449 lines
20 KiB
Markdown
449 lines
20 KiB
Markdown
# pyinfra: Strix Halo bring-up
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Containerized setup for the Framework Desktop (Ryzen AI Max+ 395, Radeon
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8060S, 128 GB). The host stays minimal — kernel + driver + Docker +
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diagnostics. Inference engines (llama.cpp, vLLM, Ollama) run as docker
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compose services, each shipping its own ROCm/Vulkan stack.
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## Manual prerequisites
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1. **Phase 0** — update Framework BIOS, set GPU UMA carve-out (96 GB).
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2. **OS install** — Ubuntu Server 24.04 LTS. AMD ROCm only ships for
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jammy/noble; later Ubuntus install but break the host-side toolchain
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(libxml2 ABI). Enable SSH, import your laptop key, create user `noise`.
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Recommended partitioning: ≥300 GB on `/`, big disk mounted at `/models`,
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plain ext4 (skip LVM).
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3. The host must be reachable at `10.0.0.237` over SSH (edit `inventory.py`
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if it moves).
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4. **NOPASSWD sudo for `noise`** — pyinfra's fact layer doesn't reliably
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thread sudo passwords. One-time setup:
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```sh
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ssh noise@10.0.0.237 'echo "noise ALL=(ALL) NOPASSWD: ALL" | sudo tee /etc/sudoers.d/noise-nopasswd && sudo chmod 440 /etc/sudoers.d/noise-nopasswd'
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```
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## Run
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```sh
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uv tool install pyinfra
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./run.sh # equivalent to: pyinfra inventory.py deploy.py
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./run.sh --dry # any extra args are forwarded to pyinfra
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```
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Or run it ephemerally without installing: `uvx pyinfra inventory.py deploy.py`.
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## What the deploy does
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- Base CLI: tmux, vim, htop, btop, nvtop, amdgpu_top, uv, lazydocker, hf (huggingface_hub CLI)
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- Tailscale (run `sudo tailscale up` on the box once, interactively)
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- Docker engine + compose plugin, user added to `docker` group
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- ROCm host diagnostics only (`rocminfo`) — no full toolchain
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- GRUB kernel params for Strix Halo perf: `amd_iommu=off`,
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`amdgpu.gttsize=117760` (per [Gygeek/Framework-strix-halo-llm-setup](https://github.com/Gygeek/Framework-strix-halo-llm-setup)).
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Requires a reboot to activate — pyinfra rewrites `/etc/default/grub`
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and runs `update-grub`, but won't reboot for you.
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- `/models/<vendor>/` layout
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- `/srv/docker/{llama,vllm,ollama,openwebui,beszel,openlit,phoenix,openhands,homepage,whisper,piper,faster-whisper,kokoro}/docker-compose.yml`
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dropped in, not auto-started — you edit the model path then
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`docker compose up -d`
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(OpenWebUI needs no edits — it's pre-configured to find Ollama at
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`host.docker.internal:11434` and uses `searxng.n0n.io` for web search)
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(Beszel hub at :8090, OpenLIT UI at :3001, Phoenix UI at :6006,
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OpenHands UI at :3030, Homepage at :7575, Whisper Wyoming :10300,
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Piper Wyoming :10200, faster-whisper OpenAI-API :8001, Kokoro
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OpenAI-API :8880 — see "Monitoring stack", "Agent harnesses",
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"Front door", and "Voice" below)
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If a previous run installed the native llama.cpp build / full ROCm /
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native Ollama, those are auto-cleaned the next time `./run.sh` runs.
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## After the deploy: starting an inference service
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```sh
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ssh noise@10.0.0.237
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sudo tailscale up # one-time, interactive
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# Drop a GGUF somewhere under /models, then:
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cd /srv/docker/llama
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vim docker-compose.yml # edit the --model path
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docker compose up -d
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curl localhost:8080/v1/models # smoke test
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```
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Same shape for `vllm` (port 8000) and `ollama` (port 11434, no model edit
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needed — Ollama serves models on demand).
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## Swapping GPU-resident models
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The merged ~110 GB GPU arena (BIOS UMA=0.5 GB + `ttm.pages_limit` + the
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`HSA_*` env recipe — see `StrixHaloMemory.md`) holds at most one
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~88 GB-class model, and ROCm doesn't reclaim cleanly between consumers.
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So switching between, say, the daily-driver 30B and the 235B long-task
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model is a stop-then-start of whole compose stacks.
