# Config compatibility registry House Plan accepts some fields that are no longer written by the current UI. They are not all equivalent: some preserve an old visual exactly, some are losslessly migrated on an explicit edit, some are immediately discarded by backend validation, and a small number still need a product decision. The machine-readable source of truth is `scripts/config-field-registry.mjs`. Every entry records: - persisted path and type; - inheritance level and default; - whether the current UI exposes it; - the runtime consumer (or the fact that no supported consumer was found); - migration behaviour; - the read-compatibility decision. This registry initially covers the known compatibility and internal-field debt identified by HP-DATA-01. It is not yet the complete canonical schema. The next stage is to register all current public fields and add automated parity against the TypeScript model and backend Voluptuous validation. ## Offline inventory Exported JSON can be inspected without uploading it or changing it: ```bash npm run audit:config -- path/to/houseplan-config.json npm run audit:config -- --json path/to/houseplan-config.json > findings.json ``` The auditor accepts either the config object itself or an export wrapper with a top-level `config` object. It reports only fields known to the registry, shows at most three example paths in human-readable mode and always exits read-only. With no file it prints the current registry. ## Status meanings | Status | Meaning | |---|---| | `decision-required` | Preserve the field until its supported UI/runtime fate is explicitly decided | | `deprecated-read` | Current writes use another representation; reads preserve old data/visuals | | `migrate-on-write` | A lossless current representation is materialised during the documented write path | | `migrate-on-settings-save` | Removed from current settings semantics and dropped only when those settings are explicitly saved | | `drop-on-validation` | A stale client may submit it, but backend validation removes it safely | Unknown future fields remain outside this report and continue to follow the backend's forward-compatibility policy. Absence from the report is therefore not permission to delete a field. ## Canonical geometry on write (#224) Config and layout schemas canonicalize only named geometry numbers to nine decimal places. The common storage helpers repeat the same idempotent contract for internal writers, while the frontend adopts the exact candidate it sends. This prevents ULP noise without changing the schema, JSON number type, model/store version or any user-visible placement. The operation is lossless at the product scale and intentionally narrow. `view_box`, `cell_cm`, `plan_aspect`, physical centimetre values, presentation settings, colours, opacity/brightness/temperature, vacuum calibration and unknown/future numeric fields retain their exact input values. No recursive “round every number” migration is allowed. Existing stores remain byte-for-byte untouched on read. Their geometry becomes canonical on the next config/layout write; Optimize Plans is the immediate bulk path. Optimize/Import/repair Undo restores the previous semantic geometry and unknown fields in canonical representation, not the invisible noisy IEEE-754 tail. A repeated canonical Save with the current revision is a no-op and does not invalidate the one-deep maintenance backup. ## Open-passage opening type (#157) `space.openings[].type` additionally accepts the literal `passage`. Its canonical record contains only `id`, `type`, `x`, `y`, `angle`, `length` and unknown extension siblings. The door-only keys `contact`, `lock`, `invert`, `flip_h` and `flip_v` are inapplicable; their presence is invalid even when the value is `null` or `false`. New/changed records and every full/space import are validated fail-closed with `invalid_passage_fields`. An already stored broken passage may survive an unrelated write unchanged so legacy data cannot lock the whole plan; removing bad keys is allowed, while adding or changing one is rejected. An explicit UI save of a passage deletes all five known keys and preserves unknown siblings. Stale binding values remain inert at runtime and create no entity subscription. Older v1.64.x frontends do not know the literal. Downgrade is read-only best-effort: do not edit an open passage with an old frontend, because its fallback may show or rewrite it as a door. Before a permanent rollback, convert saved passages deliberately in a current version; automatic conversion is not performed because it would invent a leaf and binding semantics. ## Independent-wall opening host (#132) `space.openings[].host` is an optional discriminated object `{kind:'partition', id:string, t:number}`. Its absence preserves the historical room-wall association. When present, the referenced partition in the same space and normalized `t` are authoritative; the legacy `x/y/angle` siblings remain a materialized compatibility projection for older readers. Full export, plan-only export, merge and optimization preserve the host object. Current writes validate the reference, fit and non-overlap. They also reject a stale writer that keeps an existing opening but silently drops its host; this prevents a downgrade from converting it into a nearby room-wall opening. Old frontends may display only the materialized projection, so opening or editing a hosted opening with an old bundle is unsupported. A missing/invalid host is not