// clang-format off /* ---------------------------------------------------------------------- LAMMPS - Large-scale Atomic/Molecular Massively Parallel Simulator https://www.lammps.org/, 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 LAMMPS directory. ------------------------------------------------------------------------- */ #include "fix_nve_asphere_noforce.h" #include "math_extra.h" #include "atom.h" #include "atom_vec_ellipsoid.h" #include "error.h" using namespace LAMMPS_NS; using namespace FixConst; /* ---------------------------------------------------------------------- */ FixNVEAsphereNoforce::FixNVEAsphereNoforce(LAMMPS *lmp, int narg, char **arg) : FixNVENoforce(lmp, narg, arg) { if (narg != 3) error->all(FLERR,"Illegal fix nve/asphere/noforce command"); time_integrate = 1; } /* ---------------------------------------------------------------------- */ void FixNVEAsphereNoforce::init() { // error check avec = (AtomVecEllipsoid *) atom->style_match("ellipsoid"); if (!atom->ellipsoid_flag) error->all(FLERR,"Fix nve/asphere/noforce requires atom style ellipsoid"); FixNVENoforce::init(); dtq = 0.5 * dtv; // check that all particles are finite-size ellipsoids // no point particles allowed, spherical is OK int *ellipsoid = atom->ellipsoid; int *mask = atom->mask; int nlocal = atom->nlocal; for (int i = 0; i < nlocal; i++) if (mask[i] & groupbit) if (ellipsoid[i] < 0) error->one(FLERR,"Fix nve/asphere/noforce requires extended particles"); } /* ---------------------------------------------------------------------- */ void FixNVEAsphereNoforce::initial_integrate(int /*vflag*/) { AtomVecEllipsoid::Bonus *bonus; if (avec) bonus = avec->bonus; double **x = atom->x; double **v = atom->v; double **angmom = atom->angmom; double *rmass = atom->rmass; int *ellipsoid = atom->ellipsoid; int *mask = atom->mask; int nlocal = atom->nlocal; if (igroup == atom->firstgroup) nlocal = atom->nfirst; double *shape,*quat; double inertia[3],omega[3]; // update positions and quaternions for all particles for (int i = 0; i < nlocal; i++) { if (mask[i] & groupbit) { x[i][0] += dtv * v[i][0]; x[i][1] += dtv * v[i][1]; x[i][2] += dtv * v[i][2]; // principal moments of inertia shape = bonus[ellipsoid[i]].shape; quat = bonus[ellipsoid[i]].quat; inertia[0] = rmass[i] * (shape[1]*shape[1]+shape[2]*shape[2]) / 5.0; inertia[1] = rmass[i] * (shape[0]*shape[0]+shape[2]*shape[2]) / 5.0; inertia[2] = rmass[i] * (shape[0]*shape[0]+shape[1]*shape[1]) / 5.0; // compute omega at 1/2 step from angmom at 1/2 step and current q // update quaternion a full step via Richardson iteration // returns new normalized quaternion MathExtra::mq_to_omega(angmom[i],quat,inertia,omega); MathExtra::richardson(quat,angmom[i],omega,inertia,dtq); } } }