added a version of the lj/cut pair style that is
derived from PairOMP instead of Pair. no threading implemented yet. added some example for comparing lj/cut to lj/cut/omp.
This commit is contained in:
25
examples/USER/openmp/in.melt
Normal file
25
examples/USER/openmp/in.melt
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@ -0,0 +1,25 @@
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# 3d Lennard-Jones melt
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units lj
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atom_style atomic
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lattice fcc 0.8442
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region box block 0 10 0 10 0 10
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create_box 1 box
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create_atoms 1 box
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mass 1 1.0
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velocity all create 3.0 87287
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pair_style lj/cut 2.5
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pair_coeff 1 1 1.0 1.0 2.5
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neighbor 0.3 bin
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neigh_modify every 20 delay 0 check no
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fix 1 all nve
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dump id all atom 50 dump.melt
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thermo 50
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run 250
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25
examples/USER/openmp/in.melt-omp
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25
examples/USER/openmp/in.melt-omp
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@ -0,0 +1,25 @@
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# 3d Lennard-Jones melt
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units lj
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atom_style atomic
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lattice fcc 0.8442
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region box block 0 10 0 10 0 10
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create_box 1 box
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create_atoms 1 box
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mass 1 1.0
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velocity all create 3.0 87287
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pair_style lj/cut/omp 2.5
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pair_coeff 1 1 1.0 1.0 2.5
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neighbor 0.3 bin
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neigh_modify every 20 delay 0 check no
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fix 1 all nve
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dump id all atom 50 dump.melt
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thermo 50
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run 250
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2
src/.gitignore
vendored
2
src/.gitignore
vendored
@ -149,6 +149,8 @@ pair_lj_cut_coul_long_tip4p.cpp
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pair_lj_cut_coul_long_tip4p.h
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pair_lj_cut_gpu.cpp
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pair_lj_cut_gpu.h
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pair_lj_cut_omp.cpp
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pair_lj_cut_omp.h
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pair_lj_cut_opt.cpp
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pair_lj_cut_opt.h
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pair_morse_opt.cpp
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@ -3,13 +3,17 @@
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if (test $1 = 1) then
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cp -p pair_omp.cpp ..
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cp -p pair_lj_cut_omp.cpp ..
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cp -p pair_omp.h ..
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cp -p pair_lj_cut_omp.h ..
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elif (test $1 = 0) then
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rm ../pair_omp.cpp
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rm ../pair_lj_cut_omp.cpp
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rm ../pair_omp.h
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rm ../pair_lj_cut_omp.h
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fi
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716
src/USER-OPENMP/pair_lj_cut_omp.cpp
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716
src/USER-OPENMP/pair_lj_cut_omp.cpp
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@ -0,0 +1,716 @@
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/* ----------------------------------------------------------------------
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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: Axel Kohlmeyer (Temple U)
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------------------------------------------------------------------------- */
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#include "math.h"
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#include "stdio.h"
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#include "stdlib.h"
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#include "string.h"
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#include "pair_lj_cut_omp.h"
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#include "atom.h"
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#include "comm.h"
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#include "force.h"
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#include "neighbor.h"
