[bcf653] | 1 | /*
|
---|
| 2 | * Project: MoleCuilder
|
---|
| 3 | * Description: creates and alters molecular systems
|
---|
[0aa122] | 4 | * Copyright (C) 2010-2012 University of Bonn. All rights reserved.
|
---|
[bcf653] | 5 | * Please see the LICENSE file or "Copyright notice" in builder.cpp for details.
|
---|
| 6 | */
|
---|
| 7 |
|
---|
[cee0b57] | 8 | /*
|
---|
| 9 | * molecule_geometry.cpp
|
---|
| 10 | *
|
---|
| 11 | * Created on: Oct 5, 2009
|
---|
| 12 | * Author: heber
|
---|
| 13 | */
|
---|
| 14 |
|
---|
[bf3817] | 15 | // include config.h
|
---|
[aafd77] | 16 | #ifdef HAVE_CONFIG_H
|
---|
| 17 | #include <config.h>
|
---|
| 18 | #endif
|
---|
[bf3817] | 19 |
|
---|
[ad011c] | 20 | #include "CodePatterns/MemDebug.hpp"
|
---|
[aafd77] | 21 |
|
---|
[6f0841] | 22 | #include "Atom/atom.hpp"
|
---|
[129204] | 23 | #include "Bond/bond.hpp"
|
---|
| 24 | #include "Box.hpp"
|
---|
[ad011c] | 25 | #include "CodePatterns/Log.hpp"
|
---|
| 26 | #include "CodePatterns/Verbose.hpp"
|
---|
[cee0b57] | 27 | #include "config.hpp"
|
---|
[3bdb6d] | 28 | #include "Element/element.hpp"
|
---|
[129204] | 29 | #include "Graph/BondGraph.hpp"
|
---|
[13d150] | 30 | #include "LinearAlgebra/leastsquaremin.hpp"
|
---|
[129204] | 31 | #include "LinearAlgebra/Line.hpp"
|
---|
| 32 | #include "LinearAlgebra/RealSpaceMatrix.hpp"
|
---|
| 33 | #include "LinearAlgebra/Plane.hpp"
|
---|
[cee0b57] | 34 | #include "molecule.hpp"
|
---|
[b34306] | 35 | #include "World.hpp"
|
---|
[6e5084] | 36 |
|
---|
[76c0d6] | 37 | #include <boost/foreach.hpp>
|
---|
| 38 |
|
---|
[aafd77] | 39 | #include <gsl/gsl_eigen.h>
|
---|
| 40 | #include <gsl/gsl_multimin.h>
|
---|
| 41 |
|
---|
[cee0b57] | 42 |
|
---|
| 43 | /************************************* Functions for class molecule *********************************/
|
---|
| 44 |
|
---|
| 45 |
|
---|
| 46 | /** Centers the molecule in the box whose lengths are defined by vector \a *BoxLengths.
|
---|
| 47 | * \param *out output stream for debugging
|
---|
| 48 | */
|
---|
[e138de] | 49 | bool molecule::CenterInBox()
|
---|
[cee0b57] | 50 | {
|
---|
| 51 | bool status = true;
|
---|
[e138de] | 52 | const Vector *Center = DetermineCenterOfAll();
|
---|
[eddea2] | 53 | const Vector *CenterBox = DetermineCenterOfBox();
|
---|
[f429d7] | 54 | Box &domain = World::getInstance().getDomain();
|
---|
[cee0b57] | 55 |
|
---|
| 56 | // go through all atoms
|
---|
[30c753] | 57 | for (iterator iter = begin(); iter != end(); ++iter) {
|
---|
| 58 | if (DoLog(4) && (*Center != *CenterBox))
|
---|
| 59 | LOG(4, "INFO: atom before is at " << **iter);
|
---|
| 60 | **iter -= *Center;
|
---|
| 61 | **iter += *CenterBox;
|
---|
| 62 | if (DoLog(4) && (*Center != *CenterBox))
|
---|
| 63 | LOG(4, "INFO: atom after is at " << **iter);
|
---|
[d0f111] | 64 | }
|
---|
[712886] | 65 | getAtomSet().transformNodes(boost::bind(&Box::enforceBoundaryConditions,domain,_1));
|
---|
[cee0b57] | 66 |
|
---|
| 67 | delete(Center);
|
---|
[52d777] | 68 | delete(CenterBox);
|
---|
[cee0b57] | 69 | return status;
|
---|
| 70 | };
|
---|
| 71 |
|
---|
| 72 |
|
---|
| 73 | /** Bounds the molecule in the box whose lengths are defined by vector \a *BoxLengths.
