/******************************************************************************** * * * This file is part of IfcOpenShell. * * * * IfcOpenShell is free software: you can redistribute it and/or modify * * it under the terms of the Lesser GNU General Public License as published by * * the Free Software Foundation, either version 3.0 of the License, or * * (at your option) any later version. * * * * IfcOpenShell 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 * * Lesser GNU General Public License for more details. * * * * You should have received a copy of the Lesser GNU General Public License * * along with this program. If not, see . * * * ********************************************************************************/ /******************************************************************************** * * * This file has been generated from IFC2X3_TC1.exp. Do not make modifications * * but instead modify the python script that has been used to generate this. * * * ********************************************************************************/ #include "../ifcparse/IfcSchema.h" using namespace IfcParse; entity* Ifc2DCompositeCurve_type = 0; entity* IfcActionRequest_type = 0; entity* IfcActor_type = 0; entity* IfcActorRole_type = 0; entity* IfcActuatorType_type = 0; entity* IfcAddress_type = 0; entity* IfcAirTerminalBoxType_type = 0; entity* IfcAirTerminalType_type = 0; entity* IfcAirToAirHeatRecoveryType_type = 0; entity* IfcAlarmType_type = 0; entity* IfcAngularDimension_type = 0; entity* IfcAnnotation_type = 0; entity* IfcAnnotationCurveOccurrence_type = 0; entity* IfcAnnotationFillArea_type = 0; entity* IfcAnnotationFillAreaOccurrence_type = 0; entity* IfcAnnotationOccurrence_type = 0; entity* IfcAnnotationSurface_type = 0; entity* IfcAnnotationSurfaceOccurrence_type = 0; entity* IfcAnnotationSymbolOccurrence_type = 0; entity* IfcAnnotationTextOccurrence_type = 0; entity* IfcApplication_type = 0; entity* IfcAppliedValue_type = 0; entity* IfcAppliedValueRelationship_type = 0; entity* IfcApproval_type = 0; entity* IfcApprovalActorRelationship_type = 0; entity* IfcApprovalPropertyRelationship_type = 0; entity* IfcApprovalRelationship_type = 0; entity* IfcArbitraryClosedProfileDef_type = 0; entity* IfcArbitraryOpenProfileDef_type = 0; entity* IfcArbitraryProfileDefWithVoids_type = 0; entity* IfcAsset_type = 0; entity* IfcAsymmetricIShapeProfileDef_type = 0; entity* IfcAxis1Placement_type = 0; entity* IfcAxis2Placement2D_type = 0; entity* IfcAxis2Placement3D_type = 0; entity* IfcBSplineCurve_type = 0; entity* IfcBeam_type = 0; entity* IfcBeamType_type = 0; entity* IfcBezierCurve_type = 0; entity* IfcBlobTexture_type = 0; entity* IfcBlock_type = 0; entity* IfcBoilerType_type = 0; entity* IfcBooleanClippingResult_type = 0; entity* IfcBooleanResult_type = 0; entity* IfcBoundaryCondition_type = 0; entity* IfcBoundaryEdgeCondition_type = 0; entity* IfcBoundaryFaceCondition_type = 0; entity* IfcBoundaryNodeCondition_type = 0; entity* IfcBoundaryNodeConditionWarping_type = 0; entity* IfcBoundedCurve_type = 0; entity* IfcBoundedSurface_type = 0; entity* IfcBoundingBox_type = 0; entity* IfcBoxedHalfSpace_type = 0; entity* IfcBuilding_type = 0; entity* IfcBuildingElement_type = 0; entity* IfcBuildingElementComponent_type = 0; entity* IfcBuildingElementPart_type = 0; entity* IfcBuildingElementProxy_type = 0; entity* IfcBuildingElementProxyType_type = 0; entity* IfcBuildingElementType_type = 0; entity* IfcBuildingStorey_type = 0; entity* IfcCShapeProfileDef_type = 0; entity* IfcCableCarrierFittingType_type = 0; entity* IfcCableCarrierSegmentType_type = 0; entity* IfcCableSegmentType_type = 0; entity* IfcCalendarDate_type = 0; entity* IfcCartesianPoint_type = 0; entity* IfcCartesianTransformationOperator_type = 0; entity* IfcCartesianTransformationOperator2D_type = 0; entity* IfcCartesianTransformationOperator2DnonUniform_type = 0; entity* IfcCartesianTransformationOperator3D_type = 0; entity* IfcCartesianTransformationOperator3DnonUniform_type = 0; entity* IfcCenterLineProfileDef_type = 0; entity* IfcChamferEdgeFeature_type = 0; entity* IfcChillerType_type = 0; entity* IfcCircle_type = 0; entity* IfcCircleHollowProfileDef_type = 0; entity* IfcCircleProfileDef_type = 0; entity* IfcClassification_type = 0; entity* IfcClassificationItem_type = 0; entity* IfcClassificationItemRelationship_type = 0; entity* IfcClassificationNotation_type = 0; entity* IfcClassificationNotationFacet_type = 0; entity* IfcClassificationReference_type = 0; entity* IfcClosedShell_type = 0; entity* IfcCoilType_type = 0; entity* IfcColourRgb_type = 0; entity* IfcColourSpecification_type = 0; entity* IfcColumn_type = 0; entity* IfcColumnType_type = 0; entity* IfcComplexProperty_type = 0; entity* IfcCompositeCurve_type = 0; entity* IfcCompositeCurveSegment_type = 0; entity* IfcCompositeProfileDef_type = 0; entity* IfcCompressorType_type = 0; entity* IfcCondenserType_type = 0; entity* IfcCondition_type = 0; entity* IfcConditionCriterion_type = 0; entity* IfcConic_type = 0; entity* IfcConnectedFaceSet_type = 0; entity* IfcConnectionCurveGeometry_type = 0; entity* IfcConnectionGeometry_type = 0; entity* IfcConnectionPointEccentricity_type = 0; entity* IfcConnectionPointGeometry_type = 0; entity* IfcConnectionPortGeometry_type = 0; entity* IfcConnectionSurfaceGeometry_type = 0; entity* IfcConstraint_type = 0; entity* IfcConstraintAggregationRelationship_type = 0; entity* IfcConstraintClassificationRelationship_type = 0; entity* IfcConstraintRelationship_type = 0; entity* IfcConstructionEquipmentResource_type = 0; entity* IfcConstructionMaterialResource_type = 0; entity* IfcConstructionProductResource_type = 0; entity* IfcConstructionResource_type = 0; entity* IfcContextDependentUnit_type = 0; entity* IfcControl_type = 0; entity* IfcControllerType_type = 0; entity* IfcConversionBasedUnit_type = 0; entity* IfcCooledBeamType_type = 0; entity* IfcCoolingTowerType_type = 0; entity* IfcCoordinatedUniversalTimeOffset_type = 0; entity* IfcCostItem_type = 0; entity* IfcCostSchedule_type = 0; entity* IfcCostValue_type = 0; entity* IfcCovering_type = 0; entity* IfcCoveringType_type = 0; entity* IfcCraneRailAShapeProfileDef_type = 0; entity* IfcCraneRailFShapeProfileDef_type = 0; entity* IfcCrewResource_type = 0; entity* IfcCsgPrimitive3D_type = 0; entity* IfcCsgSolid_type = 0; entity* IfcCurrencyRelationship_type = 0; entity* IfcCurtainWall_type = 0; entity* IfcCurtainWallType_type = 0; entity* IfcCurve_type = 0; entity* IfcCurveBoundedPlane_type = 0; entity* IfcCurveStyle_type = 0; entity* IfcCurveStyleFont_type = 0; entity* IfcCurveStyleFontAndScaling_type = 0; entity* IfcCurveStyleFontPattern_type = 0; entity* IfcDamperType_type = 0; entity* IfcDateAndTime_type = 0; entity* IfcDefinedSymbol_type = 0; entity* IfcDerivedProfileDef_type = 0; entity* IfcDerivedUnit_type = 0; entity* IfcDerivedUnitElement_type = 0; entity* IfcDiameterDimension_type = 0; entity* IfcDimensionCalloutRelationship_type = 0; entity* IfcDimensionCurve_type = 0; entity* IfcDimensionCurveDirectedCallout_type = 0; entity* IfcDimensionCurveTerminator_type = 0; entity* IfcDimensionPair_type = 0; entity* IfcDimensionalExponents_type = 0; entity* IfcDirection_type = 0; entity* IfcDiscreteAccessory_type = 0; entity* IfcDiscreteAccessoryType_type = 0; entity* IfcDistributionChamberElement_type = 0; entity* IfcDistributionChamberElementType_type = 0; entity* IfcDistributionControlElement_type = 0; entity* IfcDistributionControlElementType_type = 0; entity* IfcDistributionElement_type = 0; entity* IfcDistributionElementType_type = 0; entity* IfcDistributionFlowElement_type = 0; entity* IfcDistributionFlowElementType_type = 0; entity* IfcDistributionPort_type = 0; entity* IfcDocumentElectronicFormat_type = 0; entity* IfcDocumentInformation_type = 0; entity* IfcDocumentInformationRelationship_type = 0; entity* IfcDocumentReference_type = 0; entity* IfcDoor_type = 0; entity* IfcDoorLiningProperties_type = 0; entity* IfcDoorPanelProperties_type = 0; entity* IfcDoorStyle_type = 0; entity* IfcDraughtingCallout_type = 0; entity* IfcDraughtingCalloutRelationship_type = 0; entity* IfcDraughtingPreDefinedColour_type = 0; entity* IfcDraughtingPreDefinedCurveFont_type = 0; entity* IfcDraughtingPreDefinedTextFont_type = 0; entity* IfcDuctFittingType_type = 0; entity* IfcDuctSegmentType_type = 0; entity* IfcDuctSilencerType_type = 0; entity* IfcEdge_type = 0; entity* IfcEdgeCurve_type = 0; entity* IfcEdgeFeature_type = 0; entity* IfcEdgeLoop_type = 0; entity* IfcElectricApplianceType_type = 0; entity* IfcElectricDistributionPoint_type = 0; entity* IfcElectricFlowStorageDeviceType_type = 0; entity* IfcElectricGeneratorType_type = 0; entity* IfcElectricHeaterType_type = 0; entity* IfcElectricMotorType_type = 0; entity* IfcElectricTimeControlType_type = 0; entity* IfcElectricalBaseProperties_type = 0; entity* IfcElectricalCircuit_type = 0; entity* IfcElectricalElement_type = 0; entity* IfcElement_type = 0; entity* IfcElementAssembly_type = 0; entity* IfcElementComponent_type = 0; entity* IfcElementComponentType_type = 0; entity* IfcElementQuantity_type = 0; entity* IfcElementType_type = 0; entity* IfcElementarySurface_type = 0; entity* IfcEllipse_type = 0; entity* IfcEllipseProfileDef_type = 0; entity* IfcEnergyConversionDevice_type = 0; entity* IfcEnergyConversionDeviceType_type = 0; entity* IfcEnergyProperties_type = 0; entity* IfcEnvironmentalImpactValue_type = 0; entity* IfcEquipmentElement_type = 0; entity* IfcEquipmentStandard_type = 0; entity* IfcEvaporativeCoolerType_type = 0; entity* IfcEvaporatorType_type = 0; entity* IfcExtendedMaterialProperties_type = 0; entity* IfcExternalReference_type = 0; entity* IfcExternallyDefinedHatchStyle_type = 0; entity* IfcExternallyDefinedSurfaceStyle_type = 0; entity* IfcExternallyDefinedSymbol_type = 0; entity* IfcExternallyDefinedTextFont_type = 0; entity* IfcExtrudedAreaSolid_type = 0; entity* IfcFace_type = 0; entity* IfcFaceBasedSurfaceModel_type = 0; entity* IfcFaceBound_type = 0; entity* IfcFaceOuterBound_type = 0; entity* IfcFaceSurface_type = 0; entity* IfcFacetedBrep_type = 0; entity* IfcFacetedBrepWithVoids_type = 0; entity* IfcFailureConnectionCondition_type = 0; entity* IfcFanType_type = 0; entity* IfcFastener_type = 0; entity* IfcFastenerType_type = 0; entity* IfcFeatureElement_type = 0; entity* IfcFeatureElementAddition_type = 0; entity* IfcFeatureElementSubtraction_type = 0; entity* IfcFillAreaStyle_type = 0; entity* IfcFillAreaStyleHatching_type = 0; entity* IfcFillAreaStyleTileSymbolWithStyle_type = 0; entity* IfcFillAreaStyleTiles_type = 0; entity* IfcFilterType_type = 0; entity* IfcFireSuppressionTerminalType_type = 0; entity* IfcFlowController_type = 0; entity* IfcFlowControllerType_type = 0; entity* IfcFlowFitting_type = 0; entity* IfcFlowFittingType_type = 0; entity* IfcFlowInstrumentType_type = 0; entity* IfcFlowMeterType_type = 0; entity* IfcFlowMovingDevice_type = 0; entity* IfcFlowMovingDeviceType_type = 0; entity* IfcFlowSegment_type = 0; entity* IfcFlowSegmentType_type = 0; entity* IfcFlowStorageDevice_type = 0; entity* IfcFlowStorageDeviceType_type = 0; entity* IfcFlowTerminal_type = 0; entity* IfcFlowTerminalType_type = 0; entity* IfcFlowTreatmentDevice_type = 0; entity* IfcFlowTreatmentDeviceType_type = 0; entity* IfcFluidFlowProperties_type = 0; entity* IfcFooting_type = 0; entity* IfcFuelProperties_type = 0; entity* IfcFurnishingElement_type = 0; entity* IfcFurnishingElementType_type = 0; entity* IfcFurnitureStandard_type = 0; entity* IfcFurnitureType_type = 0; entity* IfcGasTerminalType_type = 0; entity* IfcGeneralMaterialProperties_type = 0; entity* IfcGeneralProfileProperties_type = 0; entity* IfcGeometricCurveSet_type = 0; entity* IfcGeometricRepresentationContext_type = 0; entity* IfcGeometricRepresentationItem_type = 0; entity* IfcGeometricRepresentationSubContext_type = 0; entity* IfcGeometricSet_type = 0; entity* IfcGrid_type = 0; entity* IfcGridAxis_type = 0; entity* IfcGridPlacement_type = 0; entity* IfcGroup_type = 0; entity* IfcHalfSpaceSolid_type = 0; entity* IfcHeatExchangerType_type = 0; entity* IfcHumidifierType_type = 0; entity* IfcHygroscopicMaterialProperties_type = 0; entity* IfcIShapeProfileDef_type = 0; entity* IfcImageTexture_type = 0; entity* IfcInventory_type = 0; entity* IfcIrregularTimeSeries_type = 0; entity* IfcIrregularTimeSeriesValue_type = 0; entity* IfcJunctionBoxType_type = 0; entity* IfcLShapeProfileDef_type = 0; entity* IfcLaborResource_type = 0; entity* IfcLampType_type = 0; entity* IfcLibraryInformation_type = 0; entity* IfcLibraryReference_type = 0; entity* IfcLightDistributionData_type = 0; entity* IfcLightFixtureType_type = 0; entity* IfcLightIntensityDistribution_type = 0; entity* IfcLightSource_type = 0; entity* IfcLightSourceAmbient_type = 0; entity* IfcLightSourceDirectional_type = 0; entity* IfcLightSourceGoniometric_type = 0; entity* IfcLightSourcePositional_type = 0; entity* IfcLightSourceSpot_type = 0; entity* IfcLine_type = 0; entity* IfcLinearDimension_type = 0; entity* IfcLocalPlacement_type = 0; entity* IfcLocalTime_type = 0; entity* IfcLoop_type = 0; entity* IfcManifoldSolidBrep_type = 0; entity* IfcMappedItem_type = 0; entity* IfcMaterial_type = 0; entity* IfcMaterialClassificationRelationship_type = 0; entity* IfcMaterialDefinitionRepresentation_type = 0; entity* IfcMaterialLayer_type = 0; entity* IfcMaterialLayerSet_type = 0; entity* IfcMaterialLayerSetUsage_type = 0; entity* IfcMaterialList_type = 0; entity* IfcMaterialProperties_type = 0; entity* IfcMeasureWithUnit_type = 0; entity* IfcMechanicalConcreteMaterialProperties_type = 0; entity* IfcMechanicalFastener_type = 0; entity* IfcMechanicalFastenerType_type = 0; entity* IfcMechanicalMaterialProperties_type = 0; entity* IfcMechanicalSteelMaterialProperties_type = 0; entity* IfcMember_type = 0; entity* IfcMemberType_type = 0; entity* IfcMetric_type = 0; entity* IfcMonetaryUnit_type = 0; entity* IfcMotorConnectionType_type = 0; entity* IfcMove_type = 0; entity* IfcNamedUnit_type = 0; entity* IfcObject_type = 0; entity* IfcObjectDefinition_type = 0; entity* IfcObjectPlacement_type = 0; entity* IfcObjective_type = 0; entity* IfcOccupant_type = 0; entity* IfcOffsetCurve2D_type = 0; entity* IfcOffsetCurve3D_type = 0; entity* IfcOneDirectionRepeatFactor_type = 0; entity* IfcOpenShell_type = 0; entity* IfcOpeningElement_type = 0; entity* IfcOpticalMaterialProperties_type = 0; entity* IfcOrderAction_type = 0; entity* IfcOrganization_type = 0; entity* IfcOrganizationRelationship_type = 0; entity* IfcOrientedEdge_type = 0; entity* IfcOutletType_type = 0; entity* IfcOwnerHistory_type = 0; entity* IfcParameterizedProfileDef_type = 0; entity* IfcPath_type = 0; entity* IfcPerformanceHistory_type = 0; entity* IfcPermeableCoveringProperties_type = 0; entity* IfcPermit_type = 0; entity* IfcPerson_type = 0; entity* IfcPersonAndOrganization_type = 0; entity* IfcPhysicalComplexQuantity_type = 0; entity* IfcPhysicalQuantity_type = 0; entity* IfcPhysicalSimpleQuantity_type = 0; entity* IfcPile_type = 0; entity* IfcPipeFittingType_type = 0; entity* IfcPipeSegmentType_type = 0; entity* IfcPixelTexture_type = 0; entity* IfcPlacement_type = 0; entity* IfcPlanarBox_type = 0; entity* IfcPlanarExtent_type = 0; entity* IfcPlane_type = 0; entity* IfcPlate_type = 0; entity* IfcPlateType_type = 0; entity* IfcPoint_type = 0; entity* IfcPointOnCurve_type = 0; entity* IfcPointOnSurface_type = 0; entity* IfcPolyLoop_type = 0; entity* IfcPolygonalBoundedHalfSpace_type = 0; entity* IfcPolyline_type = 0; entity* IfcPort_type = 0; entity* IfcPostalAddress_type = 0; entity* IfcPreDefinedColour_type = 0; entity* IfcPreDefinedCurveFont_type = 0; entity* IfcPreDefinedDimensionSymbol_type = 0; entity* IfcPreDefinedItem_type = 0; entity* IfcPreDefinedPointMarkerSymbol_type = 0; entity* IfcPreDefinedSymbol_type = 0; entity* IfcPreDefinedTerminatorSymbol_type = 0; entity* IfcPreDefinedTextFont_type = 0; entity* IfcPresentationLayerAssignment_type = 0; entity* IfcPresentationLayerWithStyle_type = 0; entity* IfcPresentationStyle_type = 0; entity* IfcPresentationStyleAssignment_type = 0; entity* IfcProcedure_type = 0; entity* IfcProcess_type = 0; entity* IfcProduct_type = 0; entity* IfcProductDefinitionShape_type = 0; entity* IfcProductRepresentation_type = 0; entity* IfcProductsOfCombustionProperties_type = 0; entity* IfcProfileDef_type = 0; entity* IfcProfileProperties_type = 0; entity* IfcProject_type = 0; entity* IfcProjectOrder_type = 0; entity* IfcProjectOrderRecord_type = 0; entity* IfcProjectionCurve_type = 0; entity* IfcProjectionElement_type = 0; entity* IfcProperty_type = 0; entity* IfcPropertyBoundedValue_type = 0; entity* IfcPropertyConstraintRelationship_type = 0; entity* IfcPropertyDefinition_type = 0; entity* IfcPropertyDependencyRelationship_type = 0; entity* IfcPropertyEnumeratedValue_type = 0; entity* IfcPropertyEnumeration_type = 0; entity* IfcPropertyListValue_type = 0; entity* IfcPropertyReferenceValue_type = 0; entity* IfcPropertySet_type = 0; entity* IfcPropertySetDefinition_type = 0; entity* IfcPropertySingleValue_type = 0; entity* IfcPropertyTableValue_type = 0; entity* IfcProtectiveDeviceType_type = 0; entity* IfcProxy_type = 0; entity* IfcPumpType_type = 0; entity* IfcQuantityArea_type = 0; entity* IfcQuantityCount_type = 0; entity* IfcQuantityLength_type = 0; entity* IfcQuantityTime_type = 0; entity* IfcQuantityVolume_type = 0; entity* IfcQuantityWeight_type = 0; entity* IfcRadiusDimension_type = 0; entity* IfcRailing_type = 0; entity* IfcRailingType_type = 0; entity* IfcRamp_type = 0; entity* IfcRampFlight_type = 0; entity* IfcRampFlightType_type = 0; entity* IfcRationalBezierCurve_type = 0; entity* IfcRectangleHollowProfileDef_type = 0; entity* IfcRectangleProfileDef_type = 0; entity* IfcRectangularPyramid_type = 0; entity* IfcRectangularTrimmedSurface_type = 0; entity* IfcReferencesValueDocument_type = 0; entity* IfcRegularTimeSeries_type = 0; entity* IfcReinforcementBarProperties_type = 0; entity* IfcReinforcementDefinitionProperties_type = 0; entity* IfcReinforcingBar_type = 0; entity* IfcReinforcingElement_type = 0; entity* IfcReinforcingMesh_type = 0; entity* IfcRelAggregates_type = 0; entity* IfcRelAssigns_type = 0; entity* IfcRelAssignsTasks_type = 0; entity* IfcRelAssignsToActor_type = 0; entity* IfcRelAssignsToControl_type = 0; entity* IfcRelAssignsToGroup_type = 0; entity* IfcRelAssignsToProcess_type = 0; entity* IfcRelAssignsToProduct_type = 0; entity* IfcRelAssignsToProjectOrder_type = 0; entity* IfcRelAssignsToResource_type = 0; entity* IfcRelAssociates_type = 0; entity* IfcRelAssociatesAppliedValue_type = 0; entity* IfcRelAssociatesApproval_type = 0; entity* IfcRelAssociatesClassification_type = 0; entity* IfcRelAssociatesConstraint_type = 0; entity* IfcRelAssociatesDocument_type = 0; entity* IfcRelAssociatesLibrary_type = 0; entity* IfcRelAssociatesMaterial_type = 0; entity* IfcRelAssociatesProfileProperties_type = 0; entity* IfcRelConnects_type = 0; entity* IfcRelConnectsElements_type = 0; entity* IfcRelConnectsPathElements_type = 0; entity* IfcRelConnectsPortToElement_type = 0; entity* IfcRelConnectsPorts_type = 0; entity* IfcRelConnectsStructuralActivity_type = 0; entity* IfcRelConnectsStructuralElement_type = 0; entity* IfcRelConnectsStructuralMember_type = 0; entity* IfcRelConnectsWithEccentricity_type = 0; entity* IfcRelConnectsWithRealizingElements_type = 0; entity* IfcRelContainedInSpatialStructure_type = 0; entity* IfcRelCoversBldgElements_type = 0; entity* IfcRelCoversSpaces_type = 0; entity* IfcRelDecomposes_type = 0; entity* IfcRelDefines_type = 0; entity* IfcRelDefinesByProperties_type = 0; entity* IfcRelDefinesByType_type = 0; entity* IfcRelFillsElement_type = 0; entity* IfcRelFlowControlElements_type = 0; entity* IfcRelInteractionRequirements_type = 0; entity* IfcRelNests_type = 0; entity* IfcRelOccupiesSpaces_type = 0; entity* IfcRelOverridesProperties_type = 0; entity* IfcRelProjectsElement_type = 0; entity* IfcRelReferencedInSpatialStructure_type = 0; entity* IfcRelSchedulesCostItems_type = 0; entity* IfcRelSequence_type = 0; entity* IfcRelServicesBuildings_type = 0; entity* IfcRelSpaceBoundary_type = 0; entity* IfcRelVoidsElement_type = 0; entity* IfcRelationship_type = 0; entity* IfcRelaxation_type = 0; entity* IfcRepresentation_type = 0; entity* IfcRepresentationContext_type = 0; entity* IfcRepresentationItem_type = 0; entity* IfcRepresentationMap_type = 0; entity* IfcResource_type = 0; entity* IfcRevolvedAreaSolid_type = 0; entity* IfcRibPlateProfileProperties_type = 0; entity* IfcRightCircularCone_type = 0; entity* IfcRightCircularCylinder_type = 0; entity* IfcRoof_type = 0; entity* IfcRoot_type = 0; entity* IfcRoundedEdgeFeature_type = 0; entity* IfcRoundedRectangleProfileDef_type = 0; entity* IfcSIUnit_type = 0; entity* IfcSanitaryTerminalType_type = 0; entity* IfcScheduleTimeControl_type = 0; entity* IfcSectionProperties_type = 0; entity* IfcSectionReinforcementProperties_type = 0; entity* IfcSectionedSpine_type = 0; entity* IfcSensorType_type = 0; entity* IfcServiceLife_type = 0; entity* IfcServiceLifeFactor_type = 0; entity* IfcShapeAspect_type = 0; entity* IfcShapeModel_type = 0; entity* IfcShapeRepresentation_type = 0; entity* IfcShellBasedSurfaceModel_type = 0; entity* IfcSimpleProperty_type = 0; entity* IfcSite_type = 0; entity* IfcSlab_type = 0; entity* IfcSlabType_type = 0; entity* IfcSlippageConnectionCondition_type = 0; entity* IfcSolidModel_type = 0; entity* IfcSoundProperties_type = 0; entity* IfcSoundValue_type = 0; entity* IfcSpace_type = 0; entity* IfcSpaceHeaterType_type = 0; entity* IfcSpaceProgram_type = 0; entity* IfcSpaceThermalLoadProperties_type = 0; entity* IfcSpaceType_type = 0; entity* IfcSpatialStructureElement_type = 0; entity* IfcSpatialStructureElementType_type = 0; entity* IfcSphere_type = 0; entity* IfcStackTerminalType_type = 0; entity* IfcStair_type = 0; entity* IfcStairFlight_type = 0; entity* IfcStairFlightType_type = 0; entity* IfcStructuralAction_type = 0; entity* IfcStructuralActivity_type = 0; entity* IfcStructuralAnalysisModel_type = 0; entity* IfcStructuralConnection_type = 0; entity* IfcStructuralConnectionCondition_type = 0; entity* IfcStructuralCurveConnection_type = 0; entity* IfcStructuralCurveMember_type = 0; entity* IfcStructuralCurveMemberVarying_type = 0; entity* IfcStructuralItem_type = 0; entity* IfcStructuralLinearAction_type = 0; entity* IfcStructuralLinearActionVarying_type = 0; entity* IfcStructuralLoad_type = 0; entity* IfcStructuralLoadGroup_type = 0; entity* IfcStructuralLoadLinearForce_type = 0; entity* IfcStructuralLoadPlanarForce_type = 0; entity* IfcStructuralLoadSingleDisplacement_type = 0; entity* IfcStructuralLoadSingleDisplacementDistortion_type = 0; entity* IfcStructuralLoadSingleForce_type = 0; entity* IfcStructuralLoadSingleForceWarping_type = 0; entity* IfcStructuralLoadStatic_type = 0; entity* IfcStructuralLoadTemperature_type = 0; entity* IfcStructuralMember_type = 0; entity* IfcStructuralPlanarAction_type = 0; entity* IfcStructuralPlanarActionVarying_type = 0; entity* IfcStructuralPointAction_type = 0; entity* IfcStructuralPointConnection_type = 0; entity* IfcStructuralPointReaction_type = 0; entity* IfcStructuralProfileProperties_type = 0; entity* IfcStructuralReaction_type = 0; entity* IfcStructuralResultGroup_type = 0; entity* IfcStructuralSteelProfileProperties_type = 0; entity* IfcStructuralSurfaceConnection_type = 0; entity* IfcStructuralSurfaceMember_type = 0; entity* IfcStructuralSurfaceMemberVarying_type = 0; entity* IfcStructuredDimensionCallout_type = 0; entity* IfcStyleModel_type = 0; entity* IfcStyledItem_type = 0; entity* IfcStyledRepresentation_type = 0; entity* IfcSubContractResource_type = 0; entity* IfcSubedge_type = 0; entity* IfcSurface_type = 0; entity* IfcSurfaceCurveSweptAreaSolid_type = 0; entity* IfcSurfaceOfLinearExtrusion_type = 0; entity* IfcSurfaceOfRevolution_type = 0; entity* IfcSurfaceStyle_type = 0; entity* IfcSurfaceStyleLighting_type = 0; entity* IfcSurfaceStyleRefraction_type = 0; entity* IfcSurfaceStyleRendering_type = 0; entity* IfcSurfaceStyleShading_type = 0; entity* IfcSurfaceStyleWithTextures_type = 0; entity* IfcSurfaceTexture_type = 0; entity* IfcSweptAreaSolid_type = 0; entity* IfcSweptDiskSolid_type = 0; entity* IfcSweptSurface_type = 0; entity* IfcSwitchingDeviceType_type = 0; entity* IfcSymbolStyle_type = 0; entity* IfcSystem_type = 0; entity* IfcSystemFurnitureElementType_type = 0; entity* IfcTShapeProfileDef_type = 0; entity* IfcTable_type = 0; entity* IfcTableRow_type = 0; entity* IfcTankType_type = 0; entity* IfcTask_type = 0; entity* IfcTelecomAddress_type = 0; entity* IfcTendon_type = 0; entity* IfcTendonAnchor_type = 0; entity* IfcTerminatorSymbol_type = 0; entity* IfcTextLiteral_type = 0; entity* IfcTextLiteralWithExtent_type = 0; entity* IfcTextStyle_type = 0; entity* IfcTextStyleFontModel_type = 0; entity* IfcTextStyleForDefinedFont_type = 0; entity* IfcTextStyleTextModel_type = 0; entity* IfcTextStyleWithBoxCharacteristics_type = 0; entity* IfcTextureCoordinate_type = 0; entity* IfcTextureCoordinateGenerator_type = 0; entity* IfcTextureMap_type = 0; entity* IfcTextureVertex_type = 0; entity* IfcThermalMaterialProperties_type = 0; entity* IfcTimeSeries_type = 0; entity* IfcTimeSeriesReferenceRelationship_type = 0; entity* IfcTimeSeriesSchedule_type = 0; entity* IfcTimeSeriesValue_type = 0; entity* IfcTopologicalRepresentationItem_type = 0; entity* IfcTopologyRepresentation_type = 0; entity* IfcTransformerType_type = 0; entity* IfcTransportElement_type = 0; entity* IfcTransportElementType_type = 0; entity* IfcTrapeziumProfileDef_type = 0; entity* IfcTrimmedCurve_type = 0; entity* IfcTubeBundleType_type = 0; entity* IfcTwoDirectionRepeatFactor_type = 0; entity* IfcTypeObject_type = 0; entity* IfcTypeProduct_type = 0; entity* IfcUShapeProfileDef_type = 0; entity* IfcUnitAssignment_type = 0; entity* IfcUnitaryEquipmentType_type = 0; entity* IfcValveType_type = 0; entity* IfcVector_type = 0; entity* IfcVertex_type = 0; entity* IfcVertexBasedTextureMap_type = 0; entity* IfcVertexLoop_type = 0; entity* IfcVertexPoint_type = 0; entity* IfcVibrationIsolatorType_type = 0; entity* IfcVirtualElement_type = 0; entity* IfcVirtualGridIntersection_type = 0; entity* IfcWall_type = 0; entity* IfcWallStandardCase_type = 0; entity* IfcWallType_type = 0; entity* IfcWasteTerminalType_type = 0; entity* IfcWaterProperties_type = 0; entity* IfcWindow_type = 0; entity* IfcWindowLiningProperties_type = 0; entity* IfcWindowPanelProperties_type = 0; entity* IfcWindowStyle_type = 0; entity* IfcWorkControl_type = 0; entity* IfcWorkPlan_type = 0; entity* IfcWorkSchedule_type = 0; entity* IfcZShapeProfileDef_type = 0; entity* IfcZone_type = 0; type_declaration* IfcAbsorbedDoseMeasure_type = 0; type_declaration* IfcAccelerationMeasure_type = 0; type_declaration* IfcAmountOfSubstanceMeasure_type = 0; type_declaration* IfcAngularVelocityMeasure_type = 0; type_declaration* IfcAreaMeasure_type = 0; type_declaration* IfcBoolean_type = 0; type_declaration* IfcBoxAlignment_type = 0; type_declaration* IfcComplexNumber_type = 0; type_declaration* IfcCompoundPlaneAngleMeasure_type = 0; type_declaration* IfcContextDependentMeasure_type = 0; type_declaration* IfcCountMeasure_type = 0; type_declaration* IfcCurvatureMeasure_type = 0; type_declaration* IfcDayInMonthNumber_type = 0; type_declaration* IfcDaylightSavingHour_type = 0; type_declaration* IfcDescriptiveMeasure_type = 0; type_declaration* IfcDimensionCount_type = 0; type_declaration* IfcDoseEquivalentMeasure_type = 0; type_declaration* IfcDynamicViscosityMeasure_type = 0; type_declaration* IfcElectricCapacitanceMeasure_type = 0; type_declaration* IfcElectricChargeMeasure_type = 0; type_declaration* IfcElectricConductanceMeasure_type = 0; type_declaration* IfcElectricCurrentMeasure_type = 0; type_declaration* IfcElectricResistanceMeasure_type = 0; type_declaration* IfcElectricVoltageMeasure_type = 0; type_declaration* IfcEnergyMeasure_type = 0; type_declaration* IfcFontStyle_type = 0; type_declaration* IfcFontVariant_type = 0; type_declaration* IfcFontWeight_type = 0; type_declaration* IfcForceMeasure_type = 0; type_declaration* IfcFrequencyMeasure_type = 0; type_declaration* IfcGloballyUniqueId_type = 0; type_declaration* IfcHeatFluxDensityMeasure_type = 0; type_declaration* IfcHeatingValueMeasure_type = 0; type_declaration* IfcHourInDay_type = 0; type_declaration* IfcIdentifier_type = 0; type_declaration* IfcIlluminanceMeasure_type = 0; type_declaration* IfcInductanceMeasure_type = 0; type_declaration* IfcInteger_type = 0; type_declaration* IfcIntegerCountRateMeasure_type = 0; type_declaration* IfcIonConcentrationMeasure_type = 0; type_declaration* IfcIsothermalMoistureCapacityMeasure_type = 0; type_declaration* IfcKinematicViscosityMeasure_type = 0; type_declaration* IfcLabel_type = 0; type_declaration* IfcLengthMeasure_type = 0; type_declaration* IfcLinearForceMeasure_type = 0; type_declaration* IfcLinearMomentMeasure_type = 0; type_declaration* IfcLinearStiffnessMeasure_type = 0; type_declaration* IfcLinearVelocityMeasure_type = 0; type_declaration* IfcLogical_type = 0; type_declaration* IfcLuminousFluxMeasure_type = 0; type_declaration* IfcLuminousIntensityDistributionMeasure_type = 0; type_declaration* IfcLuminousIntensityMeasure_type = 0; type_declaration* IfcMagneticFluxDensityMeasure_type = 0; type_declaration* IfcMagneticFluxMeasure_type = 0; type_declaration* IfcMassDensityMeasure_type = 0; type_declaration* IfcMassFlowRateMeasure_type = 0; type_declaration* IfcMassMeasure_type = 0; type_declaration* IfcMassPerLengthMeasure_type = 0; type_declaration* IfcMinuteInHour_type = 0; type_declaration* IfcModulusOfElasticityMeasure_type = 0; type_declaration* IfcModulusOfLinearSubgradeReactionMeasure_type = 0; type_declaration* IfcModulusOfRotationalSubgradeReactionMeasure_type = 0; type_declaration* IfcModulusOfSubgradeReactionMeasure_type = 0; type_declaration* IfcMoistureDiffusivityMeasure_type = 0; type_declaration* IfcMolecularWeightMeasure_type = 0; type_declaration* IfcMomentOfInertiaMeasure_type = 0; type_declaration* IfcMonetaryMeasure_type = 0; type_declaration* IfcMonthInYearNumber_type = 0; type_declaration* IfcNormalisedRatioMeasure_type = 0; type_declaration* IfcNumericMeasure_type = 0; type_declaration* IfcPHMeasure_type = 0; type_declaration* IfcParameterValue_type = 0; type_declaration* IfcPlanarForceMeasure_type = 0; type_declaration* IfcPlaneAngleMeasure_type = 0; type_declaration* IfcPositiveLengthMeasure_type = 0; type_declaration* IfcPositivePlaneAngleMeasure_type = 0; type_declaration* IfcPositiveRatioMeasure_type = 0; type_declaration* IfcPowerMeasure_type = 0; type_declaration* IfcPresentableText_type = 0; type_declaration* IfcPressureMeasure_type = 0; type_declaration* IfcRadioActivityMeasure_type = 0; type_declaration* IfcRatioMeasure_type = 0; type_declaration* IfcReal_type = 0; type_declaration* IfcRotationalFrequencyMeasure_type = 0; type_declaration* IfcRotationalMassMeasure_type = 0; type_declaration* IfcRotationalStiffnessMeasure_type = 0; type_declaration* IfcSecondInMinute_type = 0; type_declaration* IfcSectionModulusMeasure_type = 0; type_declaration* IfcSectionalAreaIntegralMeasure_type = 0; type_declaration* IfcShearModulusMeasure_type = 0; type_declaration* IfcSolidAngleMeasure_type = 0; type_declaration* IfcSoundPowerMeasure_type = 0; type_declaration* IfcSoundPressureMeasure_type = 0; type_declaration* IfcSpecificHeatCapacityMeasure_type = 0; type_declaration* IfcSpecularExponent_type = 0; type_declaration* IfcSpecularRoughness_type = 0; type_declaration* IfcTemperatureGradientMeasure_type = 0; type_declaration* IfcText_type = 0; type_declaration* IfcTextAlignment_type = 0; type_declaration* IfcTextDecoration_type = 0; type_declaration* IfcTextFontName_type = 0; type_declaration* IfcTextTransformation_type = 0; type_declaration* IfcThermalAdmittanceMeasure_type = 0; type_declaration* IfcThermalConductivityMeasure_type = 0; type_declaration* IfcThermalExpansionCoefficientMeasure_type = 0; type_declaration* IfcThermalResistanceMeasure_type = 0; type_declaration* IfcThermalTransmittanceMeasure_type = 0; type_declaration* IfcThermodynamicTemperatureMeasure_type = 0; type_declaration* IfcTimeMeasure_type = 0; type_declaration* IfcTimeStamp_type = 0; type_declaration* IfcTorqueMeasure_type = 0; type_declaration* IfcVaporPermeabilityMeasure_type = 0; type_declaration* IfcVolumeMeasure_type = 0; type_declaration* IfcVolumetricFlowRateMeasure_type = 0; type_declaration* IfcWarpingConstantMeasure_type = 0; type_declaration* IfcWarpingMomentMeasure_type = 0; type_declaration* IfcYearNumber_type = 0; select_type* IfcActorSelect_type = 0; select_type* IfcAppliedValueSelect_type = 0; select_type* IfcAxis2Placement_type = 0; select_type* IfcBooleanOperand_type = 0; select_type* IfcCharacterStyleSelect_type = 0; select_type* IfcClassificationNotationSelect_type = 0; select_type* IfcColour_type = 0; select_type* IfcColourOrFactor_type = 0; select_type* IfcConditionCriterionSelect_type = 0; select_type* IfcCsgSelect_type = 0; select_type* IfcCurveFontOrScaledCurveFontSelect_type = 0; select_type* IfcCurveOrEdgeCurve_type = 0; select_type* IfcCurveStyleFontSelect_type = 0; select_type* IfcDateTimeSelect_type = 0; select_type* IfcDefinedSymbolSelect_type = 0; select_type* IfcDerivedMeasureValue_type = 0; select_type* IfcDocumentSelect_type = 0; select_type* IfcDraughtingCalloutElement_type = 0; select_type* IfcFillAreaStyleTileShapeSelect_type = 0; select_type* IfcFillStyleSelect_type = 0; select_type* IfcGeometricSetSelect_type = 0; select_type* IfcHatchLineDistanceSelect_type = 0; select_type* IfcLayeredItem_type = 0; select_type* IfcLibrarySelect_type = 0; select_type* IfcLightDistributionDataSourceSelect_type = 0; select_type* IfcMaterialSelect_type = 0; select_type* IfcMeasureValue_type = 0; select_type* IfcMetricValueSelect_type = 0; select_type* IfcObjectReferenceSelect_type = 0; select_type* IfcOrientationSelect_type = 0; select_type* IfcPointOrVertexPoint_type = 0; select_type* IfcPresentationStyleSelect_type = 0; select_type* IfcShell_type = 0; select_type* IfcSimpleValue_type = 0; select_type* IfcSizeSelect_type = 0; select_type* IfcSpecularHighlightSelect_type = 0; select_type* IfcStructuralActivityAssignmentSelect_type = 0; select_type* IfcSurfaceOrFaceSurface_type = 0; select_type* IfcSurfaceStyleElementSelect_type = 0; select_type* IfcSymbolStyleSelect_type = 0; select_type* IfcTextFontSelect_type = 0; select_type* IfcTextStyleSelect_type = 0; select_type* IfcTrimmingSelect_type = 0; select_type* IfcUnit_type = 0; select_type* IfcValue_type = 0; select_type* IfcVectorOrDirection_type = 0; enumeration_type* IfcActionSourceTypeEnum_type = 0; enumeration_type* IfcActionTypeEnum_type = 0; enumeration_type* IfcActuatorTypeEnum_type = 0; enumeration_type* IfcAddressTypeEnum_type = 0; enumeration_type* IfcAheadOrBehind_type = 0; enumeration_type* IfcAirTerminalBoxTypeEnum_type = 0; enumeration_type* IfcAirTerminalTypeEnum_type = 0; enumeration_type* IfcAirToAirHeatRecoveryTypeEnum_type = 0; enumeration_type* IfcAlarmTypeEnum_type = 0; enumeration_type* IfcAnalysisModelTypeEnum_type = 0; enumeration_type* IfcAnalysisTheoryTypeEnum_type = 0; enumeration_type* IfcArithmeticOperatorEnum_type = 0; enumeration_type* IfcAssemblyPlaceEnum_type = 0; enumeration_type* IfcBSplineCurveForm_type = 0; enumeration_type* IfcBeamTypeEnum_type = 0; enumeration_type* IfcBenchmarkEnum_type = 0; enumeration_type* IfcBoilerTypeEnum_type = 0; enumeration_type* IfcBooleanOperator_type = 0; enumeration_type* IfcBuildingElementProxyTypeEnum_type = 0; enumeration_type* IfcCableCarrierFittingTypeEnum_type = 0; enumeration_type* IfcCableCarrierSegmentTypeEnum_type = 0; enumeration_type* IfcCableSegmentTypeEnum_type = 0; enumeration_type* IfcChangeActionEnum_type = 0; enumeration_type* IfcChillerTypeEnum_type = 0; enumeration_type* IfcCoilTypeEnum_type = 0; enumeration_type* IfcColumnTypeEnum_type = 0; enumeration_type* IfcCompressorTypeEnum_type = 0; enumeration_type* IfcCondenserTypeEnum_type = 0; enumeration_type* IfcConnectionTypeEnum_type = 0; enumeration_type* IfcConstraintEnum_type = 0; enumeration_type* IfcControllerTypeEnum_type = 0; enumeration_type* IfcCooledBeamTypeEnum_type = 0; enumeration_type* IfcCoolingTowerTypeEnum_type = 0; enumeration_type* IfcCostScheduleTypeEnum_type = 0; enumeration_type* IfcCoveringTypeEnum_type = 0; enumeration_type* IfcCurrencyEnum_type = 0; enumeration_type* IfcCurtainWallTypeEnum_type = 0; enumeration_type* IfcDamperTypeEnum_type = 0; enumeration_type* IfcDataOriginEnum_type = 0; enumeration_type* IfcDerivedUnitEnum_type = 0; enumeration_type* IfcDimensionExtentUsage_type = 0; enumeration_type* IfcDirectionSenseEnum_type = 0; enumeration_type* IfcDistributionChamberElementTypeEnum_type = 0; enumeration_type* IfcDocumentConfidentialityEnum_type = 0; enumeration_type* IfcDocumentStatusEnum_type = 0; enumeration_type* IfcDoorPanelOperationEnum_type = 0; enumeration_type* IfcDoorPanelPositionEnum_type = 0; enumeration_type* IfcDoorStyleConstructionEnum_type = 0; enumeration_type* IfcDoorStyleOperationEnum_type = 0; enumeration_type* IfcDuctFittingTypeEnum_type = 0; enumeration_type* IfcDuctSegmentTypeEnum_type = 0; enumeration_type* IfcDuctSilencerTypeEnum_type = 0; enumeration_type* IfcElectricApplianceTypeEnum_type = 0; enumeration_type* IfcElectricCurrentEnum_type = 0; enumeration_type* IfcElectricDistributionPointFunctionEnum_type = 0; enumeration_type* IfcElectricFlowStorageDeviceTypeEnum_type = 0; enumeration_type* IfcElectricGeneratorTypeEnum_type = 0; enumeration_type* IfcElectricHeaterTypeEnum_type = 0; enumeration_type* IfcElectricMotorTypeEnum_type = 0; enumeration_type* IfcElectricTimeControlTypeEnum_type = 0; enumeration_type* IfcElementAssemblyTypeEnum_type = 0; enumeration_type* IfcElementCompositionEnum_type = 0; enumeration_type* IfcEnergySequenceEnum_type = 0; enumeration_type* IfcEnvironmentalImpactCategoryEnum_type = 0; enumeration_type* IfcEvaporativeCoolerTypeEnum_type = 0; enumeration_type* IfcEvaporatorTypeEnum_type = 0; enumeration_type* IfcFanTypeEnum_type = 0; enumeration_type* IfcFilterTypeEnum_type = 0; enumeration_type* IfcFireSuppressionTerminalTypeEnum_type = 0; enumeration_type* IfcFlowDirectionEnum_type = 0; enumeration_type* IfcFlowInstrumentTypeEnum_type = 0; enumeration_type* IfcFlowMeterTypeEnum_type = 0; enumeration_type* IfcFootingTypeEnum_type = 0; enumeration_type* IfcGasTerminalTypeEnum_type = 0; enumeration_type* IfcGeometricProjectionEnum_type = 0; enumeration_type* IfcGlobalOrLocalEnum_type = 0; enumeration_type* IfcHeatExchangerTypeEnum_type = 0; enumeration_type* IfcHumidifierTypeEnum_type = 0; enumeration_type* IfcInternalOrExternalEnum_type = 0; enumeration_type* IfcInventoryTypeEnum_type = 0; enumeration_type* IfcJunctionBoxTypeEnum_type = 0; enumeration_type* IfcLampTypeEnum_type = 0; enumeration_type* IfcLayerSetDirectionEnum_type = 0; enumeration_type* IfcLightDistributionCurveEnum_type = 0; enumeration_type* IfcLightEmissionSourceEnum_type = 0; enumeration_type* IfcLightFixtureTypeEnum_type = 0; enumeration_type* IfcLoadGroupTypeEnum_type = 0; enumeration_type* IfcLogicalOperatorEnum_type = 0; enumeration_type* IfcMemberTypeEnum_type = 0; enumeration_type* IfcMotorConnectionTypeEnum_type = 0; enumeration_type* IfcNullStyle_type = 0; enumeration_type* IfcObjectTypeEnum_type = 0; enumeration_type* IfcObjectiveEnum_type = 0; enumeration_type* IfcOccupantTypeEnum_type = 0; enumeration_type* IfcOutletTypeEnum_type = 0; enumeration_type* IfcPermeableCoveringOperationEnum_type = 0; enumeration_type* IfcPhysicalOrVirtualEnum_type = 0; enumeration_type* IfcPileConstructionEnum_type = 0; enumeration_type* IfcPileTypeEnum_type = 0; enumeration_type* IfcPipeFittingTypeEnum_type = 0; enumeration_type* IfcPipeSegmentTypeEnum_type = 0; enumeration_type* IfcPlateTypeEnum_type = 0; enumeration_type* IfcProcedureTypeEnum_type = 0; enumeration_type* IfcProfileTypeEnum_type = 0; enumeration_type* IfcProjectOrderRecordTypeEnum_type = 0; enumeration_type* IfcProjectOrderTypeEnum_type = 0; enumeration_type* IfcProjectedOrTrueLengthEnum_type = 0; enumeration_type* IfcPropertySourceEnum_type = 0; enumeration_type* IfcProtectiveDeviceTypeEnum_type = 0; enumeration_type* IfcPumpTypeEnum_type = 0; enumeration_type* IfcRailingTypeEnum_type = 0; enumeration_type* IfcRampFlightTypeEnum_type = 0; enumeration_type* IfcRampTypeEnum_type = 0; enumeration_type* IfcReflectanceMethodEnum_type = 0; enumeration_type* IfcReinforcingBarRoleEnum_type = 0; enumeration_type* IfcReinforcingBarSurfaceEnum_type = 0; enumeration_type* IfcResourceConsumptionEnum_type = 0; enumeration_type* IfcRibPlateDirectionEnum_type = 0; enumeration_type* IfcRoleEnum_type = 0; enumeration_type* IfcRoofTypeEnum_type = 0; enumeration_type* IfcSIPrefix_type = 0; enumeration_type* IfcSIUnitName_type = 0; enumeration_type* IfcSanitaryTerminalTypeEnum_type = 0; enumeration_type* IfcSectionTypeEnum_type = 0; enumeration_type* IfcSensorTypeEnum_type = 0; enumeration_type* IfcSequenceEnum_type = 0; enumeration_type* IfcServiceLifeFactorTypeEnum_type = 0; enumeration_type* IfcServiceLifeTypeEnum_type = 0; enumeration_type* IfcSlabTypeEnum_type = 0; enumeration_type* IfcSoundScaleEnum_type = 0; enumeration_type* IfcSpaceHeaterTypeEnum_type = 0; enumeration_type* IfcSpaceTypeEnum_type = 0; enumeration_type* IfcStackTerminalTypeEnum_type = 0; enumeration_type* IfcStairFlightTypeEnum_type = 0; enumeration_type* IfcStairTypeEnum_type = 0; enumeration_type* IfcStateEnum_type = 0; enumeration_type* IfcStructuralCurveTypeEnum_type = 0; enumeration_type* IfcStructuralSurfaceTypeEnum_type = 0; enumeration_type* IfcSurfaceSide_type = 0; enumeration_type* IfcSurfaceTextureEnum_type = 0; enumeration_type* IfcSwitchingDeviceTypeEnum_type = 0; enumeration_type* IfcTankTypeEnum_type = 0; enumeration_type* IfcTendonTypeEnum_type = 0; enumeration_type* IfcTextPath_type = 0; enumeration_type* IfcThermalLoadSourceEnum_type = 0; enumeration_type* IfcThermalLoadTypeEnum_type = 0; enumeration_type* IfcTimeSeriesDataTypeEnum_type = 0; enumeration_type* IfcTimeSeriesScheduleTypeEnum_type = 0; enumeration_type* IfcTransformerTypeEnum_type = 0; enumeration_type* IfcTransitionCode_type = 0; enumeration_type* IfcTransportElementTypeEnum_type = 0; enumeration_type* IfcTrimmingPreference_type = 0; enumeration_type* IfcTubeBundleTypeEnum_type = 0; enumeration_type* IfcUnitEnum_type = 0; enumeration_type* IfcUnitaryEquipmentTypeEnum_type = 0; enumeration_type* IfcValveTypeEnum_type = 0; enumeration_type* IfcVibrationIsolatorTypeEnum_type = 0; enumeration_type* IfcWallTypeEnum_type = 0; enumeration_type* IfcWasteTerminalTypeEnum_type = 0; enumeration_type* IfcWindowPanelOperationEnum_type = 0; enumeration_type* IfcWindowPanelPositionEnum_type = 0; enumeration_type* IfcWindowStyleConstructionEnum_type = 0; enumeration_type* IfcWindowStyleOperationEnum_type = 0; enumeration_type* IfcWorkControlTypeEnum_type = 0; #ifdef _MSC_VER #pragma optimize("", off) #endif schema_definition* populate_schema() { IfcAbsorbedDoseMeasure_type = new type_declaration(IfcSchema::Type::IfcAbsorbedDoseMeasure, new simple_type(simple_type::real_type)); IfcAccelerationMeasure_type = new type_declaration(IfcSchema::Type::IfcAccelerationMeasure, new simple_type(simple_type::real_type)); IfcAmountOfSubstanceMeasure_type = new type_declaration(IfcSchema::Type::IfcAmountOfSubstanceMeasure, new simple_type(simple_type::real_type)); IfcAngularVelocityMeasure_type = new type_declaration(IfcSchema::Type::IfcAngularVelocityMeasure, new simple_type(simple_type::real_type)); IfcAreaMeasure_type = new type_declaration(IfcSchema::Type::IfcAreaMeasure, new simple_type(simple_type::real_type)); IfcBoolean_type = new type_declaration(IfcSchema::Type::IfcBoolean, new simple_type(simple_type::boolean_type)); IfcComplexNumber_type = new type_declaration(IfcSchema::Type::IfcComplexNumber, new aggregation_type(aggregation_type::array_type, 1, 2, new simple_type(simple_type::real_type))); IfcCompoundPlaneAngleMeasure_type = new type_declaration(IfcSchema::Type::IfcCompoundPlaneAngleMeasure, new aggregation_type(aggregation_type::list_type, 3, 4, new simple_type(simple_type::integer_type))); IfcContextDependentMeasure_type = new type_declaration(IfcSchema::Type::IfcContextDependentMeasure, new simple_type(simple_type::real_type)); IfcCountMeasure_type = new type_declaration(IfcSchema::Type::IfcCountMeasure, new simple_type(simple_type::number_type)); IfcCurvatureMeasure_type = new type_declaration(IfcSchema::Type::IfcCurvatureMeasure, new simple_type(simple_type::real_type)); IfcDayInMonthNumber_type = new type_declaration(IfcSchema::Type::IfcDayInMonthNumber, new simple_type(simple_type::integer_type)); IfcDaylightSavingHour_type = new type_declaration(IfcSchema::Type::IfcDaylightSavingHour, new simple_type(simple_type::integer_type)); IfcDescriptiveMeasure_type = new type_declaration(IfcSchema::Type::IfcDescriptiveMeasure, new simple_type(simple_type::string_type)); IfcDimensionCount_type = new type_declaration(IfcSchema::Type::IfcDimensionCount, new simple_type(simple_type::integer_type)); IfcDoseEquivalentMeasure_type = new type_declaration(IfcSchema::Type::IfcDoseEquivalentMeasure, new simple_type(simple_type::real_type)); IfcDynamicViscosityMeasure_type = new type_declaration(IfcSchema::Type::IfcDynamicViscosityMeasure, new simple_type(simple_type::real_type)); IfcElectricCapacitanceMeasure_type = new type_declaration(IfcSchema::Type::IfcElectricCapacitanceMeasure, new simple_type(simple_type::real_type)); IfcElectricChargeMeasure_type = new type_declaration(IfcSchema::Type::IfcElectricChargeMeasure, new simple_type(simple_type::real_type)); IfcElectricConductanceMeasure_type = new type_declaration(IfcSchema::Type::IfcElectricConductanceMeasure, new simple_type(simple_type::real_type)); IfcElectricCurrentMeasure_type = new type_declaration(IfcSchema::Type::IfcElectricCurrentMeasure, new simple_type(simple_type::real_type)); IfcElectricResistanceMeasure_type = new type_declaration(IfcSchema::Type::IfcElectricResistanceMeasure, new simple_type(simple_type::real_type)); IfcElectricVoltageMeasure_type = new type_declaration(IfcSchema::Type::IfcElectricVoltageMeasure, new simple_type(simple_type::real_type)); IfcEnergyMeasure_type = new type_declaration(IfcSchema::Type::IfcEnergyMeasure, new simple_type(simple_type::real_type)); IfcFontStyle_type = new type_declaration(IfcSchema::Type::IfcFontStyle, new simple_type(simple_type::string_type)); IfcFontVariant_type = new type_declaration(IfcSchema::Type::IfcFontVariant, new simple_type(simple_type::string_type)); IfcFontWeight_type = new type_declaration(IfcSchema::Type::IfcFontWeight, new simple_type(simple_type::string_type)); IfcForceMeasure_type = new type_declaration(IfcSchema::Type::IfcForceMeasure, new simple_type(simple_type::real_type)); IfcFrequencyMeasure_type = new type_declaration(IfcSchema::Type::IfcFrequencyMeasure, new simple_type(simple_type::real_type)); IfcGloballyUniqueId_type = new type_declaration(IfcSchema::Type::IfcGloballyUniqueId, new simple_type(simple_type::string_type)); IfcHeatFluxDensityMeasure_type = new type_declaration(IfcSchema::Type::IfcHeatFluxDensityMeasure, new simple_type(simple_type::real_type)); IfcHeatingValueMeasure_type = new type_declaration(IfcSchema::Type::IfcHeatingValueMeasure, new simple_type(simple_type::real_type)); IfcHourInDay_type = new type_declaration(IfcSchema::Type::IfcHourInDay, new simple_type(simple_type::integer_type)); IfcIdentifier_type = new type_declaration(IfcSchema::Type::IfcIdentifier, new simple_type(simple_type::string_type)); IfcIlluminanceMeasure_type = new type_declaration(IfcSchema::Type::IfcIlluminanceMeasure, new simple_type(simple_type::real_type)); IfcInductanceMeasure_type = new type_declaration(IfcSchema::Type::IfcInductanceMeasure, new simple_type(simple_type::real_type)); IfcInteger_type = new type_declaration(IfcSchema::Type::IfcInteger, new simple_type(simple_type::integer_type)); IfcIntegerCountRateMeasure_type = new type_declaration(IfcSchema::Type::IfcIntegerCountRateMeasure, new simple_type(simple_type::integer_type)); IfcIonConcentrationMeasure_type = new type_declaration(IfcSchema::Type::IfcIonConcentrationMeasure, new simple_type(simple_type::real_type)); IfcIsothermalMoistureCapacityMeasure_type = new type_declaration(IfcSchema::Type::IfcIsothermalMoistureCapacityMeasure, new simple_type(simple_type::real_type)); IfcKinematicViscosityMeasure_type = new type_declaration(IfcSchema::Type::IfcKinematicViscosityMeasure, new simple_type(simple_type::real_type)); IfcLabel_type = new type_declaration(IfcSchema::Type::IfcLabel, new simple_type(simple_type::string_type)); IfcLengthMeasure_type = new type_declaration(IfcSchema::Type::IfcLengthMeasure, new simple_type(simple_type::real_type)); IfcLinearForceMeasure_type = new type_declaration(IfcSchema::Type::IfcLinearForceMeasure, new simple_type(simple_type::real_type)); IfcLinearMomentMeasure_type = new type_declaration(IfcSchema::Type::IfcLinearMomentMeasure, new simple_type(simple_type::real_type)); IfcLinearStiffnessMeasure_type = new type_declaration(IfcSchema::Type::IfcLinearStiffnessMeasure, new simple_type(simple_type::real_type)); IfcLinearVelocityMeasure_type = new type_declaration(IfcSchema::Type::IfcLinearVelocityMeasure, new simple_type(simple_type::real_type)); IfcLogical_type = new type_declaration(IfcSchema::Type::IfcLogical, new simple_type(simple_type::logical_type)); IfcLuminousFluxMeasure_type = new type_declaration(IfcSchema::Type::IfcLuminousFluxMeasure, new simple_type(simple_type::real_type)); IfcLuminousIntensityDistributionMeasure_type = new type_declaration(IfcSchema::Type::IfcLuminousIntensityDistributionMeasure, new simple_type(simple_type::real_type)); IfcLuminousIntensityMeasure_type = new type_declaration(IfcSchema::Type::IfcLuminousIntensityMeasure, new simple_type(simple_type::real_type)); IfcMagneticFluxDensityMeasure_type = new type_declaration(IfcSchema::Type::IfcMagneticFluxDensityMeasure, new simple_type(simple_type::real_type)); IfcMagneticFluxMeasure_type = new type_declaration(IfcSchema::Type::IfcMagneticFluxMeasure, new simple_type(simple_type::real_type)); IfcMassDensityMeasure_type = new type_declaration(IfcSchema::Type::IfcMassDensityMeasure, new simple_type(simple_type::real_type)); IfcMassFlowRateMeasure_type = new type_declaration(IfcSchema::Type::IfcMassFlowRateMeasure, new simple_type(simple_type::real_type)); IfcMassMeasure_type = new type_declaration(IfcSchema::Type::IfcMassMeasure, new simple_type(simple_type::real_type)); IfcMassPerLengthMeasure_type = new type_declaration(IfcSchema::Type::IfcMassPerLengthMeasure, new simple_type(simple_type::real_type)); IfcMinuteInHour_type = new type_declaration(IfcSchema::Type::IfcMinuteInHour, new simple_type(simple_type::integer_type)); IfcModulusOfElasticityMeasure_type = new type_declaration(IfcSchema::Type::IfcModulusOfElasticityMeasure, new simple_type(simple_type::real_type)); IfcModulusOfLinearSubgradeReactionMeasure_type = new type_declaration(IfcSchema::Type::IfcModulusOfLinearSubgradeReactionMeasure, new simple_type(simple_type::real_type)); IfcModulusOfRotationalSubgradeReactionMeasure_type = new type_declaration(IfcSchema::Type::IfcModulusOfRotationalSubgradeReactionMeasure, new simple_type(simple_type::real_type)); IfcModulusOfSubgradeReactionMeasure_type = new type_declaration(IfcSchema::Type::IfcModulusOfSubgradeReactionMeasure, new simple_type(simple_type::real_type)); IfcMoistureDiffusivityMeasure_type = new type_declaration(IfcSchema::Type::IfcMoistureDiffusivityMeasure, new simple_type(simple_type::real_type)); IfcMolecularWeightMeasure_type = new type_declaration(IfcSchema::Type::IfcMolecularWeightMeasure, new simple_type(simple_type::real_type)); IfcMomentOfInertiaMeasure_type = new type_declaration(IfcSchema::Type::IfcMomentOfInertiaMeasure, new simple_type(simple_type::real_type)); IfcMonetaryMeasure_type = new type_declaration(IfcSchema::Type::IfcMonetaryMeasure, new simple_type(simple_type::real_type)); IfcMonthInYearNumber_type = new type_declaration(IfcSchema::Type::IfcMonthInYearNumber, new simple_type(simple_type::integer_type)); IfcNumericMeasure_type = new type_declaration(IfcSchema::Type::IfcNumericMeasure, new simple_type(simple_type::number_type)); IfcPHMeasure_type = new type_declaration(IfcSchema::Type::IfcPHMeasure, new simple_type(simple_type::real_type)); IfcParameterValue_type = new type_declaration(IfcSchema::Type::IfcParameterValue, new simple_type(simple_type::real_type)); IfcPlanarForceMeasure_type = new type_declaration(IfcSchema::Type::IfcPlanarForceMeasure, new simple_type(simple_type::real_type)); IfcPlaneAngleMeasure_type = new type_declaration(IfcSchema::Type::IfcPlaneAngleMeasure, new simple_type(simple_type::real_type)); IfcPositiveLengthMeasure_type = new type_declaration(IfcSchema::Type::IfcPositiveLengthMeasure, new named_type(IfcLengthMeasure_type)); IfcPositivePlaneAngleMeasure_type = new type_declaration(IfcSchema::Type::IfcPositivePlaneAngleMeasure, new named_type(IfcPlaneAngleMeasure_type)); IfcPowerMeasure_type = new type_declaration(IfcSchema::Type::IfcPowerMeasure, new simple_type(simple_type::real_type)); IfcPresentableText_type = new type_declaration(IfcSchema::Type::IfcPresentableText, new simple_type(simple_type::string_type)); IfcPressureMeasure_type = new type_declaration(IfcSchema::Type::IfcPressureMeasure, new simple_type(simple_type::real_type)); IfcRadioActivityMeasure_type = new type_declaration(IfcSchema::Type::IfcRadioActivityMeasure, new simple_type(simple_type::real_type)); IfcRatioMeasure_type = new type_declaration(IfcSchema::Type::IfcRatioMeasure, new simple_type(simple_type::real_type)); IfcReal_type = new type_declaration(IfcSchema::Type::IfcReal, new simple_type(simple_type::real_type)); IfcRotationalFrequencyMeasure_type = new type_declaration(IfcSchema::Type::IfcRotationalFrequencyMeasure, new simple_type(simple_type::real_type)); IfcRotationalMassMeasure_type = new type_declaration(IfcSchema::Type::IfcRotationalMassMeasure, new simple_type(simple_type::real_type)); IfcRotationalStiffnessMeasure_type = new type_declaration(IfcSchema::Type::IfcRotationalStiffnessMeasure, new simple_type(simple_type::real_type)); IfcSecondInMinute_type = new type_declaration(IfcSchema::Type::IfcSecondInMinute, new simple_type(simple_type::real_type)); IfcSectionModulusMeasure_type = new type_declaration(IfcSchema::Type::IfcSectionModulusMeasure, new simple_type(simple_type::real_type)); IfcSectionalAreaIntegralMeasure_type = new type_declaration(IfcSchema::Type::IfcSectionalAreaIntegralMeasure, new simple_type(simple_type::real_type)); IfcShearModulusMeasure_type = new type_declaration(IfcSchema::Type::IfcShearModulusMeasure, new simple_type(simple_type::real_type)); IfcSolidAngleMeasure_type = new type_declaration(IfcSchema::Type::IfcSolidAngleMeasure, new simple_type(simple_type::real_type)); IfcSoundPowerMeasure_type = new type_declaration(IfcSchema::Type::IfcSoundPowerMeasure, new simple_type(simple_type::real_type)); IfcSoundPressureMeasure_type = new type_declaration(IfcSchema::Type::IfcSoundPressureMeasure, new simple_type(simple_type::real_type)); IfcSpecificHeatCapacityMeasure_type = new type_declaration(IfcSchema::Type::IfcSpecificHeatCapacityMeasure, new simple_type(simple_type::real_type)); IfcSpecularExponent_type = new type_declaration(IfcSchema::Type::IfcSpecularExponent, new simple_type(simple_type::real_type)); IfcSpecularRoughness_type = new type_declaration(IfcSchema::Type::IfcSpecularRoughness, new simple_type(simple_type::real_type)); IfcTemperatureGradientMeasure_type = new type_declaration(IfcSchema::Type::IfcTemperatureGradientMeasure, new simple_type(simple_type::real_type)); IfcText_type = new type_declaration(IfcSchema::Type::IfcText, new simple_type(simple_type::string_type)); IfcTextAlignment_type = new type_declaration(IfcSchema::Type::IfcTextAlignment, new simple_type(simple_type::string_type)); IfcTextDecoration_type = new type_declaration(IfcSchema::Type::IfcTextDecoration, new simple_type(simple_type::string_type)); IfcTextFontName_type = new type_declaration(IfcSchema::Type::IfcTextFontName, new simple_type(simple_type::string_type)); IfcTextTransformation_type = new type_declaration(IfcSchema::Type::IfcTextTransformation, new simple_type(simple_type::string_type)); IfcThermalAdmittanceMeasure_type = new type_declaration(IfcSchema::Type::IfcThermalAdmittanceMeasure, new simple_type(simple_type::real_type)); IfcThermalConductivityMeasure_type = new type_declaration(IfcSchema::Type::IfcThermalConductivityMeasure, new simple_type(simple_type::real_type)); IfcThermalExpansionCoefficientMeasure_type = new type_declaration(IfcSchema::Type::IfcThermalExpansionCoefficientMeasure, new simple_type(simple_type::real_type)); IfcThermalResistanceMeasure_type = new type_declaration(IfcSchema::Type::IfcThermalResistanceMeasure, new simple_type(simple_type::real_type)); IfcThermalTransmittanceMeasure_type = new type_declaration(IfcSchema::Type::IfcThermalTransmittanceMeasure, new simple_type(simple_type::real_type)); IfcThermodynamicTemperatureMeasure_type = new type_declaration(IfcSchema::Type::IfcThermodynamicTemperatureMeasure, new simple_type(simple_type::real_type)); IfcTimeMeasure_type = new type_declaration(IfcSchema::Type::IfcTimeMeasure, new simple_type(simple_type::real_type)); IfcTimeStamp_type = new type_declaration(IfcSchema::Type::IfcTimeStamp, new simple_type(simple_type::integer_type)); IfcTorqueMeasure_type = new type_declaration(IfcSchema::Type::IfcTorqueMeasure, new simple_type(simple_type::real_type)); IfcVaporPermeabilityMeasure_type = new type_declaration(IfcSchema::Type::IfcVaporPermeabilityMeasure, new simple_type(simple_type::real_type)); IfcVolumeMeasure_type = new type_declaration(IfcSchema::Type::IfcVolumeMeasure, new simple_type(simple_type::real_type)); IfcVolumetricFlowRateMeasure_type = new type_declaration(IfcSchema::Type::IfcVolumetricFlowRateMeasure, new simple_type(simple_type::real_type)); IfcWarpingConstantMeasure_type = new type_declaration(IfcSchema::Type::IfcWarpingConstantMeasure, new simple_type(simple_type::real_type)); IfcWarpingMomentMeasure_type = new type_declaration(IfcSchema::Type::IfcWarpingMomentMeasure, new simple_type(simple_type::real_type)); IfcYearNumber_type = new type_declaration(IfcSchema::Type::IfcYearNumber, new simple_type(simple_type::integer_type)); IfcBoxAlignment_type = new type_declaration(IfcSchema::Type::IfcBoxAlignment, new named_type(IfcLabel_type)); IfcNormalisedRatioMeasure_type = new type_declaration(IfcSchema::Type::IfcNormalisedRatioMeasure, new named_type(IfcRatioMeasure_type)); IfcPositiveRatioMeasure_type = new type_declaration(IfcSchema::Type::IfcPositiveRatioMeasure, new named_type(IfcRatioMeasure_type)); { std::vector items; items.reserve(27); items.push_back("BRAKES"); items.push_back("BUOYANCY"); items.push_back("COMPLETION_G1"); items.push_back("CREEP"); items.push_back("CURRENT"); items.push_back("DEAD_LOAD_G"); items.push_back("EARTHQUAKE_E"); items.push_back("ERECTION"); items.push_back("FIRE"); items.push_back("ICE"); items.push_back("IMPACT"); items.push_back("IMPULSE"); items.push_back("LACK_OF_FIT"); items.push_back("LIVE_LOAD_Q"); items.push_back("NOTDEFINED"); items.push_back("PRESTRESSING_P"); items.push_back("PROPPING"); items.push_back("RAIN"); items.push_back("SETTLEMENT_U"); items.push_back("SHRINKAGE"); items.push_back("SNOW_S"); items.push_back("SYSTEM_IMPERFECTION"); items.push_back("TEMPERATURE_T"); items.push_back("TRANSPORT"); items.push_back("USERDEFINED"); items.push_back("WAVE"); items.push_back("WIND_W"); IfcActionSourceTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcActionSourceTypeEnum, items); } { std::vector items; items.reserve(5); items.push_back("EXTRAORDINARY_A"); items.push_back("NOTDEFINED"); items.push_back("PERMANENT_G"); items.push_back("USERDEFINED"); items.push_back("VARIABLE_Q"); IfcActionTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcActionTypeEnum, items); } { std::vector items; items.reserve(7); items.push_back("ELECTRICACTUATOR"); items.push_back("HANDOPERATEDACTUATOR"); items.push_back("HYDRAULICACTUATOR"); items.push_back("NOTDEFINED"); items.push_back("PNEUMATICACTUATOR"); items.push_back("THERMOSTATICACTUATOR"); items.push_back("USERDEFINED"); IfcActuatorTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcActuatorTypeEnum, items); } { std::vector items; items.reserve(5); items.push_back("DISTRIBUTIONPOINT"); items.push_back("HOME"); items.push_back("OFFICE"); items.push_back("SITE"); items.push_back("USERDEFINED"); IfcAddressTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcAddressTypeEnum, items); } { std::vector items; items.reserve(2); items.push_back("AHEAD"); items.push_back("BEHIND"); IfcAheadOrBehind_type = new enumeration_type(IfcSchema::Type::IfcAheadOrBehind, items); } { std::vector items; items.reserve(5); items.push_back("CONSTANTFLOW"); items.push_back("NOTDEFINED"); items.push_back("USERDEFINED"); items.push_back("VARIABLEFLOWPRESSUREDEPENDANT"); items.push_back("VARIABLEFLOWPRESSUREINDEPENDANT"); IfcAirTerminalBoxTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcAirTerminalBoxTypeEnum, items); } { std::vector items; items.reserve(9); items.push_back("DIFFUSER"); items.push_back("EYEBALL"); items.push_back("GRILLE"); items.push_back("IRIS"); items.push_back("LINEARDIFFUSER"); items.push_back("LINEARGRILLE"); items.push_back("NOTDEFINED"); items.push_back("REGISTER"); items.push_back("USERDEFINED"); IfcAirTerminalTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcAirTerminalTypeEnum, items); } { std::vector items; items.reserve(11); items.push_back("FIXEDPLATECOUNTERFLOWEXCHANGER"); items.push_back("FIXEDPLATECROSSFLOWEXCHANGER"); items.push_back("FIXEDPLATEPARALLELFLOWEXCHANGER"); items.push_back("HEATPIPE"); items.push_back("NOTDEFINED"); items.push_back("ROTARYWHEEL"); items.push_back("RUNAROUNDCOILLOOP"); items.push_back("THERMOSIPHONCOILTYPEHEATEXCHANGERS"); items.push_back("THERMOSIPHONSEALEDTUBEHEATEXCHANGERS"); items.push_back("TWINTOWERENTHALPYRECOVERYLOOPS"); items.push_back("USERDEFINED"); IfcAirToAirHeatRecoveryTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcAirToAirHeatRecoveryTypeEnum, items); } { std::vector items; items.reserve(8); items.push_back("BELL"); items.push_back("BREAKGLASSBUTTON"); items.push_back("LIGHT"); items.push_back("MANUALPULLBOX"); items.push_back("NOTDEFINED"); items.push_back("SIREN"); items.push_back("USERDEFINED"); items.push_back("WHISTLE"); IfcAlarmTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcAlarmTypeEnum, items); } { std::vector items; items.reserve(5); items.push_back("IN_PLANE_LOADING_2D"); items.push_back("LOADING_3D"); items.push_back("NOTDEFINED"); items.push_back("OUT_PLANE_LOADING_2D"); items.push_back("USERDEFINED"); IfcAnalysisModelTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcAnalysisModelTypeEnum, items); } { std::vector