690 lines
26 KiB
Python
690 lines
26 KiB
Python
# ***************************************************************************
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# * *
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# * Copyright (c) 2019 *
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# * Yorik van Havre <yorik@uncreated.net> *
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# * *
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# * This program is free software; you can redistribute it and/or modify *
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# * it under the terms of the GNU Lesser General Public License (LGPL) *
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# * as published by the Free Software Foundation; either version 2 of *
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# * the License, or (at your option) any later version. *
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# * for detail see the LICENCE text file. *
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# * *
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# * This program is distributed in the hope that it will be useful, *
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# * but WITHOUT ANY WARRANTY; without even the implied warranty of *
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# * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the *
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# * GNU Library General Public License for more details. *
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# * *
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# * You should have received a copy of the GNU Library General Public *
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# * License along with this program; if not, write to the Free Software *
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# * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 *
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# * USA *
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# * *
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# ***************************************************************************
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import six
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import sys
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import math
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import FreeCAD
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import Arch
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import ArchIFC
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# ************************************************************************************************
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# ********** some helper, used in import and export, or should stay together
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def decode(filename,utf=False):
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"turns unicodes into strings"
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if six.PY2 and isinstance(filename,six.text_type):
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# workaround since ifcopenshell currently can't handle unicode filenames
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encoding = "utf8" if utf else sys.getfilesystemencoding()
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filename = filename.encode(encoding)
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return filename
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# used in export
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def dd2dms(dd):
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"converts decimal degrees to degrees,minutes,seconds"
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dd = abs(dd)
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minutes,seconds = divmod(dd*3600,60)
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degrees,minutes = divmod(minutes,60)
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if dd < 0:
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degrees = -degrees
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return (int(degrees),int(minutes),int(seconds))
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# used in import
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def dms2dd(degrees, minutes, seconds, milliseconds=0):
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"converts degrees,minutes,seconds to decimal degrees"
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dd = float(degrees) + float(minutes)/60 + float(seconds)/(3600)
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return dd
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# ************************************************************************************************
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# ********** some helper, mainly used in import
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class ProjectImporter:
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"""A helper class to create a FreeCAD Arch Project object"""
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def __init__(self, file, objects):
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self.file = file
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self.objects = objects
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def execute(self):
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self.project = self.file.by_type("IfcProject")[0]
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self.object = Arch.makeProject()
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self.objects[self.project.id()] = self.object
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self.setAttributes()
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self.setComplexAttributes()
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def setAttributes(self):
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for property in self.object.PropertiesList:
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if hasattr(self.project, property) and getattr(self.project, property):
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setattr(self.object, property, getattr(self.project, property))
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def setComplexAttributes(self):
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try:
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mapConversion = self.project.RepresentationContexts[0].HasCoordinateOperation[0]
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data = self.extractTargetCRSData(mapConversion.TargetCRS)
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data.update(self.extractMapConversionData(mapConversion))
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ArchIFC.IfcRoot.setObjIfcComplexAttributeValue(self, self.object, "RepresentationContexts", data)
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except:
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# This scenario occurs validly in IFC2X3, as the mapConversion does
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# not exist
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return
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def extractTargetCRSData(self, targetCRS):
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mappings = {
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"name": "Name",
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"description": "Description",
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"geodetic_datum": "GeodeticDatum",
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"vertical_datum": "VerticalDatum",
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"map_projection": "MapProjection",
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"map_zone": "MapZone"
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}
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data = {}
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for attributeName, ifcName in mappings.items():
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data[attributeName] = str(getattr(targetCRS, ifcName))
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if targetCRS.MapUnit.Prefix:
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data["map_unit"] = targetCRS.MapUnit.Prefix.title() + targetCRS.MapUnit.Name.lower()
