The bundled ceiling-fan model.glb was stale (no animation clip, two slots).
Replace it with the variant matching production storage: an `On` animation
clip and a third `slot_base` paint slot. Same dimensions/offset, so no catalog
metadata change.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
`poseDoorMovingParts` assigned a single euler axis (`group.rotation.y` /
`.x`). The live system was fine because the group's euler stays a clean
(0, y, 0). But the GLB exporter clones the door and decomposes its matrix,
which re-derives a gimbal-flipped euler (x=z=π) for any rotation beyond
±90° — folding panels reach ~158°. The reset to t=0 then only zeroed `.y`,
leaving the π residue on x/z and baking a 180°-flipped rest pose (panels
folded out toward a wrong position even when closed).
Set the full euler triple via `.set()` in every pose branch so the other
two axes are always zeroed, clearing any decomposed residue. Add a
regression test that exports an open folding door and asserts an identity
rest pose for all panels.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Two issues surfaced testing the baked viewer:
- Folding door folded toward +z (into the room) — the joint rotation sign
was inverted, so the accordion opened the wrong way ("weird position").
Flip to `(prevDirection - direction) * foldAngle` so leaves fold toward
−z, matching the original inline rig. Verified panel-for-panel against the
original formula at every operationState.
- Openable clips were named by display name (`<name>: open`), but the baked
viewer drives playback by clip name (`useAnimations` maps name → action).
Several windows share the name "Window 1", so their clips collapsed to one
action and triggering any one opened the first. Key the clip name by node
id (`<id>: open`) — unique, matching the item-loop convention; the
human-readable name still lives in `extras.label`.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Only swing doors (hinged/double/french) baked an open clip into the GLB —
they carry a `pascalSwingLeaf` marker the exporter reads. Every operation
door type (sliding, pocket, barn, folding, garage-sectional/rollup/tiltup)
baked its `operationState` straight into mesh vertex positions at build
time, so the exporter had no re-poseable node to sample and the artifact
never flagged them `openable`.
Give operation doors the same build-once + pose-at-t split windows already
use. Each builder now emits its moving parts in a named group at the CLOSED
pose, and `poseDoorMovingParts` (the single source of truth, shared by the
live system and the GLB exporter) drives the open motion:
- sliding/pocket/barn: rigid leaf translation
- garage-tiltup: rigid hinge about the lintel
- folding: hinged accordion chain (nested groups, per-joint fold)
- garage-sectional: per-panel groups posed along the overhead curve
- garage-rollup: the one type whose live geometry changes (slats roll onto
a drum, which a glTF clip can't express) keeps its full-detail live
rebuild; the curtain is wrapped in a top-pivoted group the exporter
scales up into the lintel as the baked approximation.
The exporter samples each operation door's motion into keyframe tracks
(16 segments) so the non-linear rigs (curve, accordion) stay faithful, and
stamps `extras.openable` + `extras.clips` so any glTF consumer can play it.
Tests: per-type kinematics (groups build, rest closed, open) +
sliding/roll-up clip baking (sampled position/scale tracks).
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Baking some projects failed with "Cannot read properties of undefined (reading
'isShaderMaterial')". GLTFExporter reads material.isShaderMaterial unconditionally,
so a renderable (Mesh / Line / Points) with no material crashes the export — and a
non-Mesh renderable slips past both the isMesh prune check and material conversion.
Guard it in pruneNonRenderableMeshes: a material-less renderable is dropped if it's
a leaf, or neutralised (empty geometry + a hidden placeholder material) if it has
children so its subtree survives. Post-FX disable now lets these scenes reach the
exporter, which is why it surfaced.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Main's biome config flags a callback returning a value; the ternary in the
zone-shape forEach implicitly returned moveTo/lineTo. Use a block body.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Scans (LiDAR meshes) and guides (floorplan images) are heavy reference assets
stored elsewhere, not part of the compiled building — and baking them into a
public static GLB would also bypass the per-project show_*_public flags. Strip
both from the export entirely (previously they leaked in as empty identity
nodes, timing-dependent).
The GLB viewer re-adds them at runtime from the scene graph, like lights:
GlbReferenceNodes resolves each scan/guide's registry renderer (no static nodes
import — same nodeRegistry path the viewer already uses) and portals it into its
parent level's baked node, so the node's level-local transform resolves to the
right world pose and rides level stacking. Uses the same GuideRenderer/
ScanRenderer + asset resolver as the parametric viewer, so http-backed assets
show for everyone and local asset:// ones for the owner — exact parity.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Toggling pointLight.visible changes the active-light count, which makes the
WebGPU renderer rebuild every material's lighting node + pipeline — a multi-
hundred-ms stall. The pool reassigns on every camera move, so zooming churned
visibility and tanked FPS. Keep all 12 pool lights permanently visible and
animate only intensity (an idle light lerps to 0); the light-set never changes,
so no recompiles. Also make reassignment O(n) (score lookup map, not find).