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`scripts/swap-model` (deployed to `/usr/local/bin/swap-model` on the
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box) encodes the coexistence table + per-service health probes so the
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swap is one command:
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```sh
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ssh framework swap-model 235b # stop conflicting svcs, start 235B, wait for /health
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ssh framework swap-model coder # back to Qwen3-Coder-30B (Ollama)
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ssh framework swap-model status # what's currently up?
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ssh framework swap-model none # everything down, free the GPU arena
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```
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Coexistence table baked into the script:
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| Target | What runs | What gets stopped |
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| `coder` | ollama (Qwen3-Coder-30B) | 235b, comfyui |
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| `235b` | qwen3-235b (llama.cpp) | ollama, llama, kimi, comfyui |
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| `kimi` | kimi-linear (vLLM) | 235b, comfyui (ollama can stay) |
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| `comfyui` | comfyui | 235b, kimi (ollama can stay) |
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| `none` | — | all five |
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OpenWebUI, LiteLLM, Phoenix, Beszel, etc. are non-GPU and always-on;
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the script ignores them. Wait timeout defaults to 600 s (235B's 88 GB
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cold load takes 3-5 min); override with `SWAP_WAIT_TIMEOUT=<seconds>`.
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A Mac-side wrapper at `bin/swap-model` in the repo runs
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`ssh framework /usr/local/bin/swap-model "$@"` — symlink it onto your
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PATH so `swap-model X` works from any shell:
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```sh
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ln -s "$(pwd)/bin/swap-model" /usr/local/bin/swap-model
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```
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Override host with `SWAP_MODEL_HOST=10.0.0.70 swap-model 235b` when
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Tailscale resolution is misbehaving.
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### Inference engine consolidation (in progress)
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The model count is now at the crossover point, so the manual
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`swap-model` script is being replaced. The plan, phased:
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**Framing.** Full consolidation to one engine isn't possible — **vLLM
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stays** as the specialist for the architectures llama.cpp can't serve
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(Kimi-Linear's KDA/MLA hybrid, the 235B). And the hard part of the
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memory problem — the cross-engine rule "235B can't share the arena
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with anything" — survives any consolidation, because it's a constraint
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*between* vLLM and the GGUF tier. So the real decision is only about
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the **GGUF tier** (Ollama and the standalone llama.cpp stack do the
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same job) and which tool, if any, coordinates the swaps.
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**M0 — benchmark the GGUF tier (the deciding unknown).** Ollama already
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auto-loads/unloads; the only question is whether its bundled llama.cpp
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keeps up with the gfx1151-tuned kyuz0 build on *this* box.
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`scripts/bench-engines` (deployed to `/usr/local/bin/bench-engines`)
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serves the identical GGUF on each engine in isolation and reports
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decode/prefill t/s using each engine's own timing fields:
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```sh
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ssh framework bench-engines # runs both, prints a verdict line
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```
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**M1 — pick the end-state from the benchmark.** Both are two engines
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(GGUF tier + vLLM); the difference is the coordinator:
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- **Option 1 (Ollama ≥ ~85 % of llama.cpp decode):** Ollama + vLLM,
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drop the standalone llama.cpp stack. Ollama self-swaps its tier, so
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**no llama-swap needed**; the one cross-engine rule ("stop Ollama
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before 235B") is a few lines. Fewest moving parts.
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- **Option 2 (kyuz0 lead is large):** keep llama.cpp behind
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**[llama-swap](https://github.com/mostlygeek/llama-swap)**, drop
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Ollama. This is where llama-swap earns its place — a YAML-configured
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OpenAI-compatible proxy whose **groups** encode the coexistence table
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declaratively *and* can launch the vLLM backends too, so one tool
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coordinates the whole arena and the `swap-model` script retires. It
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also subsumes most of LiteLLM's routing role.
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Two alternatives considered, both weaker fits:
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- **[LocalAI](https://github.com/mudler/LocalAI)** — bigger "replace
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your whole stack" platform with 36+ backends; deeper rewrite for
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marginal gain.
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- **[GPUStack](https://github.com/gpustack/gpustack)** — multi-node
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cluster manager (DB-backed, UI-first); built for fleets, overkill
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on a single Strix Halo box.
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Two alternatives also considered, both weaker fits:
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- **[LocalAI](https://github.com/mudler/LocalAI)** — bigger "replace
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your whole stack" platform with 36+ backends; would force a deeper
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rewrite for marginal gain on a 4-model stack.
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- **[GPUStack](https://github.com/gpustack/gpustack)** — multi-node
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cluster manager (DB-backed, UI-first); built for fleets, overkill
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on a single Strix Halo box.