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#include "neigh_list.h"
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#include "neigh_request.h"
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#include "update.h"
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#include "integrate.h"
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#include "respa.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 MIN(a,b) ((a) < (b) ? (a) : (b))
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#define MAX(a,b) ((a) > (b) ? (a) : (b))
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/* ---------------------------------------------------------------------- */
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PairLJCutOMP::PairLJCutOMP(LAMMPS *lmp) : PairOMP(lmp)
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{
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respa_enable = 1;
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}
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/* ---------------------------------------------------------------------- */
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PairLJCutOMP::~PairLJCutOMP()
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{
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if (allocated) {
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memory->destroy_2d_int_array(setflag);
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memory->destroy_2d_double_array(cutsq);
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memory->destroy_2d_double_array(cut);
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memory->destroy_2d_double_array(epsilon);
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memory->destroy_2d_double_array(sigma);
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memory->destroy_2d_double_array(lj1);
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memory->destroy_2d_double_array(lj2);
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memory->destroy_2d_double_array(lj3);
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memory->destroy_2d_double_array(lj4);
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memory->destroy_2d_double_array(offset);
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}
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}
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/* ---------------------------------------------------------------------- */
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void PairLJCutOMP::compute(int eflag, int vflag)
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{
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int i,j,ii,jj,inum,jnum,itype,jtype;
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double xtmp,ytmp,ztmp,delx,dely,delz,evdwl,fpair;
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double rsq,r2inv,r6inv,forcelj,factor_lj;
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int *ilist,*jlist,*numneigh,**firstneigh;
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evdwl = 0.0;
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if (eflag || vflag) ev_setup(eflag,vflag);
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else evflag = vflag_fdotr = 0;
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double **x = atom->x;
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double **f = atom->f;
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int *type = atom->type;
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int nlocal = atom->nlocal;
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int nall = nlocal + atom->nghost;
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double *special_lj = force->special_lj;
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int newton_pair = force->newton_pair;
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inum = list->inum;
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ilist = list->ilist;
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numneigh = list->numneigh;
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firstneigh = list->firstneigh;
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// loop over neighbors of my atoms
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for (ii = 0; ii < inum; ii++) {
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i = ilist[ii];
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xtmp = x[i][0];
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ytmp = x[i][1];
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ztmp = x[i][2];
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itype = type[i];
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jlist = firstneigh[i];
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jnum = numneigh[i];
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for (jj = 0; jj < jnum; jj++) {
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j = jlist[jj];
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if (j < nall) factor_lj = 1.0;
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else {
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factor_lj = special_lj[j/nall];
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j %= nall;
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}
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delx = xtmp - x[j][0];
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dely = ytmp - x[j][1];
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delz = ztmp - x[j][2];
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rsq = delx*delx + dely*dely + delz*delz;
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jtype = type[j];
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if (rsq < cutsq[itype][jtype]) {
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r2inv = 1.0/rsq;
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r6inv = r2inv*r2inv*r2inv;
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forcelj = r6inv * (lj1[itype][jtype]*r6inv - lj2[itype][jtype]);