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Match the parametric ItemLightSystem instead of mounting a light per item:
a fixed pool of point lights is assigned to the nearest/most-visible lit
items each tick (camera-proximity scored, hysteresis, level factor), snapped
to each item's world position + offset, and faded on reassignment — so a large
house doesn't blow the renderer's light budget. The controls overlay already
mounts its <Html> only while the item sits in the focused zone (not hide/show);
add stopPropagation on the overlay so toggling a control no longer bubbles to
the canvas and deselects the zone.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
A catalog GLB ships its own animation clips (a ceiling fan's spin), but those
clips aren't in the editor scene graph, so the bake couldn't see them. Add an
`itemClipRegistry` (core, type-only three) that the item renderer fills with the
resolved clip per node while the scene is live; the GLB export reads it and
re-emits each item's clip onto the baked subtree, rebinding tracks to the cloned
spinning node's uuid. Catalog node names repeat across instances and the glTF
roundtrip rebinds by name, so the targeted node is uniquified per item
(`<id>__lamp_018`) — every fan animates independently.
The baked viewer plays these as looping ambient motion: `<id>: loop` clips are
set to LoopRepeat (not the door/window LoopOnce) and GlbItemAnimation drives
them off each item's toggle (lit/spinning by default).
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Add a GLB interactive layer (`GlbInteractive`) that re-creates the item
interactivity the parametric viewer has — point lights and the controls
overlay — on top of a baked artifact. Effects + controls come from the
DB scene graph (joined to baked nodes by `pascalId`, no sidecar); world
transforms come from the baked Object3Ds. Lights are portaled into their
item node so they ride level stacking, and intensity tracks the shared
`useInteractive` store so overlay dimming works. Baked scenes load "lit"
(toggles default on) for a showcase viewer feel.
Extract `ControlWidget` into its own module so the parametric
`InteractiveSystem` and the GLB overlay render identical controls.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Items mounted on a ceiling (lamps, fans, recessed lights) are child nodes of
the ceiling, so hiding the whole occluder node hid them too. Hide only the
ceiling/roof's own meshes (stop descending at nested identity nodes) so hosted
items stay visible when a floor is opened up.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Move the first-person walkthrough into @pascal-app/viewer (BVHEcctrl +
GlbWalkthroughController) and round out the GLB-consuming viewer:
- Walkthrough: fallback ground only on level 0 (upper floors rely on baked
slabs), hidden spawn marker, auto pointer-lock on enter, single-Esc exit via
pointerlockchange, force perspective on enter / restore on exit.
- GlbScene: monochrome strips baked textures and recolours meshes by surface
role using the active theme's clay tints; spawn node hidden from render.
- glb-export: camera/label/spawn identity extras for the viewer.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
A door/window only carries extras.openable + extras.clips when an open
animation actually bakes. Cased openings (no leaf) and fixed windows (no
operable sash) are no longer mislabelled openable, so the GLB never claims
a part opens when nothing moves. /viewer is unaffected (it already required
openable && clips). Adds a regression test for the no-clip case.
(Export barrels reordered by the formatter.)
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
exportSceneToGlb now calls snapLevelsToTruePositions() (the same clean stacked
presentation thumbnail capture uses) before snapshotting the scene, so the GLB
always reflects the stacked building regardless of the live levelMode
(exploded/solo) or an unsettled level lerp. Fixes baked GLBs where a level was
captured at a stray offset (e.g. ~ -100k Y), which inflated the bounding box and
made the model unframable / invisible in third-party glTF viewers.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Reverts the LOD switching (0469b256). Rendering lod1/lod2 on zoom-out produced
WebGPU validation errors (invalid bindGroup_object) on real-GPU browsers — not
caught earlier because headless Chromium falls back to the WebGL2 backend, so
the WebGPU path was never exercised. The viewer returns to loading the baked
KTX2 lod0 (still the 22MB->12MB win). LOD switching to revisit with a real-GPU
test loop and on-demand loading instead of preload-all.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
GlbScene accepts an optional lodUrls list and swaps rendered detail by camera
distance to the building's world-space center: lod0 (interactive — identity,
selection, zones, clips all bind here) for normal + building-view distances,
simpler visual-only levels only past ~2.5R / ~8R. Single-URL callers are
unchanged. useGLTFKTX2 now accepts a URL array.
Manual visibility toggling rather than THREE.LOD: THREE.LOD measures distance
to its own origin (0,0,0), which mis-selected levels (blanking the scene) when
the baked geometry is offset from the origin.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Extract the GLB build (prepare + GLTFExporter + WebGPUTextureUtils) out of
ExportManager into exportSceneToGlb so it can run outside the editor download
flow. Add a BakeExporter R3F component that fires the export once a host viewer
signals scene-ready and hands back the ArrayBuffer. Both exported for the
headless bake route (baked-glb-export phase 3, headless de-risk).