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else:
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data["map_unit"] = targetCRS.MapUnit.Name.title()
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return data
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def extractMapConversionData(self, mapConversion):
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mappings = {
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"eastings": "Eastings",
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"northings": "Northings",
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"orthogonal_height": "OrthogonalHeight",
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"x_axis_abscissa": "XAxisAbscissa",
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"x_axis_ordinate": "XAxisOrdinate",
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"scale": "Scale"
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}
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data = {}
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for attributeName, ifcName in mappings.items():
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data[attributeName] = str(getattr(mapConversion, ifcName))
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data["true_north"] = str(self.calculateTrueNorthAngle(
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mapConversion.XAxisAbscissa, mapConversion.XAxisOrdinate))
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return data
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def calculateTrueNorthAngle(self, x, y):
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return round(math.degrees(math.atan2(y, x)) - 90, 6)
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# type tables
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def buildRelProductsAnnotations(ifcfile, root_element):
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"""build the products and annotations relation table and"""
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# products
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products = ifcfile.by_type(root_element)
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# annotations
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annotations = ifcfile.by_type("IfcAnnotation")
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tp = []
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for product in products:
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if product.is_a("IfcGrid") and not (product in annotations):
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annotations.append(product)
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elif not (product in annotations):
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tp.append(product)
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# remove any leftover annotations from products
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products = sorted(tp,key=lambda prod: prod.id())
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return products, annotations
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# relation tables
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def buildRelProductRepresentation(ifcfile):
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"""build the product/representations relation table"""
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prodrepr = {} # product/representations table
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for p in ifcfile.by_type("IfcProduct"):
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if hasattr(p,"Representation"):
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if p.Representation:
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for it in p.Representation.Representations:
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for it1 in it.Items:
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prodrepr.setdefault(p.id(),[]).append(it1.id())
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if it1.is_a("IfcBooleanResult"):
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prodrepr.setdefault(p.id(),[]).append(it1.FirstOperand.id())
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elif it.Items[0].is_a("IfcMappedItem"):
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prodrepr.setdefault(p.id(),[]).append(it1.MappingSource.MappedRepresentation.id())
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if it1.MappingSource.MappedRepresentation.is_a("IfcShapeRepresentation"):
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for it2 in it1.MappingSource.MappedRepresentation.Items:
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prodrepr.setdefault(p.id(),[]).append(it2.id())
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return prodrepr
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def buildRelAdditions(ifcfile):
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"""build the additions relation table"""
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additions = {} # { host:[child,...], ... }
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for r in ifcfile.by_type("IfcRelContainedInSpatialStructure"):
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additions.setdefault(r.RelatingStructure.id(),[]).extend([e.id() for e in r.RelatedElements])
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for r in ifcfile.by_type("IfcRelAggregates"):
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additions.setdefault(r.RelatingObject.id(),[]).extend([e.id() for e in r.RelatedObjects])
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return additions
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def buildRelGroups(ifcfile):
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"""build the groups relation table"""
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groups = {} # { host:[child,...], ... } # used in structural IFC
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for r in ifcfile.by_type("IfcRelAssignsToGroup"):
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groups.setdefault(r.RelatingGroup.id(),[]).extend([e.id() for e in r.RelatedObjects])
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return groups
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def buildRelSubtractions(ifcfile):
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"""build the subtractions relation table"""
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subtractions = [] # [ [opening,host], ... ]
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for r in ifcfile.by_type("IfcRelVoidsElement"):
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subtractions.append([r.RelatedOpeningElement.id(), r.RelatingBuildingElement.id()])
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return subtractions
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def buildRelMattable(ifcfile):
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"""build the mattable relation table"""
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mattable = {} # { objid:matid }
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for r in ifcfile.by_type("IfcRelAssociatesMaterial"):
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for o in r.RelatedObjects:
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if r.RelatingMaterial.is_a("IfcMaterial"):
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mattable[o.id()] = r.RelatingMaterial.id()
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elif r.RelatingMaterial.is_a("IfcMaterialLayer"):
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mattable[o.id()] = r.RelatingMaterial.Material.id()
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elif r.RelatingMaterial.is_a("IfcMaterialLayerSet"):
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mattable[o.id()] = r.RelatingMaterial.MaterialLayers[0].Material.id()
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elif r.RelatingMaterial.is_a("IfcMaterialLayerSetUsage"):
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mattable[o.id()] = r.RelatingMaterial.ForLayerSet.MaterialLayers[0].Material.id()
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return mattable
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# ************************************************************************************************
