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IMP Reference Guide
2.6.2
The Integrative Modeling Platform
IMP Manual
Reference Guide
Modules
Classes
Examples
include
IMP
algebra
geometric_primitive_macros.h
Go to the documentation of this file.
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/**
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* \file IMP/algebra/geometric_primitive_macros.h
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* \brief Various important macros for implementing geometry.
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*
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* Copyright 2007-2016 IMP Inventors. All rights reserved.
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*
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*/
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#ifndef IMPALGEBRA_GEOMETRIC_PRIMITIVE_MACROS_H
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#define IMPALGEBRA_GEOMETRIC_PRIMITIVE_MACROS_H
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//! Implement the needed namespace methods for a geometry type
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/** These are
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- IMP::algebra::get_surface_area()
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- IMP::algebra::get_volume()
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- IMP::algebra::get_bounding_box()
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- get/set geometry functions
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The name of the argument is g and the code snippets should return
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the expected value.
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*/
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#define IMP_VOLUME_GEOMETRY_METHODS(Name, name, area, volume, bounding_box) \
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IMP_VALUES(Name, Name##s); \
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/** \relates Name */
\
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inline double get_surface_area(const Name &g) { area; } \
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/** \relates Name */
\
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inline double get_volume(const Name &g) { volume; } \
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/** \relates Name */
\
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inline BoundingBoxD<3> get_bounding_box(const Name &g) { bounding_box; } \
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/** \relates Name */
\
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inline const Name &get_##name##_geometry(const Name &g) { return g; } \
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/** \relates Name */
\
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IMP_NO_SWIG( \
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inline void set_##name##_geometry(Name &g, const Name &v) { g = v; })
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//! Implement the needed namespace methods for a geometry type
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/** These are
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- IMP::algebra::get_surface_area()
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- IMP::algebra::get_volume()
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- IMP::algebra::get_bounding_box()
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- get/set geometry functions
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The name of the argument is g and the code snippets should return
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the expected value.
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*/
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#define IMP_VOLUME_GEOMETRY_METHODS_D(Name, name, area, volume, bounding_box) \
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/** \relates NameD */
\
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inline double get_surface_area(const Name##D<3> &g) { area; } \
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/** \relates NameD */
\
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inline double get_volume(const Name##D<3> &g) { volume; } \
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/** \relates NameD */
\
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template <int D> \
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inline BoundingBoxD<D> get_bounding_box(const Name##D<D> &g) { \
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bounding_box; \
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} \
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/** \relates NameD */
\
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IMP_NO_SWIG(template <int D> inline void set_##name##_d_geometry( \
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Name##D<D> &g, const Name##D<D> &v) { g = v; } \
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/** \relates NameD */
\
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template <int D> \
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inline const Name##D<D> &get_##name##_d_geometry( \
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const Name##D<D> &g) { return g; }) \
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/** \brief Typedef for Python. */
\
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typedef Name##D<1> Name##1D; \
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IMP_VALUES(Name##1D, Name##1Ds); \
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/** \brief Typedef for Python. */
\
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typedef Name##D<2> Name##2D; \
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IMP_VALUES(Name##2D, Name##2Ds); \
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/** \brief Typedef for Python. */
\
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typedef Name##D<3> Name##3D; \
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IMP_VALUES(Name##3D, Name##3Ds); \
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/** \brief Typedef for Python. */
\
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typedef Name##D<4> Name##4D; \
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IMP_VALUES(Name##4D, Name##4Ds); \
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/** \brief Typedef for Python. */
\
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typedef Name##D<5> Name##5D; \
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IMP_VALUES(Name##5D, Name##5Ds); \
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/** \brief Typedef for Python. */
\
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typedef Name##D<6> Name##6D; \
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IMP_VALUES(Name##6D, Name##6Ds); \
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/** \brief Typedef for Python. */
\
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typedef Name##D<-1> Name##KD; \
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IMP_VALUES(Name##KD, Name##KDs)
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//! Implement the needed namespace methods for a geometry type
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/** These are
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- IMP::algebra::get_bounding_box()
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- get/set geometry functions
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The name should not include the D.