items; items.reserve(6); items.push_back("FIRST_ORDER_THEORY"); items.push_back("FULL_NONLINEAR_THEORY"); items.push_back("NOTDEFINED"); items.push_back("SECOND_ORDER_THEORY"); items.push_back("THIRD_ORDER_THEORY"); items.push_back("USERDEFINED"); IfcAnalysisTheoryTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcAnalysisTheoryTypeEnum, items); } { std::vector items; items.reserve(4); items.push_back("ADD"); items.push_back("DIVIDE"); items.push_back("MULTIPLY"); items.push_back("SUBTRACT"); IfcArithmeticOperatorEnum_type = new enumeration_type(IfcSchema::Type::IfcArithmeticOperatorEnum, items); } { std::vector items; items.reserve(3); items.push_back("FACTORY"); items.push_back("NOTDEFINED"); items.push_back("SITE"); IfcAssemblyPlaceEnum_type = new enumeration_type(IfcSchema::Type::IfcAssemblyPlaceEnum, items); } { std::vector items; items.reserve(6); items.push_back("CIRCULAR_ARC"); items.push_back("ELLIPTIC_ARC"); items.push_back("HYPERBOLIC_ARC"); items.push_back("PARABOLIC_ARC"); items.push_back("POLYLINE_FORM"); items.push_back("UNSPECIFIED"); IfcBSplineCurveForm_type = new enumeration_type(IfcSchema::Type::IfcBSplineCurveForm, items); } { std::vector items; items.reserve(6); items.push_back("BEAM"); items.push_back("JOIST"); items.push_back("LINTEL"); items.push_back("NOTDEFINED"); items.push_back("T_BEAM"); items.push_back("USERDEFINED"); IfcBeamTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcBeamTypeEnum, items); } { std::vector items; items.reserve(6); items.push_back("EQUALTO"); items.push_back("GREATERTHAN"); items.push_back("GREATERTHANOREQUALTO"); items.push_back("LESSTHAN"); items.push_back("LESSTHANOREQUALTO"); items.push_back("NOTEQUALTO"); IfcBenchmarkEnum_type = new enumeration_type(IfcSchema::Type::IfcBenchmarkEnum, items); } { std::vector items; items.reserve(4); items.push_back("NOTDEFINED"); items.push_back("STEAM"); items.push_back("USERDEFINED"); items.push_back("WATER"); IfcBoilerTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcBoilerTypeEnum, items); } { std::vector items; items.reserve(3); items.push_back("DIFFERENCE"); items.push_back("INTERSECTION"); items.push_back("UNION"); IfcBooleanOperator_type = new enumeration_type(IfcSchema::Type::IfcBooleanOperator, items); } { std::vector items; items.reserve(2); items.push_back("NOTDEFINED"); items.push_back("USERDEFINED"); IfcBuildingElementProxyTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcBuildingElementProxyTypeEnum, items); } { std::vector items; items.reserve(6); items.push_back("BEND"); items.push_back("CROSS"); items.push_back("NOTDEFINED"); items.push_back("REDUCER"); items.push_back("TEE"); items.push_back("USERDEFINED"); IfcCableCarrierFittingTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcCableCarrierFittingTypeEnum, items); } { std::vector items; items.reserve(6); items.push_back("CABLELADDERSEGMENT"); items.push_back("CABLETRAYSEGMENT"); items.push_back("CABLETRUNKINGSEGMENT"); items.push_back("CONDUITSEGMENT"); items.push_back("NOTDEFINED"); items.push_back("USERDEFINED"); IfcCableCarrierSegmentTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcCableCarrierSegmentTypeEnum, items); } { std::vector items; items.reserve(4); items.push_back("CABLESEGMENT"); items.push_back("CONDUCTORSEGMENT"); items.push_back("NOTDEFINED"); items.push_back("USERDEFINED"); IfcCableSegmentTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcCableSegmentTypeEnum, items); } { std::vector items; items.reserve(6); items.push_back("ADDED"); items.push_back("DELETED"); items.push_back("MODIFIED"); items.push_back("MODIFIEDADDED"); items.push_back("MODIFIEDDELETED"); items.push_back("NOCHANGE"); IfcChangeActionEnum_type = new enumeration_type(IfcSchema::Type::IfcChangeActionEnum, items); } { std::vector items; items.reserve(5); items.push_back("AIRCOOLED"); items.push_back("HEATRECOVERY"); items.push_back("NOTDEFINED"); items.push_back("USERDEFINED"); items.push_back("WATERCOOLED"); IfcChillerTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcChillerTypeEnum, items); } { std::vector items; items.reserve(8); items.push_back("DXCOOLINGCOIL"); items.push_back("ELECTRICHEATINGCOIL"); items.push_back("GASHEATINGCOIL"); items.push_back("NOTDEFINED"); items.push_back("STEAMHEATINGCOIL"); items.push_back("USERDEFINED"); items.push_back("WATERCOOLINGCOIL"); items.push_back("WATERHEATINGCOIL"); IfcCoilTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcCoilTypeEnum, items); } { std::vector items; items.reserve(3); items.push_back("COLUMN"); items.push_back("NOTDEFINED"); items.push_back("USERDEFINED"); IfcColumnTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcColumnTypeEnum, items); } { std::vector items; items.reserve(17); items.push_back("BOOSTER"); items.push_back("DYNAMIC"); items.push_back("HERMETIC"); items.push_back("NOTDEFINED"); items.push_back("OPENTYPE"); items.push_back("RECIPROCATING"); items.push_back("ROLLINGPISTON"); items.push_back("ROTARY"); items.push_back("ROTARYVANE"); items.push_back("SCROLL"); items.push_back("SEMIHERMETIC"); items.push_back("SINGLESCREW"); items.push_back("SINGLESTAGE"); items.push_back("TROCHOIDAL"); items.push_back("TWINSCREW"); items.push_back("USERDEFINED"); items.push_back("WELDEDSHELLHERMETIC"); IfcCompressorTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcCompressorTypeEnum, items); } { std::vector items; items.reserve(8); items.push_back("AIRCOOLED"); items.push_back("EVAPORATIVECOOLED"); items.push_back("NOTDEFINED"); items.push_back("USERDEFINED"); items.push_back("WATERCOOLEDBRAZEDPLATE"); items.push_back("WATERCOOLEDSHELLCOIL"); items.push_back("WATERCOOLEDSHELLTUBE"); items.push_back("WATERCOOLEDTUBEINTUBE"); IfcCondenserTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcCondenserTypeEnum, items); } { std::vector items; items.reserve(4); items.push_back("ATEND"); items.push_back("ATPATH"); items.push_back("ATSTART"); items.push_back("NOTDEFINED"); IfcConnectionTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcConnectionTypeEnum, items); } { std::vector items; items.reserve(5); items.push_back("ADVISORY"); items.push_back("HARD"); items.push_back("NOTDEFINED"); items.push_back("SOFT"); items.push_back("USERDEFINED"); IfcConstraintEnum_type = new enumeration_type(IfcSchema::Type::IfcConstraintEnum, items); } { std::vector items; items.reserve(8); items.push_back("FLOATING"); items.push_back("NOTDEFINED"); items.push_back("PROPORTIONAL"); items.push_back("PROPORTIONALINTEGRAL"); items.push_back("PROPORTIONALINTEGRALDERIVATIVE"); items.push_back("TIMEDTWOPOSITION"); items.push_back("TWOPOSITION"); items.push_back("USERDEFINED"); IfcControllerTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcControllerTypeEnum, items); } { std::vector items; items.reserve(4); items.push_back("ACTIVE"); items.push_back("NOTDEFINED"); items.push_back("PASSIVE"); items.push_back("USERDEFINED"); IfcCooledBeamTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcCooledBeamTypeEnum, items); } { std::vector items; items.reserve(5); items.push_back("MECHANICALFORCEDDRAFT"); items.push_back("MECHANICALINDUCEDDRAFT"); items.push_back("NATURALDRAFT"); items.push_back("NOTDEFINED"); items.push_back("USERDEFINED"); IfcCoolingTowerTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcCoolingTowerTypeEnum, items); } { std::vector items; items.reserve(9); items.push_back("BUDGET"); items.push_back("COSTPLAN"); items.push_back("ESTIMATE"); items.push_back("NOTDEFINED"); items.push_back("PRICEDBILLOFQUANTITIES"); items.push_back("SCHEDULEOFRATES"); items.push_back("TENDER"); items.push_back("UNPRICEDBILLOFQUANTITIES"); items.push_back("USERDEFINED"); IfcCostScheduleTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcCostScheduleTypeEnum, items); } { std::vector items; items.reserve(10); items.push_back("CEILING"); items.push_back("CLADDING"); items.push_back("FLOORING"); items.push_back("INSULATION"); items.push_back("MEMBRANE"); items.push_back("NOTDEFINED"); items.push_back("ROOFING"); items.push_back("SLEEVING"); items.push_back("USERDEFINED"); items.push_back("WRAPPING"); IfcCoveringTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcCoveringTypeEnum, items); } { std::vector items; items.reserve(83); items.push_back("AED"); items.push_back("AES"); items.push_back("ATS"); items.push_back("AUD"); items.push_back("BBD"); items.push_back("BEG"); items.push_back("BGL"); items.push_back("BHD"); items.push_back("BMD"); items.push_back("BND"); items.push_back("BRL"); items.push_back("BSD"); items.push_back("BWP"); items.push_back("BZD"); items.push_back("CAD"); items.push_back("CBD"); items.push_back("CHF"); items.push_back("CLP"); items.push_back("CNY"); items.push_back("CYS"); items.push_back("CZK"); items.push_back("DDP"); items.push_back("DEM"); items.push_back("DKK"); items.push_back("EGL"); items.push_back("EST"); items.push_back("EUR"); items.push_back("FAK"); items.push_back("FIM"); items.push_back("FJD"); items.push_back("FKP"); items.push_back("FRF"); items.push_back("GBP"); items.push_back("GIP"); items.push_back("GMD"); items.push_back("GRX"); items.push_back("HKD"); items.push_back("HUF"); items.push_back("ICK"); items.push_back("IDR"); items.push_back("ILS"); items.push_back("INR"); items.push_back("IRP"); items.push_back("ITL"); items.push_back("JMD"); items.push_back("JOD"); items.push_back("JPY"); items.push_back("KES"); items.push_back("KRW"); items.push_back("KWD"); items.push_back("KYD"); items.push_back("LKR"); items.push_back("LUF"); items.push_back("MTL"); items.push_back("MUR"); items.push_back("MXN"); items.push_back("MYR"); items.push_back("NLG"); items.push_back("NOK"); items.push_back("NZD"); items.push_back("OMR"); items.push_back("PGK"); items.push_back("PHP"); items.push_back("PKR"); items.push_back("PLN"); items.push_back("PTN"); items.push_back("QAR"); items.push_back("RUR"); items.push_back("SAR"); items.push_back("SCR"); items.push_back("SEK"); items.push_back("SGD"); items.push_back("SKP"); items.push_back("THB"); items.push_back("TRL"); items.push_back("TTD"); items.push_back("TWD"); items.push_back("USD"); items.push_back("VEB"); items.push_back("VND"); items.push_back("XEU"); items.push_back("ZAR"); items.push_back("ZWD"); IfcCurrencyEnum_type = new enumeration_type(IfcSchema::Type::IfcCurrencyEnum, items); } { std::vector items; items.reserve(2); items.push_back("NOTDEFINED"); items.push_back("USERDEFINED"); IfcCurtainWallTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcCurtainWallTypeEnum, items); } { std::vector items; items.reserve(13); items.push_back("BACKDRAFTDAMPER"); items.push_back("BALANCINGDAMPER"); items.push_back("BLASTDAMPER"); items.push_back("CONTROLDAMPER"); items.push_back("FIREDAMPER"); items.push_back("FIRESMOKEDAMPER"); items.push_back("FUMEHOODEXHAUST"); items.push_back("GRAVITYDAMPER"); items.push_back("GRAVITYRELIEFDAMPER"); items.push_back("NOTDEFINED"); items.push_back("RELIEFDAMPER"); items.push_back("SMOKEDAMPER"); items.push_back("USERDEFINED"); IfcDamperTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcDamperTypeEnum, items); } { std::vector items; items.reserve(5); items.push_back("MEASURED"); items.push_back("NOTDEFINED"); items.push_back("PREDICTED"); items.push_back("SIMULATED"); items.push_back("USERDEFINED"); IfcDataOriginEnum_type = new enumeration_type(IfcSchema::Type::IfcDataOriginEnum, items); } { std::vector items; items.reserve(49); items.push_back("ACCELERATIONUNIT"); items.push_back("ANGULARVELOCITYUNIT"); items.push_back("COMPOUNDPLANEANGLEUNIT"); items.push_back("CURVATUREUNIT"); items.push_back("DYNAMICVISCOSITYUNIT"); items.push_back("HEATFLUXDENSITYUNIT"); items.push_back("HEATINGVALUEUNIT"); items.push_back("INTEGERCOUNTRATEUNIT"); items.push_back("IONCONCENTRATIONUNIT"); items.push_back("ISOTHERMALMOISTURECAPACITYUNIT"); items.push_back("KINEMATICVISCOSITYUNIT"); items.push_back("LINEARFORCEUNIT"); items.push_back("LINEARMOMENTUNIT"); items.push_back("LINEARSTIFFNESSUNIT"); items.push_back("LINEARVELOCITYUNIT"); items.push_back("LUMINOUSINTENSITYDISTRIBUTIONUNIT"); items.push_back("MASSDENSITYUNIT"); items.push_back("MASSFLOWRATEUNIT"); items.push_back("MASSPERLENGTHUNIT"); items.push_back("MODULUSOFELASTICITYUNIT"); items.push_back("MODULUSOFLINEARSUBGRADEREACTIONUNIT"); items.push_back("MODULUSOFROTATIONALSUBGRADEREACTIONUNIT"); items.push_back("MODULUSOFSUBGRADEREACTIONUNIT"); items.push_back("MOISTUREDIFFUSIVITYUNIT"); items.push_back("MOLECULARWEIGHTUNIT"); items.push_back("MOMENTOFINERTIAUNIT"); items.push_back("PHUNIT"); items.push_back("PLANARFORCEUNIT"); items.push_back("ROTATIONALFREQUENCYUNIT"); items.push_back("ROTATIONALMASSUNIT"); items.push_back("ROTATIONALSTIFFNESSUNIT"); items.push_back("SECTIONAREAINTEGRALUNIT"); items.push_back("SECTIONMODULUSUNIT"); items.push_back("SHEARMODULUSUNIT"); items.push_back("SOUNDPOWERUNIT"); items.push_back("SOUNDPRESSUREUNIT"); items.push_back("SPECIFICHEATCAPACITYUNIT"); items.push_back("TEMPERATUREGRADIENTUNIT"); items.push_back("THERMALADMITTANCEUNIT"); items.push_back("THERMALCONDUCTANCEUNIT"); items.push_back("THERMALEXPANSIONCOEFFICIENTUNIT"); items.push_back("THERMALRESISTANCEUNIT"); items.push_back("THERMALTRANSMITTANCEUNIT"); items.push_back("TORQUEUNIT"); items.push_back("USERDEFINED"); items.push_back("VAPORPERMEABILITYUNIT"); items.push_back("VOLUMETRICFLOWRATEUNIT"); items.push_back("WARPINGCONSTANTUNIT"); items.push_back("WARPINGMOMENTUNIT"); IfcDerivedUnitEnum_type = new enumeration_type(IfcSchema::Type::IfcDerivedUnitEnum, items); } { std::vector items; items.reserve(2); items.push_back("ORIGIN"); items.push_back("TARGET"); IfcDimensionExtentUsage_type = new enumeration_type(IfcSchema::Type::IfcDimensionExtentUsage, items); } { std::vector items; items.reserve(2); items.push_back("NEGATIVE"); items.push_back("POSITIVE"); IfcDirectionSenseEnum_type = new enumeration_type(IfcSchema::Type::IfcDirectionSenseEnum, items); } { std::vector items; items.reserve(10); items.push_back("FORMEDDUCT"); items.push_back("INSPECTIONCHAMBER"); items.push_back("INSPECTIONPIT"); items.push_back("MANHOLE"); items.push_back("METERCHAMBER"); items.push_back("NOTDEFINED"); items.push_back("SUMP"); items.push_back("TRENCH"); items.push_back("USERDEFINED"); items.push_back("VALVECHAMBER"); IfcDistributionChamberElementTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcDistributionChamberElementTypeEnum, items); } { std::vector items; items.reserve(6); items.push_back("CONFIDENTIAL"); items.push_back("NOTDEFINED"); items.push_back("PERSONAL"); items.push_back("PUBLIC"); items.push_back("RESTRICTED"); items.push_back("USERDEFINED"); IfcDocumentConfidentialityEnum_type = new enumeration_type(IfcSchema::Type::IfcDocumentConfidentialityEnum, items); } { std::vector items; items.reserve(5); items.push_back("DRAFT"); items.push_back("FINAL"); items.push_back("FINALDRAFT"); items.push_back("NOTDEFINED"); items.push_back("REVISION"); IfcDocumentStatusEnum_type = new enumeration_type(IfcSchema::Type::IfcDocumentStatusEnum, items); } { std::vector items; items.reserve(8); items.push_back("DOUBLE_ACTING"); items.push_back("FOLDING"); items.push_back("NOTDEFINED"); items.push_back("REVOLVING"); items.push_back("ROLLINGUP"); items.push_back("SLIDING"); items.push_back("SWINGING"); items.push_back("USERDEFINED"); IfcDoorPanelOperationEnum_type = new enumeration_type(IfcSchema::Type::IfcDoorPanelOperationEnum, items); } { std::vector items; items.reserve(4); items.push_back("LEFT"); items.push_back("MIDDLE"); items.push_back("NOTDEFINED"); items.push_back("RIGHT"); IfcDoorPanelPositionEnum_type = new enumeration_type(IfcSchema::Type::IfcDoorPanelPositionEnum, items); } { std::vector items; items.reserve(9); items.push_back("ALUMINIUM"); items.push_back("ALUMINIUM_PLASTIC"); items.push_back("ALUMINIUM_WOOD"); items.push_back("HIGH_GRADE_STEEL"); items.push_back("NOTDEFINED"); items.push_back("PLASTIC"); items.push_back("STEEL"); items.push_back("USERDEFINED"); items.push_back("WOOD"); IfcDoorStyleConstructionEnum_type = new enumeration_type(IfcSchema::Type::IfcDoorStyleConstructionEnum, items); } { std::vector items; items.reserve(18); items.push_back("DOUBLE_DOOR_DOUBLE_SWING"); items.push_back("DOUBLE_DOOR_FOLDING"); items.push_back("DOUBLE_DOOR_SINGLE_SWING"); items.push_back("DOUBLE_DOOR_SINGLE_SWING_OPPOSITE_LEFT"); items.push_back("DOUBLE_DOOR_SINGLE_SWING_OPPOSITE_RIGHT"); items.push_back("DOUBLE_DOOR_SLIDING"); items.push_back("DOUBLE_SWING_LEFT"); items.push_back("DOUBLE_SWING_RIGHT"); items.push_back("FOLDING_TO_LEFT"); items.push_back("FOLDING_TO_RIGHT"); items.push_back("NOTDEFINED"); items.push_back("REVOLVING"); items.push_back("ROLLINGUP"); items.push_back("SINGLE_SWING_LEFT"); items.push_back("SINGLE_SWING_RIGHT"); items.push_back("SLIDING_TO_LEFT"); items.push_back("SLIDING_TO_RIGHT"); items.push_back("USERDEFINED"); IfcDoorStyleOperationEnum_type = new enumeration_type(IfcSchema::Type::IfcDoorStyleOperationEnum, items); } { std::vector items; items.reserve(9); items.push_back("BEND"); items.push_back("CONNECTOR"); items.push_back("ENTRY"); items.push_back("EXIT"); items.push_back("JUNCTION"); items.push_back("NOTDEFINED"); items.push_back("OBSTRUCTION"); items.push_back("TRANSITION"); items.push_back("USERDEFINED"); IfcDuctFittingTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcDuctFittingTypeEnum, items); } { std::vector items; items.reserve(4); items.push_back("FLEXIBLESEGMENT"); items.push_back("NOTDEFINED"); items.push_back("RIGIDSEGMENT"); items.push_back("USERDEFINED"); IfcDuctSegmentTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcDuctSegmentTypeEnum, items); } { std::vector items; items.reserve(5); items.push_back("FLATOVAL"); items.push_back("NOTDEFINED"); items.push_back("RECTANGULAR"); items.push_back("ROUND"); items.push_back("USERDEFINED"); IfcDuctSilencerTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcDuctSilencerTypeEnum, items); } { std::vector items; items.reserve(26); items.push_back("COMPUTER"); items.push_back("DIRECTWATERHEATER"); items.push_back("DISHWASHER"); items.push_back("ELECTRICCOOKER"); items.push_back("ELECTRICHEATER"); items.push_back("FACSIMILE"); items.push_back("FREESTANDINGFAN"); items.push_back("FREEZER"); items.push_back("FRIDGE_FREEZER"); items.push_back("HANDDRYER"); items.push_back("INDIRECTWATERHEATER"); items.push_back("MICROWAVE"); items.push_back("NOTDEFINED"); items.push_back("PHOTOCOPIER"); items.push_back("PRINTER"); items.push_back("RADIANTHEATER"); items.push_back("REFRIGERATOR"); items.push_back("SCANNER"); items.push_back("TELEPHONE"); items.push_back("TUMBLEDRYER"); items.push_back("TV"); items.push_back("USERDEFINED"); items.push_back("VENDINGMACHINE"); items.push_back("WASHINGMACHINE"); items.push_back("WATERCOOLER"); items.push_back("WATERHEATER"); IfcElectricApplianceTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcElectricApplianceTypeEnum, items); } { std::vector items; items.reserve(3); items.push_back("ALTERNATING"); items.push_back("DIRECT"); items.push_back("NOTDEFINED"); IfcElectricCurrentEnum_type = new enumeration_type(IfcSchema::Type::IfcElectricCurrentEnum, items); } { std::vector items; items.reserve(11); items.push_back("ALARMPANEL"); items.push_back("CONSUMERUNIT"); items.push_back("CONTROLPANEL"); items.push_back("DISTRIBUTIONBOARD"); items.push_back("GASDETECTORPANEL"); items.push_back("INDICATORPANEL"); items.push_back("MIMICPANEL"); items.push_back("MOTORCONTROLCENTRE"); items.push_back("NOTDEFINED"); items.push_back("SWITCHBOARD"); items.push_back("USERDEFINED"); IfcElectricDistributionPointFunctionEnum_type = new enumeration_type(IfcSchema::Type::IfcElectricDistributionPointFunctionEnum, items); } { std::vector items; items.reserve(7); items.push_back("BATTERY"); items.push_back("CAPACITORBANK"); items.push_back("HARMONICFILTER"); items.push_back("INDUCTORBANK"); items.push_back("NOTDEFINED"); items.push_back("UPS"); items.push_back("USERDEFINED"); IfcElectricFlowStorageDeviceTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcElectricFlowStorageDeviceTypeEnum, items); } { std::vector items; items.reserve(2); items.push_back("NOTDEFINED"); items.push_back("USERDEFINED"); IfcElectricGeneratorTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcElectricGeneratorTypeEnum, items); } { std::vector items; items.reserve(5); items.push_back("ELECTRICCABLEHEATER"); items.push_back("ELECTRICMATHEATER"); items.push_back("ELECTRICPOINTHEATER"); items.push_back("NOTDEFINED"); items.push_back("USERDEFINED"); IfcElectricHeaterTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcElectricHeaterTypeEnum, items); } { std::vector items; items.reserve(7); items.push_back("DC"); items.push_back("INDUCTION"); items.push_back("NOTDEFINED"); items.push_back("POLYPHASE"); items.push_back("RELUCTANCESYNCHRONOUS"); items.push_back("SYNCHRONOUS"); items.push_back("USERDEFINED"); IfcElectricMotorTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcElectricMotorTypeEnum, items); } { std::vector items; items.reserve(5); items.push_back("NOTDEFINED"); items.push_back("RELAY"); items.push_back("TIMECLOCK"); items.push_back("TIMEDELAY"); items.push_back("USERDEFINED"); IfcElectricTimeControlTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcElectricTimeControlTypeEnum, items); } { std::vector items; items.reserve(11); items.push_back("ACCESSORY_ASSEMBLY"); items.push_back("ARCH"); items.push_back("BEAM_GRID"); items.push_back("BRACED_FRAME"); items.push_back("GIRDER"); items.push_back("NOTDEFINED"); items.push_back("REINFORCEMENT_UNIT"); items.push_back("RIGID_FRAME"); items.push_back("SLAB_FIELD"); items.push_back("TRUSS"); items.push_back("USERDEFINED"); IfcElementAssemblyTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcElementAssemblyTypeEnum, items); } { std::vector items; items.reserve(3); items.push_back("COMPLEX"); items.push_back("ELEMENT"); items.push_back("PARTIAL"); IfcElementCompositionEnum_type = new enumeration_type(IfcSchema::Type::IfcElementCompositionEnum, items); } { std::vector items; items.reserve(6); items.push_back("AUXILIARY"); items.push_back("NOTDEFINED"); items.push_back("PRIMARY"); items.push_back("SECONDARY"); items.push_back("TERTIARY"); items.push_back("USERDEFINED"); IfcEnergySequenceEnum_type = new enumeration_type(IfcSchema::Type::IfcEnergySequenceEnum, items); } { std::vector items; items.reserve(8); items.push_back("COMBINEDVALUE"); items.push_back("DISPOSAL"); items.push_back("EXTRACTION"); items.push_back("INSTALLATION"); items.push_back("MANUFACTURE"); items.push_back("NOTDEFINED"); items.push_back("TRANSPORTATION"); items.push_back("USERDEFINED"); IfcEnvironmentalImpactCategoryEnum_type = new enumeration_type(IfcSchema::Type::IfcEnvironmentalImpactCategoryEnum, items); } { std::vector items; items.reserve(11); items.push_back("DIRECTEVAPORATIVEAIRWASHER"); items.push_back("DIRECTEVAPORATIVEPACKAGEDROTARYAIRCOOLER"); items.push_back("DIRECTEVAPORATIVERANDOMMEDIAAIRCOOLER"); items.push_back("DIRECTEVAPORATIVERIGIDMEDIAAIRCOOLER"); items.push_back("DIRECTEVAPORATIVESLINGERSPACKAGEDAIRCOOLER"); items.push_back("INDIRECTDIRECTCOMBINATION"); items.push_back("INDIRECTEVAPORATIVECOOLINGTOWERORCOILCOOLER"); items.push_back("INDIRECTEVAPORATIVEPACKAGEAIRCOOLER"); items.push_back("INDIRECTEVAPORATIVEWETCOIL"); items.push_back("NOTDEFINED"); items.push_back("USERDEFINED"); IfcEvaporativeCoolerTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcEvaporativeCoolerTypeEnum, items); } { std::vector items; items.reserve(7); items.push_back("DIRECTEXPANSIONBRAZEDPLATE"); items.push_back("DIRECTEXPANSIONSHELLANDTUBE"); items.push_back("DIRECTEXPANSIONTUBEINTUBE"); items.push_back("FLOODEDSHELLANDTUBE"); items.push_back("NOTDEFINED"); items.push_back("SHELLANDCOIL"); items.push_back("USERDEFINED"); IfcEvaporatorTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcEvaporatorTypeEnum, items); } { std::vector items; items.reserve(9); items.push_back("CENTRIFUGALAIRFOIL"); items.push_back("CENTRIFUGALBACKWARDINCLINEDCURVED"); items.push_back("CENTRIFUGALFORWARDCURVED"); items.push_back("CENTRIFUGALRADIAL"); items.push_back("NOTDEFINED"); items.push_back("PROPELLORAXIAL"); items.push_back("TUBEAXIAL"); items.push_back("USERDEFINED"); items.push_back("VANEAXIAL"); IfcFanTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcFanTypeEnum, items); } { std::vector items; items.reserve(7); items.push_back("AIRPARTICLEFILTER"); items.push_back("NOTDEFINED"); items.push_back("ODORFILTER"); items.push_back("OILFILTER"); items.push_back("STRAINER"); items.push_back("USERDEFINED"); items.push_back("WATERFILTER"); IfcFilterTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcFilterTypeEnum, items); } { std::vector items; items.reserve(7); items.push_back("BREECHINGINLET"); items.push_back("FIREHYDRANT"); items.push_back("HOSEREEL"); items.push_back("NOTDEFINED"); items.push_back("SPRINKLER"); items.push_back("SPRINKLERDEFLECTOR"); items.push_back("USERDEFINED"); IfcFireSuppressionTerminalTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcFireSuppressionTerminalTypeEnum, items); } { std::vector items; items.reserve(4); items.push_back("NOTDEFINED"); items.push_back("SINK"); items.push_back("SOURCE"); items.push_back("SOURCEANDSINK"); IfcFlowDirectionEnum_type = new enumeration_type(IfcSchema::Type::IfcFlowDirectionEnum, items); } { std::vector items; items.reserve(10); items.push_back("AMMETER"); items.push_back("FREQUENCYMETER"); items.push_back("NOTDEFINED"); items.push_back("PHASEANGLEMETER"); items.push_back("POWERFACTORMETER"); items.push_back("PRESSUREGAUGE"); items.push_back("THERMOMETER"); items.push_back("USERDEFINED"); items.push_back("VOLTMETER_PEAK"); items.push_back("VOLTMETER_RMS"); IfcFlowInstrumentTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcFlowInstrumentTypeEnum, items); } { std::vector items; items.reserve(8); items.push_back("ELECTRICMETER"); items.push_back("ENERGYMETER"); items.push_back("FLOWMETER"); items.push_back("GASMETER"); items.push_back("NOTDEFINED"); items.push_back("OILMETER"); items.push_back("USERDEFINED"); items.push_back("WATERMETER"); IfcFlowMeterTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcFlowMeterTypeEnum, items); } { std::vector items; items.reserve(6); items.push_back("FOOTING_BEAM"); items.push_back("NOTDEFINED"); items.push_back("PAD_FOOTING"); items.push_back("PILE_CAP"); items.push_back("STRIP_FOOTING"); items.push_back("USERDEFINED"); IfcFootingTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcFootingTypeEnum, items); } { std::vector items; items.reserve(5); items.push_back("GASAPPLIANCE"); items.push_back("GASBOOSTER"); items.push_back("GASBURNER"); items.push_back("NOTDEFINED"); items.push_back("USERDEFINED"); IfcGasTerminalTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcGasTerminalTypeEnum, items); } { std::vector items; items.reserve(9); items.push_back("ELEVATION_VIEW"); items.push_back("GRAPH_VIEW"); items.push_back("MODEL_VIEW"); items.push_back("NOTDEFINED"); items.push_back("PLAN_VIEW"); items.push_back("REFLECTED_PLAN_VIEW"); items.push_back("SECTION_VIEW"); items.push_back("SKETCH_VIEW"); items.push_back("USERDEFINED"); IfcGeometricProjectionEnum_type = new enumeration_type(IfcSchema::Type::IfcGeometricProjectionEnum, items); } { std::vector items; items.reserve(2); items.push_back("GLOBAL_COORDS"); items.push_back("LOCAL_COORDS"); IfcGlobalOrLocalEnum_type = new enumeration_type(IfcSchema::Type::IfcGlobalOrLocalEnum, items); } { std::vector items; items.reserve(4); items.push_back("NOTDEFINED"); items.push_back("PLATE"); items.push_back("SHELLANDTUBE"); items.push_back("USERDEFINED"); IfcHeatExchangerTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcHeatExchangerTypeEnum, items); } { std::vector items; items.reserve(15); items.push_back("ADIABATICAIRWASHER"); items.push_back("ADIABATICATOMIZING"); items.push_back("ADIABATICCOMPRESSEDAIRNOZZLE"); items.push_back("ADIABATICPAN"); items.push_back("ADIABATICRIGIDMEDIA"); items.push_back("ADIABATICULTRASONIC"); items.push_back("ADIABATICWETTEDELEMENT"); items.push_back("ASSISTEDBUTANE"); items.push_back("ASSISTEDELECTRIC"); items.push_back("ASSISTEDNATURALGAS"); items.push_back("ASSISTEDPROPANE"); items.push_back("ASSISTEDSTEAM"); items.push_back("NOTDEFINED"); items.push_back("STEAMINJECTION"); items.push_back("USERDEFINED"); IfcHumidifierTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcHumidifierTypeEnum, items); } { std::vector items; items.reserve(3); items.push_back("EXTERNAL"); items.push_back("INTERNAL"); items.push_back("NOTDEFINED"); IfcInternalOrExternalEnum_type = new enumeration_type(IfcSchema::Type::IfcInternalOrExternalEnum, items); } { std::vector items; items.reserve(5); items.push_back("ASSETINVENTORY"); items.push_back("FURNITUREINVENTORY"); items.push_back("NOTDEFINED"); items.push_back("SPACEINVENTORY"); items.push_back("USERDEFINED"); IfcInventoryTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcInventoryTypeEnum, items); } { std::vector items; items.reserve(2); items.push_back("NOTDEFINED"); items.push_back("USERDEFINED"); IfcJunctionBoxTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcJunctionBoxTypeEnum, items); } { std::vector items; items.reserve(8); items.push_back("COMPACTFLUORESCENT"); items.push_back("FLUORESCENT"); items.push_back("HIGHPRESSUREMERCURY"); items.push_back("HIGHPRESSURESODIUM"); items.push_back("METALHALIDE"); items.push_back("NOTDEFINED"); items.push_back("TUNGSTENFILAMENT"); items.push_back("USERDEFINED"); IfcLampTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcLampTypeEnum, items); } { std::vector items; items.reserve(3); items.push_back("AXIS1"); items.push_back("AXIS2"); items.push_back("AXIS3"); IfcLayerSetDirectionEnum_type = new enumeration_type(IfcSchema::Type::IfcLayerSetDirectionEnum, items); } { std::vector items; items.reserve(4); items.push_back("NOTDEFINED"); items.push_back("TYPE_A"); items.push_back("TYPE_B"); items.push_back("TYPE_C"); IfcLightDistributionCurveEnum_type = new enumeration_type(IfcSchema::Type::IfcLightDistributionCurveEnum, items); } { std::vector items; items.reserve(11); items.push_back("COMPACTFLUORESCENT"); items.push_back("FLUORESCENT"); items.push_back("HIGHPRESSUREMERCURY"); items.push_back("HIGHPRESSURESODIUM"); items.push_back("LIGHTEMITTINGDIODE"); items.push_back("LOWPRESSURESODIUM"); items.push_back("LOWVOLTAGEHALOGEN"); items.push_back("MAINVOLTAGEHALOGEN"); items.push_back("METALHALIDE"); items.push_back("NOTDEFINED"); items.push_back("TUNGSTENFILAMENT"); IfcLightEmissionSourceEnum_type = new enumeration_type(IfcSchema::Type::IfcLightEmissionSourceEnum, items); } { std::vector items; items.reserve(4); items.push_back("DIRECTIONSOURCE"); items.push_back("NOTDEFINED"); items.push_back("POINTSOURCE"); items.push_back("USERDEFINED"); IfcLightFixtureTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcLightFixtureTypeEnum, items); } { std::vector items; items.reserve(6); items.push_back("LOAD_CASE"); items.push_back("LOAD_COMBINATION"); items.push_back("LOAD_COMBINATION_GROUP"); items.push_back("LOAD_GROUP"); items.push_back("NOTDEFINED"); items.push_back("USERDEFINED"); IfcLoadGroupTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcLoadGroupTypeEnum, items); } { std::vector items; items.reserve(2); items.push_back("LOGICALAND"); items.push_back("LOGICALOR"); IfcLogicalOperatorEnum_type = new enumeration_type(IfcSchema::Type::IfcLogicalOperatorEnum, items); } { std::vector items; items.reserve(14); items.push_back("BRACE"); items.push_back("CHORD"); items.push_back("COLLAR"); items.push_back("MEMBER"); items.push_back("MULLION"); items.push_back("NOTDEFINED"); items.push_back("PLATE"); items.push_back("POST"); items.push_back("PURLIN"); items.push_back("RAFTER"); items.push_back("STRINGER"); items.push_back("STRUT"); items.push_back("STUD"); items.push_back("USERDEFINED"); IfcMemberTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcMemberTypeEnum, items); } { std::vector items; items.reserve(5); items.push_back("BELTDRIVE"); items.push_back("COUPLING"); items.push_back("DIRECTDRIVE"); items.push_back("NOTDEFINED"); items.push_back("USERDEFINED"); IfcMotorConnectionTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcMotorConnectionTypeEnum, items); } { std::vector items; items.reserve(1); items.push_back("NULL"); IfcNullStyle_type = new enumeration_type(IfcSchema::Type::IfcNullStyle, items); } { std::vector items; items.reserve(8); items.push_back("ACTOR"); items.push_back("CONTROL"); items.push_back("GROUP"); items.push_back("NOTDEFINED"); items.push_back("PROCESS"); items.push_back("PRODUCT"); items.push_back("PROJECT"); items.push_back("RESOURCE"); IfcObjectTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcObjectTypeEnum, items); } { std::vector items; items.reserve(8); items.push_back("CODECOMPLIANCE"); items.push_back("DESIGNINTENT"); items.push_back("HEALTHANDSAFETY"); items.push_back("NOTDEFINED"); items.push_back("REQUIREMENT"); items.push_back("SPECIFICATION"); items.push_back("TRIGGERCONDITION"); items.push_back("USERDEFINED"); IfcObjectiveEnum_type = new enumeration_type(IfcSchema::Type::IfcObjectiveEnum, items); } { std::vector items; items.reserve(9); items.push_back("ASSIGNEE"); items.push_back("ASSIGNOR"); items.push_back("LESSEE"); items.push_back("LESSOR"); items.push_back("LETTINGAGENT"); items.push_back("NOTDEFINED"); items.push_back("OWNER"); items.push_back("TENANT"); items.push_back("USERDEFINED"); IfcOccupantTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcOccupantTypeEnum, items); } { std::vector items; items.reserve(5); items.push_back("AUDIOVISUALOUTLET"); items.push_back("COMMUNICATIONSOUTLET"); items.push_back("NOTDEFINED"); items.push_back("POWEROUTLET"); items.push_back("USERDEFINED"); IfcOutletTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcOutletTypeEnum, items); } { std::vector items; items.reserve(5); items.push_back("GRILL"); items.push_back("LOUVER"); items.push_back("NOTDEFINED"); items.push_back("SCREEN"); items.push_back("USERDEFINED"); IfcPermeableCoveringOperationEnum_type = new enumeration_type(IfcSchema::Type::IfcPermeableCoveringOperationEnum, items); } { std::vector items; items.reserve(3); items.push_back("NOTDEFINED"); items.push_back("PHYSICAL"); items.push_back("VIRTUAL"); IfcPhysicalOrVirtualEnum_type = new enumeration_type(IfcSchema::Type::IfcPhysicalOrVirtualEnum, items); } { std::vector items; items.reserve(6); items.push_back("CAST_IN_PLACE"); items.push_back("COMPOSITE"); items.push_back("NOTDEFINED"); items.push_back("PRECAST_CONCRETE"); items.push_back("PREFAB_STEEL"); items.push_back("USERDEFINED"); IfcPileConstructionEnum_type = new enumeration_type(IfcSchema::Type::IfcPileConstructionEnum, items); } { std::vector items; items.reserve(5); items.push_back("COHESION"); items.push_back("FRICTION"); items.push_back("NOTDEFINED"); items.push_back("SUPPORT"); items.push_back("USERDEFINED"); IfcPileTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcPileTypeEnum, items); } { std::vector items; items.reserve(9); items.push_back("BEND"); items.push_back("CONNECTOR"); items.push_back("ENTRY"); items.push_back("EXIT"); items.push_back("JUNCTION"); items.push_back("NOTDEFINED"); items.push_back("OBSTRUCTION"); items.push_back("TRANSITION"); items.push_back("USERDEFINED"); IfcPipeFittingTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcPipeFittingTypeEnum, items); } { std::vector items; items.reserve(6); items.push_back("FLEXIBLESEGMENT"); items.push_back("GUTTER"); items.push_back("NOTDEFINED"); items.push_back("RIGIDSEGMENT"); items.push_back("SPOOL"); items.push_back("USERDEFINED"); IfcPipeSegmentTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcPipeSegmentTypeEnum, items); } { std::vector items; items.reserve(4); items.push_back("CURTAIN_PANEL"); items.push_back("NOTDEFINED"); items.push_back("SHEET"); items.push_back("USERDEFINED"); IfcPlateTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcPlateTypeEnum, items); } { std::vector items; items.reserve(9); items.push_back("ADVICE_CAUTION"); items.push_back("ADVICE_NOTE"); items.push_back("ADVICE_WARNING"); items.push_back("CALIBRATION"); items.push_back("DIAGNOSTIC"); items.push_back("NOTDEFINED"); items.push_back("SHUTDOWN"); items.push_back("STARTUP"); items.push_back("USERDEFINED"); IfcProcedureTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcProcedureTypeEnum, items); } { std::vector items; items.reserve(2); items.push_back("AREA"); items.push_back("CURVE"); IfcProfileTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcProfileTypeEnum, items); } { std::vector items; items.reserve(7); items.push_back("CHANGE"); items.push_back("MAINTENANCE"); items.push_back("MOVE"); items.push_back("NOTDEFINED"); items.push_back("PURCHASE"); items.push_back("USERDEFINED"); items.push_back("WORK"); IfcProjectOrderRecordTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcProjectOrderRecordTypeEnum, items); } { std::vector items; items.reserve(7); items.push_back("CHANGEORDER"); items.push_back("MAINTENANCEWORKORDER"); items.push_back("MOVEORDER"); items.push_back("NOTDEFINED"); items.push_back("PURCHASEORDER"); items.push_back("USERDEFINED"); items.push_back("WORKORDER"); IfcProjectOrderTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcProjectOrderTypeEnum, items); } { std::vector items; items.reserve(2); items.push_back("PROJECTED_LENGTH"); items.push_back("TRUE_LENGTH"); IfcProjectedOrTrueLengthEnum_type = new enumeration_type(IfcSchema::Type::IfcProjectedOrTrueLengthEnum, items); } { std::vector items; items.reserve(9); items.push_back("ASBUILT"); items.push_back("COMMISSIONING"); items.push_back("DESIGN"); items.push_back("DESIGNMAXIMUM"); items.push_back("DESIGNMINIMUM"); items.push_back("MEASURED"); items.push_back("NOTKNOWN"); items.push_back("SIMULATED"); items.push_back("USERDEFINED"); IfcPropertySourceEnum_type = new enumeration_type(IfcSchema::Type::IfcPropertySourceEnum, items); } { std::vector items; items.reserve(8); items.push_back("CIRCUITBREAKER"); items.push_back("EARTHFAILUREDEVICE"); items.push_back("FUSEDISCONNECTOR"); items.push_back("NOTDEFINED"); items.push_back("RESIDUALCURRENTCIRCUITBREAKER"); items.push_back("RESIDUALCURRENTSWITCH"); items.push_back("USERDEFINED"); items.push_back("VARISTOR"); IfcProtectiveDeviceTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcProtectiveDeviceTypeEnum, items); } { std::vector items; items.reserve(7); items.push_back("CIRCULATOR"); items.push_back("ENDSUCTION"); items.push_back("NOTDEFINED"); items.push_back("SPLITCASE"); items.push_back("USERDEFINED"); items.push_back("VERTICALINLINE"); items.push_back("VERTICALTURBINE"); IfcPumpTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcPumpTypeEnum, items); } { std::vector items; items.reserve(5); items.push_back("BALUSTRADE"); items.push_back("GUARDRAIL"); items.push_back("HANDRAIL"); items.push_back("NOTDEFINED"); items.push_back("USERDEFINED"); IfcRailingTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcRailingTypeEnum, items); } { std::vector items; items.reserve(4); items.push_back("NOTDEFINED"); items.push_back("SPIRAL"); items.push_back("STRAIGHT"); items.push_back("USERDEFINED"); IfcRampFlightTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcRampFlightTypeEnum, items); } { std::vector items; items.reserve(8); items.push_back("HALF_TURN_RAMP"); items.push_back("NOTDEFINED"); items.push_back("QUARTER_TURN_RAMP"); items.push_back("SPIRAL_RAMP"); items.push_back("STRAIGHT_RUN_RAMP"); items.push_back("TWO_QUARTER_TURN_RAMP"); items.push_back("TWO_STRAIGHT_RUN_RAMP"); items.push_back("USERDEFINED"); IfcRampTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcRampTypeEnum, items); } { std::vector items; items.reserve(10); items.push_back("BLINN"); items.push_back("FLAT"); items.push_back("GLASS"); items.push_back("MATT"); items.push_back("METAL"); items.push_back("MIRROR"); items.push_back("NOTDEFINED"); items.push_back("PHONG"); items.push_back("PLASTIC"); items.push_back("STRAUSS"); IfcReflectanceMethodEnum_type = new enumeration_type(IfcSchema::Type::IfcReflectanceMethodEnum, items); } { std::vector items; items.reserve(9); items.push_back("EDGE"); items.push_back("LIGATURE"); items.push_back("MAIN"); items.push_back("NOTDEFINED"); items.push_back("PUNCHING"); items.push_back("RING"); items.push_back("SHEAR"); items.push_back("STUD"); items.push_back("USERDEFINED"); IfcReinforcingBarRoleEnum_type = new enumeration_type(IfcSchema::Type::IfcReinforcingBarRoleEnum, items); } { std::vector items; items.reserve(2); items.push_back("PLAIN"); items.push_back("TEXTURED"); IfcReinforcingBarSurfaceEnum_type = new enumeration_type(IfcSchema::Type::IfcReinforcingBarSurfaceEnum, items); } { std::vector items; items.reserve(8); items.push_back("CONSUMED"); items.push_back("NOTCONSUMED"); items.push_back("NOTDEFINED"); items.push_back("NOTOCCUPIED"); items.push_back("OCCUPIED"); items.push_back("PARTIALLYCONSUMED"); items.push_back("PARTIALLYOCCUPIED"); items.push_back("USERDEFINED"); IfcResourceConsumptionEnum_type = new enumeration_type(IfcSchema::Type::IfcResourceConsumptionEnum, items); } { std::vector items; items.reserve(2); items.push_back("DIRECTION_X"); items.push_back("DIRECTION_Y"); IfcRibPlateDirectionEnum_type = new enumeration_type(IfcSchema::Type::IfcRibPlateDirectionEnum, items); } { std::vector items; items.reserve(23); items.push_back("ARCHITECT"); items.push_back("BUILDINGOPERATOR"); items.push_back("BUILDINGOWNER"); items.push_back("CIVILENGINEER"); items.push_back("CLIENT"); items.push_back("COMISSIONINGENGINEER"); items.push_back("CONSTRUCTIONMANAGER"); items.push_back("CONSULTANT"); items.push_back("CONTRACTOR"); items.push_back("COSTENGINEER"); items.push_back("ELECTRICALENGINEER"); items.push_back("ENGINEER"); items.push_back("FACILITIESMANAGER"); items.push_back("FIELDCONSTRUCTIONMANAGER"); items.push_back("MANUFACTURER"); items.push_back("MECHANICALENGINEER"); items.push_back("OWNER"); items.push_back("PROJECTMANAGER"); items.push_back("RESELLER"); items.push_back("STRUCTURALENGINEER"); items.push_back("SUBCONTRACTOR"); items.push_back("SUPPLIER"); items.push_back("USERDEFINED"); IfcRoleEnum_type = new enumeration_type(IfcSchema::Type::IfcRoleEnum, items); } { std::vector items; items.reserve(14); items.push_back("BARREL_ROOF"); items.push_back("BUTTERFLY_ROOF"); items.push_back("DOME_ROOF"); items.push_back("FLAT_ROOF"); items.push_back("FREEFORM"); items.push_back("GABLE_ROOF"); items.push_back("GAMBREL_ROOF"); items.push_back("HIPPED_GABLE_ROOF"); items.push_back("HIP_ROOF"); items.push_back("MANSARD_ROOF"); items.push_back("NOTDEFINED"); items.push_back("PAVILION_ROOF"); items.push_back("RAINBOW_ROOF"); items.push_back("SHED_ROOF"); IfcRoofTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcRoofTypeEnum, items); } { std::vector items; items.reserve(16); items.push_back("ATTO"); items.push_back("CENTI"); items.push_back("DECA"); items.push_back("DECI"); items.push_back("EXA"); items.push_back("FEMTO"); items.push_back("GIGA"); items.push_back("HECTO"); items.push_back("KILO"); items.push_back("MEGA"); items.push_back("MICRO"); items.push_back("MILLI"); items.push_back("NANO"); items.push_back("PETA"); items.push_back("PICO"); items.push_back("TERA"); IfcSIPrefix_type = new enumeration_type(IfcSchema::Type::IfcSIPrefix, items); } { std::vector items; items.reserve(30); items.push_back("AMPERE"); items.push_back("BECQUEREL"); items.push_back("CANDELA"); items.push_back("COULOMB"); items.push_back("CUBIC_METRE"); items.push_back("DEGREE_CELSIUS"); items.push_back("FARAD"); items.push_back("GRAM"); items.push_back("GRAY"); items.push_back("HENRY"); items.push_back("HERTZ"); items.push_back("JOULE"); items.push_back("KELVIN"); items.push_back("LUMEN"); items.push_back("LUX"); items.push_back("METRE"); items.push_back("MOLE"); items.push_back("NEWTON"); items.push_back("OHM"); items.push_back("PASCAL"); items.push_back("RADIAN"); items.push_back("SECOND"); items.push_back("SIEMENS"); items.push_back("SIEVERT"); items.push_back("SQUARE_METRE"); items.push_back("STERADIAN"); items.push_back("TESLA"); items.push_back("VOLT"); items.push_back("WATT"); items.push_back("WEBER"); IfcSIUnitName_type = new enumeration_type(IfcSchema::Type::IfcSIUnitName, items); } { std::vector items; items.reserve(12); items.push_back("BATH"); items.push_back("BIDET"); items.push_back("CISTERN"); items.push_back("NOTDEFINED"); items.push_back("SANITARYFOUNTAIN"); items.push_back("SHOWER"); items.push_back("SINK"); items.push_back("TOILETPAN"); items.push_back("URINAL"); items.push_back("USERDEFINED"); items.push_back("WASHHANDBASIN"); items.push_back("WCSEAT"); IfcSanitaryTerminalTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcSanitaryTerminalTypeEnum, items); } { std::vector items; items.reserve(2); items.push_back("TAPERED"); items.push_back("UNIFORM"); IfcSectionTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcSectionTypeEnum, items); } { std::vector items; items.reserve(15); items.push_back("CO2SENSOR"); items.push_back("FIRESENSOR"); items.push_back("FLOWSENSOR"); items.push_back("GASSENSOR"); items.push_back("HEATSENSOR"); items.push_back("HUMIDITYSENSOR"); items.push_back("LIGHTSENSOR"); items.push_back("MOISTURESENSOR"); items.push_back("MOVEMENTSENSOR"); items.push_back("NOTDEFINED"); items.push_back("PRESSURESENSOR"); items.push_back("SMOKESENSOR"); items.push_back("SOUNDSENSOR"); items.push_back("TEMPERATURESENSOR"); items.push_back("USERDEFINED"); IfcSensorTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcSensorTypeEnum, items); } { std::vector items; items.reserve(5); items.push_back("FINISH_FINISH"); items.push_back("FINISH_START"); items.push_back("NOTDEFINED"); items.push_back("START_FINISH"); items.push_back("START_START"); IfcSequenceEnum_type = new enumeration_type(IfcSchema::Type::IfcSequenceEnum, items); } { std::vector items; items.reserve(9); items.push_back("A_QUALITYOFCOMPONENTS"); items.push_back("B_DESIGNLEVEL"); items.push_back("C_WORKEXECUTIONLEVEL"); items.push_back("D_INDOORENVIRONMENT"); items.push_back("E_OUTDOORENVIRONMENT"); items.push_back("F_INUSECONDITIONS"); items.push_back("G_MAINTENANCELEVEL"); items.push_back("NOTDEFINED"); items.push_back("USERDEFINED"); IfcServiceLifeFactorTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcServiceLifeFactorTypeEnum, items); } { std::vector items; items.reserve(5); items.push_back("ACTUALSERVICELIFE"); items.push_back("EXPECTEDSERVICELIFE"); items.push_back("OPTIMISTICREFERENCESERVICELIFE"); items.push_back("PESSIMISTICREFERENCESERVICELIFE"); items.push_back("REFERENCESERVICELIFE"); IfcServiceLifeTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcServiceLifeTypeEnum, items); } { std::vector items; items.reserve(6); items.push_back("BASESLAB"); items.push_back("FLOOR"); items.push_back("LANDING"); items.push_back("NOTDEFINED"); items.push_back("ROOF"); items.push_back("USERDEFINED"); IfcSlabTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcSlabTypeEnum, items); } { std::vector items; items.reserve(7); items.push_back("DBA"); items.push_back("DBB"); items.push_back("DBC"); items.push_back("NC"); items.push_back("NOTDEFINED"); items.push_back("NR"); items.push_back("USERDEFINED"); IfcSoundScaleEnum_type = new enumeration_type(IfcSchema::Type::IfcSoundScaleEnum, items); } { std::vector items; items.reserve(9); items.push_back("BASEBOARDHEATER"); items.push_back("CONVECTOR"); items.push_back("FINNEDTUBEUNIT"); items.push_back("NOTDEFINED"); items.push_back("PANELRADIATOR"); items.push_back("SECTIONALRADIATOR"); items.push_back("TUBULARRADIATOR"); items.push_back("UNITHEATER"); items.push_back("USERDEFINED"); IfcSpaceHeaterTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcSpaceHeaterTypeEnum, items); } { std::vector items; items.reserve(2); items.push_back("NOTDEFINED"); items.push_back("USERDEFINED"); IfcSpaceTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcSpaceTypeEnum, items); } { std::vector items; items.reserve(5); items.push_back("BIRDCAGE"); items.push_back("COWL"); items.push_back("NOTDEFINED"); items.push_back("RAINWATERHOPPER"); items.push_back("USERDEFINED"); IfcStackTerminalTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcStackTerminalTypeEnum, items); } { std::vector items; items.reserve(7); items.push_back("CURVED"); items.push_back("FREEFORM"); items.push_back("NOTDEFINED"); items.push_back("SPIRAL"); items.push_back("STRAIGHT"); items.push_back("USERDEFINED"); items.push_back("WINDER"); IfcStairFlightTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcStairFlightTypeEnum, items); } { std::vector items; items.reserve(16); items.push_back("CURVED_RUN_STAIR"); items.push_back("DOUBLE_RETURN_STAIR"); items.push_back("HALF_TURN_STAIR"); items.push_back("HALF_WINDING_STAIR"); items.push_back("NOTDEFINED"); items.push_back("QUARTER_TURN_STAIR"); items.push_back("QUARTER_WINDING_STAIR"); items.push_back("SPIRAL_STAIR"); items.push_back("STRAIGHT_RUN_STAIR"); items.push_back("THREE_QUARTER_TURN_STAIR"); items.push_back("THREE_QUARTER_WINDING_STAIR"); items.push_back("TWO_CURVED_RUN_STAIR"); items.push_back("TWO_QUARTER_TURN_STAIR"); items.push_back("TWO_QUARTER_WINDING_STAIR"); items.push_back("TWO_STRAIGHT_RUN_STAIR"); items.push_back("USERDEFINED"); IfcStairTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcStairTypeEnum, items); } { std::vector items; items.reserve(5); items.push_back("LOCKED"); items.push_back("READONLY"); items.push_back("READONLYLOCKED"); items.push_back("READWRITE"); items.push_back("READWRITELOCKED"); IfcStateEnum_type = new enumeration_type(IfcSchema::Type::IfcStateEnum, items); } { std::vector items; items.reserve(7); items.push_back("CABLE"); items.push_back("COMPRESSION_MEMBER"); items.push_back("NOTDEFINED"); items.push_back("PIN_JOINED_MEMBER"); items.push_back("RIGID_JOINED_MEMBER"); items.push_back("TENSION_MEMBER"); items.push_back("USERDEFINED"); IfcStructuralCurveTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcStructuralCurveTypeEnum, items); } { std::vector items; items.reserve(5); items.push_back("BENDING_ELEMENT"); items.push_back("MEMBRANE_ELEMENT"); items.push_back("NOTDEFINED"); items.push_back("SHELL"); items.push_back("USERDEFINED"); IfcStructuralSurfaceTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcStructuralSurfaceTypeEnum, items); } { std::vector items; items.reserve(3); items.push_back("BOTH"); items.push_back("NEGATIVE"); items.push_back("POSITIVE"); IfcSurfaceSide_type = new enumeration_type(IfcSchema::Type::IfcSurfaceSide, items); } { std::vector items; items.reserve(9); items.push_back("BUMP"); items.push_back("NOTDEFINED"); items.push_back("OPACITY"); items.push_back("REFLECTION"); items.push_back("SELFILLUMINATION"); items.push_back("SHININESS"); items.push_back("SPECULAR"); items.push_back("TEXTURE"); items.push_back("TRANSPARENCYMAP"); IfcSurfaceTextureEnum_type = new enumeration_type(IfcSchema::Type::IfcSurfaceTextureEnum, items); } { std::vector items; items.reserve(7); items.push_back("CONTACTOR"); items.push_back("EMERGENCYSTOP"); items.push_back("NOTDEFINED"); items.push_back("STARTER"); items.push_back("SWITCHDISCONNECTOR"); items.push_back("TOGGLESWITCH"); items.push_back("USERDEFINED"); IfcSwitchingDeviceTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcSwitchingDeviceTypeEnum, items); } { std::vector items; items.reserve(6); items.push_back("EXPANSION"); items.push_back("NOTDEFINED"); items.push_back("PREFORMED"); items.push_back("PRESSUREVESSEL"); items.push_back("SECTIONAL"); items.push_back("USERDEFINED"); IfcTankTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcTankTypeEnum, items); } { std::vector items; items.reserve(6); items.push_back("BAR"); items.push_back("COATED"); items.push_back("NOTDEFINED"); items.push_back("STRAND"); items.push_back("USERDEFINED"); items.push_back("WIRE"); IfcTendonTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcTendonTypeEnum, items); } { std::vector items; items.reserve(4); items.push_back("DOWN"); items.push_back("LEFT"); items.push_back("RIGHT"); items.push_back("UP"); IfcTextPath_type = new enumeration_type(IfcSchema::Type::IfcTextPath, items); } { std::vector items; items.reserve(13); items.push_back("AIREXCHANGERATE"); items.push_back("DRYBULBTEMPERATURE"); items.push_back("EQUIPMENT"); items.push_back("EXHAUSTAIR"); items.push_back("INFILTRATION"); items.push_back("LIGHTING"); items.push_back("NOTDEFINED"); items.push_back("PEOPLE"); items.push_back("RECIRCULATEDAIR"); items.push_back("RELATIVEHUMIDITY"); items.push_back("USERDEFINED"); items.push_back("VENTILATIONINDOORAIR"); items.push_back("VENTILATIONOUTSIDEAIR"); IfcThermalLoadSourceEnum_type = new enumeration_type(IfcSchema::Type::IfcThermalLoadSourceEnum, items); } { std::vector items; items.reserve(4); items.push_back("LATENT"); items.push_back("NOTDEFINED"); items.push_back("RADIANT"); items.push_back("SENSIBLE"); IfcThermalLoadTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcThermalLoadTypeEnum, items); } { std::vector items; items.reserve(7); items.push_back("CONTINUOUS"); items.push_back("DISCRETE"); items.push_back("DISCRETEBINARY"); items.push_back("NOTDEFINED"); items.push_back("PIECEWISEBINARY"); items.push_back("PIECEWISECONSTANT"); items.push_back("PIECEWISECONTINUOUS"); IfcTimeSeriesDataTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcTimeSeriesDataTypeEnum, items); } { std::vector items; items.reserve(6); items.push_back("ANNUAL"); items.push_back("DAILY"); items.push_back("MONTHLY"); items.push_back("NOTDEFINED"); items.push_back("USERDEFINED"); items.push_back("WEEKLY"); IfcTimeSeriesScheduleTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcTimeSeriesScheduleTypeEnum, items); } { std::vector items; items.reserve(5); items.push_back("CURRENT"); items.push_back("FREQUENCY"); items.push_back("NOTDEFINED"); items.push_back("USERDEFINED"); items.push_back("VOLTAGE"); IfcTransformerTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcTransformerTypeEnum, items); } { std::vector items; items.reserve(4); items.push_back("CONTINUOUS"); items.push_back("CONTSAMEGRADIENT"); items.push_back("CONTSAMEGRADIENTSAMECURVATURE"); items.push_back("DISCONTINUOUS"); IfcTransitionCode_type = new enumeration_type(IfcSchema::Type::IfcTransitionCode, items); } { std::vector items; items.reserve(5); items.push_back("ELEVATOR"); items.push_back("ESCALATOR"); items.push_back("MOVINGWALKWAY"); items.push_back("NOTDEFINED"); items.push_back("USERDEFINED"); IfcTransportElementTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcTransportElementTypeEnum, items); } { std::vector items; items.reserve(3); items.push_back("CARTESIAN"); items.push_back("PARAMETER"); items.push_back("UNSPECIFIED"); IfcTrimmingPreference_type = new enumeration_type(IfcSchema::Type::IfcTrimmingPreference, items); } { std::vector items; items.reserve(3); items.push_back("FINNED"); items.push_back("NOTDEFINED"); items.push_back("USERDEFINED"); IfcTubeBundleTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcTubeBundleTypeEnum, items); } { std::vector items; items.reserve(30); items.push_back("ABSORBEDDOSEUNIT"); items.push_back("AMOUNTOFSUBSTANCEUNIT"); items.push_back("AREAUNIT"); items.push_back("DOSEEQUIVALENTUNIT"); items.push_back("ELECTRICCAPACITANCEUNIT"); items.push_back("ELECTRICCHARGEUNIT"); items.push_back("ELECTRICCONDUCTANCEUNIT"); items.push_back("ELECTRICCURRENTUNIT"); items.push_back("ELECTRICRESISTANCEUNIT"); items.push_back("ELECTRICVOLTAGEUNIT"); items.push_back("ENERGYUNIT"); items.push_back("FORCEUNIT"); items.push_back("FREQUENCYUNIT"); items.push_back("ILLUMINANCEUNIT"); items.push_back("INDUCTANCEUNIT"); items.push_back("LENGTHUNIT"); items.push_back("LUMINOUSFLUXUNIT"); items.push_back("LUMINOUSINTENSITYUNIT"); items.push_back("MAGNETICFLUXDENSITYUNIT"); items.push_back("MAGNETICFLUXUNIT"); items.push_back("MASSUNIT"); items.push_back("PLANEANGLEUNIT"); items.push_back("POWERUNIT"); items.push_back("PRESSUREUNIT"); items.push_back("RADIOACTIVITYUNIT"); items.push_back("SOLIDANGLEUNIT"); items.push_back("THERMODYNAMICTEMPERATUREUNIT"); items.push_back("TIMEUNIT"); items.push_back("USERDEFINED"); items.push_back("VOLUMEUNIT"); IfcUnitEnum_type = new enumeration_type(IfcSchema::Type::IfcUnitEnum, items); } { std::vector items; items.reserve(6); items.push_back("AIRCONDITIONINGUNIT"); items.push_back("AIRHANDLER"); items.push_back("NOTDEFINED"); items.push_back("ROOFTOPUNIT"); items.push_back("SPLITSYSTEM"); items.push_back("USERDEFINED"); IfcUnitaryEquipmentTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcUnitaryEquipmentTypeEnum, items); } { std::vector items; items.reserve(23); items.push_back("AIRRELEASE"); items.push_back("ANTIVACUUM"); items.push_back("CHANGEOVER"); items.push_back("CHECK"); items.push_back("COMMISSIONING"); items.push_back("DIVERTING"); items.push_back("DOUBLECHECK"); items.push_back("DOUBLEREGULATING"); items.push_back("DRAWOFFCOCK"); items.push_back("FAUCET"); items.push_back("FLUSHING"); items.push_back("GASCOCK"); items.push_back("GASTAP"); items.push_back("ISOLATING"); items.push_back("MIXING"); items.push_back("NOTDEFINED"); items.push_back("PRESSUREREDUCING"); items.push_back("PRESSURERELIEF"); items.push_back("REGULATING"); items.push_back("SAFETYCUTOFF"); items.push_back("STEAMTRAP"); items.push_back("STOPCOCK"); items.push_back("USERDEFINED"); IfcValveTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcValveTypeEnum, items); } { std::vector items; items.reserve(4); items.push_back("COMPRESSION"); items.push_back("NOTDEFINED"); items.push_back("SPRING"); items.push_back("USERDEFINED"); IfcVibrationIsolatorTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcVibrationIsolatorTypeEnum, items); } { std::vector items; items.reserve(7); items.push_back("ELEMENTEDWALL"); items.push_back("NOTDEFINED"); items.push_back("PLUMBINGWALL"); items.push_back("POLYGONAL"); items.push_back("SHEAR"); items.push_back("STANDARD"); items.push_back("USERDEFINED"); IfcWallTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcWallTypeEnum, items); } { std::vector items; items.reserve(12); items.push_back("FLOORTRAP"); items.push_back("FLOORWASTE"); items.push_back("GREASEINTERCEPTOR"); items.push_back("GULLYSUMP"); items.push_back("GULLYTRAP"); items.push_back("NOTDEFINED"); items.push_back("OILINTERCEPTOR"); items.push_back("PETROLINTERCEPTOR"); items.push_back("ROOFDRAIN"); items.push_back("USERDEFINED"); items.push_back("WASTEDISPOSALUNIT"); items.push_back("WASTETRAP"); IfcWasteTerminalTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcWasteTerminalTypeEnum, items); } { std::vector items; items.reserve(14); items.push_back("BOTTOMHUNG"); items.push_back("FIXEDCASEMENT"); items.push_back("NOTDEFINED"); items.push_back("OTHEROPERATION"); items.push_back("PIVOTHORIZONTAL"); items.push_back("PIVOTVERTICAL"); items.push_back("REMOVABLECASEMENT"); items.push_back("SIDEHUNGLEFTHAND"); items.push_back("SIDEHUNGRIGHTHAND"); items.push_back("SLIDINGHORIZONTAL"); items.push_back("SLIDINGVERTICAL"); items.push_back("TILTANDTURNLEFTHAND"); items.push_back("TILTANDTURNRIGHTHAND"); items.push_back("TOPHUNG"); IfcWindowPanelOperationEnum_type = new enumeration_type(IfcSchema::Type::IfcWindowPanelOperationEnum, items); } { std::vector items; items.reserve(6); items.push_back("BOTTOM"); items.push_back("LEFT"); items.push_back("MIDDLE"); items.push_back("NOTDEFINED"); items.push_back("RIGHT"); items.push_back("TOP"); IfcWindowPanelPositionEnum_type = new enumeration_type(IfcSchema::Type::IfcWindowPanelPositionEnum, items); } { std::vector items; items.reserve(8); items.push_back("ALUMINIUM"); items.push_back("ALUMINIUM_WOOD"); items.push_back("HIGH_GRADE_STEEL"); items.push_back("NOTDEFINED"); items.push_back("OTHER_CONSTRUCTION"); items.push_back("PLASTIC"); items.push_back("STEEL"); items.push_back("WOOD"); IfcWindowStyleConstructionEnum_type = new enumeration_type(IfcSchema::Type::IfcWindowStyleConstructionEnum, items); } { std::vector items; items.reserve(11); items.push_back("DOUBLE_PANEL_HORIZONTAL"); items.push_back("DOUBLE_PANEL_VERTICAL"); items.push_back("NOTDEFINED"); items.push_back("SINGLE_PANEL"); items.push_back("TRIPLE_PANEL_BOTTOM"); items.push_back("TRIPLE_PANEL_HORIZONTAL"); items.push_back("TRIPLE_PANEL_LEFT"); items.push_back("TRIPLE_PANEL_RIGHT"); items.push_back("TRIPLE_PANEL_TOP"); items.push_back("TRIPLE_PANEL_VERTICAL"); items.push_back("USERDEFINED"); IfcWindowStyleOperationEnum_type = new enumeration_type(IfcSchema::Type::IfcWindowStyleOperationEnum, items); } { std::vector items; items.reserve(5); items.push_back("ACTUAL"); items.push_back("BASELINE"); items.push_back("NOTDEFINED"); items.push_back("PLANNED"); items.push_back("USERDEFINED"); IfcWorkControlTypeEnum_type = new enumeration_type(IfcSchema::Type::IfcWorkControlTypeEnum, items); } IfcActorRole_type = new entity(IfcSchema::Type::IfcActorRole, 0); IfcAddress_type = new entity(IfcSchema::Type::IfcAddress, 0); IfcApplication_type = new entity(IfcSchema::Type::IfcApplication, 0); IfcAppliedValue_type = new entity(IfcSchema::Type::IfcAppliedValue, 0); IfcAppliedValueRelationship_type = new entity(IfcSchema::Type::IfcAppliedValueRelationship, 0); IfcApproval_type = new entity(IfcSchema::Type::IfcApproval, 0); IfcApprovalActorRelationship_type = new entity(IfcSchema::Type::IfcApprovalActorRelationship, 0); IfcApprovalPropertyRelationship_type = new entity(IfcSchema::Type::IfcApprovalPropertyRelationship, 0); IfcApprovalRelationship_type = new entity(IfcSchema::Type::IfcApprovalRelationship, 0); IfcBoundaryCondition_type = new entity(IfcSchema::Type::IfcBoundaryCondition, 0); IfcBoundaryEdgeCondition_type = new entity(IfcSchema::Type::IfcBoundaryEdgeCondition, IfcBoundaryCondition_type); IfcBoundaryFaceCondition_type = new entity(IfcSchema::Type::IfcBoundaryFaceCondition, IfcBoundaryCondition_type); IfcBoundaryNodeCondition_type = new entity(IfcSchema::Type::IfcBoundaryNodeCondition, IfcBoundaryCondition_type); IfcBoundaryNodeConditionWarping_type = new entity(IfcSchema::Type::IfcBoundaryNodeConditionWarping, IfcBoundaryNodeCondition_type); IfcCalendarDate_type = new entity(IfcSchema::Type::IfcCalendarDate, 0); IfcClassification_type = new entity(IfcSchema::Type::IfcClassification, 0); IfcClassificationItem_type = new entity(IfcSchema::Type::IfcClassificationItem, 0); IfcClassificationItemRelationship_type = new entity(IfcSchema::Type::IfcClassificationItemRelationship, 0); IfcClassificationNotation_type = new entity(IfcSchema::Type::IfcClassificationNotation, 0); IfcClassificationNotationFacet_type = new entity(IfcSchema::Type::IfcClassificationNotationFacet, 0); IfcColourSpecification_type = new entity(IfcSchema::Type::IfcColourSpecification, 0); IfcConnectionGeometry_type = new entity(IfcSchema::Type::IfcConnectionGeometry, 0); IfcConnectionPointGeometry_type = new entity(IfcSchema::Type::IfcConnectionPointGeometry, IfcConnectionGeometry_type); IfcConnectionPortGeometry_type = new entity(IfcSchema::Type::IfcConnectionPortGeometry, IfcConnectionGeometry_type); IfcConnectionSurfaceGeometry_type = new entity(IfcSchema::Type::IfcConnectionSurfaceGeometry, IfcConnectionGeometry_type); IfcConstraint_type = new entity(IfcSchema::Type::IfcConstraint, 0); IfcConstraintAggregationRelationship_type = new entity(IfcSchema::Type::IfcConstraintAggregationRelationship, 0); IfcConstraintClassificationRelationship_type = new entity(IfcSchema::Type::IfcConstraintClassificationRelationship, 0); IfcConstraintRelationship_type = new entity(IfcSchema::Type::IfcConstraintRelationship, 0); IfcCoordinatedUniversalTimeOffset_type = new entity(IfcSchema::Type::IfcCoordinatedUniversalTimeOffset, 0); IfcCostValue_type = new entity(IfcSchema::Type::IfcCostValue, IfcAppliedValue_type); IfcCurrencyRelationship_type = new entity(IfcSchema::Type::IfcCurrencyRelationship, 0); IfcCurveStyleFont_type = new entity(IfcSchema::Type::IfcCurveStyleFont, 0); IfcCurveStyleFontAndScaling_type = new entity(IfcSchema::Type::IfcCurveStyleFontAndScaling, 0); IfcCurveStyleFontPattern_type = new entity(IfcSchema::Type::IfcCurveStyleFontPattern, 0); IfcDateAndTime_type = new entity(IfcSchema::Type::IfcDateAndTime, 0); IfcDerivedUnit_type = new entity(IfcSchema::Type::IfcDerivedUnit, 0); IfcDerivedUnitElement_type = new entity(IfcSchema::Type::IfcDerivedUnitElement, 0); IfcDimensionalExponents_type = new entity(IfcSchema::Type::IfcDimensionalExponents, 0); IfcDocumentElectronicFormat_type = new entity(IfcSchema::Type::IfcDocumentElectronicFormat, 0); IfcDocumentInformation_type = new entity(IfcSchema::Type::IfcDocumentInformation, 0); IfcDocumentInformationRelationship_type = new entity(IfcSchema::Type::IfcDocumentInformationRelationship, 0); IfcDraughtingCalloutRelationship_type = new entity(IfcSchema::Type::IfcDraughtingCalloutRelationship, 0); IfcEnvironmentalImpactValue_type = new entity(IfcSchema::Type::IfcEnvironmentalImpactValue, IfcAppliedValue_type); IfcExternalReference_type = new entity(IfcSchema::Type::IfcExternalReference, 0); IfcExternallyDefinedHatchStyle_type = new entity(IfcSchema::Type::IfcExternallyDefinedHatchStyle, IfcExternalReference_type); IfcExternallyDefinedSurfaceStyle_type = new entity(IfcSchema::Type::IfcExternallyDefinedSurfaceStyle, IfcExternalReference_type); IfcExternallyDefinedSymbol_type = new entity(IfcSchema::Type::IfcExternallyDefinedSymbol, IfcExternalReference_type); IfcExternallyDefinedTextFont_type = new entity(IfcSchema::Type::IfcExternallyDefinedTextFont, IfcExternalReference_type); IfcGridAxis_type = new entity(IfcSchema::Type::IfcGridAxis, 0); IfcIrregularTimeSeriesValue_type = new entity(IfcSchema::Type::IfcIrregularTimeSeriesValue, 0); IfcLibraryInformation_type = new entity(IfcSchema::Type::IfcLibraryInformation, 0); IfcLibraryReference_type = new entity(IfcSchema::Type::IfcLibraryReference, IfcExternalReference_type); IfcLightDistributionData_type = new entity(IfcSchema::Type::IfcLightDistributionData, 0); IfcLightIntensityDistribution_type = new entity(IfcSchema::Type::IfcLightIntensityDistribution, 0); IfcLocalTime_type = new entity(IfcSchema::Type::IfcLocalTime, 0); IfcMaterial_type = new entity(IfcSchema::Type::IfcMaterial, 0); IfcMaterialClassificationRelationship_type = new entity(IfcSchema::Type::IfcMaterialClassificationRelationship, 0); IfcMaterialLayer_type = new entity(IfcSchema::Type::IfcMaterialLayer, 0); IfcMaterialLayerSet_type = new entity(IfcSchema::Type::IfcMaterialLayerSet, 0); IfcMaterialLayerSetUsage_type = new entity(IfcSchema::Type::IfcMaterialLayerSetUsage, 0); IfcMaterialList_type = new entity(IfcSchema::Type::IfcMaterialList, 0); IfcMaterialProperties_type = new entity(IfcSchema::Type::IfcMaterialProperties, 0); IfcMeasureWithUnit_type = new entity(IfcSchema::Type::IfcMeasureWithUnit, 0); IfcMechanicalMaterialProperties_type = new entity(IfcSchema::Type::IfcMechanicalMaterialProperties, IfcMaterialProperties_type); IfcMechanicalSteelMaterialProperties_type = new entity(IfcSchema::Type::IfcMechanicalSteelMaterialProperties, IfcMechanicalMaterialProperties_type); IfcMetric_type = new entity(IfcSchema::Type::IfcMetric, IfcConstraint_type); IfcMonetaryUnit_type = new entity(IfcSchema::Type::IfcMonetaryUnit, 0); IfcNamedUnit_type = new entity(IfcSchema::Type::IfcNamedUnit, 0); IfcObjectPlacement_type = new entity(IfcSchema::Type::IfcObjectPlacement, 0); IfcObjective_type = new entity(IfcSchema::Type::IfcObjective, IfcConstraint_type); IfcOpticalMaterialProperties_type = new entity(IfcSchema::Type::IfcOpticalMaterialProperties, IfcMaterialProperties_type); IfcOrganization_type = new entity(IfcSchema::Type::IfcOrganization, 0); IfcOrganizationRelationship_type = new entity(IfcSchema::Type::IfcOrganizationRelationship, 0); IfcOwnerHistory_type = new entity(IfcSchema::Type::IfcOwnerHistory, 0); IfcPerson_type = new entity(IfcSchema::Type::IfcPerson, 0); IfcPersonAndOrganization_type = new entity(IfcSchema::Type::IfcPersonAndOrganization, 0); IfcPhysicalQuantity_type = new entity(IfcSchema::Type::IfcPhysicalQuantity, 0); IfcPhysicalSimpleQuantity_type = new entity(IfcSchema::Type::IfcPhysicalSimpleQuantity, IfcPhysicalQuantity_type); IfcPostalAddress_type = new entity(IfcSchema::Type::IfcPostalAddress, IfcAddress_type); IfcPreDefinedItem_type = new entity(IfcSchema::Type::IfcPreDefinedItem, 0); IfcPreDefinedSymbol_type = new entity(IfcSchema::Type::IfcPreDefinedSymbol, IfcPreDefinedItem_type); IfcPreDefinedTerminatorSymbol_type = new entity(IfcSchema::Type::IfcPreDefinedTerminatorSymbol, IfcPreDefinedSymbol_type); IfcPreDefinedTextFont_type = new entity(IfcSchema::Type::IfcPreDefinedTextFont, IfcPreDefinedItem_type); IfcPresentationLayerAssignment_type = new entity(IfcSchema::Type::IfcPresentationLayerAssignment, 0); IfcPresentationLayerWithStyle_type = new entity(IfcSchema::Type::IfcPresentationLayerWithStyle, IfcPresentationLayerAssignment_type); IfcPresentationStyle_type = new entity(IfcSchema::Type::IfcPresentationStyle, 0); IfcPresentationStyleAssignment_type = new entity(IfcSchema::Type::IfcPresentationStyleAssignment, 0); IfcProductRepresentation_type = new entity(IfcSchema::Type::IfcProductRepresentation, 0); IfcProductsOfCombustionProperties_type = new entity(IfcSchema::Type::IfcProductsOfCombustionProperties, IfcMaterialProperties_type); IfcProfileDef_type = new entity(IfcSchema::Type::IfcProfileDef, 0); IfcProfileProperties_type = new entity(IfcSchema::Type::IfcProfileProperties, 0); IfcProperty_type = new entity(IfcSchema::Type::IfcProperty, 0); IfcPropertyConstraintRelationship_type = new entity(IfcSchema::Type::IfcPropertyConstraintRelationship, 0); IfcPropertyDependencyRelationship_type = new entity(IfcSchema::Type::IfcPropertyDependencyRelationship, 0); IfcPropertyEnumeration_type = new entity(IfcSchema::Type::IfcPropertyEnumeration, 0); IfcQuantityArea_type = new entity(IfcSchema::Type::IfcQuantityArea, IfcPhysicalSimpleQuantity_type); IfcQuantityCount_type = new entity(IfcSchema::Type::IfcQuantityCount, IfcPhysicalSimpleQuantity_type); IfcQuantityLength_type = new entity(IfcSchema::Type::IfcQuantityLength, IfcPhysicalSimpleQuantity_type); IfcQuantityTime_type = new entity(IfcSchema::Type::IfcQuantityTime, IfcPhysicalSimpleQuantity_type); IfcQuantityVolume_type = new entity(IfcSchema::Type::IfcQuantityVolume, IfcPhysicalSimpleQuantity_type); IfcQuantityWeight_type = new entity(IfcSchema::Type::IfcQuantityWeight, IfcPhysicalSimpleQuantity_type); IfcReferencesValueDocument_type = new entity(IfcSchema::Type::IfcReferencesValueDocument, 0); IfcReinforcementBarProperties_type = new entity(IfcSchema::Type::IfcReinforcementBarProperties, 0); IfcRelaxation_type = new entity(IfcSchema::Type::IfcRelaxation, 0); IfcRepresentation_type = new entity(IfcSchema::Type::IfcRepresentation, 0); IfcRepresentationContext_type = new entity(IfcSchema::Type::IfcRepresentationContext, 0); IfcRepresentationItem_type = new entity(IfcSchema::Type::IfcRepresentationItem, 0); IfcRepresentationMap_type = new entity(IfcSchema::Type::IfcRepresentationMap, 0); IfcRibPlateProfileProperties_type = new entity(IfcSchema::Type::IfcRibPlateProfileProperties, IfcProfileProperties_type); IfcRoot_type = new entity(IfcSchema::Type::IfcRoot, 0); IfcSIUnit_type = new entity(IfcSchema::Type::IfcSIUnit, IfcNamedUnit_type); IfcSectionProperties_type = new entity(IfcSchema::Type::IfcSectionProperties, 0); IfcSectionReinforcementProperties_type = new entity(IfcSchema::Type::IfcSectionReinforcementProperties, 0); IfcShapeAspect_type = new entity(IfcSchema::Type::IfcShapeAspect, 0); IfcShapeModel_type = new entity(IfcSchema::Type::IfcShapeModel, IfcRepresentation_type); IfcShapeRepresentation_type = new entity(IfcSchema::Type::IfcShapeRepresentation, IfcShapeModel_type); IfcSimpleProperty_type = new entity(IfcSchema::Type::IfcSimpleProperty, IfcProperty_type); IfcStructuralConnectionCondition_type = new entity(IfcSchema::Type::IfcStructuralConnectionCondition, 0); IfcStructuralLoad_type = new entity(IfcSchema::Type::IfcStructuralLoad, 0); IfcStructuralLoadStatic_type = new entity(IfcSchema::Type::IfcStructuralLoadStatic, IfcStructuralLoad_type); IfcStructuralLoadTemperature_type = new entity(IfcSchema::Type::IfcStructuralLoadTemperature, IfcStructuralLoadStatic_type); IfcStyleModel_type = new entity(IfcSchema::Type::IfcStyleModel, IfcRepresentation_type); IfcStyledItem_type = new entity(IfcSchema::Type::IfcStyledItem, IfcRepresentationItem_type); IfcStyledRepresentation_type = new entity(IfcSchema::Type::IfcStyledRepresentation, IfcStyleModel_type); IfcSurfaceStyle_type = new entity(IfcSchema::Type::IfcSurfaceStyle, IfcPresentationStyle_type); IfcSurfaceStyleLighting_type = new entity(IfcSchema::Type::IfcSurfaceStyleLighting, 0); IfcSurfaceStyleRefraction_type = new entity(IfcSchema::Type::IfcSurfaceStyleRefraction, 0); IfcSurfaceStyleShading_type = new entity(IfcSchema::Type::IfcSurfaceStyleShading, 0); IfcSurfaceStyleWithTextures_type = new entity(IfcSchema::Type::IfcSurfaceStyleWithTextures, 0); IfcSurfaceTexture_type = new entity(IfcSchema::Type::IfcSurfaceTexture, 0); IfcSymbolStyle_type = new entity(IfcSchema::Type::IfcSymbolStyle, IfcPresentationStyle_type); IfcTable_type = new entity(IfcSchema::Type::IfcTable, 0); IfcTableRow_type = new entity(IfcSchema::Type::IfcTableRow, 0); IfcTelecomAddress_type = new entity(IfcSchema::Type::IfcTelecomAddress, IfcAddress_type); IfcTextStyle_type = new entity(IfcSchema::Type::IfcTextStyle, IfcPresentationStyle_type); IfcTextStyleFontModel_type = new entity(IfcSchema::Type::IfcTextStyleFontModel, IfcPreDefinedTextFont_type); IfcTextStyleForDefinedFont_type = new entity(IfcSchema::Type::IfcTextStyleForDefinedFont, 0); IfcTextStyleTextModel_type = new entity(IfcSchema::Type::IfcTextStyleTextModel, 0); IfcTextStyleWithBoxCharacteristics_type = new entity(IfcSchema::Type::IfcTextStyleWithBoxCharacteristics, 0); IfcTextureCoordinate_type = new entity(IfcSchema::Type::IfcTextureCoordinate, 0); IfcTextureCoordinateGenerator_type = new entity(IfcSchema::Type::IfcTextureCoordinateGenerator, IfcTextureCoordinate_type); IfcTextureMap_type = new entity(IfcSchema::Type::IfcTextureMap, IfcTextureCoordinate_type); IfcTextureVertex_type = new entity(IfcSchema::Type::IfcTextureVertex, 0); IfcThermalMaterialProperties_type = new entity(IfcSchema::Type::IfcThermalMaterialProperties, IfcMaterialProperties_type); IfcTimeSeries_type = new entity(IfcSchema::Type::IfcTimeSeries, 0); IfcTimeSeriesReferenceRelationship_type = new entity(IfcSchema::Type::IfcTimeSeriesReferenceRelationship, 0); IfcTimeSeriesValue_type = new entity(IfcSchema::Type::IfcTimeSeriesValue, 0); IfcTopologicalRepresentationItem_type = new entity(IfcSchema::Type::IfcTopologicalRepresentationItem, IfcRepresentationItem_type); IfcTopologyRepresentation_type = new entity(IfcSchema::Type::IfcTopologyRepresentation, IfcShapeModel_type); IfcUnitAssignment_type = new entity(IfcSchema::Type::IfcUnitAssignment, 0); IfcVertex_type = new entity(IfcSchema::Type::IfcVertex, IfcTopologicalRepresentationItem_type); IfcVertexBasedTextureMap_type = new entity(IfcSchema::Type::IfcVertexBasedTextureMap, 0); IfcVertexPoint_type = new entity(IfcSchema::Type::IfcVertexPoint, IfcVertex_type); IfcVirtualGridIntersection_type = new entity(IfcSchema::Type::IfcVirtualGridIntersection, 0); IfcWaterProperties_type = new entity(IfcSchema::Type::IfcWaterProperties, IfcMaterialProperties_type); IfcAnnotationOccurrence_type = new entity(IfcSchema::Type::IfcAnnotationOccurrence, IfcStyledItem_type); IfcAnnotationSurfaceOccurrence_type = new entity(IfcSchema::Type::IfcAnnotationSurfaceOccurrence, IfcAnnotationOccurrence_type); IfcAnnotationSymbolOccurrence_type = new entity(IfcSchema::Type::IfcAnnotationSymbolOccurrence, IfcAnnotationOccurrence_type); IfcAnnotationTextOccurrence_type = new entity(IfcSchema::Type::IfcAnnotationTextOccurrence, IfcAnnotationOccurrence_type); IfcArbitraryClosedProfileDef_type = new entity(IfcSchema::Type::IfcArbitraryClosedProfileDef, IfcProfileDef_type); IfcArbitraryOpenProfileDef_type = new entity(IfcSchema::Type::IfcArbitraryOpenProfileDef, IfcProfileDef_type); IfcArbitraryProfileDefWithVoids_type = new entity(IfcSchema::Type::IfcArbitraryProfileDefWithVoids, IfcArbitraryClosedProfileDef_type); IfcBlobTexture_type = new entity(IfcSchema::Type::IfcBlobTexture, IfcSurfaceTexture_type); IfcCenterLineProfileDef_type = new entity(IfcSchema::Type::IfcCenterLineProfileDef, IfcArbitraryOpenProfileDef_type); IfcClassificationReference_type = new entity(IfcSchema::Type::IfcClassificationReference, IfcExternalReference_type); IfcColourRgb_type = new entity(IfcSchema::Type::IfcColourRgb, IfcColourSpecification_type); IfcComplexProperty_type = new entity(IfcSchema::Type::IfcComplexProperty, IfcProperty_type); IfcCompositeProfileDef_type = new entity(IfcSchema::Type::IfcCompositeProfileDef, IfcProfileDef_type); IfcConnectedFaceSet_type = new entity(IfcSchema::Type::IfcConnectedFaceSet, IfcTopologicalRepresentationItem_type); IfcConnectionCurveGeometry_type = new entity(IfcSchema::Type::IfcConnectionCurveGeometry, IfcConnectionGeometry_type); IfcConnectionPointEccentricity_type = new entity(IfcSchema::Type::IfcConnectionPointEccentricity, IfcConnectionPointGeometry_type); IfcContextDependentUnit_type = new entity(IfcSchema::Type::IfcContextDependentUnit, IfcNamedUnit_type); IfcConversionBasedUnit_type = new entity(IfcSchema::Type::IfcConversionBasedUnit, IfcNamedUnit_type); IfcCurveStyle_type = new entity(IfcSchema::Type::IfcCurveStyle, IfcPresentationStyle_type); IfcDerivedProfileDef_type = new entity(IfcSchema::Type::IfcDerivedProfileDef, IfcProfileDef_type); IfcDimensionCalloutRelationship_type = new entity(IfcSchema::Type::IfcDimensionCalloutRelationship, IfcDraughtingCalloutRelationship_type); IfcDimensionPair_type = new entity(IfcSchema::Type::IfcDimensionPair, IfcDraughtingCalloutRelationship_type); IfcDocumentReference_type = new entity(IfcSchema::Type::IfcDocumentReference, IfcExternalReference_type); IfcDraughtingPreDefinedTextFont_type = new entity(IfcSchema::Type::IfcDraughtingPreDefinedTextFont, IfcPreDefinedTextFont_type); IfcEdge_type = new entity(IfcSchema::Type::IfcEdge, IfcTopologicalRepresentationItem_type); IfcEdgeCurve_type = new entity(IfcSchema::Type::IfcEdgeCurve, IfcEdge_type); IfcExtendedMaterialProperties_type = new entity(IfcSchema::Type::IfcExtendedMaterialProperties, IfcMaterialProperties_type); IfcFace_type = new entity(IfcSchema::Type::IfcFace, IfcTopologicalRepresentationItem_type); IfcFaceBound_type = new entity(IfcSchema::Type::IfcFaceBound, IfcTopologicalRepresentationItem_type); IfcFaceOuterBound_type = new entity(IfcSchema::Type::IfcFaceOuterBound, IfcFaceBound_type); IfcFaceSurface_type = new entity(IfcSchema::Type::IfcFaceSurface, IfcFace_type); IfcFailureConnectionCondition_type = new entity(IfcSchema::Type::IfcFailureConnectionCondition, IfcStructuralConnectionCondition_type); IfcFillAreaStyle_type = new entity(IfcSchema::Type::IfcFillAreaStyle, IfcPresentationStyle_type); IfcFuelProperties_type = new entity(IfcSchema::Type::IfcFuelProperties, IfcMaterialProperties_type); IfcGeneralMaterialProperties_type = new entity(IfcSchema::Type::IfcGeneralMaterialProperties, IfcMaterialProperties_type); IfcGeneralProfileProperties_type = new entity(IfcSchema::Type::IfcGeneralProfileProperties, IfcProfileProperties_type); IfcGeometricRepresentationContext_type = new entity(IfcSchema::Type::IfcGeometricRepresentationContext, IfcRepresentationContext_type); IfcGeometricRepresentationItem_type = new entity(IfcSchema::Type::IfcGeometricRepresentationItem, IfcRepresentationItem_type); IfcGeometricRepresentationSubContext_type = new entity(IfcSchema::Type::IfcGeometricRepresentationSubContext, IfcGeometricRepresentationContext_type); IfcGeometricSet_type = new entity(IfcSchema::Type::IfcGeometricSet, IfcGeometricRepresentationItem_type); IfcGridPlacement_type = new entity(IfcSchema::Type::IfcGridPlacement, IfcObjectPlacement_type); IfcHalfSpaceSolid_type = new entity(IfcSchema::Type::IfcHalfSpaceSolid, IfcGeometricRepresentationItem_type); IfcHygroscopicMaterialProperties_type = new entity(IfcSchema::Type::IfcHygroscopicMaterialProperties, IfcMaterialProperties_type); IfcImageTexture_type = new entity(IfcSchema::Type::IfcImageTexture, IfcSurfaceTexture_type); IfcIrregularTimeSeries_type = new entity(IfcSchema::Type::IfcIrregularTimeSeries, IfcTimeSeries_type); IfcLightSource_type = new entity(IfcSchema::Type::IfcLightSource, IfcGeometricRepresentationItem_type); IfcLightSourceAmbient_type = new entity(IfcSchema::Type::IfcLightSourceAmbient, IfcLightSource_type); IfcLightSourceDirectional_type = new entity(IfcSchema::Type::IfcLightSourceDirectional, IfcLightSource_type); IfcLightSourceGoniometric_type = new entity(IfcSchema::Type::IfcLightSourceGoniometric, IfcLightSource_type); IfcLightSourcePositional_type = new entity(IfcSchema::Type::IfcLightSourcePositional, IfcLightSource_type); IfcLightSourceSpot_type = new entity(IfcSchema::Type::IfcLightSourceSpot, IfcLightSourcePositional_type); IfcLocalPlacement_type = new entity(IfcSchema::Type::IfcLocalPlacement, IfcObjectPlacement_type); IfcLoop_type = new entity(IfcSchema::Type::IfcLoop, IfcTopologicalRepresentationItem_type); IfcMappedItem_type = new entity(IfcSchema::Type::IfcMappedItem, IfcRepresentationItem_type); IfcMaterialDefinitionRepresentation_type = new entity(IfcSchema::Type::IfcMaterialDefinitionRepresentation, IfcProductRepresentation_type); IfcMechanicalConcreteMaterialProperties_type = new entity(IfcSchema::Type::IfcMechanicalConcreteMaterialProperties, IfcMechanicalMaterialProperties_type); IfcObjectDefinition_type = new entity(IfcSchema::Type::IfcObjectDefinition, IfcRoot_type); IfcOneDirectionRepeatFactor_type = new entity(IfcSchema::Type::IfcOneDirectionRepeatFactor, IfcGeometricRepresentationItem_type); IfcOpenShell_type = new entity(IfcSchema::Type::IfcOpenShell, IfcConnectedFaceSet_type); IfcOrientedEdge_type = new entity(IfcSchema::Type::IfcOrientedEdge, IfcEdge_type); IfcParameterizedProfileDef_type = new entity(IfcSchema::Type::IfcParameterizedProfileDef, IfcProfileDef_type); IfcPath_type = new entity(IfcSchema::Type::IfcPath, IfcTopologicalRepresentationItem_type); IfcPhysicalComplexQuantity_type = new entity(IfcSchema::Type::IfcPhysicalComplexQuantity, IfcPhysicalQuantity_type); IfcPixelTexture_type = new entity(IfcSchema::Type::IfcPixelTexture, IfcSurfaceTexture_type); IfcPlacement_type = new entity(IfcSchema::Type::IfcPlacement, IfcGeometricRepresentationItem_type); IfcPlanarExtent_type = new entity(IfcSchema::Type::IfcPlanarExtent, IfcGeometricRepresentationItem_type); IfcPoint_type = new entity(IfcSchema::Type::IfcPoint, IfcGeometricRepresentationItem_type); IfcPointOnCurve_type = new entity(IfcSchema::Type::IfcPointOnCurve, IfcPoint_type); IfcPointOnSurface_type = new entity(IfcSchema::Type::IfcPointOnSurface, IfcPoint_type); IfcPolyLoop_type = new entity(IfcSchema::Type::IfcPolyLoop, IfcLoop_type); IfcPolygonalBoundedHalfSpace_type = new entity(IfcSchema::Type::IfcPolygonalBoundedHalfSpace, IfcHalfSpaceSolid_type); IfcPreDefinedColour_type = new entity(IfcSchema::Type::IfcPreDefinedColour, IfcPreDefinedItem_type); IfcPreDefinedCurveFont_type = new entity(IfcSchema::Type::IfcPreDefinedCurveFont, IfcPreDefinedItem_type); IfcPreDefinedDimensionSymbol_type = new entity(IfcSchema::Type::IfcPreDefinedDimensionSymbol, IfcPreDefinedSymbol_type); IfcPreDefinedPointMarkerSymbol_type = new entity(IfcSchema::Type::IfcPreDefinedPointMarkerSymbol, IfcPreDefinedSymbol_type); IfcProductDefinitionShape_type = new entity(IfcSchema::Type::IfcProductDefinitionShape, IfcProductRepresentation_type); IfcPropertyBoundedValue_type = new entity(IfcSchema::Type::IfcPropertyBoundedValue, IfcSimpleProperty_type); IfcPropertyDefinition_type = new entity(IfcSchema::Type::IfcPropertyDefinition, IfcRoot_type); IfcPropertyEnumeratedValue_type = new entity(IfcSchema::Type::IfcPropertyEnumeratedValue, IfcSimpleProperty_type); IfcPropertyListValue_type = new entity(IfcSchema::Type::IfcPropertyListValue, IfcSimpleProperty_type); IfcPropertyReferenceValue_type = new entity(IfcSchema::Type::IfcPropertyReferenceValue, IfcSimpleProperty_type); IfcPropertySetDefinition_type = new entity(IfcSchema::Type::IfcPropertySetDefinition, IfcPropertyDefinition_type); IfcPropertySingleValue_type = new entity(IfcSchema::Type::IfcPropertySingleValue, IfcSimpleProperty_type); IfcPropertyTableValue_type = new entity(IfcSchema::Type::IfcPropertyTableValue, IfcSimpleProperty_type); IfcRectangleProfileDef_type = new entity(IfcSchema::Type::IfcRectangleProfileDef, IfcParameterizedProfileDef_type); IfcRegularTimeSeries_type = new entity(IfcSchema::Type::IfcRegularTimeSeries, IfcTimeSeries_type); IfcReinforcementDefinitionProperties_type = new entity(IfcSchema::Type::IfcReinforcementDefinitionProperties, IfcPropertySetDefinition_type); IfcRelationship_type = new entity(IfcSchema::Type::IfcRelationship, IfcRoot_type); IfcRoundedRectangleProfileDef_type = new entity(IfcSchema::Type::IfcRoundedRectangleProfileDef, IfcRectangleProfileDef_type); IfcSectionedSpine_type = new entity(IfcSchema::Type::IfcSectionedSpine, IfcGeometricRepresentationItem_type); IfcServiceLifeFactor_type = new entity(IfcSchema::Type::IfcServiceLifeFactor, IfcPropertySetDefinition_type); IfcShellBasedSurfaceModel_type = new entity(IfcSchema::Type::IfcShellBasedSurfaceModel, IfcGeometricRepresentationItem_type); IfcSlippageConnectionCondition_type = new entity(IfcSchema::Type::IfcSlippageConnectionCondition, IfcStructuralConnectionCondition_type); IfcSolidModel_type = new entity(IfcSchema::Type::IfcSolidModel, IfcGeometricRepresentationItem_type); IfcSoundProperties_type = new entity(IfcSchema::Type::IfcSoundProperties, IfcPropertySetDefinition_type); IfcSoundValue_type = new entity(IfcSchema::Type::IfcSoundValue, IfcPropertySetDefinition_type); IfcSpaceThermalLoadProperties_type = new entity(IfcSchema::Type::IfcSpaceThermalLoadProperties, IfcPropertySetDefinition_type); IfcStructuralLoadLinearForce_type = new entity(IfcSchema::Type::IfcStructuralLoadLinearForce, IfcStructuralLoadStatic_type); IfcStructuralLoadPlanarForce_type = new entity(IfcSchema::Type::IfcStructuralLoadPlanarForce, IfcStructuralLoadStatic_type); IfcStructuralLoadSingleDisplacement_type = new entity(IfcSchema::Type::IfcStructuralLoadSingleDisplacement, IfcStructuralLoadStatic_type); IfcStructuralLoadSingleDisplacementDistortion_type = new entity(IfcSchema::Type::IfcStructuralLoadSingleDisplacementDistortion, IfcStructuralLoadSingleDisplacement_type); IfcStructuralLoadSingleForce_type = new entity(IfcSchema::Type::IfcStructuralLoadSingleForce, IfcStructuralLoadStatic_type); IfcStructuralLoadSingleForceWarping_type = new entity(IfcSchema::Type::IfcStructuralLoadSingleForceWarping, IfcStructuralLoadSingleForce_type); IfcStructuralProfileProperties_type = new entity(IfcSchema::Type::IfcStructuralProfileProperties, IfcGeneralProfileProperties_type); IfcStructuralSteelProfileProperties_type = new entity(IfcSchema::Type::IfcStructuralSteelProfileProperties, IfcStructuralProfileProperties_type); IfcSubedge_type = new entity(IfcSchema::Type::IfcSubedge, IfcEdge_type); IfcSurface_type = new entity(IfcSchema::Type::IfcSurface, IfcGeometricRepresentationItem_type); IfcSurfaceStyleRendering_type = new entity(IfcSchema::Type::IfcSurfaceStyleRendering, IfcSurfaceStyleShading_type); IfcSweptAreaSolid_type = new entity(IfcSchema::Type::IfcSweptAreaSolid, IfcSolidModel_type); IfcSweptDiskSolid_type = new entity(IfcSchema::Type::IfcSweptDiskSolid, IfcSolidModel_type); IfcSweptSurface_type = new entity(IfcSchema::Type::IfcSweptSurface, IfcSurface_type); IfcTShapeProfileDef_type = new entity(IfcSchema::Type::IfcTShapeProfileDef, IfcParameterizedProfileDef_type); IfcTerminatorSymbol_type = new entity(IfcSchema::Type::IfcTerminatorSymbol, IfcAnnotationSymbolOccurrence_type); IfcTextLiteral_type = new entity(IfcSchema::Type::IfcTextLiteral, IfcGeometricRepresentationItem_type); IfcTextLiteralWithExtent_type = new entity(IfcSchema::Type::IfcTextLiteralWithExtent, IfcTextLiteral_type); IfcTrapeziumProfileDef_type = new entity(IfcSchema::Type::IfcTrapeziumProfileDef, IfcParameterizedProfileDef_type); IfcTwoDirectionRepeatFactor_type = new entity(IfcSchema::Type::IfcTwoDirectionRepeatFactor, IfcOneDirectionRepeatFactor_type); IfcTypeObject_type = new entity(IfcSchema::Type::IfcTypeObject, IfcObjectDefinition_type); IfcTypeProduct_type = new entity(IfcSchema::Type::IfcTypeProduct, IfcTypeObject_type); IfcUShapeProfileDef_type = new entity(IfcSchema::Type::IfcUShapeProfileDef, IfcParameterizedProfileDef_type); IfcVector_type = new entity(IfcSchema::Type::IfcVector, IfcGeometricRepresentationItem_type); IfcVertexLoop_type = new entity(IfcSchema::Type::IfcVertexLoop, IfcLoop_type); IfcWindowLiningProperties_type = new entity(IfcSchema::Type::IfcWindowLiningProperties, IfcPropertySetDefinition_type); IfcWindowPanelProperties_type = new entity(IfcSchema::Type::IfcWindowPanelProperties, IfcPropertySetDefinition_type); IfcWindowStyle_type = new entity(IfcSchema::Type::IfcWindowStyle, IfcTypeProduct_type); IfcZShapeProfileDef_type = new entity(IfcSchema::Type::IfcZShapeProfileDef, IfcParameterizedProfileDef_type); IfcAnnotationCurveOccurrence_type = new entity(IfcSchema::Type::IfcAnnotationCurveOccurrence, IfcAnnotationOccurrence_type); IfcAnnotationFillArea_type = new entity(IfcSchema::Type::IfcAnnotationFillArea, IfcGeometricRepresentationItem_type); IfcAnnotationFillAreaOccurrence_type = new entity(IfcSchema::Type::IfcAnnotationFillAreaOccurrence, IfcAnnotationOccurrence_type); IfcAnnotationSurface_type = new entity(IfcSchema::Type::IfcAnnotationSurface, IfcGeometricRepresentationItem_type); IfcAxis1Placement_type = new entity(IfcSchema::Type::IfcAxis1Placement, IfcPlacement_type); IfcAxis2Placement2D_type = new entity(IfcSchema::Type::IfcAxis2Placement2D, IfcPlacement_type); IfcAxis2Placement3D_type = new entity(IfcSchema::Type::IfcAxis2Placement3D, IfcPlacement_type); IfcBooleanResult_type = new entity(IfcSchema::Type::IfcBooleanResult, IfcGeometricRepresentationItem_type); IfcBoundedSurface_type = new entity(IfcSchema::Type::IfcBoundedSurface, IfcSurface_type); IfcBoundingBox_type = new entity(IfcSchema::Type::IfcBoundingBox, IfcGeometricRepresentationItem_type); IfcBoxedHalfSpace_type = new entity(IfcSchema::Type::IfcBoxedHalfSpace, IfcHalfSpaceSolid_type); IfcCShapeProfileDef_type = new entity(IfcSchema::Type::IfcCShapeProfileDef, IfcParameterizedProfileDef_type); IfcCartesianPoint_type = new entity(IfcSchema::Type::IfcCartesianPoint, IfcPoint_type); IfcCartesianTransformationOperator_type = new entity(IfcSchema::Type::IfcCartesianTransformationOperator, IfcGeometricRepresentationItem_type); IfcCartesianTransformationOperator2D_type = new entity(IfcSchema::Type::IfcCartesianTransformationOperator2D, IfcCartesianTransformationOperator_type); IfcCartesianTransformationOperator2DnonUniform_type = new entity(IfcSchema::Type::IfcCartesianTransformationOperator2DnonUniform, IfcCartesianTransformationOperator2D_type); IfcCartesianTransformationOperator3D_type = new entity(IfcSchema::Type::IfcCartesianTransformationOperator3D, IfcCartesianTransformationOperator_type); IfcCartesianTransformationOperator3DnonUniform_type = new entity(IfcSchema::Type::IfcCartesianTransformationOperator3DnonUniform, IfcCartesianTransformationOperator3D_type); IfcCircleProfileDef_type = new entity(IfcSchema::Type::IfcCircleProfileDef, IfcParameterizedProfileDef_type); IfcClosedShell_type = new entity(IfcSchema::Type::IfcClosedShell, IfcConnectedFaceSet_type); IfcCompositeCurveSegment_type = new entity(IfcSchema::Type::IfcCompositeCurveSegment, IfcGeometricRepresentationItem_type); IfcCraneRailAShapeProfileDef_type = new entity(IfcSchema::Type::IfcCraneRailAShapeProfileDef, IfcParameterizedProfileDef_type); IfcCraneRailFShapeProfileDef_type = new entity(IfcSchema::Type::IfcCraneRailFShapeProfileDef, IfcParameterizedProfileDef_type); IfcCsgPrimitive3D_type = new entity(IfcSchema::Type::IfcCsgPrimitive3D, IfcGeometricRepresentationItem_type); IfcCsgSolid_type = new entity(IfcSchema::Type::IfcCsgSolid, IfcSolidModel_type); IfcCurve_type = new entity(IfcSchema::Type::IfcCurve, IfcGeometricRepresentationItem_type); IfcCurveBoundedPlane_type = new entity(IfcSchema::Type::IfcCurveBoundedPlane, IfcBoundedSurface_type); IfcDefinedSymbol_type = new entity(IfcSchema::Type::IfcDefinedSymbol, IfcGeometricRepresentationItem_type); IfcDimensionCurve_type = new entity(IfcSchema::Type::IfcDimensionCurve, IfcAnnotationCurveOccurrence_type); IfcDimensionCurveTerminator_type = new entity(IfcSchema::Type::IfcDimensionCurveTerminator, IfcTerminatorSymbol_type); IfcDirection_type = new entity(IfcSchema::Type::IfcDirection, IfcGeometricRepresentationItem_type); IfcDoorLiningProperties_type = new entity(IfcSchema::Type::IfcDoorLiningProperties, IfcPropertySetDefinition_type); IfcDoorPanelProperties_type = new entity(IfcSchema::Type::IfcDoorPanelProperties, IfcPropertySetDefinition_type); IfcDoorStyle_type = new entity(IfcSchema::Type::IfcDoorStyle, IfcTypeProduct_type); IfcDraughtingCallout_type = new entity(IfcSchema::Type::IfcDraughtingCallout, IfcGeometricRepresentationItem_type); IfcDraughtingPreDefinedColour_type = new entity(IfcSchema::Type::IfcDraughtingPreDefinedColour, IfcPreDefinedColour_type); IfcDraughtingPreDefinedCurveFont_type = new entity(IfcSchema::Type::IfcDraughtingPreDefinedCurveFont, IfcPreDefinedCurveFont_type); IfcEdgeLoop_type = new entity(IfcSchema::Type::IfcEdgeLoop, IfcLoop_type); IfcElementQuantity_type = new entity(IfcSchema::Type::IfcElementQuantity, IfcPropertySetDefinition_type); IfcElementType_type = new entity(IfcSchema::Type::IfcElementType, IfcTypeProduct_type); IfcElementarySurface_type = new entity(IfcSchema::Type::IfcElementarySurface, IfcSurface_type); IfcEllipseProfileDef_type = new entity(IfcSchema::Type::IfcEllipseProfileDef, IfcParameterizedProfileDef_type); IfcEnergyProperties_type = new entity(IfcSchema::Type::IfcEnergyProperties, IfcPropertySetDefinition_type); IfcExtrudedAreaSolid_type = new entity(IfcSchema::Type::IfcExtrudedAreaSolid, IfcSweptAreaSolid_type); IfcFaceBasedSurfaceModel_type = new entity(IfcSchema::Type::IfcFaceBasedSurfaceModel, IfcGeometricRepresentationItem_type); IfcFillAreaStyleHatching_type = new entity(IfcSchema::Type::IfcFillAreaStyleHatching, IfcGeometricRepresentationItem_type); IfcFillAreaStyleTileSymbolWithStyle_type = new entity(IfcSchema::Type::IfcFillAreaStyleTileSymbolWithStyle, IfcGeometricRepresentationItem_type); IfcFillAreaStyleTiles_type = new entity(IfcSchema::Type::IfcFillAreaStyleTiles, IfcGeometricRepresentationItem_type); IfcFluidFlowProperties_type = new entity(IfcSchema::Type::IfcFluidFlowProperties, IfcPropertySetDefinition_type); IfcFurnishingElementType_type = new entity(IfcSchema::Type::IfcFurnishingElementType, IfcElementType_type); IfcFurnitureType_type = new entity(IfcSchema::Type::IfcFurnitureType, IfcFurnishingElementType_type); IfcGeometricCurveSet_type = new entity(IfcSchema::Type::IfcGeometricCurveSet, IfcGeometricSet_type); IfcIShapeProfileDef_type = new entity(IfcSchema::Type::IfcIShapeProfileDef, IfcParameterizedProfileDef_type); IfcLShapeProfileDef_type = new entity(IfcSchema::Type::IfcLShapeProfileDef, IfcParameterizedProfileDef_type); IfcLine_type = new entity(IfcSchema::Type::IfcLine, IfcCurve_type); IfcManifoldSolidBrep_type = new entity(IfcSchema::Type::IfcManifoldSolidBrep, IfcSolidModel_type); IfcObject_type = new entity(IfcSchema::Type::IfcObject, IfcObjectDefinition_type); IfcOffsetCurve2D_type = new entity(IfcSchema::Type::IfcOffsetCurve2D, IfcCurve_type); IfcOffsetCurve3D_type = new entity(IfcSchema::Type::IfcOffsetCurve3D, IfcCurve_type); IfcPermeableCoveringProperties_type = new entity(IfcSchema::Type::IfcPermeableCoveringProperties, IfcPropertySetDefinition_type); IfcPlanarBox_type = new entity(IfcSchema::Type::IfcPlanarBox, IfcPlanarExtent_type); IfcPlane_type = new entity(IfcSchema::Type::IfcPlane, IfcElementarySurface_type); IfcProcess_type = new entity(IfcSchema::Type::IfcProcess, IfcObject_type); IfcProduct_type = new entity(IfcSchema::Type::IfcProduct, IfcObject_type); IfcProject_type = new entity(IfcSchema::Type::IfcProject, IfcObject_type); IfcProjectionCurve_type = new entity(IfcSchema::Type::IfcProjectionCurve, IfcAnnotationCurveOccurrence_type); IfcPropertySet_type = new entity(IfcSchema::Type::IfcPropertySet, IfcPropertySetDefinition_type); IfcProxy_type = new entity(IfcSchema::Type::IfcProxy, IfcProduct_type); IfcRectangleHollowProfileDef_type = new entity(IfcSchema::Type::IfcRectangleHollowProfileDef, IfcRectangleProfileDef_type); IfcRectangularPyramid_type = new entity(IfcSchema::Type::IfcRectangularPyramid, IfcCsgPrimitive3D_type); IfcRectangularTrimmedSurface_type = new entity(IfcSchema::Type::IfcRectangularTrimmedSurface, IfcBoundedSurface_type); IfcRelAssigns_type = new entity(IfcSchema::Type::IfcRelAssigns, IfcRelationship_type); IfcRelAssignsToActor_type = new entity(IfcSchema::Type::IfcRelAssignsToActor, IfcRelAssigns_type); IfcRelAssignsToControl_type = new entity(IfcSchema::Type::IfcRelAssignsToControl, IfcRelAssigns_type); IfcRelAssignsToGroup_type = new entity(IfcSchema::Type::IfcRelAssignsToGroup, IfcRelAssigns_type); IfcRelAssignsToProcess_type = new entity(IfcSchema::Type::IfcRelAssignsToProcess, IfcRelAssigns_type); IfcRelAssignsToProduct_type = new entity(IfcSchema::Type::IfcRelAssignsToProduct, IfcRelAssigns_type); IfcRelAssignsToProjectOrder_type = new entity(IfcSchema::Type::IfcRelAssignsToProjectOrder, IfcRelAssignsToControl_type); IfcRelAssignsToResource_type = new entity(IfcSchema::Type::IfcRelAssignsToResource, IfcRelAssigns_type); IfcRelAssociates_type = new entity(IfcSchema::Type::IfcRelAssociates, IfcRelationship_type); IfcRelAssociatesAppliedValue_type = new entity(IfcSchema::Type::IfcRelAssociatesAppliedValue, IfcRelAssociates_type); IfcRelAssociatesApproval_type = new entity(IfcSchema::Type::IfcRelAssociatesApproval, IfcRelAssociates_type); IfcRelAssociatesClassification_type = new entity(IfcSchema::Type::IfcRelAssociatesClassification, IfcRelAssociates_type); IfcRelAssociatesConstraint_type = new entity(IfcSchema::Type::IfcRelAssociatesConstraint, IfcRelAssociates_type); IfcRelAssociatesDocument_type = new entity(IfcSchema::Type::IfcRelAssociatesDocument, IfcRelAssociates_type); IfcRelAssociatesLibrary_type = new entity(IfcSchema::Type::IfcRelAssociatesLibrary, IfcRelAssociates_type); IfcRelAssociatesMaterial_type = new entity(IfcSchema::Type::IfcRelAssociatesMaterial, IfcRelAssociates_type); IfcRelAssociatesProfileProperties_type = new entity(IfcSchema::Type::IfcRelAssociatesProfileProperties, IfcRelAssociates_type); IfcRelConnects_type = new entity(IfcSchema::Type::IfcRelConnects, IfcRelationship_type); IfcRelConnectsElements_type = new entity(IfcSchema::Type::IfcRelConnectsElements, IfcRelConnects_type); IfcRelConnectsPathElements_type = new entity(IfcSchema::Type::IfcRelConnectsPathElements, IfcRelConnectsElements_type); IfcRelConnectsPortToElement_type = new entity(IfcSchema::Type::IfcRelConnectsPortToElement, IfcRelConnects_type); IfcRelConnectsPorts_type = new entity(IfcSchema::Type::IfcRelConnectsPorts, IfcRelConnects_type); IfcRelConnectsStructuralActivity_type = new entity(IfcSchema::Type::IfcRelConnectsStructuralActivity, IfcRelConnects_type); IfcRelConnectsStructuralElement_type = new entity(IfcSchema::Type::IfcRelConnectsStructuralElement, IfcRelConnects_type); IfcRelConnectsStructuralMember_type = new entity(IfcSchema::Type::IfcRelConnectsStructuralMember, IfcRelConnects_type); IfcRelConnectsWithEccentricity_type = new entity(IfcSchema::Type::IfcRelConnectsWithEccentricity, IfcRelConnectsStructuralMember_type); IfcRelConnectsWithRealizingElements_type = new entity(IfcSchema::Type::IfcRelConnectsWithRealizingElements, IfcRelConnectsElements_type); IfcRelContainedInSpatialStructure_type = new entity(IfcSchema::Type::IfcRelContainedInSpatialStructure, IfcRelConnects_type); IfcRelCoversBldgElements_type = new entity(IfcSchema::Type::IfcRelCoversBldgElements, IfcRelConnects_type); IfcRelCoversSpaces_type = new entity(IfcSchema::Type::IfcRelCoversSpaces, IfcRelConnects_type); IfcRelDecomposes_type = new entity(IfcSchema::Type::IfcRelDecomposes, IfcRelationship_type); IfcRelDefines_type = new entity(IfcSchema::Type::IfcRelDefines, IfcRelationship_type); IfcRelDefinesByProperties_type = new entity(IfcSchema::Type::IfcRelDefinesByProperties, IfcRelDefines_type); IfcRelDefinesByType_type = new entity(IfcSchema::Type::IfcRelDefinesByType, IfcRelDefines_type); IfcRelFillsElement_type = new entity(IfcSchema::Type::IfcRelFillsElement, IfcRelConnects_type); IfcRelFlowControlElements_type = new entity(IfcSchema::Type::IfcRelFlowControlElements, IfcRelConnects_type); IfcRelInteractionRequirements_type = new entity(IfcSchema::Type::IfcRelInteractionRequirements, IfcRelConnects_type); IfcRelNests_type = new entity(IfcSchema::Type::IfcRelNests, IfcRelDecomposes_type); IfcRelOccupiesSpaces_type = new entity(IfcSchema::Type::IfcRelOccupiesSpaces, IfcRelAssignsToActor_type); IfcRelOverridesProperties_type = new entity(IfcSchema::Type::IfcRelOverridesProperties, IfcRelDefinesByProperties_type); IfcRelProjectsElement_type = new entity(IfcSchema::Type::IfcRelProjectsElement, IfcRelConnects_type); IfcRelReferencedInSpatialStructure_type = new entity(IfcSchema::Type::IfcRelReferencedInSpatialStructure, IfcRelConnects_type); IfcRelSchedulesCostItems_type = new entity(IfcSchema::Type::IfcRelSchedulesCostItems, IfcRelAssignsToControl_type); IfcRelSequence_type = new entity(IfcSchema::Type::IfcRelSequence, IfcRelConnects_type); IfcRelServicesBuildings_type = new entity(IfcSchema::Type::IfcRelServicesBuildings, IfcRelConnects_type); IfcRelSpaceBoundary_type = new entity(IfcSchema::Type::IfcRelSpaceBoundary, IfcRelConnects_type); IfcRelVoidsElement_type = new entity(IfcSchema::Type::IfcRelVoidsElement, IfcRelConnects_type); IfcResource_type = new entity(IfcSchema::Type::IfcResource, IfcObject_type); IfcRevolvedAreaSolid_type = new entity(IfcSchema::Type::IfcRevolvedAreaSolid, IfcSweptAreaSolid_type); IfcRightCircularCone_type = new entity(IfcSchema::Type::IfcRightCircularCone, IfcCsgPrimitive3D_type); IfcRightCircularCylinder_type = new entity(IfcSchema::Type::IfcRightCircularCylinder, IfcCsgPrimitive3D_type); IfcSpatialStructureElement_type = new entity(IfcSchema::Type::IfcSpatialStructureElement, IfcProduct_type); IfcSpatialStructureElementType_type = new entity(IfcSchema::Type::IfcSpatialStructureElementType, IfcElementType_type); IfcSphere_type = new entity(IfcSchema::Type::IfcSphere, IfcCsgPrimitive3D_type); IfcStructuralActivity_type = new entity(IfcSchema::Type::IfcStructuralActivity, IfcProduct_type); IfcStructuralItem_type = new entity(IfcSchema::Type::IfcStructuralItem, IfcProduct_type); IfcStructuralMember_type = new entity(IfcSchema::Type::IfcStructuralMember, IfcStructuralItem_type); IfcStructuralReaction_type = new entity(IfcSchema::Type::IfcStructuralReaction, IfcStructuralActivity_type); IfcStructuralSurfaceMember_type = new entity(IfcSchema::Type::IfcStructuralSurfaceMember, IfcStructuralMember_type); IfcStructuralSurfaceMemberVarying_type = new entity(IfcSchema::Type::IfcStructuralSurfaceMemberVarying, IfcStructuralSurfaceMember_type); IfcStructuredDimensionCallout_type = new entity(IfcSchema::Type::IfcStructuredDimensionCallout, IfcDraughtingCallout_type); IfcSurfaceCurveSweptAreaSolid_type = new entity(IfcSchema::Type::IfcSurfaceCurveSweptAreaSolid, IfcSweptAreaSolid_type); IfcSurfaceOfLinearExtrusion_type = new entity(IfcSchema::Type::IfcSurfaceOfLinearExtrusion, IfcSweptSurface_type); IfcSurfaceOfRevolution_type = new entity(IfcSchema::Type::IfcSurfaceOfRevolution, IfcSweptSurface_type); IfcSystemFurnitureElementType_type = new entity(IfcSchema::Type::IfcSystemFurnitureElementType, IfcFurnishingElementType_type); IfcTask_type = new entity(IfcSchema::Type::IfcTask, IfcProcess_type); IfcTransportElementType_type = new entity(IfcSchema::Type::IfcTransportElementType, IfcElementType_type); IfcActor_type = new entity(IfcSchema::Type::IfcActor, IfcObject_type); IfcAnnotation_type = new entity(IfcSchema::Type::IfcAnnotation, IfcProduct_type); IfcAsymmetricIShapeProfileDef_type = new entity(IfcSchema::Type::IfcAsymmetricIShapeProfileDef, IfcIShapeProfileDef_type); IfcBlock_type = new entity(IfcSchema::Type::IfcBlock, IfcCsgPrimitive3D_type); IfcBooleanClippingResult_type = new entity(IfcSchema::Type::IfcBooleanClippingResult, IfcBooleanResult_type); IfcBoundedCurve_type = new entity(IfcSchema::Type::IfcBoundedCurve, IfcCurve_type); IfcBuilding_type = new entity(IfcSchema::Type::IfcBuilding, IfcSpatialStructureElement_type); IfcBuildingElementType_type = new entity(IfcSchema::Type::IfcBuildingElementType, IfcElementType_type); IfcBuildingStorey_type = new entity(IfcSchema::Type::IfcBuildingStorey, IfcSpatialStructureElement_type); IfcCircleHollowProfileDef_type = new entity(IfcSchema::Type::IfcCircleHollowProfileDef, IfcCircleProfileDef_type); IfcColumnType_type = new entity(IfcSchema::Type::IfcColumnType, IfcBuildingElementType_type); IfcCompositeCurve_type = new entity(IfcSchema::Type::IfcCompositeCurve, IfcBoundedCurve_type); IfcConic_type = new entity(IfcSchema::Type::IfcConic, IfcCurve_type); IfcConstructionResource_type = new entity(IfcSchema::Type::IfcConstructionResource, IfcResource_type); IfcControl_type = new entity(IfcSchema::Type::IfcControl, IfcObject_type); IfcCostItem_type = new entity(IfcSchema::Type::IfcCostItem, IfcControl_type); IfcCostSchedule_type = new entity(IfcSchema::Type::IfcCostSchedule, IfcControl_type); IfcCoveringType_type = new entity(IfcSchema::Type::IfcCoveringType, IfcBuildingElementType_type); IfcCrewResource_type = new entity(IfcSchema::Type::IfcCrewResource, IfcConstructionResource_type); IfcCurtainWallType_type = new entity(IfcSchema::Type::IfcCurtainWallType, IfcBuildingElementType_type); IfcDimensionCurveDirectedCallout_type = new entity(IfcSchema::Type::IfcDimensionCurveDirectedCallout, IfcDraughtingCallout_type); IfcDistributionElementType_type = new entity(IfcSchema::Type::IfcDistributionElementType, IfcElementType_type); IfcDistributionFlowElementType_type = new entity(IfcSchema::Type::IfcDistributionFlowElementType, IfcDistributionElementType_type); IfcElectricalBaseProperties_type = new entity(IfcSchema::Type::IfcElectricalBaseProperties, IfcEnergyProperties_type); IfcElement_type = new entity(IfcSchema::Type::IfcElement, IfcProduct_type); IfcElementAssembly_type = new entity(IfcSchema::Type::IfcElementAssembly, IfcElement_type); IfcElementComponent_type = new entity(IfcSchema::Type::IfcElementComponent, IfcElement_type); IfcElementComponentType_type = new entity(IfcSchema::Type::IfcElementComponentType, IfcElementType_type); IfcEllipse_type = new entity(IfcSchema::Type::IfcEllipse, IfcConic_type); IfcEnergyConversionDeviceType_type = new entity(IfcSchema::Type::IfcEnergyConversionDeviceType, IfcDistributionFlowElementType_type); IfcEquipmentElement_type = new entity(IfcSchema::Type::IfcEquipmentElement, IfcElement_type); IfcEquipmentStandard_type = new entity(IfcSchema::Type::IfcEquipmentStandard, IfcControl_type); IfcEvaporativeCoolerType_type = new entity(IfcSchema::Type::IfcEvaporativeCoolerType, IfcEnergyConversionDeviceType_type); IfcEvaporatorType_type = new entity(IfcSchema::Type::IfcEvaporatorType, IfcEnergyConversionDeviceType_type); IfcFacetedBrep_type = new entity(IfcSchema::Type::IfcFacetedBrep, IfcManifoldSolidBrep_type); IfcFacetedBrepWithVoids_type = new entity(IfcSchema::Type::IfcFacetedBrepWithVoids, IfcManifoldSolidBrep_type); IfcFastener_type = new entity(IfcSchema::Type::IfcFastener, IfcElementComponent_type); IfcFastenerType_type = new entity(IfcSchema::Type::IfcFastenerType, IfcElementComponentType_type); IfcFeatureElement_type = new entity(IfcSchema::Type::IfcFeatureElement, IfcElement_type); IfcFeatureElementAddition_type = new entity(IfcSchema::Type::IfcFeatureElementAddition, IfcFeatureElement_type); IfcFeatureElementSubtraction_type = new entity(IfcSchema::Type::IfcFeatureElementSubtraction, IfcFeatureElement_type); IfcFlowControllerType_type = new entity(IfcSchema::Type::IfcFlowControllerType, IfcDistributionFlowElementType_type); IfcFlowFittingType_type = new entity(IfcSchema::Type::IfcFlowFittingType, IfcDistributionFlowElementType_type); IfcFlowMeterType_type = new entity(IfcSchema::Type::IfcFlowMeterType, IfcFlowControllerType_type); IfcFlowMovingDeviceType_type = new entity(IfcSchema::Type::IfcFlowMovingDeviceType, IfcDistributionFlowElementType_type); IfcFlowSegmentType_type = new entity(IfcSchema::Type::IfcFlowSegmentType, IfcDistributionFlowElementType_type); IfcFlowStorageDeviceType_type = new entity(IfcSchema::Type::IfcFlowStorageDeviceType, IfcDistributionFlowElementType_type); IfcFlowTerminalType_type = new entity(IfcSchema::Type::IfcFlowTerminalType, IfcDistributionFlowElementType_type); IfcFlowTreatmentDeviceType_type = new entity(IfcSchema::Type::IfcFlowTreatmentDeviceType, IfcDistributionFlowElementType_type); IfcFurnishingElement_type = new entity(IfcSchema::Type::IfcFurnishingElement, IfcElement_type); IfcFurnitureStandard_type = new entity(IfcSchema::Type::IfcFurnitureStandard, IfcControl_type); IfcGasTerminalType_type = new entity(IfcSchema::Type::IfcGasTerminalType, IfcFlowTerminalType_type); IfcGrid_type = new entity(IfcSchema::Type::IfcGrid, IfcProduct_type); IfcGroup_type = new entity(IfcSchema::Type::IfcGroup, IfcObject_type); IfcHeatExchangerType_type = new entity(IfcSchema::Type::IfcHeatExchangerType, IfcEnergyConversionDeviceType_type); IfcHumidifierType_type = new entity(IfcSchema::Type::IfcHumidifierType, IfcEnergyConversionDeviceType_type); IfcInventory_type = new entity(IfcSchema::Type::IfcInventory, IfcGroup_type); IfcJunctionBoxType_type = new entity(IfcSchema::Type::IfcJunctionBoxType, IfcFlowFittingType_type); IfcLaborResource_type = new entity(IfcSchema::Type::IfcLaborResource, IfcConstructionResource_type); IfcLampType_type = new entity(IfcSchema::Type::IfcLampType, IfcFlowTerminalType_type); IfcLightFixtureType_type = new entity(IfcSchema::Type::IfcLightFixtureType, IfcFlowTerminalType_type); IfcLinearDimension_type = new entity(IfcSchema::Type::IfcLinearDimension, IfcDimensionCurveDirectedCallout_type); IfcMechanicalFastener_type = new entity(IfcSchema::Type::IfcMechanicalFastener, IfcFastener_type); IfcMechanicalFastenerType_type = new entity(IfcSchema::Type::IfcMechanicalFastenerType, IfcFastenerType_type); IfcMemberType_type = new entity(IfcSchema::Type::IfcMemberType, IfcBuildingElementType_type); IfcMotorConnectionType_type = new entity(IfcSchema::Type::IfcMotorConnectionType, IfcEnergyConversionDeviceType_type); IfcMove_type = new entity(IfcSchema::Type::IfcMove, IfcTask_type); IfcOccupant_type = new entity(IfcSchema::Type::IfcOccupant, IfcActor_type); IfcOpeningElement_type = new entity(IfcSchema::Type::IfcOpeningElement, IfcFeatureElementSubtraction_type); IfcOrderAction_type = new entity(IfcSchema::Type::IfcOrderAction, IfcTask_type); IfcOutletType_type = new entity(IfcSchema::Type::IfcOutletType, IfcFlowTerminalType_type); IfcPerformanceHistory_type = new entity(IfcSchema::Type::IfcPerformanceHistory, IfcControl_type); IfcPermit_type = new entity(IfcSchema::Type::IfcPermit, IfcControl_type); IfcPipeFittingType_type = new entity(IfcSchema::Type::IfcPipeFittingType, IfcFlowFittingType_type); IfcPipeSegmentType_type = new entity(IfcSchema::Type::IfcPipeSegmentType, IfcFlowSegmentType_type); IfcPlateType_type = new entity(IfcSchema::Type::IfcPlateType, IfcBuildingElementType_type); IfcPolyline_type = new entity(IfcSchema::Type::IfcPolyline, IfcBoundedCurve_type); IfcPort_type = new entity(IfcSchema::Type::IfcPort, IfcProduct_type); IfcProcedure_type = new entity(IfcSchema::Type::IfcProcedure, IfcProcess_type); IfcProjectOrder_type = new entity(IfcSchema::Type::IfcProjectOrder, IfcControl_type); IfcProjectOrderRecord_type = new entity(IfcSchema::Type::IfcProjectOrderRecord, IfcControl_type); IfcProjectionElement_type = new entity(IfcSchema::Type::IfcProjectionElement, IfcFeatureElementAddition_type); IfcProtectiveDeviceType_type = new entity(IfcSchema::Type::IfcProtectiveDeviceType, IfcFlowControllerType_type); IfcPumpType_type = new entity(IfcSchema::Type::IfcPumpType, IfcFlowMovingDeviceType_type); IfcRadiusDimension_type = new entity(IfcSchema::Type::IfcRadiusDimension, IfcDimensionCurveDirectedCallout_type); IfcRailingType_type = new entity(IfcSchema::Type::IfcRailingType, IfcBuildingElementType_type); IfcRampFlightType_type = new entity(IfcSchema::Type::IfcRampFlightType, IfcBuildingElementType_type); IfcRelAggregates_type = new entity(IfcSchema::Type::IfcRelAggregates, IfcRelDecomposes_type); IfcRelAssignsTasks_type = new entity(IfcSchema::Type::IfcRelAssignsTasks, IfcRelAssignsToControl_type); IfcSanitaryTerminalType_type = new entity(IfcSchema::Type::IfcSanitaryTerminalType, IfcFlowTerminalType_type); IfcScheduleTimeControl_type = new entity(IfcSchema::Type::IfcScheduleTimeControl, IfcControl_type); IfcServiceLife_type = new entity(IfcSchema::Type::IfcServiceLife, IfcControl_type); IfcSite_type = new entity(IfcSchema::Type::IfcSite, IfcSpatialStructureElement_type); IfcSlabType_type = new entity(IfcSchema::Type::IfcSlabType, IfcBuildingElementType_type); IfcSpace_type = new entity(IfcSchema::Type::IfcSpace, IfcSpatialStructureElement_type); IfcSpaceHeaterType_type = new entity(IfcSchema::Type::IfcSpaceHeaterType, IfcEnergyConversionDeviceType_type); IfcSpaceProgram_type = new entity(IfcSchema::Type::IfcSpaceProgram, IfcControl_type); IfcSpaceType_type = new entity(IfcSchema::Type::IfcSpaceType, IfcSpatialStructureElementType_type); IfcStackTerminalType_type = new entity(IfcSchema::Type::IfcStackTerminalType, IfcFlowTerminalType_type); IfcStairFlightType_type = new entity(IfcSchema::Type::IfcStairFlightType, IfcBuildingElementType_type); IfcStructuralAction_type = new entity(IfcSchema::Type::IfcStructuralAction, IfcStructuralActivity_type); IfcStructuralConnection_type = new entity(IfcSchema::Type::IfcStructuralConnection, IfcStructuralItem_type); IfcStructuralCurveConnection_type = new entity(IfcSchema::Type::IfcStructuralCurveConnection, IfcStructuralConnection_type); IfcStructuralCurveMember_type = new entity(IfcSchema::Type::IfcStructuralCurveMember, IfcStructuralMember_type); IfcStructuralCurveMemberVarying_type = new entity(IfcSchema::Type::IfcStructuralCurveMemberVarying, IfcStructuralCurveMember_type); IfcStructuralLinearAction_type = new entity(IfcSchema::Type::IfcStructuralLinearAction, IfcStructuralAction_type); IfcStructuralLinearActionVarying_type = new entity(IfcSchema::Type::IfcStructuralLinearActionVarying, IfcStructuralLinearAction_type); IfcStructuralLoadGroup_type = new entity(IfcSchema::Type::IfcStructuralLoadGroup, IfcGroup_type); IfcStructuralPlanarAction_type = new entity(IfcSchema::Type::IfcStructuralPlanarAction, IfcStructuralAction_type); IfcStructuralPlanarActionVarying_type = new entity(IfcSchema::Type::IfcStructuralPlanarActionVarying, IfcStructuralPlanarAction_type); IfcStructuralPointAction_type = new entity(IfcSchema::Type::IfcStructuralPointAction, IfcStructuralAction_type); IfcStructuralPointConnection_type = new entity(IfcSchema::Type::IfcStructuralPointConnection, IfcStructuralConnection_type); IfcStructuralPointReaction_type = new entity(IfcSchema::Type::IfcStructuralPointReaction, IfcStructuralReaction_type); IfcStructuralResultGroup_type = new entity(IfcSchema::Type::IfcStructuralResultGroup, IfcGroup_type); IfcStructuralSurfaceConnection_type = new entity(IfcSchema::Type::IfcStructuralSurfaceConnection, IfcStructuralConnection_type); IfcSubContractResource_type = new entity(IfcSchema::Type::IfcSubContractResource, IfcConstructionResource_type); IfcSwitchingDeviceType_type = new entity(IfcSchema::Type::IfcSwitchingDeviceType, IfcFlowControllerType_type); IfcSystem_type = new entity(IfcSchema::Type::IfcSystem, IfcGroup_type); IfcTankType_type = new entity(IfcSchema::Type::IfcTankType, IfcFlowStorageDeviceType_type); IfcTimeSeriesSchedule_type = new entity(IfcSchema::Type::IfcTimeSeriesSchedule, IfcControl_type); IfcTransformerType_type = new entity(IfcSchema::Type::IfcTransformerType, IfcEnergyConversionDeviceType_type); IfcTransportElement_type = new entity(IfcSchema::Type::IfcTransportElement, IfcElement_type); IfcTrimmedCurve_type = new entity(IfcSchema::Type::IfcTrimmedCurve, IfcBoundedCurve_type); IfcTubeBundleType_type = new entity(IfcSchema::Type::IfcTubeBundleType, IfcEnergyConversionDeviceType_type); IfcUnitaryEquipmentType_type = new entity(IfcSchema::Type::IfcUnitaryEquipmentType, IfcEnergyConversionDeviceType_type); IfcValveType_type = new entity(IfcSchema::Type::IfcValveType, IfcFlowControllerType_type); IfcVirtualElement_type = new entity(IfcSchema::Type::IfcVirtualElement, IfcElement_type); IfcWallType_type = new entity(IfcSchema::Type::IfcWallType, IfcBuildingElementType_type); IfcWasteTerminalType_type = new entity(IfcSchema::Type::IfcWasteTerminalType, IfcFlowTerminalType_type); IfcWorkControl_type = new entity(IfcSchema::Type::IfcWorkControl, IfcControl_type); IfcWorkPlan_type = new entity(IfcSchema::Type::IfcWorkPlan, IfcWorkControl_type); IfcWorkSchedule_type = new entity(IfcSchema::Type::IfcWorkSchedule, IfcWorkControl_type); IfcZone_type = new entity(IfcSchema::Type::IfcZone, IfcGroup_type); Ifc2DCompositeCurve_type = new entity(IfcSchema::Type::Ifc2DCompositeCurve, IfcCompositeCurve_type); IfcActionRequest_type = new entity(IfcSchema::Type::IfcActionRequest, IfcControl_type); IfcAirTerminalBoxType_type = new entity(IfcSchema::Type::IfcAirTerminalBoxType, IfcFlowControllerType_type); IfcAirTerminalType_type = new entity(IfcSchema::Type::IfcAirTerminalType, IfcFlowTerminalType_type); IfcAirToAirHeatRecoveryType_type = new entity(IfcSchema::Type::IfcAirToAirHeatRecoveryType, IfcEnergyConversionDeviceType_type); IfcAngularDimension_type = new entity(IfcSchema::Type::IfcAngularDimension, IfcDimensionCurveDirectedCallout_type); IfcAsset_type = new entity(IfcSchema::Type::IfcAsset, IfcGroup_type); IfcBSplineCurve_type = new entity(IfcSchema::Type::IfcBSplineCurve, IfcBoundedCurve_type); IfcBeamType_type = new entity(IfcSchema::Type::IfcBeamType, IfcBuildingElementType_type); IfcBezierCurve_type = new entity(IfcSchema::Type::IfcBezierCurve, IfcBSplineCurve_type); IfcBoilerType_type = new entity(IfcSchema::Type::IfcBoilerType, IfcEnergyConversionDeviceType_type); IfcBuildingElement_type = new entity(IfcSchema::Type::IfcBuildingElement, IfcElement_type); IfcBuildingElementComponent_type = new entity(IfcSchema::Type::IfcBuildingElementComponent, IfcBuildingElement_type); IfcBuildingElementPart_type = new entity(IfcSchema::Type::IfcBuildingElementPart, IfcBuildingElementComponent_type); IfcBuildingElementProxy_type = new entity(IfcSchema::Type::IfcBuildingElementProxy, IfcBuildingElement_type); IfcBuildingElementProxyType_type = new entity(IfcSchema::Type::IfcBuildingElementProxyType, IfcBuildingElementType_type); IfcCableCarrierFittingType_type = new entity(IfcSchema::Type::IfcCableCarrierFittingType, IfcFlowFittingType_type); IfcCableCarrierSegmentType_type = new entity(IfcSchema::Type::IfcCableCarrierSegmentType, IfcFlowSegmentType_type); IfcCableSegmentType_type = new entity(IfcSchema::Type::IfcCableSegmentType, IfcFlowSegmentType_type); IfcChillerType_type = new entity(IfcSchema::Type::IfcChillerType, IfcEnergyConversionDeviceType_type); IfcCircle_type = new entity(IfcSchema::Type::IfcCircle, IfcConic_type); IfcCoilType_type = new entity(IfcSchema::Type::IfcCoilType, IfcEnergyConversionDeviceType_type); IfcColumn_type = new entity(IfcSchema::Type::IfcColumn, IfcBuildingElement_type); IfcCompressorType_type = new entity(IfcSchema::Type::IfcCompressorType, IfcFlowMovingDeviceType_type); IfcCondenserType_type = new entity(IfcSchema::Type::IfcCondenserType, IfcEnergyConversionDeviceType_type); IfcCondition_type = new entity(IfcSchema::Type::IfcCondition, IfcGroup_type); IfcConditionCriterion_type = new entity(IfcSchema::Type::IfcConditionCriterion, IfcControl_type); IfcConstructionEquipmentResource_type = new entity(IfcSchema::Type::IfcConstructionEquipmentResource, IfcConstructionResource_type); IfcConstructionMaterialResource_type = new entity(IfcSchema::Type::IfcConstructionMaterialResource, IfcConstructionResource_type); IfcConstructionProductResource_type = new entity(IfcSchema::Type::IfcConstructionProductResource, IfcConstructionResource_type); IfcCooledBeamType_type = new entity(IfcSchema::Type::IfcCooledBeamType, IfcEnergyConversionDeviceType_type); IfcCoolingTowerType_type = new entity(IfcSchema::Type::IfcCoolingTowerType, IfcEnergyConversionDeviceType_type); IfcCovering_type = new entity(IfcSchema::Type::IfcCovering, IfcBuildingElement_type); IfcCurtainWall_type = new entity(IfcSchema::Type::IfcCurtainWall, IfcBuildingElement_type); IfcDamperType_type = new entity(IfcSchema::Type::IfcDamperType, IfcFlowControllerType_type); IfcDiameterDimension_type = new entity(IfcSchema::Type::IfcDiameterDimension, IfcDimensionCurveDirectedCallout_type); IfcDiscreteAccessory_type = new entity(IfcSchema::Type::IfcDiscreteAccessory, IfcElementComponent_type); IfcDiscreteAccessoryType_type = new entity(IfcSchema::Type::IfcDiscreteAccessoryType, IfcElementComponentType_type); IfcDistributionChamberElementType_type = new entity(IfcSchema::Type::IfcDistributionChamberElementType, IfcDistributionFlowElementType_type); IfcDistributionControlElementType_type = new entity(IfcSchema::Type::IfcDistributionControlElementType, IfcDistributionElementType_type); IfcDistributionElement_type = new entity(IfcSchema::Type::IfcDistributionElement, IfcElement_type); IfcDistributionFlowElement_type = new entity(IfcSchema::Type::IfcDistributionFlowElement, IfcDistributionElement_type); IfcDistributionPort_type = new entity(IfcSchema::Type::IfcDistributionPort, IfcPort_type); IfcDoor_type = new entity(IfcSchema::Type::IfcDoor, IfcBuildingElement_type); IfcDuctFittingType_type = new entity(IfcSchema::Type::IfcDuctFittingType, IfcFlowFittingType_type); IfcDuctSegmentType_type = new entity(IfcSchema::Type::IfcDuctSegmentType, IfcFlowSegmentType_type); IfcDuctSilencerType_type = new entity(IfcSchema::Type::IfcDuctSilencerType, IfcFlowTreatmentDeviceType_type); IfcEdgeFeature_type = new entity(IfcSchema::Type::IfcEdgeFeature, IfcFeatureElementSubtraction_type); IfcElectricApplianceType_type = new entity(IfcSchema::Type::IfcElectricApplianceType, IfcFlowTerminalType_type); IfcElectricFlowStorageDeviceType_type = new entity(IfcSchema::Type::IfcElectricFlowStorageDeviceType, IfcFlowStorageDeviceType_type); IfcElectricGeneratorType_type = new entity(IfcSchema::Type::IfcElectricGeneratorType, IfcEnergyConversionDeviceType_type); IfcElectricHeaterType_type = new entity(IfcSchema::Type::IfcElectricHeaterType, IfcFlowTerminalType_type); IfcElectricMotorType_type = new entity(IfcSchema::Type::IfcElectricMotorType, IfcEnergyConversionDeviceType_type); IfcElectricTimeControlType_type = new entity(IfcSchema::Type::IfcElectricTimeControlType, IfcFlowControllerType_type); IfcElectricalCircuit_type = new entity(IfcSchema::Type::IfcElectricalCircuit, IfcSystem_type); IfcElectricalElement_type = new entity(IfcSchema::Type::IfcElectricalElement, IfcElement_type); IfcEnergyConversionDevice_type = new entity(IfcSchema::Type::IfcEnergyConversionDevice, IfcDistributionFlowElement_type); IfcFanType_type = new entity(IfcSchema::Type::IfcFanType, IfcFlowMovingDeviceType_type); IfcFilterType_type = new entity(IfcSchema::Type::IfcFilterType, IfcFlowTreatmentDeviceType_type); IfcFireSuppressionTerminalType_type = new entity(IfcSchema::Type::IfcFireSuppressionTerminalType, IfcFlowTerminalType_type); IfcFlowController_type = new entity(IfcSchema::Type::IfcFlowController, IfcDistributionFlowElement_type); IfcFlowFitting_type = new entity(IfcSchema::Type::IfcFlowFitting, IfcDistributionFlowElement_type); IfcFlowInstrumentType_type = new entity(IfcSchema::Type::IfcFlowInstrumentType, IfcDistributionControlElementType_type); IfcFlowMovingDevice_type = new entity(IfcSchema::Type::IfcFlowMovingDevice, IfcDistributionFlowElement_type); IfcFlowSegment_type = new entity(IfcSchema::Type::IfcFlowSegment, IfcDistributionFlowElement_type); IfcFlowStorageDevice_type = new entity(IfcSchema::Type::IfcFlowStorageDevice, IfcDistributionFlowElement_type); IfcFlowTerminal_type = new entity(IfcSchema::Type::IfcFlowTerminal, IfcDistributionFlowElement_type); IfcFlowTreatmentDevice_type = new entity(IfcSchema::Type::IfcFlowTreatmentDevice, IfcDistributionFlowElement_type); IfcFooting_type = new entity(IfcSchema::Type::IfcFooting, IfcBuildingElement_type); IfcMember_type = new entity(IfcSchema::Type::IfcMember, IfcBuildingElement_type); IfcPile_type = new entity(IfcSchema::Type::IfcPile, IfcBuildingElement_type); IfcPlate_type = new entity(IfcSchema::Type::IfcPlate, IfcBuildingElement_type); IfcRailing_type = new entity(IfcSchema::Type::IfcRailing, IfcBuildingElement_type); IfcRamp_type = new entity(IfcSchema::Type::IfcRamp, IfcBuildingElement_type); IfcRampFlight_type = new entity(IfcSchema::Type::IfcRampFlight, IfcBuildingElement_type); IfcRationalBezierCurve_type = new entity(IfcSchema::Type::IfcRationalBezierCurve, IfcBezierCurve_type); IfcReinforcingElement_type = new entity(IfcSchema::Type::IfcReinforcingElement, IfcBuildingElementComponent_type); IfcReinforcingMesh_type = new entity(IfcSchema::Type::IfcReinforcingMesh, IfcReinforcingElement_type); IfcRoof_type = new entity(IfcSchema::Type::IfcRoof, IfcBuildingElement_type); IfcRoundedEdgeFeature_type = new entity(IfcSchema::Type::IfcRoundedEdgeFeature, IfcEdgeFeature_type); IfcSensorType_type = new entity(IfcSchema::Type::IfcSensorType, IfcDistributionControlElementType_type); IfcSlab_type = new entity(IfcSchema::Type::IfcSlab, IfcBuildingElement_type); IfcStair_type = new entity(IfcSchema::Type::IfcStair, IfcBuildingElement_type); IfcStairFlight_type = new entity(IfcSchema::Type::IfcStairFlight, IfcBuildingElement_type); IfcStructuralAnalysisModel_type = new entity(IfcSchema::Type::IfcStructuralAnalysisModel, IfcSystem_type); IfcTendon_type = new entity(IfcSchema::Type::IfcTendon, IfcReinforcingElement_type); IfcTendonAnchor_type = new entity(IfcSchema::Type::IfcTendonAnchor, IfcReinforcingElement_type); IfcVibrationIsolatorType_type = new entity(IfcSchema::Type::IfcVibrationIsolatorType, IfcDiscreteAccessoryType_type); IfcWall_type = new entity(IfcSchema::Type::IfcWall, IfcBuildingElement_type); IfcWallStandardCase_type = new entity(IfcSchema::Type::IfcWallStandardCase, IfcWall_type); IfcWindow_type = new entity(IfcSchema::Type::IfcWindow, IfcBuildingElement_type); IfcActuatorType_type = new entity(IfcSchema::Type::IfcActuatorType, IfcDistributionControlElementType_type); IfcAlarmType_type = new entity(IfcSchema::Type::IfcAlarmType, IfcDistributionControlElementType_type); IfcBeam_type = new entity(IfcSchema::Type::IfcBeam, IfcBuildingElement_type); IfcChamferEdgeFeature_type = new entity(IfcSchema::Type::IfcChamferEdgeFeature, IfcEdgeFeature_type); IfcControllerType_type = new entity(IfcSchema::Type::IfcControllerType, IfcDistributionControlElementType_type); IfcDistributionChamberElement_type = new entity(IfcSchema::Type::IfcDistributionChamberElement, IfcDistributionFlowElement_type); IfcDistributionControlElement_type = new entity(IfcSchema::Type::IfcDistributionControlElement, IfcDistributionElement_type); IfcElectricDistributionPoint_type = new entity(IfcSchema::Type::IfcElectricDistributionPoint, IfcFlowController_type); IfcReinforcingBar_type = new entity(IfcSchema::Type::IfcReinforcingBar, IfcReinforcingElement_type); { std::vector items; items.reserve(3); items.push_back(IfcOrganization_type); items.push_back(IfcPerson_type); items.push_back(IfcPersonAndOrganization_type); IfcActorSelect_type = new select_type(IfcSchema::Type::IfcActorSelect, items); } { std::vector items; items.reserve(3); items.push_back(IfcMeasureWithUnit_type); items.push_back(IfcMonetaryMeasure_type); items.push_back(IfcRatioMeasure_type); IfcAppliedValueSelect_type = new select_type(IfcSchema::Type::IfcAppliedValueSelect, items); } { std::vector items; items.reserve(2); items.push_back(IfcAxis2Placement2D_type); items.push_back(IfcAxis2Placement3D_type); IfcAxis2Placement_type = new select_type(IfcSchema::Type::IfcAxis2Placement, items); } { std::vector items; items.reserve(4); items.push_back(IfcBooleanResult_type); items.push_back(IfcCsgPrimitive3D_type); items.push_back(IfcHalfSpaceSolid_type); items.push_back(IfcSolidModel_type); IfcBooleanOperand_type = new select_type(IfcSchema::Type::IfcBooleanOperand, items); } { std::vector items; items.reserve(1); items.push_back(IfcTextStyleForDefinedFont_type); IfcCharacterStyleSelect_type = new select_type(IfcSchema::Type::IfcCharacterStyleSelect, items); } { std::vector items; items.reserve(2); items.push_back(IfcClassificationNotation_type); items.push_back(IfcClassificationReference_type); IfcClassificationNotationSelect_type = new select_type(IfcSchema::Type::IfcClassificationNotationSelect, items); } { std::vector items; items.reserve(2); items.push_back(IfcColourSpecification_type); items.push_back(IfcPreDefinedColour_type); IfcColour_type = new select_type(IfcSchema::Type::IfcColour, items); } { std::vector items; items.reserve(2); items.push_back(IfcColourRgb_type); items.push_back(IfcNormalisedRatioMeasure_type); IfcColourOrFactor_type = new select_type(IfcSchema::Type::IfcColourOrFactor, items); } { std::vector items; items.reserve(2); items.push_back(IfcLabel_type); items.push_back(IfcMeasureWithUnit_type); IfcConditionCriterionSelect_type = new select_type(IfcSchema::Type::IfcConditionCriterionSelect, items); } { std::vector items; items.reserve(2); items.push_back(IfcBooleanResult_type); items.push_back(IfcCsgPrimitive3D_type); IfcCsgSelect_type = new select_type(IfcSchema::Type::IfcCsgSelect, items); } { std::vector items; items.reserve(2); items.push_back(IfcBoundedCurve_type); items.push_back(IfcEdgeCurve_type); IfcCurveOrEdgeCurve_type = new select_type(IfcSchema::Type::IfcCurveOrEdgeCurve, items); } { std::vector items; items.reserve(2); items.push_back(IfcCurveStyleFont_type); items.push_back(IfcPreDefinedCurveFont_type); IfcCurveStyleFontSelect_type = new select_type(IfcSchema::Type::IfcCurveStyleFontSelect, items); } { std::vector items; items.reserve(3); items.push_back(IfcCalendarDate_type); items.push_back(IfcDateAndTime_type); items.push_back(IfcLocalTime_type); IfcDateTimeSelect_type = new select_type(IfcSchema::Type::IfcDateTimeSelect, items); } { std::vector items; items.reserve(2); items.push_back(IfcExternallyDefinedSymbol_type); items.push_back(IfcPreDefinedSymbol_type); IfcDefinedSymbolSelect_type = new select_type(IfcSchema::Type::IfcDefinedSymbolSelect, items); } { std::vector items; items.reserve(68); items.push_back(IfcAbsorbedDoseMeasure_type); items.push_back(IfcAccelerationMeasure_type); items.push_back(IfcAngularVelocityMeasure_type); items.push_back(IfcCompoundPlaneAngleMeasure_type); items.push_back(IfcCurvatureMeasure_type); items.push_back(IfcDoseEquivalentMeasure_type); items.push_back(IfcDynamicViscosityMeasure_type); items.push_back(IfcElectricCapacitanceMeasure_type); items.push_back(IfcElectricChargeMeasure_type); items.push_back(IfcElectricConductanceMeasure_type); items.push_back(IfcElectricResistanceMeasure_type); items.push_back(IfcElectricVoltageMeasure_type); items.push_back(IfcEnergyMeasure_type); items.push_back(IfcForceMeasure_type); items.push_back(IfcFrequencyMeasure_type); items.push_back(IfcHeatFluxDensityMeasure_type); items.push_back(IfcHeatingValueMeasure_type); items.push_back(IfcIlluminanceMeasure_type); items.push_back(IfcInductanceMeasure_type); items.push_back(IfcIntegerCountRateMeasure_type); items.push_back(IfcIonConcentrationMeasure_type); items.push_back(IfcIsothermalMoistureCapacityMeasure_type); items.push_back(IfcKinematicViscosityMeasure_type); items.push_back(IfcLinearForceMeasure_type); items.push_back(IfcLinearMomentMeasure_type); items.push_back(IfcLinearStiffnessMeasure_type); items.push_back(IfcLinearVelocityMeasure_type); items.push_back(IfcLuminousFluxMeasure_type); items.push_back(IfcLuminousIntensityDistributionMeasure_type); items.push_back(IfcMagneticFluxDensityMeasure_type); items.push_back(IfcMagneticFluxMeasure_type); items.push_back(IfcMassDensityMeasure_type); items.push_back(IfcMassFlowRateMeasure_type); items.push_back(IfcMassPerLengthMeasure_type); items.push_back(IfcModulusOfElasticityMeasure_type); items.push_back(IfcModulusOfLinearSubgradeReactionMeasure_type); items.push_back(IfcModulusOfRotationalSubgradeReactionMeasure_type); items.push_back(IfcModulusOfSubgradeReactionMeasure_type); items.push_back(IfcMoistureDiffusivityMeasure_type); items.push_back(IfcMolecularWeightMeasure_type); items.push_back(IfcMomentOfInertiaMeasure_type); items.push_back(IfcMonetaryMeasure_type); items.push_back(IfcPHMeasure_type); items.push_back(IfcPlanarForceMeasure_type); items.push_back(IfcPowerMeasure_type); items.push_back(IfcPressureMeasure_type); items.push_back(IfcRadioActivityMeasure_type); items.push_back(IfcRotationalFrequencyMeasure_type); items.push_back(IfcRotationalMassMeasure_type); items.push_back(IfcRotationalStiffnessMeasure_type); items.push_back(IfcSectionModulusMeasure_type); items.push_back(IfcSectionalAreaIntegralMeasure_type); items.push_back(IfcShearModulusMeasure_type); items.push_back(IfcSoundPowerMeasure_type); items.push_back(IfcSoundPressureMeasure_type); items.push_back(IfcSpecificHeatCapacityMeasure_type); items.push_back(IfcTemperatureGradientMeasure_type); items.push_back(IfcThermalAdmittanceMeasure_type); items.push_back(IfcThermalConductivityMeasure_type); items.push_back(IfcThermalExpansionCoefficientMeasure_type); items.push_back(IfcThermalResistanceMeasure_type); items.push_back(IfcThermalTransmittanceMeasure_type); items.push_back(IfcTimeStamp_type); items.push_back(IfcTorqueMeasure_type); items.push_back(IfcVaporPermeabilityMeasure_type); items.push_back(IfcVolumetricFlowRateMeasure_type); items.push_back(IfcWarpingConstantMeasure_type); items.push_back(IfcWarpingMomentMeasure_type); IfcDerivedMeasureValue_type = new select_type(IfcSchema::Type::IfcDerivedMeasureValue, items); } { std::vector items; items.reserve(2); items.push_back(IfcDocumentInformation_type); items.push_back(IfcDocumentReference_type); IfcDocumentSelect_type = new select_type(IfcSchema::Type::IfcDocumentSelect, items); } { std::vector items; items.reserve(3); items.push_back(IfcAnnotationCurveOccurrence_type); items.push_back(IfcAnnotationSymbolOccurrence_type); items.push_back(IfcAnnotationTextOccurrence_type); IfcDraughtingCalloutElement_type = new select_type(IfcSchema::Type::IfcDraughtingCalloutElement, items); } { std::vector items; items.reserve(1); items.push_back(IfcFillAreaStyleTileSymbolWithStyle_type); IfcFillAreaStyleTileShapeSelect_type = new select_type(IfcSchema::Type::IfcFillAreaStyleTileShapeSelect, items); } { std::vector items; items.reserve(4); items.push_back(IfcColour_type); items.push_back(IfcExternallyDefinedHatchStyle_type); items.push_back(IfcFillAreaStyleHatching_type); items.push_back(IfcFillAreaStyleTiles_type); IfcFillStyleSelect_type = new select_type(IfcSchema::Type::IfcFillStyleSelect, items); } { std::vector items; items.reserve(3); items.push_back(IfcCurve_type); items.push_back(IfcPoint_type); items.push_back(IfcSurface_type); IfcGeometricSetSelect_type = new select_type(IfcSchema::Type::IfcGeometricSetSelect, items); } { std::vector items; items.reserve(2); items.push_back(IfcOneDirectionRepeatFactor_type); items.push_back(IfcPositiveLengthMeasure_type); IfcHatchLineDistanceSelect_type = new select_type(IfcSchema::Type::IfcHatchLineDistanceSelect, items); } { std::vector items; items.reserve(2); items.push_back(IfcRepresentation_type); items.push_back(IfcRepresentationItem_type); IfcLayeredItem_type = new select_type(IfcSchema::Type::IfcLayeredItem, items); } { std::vector items; items.reserve(2); items.push_back(IfcLibraryInformation_type); items.push_back(IfcLibraryReference_type); IfcLibrarySelect_type = new select_type(IfcSchema::Type::IfcLibrarySelect, items); } { std::vector items; items.reserve(2); items.push_back(IfcExternalReference_type); items.push_back(IfcLightIntensityDistribution_type); IfcLightDistributionDataSourceSelect_type = new select_type(IfcSchema::Type::IfcLightDistributionDataSourceSelect, items); } { std::vector items; items.reserve(5); items.push_back(IfcMaterial_type); items.push_back(IfcMaterialLayer_type); items.push_back(IfcMaterialLayerSet_type); items.push_back(IfcMaterialLayerSetUsage_type); items.push_back(IfcMaterialList_type); IfcMaterialSelect_type = new select_type(IfcSchema::Type::IfcMaterialSelect, items); } { std::vector items; items.reserve(22); items.push_back(IfcAmountOfSubstanceMeasure_type); items.push_back(IfcAreaMeasure_type); items.push_back(IfcComplexNumber_type); items.push_back(IfcContextDependentMeasure_type); items.push_back(IfcCountMeasure_type); items.push_back(IfcDescriptiveMeasure_type); items.push_back(IfcElectricCurrentMeasure_type); items.push_back(IfcLengthMeasure_type); items.push_back(IfcLuminousIntensityMeasure_type); items.push_back(IfcMassMeasure_type); items.push_back(IfcNormalisedRatioMeasure_type); items.push_back(IfcNumericMeasure_type); items.push_back(IfcParameterValue_type); items.push_back(IfcPlaneAngleMeasure_type); items.push_back(IfcPositiveLengthMeasure_type); items.push_back(IfcPositivePlaneAngleMeasure_type); items.push_back(IfcPositiveRatioMeasure_type); items.push_back(IfcRatioMeasure_type); items.push_back(IfcSolidAngleMeasure_type); items.push_back(IfcThermodynamicTemperatureMeasure_type); items.push_back(IfcTimeMeasure_type); items.push_back(IfcVolumeMeasure_type); IfcMeasureValue_type = new select_type(IfcSchema::Type::IfcMeasureValue, items); } { std::vector items; items.reserve(6); items.push_back(IfcCostValue_type); items.push_back(IfcDateTimeSelect_type); items.push_back(IfcMeasureWithUnit_type); items.push_back(IfcTable_type); items.push_back(IfcText_type); items.push_back(IfcTimeSeries_type); IfcMetricValueSelect_type = new select_type(IfcSchema::Type::IfcMetricValueSelect, items); } { std::vector items; items.reserve(13); items.push_back(IfcAddress_type); items.push_back(IfcAppliedValue_type); items.push_back(IfcCalendarDate_type); items.push_back(IfcDateAndTime_type); items.push_back(IfcExternalReference_type); items.push_back(IfcLocalTime_type); items.push_back(IfcMaterial_type); items.push_back(IfcMaterialLayer_type); items.push_back(IfcMaterialList_type); items.push_back(IfcOrganization_type); items.push_back(IfcPerson_type); items.push_back(IfcPersonAndOrganization_type); items.push_back(IfcTimeSeries_type); IfcObjectReferenceSelect_type = new select_type(IfcSchema::Type::IfcObjectReferenceSelect, items); } { std::vector items; items.reserve(2); items.push_back(IfcDirection_type); items.push_back(IfcPlaneAngleMeasure_type); IfcOrientationSelect_type = new select_type(IfcSchema::Type::IfcOrientationSelect, items); } { std::vector items; items.reserve(2); items.push_back(IfcPoint_type); items.push_back(IfcVertexPoint_type); IfcPointOrVertexPoint_type = new select_type(IfcSchema::Type::IfcPointOrVertexPoint, items); } { std::vector items; items.reserve(6); items.push_back(IfcCurveStyle_type); items.push_back(IfcFillAreaStyle_type); items.push_back(IfcNullStyle_type); items.push_back(IfcSurfaceStyle_type); items.push_back(IfcSymbolStyle_type); items.push_back(IfcTextStyle_type); IfcPresentationStyleSelect_type = new select_type(IfcSchema::Type::IfcPresentationStyleSelect, items); } { std::vector items; items.reserve(2); items.push_back(IfcClosedShell_type); items.push_back(IfcOpenShell_type); IfcShell_type = new select_type(IfcSchema::Type::IfcShell, items); } { std::vector items; items.reserve(7); items.push_back(IfcBoolean_type); items.push_back(IfcIdentifier_type); items.push_back(IfcInteger_type); items.push_back(IfcLabel_type); items.push_back(IfcLogical_type); items.push_back(IfcReal_type); items.push_back(IfcText_type); IfcSimpleValue_type = new select_type(IfcSchema::Type::IfcSimpleValue, items); } { std::vector items; items.reserve(6); items.push_back(IfcDescriptiveMeasure_type); items.push_back(IfcLengthMeasure_type); items.push_back(IfcNormalisedRatioMeasure_type); items.push_back(IfcPositiveLengthMeasure_type); items.push_back(IfcPositiveRatioMeasure_type); items.push_back(IfcRatioMeasure_type); IfcSizeSelect_type = new select_type(IfcSchema::Type::IfcSizeSelect, items); } { std::vector items; items.reserve(2); items.push_back(IfcSpecularExponent_type); items.push_back(IfcSpecularRoughness_type); IfcSpecularHighlightSelect_type = new select_type(IfcSchema::Type::IfcSpecularHighlightSelect, items); } { std::vector items; items.reserve(2); items.push_back(IfcElement_type); items.push_back(IfcStructuralItem_type); IfcStructuralActivityAssignmentSelect_type = new select_type(IfcSchema::Type::IfcStructuralActivityAssignmentSelect, items); } { std::vector items; items.reserve(3); items.push_back(IfcFaceBasedSurfaceModel_type); items.push_back(IfcFaceSurface_type); items.push_back(IfcSurface_type); IfcSurfaceOrFaceSurface_type = new select_type(IfcSchema::Type::IfcSurfaceOrFaceSurface, items); } { std::vector items; items.reserve(5); items.push_back(IfcExternallyDefinedSurfaceStyle_type); items.push_back(IfcSurfaceStyleLighting_type); items.push_back(IfcSurfaceStyleRefraction_type); items.push_back(IfcSurfaceStyleShading_type); items.push_back(IfcSurfaceStyleWithTextures_type); IfcSurfaceStyleElementSelect_type = new select_type(IfcSchema::Type::IfcSurfaceStyleElementSelect, items); } { std::vector items; items.reserve(1); items.push_back(IfcColour_type); IfcSymbolStyleSelect_type = new select_type(IfcSchema::Type::IfcSymbolStyleSelect, items); } { std::vector items; items.reserve(2); items.push_back(IfcExternallyDefinedTextFont_type); items.push_back(IfcPreDefinedTextFont_type); IfcTextFontSelect_type = new select_type(IfcSchema::Type::IfcTextFontSelect, items); } { std::vector items; items.reserve(2); items.push_back(IfcTextStyleTextModel_type); items.push_back(IfcTextStyleWithBoxCharacteristics_type); IfcTextStyleSelect_type = new select_type(IfcSchema::Type::IfcTextStyleSelect, items); } { std::vector items; items.reserve(2); items.push_back(IfcCartesianPoint_type); items.push_back(IfcParameterValue_type); IfcTrimmingSelect_type = new select_type(IfcSchema::Type::IfcTrimmingSelect, items); } { std::vector items; items.reserve(3); items.push_back(IfcDerivedUnit_type); items.push_back(IfcMonetaryUnit_type); items.push_back(IfcNamedUnit_type); IfcUnit_type = new select_type(IfcSchema::Type::IfcUnit, items); } { std::vector items; items.reserve(3); items.push_back(IfcDerivedMeasureValue_type); items.push_back(IfcMeasureValue_type); items.push_back(IfcSimpleValue_type); IfcValue_type = new select_type(IfcSchema::Type::IfcValue, items); } { std::vector items; items.reserve(2); items.push_back(IfcDirection_type); items.push_back(IfcVector_type); IfcVectorOrDirection_type = new select_type(IfcSchema::Type::IfcVectorOrDirection, items); } { std::vector items; items.reserve(2); items.push_back(IfcCurveStyleFontAndScaling_type); items.push_back(IfcCurveStyleFontSelect_type); IfcCurveFontOrScaledCurveFontSelect_type = new select_type(IfcSchema::Type::IfcCurveFontOrScaledCurveFontSelect, items); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(2); derived.push_back(false); derived.push_back(false); Ifc2DCompositeCurve_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("RequestID", new named_type(IfcIdentifier_type), false)); std::vector derived; derived.reserve(6); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcActionRequest_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("TheActor", new named_type(IfcActorSelect_type), false)); std::vector derived; derived.reserve(6); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcActor_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::attribute("Role", new named_type(IfcRoleEnum_type), false)); attributes.push_back(new entity::attribute("UserDefinedRole", new named_type(IfcLabel_type), true)); attributes.push_back(new entity::attribute("Description", new named_type(IfcText_type), true)); std::vector derived; derived.reserve(3); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcActorRole_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcActuatorTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcActuatorType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::attribute("Purpose", new named_type(IfcAddressTypeEnum_type), true)); attributes.push_back(new entity::attribute("Description", new named_type(IfcText_type), true)); attributes.push_back(new entity::attribute("UserDefinedPurpose", new named_type(IfcLabel_type), true)); std::vector derived; derived.reserve(3); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcAddress_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcAirTerminalBoxTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcAirTerminalBoxType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcAirTerminalTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcAirTerminalType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcAirToAirHeatRecoveryTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcAirToAirHeatRecoveryType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcAlarmTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcAlarmType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(1); derived.push_back(false); IfcAngularDimension_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(7); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcAnnotation_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(3); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcAnnotationCurveOccurrence_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("OuterBoundary", new named_type(IfcCurve_type), false)); attributes.push_back(new entity::attribute("InnerBoundaries", new aggregation_type(aggregation_type::set_type, 1, -1, new named_type(IfcCurve_type)), true)); std::vector derived; derived.reserve(2); derived.push_back(false); derived.push_back(false); IfcAnnotationFillArea_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("FillStyleTarget", new named_type(IfcPoint_type), true)); attributes.push_back(new entity::attribute("GlobalOrLocal", new named_type(IfcGlobalOrLocalEnum_type), true)); std::vector derived; derived.reserve(5); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcAnnotationFillAreaOccurrence_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(3); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcAnnotationOccurrence_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("Item", new named_type(IfcGeometricRepresentationItem_type), false)); attributes.push_back(new entity::attribute("TextureCoordinates", new named_type(IfcTextureCoordinate_type), true)); std::vector derived; derived.reserve(2); derived.push_back(false); derived.push_back(false); IfcAnnotationSurface_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(3); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcAnnotationSurfaceOccurrence_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(3); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcAnnotationSymbolOccurrence_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(3); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcAnnotationTextOccurrence_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(4); attributes.push_back(new entity::attribute("ApplicationDeveloper", new named_type(IfcOrganization_type), false)); attributes.push_back(new entity::attribute("Version", new named_type(IfcLabel_type), false)); attributes.push_back(new entity::attribute("ApplicationFullName", new named_type(IfcLabel_type), false)); attributes.push_back(new entity::attribute("ApplicationIdentifier", new named_type(IfcIdentifier_type), false)); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcApplication_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(6); attributes.push_back(new entity::attribute("Name", new named_type(IfcLabel_type), true)); attributes.push_back(new entity::attribute("Description", new named_type(IfcText_type), true)); attributes.push_back(new entity::attribute("AppliedValue", new named_type(IfcAppliedValueSelect_type), true)); attributes.push_back(new entity::attribute("UnitBasis", new named_type(IfcMeasureWithUnit_type), true)); attributes.push_back(new entity::attribute("ApplicableDate", new named_type(IfcDateTimeSelect_type), true)); attributes.push_back(new entity::attribute("FixedUntilDate", new named_type(IfcDateTimeSelect_type), true)); std::vector derived; derived.reserve(6); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcAppliedValue_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(5); attributes.push_back(new entity::attribute("ComponentOfTotal", new named_type(IfcAppliedValue_type), false)); attributes.push_back(new entity::attribute("Components", new aggregation_type(aggregation_type::set_type, 1, -1, new named_type(IfcAppliedValue_type)), false)); attributes.push_back(new entity::attribute("ArithmeticOperator", new named_type(IfcArithmeticOperatorEnum_type), false)); attributes.push_back(new entity::attribute("Name", new named_type(IfcLabel_type), true)); attributes.push_back(new entity::attribute("Description", new named_type(IfcText_type), true)); std::vector derived; derived.reserve(5); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcAppliedValueRelationship_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(7); attributes.push_back(new entity::attribute("Description", new named_type(IfcText_type), true)); attributes.push_back(new entity::attribute("ApprovalDateTime", new named_type(IfcDateTimeSelect_type), false)); attributes.push_back(new entity::attribute("ApprovalStatus", new named_type(IfcLabel_type), true)); attributes.push_back(new entity::attribute("ApprovalLevel", new named_type(IfcLabel_type), true)); attributes.push_back(new entity::attribute("ApprovalQualifier", new named_type(IfcText_type), true)); attributes.push_back(new entity::attribute("Name", new named_type(IfcLabel_type), false)); attributes.push_back(new entity::attribute("Identifier", new named_type(IfcIdentifier_type), false)); std::vector derived; derived.reserve(7); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcApproval_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::attribute("Actor", new named_type(IfcActorSelect_type), false)); attributes.push_back(new entity::attribute("Approval", new named_type(IfcApproval_type), false)); attributes.push_back(new entity::attribute("Role", new named_type(IfcActorRole_type), false)); std::vector derived; derived.reserve(3); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcApprovalActorRelationship_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("ApprovedProperties", new aggregation_type(aggregation_type::set_type, 1, -1, new named_type(IfcProperty_type)), false)); attributes.push_back(new entity::attribute("Approval", new named_type(IfcApproval_type), false)); std::vector derived; derived.reserve(2); derived.push_back(false); derived.push_back(false); IfcApprovalPropertyRelationship_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(4); attributes.push_back(new entity::attribute("RelatedApproval", new named_type(IfcApproval_type), false)); attributes.push_back(new entity::attribute("RelatingApproval", new named_type(IfcApproval_type), false)); attributes.push_back(new entity::attribute("Description", new named_type(IfcText_type), true)); attributes.push_back(new entity::attribute("Name", new named_type(IfcLabel_type), false)); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcApprovalRelationship_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("OuterCurve", new named_type(IfcCurve_type), false)); std::vector derived; derived.reserve(3); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcArbitraryClosedProfileDef_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("Curve", new named_type(IfcBoundedCurve_type), false)); std::vector derived; derived.reserve(3); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcArbitraryOpenProfileDef_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("InnerCurves", new aggregation_type(aggregation_type::set_type, 1, -1, new named_type(IfcCurve_type)), false)); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcArbitraryProfileDefWithVoids_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(9); attributes.push_back(new entity::attribute("AssetID", new named_type(IfcIdentifier_type), false)); attributes.push_back(new entity::attribute("OriginalValue", new named_type(IfcCostValue_type), false)); attributes.push_back(new entity::attribute("CurrentValue", new named_type(IfcCostValue_type), false)); attributes.push_back(new entity::attribute("TotalReplacementCost", new named_type(IfcCostValue_type), false)); attributes.push_back(new entity::attribute("Owner", new named_type(IfcActorSelect_type), false)); attributes.push_back(new entity::attribute("User", new named_type(IfcActorSelect_type), false)); attributes.push_back(new entity::attribute("ResponsiblePerson", new named_type(IfcPerson_type), false)); attributes.push_back(new entity::attribute("IncorporationDate", new named_type(IfcCalendarDate_type), false)); attributes.push_back(new entity::attribute("DepreciatedValue", new named_type(IfcCostValue_type), false)); std::vector derived; derived.reserve(14); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcAsset_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(4); attributes.push_back(new entity::attribute("TopFlangeWidth", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("TopFlangeThickness", new named_type(IfcPositiveLengthMeasure_type), true)); attributes.push_back(new entity::attribute("TopFlangeFilletRadius", new named_type(IfcPositiveLengthMeasure_type), true)); attributes.push_back(new entity::attribute("CentreOfGravityInY", new named_type(IfcPositiveLengthMeasure_type), true)); std::vector derived; derived.reserve(12); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcAsymmetricIShapeProfileDef_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("Axis", new named_type(IfcDirection_type), true)); std::vector derived; derived.reserve(2); derived.push_back(false); derived.push_back(false); IfcAxis1Placement_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("RefDirection", new named_type(IfcDirection_type), true)); std::vector derived; derived.reserve(2); derived.push_back(false); derived.push_back(false); IfcAxis2Placement2D_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("Axis", new named_type(IfcDirection_type), true)); attributes.push_back(new entity::attribute("RefDirection", new named_type(IfcDirection_type), true)); std::vector derived; derived.reserve(3); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcAxis2Placement3D_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(5); attributes.push_back(new entity::attribute("Degree", new simple_type(simple_type::integer_type), false)); attributes.push_back(new entity::attribute("ControlPointsList", new aggregation_type(aggregation_type::list_type, 2, -1, new named_type(IfcCartesianPoint_type)), false)); attributes.push_back(new entity::attribute("CurveForm", new named_type(IfcBSplineCurveForm_type), false)); attributes.push_back(new entity::attribute("ClosedCurve", new simple_type(simple_type::logical_type), false)); attributes.push_back(new entity::attribute("SelfIntersect", new simple_type(simple_type::logical_type), false)); std::vector derived; derived.reserve(5); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcBSplineCurve_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcBeam_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcBeamTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcBeamType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(5); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcBezierCurve_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("RasterFormat", new named_type(IfcIdentifier_type), false)); attributes.push_back(new entity::attribute("RasterCode", new simple_type(simple_type::boolean_type), false)); std::vector derived; derived.reserve(6); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcBlobTexture_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::attribute("XLength", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("YLength", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("ZLength", new named_type(IfcPositiveLengthMeasure_type), false)); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcBlock_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcBoilerTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcBoilerType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(3); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcBooleanClippingResult_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::attribute("Operator", new named_type(IfcBooleanOperator_type), false)); attributes.push_back(new entity::attribute("FirstOperand", new named_type(IfcBooleanOperand_type), false)); attributes.push_back(new entity::attribute("SecondOperand", new named_type(IfcBooleanOperand_type), false)); std::vector derived; derived.reserve(3); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcBooleanResult_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("Name", new named_type(IfcLabel_type), true)); std::vector derived; derived.reserve(1); derived.push_back(false); IfcBoundaryCondition_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(6); attributes.push_back(new entity::attribute("LinearStiffnessByLengthX", new named_type(IfcModulusOfLinearSubgradeReactionMeasure_type), true)); attributes.push_back(new entity::attribute("LinearStiffnessByLengthY", new named_type(IfcModulusOfLinearSubgradeReactionMeasure_type), true)); attributes.push_back(new entity::attribute("LinearStiffnessByLengthZ", new named_type(IfcModulusOfLinearSubgradeReactionMeasure_type), true)); attributes.push_back(new entity::attribute("RotationalStiffnessByLengthX", new named_type(IfcModulusOfRotationalSubgradeReactionMeasure_type), true)); attributes.push_back(new entity::attribute("RotationalStiffnessByLengthY", new named_type(IfcModulusOfRotationalSubgradeReactionMeasure_type), true)); attributes.push_back(new entity::attribute("RotationalStiffnessByLengthZ", new named_type(IfcModulusOfRotationalSubgradeReactionMeasure_type), true)); std::vector derived; derived.reserve(7); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcBoundaryEdgeCondition_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::attribute("LinearStiffnessByAreaX", new named_type(IfcModulusOfSubgradeReactionMeasure_type), true)); attributes.push_back(new entity::attribute("LinearStiffnessByAreaY", new named_type(IfcModulusOfSubgradeReactionMeasure_type), true)); attributes.push_back(new entity::attribute("LinearStiffnessByAreaZ", new named_type(IfcModulusOfSubgradeReactionMeasure_type), true)); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcBoundaryFaceCondition_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(6); attributes.push_back(new entity::attribute("LinearStiffnessX", new named_type(IfcLinearStiffnessMeasure_type), true)); attributes.push_back(new entity::attribute("LinearStiffnessY", new named_type(IfcLinearStiffnessMeasure_type), true)); attributes.push_back(new entity::attribute("LinearStiffnessZ", new named_type(IfcLinearStiffnessMeasure_type), true)); attributes.push_back(new entity::attribute("RotationalStiffnessX", new named_type(IfcRotationalStiffnessMeasure_type), true)); attributes.push_back(new entity::attribute("RotationalStiffnessY", new named_type(IfcRotationalStiffnessMeasure_type), true)); attributes.push_back(new entity::attribute("RotationalStiffnessZ", new named_type(IfcRotationalStiffnessMeasure_type), true)); std::vector derived; derived.reserve(7); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcBoundaryNodeCondition_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("WarpingStiffness", new named_type(IfcWarpingMomentMeasure_type), true)); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcBoundaryNodeConditionWarping_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(0); IfcBoundedCurve_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(0); IfcBoundedSurface_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(4); attributes.push_back(new entity::attribute("Corner", new named_type(IfcCartesianPoint_type), false)); attributes.push_back(new entity::attribute("XDim", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("YDim", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("ZDim", new named_type(IfcPositiveLengthMeasure_type), false)); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcBoundingBox_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("Enclosure", new named_type(IfcBoundingBox_type), false)); std::vector derived; derived.reserve(3); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcBoxedHalfSpace_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::attribute("ElevationOfRefHeight", new named_type(IfcLengthMeasure_type), true)); attributes.push_back(new entity::attribute("ElevationOfTerrain", new named_type(IfcLengthMeasure_type), true)); attributes.push_back(new entity::attribute("BuildingAddress", new named_type(IfcPostalAddress_type), true)); std::vector derived; derived.reserve(12); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcBuilding_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcBuildingElement_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcBuildingElementComponent_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcBuildingElementPart_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("CompositionType", new named_type(IfcElementCompositionEnum_type), true)); std::vector derived; derived.reserve(9); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcBuildingElementProxy_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcBuildingElementProxyTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcBuildingElementProxyType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(9); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcBuildingElementType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("Elevation", new named_type(IfcLengthMeasure_type), true)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcBuildingStorey_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(6); attributes.push_back(new entity::attribute("Depth", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("Width", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("WallThickness", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("Girth", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("InternalFilletRadius", new named_type(IfcPositiveLengthMeasure_type), true)); attributes.push_back(new entity::attribute("CentreOfGravityInX", new named_type(IfcPositiveLengthMeasure_type), true)); std::vector derived; derived.reserve(9); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcCShapeProfileDef_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcCableCarrierFittingTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcCableCarrierFittingType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcCableCarrierSegmentTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcCableCarrierSegmentType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcCableSegmentTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcCableSegmentType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::attribute("DayComponent", new named_type(IfcDayInMonthNumber_type), false)); attributes.push_back(new entity::attribute("MonthComponent", new named_type(IfcMonthInYearNumber_type), false)); attributes.push_back(new entity::attribute("YearComponent", new named_type(IfcYearNumber_type), false)); std::vector derived; derived.reserve(3); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcCalendarDate_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("Coordinates", new aggregation_type(aggregation_type::list_type, 1, 3, new named_type(IfcLengthMeasure_type)), false)); std::vector derived; derived.reserve(1); derived.push_back(false); IfcCartesianPoint_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(4); attributes.push_back(new entity::attribute("Axis1", new named_type(IfcDirection_type), true)); attributes.push_back(new entity::attribute("Axis2", new named_type(IfcDirection_type), true)); attributes.push_back(new entity::attribute("LocalOrigin", new named_type(IfcCartesianPoint_type), false)); attributes.push_back(new entity::attribute("Scale", new simple_type(simple_type::real_type), true)); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcCartesianTransformationOperator_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcCartesianTransformationOperator2D_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("Scale2", new simple_type(simple_type::real_type), true)); std::vector derived; derived.reserve(5); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcCartesianTransformationOperator2DnonUniform_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("Axis3", new named_type(IfcDirection_type), true)); std::vector derived; derived.reserve(5); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcCartesianTransformationOperator3D_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("Scale2", new simple_type(simple_type::real_type), true)); attributes.push_back(new entity::attribute("Scale3", new simple_type(simple_type::real_type), true)); std::vector derived; derived.reserve(7); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcCartesianTransformationOperator3DnonUniform_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("Thickness", new named_type(IfcPositiveLengthMeasure_type), false)); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcCenterLineProfileDef_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("Width", new named_type(IfcPositiveLengthMeasure_type), true)); attributes.push_back(new entity::attribute("Height", new named_type(IfcPositiveLengthMeasure_type), true)); std::vector derived; derived.reserve(11); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcChamferEdgeFeature_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcChillerTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcChillerType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("Radius", new named_type(IfcPositiveLengthMeasure_type), false)); std::vector derived; derived.reserve(2); derived.push_back(false); derived.push_back(false); IfcCircle_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("WallThickness", new named_type(IfcPositiveLengthMeasure_type), false)); std::vector derived; derived.reserve(5); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcCircleHollowProfileDef_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("Radius", new named_type(IfcPositiveLengthMeasure_type), false)); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcCircleProfileDef_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(4); attributes.push_back(new entity::attribute("Source", new named_type(IfcLabel_type), false)); attributes.push_back(new entity::attribute("Edition", new named_type(IfcLabel_type), false)); attributes.push_back(new entity::attribute("EditionDate", new named_type(IfcCalendarDate_type), true)); attributes.push_back(new entity::attribute("Name", new named_type(IfcLabel_type), false)); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcClassification_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::attribute("Notation", new named_type(IfcClassificationNotationFacet_type), false)); attributes.push_back(new entity::attribute("ItemOf", new named_type(IfcClassification_type), true)); attributes.push_back(new entity::attribute("Title", new named_type(IfcLabel_type), false)); std::vector derived; derived.reserve(3); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcClassificationItem_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("RelatingItem", new named_type(IfcClassificationItem_type), false)); attributes.push_back(new entity::attribute("RelatedItems", new aggregation_type(aggregation_type::set_type, 1, -1, new named_type(IfcClassificationItem_type)), false)); std::vector derived; derived.reserve(2); derived.push_back(false); derived.push_back(false); IfcClassificationItemRelationship_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("NotationFacets", new aggregation_type(aggregation_type::set_type, 1, -1, new named_type(IfcClassificationNotationFacet_type)), false)); std::vector derived; derived.reserve(1); derived.push_back(false); IfcClassificationNotation_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("NotationValue", new named_type(IfcLabel_type), false)); std::vector derived; derived.reserve(1); derived.push_back(false); IfcClassificationNotationFacet_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("ReferencedSource", new named_type(IfcClassification_type), true)); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcClassificationReference_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(1); derived.push_back(false); IfcClosedShell_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcCoilTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcCoilType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::attribute("Red", new named_type(IfcNormalisedRatioMeasure_type), false)); attributes.push_back(new entity::attribute("Green", new named_type(IfcNormalisedRatioMeasure_type), false)); attributes.push_back(new entity::attribute("Blue", new named_type(IfcNormalisedRatioMeasure_type), false)); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcColourRgb_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("Name", new named_type(IfcLabel_type), true)); std::vector derived; derived.reserve(1); derived.push_back(false); IfcColourSpecification_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcColumn_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcColumnTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcColumnType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("UsageName", new named_type(IfcIdentifier_type), false)); attributes.push_back(new entity::attribute("HasProperties", new aggregation_type(aggregation_type::set_type, 1, -1, new named_type(IfcProperty_type)), false)); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcComplexProperty_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("Segments", new aggregation_type(aggregation_type::list_type, 1, -1, new named_type(IfcCompositeCurveSegment_type)), false)); attributes.push_back(new entity::attribute("SelfIntersect", new simple_type(simple_type::logical_type), false)); std::vector derived; derived.reserve(2); derived.push_back(false); derived.push_back(false); IfcCompositeCurve_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::attribute("Transition", new named_type(IfcTransitionCode_type), false)); attributes.push_back(new entity::attribute("SameSense", new simple_type(simple_type::boolean_type), false)); attributes.push_back(new entity::attribute("ParentCurve", new named_type(IfcCurve_type), false)); std::vector derived; derived.reserve(3); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcCompositeCurveSegment_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("Profiles", new aggregation_type(aggregation_type::set_type, 2, -1, new named_type(IfcProfileDef_type)), false)); attributes.push_back(new entity::attribute("Label", new named_type(IfcLabel_type), true)); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcCompositeProfileDef_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcCompressorTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcCompressorType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcCondenserTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcCondenserType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(5); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcCondition_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("Criterion", new named_type(IfcConditionCriterionSelect_type), false)); attributes.push_back(new entity::attribute("CriterionDateTime", new named_type(IfcDateTimeSelect_type), false)); std::vector derived; derived.reserve(7); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcConditionCriterion_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("Position", new named_type(IfcAxis2Placement_type), false)); std::vector derived; derived.reserve(1); derived.push_back(false); IfcConic_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("CfsFaces", new aggregation_type(aggregation_type::set_type, 1, -1, new named_type(IfcFace_type)), false)); std::vector derived; derived.reserve(1); derived.push_back(false); IfcConnectedFaceSet_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("CurveOnRelatingElement", new named_type(IfcCurveOrEdgeCurve_type), false)); attributes.push_back(new entity::attribute("CurveOnRelatedElement", new named_type(IfcCurveOrEdgeCurve_type), true)); std::vector derived; derived.reserve(2); derived.push_back(false); derived.push_back(false); IfcConnectionCurveGeometry_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(0); IfcConnectionGeometry_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::attribute("EccentricityInX", new named_type(IfcLengthMeasure_type), true)); attributes.push_back(new entity::attribute("EccentricityInY", new named_type(IfcLengthMeasure_type), true)); attributes.push_back(new entity::attribute("EccentricityInZ", new named_type(IfcLengthMeasure_type), true)); std::vector derived; derived.reserve(5); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcConnectionPointEccentricity_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("PointOnRelatingElement", new named_type(IfcPointOrVertexPoint_type), false)); attributes.push_back(new entity::attribute("PointOnRelatedElement", new named_type(IfcPointOrVertexPoint_type), true)); std::vector derived; derived.reserve(2); derived.push_back(false); derived.push_back(false); IfcConnectionPointGeometry_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::attribute("LocationAtRelatingElement", new named_type(IfcAxis2Placement_type), false)); attributes.push_back(new entity::attribute("LocationAtRelatedElement", new named_type(IfcAxis2Placement_type), true)); attributes.push_back(new entity::attribute("ProfileOfPort", new named_type(IfcProfileDef_type), false)); std::vector derived; derived.reserve(3); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcConnectionPortGeometry_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("SurfaceOnRelatingElement", new named_type(IfcSurfaceOrFaceSurface_type), false)); attributes.push_back(new entity::attribute("SurfaceOnRelatedElement", new named_type(IfcSurfaceOrFaceSurface_type), true)); std::vector derived; derived.reserve(2); derived.push_back(false); derived.push_back(false); IfcConnectionSurfaceGeometry_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(7); attributes.push_back(new entity::attribute("Name", new named_type(IfcLabel_type), false)); attributes.push_back(new entity::attribute("Description", new named_type(IfcText_type), true)); attributes.push_back(new entity::attribute("ConstraintGrade", new named_type(IfcConstraintEnum_type), false)); attributes.push_back(new entity::attribute("ConstraintSource", new named_type(IfcLabel_type), true)); attributes.push_back(new entity::attribute("CreatingActor", new named_type(IfcActorSelect_type), true)); attributes.push_back(new entity::attribute("CreationTime", new named_type(IfcDateTimeSelect_type), true)); attributes.push_back(new entity::attribute("UserDefinedGrade", new named_type(IfcLabel_type), true)); std::vector derived; derived.reserve(7); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcConstraint_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(5); attributes.push_back(new entity::attribute("Name", new named_type(IfcLabel_type), true)); attributes.push_back(new entity::attribute("Description", new named_type(IfcText_type), true)); attributes.push_back(new entity::attribute("RelatingConstraint", new named_type(IfcConstraint_type), false)); attributes.push_back(new entity::attribute("RelatedConstraints", new aggregation_type(aggregation_type::list_type, 1, -1, new named_type(IfcConstraint_type)), false)); attributes.push_back(new entity::attribute("LogicalAggregator", new named_type(IfcLogicalOperatorEnum_type), false)); std::vector derived; derived.reserve(5); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcConstraintAggregationRelationship_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("ClassifiedConstraint", new named_type(IfcConstraint_type), false)); attributes.push_back(new entity::attribute("RelatedClassifications", new aggregation_type(aggregation_type::set_type, 1, -1, new named_type(IfcClassificationNotationSelect_type)), false)); std::vector derived; derived.reserve(2); derived.push_back(false); derived.push_back(false); IfcConstraintClassificationRelationship_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(4); attributes.push_back(new entity::attribute("Name", new named_type(IfcLabel_type), true)); attributes.push_back(new entity::attribute("Description", new named_type(IfcText_type), true)); attributes.push_back(new entity::attribute("RelatingConstraint", new named_type(IfcConstraint_type), false)); attributes.push_back(new entity::attribute("RelatedConstraints", new aggregation_type(aggregation_type::set_type, 1, -1, new named_type(IfcConstraint_type)), false)); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcConstraintRelationship_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(9); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcConstructionEquipmentResource_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("Suppliers", new aggregation_type(aggregation_type::set_type, 1, -1, new named_type(IfcActorSelect_type)), true)); attributes.push_back(new entity::attribute("UsageRatio", new named_type(IfcRatioMeasure_type), true)); std::vector derived; derived.reserve(11); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcConstructionMaterialResource_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(9); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcConstructionProductResource_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(4); attributes.push_back(new entity::attribute("ResourceIdentifier", new named_type(IfcIdentifier_type), true)); attributes.push_back(new entity::attribute("ResourceGroup", new named_type(IfcLabel_type), true)); attributes.push_back(new entity::attribute("ResourceConsumption", new named_type(IfcResourceConsumptionEnum_type), true)); attributes.push_back(new entity::attribute("BaseQuantity", new named_type(IfcMeasureWithUnit_type), true)); std::vector derived; derived.reserve(9); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcConstructionResource_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("Name", new named_type(IfcLabel_type), false)); std::vector derived; derived.reserve(3); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcContextDependentUnit_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(5); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcControl_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcControllerTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcControllerType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("Name", new named_type(IfcLabel_type), false)); attributes.push_back(new entity::attribute("ConversionFactor", new named_type(IfcMeasureWithUnit_type), false)); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcConversionBasedUnit_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcCooledBeamTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcCooledBeamType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcCoolingTowerTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcCoolingTowerType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::attribute("HourOffset", new named_type(IfcHourInDay_type), false)); attributes.push_back(new entity::attribute("MinuteOffset", new named_type(IfcMinuteInHour_type), true)); attributes.push_back(new entity::attribute("Sense", new named_type(IfcAheadOrBehind_type), false)); std::vector derived; derived.reserve(3); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcCoordinatedUniversalTimeOffset_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(5); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcCostItem_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(8); attributes.push_back(new entity::attribute("SubmittedBy", new named_type(IfcActorSelect_type), true)); attributes.push_back(new entity::attribute("PreparedBy", new named_type(IfcActorSelect_type), true)); attributes.push_back(new entity::attribute("SubmittedOn", new named_type(IfcDateTimeSelect_type), true)); attributes.push_back(new entity::attribute("Status", new named_type(IfcLabel_type), true)); attributes.push_back(new entity::attribute("TargetUsers", new aggregation_type(aggregation_type::set_type, 1, -1, new named_type(IfcActorSelect_type)), true)); attributes.push_back(new entity::attribute("UpdateDate", new named_type(IfcDateTimeSelect_type), true)); attributes.push_back(new entity::attribute("ID", new named_type(IfcIdentifier_type), false)); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcCostScheduleTypeEnum_type), false)); std::vector derived; derived.reserve(13); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcCostSchedule_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("CostType", new named_type(IfcLabel_type), false)); attributes.push_back(new entity::attribute("Condition", new named_type(IfcText_type), true)); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcCostValue_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcCoveringTypeEnum_type), true)); std::vector derived; derived.reserve(9); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcCovering_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcCoveringTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcCoveringType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(12); attributes.push_back(new entity::attribute("OverallHeight", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("BaseWidth2", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("Radius", new named_type(IfcPositiveLengthMeasure_type), true)); attributes.push_back(new entity::attribute("HeadWidth", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("HeadDepth2", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("HeadDepth3", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("WebThickness", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("BaseWidth4", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("BaseDepth1", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("BaseDepth2", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("BaseDepth3", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("CentreOfGravityInY", new named_type(IfcPositiveLengthMeasure_type), true)); std::vector derived; derived.reserve(15); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcCraneRailAShapeProfileDef_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(9); attributes.push_back(new entity::attribute("OverallHeight", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("HeadWidth", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("Radius", new named_type(IfcPositiveLengthMeasure_type), true)); attributes.push_back(new entity::attribute("HeadDepth2", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("HeadDepth3", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("WebThickness", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("BaseDepth1", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("BaseDepth2", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("CentreOfGravityInY", new named_type(IfcPositiveLengthMeasure_type), true)); std::vector derived; derived.reserve(12); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcCraneRailFShapeProfileDef_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(9); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcCrewResource_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("Position", new named_type(IfcAxis2Placement3D_type), false)); std::vector derived; derived.reserve(1); derived.push_back(false); IfcCsgPrimitive3D_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("TreeRootExpression", new named_type(IfcCsgSelect_type), false)); std::vector derived; derived.reserve(1); derived.push_back(false); IfcCsgSolid_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(5); attributes.push_back(new entity::attribute("RelatingMonetaryUnit", new named_type(IfcMonetaryUnit_type), false)); attributes.push_back(new entity::attribute("RelatedMonetaryUnit", new named_type(IfcMonetaryUnit_type), false)); attributes.push_back(new entity::attribute("ExchangeRate", new named_type(IfcPositiveRatioMeasure_type), false)); attributes.push_back(new entity::attribute("RateDateTime", new named_type(IfcDateAndTime_type), false)); attributes.push_back(new entity::attribute("RateSource", new named_type(IfcLibraryInformation_type), true)); std::vector derived; derived.reserve(5); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcCurrencyRelationship_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcCurtainWall_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcCurtainWallTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcCurtainWallType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(0); IfcCurve_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::attribute("BasisSurface", new named_type(IfcPlane_type), false)); attributes.push_back(new entity::attribute("OuterBoundary", new named_type(IfcCurve_type), false)); attributes.push_back(new entity::attribute("InnerBoundaries", new aggregation_type(aggregation_type::set_type, 0, -1, new named_type(IfcCurve_type)), false)); std::vector derived; derived.reserve(3); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcCurveBoundedPlane_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::attribute("CurveFont", new named_type(IfcCurveFontOrScaledCurveFontSelect_type), true)); attributes.push_back(new entity::attribute("CurveWidth", new named_type(IfcSizeSelect_type), true)); attributes.push_back(new entity::attribute("CurveColour", new named_type(IfcColour_type), true)); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcCurveStyle_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("Name", new named_type(IfcLabel_type), true)); attributes.push_back(new entity::attribute("PatternList", new aggregation_type(aggregation_type::list_type, 1, -1, new named_type(IfcCurveStyleFontPattern_type)), false)); std::vector derived; derived.reserve(2); derived.push_back(false); derived.push_back(false); IfcCurveStyleFont_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::attribute("Name", new named_type(IfcLabel_type), true)); attributes.push_back(new entity::attribute("CurveFont", new named_type(IfcCurveStyleFontSelect_type), false)); attributes.push_back(new entity::attribute("CurveFontScaling", new named_type(IfcPositiveRatioMeasure_type), false)); std::vector derived; derived.reserve(3); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcCurveStyleFontAndScaling_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("VisibleSegmentLength", new named_type(IfcLengthMeasure_type), false)); attributes.push_back(new entity::attribute("InvisibleSegmentLength", new named_type(IfcPositiveLengthMeasure_type), false)); std::vector derived; derived.reserve(2); derived.push_back(false); derived.push_back(false); IfcCurveStyleFontPattern_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcDamperTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcDamperType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("DateComponent", new named_type(IfcCalendarDate_type), false)); attributes.push_back(new entity::attribute("TimeComponent", new named_type(IfcLocalTime_type), false)); std::vector derived; derived.reserve(2); derived.push_back(false); derived.push_back(false); IfcDateAndTime_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("Definition", new named_type(IfcDefinedSymbolSelect_type), false)); attributes.push_back(new entity::attribute("Target", new named_type(IfcCartesianTransformationOperator2D_type), false)); std::vector derived; derived.reserve(2); derived.push_back(false); derived.push_back(false); IfcDefinedSymbol_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::attribute("ParentProfile", new named_type(IfcProfileDef_type), false)); attributes.push_back(new entity::attribute("Operator", new named_type(IfcCartesianTransformationOperator2D_type), false)); attributes.push_back(new entity::attribute("Label", new named_type(IfcLabel_type), true)); std::vector derived; derived.reserve(5); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcDerivedProfileDef_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::attribute("Elements", new aggregation_type(aggregation_type::set_type, 1, -1, new named_type(IfcDerivedUnitElement_type)), false)); attributes.push_back(new