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# color relation tables
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# products can have a color and materials can have a color and products can have a material
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# colors for material assigned to a product and product color can be different
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def buildRelColors(ifcfile, prodrepr):
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"""build the colors relation table and"""
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# returns all IfcStyledItem colors, material and product colors
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colors = {} # { id:(r,g,b) }
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style_material_id = {} # { style_entity_id: material_id) }
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# get style_color_rgb table
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style_color_rgb = {} # { style_entity_id: (r,g,b) }
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for r in ifcfile.by_type("IfcStyledItem"):
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if r.Styles:
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if r.Styles[0].is_a("IfcPresentationStyleAssignment"):
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for style1 in r.Styles[0].Styles:
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if style1.is_a("IfcSurfaceStyle"):
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for style2 in style1.Styles:
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if style2.is_a("IfcSurfaceStyleRendering"):
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if style2.SurfaceColour:
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c = style2.SurfaceColour
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style_color_rgb[r.id()] = (c.Red,c.Green,c.Blue)
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# Nova
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# FIXME: style_entity_id = { style_entity_id: product_id } not material_id ???
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# see https://forum.freecadweb.org/viewtopic.php?f=39&t=37940&start=10#p329491
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# last code change in these color code https://github.com/FreeCAD/FreeCAD/commit/2d1f6ab1
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'''
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if r.Item:
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# print(r.id())
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# print(r.Item) # IfcRepresentationItem or IfcShapeRepresentation
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for p in prodrepr.keys():
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if r.Item.id() in prodrepr[p]:
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style_material_id[r.id()] = p
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# print(p)
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# print(ifcfile[p]) # product
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'''
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# a much faster version for Nova style_material_id with product_ids
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# no material colors, Nova ifc files often do not have materials at all
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for p in prodrepr.keys():
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# print("\n")
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# print(ifcfile[p]) # IfcProduct
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# print(ifcfile[p].Representation) # IfcProductDefinitionShape
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# print(ifcfile[p].Representation.Representations[0]) # IfcShapeRepresentation
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# print(ifcfile[p].Representation.Representations[0].Items[0]) # IfcRepresentationItem
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# print(ifcfile[p].Representation.Representations[0].Items[0].StyledByItem[0]) # IfcStyledItem
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# print(ifcfile[p].Representation.Representations[0].Items[0].StyledByItem[0].id())
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# print(p)
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representation_item = ifcfile[p].Representation.Representations[0].Items[0]
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if hasattr(representation_item, "StyledByItem") and representation_item.StyledByItem:
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style_material_id[representation_item.StyledByItem[0].id()] = p
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# Allplan, ArchiCAD
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for m in ifcfile.by_type("IfcMaterialDefinitionRepresentation"):
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for it in m.Representations:
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if it.Items:
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style_material_id[it.Items[0].id()] = m.RepresentedMaterial.id()
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# create colors out of style_color_rgb and style_material_id
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for k in style_material_id:
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if k in style_color_rgb:
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colors[style_material_id[k]] = style_color_rgb[k]
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return colors
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def buildRelProductColors(ifcfile, prodrepr):
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# gets the colors for the products
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colors = {} # { id:(r,g,b) }
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for p in prodrepr.keys():
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# print(p)
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# representation item, see docu IfcRepresentationItem
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# all kind of geometric or topological representation items
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# IfcExtrudedAreaSolid, IfcMappedItem, IfcFacetedBrep, IfcBooleanResult, etc
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representation_item = ifcfile[p].Representation.Representations[0].Items[0]
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# print(representation_item)
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# get the geometric representations which have a presentation style
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# all representation items have the inverse attribute StyledByItem for this
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# there will be gemetric representations which do not have a presentation style
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# the StyledByItem will be empty than
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if representation_item.StyledByItem:
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# it has to be a IfcStyledItem, no check needed
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styled_item = representation_item.StyledByItem[0]
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# write into colors table if a IfcStyledItem exists for this product
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# write None if something goes wrong or if the ifc file has errors and thus no valid color is returned
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colors[p] = getColorFromStyledItem(styled_item)
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return colors
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def buildRelMaterialColors(ifcfile, prodrepr):
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# not implemented
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pass
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def getColorFromStyledItem(styled_item):
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# styled_item should be a IfcStyledItem
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if not styled_item.is_a("IfcStyledItem"):
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print("Not a IfcStyledItem passed.")
