forked from lijiext/lammps
1015 lines
31 KiB
C++
1015 lines
31 KiB
C++
/* ----------------------------------------------------------------------
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LAMMPS - Large-scale Atomic/Molecular Massively Parallel Simulator
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http://lammps.sandia.gov, Sandia National Laboratories
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Steve Plimpton, sjplimp@sandia.gov
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Copyright (2003) Sandia Corporation. Under the terms of Contract
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DE-AC04-94AL85000 with Sandia Corporation, the U.S. Government retains
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certain rights in this software. This software is distributed under
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the GNU General Public License.
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See the README file in the top-level LAMMPS directory.
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------------------------------------------------------------------------- */
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#include "string.h"
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#include "stdlib.h"
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#include "math.h"
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#include "fix_move.h"
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#include "atom.h"
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#include "group.h"
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#include "update.h"
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#include "modify.h"
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#include "force.h"
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#include "domain.h"
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#include "lattice.h"
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#include "comm.h"
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#include "respa.h"
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#include "input.h"
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#include "variable.h"
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#include "math_const.h"
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#include "memory.h"
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#include "error.h"
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using namespace LAMMPS_NS;
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using namespace FixConst;
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using namespace MathConst;
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enum{LINEAR,WIGGLE,ROTATE,VARIABLE};
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enum{EQUAL,ATOM};
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/* ---------------------------------------------------------------------- */
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FixMove::FixMove(LAMMPS *lmp, int narg, char **arg) :
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Fix(lmp, narg, arg)
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{
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if (narg < 4) error->all(FLERR,"Illegal fix move command");
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restart_global = 1;
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restart_peratom = 1;
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peratom_flag = 1;
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size_peratom_cols = 3;
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peratom_freq = 1;
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time_integrate = 1;
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create_attribute = 1;
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// parse args
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int iarg;
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xvarstr = yvarstr = zvarstr = NULL;
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vxvarstr = vyvarstr = vzvarstr = NULL;
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if (strcmp(arg[3],"linear") == 0) {
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if (narg < 7) error->all(FLERR,"Illegal fix move command");
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iarg = 7;
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mstyle = LINEAR;
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if (strcmp(arg[4],"NULL") == 0) vxflag = 0;
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else {
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vxflag = 1;
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vx = force->numeric(FLERR,arg[4]);
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}
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if (strcmp(arg[5],"NULL") == 0) vyflag = 0;
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else {
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vyflag = 1;
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vy = force->numeric(FLERR,arg[5]);
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}
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if (strcmp(arg[6],"NULL") == 0) vzflag = 0;
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else {
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vzflag = 1;
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vz = force->numeric(FLERR,arg[6]);
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}
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} else if (strcmp(arg[3],"wiggle") == 0) {
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if (narg < 8) error->all(FLERR,"Illegal fix move command");
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iarg = 8;
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mstyle = WIGGLE;
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if (strcmp(arg[4],"NULL") == 0) axflag = 0;
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else {
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axflag = 1;
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ax = force->numeric(FLERR,arg[4]);
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}
