kb/decisions/ha-configs-as-code.md — decyzje projektowe HA configs-as-code kb/incidents/2026-07-22-ha-dwie-instancje.md — sekcja "Incident log": dwie instancje HA sterujace domem rownolegle po migracji Incydent byl dotad wtopiony w dokument decyzyjny; teraz jest adresowalny jako osobny wpis type: incident. Tresc nietknieta. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
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| okf | type | visibility | status | updated | links | |
|---|---|---|---|---|---|---|
| 0.1 | decision | private | active | 2026-07-30 |
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Home Assistant configs-as-code — design decisions
Status: phase 1 (partial). scripts/ha/deploy.sh implements the write
path for the api adapter's automations/scripts/scenes scope (see "Deploy
path" and "Sync model" below); dashboards/helpers and the docker-exec
adapter have no write path yet. See docs/backlog.md for the tracking
entry.
Phasing
| Phase | Scope |
|---|---|
| 0 — Snapshot | Import-only tooling (this skeleton). Pull /config + .storage from each instance into the repo, read-only. No deploy, no write path back to HA. |
| 1 — Repo + CC | Repo is the reviewable source of truth. Changes are authored in the repo (by a human or Claude Code) and pushed manually via the docker-exec / api adapters described below. Deploy has a hard drift-abort (see Sync model). Partially built: scripts/ha/deploy.sh covers the api adapter's automations/scripts/scenes scope; docker-exec deploy and dashboards/helpers writes are still open. |
| 2 — MCP read-only | Expose HA state (entities, areas, config) to agents via an MCP server in read-only mode, to let agents reason about the live instance without touching import/deploy paths. 2a done (operator decision 2026-07-30: own minimal MCP, not hass-mcp) — services/ha-mcp/, seven read-only tools over stdio, registered for Claude Code in the repo-root .mcp.json. Read-only by construction: GET + allowlisted WS *_list reads only; automations are read from the repo, not the API. Open: exposing it to anything other than CC on the dev station (2b). |
| 3 — Agents | Agents propose changes (automations, scripts, scenes) through the same reviewable repo path used by humans; the human-in-the-loop approval flow from services/control-plane/ (pending → approved → executed) governs anything destructive. Telegram becomes a first-class interface alongside CC. |
Each phase is a hard gate: no phase-N tooling depends on phase-(N+1) existing.
Scope
Full /config tree per instance, plus a curated export of .storage/* JSON
files that are meaningfully version-controllable (registries, dashboards,
helpers) — not secrets, tokens, or runtime databases. See .gitignore below
for the exact exclusion list.
Canonical format
All YAML committed to the repo passes through one normalization function
(scripts/ha/lib/normalize.py), used by every import path with no
per-caller variation:
- block style (no flow/inline collections)
- fixed indent width 2
- keys sorted (stable diffs)
- unlimited line width (no wrapping)
- UTF-8, no BOM
.storage/* files are JSON on disk in HA; on import they are parsed as JSON
and re-emitted through the same YAML normalizer so the whole repo — config
and storage-export alike — has one diff format.
Deploy path: adapter per instance
There is no single deploy mechanism — each HA instance gets an adapter
behind a common interface (import.sh/eventual deploy.sh <instance>):
| Instance | Adapter | Why |
|---|---|---|
ken (RPi4, HAOS, LAN 192.168.31.7:8123) |
api | Canonical home instance since the 2026-07-22 cutover (see Incident log). HAOS has no SSH access, so there is no docker exec/filesystem path — only the HA REST/websocket API is reachable. Full /config import is deferred until an alternative access path exists; for now the api adapter's import scope is limited to what the API exposes: automations, scripts, scenes, dashboards. |
ken-legacy (piha, container homeassistant5) |
docker-exec over SSH (archive-only) | Pre-migration container instance, superseded by ken at 31.7 (see Incident log) — same container filesystem access as the old ken entry (ssh oskar@piha "docker exec homeassistant5 ..."). Import only, for historical reference; never a deploy target. |
chelsty-ha |
api | Reachable over Tailscale at 100.70.180.90:8123 (confirmed working path — services/ha-diag-agent/DEPLOY.md already curls this for health checks). Config-as-code deploy will reuse the same reachability, calling the HA REST/websocket API rather than shelling into the container. |
Open: a file adapter (direct bind-mount / SSH rsync to the config
directory, bypassing docker exec) is worth revisiting once SSH access to
the chelsty-ha VM itself is verified — see Open questions.