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return None
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rgb_color = None
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# print(styled_item)
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# The IfcStyledItem holds presentation style information for products,
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# either explicitly for an IfcGeometricRepresentationItem being part of
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# an IfcShapeRepresentation assigned to a product, or by assigning presentation
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# information to IfcMaterial being assigned as other representation for a product.
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# In current IFC release (IFC2x3) only one presentation style assignment shall be assigned.
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if len(styled_item.Styles) != 1:
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if len(styled_item.Styles) == 0:
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pass
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# ca 100x in 210_King_Merged.ifc
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# empty styles, #4952778=IfcStyledItem(#4952779,(),$)
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# this is an error in the ifc file IMHO
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# print(ifcfile[p])
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# print(styled_item)
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# print(styled_item.Styles)
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else:
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pass
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# never seen an ifc with more than one Styles in IfcStyledItem
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else:
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# get the IfcPresentationStyleAssignment, there should only be one, see above
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assign_style = styled_item.Styles[0]
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# print(assign_style) # IfcPresentationStyleAssignment
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# IfcPresentationStyleAssignment can hold various kinde and count of styles
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# see IfcPresentationStyleSelect
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if assign_style.Styles[0].is_a("IfcSurfaceStyle"):
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# Schependomlaan and Nova and others
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# print(assign_style.Styles[0].Styles[0]) # IfcSurfaceStyleRendering
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rgb_color = assign_style.Styles[0].Styles[0].SurfaceColour # IfcColourRgb
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# print(rgb_color)
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elif assign_style.Styles[0].is_a("IfcCurveStyle"):
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if (
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len(assign_style.Styles) == 2
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and assign_style.Styles[1].is_a("IfcSurfaceStyle")
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):
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# Allplan, new IFC export started in 2017
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# print(assign_style.Styles[0].CurveColour) # IfcDraughtingPreDefinedColour
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# on index 1 ist das was wir brauchen !!!