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if (strcmp(arg[5],"NULL") == 0) ayflag = 0;
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else {
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ayflag = 1;
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ay = force->numeric(FLERR,arg[5]);
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}
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if (strcmp(arg[6],"NULL") == 0) azflag = 0;
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else {
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azflag = 1;
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az = force->numeric(FLERR,arg[6]);
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}
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period = force->numeric(FLERR,arg[7]);
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} else if (strcmp(arg[3],"rotate") == 0) {
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if (narg < 11) error->all(FLERR,"Illegal fix move command");
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iarg = 11;
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mstyle = ROTATE;
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point[0] = force->numeric(FLERR,arg[4]);
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point[1] = force->numeric(FLERR,arg[5]);
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point[2] = force->numeric(FLERR,arg[6]);
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axis[0] = force->numeric(FLERR,arg[7]);
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axis[1] = force->numeric(FLERR,arg[8]);
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axis[2] = force->numeric(FLERR,arg[9]);
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period = force->numeric(FLERR,arg[10]);
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} else if (strcmp(arg[3],"variable") == 0) {
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if (narg < 10) error->all(FLERR,"Illegal fix move command");
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iarg = 10;
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mstyle = VARIABLE;
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if (strcmp(arg[4],"NULL") == 0) xvarstr = NULL;
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else if (strstr(arg[4],"v_") == arg[4]) {
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int n = strlen(&arg[4][2]) + 1;
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xvarstr = new char[n];
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strcpy(xvarstr,&arg[4][2]);
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} else error->all(FLERR,"Illegal fix move command");
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if (strcmp(arg[5],"NULL") == 0) yvarstr = NULL;
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else if (strstr(arg[5],"v_") == arg[5]) {
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int n = strlen(&arg[5][2]) + 1;
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yvarstr = new char[n];
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strcpy(yvarstr,&arg[5][2]);
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} else error->all(FLERR,"Illegal fix move command");
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if (strcmp(arg[6],"NULL") == 0) zvarstr = NULL;
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else if (strstr(arg[6],"v_") == arg[6]) {
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int n = strlen(&arg[6][2]) + 1;
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zvarstr = new char[n];
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strcpy(zvarstr,&arg[6][2]);
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} else error->all(FLERR,"Illegal fix move command");
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if (strcmp(arg[7],"NULL") == 0) vxvarstr = NULL;
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else if (strstr(arg[7],"v_") == arg[7]) {
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int n = strlen(&arg[7][2]) + 1;
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vxvarstr = new char[n];
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strcpy(vxvarstr,&arg[7][2]);
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} else error->all(FLERR,"Illegal fix move command");
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if (strcmp(arg[8],"NULL") == 0) vyvarstr = NULL;
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else if (strstr(arg[8],"v_") == arg[8]) {
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int n = strlen(&arg[8][2]) + 1;
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vyvarstr = new char[n];
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strcpy(vyvarstr,&arg[8][2]);
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} else error->all(FLERR,"Illegal fix move command");
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if (strcmp(arg[9],"NULL") == 0) vzvarstr = NULL;
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else if (strstr(arg[9],"v_") == arg[9]) {
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int n = strlen(&arg[9][2]) + 1;
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vzvarstr = new char[n];
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strcpy(vzvarstr,&arg[9][2]);
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} else error->all(FLERR,"Illegal fix move command");
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} else error->all(FLERR,"Illegal fix move command");
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// optional args
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int scaleflag = 1;
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while (iarg < narg) {
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if (strcmp(arg[iarg],"units") == 0) {
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if (iarg+2 > narg) error->all(FLERR,"Illegal fix move command");
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if (strcmp(arg[iarg+1],"box") == 0) scaleflag = 0;
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else if (strcmp(arg[iarg+1],"lattice") == 0) scaleflag = 1;
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else error->all(FLERR,"Illegal fix move command");
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iarg += 2;
