["authorization"] = authHeader;
const req = httpRequest(
{
host: o.host,
port: o.port,
path: o.path,
method: "GET",
timeout: o.timeoutMs,
localAddress: o.localAddress,
headers,
},
(res) => {
const chunks: Buffer[] = [];
res.on("data", (c) => chunks.push(c as Buffer));
res.on("end", () => resolve({ res, body: Buffer.concat(chunks) }));
},
);
req.on("error", reject);
req.on("timeout", () => req.destroy(new Error("digest GET timeout")));
req.end();
});
}
/**
* GET a resource with HTTP Digest auth. Does the standard two-shot handshake:
* the first request (no Authorization) draws a 401 + challenge, the second
* carries the computed response. If the server doesn't challenge (200 straight
* away, or no auth required), the first response is returned as-is.
*/
export async function digestGet(o: DigestGetOptions): Promise<DigestGetResult> {
const first = await getOnce(o);
if (first.res.statusCode !== 401) {
return {
status: first.res.statusCode ?? 0,
contentType: String(first.res.headers["content-type"] ?? ""),
body: first.body,
};
}
const challengeHeader = String(first.res.headers["www-authenticate"] ?? "");
if (!/^digest/i.test(challengeHeader)) {
// 401 but not Digest (e.g. Basic-only) — surface it; caller decides.
return {
status: 401,
contentType: String(first.res.headers["content-type"] ?? ""),
body: first.body,
};
}
const challenge = parseChallenge(challengeHeader);
const auth = buildAuthHeader(challenge, o.user, o.password, "GET", o.path);
const second = await getOnce(o, auth);
return {
status: second.res.statusCode ?? 0,
contentType: String(second.res.headers["content-type"] ?? ""),
body: second.body,
};
}
+6 -1
View File
@@ -3,9 +3,10 @@
import { registry } from "../registry.js";
import { dingtianDriver } from "./access-dingtian.js";
import { stubAccessDriver } from "./access-stub.js";
import { dahuaDriver, hikvisionDriver } from "./camera.js";
import { rongtaDriver } from "./printer-rongta.js";
import { tcpipReaderDriver, wiegandReaderDriver } from "./reader.js";
import { geeQrReaderDriver, tcpipReaderDriver, wiegandReaderDriver } from "./reader.js";
let registered = false;
@@ -14,8 +15,10 @@ export function registerBuiltinDrivers(): void {
if (registered) return;
registered = true;
registry.register(dingtianDriver);
registry.register(stubAccessDriver);
registry.register(wiegandReaderDriver);
registry.register(tcpipReaderDriver);
registry.register(geeQrReaderDriver);
registry.register(hikvisionDriver);
registry.register(dahuaDriver);
registry.register(rongtaDriver);
@@ -23,8 +26,10 @@ export function registerBuiltinDrivers(): void {
export {
dingtianDriver,
stubAccessDriver,
wiegandReaderDriver,
tcpipReaderDriver,
geeQrReaderDriver,
hikvisionDriver,
dahuaDriver,
rongtaDriver,
+131 -15
View File
@@ -6,6 +6,7 @@ import type {
MonitorableDevice,
PrinterDevice,
PrinterStatus,
PrintReport,
TicketData,
} from "../interfaces.js";
import type { ConfigField, DeviceConfig, PrinterDriver } from "../registry.js";
@@ -39,30 +40,140 @@ const DOUBLE_ON = Buffer.from([GS, 0x21, 0x11]); // GS ! — double width+height
const DOUBLE_OFF = Buffer.from([GS, 0x21, 0x00]);
const FEED_AND_CUT = Buffer.from([ESC, 0x64, 0x04, GS, 0x56, 0x42, 0x00]); // feed 4, GS V B 0 partial cut
/** Encode a printable line as bytes (CP437/ASCII subset) + a line feed. */
// Select code page 852 (Latin-2) for the character set: ESC t n, n=18 (0x12).
// CP852 carries the Albanian letters we print (ë, ç, …); without it the printer
// would interpret our high bytes as CP437 glyphs. Sent in every print's INIT
// preamble. See wiki/concepts/site-metadata.md (i18n / codepage).
const SELECT_CP852 = Buffer.from([ESC, 0x74, 0x12]);
// Minimal Unicode → CP852 byte map for the characters Albanian text actually uses
// beyond ASCII. Anything not listed is transliterated to an ASCII fallback (below)
// so we never emit a byte that renders as the wrong glyph. Extend as needed.
const CP852: Record<string, number> = {
ë: 0x89, Ë: 0xeb,
ç: 0x87, Ç: 0x80,
// common Latin-2 extras that may appear in a park name/address:
ä: 0x84, ö: 0x94, ü: 0x81, é: 0x82, á: 0xa0, í: 0xa1, ó: 0xa2, ú: 0xa3,
};
// ASCII transliteration for any char with no CP852 mapping (last-resort, so an
// odd glyph degrades to a readable letter rather than garbage).
const ASCII_FALLBACK: Record<string, string> = {
ë: "e", Ë: "E", ç: "c", Ç: "C", ä: "a", ö: "o", ü: "u",
é: "e", á: "a", í: "i", ó: "o", ú: "u",
};
/** Encode one line of text to CP852 bytes + a line feed. ASCII (<0x80) passes
* through; mapped chars use their CP852 byte; unmapped non-ASCII falls back to an
* ASCII letter. Pair with SELECT_CP852 in the print preamble. */
function line(text = ""): Buffer {
return Buffer.concat([Buffer.from(text, "ascii"), Buffer.from([LF])]);
const out: number[] = [];
for (const ch of text) {
const code = ch.codePointAt(0) ?? 0;
const mapped = CP852[ch];
const fallback = ASCII_FALLBACK[ch];
if (code < 0x80) {
out.push(code);
} else if (mapped !== undefined) {
out.push(mapped);
} else if (fallback !== undefined) {
out.push(...Buffer.from(fallback, "ascii"));
} else {
out.push(0x3f); // "?" — unknown char, never a wrong glyph
}
}
out.push(LF);
return Buffer.from(out);
}
/** Build the full ESC/POS byte stream for an entry ticket. */
function renderTicket(data: TicketData): Buffer {
// --- Scannable symbol (printer-generated, no image rendering) -----------------
// The ticket id is the session key (wiki/concepts/ticket-encoding.md). We print it
// as a 1D Code128 barcode so ANY legacy laser barcode scanner the booth might have
// can read it. The barcode is rendered by the Rongta board from these ESC/POS
// commands — we send the data, the firmware draws the bars (no bitmap, no
// dependency). The same code is printed as large human-readable digits below, so
// the operator can hand-key it if every reader fails. (A QR for phone scanning may
// be added later behind an admin toggle.)
/** GS k — Code128 1D barcode. Height/width set first, then HRI off, then data. */
function code128(data: string): Buffer {
// Code128 code set B (printable ASCII) — prefix the data with the {B selector.
const payload = Buffer.from(`{B${data}`, "ascii");
return Buffer.concat([
Buffer.from([GS, 0x68, 0x64]), // GS h 100 — barcode height = 100 dots (taller = tolerant of scan angle)
Buffer.from([GS, 0x77, 0x03]), // GS w 3 — module width = 3 (wider bars for the short-range "Simple" QR/barcode engine; 13-digit Code128 ≈ 495/576 dots, fits 80mm with quiet zones)
Buffer.from([GS, 0x48, 0x00]), // GS H 0 — HRI text off (we print the id ourselves)
// GS k 73 n <data> — function B form: 73 = Code128, n = data byte length.
Buffer.from([GS, 0x6b, 0x49, payload.length]),
payload,
]);
}
// Ticket/receipt strings — Albanian (the site prints in Albanian for now). Kept in
// one place so a real i18n layer (per-locale tables + a t() helper) can replace this
// later without touching the render functions. See wiki/concepts/site-metadata.md.
const STR = {
/** NIUS label prefix; printed only when the park has a NIUS. */
nius: (v: string) => `NIUS: ${v}`,
/** "Printed at:" — precedes the issue timestamp. */
issuedAt: (v: string) => `Printuar më: ${v}`,
/** "Lost your ticket? <phone>" footer; printed only when a phone is set. */
lostTicket: (phone: string) => `Keni humbur biletën? ${phone}`,
} as const;
/** Build the ESC/POS byte stream for a free-form text report (e.g. shift Z-report). */
function renderReport(report: PrintReport): Buffer {
return Buffer.concat([
INIT,
SELECT_CP852,
ALIGN_CENTER,
BOLD_ON,
DOUBLE_ON,
line("PARKING"),
DOUBLE_OFF,
BOLD_OFF,
line(),
line(`Lane ${data.lane}`),
line(),
BOLD_ON,
line(data.ticketId),
line(report.title),
BOLD_OFF,
ALIGN_LEFT,
line(),
line(`Issued: ${data.issuedAt}`),
...report.lines.map((l) => line(l)),
FEED_AND_CUT,
]);
}
/** Render the park-identity header from site metadata. Prints the park name large
* (or "PARKING" if unset), then operator / NIUS / address lines that are present.
