c45808840c nodes: add modular cabinets and wall trim controls (#461)
* Add roof surface placement support for items

Items (e.g. solar panels) can now be placed on sloped roof surfaces.
The placement system computes euler rotation from the roof surface
normal so items sit flush on the slope instead of going inside.

- Add roofStrategy to placement-strategies with enter/move/click/leave
- Wire roof:enter/move/click/leave events in the placement coordinator
- Add calculateRoofRotation in placement-math using surface normals
- Support full 3D cursor rotation for sloped surfaces
- Items on roofs are parented to the level with world-space rotation

Co-Authored-By: Claude Opus 4.6 <noreply@anthropic.com>

* fixed conflict

* Add modular cabinet node

* Add modular cabinet run and tall cabinet workflows

* Add cabinet paint slots and material groups

* Improve modular cabinet presets and wall snapping

* Improve cabinet wall snapping

* Fix cabinet wall snapping and countertop joins

* Improve cabinet appliance compartments

* Improve fridge visuals and smooth cabinet animations

Fridge exterior is now brushed silver with brass accents and the
interior is all white. Door/drawer animation no longer rebuilds the
full cabinet geometry per frame — animated parts carry pose metadata
that a new per-frame cabinet system applies directly to transforms.

Co-Authored-By: Claude <noreply@anthropic.com>

* Improve gas hob flames and cooktop knob controls

Port the curved-flame look from reference gas-burner photos: each burner
gets a ring of vertex-coloured tube flames (blue body, orange-yellow tips)
whose spines breathe and flicker per frame at ~30fps, plus a flat ignition
glow and a faded heat halo. Fix the knob pointer notch to rotate with the
knob instead of drifting sideways. Also includes cooktop compartment
presets/panels and cabinet selection/move affordance work.

Co-Authored-By: Claude <noreply@anthropic.com>

* Fix cabinet UVs and registry actions

* Fix registry move snap typecheck

* Fix cabinet knob animation concurrency

* Fix cabinet material disposal, undo flood, and 2D move parity

- Flag shared cabinet appliance materials (and the viewer's cached material
  factories) as cached so geometry rebuilds no longer dispose materials
  still referenced by other nodes, forcing scene-wide shader recompiles.
- Route the door/drawer open animation through useLiveNodeOverrides with a
  single final commit, so one play is one undo step instead of ~20.
- Add a cabinet-module floorplanMoveTarget: 2D drags now convert through
  planToLocal + magneticSnap like the 3D path, instead of writing plan
  coords into the run-local position (teleporting modules on rotated runs).
- Re-key sibling runs (cabinetAdjacencyRevision) when a run's
  neighbor-affecting inputs change, so countertop overhang joins re-trim
  when a neighbor moves/resizes/deletes.
- Narrow the cabinet panel's scene subscriptions (useShallow module
  selector) so it stops re-rendering on every scene mutation.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* Restructure cabinet schema and centralize run math/mutations

Prepares the cabinet node for the queued specialty units (corner L-shape,
sink base, appliance gap, open shelving):

- Add a `moduleKind` discriminator (default 'standard') on CabinetModuleNode
  so new unit types extend an enum instead of overloading the stack, and
  split CabinetCompartment into a z.discriminatedUnion so invalid field
  combos (drawer with rack style, fridge with burner state) are
  unrepresentable. Shared box fields now come from one `cabinetBoxFields`
  object so run/module schemas can't drift.
- Extract the straight-line run assumption (sort-by-x, edges, adjacency,
  spans, side-insert, reflow, frame transforms) into run-layout.ts —
  previously spread across definition/geometry/quick-actions/stack/
  move-frame, so corner support would have meant five parallel edits.
- Consolidate the run mutations (add module, wall cabinet/hood above,
  base↔tall switch, layout-revision bump) into run-ops.ts on SceneApi.
  Panel and quick-actions had drifted copies: the panel's add-module
  skipped gap checks, revision-bump scope differed per surface.
- Remove dead code: node-level doorStyle (with a migrateNodes entry —
  geometry only ever read per-compartment doorType), the unreachable
  slot-handle mesh block, the no-op handlePosition 'edge' enum value,
  wallLocalX, and duplicate totalCabinetHeight definitions.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* Add cabinet snap tests and split the cabinet panel