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rgb_color = assign_style.Styles[1].Styles[0].SurfaceColour
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# print(rgb_color)
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else:
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# 2x Annotations in 210_King_Merged.ifc
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# print(ifcfile[p])
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# print(assign_style.Styles[0])
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# print(assign_style.Styles[0].CurveColour)
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rgb_color = assign_style.Styles[0].CurveColour
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if rgb_color is not None:
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col = rgb_color.Red, rgb_color.Green, rgb_color.Blue
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# print(col)
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else:
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col = None
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return col
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# ************************************************************************************************
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# property related methods
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def buildRelProperties(ifcfile):
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"""
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Builds and returns a dictionary of {object:[properties]} from an IFC file
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"""
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# this method no longer used by the importer module
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# but this relation table might be useful anyway for other purposes
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properties = {} # { objid : { psetid : [propertyid, ... ], ... }, ... }
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for r in ifcfile.by_type("IfcRelDefinesByProperties"):
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for obj in r.RelatedObjects:
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if not obj.id() in properties:
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properties[obj.id()] = {}
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psets = {}
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props = []
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if r.RelatingPropertyDefinition.is_a("IfcPropertySet"):
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props.extend([prop.id() for prop in r.RelatingPropertyDefinition.HasProperties])
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psets[r.RelatingPropertyDefinition.id()] = props
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properties[obj.id()].update(psets)
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return properties
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def getIfcPropertySets(ifcfile, pid):
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"""Returns a dicionary of {pset_id:[prop_id, prop_id...]} for an IFC object"""
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# get psets for this pid
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psets = {}
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for rel in ifcfile[pid].IsDefinedBy:
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# the following if condition is needed in IFC2x3 only
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# https://forum.freecadweb.org/viewtopic.php?f=39&t=37892#p322884
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if rel.is_a('IfcRelDefinesByProperties'):
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props = []
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if rel.RelatingPropertyDefinition.is_a("IfcPropertySet"):
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props.extend([prop.id() for prop in rel.RelatingPropertyDefinition.HasProperties])
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psets[rel.RelatingPropertyDefinition.id()] = props
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return psets