* NIUS and the rest only print when set. Non-ASCII renders via CP852 (see line()). */
function renderHeader(h: TicketData["header"]): Buffer {
const parts: Buffer[] = [ALIGN_CENTER, BOLD_ON, DOUBLE_ON, line(h?.parkName || "PARKING"), DOUBLE_OFF, BOLD_OFF];
if (h?.operatorName) parts.push(line(h.operatorName));
if (h?.nius) parts.push(line(STR.nius(h.nius)));
if (h?.address) {
// Address may be multi-line; print each line centered.
for (const ln of h.address.split(/\r?\n/)) if (ln.trim()) parts.push(line(ln.trim()));
}
return Buffer.concat(parts);
}
/** Build the full ESC/POS byte stream for an entry ticket.
* Header (park identity) → 1D Code128 barcode of the ticket id → the id in large
* digits → issue time → optional lost-ticket footer. Code128 is read by ANY legacy
* 1D barcode scanner the booth might have; the printed digits are the fallback if
* every reader fails (operator hand-keys the all-numeric code). Text is Albanian.
* See wiki/concepts/ticket-encoding.md and site-metadata.md. */
function renderTicket(data: TicketData): Buffer {
return Buffer.concat([
INIT,
SELECT_CP852,
renderHeader(data.header),
line(),
// The scannable barcode + the same code in large human-readable digits.
code128(data.ticketId),
line(),
BOLD_ON,
DOUBLE_ON,
line(data.ticketId),
DOUBLE_OFF,
BOLD_OFF,
line(),
line(STR.issuedAt(data.issuedAt)),
// Contact footer (lost-ticket help) if a phone is set.
...(data.header?.phone ? [line(STR.lostTicket(data.header.phone))] : []),
FEED_AND_CUT,
]);
}
@@ -201,7 +312,12 @@ class RongtaPrinter implements PrinterDevice, MonitorableDevice {
async printTicket(data: TicketData): Promise<void> {
await sendRaw(this.#host, this.#port, renderTicket(data), this.#timeout);
stubLog(this.driverId, `printed ticket ${data.ticketId} (lane ${data.lane})`);
stubLog(this.driverId, `printed ticket ${data.ticketId}`);
}
async printReport(report: PrintReport): Promise<void> {
await sendRaw(this.#host, this.#port, renderReport(report), this.#timeout);
stubLog(this.driverId, `printed report "${report.title}" (${report.lines.length} lines)`);
}
/**
+25
View File
@@ -58,3 +58,28 @@ export const tcpipReaderDriver: ReaderDriver = {
configFields: [hostField, portField(9000)],
create: (c) => new StubReader("tcpip-reader", c),
};
// GEE/Fondvision QR access reader (e.g. GEE-QR-ER80). A PUSH device: on each scan
// it HTTP-GETs our backend (/qa/mcardsea.<ext>) carrying its serial (cjihao); the
// backend resolves the lane by matching that serial to this device's `serial`
// config, decides, and replies the verdict (drives the beep). No host-side
// connection — the adapter is a stub; the real integration is the HTTP endpoint
// (apps/server routes/qr-reader.ts). See wiki/entities/gee-qr-er80.md.
export const geeQrReaderDriver: ReaderDriver = {
id: "gee-qr-reader",
category: "reader",
label: "GEE/Fondvision QR reader (HTTP push)",
description:
"QR/barcode access reader that HTTP-pushes each scan to the backend. Set its server IP/port to this host in the vendor tool; enter its serial here so scans resolve to this lane.",
transports: ["tcp-ip"],
configFields: [
{
key: "serial",
label: "Device serial (cjihao)",
type: "string",
required: true,
help: "The reader's serial as it reports in each scan (the `cjihao` field). Used to map scans to this lane.",
},
],
create: (c) => new StubReader("gee-qr-reader", c),
};
+2
View File
@@ -11,8 +11,10 @@ export { setDeviceLogSink, type DeviceLogSink } from "./drivers/common.js";
export {
registerBuiltinDrivers,
dingtianDriver,
stubAccessDriver,
wiegandReaderDriver,
tcpipReaderDriver,
geeQrReaderDriver,
hikvisionDriver,
dahuaDriver,
rongtaDriver,
+30 -4
View File
@@ -174,26 +174,52 @@ export interface CameraDevice extends Device {
}
export interface SnapshotContext {
readonly lane: number;
readonly direction: "entry" | "exit";
}
export interface Snapshot {
/** Storage reference for the captured image (file path / blob id). */
readonly imageRef: string;
/** The captured image bytes. The DRIVER fetches them over the network; the
* CALLER (entry/exit flow) owns storage and minting a durable reference —
* keeping the device adapter free of any filesystem/blob-store dependency. */
readonly bytes: Buffer;
readonly contentType: string;
readonly capturedAt: string; // ISO-8601
/** Storage reference (file path / blob id), set once the caller has stored
* the bytes. Absent on the value the driver returns. */
readonly imageRef?: string;
}
// --- Printers (ticket dispenser / booth printer) -------------------------
/** Optional park identity printed at the top of a ticket/receipt. All fields
* optional — the driver prints only what's set. Sourced from site_config; an
* Albanian parking receipt commonly must show the park name + NIUS. */
export interface TicketHeader {
readonly parkName?: string | null;
readonly operatorName?: string | null;
/** NIUS — Albanian tax/identification number. */
readonly nius?: string | null;
readonly address?: string | null;
readonly phone?: string | null;
}
export interface TicketData {
readonly ticketId: string;
readonly lane: number;
readonly issuedAt: string; // ISO-8601
/** Park identity for the header. Absent → driver prints the generic "PARKING". */
readonly header?: TicketHeader;
}
export interface PrinterDevice extends Device {
printTicket(data: TicketData): Promise<void>;
/** Print a free-form text report (a shift Z-report, a receipt). `lines` are
* printed as-is; the driver adds a header/cut. Kept generic so the business
* layer composes the content. See wiki/concepts/shift.md. */
printReport(report: PrintReport): Promise<void>;
}
export interface PrintReport {
readonly title: string;
readonly lines: readonly string[];
}
// --- Live printer status (consumable / mechanical faults) ----------------
+24 -1
View File
@@ -27,8 +27,19 @@ export interface ConfigField {
readonly help?: string;
}
/** A JSON-serializable config value. Mostly flat scalars (host, port, credentials),
* but some configs carry nested structure — e.g. an access controller's
* `relays: [{ relay, direction, button? }]` map. See entry-exit-points.md. */
export type ConfigValue =
| string
| number
| boolean
| null
| ConfigValue[]
| { [k: string]: ConfigValue };
/** Opaque per-instance config the admin fills in (host, port, credentials…). */
export type DeviceConfig = Record<string, string | number | boolean>;
export type DeviceConfig = Record<string, ConfigValue>;
/**
* A driver: metadata describing a supported device model/family, the config
@@ -42,6 +53,13 @@ export interface DeviceDriver<T extends Device = Device> {
/** Transports/notes surfaced in the UI, e.g. ["tcp-ip"], ["wiegand"]. */
readonly transports: readonly string[];
readonly configFields: readonly ConfigField[];
/**
* True if the device calls BACK to our backend (HTTP push) and therefore needs
* a backend IP configured at assign time. Pull-only devices (cameras poll a
* snapshot, the relay is commanded) leave this false so the setup wizard hides
* the "Backend push IP" field. See wiki/concepts/device-input-flow.md.
*/
readonly pushesToBackend?: boolean;
/** Build a live adapter instance from validated config. */
create(config: DeviceConfig): T;
}
@@ -130,6 +148,11 @@ class DeviceRegistry {
}
return byCategory;
}
/** Driver ids that push to the backend (need a backend IP at assign time). */
pushCapable(): string[] {
return [...this.#drivers.values()].filter((d) => d.pushesToBackend).map((d) => d.id);
}
}
export interface CatalogEntry {
+180 -9
View File
@@ -13,39 +13,210 @@ export type Direction = "entry" | "exit";
export type IdentitySource = "wiegand" | "lpr" | "qr" | "ticket" | "manual";
/**
* An append-only parking event. Records are never mutated; corrections are new
* A signed business-LEDGER event. Records are never mutated; corrections are new
* events. `prevHash` chains each event to the previous one; `signature` is the
* ATECC608 signature over the event contents. See wiki/append-only-event-chain.
* ATECC608 signature over the canonical contents (which INCLUDE `payload`).
* Distinct from device telemetry — see wiki/decisions/event-streams-split.md.
*/
export interface ParkingEvent {
export interface LedgerEvent {
readonly id: string;
readonly index: number;
readonly type: ParkingEventType;
readonly type: LedgerEventType;
readonly direction: Direction | null;
readonly lane: number;
readonly source: IdentitySource | null;
/** Card number, plate, ticket id, etc. — depends on `source`. */
readonly identity: string | null;
/** Type-specific business data (amount, tariffVersionId, sessionRef…). Signed. */
readonly payload: LedgerPayload | null;
readonly occurredAt: string; // ISO-8601
/** Hash of the previous event in the chain (hex). Null only for genesis. */
readonly prevHash: string | null;
/** ATECC608 signature over the canonical event payload (hex). */
readonly signature: string;
/** Which signer/key produced `signature` (verifiable across a signer swap). */
readonly keyId: string;
}
export type ParkingEventType =
// A raw device input (e.g. a Dingtian button press) was received and recorded.