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} else error->all(FLERR,"Illegal fix move command");
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}
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// error checks and warnings
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if (domain->dimension == 2) {
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if (mstyle == LINEAR && vzflag && vz != 0.0)
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error->all(FLERR,"Fix move cannot set linear z motion for 2d problem");
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if (mstyle == WIGGLE && azflag && az != 0.0)
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error->all(FLERR,"Fix move cannot set wiggle z motion for 2d problem");
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if (mstyle == ROTATE && (axis[0] != 0.0 || axis[1] != 0.0))
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error->all(FLERR,
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"Fix move cannot rotate aroung non z-axis for 2d problem");
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if (mstyle == VARIABLE && (zvarstr || vzvarstr))
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error->all(FLERR,
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"Fix move cannot define z or vz variable for 2d problem");
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}
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if (atom->angmom_flag && comm->me == 0)
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error->warning(FLERR,"Fix move does not update angular momentum");
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if (atom->ellipsoid_flag && comm->me == 0)
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error->warning(FLERR,"Fix move does not update quaternions");
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// setup scaling and apply scaling factors to velocity & amplitude
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if ((mstyle == LINEAR || mstyle == WIGGLE || mstyle == ROTATE) &&
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scaleflag) {
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double xscale,yscale,zscale;
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if (scaleflag) {
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xscale = domain->lattice->xlattice;
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yscale = domain->lattice->ylattice;
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zscale = domain->lattice->zlattice;
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}
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else xscale = yscale = zscale = 1.0;
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if (mstyle == LINEAR) {
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if (vxflag) vx *= xscale;
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if (vyflag) vy *= yscale;
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if (vzflag) vz *= zscale;
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} else if (mstyle == WIGGLE) {
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if (axflag) ax *= xscale;
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if (ayflag) ay *= yscale;
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if (azflag) az *= zscale;
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} else if (mstyle == ROTATE) {
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point[0] *= xscale;
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point[1] *= yscale;
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point[2] *= zscale;
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}
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}
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// set omega_rotate from period
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if (mstyle == WIGGLE || mstyle == ROTATE) omega_rotate = 2.0*MY_PI / period;
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// runit = unit vector along rotation axis
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if (mstyle == ROTATE) {
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double len = sqrt(axis[0]*axis[0] + axis[1]*axis[1] + axis[2]*axis[2]);
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if (len == 0.0)
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error->all(FLERR,"Zero length rotation vector with fix move");
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runit[0] = axis[0]/len;
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runit[1] = axis[1]/len;
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runit[2] = axis[2]/len;
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}
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// set omega_flag if particles store omega
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omega_flag = atom->omega_flag;
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// perform initial allocation of atom-based array
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// register with Atom class
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xoriginal = NULL;
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grow_arrays(atom->nmax);
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atom->add_callback(0);
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atom->add_callback(1);
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maxatom = 0;
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displace = velocity = NULL;
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// xoriginal = initial unwrapped positions of atoms
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double **x = atom->x;
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imageint *image = atom->image;
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int *mask = atom->mask;
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int nlocal = atom->nlocal;
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for (int i = 0; i < nlocal; i++) {
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if (mask[i] & groupbit) domain->unmap(x[i],image[i],xoriginal[i]);
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else xoriginal[i][0] = xoriginal[i][1] = xoriginal[i][2] = 0.0;
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}