re-associated automatically: current renderers fail dark and Plan offers an explicit rebind. New hosted openings and direct changes to `host.id`, `host.t`, `length`, host span or host thickness reserve a jamb at both endpoints equal to half the actual partition thickness. This is semantic delta validation, not a schema or migration: an unchanged legacy near-end opening, an unrelated edit and a rigid translation of its host remain valid and are never silently clamped. Full backup restore intentionally uses the structural zero-margin fit boundary even without a trusted previous config, so older backups remain restorable; the next direct geometry edit must satisfy the current jamb rule. ## Four-phase background default and transfer (#146) The schema remains `settings.bg_mode: static | daynight` globally and per space; absence is still accepted for older files and the runtime's final fallback remains `static`. New semantics are materialized instead of changing that fallback: - new integration config uses explicit global `daynight`; - manual and Floors/Areas space creation writes explicit per-space `daynight`; - storage minor v1.2 migrates a missing or invalid legacy global token to `static` once, while preserving valid global/per-space values, unknown siblings, revisions, and the other stores; - full export/import always carries an explicit global mode, with legacy missing mode becoming `static` before preview/apply; - a space export copies its effective mode into the exported space; a legacy space import without a mode becomes `static` before merge, regardless of the target installation's global setting. Import preview and apply therefore operate on the same normalized candidate. Explicit `static` and `daynight` survive same-instance and foreign transfer. ## Additive plan-only space transfer (#167) `houseplan/export/create` accepts `plan_only: true` only for a one-space export. The resulting version-1 envelope adds `transfer.plan_only: true`, contains no markers and retains only canonical `rl_` room-label layout. Normal full/space exports never write `plan_only: false`, so their existing document shape and lossless compatibility remain unchanged; an absent field still means an ordinary export. Plan-only data is a fail-closed allowlist projection of supported geometry, presentation and content references. Known Area, temperature/humidity, opening and decor bindings are removed and recognized live-text references are frozen as `—`. Import rejects a true flag on a full export, non-boolean values, or any document whose projected config, layout, placement or content owner no longer satisfies that privacy contract. There is no persisted config/layout migration: the new field exists only in the portable envelope. ## Legacy device tap action The historical marker token `tap_action: cover` remains accepted indefinitely. It is projected in the current UI as the universal **Toggle state** action and keeps cover-first target priority at runtime. Merely opening and saving an unrelated marker field preserves the literal `cover` token; once the user edits the action selector, the current canonical `toggle` token is written. The UI never creates new `cover` values. Unknown or unavailable cover capabilities remain a safe no-op and are never replaced by a guessed service call. The universal `toggle` resolver uses the current HA registry as its capability boundary. A disabled, orphaned or not-yet-verified device target is therefore a visible/explained safe no-op; it is not silently retargeted to a sibling entity and does not fall back to opening the info card. Entity bindings that still have a live, enabled service target may continue to work while registry metadata is refreshing. Persisted actions are preserved in both cases so a temporarily unavailable binding recovers without a config rewrite. ## Independent Glow compatibility The historical space and room token `fill_mode: glow` remains accepted on read indefinitely. Runtime projects it into an ordinary inherited data fill plus an enabled Glow overlay; explicit `glow_enabled` / room `glow` booleans always win. A normal edit that replaces the legacy token writes the resolved boolean in the same operation. Optimize Plans applies the same lossless, idempotent model-v6 migration while preserving unknown sibling settings. Current `fill_mode` additionally accepts `custom`. Its optional color is stored as `{c:'#RRGGBB',a:0..1}` in `space.settings.custom_fill` and, for an explicit room override, `room.settings.custom_fill`. Missing or invalid historical data is projected at render time through room → space → `#607d8b`/`0.18`; merely reading it never rewrites the config. Backend writes keep the strict shared hex/finite-alpha contract. An explicit `null` is accepted at either level and has the same projection semantics as a missing override. The current space editor presents `custom` as the ordinary/default room fill instead of offering a separate `none` choice. A historical space-level `none` is still rendered losslessly until edited, then the dialog projects it to `custom` with the existing/default color at zero opacity and materializes that visually equivalent choice on Save. Newly created spaces use the same zero-opacity custom value, so the UI change does not introduce a visible floor or remove the Glow base by default. A zero-opacity resolved fill still receives the Glow base. `none` remains accepted by the model and exposed at room level, where it is still required to