1 |
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#include <cstdlib> |
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< |
#include <cstring> |
3 |
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#include <cmath> |
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#include <stdlib.h> |
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#include <string.h> |
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> |
#include <math.h> |
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|
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#include <iostream> |
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using namespace std; |
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SimInfo::SimInfo(){ |
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excludes = NULL; |
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n_constraints = 0; |
29 |
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nZconstraints = 0; |
30 |
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n_oriented = 0; |
31 |
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n_dipoles = 0; |
32 |
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ndf = 0; |
48 |
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haveOrigEcr = 0; |
49 |
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boxIsInit = 0; |
50 |
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|
51 |
< |
|
51 |
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resetTime = 1e99; |
52 |
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|
53 |
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orthoTolerance = 1E-6; |
54 |
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useInitXSstate = true; |
55 |
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|
56 |
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usePBC = 0; |
57 |
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useLJ = 0; |
58 |
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useSticky = 0; |
96 |
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|
97 |
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void SimInfo::setBoxM( double theBox[3][3] ){ |
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|
99 |
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int i, j, status; |
96 |
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double smallestBoxL, maxCutoff; |
99 |
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int i, j; |
100 |
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double FortranHmat[9]; // to preserve compatibility with Fortran the |
101 |
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// ordering in the array is as follows: |
102 |
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// [ 0 3 6 ] |
148 |
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|
149 |
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void SimInfo::calcHmatInv( void ) { |
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|
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int oldOrtho; |
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int i,j; |
153 |
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double smallDiag; |
154 |
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double tol; |
156 |
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|
157 |
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invertMat3( Hmat, HmatInv ); |
158 |
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|
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// Check the inverse to make sure it is sane: |
156 |
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|
157 |
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matMul3( Hmat, HmatInv, sanity ); |
158 |
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|
159 |
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// check to see if Hmat is orthorhombic |
160 |
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|
161 |
< |
smallDiag = Hmat[0][0]; |
162 |
< |
if(smallDiag > Hmat[1][1]) smallDiag = Hmat[1][1]; |
163 |
< |
if(smallDiag > Hmat[2][2]) smallDiag = Hmat[2][2]; |
164 |
< |
tol = smallDiag * 1E-6; |
161 |
> |
oldOrtho = orthoRhombic; |
162 |
|
|
163 |
