1126 lines
30 KiB
C++
1126 lines
30 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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/* ----------------------------------------------------------------------
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Contributing author: Ilya Valuev (JIHT, Moscow, Russia)
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------------------------------------------------------------------------- */
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#include "math.h"
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#include "stdlib.h"
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#include "atom_vec_wavepacket.h"
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#include "atom.h"
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#include "comm.h"
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#include "domain.h"
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#include "modify.h"
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#include "force.h"
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#include "fix.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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#define DELTA 10000
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/* ---------------------------------------------------------------------- */
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AtomVecWavepacket::AtomVecWavepacket(LAMMPS *lmp) : AtomVec(lmp)
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{
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comm_x_only = comm_f_only = 0;
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mass_type = 1;
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molecular = 0;
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size_forward = 4; // coords[3]+radius[1]
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size_reverse = 10; // force[3]+erforce[1]+ervelforce[1]+vforce[3]+csforce[2]
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size_border = 10; // coords[3]+tag[1]+type[1]+mask[1]+q[1]+spin[1]+eradius[1]+etag[1]
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size_velocity = 6; // +velocities[3]+ ervel[1]+cs[2]
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size_data_atom = 11; // for input file: 1-tag 2-type 3-q 4-spin 5-eradius 6-etag 7-cs_re 8-cs_im 9-x 10-y 11-z
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size_data_vel = 5; // for input file: vx vy vz ervel <??>
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xcol_data = 9; // starting column for x data
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atom->wavepacket_flag = 1;
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atom->electron_flag = 1; // compatible with eff
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atom->q_flag = atom->spin_flag = atom->eradius_flag =
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atom->ervel_flag = atom->erforce_flag = 1;
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atom->cs_flag = atom->csforce_flag = atom->vforce_flag = atom->ervelforce_flag = atom->etag_flag = 1;
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}
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/* ----------------------------------------------------------------------
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grow atom-electron arrays
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n = 0 grows arrays by DELTA
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n > 0 allocates arrays to size n
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------------------------------------------------------------------------- */
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void AtomVecWavepacket::grow(int n)
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{
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if (n == 0) nmax += DELTA;
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else nmax = n;
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atom->nmax = nmax;
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tag = memory->grow(atom->tag,nmax,"atom:tag");
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type = memory->grow(atom->type,nmax,"atom:type");
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mask = memory->grow(atom->mask,nmax,"atom:mask");
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image = memory->grow(atom->image,nmax,"atom:image");
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x = memory->grow(atom->x,nmax,3,"atom:x");
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v = memory->grow(atom->v,nmax,3,"atom:v");
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f = memory->grow(atom->f,nmax*comm->nthreads,3,"atom:f");
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q = memory->grow(atom->q,nmax,"atom:q");
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spin = memory->grow(atom->spin,nmax,"atom:spin");
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eradius = memory->grow(atom->eradius,nmax,"atom:eradius");
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ervel = memory->grow(atom->ervel,nmax,"atom:ervel");
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erforce = memory->grow(atom->erforce,nmax*comm->nthreads,"atom:erforce");
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cs = memory->grow(atom->cs,2*nmax,"atom:cs");
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csforce = memory->grow(atom->csforce,2*nmax,"atom:csforce");
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vforce = memory->grow(atom->vforce,3*nmax,"atom:vforce");
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ervelforce = memory->grow(atom->ervelforce,nmax,"atom:ervelforce");
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etag = memory->grow(atom->etag,nmax,"atom:etag");
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if (atom->nextra_grow)
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for (int iextra = 0; iextra < atom->nextra_grow; iextra++)
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modify->fix[atom->extra_grow[iextra]]->grow_arrays(nmax);
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}
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/* ----------------------------------------------------------------------
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reset local array ptrs
