Fix covering geometry not persisting to IFC, same root cause as #7055

The covering tool used bmesh as an intermediate and relied on
type.assign_type post-listeners (removed in 44a52863a) to generate
the IfcExtrudedAreaSolid body. With those listeners gone, coverings
had no body representation and assign_swept_area_outer_curve crashed.

Build covering representations from scratch using ShapeBuilder, reading
the extrusion depth from the type's IfcMaterialLayerSet. Also replace
bpy.ops.bim.assign_class with bonsai.core.root.assign_class using
should_add_representation=False, consistent with the space fix.

Refactored shared coordinate-conversion and extrusion-building logic
into get_2d_vertices_from_polygon and set_extrusion_representation_from_polygon,
used by both space and covering code paths. Removed all bmesh-dependent
dead code from the spatial tool.

Co-Authored-By: Claude Opus 4.6 <noreply@anthropic.com>
This commit is contained in:
Dion Moult
2026-03-22 23:18:59 +11:00
parent ab96add772
commit 60ebb99fda
3 changed files with 84 additions and 214 deletions
+11 -61
View File
@@ -51,21 +51,11 @@ def add_instance_flooring_covering_from_cursor(
if isinstance(space_polygon, str):
return
bm = spatial.get_bmesh_from_polygon(space_polygon, h=0, polygon_is_si=True)
name = "Covering"
mesh = spatial.get_named_mesh_from_bmesh(name=name, bmesh=bm)
obj = spatial.get_named_obj_from_mesh(name, mesh)
obj = spatial.create_object("Covering")
spatial.set_obj_origin_to_cursor_position_and_zero_elevation(obj)
spatial.translate_obj_to_z_location(obj, z)
points = spatial.get_2d_vertices_from_obj(obj)
points = spatial.get_scaled_2d_vertices(points)
spatial.assign_type_to_obj(obj)
spatial.assign_swept_area_outer_curve_from_2d_vertices(obj, vertices=points)
body = spatial.get_body_representation(obj)
spatial.regen_obj_representation(obj, body)
spatial.set_covering_representation_from_polygon(obj, space_polygon, polygon_is_si=True)
def add_instance_ceiling_covering_from_cursor(
@@ -95,21 +85,11 @@ def add_instance_ceiling_covering_from_cursor(
if isinstance(space_polygon, str):
return
bm = spatial.get_bmesh_from_polygon(space_polygon, h=0, polygon_is_si=True)
name = "Covering"
mesh = spatial.get_named_mesh_from_bmesh(name=name, bmesh=bm)
obj = spatial.get_named_obj_from_mesh(name, mesh)
obj = spatial.create_object("Covering")
spatial.set_obj_origin_to_cursor_position_and_zero_elevation(obj)
spatial.translate_obj_to_z_location(obj, z + ceiling_height)
points = spatial.get_2d_vertices_from_obj(obj)
points = spatial.get_scaled_2d_vertices(points)
spatial.assign_type_to_obj(obj)
spatial.assign_swept_area_outer_curve_from_2d_vertices(obj, vertices=points)
body = spatial.get_body_representation(obj)
spatial.regen_obj_representation(obj, body)
spatial.set_covering_representation_from_polygon(obj, space_polygon, polygon_is_si=True)
def regen_selected_covering_object(root: type[tool.Root], spatial: type[tool.Spatial]) -> None:
@@ -127,19 +107,7 @@ def regen_selected_covering_object(root: type[tool.Root], spatial: type[tool.Spa
if isinstance(space_polygon, str):
return
bm = spatial.get_bmesh_from_polygon(space_polygon, h=0, polygon_is_si=True)
name = "Aux"
mesh = spatial.get_named_mesh_from_bmesh(name=name, bmesh=bm)
mesh = spatial.get_transformed_mesh_from_local_to_global(mesh)
obj = spatial.get_named_obj_from_mesh(name, mesh)
points = spatial.get_2d_vertices_from_obj(obj)
points = spatial.get_scaled_2d_vertices(points)
spatial.assign_swept_area_outer_curve_from_2d_vertices(active_obj, vertices=points)
body = spatial.get_body_representation(active_obj)
spatial.regen_obj_representation(active_obj, body)