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smallDiag = fabs(Hmat[0][0]); |
164 |
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if(smallDiag > fabs(Hmat[1][1])) smallDiag = fabs(Hmat[1][1]); |
165 |
+ |
if(smallDiag > fabs(Hmat[2][2])) smallDiag = fabs(Hmat[2][2]); |
166 |
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tol = smallDiag * orthoTolerance; |
167 |
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|
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orthoRhombic = 1; |
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|
170 |
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for (i = 0; i < 3; i++ ) { |
171 |
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for (j = 0 ; j < 3; j++) { |
172 |
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if (i != j) { |
173 |
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if (orthoRhombic) { |
174 |
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if (Hmat[i][j] >= tol) orthoRhombic = 0; |
174 |
> |
if ( fabs(Hmat[i][j]) >= tol) orthoRhombic = 0; |
175 |
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} |
176 |
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} |
177 |
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} |
178 |
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} |
179 |
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|
180 |
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if( oldOrtho != orthoRhombic ){ |
181 |
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|
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if( orthoRhombic ){ |
183 |
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sprintf( painCave.errMsg, |
184 |
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"Hmat is switching from Non-Orthorhombic to OrthoRhombic\n" |
185 |
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" If this is a bad thing, change the orthoBoxTolerance( currently %G ).\n", |
186 |
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orthoTolerance); |
187 |
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simError(); |
188 |
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} |
189 |
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else { |
190 |
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sprintf( painCave.errMsg, |
191 |
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"Hmat is switching from Orthorhombic to Non-OrthoRhombic\n" |
192 |
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" If this is a bad thing, change the orthoBoxTolerance( currently %G ).\n", |
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orthoTolerance); |
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simError(); |
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} |
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} |
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} |
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|
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double SimInfo::matDet3(double a[3][3]) { |
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<< "[ " << A[6] << ", " << A[7] << ", " << A[8] << " ]\n"; |
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} |
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|
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|
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void SimInfo::crossProduct3(double a[3],double b[3], double out[3]){ |
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|
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out[0] = a[1] * b[2] - a[2] * b[1]; |
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out[1] = a[2] * b[0] - a[0] * b[2] ; |
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out[2] = a[0] * b[1] - a[1] * b[0]; |
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|
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} |
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|
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double SimInfo::dotProduct3(double a[3], double b[3]){ |
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return a[0]*b[0] + a[1]*b[1]+ a[2]*b[2]; |
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} |
315 |
