////////////////////////////////////////////////////////////////////////////// // // Copyright 2026 Autodesk, Inc. All rights reserved. // // Use of this software is subject to the terms of the Autodesk license // agreement provided at the time of installation or download, or which // otherwise accompanies this software. // ////////////////////////////////////////////////////////////////////////////// #pragma once #include #include "../FusionTypeDefs.h" // THIS CLASS WILL BE VISIBLE TO AN API CLIENT. // THIS HEADER FILE WILL BE GENERATED FROM NIDL. #include #ifdef FUSIONXINTERFACE_EXPORTS # ifdef __COMPILING_ADSK_FUSION_SKETCHCONICCURVES_CPP__ # define ADSK_FUSION_SKETCHCONICCURVES_API XI_EXPORT # else # define ADSK_FUSION_SKETCHCONICCURVES_API # endif #else # define ADSK_FUSION_SKETCHCONICCURVES_API XI_IMPORT #endif namespace adsk { namespace fusion { class SketchConicCurve; }} namespace adsk { namespace fusion { /// The collection of conic curves in a sketch. This provides access to the existing /// conic curves and supports the method to create new conic curves. class SketchConicCurves : public core::Base { public: /// Function that returns the specified conic curve using an index into the collection. /// index : The index of the item within the collection to return. The first item in the collection has an index of 0. /// Returns the specified item or null if an invalid index was specified. core::Ptr item(size_t index) const; /// Returns the number of conic curves in the sketch. size_t count() const; /// Creates a new conic curve. /// startPoint : The start point of the conic curve. This can be either an existing SketchPoint or a Point3D object. /// endPoint : The end point of the conic curve. This can be either an existing SketchPoint or a Point3D object. /// apexPoint : The apex point of the conic curve. This can be either an existing SketchPoint or a Point3D object. /// rhoValue : Double that specifies the rho value for the conic. This value must be greater than zero and less /// than one. /// Returns the new conic curve or null if the creation failed. core::Ptr add(const core::Ptr& startPoint, const core::Ptr& endPoint, const core::Ptr& apexPoint, double rhoValue); typedef SketchConicCurve iterable_type; template void copyTo(OutputIterator result); ADSK_FUSION_SKETCHCONICCURVES_API static const char* classType(); ADSK_FUSION_SKETCHCONICCURVES_API const char* objectType() const override; ADSK_FUSION_SKETCHCONICCURVES_API void* queryInterface(const char* id) const override; ADSK_FUSION_SKETCHCONICCURVES_API static const char* interfaceId() { return classType(); } private: // Raw interface virtual SketchConicCurve* item_raw(size_t index) const = 0; virtual size_t count_raw() const = 0; virtual SketchConicCurve* add_raw(core::Base* startPoint, core::Base* endPoint, core::Base* apexPoint, double rhoValue) = 0; }; // Inline wrappers inline core::Ptr SketchConicCurves::item(size_t index) const { core::Ptr res = item_raw(index); return res; } inline size_t SketchConicCurves::count() const { size_t res = count_raw(); return res; } inline core::Ptr SketchConicCurves::add(const core::Ptr& startPoint, const core::Ptr& endPoint, const core::Ptr& apexPoint, double rhoValue) { core::Ptr res = add_raw(startPoint.get(), endPoint.get(), apexPoint.get(), rhoValue); return res; } template inline void SketchConicCurves::copyTo(OutputIterator result) { for (size_t i = 0;i < count();++i) { *result = item(i); ++result; } } }// namespace fusion }// namespace adsk #undef ADSK_FUSION_SKETCHCONICCURVES_API