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------------------------------------------------------------------------- */
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void AtomVecWavepacket::grow_reset()
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{
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tag = atom->tag; type = atom->type;
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mask = atom->mask; image = atom->image;
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x = atom->x; v = atom->v; f = atom->f;
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q = atom->q;
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eradius = atom->eradius; ervel = atom->ervel; erforce = atom->erforce;
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cs = atom->cs;
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csforce = atom->csforce;
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vforce = atom->vforce;
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ervelforce = atom->ervelforce;
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etag = atom->etag;
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}
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/* ----------------------------------------------------------------------
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copy atom I info to atom J
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------------------------------------------------------------------------- */
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void AtomVecWavepacket::copy(int i, int j, int delflag)
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{
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tag[j] = tag[i];
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type[j] = type[i];
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mask[j] = mask[i];
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image[j] = image[i];
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x[j][0] = x[i][0];
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x[j][1] = x[i][1];
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x[j][2] = x[i][2];
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v[j][0] = v[i][0];
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v[j][1] = v[i][1];
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v[j][2] = v[i][2];
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q[j] = q[i];
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spin[j] = spin[i];
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eradius[j] = eradius[i];
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ervel[j] = ervel[i];
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cs[2*j] = cs[2*i];
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cs[2*j+1] = cs[2*i+1];
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etag[j] = etag[i];
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if (atom->nextra_grow)
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for (int iextra = 0; iextra < atom->nextra_grow; iextra++)
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modify->fix[atom->extra_grow[iextra]]->copy_arrays(i,j,delflag);
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}
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/* ---------------------------------------------------------------------- */
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// this will be used as partial pack for unsplit Hartree packets (v, ervel not regarded as separate variables)
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int AtomVecWavepacket::pack_comm(int n, int *list, double *buf,
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int pbc_flag, int *pbc)
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{
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int i,j,m;
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double dx,dy,dz;
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m = 0;
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if (pbc_flag == 0) {
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for (i = 0; i < n; i++) {
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j = list[i];
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buf[m++] = x[j][0];
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buf[m++] = x[j][1];
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buf[m++] = x[j][2];
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buf[m++] = eradius[j];
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}
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} else {
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if (domain->triclinic == 0) {
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dx = pbc[0]*domain->xprd;
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dy = pbc[1]*domain->yprd;
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dz = pbc[2]*domain->zprd;
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} else {
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dx = pbc[0]*domain->xprd + pbc[5]*domain->xy + pbc[4]*domain->xz;
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dy = pbc[1]*domain->yprd + pbc[3]*domain->yz;
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dz = pbc[2]*domain->zprd;
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}
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for (i = 0; i < n; i++) {
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j = list[i];
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buf[m++] = x[j][0] + dx;
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buf[m++] = x[j][1] + dy;
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buf[m++] = x[j][2] + dz;
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buf[m++] = eradius[j];
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}
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}
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return m;
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}
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/* ---------------------------------------------------------------------- */
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// this is a complete pack of all 'position' variables of AWPMD
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int AtomVecWavepacket::pack_comm_vel(int n, int *list, double *buf,