- New tests: cabinetModuleParentFrame.magneticSnap (flush snap, threshold,
  Z alignment, nearest-edge) and wall-snap's resolveCabinetWallFaceOffset /
  collectCabinetWallSnapNeighbors (straight face, miter taper, ray-miss
  fallback, yaw/face/parent filtering) — 87 cabinet tests, up from 71.
- De-brittle geometry test lookups: coordinate-encoded mesh names are now
  matched by pattern, so dimension-default changes don't break them.
- Split panel.tsx (1,541 → 679 lines): CompartmentCard + option constants
  into compartment-card.tsx, CabinetRunPanel + reflow wiring into
  run-panel.tsx, and the compartment type-transition tables into a pure
  resolveCompartmentTransition in stack-transitions.ts.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* Split cabinet geometry.ts into per-appliance modules

Pure code motion: geometry.ts (4,728 lines) becomes a 336-line orchestrator
dispatching into geometry/ — shared helpers + cached appliance materials
(shared.ts), CSG fronts/handles/doors/drawers (fronts.ts), run spans +
countertop (run.ts), and self-contained hood/fridge/cooktop/dishwasher/
oven-microwave/pantry builders. No mesh names, userData stamps, materials,
or math changed; the './geometry' import path is unchanged.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* Add undermount sink compartment with CSG-cut countertops

New 'sink' compartment type (single / double / 60-40 bowl layouts)
following the cooktop pattern: zero stack height, countertop-plane
geometry, panel card with a bowl-layout selector, and a Sink Base
preset. Bowl openings are subtracted from both module- and run-owned
countertop slabs via three-bvh-csg; the basin shells, drain plumbing,
and a spec-sheet-proportioned gooseneck faucet (Grohe Minta-style pin
lever) render beneath the cut. Sink modules skip the carcass top panel
and the deck under the sink row so the basin hangs through.

Also scope the viewer mock in roof-surface-placement-guides.test.ts to
only stub useViewer — the bare module stub leaked into later suites and
broke real CSG imports.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* Update ifc-converter next-env reference to build-mode route types

Regenerated by `next typegen` during check-types; points at
.next/types instead of the dev-mode .next/dev/types path.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* Draw cabinet floor plans with kitchen drafting symbols

Replace the per-module box soup with NKBA/architectural-convention
symbols: the run draws one heavier countertop outline per span
(extended by the overhang), base modules draw their front edge plus
compartment symbols — rounded bowl rects + faucet dot for sinks,
burner/zone rings for cooktops (reusing the 3D layout tables so 2D and
3D always agree) — and appliance modules carry standard upright labels
(DW / REF / OV / MW / PAN). Nested wall cabinets and hood-only modules
draw as dashed open outlines per the above-cut-plane convention.

* Play cabinet open/close animation on the E interaction key

Add an `e` slot to registry KeyboardActions and dispatch it in the
keyboard hook ahead of the legacy door/window arms, so kinds opt into
the E interaction on their NodeDefinition. Cabinets register it: E on a
module eases its doors/drawers open or closed, E on a run swings every
child module together, and hood-only modules fall through. The panel's
rAF animator moves into cabinet/interaction.ts (live-override frames,
single undo commit) so the Play button and E share one animation, and
the shortcuts dialog now documents E.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* Add kitchen island and bar counter support to cabinet runs

Islands: run-level countertopBackOverhang (seating side) and
withFinishedBack (decorative back panel), plus an I-key island placement
mode in the cabinet tool that skips wall snap. Bar counters: optional
barLedge {edge, height, depth} drawing a knee wall and raised slab along
the back or either run end, superseding the seating overhang on its
edge. withWaterfall drops slab-material panels to the floor on exposed
run ends. 2D floorplan outlines, selection bounds, geometry keys, and
run panel controls updated in parity; schemaVersion 3 -> 6.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* Merge quick-action arrow and plus into one directional add glyph

The add-left/add-right buttons showed two unrelated icons; a single
plus-on-tail arrow reads as "add on this side".

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* Extend plugin discovery instead of replacing the host source

Also track the ifc-converter next-env routes reference update.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* Add L-corner runs to modular cabinets with run-scoped grouping

An "L Left/Right" quick action spawns a perpendicular base leg, wall leg,
and wall bridge as metadata-linked runs parented to the SOURCE RUN, so the
run stays the single group: selecting a base module selects only it, and
the clicked module never becomes a container. Corner runs re-anchor when
the source module resizes or moves (new MovableParentFrame.onCommit hook,
mirrored in the 2D floorplan commit), run bounds fold in child leg runs,
and deleting one corner member removes only that node while unlink patches
keep the survivors' link metadata consistent.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* Delete emptied cabinet run groups in the same delete gesture

Removing a run's last child (module or derived corner leg) left an
empty group node in the scene graph and persisted data. onDeleteCascade
now receives the gesture's pending delete ids so multi-select deletes
count siblings as gone, and both cabinet kinds cascade the orphaned
parent run away in one undo step.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* Remove filler front gap treatment

* Apply architecture review fixes across cabinet, plugin-trees, and framework

Move cabinet semantics out of packages/editor behind registry capabilities
(def.tree, selectionProxy.bypassDirectPick, IconRef quick-action icons,
catalog tool field), route cabinet selection through a core selection-proxy
helper, and make PanelWorkspace an opaque host tag. Fix the cabinet
placement undo flood, dirtyNodes.add bypasses, normalized UVs on paintable
slots, plugin-trees ghost layers/stale level transforms/untyped find-sync
event, and cross-file store-mock pollution plus orphaned dist tests that
broke combined test runs.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* Propagate front styling to L-corner runs even when re-layout bails

Group style changes rode entirely on syncDerivedCornerRun, which bails
silently when a later-drawn wall blocks the corner layout or a leg run
gained modules outside the derived-run spec — leaving the L legs styled
stale. Apply the style patch directly to every linked corner run before
attempting the geometric re-layout.

Co-Authored-By: Claude Opus 4.7 <noreply@anthropic.com>

* Improve editor viewer integration

* Refactor plugin panels and floorplan invalidation

* UV-unwrap and material-assign roof-segment trim planes

* Fix cabinet placement snap feedback

* Add cabinet wall snap bypass

* Fix cabinet continuous placement flow

* Implement wall band material slots

* Add corner addition preview functionality and related tests

* Fix cabinet and wall band behavior

* Fix architecture review blockers

* Fix post-merge quality check

* fix cursor review feedback

* Fix cabinet placement type and quick action history

* Improve cabinet placement feedback

* Make wall bands configurable

* Add wall trim profiles and default materials

* Fix architecture review issues

* Fix cabinet rotation and wall band visibility

* Fix sink appliance paint persistence

* Bake cabinet animations and preserve wall band material

* Fix cabinet group duplication and module snapping

* Fix cabinet duplication architecture

* Fix cabinet floorplan test and make placement-type hint a live chip

- floorplan.test.ts: pass the required liveTransforms map to
  cabinetFloorplanSiblingOverrides (the runtime callers always supply it)
- ToolHint gains an optional generic `chip` contract (subscribe/value/
  cycle/labels) so a kind can render a tool hint as a live mode chip —
  like the snapping/continuation chips — without the editor knowing the
  kind's store
- cabinet: the I hint now shows the current value (Type: Cabinet /
  Type: Island) and is clickable to toggle

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

---------

Co-authored-by: Claude Opus 4.6 <noreply@anthropic.com>
Co-authored-by: Wassim SAMAD <wass08@gmail.com>
2026-07-12 18:33:48 -04:00
2026-01-21 10:11:30 +09:00
2026-03-13 09:07:46 +01:00
2026-01-14 07:26:59 +09:00
2026-03-10 09:40:07 +01:00
2026-02-11 06:35:56 +09:00

Pascal Editor

A 3D building editor built with React Three Fiber and WebGPU.

MIT License npm @pascal-app/core npm @pascal-app/viewer Discord X (Twitter)

https://github.com/user-attachments/assets/8b50e7cf-cebe-4579-9cf3-8786b35f7b6b

Repository Architecture

This is a Turborepo monorepo with three main packages:

editor/
├── apps/
│   └── editor/          # Next.js application
├── packages/
│   ├── core/            # Schema definitions, state management, systems
│   ├── viewer/          # 3D rendering components
│   └── ui/              # Shared UI components

Separation of Concerns

Package Responsibility
@pascal-app/core Node schemas, scene state (Zustand), systems (geometry generation), spatial queries, event bus
@pascal-app/viewer 3D rendering via React Three Fiber, default camera/controls, post-processing
apps/editor UI components, tools, custom behaviors, editor-specific systems

The viewer renders the scene with sensible defaults. The editor extends it with interactive tools, selection management, and editing capabilities.

Stores

Each package has its own Zustand store for managing state:

Store Package Responsibility
useScene @pascal-app/core Scene data: nodes, root IDs, dirty nodes, CRUD operations. Persisted to IndexedDB with undo/redo via Zundo.
useViewer @pascal-app/viewer Viewer state: current selection (building/level/zone IDs), level display mode (stacked/exploded/solo), camera mode.
useEditor apps/editor Editor state: active tool, structure layer visibility, panel states, editor-specific preferences.