// NOT a confirmed entry — the richer `vehicle_entry` is appended later by the
// entry flow once a ticket prints and the barrier is commanded.
| "input_received"
/** Business/accountability events that live in the SIGNED, hash-chained ledger. */
export type LedgerEventType =
| "vehicle_entry"
| "vehicle_exit"
| "payment"
| "void"
// Witness-grade: a host-commanded open, and an independently-observed open
// (loop/sensor) — reconciled against each other.
| "barrier_open_command"
| "barrier_open_observed"
// Manned-mode shift boundary: an operator takes over (shift_open) / hands over
// with a takings summary (shift_z_report). See wiki/concepts/shift.md.
| "shift_open"
| "shift_z_report"
// Admin loads/removes physical drawer cash (the float). Signed payload:
// { amountMinor (signed: + load, − removal), reason, currency, operator }.
// Folds into the drawer balance carried across shifts. See wiki/concepts/shift.md.
| "cash_movement"
| "anomaly";
/** How money was tendered (for payment events + the shift Z-report). */
export type Tender = "cash" | "card";
/**
* Type-specific data carried on a ledger event's `payload`. All amounts are
* integer minor units in the named currency — never floats. Fields are optional
* because they're event-type-specific; the producer fills what applies.
*/
export interface LedgerPayload {
/** The parking_session this event concerns (entry/exit/payment/void). */
readonly sessionRef?: string;
/** payment: amount in minor units, its currency, and how it was tendered. */
readonly amountMinor?: number;
readonly currency?: string;
readonly tender?: Tender;
/** payment: which tariff_version priced it (reproducible repricing). */
readonly tariffVersionId?: string;
/** payment: gross/discount/net split when a validation applied. */
readonly grossMinor?: number;
readonly discountMinor?: number;
/** FX-ready, deferred: rate applied (null/absent now). See open-questions #8. */
readonly fxRate?: number | null;
/** void / anomaly / override: a human/machine reason code. */
readonly reason?: string;
/** plate/vehicle from the vision service (advisory). */
readonly plate?: string;
readonly plateConfidence?: number;
/** Free-form for forward-compat without a schema change. */
readonly [k: string]: unknown;
}
/** Operational device telemetry — UNSIGNED, prunable. NOT the ledger. */
export type DeviceEventKind = "input" | "relay" | "status" | "read" | "snapshot";
/**
* The composable rate card stored in a tariff_version.structure. Pure data the
* fee function interprets — no rates in code. Stepped duration blocks + caps/grace;
* a flat rate is just one block. See wiki/concepts/tariff.md.
*/
export interface TariffStructure {
/** Free if exited within this (drop-off/turnaround). */
readonly gracePeriodEntryMin: number;
/** Billing granularity; partial increments round UP. */
readonly incrementMin: number;
/** Consumed in order as duration accrues; last block may be open-ended. */
readonly blocks: readonly TariffBlock[];
/** Cap per rolling 24h (null = no cap). */
readonly dailyCapMinor: number | null;
/** Flat charge when there's no entry id (admin may override at the moment). */
readonly lostTicketMinor: number;
/** Pay-on-foot walk-back window: minutes after payment to reach the car. */
readonly gracePeriodExitMin: number;
/** How an overstay top-up is charged. "reprice" = recompute(entry→now) − paid. */
readonly overstay: "reprice";
}
export interface TariffBlock {
/** Upper bound of this block in minutes; null = open-ended (thereafter). */
readonly uptoMin: number | null;
readonly priceMinorPerIncrement: number;
}
/**
* Compute the parking fee (integer minor units) for a stay, from a TariffStructure.
* PURE + deterministic + offline — the pay station calls it with asOf = now; the
* result is fixed into a signed `payment` event, so it must be reproducible.
*
* Algorithm (wiki/concepts/tariff.md): round duration UP to incrementMin; free if
* within entry grace; else walk the stay one rolling-24h segment at a time, charging
* each increment at its block's rate (blocks consumed in order by cumulative minutes),
* capping each segment at dailyCapMinor. Times are ISO-8601; bad input → 0 (caller
* validates the tariff exists first).
*/
export function computeFee(
enteredAt: string,
asOf: string,
tariff: TariffStructure,
): number {
const ms = Date.parse(asOf) - Date.parse(enteredAt);
if (!Number.isFinite(ms) || ms <= 0) return 0;
const rawMinutes = ms / 60_000;
// Grace uses the RAW duration (a 10-min stay is free even if the increment is
// 60 min — otherwise rounding-up would defeat the grace window).
if (rawMinutes <= tariff.gracePeriodEntryMin) return 0;
const inc = Math.max(1, tariff.incrementMin);
const minutes = Math.ceil(rawMinutes / inc) * inc; // round UP to the increment
const DAY = 24 * 60;
let total = 0;
for (let segStart = 0; segStart < minutes; segStart += DAY) {
const segEnd = Math.min(segStart + DAY, minutes);
let segFee = 0;
// The block ladder RESETS each rolling-24h day: `within` is minutes elapsed
// WITHIN this day, so day 2 starts at the first block again (decision 2026-06-15).
for (let within = 0; segStart + within < segEnd; within += inc) {
segFee += rateAt(tariff.blocks, within);
}
if (tariff.dailyCapMinor != null) segFee = Math.min(segFee, tariff.dailyCapMinor);
total += segFee;
}
return total;
}
/**
* Validate an admin-authored tariff structure. Returns [] if valid, else a list
* of human-readable problems. Pure — used by the composer route (and any caller)
* so a malformed rate card can never be published. See wiki/concepts/tariff.md.
*/
export function validateTariffStructure(s: unknown): string[] {
const errs: string[] = [];
if (!s || typeof s !== "object") return ["structure must be an object"];
const t = s as Partial<TariffStructure>;
const nonNegInt = (v: unknown, label: string) => {
if (typeof v !== "number" || !Number.isInteger(v) || v < 0) errs.push(`${label} must be a non-negative integer`);
};
nonNegInt(t.gracePeriodEntryMin, "gracePeriodEntryMin");
nonNegInt(t.gracePeriodExitMin, "gracePeriodExitMin");
nonNegInt(t.lostTicketMinor, "lostTicketMinor");
if (typeof t.incrementMin !== "number" || !Number.isInteger(t.incrementMin) || t.incrementMin < 1) {
errs.push("incrementMin must be a positive integer");
}
if (t.dailyCapMinor != null) nonNegInt(t.dailyCapMinor, "dailyCapMinor");
if (t.overstay !== "reprice") errs.push('overstay must be "reprice"');
if (!Array.isArray(t.blocks) || t.blocks.length === 0) {
errs.push("blocks must be a non-empty array");
} else {
let prevBound = 0;
t.blocks.forEach((b, i) => {
const last = i === t.blocks!.length - 1;
nonNegInt(b?.priceMinorPerIncrement, `blocks[${i}].priceMinorPerIncrement`);
if (b?.uptoMin == null) {
if (!last) errs.push(`blocks[${i}] is open-ended (uptoMin null) but not last`);
} else {
if (typeof b.uptoMin !== "number" || !Number.isInteger(b.uptoMin) || b.uptoMin <= prevBound) {
errs.push(`blocks[${i}].uptoMin must be an integer greater than the previous block's bound (${prevBound})`);
} else {
prevBound = b.uptoMin;
}
}
});
}
return errs;
}
/** Price of the increment that starts at `cumulativeMin` — the block whose range
* [prevUpto, uptoMin) contains it; the open-ended (uptoMin=null) block catches the rest. */
function rateAt(blocks: readonly TariffBlock[], cumulativeMin: number): number {
let prev = 0;
for (const b of blocks) {
if (b.uptoMin == null || cumulativeMin < b.uptoMin) return b.priceMinorPerIncrement;
prev = b.uptoMin;
void prev;
}
// No open-ended block and past the last bound: charge the last block's rate.
return blocks.length ? blocks[blocks.length - 1]!.priceMinorPerIncrement : 0;
}
export const ROLES: readonly Role[] = [
"admin",
"operator",
+1267 -7
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File diff suppressed because it is too large Load Diff
+57
View File
@@ -0,0 +1,57 @@
---
type: concept
tags: [parking, domain, business, anti-fraud, access-control]
sources: []
updated: 2026-06-15
status: open
---
# Anti-Passback
Stop one credential/ticket from getting **two cars in** without an exit between — the classic
"pass the card/ticket back over the fence" abuse. A control on the entry validation, leaning on the
session projection.