Sync model: bidirectional, asymmetric safety
- Deploy (repo → instance): hard drift-abort. Before writing, the
adapter re-imports the instance's current state and diffs it against the
last-known-imported snapshot committed in the repo. Any unexpected
difference aborts the deploy with a non-zero exit and a diff printed —
never silently overwrites live drift. This applies unconditionally on
PIHA (
ken); untested/undecided whether it should be relaxed forchelsty-hagiven its intermittent LTE uplink (see Open questions). - Import (instance → repo): the reverse direction is intentionally
permissive. Running
import.sh <instance>on a dev workstation pulls current state and, if it differs from the last commit, the operator commits it under a conventional message:drift(<instance>): <summary>. This is how out-of-band UI changes (made directly in the HA web UI) get captured back into git history instead of being silently overwritten by the next deploy.
Validation gate
check_config (HA's built-in config validator, invoked via the running
container/instance — docker exec homeassistant5 python -m homeassistant --script check_config -c /config or the equivalent over the api adapter)
is a mandatory gate before any deploy. A failing check_config blocks the
deploy entirely; it is not a warning.
Change classification: reload vs. restart
Deploys default to the least disruptive mechanism:
- reload — default for anything HA exposes a reload service for
(automations, scripts, scenes, input_* helpers, template entities, etc.)
via
homeassistant.reload_config_entry/ domain-specific*.reloadservices. - restart — only when the changed file requires it (e.g.
configuration.yamlcore changes, new integrations,.storageregistry edits) and only when the deploy is invoked with an explicit--restartflag. No implicit restarts, ever — an unattended restart onchelsty-haduring a period of LTE unavailability would leave the site without automation until someone is physically present.
Split + normalization
On import, list-of-object YAML files are split one-object-per-file so diffs stay scoped to what actually changed:
automations.yaml→config/<instance>/automations/<id>.yamlscripts.yaml→config/<instance>/scripts/<key>.yamlscenes.yaml→config/<instance>/scenes/<id>.yaml
Every other *.yaml file under /config is copied through the normalizer
1:1 (same relative path, same filename). Non-YAML files under /config
(binaries, databases, secrets.yaml, logs — see .gitignore) are never
copied into the repo.
Tokens
- A dedicated
deploy_agentHA user account (admin rights, local-only — never exposed through the public API/ingress) is created per instance, mirroring the existingdiag_agentaccount pattern documented inservices/ha-diag-agent/DEPLOY.md. Reusingdiag_agentis explicitly rejected — deploy tooling and the diagnostic agent must be revocable independently. - Long-lived access tokens for
deploy_agentlive at~/.config/ha-deploy/<instance>.tokenon PIHA (the control node where import/deploy tooling runs),chmod 600. - Tokens are never committed to the repo, never templated into
env.example-style files, and never logged. Import scripts that need a token to hit/api/statesfail soft (skip the fixtures step with a message) if the token file is absent, rather than aborting the whole import — seescripts/ha/import.sh.
Interface
- Phase 0/1: Claude Code is the interface, with the operator's mobile CC client acting as the bridge for approvals made away from a desk.
- Phase 3 (agents): Telegram joins CC as a first-class interface, reusing
the existing Telegram bot / approval-queue pattern from
services/control-plane/.
Decyzje operatora po audycie 2026-07-23
Zobacz docs/audyt-automatyzacji-2026-07-23.md (sekcja "Do decyzji operatora",
17 punktów) — poniżej wyłącznie decyzje, które doprowadziły do zmian w
fix-pack 1 (task/ha-fix-pack-1) albo świadomie do braku zmian. Reszta
checklisty (baterie/re-pairing czujników, kalibracje TRV, xiaomi_miot,
konsolidacja aliasów, higiena 4.x) zostaje otwarta w docs/backlog.md.
- Pkt 6 (klima salon: sunset ubija też ręczne chłodzenie?) — decyzja:
NIE. „Klima salon: wyłącz…" (
1784804668795) ma teraz respektowaćinput_boolean.klima_salon_auto— gałąź sunset/balkon działa tylko gdyklima_salon_auto = on(automat wyłącza tylko chłodzenie, którym sam zarządza). Wyjątek świadomy: trigger „klima_salon_autoprzechodzi woff" nadal odpala suszenie parownika bez tego warunku (choosez osobną gałęzią) — to jest graceful shutdown samego automatu, nie efekt trybu auto, więc warunekauto = onby go zawsze ucinał (przełącznik właśnie zgasł). Zweryfikowano na żywymken: helpery klimy (klima_salon_auto,_temp_docelowa,_tolerancja) istnieją (pkt 5 checklisty — obawa o martwe helpery z 1.1 nieaktualna). - Pkt 7 (enforcer sleep mode gasi światła cyklicznie całą noc) i pkt 9
(konsolidacja czterech nocnych wyłączników) — bez zmian w tym fix-packu.
