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IfcOpenShell/src/ifcopenshell-python/ifcopenshell/api/geometry/add_door_representation.py
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# IfcOpenShell - IFC toolkit and geometry engine
# Copyright (C) 2023 @Andrej730
#
# This file is part of IfcOpenShell.
#
# IfcOpenShell is free software: you can redistribute it and/or modify
# it under the terms of the GNU Lesser General Public License as published by
# the Free Software Foundation, either version 3 of the License, or
# (at your option) any later version.
#
# IfcOpenShell is distributed in the hope that it will be useful,
# but WITHOUT ANY WARRANTY; without even the implied warranty of
# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
# GNU Lesser General Public License for more details.
#
# You should have received a copy of the GNU Lesser General Public License
# along with IfcOpenShell. If not, see <http://www.gnu.org/licenses/>.
import ifcopenshell.util.unit
from ifcopenshell.util.shape_builder import ShapeBuilder, V
from ifcopenshell.api.geometry.add_window_representation import create_ifc_window
from mathutils import Vector
import collections
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def create_ifc_door_lining_items(
builder: ShapeBuilder, size: Vector, thickness: Vector, position: Vector = V(0,0,0).freeze()
):
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"""`thickness` of the profile is defined as list in the following order: `(SIDE, TOP)`
`thickness` can be also defined just as 1 float value.
"""
if not isinstance(thickness, collections.abc.Iterable):
thickness = [thickness] * 2
th_side, th_up = thickness
left_lining = builder.rectangle(V(th_side, 0, size.z))
right_lining = builder.translate(left_lining, V(size.x-th_side, 0, 0), create_copy=True)
top_lining = builder.rectangle(V(size.x, 0, th_up), V(0, 0, size.z-th_up))
items = [left_lining, right_lining, top_lining]
items = [builder.extrude(l, size.y, extrusion_vector=V(0,1,0)) for l in items]
builder.translate(items, position)
return items
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def create_ifc_box(builder: ShapeBuilder, size: Vector, position: Vector = V(0,0,0).freeze()):
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rect = builder.rectangle(size.xy)
box = builder.extrude(rect, size.z, position=position, extrusion_vector=V(0,0,1))
return box
class Usecase:
def __init__(self, file, **settings):
"""units in settings expected to be in ifc project units"""
self.file = file
# http://ifc43-docs.standards.buildingsmart.org/IFC/RELEASE/IFC4x3/HTML/lexical/IfcDoor.htm
# http://ifc43-docs.standards.buildingsmart.org/IFC/RELEASE/IFC4x3/HTML/lexical/IfcDoorTypeOperationEnum.htm
# http://ifc43-docs.standards.buildingsmart.org/IFC/RELEASE/IFC4x3/HTML/lexical/IfcDoorLiningProperties.htm
# http://ifc43-docs.standards.buildingsmart.org/IFC/RELEASE/IFC4x3/HTML/lexical/IfcDoorPanelProperties.htm
self.settings = {"unit_scale": ifcopenshell.util.unit.calculate_unit_scale(self.file)}
self.settings.update(
{
"context": None, # IfcGeometricRepresentationContext
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"overall_height": self.convert_si_to_unit(2.0),
"overall_width": self.convert_si_to_unit(0.9),
# DOUBLE_DOOR_DOUBLE_SWING, DOUBLE_DOOR_FOLDING, DOUBLE_DOOR_LIFTING_VERTICAL,
# DOUBLE_DOOR_SINGLE_SWING, DOUBLE_DOOR_SINGLE_SWING_OPPOSITE_LEFT,
# DOUBLE_DOOR_SINGLE_SWING_OPPOSITE_RIGHT, DOUBLE_DOOR_SLIDING,
# DOUBLE_SWING_LEFT, DOUBLE_SWING_RIGHT, FOLDING_TO_LEFT,
# FOLDING_TO_RIGHT, LIFTING_HORIZONTAL, LIFTING_VERTICAL_LEFT,
# LIFTING_VERTICAL_RIGHT, REVOLVING, REVOLVING_VERTICAL,
# ROLLINGUP, SINGLE_SWING_LEFT, SINGLE_SWING_RIGHT, SLIDING_TO_LEFT,
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# SLIDING_TO_RIGHT, SWING_FIXED_LEFT, SWING_FIXED_RIGHT
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"operation_type": "SINGLE_SWING_LEFT", # door type
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"lining_properties": {
"LiningDepth": self.convert_si_to_unit(0.050),
"LiningThickness": self.convert_si_to_unit(0.050),
# offset from the outer side of the wall (by Y-axis)
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"LiningOffset": self.convert_si_to_unit(0.0),
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# offset from the wall
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"LiningToPanelOffsetX": self.convert_si_to_unit(0.025),
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# offset from the elevation view rectangle (unlike windows)
"LiningToPanelOffsetY": self.convert_si_to_unit(0.025),
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# transom - vertical distance between door and window panels
"TransomThickness": self.convert_si_to_unit(0.000),
# TransomOffset - distance from the bottom door opening
# to the beginning of the transom
# unlike windows TransomOffset which goes to the center of the transom
"TransomOffset": self.convert_si_to_unit(1.525),
"ShapeAspectStyle": None, # DEPRECATED
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# Casing cover wall faces around the opening
# on the left, right and upper sides
# Casing should be either on both sides of the wall or no casing
# If `LiningOffset` is present then therefore casing is not possible on outer wall
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# therefore there will be no casing on inner wall either
