555cf06c12 editor: building rotation, alt-click single wall, world-grid alignment, tap-to-engage move (#388)
* 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

* Snapshot: ridge vent locks to segment ridge during placement, free sliders after

Placement tool clamps the cursor to the segment's ridge line for all roof
types (gable, hip, shed, gambrel, dutch, mansard; flat rejected). Renderer
re-derives Y from the live surface plus a small lift, and treats stored
position[1] / position[2] as user offsets so the inspector sliders move
the vent after placement.

Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>

* feat(roof): contribute outer silhouette to alignment-guide candidates

Roof has no centred-box footprint (it's the union of its `roof-segment`
children) so the capability bridge needs the resolved AABB directly. We
build it from the children's corners in roof-local space, then transform
to world coords. Roofs only contribute as static candidates — the
move-roof tool drives them by origin, so the relocatable-box path never
applies.

Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>

* feat(floorplan): upright text geometry that stays horizontal under scene rotation

Floor-plan text labels were rotating with the 90° default scene rotation,
making zone names read sideways. Add an `upright` flag to text geometry:
when set, the registry layer counter-rotates the label by sceneRotationDeg
around its anchor so it reads horizontally on screen. Zone labels opt in.

Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>

* feat(editor): redesign material-paint cursor badge and gate floor-plan paint mode

Paint cursor swaps the inline icon+label chip for a stacked badge — a
glowing accent stem pointing down to the hit point with the paint icon
above — so the cue reads as "pointer" rather than "tooltip". Switches
the accent to indigo. The 2D floor-plan now also shows the paint-icon
overlay and routes pointer interactions to the painter when in
material-paint mode.

Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>

* feat(editor): 90° rotate action on the floating building menu

Adds a Rotate button to the building action menu (and a generic `onRotate`
slot to NodeActionMenu). Each click rotates the building 90° CW around
its world-bbox center, mirroring the offset compensation
`MoveBuildingContent` uses during R/T-rotate drags — so the building
spins in place instead of orbiting its (often off-centre) origin.

Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>

* feat(column,shelf): show cursor sphere during placement preview

Matches the placement affordance other floor-placed tools already have
so users see the snap point as a discrete dot alongside the ghost mesh.

Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>

* chore(ifc-converter): update next-env types path to .next/dev/types

Next.js moved generated route types under `.next/dev/types/` — regenerate
the reference so the type-check resolves them again.

Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>

* fix(ridge-vent): track parent segment's live overrides for real-time follow

While dragging a roof-segment resize handle (width / depth / pitch /
wallHeight / rotation), the new dimensions stream through
useLiveNodeOverrides and only flush to the store on release — so the
ridge vent was snapping to the new ridge only after the drag ended.
Merge segment overrides into the renderer's segment view so the vent
rides the resize in real time.

Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>

* feat(editor): step building rotation in 15° increments

Cuts the floating building menu's rotate-step from 90° to 15° so each
click nudges the building rather than slamming it to the next cardinal.

Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>

* feat(editor): world-frame alignment guides and grid snap under building rotation

Brings the 2D floor-plan alignment + grid behaviour in line with 3D so
guides and snap follow the world XZ grid regardless of how the active
building is rotated.

Core: adds resolveAlignmentInBuildingWorld + snapWorldXZToBuildingLocal,
plus a shared BuildingPose type, so callers can resolve in world space
while staying in building-local coords downstream.

Editor: introduces packages/editor/src/lib/world-grid-snap.ts as the
single entry point for tools that need world-frame alignment / grid
snap (resolveAlignmentForActiveBuilding, getActiveBuildingPose,
snapWorldXZForActiveBuilding, snapBuildingLocalToWorldGrid). Honours
useLiveTransforms and resolves the active building via level.parentId
first so the helper stays in sync with the floor-plan panel.

Alignment store unification: applyFloorplanAlignment and the registry
move overlay now publish guides in world XZ — the same frame the 3D
tools already use — so the shared useAlignmentGuides store carries one
consistent coordinate system. The 2D layer renders world XZ via the
fixed world → SVG transform (a 90° rotation around the building's
world position; independent of building rotation), so guides come out
parallel to the world-axis-aligned floor-plan grid in every case.

Drafting + move sessions across walls, fences, slabs, ceilings,
columns, items, shelves, roofs, stairs, zones and elevators are
re-routed through the new helpers so cursor placement, grid snap,
draft endpoints, and move commits all land on the world XZ grid
even when the building has been rotated.

Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>

* revert(editor): drop building drag-rotate and grid building-XZ chase

Two behaviours added recently were causing the world grid to slide
around during building edits. Reverts both, keeping the rest of the
world-frame alignment work intact.

- floating-building-action-menu / node-action-menu: roll the rotate
  button back to a single click that increments rotation by 15°
  around the bbox center (state at 3eb02fde). The drag-rotate from
  b50c0d5a streamed live position updates per frame, which the
  floor plan and grid both followed.
- grid: stop chasing the active building's world XZ each frame
  (pre-c00a2469 behaviour). The grid stays anchored at world (0, 0)
  so it doesn't visibly sweep when the building origin moves —
  during a drag, an R/T rotation in the move tool, or a click
  rotate that re-anchors the origin to the bbox-pivot. Y still
  lerps to the active level's floor height.

Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>

* feat(editor): consistent building rotation pivot + 2D position sync

Several connected fixes to building rotate/move so the 3D mesh, the
2D floor plan, and alignment guides all stay visually consistent
across rotations and drags.

Rotation-invariant pivot
- New `getBuildingLocalBboxCenter` helper walks descendant mesh
  geometry bounds in the building's LOCAL frame, returning a
  centroid that doesn't depend on the building's current world
  rotation. The previous approach derived the pivot from the world
  AABB at the current rotation, which made the local pivot subtly
  drift each time the building was rotated.
- Floating menu click-rotate and move-tool R/T rotation now seed
  their pivot from this helper, so successive rotations stay
  pinned at the same world point.

Move-tool stability
- R/T rotation always pivots around the current world bbox center,
  even before the cursor has moved onto the grid (previously it
  fell back to rotating around the origin in that case).
- Commit (`onGridClick`) now writes the mesh's actual on-screen
  pose instead of recomputing it from the click event's grid
  coords, removing a one-cell snap on release.

Alignment resolver
- Tie-break is now perp-first, primary-second. The previous order
  was reliable when wall faces shared an exact axis-aligned coord
  (pre-rotation), but post-rotation float deltas meant primary
  never tied and the resolver could lock onto the far corner of a
  candidate. Perp-first picks the visually closest point.

2D ↔ 3D sync
- The floor-plan SVG scene group now applies a live `translate(...)`
  derived from `(committedBuildingPosition → live buildingPosition)`,
  in addition to the existing live rotation. Building-local content
  slides in lockstep with the 3D mesh during a drag.
- The alignment-guide layer projects from world XZ using the
  COMMITTED building position, so guides stay locked to their world
  coordinates while the building slides past them.

Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>

* Merge remote-tracking branch 'origin/main' into fix/fir-5-june

* feat(wall): alt-click commits a single wall instead of chaining

Holding Alt on the click that completes a segment now stops drafting
instead of starting a new segment from the just-placed endpoint. Same
behaviour wired in both the 3D wall tool and the 2D floor-plan
placement hook (which already passed `singleWall: event.altKey` —
the 2D handler was ignoring the flag).

Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>

* revert(editor): drop 15° rotate from floating building action menu

Removes the rotate button on the floating building menu and the
`getBuildingLocalBboxCenter` pivot helper that only existed to support
it. The selected-group rotate handle remains the way to rotate a
building.

Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>

* chore(ifc-converter): point next-env at .next/types instead of .next/dev/types

Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>

* feat(editor): unify 3D move grip with floating-menu Move via tap-to-engage

The translate gizmo on the 3D bounding box now hands the node to the
registry move tool (same path as the floating action menu's Move
button) instead of running its own plane-drag. One move flow — green
bounding box, cursor follow, alignment guides, R/T rotation,
click-to-commit — drives both entry points.

Adds a `dragBounds` capability on the node registry so kinds whose
rendered mesh contains extras (per-level landing assemblies on an
elevator, etc.) can declare the box the user thinks of as "the thing
being dragged." Elevator and stair opt in; everything else still
auto-measures. `MoveRoofTool` now shows the green box for whole-stair
and whole-roof moves, and aligns roofs by their footprint corners
(previously only stairs did). Slab floor-plan moves clear
`autoFromWalls` on commit so space-detection doesn't snap the slab
back, via a new `extraCommitFields` hook on the polygon-centroid
move target.

Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>

* feat(editor): 2D alignment guides in building-local frame + world-grid wall snap

The 2D floor-plan alignment layer now mounts inside the rotated scene
<g> and reads from an editor-local `useAlignmentGuides` store —
guides are stored in building-local meters and follow the SVG
transform that already carries the rest of the floor-plan geometry.
Pill labels are counter-rotated by the scene rotation so they stay
upright under building rotation. The 3D pipeline keeps its own
world-frame store; the two surfaces no longer share frames.

Wall drafting picks up an optional `gridSnap` override so the 2D
floor-plan can snap drafts onto the world-XZ grid even when the
active building is rotated — without it, a rotated building's
drafted wall would chase the local grid and miss the visible lines.
`snapPointTo45Degrees` and `snapWallDraftPointDetailed` route through
the override when supplied; otherwise the prior local-axis grid snap
is unchanged. The floor-plan panel wires `snapBuildingLocalToWorldGrid`
through the placement hook and exports `WALL_GRID_STEP` to support it.

Also fixes the minor/major grid stroke palette swap so minor lines
render with the minor palette and majors with the major palette.

Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>

* chore(editor): drop dead onRotate slot, memoize dragBounds snapshot

Removes the unreachable `onRotate` prop, `RotateCw` import, and
rotate button from `NodeActionMenu` — its only caller was the
floating building menu's 15° rotate, which was removed in d65fd5fe.

Memoizes `MoveRegistryNodeTool`'s `dragBounds` lookup so it captures
the scene snapshot once per node instead of re-reading
`useScene.getState().nodes` on every render. Bounds depend only on
`node` (locked for the tool's lifetime) and start-time sibling state
(elevator shaft height from the level set), so a one-shot snapshot is
the right semantics — and it avoids implying a live subscription that
isn't there.

Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>

* chore: biome check --write (import order, formatting, unused import)

Auto-fixes from `bun check:fix`:
- import-order normalization in editor/nodes/core
- unused `snapToGrid` / `useLayoutEffect` imports dropped
- minor whitespace/wrapping tweaks

No behavioural change.

Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>

---------

Co-authored-by: Claude Opus 4.6 <noreply@anthropic.com>
2026-06-09 11:05:27 -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
2026-05-09 02:25:25 +00:00

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-v2/
├── apps/
│   └── editor/          # Next.js application
├── packages/
│   ├── core/            # Schema definitions, state management, systems
│   └── viewer/          # 3D rendering 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

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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