entity::attribute("UnitType", new named_type(IfcDerivedUnitEnum_type), false)); attributes.push_back(new entity::attribute("UserDefinedType", new named_type(IfcLabel_type), true)); std::vector derived; derived.reserve(3); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcDerivedUnit_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("Unit", new named_type(IfcNamedUnit_type), false)); attributes.push_back(new entity::attribute("Exponent", new simple_type(simple_type::integer_type), false)); std::vector derived; derived.reserve(2); derived.push_back(false); derived.push_back(false); IfcDerivedUnitElement_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(1); derived.push_back(false); IfcDiameterDimension_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcDimensionCalloutRelationship_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(3); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcDimensionCurve_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(1); derived.push_back(false); IfcDimensionCurveDirectedCallout_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("Role", new named_type(IfcDimensionExtentUsage_type), false)); std::vector derived; derived.reserve(5); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcDimensionCurveTerminator_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcDimensionPair_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(7); attributes.push_back(new entity::attribute("LengthExponent", new simple_type(simple_type::integer_type), false)); attributes.push_back(new entity::attribute("MassExponent", new simple_type(simple_type::integer_type), false)); attributes.push_back(new entity::attribute("TimeExponent", new simple_type(simple_type::integer_type), false)); attributes.push_back(new entity::attribute("ElectricCurrentExponent", new simple_type(simple_type::integer_type), false)); attributes.push_back(new entity::attribute("ThermodynamicTemperatureExponent", new simple_type(simple_type::integer_type), false)); attributes.push_back(new entity::attribute("AmountOfSubstanceExponent", new simple_type(simple_type::integer_type), false)); attributes.push_back(new entity::attribute("LuminousIntensityExponent", new simple_type(simple_type::integer_type), false)); std::vector derived; derived.reserve(7); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcDimensionalExponents_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("DirectionRatios", new aggregation_type(aggregation_type::list_type, 2, 3, new simple_type(simple_type::real_type)), false)); std::vector derived; derived.reserve(1); derived.push_back(false); IfcDirection_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcDiscreteAccessory_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(9); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcDiscreteAccessoryType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcDistributionChamberElement_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcDistributionChamberElementTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcDistributionChamberElementType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("ControlElementId", new named_type(IfcIdentifier_type), true)); std::vector derived; derived.reserve(9); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcDistributionControlElement_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(9); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcDistributionControlElementType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcDistributionElement_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(9); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcDistributionElementType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcDistributionFlowElement_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(9); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcDistributionFlowElementType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("FlowDirection", new named_type(IfcFlowDirectionEnum_type), true)); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcDistributionPort_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::attribute("FileExtension", new named_type(IfcLabel_type), true)); attributes.push_back(new entity::attribute("MimeContentType", new named_type(IfcLabel_type), true)); attributes.push_back(new entity::attribute("MimeSubtype", new named_type(IfcLabel_type), true)); std::vector derived; derived.reserve(3); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcDocumentElectronicFormat_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(17); attributes.push_back(new entity::attribute("DocumentId", new named_type(IfcIdentifier_type), false)); attributes.push_back(new entity::attribute("Name", new named_type(IfcLabel_type), false)); attributes.push_back(new entity::attribute("Description", new named_type(IfcText_type), true)); attributes.push_back(new entity::attribute("DocumentReferences", new aggregation_type(aggregation_type::set_type, 1, -1, new named_type(IfcDocumentReference_type)), true)); attributes.push_back(new entity::attribute("Purpose", new named_type(IfcText_type), true)); attributes.push_back(new entity::attribute("IntendedUse", new named_type(IfcText_type), true)); attributes.push_back(new entity::attribute("Scope", new named_type(IfcText_type), true)); attributes.push_back(new entity::attribute("Revision", new named_type(IfcLabel_type), true)); attributes.push_back(new entity::attribute("DocumentOwner", new named_type(IfcActorSelect_type), true)); attributes.push_back(new entity::attribute("Editors", new aggregation_type(aggregation_type::set_type, 1, -1, new named_type(IfcActorSelect_type)), true)); attributes.push_back(new entity::attribute("CreationTime", new named_type(IfcDateAndTime_type), true)); attributes.push_back(new entity::attribute("LastRevisionTime", new named_type(IfcDateAndTime_type), true)); attributes.push_back(new entity::attribute("ElectronicFormat", new named_type(IfcDocumentElectronicFormat_type), true)); attributes.push_back(new entity::attribute("ValidFrom", new named_type(IfcCalendarDate_type), true)); attributes.push_back(new entity::attribute("ValidUntil", new named_type(IfcCalendarDate_type), true)); attributes.push_back(new entity::attribute("Confidentiality", new named_type(IfcDocumentConfidentialityEnum_type), true)); attributes.push_back(new entity::attribute("Status", new named_type(IfcDocumentStatusEnum_type), true)); std::vector derived; derived.reserve(17); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcDocumentInformation_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::attribute("RelatingDocument", new named_type(IfcDocumentInformation_type), false)); attributes.push_back(new entity::attribute("RelatedDocuments", new aggregation_type(aggregation_type::set_type, 1, -1, new named_type(IfcDocumentInformation_type)), false)); attributes.push_back(new entity::attribute("RelationshipType", new named_type(IfcLabel_type), true)); std::vector derived; derived.reserve(3); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcDocumentInformationRelationship_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(3); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcDocumentReference_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("OverallHeight", new named_type(IfcPositiveLengthMeasure_type), true)); attributes.push_back(new entity::attribute("OverallWidth", new named_type(IfcPositiveLengthMeasure_type), true)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcDoor_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(11); attributes.push_back(new entity::attribute("LiningDepth", new named_type(IfcPositiveLengthMeasure_type), true)); attributes.push_back(new entity::attribute("LiningThickness", new named_type(IfcPositiveLengthMeasure_type), true)); attributes.push_back(new entity::attribute("ThresholdDepth", new named_type(IfcPositiveLengthMeasure_type), true)); attributes.push_back(new entity::attribute("ThresholdThickness", new named_type(IfcPositiveLengthMeasure_type), true)); attributes.push_back(new entity::attribute("TransomThickness", new named_type(IfcPositiveLengthMeasure_type), true)); attributes.push_back(new entity::attribute("TransomOffset", new named_type(IfcLengthMeasure_type), true)); attributes.push_back(new entity::attribute("LiningOffset", new named_type(IfcLengthMeasure_type), true)); attributes.push_back(new entity::attribute("ThresholdOffset", new named_type(IfcLengthMeasure_type), true)); attributes.push_back(new entity::attribute("CasingThickness", new named_type(IfcPositiveLengthMeasure_type), true)); attributes.push_back(new entity::attribute("CasingDepth", new named_type(IfcPositiveLengthMeasure_type), true)); attributes.push_back(new entity::attribute("ShapeAspectStyle", new named_type(IfcShapeAspect_type), true)); std::vector derived; derived.reserve(15); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcDoorLiningProperties_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(5); attributes.push_back(new entity::attribute("PanelDepth", new named_type(IfcPositiveLengthMeasure_type), true)); attributes.push_back(new entity::attribute("PanelOperation", new named_type(IfcDoorPanelOperationEnum_type), false)); attributes.push_back(new entity::attribute("PanelWidth", new named_type(IfcNormalisedRatioMeasure_type), true)); attributes.push_back(new entity::attribute("PanelPosition", new named_type(IfcDoorPanelPositionEnum_type), false)); attributes.push_back(new entity::attribute("ShapeAspectStyle", new named_type(IfcShapeAspect_type), true)); std::vector derived; derived.reserve(9); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcDoorPanelProperties_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(4); attributes.push_back(new entity::attribute("OperationType", new named_type(IfcDoorStyleOperationEnum_type), false)); attributes.push_back(new entity::attribute("ConstructionType", new named_type(IfcDoorStyleConstructionEnum_type), false)); attributes.push_back(new entity::attribute("ParameterTakesPrecedence", new simple_type(simple_type::boolean_type), false)); attributes.push_back(new entity::attribute("Sizeable", new simple_type(simple_type::boolean_type), false)); std::vector derived; derived.reserve(12); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcDoorStyle_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("Contents", new aggregation_type(aggregation_type::set_type, 1, -1, new named_type(IfcDraughtingCalloutElement_type)), false)); std::vector derived; derived.reserve(1); derived.push_back(false); IfcDraughtingCallout_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(4); attributes.push_back(new entity::attribute("Name", new named_type(IfcLabel_type), true)); attributes.push_back(new entity::attribute("Description", new named_type(IfcText_type), true)); attributes.push_back(new entity::attribute("RelatingDraughtingCallout", new named_type(IfcDraughtingCallout_type), false)); attributes.push_back(new entity::attribute("RelatedDraughtingCallout", new named_type(IfcDraughtingCallout_type), false)); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcDraughtingCalloutRelationship_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(1); derived.push_back(false); IfcDraughtingPreDefinedColour_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(1); derived.push_back(false); IfcDraughtingPreDefinedCurveFont_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(1); derived.push_back(false); IfcDraughtingPreDefinedTextFont_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcDuctFittingTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcDuctFittingType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcDuctSegmentTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcDuctSegmentType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcDuctSilencerTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcDuctSilencerType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("EdgeStart", new named_type(IfcVertex_type), false)); attributes.push_back(new entity::attribute("EdgeEnd", new named_type(IfcVertex_type), false)); std::vector derived; derived.reserve(2); derived.push_back(false); derived.push_back(false); IfcEdge_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("EdgeGeometry", new named_type(IfcCurve_type), false)); attributes.push_back(new entity::attribute("SameSense", new simple_type(simple_type::boolean_type), false)); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcEdgeCurve_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("FeatureLength", new named_type(IfcPositiveLengthMeasure_type), true)); std::vector derived; derived.reserve(9); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcEdgeFeature_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("EdgeList", new aggregation_type(aggregation_type::list_type, 1, -1, new named_type(IfcOrientedEdge_type)), false)); std::vector derived; derived.reserve(1); derived.push_back(false); IfcEdgeLoop_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcElectricApplianceTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcElectricApplianceType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("DistributionPointFunction", new named_type(IfcElectricDistributionPointFunctionEnum_type), false)); attributes.push_back(new entity::attribute("UserDefinedFunction", new named_type(IfcLabel_type), true)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcElectricDistributionPoint_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcElectricFlowStorageDeviceTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcElectricFlowStorageDeviceType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcElectricGeneratorTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcElectricGeneratorType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcElectricHeaterTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcElectricHeaterType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcElectricMotorTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcElectricMotorType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcElectricTimeControlTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcElectricTimeControlType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(8); attributes.push_back(new entity::attribute("ElectricCurrentType", new named_type(IfcElectricCurrentEnum_type), true)); attributes.push_back(new entity::attribute("InputVoltage", new named_type(IfcElectricVoltageMeasure_type), false)); attributes.push_back(new entity::attribute("InputFrequency", new named_type(IfcFrequencyMeasure_type), false)); attributes.push_back(new entity::attribute("FullLoadCurrent", new named_type(IfcElectricCurrentMeasure_type), true)); attributes.push_back(new entity::attribute("MinimumCircuitCurrent", new named_type(IfcElectricCurrentMeasure_type), true)); attributes.push_back(new entity::attribute("MaximumPowerInput", new named_type(IfcPowerMeasure_type), true)); attributes.push_back(new entity::attribute("RatedPowerInput", new named_type(IfcPowerMeasure_type), true)); attributes.push_back(new entity::attribute("InputPhase", new simple_type(simple_type::integer_type), false)); std::vector derived; derived.reserve(14); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcElectricalBaseProperties_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(5); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcElectricalCircuit_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcElectricalElement_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("Tag", new named_type(IfcIdentifier_type), true)); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcElement_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("AssemblyPlace", new named_type(IfcAssemblyPlaceEnum_type), true)); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcElementAssemblyTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcElementAssembly_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcElementComponent_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(9); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcElementComponentType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("MethodOfMeasurement", new named_type(IfcLabel_type), true)); attributes.push_back(new entity::attribute("Quantities", new aggregation_type(aggregation_type::set_type, 1, -1, new named_type(IfcPhysicalQuantity_type)), false)); std::vector derived; derived.reserve(6); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcElementQuantity_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("ElementType", new named_type(IfcLabel_type), true)); std::vector derived; derived.reserve(9); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcElementType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("Position", new named_type(IfcAxis2Placement3D_type), false)); std::vector derived; derived.reserve(1); derived.push_back(false); IfcElementarySurface_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("SemiAxis1", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("SemiAxis2", new named_type(IfcPositiveLengthMeasure_type), false)); std::vector derived; derived.reserve(3); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcEllipse_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("SemiAxis1", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("SemiAxis2", new named_type(IfcPositiveLengthMeasure_type), false)); std::vector derived; derived.reserve(5); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcEllipseProfileDef_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcEnergyConversionDevice_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(9); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcEnergyConversionDeviceType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("EnergySequence", new named_type(IfcEnergySequenceEnum_type), true)); attributes.push_back(new entity::attribute("UserDefinedEnergySequence", new named_type(IfcLabel_type), true)); std::vector derived; derived.reserve(6); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcEnergyProperties_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::attribute("ImpactType", new named_type(IfcLabel_type), false)); attributes.push_back(new entity::attribute("Category", new named_type(IfcEnvironmentalImpactCategoryEnum_type), false)); attributes.push_back(new entity::attribute("UserDefinedCategory", new named_type(IfcLabel_type), true)); std::vector derived; derived.reserve(9); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcEnvironmentalImpactValue_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcEquipmentElement_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(5); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcEquipmentStandard_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcEvaporativeCoolerTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcEvaporativeCoolerType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcEvaporatorTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcEvaporatorType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::attribute("ExtendedProperties", new aggregation_type(aggregation_type::set_type, 1, -1, new named_type(IfcProperty_type)), false)); attributes.push_back(new entity::attribute("Description", new named_type(IfcText_type), true)); attributes.push_back(new entity::attribute("Name", new named_type(IfcLabel_type), false)); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcExtendedMaterialProperties_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::attribute("Location", new named_type(IfcLabel_type), true)); attributes.push_back(new entity::attribute("ItemReference", new named_type(IfcIdentifier_type), true)); attributes.push_back(new entity::attribute("Name", new named_type(IfcLabel_type), true)); std::vector derived; derived.reserve(3); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcExternalReference_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(3); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcExternallyDefinedHatchStyle_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(3); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcExternallyDefinedSurfaceStyle_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(3); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcExternallyDefinedSymbol_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(3); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcExternallyDefinedTextFont_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("ExtrudedDirection", new named_type(IfcDirection_type), false)); attributes.push_back(new entity::attribute("Depth", new named_type(IfcPositiveLengthMeasure_type), false)); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcExtrudedAreaSolid_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("Bounds", new aggregation_type(aggregation_type::set_type, 1, -1, new named_type(IfcFaceBound_type)), false)); std::vector derived; derived.reserve(1); derived.push_back(false); IfcFace_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("FbsmFaces", new aggregation_type(aggregation_type::set_type, 1, -1, new named_type(IfcConnectedFaceSet_type)), false)); std::vector derived; derived.reserve(1); derived.push_back(false); IfcFaceBasedSurfaceModel_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("Bound", new named_type(IfcLoop_type), false)); attributes.push_back(new entity::attribute("Orientation", new simple_type(simple_type::boolean_type), false)); std::vector derived; derived.reserve(2); derived.push_back(false); derived.push_back(false); IfcFaceBound_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(2); derived.push_back(false); derived.push_back(false); IfcFaceOuterBound_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("FaceSurface", new named_type(IfcSurface_type), false)); attributes.push_back(new entity::attribute("SameSense", new simple_type(simple_type::boolean_type), false)); std::vector derived; derived.reserve(3); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcFaceSurface_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(1); derived.push_back(false); IfcFacetedBrep_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("Voids", new aggregation_type(aggregation_type::set_type, 1, -1, new named_type(IfcClosedShell_type)), false)); std::vector derived; derived.reserve(2); derived.push_back(false); derived.push_back(false); IfcFacetedBrepWithVoids_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(6); attributes.push_back(new entity::attribute("TensionFailureX", new named_type(IfcForceMeasure_type), true)); attributes.push_back(new entity::attribute("TensionFailureY", new named_type(IfcForceMeasure_type), true)); attributes.push_back(new entity::attribute("TensionFailureZ", new named_type(IfcForceMeasure_type), true)); attributes.push_back(new entity::attribute("CompressionFailureX", new named_type(IfcForceMeasure_type), true)); attributes.push_back(new entity::attribute("CompressionFailureY", new named_type(IfcForceMeasure_type), true)); attributes.push_back(new entity::attribute("CompressionFailureZ", new named_type(IfcForceMeasure_type), true)); std::vector derived; derived.reserve(7); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcFailureConnectionCondition_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcFanTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcFanType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcFastener_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(9); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcFastenerType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcFeatureElement_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcFeatureElementAddition_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcFeatureElementSubtraction_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("FillStyles", new aggregation_type(aggregation_type::set_type, 1, -1, new named_type(IfcFillStyleSelect_type)), false)); std::vector derived; derived.reserve(2); derived.push_back(false); derived.push_back(false); IfcFillAreaStyle_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(5); attributes.push_back(new entity::attribute("HatchLineAppearance", new named_type(IfcCurveStyle_type), false)); attributes.push_back(new entity::attribute("StartOfNextHatchLine", new named_type(IfcHatchLineDistanceSelect_type), false)); attributes.push_back(new entity::attribute("PointOfReferenceHatchLine", new named_type(IfcCartesianPoint_type), true)); attributes.push_back(new entity::attribute("PatternStart", new named_type(IfcCartesianPoint_type), true)); attributes.push_back(new entity::attribute("HatchLineAngle", new named_type(IfcPlaneAngleMeasure_type), false)); std::vector derived; derived.reserve(5); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcFillAreaStyleHatching_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("Symbol", new named_type(IfcAnnotationSymbolOccurrence_type), false)); std::vector derived; derived.reserve(1); derived.push_back(false); IfcFillAreaStyleTileSymbolWithStyle_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::attribute("TilingPattern", new named_type(IfcOneDirectionRepeatFactor_type), false)); attributes.push_back(new entity::attribute("Tiles", new aggregation_type(aggregation_type::set_type, 1, -1, new named_type(IfcFillAreaStyleTileShapeSelect_type)), false)); attributes.push_back(new entity::attribute("TilingScale", new named_type(IfcPositiveRatioMeasure_type), false)); std::vector derived; derived.reserve(3); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcFillAreaStyleTiles_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcFilterTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcFilterType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcFireSuppressionTerminalTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcFireSuppressionTerminalType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcFlowController_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(9); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcFlowControllerType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcFlowFitting_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(9); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcFlowFittingType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcFlowInstrumentTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcFlowInstrumentType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcFlowMeterTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcFlowMeterType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcFlowMovingDevice_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(9); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcFlowMovingDeviceType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcFlowSegment_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(9); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcFlowSegmentType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcFlowStorageDevice_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(9); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcFlowStorageDeviceType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcFlowTerminal_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(9); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcFlowTerminalType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcFlowTreatmentDevice_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(9); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcFlowTreatmentDeviceType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(15); attributes.push_back(new entity::attribute("PropertySource", new named_type(IfcPropertySourceEnum_type), false)); attributes.push_back(new entity::attribute("FlowConditionTimeSeries", new named_type(IfcTimeSeries_type), true)); attributes.push_back(new entity::attribute("VelocityTimeSeries", new named_type(IfcTimeSeries_type), true)); attributes.push_back(new entity::attribute("FlowrateTimeSeries", new named_type(IfcTimeSeries_type), true)); attributes.push_back(new entity::attribute("Fluid", new named_type(IfcMaterial_type), false)); attributes.push_back(new entity::attribute("PressureTimeSeries", new named_type(IfcTimeSeries_type), true)); attributes.push_back(new entity::attribute("UserDefinedPropertySource", new named_type(IfcLabel_type), true)); attributes.push_back(new entity::attribute("TemperatureSingleValue", new named_type(IfcThermodynamicTemperatureMeasure_type), true)); attributes.push_back(new entity::attribute("WetBulbTemperatureSingleValue", new named_type(IfcThermodynamicTemperatureMeasure_type), true)); attributes.push_back(new entity::attribute("WetBulbTemperatureTimeSeries", new named_type(IfcTimeSeries_type), true)); attributes.push_back(new entity::attribute("TemperatureTimeSeries", new named_type(IfcTimeSeries_type), true)); attributes.push_back(new entity::attribute("FlowrateSingleValue", new named_type(IfcDerivedMeasureValue_type), true)); attributes.push_back(new entity::attribute("FlowConditionSingleValue", new named_type(IfcPositiveRatioMeasure_type), true)); attributes.push_back(new entity::attribute("VelocitySingleValue", new named_type(IfcLinearVelocityMeasure_type), true)); attributes.push_back(new entity::attribute("PressureSingleValue", new named_type(IfcPressureMeasure_type), true)); std::vector derived; derived.reserve(19); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcFluidFlowProperties_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcFootingTypeEnum_type), false)); std::vector derived; derived.reserve(9); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcFooting_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(4); attributes.push_back(new entity::attribute("CombustionTemperature", new named_type(IfcThermodynamicTemperatureMeasure_type), true)); attributes.push_back(new entity::attribute("CarbonContent", new named_type(IfcPositiveRatioMeasure_type), true)); attributes.push_back(new entity::attribute("LowerHeatingValue", new named_type(IfcHeatingValueMeasure_type), true)); attributes.push_back(new entity::attribute("HigherHeatingValue", new named_type(IfcHeatingValueMeasure_type), true)); std::vector derived; derived.reserve(5); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcFuelProperties_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcFurnishingElement_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(9); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcFurnishingElementType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(5); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcFurnitureStandard_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("AssemblyPlace", new named_type(IfcAssemblyPlaceEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcFurnitureType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcGasTerminalTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcGasTerminalType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::attribute("MolecularWeight", new named_type(IfcMolecularWeightMeasure_type), true)); attributes.push_back(new entity::attribute("Porosity", new named_type(IfcNormalisedRatioMeasure_type), true)); attributes.push_back(new entity::attribute("MassDensity", new named_type(IfcMassDensityMeasure_type), true)); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcGeneralMaterialProperties_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(5); attributes.push_back(new entity::attribute("PhysicalWeight", new named_type(IfcMassPerLengthMeasure_type), true)); attributes.push_back(new entity::attribute("Perimeter", new named_type(IfcPositiveLengthMeasure_type), true)); attributes.push_back(new entity::attribute("MinimumPlateThickness", new named_type(IfcPositiveLengthMeasure_type), true)); attributes.push_back(new entity::attribute("MaximumPlateThickness", new named_type(IfcPositiveLengthMeasure_type), true)); attributes.push_back(new entity::attribute("CrossSectionArea", new named_type(IfcAreaMeasure_type), true)); std::vector derived; derived.reserve(7); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcGeneralProfileProperties_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(1); derived.push_back(false); IfcGeometricCurveSet_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(4); attributes.push_back(new entity::attribute("CoordinateSpaceDimension", new named_type(IfcDimensionCount_type), false)); attributes.push_back(new entity::attribute("Precision", new simple_type(simple_type::real_type), true)); attributes.push_back(new entity::attribute("WorldCoordinateSystem", new named_type(IfcAxis2Placement_type), false)); attributes.push_back(new entity::attribute("TrueNorth", new named_type(IfcDirection_type), true)); std::vector derived; derived.reserve(6); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcGeometricRepresentationContext_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(0); IfcGeometricRepresentationItem_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(4); attributes.push_back(new entity::attribute("ParentContext", new named_type(IfcGeometricRepresentationContext_type), false)); attributes.push_back(new entity::attribute("TargetScale", new named_type(IfcPositiveRatioMeasure_type), true)); attributes.push_back(new entity::attribute("TargetView", new named_type(IfcGeometricProjectionEnum_type), false)); attributes.push_back(new entity::attribute("UserDefinedTargetView", new named_type(IfcLabel_type), true)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(true); derived.push_back(true); derived.push_back(true); derived.push_back(true); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcGeometricRepresentationSubContext_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("Elements", new aggregation_type(aggregation_type::set_type, 1, -1, new named_type(IfcGeometricSetSelect_type)), false)); std::vector derived; derived.reserve(1); derived.push_back(false); IfcGeometricSet_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::attribute("UAxes", new aggregation_type(aggregation_type::list_type, 1, -1, new named_type(IfcGridAxis_type)), false)); attributes.push_back(new entity::attribute("VAxes", new aggregation_type(aggregation_type::list_type, 1, -1, new named_type(IfcGridAxis_type)), false)); attributes.push_back(new entity::attribute("WAxes", new aggregation_type(aggregation_type::list_type, 1, -1, new named_type(IfcGridAxis_type)), true)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcGrid_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::attribute("AxisTag", new named_type(IfcLabel_type), true)); attributes.push_back(new entity::attribute("AxisCurve", new named_type(IfcCurve_type), false)); attributes.push_back(new entity::attribute("SameSense", new named_type(IfcBoolean_type), false)); std::vector derived; derived.reserve(3); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcGridAxis_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("PlacementLocation", new named_type(IfcVirtualGridIntersection_type), false)); attributes.push_back(new entity::attribute("PlacementRefDirection", new named_type(IfcVirtualGridIntersection_type), true)); std::vector derived; derived.reserve(2); derived.push_back(false); derived.push_back(false); IfcGridPlacement_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(5); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcGroup_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("BaseSurface", new named_type(IfcSurface_type), false)); attributes.push_back(new entity::attribute("AgreementFlag", new simple_type(simple_type::boolean_type), false)); std::vector derived; derived.reserve(2); derived.push_back(false); derived.push_back(false); IfcHalfSpaceSolid_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcHeatExchangerTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcHeatExchangerType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcHumidifierTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcHumidifierType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(5); attributes.push_back(new entity::attribute("UpperVaporResistanceFactor", new named_type(IfcPositiveRatioMeasure_type), true)); attributes.push_back(new entity::attribute("LowerVaporResistanceFactor", new named_type(IfcPositiveRatioMeasure_type), true)); attributes.push_back(new entity::attribute("IsothermalMoistureCapacity", new named_type(IfcIsothermalMoistureCapacityMeasure_type), true)); attributes.push_back(new entity::attribute("VaporPermeability", new named_type(IfcVaporPermeabilityMeasure_type), true)); attributes.push_back(new entity::attribute("MoistureDiffusivity", new named_type(IfcMoistureDiffusivityMeasure_type), true)); std::vector derived; derived.reserve(6); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcHygroscopicMaterialProperties_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(5); attributes.push_back(new entity::attribute("OverallWidth", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("OverallDepth", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("WebThickness", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("FlangeThickness", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("FilletRadius", new named_type(IfcPositiveLengthMeasure_type), true)); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcIShapeProfileDef_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("UrlReference", new named_type(IfcIdentifier_type), false)); std::vector derived; derived.reserve(5); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcImageTexture_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(6); attributes.push_back(new entity::attribute("InventoryType", new named_type(IfcInventoryTypeEnum_type), false)); attributes.push_back(new entity::attribute("Jurisdiction", new named_type(IfcActorSelect_type), false)); attributes.push_back(new entity::attribute("ResponsiblePersons", new aggregation_type(aggregation_type::set_type, 1, -1, new named_type(IfcPerson_type)), false)); attributes.push_back(new entity::attribute("LastUpdateDate", new named_type(IfcCalendarDate_type), false)); attributes.push_back(new entity::attribute("CurrentValue", new named_type(IfcCostValue_type), true)); attributes.push_back(new entity::attribute("OriginalValue", new named_type(IfcCostValue_type), true)); std::vector derived; derived.reserve(11); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcInventory_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("Values", new aggregation_type(aggregation_type::list_type, 1, -1, new named_type(IfcIrregularTimeSeriesValue_type)), false)); std::vector derived; derived.reserve(9); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcIrregularTimeSeries_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("TimeStamp", new named_type(IfcDateTimeSelect_type), false)); attributes.push_back(new entity::attribute("ListValues", new aggregation_type(aggregation_type::list_type, 1, -1, new named_type(IfcValue_type)), false)); std::vector derived; derived.reserve(2); derived.push_back(false); derived.push_back(false); IfcIrregularTimeSeriesValue_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcJunctionBoxTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcJunctionBoxType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(8); attributes.push_back(new entity::attribute("Depth", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("Width", new named_type(IfcPositiveLengthMeasure_type), true)); attributes.push_back(new entity::attribute("Thickness", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("FilletRadius", new named_type(IfcPositiveLengthMeasure_type), true)); attributes.push_back(new entity::attribute("EdgeRadius", new named_type(IfcPositiveLengthMeasure_type), true)); attributes.push_back(new entity::attribute("LegSlope", new named_type(IfcPlaneAngleMeasure_type), true)); attributes.push_back(new entity::attribute("CentreOfGravityInX", new named_type(IfcPositiveLengthMeasure_type), true)); attributes.push_back(new entity::attribute("CentreOfGravityInY", new named_type(IfcPositiveLengthMeasure_type), true)); std::vector derived; derived.reserve(11); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcLShapeProfileDef_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("SkillSet", new named_type(IfcText_type), true)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcLaborResource_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcLampTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcLampType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(5); attributes.push_back(new entity::attribute("Name", new named_type(IfcLabel_type), false)); attributes.push_back(new entity::attribute("Version", new named_type(IfcLabel_type), true)); attributes.push_back(new entity::attribute("Publisher", new named_type(IfcOrganization_type), true)); attributes.push_back(new entity::attribute("VersionDate", new named_type(IfcCalendarDate_type), true)); attributes.push_back(new entity::attribute("LibraryReference", new aggregation_type(aggregation_type::set_type, 1, -1, new named_type(IfcLibraryReference_type)), true)); std::vector derived; derived.reserve(5); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcLibraryInformation_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(3); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcLibraryReference_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::attribute("MainPlaneAngle", new named_type(IfcPlaneAngleMeasure_type), false)); attributes.push_back(new entity::attribute("SecondaryPlaneAngle", new aggregation_type(aggregation_type::list_type, 1, -1, new named_type(IfcPlaneAngleMeasure_type)), false)); attributes.push_back(new entity::attribute("LuminousIntensity", new aggregation_type(aggregation_type::list_type, 1, -1, new named_type(IfcLuminousIntensityDistributionMeasure_type)), false)); std::vector derived; derived.reserve(3); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcLightDistributionData_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcLightFixtureTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcLightFixtureType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("LightDistributionCurve", new named_type(IfcLightDistributionCurveEnum_type), false)); attributes.push_back(new entity::attribute("DistributionData", new aggregation_type(aggregation_type::list_type, 1, -1, new named_type(IfcLightDistributionData_type)), false)); std::vector derived; derived.reserve(2); derived.push_back(false); derived.push_back(false); IfcLightIntensityDistribution_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(4); attributes.push_back(new entity::attribute("Name", new named_type(IfcLabel_type), true)); attributes.push_back(new entity::attribute("LightColour", new named_type(IfcColourRgb_type), false)); attributes.push_back(new entity::attribute("AmbientIntensity", new named_type(IfcNormalisedRatioMeasure_type), true)); attributes.push_back(new entity::attribute("Intensity", new named_type(IfcNormalisedRatioMeasure_type), true)); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcLightSource_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcLightSourceAmbient_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("Orientation", new named_type(IfcDirection_type), false)); std::vector derived; derived.reserve(5); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcLightSourceDirectional_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(6); attributes.push_back(new entity::attribute("Position", new named_type(IfcAxis2Placement3D_type), false)); attributes.push_back(new entity::attribute("ColourAppearance", new named_type(IfcColourRgb_type), true)); attributes.push_back(new entity::attribute("ColourTemperature", new named_type(IfcThermodynamicTemperatureMeasure_type), false)); attributes.push_back(new entity::attribute("LuminousFlux", new named_type(IfcLuminousFluxMeasure_type), false)); attributes.push_back(new entity::attribute("LightEmissionSource", new named_type(IfcLightEmissionSourceEnum_type), false)); attributes.push_back(new entity::attribute("LightDistributionDataSource", new named_type(IfcLightDistributionDataSourceSelect_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcLightSourceGoniometric_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(5); attributes.push_back(new entity::attribute("Position", new named_type(IfcCartesianPoint_type), false)); attributes.push_back(new entity::attribute("Radius", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("ConstantAttenuation", new named_type(IfcReal_type), false)); attributes.push_back(new entity::attribute("DistanceAttenuation", new named_type(IfcReal_type), false)); attributes.push_back(new entity::attribute("QuadricAttenuation", new named_type(IfcReal_type), false)); std::vector derived; derived.reserve(9); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcLightSourcePositional_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(4); attributes.push_back(new entity::attribute("Orientation", new named_type(IfcDirection_type), false)); attributes.push_back(new entity::attribute("ConcentrationExponent", new named_type(IfcReal_type), true)); attributes.push_back(new entity::attribute("SpreadAngle", new named_type(IfcPositivePlaneAngleMeasure_type), false)); attributes.push_back(new entity::attribute("BeamWidthAngle", new named_type(IfcPositivePlaneAngleMeasure_type), false)); std::vector derived; derived.reserve(13); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcLightSourceSpot_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("Pnt", new named_type(IfcCartesianPoint_type), false)); attributes.push_back(new entity::attribute("Dir", new named_type(IfcVector_type), false)); std::vector derived; derived.reserve(2); derived.push_back(false); derived.push_back(false); IfcLine_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(1); derived.push_back(false); IfcLinearDimension_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("PlacementRelTo", new named_type(IfcObjectPlacement_type), true)); attributes.push_back(new entity::attribute("RelativePlacement", new named_type(IfcAxis2Placement_type), false)); std::vector derived; derived.reserve(2); derived.push_back(false); derived.push_back(false); IfcLocalPlacement_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(5); attributes.push_back(new entity::attribute("HourComponent", new named_type(IfcHourInDay_type), false)); attributes.push_back(new entity::attribute("MinuteComponent", new named_type(IfcMinuteInHour_type), true)); attributes.push_back(new entity::attribute("SecondComponent", new named_type(IfcSecondInMinute_type), true)); attributes.push_back(new entity::attribute("Zone", new named_type(IfcCoordinatedUniversalTimeOffset_type), true)); attributes.push_back(new entity::attribute("DaylightSavingOffset", new named_type(IfcDaylightSavingHour_type), true)); std::vector derived; derived.reserve(5); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcLocalTime_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(0); IfcLoop_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("Outer", new named_type(IfcClosedShell_type), false)); std::vector derived; derived.reserve(1); derived.push_back(false); IfcManifoldSolidBrep_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("MappingSource", new named_type(IfcRepresentationMap_type), false)); attributes.push_back(new entity::attribute("MappingTarget", new named_type(IfcCartesianTransformationOperator_type), false)); std::vector derived; derived.reserve(2); derived.push_back(false); derived.push_back(false); IfcMappedItem_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("Name", new named_type(IfcLabel_type), false)); std::vector derived; derived.reserve(1); derived.push_back(false); IfcMaterial_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("MaterialClassifications", new aggregation_type(aggregation_type::set_type, 1, -1, new named_type(IfcClassificationNotationSelect_type)), false)); attributes.push_back(new entity::attribute("ClassifiedMaterial", new named_type(IfcMaterial_type), false)); std::vector derived; derived.reserve(2); derived.push_back(false); derived.push_back(false); IfcMaterialClassificationRelationship_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("RepresentedMaterial", new named_type(IfcMaterial_type), false)); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcMaterialDefinitionRepresentation_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::attribute("Material", new named_type(IfcMaterial_type), true)); attributes.push_back(new entity::attribute("LayerThickness", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("IsVentilated", new named_type(IfcLogical_type), true)); std::vector derived; derived.reserve(3); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcMaterialLayer_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("MaterialLayers", new aggregation_type(aggregation_type::list_type, 1, -1, new named_type(IfcMaterialLayer_type)), false)); attributes.push_back(new entity::attribute("LayerSetName", new named_type(IfcLabel_type), true)); std::vector derived; derived.reserve(2); derived.push_back(false); derived.push_back(false); IfcMaterialLayerSet_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(4); attributes.push_back(new entity::attribute("ForLayerSet", new named_type(IfcMaterialLayerSet_type), false)); attributes.push_back(new entity::attribute("LayerSetDirection", new named_type(IfcLayerSetDirectionEnum_type), false)); attributes.push_back(new entity::attribute("DirectionSense", new named_type(IfcDirectionSenseEnum_type), false)); attributes.push_back(new entity::attribute("OffsetFromReferenceLine", new named_type(IfcLengthMeasure_type), false)); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcMaterialLayerSetUsage_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("Materials", new aggregation_type(aggregation_type::list_type, 1, -1, new named_type(IfcMaterial_type)), false)); std::vector derived; derived.reserve(1); derived.push_back(false); IfcMaterialList_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("Material", new named_type(IfcMaterial_type), false)); std::vector derived; derived.reserve(1); derived.push_back(false); IfcMaterialProperties_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("ValueComponent", new named_type(IfcValue_type), false)); attributes.push_back(new entity::attribute("UnitComponent", new named_type(IfcUnit_type), false)); std::vector derived; derived.reserve(2); derived.push_back(false); derived.push_back(false); IfcMeasureWithUnit_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(6); attributes.push_back(new entity::attribute("CompressiveStrength", new named_type(IfcPressureMeasure_type), true)); attributes.push_back(new entity::attribute("MaxAggregateSize", new named_type(IfcPositiveLengthMeasure_type), true)); attributes.push_back(new entity::attribute("AdmixturesDescription", new named_type(IfcText_type), true)); attributes.push_back(new entity::attribute("Workability", new named_type(IfcText_type), true)); attributes.push_back(new entity::attribute("ProtectivePoreRatio", new named_type(IfcNormalisedRatioMeasure_type), true)); attributes.push_back(new entity::attribute("WaterImpermeability", new named_type(IfcText_type), true)); std::vector derived; derived.reserve(12); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcMechanicalConcreteMaterialProperties_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("NominalDiameter", new named_type(IfcPositiveLengthMeasure_type), true)); attributes.push_back(new entity::attribute("NominalLength", new named_type(IfcPositiveLengthMeasure_type), true)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcMechanicalFastener_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(9); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcMechanicalFastenerType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(5); attributes.push_back(new entity::attribute("DynamicViscosity", new named_type(IfcDynamicViscosityMeasure_type), true)); attributes.push_back(new entity::attribute("YoungModulus", new named_type(IfcModulusOfElasticityMeasure_type), true)); attributes.push_back(new entity::attribute("ShearModulus", new named_type(IfcModulusOfElasticityMeasure_type), true)); attributes.push_back(new entity::attribute("PoissonRatio", new named_type(IfcPositiveRatioMeasure_type), true)); attributes.push_back(new entity::attribute("ThermalExpansionCoefficient", new named_type(IfcThermalExpansionCoefficientMeasure_type), true)); std::vector derived; derived.reserve(6); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcMechanicalMaterialProperties_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(7); attributes.push_back(new entity::attribute("YieldStress", new named_type(IfcPressureMeasure_type), true)); attributes.push_back(new entity::attribute("UltimateStress", new named_type(IfcPressureMeasure_type), true)); attributes.push_back(new entity::attribute("UltimateStrain", new named_type(IfcPositiveRatioMeasure_type), true)); attributes.push_back(new entity::attribute("HardeningModule", new named_type(IfcModulusOfElasticityMeasure_type), true)); attributes.push_back(new entity::attribute("ProportionalStress", new named_type(IfcPressureMeasure_type), true)); attributes.push_back(new entity::attribute("PlasticStrain", new named_type(IfcPositiveRatioMeasure_type), true)); attributes.push_back(new entity::attribute("Relaxations", new aggregation_type(aggregation_type::set_type, 1, -1, new named_type(IfcRelaxation_type)), true)); std::vector derived; derived.reserve(13); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcMechanicalSteelMaterialProperties_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcMember_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcMemberTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcMemberType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::attribute("Benchmark", new named_type(IfcBenchmarkEnum_type), false)); attributes.push_back(new entity::attribute("ValueSource", new named_type(IfcLabel_type), true)); attributes.push_back(new entity::attribute("DataValue", new named_type(IfcMetricValueSelect_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcMetric_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("Currency", new named_type(IfcCurrencyEnum_type), false)); std::vector derived; derived.reserve(1); derived.push_back(false); IfcMonetaryUnit_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcMotorConnectionTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcMotorConnectionType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::attribute("MoveFrom", new named_type(IfcSpatialStructureElement_type), false)); attributes.push_back(new entity::attribute("MoveTo", new named_type(IfcSpatialStructureElement_type), false)); attributes.push_back(new entity::attribute("PunchList", new aggregation_type(aggregation_type::list_type, 1, -1, new named_type(IfcText_type)), true)); std::vector derived; derived.reserve(13); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcMove_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("Dimensions", new named_type(IfcDimensionalExponents_type), false)); attributes.push_back(new entity::attribute("UnitType", new named_type(IfcUnitEnum_type), false)); std::vector derived; derived.reserve(2); derived.push_back(false); derived.push_back(false); IfcNamedUnit_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("ObjectType", new named_type(IfcLabel_type), true)); std::vector derived; derived.reserve(5); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcObject_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcObjectDefinition_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(0); IfcObjectPlacement_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(4); attributes.push_back(new entity::attribute("BenchmarkValues", new named_type(IfcMetric_type), true)); attributes.push_back(new entity::attribute("ResultValues", new named_type(IfcMetric_type), true)); attributes.push_back(new entity::attribute("ObjectiveQualifier", new named_type(IfcObjectiveEnum_type), false)); attributes.push_back(new entity::attribute("UserDefinedQualifier", new named_type(IfcLabel_type), true)); std::vector derived; derived.reserve(11); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcObjective_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcOccupantTypeEnum_type), false)); std::vector derived; derived.reserve(7); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcOccupant_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::attribute("BasisCurve", new named_type(IfcCurve_type), false)); attributes.push_back(new entity::attribute("Distance", new named_type(IfcLengthMeasure_type), false)); attributes.push_back(new entity::attribute("SelfIntersect", new simple_type(simple_type::logical_type), false)); std::vector derived; derived.reserve(3); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcOffsetCurve2D_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(4); attributes.push_back(new entity::attribute("BasisCurve", new named_type(IfcCurve_type), false)); attributes.push_back(new entity::attribute("Distance", new named_type(IfcLengthMeasure_type), false)); attributes.push_back(new entity::attribute("SelfIntersect", new simple_type(simple_type::logical_type), false)); attributes.push_back(new entity::attribute("RefDirection", new named_type(IfcDirection_type), false)); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcOffsetCurve3D_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("RepeatFactor", new named_type(IfcVector_type), false)); std::vector derived; derived.reserve(1); derived.push_back(false); IfcOneDirectionRepeatFactor_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(1); derived.push_back(false); IfcOpenShell_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcOpeningElement_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(9); attributes.push_back(new entity::attribute("VisibleTransmittance", new named_type(IfcPositiveRatioMeasure_type), true)); attributes.push_back(new entity::attribute("SolarTransmittance", new named_type(IfcPositiveRatioMeasure_type), true)); attributes.push_back(new entity::attribute("ThermalIrTransmittance", new named_type(IfcPositiveRatioMeasure_type), true)); attributes.push_back(new entity::attribute("ThermalIrEmissivityBack", new named_type(IfcPositiveRatioMeasure_type), true)); attributes.push_back(new entity::attribute("ThermalIrEmissivityFront", new named_type(IfcPositiveRatioMeasure_type), true)); attributes.push_back(new entity::attribute("VisibleReflectanceBack", new named_type(IfcPositiveRatioMeasure_type), true)); attributes.push_back(new entity::attribute("VisibleReflectanceFront", new named_type(IfcPositiveRatioMeasure_type), true)); attributes.push_back(new entity::attribute("SolarReflectanceFront", new named_type(IfcPositiveRatioMeasure_type), true)); attributes.push_back(new entity::attribute("SolarReflectanceBack", new named_type(IfcPositiveRatioMeasure_type), true)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcOpticalMaterialProperties_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("ActionID", new named_type(IfcIdentifier_type), false)); std::vector derived; derived.reserve(11); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcOrderAction_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(5); attributes.push_back(new entity::attribute("Id", new named_type(IfcIdentifier_type), true)); attributes.push_back(new entity::attribute("Name", new named_type(IfcLabel_type), false)); attributes.push_back(new entity::attribute("Description", new named_type(IfcText_type), true)); attributes.push_back(new entity::attribute("Roles", new aggregation_type(aggregation_type::list_type, 1, -1, new named_type(IfcActorRole_type)), true)); attributes.push_back(new entity::attribute("Addresses", new aggregation_type(aggregation_type::list_type, 1, -1, new named_type(IfcAddress_type)), true)); std::vector derived; derived.reserve(5); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcOrganization_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(4); attributes.push_back(new entity::attribute("Name", new named_type(IfcLabel_type), false)); attributes.push_back(new entity::attribute("Description", new named_type(IfcText_type), true)); attributes.push_back(new entity::attribute("RelatingOrganization", new named_type(IfcOrganization_type), false)); attributes.push_back(new entity::attribute("RelatedOrganizations", new aggregation_type(aggregation_type::set_type, 1, -1, new named_type(IfcOrganization_type)), false)); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcOrganizationRelationship_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("EdgeElement", new named_type(IfcEdge_type), false)); attributes.push_back(new entity::attribute("Orientation", new simple_type(simple_type::boolean_type), false)); std::vector derived; derived.reserve(4); derived.push_back(true); derived.push_back(true); derived.push_back(false); derived.push_back(false); IfcOrientedEdge_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcOutletTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcOutletType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(8); attributes.push_back(new entity::attribute("OwningUser", new named_type(IfcPersonAndOrganization_type), false)); attributes.push_back(new entity::attribute("OwningApplication", new named_type(IfcApplication_type), false)); attributes.push_back(new entity::attribute("State", new named_type(IfcStateEnum_type), true)); attributes.push_back(new entity::attribute("ChangeAction", new named_type(IfcChangeActionEnum_type), false)); attributes.push_back(new entity::attribute("LastModifiedDate", new named_type(IfcTimeStamp_type), true)); attributes.push_back(new entity::attribute("LastModifyingUser", new named_type(IfcPersonAndOrganization_type), true)); attributes.push_back(new entity::attribute("LastModifyingApplication", new named_type(IfcApplication_type), true)); attributes.push_back(new entity::attribute("CreationDate", new named_type(IfcTimeStamp_type), false)); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcOwnerHistory_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("Position", new named_type(IfcAxis2Placement2D_type), false)); std::vector derived; derived.reserve(3); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcParameterizedProfileDef_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("EdgeList", new aggregation_type(aggregation_type::list_type, 1, -1, new named_type(IfcOrientedEdge_type)), false)); std::vector derived; derived.reserve(1); derived.push_back(false); IfcPath_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("LifeCyclePhase", new named_type(IfcLabel_type), false)); std::vector derived; derived.reserve(6); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcPerformanceHistory_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(5); attributes.push_back(new entity::attribute("OperationType", new named_type(IfcPermeableCoveringOperationEnum_type), false)); attributes.push_back(new