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time_origin = update->ntimestep;
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}
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/* ---------------------------------------------------------------------- */
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FixMove::~FixMove()
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{
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// unregister callbacks to this fix from Atom class
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atom->delete_callback(id,0);
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atom->delete_callback(id,1);
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// delete locally stored arrays
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memory->destroy(xoriginal);
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memory->destroy(displace);
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memory->destroy(velocity);
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delete [] xvarstr;
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delete [] yvarstr;
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delete [] zvarstr;
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delete [] vxvarstr;
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delete [] vyvarstr;
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delete [] vzvarstr;
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}
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/* ---------------------------------------------------------------------- */
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int FixMove::setmask()
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{
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int mask = 0;
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mask |= INITIAL_INTEGRATE;
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mask |= INITIAL_INTEGRATE_RESPA;
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mask |= FINAL_INTEGRATE;
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mask |= FINAL_INTEGRATE_RESPA;
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return mask;
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}
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/* ---------------------------------------------------------------------- */
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void FixMove::init()
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{
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dt = update->dt;
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dtv = update->dt;
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dtf = 0.5 * update->dt * force->ftm2v;
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// set indices and style of all variables
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displaceflag = velocityflag = 0;
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if (mstyle == VARIABLE) {
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if (xvarstr) {
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xvar = input->variable->find(xvarstr);
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if (xvar < 0) error->all(FLERR,
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"Variable name for fix move does not exist");
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if (input->variable->equalstyle(xvar)) xvarstyle = EQUAL;
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else if (input->variable->atomstyle(xvar)) xvarstyle = ATOM;
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else error->all(FLERR,"Variable for fix move is invalid style");
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}
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if (yvarstr) {
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yvar = input->variable->find(yvarstr);
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if (yvar < 0) error->all(FLERR,
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"Variable name for fix move does not exist");
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if (input->variable->equalstyle(yvar)) yvarstyle = EQUAL;
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else if (input->variable->atomstyle(yvar)) yvarstyle = ATOM;
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else error->all(FLERR,"Variable for fix move is invalid style");
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}
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if (zvarstr) {
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zvar = input->variable->find(zvarstr);
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if (zvar < 0) error->all(FLERR,
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"Variable name for fix move does not exist");
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if (input->variable->equalstyle(zvar)) zvarstyle = EQUAL;
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else if (input->variable->atomstyle(zvar)) zvarstyle = ATOM;
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else error->all(FLERR,"Variable for fix move is invalid style");
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}
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if (vxvarstr) {
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vxvar = input->variable->find(vxvarstr);
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if (vxvar < 0) error->all(FLERR,
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"Variable name for fix move does not exist");
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if (input->variable->equalstyle(vxvar)) vxvarstyle = EQUAL;
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else if (input->variable->atomstyle(vxvar)) vxvarstyle = ATOM;
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else error->all(FLERR,"Variable for fix move is invalid style");
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}
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if (vyvarstr) {
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vyvar = input->variable->find(vyvarstr);
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if (vyvar < 0) error->all(FLERR,
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"Variable name for fix move does not exist");