Access patterns:

// Subscribe to state changes (React component)
const nodes = useScene((state) => state.nodes)
const levelId = useViewer((state) => state.selection.levelId)
const activeTool = useEditor((state) => state.tool)

// Access state outside React (callbacks, systems)
const node = useScene.getState().nodes[id]
useViewer.getState().setSelection({ levelId: 'level_123' })

Core Concepts

Nodes

Nodes are the data primitives that describe the 3D scene. All nodes extend BaseNode:

BaseNode {
  id: string              // Auto-generated with type prefix (e.g., "wall_abc123")
  type: string            // Discriminator for type-safe handling
  parentId: string | null // Parent node reference
  visible: boolean
  camera?: Camera         // Optional saved camera position
  metadata?: JSON         // Arbitrary metadata (e.g., { isTransient: true })
}

Node Hierarchy:

Site
└── Building
    └── Level
        ├── Wall → Item (doors, windows)
        ├── Slab
        ├── Ceiling → Item (lights)
        ├── Roof
        ├── Zone
        ├── Scan (3D reference)
        └── Guide (2D reference)

Nodes are stored in a flat dictionary (Record<id, Node>), not a nested tree. Parent-child relationships are defined via parentId and children arrays.


Scene State (Zustand Store)

The scene is managed by a Zustand store in @pascal-app/core:

useScene.getState() = {
  nodes: Record<id, AnyNode>,  // All nodes
  rootNodeIds: string[],       // Top-level nodes (sites)
  dirtyNodes: Set<string>,     // Nodes pending system updates

  createNode(node, parentId),
  updateNode(id, updates),
  deleteNode(id),
}

Middleware:

  • Persist - Saves to IndexedDB (excludes transient nodes)
  • Temporal (Zundo) - Undo/redo with 50-step history

Scene Registry

The registry maps node IDs to their Three.js objects for fast lookup:

sceneRegistry = {
  nodes: Map<id, Object3D>,    // ID → 3D object
  byType: {
    wall: Set<id>,
    item: Set<id>,
    zone: Set<id>,
    // ...
  }
}

Renderers register their refs using the useRegistry hook:

const ref = useRef<Mesh>(null!)
useRegistry(node.id, 'wall', ref)

This allows systems to access 3D objects directly without traversing the scene graph.


Node Renderers

Renderers are React components that create Three.js objects for each node type:

SceneRenderer
└── NodeRenderer (dispatches by type)
    ├── BuildingRenderer
    ├── LevelRenderer
    ├── WallRenderer
    ├── SlabRenderer
    ├── ZoneRenderer
    ├── ItemRenderer
    └── ...

Pattern:

  1. Renderer creates a placeholder mesh/group
  2. Registers it with useRegistry
  3. Systems update geometry based on node data

Example (simplified):

const WallRenderer = ({ node }) => {
  const ref = useRef<Mesh>(null!)
  useRegistry(node.id, 'wall', ref)

  return (
    <mesh ref={ref}>
      <boxGeometry args={[0, 0, 0]} />  {/* Replaced by WallSystem */}
      <meshStandardMaterial />
      {node.children.map(id => <NodeRenderer key={id} nodeId={id} />)}
    </mesh>
  )
}

Systems

Systems are React components that run in the render loop (useFrame) to update geometry and transforms. They process dirty nodes marked by the store.

Core Systems (in @pascal-app/core):

System Responsibility
WallSystem Generates wall geometry with mitering and CSG cutouts for doors/windows
SlabSystem Generates floor geometry from polygons
CeilingSystem Generates ceiling geometry
RoofSystem Generates roof geometry
ItemSystem Positions items on walls, ceilings, or floors (slab elevation)

Viewer Systems (in @pascal-app/viewer):

System Responsibility
LevelSystem Handles level visibility and vertical positioning (stacked/exploded/solo modes)
ScanSystem Controls 3D scan visibility
GuideSystem Controls guide image visibility

Processing Pattern:

useFrame(() => {
  for (const id of dirtyNodes) {
    const obj = sceneRegistry.nodes.get(id)
    const node = useScene.getState().nodes[id]

    // Update geometry, transforms, etc.
    updateGeometry(obj, node)

    dirtyNodes.delete(id)
  }
})

Dirty Nodes

When a node changes, it's marked as dirty in useScene.getState().dirtyNodes. Systems check this set each frame and only recompute geometry for dirty nodes.