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def getIfcProperties(ifcfile, pid, psets, d):
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"""builds valid property values for FreeCAD"""
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for pset in psets.keys():
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# print("reading pset: ",pset)
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psetname = ifcfile[pset].Name
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if six.PY2:
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psetname = psetname.encode("utf8")
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for prop in psets[pset]:
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e = ifcfile[prop]
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pname = e.Name
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if six.PY2:
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pname = pname.encode("utf8")
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if e.is_a("IfcPropertySingleValue"):
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if e.NominalValue:
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ptype = e.NominalValue.is_a()
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if ptype in ['IfcLabel','IfcText','IfcIdentifier','IfcDescriptiveMeasure']:
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pvalue = e.NominalValue.wrappedValue
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if six.PY2:
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pvalue = pvalue.encode("utf8")
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else:
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pvalue = str(e.NominalValue.wrappedValue)
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if hasattr(e.NominalValue,'Unit'):
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if e.NominalValue.Unit:
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pvalue += e.NominalValue.Unit
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d[pname+";;"+psetname] = ptype+";;"+pvalue
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# print("adding property: ",pname,ptype,pvalue," pset ",psetname)
|
|
return d
|
|
|
|
|
|
# ************************************************************************************************
|
|
def getScaling(ifcfile):
|
|
"""returns a scaling factor from file units to mm"""
|
|
|
|
def getUnit(unit):
|
|
if unit.Name == "METRE":
|
|
if unit.Prefix == "KILO":
|
|
return 1000000.0
|
|
elif unit.Prefix == "HECTO":
|
|
return 100000.0
|
|
elif unit.Prefix == "DECA":
|
|
return 10000.0
|
|
elif not unit.Prefix:
|
|
return 1000.0
|
|
elif unit.Prefix == "DECI":
|
|
return 100.0
|
|
elif unit.Prefix == "CENTI":
|
|
return 10.0
|
|
return 1.0
|
|
|
|
ua = ifcfile.by_type("IfcUnitAssignment")
|
|
if not ua:
|
|
return 1.0
|
|
ua = ua[0]
|
|
for u in ua.Units:
|
|
if u.UnitType == "LENGTHUNIT":
|
|
if u.is_a("IfcConversionBasedUnit"):
|
|
f = getUnit(u.ConversionFactor.UnitComponent)
|
|
return f * u.ConversionFactor.ValueComponent.wrappedValue
|
|
elif u.is_a("IfcSIUnit") or u.is_a("IfcUnit"):
|
|
return getUnit(u)
|
|
return 1.0
|
|
|
|
|
|
def getRotation(entity):
|
|
"""returns a FreeCAD rotation from an IfcProduct with a IfcMappedItem representation"""
|
|
try:
|
|
u = FreeCAD.Vector(entity.Axis1.DirectionRatios)
|
|
v = FreeCAD.Vector(entity.Axis2.DirectionRatios)
|
|
w = FreeCAD.Vector(entity.Axis3.DirectionRatios)
|
|
except AttributeError:
|
|
return FreeCAD.Rotation()
|
|
import WorkingPlane
|
|
p = WorkingPlane.plane(u=u,v=v,w=w)
|
|
return p.getRotation().Rotation
|
|
|
|
|
|
def getPlacement(entity,scaling=1000):
|
|
"""returns a placement from the given entity"""
|
|
|
|
if not entity:
|
|
return None
|
|
import DraftVecUtils
|
|
pl = None
|
|
if entity.is_a("IfcAxis2Placement3D"):
|
|
x = getVector(entity.RefDirection,scaling)
|
|
z = getVector(entity.Axis,scaling)
|
|
if x and z:
|
|
y = z.cross(x)
|
|
m = DraftVecUtils.getPlaneRotation(x,y,z)
|
|
pl = FreeCAD.Placement(m)
|
|
else:
|
|
pl = FreeCAD.Placement()
|
|
loc = getVector(entity.Location,scaling)
|
|
if loc:
|
|
pl.move(loc)
|
|
elif entity.is_a("IfcLocalPlacement"):
|
|
pl = getPlacement(entity.PlacementRelTo,1) # original placement
|
|
relpl = getPlacement(entity.RelativePlacement,1) # relative transf
|