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fpair = factor_lj*forcelj*r2inv;
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f[i][0] += delx*fpair;
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f[i][1] += dely*fpair;
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f[i][2] += delz*fpair;
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if (newton_pair || j < nlocal) {
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f[j][0] -= delx*fpair;
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f[j][1] -= dely*fpair;
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f[j][2] -= delz*fpair;
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}
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if (eflag) {
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evdwl = r6inv*(lj3[itype][jtype]*r6inv-lj4[itype][jtype]) -
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offset[itype][jtype];
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evdwl *= factor_lj;
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}
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if (evflag) ev_tally(i,j,nlocal,newton_pair,
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evdwl,0.0,fpair,delx,dely,delz);
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}
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}
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}
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if (vflag_fdotr) virial_compute();
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}
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/* ---------------------------------------------------------------------- */
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void PairLJCutOMP::compute_inner()
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{
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int i,j,ii,jj,inum,jnum,itype,jtype;
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double xtmp,ytmp,ztmp,delx,dely,delz,fpair;
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double rsq,r2inv,r6inv,forcelj,factor_lj,rsw;
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int *ilist,*jlist,*numneigh,**firstneigh;
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double **x = atom->x;
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double **f = atom->f;
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int *type = atom->type;
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int nlocal = atom->nlocal;
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int nall = nlocal + atom->nghost;
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double *special_lj = force->special_lj;
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int newton_pair = force->newton_pair;
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inum = listinner->inum;
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ilist = listinner->ilist;
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numneigh = listinner->numneigh;
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firstneigh = listinner->firstneigh;
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double cut_out_on = cut_respa[0];
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double cut_out_off = cut_respa[1];
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double cut_out_diff = cut_out_off - cut_out_on;
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double cut_out_on_sq = cut_out_on*cut_out_on;
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double cut_out_off_sq = cut_out_off*cut_out_off;
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// loop over neighbors of my atoms
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for (ii = 0; ii < inum; ii++) {
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i = ilist[ii];
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xtmp = x[i][0];
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ytmp = x[i][1];
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ztmp = x[i][2];
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itype = type[i];
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jlist = firstneigh[i];
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jnum = numneigh[i];
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for (jj = 0; jj < jnum; jj++) {
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j = jlist[jj];
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if (j < nall) factor_lj = 1.0;
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else {
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factor_lj = special_lj[j/nall];
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j %= nall;
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}
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delx = xtmp - x[j][0];
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dely = ytmp - x[j][1];
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delz = ztmp - x[j][2];
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rsq = delx*delx + dely*dely + delz*delz;
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if (rsq < cut_out_off_sq) {
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r2inv = 1.0/rsq;
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r6inv = r2inv*r2inv*r2inv;
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jtype = type[j];
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forcelj = r6inv * (lj1[itype][jtype]*r6inv - lj2[itype][jtype]);
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fpair = factor_lj*forcelj*r2inv;
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if (rsq > cut_out_on_sq) {
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rsw = (sqrt(rsq) - cut_out_on)/cut_out_diff;
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fpair *= 1.0 - rsw*rsw*(3.0 - 2.0*rsw);
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}
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f[i][0] += delx*fpair;