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|
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double SimInfo::length3(double a[3]){ |
317 |
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return sqrt(a[0]*a[0] + a[1]*a[1] + a[2]*a[2]); |
318 |
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} |
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|
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void SimInfo::calcBoxL( void ){ |
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|
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double dx, dy, dz, dsq; |
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int i; |
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|
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// boxVol = Determinant of Hmat |
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|
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dx = Hmat[0][0]; dy = Hmat[1][0]; dz = Hmat[2][0]; |
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dsq = dx*dx + dy*dy + dz*dz; |
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boxL[0] = sqrt( dsq ); |
333 |
< |
maxCutoff = 0.5 * boxL[0]; |
333 |
> |
//maxCutoff = 0.5 * boxL[0]; |
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|
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// boxLy |
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|
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dx = Hmat[0][1]; dy = Hmat[1][1]; dz = Hmat[2][1]; |
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dsq = dx*dx + dy*dy + dz*dz; |
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boxL[1] = sqrt( dsq ); |
340 |
< |
if( (0.5 * boxL[1]) < maxCutoff ) maxCutoff = 0.5 * boxL[1]; |
340 |
> |
//if( (0.5 * boxL[1]) < maxCutoff ) maxCutoff = 0.5 * boxL[1]; |
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|
342 |
+ |
|
343 |
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// boxLz |
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|
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dx = Hmat[0][2]; dy = Hmat[1][2]; dz = Hmat[2][2]; |
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dsq = dx*dx + dy*dy + dz*dz; |
347 |
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boxL[2] = sqrt( dsq ); |
348 |
< |
if( (0.5 * boxL[2]) < maxCutoff ) maxCutoff = 0.5 * boxL[2]; |
348 |
> |
//if( (0.5 * boxL[2]) < maxCutoff ) maxCutoff = 0.5 * boxL[2]; |
349 |
> |
|
350 |
> |
//calculate the max cutoff |
351 |
> |
maxCutoff = calcMaxCutOff(); |
352 |
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|
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checkCutOffs(); |
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|
355 |
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} |
356 |
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|
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|
358 |
+ |
double SimInfo::calcMaxCutOff(){ |
359 |
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|
360 |
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double ri[3], rj[3], rk[3]; |
361 |
+ |
double rij[3], rjk[3], rki[3]; |
362 |
+ |
double minDist; |
363 |
+ |
|
364 |
+ |
ri[0] = Hmat[0][0]; |
365 |
+ |
ri[1] = Hmat[1][0]; |
366 |
+ |
ri[2] = Hmat[2][0]; |
367 |
+ |
|
368 |
+ |
rj[0] = Hmat[0][1]; |
369 |
+ |
rj[1] = Hmat[1][1]; |
370 |
+ |
rj[2] = Hmat[2][1]; |
371 |
+ |
|
372 |
+ |
rk[0] = Hmat[0][2]; |
373 |
+ |
rk[1] = Hmat[1][2]; |
374 |
+ |
rk[2] = Hmat[2][2]; |
375 |
+ |
|
376 |
+ |
crossProduct3(ri,rj, rij); |
377 |
+ |
distXY = dotProduct3(rk,rij) / length3(rij); |
378 |
+ |
|
379 |
+ |
crossProduct3(rj,rk, rjk); |
380 |
+ |
distYZ = dotProduct3(ri,rjk) / length3(rjk); |
381 |
+ |
|
382 |
+ |
crossProduct3(rk,ri, rki); |
383 |
+ |
distZX = dotProduct3(rj,rki) / length3(rki); |
384 |
+ |
|
385 |
+ |
minDist = min(min(distXY, distYZ), distZX); |
386 |
+ |
return minDist/2; |
387 |
+ |
|
388 |
+ |
} |
389 |
+ |
|
390 |
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void SimInfo::wrapVector( double thePos[3] ){ |
391 |
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|
392 |
< |
int i, j, k; |
392 |
> |
int i; |
393 |
|
double scaled[3]; |
394 |
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|
395 |
|