## The rule
An identity (ticket id, [[permit]] credential, or plate) **must not enter while it already has an
OPEN [[parking-session|session]].** At entry:
```
identify vehicle → is there already an OPEN session for this id?
no → proceed (mint vehicle_entry, open)
yes → passback violation → refuse or flag (see policy)
```
This is a **fold over the signed [[append-only-event-chain]]** ("does an entry for this id exist
with no matching exit?") — not a mutable in/out flag that could be edited. Same projection that
powers [[capacity-occupancy]] and [[permit]] `maxConcurrent`.
## Interaction with the limits already designed
- **Transient ticket** — a single ticket id is inherently one session; a second entry on the same
id is always a violation (or a re-print/duplication attempt).
- **Permit** — passback is the *per-car* case of the permit's `maxConcurrent` ([[permit]]): a
multi-car permit legitimately has several open sessions, but **the same car/credential** entering
twice is still a violation. So enforce per-identity, *under* the permit's concurrency allowance.
## Policy (operator choice)
- **Hard** — refuse the second entry (strict; risks stranding a legitimate car after a *missed
exit*, which is common — tailgated out, sensor missed).
- **Soft** — allow but **flag an `anomaly`** (the type exists) for review. Safer against
false-positives from missed exits, consistent with the append-only "record + flag, don't block"
ethos elsewhere.
- Likely **soft by default**, hard as an opt-in for high-control sites.
## Honest limits
- Depends on **reliable exit detection** — if exits are routinely missed (no exit loop/plate read),
passback produces false positives; tune to the site's exit fidelity.
- A spoofed/duplicated ticket QR is caught here (same id already open) — complements
[[ticket-encoding]]'s opaque-id requirement.
## Open
- Default policy (soft/hard) and per-site override.
- Grace for legitimate quick re-entry vs. the missed-exit false-positive.
+44 -20
View File
@@ -21,9 +21,25 @@ Three layered properties:
self-consistent — someone who owns the machine still cannot forge a valid entry.
It only becomes trustworthy as an external fraud control when paired with [[reconciliation]]
against an authority the operator can't alter. Every device event — including those ingested
from the [[uhppote-controller]] via [[event-log-ingestion]] — should land in this host-side
chain.
against an authority the operator can't alter.
## Two event streams — the signed ledger vs. device telemetry (decision 2026-06-15)
These are **different concerns and live in different tables**:
- **`ledger_events`** — this signed, hash-chained, [[atecc608]]-signed **business ledger**:
`vehicle_entry` / `vehicle_exit` / `payment` / `void` / `shift_z_report`, plus the witness-grade
`barrier_open_command` / `barrier_open_observed` and `anomaly`. This is the anti-fraud record that
[[reconciliation]] runs against; sessions/[[tariff]]/occupancy are projections over it. (This is
the table formerly called `events`.)
- **`device_events`** — **unsigned operational telemetry**: relay fired, printer paper-out, camera
offline, reader read, raw input edges. High-volume, churny, **not** anti-fraud; may rotate/prune.
Keeping it out of the signed chain keeps the ledger small and high-value.
> A raw button press is **device telemetry**, not a business fact. It lands in `device_events`; the
> entry flow then mints a **signed `vehicle_entry`** in the ledger once a ticket prints and the
> barrier is commanded. (This supersedes the earlier "every device event lands in the chain" framing
> and the `input_received`-as-signed-event approach — see [[device-input-flow]].)
## Implementation (apps/server)
@@ -58,22 +74,28 @@ so old events stay verifiable.
> *accidental* corruption, but an operator with the signing key + DB access could re-sign a
> forged chain. This is the central reason #6 matters.
### What currently feeds the log
### Business-layer event types (the ledger)
Dingtian **input (button) pushes** → bus → `input_received` events (see [[device-input-flow]],
[[dingtian-relay]]). These are recorded faithfully as raw inputs, **not** as `vehicle_entry` —
the richer entry event waits for the entry flow (ticket print + barrier command).
The [[parking-session]] domain folds over these **signed ledger** events:
- **`lane`** is now resolved from the firing device. A `LaneMap` (`apps/server/src/lane-map.ts`)
caches `lane_devices.id → lane`, built at startup and refreshed by the setup routes on every
assign/unassign. Device events carry the device instance id, not a lane; the handler looks it
up. A device with no mapping (assigned without a lane, or a stale id) logs **`lane: -1`** and a
warning — never `0`, which is a real lane — and is still recorded (the chain is append-only;
nothing is dropped).
- **`source` stays `null`** for `input_received`, and deliberately so: `source` is an
`IdentitySource` (`wiegand | lpr | qr | ticket | manual`) — *how a vehicle was identified* — not
a device/IP field. A raw button push has no vehicle identity. The device provenance lives in
**`identity`** (e.g. `dingtian:<id> input:1/on`).
- `vehicle_entry` / `vehicle_exit` — a stay's endpoints; `identity` carries the ticket id or plate.
- `payment` — a settled fee at the pay station, referencing the session it pays for (amount in
integer minor units; see [[tariff]]). Making "paid" a signed event — not a mutable row — is the
whole point: an operator can't forge it or silently delete it.
- `void` — a correction / lost-ticket write-off; like every other void here it is an **appended
event, never an erasure**.
- `shift_z_report` — the signed per-[[shift]] takings summary.
A session is a **projection** over this chain, never a mutable table — the same anti-fraud reason
the chain exists. See [[parking-session]].
### As-built (table split done)
The split above is implemented: raw Dingtian **input (button) pushes** are **device telemetry** in
**`device_events`** (unsigned, prunable), keyed to the firing `devices` instance. Only the business
`vehicle_entry` the press drives is signed into **`ledger_events`**. The signed events carry **no
`lane`** — the pool-of-spaces model has none (dropped 2026-06-16; see [[entry-exit-points]]), and
the canonical form bumped `sw-hmac-v1` → `sw-hmac-v2` accordingly.
### ⚠️ Limitation: the log captures HOST-ORIGINATED actions only
@@ -91,7 +113,9 @@ host. **Proven on hardware**: a binary relay command sent directly to the device
So the log alone does **not** detect operator/attacker fraud at the relay. That is **by design** —
the actual control is [[reconciliation]]: compare the host's signed *commanded* opens against an
**independent witness** of opens that physically happened (a door/loop sensor on a Dingtian input
→ which DOES push + log; the [[lpr-camera]]; payment/Z-report). **A physical open with no matching
signed command is the fraud signal.** Both the witness sources and the reconciliation logic are
**NOT yet built** — this is the main open gap. Prevention (VLAN isolation so the attacker can't
→ which DOES push + log; the [[opencv-anpr-service|vision service]]'s plate **and vehicle** read;
payment/Z-report). **A physical open with no matching signed command is the fraud signal** — and,
with vehicle verification, **a plate that enters/exits on a different car** is too (the
plate-spoofing case). Both the witness sources and the reconciliation logic are **NOT yet built** —
this is the main open gap. Prevention (VLAN isolation so the attacker can't
reach UDP 60000) is the necessary first line; detection-via-reconciliation is the backstop.
+131
View File
@@ -0,0 +1,131 @@
---
type: concept
tags: [parking, domain, booth, exit, payment, threat-model]
sources: []
updated: 2026-06-17
status: open
---
# Booth Exit Flow — pay-at-booth, voucher vs. immediate exit
How the **manned booth** takes payment for a transient ticket and lets the car out. Complements the
unattended reader path in [[parking-session]] / the exit flow: same signed events, a booth-driven
trigger. Decided 2026-06-17.
## Operator flow
1. **Ticket input** on the booth screen. The operator scans (HID scanner types the id + Enter) or
keys the ticket number.
2. On submit, the booth **looks up the session** and opens a **modal**: entry time, exit time (now),
**duration**, **total owed** (the [[tariff]] quote), tender (cash/card), and a checkbox
**"Printo biletë dalje"** (print exit ticket).
3. The operator takes payment → a signed `payment` event ([[parking-session]]). What happens next
depends on the checkbox:
- **Checked → print an exit voucher.** The customer carries it to a (distant) exit and
**self-exits by scanning it** there; that scan runs the normal reader exit flow. The booth does
NOT open the barrier.
- **Unchecked → immediate exit.** When the modal closes after a successful payment, the booth
**signs `vehicle_exit`, pulses the exit relay, and fires the exit snapshot** right away (booth is
at/near the exit).
## Settled decisions (2026-06-17)
- **Voucher carries the SAME ticket id** (reprinted as the Code128 barcode). At the exit reader it
runs the existing exit validation — which now finds the session **paid + within walk-back grace**,
so it opens. No new identity or code type; the "biletë dalje" is a *paid reprint* of the entry
ticket id. Reuses [[tariff|walk-back grace]] exactly.
- **The checkbox default lives in `site_config`** (`exit_voucher_default`, a site-wide boolean edited
in Site settings) — because it's booth geography, not per-ticket. The operator may override per
transaction. (Per-exit-point config deferred until a site has both a near and a far exit.)
- **Payment is never rolled back.** If the checkbox is OFF and `pulseOpen` fails (offline
controller), the signed `payment` + `vehicle_exit` already stand (money was taken, the car is
owed an exit). The booth surfaces a clear error and an **audited `anomaly`** so the operator opens
manually — we never silently drop the payment, and never leave a paid car without an exit event.