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Add `GlbScene` — the viewer that renders a baked GLB artifact with no
parametric scene graph, and finish the phase-1 export contract it consumes.
Viewer (packages/viewer):
- GlbScene: loads the artifact, drives a building → level → zone → node drill
hierarchy on useViewer.selection. Room/zone picking resolves from the floor
plane (ray ∩ floor + point-in-polygon), node picking uses a footprint test,
so walls/ceilings/zone-helpers never skew or block selection. Level modes
(stacked/exploded/solo), dollhouse (hide a focused floor's ceilings + roof so
rooms are visible and pickable), reconstructed zone floor fills + gradient
edge borders + room labels (faded, hover-brightened), baked door/window
open clips, click-outside / empty-space deselect, and the shared outline
post-FX. Exported as GlbScene/GlbLevel/GlbIdentity/GlbHover.
- post-processing: composite the zone-pass tint into the base scene so rooms
show whether or not SSGI is enabled (previously only added in the SSGI branch).
Export contract (packages/editor/src/lib/glb-export.ts):
- Convert WebGPU NodeMaterials to classic glTF-standard materials; decompress
KTX2 maps via WebGPUTextureUtils so GLTFExporter can embed them.
- Stamp name + extras identity (pascalId/kind/label/openable/clips), bake
door/window open clips (loop:false), strip editor overlays (off-layer +
invisible-material hitboxes) so cutouts aren't plugged.
- Fix opaque-but-flagged-transparent materials (no spurious alphaMode=BLEND)
and BackSide → FrontSide + winding flip (glTF has no back-face-only).
- Force levels + zones visible and stamp level display names + zone polygons so
every floor bakes and /viewer can reconstruct rooms and label the breadcrumb.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Promote the client GLB export into the baked-artifact format from
plans/editor-baked-glb-export.md (phases 0 and 1).
- NodeMaterial -> classic MeshStandardMaterial conversion at export. The
viewer's MeshStandard/LambertNodeMaterial set isNodeMaterial, not
isMeshStandardMaterial, so GLTFExporter would otherwise drop every
surface to a blank default. KTX2 (compressed) maps are decompressed via
WebGPUTextureUtils so the exporter can embed them (PNG for now; KTX2
re-encode is deferred to the phase-3 bake worker).
- Identity stamping from sceneRegistry: node.name = pascalId and
extras = { pascalId, kind, label?, openable?, clips? }; all other
userData stripped so editor/runtime ephemera never reach glTF extras.
- Door/window open clips baked from the build-once + pose-at-t primitives
(door pascalSwingLeaf marker, window poseWindowMovingParts). Clips named
by label ("Door 1: open"), carry extras.loop = false (consumers play
once and hold; dumb glTF players still loop).
- Cutout fix: door/window selection hitboxes hide via material.visible,
which onlyVisible misses, so the hitbox box plugged the wall opening.
Non-renderable container meshes now keep their node but lose geometry;
childless ones are removed.
- Editor-overlay stripping mirrors the thumbnail capture: emit
thumbnail:before/after-capture so scene-layer affordances (handles,
ceiling/site brackets) self-hide, and drop anything off SCENE_LAYER
(gizmos, grid, zone fills).
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Register a `resize` sound effect (three round-robin variations with
pitch/pan jitter and an 80ms gap) and emit it from the linear/radial
resize drag handler whenever the snapped+clamped value steps, so width /
length / depth / radius / height drags tick as the size changes.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Selecting a textured wall/slab/item replaced its surface with a flat
purple wash. Root cause: the selection highlight clones the material and
tints it, but `NodeMaterial.clone()` on the WebGPU backend drops the
texture-map node assignments, so the clone rendered flat — and a strong
albedo blend + emissive washed whatever was left.
Fix: re-attach the maps from the source material after cloning (shared by
reference) and drop the albedo tint, keeping only a gentle indigo emissive
so the real material/texture stays readable with a soft "selected" glow.
Applied to both highlight paths:
- generic editor highlight (slabs/items) in selection-manager
- wall path (walls are excluded from the generic one), built lazily +
cached/self-healing so it survives the wall finish's async texture load
Removes the now-dead eager wall `highlightedVisible`/`selection` profile.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Adds a Section B rule to the review-architecture skill: a new node kind or
geometry change that exposes paintable parts must carry overrides in a
schema `slots` record resolved via def.capabilities.paint (and thread it
through clone/duplicate/preset paths), and texturable def.geometry must
emit UVs in metres (1 unit = 1 m) so catalog finishes tile. Surfaced in the
skill description too.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Adds a `horizontal` fence style that builds composite-cladding panels —
horizontal boards stacked between square intermediate posts — instead of
the vertical pickets that slat/rail/privacy all produce today.