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## Tunables
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Top of `deploy.py`:
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- `ROCM_VERSION` and `AMDGPU_INSTALL_DEB` — bump when AMD ships a newer
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release. The .deb filename has a build suffix that doesn't derive from
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the version; find it at https://repo.radeon.com/amdgpu-install/.
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- `AMDGPU_TOP_VERSION` — bump when a newer release lands at
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https://github.com/Umio-Yasuno/amdgpu_top/releases.
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- `NVTOP_VERSION` — built from source because apt's nvtop predates
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gfx1151 detection. Bump when a newer release lands at
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https://github.com/Syllo/nvtop/releases. Run `sudo nvtop` to see all
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GPU processes (non-root only sees the calling user's own).
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- `BTOP_VERSION` — built from source because apt's btop has no AMD GPU
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support. 1.4+ requires C++23, hence the ubuntu-toolchain-r/test PPA
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for g++-14. The build links `librocm-smi-dev` for AMD GPU monitoring.
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Bump at https://github.com/aristocratos/btop/releases. In btop, Esc
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→ Options → "show_gpu_info" → On to enable the GPU panel.
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Compose images in
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`compose/{llama,vllm,ollama,openwebui,beszel,openlit,phoenix,openhands,homepage}.yml`
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— pin tags here. Homepage's tile/layout config is in `compose/homepage/`
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(`services.yaml`, `settings.yaml`, etc.); edit there, `./run.sh`, restart
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the homepage container.
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## Voice
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Two parallel voice stacks, each speaking a different protocol so they
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serve different clients without conflicting.
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### Wyoming (Home Assistant Assist)
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Wyoming-protocol speech servers. No web UI — TCP protocol servers
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consumable by HA Assist, Wyoming satellites, or any Wyoming client.
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- **Whisper** (`/srv/docker/whisper`, `tcp://framework:10300`) — STT.
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Default model `tiny-int8` (~75 MB). Models download into
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`/srv/docker/whisper/data/` on first run.
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- **Piper** (`/srv/docker/piper`, `tcp://framework:10200`) — TTS.
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Default voice `en_US-lessac-medium` (~63 MB). Voice catalog at
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<https://github.com/rhasspy/piper/blob/master/VOICES.md>.
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### OpenAI-compatible (OpenWebUI, Conduit, scripts)
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OpenAI-API-compatible servers — `/v1/audio/transcriptions` and
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`/v1/audio/speech`. Used by OpenWebUI's Audio settings (and through
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OpenWebUI, by the Conduit Android app).
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- **faster-whisper** (`/srv/docker/faster-whisper`,
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http://framework:8001) — STT, model `large-v3-turbo` by default
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(~810 MB). CPU-mode container; Strix Halo's 16 Zen 5 cores keep it
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real-time. Built-in web UI at <http://framework:8001/>.
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- **Kokoro** (`/srv/docker/kokoro`, http://framework:8880) — TTS,
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Kokoro-82M (~340 MB). Apache 2.0, much more natural than Piper.
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Bring-up (all four):
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```sh
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for svc in whisper piper faster-whisper kokoro; do
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( cd /srv/docker/$svc && docker compose up -d )
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done
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```
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### Wiring OpenWebUI for voice
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OpenWebUI Admin → Settings → Audio:
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- **STT**: `OpenAI` engine, URL `http://faster-whisper:8000/v1`,
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any non-empty API key, model `Systran/faster-whisper-large-v3-turbo`.
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- **TTS**: `OpenAI` engine, URL `http://kokoro:8880/v1`, any non-empty
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API key, voice `af_bella` (or any from the Kokoro voices list).
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The hostnames `faster-whisper` and `kokoro` work because all containers
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share Docker's default bridge network (or you can use `host.docker.internal:8001`
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and `:8880` if OpenWebUI can't resolve them by container name — depends
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on whether you're running OpenWebUI on the user-defined or default
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bridge).
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After saving, the microphone icon in OpenWebUI activates and a
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voice-call quick action appears. Conduit on Android (an OpenWebUI
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client) inherits this configuration automatically — no app-side voice
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setup.
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See [`localgenai/VoiceModels.md`](../../VoiceModels.md) for the
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landscape and further upgrade options (Sesame CSM, F5-TTS, etc.).
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## Front door
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- **Homepage** (`/srv/docker/homepage`, http://framework:7575) — single
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page with one tile per service in this stack, with native widgets
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pulling live state (loaded models from Ollama, container status from
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the docker socket, etc.). Bookmarks for the reference docs across the
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bottom. Use as the default landing page on this network.