## Threat-model notes ([[threat-model|operator as adversary]])
- The booth exit reuses the **same validation as the reader path** (paid + within grace, or free
entry-grace) — there is no booth-only bypass that admits an unpaid car. An unpaid ticket sends the
operator to take payment first.
- Every booth action is a **signed ledger event attributed to the operator's session**: the payment,
the exit, and any `anomaly` (failed open / override). A colluding operator can't wave a car out
without leaving a signed, attributed trail visible to [[reconciliation]].
- The voucher path keeps the **camera snapshot at the physical exit** (the self-scan fires it), so
the evidence is captured where the car actually leaves, not where it paid.
## Active sessions & human-intervention barrier open
**The barrier state is ASSUMED, never confirmed.** We send "open" intent and never truly know the car
cleared ([[barrier-not-a-door]], no wired loop/sensor feedback). So a signed `vehicle_exit` does NOT
mean the car is gone — it may be stuck (damaged ticket / dead scanner, or the barrier re-closed on a
phantom obstacle: an animal, a person, a cardboard box or bag in the wind). These edge cases need a
**human in the booth** to open the barrier, leaving a signed trace.
**A session is "active" (shown in the booth Active Sessions list) while it is EITHER:**
- **open** — entered, no `vehicle_exit` yet (still inside), OR
- **exited but `now ≤ graceExpiresAt`** — paid and/or the voucher scanned, but still within the
walk-back grace window. Because the barrier is unconfirmed, the car is presumed *possibly still
present* until grace expires. **Payment and a successful voucher scan do NOT remove it from the
list** — only grace expiry does.
A session drops off the list once it is exited **and** past grace (presumed truly gone).
### The one operator action — "Open barrier" (audited re-pulse)
For an active session, the operator can open the barrier as a **human intervention**. This:
- **re-pulses an exit relay** (resolved site-wide, as the booth exit does), and
- signs an **`anomaly`** (`source: booth`, attributed to the operator, reason "manual barrier open")
— **NEVER a second `vehicle_exit`** (a second exit would double-count occupancy and corrupt the
ledger's meaning). It is an audited *re-open*, not a new exit.
**Guard — no payment, no button.** The "Open barrier" action is shown/active **only for sessions that
have a payment** (paid, or paid-and-exited-in-grace). An **unpaid** open session has **no barrier-open
affordance at all** — the row routes to the [[#operator-flow|pay/exit modal]] instead. The
no-unpaid-bypass rule is enforced structurally: the button simply does not exist for an unpaid car.
(A future reason-required *force exit* for genuine disputes would be a separately-audited path — see
Open.)
This single mechanism covers both edge cases: a **damaged ticket / dead scanner** (find the still-open
session in the list → pay/exit modal, or if already paid → Open barrier, no scan needed), and a
**phantom-obstacle re-close** (the just-exited car is still in the list within grace → Open barrier).
## ⚠ Open question — walk-back grace renews on every payment (voucher overstay)
**Found 2026-06-17. Not yet fixed.** Scenario: customer pays at the booth, takes an exit voucher,
then dawdles past the walk-back grace before reaching the exit.
What the code does today (`exit-flow.ts`, `pay-station.ts`):
- The exit reader's grace check is `now − paidAt ≤ graceExitMin`, reading **the latest payment's**
`graceExitMin`. Over the window → exit **refuses** ("top-up required"). ✓ *Correct — no free exit.*
- The re-quote (`computeFee(enteredAt, now, …)`) always prices from **entry**, never from the last
payment. So a top-up charges the **full** entry→now fee (minus what's paid is implicit via the
ledger). ✓ *Correct — the timer does NOT restart; the customer pays the true total.*
- BUT every `payment` writes its own `graceExitMin`, and the exit flow reads the **latest** one — so
**each top-up grants a fresh, full grace window.** ✗ *This is the bug.*
**The leak is time, not money.** It is not a free-exit hole (the fee always catches up from entry).
But the grace window — meant as a one-time walk-from-pay-to-gate allowance — is re-granted in full on
every payment, so a customer could pay → wait → pay a tiny delta → get another full window → repeat,
riding the gap between "paid" and "next increment accrues." With coarse [[tariff]] increments the
abuse is bounded but real.
**Candidate fixes (business call — fairness vs. anti-abuse):**
1. **Grace on top-up only when the top-up charged new money** (recommended). Kills the "tiny delta
forever" loop while staying fair to a genuine overstay; re-price stays from entry.
2. **Single non-renewing window** anchored to the FIRST payment — cleanest anti-abuse, but can unfairly
trap someone who legitimately paid, walked, then hit a slow elevator after a top-up.
3. **Cap total grace** granted per session regardless of payment count.
Decided halves: **refuse-on-expiry** and **reprice-from-entry** are deliberate and correct. The
**grace-renews-fully-per-payment** consequence was an unintended side effect of reading `graceExitMin`
off the latest payment. See [[tariff]] (walk-back grace) for the pricing side of the same question.
## As-built / open
- Backend: `GET /api/session/:identity` (lookup + quote), `POST /api/exit { identity }` (validated
booth exit), `site_config.exit_voucher_default`. Exit validation shared between the booth and the
reader path (one code path, two triggers).
- **Open: walk-back grace renews on every payment** — see the flagged section above (voucher overstay
re-grants a full grace window; pick a fix before production).
- Voucher print = reprint the ticket id barcode on the booth printer ([[ticket-encoding]]).
- Open: a force-open **override** (lost ticket / equipment fault) — deferred; would be a separately
audited signed event, not folded into the validated path.
+67
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@@ -0,0 +1,67 @@
---
type: concept
tags: [parking, domain, business, occupancy]
sources: []
updated: 2026-06-15
status: open
---
# Capacity & Occupancy
How many vehicles are inside, how many spaces remain, and what happens when the lot is full.
## Occupancy is a projection (like everything else)
`occupancy = count(open [[parking-session|sessions]])` — an entry with no matching exit. It is a
**fold over the signed [[append-only-event-chain]]**, never a hand-maintained counter (a counter is
editable and drifts; the chain is the truth). Spaces-free = `capacity − occupancy`.
- **`capacity`** is admin-set per site (and per **zone/level** if the lot has sections — model a
`zone` on capacity + on the entry so multi-level is a later addition, not a rewrite).
- Permit concurrency (`maxConcurrent`, see [[permit]]) is the same kind of fold, scoped to one
permit's open sessions.
## Full → refuse entry + FULL sign
- When `occupancy ≥ capacity`, the entry flow **refuses** (no `vehicle_entry`, no barrier open) and
can drive a **"FULL" sign** (a relay/output, via the device adapter layer).
- **Safety/policy nuance:** "full" blocks *entry* only — **exit always works** ([[fail-state-safety]]:
exit fails open; never trap a vehicle). Permit holders may be allowed in past a "transient full"
threshold (reserve spaces for subscribers) — an optional policy knob.
- **Counting drift is real:** tailgating (two cars, one entry) and missed reads make the live count
diverge from physical reality. The count is the *system's* occupancy; periodic ground-truth (a
loop count, or the [[opencv-anpr-service|vision]] count) reconciles it — surfaced as an anomaly,
not silently corrected.
## "Full" is a soft, operator-configurable policy
Refusing at capacity is the **default**, not an absolute. An operator may opt into
**[[valet-overcapacity|valet over-capacity]]** — accept the car into operator custody (keys handed
over, stacked beyond the marked count) instead of refusing. So the FULL gate is a policy knob
(refuse vs. valet-accept), set by the operator per site. Valet is a manned-mode feature with its
own custody/session shape — see [[valet-overcapacity]] (deferred).
## As-built (2026-06-16)
- **Occupancy** = `occupancyCount` (`apps/server/src/occupancy.ts`): a fold over the ledger —
entries minus exits per identity, count those `> 0`. `getOccupancy` returns `{count, capacity,
free, full}`.
- **Capacity** is a single-row `site_config` table (admin-set; `null` = uncapped). Routes
(`routes/site.ts`): `GET /api/occupancy` + `GET /api/site-config` (any role), `PUT /api/site-config`
(admin; non-negative int or null).
- **FULL gate** is in the **transient entry flow**: `occupancy.full` → refuse (no ticket, no
`vehicle_entry`, no open) + signed `anomaly`. **Permit entry is NOT gated** here — subscribers are
admitted past transient-full (their own `maxConcurrent` still applies); occupancy can read
over-capacity (`free` negative) when permits enter a full lot, as intended.
- **UI** `SiteSettings`: live occupancy + FULL badge (everyone); capacity editor (admin).
- Verified: fill to cap → 3rd transient refused; permit still admitted past full; exit frees a
slot; RBAC (operator can't set capacity); verifyChain ok. Physical FULL-sign relay output is
**deferred** (needs a sign device).
## Open
- Zone/level granularity at launch vs. single capacity number.
- Reserve-for-permits **threshold** (a soft transient cap below the hard capacity) — currently
permits are simply ungated; a tunable threshold is the richer version.