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int pbc_flag, int *pbc)
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{
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int i,j,m;
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double dx,dy,dz,dvx,dvy,dvz;
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m = 0;
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if (pbc_flag == 0) {
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for (i = 0; i < n; i++) {
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j = list[i];
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buf[m++] = x[j][0];
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buf[m++] = x[j][1];
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buf[m++] = x[j][2];
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buf[m++] = eradius[j];
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buf[m++] = v[j][0];
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buf[m++] = v[j][1];
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buf[m++] = v[j][2];
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buf[m++] = ervel[j];
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buf[m++] = cs[2*j];
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buf[m++] = cs[2*j+1];
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}
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} else {
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if (domain->triclinic == 0) {
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dx = pbc[0]*domain->xprd;
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dy = pbc[1]*domain->yprd;
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dz = pbc[2]*domain->zprd;
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} else {
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dx = pbc[0]*domain->xprd + pbc[5]*domain->xy + pbc[4]*domain->xz;
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dy = pbc[1]*domain->yprd + pbc[3]*domain->yz;
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dz = pbc[2]*domain->zprd;
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}
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if (!deform_vremap) {
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for (i = 0; i < n; i++) {
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j = list[i];
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buf[m++] = x[j][0] + dx;
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buf[m++] = x[j][1] + dy;
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buf[m++] = x[j][2] + dz;
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buf[m++] = eradius[j];
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buf[m++] = v[j][0];
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buf[m++] = v[j][1];
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buf[m++] = v[j][2];
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buf[m++] = ervel[j];
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buf[m++] = cs[2*j];
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buf[m++] = cs[2*j+1];
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}
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} else {
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dvx = pbc[0]*h_rate[0] + pbc[5]*h_rate[5] + pbc[4]*h_rate[4];
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dvy = pbc[1]*h_rate[1] + pbc[3]*h_rate[3];
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dvz = pbc[2]*h_rate[2];
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for (i = 0; i < n; i++) {
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j = list[i];
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buf[m++] = x[j][0] + dx;
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buf[m++] = x[j][1] + dy;
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buf[m++] = x[j][2] + dz;
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buf[m++] = eradius[j];
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if (mask[i] & deform_groupbit) {
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buf[m++] = v[j][0] + dvx;
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buf[m++] = v[j][1] + dvy;
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buf[m++] = v[j][2] + dvz;
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} else {
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buf[m++] = v[j][0];
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buf[m++] = v[j][1];
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buf[m++] = v[j][2];
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}
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buf[m++] = ervel[j];
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buf[m++] = cs[2*j];
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buf[m++] = cs[2*j+1];
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}
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}
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}
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return m;
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}
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/* ---------------------------------------------------------------------- */
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int AtomVecWavepacket::pack_comm_hybrid(int n, int *list, double *buf)
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{
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int i,j,m;
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m = 0;
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for (i = 0; i < n; i++) {
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j = list[i];
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buf[m++] = eradius[j];
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buf[m++] = ervel[j];
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buf[m++] = cs[2*j];
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buf[m++] = cs[2*j+1];
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}
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return m;
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}
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/* ---------------------------------------------------------------------- */
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void AtomVecWavepacket::unpack_comm(int n, int first, double *buf)