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if (input->variable->equalstyle(vyvar)) vyvarstyle = EQUAL;
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else if (input->variable->atomstyle(vyvar)) vyvarstyle = ATOM;
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else error->all(FLERR,"Variable for fix move is invalid style");
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}
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if (vzvarstr) {
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vzvar = input->variable->find(vzvarstr);
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if (vzvar < 0) error->all(FLERR,
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"Variable name for fix move does not exist");
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if (input->variable->equalstyle(vzvar)) vzvarstyle = EQUAL;
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else if (input->variable->atomstyle(vzvar)) vzvarstyle = ATOM;
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else error->all(FLERR,"Variable for fix move is invalid style");
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}
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if (xvarstr && xvarstyle == ATOM) displaceflag = 1;
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if (yvarstr && yvarstyle == ATOM) displaceflag = 1;
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if (zvarstr && zvarstyle == ATOM) displaceflag = 1;
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if (vxvarstr && vxvarstyle == ATOM) velocityflag = 1;
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if (vyvarstr && vyvarstyle == ATOM) velocityflag = 1;
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if (vzvarstr && vzvarstyle == ATOM) velocityflag = 1;
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}
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if (strstr(update->integrate_style,"respa"))
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nlevels_respa = ((Respa *) update->integrate)->nlevels;
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}
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/* ----------------------------------------------------------------------
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set x,v of particles
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------------------------------------------------------------------------- */
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void FixMove::initial_integrate(int vflag)
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{
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double dtfm;
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double xold[3],a[3],b[3],c[3],d[3],disp[3];
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double ddotr,dx,dy,dz;
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double delta = (update->ntimestep - time_origin) * dt;
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double **x = atom->x;
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double **v = atom->v;
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double **f = atom->f;
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double **omega = atom->omega;
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double *rmass = atom->rmass;
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double *mass = atom->mass;
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int *type = atom->type;
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int *mask = atom->mask;
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int nlocal = atom->nlocal;
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// for linear: X = X0 + V*dt
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if (mstyle == LINEAR) {
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for (int i = 0; i < nlocal; i++) {
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if (mask[i] & groupbit) {
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xold[0] = x[i][0];
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xold[1] = x[i][1];
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xold[2] = x[i][2];
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if (vxflag) {
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v[i][0] = vx;
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x[i][0] = xoriginal[i][0] + vx*delta;
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} else if (rmass) {
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dtfm = dtf / rmass[i];
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v[i][0] += dtfm * f[i][0];
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x[i][0] += dtv * v[i][0];
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} else {
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dtfm = dtf / mass[type[i]];
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v[i][0] += dtfm * f[i][0];
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x[i][0] += dtv * v[i][0];
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}
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if (vyflag) {
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v[i][1] = vy;
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x[i][1] = xoriginal[i][1] + vy*delta;
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} else if (rmass) {
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dtfm = dtf / rmass[i];
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v[i][1] += dtfm * f[i][1];
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x[i][1] += dtv * v[i][1];
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} else {
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dtfm = dtf / mass[type[i]];
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v[i][1] += dtfm * f[i][1];
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x[i][1] += dtv * v[i][1];
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}
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if (vzflag) {
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v[i][2] = vz;
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x[i][2] = xoriginal[i][2] + vz*delta;
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} else if (rmass) {
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dtfm = dtf / rmass[i];
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v[i][2] += dtfm * f[i][2];