- Physical FULL-sign relay output (a sign-device role).
- The valet over-capacity mode + custody model ([[valet-overcapacity]]).
+48
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@@ -0,0 +1,48 @@
---
type: concept
tags: [parking, security, integrity, offline-first, anti-fraud]
sources: []
updated: 2026-06-15
status: open
---
# Clock Integrity
Fees are a function of **time** ([[tariff]]: `fee = f(enteredAt, asOf)`), and the event chain is
ordered/timestamped. So **the host clock is part of the trust model** — and on an offline appliance
([[offline-first]], no NTP guarantee) it's a real attack surface, fitting the
[[threat-model|operator-as-adversary]] frame:
- **Backdating to cut a fee** — wind the clock back so a long stay computes as short, or so an exit
timestamps before its entry.
- **Forward/backward jumps** that corrupt durations, the rolling-24h cap, or shift boundaries
([[shift]]).
- An operator with host access changing the system time deliberately.
## What protects it
- **Monotonic chain order is independent of wall-clock.** The [[append-only-event-chain]] `index`
is strictly increasing regardless of timestamps, so **reordering** is caught even if timestamps
are forged. But the *durations* used for pricing still rely on the wall clock — so:
- **Detect clock anomalies and record them as events.** A timestamp that goes **backwards** between
consecutive chain events, or jumps implausibly, is an `anomaly` (the type already exists) — signed
and surfaced to [[reconciliation]], not silently accepted.
- **Hardware-backed time where possible.** A battery-backed RTC on the appliance; the
[[atecc608]]/secure element and [[disk-os-hardening]] reduce casual tampering. An operator
changing time should require privilege the booth login doesn't have.
- **Opportunistic trusted sync** when a [[reconciliation]] channel is briefly online (the same
USB/hotspot path) — set/check the clock against an external authority, log any correction as an
event.
## Stance
Like the rest of the system: **prevention (hardened host, privileged-only time change) first,
detection (anomaly on clock regression, reconciliation) as the backstop.** The clock can't be made
unforgeable on an offline box, but a forged clock can be made **visible**.
## Open
- RTC / time source on the chosen appliance ([[bom]]).
- Tolerance thresholds for "implausible" jumps before flagging.
- Whether to hard-refuse an event on a backwards clock vs. record-and-flag (record-and-flag matches
the append-only ethos — never drop).
+1 -1
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@@ -33,6 +33,6 @@ principle. The choice of *which* adapter to trust is the [[trust-boundary]] deci
> **In practice** the adapters are made *selectable*: a [[device-registry]] catalogs the
> supported drivers (ZKTeco / ESP32 relay, Wiegand / TCP-IP readers, Hikvision / Dahua cameras),
> and the admin assigns one per lane during [[first-run-setup]]. Adding hardware support = one
> and the admin assigns instances during [[first-run-setup]]. Adding hardware support = one
> more registered driver, no business-logic change. (The implemented interfaces add a
> `CameraDevice` for entry/exit snapshots alongside reader/relay/printer.)
+1 -1
View File
@@ -60,7 +60,7 @@ replies), so the driver **serializes** all controller I/O. Override the broadcas
2. Admin clicks **Scan** → `GET /api/setup/discover/:driverId` (admin-only).
3. The server runs `discover()` and **health-checks each found device** so the admin sees
reachability before assigning.
4. Selecting a result **auto-fills serial + host**; the admin then assigns it to a lane.
4. Selecting a result **auto-fills serial + host**; the admin then assigns + binds it.
## Deployment notes
+45
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@@ -0,0 +1,45 @@
---
type: concept
tags: [parking, devices, monitoring, telemetry]
sources: []
updated: 2026-06-15
status: open
---
# Device Events (telemetry)
The **unsigned** operational record of what the hardware did and reported — distinct from the
signed business [[append-only-event-chain|ledger]] (see [[event-streams-split]]). For monitoring,
diagnostics, and live booth status — **not** anti-fraud.
## What lands here
- **Relays/barriers:** relay fired/released, pulseOpen issued (the *device-side* echo; the
authoritative `barrier_open_command` is a signed ledger event).
- **Printers:** paper-out / near-end / cover-open / cutter / offline (already polled —
[[printer-status-monitoring]]).
- **Cameras:** reachable/offline, snapshot success/failure ([[lpr-camera]]).
- **Readers / inputs:** a raw read, raw input edges (Dingtian button `input N on/off` —
[[device-input-flow]]).
## Properties
- **Unsigned, not chained** — no `prevHash`/`signature`. It's telemetry, so it carries none of the
ledger's integrity machinery.
- **Disposable** — high-volume and churny; **may rotate/prune** on a retention policy (the ledger
never does).
- **Device-keyed** — references the `devices` instance (raw device provenance). No `lane`
(pool-of-spaces model — see [[entry-exit-points]]).
## The boundary that matters
A device event is *evidence the host saw something happen*; it does **not** by itself authorize or
record a business fact. A button press here becomes a **signed `vehicle_entry`** in the ledger only
after the entry flow runs (ticket + barrier command). This keeps device chatter on the device side
of the [[device-adapter-pattern|adapter boundary]] and the signed ledger focused on money/access.
## Open
- Retention/rotation policy (size- or age-based).
- Whether any witness-grade device fact (e.g. a loop-sensor `barrier_open_observed`) should *also*
write a signed ledger entry for [[reconciliation]] — see [[append-only-event-chain]].
+3 -3
View File
@@ -39,7 +39,7 @@ neither is the real boundary:
- **Relay control (host → device)** — UDP, now via the Dingtian **binary protocol on :60000 with a
`relay_pw`** (the only authenticated relay option; the string protocol has none). Set on the
device + stored in `lane_devices` by the harden step (below).
device + stored in `devices` by the harden step (below).
- **Input push (device → host)** — guarded by **HTTP Digest auth** + a **source-IP allowlist**.
- **The real guarantee is the signed log:** every barrier open is a host decision, recorded as a
signed event BEFORE the relay fires ([[append-only-event-chain]]). An out-of-band open (which a
@@ -55,7 +55,7 @@ fix preconditions (disable `input_link_relay`) → **harden** → set up input p
capability ([[device-registry|HardenableDevice]]):
- **Sets a random `relay_pw`** (1–9999) so binary relay commands need it; stores it in
`lane_devices` so the backend can keep commanding the relay.
`devices` so the backend can keep commanding the relay.
- **Disables unused protocol channels** (rs485, can, tcp×2, mqtt → `p:255`), keeping only UDP1
binary (relay control) + UDP2 string (status read) — fewer open doors.
@@ -81,7 +81,7 @@ the clear. We **empirically tested the device** to pick the strongest achievable
→ **HTTP Digest** (MD5, qop=auth). The password is never sent (only a nonce-keyed hash); nonces
are **single-use** (replay resistance). Per-device credentials (`pushUser`/`pushPassword`) are
generated by the backend on **device assign**, written to the device's `input_link_url` config,
and stored in `lane_devices` — the admin never types a URL or secret. HTTPS would be stronger but
and stored in `devices` — the admin never types a URL or secret. HTTPS would be stronger but
the device can't do it here; Digest + the signed log is the practical answer on a flat network.
See `apps/server/src/digest-auth.ts`.
+5 -4
View File
@@ -10,7 +10,7 @@ updated: 2026-06-15
How the system goes from "device-agnostic in principle" ([[device-adapter-pattern]]) to
"**admin picks the device at setup**" in practice. A **registry** holds a catalog of supported
**drivers**, grouped by category; the [[first-run-setup]] UI reads it so an
operator can choose a device per lane and fill in its connection config.
operator can choose a device and fill in its connection config.
> Implementation-derived (from `packages/devices`), not the source doc.
@@ -33,10 +33,11 @@ driver; **no business-logic change** — this is the [[device-adapter-pattern]]
## Why a registry (not hard-coded wiring)
- The admin chooses between **multiple devices per category** at install time, per lane
(mirrors the "mixable per lane" principle — see [[trust-boundary]], [[entry-exit-readers]]).
- The admin chooses between **multiple devices per category** at install time
(a controller's relays mix entry/exit; readers bind to them — see [[entry-exit-points]],
[[trust-boundary]], [[entry-exit-readers]]).
- Config is **validated against the driver's declared fields** before persisting.
- Selections persist in the `lane_devices` table and drive runtime adapter construction.
- Selections persist in the `devices` table and drive runtime adapter construction.
- Drivers may optionally implement **[[device-discovery]]** (`discover()`), so the admin can scan
the LAN instead of typing connection details — no current driver uses it (the UHPPOTE did,
before removal; the [[dingtian-relay]] uses a fixed IP).
+110
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@@ -0,0 +1,110 @@
---
type: concept
tags: [parking, architecture, devices, setup]
sources: []
updated: 2026-06-16
---
# Entry / Exit Points (pool-of-spaces model)
A parking lot is **one pool of spaces** with a flexible set of **entry points** and **exit
points** — any number of each, in any combination (1 in + 1 out, 1 in + 2 out, 2 in + 1 out, …).
