mirror of
https://github.com/IfcOpenShell/IfcOpenShell.git
synced 2026-08-10 01:41:57 +00:00
366 lines
16 KiB
Python
366 lines
16 KiB
Python
import ifcopenshell
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import bpy
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import csv
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import json
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from pathlib import Path
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class IfcParser():
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def __init__(self):
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self.data_dir = '/home/dion/Projects/blender-bim-ifc/data/'
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self.schema_dir = '/home/dion/Projects/blender-bim-ifc/schema/'
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with open(self.schema_dir + 'ifc_types_IFC4.json') as f:
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self.type_map = json.load(f)
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self.selected_products = []
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self.selected_types = []
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self.psets = []
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self.spatial_structure_elements = []
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self.spatial_structure_elements_tree = []
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self.rel_contained_in_spatial_structure = {}
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self.rel_defines_by_type = {}
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self.representations = []
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self.type_products = []
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self.context = {}
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self.products = []
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def parse(self):
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self.sort_selected_into_products_and_types()
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self.psets = self.get_psets()
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self.spatial_structure_elements = self.get_spatial_structure_elements()
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self.representations = self.get_representations()
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self.type_products = self.get_type_products()
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collection_name_filter = []
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for index, object in enumerate(self.selected_products):
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product_data = {
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'ifc': None,
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'raw': object,
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'class': self.get_ifc_class(object.name),
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'relating_structure': None,
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'representation': self.get_representation_reference(object.data.name),
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'attributes': self.get_object_attributes(object)
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}
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for collection in object.users_collection:
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if self.is_a_spatial_structure_element(self.get_ifc_class(collection.name)):
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reference = self.get_spatial_structure_element_reference(collection.name)
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self.rel_contained_in_spatial_structure.setdefault(reference, []).append(index)
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product_data['relating_structure'] = reference
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collection_name_filter.append(collection.name)
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if object.parent \
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and self.is_a_type(self.get_ifc_class(object.parent.name)):
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reference = self.get_type_product_reference(object.parent.name)
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self.rel_defines_by_type.setdefault(reference, []).append(index)
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self.products.append(product_data)
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self.context = self.get_context()
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self.spatial_structure_elements_tree = self.get_spatial_structure_elements_tree(
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self.context['raw'].children, collection_name_filter)
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def get_object_attributes(self, object):
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attributes = { 'Name': self.get_ifc_name(object.name) }
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attributes.update({ key[3:]: object[key] for key in object.keys() if key[0:3] == 'Ifc'})
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return attributes
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def sort_selected_into_products_and_types(self):
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for object in bpy.context.selected_objects:
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if self.is_object_in_types_collection(object):
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self.selected_types.append(object)
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else:
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self.selected_products.append(object)
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def get_psets(self):
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psets = []
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for filename in Path(self.data_dir).glob('**/*.csv'):
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with open(filename, 'r') as f:
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psets.append({
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'ifc': None,
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'raw': list(csv.reader(f)),
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'attributes': {
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'Name': filename.parts[-2],
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'Description': filename.stem }
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})
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return psets
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def is_object_in_types_collection(self, object):
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for collection in object.users_collection:
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if self.is_a_types_collection(self.get_ifc_class(collection.name)):
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return True
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return False
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def get_context(self):
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for collection in bpy.data.collections:
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if self.is_a_context(self.get_ifc_class(collection.name)):
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return {
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'ifc': None,
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'raw': collection,
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'class': self.get_ifc_class(collection.name),
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'attributes': { 'Name': self.get_ifc_name(collection.name) }
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}
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def get_spatial_structure_elements(self):
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elements = []
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for collection in bpy.data.collections:
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if self.is_a_spatial_structure_element(self.get_ifc_class(collection.name)):
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elements.append({
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'ifc': None,
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'raw': collection,
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'class': self.get_ifc_class(collection.name),
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'attributes': { 'Name': self.get_ifc_name(collection.name)}
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})
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return elements
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def get_representations(self):
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representations = {}
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for object in self.selected_products + self.selected_types:
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representations[object.data.name] = object.data
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results = []
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for name, value in representations.items():
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results.append({
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'ifc': None,
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'raw': value,
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'attributes': { 'Name': name }
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})
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return results
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def get_type_products(self):
