/* ---------------------------------------------------------------------- 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 LAMMPS directory. ------------------------------------------------------------------------- */ #include "string.h" #include "stdlib.h" #include "math.h" #include "fix_temp_rescale.h" #include "atom.h" #include "force.h" #include "group.h" #include "update.h" #include "domain.h" #include "region.h" #include "comm.h" #include "modify.h" #include "compute.h" #include "error.h" using namespace LAMMPS_NS; enum{NOBIAS,BIAS}; /* ---------------------------------------------------------------------- */ FixTempRescale::FixTempRescale(LAMMPS *lmp, int narg, char **arg) : Fix(lmp, narg, arg) { if (narg < 8) error->all("Illegal fix temp/rescale command"); nevery = atoi(arg[3]); if (nevery <= 0) error->all("Illegal fix temp/rescale command"); scalar_flag = 1; scalar_vector_freq = nevery; extscalar = 1; t_start = atof(arg[4]); t_stop = atof(arg[5]); t_window = atof(arg[6]); fraction = atof(arg[7]); // create a new compute temp // id = fix-ID + temp, compute group = fix group int n = strlen(id) + 6; id_temp = new char[n]; strcpy(id_temp,id); strcat(id_temp,"_temp"); char **newarg = new char*[6]; newarg[0] = id_temp; newarg[1] = group->names[igroup]; newarg[2] = (char *) "temp"; modify->add_compute(3,newarg); delete [] newarg; tflag = 1; energy = 0.0; } /* ---------------------------------------------------------------------- */ FixTempRescale::~FixTempRescale() { // delete temperature if fix created it if (tflag) modify->delete_compute(id_temp); delete [] id_temp; } /* ---------------------------------------------------------------------- */ int FixTempRescale::setmask() { int mask = 0; mask |= END_OF_STEP; mask |= THERMO_ENERGY; return mask; } /* ---------------------------------------------------------------------- */ void FixTempRescale::init() { int icompute = modify->find_compute(id_temp); if (icompute < 0) error->all("Temperature ID for fix temp/rescale does not exist"); temperature = modify->compute[icompute]; if (temperature->tempbias) which = BIAS; else which = NOBIAS; } /* ---------------------------------------------------------------------- */ void FixTempRescale::end_of_step() { double t_current = temperature->compute_scalar(); if (t_current == 0.0) error->all("Computed temperature for fix temp/rescale cannot be 0.0"); double delta = update->ntimestep - update->beginstep; delta /= update->endstep - update->beginstep; double t_target = t_start + delta * (t_stop-t_start); // rescale velocity of appropriate atoms if outside window if (fabs(t_current-t_target) > t_window) { t_target = t_current - fraction*(t_current-t_target); double factor = sqrt(t_target/t_current); double efactor = 0.5 * force->boltz * temperature->dof; double **v = atom->v; int *mask = atom->mask; int nlocal = atom->nlocal; if (which == NOBIAS) { energy += (t_current-t_target) * efactor; for (int i = 0; i < nlocal; i++) { if (mask[i] & groupbit) { v[i][0] *= factor; v[i][1] *= factor; v[i][2] *= factor; } } } else if (which == BIAS) { energy += (t_current-t_target) * efactor; for (int i = 0; i < nlocal; i++) { if (mask[i] & groupbit) { temperature->remove_bias(i,v[i]); v[i][0] *= factor; v[i][1] *= factor; v[i][2] *= factor; temperature->restore_bias(i,v[i]); } } } } } /* ---------------------------------------------------------------------- */ int FixTempRescale::modify_param(int narg, char **arg) { if (strcmp(arg[0],"temp") == 0) { if (narg < 2) error->all("Illegal fix_modify command"); if (tflag) { modify->delete_compute(id_temp); tflag = 0; } delete [] id_temp; int n = strlen(arg[1]) + 1; id_temp = new char[n]; strcpy(id_temp,arg[1]); int icompute = modify->find_compute(id_temp); if (icompute < 0) error->all("Could not find fix_modify temperature ID"); temperature = modify->compute[icompute]; if (temperature->tempflag == 0) error->all("Fix_modify temperature ID does not compute temperature"); if (temperature->igroup != igroup && comm->me == 0) error->warning("Group for fix_modify temp != fix group"); return 2; } return 0; } /* ---------------------------------------------------------------------- */ void FixTempRescale::reset_target(double t_new) { t_start = t_stop = t_new; } /* ---------------------------------------------------------------------- */ double FixTempRescale::compute_scalar() { return energy; }