There is **no "lane"** concept anywhere in the system (dropped 2026-06-16 — see below).
## Direction lives on the relay, not the controller
An access controller (e.g. a [[dingtian-relay]] board) has **several relays** — each relay opens
one barrier. Direction is a property of **each relay**, declared in the controller's config:
```jsonc
// access `devices` row — one Dingtian board
config: {
host: "192.168.1.100",
relays: [
{ relay: 1, direction: "entry", button: 1 }, // entry barrier; entry button on input 1
{ relay: 2, direction: "exit" } // exit barrier; opened by a reader, no button
]
}
```
- `direction`: `entry` | `exit` | `both` (`both` = one barrier/relay serving in and out).
- `button`: the **input terminal** the transient **entry button** is wired to. Only entry/both
relays have one. Absent = no button at that barrier (subscriber/reader-driven only).
The four real layouts all fall out of this:
| Layout | Controllers | Relays |
| --- | --- | --- |
| 1 barrier, both directions | 1 | `{relay:1, both, button:1}` |
| 2 barriers, 1 board | 1 | `{relay:1, entry, button:1}`, `{relay:2, exit}` |
| 2 barriers far apart | 2 | board A `{relay:1, entry}`, board B `{relay:1, exit}` |
| 1 entry + 2 exit | 3 | A entry; B, C each exit |
## Readers / cameras BIND to a relay
A reader or camera points at the barrier it physically sits at, via its config:
```jsonc
config: { ...readerConfig, controllerId: "<access devices.id>", relay: 2 }
```
Its **direction is inherited** from that relay. So an exit read opens **exactly that relay** —
no ambiguity even with multiple exit barriers ("the relay at that reader", decided 2026-06-16).
Binding is optional: an unbound device falls back to a `config.direction` + the first relay
site-wide of that direction (keeps the single-barrier case trivial). LPR is a snapshot sink —
an ANPR service ([[opencv-anpr-service]]) POSTs the plate as a `plate` read to the reader
endpoint, flowing through the same dispatcher.
## Resolution (one module: `apps/server/src/device-resolve.ts`)
- **Button press** → `relayForButton(controllerId, terminal)` → the entry relay whose `button`
matches → entry flow → `pulseOpen(relay)`.
- **Reader/permit/LPR read** → `relayForDevice(reader)` → the bound relay → `pulseOpen(relay)`;
direction inherited.
- **Snapshots** → `devicesByDirection("camera", dir)` → every camera serving that direction.
A directional barrier that contradicts the car's open-session state (an exit barrier scanned by a
car not inside, or an entry barrier by a car already in) is a wrong-barrier / [[anti-passback]]
refusal. A `both` relay defers to session state.
## The flows
| Flow | Trigger | Opens |
| --- | --- | --- |
| Transient entry | entry **button** press | the entry relay (button-mapped) → ticket prints |
| Transient exit | voucher scan at exit reader | the exit relay (reader-bound), if paid+grace |
| Subscriber entry | QR/RFID/plate at entry reader | the entry relay (reader-bound), if permit valid |
| Subscriber exit | QR/RFID/plate at exit reader | the exit relay (reader-bound), if permit valid |
Every open also fires a [[camera snapshot|append-only-event-chain]] (async, never blocks the open).
## Why no lane
"Lane" was a leftover from a rows-of-gates mental model. It added nothing here:
- **Occupancy** is a site-wide fold over the ledger (entries − exits); it never grouped by lane.
- **Device grouping** is now done by the reader→relay binding, far more precisely than a lane key.
- **Anti-fraud** doesn't use it — the signed chain, the "open must match a signed event" check,
and [[reconciliation]] all work on *what happened*, not *which gate*. The relay's direction
already catches an exit firing an entry barrier, better than a lane number would.
Dropping it removed `lane` from `ledger_events`, `device_events`, `sessions`, and the device
table (renamed `lane_devices` → `devices`). Because `lane` was part of the **signed canonical
form**, this is a versioned change: the canonical array no longer includes lane, and the signer
keyId bumped `sw-hmac-v1` → `sw-hmac-v2`. v1 events won't verify under v2 — intentional, gated by
each event's stored `keyId` (done pre-deployment, on throwaway data, so zero real cost). See
[[append-only-event-chain]].
## Camera snapshots (evidence, not a gate)
Captured **after** the barrier opens, **never awaited** — a camera failure can't delay or block an
open (the signed ledger is the decision). Stored as a **BLOB in the `snapshots` table** (single
backed-up DB, nothing scattered on disk), in its own table so hot telemetry scans don't drag image
bytes and images prune independently. Linked to the signed `vehicle_entry/exit` by `identity`.
Served read-only via `GET /api/snapshots/:id`. **Retention is unresolved** — see [[open-questions]].
## Related
[[entry-exit-readers]] · [[device-events]] · [[parking-session]] · [[anti-passback]] ·
[[append-only-event-chain]] · [[barrier-not-a-door]] · [[opencv-anpr-service]] ·
[[dingtian-relay]] · [[first-run-setup]]
+10
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@@ -22,6 +22,12 @@ There are **two populations** of users, and they map to **two integration paths*
| [[wiegand]] reader → UHPPOTE port | The controller | Controller (onboard card list) | **Yes** — works if host down |
| Pure TCP/IP reader | Host only | Host, then UDP `open` to relay | No — host on critical path |
| [[lpr-camera|LPR]] / QR scanner | Host only | Host | No |
| **[[gee-qr-er80]] QR reader (serial)** | Host only | Host (reads serial → `read` bus) | No |
> Concrete host-side reader on hand: the **[[gee-qr-er80]]** (QR over RS-232/RS-485). Note autonomy
> is moot here anyway — the current relay ([[dingtian-relay]]) has **no onboard card list**, so even
> a Wiegand reader would be host-decided. So we take the serial/QR path straight to the host's
> `read` bus.
## Key points
@@ -32,6 +38,10 @@ There are **two populations** of users, and they map to **two integration paths*
keeps autonomy + native event log.
- **Both models can share one relay** (valid Wiegand read **or** host `open` in "controlled"
mode), so one lane serves permit + casual.
- **Each reader BINDS to a controller relay** (`config.controllerId` + `relay`) — the barrier it
sits at — and inherits that relay's direction (entry/exit/both). An exit read opens exactly that
relay; an entry read the entry relay. This is how separate in/out readers are disambiguated, with
no "lane". See [[entry-exit-points]].
- **Host-in-the-loop is good for fraud detection** — two independent records (host's signed
[[append-only-event-chain]] entry + the UHPPOTE remote-open event) should reconcile 1:1; any
mismatch is an anomaly.
+18 -16
View File
@@ -8,8 +8,10 @@ updated: 2026-06-15
# First-Run Setup (device selection)
The admin install flow that makes the system **device-agnostic in practice**: on first run, an
admin assigns devices **per lane** by choosing from the [[device-registry]] catalog and entering
each device's connection config.
admin adds **controllers** (each declaring its relays — entry/exit/both — and the entry-button
terminal) and then **readers/cameras/printers** bound to a controller relay, choosing from the
[[device-registry]] catalog and entering each device's connection config. There is **no lane** —
the pool-of-spaces model; see [[entry-exit-points]].
> Implementation-derived (from `apps/server` + `apps/web`), not the source doc.
@@ -26,7 +28,7 @@ each device's connection config.
device**: fixes preconditions (e.g. disables `input_link_relay`) and sets up the Digest-
authenticated input push ([[device-input-flow]]) — the admin never touches the device's own web
UI. **Fails the save** (no DB row) if the device can't be configured, so there are no
orphan/half-configured rows. On success persists to `lane_devices`.
orphan/half-configured rows. On success persists to `devices`.
4. **Remove** — `DELETE /api/setup/assign/:id` (admin-only) drops one instance's row. Only our
row is removed; the device itself is not un-hardened/un-configured (a stale push from an
unknown device id is already rejected, and re-assigning reconfigures it).
@@ -34,25 +36,25 @@ each device's connection config.
## Config granularity — multi-instance per category
The data model is **multi-instance**: `lane_devices` holds **one row per instance**, keyed by a
generated `id`, with no one-per-(lane, category) constraint. So a lane can have **more than one of
every category** — e.g. two printers (an entry dispenser + a booth printer; see
[[printer-roles-failover]]), multiple readers, multiple cameras. `assign` always inserts a new row
(never an upsert), and `state` returns the full list.
The data model is **multi-instance**: `devices` holds **one row per instance**, keyed by a
generated `id`. So the site can have **more than one of every category** — multiple controllers,
readers, cameras, and printers (e.g. an entry dispenser + a booth printer; see
[[printer-roles-failover]]). `assign` always inserts a new row (never an upsert), and `state`
returns the full list.
The `SetupWizard` reflects this: each category shows the **list of assigned instances** for the
current lane (with **Remove**) plus an **Add another** form — not a single fixed slot. `select`-type
config fields (e.g. a printer's role) render as dropdowns.