suppress an inherited LQI/light/temperature/custom fill for one room. ## Per-marker light role and Glow appearance `marker.is_light` is tri-state. Missing/null means automatic device-role discovery, `true` forces the marker's own controllable entity to be a spatial source, and `false` suppresses that own source. External `controls` are not suppressed: they continue to contribute to room light state and counts without placing a Glow pool at the controller. This intentionally changes the read semantics of hand-written legacy `is_light: false`: older frontends treated it like Auto, while current frontends treat it as Never. The historical writer only emitted `true` or `null`, so ordinary UI-authored configs are unaffected. `marker.glow_color` is optional and strict: `{c:'#RRGGBB'}` fixes colour while keeping live brightness; `{c:'#RRGGBB',bri:0.01..1}` fixes both. Missing/null uses the live source. Invalid objects fall back atomically to live values and never partially reach SVG. `{c,bri:null}` is accepted for compatibility, projects like `{c}`, and is canonicalised to `{c}` by the next marker save. Older frontends ignore this field at render time and may erase it when they rebuild the same marker after a downgrade; this limitation cannot be repaired retroactively. `marker.light_entity` optionally stores the leading `light.*`/`switch.*` for an Always source with several controllable entities. It is copied literally by full and space transfer: entity ids are instance-specific and are never remapped. Missing/invalid selections remain stored, produce a dialog warning and temporarily fall back to the normal deterministic selection; merely opening or saving another field does not erase them. Older frontends ignore the unknown field and may erase it only if they reconstruct that marker. `marker.toggle_entity` optionally stores the exact own `light.*`/`switch.*` operated by Toggle. Absence/null keeps the historical single-target resolver and external-only controls groups bit-for-bit. A present active choice is exact: temporary missing/unavailable/secure state never retargets it to a sibling. A choice no longer belonging to the marker remains stored, warns in the dialog and temporarily uses the historical fallback. New/changed values are domain-bounded by lossless delta validation; an untouched future literal can round-trip. Full and space transfer copy the entity id literally, while a duplicate marker virtualised during space import drops the HA-dependent field. Older frontends ignore it and may erase it if they reconstruct the marker. `light_entity`, `toggle_entity` and `tap_target` are independent. `marker.controls[]` additionally accepts `marker:` links to forced plan sources. Runtime and old frontends continue to filter those strings out of HA service calls. New writes validate target existence, forced-source role, self-reference, duplicates and cycles; an already stored broken legacy link is allowed to round-trip so unrelated edits cannot lock the plan. Deleting or rebinding a target removes or rewrites references atomically. A space export remaps links whose two ends are inside the exported space and reports/drops links leaving it; full export preserves them literally. `marker.value_badge` is an optional explicit value satellite. Its absence is the legacy compatibility state: the historical temperature/humidity heuristic and global `show_temperature` gate remain in force. An explicit `{enabled:false,...}` suppresses that heuristic; an enabled badge stores one discriminated source and one of four stable positions. Unknown sibling keys in the badge and source objects are preserved. New/changed records are validated, while an untouched old broken source remains readable and round-trippable. `derived_marker_state.ref` uses the same `marker:` namespace as controls: space transfer remaps an internal target and disables/counts a link whose target is outside the transfer. Older clients ignore the field and may erase it if they reconstruct the same marker after a downgrade. ## Persistent manual virtual-light state The exact `virtual` + `is_light:true` + `tap_action:toggle` combination has a shared operational on/off state. It is not a Marker/ServerConfig field: the integration stores `{rev, config_rev, off[]}` under a separate versioned Store key and exposes an optional `virtual_lights` snapshot in `houseplan/config/get`. It is excluded from layout, full/space export, import and HA entities. Missing Store data or a missing wire field projects to `on`. Compatibility matrix: | Frontend | Backend | Behaviour | |---|---|---| | old | new | Extra snapshot/event are ignored; the marker keeps historical #84/#94 behaviour and config remains intact | | new | old | Missing snapshot starts `on`; an unsupported toggle command reports an error and creates no optimistic local state | | new | new | Server snapshot is authoritative; revisioned events synchronize full and static cards | Every current config writer reconciles the Store. Rename, move, hide and unrelated edits preserve off bits for still-eligible stable marker ids; binding/role/action changes, tombstones and deletion prune them. Re-entering the triple therefore starts on. If `config_rev` skips the revision recorded by the operational Store — for example after downgrade, an old writer or an interrupted pair — all off bits are cleared rather than resurrected against unknown marker lifecycle history. Older integrations safely ignore the separate Store on downgrade.