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/usr/include/liggghts/atom_vec_sphere.h is in libliggghts-dev 2.3.8-1build1.

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/* ----------------------------------------------------------------------
   LIGGGHTS - LAMMPS Improved for General Granular and Granular Heat
   Transfer Simulations

   LIGGGHTS is part of the CFDEMproject
   www.liggghts.com | www.cfdem.com

   This file was modified with respect to the release in LAMMPS
   Modifications are Copyright 2009-2012 JKU Linz
                     Copyright 2012-     DCS Computing GmbH, Linz

   LAMMPS - Large-scale Atomic/Molecular Massively Parallel Simulator
   http://lammps.sandia.gov, Sandia National Laboratories
   Steve Plimpton, sjplimp@sandia.gov

   Copyright (2003) Sandia Corporation.  Under the terms of Contract
   DE-AC04-94AL85000 with Sandia Corporation, the U.S. Government retains
   certain rights in this software.  This software is distributed under
   the GNU General Public License.

   See the README file in the top-level directory.
------------------------------------------------------------------------- */

#ifdef ATOM_CLASS

AtomStyle(sphere,AtomVecSphere)

AtomStyle(granular,AtomVecSphere) 

#else

#ifndef LMP_ATOM_VEC_SPHERE_H
#define LMP_ATOM_VEC_SPHERE_H

#include "atom_vec.h"

namespace LAMMPS_NS {

class AtomVecSphere : public AtomVec {
 public:
  AtomVecSphere(class LAMMPS *, int, char **);
  ~AtomVecSphere() {}
  void init();
  void grow(int);
  void grow_reset();
  void copy(int, int, int);
  int pack_comm(int, int *, double *, int, int *);
  int pack_comm_vel(int, int *, double *, int, int *);
  int pack_comm_vel_wedge(int, int *, double *, int, int *); 
  int pack_comm_hybrid(int, int *, double *);
  void unpack_comm(int, int, double *);
  void unpack_comm_vel(int, int, double *);
  int unpack_comm_hybrid(int, int, double *);
  int pack_reverse(int, int, double *);
  int pack_reverse_hybrid(int, int, double *);
  void unpack_reverse(int, int *, double *);
  int unpack_reverse_hybrid(int, int *, double *);
  int pack_border(int, int *, double *, int, int *);
  int pack_border_vel(int, int *, double *, int, int *);
  int pack_border_vel_wedge(int, int *, double *, int, int *); 
  int pack_border_hybrid(int, int *, double *);
  void unpack_border(int, int, double *);
  void unpack_border_vel(int, int, double *);
  int unpack_border_hybrid(int, int, double *);
  int pack_exchange(int, double *);
  int unpack_exchange(double *);
  int size_restart();
  int pack_restart(int, double *);
  int unpack_restart(double *);
  void create_atom(int, double *);
  void data_atom(double *, int, char **);
  int data_atom_hybrid(int, char **);
  void data_vel(int, char **);
  int data_vel_hybrid(int, char **);
  bigint memory_usage();

 private:
  int *tag,*type,*mask,*image;
  double **x,**v,**f;
  double *radius,*density,*rmass;
  double **omega,**torque;
  int radvary;
};

}

#endif
#endif

/* ERROR/WARNING messages:

E: Per-processor system is too big

The number of owned atoms plus ghost atoms on a single
processor must fit in 32-bit integer.

E: Invalid atom ID in Atoms section of data file

Atom IDs must be positive integers.

E: Invalid atom type in Atoms section of data file

Atom types must range from 1 to specified # of types.

E: Invalid radius in Atoms section of data file

Radius must be >= 0.0.

E: Invalid density in Atoms section of data file

Density value cannot be <= 0.0.

*/