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x[i][2] += dtv * v[i][2];
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} else {
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dtfm = dtf / mass[type[i]];
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v[i][2] += dtfm * f[i][2];
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x[i][2] += dtv * v[i][2];
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}
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domain->remap_near(x[i],xold);
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}
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}
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// for wiggle: X = X0 + A sin(w*dt)
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} else if (mstyle == WIGGLE) {
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double arg = omega_rotate * delta;
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double sine = sin(arg);
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double cosine = cos(arg);
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for (int i = 0; i < nlocal; i++) {
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if (mask[i] & groupbit) {
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xold[0] = x[i][0];
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xold[1] = x[i][1];
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xold[2] = x[i][2];
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if (axflag) {
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v[i][0] = ax*omega_rotate*cosine;
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x[i][0] = xoriginal[i][0] + ax*sine;
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} else if (rmass) {
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dtfm = dtf / rmass[i];
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v[i][0] += dtfm * f[i][0];
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x[i][0] += dtv * v[i][0];
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} else {
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dtfm = dtf / mass[type[i]];
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v[i][0] += dtfm * f[i][0];
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x[i][0] += dtv * v[i][0];
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}
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if (ayflag) {
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v[i][1] = ay*omega_rotate*cosine;
|
|
x[i][1] = xoriginal[i][1] + ay*sine;
|
|
} else if (rmass) {
|
|
dtfm = dtf / rmass[i];
|
|
v[i][1] += dtfm * f[i][1];
|
|
x[i][1] += dtv * v[i][1];
|
|
} else {
|
|
dtfm = dtf / mass[type[i]];
|
|
v[i][1] += dtfm * f[i][1];
|
|
x[i][1] += dtv * v[i][1];
|
|
}
|
|
|
|
if (azflag) {
|
|
v[i][2] = az*omega_rotate*cosine;
|
|
x[i][2] = xoriginal[i][2] + az*sine;
|
|
} else if (rmass) {
|
|
dtfm = dtf / rmass[i];
|
|
v[i][2] += dtfm * f[i][2];
|
|
x[i][2] += dtv * v[i][2];
|
|
} else {
|
|
dtfm = dtf / mass[type[i]];
|
|
v[i][2] += dtfm * f[i][2];
|
|
x[i][2] += dtv * v[i][2];
|
|
}
|
|
|
|
domain->remap_near(x[i],xold);
|
|
}
|
|
}
|
|
|
|
// for rotate by right-hand rule around omega:
|
|
// P = point = vector = point of rotation
|
|
// R = vector = axis of rotation
|
|
// w = omega of rotation (from period)
|
|
// X0 = xoriginal = initial coord of atom
|
|
// R0 = runit = unit vector for R
|
|
// D = X0 - P = vector from P to X0
|
|
// C = (D dot R0) R0 = projection of atom coord onto R line
|
|
// A = D - C = vector from R line to X0
|
|
// B = R0 cross A = vector perp to A in plane of rotation
|
|
// A,B define plane of circular rotation around R line
|
|
// X = P + C + A cos(w*dt) + B sin(w*dt)
|
|
// V = w R0 cross (A cos(w*dt) + B sin(w*dt))
|
|
|
|
} else if (mstyle == ROTATE) {
|
|
double arg = omega_rotate * delta;
|
|
double sine = sin(arg);
|
|
double cosine = cos(arg);
|
|
|
|
for (int i = 0; i < nlocal; i++) {
|
|
if (mask[i] & groupbit) {
|
|
xold[0] = x[i][0];
|
|
xold[1] = x[i][1];
|
|
xold[2] = x[i][2];
|
|
|
|
d[0] = xoriginal[i][0] - point[0];
|
|
d[1] = xoriginal[i][1] - point[1];
|
|
d[2] = xoriginal[i][2] - point[2];
|
|
ddotr = d[0]*runit[0] + d[1]*runit[1] + d[2]*runit[2];
|
|
c[0] = ddotr*runit[0];
|
|
c[1] = ddotr*runit[1];
|
|
c[2] = ddotr*runit[2];
|
|
a[0] = d[0] - c[0];
|
|
a[1] = d[1] - c[1];
|
|
a[2] = d[2] - c[2];
|
|
b[0] = runit[1]*a[2] - runit[2]*a[1];
|
|
b[1] = runit[2]*a[0] - runit[0]*a[2];
|
|
b[2] = runit[0]*a[1] - runit[1]*a[0];
|
|
disp[0] = a[0]*cosine + b[0]*sine;
|
|
disp[1] = a[1]*cosine + b[1]*sine;
|
|
disp[2] = a[2]*cosine + b[2]*sine;
|
|
|
|
x[i][0] = point[0] + c[0] + disp[0];
|
|
x[i][1] = point[1] + c[1] + disp[1];
|
|
x[i][2] = point[2] + c[2] + disp[2];
|
|
v[i][0] = omega_rotate * (runit[1]*disp[2] - runit[2]*disp[1]);
|
|
v[i][1] = omega_rotate * (runit[2]*disp[0] - runit[0]*disp[2]);
|
|
v[i][2] = omega_rotate * (runit[0]*disp[1] - runit[1]*disp[0]);
|
|
if (omega_flag) {
|
|
omega[i][0] = omega_rotate*runit[0];
|
|
omega[i][1] = omega_rotate*runit[1];
|
|
omega[i][2] = omega_rotate*runit[2];
|
|
}
|
|
|
|
domain->remap_near(x[i],xold);
|
|
}
|
|
}
|
|
|
|
// for variable: compute x,v from variables
|
|
|
|
} else if (mstyle == VARIABLE) {
|
|
|
|
// reallocate displace and velocity arrays as necessary
|
|
|
|
if ((displaceflag || velocityflag) && nlocal > maxatom) {
|
|
maxatom = atom->nmax;
|
|
if (displaceflag) {
|
|
memory->destroy(displace);
|
|
memory->create(displace,maxatom,3,"move:displace");
|
|
}
|
|
if (velocityflag) {
|
|
memory->destroy(velocity);
|
|
memory->create(velocity,maxatom,3,"move:velocity");
|
|
}
|
|
}
|
|
|
|
// pre-compute variable values, wrap with clear/add
|
|
|
|
modify->clearstep_compute();
|
|
|
|
if (xvarstr) {
|
|
if (xvarstyle == EQUAL) dx = input->variable->compute_equal(xvar);
|
|
else if (displace)
|
|
input->variable->compute_atom(xvar,igroup,&displace[0][0],3,0);
|
|
}
|
|
if (yvarstr) {
|
|
if (yvarstyle == EQUAL) dy = input->variable->compute_equal(yvar);
|
|
else if (displace)
|
|
input->variable->compute_atom(yvar,igroup,&displace[0][1],3,0);
|
|
}
|
|
if (zvarstr) {
|
|
if (zvarstyle == EQUAL) dz = input->variable->compute_equal(zvar);
|
|
else if (displace)
|
|
input->variable->compute_atom(zvar,igroup,&displace[0][2],3,0);
|
|
}
|
|