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if not self.selected_types:
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return []
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return [{
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'ifc': None,
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'raw': object,
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'class': self.get_ifc_class(object.name),
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'representation': self.get_representation_reference(object.data.name),
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'attributes': self.get_object_attributes(object)
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} for object in self.selected_types ]
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def get_representation_reference(self, name):
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return [ r['attributes']['Name'] for r in self.representations ].index(name)
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def get_spatial_structure_elements_tree(self, collections, name_filter):
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collection_tree = []
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for collection in collections:
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if not self.is_a_spatial_structure_element(self.get_ifc_class(collection.name)):
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continue
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children = self.get_spatial_structure_elements_tree(
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collection.children, name_filter)
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if collection.name in name_filter \
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or children:
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collection_tree.append({
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'reference': self.get_spatial_structure_element_reference(collection.name),
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'children': children
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})
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return collection_tree
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def get_spatial_structure_element_reference(self, name):
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return [ e['attributes']['Name'] for e in self.spatial_structure_elements ].index(self.get_ifc_name(name))
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def get_type_product_reference(self, name):
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return [ p['attributes']['Name'] for p in self.type_products ].index(self.get_ifc_name(name))
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def get_ifc_class(self, name):
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return name.split('/')[0]
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def get_ifc_name(self, name):
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try:
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return name.split('/')[1]
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except IndexError:
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print('ERROR: Name "{}" does not follow the format of "IfcClass/Name"'.format(name))
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def is_a_spatial_structure_element(self, class_name):
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# We assume that any collection we can't identify is a spatial structure
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return class_name[0:3] == 'Ifc' \
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and not self.is_a_context(class_name) \
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and not self.is_a_types_collection(class_name)
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def is_a_context(self, class_name):
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return class_name in ['IfcProject', 'IfcProjectLibrary']
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def is_a_type(self, class_name):
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return class_name[0:3] == 'Ifc' and class_name[-4:] == 'Type'
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def is_a_types_collection(self, class_name):
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return class_name == 'IfcTypeProduct'
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class IfcExporter():
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def __init__(self, ifc_parser):
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self.template_file = '/home/dion/Projects/blender-bim-ifc/template.ifc'
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self.output_file = '/home/dion/Projects/blender-bim-ifc/output.ifc'
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self.ifc_parser = ifc_parser
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def export(self):
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self.file = ifcopenshell.open(self.template_file)
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self.set_common_definitions()
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self.ifc_parser.parse()
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self.create_psets()
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self.create_rep_context()
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self.create_context()
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self.create_representations()
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self.create_type_products()
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self.create_spatial_structure_elements(self.ifc_parser.spatial_structure_elements_tree)
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self.create_products()
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self.relate_elements_to_spatial_structures()
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self.relate_objects_to_types()
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self.file.write(self.output_file)
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def set_common_definitions(self):
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self.origin = self.file.by_type("IfcAxis2Placement3D")[0]
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# Owner history doesn't actually work like this, but for now, it does :)
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self.owner_history = self.file.by_type("ifcownerhistory")[0]
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def create_psets(self):
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for pset in self.ifc_parser.psets:
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properties = self.create_pset_properties(pset)
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if not properties:
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continue
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pset['attributes'].update({
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'GlobalId': ifcopenshell.guid.new(),
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'OwnerHistory': self.owner_history,
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'HasProperties': properties
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})
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pset['ifc'] = self.file.create_entity('IfcPropertySet', **pset['attributes'])
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def create_pset_properties(self, pset):
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properties = []
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headers = pset['raw'].pop(0)[2:]
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for data in pset['raw']:
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type = data[1]
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value = self.cast_to_base_type(type, data[4])
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nominal_value = self.file.create_entity(type, value)
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attributes = { header: data[i+2] if data[i+2] else None for i, header in enumerate(headers)}
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attributes['NominalValue'] = nominal_value
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properties.append(self.file.create_entity(data[0], **attributes))
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return properties
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def cast_to_base_type(self, type, value):
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if self.ifc_parser.type_map[type] == 'float':
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return float(value)
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elif self.ifc_parser.type_map[type] == 'integer':
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return int(value)
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elif self.ifc_parser.type_map[type] == 'bool':
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return True if value.lower() in ['1', 't', 'true', 'yes', 'y', 'uh-huh'] else False
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return str(value)
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def create_rep_context(self):
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self.ifc_rep_context = self.file.createIfcGeometricRepresentationContext(
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None, "Model",
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3, 1.0E-05,
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self.origin,
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self.file.createIfcDirection((0., 1., 0.)))
