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IfcOpenShell/src/ifcbimtester/features/steps/steps.py
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import ifcopenshell
from behave import given, when, then, step
class IfcFile(object):
file = None
bookmarks = {}
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@classmethod
def load(cls, path=None):
cls.file = ifcopenshell.open(path)
@classmethod
def get(cls):
return cls.file
@classmethod
def get_pset(cls, element, pset_name):
if not element.IsDefinedBy:
return
for relationship in element.IsDefinedBy:
if relationship.RelatingPropertyDefinition.Name == pset_name:
return relationship.RelatingPropertyDefinition
@classmethod
def get_property(cls, element, pset_name, property_name):
pset = cls.get_pset(element, pset_name)
if not pset:
return
for prop in pset.HasProperties:
if prop.Name == property_name:
return prop
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@given('the IFC file "{file}"')
def step_impl(context, file):
IfcFile.load(file)
@given('the IFC file "{file}" exists')
def step_impl(context, file):
pass
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@then('the file should be an {schema} file')
def step_impl(context, schema):
assert IfcFile.get().schema == schema
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@then('the element {id} is an {ifc_class}')
def step_impl(context, id, ifc_class):
assert IfcFile.get().by_id(id).is_a(ifc_class)
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@then('the element {id} should not exist because {reason}')
def step_impl(context, id, reason):
assert not IfcFile.get().by_id(id)
@then('the file is exempt from auditing because {reason}')
def step_impl(context, reason):
pass
@given(u'there is at least one {ifc_class} element')
def step_impl(context, ifc_class):
assert len(IfcFile.get().by_type(ifc_class)) >= 1
@then('all {ifc_class} elements have a name matching the pattern "{pattern}"')
def step_impl(context, ifc_class, pattern):
import re
elements = IfcFile.get().by_type(ifc_class)
for element in elements:
if not re.search(pattern, element.Name):
assert False
@then('all {ifc_class} elements have an {representation_class} representation')
def step_impl(context, ifc_class, representation_class):
def is_item_a_representation(item, representation):
if '/' in representation:
for cls in representation.split('/'):
if item.is_a(cls):
return True
elif item.is_a(representation):
return True
elements = IfcFile.get().by_type(ifc_class)
for element in elements:
if not element.Representation:
continue
has_representation = False
for representation in element.Representation.Representations:
for item in representation.Items:
if item.is_a('IfcMappedItem'):
# We only check one more level deep.
for item2 in item.MappingSource.MappedRepresentation.Items:
if is_item_a_representation(item2, representation_class):
has_representation = True
else:
if is_item_a_representation(item, representation_class):
has_representation = True
if not has_representation:
assert False
use_step_matcher('re')
@then('all (?P<ifc_class>.*) elements have an? (?P<attribute>.*) attribute')
def step_impl(context, ifc_class, attribute):
elements = IfcFile.get().by_type(ifc_class)
for element in elements:
if not getattr(element, attribute):
assert False
@then('all (?P<ifc_class>.*) elements have an? (?P<property_path>.*\..*) property')
def step_impl(context, ifc_class, property_path):
pset_name, property_name = property_path.split('.')
elements = IfcFile.get().by_type(ifc_class)
for element in elements:
if not IfcFile.get_property(element, pset_name, property_name):
assert False
@then('all (?P<ifc_class>.*) elements have an? (?P<property_path>.*\..*) property value matching the pattern "(?P<pattern>.*)"')
def step_impl(context, ifc_class, property_path, pattern):
import re
pset_name, property_name = property_path.split('.')