- New `style: 'horizontal'` (core schema + inspector Style control).
- Posts march along the whole span at `postSpacing`, each with a cap.
- New `postCap` control (none/flat/pyramid, default pyramid); pyramid
caps render as a 4-sided cone fence part.
- New `slatGap` control for the board reveal — 0 collapses to one flush
panel so the stacked-board seams don't read as lines.
- `postCap` + `slatGap` are horizontal-only (visibleIf); postCap uses a
labelled dropdown so its options aren't a context-free switch.
- Lower the `postSpacing` inspector minimum from 0.2 to 0.05 m.
- 2D floor plan reuses the solid-panel marker for horizontal.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Duplicating an item drops to the catalog placement flow, which rebuilds the
draft from the asset + transform and never carried node.slots — so the copy
lost every painted slot override. Thread slots through the draft create path:
useDraftNode.create seeds it onto the draft and commit() forwards it to the
final node, the placement coordinator passes it to its lazy wall/ceiling
draft creates, and the item move tool supplies node.slots for both the floor
(direct create) and wall/ceiling (coordinator) duplicate paths.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Registers a paintApply SFX (with rate/volume jitter + a 60ms gap so rapid
multi-face painting doesn't machine-gun), wires the sfx:paint-apply bus
event, and emits it from the material-paint click chokepoint in the
selection manager (fires on apply, not hover/preview). Adds the audio
asset to the editor app's public resources.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Documents the content-author contract for catalog item GLBs: slot_
material naming + deriveSlotId rules, authored defaults and
pascal_material extras, the cutout reserved mesh, the ~1 UV unit/m world
scale, vertex colours for fixed detail, and the validated Blender + glTF
export recipe (Custom Properties export gotcha, gltfpack -ke extras
preservation). Indexes the page in the architecture README and links it
from materials-and-themes.md (previously a dangling "phase-6 Blender
recipe" reference).
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Replace 89 bundled item model.glb files with the authored/optimized
versions currently served from prod storage (items/system/<slug>/model.glb),
so the committed source of truth matches what live projects load and a
catalog re-seed no longer clobbers authored geometry. Items with no prod
object (404) are left as-is.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Layout is now: fixed eraser/reset + category tabs (no longer sticky-inside-
scroll), a single scrolling catalog grid, and an always-visible scene-material
footer. The custom-material "+" moved out of the colors-only grid cell onto the
scene-material section header, so a custom material can be added from any
category (creates a blank scene material, selects it as the brush, opens its
inline editor).
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
- MaterialPaintPanel owns its scroll: the eraser/reset row stays pinned and
the category tabs stick to the top, so only the material list scrolls.
- Selected catalog swatch + active scene-material card use the same
`ring-1 ring-primary ring-inset` outline as item/preset tiles.
- Choosing a material category auto-selects its first material.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Slabs now expose two paintable faces instead of one: `surface` (top, keeps
the wood floor default and the prior slot id so painted slabs are
unaffected) and `side` (vertical walls + underside, default light grey).
The merged slab buffer is split by per-triangle face normal into a top mesh
and a side mesh, each tagged with its slot id for paint resolve/preview;
legacy whole-slab material maps onto the top only. Textures-off still
collapses to the floor role.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Custom-create now pre-creates a scene material and opens its inline editor
in the build pane (no separate right-side PaintPanel, which is removed);
the brush + "Paint with" use a scene: ref so painting stores the ref and
edits propagate everywhere. Slot preview (shared + item) resolves scene
refs so hover shows the real material.
Material properties editor uses the shared SliderControl for roughness/
metalness/opacity; row action buttons use Tooltip instead of title; the
color input renders as a clean filled swatch.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Retire the inline material fields on every slot-model kind, moving them
onto the unified node.slots model on load so painting, edit-propagation,
and the picker behave uniformly.
Walls: slots {interior,exterior}; slot-first viewer resolution threading
sceneMaterials (content folded into the wall material hash); WallRenderer
subscribes to the scene-material palette so a scene-material edit
re-renders live; wallPaint rebuilt on createSlotPaintCapability.
Load migration generalizes legacy -> slots across slab/ceiling (surface),
fence (posts/infill/base/rail), column (shaft/base/capital/frame), shelf
(shelves/frame/back), and stair (per-role tread/side/railing). Library/
scene refs pass through; inline customs mint a deduped scene material;
legacy fields cleared. No visual change (renderers already fell back to
the legacy fields). Roof/chimney/dormer/vents intentionally stay on their
role system.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
The compass needle rotation was `-floorplanUserRotationDeg`, but the
2D-floorplan SVG and 3D camera projections both place true north at
`+floorplanUserRotationDeg` (= cameraAzimuth − 90°). The negated sign
made the needle rotate opposite to north as the camera orbits, so it
appeared to track the camera instead of pointing north.