spatial.set_covering_representation_from_polygon(active_obj, space_polygon, polygon_is_si=True)
# TODO CHECK IF IT IS POSSIBLE TO CREATE ONLY ONE CORE FUNCTION FOR _FROM_WALLS
@@ -151,22 +119,13 @@ def add_instance_flooring_coverings_from_walls(root: type[tool.Root], spatial: t
union = spatial.get_union_shape_from_selected_objects()
for i, linear_ring in enumerate(union.interiors):
poly = spatial.get_buffered_poly_from_linear_ring(linear_ring)
bm = spatial.get_bmesh_from_polygon(poly, h=0, polygon_is_si=False)
name = "Covering" + str(i)
obj = spatial.get_named_obj_from_bmesh(name, bmesh=bm)
spatial.set_obj_origin_to_bboxcenter(obj)
obj = spatial.create_object(name)
spatial.set_obj_origin_to_polygon_center(obj, poly, polygon_is_si=False)
spatial.translate_obj_to_z_location(obj, z)
points = spatial.get_2d_vertices_from_obj(obj)
points = spatial.get_scaled_2d_vertices(points)
spatial.assign_type_to_obj(obj)
spatial.assign_swept_area_outer_curve_from_2d_vertices(obj, vertices=points)
body = spatial.get_body_representation(obj)
spatial.regen_obj_representation(obj, body)
spatial.set_covering_representation_from_polygon(obj, poly, polygon_is_si=False)
def add_instance_ceiling_coverings_from_walls(
@@ -179,22 +138,13 @@ def add_instance_ceiling_coverings_from_walls(
union = spatial.get_union_shape_from_selected_objects()
for i, linear_ring in enumerate(union.interiors):
poly = spatial.get_buffered_poly_from_linear_ring(linear_ring)
bm = spatial.get_bmesh_from_polygon(poly, h=0, polygon_is_si=False)
name = "Covering" + str(i)
obj = spatial.get_named_obj_from_bmesh(name, bmesh=bm)
spatial.set_obj_origin_to_bboxcenter(obj)
obj = spatial.create_object(name)
spatial.set_obj_origin_to_polygon_center(obj, poly, polygon_is_si=False)
spatial.translate_obj_to_z_location(obj, z)
points = spatial.get_2d_vertices_from_obj(obj)
points = spatial.get_scaled_2d_vertices(points)
spatial.assign_type_to_obj(obj)
spatial.assign_swept_area_outer_curve_from_2d_vertices(obj, vertices=points)
body = spatial.get_body_representation(obj)
spatial.regen_obj_representation(obj, body)
spatial.set_covering_representation_from_polygon(obj, poly, polygon_is_si=False)
class NoDefaultContainer(Exception):
+3 -11
View File
@@ -999,15 +999,12 @@ class Spatial:
def get_purged_inner_holes_poly(cls, union_geom, min_area): pass
def get_poly_valid_interior_list(cls, poly, min_area, interiors_list): pass
def get_buffered_poly_from_linear_ring(cls, linear_ring): pass
def get_bmesh_from_polygon(cls, poly, h, polygon_is_si=False): pass
def get_named_obj_from_bmesh(cls, name, bmesh): pass
def get_named_obj_from_mesh(cls, name, mesh): pass
def get_named_mesh_from_bmesh(cls, name, bmesh): pass
def get_transformed_mesh_from_local_to_global(cls, mesh): pass
def get_2d_vertices_from_polygon(cls, poly, obj, polygon_is_si=True): pass
def set_extrusion_representation_from_polygon(cls, obj, element, poly, depth_ifc, polygon_is_si=True): pass
def set_space_representation_from_polygon(cls, obj, element, poly, h, polygon_is_si=True): pass
def set_covering_representation_from_polygon(cls, obj, poly, polygon_is_si=True): pass
def create_object(cls, name): pass
def set_obj_origin_to_polygon_center(cls, obj, poly, polygon_is_si=True): pass
def set_obj_origin_to_bboxcenter(cls, obj): pass
def set_obj_origin_to_cursor_position_and_zero_elevation(cls, obj): pass
def get_selected_objects(cls): pass
def get_active_obj(cls): pass
@@ -1015,14 +1012,9 @@ class Spatial:
def get_active_obj_height(cls): pass
def get_relating_type_id(cls): pass
def translate_obj_to_z_location(cls, obj, z): pass