entity::attribute("PanelPosition", new named_type(IfcWindowPanelPositionEnum_type), false)); attributes.push_back(new entity::attribute("FrameDepth", new named_type(IfcPositiveLengthMeasure_type), true)); attributes.push_back(new entity::attribute("FrameThickness", new named_type(IfcPositiveLengthMeasure_type), true)); attributes.push_back(new entity::attribute("ShapeAspectStyle", new named_type(IfcShapeAspect_type), true)); std::vector derived; derived.reserve(9); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcPermeableCoveringProperties_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PermitID", new named_type(IfcIdentifier_type), false)); std::vector derived; derived.reserve(6); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcPermit_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(8); attributes.push_back(new entity::attribute("Id", new named_type(IfcIdentifier_type), true)); attributes.push_back(new entity::attribute("FamilyName", new named_type(IfcLabel_type), true)); attributes.push_back(new entity::attribute("GivenName", new named_type(IfcLabel_type), true)); attributes.push_back(new entity::attribute("MiddleNames", new aggregation_type(aggregation_type::list_type, 1, -1, new named_type(IfcLabel_type)), true)); attributes.push_back(new entity::attribute("PrefixTitles", new aggregation_type(aggregation_type::list_type, 1, -1, new named_type(IfcLabel_type)), true)); attributes.push_back(new entity::attribute("SuffixTitles", new aggregation_type(aggregation_type::list_type, 1, -1, new named_type(IfcLabel_type)), true)); attributes.push_back(new entity::attribute("Roles", new aggregation_type(aggregation_type::list_type, 1, -1, new named_type(IfcActorRole_type)), true)); attributes.push_back(new entity::attribute("Addresses", new aggregation_type(aggregation_type::list_type, 1, -1, new named_type(IfcAddress_type)), true)); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcPerson_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::attribute("ThePerson", new named_type(IfcPerson_type), false)); attributes.push_back(new entity::attribute("TheOrganization", new named_type(IfcOrganization_type), false)); attributes.push_back(new entity::attribute("Roles", new aggregation_type(aggregation_type::list_type, 1, -1, new named_type(IfcActorRole_type)), true)); std::vector derived; derived.reserve(3); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcPersonAndOrganization_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(4); attributes.push_back(new entity::attribute("HasQuantities", new aggregation_type(aggregation_type::set_type, 1, -1, new named_type(IfcPhysicalQuantity_type)), false)); attributes.push_back(new entity::attribute("Discrimination", new named_type(IfcLabel_type), false)); attributes.push_back(new entity::attribute("Quality", new named_type(IfcLabel_type), true)); attributes.push_back(new entity::attribute("Usage", new named_type(IfcLabel_type), true)); std::vector derived; derived.reserve(6); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcPhysicalComplexQuantity_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("Name", new named_type(IfcLabel_type), false)); attributes.push_back(new entity::attribute("Description", new named_type(IfcText_type), true)); std::vector derived; derived.reserve(2); derived.push_back(false); derived.push_back(false); IfcPhysicalQuantity_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("Unit", new named_type(IfcNamedUnit_type), true)); std::vector derived; derived.reserve(3); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcPhysicalSimpleQuantity_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcPileTypeEnum_type), false)); attributes.push_back(new entity::attribute("ConstructionType", new named_type(IfcPileConstructionEnum_type), true)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcPile_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcPipeFittingTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcPipeFittingType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcPipeSegmentTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcPipeSegmentType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(4); attributes.push_back(new entity::attribute("Width", new named_type(IfcInteger_type), false)); attributes.push_back(new entity::attribute("Height", new named_type(IfcInteger_type), false)); attributes.push_back(new entity::attribute("ColourComponents", new named_type(IfcInteger_type), false)); attributes.push_back(new entity::attribute("Pixel", new aggregation_type(aggregation_type::list_type, 1, -1, new simple_type(simple_type::binary_type)), false)); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcPixelTexture_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("Location", new named_type(IfcCartesianPoint_type), false)); std::vector derived; derived.reserve(1); derived.push_back(false); IfcPlacement_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("Placement", new named_type(IfcAxis2Placement_type), false)); std::vector derived; derived.reserve(3); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcPlanarBox_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("SizeInX", new named_type(IfcLengthMeasure_type), false)); attributes.push_back(new entity::attribute("SizeInY", new named_type(IfcLengthMeasure_type), false)); std::vector derived; derived.reserve(2); derived.push_back(false); derived.push_back(false); IfcPlanarExtent_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(1); derived.push_back(false); IfcPlane_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcPlate_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcPlateTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcPlateType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(0); IfcPoint_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("BasisCurve", new named_type(IfcCurve_type), false)); attributes.push_back(new entity::attribute("PointParameter", new named_type(IfcParameterValue_type), false)); std::vector derived; derived.reserve(2); derived.push_back(false); derived.push_back(false); IfcPointOnCurve_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::attribute("BasisSurface", new named_type(IfcSurface_type), false)); attributes.push_back(new entity::attribute("PointParameterU", new named_type(IfcParameterValue_type), false)); attributes.push_back(new entity::attribute("PointParameterV", new named_type(IfcParameterValue_type), false)); std::vector derived; derived.reserve(3); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcPointOnSurface_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("Polygon", new aggregation_type(aggregation_type::list_type, 3, -1, new named_type(IfcCartesianPoint_type)), false)); std::vector derived; derived.reserve(1); derived.push_back(false); IfcPolyLoop_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("Position", new named_type(IfcAxis2Placement3D_type), false)); attributes.push_back(new entity::attribute("PolygonalBoundary", new named_type(IfcBoundedCurve_type), false)); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcPolygonalBoundedHalfSpace_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("Points", new aggregation_type(aggregation_type::list_type, 2, -1, new named_type(IfcCartesianPoint_type)), false)); std::vector derived; derived.reserve(1); derived.push_back(false); IfcPolyline_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(7); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcPort_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(7); attributes.push_back(new entity::attribute("InternalLocation", new named_type(IfcLabel_type), true)); attributes.push_back(new entity::attribute("AddressLines", new aggregation_type(aggregation_type::list_type, 1, -1, new named_type(IfcLabel_type)), true)); attributes.push_back(new entity::attribute("PostalBox", new named_type(IfcLabel_type), true)); attributes.push_back(new entity::attribute("Town", new named_type(IfcLabel_type), true)); attributes.push_back(new entity::attribute("Region", new named_type(IfcLabel_type), true)); attributes.push_back(new entity::attribute("PostalCode", new named_type(IfcLabel_type), true)); attributes.push_back(new entity::attribute("Country", new named_type(IfcLabel_type), true)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcPostalAddress_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(1); derived.push_back(false); IfcPreDefinedColour_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(1); derived.push_back(false); IfcPreDefinedCurveFont_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(1); derived.push_back(false); IfcPreDefinedDimensionSymbol_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("Name", new named_type(IfcLabel_type), false)); std::vector derived; derived.reserve(1); derived.push_back(false); IfcPreDefinedItem_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(1); derived.push_back(false); IfcPreDefinedPointMarkerSymbol_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(1); derived.push_back(false); IfcPreDefinedSymbol_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(1); derived.push_back(false); IfcPreDefinedTerminatorSymbol_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(1); derived.push_back(false); IfcPreDefinedTextFont_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(4); attributes.push_back(new entity::attribute("Name", new named_type(IfcLabel_type), false)); attributes.push_back(new entity::attribute("Description", new named_type(IfcText_type), true)); attributes.push_back(new entity::attribute("AssignedItems", new aggregation_type(aggregation_type::set_type, 1, -1, new named_type(IfcLayeredItem_type)), false)); attributes.push_back(new entity::attribute("Identifier", new named_type(IfcIdentifier_type), true)); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcPresentationLayerAssignment_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(4); attributes.push_back(new entity::attribute("LayerOn", new simple_type(simple_type::logical_type), false)); attributes.push_back(new entity::attribute("LayerFrozen", new simple_type(simple_type::logical_type), false)); attributes.push_back(new entity::attribute("LayerBlocked", new simple_type(simple_type::logical_type), false)); attributes.push_back(new entity::attribute("LayerStyles", new aggregation_type(aggregation_type::set_type, 0, -1, new named_type(IfcPresentationStyleSelect_type)), false)); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcPresentationLayerWithStyle_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("Name", new named_type(IfcLabel_type), true)); std::vector derived; derived.reserve(1); derived.push_back(false); IfcPresentationStyle_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("Styles", new aggregation_type(aggregation_type::set_type, 1, -1, new named_type(IfcPresentationStyleSelect_type)), false)); std::vector derived; derived.reserve(1); derived.push_back(false); IfcPresentationStyleAssignment_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::attribute("ProcedureID", new named_type(IfcIdentifier_type), false)); attributes.push_back(new entity::attribute("ProcedureType", new named_type(IfcProcedureTypeEnum_type), false)); attributes.push_back(new entity::attribute("UserDefinedProcedureType", new named_type(IfcLabel_type), true)); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcProcedure_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(5); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcProcess_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("ObjectPlacement", new named_type(IfcObjectPlacement_type), true)); attributes.push_back(new entity::attribute("Representation", new named_type(IfcProductRepresentation_type), true)); std::vector derived; derived.reserve(7); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcProduct_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(3); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcProductDefinitionShape_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::attribute("Name", new named_type(IfcLabel_type), true)); attributes.push_back(new entity::attribute("Description", new named_type(IfcText_type), true)); attributes.push_back(new entity::attribute("Representations", new aggregation_type(aggregation_type::list_type, 1, -1, new named_type(IfcRepresentation_type)), false)); std::vector derived; derived.reserve(3); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcProductRepresentation_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(4); attributes.push_back(new entity::attribute("SpecificHeatCapacity", new named_type(IfcSpecificHeatCapacityMeasure_type), true)); attributes.push_back(new entity::attribute("N20Content", new named_type(IfcPositiveRatioMeasure_type), true)); attributes.push_back(new entity::attribute("COContent", new named_type(IfcPositiveRatioMeasure_type), true)); attributes.push_back(new entity::attribute("CO2Content", new named_type(IfcPositiveRatioMeasure_type), true)); std::vector derived; derived.reserve(5); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcProductsOfCombustionProperties_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("ProfileType", new named_type(IfcProfileTypeEnum_type), false)); attributes.push_back(new entity::attribute("ProfileName", new named_type(IfcLabel_type), true)); std::vector derived; derived.reserve(2); derived.push_back(false); derived.push_back(false); IfcProfileDef_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("ProfileName", new named_type(IfcLabel_type), true)); attributes.push_back(new entity::attribute("ProfileDefinition", new named_type(IfcProfileDef_type), true)); std::vector derived; derived.reserve(2); derived.push_back(false); derived.push_back(false); IfcProfileProperties_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(4); attributes.push_back(new entity::attribute("LongName", new named_type(IfcLabel_type), true)); attributes.push_back(new entity::attribute("Phase", new named_type(IfcLabel_type), true)); attributes.push_back(new entity::attribute("RepresentationContexts", new aggregation_type(aggregation_type::set_type, 1, -1, new named_type(IfcRepresentationContext_type)), false)); attributes.push_back(new entity::attribute("UnitsInContext", new named_type(IfcUnitAssignment_type), false)); std::vector derived; derived.reserve(9); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcProject_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::attribute("ID", new named_type(IfcIdentifier_type), false)); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcProjectOrderTypeEnum_type), false)); attributes.push_back(new entity::attribute("Status", new named_type(IfcLabel_type), true)); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcProjectOrder_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("Records", new aggregation_type(aggregation_type::list_type, 1, -1, new named_type(IfcRelAssignsToProjectOrder_type)), false)); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcProjectOrderRecordTypeEnum_type), false)); std::vector derived; derived.reserve(7); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcProjectOrderRecord_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(3); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcProjectionCurve_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcProjectionElement_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("Name", new named_type(IfcIdentifier_type), false)); attributes.push_back(new entity::attribute("Description", new named_type(IfcText_type), true)); std::vector derived; derived.reserve(2); derived.push_back(false); derived.push_back(false); IfcProperty_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::attribute("UpperBoundValue", new named_type(IfcValue_type), true)); attributes.push_back(new entity::attribute("LowerBoundValue", new named_type(IfcValue_type), true)); attributes.push_back(new entity::attribute("Unit", new named_type(IfcUnit_type), true)); std::vector derived; derived.reserve(5); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcPropertyBoundedValue_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(4); attributes.push_back(new entity::attribute("RelatingConstraint", new named_type(IfcConstraint_type), false)); attributes.push_back(new entity::attribute("RelatedProperties", new aggregation_type(aggregation_type::set_type, 1, -1, new named_type(IfcProperty_type)), false)); attributes.push_back(new entity::attribute("Name", new named_type(IfcLabel_type), true)); attributes.push_back(new entity::attribute("Description", new named_type(IfcText_type), true)); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcPropertyConstraintRelationship_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcPropertyDefinition_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(5); attributes.push_back(new entity::attribute("DependingProperty", new named_type(IfcProperty_type), false)); attributes.push_back(new entity::attribute("DependantProperty", new named_type(IfcProperty_type), false)); attributes.push_back(new entity::attribute("Name", new named_type(IfcLabel_type), true)); attributes.push_back(new entity::attribute("Description", new named_type(IfcText_type), true)); attributes.push_back(new entity::attribute("Expression", new named_type(IfcText_type), true)); std::vector derived; derived.reserve(5); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcPropertyDependencyRelationship_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("EnumerationValues", new aggregation_type(aggregation_type::list_type, 1, -1, new named_type(IfcValue_type)), false)); attributes.push_back(new entity::attribute("EnumerationReference", new named_type(IfcPropertyEnumeration_type), true)); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcPropertyEnumeratedValue_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::attribute("Name", new named_type(IfcLabel_type), false)); attributes.push_back(new entity::attribute("EnumerationValues", new aggregation_type(aggregation_type::list_type, 1, -1, new named_type(IfcValue_type)), false)); attributes.push_back(new entity::attribute("Unit", new named_type(IfcUnit_type), true)); std::vector derived; derived.reserve(3); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcPropertyEnumeration_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("ListValues", new aggregation_type(aggregation_type::list_type, 1, -1, new named_type(IfcValue_type)), false)); attributes.push_back(new entity::attribute("Unit", new named_type(IfcUnit_type), true)); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcPropertyListValue_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("UsageName", new named_type(IfcLabel_type), true)); attributes.push_back(new entity::attribute("PropertyReference", new named_type(IfcObjectReferenceSelect_type), false)); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcPropertyReferenceValue_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("HasProperties", new aggregation_type(aggregation_type::set_type, 1, -1, new named_type(IfcProperty_type)), false)); std::vector derived; derived.reserve(5); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcPropertySet_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcPropertySetDefinition_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("NominalValue", new named_type(IfcValue_type), true)); attributes.push_back(new entity::attribute("Unit", new named_type(IfcUnit_type), true)); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcPropertySingleValue_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(5); attributes.push_back(new entity::attribute("DefiningValues", new aggregation_type(aggregation_type::list_type, 1, -1, new named_type(IfcValue_type)), false)); attributes.push_back(new entity::attribute("DefinedValues", new aggregation_type(aggregation_type::list_type, 1, -1, new named_type(IfcValue_type)), false)); attributes.push_back(new entity::attribute("Expression", new named_type(IfcText_type), true)); attributes.push_back(new entity::attribute("DefiningUnit", new named_type(IfcUnit_type), true)); attributes.push_back(new entity::attribute("DefinedUnit", new named_type(IfcUnit_type), true)); std::vector derived; derived.reserve(7); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcPropertyTableValue_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcProtectiveDeviceTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcProtectiveDeviceType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("ProxyType", new named_type(IfcObjectTypeEnum_type), false)); attributes.push_back(new entity::attribute("Tag", new named_type(IfcLabel_type), true)); std::vector derived; derived.reserve(9); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcProxy_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcPumpTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcPumpType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("AreaValue", new named_type(IfcAreaMeasure_type), false)); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcQuantityArea_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("CountValue", new named_type(IfcCountMeasure_type), false)); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcQuantityCount_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("LengthValue", new named_type(IfcLengthMeasure_type), false)); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcQuantityLength_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("TimeValue", new named_type(IfcTimeMeasure_type), false)); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcQuantityTime_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("VolumeValue", new named_type(IfcVolumeMeasure_type), false)); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcQuantityVolume_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("WeightValue", new named_type(IfcMassMeasure_type), false)); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcQuantityWeight_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(1); derived.push_back(false); IfcRadiusDimension_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcRailingTypeEnum_type), true)); std::vector derived; derived.reserve(9); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRailing_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcRailingTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRailingType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("ShapeType", new named_type(IfcRampTypeEnum_type), false)); std::vector derived; derived.reserve(9); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRamp_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRampFlight_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcRampFlightTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRampFlightType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("WeightsData", new aggregation_type(aggregation_type::list_type, 2, -1, new simple_type(simple_type::real_type)), false)); std::vector derived; derived.reserve(6); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRationalBezierCurve_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::attribute("WallThickness", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("InnerFilletRadius", new named_type(IfcPositiveLengthMeasure_type), true)); attributes.push_back(new entity::attribute("OuterFilletRadius", new named_type(IfcPositiveLengthMeasure_type), true)); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRectangleHollowProfileDef_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("XDim", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("YDim", new named_type(IfcPositiveLengthMeasure_type), false)); std::vector derived; derived.reserve(5); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRectangleProfileDef_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::attribute("XLength", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("YLength", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("Height", new named_type(IfcPositiveLengthMeasure_type), false)); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRectangularPyramid_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(7); attributes.push_back(new entity::attribute("BasisSurface", new named_type(IfcSurface_type), false)); attributes.push_back(new entity::attribute("U1", new named_type(IfcParameterValue_type), false)); attributes.push_back(new entity::attribute("V1", new named_type(IfcParameterValue_type), false)); attributes.push_back(new entity::attribute("U2", new named_type(IfcParameterValue_type), false)); attributes.push_back(new entity::attribute("V2", new named_type(IfcParameterValue_type), false)); attributes.push_back(new entity::attribute("Usense", new simple_type(simple_type::boolean_type), false)); attributes.push_back(new entity::attribute("Vsense", new simple_type(simple_type::boolean_type), false)); std::vector derived; derived.reserve(7); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRectangularTrimmedSurface_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(4); attributes.push_back(new entity::attribute("ReferencedDocument", new named_type(IfcDocumentSelect_type), false)); attributes.push_back(new entity::attribute("ReferencingValues", new aggregation_type(aggregation_type::set_type, 1, -1, new named_type(IfcAppliedValue_type)), false)); attributes.push_back(new entity::attribute("Name", new named_type(IfcLabel_type), true)); attributes.push_back(new entity::attribute("Description", new named_type(IfcText_type), true)); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcReferencesValueDocument_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("TimeStep", new named_type(IfcTimeMeasure_type), false)); attributes.push_back(new entity::attribute("Values", new aggregation_type(aggregation_type::list_type, 1, -1, new named_type(IfcTimeSeriesValue_type)), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRegularTimeSeries_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(6); attributes.push_back(new entity::attribute("TotalCrossSectionArea", new named_type(IfcAreaMeasure_type), false)); attributes.push_back(new entity::attribute("SteelGrade", new named_type(IfcLabel_type), false)); attributes.push_back(new entity::attribute("BarSurface", new named_type(IfcReinforcingBarSurfaceEnum_type), true)); attributes.push_back(new entity::attribute("EffectiveDepth", new named_type(IfcLengthMeasure_type), true)); attributes.push_back(new entity::attribute("NominalBarDiameter", new named_type(IfcPositiveLengthMeasure_type), true)); attributes.push_back(new entity::attribute("BarCount", new named_type(IfcCountMeasure_type), true)); std::vector derived; derived.reserve(6); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcReinforcementBarProperties_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("DefinitionType", new named_type(IfcLabel_type), true)); attributes.push_back(new entity::attribute("ReinforcementSectionDefinitions", new aggregation_type(aggregation_type::list_type, 1, -1, new named_type(IfcSectionReinforcementProperties_type)), false)); std::vector derived; derived.reserve(6); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcReinforcementDefinitionProperties_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(5); attributes.push_back(new entity::attribute("NominalDiameter", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("CrossSectionArea", new named_type(IfcAreaMeasure_type), false)); attributes.push_back(new entity::attribute("BarLength", new named_type(IfcPositiveLengthMeasure_type), true)); attributes.push_back(new entity::attribute("BarRole", new named_type(IfcReinforcingBarRoleEnum_type), false)); attributes.push_back(new entity::attribute("BarSurface", new named_type(IfcReinforcingBarSurfaceEnum_type), true)); std::vector derived; derived.reserve(14); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcReinforcingBar_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("SteelGrade", new named_type(IfcLabel_type), true)); std::vector derived; derived.reserve(9); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcReinforcingElement_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(8); attributes.push_back(new entity::attribute("MeshLength", new named_type(IfcPositiveLengthMeasure_type), true)); attributes.push_back(new entity::attribute("MeshWidth", new named_type(IfcPositiveLengthMeasure_type), true)); attributes.push_back(new entity::attribute("LongitudinalBarNominalDiameter", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("TransverseBarNominalDiameter", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("LongitudinalBarCrossSectionArea", new named_type(IfcAreaMeasure_type), false)); attributes.push_back(new entity::attribute("TransverseBarCrossSectionArea", new named_type(IfcAreaMeasure_type), false)); attributes.push_back(new entity::attribute("LongitudinalBarSpacing", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("TransverseBarSpacing", new named_type(IfcPositiveLengthMeasure_type), false)); std::vector derived; derived.reserve(17); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcReinforcingMesh_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(6); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRelAggregates_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("RelatedObjects", new aggregation_type(aggregation_type::set_type, 1, -1, new named_type(IfcObjectDefinition_type)), false)); attributes.push_back(new entity::attribute("RelatedObjectsType", new named_type(IfcObjectTypeEnum_type), true)); std::vector derived; derived.reserve(6); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRelAssigns_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("TimeForTask", new named_type(IfcScheduleTimeControl_type), true)); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRelAssignsTasks_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("RelatingActor", new named_type(IfcActor_type), false)); attributes.push_back(new entity::attribute("ActingRole", new named_type(IfcActorRole_type), true)); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRelAssignsToActor_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("RelatingControl", new named_type(IfcControl_type), false)); std::vector derived; derived.reserve(7); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRelAssignsToControl_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("RelatingGroup", new named_type(IfcGroup_type), false)); std::vector derived; derived.reserve(7); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRelAssignsToGroup_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("RelatingProcess", new named_type(IfcProcess_type), false)); attributes.push_back(new entity::attribute("QuantityInProcess", new named_type(IfcMeasureWithUnit_type), true)); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRelAssignsToProcess_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("RelatingProduct", new named_type(IfcProduct_type), false)); std::vector derived; derived.reserve(7); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRelAssignsToProduct_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(7); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRelAssignsToProjectOrder_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("RelatingResource", new named_type(IfcResource_type), false)); std::vector derived; derived.reserve(7); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRelAssignsToResource_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("RelatedObjects", new aggregation_type(aggregation_type::set_type, 1, -1, new named_type(IfcRoot_type)), false)); std::vector derived; derived.reserve(5); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRelAssociates_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("RelatingAppliedValue", new named_type(IfcAppliedValue_type), false)); std::vector derived; derived.reserve(6); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRelAssociatesAppliedValue_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("RelatingApproval", new named_type(IfcApproval_type), false)); std::vector derived; derived.reserve(6); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRelAssociatesApproval_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("RelatingClassification", new named_type(IfcClassificationNotationSelect_type), false)); std::vector derived; derived.reserve(6); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRelAssociatesClassification_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("Intent", new named_type(IfcLabel_type), false)); attributes.push_back(new entity::attribute("RelatingConstraint", new named_type(IfcConstraint_type), false)); std::vector derived; derived.reserve(7); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRelAssociatesConstraint_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("RelatingDocument", new named_type(IfcDocumentSelect_type), false)); std::vector derived; derived.reserve(6); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRelAssociatesDocument_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("RelatingLibrary", new named_type(IfcLibrarySelect_type), false)); std::vector derived; derived.reserve(6); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRelAssociatesLibrary_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("RelatingMaterial", new named_type(IfcMaterialSelect_type), false)); std::vector derived; derived.reserve(6); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRelAssociatesMaterial_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::attribute("RelatingProfileProperties", new named_type(IfcProfileProperties_type), false)); attributes.push_back(new entity::attribute("ProfileSectionLocation", new named_type(IfcShapeAspect_type), true)); attributes.push_back(new entity::attribute("ProfileOrientation", new named_type(IfcOrientationSelect_type), true)); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRelAssociatesProfileProperties_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRelConnects_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::attribute("ConnectionGeometry", new named_type(IfcConnectionGeometry_type), true)); attributes.push_back(new entity::attribute("RelatingElement", new named_type(IfcElement_type), false)); attributes.push_back(new entity::attribute("RelatedElement", new named_type(IfcElement_type), false)); std::vector derived; derived.reserve(7); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRelConnectsElements_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(4); attributes.push_back(new entity::attribute("RelatingPriorities", new aggregation_type(aggregation_type::list_type, 0, -1, new simple_type(simple_type::integer_type)), false)); attributes.push_back(new entity::attribute("RelatedPriorities", new aggregation_type(aggregation_type::list_type, 0, -1, new simple_type(simple_type::integer_type)), false)); attributes.push_back(new entity::attribute("RelatedConnectionType", new named_type(IfcConnectionTypeEnum_type), false)); attributes.push_back(new entity::attribute("RelatingConnectionType", new named_type(IfcConnectionTypeEnum_type), false)); std::vector derived; derived.reserve(11); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRelConnectsPathElements_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("RelatingPort", new named_type(IfcPort_type), false)); attributes.push_back(new entity::attribute("RelatedElement", new named_type(IfcElement_type), false)); std::vector derived; derived.reserve(6); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRelConnectsPortToElement_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::attribute("RelatingPort", new named_type(IfcPort_type), false)); attributes.push_back(new entity::attribute("RelatedPort", new named_type(IfcPort_type), false)); attributes.push_back(new entity::attribute("RealizingElement", new named_type(IfcElement_type), true)); std::vector derived; derived.reserve(7); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRelConnectsPorts_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("RelatingElement", new named_type(IfcStructuralActivityAssignmentSelect_type), false)); attributes.push_back(new entity::attribute("RelatedStructuralActivity", new named_type(IfcStructuralActivity_type), false)); std::vector derived; derived.reserve(6); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRelConnectsStructuralActivity_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("RelatingElement", new named_type(IfcElement_type), false)); attributes.push_back(new entity::attribute("RelatedStructuralMember", new named_type(IfcStructuralMember_type), false)); std::vector derived; derived.reserve(6); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRelConnectsStructuralElement_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(6); attributes.push_back(new entity::attribute("RelatingStructuralMember", new named_type(IfcStructuralMember_type), false)); attributes.push_back(new entity::attribute("RelatedStructuralConnection", new named_type(IfcStructuralConnection_type), false)); attributes.push_back(new entity::attribute("AppliedCondition", new named_type(IfcBoundaryCondition_type), true)); attributes.push_back(new entity::attribute("AdditionalConditions", new named_type(IfcStructuralConnectionCondition_type), true)); attributes.push_back(new entity::attribute("SupportedLength", new named_type(IfcLengthMeasure_type), true)); attributes.push_back(new entity::attribute("ConditionCoordinateSystem", new named_type(IfcAxis2Placement3D_type), true)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRelConnectsStructuralMember_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("ConnectionConstraint", new named_type(IfcConnectionGeometry_type), false)); std::vector derived; derived.reserve(11); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRelConnectsWithEccentricity_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("RealizingElements", new aggregation_type(aggregation_type::set_type, 1, -1, new named_type(IfcElement_type)), false)); attributes.push_back(new entity::attribute("ConnectionType", new named_type(IfcLabel_type), true)); std::vector derived; derived.reserve(9); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRelConnectsWithRealizingElements_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("RelatedElements", new aggregation_type(aggregation_type::set_type, 1, -1, new named_type(IfcProduct_type)), false)); attributes.push_back(new entity::attribute("RelatingStructure", new named_type(IfcSpatialStructureElement_type), false)); std::vector derived; derived.reserve(6); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRelContainedInSpatialStructure_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("RelatingBuildingElement", new named_type(IfcElement_type), false)); attributes.push_back(new entity::attribute("RelatedCoverings", new aggregation_type(aggregation_type::set_type, 1, -1, new named_type(IfcCovering_type)), false)); std::vector derived; derived.reserve(6); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRelCoversBldgElements_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("RelatedSpace", new named_type(IfcSpace_type), false)); attributes.push_back(new entity::attribute("RelatedCoverings", new aggregation_type(aggregation_type::set_type, 1, -1, new named_type(IfcCovering_type)), false)); std::vector derived; derived.reserve(6); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRelCoversSpaces_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("RelatingObject", new named_type(IfcObjectDefinition_type), false)); attributes.push_back(new entity::attribute("RelatedObjects", new aggregation_type(aggregation_type::set_type, 1, -1, new named_type(IfcObjectDefinition_type)), false)); std::vector derived; derived.reserve(6); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRelDecomposes_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("RelatedObjects", new aggregation_type(aggregation_type::set_type, 1, -1, new named_type(IfcObject_type)), false)); std::vector derived; derived.reserve(5); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRelDefines_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("RelatingPropertyDefinition", new named_type(IfcPropertySetDefinition_type), false)); std::vector derived; derived.reserve(6); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRelDefinesByProperties_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("RelatingType", new named_type(IfcTypeObject_type), false)); std::vector derived; derived.reserve(6); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRelDefinesByType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("RelatingOpeningElement", new named_type(IfcOpeningElement_type), false)); attributes.push_back(new entity::attribute("RelatedBuildingElement", new named_type(IfcElement_type), false)); std::vector derived; derived.reserve(6); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRelFillsElement_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("RelatedControlElements", new aggregation_type(aggregation_type::set_type, 1, -1, new named_type(IfcDistributionControlElement_type)), false)); attributes.push_back(new entity::attribute("RelatingFlowElement", new named_type(IfcDistributionFlowElement_type), false)); std::vector derived; derived.reserve(6); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRelFlowControlElements_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(5); attributes.push_back(new entity::attribute("DailyInteraction", new named_type(IfcCountMeasure_type), true)); attributes.push_back(new entity::attribute("ImportanceRating", new named_type(IfcNormalisedRatioMeasure_type), true)); attributes.push_back(new entity::attribute("LocationOfInteraction", new named_type(IfcSpatialStructureElement_type), true)); attributes.push_back(new entity::attribute("RelatedSpaceProgram", new named_type(IfcSpaceProgram_type), false)); attributes.push_back(new entity::attribute("RelatingSpaceProgram", new named_type(IfcSpaceProgram_type), false)); std::vector derived; derived.reserve(9); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRelInteractionRequirements_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(6); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRelNests_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRelOccupiesSpaces_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("OverridingProperties", new aggregation_type(aggregation_type::set_type, 1, -1, new named_type(IfcProperty_type)), false)); std::vector derived; derived.reserve(7); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRelOverridesProperties_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("RelatingElement", new named_type(IfcElement_type), false)); attributes.push_back(new entity::attribute("RelatedFeatureElement", new named_type(IfcFeatureElementAddition_type), false)); std::vector derived; derived.reserve(6); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRelProjectsElement_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("RelatedElements", new aggregation_type(aggregation_type::set_type, 1, -1, new named_type(IfcProduct_type)), false)); attributes.push_back(new entity::attribute("RelatingStructure", new named_type(IfcSpatialStructureElement_type), false)); std::vector derived; derived.reserve(6); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRelReferencedInSpatialStructure_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(7); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRelSchedulesCostItems_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(4); attributes.push_back(new entity::attribute("RelatingProcess", new named_type(IfcProcess_type), false)); attributes.push_back(new entity::attribute("RelatedProcess", new named_type(IfcProcess_type), false)); attributes.push_back(new entity::attribute("TimeLag", new named_type(IfcTimeMeasure_type), false)); attributes.push_back(new entity::attribute("SequenceType", new named_type(IfcSequenceEnum_type), false)); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRelSequence_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("RelatingSystem", new named_type(IfcSystem_type), false)); attributes.push_back(new entity::attribute("RelatedBuildings", new aggregation_type(aggregation_type::set_type, 1, -1, new named_type(IfcSpatialStructureElement_type)), false)); std::vector derived; derived.reserve(6); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRelServicesBuildings_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(5); attributes.push_back(new entity::attribute("RelatingSpace", new named_type(IfcSpace_type), false)); attributes.push_back(new entity::attribute("RelatedBuildingElement", new named_type(IfcElement_type), true)); attributes.push_back(new entity::attribute("ConnectionGeometry", new named_type(IfcConnectionGeometry_type), true)); attributes.push_back(new entity::attribute("PhysicalOrVirtualBoundary", new named_type(IfcPhysicalOrVirtualEnum_type), false)); attributes.push_back(new entity::attribute("InternalOrExternalBoundary", new named_type(IfcInternalOrExternalEnum_type), false)); std::vector derived; derived.reserve(9); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRelSpaceBoundary_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("RelatingBuildingElement", new named_type(IfcElement_type), false)); attributes.push_back(new entity::attribute("RelatedOpeningElement", new named_type(IfcFeatureElementSubtraction_type), false)); std::vector derived; derived.reserve(6); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRelVoidsElement_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRelationship_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("RelaxationValue", new named_type(IfcNormalisedRatioMeasure_type), false)); attributes.push_back(new entity::attribute("InitialStress", new named_type(IfcNormalisedRatioMeasure_type), false)); std::vector derived; derived.reserve(2); derived.push_back(false); derived.push_back(false); IfcRelaxation_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(4); attributes.push_back(new entity::attribute("ContextOfItems", new named_type(IfcRepresentationContext_type), false)); attributes.push_back(new entity::attribute("RepresentationIdentifier", new named_type(IfcLabel_type), true)); attributes.push_back(new entity::attribute("RepresentationType", new named_type(IfcLabel_type), true)); attributes.push_back(new entity::attribute("Items", new aggregation_type(aggregation_type::set_type, 1, -1, new named_type(IfcRepresentationItem_type)), false)); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRepresentation_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("ContextIdentifier", new named_type(IfcLabel_type), true)); attributes.push_back(new entity::attribute("ContextType", new named_type(IfcLabel_type), true)); std::vector derived; derived.reserve(2); derived.push_back(false); derived.push_back(false); IfcRepresentationContext_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(0); IfcRepresentationItem_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("MappingOrigin", new named_type(IfcAxis2Placement_type), false)); attributes.push_back(new entity::attribute("MappedRepresentation", new named_type(IfcRepresentation_type), false)); std::vector derived; derived.reserve(2); derived.push_back(false); derived.push_back(false); IfcRepresentationMap_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(5); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcResource_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("Axis", new named_type(IfcAxis1Placement_type), false)); attributes.push_back(new entity::attribute("Angle", new named_type(IfcPlaneAngleMeasure_type), false)); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRevolvedAreaSolid_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(5); attributes.push_back(new entity::attribute("Thickness", new named_type(IfcPositiveLengthMeasure_type), true)); attributes.push_back(new entity::attribute("RibHeight", new named_type(IfcPositiveLengthMeasure_type), true)); attributes.push_back(new entity::attribute("RibWidth", new named_type(IfcPositiveLengthMeasure_type), true)); attributes.push_back(new entity::attribute("RibSpacing", new named_type(IfcPositiveLengthMeasure_type), true)); attributes.push_back(new entity::attribute("Direction", new named_type(IfcRibPlateDirectionEnum_type), false)); std::vector derived; derived.reserve(7); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRibPlateProfileProperties_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("Height", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("BottomRadius", new named_type(IfcPositiveLengthMeasure_type), false)); std::vector derived; derived.reserve(3); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRightCircularCone_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("Height", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("Radius", new named_type(IfcPositiveLengthMeasure_type), false)); std::vector derived; derived.reserve(3); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRightCircularCylinder_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("ShapeType", new named_type(IfcRoofTypeEnum_type), false)); std::vector derived; derived.reserve(9); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRoof_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(4); attributes.push_back(new entity::attribute("GlobalId", new named_type(IfcGloballyUniqueId_type), false)); attributes.push_back(new entity::attribute("OwnerHistory", new named_type(IfcOwnerHistory_type), false)); attributes.push_back(new entity::attribute("Name", new named_type(IfcLabel_type), true)); attributes.push_back(new entity::attribute("Description", new named_type(IfcText_type), true)); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRoot_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("Radius", new named_type(IfcPositiveLengthMeasure_type), true)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRoundedEdgeFeature_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("RoundingRadius", new named_type(IfcPositiveLengthMeasure_type), false)); std::vector derived; derived.reserve(6); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcRoundedRectangleProfileDef_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("Prefix", new named_type(IfcSIPrefix_type), true)); attributes.push_back(new entity::attribute("Name", new named_type(IfcSIUnitName_type), false)); std::vector derived; derived.reserve(4); derived.push_back(true); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcSIUnit_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcSanitaryTerminalTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcSanitaryTerminalType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(18); attributes.push_back(new entity::attribute("ActualStart", new named_type(IfcDateTimeSelect_type), true)); attributes.push_back(new entity::attribute("EarlyStart", new named_type(IfcDateTimeSelect_type), true)); attributes.push_back(new entity::attribute("LateStart", new named_type(IfcDateTimeSelect_type), true)); attributes.push_back(new entity::attribute("ScheduleStart", new named_type(IfcDateTimeSelect_type), true)); attributes.push_back(new entity::attribute("ActualFinish", new named_type(IfcDateTimeSelect_type), true)); attributes.push_back(new entity::attribute("EarlyFinish", new named_type(IfcDateTimeSelect_type), true)); attributes.push_back(new entity::attribute("LateFinish", new named_type(IfcDateTimeSelect_type), true)); attributes.push_back(new entity::attribute("ScheduleFinish", new named_type(IfcDateTimeSelect_type), true)); attributes.push_back(new entity::attribute("ScheduleDuration", new named_type(IfcTimeMeasure_type), true)); attributes.push_back(new entity::attribute("ActualDuration", new named_type(IfcTimeMeasure_type), true)); attributes.push_back(new entity::attribute("RemainingTime", new named_type(IfcTimeMeasure_type), true)); attributes.push_back(new entity::attribute("FreeFloat", new named_type(IfcTimeMeasure_type), true)); attributes.push_back(new entity::attribute("TotalFloat", new named_type(IfcTimeMeasure_type), true)); attributes.push_back(new entity::attribute("IsCritical", new simple_type(simple_type::boolean_type), true)); attributes.push_back(new entity::attribute("StatusTime", new named_type(IfcDateTimeSelect_type), true)); attributes.push_back(new entity::attribute("StartFloat", new named_type(IfcTimeMeasure_type), true)); attributes.push_back(new entity::attribute("FinishFloat", new named_type(IfcTimeMeasure_type), true)); attributes.push_back(new entity::attribute("Completion", new named_type(IfcPositiveRatioMeasure_type), true)); std::vector derived; derived.reserve(23); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcScheduleTimeControl_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::attribute("SectionType", new named_type(IfcSectionTypeEnum_type), false)); attributes.push_back(new entity::attribute("StartProfile", new named_type(IfcProfileDef_type), false)); attributes.push_back(new entity::attribute("EndProfile", new named_type(IfcProfileDef_type), true)); std::vector derived; derived.reserve(3); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcSectionProperties_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(6); attributes.push_back(new entity::attribute("LongitudinalStartPosition", new named_type(IfcLengthMeasure_type), false)); attributes.push_back(new entity::attribute("LongitudinalEndPosition", new named_type(IfcLengthMeasure_type), false)); attributes.push_back(new entity::attribute("TransversePosition", new named_type(IfcLengthMeasure_type), true)); attributes.push_back(new entity::attribute("ReinforcementRole", new named_type(IfcReinforcingBarRoleEnum_type), false)); attributes.push_back(new entity::attribute("SectionDefinition", new named_type(IfcSectionProperties_type), false)); attributes.push_back(new entity::attribute("CrossSectionReinforcementDefinitions", new aggregation_type(aggregation_type::set_type, 1, -1, new named_type(IfcReinforcementBarProperties_type)), false)); std::vector derived; derived.reserve(6); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcSectionReinforcementProperties_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::attribute("SpineCurve", new named_type(IfcCompositeCurve_type), false)); attributes.push_back(new entity::attribute("CrossSections", new aggregation_type(aggregation_type::list_type, 2, -1, new named_type(IfcProfileDef_type)), false)); attributes.push_back(new entity::attribute("CrossSectionPositions", new aggregation_type(aggregation_type::list_type, 2, -1, new named_type(IfcAxis2Placement3D_type)), false)); std::vector derived; derived.reserve(3); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcSectionedSpine_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcSensorTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcSensorType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("ServiceLifeType", new named_type(IfcServiceLifeTypeEnum_type), false)); attributes.push_back(new entity::attribute("ServiceLifeDuration", new named_type(IfcTimeMeasure_type), false)); std::vector derived; derived.reserve(7); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcServiceLife_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(4); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcServiceLifeFactorTypeEnum_type), false)); attributes.push_back(new entity::attribute("UpperValue", new named_type(IfcMeasureValue_type), true)); attributes.push_back(new entity::attribute("MostUsedValue", new named_type(IfcMeasureValue_type), false)); attributes.push_back(new entity::attribute("LowerValue", new named_type(IfcMeasureValue_type), true)); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcServiceLifeFactor_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(5); attributes.push_back(new entity::attribute("ShapeRepresentations", new aggregation_type(aggregation_type::list_type, 1, -1, new named_type(IfcShapeModel_type)), false)); attributes.push_back(new entity::attribute("Name", new named_type(IfcLabel_type), true)); attributes.push_back(new entity::attribute("Description", new named_type(IfcText_type), true)); attributes.push_back(new entity::attribute("ProductDefinitional", new simple_type(simple_type::logical_type), false)); attributes.push_back(new entity::attribute("PartOfProductDefinitionShape", new named_type(IfcProductDefinitionShape_type), false)); std::vector derived; derived.reserve(5); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcShapeAspect_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcShapeModel_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcShapeRepresentation_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("SbsmBoundary", new aggregation_type(aggregation_type::set_type, 1, -1, new named_type(IfcShell_type)), false)); std::vector derived; derived.reserve(1); derived.push_back(false); IfcShellBasedSurfaceModel_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(2); derived.push_back(false); derived.push_back(false); IfcSimpleProperty_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(5); attributes.push_back(new entity::attribute("RefLatitude", new named_type(IfcCompoundPlaneAngleMeasure_type), true)); attributes.push_back(new entity::attribute("RefLongitude", new named_type(IfcCompoundPlaneAngleMeasure_type), true)); attributes.push_back(new entity::attribute("RefElevation", new named_type(IfcLengthMeasure_type), true)); attributes.push_back(new entity::attribute("LandTitleNumber", new named_type(IfcLabel_type), true)); attributes.push_back(new entity::attribute("SiteAddress", new named_type(IfcPostalAddress_type), true)); std::vector derived; derived.reserve(14); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcSite_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcSlabTypeEnum_type), true)); std::vector derived; derived.reserve(9); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcSlab_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcSlabTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcSlabType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::attribute("SlippageX", new named_type(IfcLengthMeasure_type), true)); attributes.push_back(new entity::attribute("SlippageY", new named_type(IfcLengthMeasure_type), true)); attributes.push_back(new entity::attribute("SlippageZ", new named_type(IfcLengthMeasure_type), true)); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcSlippageConnectionCondition_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(0); IfcSolidModel_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::attribute("IsAttenuating", new named_type(IfcBoolean_type), false)); attributes.push_back(new entity::attribute("SoundScale", new named_type(IfcSoundScaleEnum_type), true)); attributes.push_back(new entity::attribute("SoundValues", new aggregation_type(aggregation_type::list_type, 1, 8, new named_type(IfcSoundValue_type)), false)); std::vector derived; derived.reserve(7); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcSoundProperties_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::attribute("SoundLevelTimeSeries", new named_type(IfcTimeSeries_type), true)); attributes.push_back(new entity::attribute("Frequency", new named_type(IfcFrequencyMeasure_type), false)); attributes.push_back(new entity::attribute("SoundLevelSingleValue", new named_type(IfcDerivedMeasureValue_type), true)); std::vector derived; derived.reserve(7); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcSoundValue_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("InteriorOrExteriorSpace", new named_type(IfcInternalOrExternalEnum_type), false)); attributes.push_back(new entity::attribute("ElevationWithFlooring", new named_type(IfcLengthMeasure_type), true)); std::vector derived; derived.reserve(11); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcSpace_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcSpaceHeaterTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcSpaceHeaterType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(5); attributes.push_back(new entity::attribute("SpaceProgramIdentifier", new named_type(IfcIdentifier_type), false)); attributes.push_back(new entity::attribute("MaxRequiredArea", new named_type(IfcAreaMeasure_type), true)); attributes.push_back(new entity::attribute("MinRequiredArea", new named_type(IfcAreaMeasure_type), true)); attributes.push_back(new entity::attribute("RequestedLocation", new named_type(IfcSpatialStructureElement_type), true)); attributes.push_back(new entity::attribute("StandardRequiredArea", new named_type(IfcAreaMeasure_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcSpaceProgram_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(10); attributes.push_back(new entity::attribute("ApplicableValueRatio", new named_type(IfcPositiveRatioMeasure_type), true)); attributes.push_back(new entity::attribute("ThermalLoadSource", new named_type(IfcThermalLoadSourceEnum_type), false)); attributes.push_back(new entity::attribute("PropertySource", new named_type(IfcPropertySourceEnum_type), false)); attributes.push_back(new entity::attribute("SourceDescription", new named_type(IfcText_type), true)); attributes.push_back(new entity::attribute("MaximumValue", new named_type(IfcPowerMeasure_type), false)); attributes.push_back(new entity::attribute("MinimumValue", new named_type(IfcPowerMeasure_type), true)); attributes.push_back(new entity::attribute("ThermalLoadTimeSeriesValues", new named_type(IfcTimeSeries_type), true)); attributes.push_back(new entity::attribute("UserDefinedThermalLoadSource", new named_type(IfcLabel_type), true)); attributes.push_back(new entity::attribute("UserDefinedPropertySource", new named_type(IfcLabel_type), true)); attributes.push_back(new entity::attribute("ThermalLoadType", new named_type(IfcThermalLoadTypeEnum_type), false)); std::vector derived; derived.reserve(14); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcSpaceThermalLoadProperties_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcSpaceTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcSpaceType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("LongName", new named_type(IfcLabel_type), true)); attributes.push_back(new entity::attribute("CompositionType", new named_type(IfcElementCompositionEnum_type), false)); std::vector derived; derived.reserve(9); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcSpatialStructureElement_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(9); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcSpatialStructureElementType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("Radius", new named_type(IfcPositiveLengthMeasure_type), false)); std::vector derived; derived.reserve(2); derived.push_back(false); derived.push_back(false); IfcSphere_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcStackTerminalTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcStackTerminalType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("ShapeType", new