Three remaining wall affordances ported into nodes/src/wall/ as
direct copies of the legacy implementations. Wall D is now complete.
- move-endpoint-tool.tsx (426 LoC) — linked-wall corner cascade +
Alt-detach + angle label. Mounted via `affordanceTools.move-endpoint`.
- move-tool.tsx (804 LoC, the most complex tool in the editor) —
center-drag with axis lock, linked-wall corner cascade via
`planWallMoveJunctions`, bridge wall ghost previews, auto-slab
live preview via `planAutoSlabsForLevel`, R/T rotation in 45°
steps, Shift to bypass grid snap, isNew metadata strip on first
commit. Mounted via `affordanceTools.move`.
- tool.tsx (332 LoC) — two-click placement with length/angle HUD,
Shift to bypass angle snap. Mounted via `def.tool`.
Editor public surface gains:
- createWallOnCurrentLevel, snapWallDraftPoint, WallPlanPoint
- MovingWallEndpoint type
ToolManager dispatch for `movingWallEndpoint` routes through the
registry with the legacy fallback (same shape as the fence
move-endpoint dispatch).
Wall is now A ✅ C ✅ D ✅. Stage B still pending (geometry depends on
level-batch miter data, blocked on `ctx.levelData` design decision).
Stage E pending (drop WallPanel — has slider drags + actions).
Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>
User pointed at the palette's PNG icons in the bottom toolbar — they
expected the inspector title to use the same artwork, not the iconify
lucide glyphs. Different visual style.
- IconRef gains `{ kind: 'url'; src: string }`. Plain `<img>` render
in ParametricInspector (no next/image — the inspector is
`'use client'`).
- All currently-registered kinds switched to URL refs matching their
palette `iconSrc`:
fence → /icons/fence.png
slab → /icons/floor.png
ceiling → /icons/ceiling.png
wall → /icons/wall.png
spawn → /icons/site.png
shelf → /icons/column.png (placeholder, same as palette)
- Kind-owned panels (slab/ceiling) already pass URL strings to their
own PanelWrapper; unchanged.
Door/window/item will get URL refs when they register at Stage A.
Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>
Each tool is now a direct copy of the legacy implementation, relocated
under @pascal-app/nodes/<kind>/ and dispatched via the registry's
def.affordanceTools. No DragAction abstraction, no clever live-drag
exception, no novel snap pipeline — same code, same UX, same
performance, same history dance.
Ports:
- fence/curve-tool.tsx (legacy CurveFenceTool, 1:1)
- fence/move-tool.tsx (legacy MoveFenceTool, 1:1 — including
the mesh.position + useLiveTransforms
exception that the legacy uses for fence
specifically)
- wall/curve-tool.tsx (legacy CurveWallTool, 1:1)
- slab/move-tool.tsx (legacy MoveSlabTool, 1:1)
- ceiling/move-tool.tsx (legacy MoveCeilingTool, 1:1 — preview
fill + outline overlay preserved)
Drops the obsolete DragAction-based action files
(packages/nodes/src/{fence,wall,slab,ceiling}/actions/{curve,move}.ts)
and their now-empty actions/ directories where applicable. Fence
keeps actions/move-endpoint.ts since that port works.
Editor public surface gains `getWallGridStep` + `snapScalarToGrid`
(transitional exports — Stage F moves them into @pascal-app/nodes).
ToolManager + MoveTool dispatch unchanged: the same legacy-fallback
branches now mount the registry component because the affordances are
declared, but the rendered behavior matches the legacy because the
implementations are copies.
Per-kind progress: fence D ✅ (curve / move-endpoint / move / placement
all kind-owned), slab D ✅, ceiling D ✅, wall D 🟡 (curve only,
endpoint/move/placement still legacy).
Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>
User-reported regressions made it clear that my D-ports of the curve
and whole-item move tools introduced more friction than they removed.
The legacy CurveFenceTool / CurveWallTool / MoveFenceTool /
MoveSlabTool / MoveCeilingTool ship more polish than the new ports do
right now:
- Legacy curve tools pre-snap the pointer position to the 0.5m grid
BEFORE projecting onto the chord normal, and they Shift-toggle to
a free-place mode. The ports skipped both — finer math, but the
user-visible UX regressed (laggy because the cascade resolver fires
per move, history feels broken near the no-op threshold).
- Legacy whole-item moves use scene.update per tick which keeps
hosted children visually aligned. The live-drag mesh.position port
cleared the offset before the GeometrySystem could rebuild,
producing a one-frame teleport on commit.
Drop the affordance registrations for those tools — the ToolManager /
MoveTool dispatch falls back to the legacy per-kind tools when the
registry doesn't declare the affordance. Stage D progress preserved
for: fence move-endpoint (linked cascade + alt-detach), slab/ceiling
boundary + hole editors, fence placement, slab placement, ceiling
placement.
The kind-owned files (curve-tool.tsx, move-tool.tsx, actions/curve.ts,
actions/move.ts) stay on disk for the next iteration — when they
reach parity with legacy UX, re-add the affordance entries.
Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>
Direct copy of the fence curve recipe — pure
`curveWallDragAction` (chord-perpendicular projection + clamp +
normalize + single-undo dance) plus a thin wrapper feeding
`useDragAction`. Mounted via `def.affordanceTools.curve`.
Slight precision difference vs legacy: the legacy CurveWallTool snapped
the pointer position to `getWallGridStep()` before projecting onto the
chord normal; the ported action skips that pre-snap and relies on
`normalizeWallCurveOffset` to settle the final value. The user-visible
result is the same magnitude of step, just with the snap applied at
the offset level instead of the position level.
Remaining wall D affordances (endpoint move, whole-wall move,
placement) are larger and queued for future sessions — wall's move
tool alone is 804 LoC with the linked-wall corner-cascade logic.
Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>
Three remaining kinds at Stage C this session:
wall → C
- buildWallFloorplan: uses ctx.siblings to gather other walls in the
level, runs calculateLevelMiters, computes plan footprint via
getWallPlanFootprint. Same visual output as legacy.
- getFloorplanWall thickness exaggeration inlined (~25 lines from
editor/lib/floorplan/walls.ts) to keep nodes/wall self-contained.
- floorplan-panel.tsx's wallPolygons short-circuits to [] when wall
is registered.
- Performance note: recomputes level miter data per wall (O(N²) for N
walls in a level). Acceptable for typical scenes; ctx.levelData?.
miters optimization deferred to Stage B's wall design pass.
door → C
- buildDoorFloorplan: inlines getOpeningFootprint math from
floorplan-panel.tsx (40 lines, pure math). Uses ctx.parent as the
wall to compute direction + perpendicular for the cutout footprint.
- Returns null when parent isn't a wall (orphaned doors during
placement).
window → C
- buildWindowFloorplan: same shape as door, glass-blue tint to
distinguish visually.
Both share the legacy openingsPolygons gating:
- floorplan-panel.tsx's openingsPolygons useMemo filters per kind so
a partial migration still works (e.g., if only door registers, only
doors get skipped). When both registered, returns [] entirely.
Item C intentionally deferred — needs parent-chain transform helpers
(buildFloorplanItemEntry / getItemFloorplanTransform from editor/lib/
floorplan/items.ts) exposed publicly or moved into core. A focused
session is the right place to design that boundary.
Stage B for door / window / wall still pending — each is a focused
session per kind (large geometry math extractions, wall needs ctx.
levelData design).
Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>
Brings the wall kind onto the registry path when
NEXT_PUBLIC_USE_REGISTRY_FOR_WALL=true; default-off keeps wall on its
legacy path unchanged.
Files added:
- nodes/src/wall/renderer.tsx — thin placeholder-mesh mount point.
Identical pattern to the legacy WallRenderer: registers ref via
useRegistry, marks dirty on mount, renders hosted children
recursively via NodeRenderer. The legacy WallSystem fills geometry
on the next frame regardless of which mount path is active.
- nodes/src/wall/system.tsx — a bundle component that renders
<WallSystem /> + <WallCutout /> (both re-exported from viewer).
Registered via def.system with priority 4 to mirror the legacy
WallSystem's useFrame priority. Zero logic duplication — the
~970 lines of CSG/mitering/cutaway code stays in viewer.
Files changed:
- packages/viewer/src/index.ts — new exports for WallSystem, WallCutout,
and NodeRenderer. The first two so the registry-driven system bundle
can compose them; NodeRenderer so any parent kind (wall, slab,
ceiling, building) can recursively render hosted children without
reaching into viewer internals.
- nodes/src/wall/definition.ts — adds renderer + system fields. Tool
field stays absent (wall placement / endpoint drag remain bespoke
for now; the affordance port is a later milestone).
- nodes/src/index.ts — conditionally appends wallDefinition to
builtinPlugin.nodes based on isWallRegistryEnabled(). With the flag
off, the array is identical to before this commit; with it on,
Phase 0 dispatch shims switch wall to the registry path:
* <LegacySystem kind="wall"> around WallSystem returns null
* <LegacySystem kind="wall"> around WallCutout returns null
* <NodeRenderer> takes the registry-first branch and mounts the
new renderer instead of the legacy switch case for 'wall'
* RegisteredSystems mounts the new system bundle, which re-mounts
the same WallSystem + WallCutout components from viewer
No behavior change with the flag off. With the flag on, behavior should
be byte-identical (same components, same priority, same geometry path).
Manual verification next: place walls, t-junctions, walls-with-doors
with the flag toggled both ways; confirm visual + interactive parity.
Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>
Lays down the wall folder under @pascal-app/nodes with everything needed
to register the kind, but intentionally without runtime wiring:
- schema.ts re-exports WallNode from core (door/window/item still type
their parentId against WallNode.shape.id, so the schema stays canonical
there for now).
- parametrics.ts declares thickness / height / curveOffset for the Phase 4
inspector. Endpoints and host children are edited via affordances, not
number inputs, so they're not in parametrics.
- definition.ts encodes capabilities (surfaces, selectable, duplicable,
deletable — no movable since wall's move is bespoke endpoint-drag),
relations (hosts doors/windows/items, affectsSpatial slabs/ceilings/
zones, linkedBy endpoint-match, cascadeDelete descendants), and the
presentation metadata for the palette. Renderer / system / tool fields
are deliberately absent — the existing wall-renderer.tsx and
wall-system.tsx keep serving wall until milestone B.
- feature-flag.ts gates the eventual registration via
NEXT_PUBLIC_USE_REGISTRY_FOR_WALL (same pattern Phase 2 used for spawn).
- wallDefinition is NOT yet appended to builtinPlugin.nodes — registration
is what flips the Phase 0 dispatch shims, and we don't want that until
the runtime port lands. Until then this file is metadata-only.
Two type-side changes pulled forward from Phase 4 to make a metadata-only
definition compile:
- NodeDefinition.renderer becomes optional (the three-checkbox model
documented in wiki/architecture/node-definitions.md already promises
this). RegistryRenderer in node-renderer.tsx gains a null-guard so an
undefined renderer cleanly falls through to the legacy switch.
No runtime behavior change. Walls render and behave exactly as before.
Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>