if (vxvarstr) {
|
|
if (vxvarstyle == EQUAL) vx = input->variable->compute_equal(vxvar);
|
|
else if (velocity)
|
|
input->variable->compute_atom(vxvar,igroup,&velocity[0][0],3,0);
|
|
}
|
|
if (vyvarstr) {
|
|
if (vyvarstyle == EQUAL) vy = input->variable->compute_equal(vyvar);
|
|
else if (velocity)
|
|
input->variable->compute_atom(vyvar,igroup,&velocity[0][1],3,0);
|
|
}
|
|
if (vzvarstr) {
|
|
if (vzvarstyle == EQUAL) vz = input->variable->compute_equal(vzvar);
|
|
else if (velocity)
|
|
input->variable->compute_atom(vzvar,igroup,&velocity[0][2],3,0);
|
|
}
|
|
|
|
modify->addstep_compute(update->ntimestep + 1);
|
|
|
|
// update x,v
|
|
|
|
for (int i = 0; i < nlocal; i++) {
|
|
if (mask[i] & groupbit) {
|
|
xold[0] = x[i][0];
|
|
xold[1] = x[i][1];
|
|
xold[2] = x[i][2];
|
|
|
|
if (xvarstr && vxvarstr) {
|
|
if (vxvarstyle == EQUAL) v[i][0] = vx;
|
|
else v[i][0] = velocity[i][0];
|
|
if (xvarstyle == EQUAL) x[i][0] = xoriginal[i][0] + dx;
|
|
else x[i][0] = xoriginal[i][0] + displace[i][0];
|
|
} else if (xvarstr) {
|
|
if (xvarstyle == EQUAL) x[i][0] = xoriginal[i][0] + dx;
|
|
else x[i][0] = xoriginal[i][0] + displace[i][0];
|
|
} else if (vxvarstr) {
|
|
if (vxvarstyle == EQUAL) v[i][0] = vx;
|
|
else v[i][0] = velocity[i][0];
|
|
if (rmass) {
|
|
dtfm = dtf / rmass[i];
|
|
x[i][0] += dtv * v[i][0];
|
|
} else {
|
|
dtfm = dtf / mass[type[i]];
|
|
x[i][0] += dtv * v[i][0];
|
|
}
|
|
} else {
|
|
if (rmass) {
|
|
dtfm = dtf / rmass[i];
|
|
v[i][0] += dtfm * f[i][0];
|
|
x[i][0] += dtv * v[i][0];
|
|
} else {
|
|
dtfm = dtf / mass[type[i]];
|
|
v[i][0] += dtfm * f[i][0];
|
|
x[i][0] += dtv * v[i][0];
|
|
}
|
|
}
|
|
|
|
if (yvarstr && vyvarstr) {
|
|
if (vyvarstyle == EQUAL) v[i][1] = vy;
|
|
else v[i][1] = velocity[i][1];
|
|
if (yvarstyle == EQUAL) x[i][1] = xoriginal[i][1] + dy;
|
|
else x[i][1] = xoriginal[i][1] + displace[i][1];
|
|
} else if (yvarstr) {
|
|
if (yvarstyle == EQUAL) x[i][1] = xoriginal[i][1] + dy;
|
|
else x[i][1] = xoriginal[i][1] + displace[i][1];
|
|
} else if (vyvarstr) {
|
|
if (vyvarstyle == EQUAL) v[i][1] = vy;
|
|
else v[i][1] = velocity[i][1];
|
|
if (rmass) {
|
|
dtfm = dtf / rmass[i];
|
|
x[i][1] += dtv * v[i][1];
|
|
} else {
|
|
dtfm = dtf / mass[type[i]];
|
|
x[i][1] += dtv * v[i][1];
|
|
}
|
|
} else {
|
|
if (rmass) {
|
|
dtfm = dtf / rmass[i];
|
|
v[i][1] += dtfm * f[i][1];
|
|
x[i][1] += dtv * v[i][1];
|
|
} else {
|
|
dtfm = dtf / mass[type[i]];
|
|
v[i][1] += dtfm * f[i][1];
|
|
x[i][1] += dtv * v[i][1];
|
|
}
|
|
}
|
|
|
|
if (zvarstr && vzvarstr) {
|
|
if (vzvarstyle == EQUAL) v[i][2] = vz;
|
|
else v[i][2] = velocity[i][2];
|
|
if (zvarstyle == EQUAL) x[i][2] = xoriginal[i][2] + dz;
|
|
else x[i][2] = xoriginal[i][2] + displace[i][2];
|
|
} else if (zvarstr) {
|
|
if (zvarstyle == EQUAL) x[i][2] = xoriginal[i][2] + dz;
|
|
else x[i][2] = xoriginal[i][2] + displace[i][2];
|
|
} else if (vzvarstr) {
|
|
if (vzvarstyle == EQUAL) v[i][2] = vz;
|
|
else v[i][2] = velocity[i][2];
|
|
if (rmass) {
|
|
dtfm = dtf / rmass[i];
|
|
x[i][2] += dtv * v[i][2];
|
|
} else {
|
|
dtfm = dtf / mass[type[i]];
|
|
x[i][2] += dtv * v[i][2];
|
|
}
|
|
} else {
|
|
if (rmass) {
|
|
dtfm = dtf / rmass[i];
|
|
v[i][2] += dtfm * f[i][2];
|
|
x[i][2] += dtv * v[i][2];
|
|
} else {
|
|
dtfm = dtf / mass[type[i]];
|
|
v[i][2] += dtfm * f[i][2];
|
|
x[i][2] += dtv * v[i][2];
|
|
}
|
|
}
|
|
|
|
domain->remap_near(x[i],xold);
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
/* ----------------------------------------------------------------------
|
|
final NVE of particles with NULL components
|
|
------------------------------------------------------------------------- */
|
|
|
|
void FixMove::final_integrate()
|
|
{
|
|
double dtfm;
|
|
|
|
int xflag = 1;
|
|
if (mstyle == LINEAR && vxflag) xflag = 0;
|
|
else if (mstyle == WIGGLE && axflag) xflag = 0;
|
|
else if (mstyle == ROTATE) xflag = 0;
|
|
else if (mstyle == VARIABLE && (xvarstr || vxvarstr)) xflag = 0;
|
|
|
|
int yflag = 1;
|
|
if (mstyle == LINEAR && vyflag) yflag = 0;
|
|
else if (mstyle == WIGGLE && ayflag) yflag = 0;
|
|
else if (mstyle == ROTATE) yflag = 0;
|
|
else if (mstyle == VARIABLE && (yvarstr || vyvarstr)) yflag = 0;
|
|
|
|
int zflag = 1;
|
|
if (mstyle == LINEAR && vzflag) zflag = 0;
|
|
else if (mstyle == WIGGLE && azflag) zflag = 0;
|
|
else if (mstyle == ROTATE) zflag = 0;
|
|
else if (mstyle == VARIABLE && (zvarstr || vzvarstr)) zflag = 0;
|
|
|
|
double **v = atom->v;
|
|
double **f = atom->f;
|
|
double *rmass = atom->rmass;
|
|
double *mass = atom->mass;
|
|
int *type = atom->type;
|
|
int *mask = atom->mask;
|
|
int nlocal = atom->nlocal;
|
|
|
|
for (int i = 0; i < nlocal; i++) {
|
|
if (mask[i] & groupbit) {
|
|
if (xflag)
|
|
if (rmass) {
|
|
dtfm = dtf / rmass[i];
|
|
v[i][0] += dtfm * f[i][0];
|
|
} else {
|
|
dtfm = dtf / mass[type[i]];
|
|
v[i][0] += dtfm * f[i][0];
|
|
}
|
|
|
|
if (yflag)
|
|
if (rmass) {
|
|
dtfm = dtf / rmass[i];
|
|
v[i][1] += dtfm * f[i][1];
|
|
} else {
|
|
dtfm = dtf / mass[type[i]];
|
|
v[i][1] += dtfm * f[i][1];
|
|
}
|
|
|
|
if (zflag)
|
|
if (rmass) {
|
|
dtfm = dtf / rmass[i];
|
|
v[i][2] += dtfm * f[i][2];
|
|
} else {
|
|
dtfm = dtf / mass[type[i]];
|
|
v[i][2] += dtfm * f[i][2];
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
/* ---------------------------------------------------------------------- */
|
|
|
|
void FixMove::initial_integrate_respa(int vflag, int ilevel, int iloop)
|
|
{
|
|
// outermost level - update v and x
|
|
// all other levels - nothing
|
|
|
|
if (ilevel == nlevels_respa-1) initial_integrate(vflag);
|
|
}
|
|
|
|
/* ---------------------------------------------------------------------- */
|
|
|
|
void FixMove::final_integrate_respa(int ilevel, int iloop)
|
|
{
|
|
if (ilevel == nlevels_respa-1) final_integrate();
|
|
}
|
|
|
|
/* ----------------------------------------------------------------------
|
|
memory usage of local atom-based array
|
|
------------------------------------------------------------------------- */
|
|
|
|
double FixMove::memory_usage()
|
|
{
|
|
double bytes = atom->nmax*3 * sizeof(double);
|
|
if (displaceflag) bytes += atom->nmax*3 * sizeof(double);
|
|
if (velocityflag) bytes += atom->nmax*3 * sizeof(double);
|
|
return bytes;
|
|
}
|
|
|
|
/* ----------------------------------------------------------------------
|
|
