jpmschweitzer 78d9b276ee build(make): prove make setup actually works before exiting 0 (T-47)
pip install exiting 0 is not evidence the gateway environment is usable
(D-24) — a resolved-but-broken dependency or a stale venv from another
Python both look identical to a clean install at the point setup exits.
End the target with a cheap positive check instead: collect the test
suite (imports every src module each test pulls in) and confirm ruff
and mypy resolve inside the venv, the only place either binary exists.

Also states explicitly, in a comment, that setup covers the gateway
half only — the firmware half needs `source ~/esp-idf/export.sh` in
every shell, which a Makefile recipe cannot leave sourced in the
caller's shell, so build-firmware sources it itself instead.
2026-08-17 12:04:12 +02:00

DeskLock

A living-room visual/audio endpoint for Tatlock, the homelab butler. DeskLock gives Tatlock a face and a voice on a Waveshare round touch display: you talk to it, it listens, thinks, and answers — the first line of contact with the butler backend running on tower-of-joy.

Hardware

Waveshare ESP32-P4-WIFI6-Touch-LCD-3.4C

Component Details
SoC ESP32-P4NRW32 — dual-core RISC-V @ 400 MHz + LP core
Memory 32 MB PSRAM (in-package), 32 MB NOR flash
Display 3.4" round IPS, 800×800, MIPI-DSI 2-lane, capacitive touch
Radio ESP32-C6-MINI-1 (Wi-Fi 6 + BLE 5) over SDIO via ESP-Hosted
Audio in Dual onboard microphones + ES7210 echo-cancellation ADC
Audio out ES8311 codec, PH2.0 2-pin speaker connector (8Ω 2W recommended)
Flashing USB-C (hold BOOT during reset for download mode)

The device is currently connected over USB-C directly to tower-of-joy, so build/flash happens on this server.

Architecture

┌──────────────────────┐  WebSocket: PCM audio + JSON events
│  DeskLock device     │◄───────────────────────────────────┐
│  (ESP32-P4)          │                                    │
│  • LVGL face         │     ┌──────────────────────────────┴───────────┐
│  • touch / wake word │     │  DeskLock Gateway  (container, :8600)    │
│  • mic capture + AEC │     │  thin orchestrator — no ML dependencies  │
│  • TTS playback      │     └───────┬──────────────────┬───────────────┘
└──────────────────────┘             │                  │  OpenAI-format HTTP
                                     │                  ▼
                          HTTP (LAN) │       ┌─────────────────────────────┐
                                     ▼       │  Speaches  (container, GPU) │
                     ┌────────────────────┐  │  • STT: faster-whisper      │
                     │  Tatlock (butler)  │  │  • TTS: Kokoro / Piper      │
                     │  http://tatlock    │  │  also usable by Open WebUI, │
                     │  :8000             │  │  Home Assistant, …          │
                     └────────────────────┘  └─────────────────────────────┘

Tatlock stays a text-only brain. The gateway orchestrates speech-to-text, chat, and text-to-speech; the Speaches container owns the actual STT/TTS models on the GPU, shared homelab-wide. The device firmware stays thin: audio transport, wake word, and face rendering only. Everything runs on the LAN — no cloud in the voice path.

See docs/architecture.md for the full design.

Repository layout

  • firmware/ — ESP-IDF (C, LVGL 9) application for the ESP32-P4
  • gateway/ — Python FastAPI voice gateway, deployed as a container on tower-of-joy
  • sim/face/ — browser simulator of the face (design source of truth; serve with python3 -m http.server and open index.html, or use ?state=…&nochrome=1 for screenshots)
  • docs/ — architecture and design notes

Roadmap

  1. Bring-up — display, touch, audio, 200 MHz PSRAM, cathedral gong
  2. Face + voice loop (in hardware test) — full LVGL face (7 states, rain, orbit, power ladder), Wi-Fi, WebSocket, touch-to-talk
  3. Voice (touch-to-talk) — tap to talk → gateway → Tatlock → spoken reply
  4. Wake word — esp-sr WakeNet on-device, echo cancellation, barge-in
  5. Polish — Tatlock-initiated notifications, presence, OTA updates

References

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