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Bring-up: `cd /srv/docker/homepage && docker compose up -d`. No
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first-run setup — it reads `/srv/docker/homepage/config/*.yaml` and
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renders.
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To customize: edit `pyinfra/framework/compose/homepage/*.yaml` in the
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repo, run `./run.sh`, then `docker compose restart homepage` on the
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box. Direct edits to `/srv/docker/homepage/config/*.yaml` will be
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overwritten on the next pyinfra deploy.
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## Monitoring stack
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Two compose stacks watch the inference services:
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- **Beszel** (`/srv/docker/beszel`, http://framework:8090) — host + Docker
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container + AMD GPU dashboard. The agent's `amd_sysfs` collector reads
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`/sys/class/drm/cardN/device/` directly; this is the only path that
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reports real numbers on Strix Halo (gfx1151) — `amd-smi` returns N/A
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for util/power/temp on this APU.
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First-time bring-up:
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```sh
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cd /srv/docker/beszel
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docker compose up -d beszel # 1. hub
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# 2. open http://framework:8090 → create admin → "Add system"
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# 3. copy the TOKEN and the SSH KEY from the dialog into .env:
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sudo tee /srv/docker/beszel/.env >/dev/null <<EOF
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BESZEL_TOKEN=<token-from-dialog>
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BESZEL_KEY=ssh-ed25519 AAAA…
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EOF
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sudo chgrp docker /srv/docker/beszel/.env
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sudo chmod 640 /srv/docker/beszel/.env
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docker compose up -d --force-recreate beszel-agent # 4. agent
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```
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- **OpenLIT** (`/srv/docker/openlit`, http://framework:3001) — fleet
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metrics for the LLM stack (cost, tokens, latency aggregated across
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sessions and models). Auto-instruments Ollama and vLLM via
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OpenTelemetry without app-code changes; for llama.cpp, the compose
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file already passes `--metrics` so OpenLIT can scrape `/metrics`.
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ClickHouse-backed. OTLP receivers exposed on the host at **:4327
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(gRPC) / :4328 (HTTP)** — Phoenix owns 4317/4318.
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Bring-up: `cd /srv/docker/openlit && docker compose up -d`. UI prompts
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to create an admin account on first load.
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- **Phoenix** (`/srv/docker/phoenix`, http://framework:6006) — per-trace
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agent waterfall / flamegraph. Designed to answer "show me what one
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OpenCode turn actually did" — full call tree, nested LLM/tool calls,
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token counts inline. Single container, SQLite-backed. OTLP receivers
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on the host at **:4317 (gRPC)** and **:6006/v1/traces (HTTP)** —
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Phoenix 15.x serves HTTP OTLP on the UI port, not a separate 4318.
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Bring-up: `cd /srv/docker/phoenix && docker compose up -d`. UI
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immediately available; no auth in the self-hosted single-user path.
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See [`localgenai/opencode/README.md`](../../opencode/README.md) for
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how OpenCode is configured to ship traces here.
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The official AMD Prometheus exporters (`amd-smi-exporter`,
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`device-metrics-exporter`) are intentionally **not** deployed — they're
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broken on gfx1151 (ROCm#6035). If you ever want full Prometheus +
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Grafana, the migration path is to replace Beszel with `node_exporter` +
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a textfile collector reading `/sys/class/drm/cardN/device/` and
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`/sys/class/hwmon/`.
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## Agent harnesses
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Two agent UIs in front of the local model stack — pick one (or both)
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based on how you like to drive the agent:
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- **OpenWebUI** (`/srv/docker/openwebui`, http://framework:3000) —
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ChatGPT-style web UI. Pre-wired to Ollama + SearXNG web search.
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Best for casual chat and household-shared LLM access.
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Bring-up: `cd /srv/docker/openwebui && docker compose up -d`.
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- **OpenHands** (`/srv/docker/openhands`, http://framework:3030) —
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autonomous agent in a Docker sandbox. Spawns a per-conversation
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`agent-server` container that can write code, run tests, browse the
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web. Pre-configured for Ollama at `openai/qwen3-coder:30b` over the
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OpenAI-compatible endpoint; ships traces to Phoenix.
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Bring-up: `cd /srv/docker/openhands && docker compose up -d`. First
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run pulls the agent-server image (~2 GB) lazily on first conversation,
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not at startup, so the orchestrator comes up fast but your first
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message takes 30–60 s. Pre-0.44 state path was `~/.openhands-state`;
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not relevant on a fresh install.