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self.ifc_rep_subcontext = self.file.createIfcGeometricRepresentationSubContext(
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"Body", "Model",
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None, None, None, None,
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self.ifc_rep_context, None, "MODEL_VIEW", None)
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def create_context(self):
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context = self.ifc_parser.context
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attributes = context['attributes']
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attributes.update({
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'GlobalId': ifcopenshell.guid.new(),
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'RepresentationContexts': [self.ifc_rep_context],
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'UnitsInContext': self.file.by_type("IfcUnitAssignment")[0]
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})
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self.ifc_parser.context['ifc'] = self.file.create_entity(self.ifc_parser.context['class'], **attributes)
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def create_type_products(self):
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for product in self.ifc_parser.type_products:
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representation = self.ifc_parser.representations[product['representation']]['ifc']
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placement = self.create_ifc_axis_2_placement_3d(product['raw'].location)
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representation_map = self.file.createIfcRepresentationMap(placement, representation)
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product['attributes'].update({
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'GlobalId': ifcopenshell.guid.new(),
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'RepresentationMaps': [representation_map]
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})
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try:
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product['ifc'] = self.file.create_entity(product['class'], **product['attributes'])
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except RuntimeError as e:
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print('The type product "{}/{}" could not be created: {}'.format(product['class'], product['attributes']['Name'], e.args))
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def create_spatial_structure_elements(self, element_tree, relating_object=None):
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if relating_object == None:
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relating_object = self.ifc_parser.context['ifc']
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placement_rel_to = None
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else:
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placement_rel_to = relating_object.ObjectPlacement
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related_objects = []
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for node in element_tree:
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element = self.ifc_parser.spatial_structure_elements[node['reference']]
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element['attributes'].update({
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'GlobalId': ifcopenshell.guid.new(), # TODO: unhardcode
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'OwnerHistory': self.owner_history, # TODO: unhardcode
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'ObjectPlacement': self.file.createIfcLocalPlacement(placement_rel_to, self.origin)
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})
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element['ifc'] = self.file.create_entity(element['class'], **element['attributes'])
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related_objects.append(element['ifc'])
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self.create_spatial_structure_elements(node['children'], element['ifc'])
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if related_objects:
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self.file.createIfcRelAggregates(
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ifcopenshell.guid.new(),
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self.owner_history, None, None, relating_object, related_objects)
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def create_representations(self):
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for representation in self.ifc_parser.representations:
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representation['ifc'] = self.create_representation(representation['raw'])
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def create_products(self):
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for product in self.ifc_parser.products:
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placement_rel_to = self.ifc_parser.spatial_structure_elements[product['relating_structure']]['ifc'].ObjectPlacement
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placement = self.file.createIfcLocalPlacement(placement_rel_to,
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self.create_ifc_axis_2_placement_3d(product['raw'].location))
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representation = self.file.createIfcProductDefinitionShape(
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None, None,
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[self.ifc_parser.representations[product['representation']]['ifc']])
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product['attributes'].update({
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'GlobalId': ifcopenshell.guid.new(), # TODO: unhardcode
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'OwnerHistory': self.owner_history, # TODO: unhardcode
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'ObjectPlacement': placement,
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'Representation': representation
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})
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try:
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product['ifc'] = self.file.create_entity(product['class'], **product['attributes'])
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except RuntimeError as e:
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print('The product "{}/{}" could not be created: {}'.format(product['class'], product['attributes']['Name'], e.args))
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def create_ifc_axis_2_placement_3d(self, point):
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return self.file.createIfcAxis2Placement3D(
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self.file.createIfcCartesianPoint((point.x, point.y, point.z)))
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def create_representation(self, mesh):
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ifc_vertices = []
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ifc_faces = []
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for vertice in mesh.vertices:
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ifc_vertices.append(
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self.file.createIfcCartesianPoint((vertice.co.x, vertice.co.y, vertice.co.z)))
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for polygon in mesh.polygons:
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ifc_faces.append(self.file.createIfcFace([
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self.file.createIfcFaceOuterBound(
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self.file.createIfcPolyLoop([ifc_vertices[vertice] for vertice in polygon.vertices]),
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True)]))
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return self.file.createIfcShapeRepresentation(
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self.ifc_rep_subcontext, 'Body', 'Brep',
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[self.file.createIfcFacetedBrep(self.file.createIfcClosedShell(ifc_faces))])
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def relate_elements_to_spatial_structures(self):
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for relating_structure, related_elements in self.ifc_parser.rel_contained_in_spatial_structure.items():
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self.file.createIfcRelContainedInSpatialStructure(
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ifcopenshell.guid.new(), self.owner_history, None, None,
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[ self.ifc_parser.products[e]['ifc'] for e in related_elements],
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self.ifc_parser.spatial_structure_elements[relating_structure]['ifc'])
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def relate_objects_to_types(self):
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for relating_type, related_objects in self.ifc_parser.rel_defines_by_type.items():
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self.file.createIfcRelDefinesByType(
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ifcopenshell.guid.new(), self.owner_history, None, None,
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[ self.ifc_parser.products[o]['ifc'] for o in related_objects],
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self.ifc_parser.type_products[relating_type]['ifc'])
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ifc_parser = IfcParser()
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ifc_exporter = IfcExporter(ifc_parser)
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ifc_exporter.export()
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