named_type(IfcStairTypeEnum_type), false)); std::vector derived; derived.reserve(9); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcStair_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(4); attributes.push_back(new entity::attribute("NumberOfRiser", new simple_type(simple_type::integer_type), true)); attributes.push_back(new entity::attribute("NumberOfTreads", new simple_type(simple_type::integer_type), true)); attributes.push_back(new entity::attribute("RiserHeight", new named_type(IfcPositiveLengthMeasure_type), true)); attributes.push_back(new entity::attribute("TreadLength", new named_type(IfcPositiveLengthMeasure_type), true)); std::vector derived; derived.reserve(12); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcStairFlight_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcStairFlightTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcStairFlightType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("DestabilizingLoad", new simple_type(simple_type::boolean_type), false)); attributes.push_back(new entity::attribute("CausedBy", new named_type(IfcStructuralReaction_type), true)); std::vector derived; derived.reserve(11); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcStructuralAction_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("AppliedLoad", new named_type(IfcStructuralLoad_type), false)); attributes.push_back(new entity::attribute("GlobalOrLocal", new named_type(IfcGlobalOrLocalEnum_type), false)); std::vector derived; derived.reserve(9); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcStructuralActivity_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(4); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcAnalysisModelTypeEnum_type), false)); attributes.push_back(new entity::attribute("OrientationOf2DPlane", new named_type(IfcAxis2Placement3D_type), true)); attributes.push_back(new entity::attribute("LoadedBy", new aggregation_type(aggregation_type::set_type, 1, -1, new named_type(IfcStructuralLoadGroup_type)), true)); attributes.push_back(new entity::attribute("HasResults", new aggregation_type(aggregation_type::set_type, 1, -1, new named_type(IfcStructuralResultGroup_type)), true)); std::vector derived; derived.reserve(9); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcStructuralAnalysisModel_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("AppliedCondition", new named_type(IfcBoundaryCondition_type), true)); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcStructuralConnection_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("Name", new named_type(IfcLabel_type), true)); std::vector derived; derived.reserve(1); derived.push_back(false); IfcStructuralConnectionCondition_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcStructuralCurveConnection_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcStructuralCurveTypeEnum_type), false)); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcStructuralCurveMember_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcStructuralCurveMemberVarying_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(7); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcStructuralItem_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("ProjectedOrTrue", new named_type(IfcProjectedOrTrueLengthEnum_type), false)); std::vector derived; derived.reserve(12); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcStructuralLinearAction_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("VaryingAppliedLoadLocation", new named_type(IfcShapeAspect_type), false)); attributes.push_back(new entity::attribute("SubsequentAppliedLoads", new aggregation_type(aggregation_type::list_type, 1, -1, new named_type(IfcStructuralLoad_type)), false)); std::vector derived; derived.reserve(14); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcStructuralLinearActionVarying_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("Name", new named_type(IfcLabel_type), true)); std::vector derived; derived.reserve(1); derived.push_back(false); IfcStructuralLoad_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(5); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcLoadGroupTypeEnum_type), false)); attributes.push_back(new entity::attribute("ActionType", new named_type(IfcActionTypeEnum_type), false)); attributes.push_back(new entity::attribute("ActionSource", new named_type(IfcActionSourceTypeEnum_type), false)); attributes.push_back(new entity::attribute("Coefficient", new named_type(IfcRatioMeasure_type), true)); attributes.push_back(new entity::attribute("Purpose", new named_type(IfcLabel_type), true)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcStructuralLoadGroup_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(6); attributes.push_back(new entity::attribute("LinearForceX", new named_type(IfcLinearForceMeasure_type), true)); attributes.push_back(new entity::attribute("LinearForceY", new named_type(IfcLinearForceMeasure_type), true)); attributes.push_back(new entity::attribute("LinearForceZ", new named_type(IfcLinearForceMeasure_type), true)); attributes.push_back(new entity::attribute("LinearMomentX", new named_type(IfcLinearMomentMeasure_type), true)); attributes.push_back(new entity::attribute("LinearMomentY", new named_type(IfcLinearMomentMeasure_type), true)); attributes.push_back(new entity::attribute("LinearMomentZ", new named_type(IfcLinearMomentMeasure_type), true)); std::vector derived; derived.reserve(7); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcStructuralLoadLinearForce_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::attribute("PlanarForceX", new named_type(IfcPlanarForceMeasure_type), true)); attributes.push_back(new entity::attribute("PlanarForceY", new named_type(IfcPlanarForceMeasure_type), true)); attributes.push_back(new entity::attribute("PlanarForceZ", new named_type(IfcPlanarForceMeasure_type), true)); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcStructuralLoadPlanarForce_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(6); attributes.push_back(new entity::attribute("DisplacementX", new named_type(IfcLengthMeasure_type), true)); attributes.push_back(new entity::attribute("DisplacementY", new named_type(IfcLengthMeasure_type), true)); attributes.push_back(new entity::attribute("DisplacementZ", new named_type(IfcLengthMeasure_type), true)); attributes.push_back(new entity::attribute("RotationalDisplacementRX", new named_type(IfcPlaneAngleMeasure_type), true)); attributes.push_back(new entity::attribute("RotationalDisplacementRY", new named_type(IfcPlaneAngleMeasure_type), true)); attributes.push_back(new entity::attribute("RotationalDisplacementRZ", new named_type(IfcPlaneAngleMeasure_type), true)); std::vector derived; derived.reserve(7); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcStructuralLoadSingleDisplacement_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("Distortion", new named_type(IfcCurvatureMeasure_type), true)); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcStructuralLoadSingleDisplacementDistortion_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(6); attributes.push_back(new entity::attribute("ForceX", new named_type(IfcForceMeasure_type), true)); attributes.push_back(new entity::attribute("ForceY", new named_type(IfcForceMeasure_type), true)); attributes.push_back(new entity::attribute("ForceZ", new named_type(IfcForceMeasure_type), true)); attributes.push_back(new entity::attribute("MomentX", new named_type(IfcTorqueMeasure_type), true)); attributes.push_back(new entity::attribute("MomentY", new named_type(IfcTorqueMeasure_type), true)); attributes.push_back(new entity::attribute("MomentZ", new named_type(IfcTorqueMeasure_type), true)); std::vector derived; derived.reserve(7); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcStructuralLoadSingleForce_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("WarpingMoment", new named_type(IfcWarpingMomentMeasure_type), true)); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcStructuralLoadSingleForceWarping_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(1); derived.push_back(false); IfcStructuralLoadStatic_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::attribute("DeltaT_Constant", new named_type(IfcThermodynamicTemperatureMeasure_type), true)); attributes.push_back(new entity::attribute("DeltaT_Y", new named_type(IfcThermodynamicTemperatureMeasure_type), true)); attributes.push_back(new entity::attribute("DeltaT_Z", new named_type(IfcThermodynamicTemperatureMeasure_type), true)); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcStructuralLoadTemperature_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(7); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcStructuralMember_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("ProjectedOrTrue", new named_type(IfcProjectedOrTrueLengthEnum_type), false)); std::vector derived; derived.reserve(12); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcStructuralPlanarAction_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("VaryingAppliedLoadLocation", new named_type(IfcShapeAspect_type), false)); attributes.push_back(new entity::attribute("SubsequentAppliedLoads", new aggregation_type(aggregation_type::list_type, 2, -1, new named_type(IfcStructuralLoad_type)), false)); std::vector derived; derived.reserve(14); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcStructuralPlanarActionVarying_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(11); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcStructuralPointAction_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcStructuralPointConnection_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(9); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcStructuralPointReaction_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(16); attributes.push_back(new entity::attribute("TorsionalConstantX", new named_type(IfcMomentOfInertiaMeasure_type), true)); attributes.push_back(new entity::attribute("MomentOfInertiaYZ", new named_type(IfcMomentOfInertiaMeasure_type), true)); attributes.push_back(new entity::attribute("MomentOfInertiaY", new named_type(IfcMomentOfInertiaMeasure_type), true)); attributes.push_back(new entity::attribute("MomentOfInertiaZ", new named_type(IfcMomentOfInertiaMeasure_type), true)); attributes.push_back(new entity::attribute("WarpingConstant", new named_type(IfcWarpingConstantMeasure_type), true)); attributes.push_back(new entity::attribute("ShearCentreZ", new named_type(IfcLengthMeasure_type), true)); attributes.push_back(new entity::attribute("ShearCentreY", new named_type(IfcLengthMeasure_type), true)); attributes.push_back(new entity::attribute("ShearDeformationAreaZ", new named_type(IfcAreaMeasure_type), true)); attributes.push_back(new entity::attribute("ShearDeformationAreaY", new named_type(IfcAreaMeasure_type), true)); attributes.push_back(new entity::attribute("MaximumSectionModulusY", new named_type(IfcSectionModulusMeasure_type), true)); attributes.push_back(new entity::attribute("MinimumSectionModulusY", new named_type(IfcSectionModulusMeasure_type), true)); attributes.push_back(new entity::attribute("MaximumSectionModulusZ", new named_type(IfcSectionModulusMeasure_type), true)); attributes.push_back(new entity::attribute("MinimumSectionModulusZ", new named_type(IfcSectionModulusMeasure_type), true)); attributes.push_back(new entity::attribute("TorsionalSectionModulus", new named_type(IfcSectionModulusMeasure_type), true)); attributes.push_back(new entity::attribute("CentreOfGravityInX", new named_type(IfcLengthMeasure_type), true)); attributes.push_back(new entity::attribute("CentreOfGravityInY", new named_type(IfcLengthMeasure_type), true)); std::vector derived; derived.reserve(23); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcStructuralProfileProperties_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(9); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcStructuralReaction_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::attribute("TheoryType", new named_type(IfcAnalysisTheoryTypeEnum_type), false)); attributes.push_back(new entity::attribute("ResultForLoadGroup", new named_type(IfcStructuralLoadGroup_type), true)); attributes.push_back(new entity::attribute("IsLinear", new simple_type(simple_type::boolean_type), false)); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcStructuralResultGroup_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(4); attributes.push_back(new entity::attribute("ShearAreaZ", new named_type(IfcAreaMeasure_type), true)); attributes.push_back(new entity::attribute("ShearAreaY", new named_type(IfcAreaMeasure_type), true)); attributes.push_back(new entity::attribute("PlasticShapeFactorY", new named_type(IfcPositiveRatioMeasure_type), true)); attributes.push_back(new entity::attribute("PlasticShapeFactorZ", new named_type(IfcPositiveRatioMeasure_type), true)); std::vector derived; derived.reserve(27); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcStructuralSteelProfileProperties_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcStructuralSurfaceConnection_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcStructuralSurfaceTypeEnum_type), false)); attributes.push_back(new entity::attribute("Thickness", new named_type(IfcPositiveLengthMeasure_type), true)); std::vector derived; derived.reserve(9); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcStructuralSurfaceMember_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("SubsequentThickness", new aggregation_type(aggregation_type::list_type, 2, -1, new named_type(IfcPositiveLengthMeasure_type)), false)); attributes.push_back(new entity::attribute("VaryingThicknessLocation", new named_type(IfcShapeAspect_type), false)); std::vector derived; derived.reserve(11); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcStructuralSurfaceMemberVarying_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(1); derived.push_back(false); IfcStructuredDimensionCallout_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcStyleModel_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::attribute("Item", new named_type(IfcRepresentationItem_type), true)); attributes.push_back(new entity::attribute("Styles", new aggregation_type(aggregation_type::set_type, 1, -1, new named_type(IfcPresentationStyleAssignment_type)), false)); attributes.push_back(new entity::attribute("Name", new named_type(IfcLabel_type), true)); std::vector derived; derived.reserve(3); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcStyledItem_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcStyledRepresentation_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("SubContractor", new named_type(IfcActorSelect_type), true)); attributes.push_back(new entity::attribute("JobDescription", new named_type(IfcText_type), true)); std::vector derived; derived.reserve(11); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcSubContractResource_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("ParentEdge", new named_type(IfcEdge_type), false)); std::vector derived; derived.reserve(3); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcSubedge_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(0); IfcSurface_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(4); attributes.push_back(new entity::attribute("Directrix", new named_type(IfcCurve_type), false)); attributes.push_back(new entity::attribute("StartParam", new named_type(IfcParameterValue_type), false)); attributes.push_back(new entity::attribute("EndParam", new named_type(IfcParameterValue_type), false)); attributes.push_back(new entity::attribute("ReferenceSurface", new named_type(IfcSurface_type), false)); std::vector derived; derived.reserve(6); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcSurfaceCurveSweptAreaSolid_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("ExtrudedDirection", new named_type(IfcDirection_type), false)); attributes.push_back(new entity::attribute("Depth", new named_type(IfcLengthMeasure_type), false)); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcSurfaceOfLinearExtrusion_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("AxisPosition", new named_type(IfcAxis1Placement_type), false)); std::vector derived; derived.reserve(3); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcSurfaceOfRevolution_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("Side", new named_type(IfcSurfaceSide_type), false)); attributes.push_back(new entity::attribute("Styles", new aggregation_type(aggregation_type::set_type, 1, 5, new named_type(IfcSurfaceStyleElementSelect_type)), false)); std::vector derived; derived.reserve(3); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcSurfaceStyle_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(4); attributes.push_back(new entity::attribute("DiffuseTransmissionColour", new named_type(IfcColourRgb_type), false)); attributes.push_back(new entity::attribute("DiffuseReflectionColour", new named_type(IfcColourRgb_type), false)); attributes.push_back(new entity::attribute("TransmissionColour", new named_type(IfcColourRgb_type), false)); attributes.push_back(new entity::attribute("ReflectanceColour", new named_type(IfcColourRgb_type), false)); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcSurfaceStyleLighting_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("RefractionIndex", new named_type(IfcReal_type), true)); attributes.push_back(new entity::attribute("DispersionFactor", new named_type(IfcReal_type), true)); std::vector derived; derived.reserve(2); derived.push_back(false); derived.push_back(false); IfcSurfaceStyleRefraction_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(8); attributes.push_back(new entity::attribute("Transparency", new named_type(IfcNormalisedRatioMeasure_type), true)); attributes.push_back(new entity::attribute("DiffuseColour", new named_type(IfcColourOrFactor_type), true)); attributes.push_back(new entity::attribute("TransmissionColour", new named_type(IfcColourOrFactor_type), true)); attributes.push_back(new entity::attribute("DiffuseTransmissionColour", new named_type(IfcColourOrFactor_type), true)); attributes.push_back(new entity::attribute("ReflectionColour", new named_type(IfcColourOrFactor_type), true)); attributes.push_back(new entity::attribute("SpecularColour", new named_type(IfcColourOrFactor_type), true)); attributes.push_back(new entity::attribute("SpecularHighlight", new named_type(IfcSpecularHighlightSelect_type), true)); attributes.push_back(new entity::attribute("ReflectanceMethod", new named_type(IfcReflectanceMethodEnum_type), false)); std::vector derived; derived.reserve(9); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcSurfaceStyleRendering_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("SurfaceColour", new named_type(IfcColourRgb_type), false)); std::vector derived; derived.reserve(1); derived.push_back(false); IfcSurfaceStyleShading_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("Textures", new aggregation_type(aggregation_type::list_type, 1, -1, new named_type(IfcSurfaceTexture_type)), false)); std::vector derived; derived.reserve(1); derived.push_back(false); IfcSurfaceStyleWithTextures_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(4); attributes.push_back(new entity::attribute("RepeatS", new simple_type(simple_type::boolean_type), false)); attributes.push_back(new entity::attribute("RepeatT", new simple_type(simple_type::boolean_type), false)); attributes.push_back(new entity::attribute("TextureType", new named_type(IfcSurfaceTextureEnum_type), false)); attributes.push_back(new entity::attribute("TextureTransform", new named_type(IfcCartesianTransformationOperator2D_type), true)); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcSurfaceTexture_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("SweptArea", new named_type(IfcProfileDef_type), false)); attributes.push_back(new entity::attribute("Position", new named_type(IfcAxis2Placement3D_type), false)); std::vector derived; derived.reserve(2); derived.push_back(false); derived.push_back(false); IfcSweptAreaSolid_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(5); attributes.push_back(new entity::attribute("Directrix", new named_type(IfcCurve_type), false)); attributes.push_back(new entity::attribute("Radius", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("InnerRadius", new named_type(IfcPositiveLengthMeasure_type), true)); attributes.push_back(new entity::attribute("StartParam", new named_type(IfcParameterValue_type), false)); attributes.push_back(new entity::attribute("EndParam", new named_type(IfcParameterValue_type), false)); std::vector derived; derived.reserve(5); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcSweptDiskSolid_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("SweptCurve", new named_type(IfcProfileDef_type), false)); attributes.push_back(new entity::attribute("Position", new named_type(IfcAxis2Placement3D_type), false)); std::vector derived; derived.reserve(2); derived.push_back(false); derived.push_back(false); IfcSweptSurface_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcSwitchingDeviceTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcSwitchingDeviceType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("StyleOfSymbol", new named_type(IfcSymbolStyleSelect_type), false)); std::vector derived; derived.reserve(2); derived.push_back(false); derived.push_back(false); IfcSymbolStyle_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(5); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcSystem_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(9); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcSystemFurnitureElementType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(10); attributes.push_back(new entity::attribute("Depth", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("FlangeWidth", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("WebThickness", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("FlangeThickness", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("FilletRadius", new named_type(IfcPositiveLengthMeasure_type), true)); attributes.push_back(new entity::attribute("FlangeEdgeRadius", new named_type(IfcPositiveLengthMeasure_type), true)); attributes.push_back(new entity::attribute("WebEdgeRadius", new named_type(IfcPositiveLengthMeasure_type), true)); attributes.push_back(new entity::attribute("WebSlope", new named_type(IfcPlaneAngleMeasure_type), true)); attributes.push_back(new entity::attribute("FlangeSlope", new named_type(IfcPlaneAngleMeasure_type), true)); attributes.push_back(new entity::attribute("CentreOfGravityInY", new named_type(IfcPositiveLengthMeasure_type), true)); std::vector derived; derived.reserve(13); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcTShapeProfileDef_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("Name", new simple_type(simple_type::string_type), false)); attributes.push_back(new entity::attribute("Rows", new aggregation_type(aggregation_type::list_type, 1, -1, new named_type(IfcTableRow_type)), false)); std::vector derived; derived.reserve(2); derived.push_back(false); derived.push_back(false); IfcTable_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("RowCells", new aggregation_type(aggregation_type::list_type, 1, -1, new named_type(IfcValue_type)), false)); attributes.push_back(new entity::attribute("IsHeading", new simple_type(simple_type::boolean_type), false)); std::vector derived; derived.reserve(2); derived.push_back(false); derived.push_back(false); IfcTableRow_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcTankTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcTankType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(5); attributes.push_back(new entity::attribute("TaskId", new named_type(IfcIdentifier_type), false)); attributes.push_back(new entity::attribute("Status", new named_type(IfcLabel_type), true)); attributes.push_back(new entity::attribute("WorkMethod", new named_type(IfcLabel_type), true)); attributes.push_back(new entity::attribute("IsMilestone", new simple_type(simple_type::boolean_type), false)); attributes.push_back(new entity::attribute("Priority", new simple_type(simple_type::integer_type), true)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcTask_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(5); attributes.push_back(new entity::attribute("TelephoneNumbers", new aggregation_type(aggregation_type::list_type, 1, -1, new named_type(IfcLabel_type)), true)); attributes.push_back(new entity::attribute("FacsimileNumbers", new aggregation_type(aggregation_type::list_type, 1, -1, new named_type(IfcLabel_type)), true)); attributes.push_back(new entity::attribute("PagerNumber", new named_type(IfcLabel_type), true)); attributes.push_back(new entity::attribute("ElectronicMailAddresses", new aggregation_type(aggregation_type::list_type, 1, -1, new named_type(IfcLabel_type)), true)); attributes.push_back(new entity::attribute("WWWHomePageURL", new named_type(IfcLabel_type), true)); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcTelecomAddress_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(8); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcTendonTypeEnum_type), false)); attributes.push_back(new entity::attribute("NominalDiameter", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("CrossSectionArea", new named_type(IfcAreaMeasure_type), false)); attributes.push_back(new entity::attribute("TensionForce", new named_type(IfcForceMeasure_type), true)); attributes.push_back(new entity::attribute("PreStress", new named_type(IfcPressureMeasure_type), true)); attributes.push_back(new entity::attribute("FrictionCoefficient", new named_type(IfcNormalisedRatioMeasure_type), true)); attributes.push_back(new entity::attribute("AnchorageSlip", new named_type(IfcPositiveLengthMeasure_type), true)); attributes.push_back(new entity::attribute("MinCurvatureRadius", new named_type(IfcPositiveLengthMeasure_type), true)); std::vector derived; derived.reserve(17); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcTendon_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(9); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcTendonAnchor_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("AnnotatedCurve", new named_type(IfcAnnotationCurveOccurrence_type), false)); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcTerminatorSymbol_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::attribute("Literal", new named_type(IfcPresentableText_type), false)); attributes.push_back(new entity::attribute("Placement", new named_type(IfcAxis2Placement_type), false)); attributes.push_back(new entity::attribute("Path", new named_type(IfcTextPath_type), false)); std::vector derived; derived.reserve(3); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcTextLiteral_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("Extent", new named_type(IfcPlanarExtent_type), false)); attributes.push_back(new entity::attribute("BoxAlignment", new named_type(IfcBoxAlignment_type), false)); std::vector derived; derived.reserve(5); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcTextLiteralWithExtent_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::attribute("TextCharacterAppearance", new named_type(IfcCharacterStyleSelect_type), true)); attributes.push_back(new entity::attribute("TextStyle", new named_type(IfcTextStyleSelect_type), true)); attributes.push_back(new entity::attribute("TextFontStyle", new named_type(IfcTextFontSelect_type), false)); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcTextStyle_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(5); attributes.push_back(new entity::attribute("FontFamily", new aggregation_type(aggregation_type::list_type, 1, -1, new named_type(IfcTextFontName_type)), true)); attributes.push_back(new entity::attribute("FontStyle", new named_type(IfcFontStyle_type), true)); attributes.push_back(new entity::attribute("FontVariant", new named_type(IfcFontVariant_type), true)); attributes.push_back(new entity::attribute("FontWeight", new named_type(IfcFontWeight_type), true)); attributes.push_back(new entity::attribute("FontSize", new named_type(IfcSizeSelect_type), false)); std::vector derived; derived.reserve(6); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcTextStyleFontModel_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("Colour", new named_type(IfcColour_type), false)); attributes.push_back(new entity::attribute("BackgroundColour", new named_type(IfcColour_type), true)); std::vector derived; derived.reserve(2); derived.push_back(false); derived.push_back(false); IfcTextStyleForDefinedFont_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(7); attributes.push_back(new entity::attribute("TextIndent", new named_type(IfcSizeSelect_type), true)); attributes.push_back(new entity::attribute("TextAlign", new named_type(IfcTextAlignment_type), true)); attributes.push_back(new entity::attribute("TextDecoration", new named_type(IfcTextDecoration_type), true)); attributes.push_back(new entity::attribute("LetterSpacing", new named_type(IfcSizeSelect_type), true)); attributes.push_back(new entity::attribute("WordSpacing", new named_type(IfcSizeSelect_type), true)); attributes.push_back(new entity::attribute("TextTransform", new named_type(IfcTextTransformation_type), true)); attributes.push_back(new entity::attribute("LineHeight", new named_type(IfcSizeSelect_type), true)); std::vector derived; derived.reserve(7); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcTextStyleTextModel_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(5); attributes.push_back(new entity::attribute("BoxHeight", new named_type(IfcPositiveLengthMeasure_type), true)); attributes.push_back(new entity::attribute("BoxWidth", new named_type(IfcPositiveLengthMeasure_type), true)); attributes.push_back(new entity::attribute("BoxSlantAngle", new named_type(IfcPlaneAngleMeasure_type), true)); attributes.push_back(new entity::attribute("BoxRotateAngle", new named_type(IfcPlaneAngleMeasure_type), true)); attributes.push_back(new entity::attribute("CharacterSpacing", new named_type(IfcSizeSelect_type), true)); std::vector derived; derived.reserve(5); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcTextStyleWithBoxCharacteristics_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(0); IfcTextureCoordinate_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("Mode", new named_type(IfcLabel_type), false)); attributes.push_back(new entity::attribute("Parameter", new aggregation_type(aggregation_type::list_type, 1, -1, new named_type(IfcSimpleValue_type)), false)); std::vector derived; derived.reserve(2); derived.push_back(false); derived.push_back(false); IfcTextureCoordinateGenerator_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("TextureMaps", new aggregation_type(aggregation_type::set_type, 1, -1, new named_type(IfcVertexBasedTextureMap_type)), false)); std::vector derived; derived.reserve(1); derived.push_back(false); IfcTextureMap_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("Coordinates", new aggregation_type(aggregation_type::list_type, 2, 2, new named_type(IfcParameterValue_type)), false)); std::vector derived; derived.reserve(1); derived.push_back(false); IfcTextureVertex_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(4); attributes.push_back(new entity::attribute("SpecificHeatCapacity", new named_type(IfcSpecificHeatCapacityMeasure_type), true)); attributes.push_back(new entity::attribute("BoilingPoint", new named_type(IfcThermodynamicTemperatureMeasure_type), true)); attributes.push_back(new entity::attribute("FreezingPoint", new named_type(IfcThermodynamicTemperatureMeasure_type), true)); attributes.push_back(new entity::attribute("ThermalConductivity", new named_type(IfcThermalConductivityMeasure_type), true)); std::vector derived; derived.reserve(5); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcThermalMaterialProperties_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(8); attributes.push_back(new entity::attribute("Name", new named_type(IfcLabel_type), false)); attributes.push_back(new entity::attribute("Description", new named_type(IfcText_type), true)); attributes.push_back(new entity::attribute("StartTime", new named_type(IfcDateTimeSelect_type), false)); attributes.push_back(new entity::attribute("EndTime", new named_type(IfcDateTimeSelect_type), false)); attributes.push_back(new entity::attribute("TimeSeriesDataType", new named_type(IfcTimeSeriesDataTypeEnum_type), false)); attributes.push_back(new entity::attribute("DataOrigin", new named_type(IfcDataOriginEnum_type), false)); attributes.push_back(new entity::attribute("UserDefinedDataOrigin", new named_type(IfcLabel_type), true)); attributes.push_back(new entity::attribute("Unit", new named_type(IfcUnit_type), true)); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcTimeSeries_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("ReferencedTimeSeries", new named_type(IfcTimeSeries_type), false)); attributes.push_back(new entity::attribute("TimeSeriesReferences", new aggregation_type(aggregation_type::set_type, 1, -1, new named_type(IfcDocumentSelect_type)), false)); std::vector derived; derived.reserve(2); derived.push_back(false); derived.push_back(false); IfcTimeSeriesReferenceRelationship_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::attribute("ApplicableDates", new aggregation_type(aggregation_type::list_type, 1, -1, new named_type(IfcDateTimeSelect_type)), true)); attributes.push_back(new entity::attribute("TimeSeriesScheduleType", new named_type(IfcTimeSeriesScheduleTypeEnum_type), false)); attributes.push_back(new entity::attribute("TimeSeries", new named_type(IfcTimeSeries_type), false)); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcTimeSeriesSchedule_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("ListValues", new aggregation_type(aggregation_type::list_type, 1, -1, new named_type(IfcValue_type)), false)); std::vector derived; derived.reserve(1); derived.push_back(false); IfcTimeSeriesValue_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(0); IfcTopologicalRepresentationItem_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(4); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcTopologyRepresentation_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcTransformerTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcTransformerType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::attribute("OperationType", new named_type(IfcTransportElementTypeEnum_type), true)); attributes.push_back(new entity::attribute("CapacityByWeight", new named_type(IfcMassMeasure_type), true)); attributes.push_back(new entity::attribute("CapacityByNumber", new named_type(IfcCountMeasure_type), true)); std::vector derived; derived.reserve(11); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcTransportElement_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcTransportElementTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcTransportElementType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(4); attributes.push_back(new entity::attribute("BottomXDim", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("TopXDim", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("YDim", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("TopXOffset", new named_type(IfcLengthMeasure_type), false)); std::vector derived; derived.reserve(7); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcTrapeziumProfileDef_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(5); attributes.push_back(new entity::attribute("BasisCurve", new named_type(IfcCurve_type), false)); attributes.push_back(new entity::attribute("Trim1", new aggregation_type(aggregation_type::set_type, 1, 2, new named_type(IfcTrimmingSelect_type)), false)); attributes.push_back(new entity::attribute("Trim2", new aggregation_type(aggregation_type::set_type, 1, 2, new named_type(IfcTrimmingSelect_type)), false)); attributes.push_back(new entity::attribute("SenseAgreement", new simple_type(simple_type::boolean_type), false)); attributes.push_back(new entity::attribute("MasterRepresentation", new named_type(IfcTrimmingPreference_type), false)); std::vector derived; derived.reserve(5); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcTrimmedCurve_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcTubeBundleTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcTubeBundleType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("SecondRepeatFactor", new named_type(IfcVector_type), false)); std::vector derived; derived.reserve(2); derived.push_back(false); derived.push_back(false); IfcTwoDirectionRepeatFactor_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("ApplicableOccurrence", new named_type(IfcLabel_type), true)); attributes.push_back(new entity::attribute("HasPropertySets", new aggregation_type(aggregation_type::set_type, 1, -1, new named_type(IfcPropertySetDefinition_type)), true)); std::vector derived; derived.reserve(6); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcTypeObject_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("RepresentationMaps", new aggregation_type(aggregation_type::list_type, 1, -1, new named_type(IfcRepresentationMap_type)), true)); attributes.push_back(new entity::attribute("Tag", new named_type(IfcLabel_type), true)); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcTypeProduct_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(8); attributes.push_back(new entity::attribute("Depth", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("FlangeWidth", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("WebThickness", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("FlangeThickness", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("FilletRadius", new named_type(IfcPositiveLengthMeasure_type), true)); attributes.push_back(new entity::attribute("EdgeRadius", new named_type(IfcPositiveLengthMeasure_type), true)); attributes.push_back(new entity::attribute("FlangeSlope", new named_type(IfcPlaneAngleMeasure_type), true)); attributes.push_back(new entity::attribute("CentreOfGravityInX", new named_type(IfcPositiveLengthMeasure_type), true)); std::vector derived; derived.reserve(11); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcUShapeProfileDef_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("Units", new aggregation_type(aggregation_type::set_type, 1, -1, new named_type(IfcUnit_type)), false)); std::vector derived; derived.reserve(1); derived.push_back(false); IfcUnitAssignment_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcUnitaryEquipmentTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcUnitaryEquipmentType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcValveTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcValveType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("Orientation", new named_type(IfcDirection_type), false)); attributes.push_back(new entity::attribute("Magnitude", new named_type(IfcLengthMeasure_type), false)); std::vector derived; derived.reserve(2); derived.push_back(false); derived.push_back(false); IfcVector_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(0); IfcVertex_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("TextureVertices", new aggregation_type(aggregation_type::list_type, 3, -1, new named_type(IfcTextureVertex_type)), false)); attributes.push_back(new entity::attribute("TexturePoints", new aggregation_type(aggregation_type::list_type, 3, -1, new named_type(IfcCartesianPoint_type)), false)); std::vector derived; derived.reserve(2); derived.push_back(false); derived.push_back(false); IfcVertexBasedTextureMap_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("LoopVertex", new named_type(IfcVertex_type), false)); std::vector derived; derived.reserve(1); derived.push_back(false); IfcVertexLoop_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("VertexGeometry", new named_type(IfcPoint_type), false)); std::vector derived; derived.reserve(1); derived.push_back(false); IfcVertexPoint_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcVibrationIsolatorTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcVibrationIsolatorType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcVirtualElement_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("IntersectingAxes", new aggregation_type(aggregation_type::list_type, 2, 2, new named_type(IfcGridAxis_type)), false)); attributes.push_back(new entity::attribute("OffsetDistances", new aggregation_type(aggregation_type::list_type, 2, 3, new named_type(IfcLengthMeasure_type)), false)); std::vector derived; derived.reserve(2); derived.push_back(false); derived.push_back(false); IfcVirtualGridIntersection_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcWall_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcWallStandardCase_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcWallTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcWallType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::attribute("PredefinedType", new named_type(IfcWasteTerminalTypeEnum_type), false)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcWasteTerminalType_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(7); attributes.push_back(new entity::attribute("IsPotable", new simple_type(simple_type::boolean_type), true)); attributes.push_back(new entity::attribute("Hardness", new named_type(IfcIonConcentrationMeasure_type), true)); attributes.push_back(new entity::attribute("AlkalinityConcentration", new named_type(IfcIonConcentrationMeasure_type), true)); attributes.push_back(new entity::attribute("AcidityConcentration", new named_type(IfcIonConcentrationMeasure_type), true)); attributes.push_back(new entity::attribute("ImpuritiesContent", new named_type(IfcNormalisedRatioMeasure_type), true)); attributes.push_back(new entity::attribute("PHLevel", new named_type(IfcPHMeasure_type), true)); attributes.push_back(new entity::attribute("DissolvedSolidsContent", new named_type(IfcNormalisedRatioMeasure_type), true)); std::vector derived; derived.reserve(8); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcWaterProperties_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::attribute("OverallHeight", new named_type(IfcPositiveLengthMeasure_type), true)); attributes.push_back(new entity::attribute("OverallWidth", new named_type(IfcPositiveLengthMeasure_type), true)); std::vector derived; derived.reserve(10); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcWindow_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(9); attributes.push_back(new entity::attribute("LiningDepth", new named_type(IfcPositiveLengthMeasure_type), true)); attributes.push_back(new entity::attribute("LiningThickness", new named_type(IfcPositiveLengthMeasure_type), true)); attributes.push_back(new entity::attribute("TransomThickness", new named_type(IfcPositiveLengthMeasure_type), true)); attributes.push_back(new entity::attribute("MullionThickness", new named_type(IfcPositiveLengthMeasure_type), true)); attributes.push_back(new entity::attribute("FirstTransomOffset", new named_type(IfcNormalisedRatioMeasure_type), true)); attributes.push_back(new entity::attribute("SecondTransomOffset", new named_type(IfcNormalisedRatioMeasure_type), true)); attributes.push_back(new entity::attribute("FirstMullionOffset", new named_type(IfcNormalisedRatioMeasure_type), true)); attributes.push_back(new entity::attribute("SecondMullionOffset", new named_type(IfcNormalisedRatioMeasure_type), true)); attributes.push_back(new entity::attribute("ShapeAspectStyle", new named_type(IfcShapeAspect_type), true)); std::vector derived; derived.reserve(13); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcWindowLiningProperties_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(5); attributes.push_back(new entity::attribute("OperationType", new named_type(IfcWindowPanelOperationEnum_type), false)); attributes.push_back(new entity::attribute("PanelPosition", new named_type(IfcWindowPanelPositionEnum_type), false)); attributes.push_back(new entity::attribute("FrameDepth", new named_type(IfcPositiveLengthMeasure_type), true)); attributes.push_back(new entity::attribute("FrameThickness", new named_type(IfcPositiveLengthMeasure_type), true)); attributes.push_back(new entity::attribute("ShapeAspectStyle", new named_type(IfcShapeAspect_type), true)); std::vector derived; derived.reserve(9); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcWindowPanelProperties_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(4); attributes.push_back(new entity::attribute("ConstructionType", new named_type(IfcWindowStyleConstructionEnum_type), false)); attributes.push_back(new entity::attribute("OperationType", new named_type(IfcWindowStyleOperationEnum_type), false)); attributes.push_back(new entity::attribute("ParameterTakesPrecedence", new simple_type(simple_type::boolean_type), false)); attributes.push_back(new entity::attribute("Sizeable", new simple_type(simple_type::boolean_type), false)); std::vector derived; derived.reserve(12); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcWindowStyle_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(10); attributes.push_back(new entity::attribute("Identifier", new named_type(IfcIdentifier_type), false)); attributes.push_back(new entity::attribute("CreationDate", new named_type(IfcDateTimeSelect_type), false)); attributes.push_back(new entity::attribute("Creators", new aggregation_type(aggregation_type::set_type, 1, -1, new named_type(IfcPerson_type)), true)); attributes.push_back(new entity::attribute("Purpose", new named_type(IfcLabel_type), true)); attributes.push_back(new entity::attribute("Duration", new named_type(IfcTimeMeasure_type), true)); attributes.push_back(new entity::attribute("TotalFloat", new named_type(IfcTimeMeasure_type), true)); attributes.push_back(new entity::attribute("StartTime", new named_type(IfcDateTimeSelect_type), false)); attributes.push_back(new entity::attribute("FinishTime", new named_type(IfcDateTimeSelect_type), true)); attributes.push_back(new entity::attribute("WorkControlType", new named_type(IfcWorkControlTypeEnum_type), true)); attributes.push_back(new entity::attribute("UserDefinedControlType", new named_type(IfcLabel_type), true)); std::vector derived; derived.reserve(15); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcWorkControl_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(15); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcWorkPlan_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(15); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcWorkSchedule_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(6); attributes.push_back(new entity::attribute("Depth", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("FlangeWidth", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("WebThickness", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("FlangeThickness", new named_type(IfcPositiveLengthMeasure_type), false)); attributes.push_back(new entity::attribute("FilletRadius", new named_type(IfcPositiveLengthMeasure_type), true)); attributes.push_back(new entity::attribute("EdgeRadius", new named_type(IfcPositiveLengthMeasure_type), true)); std::vector derived; derived.reserve(9); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcZShapeProfileDef_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(0); std::vector derived; derived.reserve(5); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); derived.push_back(false); IfcZone_type->set_attributes(attributes, derived); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::inverse_attribute("IsActingUpon", entity::inverse_attribute::set_type, 0, -1, IfcRelAssignsToActor_type, IfcRelAssignsToActor_type->attributes()[0])); IfcActor_type->set_inverse_attributes(attributes); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::inverse_attribute("OfPerson", entity::inverse_attribute::set_type, 0, -1, IfcPerson_type, IfcPerson_type->attributes()[7])); attributes.push_back(new entity::inverse_attribute("OfOrganization", entity::inverse_attribute::set_type, 0, -1, IfcOrganization_type, IfcOrganization_type->attributes()[4])); IfcAddress_type->set_inverse_attributes(attributes); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::inverse_attribute("ContainedInStructure", entity::inverse_attribute::set_type, 0, 1, IfcRelContainedInSpatialStructure_type, IfcRelContainedInSpatialStructure_type->attributes()[0])); IfcAnnotation_type->set_inverse_attributes(attributes); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::inverse_attribute("ValuesReferenced", entity::inverse_attribute::set_type, 0, -1, IfcReferencesValueDocument_type, IfcReferencesValueDocument_type->attributes()[1])); attributes.push_back(new entity::inverse_attribute("ValueOfComponents", entity::inverse_attribute::set_type, 0, -1, IfcAppliedValueRelationship_type, IfcAppliedValueRelationship_type->attributes()[0])); attributes.push_back(new entity::inverse_attribute("IsComponentIn", entity::inverse_attribute::set_type, 0, -1, IfcAppliedValueRelationship_type, IfcAppliedValueRelationship_type->attributes()[1])); IfcAppliedValue_type->set_inverse_attributes(attributes); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::inverse_attribute("Actors", entity::inverse_attribute::set_type, 0, -1, IfcApprovalActorRelationship_type, IfcApprovalActorRelationship_type->attributes()[1])); attributes.push_back(new entity::inverse_attribute("IsRelatedWith", entity::inverse_attribute::set_type, 0, -1, IfcApprovalRelationship_type, IfcApprovalRelationship_type->attributes()[0])); attributes.push_back(new entity::inverse_attribute("Relates", entity::inverse_attribute::set_type, 0, -1, IfcApprovalRelationship_type, IfcApprovalRelationship_type->attributes()[1])); IfcApproval_type->set_inverse_attributes(attributes); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::inverse_attribute("Contains", entity::inverse_attribute::set_type, 0, -1, IfcClassificationItem_type, IfcClassificationItem_type->attributes()[1])); IfcClassification_type->set_inverse_attributes(attributes); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::inverse_attribute("IsClassifiedItemIn", entity::inverse_attribute::set_type, 0, 1, IfcClassificationItemRelationship_type, IfcClassificationItemRelationship_type->attributes()[1])); attributes.push_back(new entity::inverse_attribute("IsClassifyingItemIn", entity::inverse_attribute::set_type, 0, 1, IfcClassificationItemRelationship_type, IfcClassificationItemRelationship_type->attributes()[0])); IfcClassificationItem_type->set_inverse_attributes(attributes); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::inverse_attribute("UsingCurves", entity::inverse_attribute::set_type, 1, -1, IfcCompositeCurve_type, IfcCompositeCurve_type->attributes()[0])); IfcCompositeCurveSegment_type->set_inverse_attributes(attributes); } { std::vector attributes; attributes.reserve(6); attributes.push_back(new entity::inverse_attribute("ClassifiedAs", entity::inverse_attribute::set_type, 0, -1, IfcConstraintClassificationRelationship_type, IfcConstraintClassificationRelationship_type->attributes()[0])); attributes.push_back(new entity::inverse_attribute("RelatesConstraints", entity::inverse_attribute::set_type, 0, -1, IfcConstraintRelationship_type, IfcConstraintRelationship_type->attributes()[2])); attributes.push_back(new entity::inverse_attribute("IsRelatedWith", entity::inverse_attribute::set_type, 0, -1, IfcConstraintRelationship_type, IfcConstraintRelationship_type->attributes()[3])); attributes.push_back(new entity::inverse_attribute("PropertiesForConstraint", entity::inverse_attribute::set_type, 0, -1, IfcPropertyConstraintRelationship_type, IfcPropertyConstraintRelationship_type->attributes()[0])); attributes.push_back(new entity::inverse_attribute("Aggregates", entity::inverse_attribute::set_type, 0, -1, IfcConstraintAggregationRelationship_type, IfcConstraintAggregationRelationship_type->attributes()[2])); attributes.push_back(new entity::inverse_attribute("IsAggregatedIn", entity::inverse_attribute::set_type, 0, -1, IfcConstraintAggregationRelationship_type, IfcConstraintAggregationRelationship_type->attributes()[3])); IfcConstraint_type->set_inverse_attributes(attributes); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::inverse_attribute("Controls", entity::inverse_attribute::set_type, 0, -1, IfcRelAssignsToControl_type, IfcRelAssignsToControl_type->attributes()[0])); IfcControl_type->set_inverse_attributes(attributes); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::inverse_attribute("CoversSpaces", entity::inverse_attribute::set_type, 0, 1, IfcRelCoversSpaces_type, IfcRelCoversSpaces_type->attributes()[1])); attributes.push_back(new entity::inverse_attribute("Covers", entity::inverse_attribute::set_type, 0, 1, IfcRelCoversBldgElements_type, IfcRelCoversBldgElements_type->attributes()[1])); IfcCovering_type->set_inverse_attributes(attributes); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::inverse_attribute("AnnotatedBySymbols", entity::inverse_attribute::set_type, 0, 2, IfcTerminatorSymbol_type, IfcTerminatorSymbol_type->attributes()[0])); IfcDimensionCurve_type->set_inverse_attributes(attributes); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::inverse_attribute("AssignedToFlowElement", entity::inverse_attribute::set_type, 0, 1, IfcRelFlowControlElements_type, IfcRelFlowControlElements_type->attributes()[0])); IfcDistributionControlElement_type->set_inverse_attributes(attributes); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::inverse_attribute("HasControlElements", entity::inverse_attribute::set_type, 0, 1, IfcRelFlowControlElements_type, IfcRelFlowControlElements_type->attributes()[1])); IfcDistributionFlowElement_type->set_inverse_attributes(attributes); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::inverse_attribute("IsPointedTo", entity::inverse_attribute::set_type, 0, -1, IfcDocumentInformationRelationship_type, IfcDocumentInformationRelationship_type->attributes()[1])); attributes.push_back(new entity::inverse_attribute("IsPointer", entity::inverse_attribute::set_type, 0, 1, IfcDocumentInformationRelationship_type, IfcDocumentInformationRelationship_type->attributes()[0])); IfcDocumentInformation_type->set_inverse_attributes(attributes); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::inverse_attribute("ReferenceToDocument", entity::inverse_attribute::set_type, 0, 1, IfcDocumentInformation_type, IfcDocumentInformation_type->attributes()[3])); IfcDocumentReference_type->set_inverse_attributes(attributes); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::inverse_attribute("IsRelatedFromCallout", entity::inverse_attribute::set_type, 0, -1, IfcDraughtingCalloutRelationship_type, IfcDraughtingCalloutRelationship_type->attributes()[3])); attributes.push_back(new entity::inverse_attribute("IsRelatedToCallout", entity::inverse_attribute::set_type, 0, -1, IfcDraughtingCalloutRelationship_type, IfcDraughtingCalloutRelationship_type->attributes()[2])); IfcDraughtingCallout_type->set_inverse_attributes(attributes); } { std::vector attributes; attributes.reserve(12); attributes.push_back(new entity::inverse_attribute("HasStructuralMember", entity::inverse_attribute::set_type, 0, -1, IfcRelConnectsStructuralElement_type, IfcRelConnectsStructuralElement_type->attributes()[0])); attributes.push_back(new entity::inverse_attribute("FillsVoids", entity::inverse_attribute::set_type, 0, 1, IfcRelFillsElement_type, IfcRelFillsElement_type->attributes()[1])); attributes.push_back(new entity::inverse_attribute("ConnectedTo", entity::inverse_attribute::set_type, 0, -1, IfcRelConnectsElements_type, IfcRelConnectsElements_type->attributes()[1])); attributes.push_back(new entity::inverse_attribute("HasCoverings", entity::inverse_attribute::set_type, 0, -1, IfcRelCoversBldgElements_type, IfcRelCoversBldgElements_type->attributes()[0])); attributes.push_back(new entity::inverse_attribute("HasProjections", entity::inverse_attribute::set_type, 0, -1, IfcRelProjectsElement_type, IfcRelProjectsElement_type->attributes()[0])); attributes.push_back(new entity::inverse_attribute("ReferencedInStructures", entity::inverse_attribute::set_type, 0, -1, IfcRelReferencedInSpatialStructure_type, IfcRelReferencedInSpatialStructure_type->attributes()[0])); attributes.push_back(new entity::inverse_attribute("HasPorts", entity::inverse_attribute::set_type, 0, -1, IfcRelConnectsPortToElement_type, IfcRelConnectsPortToElement_type->attributes()[1])); attributes.push_back(new entity::inverse_attribute("HasOpenings", entity::inverse_attribute::set_type, 0, -1, IfcRelVoidsElement_type, IfcRelVoidsElement_type->attributes()[0])); attributes.push_back(new entity::inverse_attribute("IsConnectionRealization", entity::inverse_attribute::set_type, 0, -1, IfcRelConnectsWithRealizingElements_type, IfcRelConnectsWithRealizingElements_type->attributes()[0])); attributes.push_back(new entity::inverse_attribute("ProvidesBoundaries", entity::inverse_attribute::set_type, 0, -1, IfcRelSpaceBoundary_type, IfcRelSpaceBoundary_type->attributes()[1])); attributes.push_back(new entity::inverse_attribute("ConnectedFrom", entity::inverse_attribute::set_type, 0, -1, IfcRelConnectsElements_type, IfcRelConnectsElements_type->attributes()[2])); attributes.push_back(new entity::inverse_attribute("ContainedInStructure", entity::inverse_attribute::set_type, 0, 1, IfcRelContainedInSpatialStructure_type, IfcRelContainedInSpatialStructure_type->attributes()[0])); IfcElement_type->set_inverse_attributes(attributes); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::inverse_attribute("ProjectsElements", entity::inverse_attribute::unspecified_type, -1, -1, IfcRelProjectsElement_type, IfcRelProjectsElement_type->attributes()[1])); IfcFeatureElementAddition_type->set_inverse_attributes(attributes); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::inverse_attribute("VoidsElements", entity::inverse_attribute::unspecified_type, -1, -1, IfcRelVoidsElement_type, IfcRelVoidsElement_type->attributes()[1])); IfcFeatureElementSubtraction_type->set_inverse_attributes(attributes); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::inverse_attribute("HasSubContexts", entity::inverse_attribute::set_type, 0, -1, IfcGeometricRepresentationSubContext_type, IfcGeometricRepresentationSubContext_type->attributes()[0])); IfcGeometricRepresentationContext_type->set_inverse_attributes(attributes); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::inverse_attribute("ContainedInStructure", entity::inverse_attribute::set_type, 0, 1, IfcRelContainedInSpatialStructure_type, IfcRelContainedInSpatialStructure_type->attributes()[0])); IfcGrid_type->set_inverse_attributes(attributes); } { std::vector attributes; attributes.reserve(4); attributes.push_back(new entity::inverse_attribute("PartOfW", entity::inverse_attribute::set_type, 0, 1, IfcGrid_type, IfcGrid_type->attributes()[2])); attributes.push_back(new entity::inverse_attribute("PartOfV", entity::inverse_attribute::set_type, 0, 1, IfcGrid_type, IfcGrid_type->attributes()[1])); attributes.push_back(new entity::inverse_attribute("PartOfU", entity::inverse_attribute::set_type, 0, 1, IfcGrid_type, IfcGrid_type->attributes()[0])); attributes.push_back(new entity::inverse_attribute("HasIntersections", entity::inverse_attribute::set_type, 0, -1, IfcVirtualGridIntersection_type, IfcVirtualGridIntersection_type->attributes()[0])); IfcGridAxis_type->set_inverse_attributes(attributes); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::inverse_attribute("IsGroupedBy", entity::inverse_attribute::unspecified_type, -1, -1, IfcRelAssignsToGroup_type, IfcRelAssignsToGroup_type->attributes()[0])); IfcGroup_type->set_inverse_attributes(attributes); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::inverse_attribute("ReferenceIntoLibrary", entity::inverse_attribute::set_type, 0, 1, IfcLibraryInformation_type, IfcLibraryInformation_type->attributes()[4])); IfcLibraryReference_type->set_inverse_attributes(attributes); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::inverse_attribute("HasRepresentation", entity::inverse_attribute::set_type, 0, 1, IfcMaterialDefinitionRepresentation_type, IfcMaterialDefinitionRepresentation_type->attributes()[0])); attributes.push_back(new entity::inverse_attribute("ClassifiedAs", entity::inverse_attribute::set_type, 0, 1, IfcMaterialClassificationRelationship_type, IfcMaterialClassificationRelationship_type->attributes()[1])); IfcMaterial_type->set_inverse_attributes(attributes); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::inverse_attribute("ToMaterialLayerSet", entity::inverse_attribute::unspecified_type, -1, -1, IfcMaterialLayerSet_type, IfcMaterialLayerSet_type->attributes()[0])); IfcMaterialLayer_type->set_inverse_attributes(attributes); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::inverse_attribute("IsDefinedBy", entity::inverse_attribute::set_type, 0, -1, IfcRelDefines_type, IfcRelDefines_type->attributes()[0])); IfcObject_type->set_inverse_attributes(attributes); } { std::vector attributes; attributes.reserve(4); attributes.push_back(new entity::inverse_attribute("HasAssignments", entity::inverse_attribute::set_type, 0, -1, IfcRelAssigns_type, IfcRelAssigns_type->attributes()[0])); attributes.push_back(new entity::inverse_attribute("IsDecomposedBy", entity::inverse_attribute::set_type, 0, -1, IfcRelDecomposes_type, IfcRelDecomposes_type->attributes()[0])); attributes.push_back(new entity::inverse_attribute("Decomposes", entity::inverse_attribute::set_type, 0, 1, IfcRelDecomposes_type, IfcRelDecomposes_type->attributes()[1])); attributes.push_back(new entity::inverse_attribute("HasAssociations", entity::inverse_attribute::set_type, 0, -1, IfcRelAssociates_type, IfcRelAssociates_type->attributes()[0])); IfcObjectDefinition_type->set_inverse_attributes(attributes); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::inverse_attribute("PlacesObject", entity::inverse_attribute::set_type, 1, 1, IfcProduct_type, IfcProduct_type->attributes()[0])); attributes.push_back(new entity::inverse_attribute("ReferencedByPlacements", entity::inverse_attribute::set_type, 0, -1, IfcLocalPlacement_type, IfcLocalPlacement_type->attributes()[0])); IfcObjectPlacement_type->set_inverse_attributes(attributes); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::inverse_attribute("HasFillings", entity::inverse_attribute::set_type, 0, -1, IfcRelFillsElement_type, IfcRelFillsElement_type->attributes()[0])); IfcOpeningElement_type->set_inverse_attributes(attributes); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::inverse_attribute("IsRelatedBy", entity::inverse_attribute::set_type, 0, -1, IfcOrganizationRelationship_type, IfcOrganizationRelationship_type->attributes()[3])); attributes.push_back(new entity::inverse_attribute("Relates", entity::inverse_attribute::set_type, 