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{
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int i,m,last;
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m = 0;
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last = first + n;
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for (i = first; i < last; i++) {
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x[i][0] = buf[m++];
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x[i][1] = buf[m++];
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x[i][2] = buf[m++];
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eradius[i] = buf[m++];
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}
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}
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/* ---------------------------------------------------------------------- */
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void AtomVecWavepacket::unpack_comm_vel(int n, int first, double *buf)
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{
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int i,m,last;
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m = 0;
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last = first + n;
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for (i = first; i < last; i++) {
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x[i][0] = buf[m++];
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x[i][1] = buf[m++];
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x[i][2] = buf[m++];
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eradius[i] = buf[m++];
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v[i][0] = buf[m++];
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v[i][1] = buf[m++];
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v[i][2] = buf[m++];
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ervel[i] = buf[m++];
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cs[2*i] = buf[m++];
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cs[2*i+1] = buf[m++];
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}
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}
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/* ---------------------------------------------------------------------- */
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int AtomVecWavepacket::unpack_comm_hybrid(int n, int first, double *buf)
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{
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int i,m,last;
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m = 0;
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last = first + n;
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for (i = first; i < last; i++){
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eradius[i] = buf[m++];
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ervel[i] = buf[m++];
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cs[2*i] = buf[m++];
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cs[2*i+1] = buf[m++];
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}
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return m;
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}
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/* ---------------------------------------------------------------------- */
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int AtomVecWavepacket::pack_reverse(int n, int first, double *buf)
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{
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int i,m,last;
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m = 0;
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last = first + n;
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for (i = first; i < last; i++) { //10
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buf[m++] = f[i][0];
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buf[m++] = f[i][1];
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buf[m++] = f[i][2];
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buf[m++] = erforce[i];
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buf[m++] = ervelforce[i];
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buf[m++] = vforce[3*i];
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buf[m++] = vforce[3*i+1];
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buf[m++] = vforce[3*i+2];
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buf[m++] = csforce[2*i];
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buf[m++] = csforce[2*i+1];
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}
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return m;
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}
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/* ---------------------------------------------------------------------- */
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int AtomVecWavepacket::pack_reverse_hybrid(int n, int first, double *buf)
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{
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int i,m,last;
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m = 0;
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last = first + n;
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for (i = first; i < last; i++){
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buf[m++] = erforce[i];
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buf[m++] = ervelforce[i];
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buf[m++] = vforce[3*i];
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buf[m++] = vforce[3*i+1];
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buf[m++] = vforce[3*i+2];
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buf[m++] = csforce[2*i];
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buf[m++] = csforce[2*i+1];
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}
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return m;
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}
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/* ---------------------------------------------------------------------- */
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void AtomVecWavepacket::unpack_reverse(int n, int *list, double *buf)
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{