pack entire state of Fix into one write
|
|
------------------------------------------------------------------------- */
|
|
|
|
void FixMove::write_restart(FILE *fp)
|
|
{
|
|
int n = 0;
|
|
double list[1];
|
|
list[n++] = time_origin;
|
|
|
|
if (comm->me == 0) {
|
|
int size = n * sizeof(double);
|
|
fwrite(&size,sizeof(int),1,fp);
|
|
fwrite(list,sizeof(double),n,fp);
|
|
}
|
|
}
|
|
|
|
/* ----------------------------------------------------------------------
|
|
use state info from restart file to restart the Fix
|
|
------------------------------------------------------------------------- */
|
|
|
|
void FixMove::restart(char *buf)
|
|
{
|
|
int n = 0;
|
|
double *list = (double *) buf;
|
|
|
|
time_origin = static_cast<int> (list[n++]);
|
|
}
|
|
|
|
/* ----------------------------------------------------------------------
|
|
allocate atom-based array
|
|
------------------------------------------------------------------------- */
|
|
|
|
void FixMove::grow_arrays(int nmax)
|
|
{
|
|
memory->grow(xoriginal,nmax,3,"move:xoriginal");
|
|
array_atom = xoriginal;
|
|
}
|
|
|
|
/* ----------------------------------------------------------------------
|
|
copy values within local atom-based array
|
|
------------------------------------------------------------------------- */
|
|
|
|
void FixMove::copy_arrays(int i, int j, int delflag)
|
|
{
|
|
xoriginal[j][0] = xoriginal[i][0];
|
|
xoriginal[j][1] = xoriginal[i][1];
|
|
xoriginal[j][2] = xoriginal[i][2];
|
|
}
|
|
|
|
/* ----------------------------------------------------------------------
|
|
initialize one atom's array values, called when atom is created
|
|
------------------------------------------------------------------------- */
|
|
|
|
void FixMove::set_arrays(int i)
|
|
{
|
|
double **x = atom->x;
|
|
imageint *image = atom->image;
|
|
int *mask = atom->mask;
|
|
|
|
// particle not in group
|
|
|
|
if (!(mask[i] & groupbit)) {
|
|
xoriginal[i][0] = xoriginal[i][1] = xoriginal[i][2] = 0.0;
|
|
return;
|
|
}
|
|
|
|
// current time still equal fix creation time
|
|
|
|
if (update->ntimestep == time_origin) {
|
|
domain->unmap(x[i],image[i],xoriginal[i]);
|
|
return;
|
|
}
|
|
|
|
// backup particle to time_origin
|
|
|
|
if (mstyle == VARIABLE)
|
|
error->all(FLERR,"Cannot add atoms to fix move variable");
|
|
|
|
domain->unmap(x[i],image[i],xoriginal[i]);
|
|
double delta = (update->ntimestep - time_origin) * update->dt;
|
|
|
|
if (mstyle == LINEAR) {
|
|
if (vxflag) xoriginal[i][0] -= vx * delta;
|
|
if (vyflag) xoriginal[i][1] -= vy * delta;
|
|
if (vzflag) xoriginal[i][2] -= vz * delta;
|
|
} else if (mstyle == WIGGLE) {
|
|
double arg = omega_rotate * delta;
|
|
double sine = sin(arg);
|
|
if (axflag) xoriginal[i][0] -= ax*sine;
|
|
if (ayflag) xoriginal[i][1] -= ay*sine;
|
|
if (azflag) xoriginal[i][2] -= az*sine;
|
|
} else if (mstyle == ROTATE) {
|
|
double a[3],b[3],c[3],d[3],disp[3],ddotr;
|
|
double arg = - omega_rotate * delta;
|
|
double sine = sin(arg);
|
|
double cosine = cos(arg);
|
|
d[0] = x[i][0] - point[0];
|
|
d[1] = x[i][1] - point[1];
|
|
d[2] = x[i][2] - point[2];
|
|
ddotr = d[0]*runit[0] + d[1]*runit[1] + d[2]*runit[2];
|
|
c[0] = ddotr*runit[0];
|
|
c[1] = ddotr*runit[1];
|
|
c[2] = ddotr*runit[2];
|
|
|
|
a[0] = d[0] - c[0];
|
|
a[1] = d[1] - c[1];
|
|
a[2] = d[2] - c[2];
|
|
b[0] = runit[1]*a[2] - runit[2]*a[1];
|
|
b[1] = runit[2]*a[0] - runit[0]*a[2];
|
|
b[2] = runit[0]*a[1] - runit[1]*a[0];
|
|
disp[0] = a[0]*cosine + b[0]*sine;
|
|
disp[1] = a[1]*cosine + b[1]*sine;
|
|
disp[2] = a[2]*cosine + b[2]*sine;
|
|
|
|
xoriginal[i][0] = point[0] + c[0] + disp[0];
|
|
xoriginal[i][1] = point[1] + c[1] + disp[1];
|
|
xoriginal[i][2] = point[2] + c[2] + disp[2];
|
|
}
|
|
}
|
|
|
|
/* ----------------------------------------------------------------------
|
|
pack values in local atom-based array for exchange with another proc
|
|
------------------------------------------------------------------------- */
|
|
|
|
int FixMove::pack_exchange(int i, double *buf)
|
|
{
|
|
buf[0] = xoriginal[i][0];
|
|
buf[1] = xoriginal[i][1];
|
|
buf[2] = xoriginal[i][2];
|
|
return 3;
|
|
}
|
|
|
|
/* ----------------------------------------------------------------------
|
|
unpack values in local atom-based array from exchange with another proc
|
|
------------------------------------------------------------------------- */
|
|
|
|
int FixMove::unpack_exchange(int nlocal, double *buf)
|
|
{
|
|
xoriginal[nlocal][0] = buf[0];
|
|
xoriginal[nlocal][1] = buf[1];
|
|
xoriginal[nlocal][2] = buf[2];
|
|
return 3;
|
|
}
|
|
|
|
/* ----------------------------------------------------------------------
|
|
pack values in local atom-based arrays for restart file
|
|
------------------------------------------------------------------------- */
|
|
|
|
int FixMove::pack_restart(int i, double *buf)
|
|
{
|
|
buf[0] = 4;
|
|
buf[1] = xoriginal[i][0];
|
|
buf[2] = xoriginal[i][1];
|
|
buf[3] = xoriginal[i][2];
|
|
return 4;
|
|
}
|
|
|
|
/* ----------------------------------------------------------------------
|
|
unpack values from atom->extra array to restart the fix
|
|
------------------------------------------------------------------------- */
|
|
|
|
void FixMove::unpack_restart(int nlocal, int nth)
|
|
{
|
|
double **extra = atom->extra;
|
|
|
|
// skip to Nth set of extra values
|
|
|
|
int m = 0;
|
|
for (int i = 0; i < nth; i++) m += static_cast<int> (extra[nlocal][m]);
|
|
m++;
|
|
|
|
xoriginal[nlocal][0] = extra[nlocal][m++];
|
|
xoriginal[nlocal][1] = extra[nlocal][m++];
|
|
xoriginal[nlocal][2] = extra[nlocal][m++];
|
|
}
|
|
|
|
/* ----------------------------------------------------------------------
|
|
maxsize of any atom's restart data
|
|
------------------------------------------------------------------------- */
|
|
|
|
int FixMove::maxsize_restart()
|
|
{
|
|
return 4;
|
|
}
|
|
|
|
/* ----------------------------------------------------------------------
|
|
size of atom nlocal's restart data
|
|
------------------------------------------------------------------------- */
|
|
|
|
int FixMove::size_restart(int nlocal)
|
|
{
|
|
return 4;
|
|
}
|
|
|
|
/* ---------------------------------------------------------------------- */
|
|
|
|
void FixMove::reset_dt()
|
|
{
|
|
error->all(FLERR,"Resetting timestep is not allowed with fix move");
|
|
}
|