/////////////////////////////////////////////////////////////////////////////// // Copyright (C) 2002-2025, Open Design Alliance (the "Alliance"). // All rights reserved. // // This software and its documentation and related materials are owned by // the Alliance. The software may only be incorporated into application // programs owned by members of the Alliance, subject to a signed // Membership Agreement and Supplemental Software License Agreement with the // Alliance. The structure and organization of this software are the valuable // trade secrets of the Alliance and its suppliers. The software is also // protected by copyright law and international treaty provisions. Application // programs incorporating this software must include the following statement // with their copyright notices: // // This application incorporates Open Design Alliance software pursuant to a license // agreement with Open Design Alliance. // Open Design Alliance Copyright (C) 2002-2025 by Open Design Alliance. // All rights reserved. // // By use of this software, its documentation or related materials, you // acknowledge and accept the above terms. /////////////////////////////////////////////////////////////////////////////// // This file is generated automatically. #ifndef _IFC4X3_RC1_IFCREVOLVEDAREASOLIDTAPERED_AUTO_IMPL_H #define _IFC4X3_RC1_IFCREVOLVEDAREASOLIDTAPERED_AUTO_IMPL_H #include "IfcRevolvedAreaSolidAutoImpl.h" #include "IfcProfileDefAutoImpl.h" #include "TD_PackPush.h" /** \details The namespace contains schema-dependent classes, definitions and sub routines for work with IFC4X3_RC1 express schema definitions. */ namespace OdIfc4x3_rc1 { /** \details IfcRevolvedAreaSolidTapered is defined by revolving a cross section along a circular arc. The cross section can change along the revolving sweep from the shape of the start cross section into the shape of the end cross section. Corresponding vertices of the start and end cross sections are then connected. The bounded surface can have holes which will sweep into holes in the solid. The rotation axis is defined by: * Start point: SELF\IfcSweptAreaSolid.Position.Location * Direction: SELF\IfcRevolvedAreaSolid.Axis * Rotation axis: SELF\IfcRevolvedAreaSolid.AxisLine, created from start point and direction by applying a 1 unit magnitude * Orientation: Positive angles are applied clockwise when looking into the positive direction of the rotation axis The start cross section is defined by SELF\IfcSweptAreaSolid.SweptArea: * A bounded planar surface lying in the XY plane of the position coordinate system defined by SELF\IfcSweptAreaSolid.Position.P[1] and SELF\IfcSweptAreaSolid.Position.P[2] * The rotation axis lies in the plane of the start cross section but does not intersect the interior of the start cross section */ class IFC4X3_RC1_EXPORT IfcRevolvedAreaSolidTapered : public IfcRevolvedAreaSolid { //DOM-IGNORE-BEGIN OD_EXP_DECLARE_MEMBERS(OdIfc4x3_rc1::IfcRevolvedAreaSolidTapered); //DOM-IGNORE-END public: // // OdDAI early binding accessors // /** \details Returns the value of EndSweptArea attribute. This attribute represents the surface defining the end of the swept area as a profile definition. \returns Returns the value of EndSweptArea attribute. */ const OdDAIObjectId& getEndSweptArea() const; /** \details Sets the value of EndSweptArea attribute. This attribute represents the surface defining the end of the swept area as a profile definition. \param EndSweptArea [in] End swept area to set. */ void setEndSweptArea(const OdDAIObjectId& EndSweptArea); public: /** \details Reads object's data from the specified filer. \param rdFiler [in] Pointer to a filer from which to read the data. \returns A value of OdResult type that contains the result of the method execution. */ virtual OdResult inFields(OdDAI::OdSpfFilerBase* rdFiler) override; /** \details Writes object's data the the specified filer. \param wrFiler [in] Pointer to a filer to which to write the data. \returns A value of OdResult type that contains the result of the method execution. */ virtual OdResult outFields(OdDAI::OdSpfFilerBase* wrFiler) override; /** \details Returns a type of a class instance. \returns Pointer to the OdDAI::Entity type that determines an entity definition within a schema. */ virtual OdDAI::Entity* getInstanceType() const override; /** \details Returns an attribute value for the specified attribute name. \param attrName [in] Name of an attribute to query. \returns OdRxValue object that represents a generic variant type value. */ virtual OdRxValue getAttr(const char * attrName) const override; /** \details Early-bound version of instances comparison. \param pOther [in] Other application instance. \param ordering [out] Receives the ordering (comparison) status. \returns true if comparison was performed, false if method has no implementation, so late-bound version could be applied. \remarks If the method returns true, the ordering parameter can receive one of the following statuses: Name Value Description _kLessThan_ -1 This object < Other Object. _kEqual_ 0 This object = Other Object. _kGreaterThan_ 1 This object > Other Object. _kNotOrderable_ 2 This class is not orderable.
*/ virtual bool comparedToEarlyImpl(const OdDAI::ApplicationInstance *pOther, OdRx::Ordering &ordering) const override; /** \details Resets a value for the specified attribute. \param explicitAttrName [in] Explicit name of the attribute to reset. */ virtual void unsetAttr(const char * explicitAttrName) override; /** \details Checks whether the specified attribute is set. \param explicitAttrName [in] Explicit name of the attribute to test. \returns true if the specified attribute is set, false otherwise. */ virtual bool testAttr(const char * explicitAttrName) const override; /** \details Sets the specified attribute with a given value. \param explicitAttrName [in] Explicit name of the attribute to set. \param val [in] Value to set. \returns true if the value is successfully set for the specified attribute, false otherwise. */ virtual bool putAttr(const char * explicitAttrName, const OdRxValue &val) override; /** \details Checks whether the specified instance is the object derived from or belongs to this class. \param entityType [in] Entity to check. \returns true if the specified instance is the object derived from or belongs to this class, false otherwise. */ virtual bool isKindOf(OdIfc::OdIfcEntityType entityType) const override; /** \details Returns the type of this entity. \returns A value of the OdIfc::OdIfcEntityType type that represents type of this entity. */ virtual OdIfc::OdIfcEntityType type() const override; /** \details Returns an attribute value for the specified attribute definition. \param attrDef [in] Attribute definition to query. \returns OdRxValue object that represents a generic variant type value. */ virtual OdRxValue getAttr(const OdIfc::OdIfcAttribute attrDef) const override; /** \details Resets a value for the specified attribute. \param explicitAttrDef [in] Explicit definition that represents an attribute to reset. */ virtual void unsetAttr(const OdIfc::OdIfcAttribute explicitAttrDef) override; /** \details Checks whether the specified attribute is set. \param explicitAttrDef [in] Attribute definition to test. \returns true if the specified attribute is set, false otherwise. */ virtual bool testAttr(const OdIfc::OdIfcAttribute explicitAttrDef) const override; /** \details Sets the specified attribute with a given value. \param explicitAttrDef [in] Explicit attribute definition to set. \param val [in] Value to set. \returns true if the value is successfully set for the specified attribute, false otherwise. */ virtual bool putAttr(const OdIfc::OdIfcAttribute explicitAttrDef, const OdRxValue &val) override; protected: // Fields declaration: OdDAIObjectId m_EndSweptArea; // IfcProfileDef }; /** \details A data type that represents a smart pointer to a IfcRevolvedAreaSolidTapered object. */ typedef OdSmartPtr IfcRevolvedAreaSolidTaperedPtr; } // namespace #include "TD_PackPop.h" #endif // _IFC4X3_RC1_IFCREVOLVEDAREASOLIDTAPERED_AUTO_IMPL_H