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int i,j,m;
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m = 0;
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for (i = 0; i < n; i++) {
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j = list[i];
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f[j][0] += buf[m++];
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f[j][1] += buf[m++];
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f[j][2] += buf[m++];
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erforce[j] += buf[m++];
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ervelforce[j] += buf[m++];
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vforce[3*j] += buf[m++];
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vforce[3*j+1] += buf[m++];
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vforce[3*j+2] += buf[m++];
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csforce[2*j] += buf[m++];
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csforce[2*j+1] += buf[m++];
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}
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}
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/* ---------------------------------------------------------------------- */
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int AtomVecWavepacket::unpack_reverse_hybrid(int n, int *list, double *buf)
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{
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int i,j,m;
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m = 0;
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for (i = 0; i < n; i++) {
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j = list[i];
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erforce[j] += buf[m++];
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ervelforce[j] += buf[m++];
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vforce[3*j] += buf[m++];
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vforce[3*j+1] += buf[m++];
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vforce[3*j+2] += buf[m++];
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csforce[2*j] += buf[m++];
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csforce[2*j+1] += buf[m++];
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}
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return m;
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}
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/* ---------------------------------------------------------------------- */
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// will be used for Hartree unsplit version (the etag is added however)
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int AtomVecWavepacket::pack_border(int n, int *list, double *buf,
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int pbc_flag, int *pbc)
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{
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int i,j,m;
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double dx,dy,dz;
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m = 0;
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if (pbc_flag == 0) {
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for (i = 0; i < n; i++) {
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j = list[i];
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buf[m++] = x[j][0];
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buf[m++] = x[j][1];
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buf[m++] = x[j][2];
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buf[m++] = tag[j];
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buf[m++] = type[j];
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buf[m++] = mask[j];
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buf[m++] = q[j];
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buf[m++] = spin[j];
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buf[m++] = eradius[j];
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buf[m++] = etag[j];
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}
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} else {
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if (domain->triclinic == 0) {
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dx = pbc[0]*domain->xprd;
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dy = pbc[1]*domain->yprd;
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dz = pbc[2]*domain->zprd;
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} else {
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dx = pbc[0];
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dy = pbc[1];
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dz = pbc[2];
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}
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for (i = 0; i < n; i++) {
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j = list[i];
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buf[m++] = x[j][0] + dx;
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buf[m++] = x[j][1] + dy;
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buf[m++] = x[j][2] + dz;
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buf[m++] = tag[j];
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buf[m++] = type[j];
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buf[m++] = mask[j];
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buf[m++] = q[j];
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buf[m++] = spin[j];
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buf[m++] = eradius[j];
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buf[m++] = etag[j];
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}
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}
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return m;
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}
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/* ---------------------------------------------------------------------- */
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int AtomVecWavepacket::pack_border_vel(int n, int *list, double *buf,
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int pbc_flag, int *pbc)
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{
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int i,j,m;
