mirror of
https://github.com/IfcOpenShell/IfcOpenShell.git
synced 2026-08-18 19:30:25 +00:00
643 lines
24 KiB
Python
643 lines
24 KiB
Python
# BlenderBIM Add-on - OpenBIM Blender Add-on
|
|
# Copyright (C) 2021 Dion Moult <dion@thinkmoult.com>
|
|
#
|
|
# This file is part of BlenderBIM Add-on.
|
|
#
|
|
# BlenderBIM Add-on is free software: you can redistribute it and/or modify
|
|
# it under the terms of the GNU General Public License as published by
|
|
# the Free Software Foundation, either version 3 of the License, or
|
|
# (at your option) any later version.
|
|
#
|
|
# BlenderBIM Add-on 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 General Public License for more details.
|
|
#
|
|
# You should have received a copy of the GNU General Public License
|
|
# along with BlenderBIM Add-on. If not, see <http://www.gnu.org/licenses/>.
|
|
|
|
import os
|
|
import bpy
|
|
import webbrowser
|
|
import ifcopenshell
|
|
import blenderbim.tool as tool
|
|
import blenderbim.bim
|
|
from blenderbim.bim.ifc import IfcStore
|
|
from blenderbim.bim.module.model.data import AuthoringData
|
|
from pytest_bdd import scenarios, given, when, then, parsers
|
|
from mathutils import Vector
|
|
|
|
scenarios("feature")
|
|
|
|
variables = {"cwd": os.getcwd(), "ifc": "IfcStore.get_file()"}
|
|
|
|
# Monkey-patch webbrowser opening since we want to test headlessly
|
|
webbrowser.open = lambda x: True
|
|
|
|
|
|
def replace_variables(value):
|
|
for key, new_value in variables.items():
|
|
value = value.replace("{" + key + "}", str(new_value))
|
|
return value
|
|
|
|
|
|
@given("an untestable scenario")
|
|
def an_untestable_scenario():
|
|
pass
|
|
|
|
|
|
@given("an empty Blender session")
|
|
@when("an empty Blender session is started")
|
|
def an_empty_ifc_project():
|
|
IfcStore.purge()
|
|
bpy.ops.wm.read_homefile(app_template="")
|
|
if len(bpy.data.objects) > 0:
|
|
bpy.data.batch_remove(bpy.data.objects)
|
|
bpy.ops.outliner.orphans_purge(do_local_ids=True, do_linked_ids=True, do_recursive=True)
|
|
|
|
|
|
@given("an empty IFC project")
|
|
def an_empty_ifc_project():
|
|
IfcStore.purge()
|
|
bpy.ops.wm.read_homefile(app_template="")
|
|
if len(bpy.data.objects) > 0:
|
|
bpy.data.batch_remove(bpy.data.objects)
|
|
bpy.ops.outliner.orphans_purge(do_local_ids=True, do_linked_ids=True, do_recursive=True)
|
|
bpy.ops.bim.create_project()
|
|
|
|
|
|
@when("I load a new pset template file")
|
|
def i_load_a_new_pset_template_file():
|
|
IfcStore.pset_template_path = os.path.join(
|
|
bpy.context.scene.BIMProperties.data_dir,
|
|
"pset",
|
|
bpy.context.scene.BIMPsetTemplateProperties.pset_template_files + ".ifc",
|
|
)
|
|
IfcStore.pset_template_file = ifcopenshell.open(IfcStore.pset_template_path)
|
|
|
|
|
|
@given("I add a cube")
|
|
@when("I add a cube")
|
|
def i_add_a_cube():
|
|
bpy.ops.mesh.primitive_cube_add()
|
|
|
|
|
|
@given("I add an empty")
|
|
@when("I add an empty")
|
|
def i_add_an_empty():
|
|
bpy.ops.object.empty_add()
|
|
|
|
|
|
@given("I add a sun")
|
|
@when("I add an sun")
|
|
def i_add_a_sun():
|
|
bpy.ops.object.light_add(type="SUN")
|
|
|
|
|
|
@given("I add a material")
|
|
@when("I add a material")
|
|
def i_add_a_material():
|
|
bpy.context.active_object.active_material = bpy.data.materials.new("Material")
|
|
|
|
@given("I add a new group to IfcSelector")
|
|
@when("I add a new group to IfcSelector")
|
|
def i_add_a_new_collection_item():
|
|
bpy.data.scenes["Scene"].IfcSelectorProperties.groups.add()
|
|
|
|
@given("I add a new query to IfcSelector")
|
|
@when("I add a new query to IfcSelector")
|
|
def i_add_a_new_collection_item():
|
|
bpy.data.scenes["Scene"].IfcSelectorProperties.groups[0].queries.add()
|
|
|
|
@given(parsers.parse('the material "{name}" colour is set to "{colour}"'))
|
|
@when(parsers.parse('the material "{name}" colour is set to "{colour}"'))
|
|
def the_material_name_colour_is_set_to_colour(name, colour):
|
|
obj = the_material_name_exists(name)
|
|
obj.diffuse_color = [float(c) for c in colour.split(",")]
|
|
blenderbim.bim.handler.color_callback(obj, None)
|
|
|
|
|
|
@given("I add an array modifier")
|
|
def i_add_a_cube():
|
|
bpy.ops.object.modifier_add(type="ARRAY")
|
|
|
|
|
|
@given(parsers.parse('I add a cube of size "{size}" at "{location}"'))
|
|
@when(parsers.parse('I add a cube of size "{size}" at "{location}"'))
|
|
def i_add_a_cube_of_size_size_at_location(size, location):
|
|
bpy.ops.mesh.primitive_cube_add(size=float(size), location=[float(co) for co in location.split(",")])
|
|
|
|
|
|
@given(parsers.parse('I add a plane of size "{size}" at "{location}"'))
|
|
@when(parsers.parse('I add a plane of size "{size}" at "{location}"'))
|
|
def i_add_a_plane_of_size_size_at_location(size, location):
|
|
bpy.ops.mesh.primitive_plane_add(size=float(size), location=[float(co) for co in location.split(",")])
|
|
|
|
|
|
@given(parsers.parse('I press "{operator}"'))
|
|
@when(parsers.parse('I press "{operator}"'))
|
|
def i_press_operator(operator):
|
|
operator = replace_variables(operator)
|
|
if "(" in operator:
|
|
exec(f"bpy.ops.{operator}")
|
|
else:
|
|
exec(f"bpy.ops.{operator}()")
|
|
|
|
|
|
@when("I duplicate the selected objects")
|
|
def i_duplicate_the_selected_objects():
|
|
bpy.ops.object.duplicate_move()
|
|
blenderbim.bim.handler.active_object_callback()
|
|
|
|
|
|
@when("I deselect all objects")
|
|
def i_deselect_all_objects():
|
|
bpy.context.view_layer.objects.active = None
|
|
bpy.ops.object.select_all(action="DESELECT")
|
|
|
|
|
|
@given(parsers.parse('the object "{name}" is selected'))
|
|
@when(parsers.parse('the object "{name}" is selected'))
|
|
def the_object_name_is_selected(name):
|
|
i_deselect_all_objects()
|
|
additionally_the_object_name_is_selected(name)
|
|
|
|
|
|
@then(parsers.parse('the object "{name}" is selected'))
|
|
def then_the_object_name_is_selected(name):
|
|
obj = the_object_name_exists(name)
|
|
assert obj in bpy.context.selected_objects
|
|
|
|
|
|
@given(parsers.parse('the object "{name}" is moved to "{location}"'))
|
|
@when(parsers.parse('the object "{name}" is moved to "{location}"'))
|
|
def the_object_name_is_moved_to_location(name, location):
|
|
the_object_name_exists(name).location += Vector([float(co) for co in location.split(",")])
|
|
|
|
|
|
@given(parsers.parse('the object "{name}" is scaled to "{scale}"'))
|
|
@when(parsers.parse('the object "{name}" is scaled to "{scale}"'))
|
|
def the_object_name_is_scaled_to_scale(name, scale):
|
|
the_object_name_exists(name).scale *= float(scale)
|
|
|
|
|
|
@given(parsers.parse('the object "{name}" is placed in the collection "{collection}"'))
|
|
@when(parsers.parse('the object "{name}" is placed in the collection "{collection}"'))
|
|
def the_object_name_is_placed_in_the_collection_collection(name, collection):
|
|
obj = the_object_name_exists(name)
|
|
[c.objects.unlink(obj) for c in obj.users_collection]
|
|
bpy.data.collections.get(collection).objects.link(obj)
|
|
|
|
|
|
@given(parsers.parse('additionally the object "{name}" is selected'))
|
|
@when(parsers.parse('additionally the object "{name}" is selected'))
|
|
def additionally_the_object_name_is_selected(name):
|
|
obj = bpy.context.scene.objects.get(name)
|
|
if not obj:
|
|
assert False, f'The object "{name}" could not be selected'
|
|
bpy.context.view_layer.objects.active = obj
|
|
obj.select_set(True)
|
|
|
|
|
|
@given(parsers.parse('I rename the object "{name1}" to "{name2}"'))
|
|
@when(parsers.parse('I rename the object "{name1}" to "{name2}"'))
|
|
def i_rename_the_object_name1_to_name2(name1, name2):
|
|
the_object_name_exists(name1).name = name2
|
|
|
|
|
|
@given(parsers.parse('I set "{prop}" to "{value}"'))
|
|
@when(parsers.parse('I set "{prop}" to "{value}"'))
|
|
def i_set_prop_to_value(prop, value):
|
|
value = replace_variables(value)
|
|
try:
|
|
eval(f"bpy.context.{prop}")
|
|
except:
|
|
assert False, "Property does not exist"
|
|
try:
|
|
exec(f'bpy.context.{prop} = r"{value}"')
|
|
except:
|
|
exec(f"bpy.context.{prop} = {value}")
|
|
|
|
|
|
@given(parsers.parse('I set "{prop}" to ""'))
|
|
@when(parsers.parse('I set "{prop}" to ""'))
|
|
def i_set_prop_to_value(prop):
|
|
try:
|
|
eval(f"bpy.context.{prop}")
|
|
except:
|
|
assert False, "Property does not exist"
|
|
try:
|
|
exec(f'bpy.context.{prop} = r""')
|
|
except:
|
|
pass
|
|
|
|
|
|
@when(parsers.parse('I am on frame "{number}"'))
|
|
def i_am_on_frame_number(number):
|
|
bpy.context.scene.frame_set(int(number))
|
|
|
|
|
|
@when("I delete the selected objects")
|
|
def i_delete_the_selected_objects():
|
|
bpy.ops.object.delete()
|
|
|
|
|
|
@given(parsers.parse('the variable "{key}" is "{value}"'))
|
|
@when(parsers.parse('the variable "{key}" is "{value}"'))
|
|
@then(parsers.parse('the variable "{key}" is "{value}"'))
|
|
def the_variable_key_is_value(key, value):
|
|
variables[key] = eval(replace_variables(value))
|
|
|
|
|
|
@then("nothing happens")
|
|
def nothing_happens():
|
|
pass
|
|
|
|
|
|
@then(parsers.parse('the object "{name}" exists'))
|
|
def the_object_name_exists(name) -> bpy.types.Object:
|
|
obj = bpy.data.objects.get(name)
|
|
if not obj:
|
|
assert False, f'The object "{name}" does not exist'
|
|
return obj
|
|
|
|
|
|
@then(parsers.parse('the object "{name1}" and "{name2}" are different elements'))
|
|
def the_object_name1_and_name2_are_different_elements(name1, name2):
|
|
ifc = an_ifc_file_exists()
|
|
element1 = ifc.by_id(the_object_name_exists(name1).BIMObjectProperties.ifc_definition_id)
|
|
element2 = ifc.by_id(the_object_name_exists(name2).BIMObjectProperties.ifc_definition_id)
|
|
assert element1 != element2, f"Objects {name1} and {name2} have same elements {element1} and {element2}"
|
|
|
|
|
|
@then(parsers.parse('the object "{name}" has a body of "{value}"'))
|
|
def the_object_name_has_a_body_of_value(name, value):
|
|
assert the_object_name_exists(name).data.body == value
|
|
|
|
|
|
@given(parsers.parse('the object "{name}" has a "{type}" representation of "{context}"'))
|
|
@then(parsers.parse('the object "{name}" has a "{type}" representation of "{context}"'))
|
|
def the_object_name_has_a_representation_type_of_context(name, type, context):
|
|
ifc = an_ifc_file_exists()
|
|
element = ifc.by_id(the_object_name_exists(name).BIMObjectProperties.ifc_definition_id)
|
|
context, subcontext, target_view = context.split("/")
|
|
rep = ifcopenshell.util.representation.get_representation(element, context, subcontext or None, target_view or None)
|
|
assert rep
|
|
assert rep.RepresentationType == type
|
|
|
|
|
|
@given(parsers.parse('the object "{name}" data is a "{type}" representation of "{context}"'))
|
|
@then(parsers.parse('the object "{name}" data is a "{type}" representation of "{context}"'))
|
|
def the_object_name_has_a_representation_type_of_context(name, type, context):
|
|
ifc = an_ifc_file_exists()
|
|
context, subcontext, target_view = context.split("/")
|
|
rep = ifc.by_id(the_object_name_exists(name).data.BIMMeshProperties.ifc_definition_id)
|
|
assert rep
|
|
assert rep.RepresentationType == type
|
|
assert rep.ContextOfItems.ContextType == context
|
|
assert rep.ContextOfItems.ContextIdentifier == subcontext
|
|
assert rep.ContextOfItems.TargetView == target_view
|
|
|
|
|
|
@then(parsers.parse('the material "{name}" exists'))
|
|
def the_material_name_exists(name) -> bpy.types.Material:
|
|
obj = bpy.data.materials.get(name)
|
|
if not obj:
|
|
assert False, f'The material "{name}" does not exist'
|
|
return obj
|
|
|
|
|
|
@then(parsers.parse('the material "{name}" does not exist'))
|
|
def the_material_name_does_not_exist(name):
|
|
assert bpy.data.materials.get(name) is None, "Material exists"
|
|
|
|
|
|
@then("an IFC file does not exist")
|
|
def an_ifc_file_does_not_exist():
|
|
ifc = IfcStore.get_file()
|
|
if ifc:
|
|
assert False, "An IFC is available"
|
|
|
|
|
|
@then("an IFC file exists")
|
|
def an_ifc_file_exists():
|
|
ifc = IfcStore.get_file()
|
|
if not ifc:
|
|
assert False, "No IFC file is available"
|
|
return ifc
|
|
|
|
|
|
@then(parsers.parse('the object "{name}" should display as "{mode}"'))
|
|
def the_object_name_should_display_as_mode(name, mode):
|
|
obj = the_object_name_exists(name)
|
|
assert obj.display_type == mode
|
|
|
|
|
|
@then(parsers.parse('the object "{name1}" has a boolean difference by "{name2}"'))
|
|
def the_object_name1_has_a_boolean_difference_by_name2(name1, name2):
|
|
obj = the_object_name_exists(name1)
|
|
has_mod = any((m for m in obj.modifiers if m.type == "BOOLEAN" and m.object and m.object.name == name2))
|
|
assert has_mod, "No boolean found"
|
|
|
|
|
|
@then(parsers.parse('the object "{name1}" has no boolean difference by "{name2}"'))
|
|
def the_object_name1_has_no_boolean_difference_by_name2(name1, name2):
|
|
try:
|
|
the_object_name1_has_a_boolean_difference_by_name2(name1, name2)
|
|
except AssertionError:
|
|
return
|
|
assert False, "A boolean was found"
|
|
|
|
|
|
@then(parsers.parse('the object "{name}" is voided by "{void}"'))
|
|
def the_object_name_is_voided_by_void(name, void):
|
|
ifc = IfcStore.get_file()
|
|
element = ifc.by_id(the_object_name_exists(name).BIMObjectProperties.ifc_definition_id)
|
|
assert any((rel for rel in element.HasOpenings if rel.RelatedOpeningElement.Name == void)), "No void found"
|
|
|
|
|
|
@then(parsers.parse('the object "{name}" is not voided by "{void}"'))
|
|
def the_object_name_is_not_voided_by_void(name, void):
|
|
try:
|
|
the_object_name_is_voided_by_void(name, void)
|
|
except AssertionError:
|
|
return
|
|
assert False, "A void was found"
|
|
|
|
|
|
@then(parsers.parse('the object "{name}" is not voided'))
|
|
def the_object_name_is_not_voided(name):
|
|
ifc = IfcStore.get_file()
|
|
element = ifc.by_id(the_object_name_exists(name).BIMObjectProperties.ifc_definition_id)
|
|
assert not element.HasOpenings, "A void was found"
|
|
|
|
|
|
@then(parsers.parse('the object "{name}" is not a void'))
|
|
def the_object_name_is_a_void(name):
|
|
ifc = IfcStore.get_file()
|
|
obj = the_object_name_exists(name)
|
|
element = ifc.by_id(obj.BIMObjectProperties.ifc_definition_id)
|
|
assert any((element.VoidsElements)), "No void was found"
|
|
|
|
|
|
@then(parsers.parse('the object "{name}" is not a void'))
|
|
def the_object_name_is_not_a_void(name):
|
|
try:
|
|
the_object_name_is_a_void(name)
|
|
except AssertionError:
|
|
return
|
|
assert False, "A void was found"
|
|
|
|
|
|
@then(parsers.parse('the object "{name}" is an "{ifc_class}"'))
|
|
def the_object_name_is_an_ifc_class(name, ifc_class):
|
|
ifc = an_ifc_file_exists()
|
|
element = ifc.by_id(the_object_name_exists(name).BIMObjectProperties.ifc_definition_id)
|
|
assert element.is_a(ifc_class), f'Object "{name}" is an {element.is_a()}'
|
|
|
|
|
|
@then(parsers.parse('the object "{name}" is not an IFC element'))
|
|
def the_object_name_is_not_an_ifc_element(name):
|
|
id = the_object_name_exists(name).BIMObjectProperties.ifc_definition_id
|
|
assert id == 0, f"The ID is {id}"
|
|
|
|
|
|
@then(parsers.parse('the object "{name}" has no data'))
|
|
def the_object_name_has_no_data(name):
|
|
assert the_object_name_exists(name).data is None
|
|
|
|
|
|
@then(parsers.parse('the object "{name}" has data which is an IFC representation'))
|
|
def the_object_name_is_not_an_ifc_element(name):
|
|
id = the_object_name_exists(name).data.BIMMeshProperties.ifc_definition_id
|
|
assert id != 0, f"The ID is {id}"
|
|
|
|
|
|
@then(parsers.parse('the material "{name}" is an IFC material'))
|
|
def the_material_name_is_not_an_ifc_material(name):
|
|
id = the_material_name_exists(name).BIMObjectProperties.ifc_definition_id
|
|
assert id != 0, f"The ID is {id}"
|
|
|
|
|
|
@then(parsers.parse('the material "{name}" is not an IFC material'))
|
|
def the_material_name_is_not_an_ifc_material(name):
|
|
id = the_material_name_exists(name).BIMObjectProperties.ifc_definition_id
|
|
assert id == 0, f"The ID is {id}"
|
|
|
|
|
|
@then(parsers.parse('the material "{name}" is not an IFC style'))
|
|
def the_material_name_is_not_an_ifc_material(name):
|
|
id = the_material_name_exists(name).BIMMaterialProperties.ifc_style_id
|
|
assert id == 0, f"The ID is {id}"
|
|
|
|
|
|
@then(parsers.parse('the material "{name}" colour is "{colour}"'))
|
|
def the_material_name_colour_is_set_to_colour(name, colour):
|
|
diffuse_color = list(the_material_name_exists(name).diffuse_color)
|
|
assert diffuse_color == [float(c) for c in colour.split(",")], f"The colour is {diffuse_color}"
|
|
|
|
|
|
@then(parsers.parse('the object "{name}" has "{number}" vertices'))
|
|
def the_object_name_has_number_vertices(name, number):
|
|
total = len(the_object_name_exists(name).data.vertices)
|
|
assert total == int(number), f"We found {total} vertices"
|
|
|
|
|
|
@then(parsers.parse('the void "{name}" is filled by "{filling}"'))
|
|
def the_void_name_is_filled_by_filling(name, filling):
|
|
ifc = IfcStore.get_file()
|
|
element = ifc.by_id(the_object_name_exists(name).BIMObjectProperties.ifc_definition_id)
|
|
assert any((rel.RelatedBuildingElement.Name == filling for rel in element.HasFillings)), "No filling found"
|
|
|
|
|
|
@then(parsers.parse('the void "{name}" is not filled by "{filling}"'))
|
|
def the_void_name_is_not_filled_by_filling(name, filling):
|
|
try:
|
|
the_void_name_is_filled_by_filling(name, filling)
|
|
except AssertionError:
|
|
return
|
|
assert False, "A filling was found"
|
|
|
|
|
|
@when(parsers.parse('the object "{name}" is not a filling'))
|
|
@then(parsers.parse('the object "{name}" is not a filling'))
|
|
def the_object_name_is_not_a_filling(name):
|
|
ifc = IfcStore.get_file()
|
|
element = ifc.by_id(the_object_name_exists(name).BIMObjectProperties.ifc_definition_id)
|
|
assert not any(element.FillsVoids), "A filling was found"
|
|
|
|
|
|
@then(parsers.parse('"{prop}" is "{value}"'))
|
|
def prop_is_value(prop, value):
|
|
prop = replace_variables(prop)
|
|
value = replace_variables(value)
|
|
is_value = False
|
|
try:
|
|
exec(f'assert bpy.context.{prop} == "{value}"')
|
|
is_value = True
|
|
except:
|
|
try:
|
|
exec(f"assert bpy.context.{prop} == {value}")
|
|
is_value = True
|
|
except:
|
|
try:
|
|
exec(f"assert list(bpy.context.{prop}) == {value}")
|
|
is_value = True
|
|
except:
|
|
pass
|
|
if not is_value:
|
|
actual_value = eval(f"bpy.context.{prop}")
|
|
assert False, f"Value is {actual_value}"
|
|
|
|
|
|
@then(parsers.parse('the object "{name}" has the material "{material}"'))
|
|
def the_object_name_has_the_material_material(name, material):
|
|
assert material in [ms.material.name for ms in the_object_name_exists(name).material_slots]
|
|
|
|
|
|
@then(parsers.parse('the object "{name}" is in the collection "{collection}"'))
|
|
def the_object_name_is_in_the_collection_collection(name, collection):
|
|
assert collection in [c.name for c in the_object_name_exists(name).users_collection]
|
|
|
|
|
|
@then(parsers.parse('the collection "{name1}" is in the collection "{name2}"'))
|
|
def the_collection_name1_is_in_the_collection_name2(name1, name2):
|
|
assert bpy.data.collections.get(name2).children.get(name1)
|
|
|
|
|
|
@then(parsers.parse('the object "{name}" does not exist'))
|
|
def the_object_name_does_not_exist(name):
|
|
obj = bpy.data.objects.get(name)
|
|
assert obj is None or len(obj.users_collection) == 0, "Object exists"
|
|
|
|
|
|
@then(parsers.parse('objects starting with "{name}" do not exist'))
|
|
def objects_not_exist_starting_with(name):
|
|
objs = [obj for obj in bpy.data.objects if obj.name.startswith(name) and len(obj.users_collection) > 0]
|
|
if len(objs) > 0:
|
|
assert False, f'{len(objs)} objects starting with "{name}" exist'
|
|
assert True
|
|
|
|
|
|
@then(parsers.parse('the object "{name}" is at "{location}"'))
|
|
def the_object_name_is_at_location(name, location):
|
|
obj_location = the_object_name_exists(name).location
|
|
assert (
|
|
obj_location - Vector([float(co) for co in location.split(",")])
|
|
).length < 0.1, f"Object is at {obj_location}"
|
|
|
|
|
|
@then(parsers.parse('the object "{name}" has no scale'))
|
|
def the_object_name_has_no_scale(name):
|
|
assert the_object_name_exists(name).scale == Vector(
|
|
(
|
|
1.0,
|
|
1.0,
|
|
1.0,
|
|
)
|
|
)
|
|
|
|
|
|
@then(parsers.parse('the object "{name}" dimensions are "{dimensions}"'))
|
|
def the_object_name_dimensions_are_dimensions(name, dimensions):
|
|
assert list(the_object_name_exists(name).dimensions) == [float(co) for co in dimensions.split(",")]
|
|
|
|
|
|
@then(parsers.parse('the object "{name}" bottom left corner is at "{location}"'))
|
|
def the_object_name_is_at_location(name, location):
|
|
obj_corner = Vector(the_object_name_exists(name).bound_box[0])
|
|
assert (
|
|
obj_corner - Vector([float(co) for co in location.split(",")])
|
|
).length < 0.1, f"Object has corner {obj_corner}"
|
|
|
|
|
|
@then(parsers.parse('the object "{name}" is contained in "{container_name}"'))
|
|
def the_object_name_is_contained_in_container_name(name, container_name):
|
|
ifc = an_ifc_file_exists()
|
|
element = ifc.by_id(the_object_name_exists(name).BIMObjectProperties.ifc_definition_id)
|
|
container = ifcopenshell.util.element.get_container(element)
|
|
if not container:
|
|
assert False, f'Object "{name}" is not in any container'
|
|
assert container.Name == container_name, f'Object "{name}" is in {container}'
|
|
|
|
|
|
@then(parsers.parse('the file "{name}" should contain "{value}"'))
|
|
def the_file_name_should_contain_value(name, value):
|
|
name = replace_variables(name)
|
|
with open(name, "r") as f:
|
|
assert value in f.read()
|
|
|
|
|
|
@then(parsers.parse('the object "{name}" has no modifiers'))
|
|
def the_object_name_has_no_modifiers(name):
|
|
assert len(the_object_name_exists(name).modifiers) == 0
|
|
|
|
|
|
@then(parsers.parse('the construction type "{constr_class}"/"{constr_type}" has a preview'))
|
|
def the_construction_type_has_a_preview(constr_class, constr_type):
|
|
if "preview_constr_types" not in AuthoringData.data:
|
|
assert False, 'There are no previews loaded'
|
|
preview_constr_types = AuthoringData.data["preview_constr_types"]
|
|
if constr_class not in preview_constr_types:
|
|
assert False, f'Construction class {constr_class} has no available previews'
|
|
constr_type_id = AuthoringData.constr_type_id_by_name(constr_class, constr_type)
|
|
if constr_type_id is None:
|
|
assert False, f'No construction type {constr_class}/{constr_type} was found'
|
|
if constr_type_id not in preview_constr_types[constr_class]:
|
|
assert False, f'Construction type {constr_class}/{constr_type} has no available previews'
|
|
preview_data = preview_constr_types[constr_class][constr_type_id]
|
|
if 'icon_id' not in preview_data:
|
|
assert False, f'Construction type {constr_class}/{constr_type} has a preview, but no assigned icon_id'
|
|
icon_id = preview_data["icon_id"]
|
|
if not isinstance(icon_id, int):
|
|
assert False, f'Construction type {constr_class}/{constr_type} has an invalid icon_id {icon_id}'
|
|
if icon_id == 0:
|
|
assert False, f'Construction type {constr_class}/{constr_type} has the default null value for icon_id'
|
|
assert True
|
|
|
|
|
|
@then(parsers.parse('all construction types for "{constr_class}" have a preview'))
|
|
def all_construction_types_have_a_preview(constr_class):
|
|
if "preview_constr_types" not in AuthoringData.data:
|
|
assert False, 'There are no previews loaded'
|
|
preview_constr_types = AuthoringData.data["preview_constr_types"]
|
|
if constr_class not in preview_constr_types:
|
|
assert False, f'Construction class {constr_class} has no available previews'
|
|
constr_class_occurrences = AuthoringData.constr_class_entities(constr_class)
|
|
for constr_class_entity in constr_class_occurrences:
|
|
the_construction_type_has_a_preview(constr_class, constr_class_entity.Name)
|
|
|
|
|
|
@given("I load the demo construction library")
|
|
@when("I load the demo construction library")
|
|
def i_add_a_construction_library():
|
|
lib_path = './blenderbim/bim/data/libraries/IFC4 Demo Library.ifc'
|
|
bpy.ops.bim.select_library_file(filepath=lib_path, append_all=True)
|
|
|
|
|
|
@given("I display the Construction Type Browser")
|
|
@when("I display the Construction Type Browser")
|
|
def i_display_the_construction_type_browser():
|
|
bpy.ops.bim.display_constr_types()
|
|
|
|
|
|
@given("I preview only one asset on the Construction Type Browser")
|
|
@when("I preview only one asset on the Construction Type Browser")
|
|
def i_preview_one_construction_type():
|
|
bpy.context.scene.BIMModelProperties.unfold_relating_type = False
|
|
|
|
|
|
@given("I preview all available assets on the Construction Type Browser")
|
|
@when("I preview all available assets on the Construction Type Browser")
|
|
def i_preview_all_construction_types():
|
|
bpy.context.scene.BIMModelProperties.unfold_relating_type = True
|
|
|
|
|
|
@given("I select the active construction type")
|
|
@when("I select the active construction type")
|
|
def i_select_the_active_construction_type():
|
|
props = bpy.context.scene.BIMModelProperties
|
|
bpy.ops.bim.select_construction_type(
|
|
constr_class=props.constr_class_browser, constr_type_id=props.constr_type_id_browser
|
|
)
|