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f[i][1] += dely*fpair;
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f[i][2] += delz*fpair;
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if (newton_pair || j < nlocal) {
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f[j][0] -= delx*fpair;
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f[j][1] -= dely*fpair;
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f[j][2] -= delz*fpair;
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}
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}
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}
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}
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}
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/* ---------------------------------------------------------------------- */
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void PairLJCutOMP::compute_middle()
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{
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int i,j,ii,jj,inum,jnum,itype,jtype;
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double xtmp,ytmp,ztmp,delx,dely,delz,fpair;
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double rsq,r2inv,r6inv,forcelj,factor_lj,rsw;
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int *ilist,*jlist,*numneigh,**firstneigh;
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double **x = atom->x;
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double **f = atom->f;
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int *type = atom->type;
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int nlocal = atom->nlocal;
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int nall = nlocal + atom->nghost;
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double *special_lj = force->special_lj;
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int newton_pair = force->newton_pair;
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inum = listmiddle->inum;
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ilist = listmiddle->ilist;
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numneigh = listmiddle->numneigh;
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firstneigh = listmiddle->firstneigh;
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double cut_in_off = cut_respa[0];
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double cut_in_on = cut_respa[1];
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double cut_out_on = cut_respa[2];
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double cut_out_off = cut_respa[3];
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double cut_in_diff = cut_in_on - cut_in_off;
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double cut_out_diff = cut_out_off - cut_out_on;
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double cut_in_off_sq = cut_in_off*cut_in_off;
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double cut_in_on_sq = cut_in_on*cut_in_on;
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double cut_out_on_sq = cut_out_on*cut_out_on;
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double cut_out_off_sq = cut_out_off*cut_out_off;
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// loop over neighbors of my atoms
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for (ii = 0; ii < inum; ii++) {
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i = ilist[ii];
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xtmp = x[i][0];
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ytmp = x[i][1];
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ztmp = x[i][2];
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itype = type[i];
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jlist = firstneigh[i];
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jnum = numneigh[i];
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for (jj = 0; jj < jnum; jj++) {
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j = jlist[jj];
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if (j < nall) factor_lj = 1.0;
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else {
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factor_lj = special_lj[j/nall];
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j %= nall;
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}
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delx = xtmp - x[j][0];
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dely = ytmp - x[j][1];
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delz = ztmp - x[j][2];
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rsq = delx*delx + dely*dely + delz*delz;
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if (rsq < cut_out_off_sq && rsq > cut_in_off_sq) {
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r2inv = 1.0/rsq;
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r6inv = r2inv*r2inv*r2inv;
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jtype = type[j];
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forcelj = r6inv * (lj1[itype][jtype]*r6inv - lj2[itype][jtype]);
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fpair = factor_lj*forcelj*r2inv;
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if (rsq < cut_in_on_sq) {
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rsw = (sqrt(rsq) - cut_in_off)/cut_in_diff;
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fpair *= rsw*rsw*(3.0 - 2.0*rsw);
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}
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if (rsq > cut_out_on_sq) {
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rsw = (sqrt(rsq) - cut_out_on)/cut_out_diff;
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fpair *= 1.0 + rsw*rsw*(2.0*rsw - 3.0);
|
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}
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f[i][0] += delx*fpair;
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f[i][1] += dely*fpair;
|
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f[i][2] += delz*fpair;
|
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if (newton_pair || j < nlocal) {
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f[j][0] -= delx*fpair;
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f[j][1] -= dely*fpair;
|
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f[j][2] -= delz*fpair;
|
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}
|
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}
|
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}
|
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}
|
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}
|
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|
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/* ---------------------------------------------------------------------- */
|
||||
|
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void PairLJCutOMP::compute_outer(int eflag, int vflag)
|
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{
|
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int i,j,ii,jj,inum,jnum,itype,jtype;
|
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double xtmp,ytmp,ztmp,delx,dely,delz,evdwl,fpair;
|
||||
double rsq,r2inv,r6inv,forcelj,factor_lj,rsw;
|
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int *ilist,*jlist,*numneigh,**firstneigh;
|
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|
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evdwl = 0.0;
|
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if (eflag || vflag) ev_setup(eflag,vflag);
|
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else evflag = 0;
|
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|
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double **x = atom->x;
|
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double **f = atom->f;
|
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int *type = atom->type;
|
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int nlocal = atom->nlocal;
|
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int nall = nlocal + atom->nghost;
|
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double *special_lj = force->special_lj;
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int newton_pair = force->newton_pair;
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|
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inum = listouter->inum;
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ilist = listouter->ilist;
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numneigh = listouter->numneigh;
|
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firstneigh = listouter->firstneigh;
|
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double cut_in_off = cut_respa[2];
|
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double cut_in_on = cut_respa[3];
|
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|
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double cut_in_diff = cut_in_on - cut_in_off;
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double cut_in_off_sq = cut_in_off*cut_in_off;
|
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double cut_in_on_sq = cut_in_on*cut_in_on;
|
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|
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// loop over neighbors of my atoms
|
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|
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for (ii = 0; ii < inum; ii++) {
|
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i = ilist[ii];
|
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xtmp = x[i][0];
|
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ytmp = x[i][1];
|
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ztmp = x[i][2];
|
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itype = type[i];
|
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jlist = firstneigh[i];
|
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jnum = numneigh[i];
|
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|
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for (jj = 0; jj < jnum; jj++) {
|
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j = jlist[jj];
|
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|
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if (j < nall) factor_lj = 1.0;
|
||||
else {
|
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factor_lj = special_lj[j/nall];
|
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j %= nall;
|
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}
|
||||
|
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delx = xtmp - x[j][0];
|
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dely = ytmp - x[j][1];
|
||||
delz = ztmp - x[j][2];
|
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rsq = delx*delx + dely*dely + delz*delz;
|
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jtype = type[j];
|
||||
|
||||
if (rsq < cutsq[itype][jtype]) {
|
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if (rsq > cut_in_off_sq) {
|
||||
r2inv = 1.0/rsq;
|
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r6inv = r2inv*r2inv*r2inv;
|
||||
forcelj = r6inv * (lj1[itype][jtype]*r6inv - lj2[itype][jtype]);
|
||||
fpair = factor_lj*forcelj*r2inv;
|
||||
if (rsq < cut_in_on_sq) {
|
||||
rsw = (sqrt(rsq) - cut_in_off)/cut_in_diff;
|
||||
fpair *= rsw*rsw*(3.0 - 2.0*rsw);
|
||||
}
|
||||
|
||||
f[i][0] += delx*fpair;
|
||||
f[i][1] += dely*fpair;
|
||||
f[i][2] += delz*fpair;
|
||||
if (newton_pair || j < nlocal) {
|
||||
f[j][0] -= delx*fpair;
|
||||
f[j][1] -= dely*fpair;
|
||||
f[j][2] -= delz*fpair;
|
||||
}
|
||||
}
|
||||
|
||||
if (eflag) {
|
||||
r2inv = 1.0/rsq;
|
||||
r6inv = r2inv*r2inv*r2inv;
|
||||
evdwl = r6inv*(lj3[itype][jtype]*r6inv-lj4[itype][jtype]) -
|
||||
offset[itype][jtype];
|
||||
evdwl *= factor_lj;
|
||||
}
|
||||
|
||||
if (vflag) {
|
||||
if (rsq <= cut_in_off_sq) {
|
||||
r2inv = 1.0/rsq;
|
||||
r6inv = r2inv*r2inv*r2inv;
|
||||
forcelj = r6inv * (lj1[itype][jtype]*r6inv - lj2[itype][jtype]);
|
||||
fpair = factor_lj*forcelj*r2inv;
|
||||
} else if (rsq < cut_in_on_sq)
|
||||
fpair = factor_lj*forcelj*r2inv;
|
||||
}
|
||||
|
||||
if (evflag) ev_tally(i,j,nlocal,newton_pair,
|
||||
evdwl,0.0,fpair,delx,dely,delz);
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
/* ----------------------------------------------------------------------
|
||||
allocate all arrays
|
||||
------------------------------------------------------------------------- */
|
||||
|
||||
void PairLJCutOMP::allocate()
|
||||
{
|
||||
allocated = 1;
|
||||
int n = atom->ntypes;
|
||||
|
||||
setflag = memory->create_2d_int_array(n+1,n+1,"pair:setflag");
|
||||
for (int i = 1; i <= n; i++)
|
||||
for (int j = i; j <= n; j++)
|
||||
setflag[i][j] = 0;
|
||||
|
||||
cutsq = memory->create_2d_double_array(n+1,n+1,"pair:cutsq");
|
||||
|
||||
cut = memory->create_2d_double_array(n+1,n+1,"pair:cut");
|
||||
epsilon = memory->create_2d_double_array(n+1,n+1,"pair:epsilon");
|
||||
sigma = memory->create_2d_double_array(n+1,n+1,"pair:sigma");
|
||||
lj1 = memory->create_2d_double_array(n+1,n+1,"pair:lj1");
|
||||
lj2 = memory->create_2d_double_array(n+1,n+1,"pair:lj2");
|
||||
lj3 = memory->create_2d_double_array(n+1,n+1,"pair:lj3");
|
||||
lj4 = memory->create_2d_double_array(n+1,n+1,"pair:lj4");
|
||||
offset = memory->create_2d_double_array(n+1,n+1,"pair:offset");
|
||||
}
|
||||
|
||||
/* ----------------------------------------------------------------------
|
||||
global settings
|
||||
------------------------------------------------------------------------- */
|
||||
|
||||
void PairLJCutOMP::settings(int narg, char **arg)
|
||||
{
|
||||
if (narg != 1) error->all("Illegal pair_style command");
|
||||
|
||||
cut_global = force->numeric(arg[0]);
|
||||
|
||||
// reset cutoffs that have been explicitly set
|
||||
|
||||
if (allocated) {
|
||||
int i,j;
|
||||
for (i = 1; i <= atom->ntypes; i++)
|
||||
for (j = i+1; j <= atom->ntypes; j++)
|
||||
if (setflag[i][j]) cut[i][j] = cut_global;
|
||||
}
|
||||
}
|
||||
|
||||
/* ----------------------------------------------------------------------
|
||||
set coeffs for one or more type pairs
|
||||
------------------------------------------------------------------------- */
|
||||
|
||||
void PairLJCutOMP::coeff(int narg, char **arg)
|
||||
{
|
||||
if (narg < 4 || narg > 5) error->all("Incorrect args for pair coefficients");
|
||||
if (!allocated) allocate();
|
||||
|
||||
int ilo,ihi,jlo,jhi;
|
||||
force->bounds(arg[0],atom->ntypes,ilo,ihi);
|
||||
force->bounds(arg[1],atom->ntypes,jlo,jhi);
|
||||
|
||||
double epsilon_one = force->numeric(arg[2]);
|
||||
double sigma_one = force->numeric(arg[3]);
|
||||
|
||||
double cut_one = cut_global;
|
||||
if (narg == 5) cut_one = force->numeric(arg[4]);
|
||||
|
||||
int count = 0;
|
||||
for (int i = ilo; i <= ihi; i++) {
|
||||
for (int j = MAX(jlo,i); j <= jhi; j++) {
|
||||
epsilon[i][j] = epsilon_one;
|
||||
sigma[i][j] = sigma_one;
|
||||
cut[i][j] = cut_one;
|
||||
setflag[i][j] = 1;
|
||||
count++;
|
||||
}
|
||||
}
|
||||
|
||||
if (count == 0) error->all("Incorrect args for pair coefficients");
|
||||
}
|
||||
|
||||
/* ----------------------------------------------------------------------
|
||||
init specific to this pair style
|
||||
------------------------------------------------------------------------- */
|
||||
|
||||
void PairLJCutOMP::init_style()
|
||||
{
|
||||
// request regular or rRESPA neighbor lists
|
||||
|
||||
int irequest;
|
||||
|
||||
if (update->whichflag == 1 && strcmp(update->integrate_style,"respa") == 0) {
|
||||
int respa = 0;
|
||||
if (((Respa *) update->integrate)->level_inner >= 0) respa = 1;
|
||||
if (((Respa *) update->integrate)->level_middle >= 0) respa = 2;
|
||||
|
||||
if (respa == 0) irequest = neighbor->request(this);
|
||||
else if (respa == 1) {
|
||||
irequest = neighbor->request(this);
|
||||
neighbor->requests[irequest]->id = 1;
|
||||
neighbor->requests[irequest]->half = 0;
|
||||
neighbor->requests[irequest]->respainner = 1;
|
||||
irequest = neighbor->request(this);
|
||||
neighbor->requests[irequest]->id = 3;
|
||||
neighbor->requests[irequest]->half = 0;
|
||||
neighbor->requests[irequest]->respaouter = 1;
|
||||
} else {
|
||||
irequest = neighbor->request(this);
|
||||
neighbor->requests[irequest]->id = 1;
|
||||
neighbor->requests[irequest]->half = 0;
|
||||
neighbor->requests[irequest]->respainner = 1;
|
||||
irequest = neighbor->request(this);
|
||||
neighbor->requests[irequest]->id = 2;
|
||||
neighbor->requests[irequest]->half = 0;
|
||||
neighbor->requests[irequest]->respamiddle = 1;
|
||||
irequest = neighbor->request(this);
|
||||
neighbor->requests[irequest]->id = 3;
|
||||
neighbor->requests[irequest]->half = 0;
|
||||
neighbor->requests[irequest]->respaouter = 1;
|
||||
}
|
||||
|
||||
} else irequest = neighbor->request(this);
|
||||
|
||||
// set rRESPA cutoffs
|
||||
|
||||
if (strcmp(update->integrate_style,"respa") == 0 &&
|
||||
((Respa *) update->integrate)->level_inner >= 0)
|
||||
cut_respa = ((Respa *) update->integrate)->cutoff;
|
||||
else cut_respa = NULL;
|
||||
}
|
||||
|
||||
/* ----------------------------------------------------------------------
|
||||
neighbor callback to inform pair style of neighbor list to use
|
||||
regular or rRESPA
|
||||
------------------------------------------------------------------------- */
|
||||
|
||||
void PairLJCutOMP::init_list(int id, NeighList *ptr)
|
||||
{
|
||||
if (id == 0) list = ptr;
|
||||
else if (id == 1) listinner = ptr;
|
||||
else if (id == 2) listmiddle = ptr;
|
||||
else if (id == 3) listouter = ptr;
|
||||
}
|
||||
|
||||
/* ----------------------------------------------------------------------
|
||||
init for one type pair i,j and corresponding j,i
|
||||
------------------------------------------------------------------------- */
|
||||
|
||||
double PairLJCutOMP::init_one(int i, int j)
|
||||
{
|
||||
if (setflag[i][j] == 0) {
|
||||
epsilon[i][j] = mix_energy(epsilon[i][i],epsilon[j][j],
|
||||
sigma[i][i],sigma[j][j]);
|
||||
sigma[i][j] = mix_distance(sigma[i][i],sigma[j][j]);
|
||||
cut[i][j] = mix_distance(cut[i][i],cut[j][j]);
|
||||
}
|
||||
|
||||
lj1[i][j] = 48.0 * epsilon[i][j] * pow(sigma[i][j],12.0);
|
||||
lj2[i][j] = 24.0 * epsilon[i][j] * pow(sigma[i][j],6.0);
|
||||
lj3[i][j] = 4.0 * epsilon[i][j] * pow(sigma[i][j],12.0);
|
||||
lj4[i][j] = 4.0 * epsilon[i][j] * pow(sigma[i][j],6.0);
|
||||
|
||||
if (offset_flag) {
|
||||
double ratio = sigma[i][j] / cut[i][j];
|
||||
offset[i][j] = 4.0 * epsilon[i][j] * (pow(ratio,12.0) - pow(ratio,6.0));
|
||||
} else offset[i][j] = 0.0;
|
||||
|
||||
lj1[j][i] = lj1[i][j];
|
||||
lj2[j][i] = lj2[i][j];
|
||||
lj3[j][i] = lj3[i][j];
|
||||
lj4[j][i] = lj4[i][j];
|
||||
offset[j][i] = offset[i][j];
|
||||
|
||||
// check interior rRESPA cutoff
|
||||
|
||||
if (cut_respa && cut[i][j] < cut_respa[3])
|
||||
error->all("Pair cutoff < Respa interior cutoff");
|
||||
|
||||
// compute I,J contribution to long-range tail correction
|
||||
// count total # of atoms of type I and J via Allreduce
|
||||
|
||||
if (tail_flag) {
|
||||
int *type = atom->type;
|
||||
int nlocal = atom->nlocal;
|
||||
|
||||
double count[2],all[2];
|
||||
count[0] = count[1] = 0.0;
|
||||
for (int k = 0; k < nlocal; k++) {
|
||||
if (type[k] == i) count[0] += 1.0;
|
||||
if (type[k] == j) count[1] += 1.0;
|
||||
}
|
||||
MPI_Allreduce(count,all,2,MPI_DOUBLE,MPI_SUM,world);
|
||||
|
||||
double PI = 4.0*atan(1.0);
|
||||
double sig2 = sigma[i][j]*sigma[i][j];
|
||||
double sig6 = sig2*sig2*sig2;
|
||||
double rc3 = cut[i][j]*cut[i][j]*cut[i][j];
|
||||
double rc6 = rc3*rc3;
|
||||
double rc9 = rc3*rc6;
|
||||
etail_ij = 8.0*PI*all[0]*all[1]*epsilon[i][j] *
|
||||
sig6 * (sig6 - 3.0*rc6) / (9.0*rc9);
|
||||
ptail_ij = 16.0*PI*all[0]*all[1]*epsilon[i][j] *
|
||||
sig6 * (2.0*sig6 - 3.0*rc6) / (9.0*rc9);
|
||||
}
|
||||
|
||||
return cut[i][j];
|
||||
}
|
||||
|
||||
/* ----------------------------------------------------------------------
|
||||
proc 0 writes to restart file
|
||||
------------------------------------------------------------------------- */
|
||||
|
||||
void PairLJCutOMP::write_restart(FILE *fp)
|
||||
{
|
||||
write_restart_settings(fp);
|
||||
|
||||
int i,j;
|
||||
for (i = 1; i <= atom->ntypes; i++)
|
||||
for (j = i; j <= atom->ntypes; j++) {
|
||||
fwrite(&setflag[i][j],sizeof(int),1,fp);
|
||||
if (setflag[i][j]) {
|
||||
fwrite(&epsilon[i][j],sizeof(double),1,fp);
|
||||
fwrite(&sigma[i][j],sizeof(double),1,fp);
|
||||
fwrite(&cut[i][j],sizeof(double),1,fp);
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
/* ----------------------------------------------------------------------
|
||||
proc 0 reads from restart file, bcasts
|
||||
------------------------------------------------------------------------- */
|
||||
|
||||
void PairLJCutOMP::read_restart(FILE *fp)
|
||||
{
|
||||
read_restart_settings(fp);
|
||||
allocate();
|
||||
|
||||
int i,j;
|
||||
int me = comm->me;
|
||||
for (i = 1; i <= atom->ntypes; i++)
|
||||
for (j = i; j <= atom->ntypes; j++) {
|
||||
if (me == 0) fread(&setflag[i][j],sizeof(int),1,fp);
|
||||
MPI_Bcast(&setflag[i][j],1,MPI_INT,0,world);
|
||||
if (setflag[i][j]) {
|
||||
if (me == 0) {
|
||||
fread(&epsilon[i][j],sizeof(double),1,fp);
|
||||
fread(&sigma[i][j],sizeof(double),1,fp);
|
||||
fread(&cut[i][j],sizeof(double),1,fp);
|
||||
}
|
||||
MPI_Bcast(&epsilon[i][j],1,MPI_DOUBLE,0,world);
|
||||
MPI_Bcast(&sigma[i][j],1,MPI_DOUBLE,0,world);
|
||||
MPI_Bcast(&cut[i][j],1,MPI_DOUBLE,0,world);
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
/* ----------------------------------------------------------------------
|
||||
proc 0 writes to restart file
|
||||
------------------------------------------------------------------------- */
|
||||
|
||||
void PairLJCutOMP::write_restart_settings(FILE *fp)
|
||||
{
|
||||
fwrite(&cut_global,sizeof(double),1,fp);
|
||||
fwrite(&offset_flag,sizeof(int),1,fp);
|
||||
fwrite(&mix_flag,sizeof(int),1,fp);
|
||||
}
|
||||
|
||||
/* ----------------------------------------------------------------------
|
||||
proc 0 reads from restart file, bcasts
|
||||
------------------------------------------------------------------------- */
|
||||
|
||||
void PairLJCutOMP::read_restart_settings(FILE *fp)
|
||||
{
|
||||
int me = comm->me;
|
||||
if (me == 0) {
|
||||
fread(&cut_global,sizeof(double),1,fp);
|
||||
fread(&offset_flag,sizeof(int),1,fp);
|
||||
fread(&mix_flag,sizeof(int),1,fp);
|
||||
}
|
||||
MPI_Bcast(&cut_global,1,MPI_DOUBLE,0,world);
|
||||
MPI_Bcast(&offset_flag,1,MPI_INT,0,world);
|
||||
MPI_Bcast(&mix_flag,1,MPI_INT,0,world);
|
||||
}
|
||||
|
||||
/* ---------------------------------------------------------------------- */
|
||||
|
||||
double PairLJCutOMP::single(int i, int j, int itype, int jtype, double rsq,
|
||||
double factor_coul, double factor_lj,
|
||||
double &fforce)
|
||||
{
|
||||
double r2inv,r6inv,forcelj,philj;
|
||||
|
||||
r2inv = 1.0/rsq;
|
||||
r6inv = r2inv*r2inv*r2inv;
|
||||
forcelj = r6inv * (lj1[itype][jtype]*r6inv - lj2[itype][jtype]);
|
||||
fforce = factor_lj*forcelj*r2inv;
|
||||
|
||||
philj = r6inv*(lj3[itype][jtype]*r6inv-lj4[itype][jtype]) -
|
||||
offset[itype][jtype];
|
||||
return factor_lj*philj;
|
||||
}
|
||||
64
src/USER-OPENMP/pair_lj_cut_omp.h
Normal file
64
src/USER-OPENMP/pair_lj_cut_omp.h
Normal file
@ -0,0 +1,64 @@
|
||||
/* -*- c++ -*- ----------------------------------------------------------
|
||||
LAMMPS - Large-scale Atomic/Molecular Massively Parallel Simulator
|
||||
http://lammps.sandia.gov, Sandia National Laboratories
|
||||
Steve Plimpton, sjplimp@sandia.gov
|
||||
|
||||
Copyright (2003) Sandia Corporation. Under the terms of Contract
|
||||
DE-AC04-94AL85000 with Sandia Corporation, the U.S. Government retains
|
||||
certain rights in this software. This software is distributed under
|
||||
the GNU General Public License.
|
||||
|
||||
See the README file in the top-level LAMMPS directory.
|
||||
------------------------------------------------------------------------- */
|
||||
|
||||
/* ----------------------------------------------------------------------
|
||||
Contributing author: Axel Kohlmeyer (Temple U)
|
||||
------------------------------------------------------------------------- */
|
||||
|
||||
#ifdef PAIR_CLASS
|
||||
|
||||
PairStyle(lj/cut/omp,PairLJCutOMP)
|
||||
|
||||
#else
|
||||
|
||||
#ifndef LMP_PAIR_LJ_CUT_OMP_H
|
||||
#define LMP_PAIR_LJ_CUT_OMP_H
|
||||
|
||||
#include "pair_omp.h"
|
||||
|
||||
namespace LAMMPS_NS {
|
||||
|
||||
class PairLJCutOMP : public PairOMP {
|
||||
public:
|
||||
PairLJCutOMP(class LAMMPS *);
|
||||
~PairLJCutOMP();
|
||||
virtual void compute(int, int);
|
||||
virtual void settings(int, char **);
|
||||
void coeff(int, char **);
|
||||
virtual void init_style();
|
||||
void init_list(int, class NeighList *);
|
||||
double init_one(int, int);
|
||||
void write_restart(FILE *);
|
||||
void read_restart(FILE *);
|
||||
void write_restart_settings(FILE *);
|
||||
void read_restart_settings(FILE *);
|
||||
double single(int, int, int, int, double, double, double, double &);
|
||||
|
||||
void compute_inner();
|
||||
void compute_middle();
|
||||
void compute_outer(int, int);
|
||||
|
||||
protected:
|
||||
double cut_global;
|
||||
double **cut;
|
||||
double **epsilon,**sigma;
|
||||
double **lj1,**lj2,**lj3,**lj4,**offset;
|
||||
double *cut_respa;
|
||||
|
||||
void allocate();
|
||||
};
|
||||
|
||||
}
|
||||
|
||||
#endif
|
||||
#endif
|
||||
@ -74,7 +74,7 @@ void PairOMP::ev_setup(int eflag, int vflag)
|
||||
maxvatom_thr = atom->nmax;
|
||||
memory->destroy_3d_double_array(vatom_thr);
|
||||
vatom_thr = memory->create_3d_double_array(nthreads,
|
||||
maxvatom,6,"pair:vatom_thr");
|
||||
maxvatom_thr,6,"pair:vatom_thr");
|
||||
}
|
||||
|
||||
// zero per thread accumulators
|
||||
|
||||
@ -11,6 +11,10 @@
|
||||
See the README file in the top-level LAMMPS directory.
|
||||
------------------------------------------------------------------------- */
|
||||
|
||||
/* ----------------------------------------------------------------------
|
||||
Contributing author: Axel Kohlmeyer (Temple U)
|
||||
------------------------------------------------------------------------- */
|
||||
|
||||
#ifndef LMP_PAIR_OMP_H
|
||||
#define LMP_PAIR_OMP_H
|
||||
|
||||
@ -18,7 +22,7 @@
|
||||
|
||||
namespace LAMMPS_NS {
|
||||
|
||||
class PairOMP : protected Pair {
|
||||
class PairOMP : public Pair {
|
||||
|
||||
protected:
|
||||
double *eng_vdwl_thr; // per thread accumulated vdw energy
|
||||
|
||||
Reference in New Issue
Block a user