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double dx,dy,dz,dvx,dvy,dvz;
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m = 0;
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if (pbc_flag == 0) {
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for (i = 0; i < n; i++) {
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j = list[i];
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buf[m++] = x[j][0];
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buf[m++] = x[j][1];
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buf[m++] = x[j][2];
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buf[m++] = tag[j];
|
|
buf[m++] = type[j];
|
|
buf[m++] = mask[j];
|
|
buf[m++] = q[j];
|
|
buf[m++] = spin[j];
|
|
buf[m++] = eradius[j];
|
|
buf[m++] = etag[j];
|
|
|
|
buf[m++] = v[j][0];
|
|
buf[m++] = v[j][1];
|
|
buf[m++] = v[j][2];
|
|
|
|
|
|
buf[m++] = ervel[j];
|
|
buf[m++] = cs[2*j];
|
|
buf[m++] = cs[2*j+1];
|
|
}
|
|
} else {
|
|
if (domain->triclinic == 0) {
|
|
dx = pbc[0]*domain->xprd;
|
|
dy = pbc[1]*domain->yprd;
|
|
dz = pbc[2]*domain->zprd;
|
|
} else {
|
|
dx = pbc[0];
|
|
dy = pbc[1];
|
|
dz = pbc[2];
|
|
}
|
|
if (domain->triclinic == 0) {
|
|
for (i = 0; i < n; i++) {
|
|
j = list[i];
|
|
buf[m++] = x[j][0] + dx;
|
|
buf[m++] = x[j][1] + dy;
|
|
buf[m++] = x[j][2] + dz;
|
|
buf[m++] = tag[j];
|
|
buf[m++] = type[j];
|
|
buf[m++] = mask[j];
|
|
buf[m++] = q[j];
|
|
buf[m++] = spin[j];
|
|
buf[m++] = eradius[j];
|
|
buf[m++] = etag[j];
|
|
|
|
buf[m++] = v[j][0];
|
|
buf[m++] = v[j][1];
|
|
buf[m++] = v[j][2];
|
|
|
|
|
|
buf[m++] = ervel[j];
|
|
buf[m++] = cs[2*j];
|
|
buf[m++] = cs[2*j+1];
|
|
}
|
|
} else {
|
|
dvx = pbc[0]*h_rate[0] + pbc[5]*h_rate[5] + pbc[4]*h_rate[4];
|
|
dvy = pbc[1]*h_rate[1] + pbc[3]*h_rate[3];
|
|
dvz = pbc[2]*h_rate[2];
|
|
for (i = 0; i < n; i++) {
|
|
j = list[i];
|
|
buf[m++] = x[j][0] + dx;
|
|
buf[m++] = x[j][1] + dy;
|
|
buf[m++] = x[j][2] + dz;
|
|
buf[m++] = tag[j];
|
|
buf[m++] = type[j];
|
|
buf[m++] = mask[j];
|
|
buf[m++] = q[j];
|
|
buf[m++] = spin[j];
|
|
buf[m++] = eradius[j];
|
|
buf[m++] = etag[j];
|
|
|
|
if (mask[i] & deform_groupbit) {
|
|
buf[m++] = v[j][0] + dvx;
|
|
buf[m++] = v[j][1] + dvy;
|
|
buf[m++] = v[j][2] + dvz;
|
|
} else {
|
|
buf[m++] = v[j][0];
|
|
buf[m++] = v[j][1];
|
|
buf[m++] = v[j][2];
|
|
}
|
|
|
|
buf[m++] = ervel[j];
|
|
buf[m++] = cs[2*j];
|
|
buf[m++] = cs[2*j+1];
|
|
}
|
|
}
|
|
}
|
|
return m;
|
|
}
|
|
|
|
/* ---------------------------------------------------------------------- */
|
|
|
|
int AtomVecWavepacket::pack_border_hybrid(int n, int *list, double *buf)
|
|
{
|
|
int i,j,m;
|
|
|
|
m = 0;
|
|
for (i = 0; i < n; i++) {
|
|
j = list[i];
|
|
buf[m++] = q[j];
|
|
buf[m++] = spin[j];
|
|
buf[m++] = eradius[j];
|
|
|
|
buf[m++] = etag[j];
|
|
buf[m++] = ervel[j];
|
|
buf[m++] = cs[2*j];
|
|
buf[m++] = cs[2*j+1];
|
|
}
|
|
return m;
|
|
}
|
|
|
|
/* ---------------------------------------------------------------------- */
|
|
|
|
void AtomVecWavepacket::unpack_border(int n, int first, double *buf)
|
|
{
|
|
int i,m,last;
|
|
|
|
m = 0;
|
|
last = first + n;
|
|
for (i = first; i < last; i++) {
|
|
if (i == nmax) grow(0);
|
|
x[i][0] = buf[m++];
|
|
x[i][1] = buf[m++];
|
|
x[i][2] = buf[m++];
|
|
tag[i] = static_cast<int> (buf[m++]);
|
|
type[i] = static_cast<int> (buf[m++]);
|
|
mask[i] = static_cast<int> (buf[m++]);
|
|
q[i] = buf[m++];
|
|
spin[i] = static_cast<int> (buf[m++]);
|
|
eradius[i] = buf[m++];
|
|
etag[i] = (int)buf[m++];
|
|
}
|
|
}
|
|
|
|
/* ---------------------------------------------------------------------- */
|
|
|
|
void AtomVecWavepacket::unpack_border_vel(int n, int first, double *buf)
|
|
{
|
|
int i,m,last;
|
|
|
|
m = 0;
|
|
last = first + n;
|
|
for (i = first; i < last; i++) {
|
|
if (i == nmax) grow(0);
|
|
x[i][0] = buf[m++];
|
|
x[i][1] = buf[m++];
|
|
x[i][2] = buf[m++];
|
|
tag[i] = static_cast<int> (buf[m++]);
|
|
type[i] = static_cast<int> (buf[m++]);
|
|
mask[i] = static_cast<int> (buf[m++]);
|
|
q[i] = buf[m++];
|
|
spin[i] = static_cast<int> (buf[m++]);
|
|
eradius[i] = buf[m++];
|
|
etag[i] = (int)buf[m++];
|
|
|
|
v[i][0] = buf[m++];
|
|
v[i][1] = buf[m++];
|
|
v[i][2] = buf[m++];
|
|
|
|
|
|
ervel[i] = buf[m++];
|
|
cs[2*i] = buf[m++];
|
|
cs[2*i+1] = buf[m++];
|
|
}
|
|
}
|
|
|
|
/* ---------------------------------------------------------------------- */
|
|
|
|
int AtomVecWavepacket::unpack_border_hybrid(int n, int first, double *buf)
|
|
{
|
|
int i,m,last;
|
|
|
|
m = 0;
|
|
last = first + n;
|
|
for (i = first; i < last; i++) {
|
|
q[i] = buf[m++];
|
|
spin[i] = static_cast<int> (buf[m++]);
|
|
eradius[i] = buf[m++];
|
|
|
|
etag[i] = (int)buf[m++];
|
|
ervel[i] = buf[m++];
|
|
cs[2*i] = buf[m++];
|
|
cs[2*i+1] = buf[m++];
|
|
}
|
|
return m;
|
|
}
|
|
|
|
/* ----------------------------------------------------------------------
|
|
pack data for atom I for sending to another proc
|
|
xyz must be 1st 3 values, so comm::exchange() can test on them
|
|
------------------------------------------------------------------------- */
|
|
|
|
int AtomVecWavepacket::pack_exchange(int i, double *buf)
|
|
{
|
|
int m = 1;
|
|
buf[m++] = x[i][0];
|
|
buf[m++] = x[i][1];
|
|
buf[m++] = x[i][2];
|
|
buf[m++] = v[i][0];
|
|
buf[m++] = v[i][1];
|
|
buf[m++] = v[i][2];
|
|
buf[m++] = tag[i];
|
|
buf[m++] = type[i];
|
|
buf[m++] = mask[i];
|
|
*((tagint *) &buf[m++]) = image[i];
|
|
|
|
buf[m++] = q[i];
|
|
buf[m++] = spin[i];
|
|
buf[m++] = eradius[i];
|
|
buf[m++] = ervel[i];
|
|
|
|
buf[m++] = etag[i];
|
|
buf[m++] = cs[2*i];
|
|
buf[m++] = cs[2*i+1];
|
|
|
|
if (atom->nextra_grow)
|
|
for (int iextra = 0; iextra < atom->nextra_grow; iextra++)
|
|
m += modify->fix[atom->extra_grow[iextra]]->pack_exchange(i,&buf[m]);
|
|
|
|
buf[0] = m;
|
|
return m;
|
|
}
|
|
|
|
/* ---------------------------------------------------------------------- */
|
|
|
|
int AtomVecWavepacket::unpack_exchange(double *buf)
|
|
{
|
|
int nlocal = atom->nlocal;
|
|
if (nlocal == nmax) grow(0);
|
|
|
|
int m = 1;
|
|
x[nlocal][0] = buf[m++];
|
|
x[nlocal][1] = buf[m++];
|
|
x[nlocal][2] = buf[m++];
|
|
v[nlocal][0] = buf[m++];
|
|
v[nlocal][1] = buf[m++];
|
|
v[nlocal][2] = buf[m++];
|
|
tag[nlocal] = static_cast<int> (buf[m++]);
|
|
type[nlocal] = static_cast<int> (buf[m++]);
|
|
mask[nlocal] = static_cast<int> (buf[m++]);
|
|
image[nlocal] = *((tagint *) &buf[m++]);
|
|
|
|
q[nlocal] = buf[m++];
|
|
spin[nlocal] = static_cast<int> (buf[m++]);
|
|
eradius[nlocal] = buf[m++];
|
|
ervel[nlocal] = buf[m++];
|
|
|
|
etag[nlocal] = buf[m++];
|
|
cs[2*nlocal] = buf[m++];
|
|
cs[2*nlocal+1] = buf[m++];
|
|
|
|
if (atom->nextra_grow)
|
|
for (int iextra = 0; iextra < atom->nextra_grow; iextra++)
|
|
m += modify->fix[atom->extra_grow[iextra]]->
|
|
unpack_exchange(nlocal,&buf[m]);
|
|
|
|
atom->nlocal++;
|
|
return m;
|
|
}
|
|
|
|
/* ----------------------------------------------------------------------
|
|
size of restart data for all atoms owned by this proc
|
|
include extra data stored by fixes
|
|
------------------------------------------------------------------------- */
|
|
|
|
int AtomVecWavepacket::size_restart()
|
|
{
|
|
int i;
|
|
|
|
int nlocal = atom->nlocal;
|
|
int n = 18 * nlocal; // Associated with pack_restart
|
|
|
|
if (atom->nextra_restart)
|
|
for (int iextra = 0; iextra < atom->nextra_restart; iextra++)
|
|
for (i = 0; i < nlocal; i++)
|
|
n += modify->fix[atom->extra_restart[iextra]]->size_restart(i);
|
|
|
|
return n;
|
|
}
|
|
|
|
/* ----------------------------------------------------------------------
|
|
pack atom I's data for restart file including extra quantities
|
|
xyz must be 1st 3 values, so that read_restart can test on them
|
|
molecular types may be negative, but write as positive
|
|
------------------------------------------------------------------------- */
|
|
|
|
int AtomVecWavepacket::pack_restart(int i, double *buf)
|
|
{
|
|
int m = 1;
|
|
buf[m++] = x[i][0];
|
|
buf[m++] = x[i][1];
|
|
buf[m++] = x[i][2];
|
|
buf[m++] = tag[i];
|
|
buf[m++] = type[i];
|
|
buf[m++] = mask[i];
|
|
*((tagint *) &buf[m++]) = image[i];
|
|
buf[m++] = v[i][0];
|
|
buf[m++] = v[i][1];
|
|
buf[m++] = v[i][2];
|
|
|
|
buf[m++] = q[i];
|
|
buf[m++] = spin[i];
|
|
buf[m++] = eradius[i];
|
|
buf[m++] = ervel[i];
|
|
|
|
buf[m++] = etag[i];
|
|
buf[m++] = cs[2*i];
|
|
buf[m++] = cs[2*i+1];
|
|
|
|
if (atom->nextra_restart)
|
|
for (int iextra = 0; iextra < atom->nextra_restart; iextra++)
|
|
m += modify->fix[atom->extra_restart[iextra]]->pack_restart(i,&buf[m]);
|
|
|
|
buf[0] = m;
|
|
return m;
|
|
}
|
|
|
|
/* ----------------------------------------------------------------------
|
|
unpack data for one atom from restart file including extra quantities
|
|
------------------------------------------------------------------------- */
|
|
|
|
int AtomVecWavepacket::unpack_restart(double *buf)
|
|
{
|
|
int nlocal = atom->nlocal;
|
|
if (nlocal == nmax) {
|
|
grow(0);
|
|
if (atom->nextra_store)
|
|
memory->grow(atom->extra,nmax,atom->nextra_store,"atom:extra");
|
|
}
|
|
|
|
int m = 1;
|
|
x[nlocal][0] = buf[m++];
|
|
x[nlocal][1] = buf[m++];
|
|
x[nlocal][2] = buf[m++];
|
|
tag[nlocal] = static_cast<int> (buf[m++]);
|
|
type[nlocal] = static_cast<int> (buf[m++]);
|
|
mask[nlocal] = static_cast<int> (buf[m++]);
|
|
image[nlocal] = *((tagint *) &buf[m++]);
|
|
v[nlocal][0] = buf[m++];
|
|
v[nlocal][1] = buf[m++];
|
|
v[nlocal][2] = buf[m++];
|
|
|
|
q[nlocal] = buf[m++];
|
|
spin[nlocal] = static_cast<int> (buf[m++]);
|
|
eradius[nlocal] = buf[m++];
|
|
ervel[nlocal] = buf[m++];
|
|
|
|
etag[nlocal] = buf[m++];
|
|
cs[2*nlocal] = buf[m++];
|
|
cs[2*nlocal+1] = buf[m++];
|
|
|
|
double **extra = atom->extra;
|
|
if (atom->nextra_store) {
|
|
int size = static_cast<int> (buf[0]) - m;
|
|
for (int i = 0; i < size; i++) extra[nlocal][i] = buf[m++];
|
|
}
|
|
|
|
atom->nlocal++;
|
|
return m;
|
|
}
|
|
|
|
/* ----------------------------------------------------------------------
|
|
create one atom of itype at coord
|
|
set other values to defaults
|
|
AWPMD: creates a proton
|
|
------------------------------------------------------------------------- */
|
|
|
|
void AtomVecWavepacket::create_atom(int itype, double *coord)
|
|
{
|
|
int nlocal = atom->nlocal;
|
|
if (nlocal == nmax) grow(0);
|
|
|
|
tag[nlocal] = 0;
|
|
type[nlocal] = itype;
|
|
x[nlocal][0] = coord[0];
|
|
x[nlocal][1] = coord[1];
|
|
x[nlocal][2] = coord[2];
|
|
mask[nlocal] = 1;
|
|
image[nlocal] = ((tagint) IMGMAX << IMG2BITS) |
|
|
((tagint) IMGMAX << IMGBITS) | IMGMAX;
|
|
v[nlocal][0] = 0.0;
|
|
v[nlocal][1] = 0.0;
|
|
v[nlocal][2] = 0.0;
|
|
|
|
q[nlocal] = 1.;
|
|
spin[nlocal] = 0.;
|
|
eradius[nlocal] = 0.0;
|
|
ervel[nlocal] = 0.0;
|
|
|
|
etag[nlocal]= 0.;
|
|
cs[2*nlocal] = 0.;
|
|
cs[2*nlocal+1] = 0.;
|
|
|
|
atom->nlocal++;
|
|
}
|
|
|
|
/* ----------------------------------------------------------------------
|
|
unpack one line from Atoms section of data file
|
|
initialize other atom quantities
|
|
AWPMD: 0-tag 1-type 2-q 3-spin 4-eradius 5-etag 6-cs_re 7-cs_im
|
|
------------------------------------------------------------------------- */
|
|
|
|
void AtomVecWavepacket::data_atom(double *coord, tagint imagetmp, char **values)
|
|
{
|
|
int nlocal = atom->nlocal;
|
|
|
|
if (nlocal == nmax) grow(0);
|
|
|
|
tag[nlocal] = atoi(values[0]);
|
|
if (tag[nlocal] <= 0)
|
|
error->one(FLERR,"Invalid atom ID in Atoms section of "
|
|
"data file (ID tag must be >0)");
|
|
|
|
type[nlocal] = atoi(values[1]);
|
|
if (type[nlocal] <= 0 || type[nlocal] > atom->ntypes)
|
|
error->one(FLERR,"Invalid atom type in Atoms section of data file");
|
|
|
|
q[nlocal] = atof(values[2]);
|
|
spin[nlocal] = atoi(values[3]);
|
|
eradius[nlocal] = atof(values[4]);
|
|
if (eradius[nlocal] < 0.0)
|
|
error->one(FLERR,"Invalid eradius in Atoms section of data file");
|
|
|
|
|
|
etag[nlocal] = atoi(values[5]);
|
|
cs[2*nlocal] = atoi(values[6]);
|
|
cs[2*nlocal+1] = atof(values[7]);
|
|
|
|
|
|
x[nlocal][0] = coord[0];
|
|
x[nlocal][1] = coord[1];
|
|
x[nlocal][2] = coord[2];
|
|
|
|
image[nlocal] = imagetmp;
|
|
|
|
mask[nlocal] = 1;
|
|
v[nlocal][0] = 0.0;
|
|
v[nlocal][1] = 0.0;
|
|
v[nlocal][2] = 0.0;
|
|
ervel[nlocal] = 0.0;
|
|
|
|
atom->nlocal++;
|
|
}
|
|
|
|
/* ----------------------------------------------------------------------
|
|
unpack hybrid quantities from one line in Atoms section of data file
|
|
initialize other atom quantities for this sub-style
|
|
------------------------------------------------------------------------- */
|
|
|
|
int AtomVecWavepacket::data_atom_hybrid(int nlocal, char **values)
|
|
{
|
|
q[nlocal] = atof(values[0]);
|
|
spin[nlocal] = atoi(values[1]);
|
|
eradius[nlocal] = atof(values[2]);
|
|
if (eradius[nlocal] < 0.0)
|
|
error->one(FLERR,"Invalid eradius in Atoms section of data file");
|
|
|
|
etag[nlocal] = atoi(values[3]);
|
|
cs[2*nlocal] = atoi(values[4]);
|
|
cs[2*nlocal+1] = atof(values[5]);
|
|
|
|
|
|
v[nlocal][0] = 0.0;
|
|
v[nlocal][1] = 0.0;
|
|
v[nlocal][2] = 0.0;
|
|
ervel[nlocal] = 0.0;
|
|
|
|
return 3;
|
|
}
|
|
|
|
/* ----------------------------------------------------------------------
|
|
unpack one line from Velocities section of data file
|
|
------------------------------------------------------------------------- */
|
|
|
|
void AtomVecWavepacket::data_vel(int m, char **values)
|
|
{
|
|
v[m][0] = atof(values[0]);
|
|
v[m][1] = atof(values[1]);
|
|
v[m][2] = atof(values[2]);
|
|
ervel[m] = atof(values[3]);
|
|
}
|
|
|
|
/* ----------------------------------------------------------------------
|
|
unpack hybrid quantities from one line in Velocities section of data file
|
|
------------------------------------------------------------------------- */
|
|
|
|
int AtomVecWavepacket::data_vel_hybrid(int m, char **values)
|
|
{
|
|
ervel[m] = atof(values[0]);
|
|
return 1;
|
|
}
|
|
|
|
/* ----------------------------------------------------------------------
|
|
pack atom info for data file including 3 image flags
|
|
------------------------------------------------------------------------- */
|
|
|
|
void AtomVecWavepacket::pack_data(double **buf)
|
|
{
|
|
int nlocal = atom->nlocal;
|
|
for (int i = 0; i < nlocal; i++) {
|
|
buf[i][0] = tag[i];
|
|
buf[i][1] = type[i];
|
|
buf[i][2] = q[i];
|
|
buf[i][3] = spin[i];
|
|
buf[i][4] = eradius[i];
|
|
buf[i][5] = etag[i];
|
|
buf[i][6] = cs[2*i];
|
|
buf[i][7] = cs[2*i+1];
|
|
buf[i][8] = x[i][0];
|
|
buf[i][9] = x[i][1];
|
|
buf[i][10] = x[i][2];
|
|
buf[i][11] = (image[i] & IMGMASK) - IMGMAX;
|
|
buf[i][12] = (image[i] >> IMGBITS & IMGMASK) - IMGMAX;
|
|
buf[i][13] = (image[i] >> IMG2BITS) - IMGMAX;
|
|
}
|
|
}
|
|
|
|
/* ----------------------------------------------------------------------
|
|
pack hybrid atom info for data file
|
|
------------------------------------------------------------------------- */
|
|
|
|
int AtomVecWavepacket::pack_data_hybrid(int i, double *buf)
|
|
{
|
|
buf[0] = q[i];
|
|
buf[1] = spin[i];
|
|
buf[2] = eradius[i];
|
|
buf[3] = etag[i];
|
|
buf[4] = cs[2*i];
|
|
buf[5] = cs[2*i+1];
|
|
return 6;
|
|
}
|
|
|
|
/* ----------------------------------------------------------------------
|
|
write atom info to data file including 3 image flags
|
|
------------------------------------------------------------------------- */
|
|
|
|
void AtomVecWavepacket::write_data(FILE *fp, int n, double **buf)
|
|
{
|
|
for (int i = 0; i < n; i++)
|
|
fprintf(fp,"%d %d %-1.16e %d %-1.16e %d %-1.16e %-1.16e %-1.16e "
|
|
"%-1.16e %-1.16e %d %d %d\n",
|
|
(int) buf[i][0],(int) buf[i][1],
|
|
buf[i][2],(int) buf[i][3],buf[i][4],
|
|
(int) buf[i][5],buf[i][6],buf[i][7],
|
|
buf[i][8],buf[i][9],buf[i][10],
|
|
(int) buf[i][11],(int) buf[i][12],(int) buf[i][13]);
|
|
}
|
|
|
|
/* ----------------------------------------------------------------------
|
|
write hybrid atom info to data file
|
|
------------------------------------------------------------------------- */
|
|
|
|
int AtomVecWavepacket::write_data_hybrid(FILE *fp, double *buf)
|
|
{
|
|
fprintf(fp," %-1.16e %d %-1.16e %d %-1.16e %-1.16e",
|
|
buf[0],(int) buf[1],buf[2],(int) buf[3],buf[4],buf[5]);
|
|
return 6;
|
|
}
|
|
|
|
/* ----------------------------------------------------------------------
|
|
pack velocity info for data file
|
|
------------------------------------------------------------------------- */
|
|
|
|
void AtomVecWavepacket::pack_vel(double **buf)
|
|
{
|
|
int nlocal = atom->nlocal;
|
|
for (int i = 0; i < nlocal; i++) {
|
|
buf[i][0] = tag[i];
|
|
buf[i][1] = v[i][0];
|
|
buf[i][2] = v[i][1];
|
|
buf[i][3] = v[i][2];
|
|
buf[i][4] = ervel[i];
|
|
}
|
|
}
|
|
|
|
/* ----------------------------------------------------------------------
|
|
pack hybrid velocity info for data file
|
|
------------------------------------------------------------------------- */
|
|
|
|
int AtomVecWavepacket::pack_vel_hybrid(int i, double *buf)
|
|
{
|
|
buf[0] = ervel[i];
|
|
return 1;
|
|
}
|
|
|
|
/* ----------------------------------------------------------------------
|
|
write velocity info to data file
|
|
------------------------------------------------------------------------- */
|
|
|
|
void AtomVecWavepacket::write_vel(FILE *fp, int n, double **buf)
|
|
{
|
|
for (int i = 0; i < n; i++)
|
|
fprintf(fp,"%d %-1.16e %-1.16e %-1.16e %-1.16e\n",
|
|
(int) buf[i][0],buf[i][1],buf[i][2],buf[i][3],buf[i][4]);
|
|
}
|
|
|
|
/* ----------------------------------------------------------------------
|
|
write hybrid velocity info to data file
|
|
------------------------------------------------------------------------- */
|
|
|
|
int AtomVecWavepacket::write_vel_hybrid(FILE *fp, double *buf)
|
|
{
|
|
fprintf(fp," %-1.16e",buf[0]);
|
|
return 1;
|
|
}
|
|
|
|
/* ----------------------------------------------------------------------
|
|
return # of bytes of allocated memory
|
|
------------------------------------------------------------------------- */
|
|
|
|
bigint AtomVecWavepacket::memory_usage()
|
|
{
|
|
bigint bytes = 0;
|
|
|
|
if (atom->memcheck("tag")) bytes += memory->usage(tag,nmax);
|
|
if (atom->memcheck("type")) bytes += memory->usage(type,nmax);
|
|
if (atom->memcheck("mask")) bytes += memory->usage(mask,nmax);
|
|
if (atom->memcheck("image")) bytes += memory->usage(image,nmax);
|
|
if (atom->memcheck("x")) bytes += memory->usage(x,nmax,3);
|
|
if (atom->memcheck("v")) bytes += memory->usage(v,nmax,3);
|
|
if (atom->memcheck("f")) bytes += memory->usage(f,nmax*comm->nthreads,3);
|
|
|
|
if (atom->memcheck("q")) bytes += memory->usage(q,nmax);
|
|
if (atom->memcheck("spin")) bytes += memory->usage(spin,nmax);
|
|
if (atom->memcheck("eradius")) bytes += memory->usage(eradius,nmax);
|
|
if (atom->memcheck("ervel")) bytes += memory->usage(ervel,nmax);
|
|
if (atom->memcheck("erforce"))
|
|
bytes += memory->usage(erforce,nmax*comm->nthreads);
|
|
|
|
if (atom->memcheck("ervelforce")) bytes += memory->usage(ervelforce,nmax);
|
|
if (atom->memcheck("cs")) bytes += memory->usage(cs,2*nmax);
|
|
if (atom->memcheck("csforce")) bytes += memory->usage(csforce,2*nmax);
|
|
if (atom->memcheck("vforce")) bytes += memory->usage(vforce,3*nmax);
|
|
if (atom->memcheck("etag")) bytes += memory->usage(etag,nmax);
|
|
|
|
return bytes;
|
|
}
|