9a4c7ee27b
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.
125 lines
7.6 KiB
Markdown
125 lines
7.6 KiB
Markdown
---
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type: concept
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tags: [parking, security, integrity]
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sources: [parking-system-architecture]
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updated: 2026-06-15
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---
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# Append-Only Event Chain
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The core integrity mechanism against operator fraud (see [[threat-model]]). (See
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[[parking-system-architecture]] §3.)
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Three layered properties:
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1. **Append-only event model.** Entry/exit events are never edited or deleted, only appended. A
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"void" is itself a **recorded event**, not an erasure.
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2. **Tamper-evident chaining.** Each event stores the **hash of the previous event** (a hash
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chain). Reordering or deleting **breaks the chain visibly**.
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3. **Hardware-backed signing.** The **[[atecc608]]** secure element signs each event with a
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non-extractable key. This is what makes the chain **unforgeable** rather than merely
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self-consistent — someone who owns the machine still cannot forge a valid entry.
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It only becomes trustworthy as an external fraud control when paired with [[reconciliation]]
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against an authority the operator can't alter.
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## Two event streams — the signed ledger vs. device telemetry (decision 2026-06-15)
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These are **different concerns and live in different tables**:
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- **`ledger_events`** — this signed, hash-chained, [[atecc608]]-signed **business ledger**:
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`vehicle_entry` / `vehicle_exit` / `payment` / `void` / `shift_z_report`, plus the witness-grade
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`barrier_open_command` / `barrier_open_observed` and `anomaly`. This is the anti-fraud record that
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[[reconciliation]] runs against; sessions/[[tariff]]/occupancy are projections over it. (This is
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the table formerly called `events`.)
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- **`device_events`** — **unsigned operational telemetry**: relay fired, printer paper-out, camera
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offline, reader read, raw input edges. High-volume, churny, **not** anti-fraud; may rotate/prune.
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Keeping it out of the signed chain keeps the ledger small and high-value.
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> A raw button press is **device telemetry**, not a business fact. It lands in `device_events`; the
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> entry flow then mints a **signed `vehicle_entry`** in the ledger once a ticket prints and the
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> barrier is commanded. (This supersedes the earlier "every device event lands in the chain" framing
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> and the `input_received`-as-signed-event approach — see [[device-input-flow]].)
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## Implementation (apps/server)
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> Implementation-derived. The schema (`packages/db` `events`) and types
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> (`packages/shared` `ParkingEvent`) predate this; the writer/signer are new.
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- **`EventLog`** (`apps/server/src/event-log.ts`) is the append primitive. `append()` reads the
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latest row, sets `index = prev + 1`, `prevHash = sha256(canonical(prev))` (genesis = null),
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signs the canonical form, and inserts. There are **no update/delete paths**.
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- **Serialized appends.** SQLite is single-writer, but read-prev → compute-hash → insert is
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multi-step, so `EventLog` also guards it with an in-process async lock — otherwise two near-
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simultaneous events could claim the same `index` or chain off a stale `prevHash`. Verified:
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5 concurrent appends produced indices 1..5 with an intact chain.
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- **Canonical form** is a fixed-order JSON array (`index,type,direction,lane,source,identity,
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occurredAt,prevHash`) — byte-stable, since the chain + signatures depend on it. The volatile
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row `id` is excluded; chain identity is `index` + content.
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- **`verifyChain()`** walks oldest→newest, recomputing hashes + signatures. Catches tampered
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content (bad signature), reordering / a deleted row (`index` gap), and a `prevHash` mismatch.
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Exposed at `GET /api/events/verify` (admin). Read access to the log: `GET /api/events`.
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### The `Signer` abstraction (software now, ATECC608 later)
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Signing goes through a **`Signer`** interface (`packages/shared`) — the abstraction over the
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[[atecc608]]. Because the chip being wired is still [[open-questions|open-question #6]], the
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server ships a **`SoftwareSigner`** (HMAC-SHA256, key from `EVENT_SIGNING_KEY`). Swapping to the
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secure element is a new `Signer` impl with no `EventLog` change; each event stores its `keyId`
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so old events stay verifiable.
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> ⚠️ The software signer makes the chain **self-consistent + tamper-evident**, but **not
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> unforgeable by someone who owns the host** — only the ATECC608's non-extractable key gives
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> property (3) above. Until the chip is wired, the chain detects tampering by *outsiders* and
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> *accidental* corruption, but an operator with the signing key + DB access could re-sign a
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> forged chain. This is the central reason #6 matters.
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### Business-layer event types (the ledger)
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The [[parking-session]] domain folds over these **signed ledger** events:
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- `vehicle_entry` / `vehicle_exit` — a stay's endpoints; `identity` carries the ticket id or plate.
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- `payment` — a settled fee at the pay station, referencing the session it pays for (amount in
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integer minor units; see [[tariff]]). Making "paid" a signed event — not a mutable row — is the
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whole point: an operator can't forge it or silently delete it.
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- `void` — a correction / lost-ticket write-off; like every other void here it is an **appended
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event, never an erasure**.
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- `shift_z_report` — the signed per-[[shift]] takings summary.
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A session is a **projection** over this chain, never a mutable table — the same anti-fraud reason
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the chain exists. See [[parking-session]].
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### ⚠️ As-built vs. the table split (pending)
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The current code records Dingtian **input (button) pushes** as `input_received` rows **in the
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signed chain** (with `lane` resolved via the `LaneMap`, `source` null, device provenance in
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`identity`). Per the 2026-06-15 split (above), a raw button press is **device telemetry** and
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belongs in **`device_events`**, *not* the signed ledger — only the business `vehicle_entry` it
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drives gets signed. So `input_received`-in-the-ledger is **transitional**; the pending refactor
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moves raw inputs to `device_events` and renames the chain table to `ledger_events`. (`LaneMap`
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lane-resolution and the "never stamp `lane: 0` for an unmapped device" rule carry over to whichever
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stream records the event.)
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### ⚠️ Limitation: the log captures HOST-ORIGINATED actions only
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The event log records what the **host** did (inputs it received, opens it commanded). It is
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**blind to out-of-band relay actuation** — anything that fires a relay without going through the
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host. **Proven on hardware**: a binary relay command sent directly to the device with the
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(sniffable) `relay_pw` fired a relay and produced **zero** events. Out-of-band paths include:
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- the **password-less string protocol** (until disabled — see [[dingtian-relay]]),
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- a **sniffed/replayed `relay_pw`** binary command (plaintext UDP — relay control is
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defence-in-depth, **not** a boundary),
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- the device's own **`ip_watchdog`** (auto-toggles a relay on ping-failure — must stay disabled),
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- a future **`barrier_open_command`** path is host-side and *would* log; these bypass it.
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So the log alone does **not** detect operator/attacker fraud at the relay. That is **by design** —
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the actual control is [[reconciliation]]: compare the host's signed *commanded* opens against an
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**independent witness** of opens that physically happened (a door/loop sensor on a Dingtian input
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→ which DOES push + log; the [[opencv-anpr-service|vision service]]'s plate **and vehicle** read;
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payment/Z-report). **A physical open with no matching signed command is the fraud signal** — and,
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with vehicle verification, **a plate that enters/exits on a different car** is too (the
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plate-spoofing case). Both the witness sources and the reconciliation logic are **NOT yet built** —
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this is the main open gap. Prevention (VLAN isolation so the attacker can't
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reach UDP 60000) is the necessary first line; detection-via-reconciliation is the backstop.
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