Oba wchłania przyszły projekt „architektura night_mode" (patrz
docs/backlog.md) — punktowa łatka tu tylko dodałaby kolejny wariant do już przegęszczonego zestawu nakładających się automatyzacji (audyt 2.2). - Pkt 11 (OwnTracks: przywrócić czy skasować) i pkt 12 (Leave auto on: batch 02 — włączyć z powrotem?) — świadomie bez zmian; obie wymagają decyzji operatora spoza zakresu tego fix-packu (integracja/urlop), nie jednoliniowej poprawki.
- On-leave alerty ruchu (1.2a) — świadomie bez zmian: martwe przez
sprzęt (czujniki
unavailable, pkt 1 checklisty), nie przez logikę automatyzacji; poprawka logiki niczego by nie naprawiła bez wymiany baterii/re-pairingu.
Zaimplementowane w tym fix-packu (bez decyzji operatora — jednoliniowe poprawki oczywistych bugów, audyt 2.6 i 2.3):
1752086407230„dry in Kuchnia": triggermoist→not_moist.1752085965483„dry in Lazienka": literówkamesaage→message.1700832676138„…at 3am":time_pattern hours: '3'→ punktowy triggertime: 03:00:00(było 60 odpaleń/noc, teraz 1).- Pkt 8 (
1764190493305„after 15 minutes anyway" ma respektować ręczne „Disable AUTO off"?) — TAK: dodany warunekstate: automation. turn_off_lights_in_kuchania = on(double-click wyłącza tę automatyzację; „anyway" teraz cofa się przed tym stanem zamiast go unieważniać po 15 min).
Konwencje automatyzacji
Ustalone po audycie 2026-07-23 (docs/audyt-automatyzacji-2026-07-23.md, sekcja 6
"Spójność stylistyczna", pkt 17 checklisty operatora — decyzja: TAK). Obowiązuje dla
nowych automatyzacji od teraz; istniejące nie są migrowane hurtowo (patrz
sekcja 4.1 audytu — konsolidacja/rename entity_id wymaga osobnej mapy referencji
krzyżowych, to osobny task, nie efekt uboczny porządków).
entity_id, nie device automations.device_id/encja-UID (32-znakowy hex) są nieczytelne w YAML-u i kruche przy wymianie sprzętu — nowe urządzenie generuje nowydevice_id, a automatyzacja umiera po cichu (dokładnie ten mechanizm ubił parę Tymka i ukrył renameoccusalon, patrz audyt 4.1). Nowe automatyzacje używająaction:/trigger:/condition:zentity_id:jawnym.- Alias po polsku, z prefiksem funkcjonalnym. Format
"<Funkcja>: <opis>", np."Klima salon: włącz chłodzenie i synchronizuj cel","Pimirror: graceful shutdown przed odcięciem zasilania". Jeden język w aliasie (nie mieszanka PL/EN jak w automatyzacjach z audytu 6). description:zawieramanaged-by: repo. Odróżnia automatyzacje autorskie repo od tych z UI/migracji; przy okazji miejsce na kontekst (skąd odtworzone, jakie encje zaadaptowano — patrz przykład1785164185794.yaml).
Open questions
- What actually drives the phase-3 operational agent (a new agent process
vs. extending an existing one in
services/)? Own minimal MCP server vs. adopting— decided 2026-07-30: own minimal server (hass-mcpfor phase 2 read-only accessservices/ha-mcp/). Reusingscripts/ha/lib/{ha_api,ha_ws}.pykeeps one token-handling and one read-only-by-construction story for the whole HA toolchain, and lets the tools answer from the repo (read_automation) and frominstances.yaml(offlinechelsty-ha) — neither of which a generic server knows about.- Whether SSH access to
chelsty-haitself (not just its HA API) is available/reliable enough to justify afileadapter there, which would let phase-1 tooling treatchelsty-hamore likekenfor drift-checking purposes.