"CasingDepth": self.convert_si_to_unit(0.005),
"CasingThickness": self.convert_si_to_unit(0.075), # by Z-axis
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# Threshold covers the bottom side of the opening
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"ThresholdDepth": self.convert_si_to_unit(0.1),
"ThresholdThickness": self.convert_si_to_unit(0.025), # by Z-axis
# offset by Y-axis
"ThresholdOffset": self.convert_si_to_unit(0.000),
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},
"panel_properties": {
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"PanelDepth": self.convert_si_to_unit(0.035), # by Y
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"PanelWidth": 1.0, # as ratio to the clear door opening
"FrameDepth": self.convert_si_to_unit(0.035), # by Y
"FrameThickness": self.convert_si_to_unit(0.035), # by X
# LEFT, MIDDLE, RIGHT, NOTDEFINED
"PanelPosition": ..., # NEVER USED
# defines the basic ways to describe how door panels operate
# basically how it opens
"PanelOperation": None, # NEVER USED
"ShapeAspectStyle": None, # DEPRECATED
},
}
)
for key, value in settings.items():
self.settings[key] = value
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def execute(self):
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builder = ShapeBuilder(self.file)
overall_height = self.settings["overall_height"]
overall_width = self.settings["overall_width"]
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door_type = self.settings["operation_type"]
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if door_type not in ("SINGLE_SWING_LEFT", "SINGLE_SWING_RIGHT"):
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raise NotImplementedError(f'Door type "{door_type}" is not currently supported.')
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if self.settings["context"].TargetView == "ELEVATION_VIEW":
rect = builder.rectangle(V(overall_width, 0, overall_height))
representation_evelevation = builder.get_representation(self.settings["context"], rect)
return representation_evelevation
panel_props = self.settings["panel_properties"]
lining_props = self.settings["lining_properties"]
# lining params
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lining_depth = lining_props["LiningDepth"]
lining_thickness_default = lining_props["LiningThickness"]
lining_offset = lining_props["LiningOffset"]
lining_to_panel_offset_x = lining_props["LiningToPanelOffsetX"]
lining_to_panel_offset_y_full = lining_props["LiningToPanelOffsetY"]
transom_thickness = lining_props["TransomThickness"] / 2
transfom_offset = lining_props["TransomOffset"]
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if transom_thickness == 0:
transfom_offset = 0
window_lining_height = overall_height - transfom_offset - transom_thickness
top_lining_thickness = transom_thickness or lining_thickness_default
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panel_lining_overlap_x = max(lining_thickness_default - lining_to_panel_offset_x, 0)
panel_top_lining_overlap_x = max(top_lining_thickness - lining_to_panel_offset_x, 0)
door_opening_width = overall_width - lining_to_panel_offset_x * 2
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threshold_thickness = lining_props["ThresholdThickness"]
threshold_depth = lining_props["ThresholdDepth"]
threshold_offset = lining_props["ThresholdOffset"]
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threshold_width = overall_width - lining_thickness_default * 2
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casing_thickness = lining_props["CasingThickness"]
casing_depth = lining_props["CasingDepth"]
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# panel params
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panel_depth = panel_props["PanelDepth"]
panel_width = door_opening_width * panel_props["PanelWidth"]
frame_depth = panel_props["FrameDepth"]
frame_thickness = panel_props["FrameThickness"]
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frame_height = window_lining_height - lining_to_panel_offset_x * 2
glass_thickness = self.convert_si_to_unit(0.01)
if transfom_offset:
panel_height = transfom_offset + transom_thickness - lining_to_panel_offset_x - threshold_thickness
lining_height = transfom_offset + transom_thickness
else:
panel_height = overall_height - lining_to_panel_offset_x - threshold_thickness
lining_height = overall_height
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# add lining
lining_size = V(overall_width, lining_depth, lining_height)
lining_thickness = [lining_thickness_default, top_lining_thickness]
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def l_shape_check(lining_thickness):
return lining_to_panel_offset_y_full < lining_depth \
and any(lining_to_panel_offset_x < th for th in lining_thickness)
# create 2d representation
if self.settings["context"].TargetView == "PLAN_VIEW":
items_2d = []
# create lining
if l_shape_check([lining_thickness_default]):
lining_points = [
V(0, 0),
V(0, lining_depth),
V(lining_to_panel_offset_x, lining_depth),
V(lining_to_panel_offset_x, lining_to_panel_offset_y_full),
V(lining_thickness_default, lining_to_panel_offset_y_full),
V(lining_thickness_default, 0),
]
lining = builder.polyline(lining_points, closed=True)
else:
lining = builder.rectangle(V(lining_thickness_default, lining_depth))
items_2d.append(lining)
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items_2d.append(
builder.mirror(lining, mirror_axes=V(1, 0), mirror_point=V(overall_width / 2, 0), create_copy=True)
)
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# create semi-semi-circle
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semicircle = builder.create_ellipse_curve(
panel_width - panel_depth, panel_width, trim_points_mask=(0, 1), position=V(panel_depth, 0)
)
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items_2d.append(semicircle)
# create door
door = builder.rectangle(V(panel_depth, panel_width))
items_2d.append(door)
builder.translate([semicircle, door], V(lining_to_panel_offset_x, lining_depth))
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if door_type == "SINGLE_SWING_RIGHT":
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builder.mirror([semicircle, door], mirror_axes=V(1,0), mirror_point=V(overall_width/2, 0))
representation_2d = builder.get_representation(self.settings["context"], items_2d)
return representation_2d
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lining_items = []
main_lining_size = lining_size
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# need to check offsets to decide whether lining should be rectangle
# or L shaped
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if l_shape_check(lining_thickness):
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main_lining_size = lining_size.copy()
main_lining_size.y = lining_to_panel_offset_y_full
second_lining_size = lining_size.copy()
second_lining_size.y = lining_size.y - lining_to_panel_offset_y_full
second_lining_position = V(0, lining_to_panel_offset_y_full, 0)
second_lining_thickness = [min(th, lining_to_panel_offset_x) for th in lining_thickness]
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second_lining = create_ifc_door_lining_items(
builder, second_lining_size, second_lining_thickness, second_lining_position
)
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lining_items.extend(second_lining)
main_lining = create_ifc_door_lining_items(builder, main_lining_size, lining_thickness)
lining_items.extend(main_lining)
# add threshold
if not threshold_thickness:
threshold_items = []
else:
threshold_size = V(threshold_width, threshold_depth, threshold_thickness)
threshold_position = V(lining_thickness_default, threshold_offset, 0)
threshold_items = [create_ifc_box(builder, threshold_size, threshold_position)]
# add casings
casing_items = []
if not lining_offset and casing_thickness:
casing_wall_overlap = max(casing_thickness - lining_thickness_default, 0)
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casing_size = V(overall_width + casing_wall_overlap*2, casing_depth, overall_height + casing_wall_overlap)
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casing_position = V(-casing_wall_overlap, -casing_depth, 0)
outer_casing_items = create_ifc_door_lining_items(builder, casing_size, casing_thickness, casing_position)
casing_items.extend(outer_casing_items)
inner_casing_thickness = [
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casing_thickness - panel_lining_overlap_x,
casing_thickness - panel_top_lining_overlap_x,
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]
inner_casing_position = V(-casing_wall_overlap, lining_depth, 0)
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inner_casing_items = create_ifc_door_lining_items(
builder, casing_size, inner_casing_thickness, inner_casing_position
)
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casing_items.extend(inner_casing_items)
# add door panel
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panel_size = V(panel_width, panel_depth, panel_height)
panel_position = V(lining_to_panel_offset_x, lining_to_panel_offset_y_full, threshold_thickness)
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panel_items = [create_ifc_box(builder, panel_size, panel_position)]
# add on top window
if not transom_thickness:
window_lining_items = []
frame_items = []
glass_items = []
else:
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window_lining_thickness = [lining_thickness_default] * 3
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window_lining_thickness.append(transom_thickness)
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window_lining_size = V(overall_width, lining_depth, window_lining_height)
window_position = V(0, 0, overall_height - window_lining_height)
frame_size = V(door_opening_width, frame_depth, frame_height)
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window_lining_items, frame_items, glass_items = create_ifc_window(
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builder,
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window_lining_size,
window_lining_thickness,
lining_to_panel_offset_x,
lining_to_panel_offset_y_full,
frame_size,
frame_thickness,
glass_thickness,
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window_position,
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)
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lining_offset_items = lining_items + panel_items + window_lining_items + frame_items + glass_items
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builder.translate(lining_offset_items, V(0, lining_offset, 0))
ouput_items = lining_offset_items + threshold_items + casing_items
representation = builder.get_representation(self.settings["context"], ouput_items)
return representation
def convert_si_to_unit(self, value):
return value / self.settings["unit_scale"]