// Automatic: createNode, updateNode, deleteNode mark nodes dirty
useScene.getState().updateNode(wallId, { thickness: 0.2 })
// → wallId added to dirtyNodes
// → WallSystem regenerates geometry next frame
// → wallId removed from dirtyNodes

Manual marking:

useScene.getState().dirtyNodes.add(wallId)

Event Bus

Inter-component communication uses a typed event emitter (mitt):

// Node events
emitter.on('wall:click', (event) => { ... })
emitter.on('item:enter', (event) => { ... })
emitter.on('zone:context-menu', (event) => { ... })

// Grid events (background)
emitter.on('grid:click', (event) => { ... })

// Event payload
NodeEvent {
  node: AnyNode
  position: [x, y, z]
  localPosition: [x, y, z]
  normal?: [x, y, z]
  stopPropagation: () => void
}

Spatial Grid Manager

Handles collision detection and placement validation:

spatialGridManager.canPlaceOnFloor(levelId, position, dimensions, rotation)
spatialGridManager.canPlaceOnWall(wallId, t, height, dimensions)
spatialGridManager.getSlabElevationAt(levelId, x, z)

Used by item placement tools to validate positions and calculate slab elevations.


Editor Architecture

The editor extends the viewer with:

Tools

Tools are activated via the toolbar and handle user input for specific operations:

  • SelectTool - Selection and manipulation
  • WallTool - Draw walls
  • ZoneTool - Create zones
  • ItemTool - Place furniture/fixtures
  • SlabTool - Create floor slabs

Selection Manager

The editor uses a custom selection manager with hierarchical navigation:

Site → Building → Level → Zone → Items

Each depth level has its own selection strategy for hover/click behavior.

Editor-Specific Systems

  • ZoneSystem - Controls zone visibility based on level mode
  • Custom camera controls with node focusing

Data Flow

User Action (click, drag)
       ↓
Tool Handler
       ↓
useScene.createNode() / updateNode()
       ↓
Node added/updated in store
Node marked dirty
       ↓
React re-renders NodeRenderer
useRegistry() registers 3D object
       ↓
System detects dirty node (useFrame)
Updates geometry via sceneRegistry
Clears dirty flag

Building a Plugin

The editor is extensible: a plugin ships node kinds (schema, 3D/2D rendering, placement tools, inspector parametrics) and left-rail panels through the same Plugin manifest the built-ins use — there is no separate internal API.

  • Contract referencewiki/architecture/plugin-authoring.md: the Plugin shape, panel contributions, discovery (setPluginDiscovery), lifecycle, and what's in/out of v1.
  • Worked examplepackages/plugin-trees: a first-party plugin (procedural trees, flowers, grass + a presets panel) structurally identical to a third-party pack. Copy it as a starting point.

Technology Stack

  • React 19 + Next.js 16
  • Three.js (WebGPU renderer)
  • React Three Fiber + Drei
  • Zustand (state management)
  • Zod (schema validation)
  • Zundo (undo/redo)
  • three-bvh-csg (Boolean geometry operations)
  • Turborepo (monorepo management)
  • Bun (package manager)

Getting Started

Development

Run the development server from the root directory to enable hot reload for all packages:

# Install dependencies
bun install

# Run development server (builds packages + starts editor with watch mode)
bun dev

# This will:
# 1. Build @pascal-app/core and @pascal-app/viewer
# 2. Start watching both packages for changes
# 3. Start the Next.js editor dev server
# Open http://localhost:3000

Important: Always run bun dev from the root directory to ensure the package watchers are running. This enables hot reload when you edit files in packages/core/src/ or packages/viewer/src/.

Building for Production

# Build all packages
turbo build

# Build specific package
turbo build --filter=@pascal-app/core

Publishing Packages

# Build packages
turbo build --filter=@pascal-app/core --filter=@pascal-app/viewer

# Publish to npm
npm publish --workspace=@pascal-app/core --access public
npm publish --workspace=@pascal-app/viewer --access public

Key Files

Path Description
packages/core/src/schema/ Node type definitions (Zod schemas)
packages/core/src/store/use-scene.ts Scene state store
packages/core/src/hooks/scene-registry/ 3D object registry
packages/core/src/systems/ Geometry generation systems
packages/viewer/src/components/renderers/ Node renderers
packages/viewer/src/components/viewer/ Main Viewer component
apps/editor/components/tools/ Editor tools
apps/editor/store/ Editor-specific state

Contributors

Aymeric Rabot Wassim Samad Sudhir


pascalorg/editor | Trendshift

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Клон проекта Pascal Editor
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