|
if pl and relpl:
|
|
pl = pl.multiply(relpl)
|
|
elif relpl:
|
|
pl = relpl
|
|
elif entity.is_a("IfcCartesianPoint"):
|
|
loc = getVector(entity,scaling)
|
|
pl = FreeCAD.Placement()
|
|
pl.move(loc)
|
|
if pl:
|
|
pl.Base = FreeCAD.Vector(pl.Base).multiply(scaling)
|
|
return pl
|
|
|
|
|
|
def getVector(entity,scaling=1000):
|
|
"""returns a vector from the given entity"""
|
|
|
|
if not entity:
|
|
return None
|
|
v = None
|
|
if entity.is_a("IfcDirection"):
|
|
if len(entity.DirectionRatios) == 3:
|
|
v = FreeCAD.Vector(tuple(entity.DirectionRatios))
|
|
else:
|
|
v = FreeCAD.Vector(tuple(entity.DirectionRatios+[0]))
|
|
elif entity.is_a("IfcCartesianPoint"):
|
|
if len(entity.Coordinates) == 3:
|
|
v = FreeCAD.Vector(tuple(entity.Coordinates))
|
|
else:
|
|
v = FreeCAD.Vector(tuple(entity.Coordinates+[0]))
|
|
# if v:
|
|
# v.multiply(scaling)
|
|
return v
|
|
|
|
|
|
def get2DShape(representation,scaling=1000):
|
|
"""Returns a shape from a 2D IfcShapeRepresentation"""
|
|
|
|
import Part
|
|
import DraftVecUtils
|
|
import Draft
|
|
|
|
def getPolyline(ent):
|
|
pts = []
|
|
for p in ent.Points:
|
|
c = p.Coordinates
|
|
c = FreeCAD.Vector(c[0],c[1],c[2] if len(c) > 2 else 0)
|
|
c.multiply(scaling)
|
|
pts.append(c)
|
|
return Part.makePolygon(pts)
|
|
|
|
def getLine(ent):
|
|
pts = []
|
|
p1 = getVector(ent.Pnt)
|
|
p1.multiply(scaling)
|
|
pts.append(p1)
|
|
p2 = getVector(ent.Dir)
|
|
p2.multiply(scaling)
|
|
p2 = p1.add(p2)
|
|
pts.append(p2)
|
|
return Part.makePolygon(pts)
|
|
|
|
def getCircle(ent):
|
|
c = ent.Position.Location.Coordinates
|
|
c = FreeCAD.Vector(c[0],c[1],c[2] if len(c) > 2 else 0)
|
|
c.multiply(scaling)
|
|
r = ent.Radius*scaling
|
|
return Part.makeCircle(r,c)
|
|
|
|
def getCurveSet(ent):
|
|
result = []
|
|
if ent.is_a() in ["IfcGeometricCurveSet","IfcGeometricSet"]:
|
|
elts = ent.Elements
|
|
elif ent.is_a() in ["IfcLine","IfcPolyline","IfcCircle","IfcTrimmedCurve"]:
|
|
elts = [ent]
|
|
for el in elts:
|
|
if el.is_a("IfcPolyline"):
|
|
result.append(getPolyline(el))
|
|
elif el.is_a("IfcLine"):
|
|
result.append(getLine(el))
|
|
elif el.is_a("IfcCircle"):
|
|
result.append(getCircle(el))
|
|
elif el.is_a("IfcTrimmedCurve"):
|
|
base = el.BasisCurve
|
|
t1 = el.Trim1[0].wrappedValue
|
|
t2 = el.Trim2[0].wrappedValue
|
|
if not el.SenseAgreement:
|
|
t1,t2 = t2,t1
|
|
if base.is_a("IfcPolyline"):
|
|
bc = getPolyline(base)
|
|
result.append(bc)
|
|
elif base.is_a("IfcCircle"):
|
|
bc = getCircle(base)
|
|
e = Part.ArcOfCircle(bc.Curve,math.radians(t1),math.radians(t2)).toShape()
|
|
d = base.Position.RefDirection.DirectionRatios
|
|
v = FreeCAD.Vector(d[0],d[1],d[2] if len(d) > 2 else 0)
|
|
a = -DraftVecUtils.angle(v)
|
|
e.rotate(bc.Curve.Center,FreeCAD.Vector(0,0,1),math.degrees(a))
|
|
result.append(e)
|
|
elif el.is_a("IfcCompositeCurve"):
|
|
for base in el.Segments:
|
|
if base.ParentCurve.is_a("IfcPolyline"):
|
|
bc = getPolyline(base.ParentCurve)
|
|
result.append(bc)
|
|
elif base.ParentCurve.is_a("IfcCircle"):
|
|
bc = getCircle(base.ParentCurve)
|
|
e = Part.ArcOfCircle(bc.Curve,math.radians(t1),math.radians(t2)).toShape()
|
|
d = base.Position.RefDirection.DirectionRatios
|
|
v = FreeCAD.Vector(d[0],d[1],d[2] if len(d) > 2 else 0)
|
|
a = -DraftVecUtils.angle(v)
|
|
e.rotate(bc.Curve.Center,FreeCAD.Vector(0,0,1),math.degrees(a))
|
|
result.append(e)
|
|
|
|
return result
|
|
|
|
result = []
|
|
if representation.is_a("IfcShapeRepresentation"):
|
|
for item in representation.Items:
|
|
if item.is_a() in ["IfcGeometricCurveSet","IfcGeometricSet"]:
|
|
result = getCurveSet(item)
|
|
elif item.is_a("IfcMappedItem"):
|
|
preresult = get2DShape(item.MappingSource.MappedRepresentation,scaling)
|
|
pla = getPlacement(item.MappingSource.MappingOrigin,scaling)
|
|
rot = getRotation(item.MappingTarget)
|
|
if pla:
|
|
if rot.Angle:
|
|
pla.Rotation = rot
|
|
for r in preresult:
|
|
# r.Placement = pla
|
|
result.append(r)
|
|
else:
|
|
result = preresult
|
|
elif item.is_a("IfcTextLiteral"):
|
|
t = Draft.makeText([item.Literal],point=getPlacement(item.Placement,scaling).Base)
|
|
return t # dirty hack... Object creation should not be done here
|
|
elif representation.is_a() in ["IfcPolyline","IfcCircle","IfcTrimmedCurve"]:
|
|
result = getCurveSet(representation)
|
|
return result
|