def get_2d_vertices_from_obj(cls, obj): pass
def get_scaled_2d_vertices(cls, points): pass
def assign_swept_area_outer_curve_from_2d_vertices(cls, obj, vertices): pass
def get_body_representation(cls, obj): pass
def assign_ifcspace_class_to_obj(cls, obj): pass
def assign_type_to_obj(cls, obj): pass
def assign_relating_type_to_element(cls, ifc, type, element, relating_type): pass
def regen_obj_representation(cls, obj, body): pass
def toggle_spaces_visibility_wired_and_textured(cls, spaces): pass
def toggle_hide_spaces(cls, spaces): pass
def set_default_container(cls, container): pass
+70 -142
View File
@@ -21,7 +21,6 @@ from __future__ import annotations
import json
from collections import defaultdict
from collections.abc import Generator, Iterable
from math import pi
from typing import TYPE_CHECKING, Any, Literal, Optional, Union
import bmesh
@@ -991,49 +990,6 @@ class Spatial(bonsai.core.tool.Spatial):
)
return poly
@classmethod
def get_bmesh_from_polygon(cls, poly: Polygon, h: float, polygon_is_si: bool = False) -> bmesh.types.BMesh:
"""
:param h: Height, in meters.
:param polygon_is_si: Should be True if `poly` is defined in meters.
"""
mat = Matrix()
bm = bmesh.new()
bm.verts.index_update()
bm.edges.index_update()
mat_invert = mat.inverted()
si_conversion = 1.0 if polygon_is_si else ifcopenshell.util.unit.calculate_unit_scale(tool.Ifc.get())
new_verts = [
# bm.verts.new(mat_invert @ (Vector([v[0], v[1], 0]) * si_conversion)) for v in poly.exterior.coords[0:-1]
bm.verts.new(mat_invert @ (Vector([v[0], v[1], 0]) * si_conversion))
for v in shapely.get_exterior_ring(poly).coords[0:-1]
]
[bm.edges.new((new_verts[i], new_verts[i + 1])) for i in range(len(new_verts) - 1)]
bm.edges.new((new_verts[len(new_verts) - 1], new_verts[0]))
bm.verts.index_update()
bm.edges.index_update()
bmesh.ops.remove_doubles(bm, verts=bm.verts, dist=1e-5)
bmesh.ops.triangle_fill(bm, edges=bm.edges)
bmesh.ops.dissolve_limit(bm, angle_limit=pi / 180 * 5, verts=bm.verts, edges=bm.edges)
if h != 0:
extrusion = bmesh.ops.extrude_face_region(bm, geom=bm.faces)
extruded_verts = [g for g in extrusion["geom"] if isinstance(g, bmesh.types.BMVert)]
bmesh.ops.translate(bm, vec=[0.0, 0.0, h], verts=extruded_verts)
bmesh.ops.recalc_face_normals(bm, faces=bm.faces)
return bm
@classmethod
def get_named_obj_from_bmesh(cls, name: str, bmesh: bmesh.types.BMesh) -> bpy.types.Object:
mesh = cls.get_named_mesh_from_bmesh(name, bmesh)
obj = cls.get_named_obj_from_mesh(name, mesh)
return obj
@classmethod
def create_object(cls, name: str) -> bpy.types.Object:
mesh = bpy.data.meshes.new(name=name)
@@ -1051,47 +1007,23 @@ class Spatial(bonsai.core.tool.Spatial):
else:
obj.location = Vector((centroid.x * unit_scale, centroid.y * unit_scale, 0))
@classmethod
def get_named_obj_from_mesh(cls, name: str, mesh: bpy.types.Mesh) -> bpy.types.Object:
obj = bpy.data.objects.new(name, mesh)
return obj
@classmethod
def get_named_mesh_from_bmesh(cls, name: str, bmesh: bmesh.types.BMesh) -> bpy.types.Mesh:
mesh = bpy.data.meshes.new(name=name)
bmesh.to_mesh(mesh)
bmesh.free()
return mesh
@classmethod
def get_transformed_mesh_from_local_to_global(cls, mesh: bpy.types.Mesh) -> bpy.types.Mesh:
active_obj = cls.get_active_obj()
mat = active_obj.matrix_world
mesh.transform(mat.inverted())
mesh.update()
return mesh
@classmethod
def set_space_representation_from_polygon(
def get_2d_vertices_from_polygon(
cls,
obj: bpy.types.Object,
element: ifcopenshell.entity_instance,
poly: Polygon,
h: float,
obj: bpy.types.Object,
polygon_is_si: bool = True,
) -> None:
"""Create or replace the IFC body representation of a space from a polygon.