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> **Security note:** the orchestrator container has docker-socket
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> access and spawns code-running sandboxes. Fine to expose on a
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> Tailscale-only box; **change the compose port mapping back to
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> `127.0.0.1:3030:3000` and tunnel in** if this host ever sees LAN
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> or internet traffic.
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Tool-call quality with local models is much better when Ollama's
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context is bumped — the compose at `/srv/docker/ollama` already sets
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`OLLAMA_CONTEXT_LENGTH=65536`, which is plenty.
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OpenCode (the terminal driver, configured in
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[`localgenai/opencode/`](../../opencode/)) runs on the Mac and points
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at the same Ollama endpoint, so all three harnesses share the same
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model server.
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The llama.cpp image is `kyuz0/amd-strix-halo-toolboxes:vulkan-radv`,
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gfx1151-optimized with rocWMMA flash attention (the latter only kicks
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in on the ROCm tags). Auto-rebuilt against llama.cpp master.
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## Remote IDE (code-server)
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**code-server** (`/srv/docker/code-server`, http://framework:8443) —
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full VS Code in the browser, served from the box. The point: Claude
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Code (extension from Open VSX + CLI) runs *inside the container*, so
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long agent tasks execute here and survive the laptop sleeping. Any
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tailnet device gets the same editor and the same running session.
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Bring-up: `cd /srv/docker/code-server && docker compose up -d`, then
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see `/srv/docker/code-server/README.md` for the one-time extension
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install + sign-in flow. No password is set (Tailscale-only trust
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model, like everything else here) — set `HASHED_PASSWORD` before this
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host ever sees other traffic; a browser terminal is a shell.
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The workspace is container-scoped on purpose (no host filesystem, no
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docker socket). For host-level Claude work, use the section below
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instead.
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## Workspace manager (Coder) — pilot
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**Coder** (`/srv/docker/coder`, http://framework:7080) — self-hosted
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workspace manager: a web dashboard that stamps out per-project dev
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containers from Terraform templates. The shipped `code-server` template
|
||
gives each workspace browser VS Code with the Claude Code extension
|
||
(from Open VSX) pre-installed and the `claude` CLI on PATH; workspace
|
||
home volumes persist `~/.claude` creds and repos across stop/start.
|
||
Workspaces publish no host ports — everything tunnels through the
|
||
dashboard — and idle autostop hands parked projects' RAM back to the
|
||
inference stacks.
|
||
|
||
Bring-up + template push + first workspace:
|
||
`/srv/docker/coder/README.md`. The `.env` (docker GID, access URL,
|
||
Postgres password) is auto-generated by `./run.sh` — nothing to fill
|
||
in by hand.
|
||
|
||
This is a **pilot** against the standalone code-server stack above:
|
||
after a week of real use, one of them retires. Same security posture
|
||
as OpenHands (docker-socket holder, spawns code-running containers) —
|
||
Tailscale-only, never expose :7080 further.
|
||
|
||
## Claude Code on the box (remote-control)
|
||
|
||
For long unattended runs steered from a phone or browser — no IDE
|
||
involved — Claude Code's official Remote Control feature bridges a
|
||
session running on the box to claude.ai/code and the Claude mobile
|
||
app. Needs Claude Code ≥ 2.1.51 with a claude.ai login (Pro/Max plan;
|
||
API keys don't work for this), traffic relays outbound-only over TLS
|
||
to Anthropic — no inbound ports.
|
||
|
||
```sh
|
||
ssh framework
|
||
tmux new -s rc
|
||
cd ~/src/whatever
|
||
claude remote-control --name "Strix Halo"
|
||
# prints a session URL → open on any device, or find it in the
|
||
# session list at claude.ai/code / the Claude app's Code tab
|
||
```
|
||
|
||
Operational notes (state of the feature as of 2026-06):
|
||
|
||
- The local process is the engine — tasks keep executing with **no
|
||
client attached**; clients are viewports. But if the process dies,
|
||
the session is gone (no `--resume` equivalent for remote-control
|
||
sessions yet, issue #30447). Hence tmux, always.
|
||
- It needs a TTY — `nohup`/systemd don't work. tmux satisfies this.
|
||
- `--spawn worktree` gives each connecting session its own git
|
||
worktree; `--spawn same-dir` (default) shares the directory.
|
||
- Headless boxes print the session URL but no QR (#34764) — copy the
|
||
URL or use the session list.
|
||
- Mobile clients sometimes drop after long idle (#28914, #34255);
|
||
reconnecting always works — the task on the box is unaffected.
|
||
- Run `claude` interactively once per project dir first to clear the
|
||
workspace-trust prompt before automating anything.
|