0, -1, IfcOrganizationRelationship_type, IfcOrganizationRelationship_type->attributes()[2])); attributes.push_back(new entity::inverse_attribute("Engages", entity::inverse_attribute::set_type, 0, -1, IfcPersonAndOrganization_type, IfcPersonAndOrganization_type->attributes()[1])); IfcOrganization_type->set_inverse_attributes(attributes); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::inverse_attribute("EngagedIn", entity::inverse_attribute::set_type, 0, -1, IfcPersonAndOrganization_type, IfcPersonAndOrganization_type->attributes()[0])); IfcPerson_type->set_inverse_attributes(attributes); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::inverse_attribute("PartOfComplex", entity::inverse_attribute::set_type, 0, 1, IfcPhysicalComplexQuantity_type, IfcPhysicalComplexQuantity_type->attributes()[0])); IfcPhysicalQuantity_type->set_inverse_attributes(attributes); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::inverse_attribute("ContainedIn", entity::inverse_attribute::unspecified_type, -1, -1, IfcRelConnectsPortToElement_type, IfcRelConnectsPortToElement_type->attributes()[0])); attributes.push_back(new entity::inverse_attribute("ConnectedFrom", entity::inverse_attribute::set_type, 0, 1, IfcRelConnectsPorts_type, IfcRelConnectsPorts_type->attributes()[1])); attributes.push_back(new entity::inverse_attribute("ConnectedTo", entity::inverse_attribute::set_type, 0, 1, IfcRelConnectsPorts_type, IfcRelConnectsPorts_type->attributes()[0])); IfcPort_type->set_inverse_attributes(attributes); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::inverse_attribute("OperatesOn", entity::inverse_attribute::set_type, 0, -1, IfcRelAssignsToProcess_type, IfcRelAssignsToProcess_type->attributes()[0])); attributes.push_back(new entity::inverse_attribute("IsSuccessorFrom", entity::inverse_attribute::set_type, 0, -1, IfcRelSequence_type, IfcRelSequence_type->attributes()[1])); attributes.push_back(new entity::inverse_attribute("IsPredecessorTo", entity::inverse_attribute::set_type, 0, -1, IfcRelSequence_type, IfcRelSequence_type->attributes()[0])); IfcProcess_type->set_inverse_attributes(attributes); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::inverse_attribute("ReferencedBy", entity::inverse_attribute::set_type, 0, -1, IfcRelAssignsToProduct_type, IfcRelAssignsToProduct_type->attributes()[0])); IfcProduct_type->set_inverse_attributes(attributes); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::inverse_attribute("ShapeOfProduct", entity::inverse_attribute::set_type, 1, 1, IfcProduct_type, IfcProduct_type->attributes()[1])); attributes.push_back(new entity::inverse_attribute("HasShapeAspects", entity::inverse_attribute::set_type, 0, -1, IfcShapeAspect_type, IfcShapeAspect_type->attributes()[4])); IfcProductDefinitionShape_type->set_inverse_attributes(attributes); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::inverse_attribute("PropertyForDependance", entity::inverse_attribute::set_type, 0, -1, IfcPropertyDependencyRelationship_type, IfcPropertyDependencyRelationship_type->attributes()[0])); attributes.push_back(new entity::inverse_attribute("PropertyDependsOn", entity::inverse_attribute::set_type, 0, -1, IfcPropertyDependencyRelationship_type, IfcPropertyDependencyRelationship_type->attributes()[1])); attributes.push_back(new entity::inverse_attribute("PartOfComplex", entity::inverse_attribute::set_type, 0, 1, IfcComplexProperty_type, IfcComplexProperty_type->attributes()[1])); IfcProperty_type->set_inverse_attributes(attributes); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::inverse_attribute("HasAssociations", entity::inverse_attribute::set_type, 0, -1, IfcRelAssociates_type, IfcRelAssociates_type->attributes()[0])); IfcPropertyDefinition_type->set_inverse_attributes(attributes); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::inverse_attribute("PropertyDefinitionOf", entity::inverse_attribute::set_type, 0, 1, IfcRelDefinesByProperties_type, IfcRelDefinesByProperties_type->attributes()[0])); attributes.push_back(new entity::inverse_attribute("DefinesType", entity::inverse_attribute::set_type, 0, 1, IfcTypeObject_type, IfcTypeObject_type->attributes()[1])); IfcPropertySetDefinition_type->set_inverse_attributes(attributes); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::inverse_attribute("RepresentationMap", entity::inverse_attribute::set_type, 0, 1, IfcRepresentationMap_type, IfcRepresentationMap_type->attributes()[1])); attributes.push_back(new entity::inverse_attribute("LayerAssignments", entity::inverse_attribute::set_type, 0, -1, IfcPresentationLayerAssignment_type, IfcPresentationLayerAssignment_type->attributes()[2])); attributes.push_back(new entity::inverse_attribute("OfProductRepresentation", entity::inverse_attribute::set_type, 0, 1, IfcProductRepresentation_type, IfcProductRepresentation_type->attributes()[2])); IfcRepresentation_type->set_inverse_attributes(attributes); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::inverse_attribute("RepresentationsInContext", entity::inverse_attribute::set_type, 0, -1, IfcRepresentation_type, IfcRepresentation_type->attributes()[0])); IfcRepresentationContext_type->set_inverse_attributes(attributes); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::inverse_attribute("LayerAssignments", entity::inverse_attribute::set_type, 0, -1, IfcPresentationLayerAssignment_type, IfcPresentationLayerAssignment_type->attributes()[2])); attributes.push_back(new entity::inverse_attribute("StyledByItem", entity::inverse_attribute::set_type, 0, 1, IfcStyledItem_type, IfcStyledItem_type->attributes()[0])); IfcRepresentationItem_type->set_inverse_attributes(attributes); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::inverse_attribute("MapUsage", entity::inverse_attribute::set_type, 0, -1, IfcMappedItem_type, IfcMappedItem_type->attributes()[0])); IfcRepresentationMap_type->set_inverse_attributes(attributes); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::inverse_attribute("ResourceOf", entity::inverse_attribute::set_type, 0, -1, IfcRelAssignsToResource_type, IfcRelAssignsToResource_type->attributes()[0])); IfcResource_type->set_inverse_attributes(attributes); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::inverse_attribute("ScheduleTimeControlAssigned", entity::inverse_attribute::unspecified_type, -1, -1, IfcRelAssignsTasks_type, IfcRelAssignsTasks_type->attributes()[0])); IfcScheduleTimeControl_type->set_inverse_attributes(attributes); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::inverse_attribute("OfShapeAspect", entity::inverse_attribute::set_type, 0, 1, IfcShapeAspect_type, IfcShapeAspect_type->attributes()[0])); IfcShapeModel_type->set_inverse_attributes(attributes); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::inverse_attribute("HasCoverings", entity::inverse_attribute::set_type, 0, -1, IfcRelCoversSpaces_type, IfcRelCoversSpaces_type->attributes()[0])); attributes.push_back(new entity::inverse_attribute("BoundedBy", entity::inverse_attribute::set_type, 0, -1, IfcRelSpaceBoundary_type, IfcRelSpaceBoundary_type->attributes()[0])); IfcSpace_type->set_inverse_attributes(attributes); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::inverse_attribute("HasInteractionReqsFrom", entity::inverse_attribute::set_type, 0, -1, IfcRelInteractionRequirements_type, IfcRelInteractionRequirements_type->attributes()[3])); attributes.push_back(new entity::inverse_attribute("HasInteractionReqsTo", entity::inverse_attribute::set_type, 0, -1, IfcRelInteractionRequirements_type, IfcRelInteractionRequirements_type->attributes()[4])); IfcSpaceProgram_type->set_inverse_attributes(attributes); } { std::vector attributes; attributes.reserve(3); attributes.push_back(new entity::inverse_attribute("ReferencesElements", entity::inverse_attribute::set_type, 0, -1, IfcRelReferencedInSpatialStructure_type, IfcRelReferencedInSpatialStructure_type->attributes()[1])); attributes.push_back(new entity::inverse_attribute("ServicedBySystems", entity::inverse_attribute::set_type, 0, -1, IfcRelServicesBuildings_type, IfcRelServicesBuildings_type->attributes()[1])); attributes.push_back(new entity::inverse_attribute("ContainsElements", entity::inverse_attribute::set_type, 0, -1, IfcRelContainedInSpatialStructure_type, IfcRelContainedInSpatialStructure_type->attributes()[1])); IfcSpatialStructureElement_type->set_inverse_attributes(attributes); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::inverse_attribute("AssignedToStructuralItem", entity::inverse_attribute::unspecified_type, -1, -1, IfcRelConnectsStructuralActivity_type, IfcRelConnectsStructuralActivity_type->attributes()[1])); IfcStructuralActivity_type->set_inverse_attributes(attributes); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::inverse_attribute("ConnectsStructuralMembers", entity::inverse_attribute::set_type, 1, -1, IfcRelConnectsStructuralMember_type, IfcRelConnectsStructuralMember_type->attributes()[1])); IfcStructuralConnection_type->set_inverse_attributes(attributes); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::inverse_attribute("AssignedStructuralActivity", entity::inverse_attribute::set_type, 0, -1, IfcRelConnectsStructuralActivity_type, IfcRelConnectsStructuralActivity_type->attributes()[0])); IfcStructuralItem_type->set_inverse_attributes(attributes); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::inverse_attribute("SourceOfResultGroup", entity::inverse_attribute::set_type, 0, 1, IfcStructuralResultGroup_type, IfcStructuralResultGroup_type->attributes()[1])); attributes.push_back(new entity::inverse_attribute("LoadGroupFor", entity::inverse_attribute::set_type, 0, -1, IfcStructuralAnalysisModel_type, IfcStructuralAnalysisModel_type->attributes()[2])); IfcStructuralLoadGroup_type->set_inverse_attributes(attributes); } { std::vector attributes; attributes.reserve(2); attributes.push_back(new entity::inverse_attribute("ReferencesElement", entity::inverse_attribute::set_type, 0, -1, IfcRelConnectsStructuralElement_type, IfcRelConnectsStructuralElement_type->attributes()[1])); attributes.push_back(new entity::inverse_attribute("ConnectedBy", entity::inverse_attribute::set_type, 0, -1, IfcRelConnectsStructuralMember_type, IfcRelConnectsStructuralMember_type->attributes()[0])); IfcStructuralMember_type->set_inverse_attributes(attributes); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::inverse_attribute("Causes", entity::inverse_attribute::set_type, 0, -1, IfcStructuralAction_type, IfcStructuralAction_type->attributes()[1])); IfcStructuralReaction_type->set_inverse_attributes(attributes); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::inverse_attribute("ResultGroupFor", entity::inverse_attribute::set_type, 0, 1, IfcStructuralAnalysisModel_type, IfcStructuralAnalysisModel_type->attributes()[3])); IfcStructuralResultGroup_type->set_inverse_attributes(attributes); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::inverse_attribute("ServicesBuildings", entity::inverse_attribute::set_type, 0, 1, IfcRelServicesBuildings_type, IfcRelServicesBuildings_type->attributes()[0])); IfcSystem_type->set_inverse_attributes(attributes); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::inverse_attribute("OfTable", entity::inverse_attribute::unspecified_type, -1, -1, IfcTable_type, IfcTable_type->attributes()[1])); IfcTableRow_type->set_inverse_attributes(attributes); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::inverse_attribute("AnnotatedSurface", entity::inverse_attribute::set_type, 1, 1, IfcAnnotationSurface_type, IfcAnnotationSurface_type->attributes()[1])); IfcTextureCoordinate_type->set_inverse_attributes(attributes); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::inverse_attribute("DocumentedBy", entity::inverse_attribute::set_type, 0, 1, IfcTimeSeriesReferenceRelationship_type, IfcTimeSeriesReferenceRelationship_type->attributes()[0])); IfcTimeSeries_type->set_inverse_attributes(attributes); } { std::vector attributes; attributes.reserve(1); attributes.push_back(new entity::inverse_attribute("ObjectTypeOf", entity::inverse_attribute::set_type, 0, 1, IfcRelDefinesByType_type, IfcRelDefinesByType_type->attributes()[0])); IfcTypeObject_type->set_inverse_attributes(attributes); } std::vector declarations; declarations.reserve(980); declarations.push_back(IfcAbsorbedDoseMeasure_type); declarations.push_back(IfcAccelerationMeasure_type); declarations.push_back(IfcAmountOfSubstanceMeasure_type); declarations.push_back(IfcAngularVelocityMeasure_type); declarations.push_back(IfcAreaMeasure_type); declarations.push_back(IfcBoolean_type); declarations.push_back(IfcComplexNumber_type); declarations.push_back(IfcCompoundPlaneAngleMeasure_type); declarations.push_back(IfcContextDependentMeasure_type); declarations.push_back(IfcCountMeasure_type); declarations.push_back(IfcCurvatureMeasure_type); declarations.push_back(IfcDayInMonthNumber_type); declarations.push_back(IfcDaylightSavingHour_type); declarations.push_back(IfcDescriptiveMeasure_type); declarations.push_back(IfcDimensionCount_type); declarations.push_back(IfcDoseEquivalentMeasure_type); declarations.push_back(IfcDynamicViscosityMeasure_type); declarations.push_back(IfcElectricCapacitanceMeasure_type); declarations.push_back(IfcElectricChargeMeasure_type); declarations.push_back(IfcElectricConductanceMeasure_type); declarations.push_back(IfcElectricCurrentMeasure_type); declarations.push_back(IfcElectricResistanceMeasure_type); declarations.push_back(IfcElectricVoltageMeasure_type); declarations.push_back(IfcEnergyMeasure_type); declarations.push_back(IfcFontStyle_type); declarations.push_back(IfcFontVariant_type); declarations.push_back(IfcFontWeight_type); declarations.push_back(IfcForceMeasure_type); declarations.push_back(IfcFrequencyMeasure_type); declarations.push_back(IfcGloballyUniqueId_type); declarations.push_back(IfcHeatFluxDensityMeasure_type); declarations.push_back(IfcHeatingValueMeasure_type); declarations.push_back(IfcHourInDay_type); declarations.push_back(IfcIdentifier_type); declarations.push_back(IfcIlluminanceMeasure_type); declarations.push_back(IfcInductanceMeasure_type); declarations.push_back(IfcInteger_type); declarations.push_back(IfcIntegerCountRateMeasure_type); declarations.push_back(IfcIonConcentrationMeasure_type); declarations.push_back(IfcIsothermalMoistureCapacityMeasure_type); declarations.push_back(IfcKinematicViscosityMeasure_type); declarations.push_back(IfcLabel_type); declarations.push_back(IfcLengthMeasure_type); declarations.push_back(IfcLinearForceMeasure_type); declarations.push_back(IfcLinearMomentMeasure_type); declarations.push_back(IfcLinearStiffnessMeasure_type); declarations.push_back(IfcLinearVelocityMeasure_type); declarations.push_back(IfcLogical_type); declarations.push_back(IfcLuminousFluxMeasure_type); declarations.push_back(IfcLuminousIntensityDistributionMeasure_type); declarations.push_back(IfcLuminousIntensityMeasure_type); declarations.push_back(IfcMagneticFluxDensityMeasure_type); declarations.push_back(IfcMagneticFluxMeasure_type); declarations.push_back(IfcMassDensityMeasure_type); declarations.push_back(IfcMassFlowRateMeasure_type); declarations.push_back(IfcMassMeasure_type); declarations.push_back(IfcMassPerLengthMeasure_type); declarations.push_back(IfcMinuteInHour_type); declarations.push_back(IfcModulusOfElasticityMeasure_type); declarations.push_back(IfcModulusOfLinearSubgradeReactionMeasure_type); declarations.push_back(IfcModulusOfRotationalSubgradeReactionMeasure_type); declarations.push_back(IfcModulusOfSubgradeReactionMeasure_type); declarations.push_back(IfcMoistureDiffusivityMeasure_type); declarations.push_back(IfcMolecularWeightMeasure_type); declarations.push_back(IfcMomentOfInertiaMeasure_type); declarations.push_back(IfcMonetaryMeasure_type); declarations.push_back(IfcMonthInYearNumber_type); declarations.push_back(IfcNumericMeasure_type); declarations.push_back(IfcPHMeasure_type); declarations.push_back(IfcParameterValue_type); declarations.push_back(IfcPlanarForceMeasure_type); declarations.push_back(IfcPlaneAngleMeasure_type); declarations.push_back(IfcPositiveLengthMeasure_type); declarations.push_back(IfcPositivePlaneAngleMeasure_type); declarations.push_back(IfcPowerMeasure_type); declarations.push_back(IfcPresentableText_type); declarations.push_back(IfcPressureMeasure_type); declarations.push_back(IfcRadioActivityMeasure_type); declarations.push_back(IfcRatioMeasure_type); declarations.push_back(IfcReal_type); declarations.push_back(IfcRotationalFrequencyMeasure_type); declarations.push_back(IfcRotationalMassMeasure_type); declarations.push_back(IfcRotationalStiffnessMeasure_type); declarations.push_back(IfcSecondInMinute_type); declarations.push_back(IfcSectionModulusMeasure_type); declarations.push_back(IfcSectionalAreaIntegralMeasure_type); declarations.push_back(IfcShearModulusMeasure_type); declarations.push_back(IfcSolidAngleMeasure_type); declarations.push_back(IfcSoundPowerMeasure_type); declarations.push_back(IfcSoundPressureMeasure_type); declarations.push_back(IfcSpecificHeatCapacityMeasure_type); declarations.push_back(IfcSpecularExponent_type); declarations.push_back(IfcSpecularRoughness_type); declarations.push_back(IfcTemperatureGradientMeasure_type); declarations.push_back(IfcText_type); declarations.push_back(IfcTextAlignment_type); declarations.push_back(IfcTextDecoration_type); declarations.push_back(IfcTextFontName_type); declarations.push_back(IfcTextTransformation_type); declarations.push_back(IfcThermalAdmittanceMeasure_type); declarations.push_back(IfcThermalConductivityMeasure_type); declarations.push_back(IfcThermalExpansionCoefficientMeasure_type); declarations.push_back(IfcThermalResistanceMeasure_type); declarations.push_back(IfcThermalTransmittanceMeasure_type); declarations.push_back(IfcThermodynamicTemperatureMeasure_type); declarations.push_back(IfcTimeMeasure_type); declarations.push_back(IfcTimeStamp_type); declarations.push_back(IfcTorqueMeasure_type); declarations.push_back(IfcVaporPermeabilityMeasure_type); declarations.push_back(IfcVolumeMeasure_type); declarations.push_back(IfcVolumetricFlowRateMeasure_type); declarations.push_back(IfcWarpingConstantMeasure_type); declarations.push_back(IfcWarpingMomentMeasure_type); declarations.push_back(IfcYearNumber_type); declarations.push_back(IfcBoxAlignment_type); declarations.push_back(IfcNormalisedRatioMeasure_type); declarations.push_back(IfcPositiveRatioMeasure_type); declarations.push_back(IfcActionSourceTypeEnum_type); declarations.push_back(IfcActionTypeEnum_type); declarations.push_back(IfcActuatorTypeEnum_type); declarations.push_back(IfcAddressTypeEnum_type); declarations.push_back(IfcAheadOrBehind_type); declarations.push_back(IfcAirTerminalBoxTypeEnum_type); declarations.push_back(IfcAirTerminalTypeEnum_type); declarations.push_back(IfcAirToAirHeatRecoveryTypeEnum_type); declarations.push_back(IfcAlarmTypeEnum_type); declarations.push_back(IfcAnalysisModelTypeEnum_type); declarations.push_back(IfcAnalysisTheoryTypeEnum_type); declarations.push_back(IfcArithmeticOperatorEnum_type); declarations.push_back(IfcAssemblyPlaceEnum_type); declarations.push_back(IfcBSplineCurveForm_type); declarations.push_back(IfcBeamTypeEnum_type); declarations.push_back(IfcBenchmarkEnum_type); declarations.push_back(IfcBoilerTypeEnum_type); declarations.push_back(IfcBooleanOperator_type); declarations.push_back(IfcBuildingElementProxyTypeEnum_type); declarations.push_back(IfcCableCarrierFittingTypeEnum_type); declarations.push_back(IfcCableCarrierSegmentTypeEnum_type); declarations.push_back(IfcCableSegmentTypeEnum_type); declarations.push_back(IfcChangeActionEnum_type); declarations.push_back(IfcChillerTypeEnum_type); declarations.push_back(IfcCoilTypeEnum_type); declarations.push_back(IfcColumnTypeEnum_type); declarations.push_back(IfcCompressorTypeEnum_type); declarations.push_back(IfcCondenserTypeEnum_type); declarations.push_back(IfcConnectionTypeEnum_type); declarations.push_back(IfcConstraintEnum_type); declarations.push_back(IfcControllerTypeEnum_type); declarations.push_back(IfcCooledBeamTypeEnum_type); declarations.push_back(IfcCoolingTowerTypeEnum_type); declarations.push_back(IfcCostScheduleTypeEnum_type); declarations.push_back(IfcCoveringTypeEnum_type); declarations.push_back(IfcCurrencyEnum_type); declarations.push_back(IfcCurtainWallTypeEnum_type); declarations.push_back(IfcDamperTypeEnum_type); declarations.push_back(IfcDataOriginEnum_type); declarations.push_back(IfcDerivedUnitEnum_type); declarations.push_back(IfcDimensionExtentUsage_type); declarations.push_back(IfcDirectionSenseEnum_type); declarations.push_back(IfcDistributionChamberElementTypeEnum_type); declarations.push_back(IfcDocumentConfidentialityEnum_type); declarations.push_back(IfcDocumentStatusEnum_type); declarations.push_back(IfcDoorPanelOperationEnum_type); declarations.push_back(IfcDoorPanelPositionEnum_type); declarations.push_back(IfcDoorStyleConstructionEnum_type); declarations.push_back(IfcDoorStyleOperationEnum_type); declarations.push_back(IfcDuctFittingTypeEnum_type); declarations.push_back(IfcDuctSegmentTypeEnum_type); declarations.push_back(IfcDuctSilencerTypeEnum_type); declarations.push_back(IfcElectricApplianceTypeEnum_type); declarations.push_back(IfcElectricCurrentEnum_type); declarations.push_back(IfcElectricDistributionPointFunctionEnum_type); declarations.push_back(IfcElectricFlowStorageDeviceTypeEnum_type); declarations.push_back(IfcElectricGeneratorTypeEnum_type); declarations.push_back(IfcElectricHeaterTypeEnum_type); declarations.push_back(IfcElectricMotorTypeEnum_type); declarations.push_back(IfcElectricTimeControlTypeEnum_type); declarations.push_back(IfcElementAssemblyTypeEnum_type); declarations.push_back(IfcElementCompositionEnum_type); declarations.push_back(IfcEnergySequenceEnum_type); declarations.push_back(IfcEnvironmentalImpactCategoryEnum_type); declarations.push_back(IfcEvaporativeCoolerTypeEnum_type); declarations.push_back(IfcEvaporatorTypeEnum_type); declarations.push_back(IfcFanTypeEnum_type); declarations.push_back(IfcFilterTypeEnum_type); declarations.push_back(IfcFireSuppressionTerminalTypeEnum_type); declarations.push_back(IfcFlowDirectionEnum_type); declarations.push_back(IfcFlowInstrumentTypeEnum_type); declarations.push_back(IfcFlowMeterTypeEnum_type); declarations.push_back(IfcFootingTypeEnum_type); declarations.push_back(IfcGasTerminalTypeEnum_type); declarations.push_back(IfcGeometricProjectionEnum_type); declarations.push_back(IfcGlobalOrLocalEnum_type); declarations.push_back(IfcHeatExchangerTypeEnum_type); declarations.push_back(IfcHumidifierTypeEnum_type); declarations.push_back(IfcInternalOrExternalEnum_type); declarations.push_back(IfcInventoryTypeEnum_type); declarations.push_back(IfcJunctionBoxTypeEnum_type); declarations.push_back(IfcLampTypeEnum_type); declarations.push_back(IfcLayerSetDirectionEnum_type); declarations.push_back(IfcLightDistributionCurveEnum_type); declarations.push_back(IfcLightEmissionSourceEnum_type); declarations.push_back(IfcLightFixtureTypeEnum_type); declarations.push_back(IfcLoadGroupTypeEnum_type); declarations.push_back(IfcLogicalOperatorEnum_type); declarations.push_back(IfcMemberTypeEnum_type); declarations.push_back(IfcMotorConnectionTypeEnum_type); declarations.push_back(IfcNullStyle_type); declarations.push_back(IfcObjectTypeEnum_type); declarations.push_back(IfcObjectiveEnum_type); declarations.push_back(IfcOccupantTypeEnum_type); declarations.push_back(IfcOutletTypeEnum_type); declarations.push_back(IfcPermeableCoveringOperationEnum_type); declarations.push_back(IfcPhysicalOrVirtualEnum_type); declarations.push_back(IfcPileConstructionEnum_type); declarations.push_back(IfcPileTypeEnum_type); declarations.push_back(IfcPipeFittingTypeEnum_type); declarations.push_back(IfcPipeSegmentTypeEnum_type); declarations.push_back(IfcPlateTypeEnum_type); declarations.push_back(IfcProcedureTypeEnum_type); declarations.push_back(IfcProfileTypeEnum_type); declarations.push_back(IfcProjectOrderRecordTypeEnum_type); declarations.push_back(IfcProjectOrderTypeEnum_type); declarations.push_back(IfcProjectedOrTrueLengthEnum_type); declarations.push_back(IfcPropertySourceEnum_type); declarations.push_back(IfcProtectiveDeviceTypeEnum_type); declarations.push_back(IfcPumpTypeEnum_type); declarations.push_back(IfcRailingTypeEnum_type); declarations.push_back(IfcRampFlightTypeEnum_type); declarations.push_back(IfcRampTypeEnum_type); declarations.push_back(IfcReflectanceMethodEnum_type); declarations.push_back(IfcReinforcingBarRoleEnum_type); declarations.push_back(IfcReinforcingBarSurfaceEnum_type); declarations.push_back(IfcResourceConsumptionEnum_type); declarations.push_back(IfcRibPlateDirectionEnum_type); declarations.push_back(IfcRoleEnum_type); declarations.push_back(IfcRoofTypeEnum_type); declarations.push_back(IfcSIPrefix_type); declarations.push_back(IfcSIUnitName_type); declarations.push_back(IfcSanitaryTerminalTypeEnum_type); declarations.push_back(IfcSectionTypeEnum_type); declarations.push_back(IfcSensorTypeEnum_type); declarations.push_back(IfcSequenceEnum_type); declarations.push_back(IfcServiceLifeFactorTypeEnum_type); declarations.push_back(IfcServiceLifeTypeEnum_type); declarations.push_back(IfcSlabTypeEnum_type); declarations.push_back(IfcSoundScaleEnum_type); declarations.push_back(IfcSpaceHeaterTypeEnum_type); declarations.push_back(IfcSpaceTypeEnum_type); declarations.push_back(IfcStackTerminalTypeEnum_type); declarations.push_back(IfcStairFlightTypeEnum_type); declarations.push_back(IfcStairTypeEnum_type); declarations.push_back(IfcStateEnum_type); declarations.push_back(IfcStructuralCurveTypeEnum_type); declarations.push_back(IfcStructuralSurfaceTypeEnum_type); declarations.push_back(IfcSurfaceSide_type); declarations.push_back(IfcSurfaceTextureEnum_type); declarations.push_back(IfcSwitchingDeviceTypeEnum_type); declarations.push_back(IfcTankTypeEnum_type); declarations.push_back(IfcTendonTypeEnum_type); declarations.push_back(IfcTextPath_type); declarations.push_back(IfcThermalLoadSourceEnum_type); declarations.push_back(IfcThermalLoadTypeEnum_type); declarations.push_back(IfcTimeSeriesDataTypeEnum_type); declarations.push_back(IfcTimeSeriesScheduleTypeEnum_type); declarations.push_back(IfcTransformerTypeEnum_type); declarations.push_back(IfcTransitionCode_type); declarations.push_back(IfcTransportElementTypeEnum_type); declarations.push_back(IfcTrimmingPreference_type); declarations.push_back(IfcTubeBundleTypeEnum_type); declarations.push_back(IfcUnitEnum_type); declarations.push_back(IfcUnitaryEquipmentTypeEnum_type); declarations.push_back(IfcValveTypeEnum_type); declarations.push_back(IfcVibrationIsolatorTypeEnum_type); declarations.push_back(IfcWallTypeEnum_type); declarations.push_back(IfcWasteTerminalTypeEnum_type); declarations.push_back(IfcWindowPanelOperationEnum_type); declarations.push_back(IfcWindowPanelPositionEnum_type); declarations.push_back(IfcWindowStyleConstructionEnum_type); declarations.push_back(IfcWindowStyleOperationEnum_type); declarations.push_back(IfcWorkControlTypeEnum_type); declarations.push_back(IfcActorRole_type); declarations.push_back(IfcAddress_type); declarations.push_back(IfcApplication_type); declarations.push_back(IfcAppliedValue_type); declarations.push_back(IfcAppliedValueRelationship_type); declarations.push_back(IfcApproval_type); declarations.push_back(IfcApprovalActorRelationship_type); declarations.push_back(IfcApprovalPropertyRelationship_type); declarations.push_back(IfcApprovalRelationship_type); declarations.push_back(IfcBoundaryCondition_type); declarations.push_back(IfcBoundaryEdgeCondition_type); declarations.push_back(IfcBoundaryFaceCondition_type); declarations.push_back(IfcBoundaryNodeCondition_type); declarations.push_back(IfcBoundaryNodeConditionWarping_type); declarations.push_back(IfcCalendarDate_type); declarations.push_back(IfcClassification_type); declarations.push_back(IfcClassificationItem_type); declarations.push_back(IfcClassificationItemRelationship_type); declarations.push_back(IfcClassificationNotation_type); declarations.push_back(IfcClassificationNotationFacet_type); declarations.push_back(IfcColourSpecification_type); declarations.push_back(IfcConnectionGeometry_type); declarations.push_back(IfcConnectionPointGeometry_type); declarations.push_back(IfcConnectionPortGeometry_type); declarations.push_back(IfcConnectionSurfaceGeometry_type); declarations.push_back(IfcConstraint_type); declarations.push_back(IfcConstraintAggregationRelationship_type); declarations.push_back(IfcConstraintClassificationRelationship_type); declarations.push_back(IfcConstraintRelationship_type); declarations.push_back(IfcCoordinatedUniversalTimeOffset_type); declarations.push_back(IfcCostValue_type); declarations.push_back(IfcCurrencyRelationship_type); declarations.push_back(IfcCurveStyleFont_type); declarations.push_back(IfcCurveStyleFontAndScaling_type); declarations.push_back(IfcCurveStyleFontPattern_type); declarations.push_back(IfcDateAndTime_type); declarations.push_back(IfcDerivedUnit_type); declarations.push_back(IfcDerivedUnitElement_type); declarations.push_back(IfcDimensionalExponents_type); declarations.push_back(IfcDocumentElectronicFormat_type); declarations.push_back(IfcDocumentInformation_type); declarations.push_back(IfcDocumentInformationRelationship_type); declarations.push_back(IfcDraughtingCalloutRelationship_type); declarations.push_back(IfcEnvironmentalImpactValue_type); declarations.push_back(IfcExternalReference_type); declarations.push_back(IfcExternallyDefinedHatchStyle_type); declarations.push_back(IfcExternallyDefinedSurfaceStyle_type); declarations.push_back(IfcExternallyDefinedSymbol_type); declarations.push_back(IfcExternallyDefinedTextFont_type); declarations.push_back(IfcGridAxis_type); declarations.push_back(IfcIrregularTimeSeriesValue_type); declarations.push_back(IfcLibraryInformation_type); declarations.push_back(IfcLibraryReference_type); declarations.push_back(IfcLightDistributionData_type); declarations.push_back(IfcLightIntensityDistribution_type); declarations.push_back(IfcLocalTime_type); declarations.push_back(IfcMaterial_type); declarations.push_back(IfcMaterialClassificationRelationship_type); declarations.push_back(IfcMaterialLayer_type); declarations.push_back(IfcMaterialLayerSet_type); declarations.push_back(IfcMaterialLayerSetUsage_type); declarations.push_back(IfcMaterialList_type); declarations.push_back(IfcMaterialProperties_type); declarations.push_back(IfcMeasureWithUnit_type); declarations.push_back(IfcMechanicalMaterialProperties_type); declarations.push_back(IfcMechanicalSteelMaterialProperties_type); declarations.push_back(IfcMetric_type); declarations.push_back(IfcMonetaryUnit_type); declarations.push_back(IfcNamedUnit_type); declarations.push_back(IfcObjectPlacement_type); declarations.push_back(IfcObjective_type); declarations.push_back(IfcOpticalMaterialProperties_type); declarations.push_back(IfcOrganization_type); declarations.push_back(IfcOrganizationRelationship_type); declarations.push_back(IfcOwnerHistory_type); declarations.push_back(IfcPerson_type); declarations.push_back(IfcPersonAndOrganization_type); declarations.push_back(IfcPhysicalQuantity_type); declarations.push_back(IfcPhysicalSimpleQuantity_type); declarations.push_back(IfcPostalAddress_type); declarations.push_back(IfcPreDefinedItem_type); declarations.push_back(IfcPreDefinedSymbol_type); declarations.push_back(IfcPreDefinedTerminatorSymbol_type); declarations.push_back(IfcPreDefinedTextFont_type); declarations.push_back(IfcPresentationLayerAssignment_type); declarations.push_back(IfcPresentationLayerWithStyle_type); declarations.push_back(IfcPresentationStyle_type); declarations.push_back(IfcPresentationStyleAssignment_type); declarations.push_back(IfcProductRepresentation_type); declarations.push_back(IfcProductsOfCombustionProperties_type); declarations.push_back(IfcProfileDef_type); declarations.push_back(IfcProfileProperties_type); declarations.push_back(IfcProperty_type); declarations.push_back(IfcPropertyConstraintRelationship_type); declarations.push_back(IfcPropertyDependencyRelationship_type); declarations.push_back(IfcPropertyEnumeration_type); declarations.push_back(IfcQuantityArea_type); declarations.push_back(IfcQuantityCount_type); declarations.push_back(IfcQuantityLength_type); declarations.push_back(IfcQuantityTime_type); declarations.push_back(IfcQuantityVolume_type); declarations.push_back(IfcQuantityWeight_type); declarations.push_back(IfcReferencesValueDocument_type); declarations.push_back(IfcReinforcementBarProperties_type); declarations.push_back(IfcRelaxation_type); declarations.push_back(IfcRepresentation_type); declarations.push_back(IfcRepresentationContext_type); declarations.push_back(IfcRepresentationItem_type); declarations.push_back(IfcRepresentationMap_type); declarations.push_back(IfcRibPlateProfileProperties_type); declarations.push_back(IfcRoot_type); declarations.push_back(IfcSIUnit_type); declarations.push_back(IfcSectionProperties_type); declarations.push_back(IfcSectionReinforcementProperties_type); declarations.push_back(IfcShapeAspect_type); declarations.push_back(IfcShapeModel_type); declarations.push_back(IfcShapeRepresentation_type); declarations.push_back(IfcSimpleProperty_type); declarations.push_back(IfcStructuralConnectionCondition_type); declarations.push_back(IfcStructuralLoad_type); declarations.push_back(IfcStructuralLoadStatic_type); declarations.push_back(IfcStructuralLoadTemperature_type); declarations.push_back(IfcStyleModel_type); declarations.push_back(IfcStyledItem_type); declarations.push_back(IfcStyledRepresentation_type); declarations.push_back(IfcSurfaceStyle_type); declarations.push_back(IfcSurfaceStyleLighting_type); declarations.push_back(IfcSurfaceStyleRefraction_type); declarations.push_back(IfcSurfaceStyleShading_type); declarations.push_back(IfcSurfaceStyleWithTextures_type); declarations.push_back(IfcSurfaceTexture_type); declarations.push_back(IfcSymbolStyle_type); declarations.push_back(IfcTable_type); declarations.push_back(IfcTableRow_type); declarations.push_back(IfcTelecomAddress_type); declarations.push_back(IfcTextStyle_type); declarations.push_back(IfcTextStyleFontModel_type); declarations.push_back(IfcTextStyleForDefinedFont_type); declarations.push_back(IfcTextStyleTextModel_type); declarations.push_back(IfcTextStyleWithBoxCharacteristics_type); declarations.push_back(IfcTextureCoordinate_type); declarations.push_back(IfcTextureCoordinateGenerator_type); declarations.push_back(IfcTextureMap_type); declarations.push_back(IfcTextureVertex_type); declarations.push_back(IfcThermalMaterialProperties_type); declarations.push_back(IfcTimeSeries_type); declarations.push_back(IfcTimeSeriesReferenceRelationship_type); declarations.push_back(IfcTimeSeriesValue_type); declarations.push_back(IfcTopologicalRepresentationItem_type); declarations.push_back(IfcTopologyRepresentation_type); declarations.push_back(IfcUnitAssignment_type); declarations.push_back(IfcVertex_type); declarations.push_back(IfcVertexBasedTextureMap_type); declarations.push_back(IfcVertexPoint_type); declarations.push_back(IfcVirtualGridIntersection_type); declarations.push_back(IfcWaterProperties_type); declarations.push_back(IfcAnnotationOccurrence_type); declarations.push_back(IfcAnnotationSurfaceOccurrence_type); declarations.push_back(IfcAnnotationSymbolOccurrence_type); declarations.push_back(IfcAnnotationTextOccurrence_type); declarations.push_back(IfcArbitraryClosedProfileDef_type); declarations.push_back(IfcArbitraryOpenProfileDef_type); declarations.push_back(IfcArbitraryProfileDefWithVoids_type); declarations.push_back(IfcBlobTexture_type); declarations.push_back(IfcCenterLineProfileDef_type); declarations.push_back(IfcClassificationReference_type); declarations.push_back(IfcColourRgb_type); declarations.push_back(IfcComplexProperty_type); declarations.push_back(IfcCompositeProfileDef_type); declarations.push_back(IfcConnectedFaceSet_type); declarations.push_back(IfcConnectionCurveGeometry_type); declarations.push_back(IfcConnectionPointEccentricity_type); declarations.push_back(IfcContextDependentUnit_type); declarations.push_back(IfcConversionBasedUnit_type); declarations.push_back(IfcCurveStyle_type); declarations.push_back(IfcDerivedProfileDef_type); declarations.push_back(IfcDimensionCalloutRelationship_type); declarations.push_back(IfcDimensionPair_type); declarations.push_back(IfcDocumentReference_type); declarations.push_back(IfcDraughtingPreDefinedTextFont_type); declarations.push_back(IfcEdge_type); declarations.push_back(IfcEdgeCurve_type); declarations.push_back(IfcExtendedMaterialProperties_type); declarations.push_back(IfcFace_type); declarations.push_back(IfcFaceBound_type); declarations.push_back(IfcFaceOuterBound_type); declarations.push_back(IfcFaceSurface_type); declarations.push_back(IfcFailureConnectionCondition_type); declarations.push_back(IfcFillAreaStyle_type); declarations.push_back(IfcFuelProperties_type); declarations.push_back(IfcGeneralMaterialProperties_type); declarations.push_back(IfcGeneralProfileProperties_type); declarations.push_back(IfcGeometricRepresentationContext_type); declarations.push_back(IfcGeometricRepresentationItem_type); declarations.push_back(IfcGeometricRepresentationSubContext_type); declarations.push_back(IfcGeometricSet_type); declarations.push_back(IfcGridPlacement_type); declarations.push_back(IfcHalfSpaceSolid_type); declarations.push_back(IfcHygroscopicMaterialProperties_type); declarations.push_back(IfcImageTexture_type); declarations.push_back(IfcIrregularTimeSeries_type); declarations.push_back(IfcLightSource_type); declarations.push_back(IfcLightSourceAmbient_type); declarations.push_back(IfcLightSourceDirectional_type); declarations.push_back(IfcLightSourceGoniometric_type); declarations.push_back(IfcLightSourcePositional_type); declarations.push_back(IfcLightSourceSpot_type); declarations.push_back(IfcLocalPlacement_type); declarations.push_back(IfcLoop_type); declarations.push_back(IfcMappedItem_type); declarations.push_back(IfcMaterialDefinitionRepresentation_type); declarations.push_back(IfcMechanicalConcreteMaterialProperties_type); declarations.push_back(IfcObjectDefinition_type); declarations.push_back(IfcOneDirectionRepeatFactor_type); declarations.push_back(IfcOpenShell_type); declarations.push_back(IfcOrientedEdge_type); declarations.push_back(IfcParameterizedProfileDef_type); declarations.push_back(IfcPath_type); declarations.push_back(IfcPhysicalComplexQuantity_type); declarations.push_back(IfcPixelTexture_type); declarations.push_back(IfcPlacement_type); declarations.push_back(IfcPlanarExtent_type); declarations.push_back(IfcPoint_type); declarations.push_back(IfcPointOnCurve_type); declarations.push_back(IfcPointOnSurface_type); declarations.push_back(IfcPolyLoop_type); declarations.push_back(IfcPolygonalBoundedHalfSpace_type); declarations.push_back(IfcPreDefinedColour_type); declarations.push_back(IfcPreDefinedCurveFont_type); declarations.push_back(IfcPreDefinedDimensionSymbol_type); declarations.push_back(IfcPreDefinedPointMarkerSymbol_type); declarations.push_back(IfcProductDefinitionShape_type); declarations.push_back(IfcPropertyBoundedValue_type); declarations.push_back(IfcPropertyDefinition_type); declarations.push_back(IfcPropertyEnumeratedValue_type); declarations.push_back(IfcPropertyListValue_type); declarations.push_back(IfcPropertyReferenceValue_type); declarations.push_back(IfcPropertySetDefinition_type); declarations.push_back(IfcPropertySingleValue_type); declarations.push_back(IfcPropertyTableValue_type); declarations.push_back(IfcRectangleProfileDef_type); declarations.push_back(IfcRegularTimeSeries_type); declarations.push_back(IfcReinforcementDefinitionProperties_type); declarations.push_back(IfcRelationship_type); declarations.push_back(IfcRoundedRectangleProfileDef_type); declarations.push_back(IfcSectionedSpine_type); declarations.push_back(IfcServiceLifeFactor_type); declarations.push_back(IfcShellBasedSurfaceModel_type); declarations.push_back(IfcSlippageConnectionCondition_type); declarations.push_back(IfcSolidModel_type); declarations.push_back(IfcSoundProperties_type); declarations.push_back(IfcSoundValue_type); declarations.push_back(IfcSpaceThermalLoadProperties_type); declarations.push_back(IfcStructuralLoadLinearForce_type); declarations.push_back(IfcStructuralLoadPlanarForce_type); declarations.push_back(IfcStructuralLoadSingleDisplacement_type); declarations.push_back(IfcStructuralLoadSingleDisplacementDistortion_type); declarations.push_back(IfcStructuralLoadSingleForce_type); declarations.push_back(IfcStructuralLoadSingleForceWarping_type); declarations.push_back(IfcStructuralProfileProperties_type); declarations.push_back(IfcStructuralSteelProfileProperties_type); declarations.push_back(IfcSubedge_type); declarations.push_back(IfcSurface_type); declarations.push_back(IfcSurfaceStyleRendering_type); declarations.push_back(IfcSweptAreaSolid_type); declarations.push_back(IfcSweptDiskSolid_type); declarations.push_back(IfcSweptSurface_type); declarations.push_back(IfcTShapeProfileDef_type); declarations.push_back(IfcTerminatorSymbol_type); declarations.push_back(IfcTextLiteral_type); declarations.push_back(IfcTextLiteralWithExtent_type); declarations.push_back(IfcTrapeziumProfileDef_type); declarations.push_back(IfcTwoDirectionRepeatFactor_type); declarations.push_back(IfcTypeObject_type); declarations.push_back(IfcTypeProduct_type); declarations.push_back(IfcUShapeProfileDef_type); declarations.push_back(IfcVector_type); declarations.push_back(IfcVertexLoop_type); declarations.push_back(IfcWindowLiningProperties_type); declarations.push_back(IfcWindowPanelProperties_type); declarations.push_back(IfcWindowStyle_type); declarations.push_back(IfcZShapeProfileDef_type); declarations.push_back(IfcAnnotationCurveOccurrence_type); declarations.push_back(IfcAnnotationFillArea_type); declarations.push_back(IfcAnnotationFillAreaOccurrence_type); declarations.push_back(IfcAnnotationSurface_type); declarations.push_back(IfcAxis1Placement_type); declarations.push_back(IfcAxis2Placement2D_type); declarations.push_back(IfcAxis2Placement3D_type); declarations.push_back(IfcBooleanResult_type); declarations.push_back(IfcBoundedSurface_type); declarations.push_back(IfcBoundingBox_type); declarations.push_back(IfcBoxedHalfSpace_type); declarations.push_back(IfcCShapeProfileDef_type); declarations.push_back(IfcCartesianPoint_type); declarations.push_back(IfcCartesianTransformationOperator_type); declarations.push_back(IfcCartesianTransformationOperator2D_type); declarations.push_back(IfcCartesianTransformationOperator2DnonUniform_type); declarations.push_back(IfcCartesianTransformationOperator3D_type); declarations.push_back(IfcCartesianTransformationOperator3DnonUniform_type); declarations.push_back(IfcCircleProfileDef_type); declarations.push_back(IfcClosedShell_type); declarations.push_back(IfcCompositeCurveSegment_type); declarations.push_back(IfcCraneRailAShapeProfileDef_type); declarations.push_back(IfcCraneRailFShapeProfileDef_type); declarations.push_back(IfcCsgPrimitive3D_type); declarations.push_back(IfcCsgSolid_type); declarations.push_back(IfcCurve_type); declarations.push_back(IfcCurveBoundedPlane_type); declarations.push_back(IfcDefinedSymbol_type); declarations.push_back(IfcDimensionCurve_type); declarations.push_back(IfcDimensionCurveTerminator_type); declarations.push_back(IfcDirection_type); declarations.push_back(IfcDoorLiningProperties_type); declarations.push_back(IfcDoorPanelProperties_type); declarations.push_back(IfcDoorStyle_type); declarations.push_back(IfcDraughtingCallout_type); declarations.push_back(IfcDraughtingPreDefinedColour_type); declarations.push_back(IfcDraughtingPreDefinedCurveFont_type); declarations.push_back(IfcEdgeLoop_type); declarations.push_back(IfcElementQuantity_type); declarations.push_back(IfcElementType_type); declarations.push_back(IfcElementarySurface_type); declarations.push_back(IfcEllipseProfileDef_type); declarations.push_back(IfcEnergyProperties_type); declarations.push_back(IfcExtrudedAreaSolid_type); declarations.push_back(IfcFaceBasedSurfaceModel_type); declarations.push_back(IfcFillAreaStyleHatching_type); declarations.push_back(IfcFillAreaStyleTileSymbolWithStyle_type); declarations.push_back(IfcFillAreaStyleTiles_type); declarations.push_back(IfcFluidFlowProperties_type); declarations.push_back(IfcFurnishingElementType_type); declarations.push_back(IfcFurnitureType_type); declarations.push_back(IfcGeometricCurveSet_type); declarations.push_back(IfcIShapeProfileDef_type); declarations.push_back(IfcLShapeProfileDef_type); declarations.push_back(IfcLine_type); declarations.push_back(IfcManifoldSolidBrep_type); declarations.push_back(IfcObject_type); declarations.push_back(IfcOffsetCurve2D_type); declarations.push_back(IfcOffsetCurve3D_type); declarations.push_back(IfcPermeableCoveringProperties_type); declarations.push_back(IfcPlanarBox_type); declarations.push_back(IfcPlane_type); declarations.push_back(IfcProcess_type); declarations.push_back(IfcProduct_type); declarations.push_back(IfcProject_type); declarations.push_back(IfcProjectionCurve_type); declarations.push_back(IfcPropertySet_type); declarations.push_back(IfcProxy_type); declarations.push_back(IfcRectangleHollowProfileDef_type); declarations.push_back(IfcRectangularPyramid_type); declarations.push_back(IfcRectangularTrimmedSurface_type); declarations.push_back(IfcRelAssigns_type); declarations.push_back(IfcRelAssignsToActor_type); declarations.push_back(IfcRelAssignsToControl_type); declarations.push_back(IfcRelAssignsToGroup_type); declarations.push_back(IfcRelAssignsToProcess_type); declarations.push_back(IfcRelAssignsToProduct_type); declarations.push_back(IfcRelAssignsToProjectOrder_type); declarations.push_back(IfcRelAssignsToResource_type); declarations.push_back(IfcRelAssociates_type); declarations.push_back(IfcRelAssociatesAppliedValue_type); declarations.push_back(IfcRelAssociatesApproval_type); declarations.push_back(IfcRelAssociatesClassification_type); declarations.push_back(IfcRelAssociatesConstraint_type); declarations.push_back(IfcRelAssociatesDocument_type); declarations.push_back(IfcRelAssociatesLibrary_type); declarations.push_back(IfcRelAssociatesMaterial_type); declarations.push_back(IfcRelAssociatesProfileProperties_type); declarations.push_back(IfcRelConnects_type); declarations.push_back(IfcRelConnectsElements_type); declarations.push_back(IfcRelConnectsPathElements_type); declarations.push_back(IfcRelConnectsPortToElement_type); declarations.push_back(IfcRelConnectsPorts_type); declarations.push_back(IfcRelConnectsStructuralActivity_type); declarations.push_back(IfcRelConnectsStructuralElement_type); declarations.push_back(IfcRelConnectsStructuralMember_type); declarations.push_back(IfcRelConnectsWithEccentricity_type); declarations.push_back(IfcRelConnectsWithRealizingElements_type); declarations.push_back(IfcRelContainedInSpatialStructure_type); declarations.push_back(IfcRelCoversBldgElements_type); declarations.push_back(IfcRelCoversSpaces_type); declarations.push_back(IfcRelDecomposes_type); declarations.push_back(IfcRelDefines_type); declarations.push_back(IfcRelDefinesByProperties_type); declarations.push_back(IfcRelDefinesByType_type); declarations.push_back(IfcRelFillsElement_type); declarations.push_back(IfcRelFlowControlElements_type); declarations.push_back(IfcRelInteractionRequirements_type); declarations.push_back(IfcRelNests_type); declarations.push_back(IfcRelOccupiesSpaces_type); declarations.push_back(IfcRelOverridesProperties_type); declarations.push_back(IfcRelProjectsElement_type); declarations.push_back(IfcRelReferencedInSpatialStructure_type); declarations.push_back(IfcRelSchedulesCostItems_type); declarations.push_back(IfcRelSequence_type); declarations.push_back(IfcRelServicesBuildings_type); declarations.push_back(IfcRelSpaceBoundary_type); declarations.push_back(IfcRelVoidsElement_type); declarations.push_back(IfcResource_type); declarations.push_back(IfcRevolvedAreaSolid_type); declarations.push_back(IfcRightCircularCone_type); declarations.push_back(IfcRightCircularCylinder_type); declarations.push_back(IfcSpatialStructureElement_type); declarations.push_back(IfcSpatialStructureElementType_type); declarations.push_back(IfcSphere_type); declarations.push_back(IfcStructuralActivity_type); declarations.push_back(IfcStructuralItem_type); declarations.push_back(IfcStructuralMember_type); declarations.push_back(IfcStructuralReaction_type); declarations.push_back(IfcStructuralSurfaceMember_type); declarations.push_back(IfcStructuralSurfaceMemberVarying_type); declarations.push_back(IfcStructuredDimensionCallout_type); declarations.push_back(IfcSurfaceCurveSweptAreaSolid_type); declarations.push_back(IfcSurfaceOfLinearExtrusion_type); declarations.push_back(IfcSurfaceOfRevolution_type); declarations.push_back(IfcSystemFurnitureElementType_type); declarations.push_back(IfcTask_type); declarations.push_back(IfcTransportElementType_type); declarations.push_back(IfcActor_type); declarations.push_back(IfcAnnotation_type); declarations.push_back(IfcAsymmetricIShapeProfileDef_type); declarations.push_back(IfcBlock_type); declarations.push_back(IfcBooleanClippingResult_type); declarations.push_back(IfcBoundedCurve_type); declarations.push_back(IfcBuilding_type); declarations.push_back(IfcBuildingElementType_type); declarations.push_back(IfcBuildingStorey_type); declarations.push_back(IfcCircleHollowProfileDef_type); declarations.push_back(IfcColumnType_type); declarations.push_back(IfcCompositeCurve_type); declarations.push_back(IfcConic_type); declarations.push_back(IfcConstructionResource_type); declarations.push_back(IfcControl_type); declarations.push_back(IfcCostItem_type); declarations.push_back(IfcCostSchedule_type); declarations.push_back(IfcCoveringType_type); declarations.push_back(IfcCrewResource_type); declarations.push_back(IfcCurtainWallType_type); declarations.push_back(IfcDimensionCurveDirectedCallout_type); declarations.push_back(IfcDistributionElementType_type); declarations.push_back(IfcDistributionFlowElementType_type); declarations.push_back(IfcElectricalBaseProperties_type); declarations.push_back(IfcElement_type); declarations.push_back(IfcElementAssembly_type); declarations.push_back(IfcElementComponent_type); declarations.push_back(IfcElementComponentType_type); declarations.push_back(IfcEllipse_type); declarations.push_back(IfcEnergyConversionDeviceType_type); declarations.push_back(IfcEquipmentElement_type); declarations.push_back(IfcEquipmentStandard_type); declarations.push_back(IfcEvaporativeCoolerType_type); declarations.push_back(IfcEvaporatorType_type); declarations.push_back(IfcFacetedBrep_type); declarations.push_back(IfcFacetedBrepWithVoids_type); declarations.push_back(IfcFastener_type); declarations.push_back(IfcFastenerType_type); declarations.push_back(IfcFeatureElement_type); declarations.push_back(IfcFeatureElementAddition_type); declarations.push_back(IfcFeatureElementSubtraction_type); declarations.push_back(IfcFlowControllerType_type); declarations.push_back(IfcFlowFittingType_type); declarations.push_back(IfcFlowMeterType_type); declarations.push_back(IfcFlowMovingDeviceType_type); declarations.push_back(IfcFlowSegmentType_type); declarations.push_back(IfcFlowStorageDeviceType_type); declarations.push_back(IfcFlowTerminalType_type); declarations.push_back(IfcFlowTreatmentDeviceType_type); declarations.push_back(IfcFurnishingElement_type); declarations.push_back(IfcFurnitureStandard_type); declarations.push_back(IfcGasTerminalType_type); declarations.push_back(IfcGrid_type); declarations.push_back(IfcGroup_type); declarations.push_back(IfcHeatExchangerType_type); declarations.push_back(IfcHumidifierType_type); declarations.push_back(IfcInventory_type); declarations.push_back(IfcJunctionBoxType_type); declarations.push_back(IfcLaborResource_type); declarations.push_back(IfcLampType_type); declarations.push_back(IfcLightFixtureType_type); declarations.push_back(IfcLinearDimension_type); declarations.push_back(IfcMechanicalFastener_type); declarations.push_back(IfcMechanicalFastenerType_type); declarations.push_back(IfcMemberType_type); declarations.push_back(IfcMotorConnectionType_type); declarations.push_back(IfcMove_type); declarations.push_back(IfcOccupant_type); declarations.push_back(IfcOpeningElement_type); declarations.push_back(IfcOrderAction_type); declarations.push_back(IfcOutletType_type); declarations.push_back(IfcPerformanceHistory_type); declarations.push_back(IfcPermit_type); declarations.push_back(IfcPipeFittingType_type); declarations.push_back(IfcPipeSegmentType_type); declarations.push_back(IfcPlateType_type); declarations.push_back(IfcPolyline_type); declarations.push_back(IfcPort_type); declarations.push_back(IfcProcedure_type); declarations.push_back(IfcProjectOrder_type); declarations.push_back(IfcProjectOrderRecord_type); declarations.push_back(IfcProjectionElement_type); declarations.push_back(IfcProtectiveDeviceType_type); declarations.push_back(IfcPumpType_type); declarations.push_back(IfcRadiusDimension_type); declarations.push_back(IfcRailingType_type); declarations.push_back(IfcRampFlightType_type); declarations.push_back(IfcRelAggregates_type); declarations.push_back(IfcRelAssignsTasks_type); declarations.push_back(IfcSanitaryTerminalType_type); declarations.push_back(IfcScheduleTimeControl_type); declarations.push_back(IfcServiceLife_type); declarations.push_back(IfcSite_type); declarations.push_back(IfcSlabType_type); declarations.push_back(IfcSpace_type); declarations.push_back(IfcSpaceHeaterType_type); declarations.push_back(IfcSpaceProgram_type); declarations.push_back(IfcSpaceType_type); declarations.push_back(IfcStackTerminalType_type); declarations.push_back(IfcStairFlightType_type); declarations.push_back(IfcStructuralAction_type); declarations.push_back(IfcStructuralConnection_type); declarations.push_back(IfcStructuralCurveConnection_type); declarations.push_back(IfcStructuralCurveMember_type); declarations.push_back(IfcStructuralCurveMemberVarying_type); declarations.push_back(IfcStructuralLinearAction_type); declarations.push_back(IfcStructuralLinearActionVarying_type); declarations.push_back(IfcStructuralLoadGroup_type); declarations.push_back(IfcStructuralPlanarAction_type); declarations.push_back(IfcStructuralPlanarActionVarying_type); declarations.push_back(IfcStructuralPointAction_type); declarations.push_back(IfcStructuralPointConnection_type); declarations.push_back(IfcStructuralPointReaction_type); declarations.push_back(IfcStructuralResultGroup_type); declarations.push_back(IfcStructuralSurfaceConnection_type); declarations.push_back(IfcSubContractResource_type); declarations.push_back(IfcSwitchingDeviceType_type); declarations.push_back(IfcSystem_type); declarations.push_back(IfcTankType_type); declarations.push_back(IfcTimeSeriesSchedule_type); declarations.push_back(IfcTransformerType_type); declarations.push_back(IfcTransportElement_type); declarations.push_back(IfcTrimmedCurve_type); declarations.push_back(IfcTubeBundleType_type); declarations.push_back(IfcUnitaryEquipmentType_type); declarations.push_back(IfcValveType_type); declarations.push_back(IfcVirtualElement_type); declarations.push_back(IfcWallType_type); declarations.push_back(IfcWasteTerminalType_type); declarations.push_back(IfcWorkControl_type); declarations.push_back(IfcWorkPlan_type); declarations.push_back(IfcWorkSchedule_type); declarations.push_back(IfcZone_type); declarations.push_back(Ifc2DCompositeCurve_type); declarations.push_back(IfcActionRequest_type); declarations.push_back(IfcAirTerminalBoxType_type); declarations.push_back(IfcAirTerminalType_type); declarations.push_back(IfcAirToAirHeatRecoveryType_type); declarations.push_back(IfcAngularDimension_type); declarations.push_back(IfcAsset_type); declarations.push_back(IfcBSplineCurve_type); declarations.push_back(IfcBeamType_type); declarations.push_back(IfcBezierCurve_type); declarations.push_back(IfcBoilerType_type); declarations.push_back(IfcBuildingElement_type); declarations.push_back(IfcBuildingElementComponent_type); declarations.push_back(IfcBuildingElementPart_type); declarations.push_back(IfcBuildingElementProxy_type); declarations.push_back(IfcBuildingElementProxyType_type); declarations.push_back(IfcCableCarrierFittingType_type); declarations.push_back(IfcCableCarrierSegmentType_type); declarations.push_back(IfcCableSegmentType_type); declarations.push_back(IfcChillerType_type); declarations.push_back(IfcCircle_type); declarations.push_back(IfcCoilType_type); declarations.push_back(IfcColumn_type); declarations.push_back(IfcCompressorType_type); declarations.push_back(IfcCondenserType_type); declarations.push_back(IfcCondition_type); declarations.push_back(IfcConditionCriterion_type); declarations.push_back(IfcConstructionEquipmentResource_type); declarations.push_back(IfcConstructionMaterialResource_type); declarations.push_back(IfcConstructionProductResource_type); declarations.push_back(IfcCooledBeamType_type); declarations.push_back(IfcCoolingTowerType_type); declarations.push_back(IfcCovering_type); declarations.push_back(IfcCurtainWall_type); declarations.push_back(IfcDamperType_type); declarations.push_back(IfcDiameterDimension_type); declarations.push_back(IfcDiscreteAccessory_type); declarations.push_back(IfcDiscreteAccessoryType_type); declarations.push_back(IfcDistributionChamberElementType_type); declarations.push_back(IfcDistributionControlElementType_type); declarations.push_back(IfcDistributionElement_type); declarations.push_back(IfcDistributionFlowElement_type); declarations.push_back(IfcDistributionPort_type); declarations.push_back(IfcDoor_type); declarations.push_back(IfcDuctFittingType_type); declarations.push_back(IfcDuctSegmentType_type); declarations.push_back(IfcDuctSilencerType_type); declarations.push_back(IfcEdgeFeature_type); declarations.push_back(IfcElectricApplianceType_type); declarations.push_back(IfcElectricFlowStorageDeviceType_type); declarations.push_back(IfcElectricGeneratorType_type); declarations.push_back(IfcElectricHeaterType_type); declarations.push_back(IfcElectricMotorType_type); declarations.push_back(IfcElectricTimeControlType_type); declarations.push_back(IfcElectricalCircuit_type); declarations.push_back(IfcElectricalElement_type); declarations.push_back(IfcEnergyConversionDevice_type); declarations.push_back(IfcFanType_type); declarations.push_back(IfcFilterType_type); declarations.push_back(IfcFireSuppressionTerminalType_type); declarations.push_back(IfcFlowController_type); declarations.push_back(IfcFlowFitting_type); declarations.push_back(IfcFlowInstrumentType_type); declarations.push_back(IfcFlowMovingDevice_type); declarations.push_back(IfcFlowSegment_type); declarations.push_back(IfcFlowStorageDevice_type); declarations.push_back(IfcFlowTerminal_type); declarations.push_back(IfcFlowTreatmentDevice_type); declarations.push_back(IfcFooting_type); declarations.push_back(IfcMember_type); declarations.push_back(IfcPile_type); declarations.push_back(IfcPlate_type); declarations.push_back(IfcRailing_type); declarations.push_back(IfcRamp_type); declarations.push_back(IfcRampFlight_type); declarations.push_back(IfcRationalBezierCurve_type); declarations.push_back(IfcReinforcingElement_type); declarations.push_back(IfcReinforcingMesh_type); declarations.push_back(IfcRoof_type); declarations.push_back(IfcRoundedEdgeFeature_type); declarations.push_back(IfcSensorType_type); declarations.push_back(IfcSlab_type); declarations.push_back(IfcStair_type); declarations.push_back(IfcStairFlight_type); declarations.push_back(IfcStructuralAnalysisModel_type); declarations.push_back(IfcTendon_type); declarations.push_back(IfcTendonAnchor_type); declarations.push_back(IfcVibrationIsolatorType_type); declarations.push_back(IfcWall_type); declarations.push_back(IfcWallStandardCase_type); declarations.push_back(IfcWindow_type); declarations.push_back(IfcActuatorType_type); declarations.push_back(IfcAlarmType_type); declarations.push_back(IfcBeam_type); declarations.push_back(IfcChamferEdgeFeature_type); declarations.push_back(IfcControllerType_type); declarations.push_back(IfcDistributionChamberElement_type); declarations.push_back(IfcDistributionControlElement_type); declarations.push_back(IfcElectricDistributionPoint_type); declarations.push_back(IfcReinforcingBar_type); declarations.push_back(IfcActorSelect_type); declarations.push_back(IfcAppliedValueSelect_type); declarations.push_back(IfcAxis2Placement_type); declarations.push_back(IfcBooleanOperand_type); declarations.push_back(IfcCharacterStyleSelect_type); declarations.push_back(IfcClassificationNotationSelect_type); declarations.push_back(IfcColour_type); declarations.push_back(IfcColourOrFactor_type); declarations.push_back(IfcConditionCriterionSelect_type); declarations.push_back(IfcCsgSelect_type); declarations.push_back(IfcCurveOrEdgeCurve_type); declarations.push_back(IfcCurveStyleFontSelect_type); declarations.push_back(IfcDateTimeSelect_type); declarations.push_back(IfcDefinedSymbolSelect_type); declarations.push_back(IfcDerivedMeasureValue_type); declarations.push_back(IfcDocumentSelect_type); declarations.push_back(IfcDraughtingCalloutElement_type); declarations.push_back(IfcFillAreaStyleTileShapeSelect_type); declarations.push_back(IfcFillStyleSelect_type); declarations.push_back(IfcGeometricSetSelect_type); declarations.push_back(IfcHatchLineDistanceSelect_type); declarations.push_back(IfcLayeredItem_type); declarations.push_back(IfcLibrarySelect_type); declarations.push_back(IfcLightDistributionDataSourceSelect_type); declarations.push_back(IfcMaterialSelect_type); declarations.push_back(IfcMeasureValue_type); declarations.push_back(IfcMetricValueSelect_type); declarations.push_back(IfcObjectReferenceSelect_type); declarations.push_back(IfcOrientationSelect_type); declarations.push_back(IfcPointOrVertexPoint_type); declarations.push_back(IfcPresentationStyleSelect_type); declarations.push_back(IfcShell_type); declarations.push_back(IfcSimpleValue_type); declarations.push_back(IfcSizeSelect_type); declarations.push_back(IfcSpecularHighlightSelect_type); declarations.push_back(IfcStructuralActivityAssignmentSelect_type); declarations.push_back(IfcSurfaceOrFaceSurface_type); declarations.push_back(IfcSurfaceStyleElementSelect_type); declarations.push_back(IfcSymbolStyleSelect_type); declarations.push_back(IfcTextFontSelect_type); declarations.push_back(IfcTextStyleSelect_type); declarations.push_back(IfcTrimmingSelect_type); declarations.push_back(IfcUnit_type); declarations.push_back(IfcValue_type); declarations.push_back(IfcVectorOrDirection_type); declarations.push_back(IfcCurveFontOrScaledCurveFontSelect_type); return new schema_definition("IFC2X3", declarations, true); } #ifdef _MSC_VER #pragma optimize("", on) #endif namespace IFC2X3 { const schema_definition& get_schema() { static const schema_definition* s = populate_schema(); return *s; } }