ViewVC Help
View File | Revision Log | Show Annotations | View Changeset | Root Listing
root/OpenMD/branches/development/src/visitors/AtomVisitor.cpp
Revision: 1219
Committed: Wed Jan 23 21:23:32 2008 UTC (17 years, 3 months ago) by xsun
Original Path: trunk/src/visitors/AtomVisitor.cpp
File size: 27871 byte(s)
Log Message:
new visitors for some odd molecules

File Contents

# User Rev Content
1 gezelter 507 /*
2 gezelter 246 * Copyright (c) 2005 The University of Notre Dame. All Rights Reserved.
3     *
4     * The University of Notre Dame grants you ("Licensee") a
5     * non-exclusive, royalty free, license to use, modify and
6     * redistribute this software in source and binary code form, provided
7     * that the following conditions are met:
8     *
9     * 1. Acknowledgement of the program authors must be made in any
10     * publication of scientific results based in part on use of the
11     * program. An acceptable form of acknowledgement is citation of
12     * the article in which the program was described (Matthew
13     * A. Meineke, Charles F. Vardeman II, Teng Lin, Christopher
14     * J. Fennell and J. Daniel Gezelter, "OOPSE: An Object-Oriented
15     * Parallel Simulation Engine for Molecular Dynamics,"
16     * J. Comput. Chem. 26, pp. 252-271 (2005))
17     *
18     * 2. Redistributions of source code must retain the above copyright
19     * notice, this list of conditions and the following disclaimer.
20     *
21     * 3. Redistributions in binary form must reproduce the above copyright
22     * notice, this list of conditions and the following disclaimer in the
23     * documentation and/or other materials provided with the
24     * distribution.
25     *
26     * This software is provided "AS IS," without a warranty of any
27     * kind. All express or implied conditions, representations and
28     * warranties, including any implied warranty of merchantability,
29     * fitness for a particular purpose or non-infringement, are hereby
30     * excluded. The University of Notre Dame and its licensors shall not
31     * be liable for any damages suffered by licensee as a result of
32     * using, modifying or distributing the software or its
33     * derivatives. In no event will the University of Notre Dame or its
34     * licensors be liable for any lost revenue, profit or data, or for
35     * direct, indirect, special, consequential, incidental or punitive
36     * damages, however caused and regardless of the theory of liability,
37     * arising out of the use of or inability to use software, even if the
38     * University of Notre Dame has been advised of the possibility of
39     * such damages.
40     */
41    
42 gezelter 2 #include <cstring>
43 tim 3 #include "visitors/AtomVisitor.hpp"
44     #include "primitives/DirectionalAtom.hpp"
45     #include "primitives/RigidBody.hpp"
46 gezelter 2
47 tim 132 namespace oopse {
48 gezelter 507 void BaseAtomVisitor::visit(RigidBody *rb) {
49     //vector<Atom*> myAtoms;
50     //vector<Atom*>::iterator atomIter;
51 tim 132
52 gezelter 507 //myAtoms = rb->getAtoms();
53 gezelter 2
54 gezelter 507 //for(atomIter = myAtoms.begin(); atomIter != myAtoms.end(); ++atomIter)
55     // (*atomIter)->accept(this);
56     }
57 gezelter 2
58 gezelter 507 void BaseAtomVisitor::setVisited(Atom *atom) {
59 gezelter 246 GenericData *data;
60     data = atom->getPropertyByName("VISITED");
61 gezelter 2
62 gezelter 246 //if visited property is not existed, add it as new property
63     if (data == NULL) {
64 gezelter 507 data = new GenericData();
65     data->setID("VISITED");
66     atom->addProperty(data);
67 gezelter 246 }
68 gezelter 507 }
69 gezelter 2
70 gezelter 507 bool BaseAtomVisitor::isVisited(Atom *atom) {
71 gezelter 246 GenericData *data;
72     data = atom->getPropertyByName("VISITED");
73     return data == NULL ? false : true;
74 gezelter 507 }
75 gezelter 2
76 gezelter 507 bool SSDAtomVisitor::isSSDAtom(const std::string&atomType) {
77 tim 247 std::set<std::string>::iterator strIter;
78     strIter = ssdAtomType.find(atomType);
79     return strIter != ssdAtomType.end() ? true : false;
80 gezelter 507 }
81 gezelter 2
82 gezelter 507 void SSDAtomVisitor::visit(DirectionalAtom *datom) {
83 tim 247 std::vector<AtomInfo*>atoms;
84 gezelter 2
85 chrisfen 1008 //we need to convert SSD into 4 different atoms
86     //one oxygen atom, two hydrogen atoms and one pseudo atom which is the center of
87     //the mass of the water with a dipole moment
88 gezelter 246 Vector3d h1(0.0, -0.75695, 0.5206);
89     Vector3d h2(0.0, 0.75695, 0.5206);
90     Vector3d ox(0.0, 0.0, -0.0654);
91     Vector3d u(0, 0, 1);
92     RotMat3x3d rotMatrix;
93     RotMat3x3d rotTrans;
94     AtomInfo * atomInfo;
95     Vector3d pos;
96     Vector3d newVec;
97     Quat4d q;
98     AtomData * atomData;
99     GenericData *data;
100     bool haveAtomData;
101 gezelter 2
102 gezelter 246 //if atom is not SSD atom, just skip it
103     if (!isSSDAtom(datom->getType()))
104 gezelter 507 return;
105 gezelter 2
106 gezelter 246 data = datom->getPropertyByName("ATOMDATA");
107 gezelter 2
108 gezelter 246 if (data != NULL) {
109 gezelter 507 atomData = dynamic_cast<AtomData *>(data);
110 gezelter 246
111 gezelter 507 if (atomData == NULL) {
112     std::cerr << "can not get Atom Data from " << datom->getType() << std::endl;
113     atomData = new AtomData;
114     haveAtomData = false;
115     } else
116     haveAtomData = true;
117 gezelter 246 } else {
118 gezelter 507 atomData = new AtomData;
119     haveAtomData = false;
120 gezelter 2 }
121    
122 gezelter 246 pos = datom->getPos();
123     q = datom->getQ();
124     rotMatrix = datom->getA();
125 gezelter 2
126 gezelter 246 // We need A^T to convert from body-fixed to space-fixed:
127     //transposeMat3(rotMatrix, rotTrans);
128     rotTrans = rotMatrix.transpose();
129 gezelter 2
130 gezelter 246 //center of mass of the water molecule
131     //matVecMul3(rotTrans, u, newVec);
132     newVec = rotTrans * u;
133 gezelter 2
134 gezelter 246 atomInfo = new AtomInfo;
135 gezelter 407 atomInfo->atomTypeName = "X";
136 gezelter 246 atomInfo->pos[0] = pos[0];
137     atomInfo->pos[1] = pos[1];
138     atomInfo->pos[2] = pos[2];
139     atomInfo->dipole[0] = newVec[0];
140     atomInfo->dipole[1] = newVec[1];
141     atomInfo->dipole[2] = newVec[2];
142 gezelter 2
143 gezelter 246 atomData->addAtomInfo(atomInfo);
144 gezelter 2
145 gezelter 246 //oxygen
146     //matVecMul3(rotTrans, ox, newVec);
147     newVec = rotTrans * ox;
148 gezelter 2
149 gezelter 246 atomInfo = new AtomInfo;
150 gezelter 407 atomInfo->atomTypeName = "O";
151 gezelter 246 atomInfo->pos[0] = pos[0] + newVec[0];
152     atomInfo->pos[1] = pos[1] + newVec[1];
153     atomInfo->pos[2] = pos[2] + newVec[2];
154     atomInfo->dipole[0] = 0.0;
155     atomInfo->dipole[1] = 0.0;
156     atomInfo->dipole[2] = 0.0;
157     atomData->addAtomInfo(atomInfo);
158 gezelter 2
159 gezelter 246 //hydrogen1
160     //matVecMul3(rotTrans, h1, newVec);
161     newVec = rotTrans * h1;
162     atomInfo = new AtomInfo;
163 gezelter 407 atomInfo->atomTypeName = "H";
164 gezelter 246 atomInfo->pos[0] = pos[0] + newVec[0];
165     atomInfo->pos[1] = pos[1] + newVec[1];
166     atomInfo->pos[2] = pos[2] + newVec[2];
167     atomInfo->dipole[0] = 0.0;
168     atomInfo->dipole[1] = 0.0;
169     atomInfo->dipole[2] = 0.0;
170     atomData->addAtomInfo(atomInfo);
171 gezelter 2
172 gezelter 246 //hydrogen2
173     //matVecMul3(rotTrans, h2, newVec);
174     newVec = rotTrans * h2;
175     atomInfo = new AtomInfo;
176 gezelter 407 atomInfo->atomTypeName = "H";
177 gezelter 246 atomInfo->pos[0] = pos[0] + newVec[0];
178     atomInfo->pos[1] = pos[1] + newVec[1];
179     atomInfo->pos[2] = pos[2] + newVec[2];
180     atomInfo->dipole[0] = 0.0;
181     atomInfo->dipole[1] = 0.0;
182     atomInfo->dipole[2] = 0.0;
183     atomData->addAtomInfo(atomInfo);
184 gezelter 2
185 gezelter 246 //add atom data into atom's property
186    
187     if (!haveAtomData) {
188 gezelter 507 atomData->setID("ATOMDATA");
189     datom->addProperty(atomData);
190 gezelter 246 }
191    
192     setVisited(datom);
193 gezelter 507 }
194 gezelter 2
195 gezelter 507 const std::string SSDAtomVisitor::toString() {
196 gezelter 246 char buffer[65535];
197     std::string result;
198 gezelter 2
199 gezelter 246 sprintf(buffer,
200     "------------------------------------------------------------------\n");
201     result += buffer;
202 gezelter 2
203 gezelter 246 sprintf(buffer, "Visitor name: %s\n", visitorName.c_str());
204     result += buffer;
205 gezelter 2
206 gezelter 246 sprintf(buffer,
207     "Visitor Description: Convert SSD into 4 different atoms\n");
208     result += buffer;
209 gezelter 2
210 gezelter 246 sprintf(buffer,
211     "------------------------------------------------------------------\n");
212     result += buffer;
213    
214     return result;
215 gezelter 507 }
216 gezelter 2
217 chrisfen 1008
218     bool TREDAtomVisitor::isTREDAtom(const std::string&atomType) {
219     std::set<std::string>::iterator strIter;
220     strIter = tredAtomType.find(atomType);
221     return strIter != tredAtomType.end() ? true : false;
222     }
223    
224     void TREDAtomVisitor::visit(DirectionalAtom *datom) {
225     std::vector<AtomInfo*>atoms;
226    
227     // we need to convert a TRED into 4 different atoms:
228     // one oxygen atom, two hydrogen atoms, and one atom which is the center of
229     // the mass of the water with a dipole moment
230     Vector3d h1(0.0, -0.75695, 0.5206);
231     Vector3d h2(0.0, 0.75695, 0.5206);
232     Vector3d ox(0.0, 0.0, -0.0654);
233     Vector3d u(0, 0, 1);
234     RotMat3x3d rotMatrix;
235     RotMat3x3d rotTrans;
236     AtomInfo * atomInfo;
237     Vector3d pos;
238     Vector3d newVec;
239     Quat4d q;
240     AtomData * atomData;
241     GenericData *data;
242     bool haveAtomData;
243    
244     // if the atom is not a TRED atom, skip it
245     if (!isTREDAtom(datom->getType()))
246     return;
247    
248     data = datom->getPropertyByName("ATOMDATA");
249    
250     if (data != NULL) {
251     atomData = dynamic_cast<AtomData *>(data);
252    
253     if (atomData == NULL) {
254     std::cerr << "can not get Atom Data from " << datom->getType() << std::endl;
255     atomData = new AtomData;
256     haveAtomData = false;
257     } else
258     haveAtomData = true;
259     } else {
260     atomData = new AtomData;
261     haveAtomData = false;
262     }
263    
264     pos = datom->getPos();
265     q = datom->getQ();
266     rotMatrix = datom->getA();
267    
268     // We need A^T to convert from body-fixed to space-fixed:
269     // transposeMat3(rotMatrix, rotTrans);
270     rotTrans = rotMatrix.transpose();
271    
272     // center of mass of the water molecule
273     // matVecMul3(rotTrans, u, newVec);
274     newVec = rotTrans * u;
275    
276     atomInfo = new AtomInfo;
277     atomInfo->atomTypeName = "TRED";
278     atomInfo->pos[0] = pos[0];
279     atomInfo->pos[1] = pos[1];
280     atomInfo->pos[2] = pos[2];
281     atomInfo->dipole[0] = newVec[0];
282     atomInfo->dipole[1] = newVec[1];
283     atomInfo->dipole[2] = newVec[2];
284    
285     atomData->addAtomInfo(atomInfo);
286    
287     // oxygen
288     // matVecMul3(rotTrans, ox, newVec);
289     newVec = rotTrans * ox;
290    
291     atomInfo = new AtomInfo;
292     atomInfo->atomTypeName = "O";
293     atomInfo->pos[0] = pos[0] + newVec[0];
294     atomInfo->pos[1] = pos[1] + newVec[1];
295     atomInfo->pos[2] = pos[2] + newVec[2];
296     atomInfo->dipole[0] = 0.0;
297     atomInfo->dipole[1] = 0.0;
298     atomInfo->dipole[2] = 0.0;
299     atomData->addAtomInfo(atomInfo);
300    
301     // hydrogen1
302     // matVecMul3(rotTrans, h1, newVec);
303     newVec = rotTrans * h1;
304     atomInfo = new AtomInfo;
305     atomInfo->atomTypeName = "H";
306     atomInfo->pos[0] = pos[0] + newVec[0];
307     atomInfo->pos[1] = pos[1] + newVec[1];
308     atomInfo->pos[2] = pos[2] + newVec[2];
309     atomInfo->dipole[0] = 0.0;
310     atomInfo->dipole[1] = 0.0;
311     atomInfo->dipole[2] = 0.0;
312     atomData->addAtomInfo(atomInfo);
313    
314     // hydrogen2
315     // matVecMul3(rotTrans, h2, newVec);
316     newVec = rotTrans * h2;
317     atomInfo = new AtomInfo;
318     atomInfo->atomTypeName = "H";
319     atomInfo->pos[0] = pos[0] + newVec[0];
320     atomInfo->pos[1] = pos[1] + newVec[1];
321     atomInfo->pos[2] = pos[2] + newVec[2];
322     atomInfo->dipole[0] = 0.0;
323     atomInfo->dipole[1] = 0.0;
324     atomInfo->dipole[2] = 0.0;
325     atomData->addAtomInfo(atomInfo);
326    
327     // add atom data into atom's property
328    
329     if (!haveAtomData) {
330     atomData->setID("ATOMDATA");
331     datom->addProperty(atomData);
332     }
333    
334     setVisited(datom);
335     }
336    
337     const std::string TREDAtomVisitor::toString() {
338     char buffer[65535];
339     std::string result;
340    
341     sprintf(buffer,
342     "------------------------------------------------------------------\n");
343     result += buffer;
344    
345     sprintf(buffer, "Visitor name: %s\n", visitorName.c_str());
346     result += buffer;
347    
348     sprintf(buffer,
349     "Visitor Description: Convert the TRED atom into 4 different atoms\n");
350     result += buffer;
351    
352     sprintf(buffer,
353     "------------------------------------------------------------------\n");
354     result += buffer;
355    
356     return result;
357     }
358    
359    
360 gezelter 507 bool LinearAtomVisitor::isLinearAtom(const std::string& atomType){
361 tim 247 std::set<std::string>::iterator strIter;
362     strIter = linearAtomType.find(atomType);
363    
364     return strIter != linearAtomType.end() ? true : false;
365 gezelter 507 }
366 chrisfen 211
367 tim 954 void LinearAtomVisitor::addGayBerneAtomType(const std::string& atomType){
368     linearAtomType.insert(atomType);
369     }
370    
371 gezelter 507 void LinearAtomVisitor::visit(DirectionalAtom* datom){
372 tim 247 std::vector<AtomInfo*> atoms;
373     //we need to convert linear into 4 different atoms
374     Vector3d c1(0.0, 0.0, -1.8);
375     Vector3d c2(0.0, 0.0, -0.6);
376     Vector3d c3(0.0, 0.0, 0.6);
377     Vector3d c4(0.0, 0.0, 1.8);
378     RotMat3x3d rotMatrix;
379     RotMat3x3d rotTrans;
380     AtomInfo* atomInfo;
381     Vector3d pos;
382     Vector3d newVec;
383     Quat4d q;
384     AtomData* atomData;
385     GenericData* data;
386     bool haveAtomData;
387 tim 989 AtomType* atomType;
388 chrisfen 1008 //if atom is not linear atom, just skip it
389 tim 989 if(!isLinearAtom(datom->getType()) || !datom->getAtomType()->isGayBerne())
390 gezelter 507 return;
391 chrisfen 211
392 tim 989 //setup GayBerne type in fortran side
393     data = datom->getAtomType()->getPropertyByName("GayBerne");
394     if (data != NULL) {
395     GayBerneParamGenericData* gayBerneData = dynamic_cast<GayBerneParamGenericData*>(data);
396    
397     if (gayBerneData != NULL) {
398     GayBerneParam gayBerneParam = gayBerneData->getData();
399    
400 chrisfen 992 // double halfLen = gayBerneParam.GB_sigma * gayBerneParam.GB_l2b_ratio/2.0;
401     double halfLen = gayBerneParam.GB_l/2.0;
402     c1[2] = -halfLen;
403 tim 989 c2[2] = -halfLen /2;
404     c3[2] = halfLen/2;
405     c4[2] = halfLen;
406    
407     }
408    
409     else {
410     sprintf( painCave.errMsg,
411     "Can not cast GenericData to GayBerneParam\n");
412     painCave.severity = OOPSE_ERROR;
413     painCave.isFatal = 1;
414     simError();
415     }
416     }
417    
418    
419 tim 247 data = datom->getPropertyByName("ATOMDATA");
420     if(data != NULL){
421 gezelter 507 atomData = dynamic_cast<AtomData*>(data);
422     if(atomData == NULL){
423     std::cerr << "can not get Atom Data from " << datom->getType() << std::endl;
424     atomData = new AtomData;
425     haveAtomData = false;
426     } else {
427     haveAtomData = true;
428     }
429 tim 247 } else {
430 gezelter 507 atomData = new AtomData;
431     haveAtomData = false;
432 chrisfen 211 }
433    
434    
435 tim 247 pos = datom->getPos();
436     q = datom->getQ();
437     rotMatrix = datom->getA();
438 chrisfen 211
439 tim 247 // We need A^T to convert from body-fixed to space-fixed:
440     rotTrans = rotMatrix.transpose();
441 chrisfen 211
442 tim 247 newVec = rotTrans * c1;
443     atomInfo = new AtomInfo;
444 gezelter 407 atomInfo->atomTypeName = "C";
445 tim 247 atomInfo->pos[0] = pos[0] + newVec[0];
446     atomInfo->pos[1] = pos[1] + newVec[1];
447     atomInfo->pos[2] = pos[2] + newVec[2];
448     atomInfo->dipole[0] = 0.0;
449     atomInfo->dipole[1] = 0.0;
450     atomInfo->dipole[2] = 0.0;
451     atomData->addAtomInfo(atomInfo);
452 chrisfen 211
453 tim 247 newVec = rotTrans * c2;
454     atomInfo = new AtomInfo;
455 gezelter 407 atomInfo->atomTypeName = "C";
456 tim 247 atomInfo->pos[0] = pos[0] + newVec[0];
457     atomInfo->pos[1] = pos[1] + newVec[1];
458     atomInfo->pos[2] = pos[2] + newVec[2];
459     atomInfo->dipole[0] = 0.0;
460     atomInfo->dipole[1] = 0.0;
461     atomInfo->dipole[2] = 0.0;
462     atomData->addAtomInfo(atomInfo);
463 chrisfen 211
464 tim 247 newVec = rotTrans * c3;
465     atomInfo = new AtomInfo;
466 gezelter 407 atomInfo->atomTypeName = "C";
467 tim 247 atomInfo->pos[0] = pos[0] + newVec[0];
468     atomInfo->pos[1] = pos[1] + newVec[1];
469     atomInfo->pos[2] = pos[2] + newVec[2];
470     atomInfo->dipole[0] = 0.0;
471     atomInfo->dipole[1] = 0.0;
472     atomInfo->dipole[2] = 0.0;
473     atomData->addAtomInfo(atomInfo);
474 chrisfen 211
475 tim 247 newVec = rotTrans * c4;
476     atomInfo = new AtomInfo;
477 gezelter 407 atomInfo->atomTypeName = "C";
478 tim 247 atomInfo->pos[0] = pos[0] + newVec[0];
479     atomInfo->pos[1] = pos[1] + newVec[1];
480     atomInfo->pos[2] = pos[2] + newVec[2];
481     atomInfo->dipole[0] = 0.0;
482     atomInfo->dipole[1] = 0.0;
483     atomInfo->dipole[2] = 0.0;
484     atomData->addAtomInfo(atomInfo);
485 chrisfen 211
486 tim 247 //add atom data into atom's property
487 chrisfen 211
488 tim 247 if(!haveAtomData){
489 gezelter 507 atomData->setID("ATOMDATA");
490     datom->addProperty(atomData);
491 tim 247 }
492 chrisfen 211
493 tim 247 setVisited(datom);
494    
495 gezelter 507 }
496 chrisfen 211
497 gezelter 507 const std::string LinearAtomVisitor::toString(){
498     char buffer[65535];
499     std::string result;
500 chrisfen 211
501 gezelter 507 sprintf(buffer ,"------------------------------------------------------------------\n");
502     result += buffer;
503 chrisfen 211
504 gezelter 507 sprintf(buffer ,"Visitor name: %s\n", visitorName.c_str());
505     result += buffer;
506 chrisfen 211
507 gezelter 507 sprintf(buffer , "Visitor Description: Convert linear into 4 different atoms\n");
508     result += buffer;
509 chrisfen 211
510 gezelter 507 sprintf(buffer ,"------------------------------------------------------------------\n");
511     result += buffer;
512 chrisfen 211
513 gezelter 507 return result;
514     }
515 chrisfen 211
516 xsun 881 bool GBLipidAtomVisitor::isGBLipidAtom(const std::string& atomType){
517     std::set<std::string>::iterator strIter;
518     strIter = GBLipidAtomType.find(atomType);
519    
520     return strIter != GBLipidAtomType.end() ? true : false;
521     }
522    
523     void GBLipidAtomVisitor::visit(DirectionalAtom* datom){
524     std::vector<AtomInfo*> atoms;
525     //we need to convert linear into 4 different atoms
526 xsun 1219 //Vector3d c1(0.0, 0.0, -6.25);
527     //Vector3d c2(0.0, 0.0, -2.1);
528     //Vector3d c3(0.0, 0.0, 2.1);
529     //Vector3d c4(0.0, 0.0, 6.25);
530     Vector3d c1(0.0, 0.0, 0.0);
531     Vector3d c2(0.0, 0.0, 1.0);
532 xsun 881 RotMat3x3d rotMatrix;
533     RotMat3x3d rotTrans;
534     AtomInfo* atomInfo;
535     Vector3d pos;
536     Vector3d newVec;
537 xsun 1219 Vector3d dVec;
538 xsun 881 Quat4d q;
539     AtomData* atomData;
540     GenericData* data;
541     bool haveAtomData;
542    
543     //if atom is not GBlipid atom, just skip it
544     if(!isGBLipidAtom(datom->getType()))
545     return;
546    
547     data = datom->getPropertyByName("ATOMDATA");
548     if(data != NULL){
549     atomData = dynamic_cast<AtomData*>(data);
550     if(atomData == NULL){
551     std::cerr << "can not get Atom Data from " << datom->getType() << std::endl;
552     atomData = new AtomData;
553     haveAtomData = false;
554     } else {
555     haveAtomData = true;
556     }
557     } else {
558     atomData = new AtomData;
559     haveAtomData = false;
560     }
561    
562    
563     pos = datom->getPos();
564     q = datom->getQ();
565     rotMatrix = datom->getA();
566    
567     // We need A^T to convert from body-fixed to space-fixed:
568     rotTrans = rotMatrix.transpose();
569    
570     newVec = rotTrans * c1;
571 xsun 1219 dVec = rotTrans * c2;
572 xsun 881 atomInfo = new AtomInfo;
573 xsun 1219 atomInfo->atomTypeName = "GB";
574     atomInfo->pos[0] = pos[0] + newVec[0];
575     atomInfo->pos[1] = pos[1] + newVec[1];
576     atomInfo->pos[2] = pos[2] + newVec[2];
577     atomInfo->dipole[0] = dVec[0];
578     atomInfo->dipole[1] = dVec[1];
579     atomInfo->dipole[2] = dVec[2];
580     atomInfo->hasVector = true;
581     atomInfo->charge = 3.0;
582     atomInfo->hasCharge = true;
583     atomData->addAtomInfo(atomInfo);
584    
585     //newVec = rotTrans * c2;
586     //atomInfo = new AtomInfo;
587     //atomInfo->atomTypeName = "K";
588     //atomInfo->pos[0] = pos[0] + newVec[0];
589     //atomInfo->pos[1] = pos[1] + newVec[1];
590     //atomInfo->pos[2] = pos[2] + newVec[2];
591     //atomInfo->dipole[0] = 0.0;
592     //atomInfo->dipole[1] = 0.0;
593     //atomInfo->dipole[2] = 0.0;
594     //atomData->addAtomInfo(atomInfo);
595    
596     //newVec = rotTrans * c3;
597     //atomInfo = new AtomInfo;
598     //atomInfo->atomTypeName = "K";
599     //atomInfo->pos[0] = pos[0] + newVec[0];
600     //atomInfo->pos[1] = pos[1] + newVec[1];
601     //atomInfo->pos[2] = pos[2] + newVec[2];
602     //atomInfo->dipole[0] = 0.0;
603     //atomInfo->dipole[1] = 0.0;
604     //atomInfo->dipole[2] = 0.0;
605     //atomData->addAtomInfo(atomInfo);
606    
607     //newVec = rotTrans * c4;
608     //atomInfo = new AtomInfo;
609     //atomInfo->atomTypeName = "K";
610     //atomInfo->pos[0] = pos[0] + newVec[0];
611     //atomInfo->pos[1] = pos[1] + newVec[1];
612     //atomInfo->pos[2] = pos[2] + newVec[2];
613     //atomInfo->dipole[0] = 0.0;
614     //atomInfo->dipole[1] = 0.0;
615     //atomInfo->dipole[2] = 0.0;
616     //atomData->addAtomInfo(atomInfo);
617    
618     //add atom data into atom's property
619    
620     if(!haveAtomData){
621     atomData->setID("ATOMDATA");
622     datom->addProperty(atomData);
623     }
624    
625     setVisited(datom);
626    
627     }
628    
629     const std::string GBLipidAtomVisitor::toString(){
630     char buffer[65535];
631     std::string result;
632    
633     sprintf(buffer ,"------------------------------------------------------------------\n");
634     result += buffer;
635    
636     sprintf(buffer ,"Visitor name: %s\n", visitorName.c_str());
637     result += buffer;
638    
639     sprintf(buffer , "Visitor Description: Convert GBlipid into 4 different K atoms\n");
640     result += buffer;
641    
642     sprintf(buffer ,"------------------------------------------------------------------\n");
643     result += buffer;
644    
645     return result;
646     }
647    
648     bool Ring5gbAtomVisitor::isRing5gbAtom(const std::string& atomType){
649     std::set<std::string>::iterator strIter;
650     strIter = Ring5gbAtomType.find(atomType);
651    
652     return strIter != Ring5gbAtomType.end() ? true : false;
653     }
654    
655     void Ring5gbAtomVisitor::visit(DirectionalAtom* datom){
656     std::vector<AtomInfo*> atoms;
657     //we need to convert linear into 4 different atoms
658     Vector3d c1(0.0, 0.0, -5.5);
659     Vector3d c2(0.0, 0.0, -1.8);
660     Vector3d c3(0.0, 0.0, 1.8);
661     Vector3d c4(0.0, 0.0, 5.5);
662     RotMat3x3d rotMatrix;
663     RotMat3x3d rotTrans;
664     AtomInfo* atomInfo;
665     Vector3d pos;
666     Vector3d newVec;
667     Vector3d dVec;
668     Quat4d q;
669     AtomData* atomData;
670     GenericData* data;
671     bool haveAtomData;
672    
673     //if atom is not Ring5GB atom, just skip it
674     if(!isRing5gbAtom(datom->getType()))
675     return;
676    
677     data = datom->getPropertyByName("ATOMDATA");
678     if(data != NULL){
679     atomData = dynamic_cast<AtomData*>(data);
680     if(atomData == NULL){
681     std::cerr << "can not get Atom Data from " << datom->getType() << std::endl;
682     atomData = new AtomData;
683     haveAtomData = false;
684     } else {
685     haveAtomData = true;
686     }
687     } else {
688     atomData = new AtomData;
689     haveAtomData = false;
690     }
691    
692    
693     pos = datom->getPos();
694     q = datom->getQ();
695     rotMatrix = datom->getA();
696    
697     // We need A^T to convert from body-fixed to space-fixed:
698     rotTrans = rotMatrix.transpose();
699    
700     newVec = rotTrans * c1;
701     atomInfo = new AtomInfo;
702 xsun 881 atomInfo->atomTypeName = "K";
703     atomInfo->pos[0] = pos[0] + newVec[0];
704     atomInfo->pos[1] = pos[1] + newVec[1];
705     atomInfo->pos[2] = pos[2] + newVec[2];
706     atomInfo->dipole[0] = 0.0;
707     atomInfo->dipole[1] = 0.0;
708     atomInfo->dipole[2] = 0.0;
709     atomData->addAtomInfo(atomInfo);
710    
711     newVec = rotTrans * c2;
712     atomInfo = new AtomInfo;
713     atomInfo->atomTypeName = "K";
714     atomInfo->pos[0] = pos[0] + newVec[0];
715     atomInfo->pos[1] = pos[1] + newVec[1];
716     atomInfo->pos[2] = pos[2] + newVec[2];
717     atomInfo->dipole[0] = 0.0;
718     atomInfo->dipole[1] = 0.0;
719     atomInfo->dipole[2] = 0.0;
720     atomData->addAtomInfo(atomInfo);
721    
722     newVec = rotTrans * c3;
723     atomInfo = new AtomInfo;
724     atomInfo->atomTypeName = "K";
725     atomInfo->pos[0] = pos[0] + newVec[0];
726     atomInfo->pos[1] = pos[1] + newVec[1];
727     atomInfo->pos[2] = pos[2] + newVec[2];
728     atomInfo->dipole[0] = 0.0;
729     atomInfo->dipole[1] = 0.0;
730     atomInfo->dipole[2] = 0.0;
731     atomData->addAtomInfo(atomInfo);
732    
733     newVec = rotTrans * c4;
734     atomInfo = new AtomInfo;
735     atomInfo->atomTypeName = "K";
736     atomInfo->pos[0] = pos[0] + newVec[0];
737     atomInfo->pos[1] = pos[1] + newVec[1];
738     atomInfo->pos[2] = pos[2] + newVec[2];
739     atomInfo->dipole[0] = 0.0;
740     atomInfo->dipole[1] = 0.0;
741     atomInfo->dipole[2] = 0.0;
742     atomData->addAtomInfo(atomInfo);
743    
744     //add atom data into atom's property
745    
746     if(!haveAtomData){
747     atomData->setID("ATOMDATA");
748     datom->addProperty(atomData);
749     }
750    
751     setVisited(datom);
752    
753     }
754    
755 xsun 1219 const std::string Ring5gbAtomVisitor::toString(){
756 xsun 881 char buffer[65535];
757     std::string result;
758    
759     sprintf(buffer ,"------------------------------------------------------------------\n");
760     result += buffer;
761    
762     sprintf(buffer ,"Visitor name: %s\n", visitorName.c_str());
763     result += buffer;
764    
765 xsun 1219 sprintf(buffer , "Visitor Description: Convert Ring5GB into 4 different K atoms\n");
766 xsun 881 result += buffer;
767    
768     sprintf(buffer ,"------------------------------------------------------------------\n");
769     result += buffer;
770    
771     return result;
772     }
773    
774 xsun 1219 bool HeadAtomVisitor::isHeadAtom(const std::string& atomType){
775     std::set<std::string>::iterator strIter;
776     strIter = HeadAtomType.find(atomType);
777    
778     return strIter != HeadAtomType.end() ? true : false;
779     }
780    
781     void HeadAtomVisitor::visit(DirectionalAtom* datom){
782     std::vector<AtomInfo*> atoms;
783     //we need to convert linear into 2 different atoms
784     Vector3d c1(0.0, 0.0, -1.5);
785     Vector3d c2(0.0, 0.0, 1.5);
786     RotMat3x3d rotMatrix;
787     RotMat3x3d rotTrans;
788     AtomInfo* atomInfo;
789     Vector3d pos;
790     Vector3d newVec;
791     Vector3d dVec;
792     Quat4d q;
793     AtomData* atomData;
794     GenericData* data;
795     bool haveAtomData;
796    
797     //if atom is not Head atom, just skip it
798     if(!isHeadAtom(datom->getType()))
799     return;
800    
801     data = datom->getPropertyByName("ATOMDATA");
802     if(data != NULL){
803     atomData = dynamic_cast<AtomData*>(data);
804     if(atomData == NULL){
805     std::cerr << "can not get Atom Data from " << datom->getType() << std::endl;
806     atomData = new AtomData;
807     haveAtomData = false;
808     } else {
809     haveAtomData = true;
810     }
811     } else {
812     atomData = new AtomData;
813     haveAtomData = false;
814     }
815    
816    
817     pos = datom->getPos();
818     q = datom->getQ();
819     rotMatrix = datom->getA();
820    
821     // We need A^T to convert from body-fixed to space-fixed:
822     rotTrans = rotMatrix.transpose();
823    
824     newVec = rotTrans * c1;
825     atomInfo = new AtomInfo;
826     atomInfo->atomTypeName = "C";
827     atomInfo->pos[0] = pos[0] + newVec[0];
828     atomInfo->pos[1] = pos[1] + newVec[1];
829     atomInfo->pos[2] = pos[2] + newVec[2];
830     atomInfo->dipole[0] = 0.0;
831     atomInfo->dipole[1] = 0.0;
832     atomInfo->dipole[2] = 0.0;
833     atomData->addAtomInfo(atomInfo);
834    
835     newVec = rotTrans * c2;
836     atomInfo = new AtomInfo;
837     atomInfo->atomTypeName = "O";
838     atomInfo->pos[0] = pos[0] + newVec[0];
839     atomInfo->pos[1] = pos[1] + newVec[1];
840     atomInfo->pos[2] = pos[2] + newVec[2];
841     atomInfo->dipole[0] = 0.0;
842     atomInfo->dipole[1] = 0.0;
843     atomInfo->dipole[2] = 0.0;
844     atomData->addAtomInfo(atomInfo);
845    
846     //add atom data into atom's property
847    
848     if(!haveAtomData){
849     atomData->setID("ATOMDATA");
850     datom->addProperty(atomData);
851     }
852    
853     setVisited(datom);
854    
855     }
856    
857     const std::string HeadAtomVisitor::toString(){
858     char buffer[65535];
859     std::string result;
860    
861     sprintf(buffer ,"------------------------------------------------------------------\n");
862     result += buffer;
863    
864     sprintf(buffer ,"Visitor name: %s\n", visitorName.c_str());
865     result += buffer;
866    
867     sprintf(buffer , "Visitor Description: Convert HEAD into C atom and O atom\n");
868     result += buffer;
869    
870     sprintf(buffer ,"------------------------------------------------------------------\n");
871     result += buffer;
872    
873     return result;
874     }
875    
876    
877 gezelter 507 //----------------------------------------------------------------------------//
878 gezelter 2
879 gezelter 507 void DefaultAtomVisitor::visit(Atom *atom) {
880 gezelter 246 AtomData *atomData;
881     AtomInfo *atomInfo;
882     Vector3d pos;
883 gezelter 2
884 gezelter 246 if (isVisited(atom))
885 gezelter 507 return;
886 gezelter 2
887 gezelter 246 atomInfo = new AtomInfo;
888 gezelter 2
889 gezelter 246 atomData = new AtomData;
890     atomData->setID("ATOMDATA");
891 gezelter 2
892 gezelter 246 pos = atom->getPos();
893 gezelter 407 atomInfo->atomTypeName = atom->getType();
894 gezelter 246 atomInfo->pos[0] = pos[0];
895     atomInfo->pos[1] = pos[1];
896     atomInfo->pos[2] = pos[2];
897     atomInfo->dipole[0] = 0.0;
898     atomInfo->dipole[1] = 0.0;
899     atomInfo->dipole[2] = 0.0;
900 gezelter 2
901 gezelter 246 atomData->addAtomInfo(atomInfo);
902 gezelter 2
903 gezelter 246 atom->addProperty(atomData);
904    
905     setVisited(atom);
906 gezelter 507 }
907 gezelter 2
908 gezelter 507 void DefaultAtomVisitor::visit(DirectionalAtom *datom) {
909 gezelter 246 AtomData *atomData;
910     AtomInfo *atomInfo;
911     Vector3d pos;
912     Vector3d u;
913 gezelter 2
914 gezelter 246 if (isVisited(datom))
915 gezelter 507 return;
916 gezelter 2
917 gezelter 246 pos = datom->getPos();
918 tim 989 if (datom->getAtomType()->isGayBerne()) {
919     u = datom->getA().transpose()*V3Z;
920     } else if (datom->getAtomType()->isMultipole()) {
921     u = datom->getElectroFrame().getColumn(2);
922     }
923 gezelter 246 atomData = new AtomData;
924     atomData->setID("ATOMDATA");
925     atomInfo = new AtomInfo;
926 gezelter 2
927 gezelter 407 atomInfo->atomTypeName = datom->getType();
928 gezelter 246 atomInfo->pos[0] = pos[0];
929     atomInfo->pos[1] = pos[1];
930     atomInfo->pos[2] = pos[2];
931     atomInfo->dipole[0] = u[0];
932     atomInfo->dipole[1] = u[1];
933     atomInfo->dipole[2] = u[2];
934    
935     atomData->addAtomInfo(atomInfo);
936    
937     datom->addProperty(atomData);
938    
939     setVisited(datom);
940 gezelter 507 }
941 gezelter 2
942 gezelter 507 const std::string DefaultAtomVisitor::toString() {
943 gezelter 246 char buffer[65535];
944     std::string result;
945 gezelter 2
946 gezelter 246 sprintf(buffer,
947     "------------------------------------------------------------------\n");
948     result += buffer;
949 gezelter 2
950 gezelter 246 sprintf(buffer, "Visitor name: %s\n", visitorName.c_str());
951     result += buffer;
952 gezelter 2
953 gezelter 246 sprintf(buffer,
954     "Visitor Description: copy atom infomation into atom data\n");
955     result += buffer;
956 gezelter 2
957 gezelter 246 sprintf(buffer,
958     "------------------------------------------------------------------\n");
959     result += buffer;
960 gezelter 2
961 gezelter 246 return result;
962 gezelter 507 }
963 gezelter 246 } //namespace oopse

Properties

Name Value
svn:executable *