) -> list[list[float]]:
"""Convert a world-space shapely polygon to 2D vertices in obj's local space, in IFC file units.
:param obj: The Blender object for the space.
:param element: The IfcSpace entity.
:param poly: The space polygon in world space.
:param h: The height in SI (meters).
:param poly: The polygon in world space.
:param obj: The Blender object whose local space is used.
:param polygon_is_si: True if polygon coords are in SI, False if in IFC file units.
:return: List of [x, y] coordinates (not closed).
"""
ifc_file = tool.Ifc.get()
unit_scale = ifcopenshell.util.unit.calculate_unit_scale(ifc_file)
builder = ifcopenshell.util.shape_builder.ShapeBuilder(ifc_file)
bpy.context.view_layer.update()
mat_inv = obj.matrix_world.inverted()
coords_2d = []
@@ -1100,10 +1032,33 @@ class Spatial(bonsai.core.tool.Spatial):
if not polygon_is_si:
world_si = world_si * unit_scale
local_si = mat_inv @ world_si
coords_2d.append(Vector((local_si.x, local_si.y)) / unit_scale)
coords_2d.append([local_si.x / unit_scale, local_si.y / unit_scale])
return coords_2d
@classmethod
def set_extrusion_representation_from_polygon(
cls,
obj: bpy.types.Object,
element: ifcopenshell.entity_instance,
poly: Polygon,
depth_ifc: float,
polygon_is_si: bool = True,
) -> None:
"""Create or replace the IFC body representation from a polygon extrusion.
:param obj: The Blender object.
:param element: The IFC product entity.
:param poly: The polygon in world space.
:param depth_ifc: The extrusion depth in IFC file units.
:param polygon_is_si: True if polygon coords are in SI, False if in IFC file units.
"""
ifc_file = tool.Ifc.get()
builder = ifcopenshell.util.shape_builder.ShapeBuilder(ifc_file)
coords_2d = cls.get_2d_vertices_from_polygon(poly, obj, polygon_is_si)
curve = builder.polyline(coords_2d, closed=True)
item = builder.extrude(curve, magnitude=h / unit_scale)
item = builder.extrude(curve, magnitude=depth_ifc)
old_body = ifcopenshell.util.representation.get_representation(element, "Model", "Body", "MODEL_VIEW")
if old_body:
@@ -1123,20 +1078,20 @@ class Spatial(bonsai.core.tool.Spatial):
)
@classmethod
def set_obj_origin_to_bboxcenter(cls, obj: bpy.types.Object) -> None:
mat = obj.matrix_world
inverted = mat.inverted()
local_bbox_center = 0.125 * sum((Vector(b) for b in obj.bound_box), Vector())
global_bbox_center = mat @ local_bbox_center
def set_space_representation_from_polygon(
cls,
obj: bpy.types.Object,
element: ifcopenshell.entity_instance,
poly: Polygon,
h: float,
polygon_is_si: bool = True,
) -> None:
"""Create or replace the IFC body representation of a space from a polygon.
oldLoc = obj.location
newLoc = global_bbox_center
diff = newLoc - oldLoc
for vert in obj.data.vertices:
aux_vector = mat @ vert.co
aux_vector = aux_vector - diff
vert.co = inverted @ aux_vector
obj.location = newLoc
:param h: The height in SI (meters).