if( !orthoRhombic ){ |
427 |
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|
428 |
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|
429 |
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int SimInfo::getNDF(){ |
430 |
< |
int ndf_local, ndf; |
430 |
> |
int ndf_local; |
431 |
|
|
432 |
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ndf_local = 3 * n_atoms + 3 * n_oriented - n_constraints; |
433 |
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|
443 |
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} |
444 |
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|
445 |
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int SimInfo::getNDFraw() { |
446 |
< |
int ndfRaw_local, ndfRaw; |
446 |
> |
int ndfRaw_local; |
447 |
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|
448 |
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// Raw degrees of freedom that we have to set |
449 |
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ndfRaw_local = 3 * n_atoms + 3 * n_oriented; |
456 |
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|
457 |
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return ndfRaw; |
458 |
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} |
459 |
< |
|
459 |
> |
|
460 |
> |
int SimInfo::getNDFtranslational() { |
461 |
> |
int ndfTrans_local; |
462 |
> |
|
463 |
> |
ndfTrans_local = 3 * n_atoms - n_constraints; |
464 |
> |
|
465 |
> |
#ifdef IS_MPI |
466 |
> |
MPI_Allreduce(&ndfTrans_local,&ndfTrans,1,MPI_INT,MPI_SUM, MPI_COMM_WORLD); |
467 |
> |
#else |
468 |
> |
ndfTrans = ndfTrans_local; |
469 |
> |
#endif |
470 |
> |
|
471 |
> |
ndfTrans = ndfTrans - 3 - nZconstraints; |
472 |
> |
|
473 |
> |
return ndfTrans; |
474 |
> |
} |
475 |
> |
|
476 |
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void SimInfo::refreshSim(){ |
477 |
|
|
478 |
|
simtype fInfo; |
528 |
|
|
529 |
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this->ndf = this->getNDF(); |
530 |
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this->ndfRaw = this->getNDFraw(); |
531 |
< |
|
531 |
> |
this->ndfTrans = this->getNDFtranslational(); |
532 |
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} |
533 |
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|
534 |
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|
535 |
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void SimInfo::setRcut( double theRcut ){ |
536 |
|
|
449 |
– |
if( !haveOrigRcut ){ |
450 |
– |
haveOrigRcut = 1; |
451 |
– |
origRcut = theRcut; |
452 |
– |
} |
453 |
– |
|
537 |
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rCut = theRcut; |
538 |
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checkCutOffs(); |
539 |
+ |
} |
540 |
+ |
|
541 |
+ |
void SimInfo::setDefaultRcut( double theRcut ){ |
542 |
+ |
|
543 |
+ |
haveOrigRcut = 1; |
544 |
+ |
origRcut = theRcut; |
545 |
+ |
rCut = theRcut; |
546 |
+ |
|
547 |
+ |
( rCut > ecr )? rList = rCut + 1.0: rList = ecr + 1.0; |
548 |
+ |
|
549 |
+ |
notifyFortranCutOffs( &rCut, &rList, &ecr, &est ); |
550 |
|
} |
551 |
|
|
552 |
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void SimInfo::setEcr( double theEcr ){ |
553 |
|
|
460 |
– |
if( !haveOrigEcr ){ |
461 |
– |
haveOrigEcr = 1; |
462 |
– |
origEcr = theEcr; |
463 |
– |
} |
464 |
– |
|
554 |
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ecr = theEcr; |
555 |
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checkCutOffs(); |
556 |
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} |
557 |
|
|
558 |
+ |
void SimInfo::setDefaultEcr( double theEcr ){ |
559 |
+ |
|
560 |
+ |
haveOrigEcr = 1; |
561 |
+ |
origEcr = theEcr; |
562 |
+ |
|
563 |
+ |
( rCut > ecr )? rList = rCut + 1.0: rList = ecr + 1.0; |
564 |
+ |
|
565 |
+ |
ecr = theEcr; |
566 |
+ |
|
567 |
+ |
notifyFortranCutOffs( &rCut, &rList, &ecr, &est ); |
568 |
+ |
} |
569 |
+ |
|
570 |
|
void SimInfo::setEcr( double theEcr, double theEst ){ |
571 |
|
|
572 |
|
est = theEst; |
573 |
|
setEcr( theEcr ); |
574 |
|
} |
575 |
|
|
576 |
+ |
void SimInfo::setDefaultEcr( double theEcr, double theEst ){ |
577 |
|
|
578 |
< |
void SimInfo::checkCutOffs( void ){ |
578 |
> |
est = theEst; |
579 |
> |
setDefaultEcr( theEcr ); |
580 |
> |
} |
581 |
|
|
478 |
– |
int cutChanged = 0; |
582 |
|
|
583 |
+ |
void SimInfo::checkCutOffs( void ){ |
584 |
|
|
585 |
< |
|
585 |
> |
int cutChanged = 0; |
586 |
> |
|
587 |
|
if( boxIsInit ){ |
588 |
|
|
589 |
|
//we need to check cutOffs against the box |
590 |
< |
|
590 |
> |
|
591 |
> |
//detect the change of rCut |
592 |
|
if(( maxCutoff > rCut )&&(usePBC)){ |
593 |
|
if( rCut < origRcut ){ |
594 |
< |
rCut = origRcut; |
595 |
< |
if (rCut > maxCutoff) rCut = maxCutoff; |
596 |
< |
|
597 |
< |
sprintf( painCave.errMsg, |
598 |
< |
"New Box size is setting the long range cutoff radius " |
599 |
< |
"to %lf\n", |
600 |
< |
rCut ); |
601 |
< |
painCave.isFatal = 0; |
602 |
< |
simError(); |
594 |
> |
rCut = origRcut; |
595 |
> |
|
596 |
> |
if (rCut > maxCutoff) |
597 |
> |
rCut = maxCutoff; |
598 |
> |
|
599 |
> |
sprintf( painCave.errMsg, |
600 |
> |
"New Box size is setting the long range cutoff radius " |
601 |
> |
"to %lf at time %lf\n", |
602 |
> |
rCut, currentTime ); |
603 |
> |
painCave.isFatal = 0; |
604 |
> |
simError(); |
605 |
|
} |
606 |
|
} |
607 |
< |
|
500 |
< |
if( maxCutoff > ecr ){ |
501 |
< |
if( ecr < origEcr ){ |
502 |
< |
rCut = origEcr; |
503 |
< |
if (ecr > maxCutoff) ecr = maxCutoff; |
504 |
< |
|
505 |
< |
sprintf( painCave.errMsg, |
506 |
< |
"New Box size is setting the electrostaticCutoffRadius " |
507 |
< |
"to %lf\n", |
508 |
< |
ecr ); |
509 |
< |
painCave.isFatal = 0; |
510 |
< |
simError(); |
511 |
< |
} |
512 |
< |
} |
513 |
< |
|
514 |
< |
|
515 |
< |
if ((rCut > maxCutoff)&&(usePBC)) { |
607 |
> |
else if ((rCut > maxCutoff)&&(usePBC)) { |
608 |
|
sprintf( painCave.errMsg, |
609 |
|
"New Box size is setting the long range cutoff radius " |
610 |
< |
"to %lf\n", |
611 |
< |
maxCutoff ); |
610 |
> |
"to %lf at time %lf\n", |
611 |
> |
maxCutoff, currentTime ); |
612 |
|
painCave.isFatal = 0; |
613 |
|
simError(); |
614 |
|
rCut = maxCutoff; |
615 |
|
} |
616 |
|
|
617 |
< |
if( ecr > maxCutoff){ |
617 |
> |
|
618 |
> |
//detect the change of ecr |
619 |
> |
if( maxCutoff > ecr ){ |
620 |
> |
if( ecr < origEcr ){ |
621 |
> |
ecr = origEcr; |
622 |
> |
if (ecr > maxCutoff) ecr = maxCutoff; |
623 |
> |
|
624 |
> |
sprintf( painCave.errMsg, |
625 |
> |
"New Box size is setting the electrostaticCutoffRadius " |
626 |
> |
"to %lf at time %lf\n", |
627 |
> |
ecr, currentTime ); |
628 |
> |
painCave.isFatal = 0; |
629 |
> |
simError(); |
630 |
> |
} |
631 |
> |
} |
632 |
> |
else if( ecr > maxCutoff){ |
633 |
|
sprintf( painCave.errMsg, |
634 |
|
"New Box size is setting the electrostaticCutoffRadius " |
635 |
< |
"to %lf\n", |
636 |
< |
maxCutoff ); |
635 |
> |
"to %lf at time %lf\n", |
636 |
> |
maxCutoff, currentTime ); |
637 |
|
painCave.isFatal = 0; |
638 |
|
simError(); |
639 |
|
ecr = maxCutoff; |
640 |
|
} |
641 |
|
|
642 |
+ |
if( (oldEcr != ecr) || ( oldRcut != rCut ) ) cutChanged = 1; |
643 |
|
|
644 |
< |
} |
537 |
< |
|
538 |
< |
|
539 |
< |
if( (oldEcr != ecr) || ( oldRcut != rCut ) ) cutChanged = 1; |
540 |
< |
|
541 |
< |
// rlist is the 1.0 plus max( rcut, ecr ) |
542 |
< |
|
543 |
< |
( rCut > ecr )? rList = rCut + 1.0: rList = ecr + 1.0; |
544 |
< |
|
545 |
< |
if( cutChanged ){ |
644 |
> |
// rlist is the 1.0 plus max( rcut, ecr ) |
645 |
|
|
646 |
< |
notifyFortranCutOffs( &rCut, &rList, &ecr, &est ); |
646 |
> |
( rCut > ecr )? rList = rCut + 1.0: rList = ecr + 1.0; |
647 |
> |
|
648 |
> |
if( cutChanged ){ |
649 |
> |
notifyFortranCutOffs( &rCut, &rList, &ecr, &est ); |
650 |
> |
} |
651 |
> |
|
652 |
> |
oldEcr = ecr; |
653 |
> |
oldRcut = rCut; |
654 |
> |
|
655 |
> |
} else { |
656 |
> |
// initialize this stuff before using it, OK? |
657 |
> |
sprintf( painCave.errMsg, |
658 |
> |
"Trying to check cutoffs without a box. Be smarter.\n" ); |
659 |
> |
painCave.isFatal = 1; |
660 |
> |
simError(); |
661 |
|
} |
662 |
< |
|
550 |
< |
oldEcr = ecr; |
551 |
< |
oldRcut = rCut; |
662 |
> |
|
663 |
|
} |
664 |
|
|
665 |
|
void SimInfo::addProperty(GenericData* prop){ |
709 |
|
return result; |
710 |
|
} |
711 |
|
|
712 |
+ |
double SimInfo::matTrace3(double m[3][3]){ |
713 |
+ |
double trace; |
714 |
+ |
trace = m[0][0] + m[1][1] + m[2][2]; |
715 |
|
|
716 |
+ |
return trace; |
717 |
+ |
} |