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The name of the argument is g and the code snippets should return
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the expected value.
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*/
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#define IMP_LINEAR_GEOMETRY_METHODS(Name, name, bounding_box) \
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IMP_VALUES(Name, Name##s); \
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/** \relates Name */
\
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inline BoundingBoxD<3> get_bounding_box(const Name &g) { bounding_box; } \
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/** \relates Name */
\
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inline const Name &get_##name##_geometry(const Name &g) { return g; } \
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IMP_NO_SWIG( \
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inline void set_##name##_geometry(Name &g, const Name &gi) { g = gi; })
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//! Implement the needed namespace methods for a geometry type
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/** These are
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- IMP::algebra::get_area()
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- IMP::algebra::get_bounding_box()
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- get/set geometry functions
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The name of the argument is g and the code snippets should return
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the expected value.
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*/
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#define IMP_AREA_GEOMETRY_METHODS(Name, name, area, bounding_box) \
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IMP_VALUES(Name, Name##s); \
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/** \relates Name */
\
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inline double get_area(const Name &g) { area; } \
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/** \relates Name */
\
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inline BoundingBoxD<3> get_bounding_box(const Name &g) { bounding_box; } \
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/** \relates Name */
\
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inline const Name &get_##name##_geometry(const Name &g) { return g; } \
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/** \relates Name */
\
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IMP_NO_SWIG( \
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inline void set_##name##_geometry(Name &g, const Name &v) { g = v; })
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//! Implement the needed namespace methods for a geometry type
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/** These are
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- IMP::algebra::get_area()
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- IMP::algebra::get_bounding_box()
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- get/set geometry functions
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The name of the argument is g and the code snippets should return
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the expected value.
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*/
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#define IMP_AREA_GEOMETRY_METHODS_D(Name, name, area, bounding_box) \
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/** \relates Name */
\
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template <int D> \
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inline double get_area(const Name##D<D> &g) { \
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area; \
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} \
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/** \relates Name */
\
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template <int D> \
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inline BoundingBoxD<D> get_bounding_box(const Name##D<D> &g) { \
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bounding_box; \
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} \
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/** \relates Name */
\
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template <int D> \
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inline const Name &get_##name##_d_geometry(const Name##D<D> &g) { \
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return g; \
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} \
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/** \relates Name */
\
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IMP_NO_SWIG(template <int D> inline void set_##name##_d_geometry( \
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Name &g, const Name##D<D> &v) { g = v; }) \
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/** \brief Typedef for Python. */
\
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typedef Name##D<1> Name##1D; \
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IMP_VALUES(Name##1D, Name##1Ds); \
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/** \brief Typedef for Python. */
\
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typedef Name##D<2> Name##2D; \
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IMP_VALUES(Name##2D, Name##2Ds); \
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/** \brief Typedef for Python. */
\
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typedef Name##D<3> Name##3D; \
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IMP_VALUES(Name##3D, Name##3Ds); \
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/** \brief Typedef for Python. */
\
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typedef Name##D<4> Name##4D; \
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IMP_VALUES(Name##4D, Name##4Ds); \
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/** \brief Typedef for Python. */
\
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typedef Name##D<5> Name##5D; \
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IMP_VALUES(Name##5D, Name##5Ds); \
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/** \brief Typedef for Python. */
\
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typedef Name##D<6> Name##6D; \
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IMP_VALUES(Name##6D, Name##6Ds); \
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/** \brief Typedef for Python. */
\
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typedef Name##D<-1> Name##KD; \
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IMP_VALUES(Name##KD, Name##KDs)
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#endif
/* IMPALGEBRA_GEOMETRIC_PRIMITIVE_MACROS_H */