The formula was written for the 2D floorplan and reused verbatim when
the compass was portaled into the 3D viewer; both instances had the
flipped sign. "Align to north" is unaffected (userRotation 0 → up).
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
The earlier gable fix world-referenced only V, leaving U in segment-local
space — so gable and wall lined up vertically but slid horizontally. Replace the
V-only scalar offset with the segment's full world matrix (roof group composed
with segment transform) and project vertical faces exactly like the wall kind:
U = ±worldX/Z, V = 1 - worldY. Gable now tiles continuously into the walls in
both axes. Sloped shingle UVs are unchanged.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Walls used THREE's ExtrudeGeometry UVs, which restart at each wall's local
start/end — so finishes seamed at wall joins, showed a mid-face axis-switch
stripe, and didn't line up with the roof gable. Re-project the render mesh's
UVs in WORLD space (1 unit = 1 m), matching roof-system's pushRoofUv exactly:
vertical faces U = ±worldX/Z, V = 1 - worldY. De-indexes so each triangle uses
its own face normal (no edge seams). Applied only to the render mesh; collision
and floorplan geometry keep the original UVs. Now walls tile continuously
across segments and meet the gable seamlessly.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
The gable wall band tiled its V in segment-local space, so its texture phase
didn't line up with the wall below (whose ExtrudeGeometry UVs map V = 1 -
height-from-base). Make vertical roof faces tile V in world space
(V = 1 - worldY) via the segment's resolved world Y (parent roof + segment
position), so the band matches a ground-floor wall's vertical tiling at the
eave seam. U is unchanged (stays in the face's local run).
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
The posts/infill and the accent rail shared the same panelDepth*0.35 depth, so
their faces were coplanar where they cross -> z-fighting. Make the verticals
0.001m shy so the rail wins the depth test cleanly.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
mergeGeometries throws on an empty array, so an absent slot group (infill with
showInfill off, base on a floating fence) crashed the geometry build. Return an
empty BufferGeometry for an empty group; the renderer already skips meshes with
no position attribute.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
- Add 'concrete-drywall' (Prepared Drywall) catalog finish + 512 KTX2/webp
runtime assets; default walls (WALL_SLOT_DEFAULT interior+exterior) and the
roof wall/trim band to it so roofs read continuous with walls.
- fence: replace the 2-slot panel/rail split with 4 slots that match the panel's
build options — posts / infill (showInfill) / base (grounded only) / rail —
each its own mesh with userData.slotId; conditional slots track the build
state. Defaults: posts/infill/base charcoal, rail wood-finewood27.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
- fence: split into two paint slots — panel (posts/base/infill, default charcoal)
and rail (cap, default wood-finewood27) — as separate meshes with userData.slotId.
Fix applyFenceUVs to continuous world-space 1 UV unit = 1 m (drop the per-part
min origin that broke tiling across parts). New generateFenceSlotGeometries.
- roof: real catalog defaults for the segment surfaces via getRoofMaterialArray
(the actual default path): wall/trim concrete-plate (matches walls), deck +
soffit soft-white, shingle terracotta; textures-off role escape hatch kept.
Align nodes getRoofMaterials no-parent fallback to match.
- stair: body slot default -> preset-lightgrey.
- (biome formatting normalization of the round-1 merged renderer files rides along.)
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Elevator exposes four finish slots — cab / doors / shaft / glass (glass only
when shaft or door style is glass) — on node.slots. The finish materials now
resolve through a per-node material set (context provider) keyed on node.slots
+ scene materials: textures-off joinery role -> node.slots ref -> declared
default (cab preset-softwhite, doors metal-steel, shaft preset-lightgrey,
glass preset-glass), with glass transparency flags re-applied. Cab/door/shaft/
glass meshes tag userData.slotId; buttons, indicators, control panels, and
queue strips stay untagged (functional UI, not paintable). Interaction system
untouched. Monochrome unchanged.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Column exposes shaft / base / capital / frame slots on node.slots (base when
baseStyle!=none, capital when capitalStyle!=none, frame only for non-vertical
support styles). The single material context is widened to a per-slot map plus
a ColumnSlotContext; each part subtree is wrapped in <ColumnSlot> so every
mesh primitive resolves its material AND stamps userData.slotId from the same
context. Decorative shaft parts inherit shaft, base/capital carvings inherit
their parent slot. Resolution: textures-off wall role -> node.slots ref ->
legacy material/preset -> declared default (shaft/base/capital concrete-plaster,
frame metal-steel). Monochrome unchanged.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Stair exposes three paintable slots — treads / body / railing (railing only
when railingMode != none) — on node.slots. The 2-material-index body mesh
maps materialIndex 0->treads, 1->body via userData.slotIds; railing meshes
tag userData.slotId='railing'. Per-slot resolution layers over the viewer's
base body/railing materials only in textures-on mode: node.slots ref ->
legacy per-part field (preserved) -> declared default (treads wood-woodplank48,
body wood-woodfine2, railing metal-steel). A custom preview swaps the targeted
body material-array index and whole-mesh railing materials. Monochrome
unchanged. Stops using DEFAULT_STAIR_MATERIAL.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Fence joins the node.slots paint model with one paintable 'surface' slot
(merged post/base/rail geometry is a single mesh). Resolution order matches
slab: textures-off joinery role -> node.slots.surface ref -> legacy inline
material/preset -> declared default (library:wood-finewood27). Tags the mesh
userData.slotId='surface' and wires capabilities.slots + paint. Stops
borrowing DEFAULT_STAIR_MATERIAL.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Replace the flat #e5e5e5 placeholder on the roof shingle surface (material
index 3) with the catalog roof-weatheredshingles finish via
resolveSlotDefaultMaterial. Wall/trim, deck, and interior surfaces and the
textures-off role array are unchanged. Roof keeps its existing per-segment
role material system (no node.slots migration).
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Pre-adds the unified slot-ref field (Record<slotId, MaterialRef>) to the
four kinds being migrated onto the paint-slot model, so per-kind work can
proceed in parallel worktrees without cross-package core edits.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Remove height/displacement/mask/mortar/joint texture files the material
schema never samples (it reads only albedo/normal/roughness/ao/metalness).
Computed as present-on-disk minus catalog-referenced in material-library.ts.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Replace the editor-only EditorEnvironment wrapper with a SceneEnvironment
component exported from @pascal-app/viewer, mounted as an opt-in <Viewer>
child (still not baked into the Viewer component). One source of truth the
editor and the community public viewer both inject; embed/thumbnail
surfaces simply don't mount it. Sunset preset at environmentIntensity 0.6.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Inject an EditorEnvironment wrapper (drei prefiltered sunset HDRI at
environmentIntensity 0.6) as a child of the editor Viewer, not baked into
the Viewer component, so read-only/embed viewers stay lightweight. This
gives PBR metals their reflections and lifts lighting on vertical walls
that flat directional + hemisphere lights cannot.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Builds on the explicit per-mesh slot tagging (currentDoorSlot/currentWindowSlot):
- Per-part painting: door = panel/frame/glass/hardware, window = frame/glass,
each independently paintable. The recessed door/window body sits behind the
wall, so the proud invisible cutout wins the scene raycast over the wall and
the shared resolveSlotByReRaycast() re-raycasts the kind's own subtree to pick
the exact part under the cursor (panel↔frame↔glass↔hardware). Hover tracks the
cursor via a re-eval (idempotent, no flicker).
- Door frame is its own slot (separate frameMaterial); hardware = new flat
'metal-chrome'.
- Library defaults (generic): panel/frame -> library:preset-softwhite, glass ->
library:preset-glass (flipped preset-glass to FrontSide — DoubleSide poisons
the WebGPU MRT pass; it's the only glass we use).
- Catalog: add flat (non-PBR) 'metal-chrome' + 'metal-brass'; drop metal
metalness 1 -> 0.6 so metals are lit by existing lights (no env needed).
- World-scale UVs (1 unit = 1m) on door/window box meshes via shared box-uv.ts,
so finishes tile at real-world scale instead of stretching.
- PaintResolveArgs gains an optional for subtree re-raycasting.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
The editor's /icons assets were ~10MB of oversized PNGs (a single
toolbar icon up to 1.4MB). Convert every non-PWA icon to WebP (quality
92) and repoint all /icons/*.png references to .webp across
packages/editor, packages/nodes, and apps/editor. PWA/platform icons
(apple-touch-icon, icon-192, icon-512) stay PNG.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Snapshot/preset capture is for framing a thumbnail, not editing, so it
should only move the camera:
- gate the selection manager, transform handles, floating menus, and the
tool manager (which renders the site boundary flags) behind
isCaptureMode, so clicking the scene no longer selects items or shows
editing controls
- hide zone meshes and the HTML zone tags while capturing
- force 3D on entry (the 2D/split floorplan panes render nothing useful
for a thumbnail) and restore the prior view mode on exit
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
The real interceptor was the 'cutout' mesh, not the hitbox: it's a 1m-deep CSG
helper whose front face sits 0.5m proud of the glass, and current three.js
raycasts invisible meshes — so every paint/hover ray resolved to 'cutout'
(no slotId → role null). Disable its raycast; combined with the hitbox noop,
paint/hover rays now land on the tagged frame/glass (panel/glass) children.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
- post-processing: hoverHighlightMode was a dependency of the pipeline-build
effect, so every hover rebuilt the entire pipeline. The hover style is already
pushed to uniforms in a separate effect, so the rebuild was pure waste —
removed it from the deps (and the build log).
- selection-manager: temporary [paint-debug] logs for window/door hover to trace
why their paint dispatch drops (to be removed once diagnosed).
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
The window/door root is an invisible hitbox the system gives full-depth
BoxGeometry; its front face intercepted every paint/hover ray, so the hit
resolved to the hitbox (no slotId) → role null → paint silently disabled.
Disable the hitbox's own raycast in the visual path so R3F's recursive
intersect returns the tagged frame/glass (panel/glass) children instead;
selection still works because those child hits bubble to the root's event
handlers. Restored to the default raycast each build, and kept for 'opening'
windows/doors (no visuals to paint, still need a selectable hitbox). The
'cutout' child is visible=false so the raycaster already skips it.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Windows and doors build all visuals in their viewer systems from module-global
materials, so this threads per-node slot materials + userData.slotId tags
through those builders without restructuring them:
- window: 'frame' + 'glass' slots. door: 'panel' (body = casing + leaf) +
'glass'; the opening reveal keeps its own material.
- Each system captures per-frame viewer state, then updateWindow/DoorMesh points
the builder-facing base/glass materials at the node's resolved slot override
(recomputed per node, so the next node resets without a restore). Meshes are
auto-tagged in the shared addBox/addShape helpers by which material they got.
- Textures-off still collapses to the role material (escape hatch); a slot
override only applies in colored mode.
- Editing a referenced scene material re-dirties the window/door (these systems
aren't covered by GeometrySystem's scene-material re-dirty).
- New paint capabilities (resolve role from userData.slotId, preview by
userData.slotId) + capabilities.slots; window/door dropped from the paint
disabled list. Shared previewSlotByUserData helper.
Defaults unchanged: unpainted windows/doors render exactly as before (the slot
fallback is the existing frame/glass material), so no visual regression.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Brings slab, ceiling, and wall onto the unified slot contract the shelf
established, so each declares its paintable slots with a declarative default and
(slab/ceiling) is painted through the registry capabilities.paint dispatch.
- Shared helper packages/nodes/src/shared/slot-paint.ts: a node.slots-based
PaintCapability factory (commit/resolve/effective generic; preview injected).
Distinct from surface-paint.ts, which writes the legacy inline node.material.
- slab: schema slots; def.geometry resolves node.slots.surface -> legacy
material -> declared default, tags the mesh userData.slotId; slabPaint +
capabilities.slots. Retires DEFAULT_SLAB_MATERIAL in the slab path.
- ceiling: schema slots; material builders extracted to ceiling/materials.ts
(shared by renderer + paint preview, built BackSide so the hover preview is
visible from below); renderer resolves the slot; ceilingPaint + slots.
- wall: WALL_SLOT_DEFAULT in core; the viewer's getMaterialsForWall renders an
unpainted face with its declared default instead of the themed wall role;
capabilities.slots (interior/exterior). wallPaint's inline interior/exterior
fields are unchanged (node.slots migration is a later step).
- selection-manager + material-paint: drop slab/ceiling from the legacy
single-surface arms (now registry-driven).
Behavior change (intended, matches the shelf precedent + the phase-5 plan):
colored-mode UNPAINTED slab/ceiling/wall surfaces now render their fixed slot
default (#e5e5e5 / #f5f5dc / #ffffff) instead of the theme role colour. The
textures-off (monochrome) role collapse is unchanged — the escape hatch.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Wire KTX2 into the catalog finish path and add 15 textured finishes across four
new families, all as GPU-compressed KTX2 (512px) + a webp picker thumbnail.
- Shared `ktx2-loader.ts`: one KTX2Loader (Basis transcoder) used by both the
GLB loader and catalog textures; `ensureKtx2Support(renderer)` runs once at
viewer init (GPUDeviceWatcher) so `.ktx2` finishes load even with no GLB in
the scene. `use-gltf-ktx2` now reuses the shared instance.
- `materials.ts`: texture loaders pick the KTX2 loader for `.ktx2` urls, the
image loader otherwise (all three load paths).
- `material-library.ts`: 15 entries (fabric ×6, leather ×2, concrete ×4,
metal ×3). Neutral albedo for tinting, `flipY: false` (compressed textures
can't flip), `repeat` per real-world tile size, metals `metalness: 1`.
Normals encoded UASTC, data maps ETC1S/linear.
Assets generated from raw sources via the new community
`scripts/build-material-textures.ts`. 1024/256 tiers + raws kept out of git.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
- Cubby without a bottom board: the lowest cell opens onto the floor, but its
column divider still started at the (missing) bottom board's top, leaving it
floating ~thickness above the floor. Anchor it at y=0 when there's no bottom.
- Bookshelf full-height divider: it crosses the continuous shelves, so it can't
share their depth plane (proud at the front, coplanar with the back panel —
z-fighting down the centre back). Recess its depth to sit fully INSIDE the
boards' depth: embedded at each shelf crossing (board occludes it) and tucked
inside the back panel.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
The cubby column divider was full-depth while the boards are depth-recessed,
so it (a) sat proud of the shelf fronts — the earlier Y-tuck then made it poke
past the top/bottom boards — and (b) shared the back panel's rear plane,
z-fighting down the centre of the back.
Give the divider the same depth recess as the boards (via boardGeometry) and
drop the Y-tuck: it now sits flush with the shelf fronts and its back tucks
inside the back panel. Flush top/bottom is fine — those board faces are
back-to-back, not co-facing, so they don't fight.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Cubby per-cell dividers landed exactly flush on the board below and under the
board above — coplanar faces that shimmer and read as merged into the shelf.
Extend each divider 1mm into both boards (centre unchanged) so it tucks under
the top board and onto the bottom board with a solid, seam-free join.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Two follow-ups to the plate-recess fix:
- Top surface: full-height frame members that pass UNDER the top board
(back panel, bookshelf column dividers, corner posts) had their top face at
unitHeight — coplanar with the top board's top — so they z-fought through it
(the seam on the top). Drop their top 1mm (cappedFrameY); bottoms stay on the
floor so nothing floats.
- Plate width: the previous pass recessed every board's width, which opened a
1mm gap where boards ABUT the side panels (cubby / bookshelf-with-sides).
Width is now recessed only where boards span OVER posts (open-rack /
no-sides bookshelf); abutting boards keep full width and meet the sides
flush. Depth stays recessed everywhere (gap-free, fixes the back-panel fight).
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Open-rack / no-sides shelves span their boards across the full footprint, so a
board's end / front / back faces land exactly on the corner posts' outer faces
(and, with a back panel, on its rear face). Coplanar surfaces the depth buffer
can't order flicker as z-fighting (visible as seams where plates meet posts).
Recess every board 1mm on width + depth via a `boardGeometry` helper so each
plate sits just inside the frame — the meshes still overlap (no visible gap),
but no two faces are coplanar. Frame parts (posts/sides/back/dividers/brackets)
keep their full size as the silhouette.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Proves the unified (nodeId, slotId) slot contract on a procedural generator,
beyond items and walls. A shelf now exposes three paintable slots — shelves /
frame / back — painted through the same PaintCapability dispatch and the same
node.slots: Record<slotId, MaterialRef> shape items use.
Foundation (shared, reusable by future procedural kinds):
- core: SlotDeclaration type + capabilities.slots(node) registry declaration;
GeometryContext gains `materials` so a pure builder can resolve scene:<id>
slot refs without importing useScene.
- viewer GeometrySystem: threads the scene material library into every builder
ctx, and re-dirties (bypassing the geometryKey skip) any geometry node that
references a scene material when that material changes — so editing a custom
colour propagates to every shelf using it, matching items.
Shelf:
- schema: slots: Record<string, MaterialRef> (mirrors ItemNode).
- geometry: per-slot material resolution (slot override -> legacy whole-shelf
-> declared default colour); every mesh stamped with userData.slotId;
DEFAULT_SHELF_MATERIAL retired (declared default gives identical off-white).
- paint.ts: PaintCapability (resolveRole from userData.slotId, scene-material
commit for one-off colours, preview restricted to __fromGeometry meshes so
hosted items aren't ghosted, getEffectiveMaterial incl. legacy fallback).
- definition: paint + slots capabilities; slots folded into geometryKey.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Pool slabs (generatePoolGeometry) were the one procedural surface emitting
normalized [0..1] floor UVs, so a textured finish stretched to fit the pool
instead of tiling at real-world scale like every other surface. Switch the
floor to shape-space metres (x, -z) — the same mapping generatePositiveSlab-
Geometry already uses for its caps. Pool walls were already in metres.
Also document the contract in wiki/architecture/materials-and-themes.md: every
procedural surface generates UVs in metres (1 UV unit = 1 m), GLB slots follow
the same ~1 unit/m authoring convention, and a catalog material's `repeat` is
therefore a per-material world-scale setting (tiles per metre), identical for
every surface that uses it — never per-item.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
The textures axis had no UI control. Add Colored (textures on — show item
materials, textures, vertex colours) / Monochrome (textures off — flat clay
by surface role) options to the Render dropdown, wired to useViewer.textures.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
In colored mode (textures on), every item now renders its authored material
— textures, vertex colours, and default colours — instead of being stripped
to the uniform off-white baseMaterial. AI-generated and vertex-coloured items
show their real appearance; slot resolution (override -> curated -> authored)
is unchanged. Monochrome (textures off) still collapses to the furnishing
clay role colour (the escape hatch). Drops the now-unused isAuthored marker.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>