elements = IfcFile.get().by_type(ifc_class)
for element in elements:
prop = IfcFile.get_property(element, pset_name, property_name)
if not prop:
assert False
# For now, we only check single values
if prop.is_a('IfcPropertySingleValue'):
if not (prop.NominalValue \
and re.search(pattern, prop.NominalValue.wrappedValue)):
assert False
@then('all (?P<ifc_class>.*) elements have an? (?P<attribute>.*) matching the pattern "(?P<pattern>.*)"')
def step_impl(context, ifc_class, attribute, pattern):
import re
elements = IfcFile.get().by_type(ifc_class)
for element in elements:
value = getattr(element, attribute)
print(f'Checking value "{value}" for {element}')
assert re.search(pattern, value)
@then('all (?P<ifc_class>.*) elements have an? (?P<attributes>.*) taken from the list in "(?P<list_file>.*)"')
def step_impl(context, ifc_class, attributes, list_file):
import csv
values = []
with open(list_file) as csvfile:
reader = csv.reader(csvfile)
for row in reader:
values.append(row)
elements = IfcFile.get().by_type(ifc_class)
for element in elements:
attribute_values = []
for attribute in attributes.split(','):
if not hasattr(element, attribute):
assert False, f'Failed at element {element.GlobalId}'
attribute_values.append(getattr(element, attribute))
if attribute_values not in values:
assert False, f'Failed at element {element.GlobalId}'
use_step_matcher('parse')
@then('all {ifc_class} elements have a {qto_name}.{quantity_name} quantity')
def step_impl(context, ifc_class, qto_name, quantity_name):
elements = IfcFile.get().by_type(ifc_class)
for element in elements:
is_successful = False
if not element.IsDefinedBy:
assert False
for relationship in element.IsDefinedBy:
if relationship.RelatingPropertyDefinition.Name == qto_name:
for quantity in relationship.RelatingPropertyDefinition.Quantities:
if quantity.Name == quantity_name:
is_successful = True
if not is_successful:
assert False
@then(u'the project should have geolocation data')
def step_impl(context):
if IfcFile.get().schema == 'IFC2X3':
for site in IfcFile.get().by_type('IfcSite'):
if not IfcFile.get_pset(site, 'EPset_MapConversion'):
assert False
else:
project = IfcFile.get().by_type('IfcProject')[0]
for context in project.RepresentationContexts:
if context.is_a('IfcGeometricRepresentationContext') \
and context.ContextType == 'Model' \
and context.HasCoordinateOperation:
IfcFile.bookmarks['geolocation'] = context.HasCoordinateOperation[0].id()
return
assert False
@then(u'the project geolocation uses the "{crs_name}" CRS')
def step_impl(context, crs_name):
if IfcFile.get().schema == 'IFC2X3':
for site in IfcFile.get().by_type('IfcSite'):
if IfcFile.get_property(site, 'EPset_ProjectedCRS', 'Name').NominalValue.wrappedValue != crs_name:
assert False
else:
assert IfcFile.get().by_id(IfcFile.bookmarks['geolocation']).TargetCRS.Name == crs_name
use_step_matcher('re')
@then(u'the geolocated datum has an? (?P<attribute>.*) of "(?P<value>.*)"')
def step_impl(context, attribute, value):
if IfcFile.get().schema == 'IFC2X3':
site = IfcFile.get().by_type('IfcSite')[0]
actual_value = IfcFile.get_property(site, 'EPset_MapConversion', attribute).NominalValue.wrappedValue
else:
actual_value = getattr(IfcFile.get().by_id(IfcFile.bookmarks['geolocation']), attribute)
assert str(actual_value) == value, f'The value was {actual_value}'
use_step_matcher('parse')
@then(u'the project has a {attribute_name} attribute with a value of "{attribute_value}"')
def step_impl(context, attribute_name, attribute_value):
project = IfcFile.get().by_type('IfcProject')[0]
assert getattr(project, attribute_name) == attribute_value
@then(u'there is an {ifc_class} element with a {attribute_name} attribute with a value of "{attribute_value}"')
def step_impl(context, ifc_class, attribute_name, attribute_value):
elements = IfcFile.get().by_type(ifc_class)
for element in elements:
if hasattr(element, attribute_name) \
and getattr(element, attribute_name) == attribute_value:
return
assert False
@then(u'all buildings have an address')
def step_impl(context):
for building in IfcFile.get().by_type('IfcBuilding'):
if not building.BuildingAddress:
assert False, f'The building "{building.Name}" has no address.'