wiki: Dingtian relay decision, HTTP-over-MQTT, unmanned direction
- dingtian-relay: relay+input controller (4ch on hand). Inputs are decoupled from relays (configurable via input_link_relay) — solves the access-controller-button-flow blocker the UHPPOTE couldn't. Full protocol from the SDK (UDP string control :60001, `00` status parse, input_link_url push, multicast discovery). Driver + hardware test still to build. - dingtian-vs-mqtt: use direct HTTP/UDP now; MQTT skipped (broker = extra infra + failure mode + overkill at one-host/few-devices scale) but kept for later multi-lane scale. - autonomous-direction: record the roadmap to fully unmanned (no booth) and how it reshapes the threat model (operator-fraud -> unattended-machine threats), makes host-in-the-loop entry mandatory, and raises fail-state stakes. - threat-model: note the unmanned shift. index + log. gitignore the vendor SDK (dingtian/, 71MB of binaries/examples) — reference only, protocol captured in the wiki.
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@@ -35,3 +35,9 @@ The controls that actually address insider/operator fraud are different in kind:
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The same reframing recurs at the device layer: the [[uhppote-controller]]'s real problem is
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unauthenticated commands ([[uhppote-udp-protocol]]), addressed by detection
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([[event-log-ingestion]]) or prevention ([[esp32-custom-controller]]).
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> **Direction shift:** the system is heading toward **fully unmanned operation** — no operator, no
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> booth ([[autonomous-direction]]). That removes the booth-operator as the *primary* adversary, but
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> swaps in **unattended-machine threats** (tailgating, plate spoofing, physical tampering, forced
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> entry). The append-only signed log + reconciliation controls carry over; the emphasis moves from
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> "catch the cashier" to "trust the automated record and detect tampering."
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