The `SetupWizard` reflects this: each category shows the **list of assigned instances** (with
**Remove**) plus an **Add another** form — not a single fixed slot. `select`-type config fields
(e.g. a printer's role) render as dropdowns.
Organized **per lane** — each lane gets its access controller(s), reader(s), camera(s), and
printer(s), each with its own connection settings. Matches the architecture's "mixable per lane"
reality (a lane can serve permit holders via [[wiegand]] and casual via host-side reads on one
relay — see [[entry-exit-readers]]).
There is **no lane**. Direction lives on each access **relay**; readers/cameras **bind** to a
controller relay (`config.controllerId` + `relay`) — the barrier they serve — and inherit its
direction. The wizard adds controllers first, then binds the other devices to a relay. See
[[entry-exit-points]], [[entry-exit-readers]].
## Security notes
- The assign/state/delete/complete endpoints require the **admin** role ([[local-jwt-auth]]).
- Device **credentials are stored in `lane_devices.config`** — protect at rest
- Device **credentials are stored in `devices.config`** — protect at rest
([[disk-os-hardening]]); device hosts belong on the isolated VLAN ([[network-isolation]]).
- **Secrets are stripped on the way out**: `assign` and `state` both redact `pushPassword`,
`webPassword`, and `relayPassword` from the returned config (the UI lists devices; it never
+129
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@@ -0,0 +1,129 @@
---
type: concept
tags: [parking, domain, business, anti-fraud]
sources: []
updated: 2026-06-15
status: open
---
# Parking Session
The core business-domain entity: one vehicle's stay, from entry to exit, plus the money owed and
paid for it. Everything on the business side — [[tariff|tariffs]], payment, [[reconciliation]],
revenue reporting — hangs off the session. This page defines what a session **is** and, just as
importantly, what it is **not**.
> Scope decision (2026-06-15): build the **transient** (casual, pay-for-duration) session first;
> layer **permit holders** on top as a second identity source that short-circuits payment. Mixed
> site, transient-first — see [[entry-exit-readers]] ("two populations, one shared relay") and
> [[session-model]].
## A session is a PROJECTION over the signed event log — not a mutable table
This is the single most important rule, and it falls straight out of the [[threat-model]] (the
adversary is the insider who can edit the database) and the [[append-only-event-chain]]:
- The **events** table is the ledger and the **only** source of truth. `vehicle_entry`,
`vehicle_exit`, `payment`, `void` are all **appended + signed**, never updated or deleted.
- A **session** is a **read-model folded from those events** — open when an entry has no matching
exit, paid when a `payment` event references it, closed when an exit lands. It MAY be cached in
a table for query speed (dashboards, "cars currently in"), but that cache is **always rebuildable
from the chain and never authoritative** ([[append-only-event-chain]]), scaled to the business
domain.
- **Why this matters:** a mutable `sessions` row that stored "amount owed / paid" would reopen
exactly the fraud hole the whole system exists to close (operator marks a session paid, pockets
the cash). With sessions as a projection, "paid" is a **signed `payment` event** an operator
can't forge or silently delete — a deletion breaks the chain visibly. See [[session-model]] for
the rejected mutable-table alternative.
## Identity — how an entry is tied to its exit
A session needs a key that survives from entry to exit. Two populations, two keys
([[entry-exit-readers]]):
- **Transient:** a **ticket id** (printed, ideally on pre-numbered stock — see [[reconciliation]])
or a **plate** read by [[lpr-camera|LPR]]. This id is carried in the event's `identity` field.
- **Permit holder:** a **credential** (card / plate / QR) matched to a [[permit]] record. A valid
permit means the session owes nothing — the PAY step is skipped (see below).
## Lifecycle (pay-on-foot / pay station model)
Payment is **decoupled from exit** (decision 2026-06-15, matching the [[autonomous-direction|
unmanned]] roadmap): the customer pays at a central station before walking back to the car; the
exit lane only *validates* that the session is settled.
```
ENTRY (lane) vehicle_entry event → session OPEN
(ticket printed / plate read; barrier opens)
PAY (pay station) payment event {sessionRef, fee, paidAt}
→ session PAID (grace window starts)
EXIT (lane) validate: PAID && now ≤ paidAt + graceMinutes ?
yes → vehicle_exit event → session CLOSED → pulseOpen
no → reject → re-pay overstay top-up at station, then exit
```
States, as derived from events:
| State | Condition (over the event chain) |
| --- | --- |
| **OPEN** | a `vehicle_entry` with no later matching `vehicle_exit` |
| **PAID** | OPEN + a `payment` event covering the fee due, within its grace window |
| **CLOSED** | a matching `vehicle_exit` event exists |
| **VOIDED** | a `void` event references the session (lost ticket written off, error correction) |
Permit sessions skip PAID: a valid [[permit]] at exit is itself the authorization to close.
## Edge cases the model must name (not yet designed in full)
- **Overstay after payment** — exited the grace window; needs a top-up payment. The one genuinely
stateful rule; handled as a second `payment` event, fee = f(time since paid).
- **Lost ticket** — no entry id to match. A default flat "lost ticket" fee (see [[tariff]]), **or
an amount the admin sets at the moment** (operator judgement — e.g. they can establish entry time
from [[opencv-anpr-service|plate]] capture or CCTV and charge accordingly, or apply a fixed
penalty). Recorded as a `payment` (with the chosen amount + a reason) + a `void`/annotation so it
reconciles; the admin-set amount is captured in the signed event, attributed.
- **Manual override** — an operator/admin opens the barrier for a stuck or disputed car, or writes
off a session, as a deliberate act. Each is a **signed, reason-coded event**
(`barrier_open_command` / a void with reason) — so an override is *authorized and logged*, while
an open with **no** such signed event remains the fraud signal ([[append-only-event-chain]]). The
override is the legitimate counterpart to the out-of-band-open anomaly.
- **Forced / fail-open exit** — barrier failed open ([[fail-state-safety]]): the vehicle leaves with
**no `vehicle_exit`**. This is an open session that never closes — a **reconciliation anomaly by
design** ([[append-only-event-chain]]'s "physical open with no signed command"), not something to
paper over. (A *manual* override above is the signed, non-anomalous version.)
- **Re-entry / never-exited** — stale open sessions (drove out tailgating, sensor missed). Surface
as anomalies; never auto-close silently.
## What this unblocks (build order)
The device layer left the entry flow dangling — the session domain is that next step. Schema + code
follow this page and [[tariff]]; the decision is recorded in [[session-model]].
### As-built (2026-06-15)
- **Entry flow** (`apps/server/src/entry-flow.ts`): access-device input edge → print ticket
(failover) → signed `vehicle_entry` → `pulseOpen`. Holds (anomaly, no open, no entry) if printing
fails. See [[device-input-flow]].
- **Read dispatch** (`apps/server/src/read-dispatch.ts`): a credential read routes to the
**permit flow** if it matches a permit (card/QR/bound plate), else to the transient **exit flow**.
Lane resolved once (`readerLaneWithAccess`). See [[permit]] as-built.
- **Exit flow** (`apps/server/src/exit-flow.ts`): a credential **read** (the `read` bus channel) →
fold the signed ledger for that identity → validate **open + PAID + within `gracePeriodExitMin`**
→ signed `vehicle_exit` → `pulseOpen`. Unpaid / expired / unknown → signed `anomaly`, barrier
stays closed. Validation folds the **ledger** (authoritative), then updates the `sessions` cache.
- **Not a fail-state:** an unpaid reject keeps the barrier closed deliberately (driver returns to
the pay station); "exit fails open" ([[fail-state-safety]]) is about the *system* being unable
to decide (host/power loss), not an unpaid car.
- **Pay station** (`apps/server/src/pay-station.ts`, routes `GET /api/pay/quote` + `POST /api/pay`):
look up the open session → resolve the active tariff version (latest `effectiveFrom ≤ entry`) →
`computeFee` → append a signed `payment` event (amount, currency, tender, `tariffVersionId`,
`graceExitMin`). An operator `overrideMinor` covers lost-ticket/dispute (recorded as the charged
amount + the quoted amount). Pay-on-foot: payment is decoupled from the exit lane. PCI scope stays
out of the app — `tender` only records cash/card; card capture is the standalone P2PE terminal.
- **The full transient loop now passes end to end** (verified): entry → quote → pay → exit opens,
session closed, `verifyChain` ok.
> **Resolved (2026-06-16):** the earlier "no entry/exit direction" gap is closed by the
> [[entry-exit-points]] model. Direction lives on each access **relay**; readers/cameras bind to a
> relay and inherit it. The "lane" concept was dropped entirely (pool-of-spaces) — separate in/out
> readers are distinguished by their relay binding, not a lane.
+1 -1
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@@ -13,7 +13,7 @@ still print when the outside dispenser jams or drops off the network.
## Roles
Each printer instance (a `lane_devices` row, category `printer`) declares a **role** in its
Each printer instance (a `devices` row, category `printer`) declares a **role** in its
config:
- **`entry-dispenser`** — outside, at the lane. Prints the entry ticket the driver takes.

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