"""
unit_scale = ifcopenshell.util.unit.calculate_unit_scale(tool.Ifc.get())
cls.set_extrusion_representation_from_polygon(obj, element, poly, h / unit_scale, polygon_is_si)
@classmethod
def set_obj_origin_to_cursor_position_and_zero_elevation(cls, obj: bpy.types.Object) -> None:
@@ -1183,47 +1138,6 @@ class Spatial(bonsai.core.tool.Spatial):
if z != 0:
obj.location = obj.location + Vector((0, 0, z))
@classmethod
def get_2d_vertices_from_obj(cls, obj: bpy.types.Object) -> list[tuple]:
points = []
vectors = [v.co for v in obj.data.vertices.values()]
for vector in vectors:
points.append(vector.xy)
points.append(vectors[0].xy)
return points
@classmethod
def get_scaled_2d_vertices(cls, points: list[Vector]) -> list[tuple[float, float]]:
model = tool.Ifc.get()
unit_scale = ifcopenshell.util.unit.calculate_unit_scale(model)
_points = []
for p in points:
_p = list(p)
_p[0] /= unit_scale
_p[1] /= unit_scale
_points.append(_p)
return _points
@classmethod
def assign_swept_area_outer_curve_from_2d_vertices(cls, obj: bpy.types.Object, vertices: list[Vector]) -> None:
body = cls.get_body_representation(obj)
model = tool.Ifc.get()
extrusion = tool.Model.get_extrusion(body)
area = extrusion.SweptArea
old_area = area.OuterCurve
builder = ifcopenshell.util.shape_builder.ShapeBuilder(model)
outer_curve = builder.polyline(vertices, closed=True)
area.OuterCurve = outer_curve
ifcopenshell.util.element.remove_deep2(tool.Ifc.get(), old_area)
@classmethod
def get_body_representation(cls, obj: bpy.types.Object) -> Union[ifcopenshell.entity_instance, None]:
element = tool.Ifc.get_entity(obj)
return ifcopenshell.util.representation.get_representation(element, "Model", "Body", "MODEL_VIEW")
@classmethod
def assign_ifcspace_class_to_obj(cls, obj: bpy.types.Object) -> None:
bonsai.core.root.assign_class(
@@ -1237,18 +1151,40 @@ class Spatial(bonsai.core.tool.Spatial):
@classmethod
def assign_type_to_obj(cls, obj: bpy.types.Object) -> None:
# TODO this code looks in the wrong spot and suspicious
props = tool.Model.get_model_props()
ifc_file = tool.Ifc.get()
relating_type_id = props.relating_type_id
relating_type = tool.Ifc.get().by_id(int(relating_type_id))
relating_type = ifc_file.by_id(int(relating_type_id))
ifc_class = relating_type.is_a()
instance_class = ifcopenshell.util.type.get_applicable_entities(ifc_class, ifc_file.schema)[0]
bpy.ops.bim.assign_class(obj=obj.name, ifc_class=instance_class)
bonsai.core.root.assign_class(
tool.Ifc,
tool.Collector,
tool.Root,
obj=obj,
ifc_class=instance_class,
should_add_representation=False,
)
element = tool.Ifc.get_entity(obj)
assert element
ifcopenshell.api.type.assign_type(ifc_file, related_objects=[element], relating_type=relating_type)
@classmethod
def set_covering_representation_from_polygon(
cls,
obj: bpy.types.Object,
poly: Polygon,
polygon_is_si: bool = True,
) -> None:
"""Create the covering body representation from a polygon, extruded by the type's material layer thickness."""
element = tool.Ifc.get_entity(obj)
relating_type = ifcopenshell.util.element.get_type(element)
material = ifcopenshell.util.element.get_material(relating_type, should_skip_usage=True)
depth = 0.0
if material and material.is_a("IfcMaterialLayerSet"):
depth = sum(layer.LayerThickness for layer in material.MaterialLayers)
cls.set_extrusion_representation_from_polygon(obj, element, poly, depth, polygon_is_si)
@classmethod
def assign_relating_type_to_element(
cls,
@@ -1259,14 +1195,6 @@ class Spatial(bonsai.core.tool.Spatial):
) -> None:
bonsai.core.type.assign_type(ifc, tool.Model, type, element=element, type=relating_type)
@classmethod
def regen_obj_representation(cls, obj: bpy.types.Object, body: ifcopenshell.entity_instance) -> None:
bonsai.core.geometry.switch_representation(
tool.Ifc,
tool.Geometry,
obj=obj,
representation=body,
)
@classmethod
def set_space_visibility(cls, is_visible: bool) -> None: