Merge pull request #7058 from Krande/feat/IfcFixedReferenceSweptAreaSolid

feat: improved support for IfcFixedReferenceSweptAreaSolid
This commit is contained in:
Thomas Krijnen
2025-08-31 10:57:49 +02:00
committed by GitHub
12 changed files with 9299 additions and 86 deletions
+119
View File
@@ -0,0 +1,119 @@
ISO-10303-21;
HEADER;
FILE_DESCRIPTION(('ViewDefinition [CoordinationView]'),'2;1');
FILE_NAME('','2025-02-14T16:16:53',(''),(''),'IfcOpenShell 0.8.1-c49ca69','IfcOpenShell 0.8.1-c49ca69','');
FILE_SCHEMA(('IFC4X3_ADD2'));
ENDSEC;
DATA;
#1=IFCPERSON($,$,'Pravin.Muthukrishnan',$,$,$,$,$);
#2=IFCORGANIZATION($,'BG&E Pty Ltd','BG&E Pty Ltd',$,$);
#3=IFCPERSONANDORGANIZATION(#1,#2,$);
#4=IFCAPPLICATION(#2,'15.0C1n','12d Model','12d Model');
#5=IFCOWNERHISTORY(#3,#4,$,.NOCHANGE.,$,$,$,1739508662);
#6=IFCCARTESIANPOINT((0.,0.,0.));
#7=IFCDIRECTION((0.,0.,1.));
#8=IFCDIRECTION((1.,0.,0.));
#9=IFCAXIS2PLACEMENT3D(#6,#7,#8);
#10=IFCDIRECTION((0.,1.,0.));
#11=IFCGEOMETRICREPRESENTATIONCONTEXT($,'Model',3,1.E-06,#9,#10);
#12=IFCSIUNIT(*,.LENGTHUNIT.,$,.METRE.);
#13=IFCSIUNIT(*,.AREAUNIT.,$,.SQUARE_METRE.);
#14=IFCSIUNIT(*,.VOLUMEUNIT.,$,.CUBIC_METRE.);
#15=IFCSIUNIT(*,.PLANEANGLEUNIT.,$,.RADIAN.);
#16=IFCUNITASSIGNMENT((#12,#13,#14,#15));
#17=IFCPROJECT('3f4tUCcZz5OBp_RAlF3Yjd',#5,'DRAINAGE DESIGN','No description set',$,$,$,(#11),#16);
#18=IFCPERSON($,$,'Pravin.Muthukrishnan',$,$,$,$,$);
#19=IFCORGANIZATION($,'BG&E Pty Ltd','BG&E Pty Ltd',$,$);
#20=IFCPERSONANDORGANIZATION(#18,#19,$);
#21=IFCAPPLICATION(#19,'15.0C1n','12d Model','12d Model');
#22=IFCOWNERHISTORY(#20,#21,$,.NOCHANGE.,$,$,$,1739508662);
#30=IFCCARTESIANPOINT((0.,0.));
#31=IFCAXIS2PLACEMENT2D(#30,$);
#32=IFCCIRCLEPROFILEDEF(.AREA.,$,#31,0.179);
#33=IFCCARTESIANPOINT((289.080,582.2,118.886));
#34=IFCCARTESIANPOINT((290.081,582.9,118.886));
#35=IFCPOLYLINE((#33,#34));
#36=IFCDIRECTION((1.,0.,0.));
#37=IFCFIXEDREFERENCESWEPTAREASOLID(#32,$,#35,$,$,#36);
#38=IFCSHAPEREPRESENTATION(#11,'Body','AdvancedSweptSolid',(#37));
#39=IFCPRODUCTDEFINITIONSHAPE($,$,(#38));
#40=IFCFLOWSEGMENT('1iJOpv7cX1SBoQLaHDDolV',#108,'5','5-1 to 1-1','EXISTING (RETAINED)',#103,#39,$);
#41=IFCRELDEFINESBYPROPERTIES('10rIwnj8r8RR3PKc1TXqSB',#22,'12d Model','Attributes',(#40),#94);
#42=IFCPROPERTYSINGLEVALUE('calculated critical cover chainage',$,IFCREAL(2.24873590275508),$);
#43=IFCPROPERTYSINGLEVALUE('nominal diameter',$,IFCREAL(0.3),$);
#44=IFCPROPERTYSINGLEVALUE('pipe id',$,IFCINTEGER(35),$);
#45=IFCPROPERTYSINGLEVALUE('colour',$,IFCLABEL('orange'),$);
#46=IFCPROPERTYSINGLEVALUE('group',$,IFCLABEL('EX'),$);
#47=IFCCOMPLEXPROPERTY('pipe sched','12d_attribute_group',$,(#46));
#48=IFCPROPERTYSINGLEVALUE('name',$,IFCLABEL('EX'),$);
#49=IFCCOMPLEXPROPERTY('lplot','12d_attribute_group',$,(#48));
#50=IFCPROPERTYSINGLEVALUE('pipe name',$,IFCLABEL('5-1 to 1-1'),$);
#51=IFCPROPERTYSINGLEVALUE('calculated direct pipe flow total minor',$,IFCREAL(0.),$);
#52=IFCPROPERTYSINGLEVALUE('calculated direct pipe flow total major',$,IFCREAL(0.),$);
#53=IFCPROPERTYSINGLEVALUE('calculated direct pit and pipe flow total minor',$,IFCREAL(0.),$);
#54=IFCPROPERTYSINGLEVALUE('calculated direct pit and pipe flow total major',$,IFCREAL(0.),$);
#55=IFCPROPERTYSINGLEVALUE('pipe type',$,IFCLABEL('EXISTING (RETAINED)'),$);
#56=IFCPROPERTYSINGLEVALUE('roughness text',$,IFCLABEL('n=0.013'),$);
#57=IFCPROPERTYSINGLEVALUE('calculated design grade minimum',$,IFCREAL(1.),$);
#58=IFCPROPERTYSINGLEVALUE('calculated pipe length',$,IFCREAL(7.19890895752825),$);
#59=IFCPROPERTYSINGLEVALUE('invert us',$,IFCREAL(118.736),$);
#60=IFCPROPERTYSINGLEVALUE('invert ds',$,IFCREAL(118.736),$);
#61=IFCPROPERTYSINGLEVALUE('calculated pipe grade',$,IFCREAL(-0.),$);
#62=IFCPROPERTYSINGLEVALUE('calculated pipe vert angle',$,IFCREAL(0.),$);
#63=IFCPROPERTYSINGLEVALUE('calculated pipe grade 1 in',$,IFCREAL(1000000.),$);
#64=IFCPROPERTYSINGLEVALUE('pipe size',$,IFCLABEL('300'),$);
#65=IFCPROPERTYSINGLEVALUE('diameter',$,IFCREAL(0.3),$);
#66=IFCPROPERTYSINGLEVALUE('nominal pipe size',$,IFCLABEL('300'),$);
#67=IFCPROPERTYSINGLEVALUE('calculated us deflection',$,IFCREAL(0.),$);
#68=IFCPROPERTYSINGLEVALUE('calculated ds deflection',$,IFCREAL(89.4496469263205),$);
#69=IFCPROPERTYSINGLEVALUE('calculated design drop',$,IFCREAL(0.02),$);
#70=IFCPROPERTYSINGLEVALUE('calculated drop',$,IFCREAL(0.),$);
#71=IFCPROPERTYSINGLEVALUE('calculated pipe vert ds deflection angle',$,IFCREAL(-4.09980829540645),$);
#72=IFCPROPERTYSINGLEVALUE('calculated design cover',$,IFCREAL(1.1),$);
#73=IFCPROPERTYSINGLEVALUE('minimum cover',$,IFCREAL(1.67561504823626),$);
#74=IFCPROPERTYSINGLEVALUE('pipe colour',$,IFCINTEGER(8),$);
#75=IFCPROPERTYSINGLEVALUE('conduit shape',$,IFCLABEL('Circular'),$);
#76=IFCPROPERTYSINGLEVALUE('calculated invert us',$,IFCREAL(118.736),$);
#77=IFCPROPERTYSINGLEVALUE('calculated invert ds',$,IFCREAL(118.736),$);
#78=IFCPROPERTYSINGLEVALUE('calculated hgl us',$,IFCREAL(118.736),$);
#79=IFCPROPERTYSINGLEVALUE('calculated hgl ds',$,IFCREAL(118.736),$);
#80=IFCPROPERTYSINGLEVALUE('lock us il',$,IFCINTEGER(1),$);
#81=IFCPROPERTYSINGLEVALUE('lock ds il',$,IFCINTEGER(1),$);
#82=IFCPROPERTYSINGLEVALUE('critical barrel',$,IFCINTEGER(0),$);
#83=IFCPROPERTYSINGLEVALUE('critical side',$,IFCINTEGER(0),$);
#84=IFCPROPERTYSINGLEVALUE('Pipe Name',$,IFCLABEL('5-1 to 1-1'),$);
#85=IFCPROPERTYSINGLEVALUE('Pipe Type',$,IFCLABEL('EXISTING (RETAINED)'),$);
#86=IFCPROPERTYSINGLEVALUE('Justification',$,IFCLABEL('Invert'),$);
#87=IFCPROPERTYSINGLEVALUE('Start x',$,IFCREAL(289080.818499209),$);
#88=IFCPROPERTYSINGLEVALUE('Start y',$,IFCREAL(5822851.36621952),$);
#89=IFCPROPERTYSINGLEVALUE('Start z',$,IFCREAL(118.736),$);
#90=IFCPROPERTYSINGLEVALUE('End x',$,IFCREAL(289081.570466963),$);
#91=IFCPROPERTYSINGLEVALUE('End y',$,IFCREAL(5822857.54453541),$);
#92=IFCPROPERTYSINGLEVALUE('End z',$,IFCREAL(118.736),$);
#93=IFCCOMPLEXPROPERTY('Geometry','12d_attribute_group',$,(#86,#87,#88,#89,#90,#91,#92));
#94=IFCPROPERTYSET('0pqqHlNsb54w9VRYcNog0C',#22,'12d Model',$,(#42,#43,#44,#45,#47,#49,#50,#51,#52,#53,#54,#55,#56,#57,#58,#59,#60,#61,#62,#63,#64,#65,#66,#67,#68,#69,#70,#71,#72,#73,#74,#75,#76,#77,#78,#79,#80,#81,#82,#83,#84,#85,#93));
#95=IFCSTYLEDITEM(#37,(#98),$);
#96=IFCCOLOURRGB('orange',1.,0.647058823529412,0.);
#97=IFCSURFACESTYLERENDERING(#96,$,$,$,$,$,IFCNORMALISEDRATIOMEASURE(0.00390625),IFCSPECULAREXPONENT(10.),.NOTDEFINED.);
#98=IFCSURFACESTYLE($,.POSITIVE.,(#97));
#99=IFCCARTESIANPOINT((0.,0.,0.));
#100=IFCDIRECTION((0.,0.,1.));
#101=IFCDIRECTION((1.,0.,0.));
#102=IFCAXIS2PLACEMENT3D(#99,#100,#101);
#103=IFCLOCALPLACEMENT($,#102);
#104=IFCACTORROLE(.USERDEFINED.,'CONTRIBUTOR',$);
#105=IFCTELECOMADDRESS(.USERDEFINED.,$,'WEBPAGE',$,$,$,$,'https://ifcopenshell.org',$);
#106=IFCORGANIZATION('IfcOpenShell','IfcOpenShell','IfcOpenShell is an open source software library that helps users and software developers to work with IFC data.',(#104),(#105));
#107=IFCAPPLICATION(#106,'0.8.1-alpha250208-3832077','Bonsai','Bonsai');
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#115=IFCCARTESIANPOINT((0.,0.,0.));
#116=IFCDIRECTION((0.,0.,1.));
#117=IFCDIRECTION((1.,0.,0.));
#118=IFCAXIS2PLACEMENT3D(#115,#116,#117);
#119=IFCLOCALPLACEMENT($,#118);
#120=IFCOWNERHISTORY(#20,#21,$,.MODIFIED.,1739510213,#3,#107,1739508662);
#121=IFCRELCONTAINEDINSPATIALSTRUCTURE('05AVd4pPf1jeS4OU20v7N9',#5,$,$,(#40),#114);
#122=IFCRELAGGREGATES('3PxVuUIG14dQdQEHf8wUca',#5,$,$,#17,(#114));
ENDSEC;
END-ISO-10303-21;
@@ -0,0 +1,74 @@
ISO-10303-21;
HEADER;
FILE_DESCRIPTION(('ViewDefinition[DesignTransferView]'),'2;1');
FILE_NAME('/dev/null','2025-08-27T14:53:55+02:00',('AdaUser'),('AdaOrg'),'IfcOpenShell 0.8.2','IfcOpenShell 0.8.2','Nobody');
FILE_SCHEMA(('IFC4X3_ADD2'));
ENDSEC;
DATA;
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#2=IFCSIUNIT(*,.LENGTHUNIT.,$,.METRE.);
#3=IFCSIUNIT(*,.AREAUNIT.,$,.SQUARE_METRE.);
#4=IFCSIUNIT(*,.VOLUMEUNIT.,$,.CUBIC_METRE.);
#5=IFCSIUNIT(*,.PLANEANGLEUNIT.,$,.RADIAN.);
#6=IFCUNITASSIGNMENT((#5,#3,#4,#2));
#7=IFCCARTESIANPOINT((0.,0.,0.));
#8=IFCDIRECTION((0.,0.,1.));
#9=IFCDIRECTION((1.,0.,0.));
#10=IFCAXIS2PLACEMENT3D(#7,#8,#9);
#11=IFCGEOMETRICREPRESENTATIONCONTEXT($,'Model',3,1.E-05,#10,$);
#12=IFCGEOMETRICREPRESENTATIONSUBCONTEXT('Body','Model',*,*,*,*,#11,$,.MODEL_VIEW.,$);
#13=IFCGEOMETRICREPRESENTATIONSUBCONTEXT('Axis','Model',*,*,*,*,#11,$,.GRAPH_VIEW.,$);
#14=IFCGEOMETRICREPRESENTATIONSUBCONTEXT('Box','Model',*,*,*,*,#11,$,.MODEL_VIEW.,$);
#15=IFCACTORROLE(.ENGINEER.,$,$);
#16=IFCPERSON('AdaUser',$,$,$,$,$,(#15),$);
#17=IFCORGANIZATION('ADA','Assembly For Design and Analysis',$,$,$);
#18=IFCPERSONANDORGANIZATION(#16,#17,$);
#19=IFCAPPLICATION(#17,'XXX','ADA','ADA');
#20=IFCOWNERHISTORY(#18,#19,.READWRITE.,$,$,#18,#19,1756299235);
#21=IFCDIRECTION((0.,0.,1.));
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#32=IFCMATERIAL('S355',$,'Steel');
#33=IFCPROPERTYSINGLEVALUE('Grade',$,IFCTEXT('S355'),$);
#34=IFCPROPERTYSINGLEVALUE('YieldStress',$,IFCPRESSUREMEASURE(355000000.),$);
#35=IFCPROPERTYSINGLEVALUE('YoungModulus',$,IFCMODULUSOFELASTICITYMEASURE(210000000000.),$);
#36=IFCPROPERTYSINGLEVALUE('PoissonRatio',$,IFCPOSITIVERATIOMEASURE(0.3),$);
#37=IFCPROPERTYSINGLEVALUE('ThermalExpansionCoefficient',$,IFCTHERMALEXPANSIONCOEFFICIENTMEASURE(1.2E-05),$);
#38=IFCPROPERTYSINGLEVALUE('SpecificHeatCapacity',$,IFCSPECIFICHEATCAPACITYMEASURE(0.03),$);
#39=IFCPROPERTYSINGLEVALUE('MassDensity',$,IFCMASSDENSITYMEASURE(7850.),$);
#40=IFCMATERIALPROPERTIES('MaterialMechanical','A Material property description',(#33,#34,#35,#36,#37,#38,#39),#32);
#41=IFCRELASSOCIATESMATERIAL('3__DXGCfr15fk06ugmrrR4',#20,'S355','Objects related to S355',(#64),#32);
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#57=IFCFIXEDREFERENCESWEPTAREASOLID(#49,#56,#51,$,$,#52);
#58=IFCSHAPEREPRESENTATION(#12,'Body','AdvancedSweptSolid',(#57));
#59=IFCPRODUCTDEFINITIONSHAPE($,$,(#58));
#60=IFCCOLOURRGB('Color1',0.8,0.8,0.8);
#61=IFCSURFACESTYLESHADING(#60,0.);
#62=IFCSURFACESTYLE('Color1',.BOTH.,(#61));
#63=IFCSTYLEDITEM(#57,(#62),'Color1');
#64=IFCBUILDINGELEMENTPROXY('07ngBzsO5BK8C3rDUqQfSD',#20,'sweep1',$,$,#46,#59,$,$);
#65=IFCRELCONTAINEDINSPATIALSTRUCTURE('1_r$SsBj1C3wgAjnhfmkqs',#20,'Physical model',$,(#64),#26);
ENDSEC;
END-ISO-10303-21;
@@ -0,0 +1,74 @@
ISO-10303-21;
HEADER;
FILE_DESCRIPTION(('ViewDefinition[DesignTransferView]'),'2;1');
FILE_NAME('/dev/null','2025-08-28T09:45:32+02:00',('AdaUser'),('AdaOrg'),'IfcOpenShell 0.8.2','IfcOpenShell 0.8.2','Nobody');
FILE_SCHEMA(('IFC4X3_ADD2'));
ENDSEC;
DATA;
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#2=IFCSIUNIT(*,.LENGTHUNIT.,$,.METRE.);
#3=IFCSIUNIT(*,.AREAUNIT.,$,.SQUARE_METRE.);
#4=IFCSIUNIT(*,.VOLUMEUNIT.,$,.CUBIC_METRE.);
#5=IFCSIUNIT(*,.PLANEANGLEUNIT.,$,.RADIAN.);
#6=IFCUNITASSIGNMENT((#3,#5,#4,#2));
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#13=IFCGEOMETRICREPRESENTATIONSUBCONTEXT('Axis','Model',*,*,*,*,#11,$,.GRAPH_VIEW.,$);
#14=IFCGEOMETRICREPRESENTATIONSUBCONTEXT('Box','Model',*,*,*,*,#11,$,.MODEL_VIEW.,$);
#15=IFCACTORROLE(.ENGINEER.,$,$);
#16=IFCPERSON('AdaUser',$,$,$,$,$,(#15),$);
#17=IFCORGANIZATION('ADA','Assembly For Design and Analysis',$,$,$);
#18=IFCPERSONANDORGANIZATION(#16,#17,$);
#19=IFCAPPLICATION(#17,'XXX','ADA','ADA');
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#37=IFCPROPERTYSINGLEVALUE('ThermalExpansionCoefficient',$,IFCTHERMALEXPANSIONCOEFFICIENTMEASURE(1.2E-05),$);
#38=IFCPROPERTYSINGLEVALUE('SpecificHeatCapacity',$,IFCSPECIFICHEATCAPACITYMEASURE(0.03),$);
#39=IFCPROPERTYSINGLEVALUE('MassDensity',$,IFCMASSDENSITYMEASURE(7850.),$);
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ENDSEC;
END-ISO-10303-21;
@@ -0,0 +1,85 @@
import pathlib
from collections.abc import Sequence
import ifcopenshell
import pytest
def _bbox_from_vertices(verts: list[tuple[float, float, float]]):
if not verts:
return (0, 0, 0), (0, 0, 0)
xs = [v[0] for v in verts]
ys = [v[1] for v in verts]
zs = [v[2] for v in verts]
mn = (min(xs), min(ys), min(zs))
mx = (max(xs), max(ys), max(zs))
return mn, mx
def _size_from_bbox(mn, mx):
return (mx[0] - mn[0], mx[1] - mn[1], mx[2] - mn[2])
def _triples(flat: Sequence[float]) -> list[tuple[float, float, float]]:
return [(float(flat[i]), float(flat[i + 1]), float(flat[i + 2])) for i in range(0, len(flat), 3)]
def load_ifc_mesh_bbox(ifc_path: str):
"""Load first product's mesh from IFC using ifcopenshell.geom and return bbox and size."""
try:
import ifcopenshell.geom as geom
except Exception as e:
raise RuntimeError("ifcopenshell.geom not available: cannot validate IFC geometry") from e
settings = geom.settings()
settings.set(settings.USE_WORLD_COORDS, True)
f = ifcopenshell.open(ifc_path)
# Prefer the proxy we created, otherwise take any product with representation
products = f.by_type("IfcProduct")
target = None
for p in products:
if p.is_a("IfcBuildingElementProxy") and getattr(p, "Representation", None):
target = p
break
if target is None:
for p in products:
if getattr(p, "Representation", None):
target = p
break
if target is None:
raise RuntimeError("No representable product found in IFC for validation")
shape = geom.create_shape(settings, target)
verts = _triples(shape.geometry.verts)
mn, mx = _bbox_from_vertices(verts)
return mn, mx, _size_from_bbox(mn, mx)
@pytest.fixture
def geom_dir():
return pathlib.Path(__file__).parent.parent.resolve().absolute() / "fixtures/geom"
def test_simple_sweep_1(geom_dir):
ifc_file_path = geom_dir / "simple_sweep_1.ifc"
ifc_mn, ifc_mx, ifc_sz = load_ifc_mesh_bbox(ifc_file_path)
assert ifc_sz == pytest.approx((0.8957825463853046, 0.1, 1.1))
assert ifc_mn == pytest.approx((0.0, 0, -0.1))
assert ifc_mx == pytest.approx((0.8957825463853046, 0.1, 1.0))
def test_simple_sweep_2(geom_dir):
ifc_file_path = geom_dir / "simple_sweep_2.ifc"
ifc_mn, ifc_mx, ifc_sz = load_ifc_mesh_bbox(ifc_file_path)
assert ifc_mn == pytest.approx((50.0, 100.0, 200.0))
assert ifc_mx == pytest.approx((50.89584911299009, 101.70000025609394, 202.0000003710634))
assert ifc_sz == pytest.approx((0.8958491129900921, 1.7000002560939436, 2.0000003710634076))
def test_pipe_12d(geom_dir):
ifc_file_path = geom_dir / "pipe.ifc"
ifc_mn, ifc_mx, ifc_sz = load_ifc_mesh_bbox(ifc_file_path)
assert ifc_sz == pytest.approx((1.205888147422229, 0.9929900508137735, 0.35776115971654576))
assert ifc_mn == pytest.approx((288.9774190979147, 582.0537006391681, 118.70711942014172))
assert ifc_mx == pytest.approx((290.18330724533695, 583.0466906899819, 119.06488057985827))
+1 -1
View File
@@ -21,7 +21,7 @@ import pytest
import ifcopenshell
TEST_FILE_DIR = Path("../../test/input/")
TEST_FILE_DIR = Path(__file__).parent / "../../../test/input/"
class TestOpen:
+1 -1
View File
@@ -22,7 +22,7 @@ import pytest
import ifcopenshell
TEST_FILE_DIR = Path("../../test/input/")
TEST_FILE_DIR = Path(__file__).parent / "../../../test/input/"
class TestWrite: