Add boundary ghost layer setup without atom relocation.
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224
src/main.c
224
src/main.c
@ -50,6 +50,7 @@
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#endif
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static int Natoms, Nlocal, Nghost, Nmax;
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static double Cutneigh; // neighbor cutoff
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static double xprd, yprd, zprd;
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static double xlo, xhi;
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static double ylo, yhi;
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@ -83,7 +84,7 @@ typedef struct {
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int* neighbors;
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int maxneighs;
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int nbinx, nbiny, nbinz;
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double cutneigh; // neighbor cutoff
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/* double cutneigh; // neighbor cutoff */
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double cutneighsq; // neighbor cutoff squared
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int every;
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int ncalls;
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@ -354,6 +355,7 @@ void init(Neighbor *neighbor, Parameter *param)
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param->mass = 1.0;
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param->dtforce = 0.5 * param->dt;
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Cutneigh = param->cutforce + 0.30;
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double neighscale = 5.0 / 6.0;
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neighbor->nbinx = neighscale * param->nx;
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neighbor->nbiny = neighscale * param->ny;
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@ -363,7 +365,7 @@ void init(Neighbor *neighbor, Parameter *param)
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neighbor->nmax = 0;
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neighbor->atoms_per_bin = 8;
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neighbor->maxneighs = 100;
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neighbor->cutneigh = param->cutforce + 0.30;
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/* neighbor->cutneigh = param->cutforce + 0.30; */
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neighbor->numneigh = NULL;
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neighbor->neighbors = NULL;
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neighbor->stencil = NULL;
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@ -377,7 +379,6 @@ void setup(Neighbor *neighbor, Parameter *param)
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double coord;
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int mbinxhi, mbinyhi, mbinzhi;
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int nextx, nexty, nextz;
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double cutneigh = neighbor->cutneigh;
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xprd = param->nx * lattice;
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yprd = param->ny * lattice;
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@ -387,7 +388,7 @@ void setup(Neighbor *neighbor, Parameter *param)
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ylo = 0.0; yhi = yprd;
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zlo = 0.0; zhi = zprd;
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neighbor->cutneighsq = cutneigh * cutneigh;
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neighbor->cutneighsq = Cutneigh * Cutneigh;
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neighbor->binsizex = xprd / neighbor->nbinx;
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neighbor->binsizey = yprd / neighbor->nbiny;
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neighbor->binsizez = zprd / neighbor->nbinz;
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@ -397,36 +398,36 @@ void setup(Neighbor *neighbor, Parameter *param)
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neighbor->bininvz = 1.0 / neighbor->binsizez;
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// x coordinate
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coord = xlo - cutneigh - SMALL * xprd;
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coord = xlo - Cutneigh - SMALL * xprd;
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neighbor->mbinxlo = (int) (coord * neighbor->bininvx);
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if (coord < 0.0) {
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neighbor->mbinxlo = neighbor->mbinxlo - 1;
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}
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coord = xhi + cutneigh + SMALL * xprd;
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coord = xhi + Cutneigh + SMALL * xprd;
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mbinxhi = (int) (coord * neighbor->bininvx);
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// y coordinate
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coord = ylo - cutneigh - SMALL * yprd;
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coord = ylo - Cutneigh - SMALL * yprd;
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neighbor->mbinylo = (int) (coord * neighbor->bininvy);
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if (coord < 0.0) {
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neighbor->mbinylo = neighbor->mbinylo - 1;
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}
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coord = yhi + cutneigh + SMALL * yprd;
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coord = yhi + Cutneigh + SMALL * yprd;
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mbinyhi = (int) (coord * neighbor->bininvy);
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// z coordinate
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coord = zlo - cutneigh - SMALL * zprd;
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coord = zlo - Cutneigh - SMALL * zprd;
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neighbor->mbinzlo = (int) (coord * neighbor->bininvz);
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if (coord < 0.0) {
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neighbor->mbinzlo = neighbor->mbinzlo - 1;
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}
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coord = zhi + cutneigh + SMALL * zprd;
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coord = zhi + Cutneigh + SMALL * zprd;
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mbinzhi = (int) (coord * neighbor->bininvz);
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@ -442,14 +443,14 @@ void setup(Neighbor *neighbor, Parameter *param)
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mbinzhi = mbinzhi + 1;
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neighbor->mbinz = mbinzhi - neighbor->mbinzlo + 1;
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nextx = (int) (cutneigh * neighbor->bininvx);
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if(nextx * neighbor->binsizex < FACTOR * cutneigh) nextx++;
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nextx = (int) (Cutneigh * neighbor->bininvx);
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if(nextx * neighbor->binsizex < FACTOR * Cutneigh) nextx++;
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nexty = (int) (cutneigh * neighbor->bininvy);
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if(nexty * neighbor->binsizey < FACTOR * cutneigh) nexty++;
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nexty = (int) (Cutneigh * neighbor->bininvy);
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if(nexty * neighbor->binsizey < FACTOR * Cutneigh) nexty++;
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nextz = (int) (cutneigh * neighbor->bininvz);
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if(nextz * neighbor->binsizez < FACTOR * cutneigh) nextz++;
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nextz = (int) (Cutneigh * neighbor->bininvz);
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if(nextz * neighbor->binsizez < FACTOR * Cutneigh) nextz++;
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if (neighbor->stencil) {
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free(neighbor->stencil);
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@ -530,11 +531,105 @@ void growarray()
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}
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}
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int setupGhostAtom(int i, int lastidx)
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{
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/* Setup ghost atoms */
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if (x[i] < Cutneigh) { /* left plane */
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x[lastidx+1] = x[i] + xprd;
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y[lastidx+1] = y[i];
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z[lastidx+1] = z[i];
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lastidx++; Nghost++;
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/* treat corners */
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if (y[i] < Cutneigh && z[i] < Cutneigh) { /* bottom left front corner */
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x[lastidx+1] = x[i] + xprd;
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y[lastidx+1] = y[i] + yprd;
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z[lastidx+1] = z[i] + zprd;
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lastidx++; Nghost++;
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} else if (y[i] >= (yprd-Cutneigh) && z[i] < Cutneigh) { /* bottom left back corner */
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x[lastidx+1] = x[i] + xprd;
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y[lastidx+1] = y[i] - yprd;
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z[lastidx+1] = z[i] + zprd;
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lastidx++; Nghost++;
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} else if (y[i] < Cutneigh && z[i] >= (zprd-Cutneigh)) { /* top left front corner */
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x[lastidx+1] = x[i] + xprd;
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y[lastidx+1] = y[i] + yprd;
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z[lastidx+1] = z[i] - zprd;
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lastidx++; Nghost++;
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} else if (y[i] >= (yprd-Cutneigh) && z[i] >= (zprd-Cutneigh)) { /* top left back corner */
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x[lastidx+1] = x[i] + xprd;
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y[lastidx+1] = y[i] - yprd;
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z[lastidx+1] = z[i] - zprd;
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lastidx++; Nghost++;
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}
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} else if (x[i] >= (xprd-Cutneigh)) { /* right plane */
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x[lastidx+1] = x[i] - xprd;
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y[lastidx+1] = y[i];
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z[lastidx+1] = z[i];
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lastidx++; Nghost++;
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/* treat corners */
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if (y[i] < Cutneigh && z[i] < Cutneigh) { /* bottom right front corner */
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x[lastidx+1] = x[i] - xprd;
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y[lastidx+1] = y[i] + yprd;
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z[lastidx+1] = z[i] + zprd;
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lastidx++; Nghost++;
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} else if (y[i] >= (yprd-Cutneigh) && z[i] < Cutneigh) { /* bottom right back corner */
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x[lastidx+1] = x[i] - xprd;
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y[lastidx+1] = y[i] - yprd;
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z[lastidx+1] = z[i] + zprd;
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lastidx++; Nghost++;
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} else if (y[i] < Cutneigh && z[i] >= (zprd-Cutneigh)) { /* top right front corner */
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x[lastidx+1] = x[i] - xprd;
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y[lastidx+1] = y[i] + yprd;
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z[lastidx+1] = z[i] - zprd;
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lastidx++; Nghost++;
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} else if (y[i] >= (yprd-Cutneigh) && z[i] >= (zprd-Cutneigh)) { /* top right back corner */
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x[lastidx+1] = x[i] - xprd;
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y[lastidx+1] = y[i] - yprd;
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z[lastidx+1] = z[i] - zprd;
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lastidx++; Nghost++;
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}
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} else if (y[i] < Cutneigh) { /* front plane */
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x[lastidx+1] = x[i];
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y[lastidx+1] = y[i] + yprd;
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z[lastidx+1] = z[i];
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lastidx++; Nghost++;
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} else if (y[i] >= (yprd-Cutneigh)) { /* back plane */
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x[lastidx+1] = x[i];
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y[lastidx+1] = y[i] - yprd;
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z[lastidx+1] = z[i];
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lastidx++; Nghost++;
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} else if (z[i] < Cutneigh) { /* bottom plane */
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x[lastidx+1] = x[i];
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y[lastidx+1] = y[i];
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z[lastidx+1] = z[i] + zprd;
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lastidx++; Nghost++;
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} else if (z[i] >= (zprd-Cutneigh)) { /* top plane */
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x[lastidx+1] = x[i];
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y[lastidx+1] = y[i];
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z[lastidx+1] = z[i] - zprd;
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lastidx++; Nghost++;
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}
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return lastidx;
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}
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void exchangeBorders()
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{
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Nghost = 0;
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int lastidx = Nlocal-1;
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for(int i = 0; i < Nlocal; i++) {
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lastidx = setupGhostAtom(i, lastidx);
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}
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}
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/* Enforce periodic boundary conditions
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* Relocate atoms that have left domain for
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* 6 planes (and 8 corners (diagonal))
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* Setup ghost atoms at boundaries*/
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void processBorders(double cutneigh)
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void processBorders()
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{
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Nghost = 0;
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int lastidx = Nlocal-1;
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@ -564,84 +659,7 @@ void processBorders(double cutneigh)
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growarray();
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}
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/* Setup ghost atoms */
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if (x[i] < cutneigh) { /* left plane */
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x[lastidx+1] = x[i] + xprd;
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y[lastidx+1] = y[i];
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z[lastidx+1] = z[i];
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lastidx++; Nghost++;
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/* treat corners */
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if (y[i] < cutneigh && z[i] < cutneigh) { /* bottom left front corner */
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x[lastidx+1] = x[i] + xprd;
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y[lastidx+1] = y[i] + yprd;
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z[lastidx+1] = z[i] + zprd;
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lastidx++; Nghost++;
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} else if (y[i] >= (yprd-cutneigh) && z[i] < cutneigh) { /* bottom left back corner */
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x[lastidx+1] = x[i] + xprd;
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y[lastidx+1] = y[i] - yprd;
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z[lastidx+1] = z[i] + zprd;
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lastidx++; Nghost++;
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} else if (y[i] < cutneigh && z[i] >= (zprd-cutneigh)) { /* top left front corner */
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x[lastidx+1] = x[i] + xprd;
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y[lastidx+1] = y[i] + yprd;
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z[lastidx+1] = z[i] - zprd;
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lastidx++; Nghost++;
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} else if (y[i] >= (yprd-cutneigh) && z[i] >= (zprd-cutneigh)) { /* top left back corner */
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x[lastidx+1] = x[i] + xprd;
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y[lastidx+1] = y[i] - yprd;
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z[lastidx+1] = z[i] - zprd;
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lastidx++; Nghost++;
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}
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} else if (x[i] >= (xprd-cutneigh)) { /* right plane */
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x[lastidx+1] = x[i] - xprd;
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y[lastidx+1] = y[i];
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z[lastidx+1] = z[i];
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lastidx++; Nghost++;
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/* treat corners */
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if (y[i] < cutneigh && z[i] < cutneigh) { /* bottom right front corner */
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x[lastidx+1] = x[i] - xprd;
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y[lastidx+1] = y[i] + yprd;
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z[lastidx+1] = z[i] + zprd;
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lastidx++; Nghost++;
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} else if (y[i] >= (yprd-cutneigh) && z[i] < cutneigh) { /* bottom right back corner */
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x[lastidx+1] = x[i] - xprd;
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y[lastidx+1] = y[i] - yprd;
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z[lastidx+1] = z[i] + zprd;
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lastidx++; Nghost++;
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} else if (y[i] < cutneigh && z[i] >= (zprd-cutneigh)) { /* top right front corner */
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x[lastidx+1] = x[i] - xprd;
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y[lastidx+1] = y[i] + yprd;
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z[lastidx+1] = z[i] - zprd;
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lastidx++; Nghost++;
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} else if (y[i] >= (yprd-cutneigh) && z[i] >= (zprd-cutneigh)) { /* top right back corner */
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x[lastidx+1] = x[i] - xprd;
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y[lastidx+1] = y[i] - yprd;
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z[lastidx+1] = z[i] - zprd;
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lastidx++; Nghost++;
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}
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} else if (y[i] < cutneigh) { /* front plane */
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x[lastidx+1] = x[i];
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y[lastidx+1] = y[i] + yprd;
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z[lastidx+1] = z[i];
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lastidx++; Nghost++;
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} else if (y[i] >= (yprd-cutneigh)) { /* back plane */
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x[lastidx+1] = x[i];
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y[lastidx+1] = y[i] - yprd;
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z[lastidx+1] = z[i];
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lastidx++; Nghost++;
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} else if (z[i] < cutneigh) { /* bottom plane */
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x[lastidx+1] = x[i];
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y[lastidx+1] = y[i];
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z[lastidx+1] = z[i] + zprd;
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lastidx++; Nghost++;
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} else if (z[i] >= (zprd-cutneigh)) { /* top plane */
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x[lastidx+1] = x[i];
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y[lastidx+1] = y[i];
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z[lastidx+1] = z[i] - zprd;
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lastidx++; Nghost++;
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}
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lastidx = setupGhostAtom(i, lastidx);
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}
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}
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@ -723,8 +741,8 @@ void create_atoms(Parameter *param)
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klo = MAX(klo, 0);
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khi = MIN(khi, 2 * param->nz - 1);
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printf("CA alat=%f ilo=%d ihi=%d jlo=%d jhi=%d klo=%d khi=%d\n",
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alat, ilo, ihi, jlo, jhi, klo, khi);
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/* printf("CA alat=%f ilo=%d ihi=%d jlo=%d jhi=%d klo=%d khi=%d\n", */
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/* alat, ilo, ihi, jlo, jhi, klo, khi); */
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double xtmp, ytmp, ztmp, vxtmp, vytmp, vztmp;
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int i, j, k, m, n;
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@ -1003,14 +1021,14 @@ void computeForce(Neighbor *neighbor, Parameter *param)
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virial += (0.5 * t_virial);
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}
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void printAtomState(Neighbor *neighbor)
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void printAtomState()
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{
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printf("Atom counts: Natoms=%d Nlocal=%d Nghost=%d Nmax=%d\n",
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Natoms, Nlocal, Nghost, Nmax);
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int nall = Nlocal + Nghost;
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double min = -neighbor->cutneigh;
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double max = xprd + neighbor->cutneigh;
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double min = -Cutneigh;
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double max = xprd + Cutneigh;
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for (int i=0; i<nall; i++) {
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printf("%d %f %f %f\n", i, x[i], y[i], z[i]);
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@ -1034,18 +1052,18 @@ int main (int argc, char** argv)
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create_atoms(¶m);
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thermoSetup(¶m, &thermo);
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adjustVelocity(¶m, &thermo);
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processBorders(neighbor.cutneigh);
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processBorders();
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/* printAtomState(&neighbor); */
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buildNeighborlist(&neighbor);
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/* printAtomState(); */
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thermoCompute(0, ¶m, &thermo);
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for(int n = 0; n < param.ntimes; n++) {
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initialIntegrate(¶m);
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exchangeBorders();
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if(!((n + 1) % neighbor.every)) {
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processBorders(neighbor.cutneigh);
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/* processBorders(); */
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/* sortAtoms(&neighbor); */
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buildNeighborlist(&neighbor);
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}
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