|
---|
| 74 | * \param *out output stream for debugging
|
---|
| 75 | */
|
---|
[e138de] | 76 | bool molecule::BoundInBox()
|
---|
[cee0b57] | 77 | {
|
---|
| 78 | bool status = true;
|
---|
[f429d7] | 79 | Box &domain = World::getInstance().getDomain();
|
---|
[cee0b57] | 80 |
|
---|
| 81 | // go through all atoms
|
---|
[712886] | 82 | getAtomSet().transformNodes(boost::bind(&Box::enforceBoundaryConditions,domain,_1));
|
---|
[cee0b57] | 83 |
|
---|
| 84 | return status;
|
---|
| 85 | };
|
---|
| 86 |
|
---|
| 87 | /** Centers the edge of the atoms at (0,0,0).
|
---|
| 88 | * \param *out output stream for debugging
|
---|
| 89 | * \param *max coordinates of other edge, specifying box dimensions.
|
---|
| 90 | */
|
---|
[e138de] | 91 | void molecule::CenterEdge(Vector *max)
|
---|
[cee0b57] | 92 | {
|
---|
[47d041] | 93 | // Info info(__func__);
|
---|
[cee0b57] | 94 | Vector *min = new Vector;
|
---|
| 95 |
|
---|
[30c753] | 96 | const_iterator iter = begin(); // start at first in list
|
---|
[9879f6] | 97 | if (iter != end()) { //list not empty?
|
---|
[cee0b57] | 98 | for (int i=NDIM;i--;) {
|
---|
[d74077] | 99 | max->at(i) = (*iter)->at(i);
|
---|
| 100 | min->at(i) = (*iter)->at(i);
|
---|
[cee0b57] | 101 | }
|
---|
[9879f6] | 102 | for (; iter != end(); ++iter) {// continue with second if present
|
---|
| 103 | //(*iter)->Output(1,1,out);
|
---|
[cee0b57] | 104 | for (int i=NDIM;i--;) {
|
---|
[d74077] | 105 | max->at(i) = (max->at(i) < (*iter)->at(i)) ? (*iter)->at(i) : max->at(i);
|
---|
| 106 | min->at(i) = (min->at(i) > (*iter)->at(i)) ? (*iter)->at(i) : min->at(i);
|
---|
[cee0b57] | 107 | }
|
---|
| 108 | }
|
---|
[47d041] | 109 | LOG(1, "INFO: Maximum is " << *max << ", Minimum is " << *min << ".");
|
---|
[cee0b57] | 110 | min->Scale(-1.);
|
---|
[273382] | 111 | (*max) += (*min);
|
---|
[cee0b57] | 112 | Translate(min);
|
---|
| 113 | }
|
---|
| 114 | delete(min);
|
---|
| 115 | };
|
---|
| 116 |
|
---|
| 117 | /** Centers the center of the atoms at (0,0,0).
|
---|
| 118 | * \param *out output stream for debugging
|
---|
| 119 | * \param *center return vector for translation vector
|
---|
| 120 | */
|
---|
[e138de] | 121 | void molecule::CenterOrigin()
|
---|
[cee0b57] | 122 | {
|
---|
| 123 | int Num = 0;
|
---|
[30c753] | 124 | const_iterator iter = begin(); // start at first in list
|
---|
[1883f9] | 125 | Vector Center;
|
---|
[cee0b57] | 126 |
|
---|
| 127 | Center.Zero();
|
---|
[9879f6] | 128 | if (iter != end()) { //list not empty?
|
---|
| 129 | for (; iter != end(); ++iter) { // continue with second if present
|
---|
[cee0b57] | 130 | Num++;
|
---|
[d74077] | 131 | Center += (*iter)->getPosition();
|
---|
[cee0b57] | 132 | }
|
---|
[bdc91e] | 133 | Center.Scale(-1./(double)Num); // divide through total number (and sign for direction)
|
---|
[cee0b57] | 134 | Translate(&Center);
|
---|
| 135 | }
|
---|
| 136 | };
|
---|
| 137 |
|
---|
| 138 | /** Returns vector pointing to center of all atoms.
|
---|
| 139 | * \return pointer to center of all vector
|
---|
| 140 | */
|
---|
[e138de] | 141 | Vector * molecule::DetermineCenterOfAll() const
|
---|
[cee0b57] | 142 | {
|
---|
[30c753] | 143 | const_iterator iter = begin(); // start at first in list
|
---|
[cee0b57] | 144 | Vector *a = new Vector();
|
---|
| 145 | double Num = 0;
|
---|
| 146 |
|
---|
| 147 | a->Zero();
|
---|
| 148 |
|
---|
[9879f6] | 149 | if (iter != end()) { //list not empty?
|
---|
| 150 | for (; iter != end(); ++iter) { // continue with second if present
|
---|
[15b670] | 151 | Num++;
|
---|
[d74077] | 152 | (*a) += (*iter)->getPosition();
|
---|
[cee0b57] | 153 | }
|
---|
[bdc91e] | 154 | a->Scale(1./(double)Num); // divide through total mass (and sign for direction)
|
---|
[cee0b57] | 155 | }
|
---|
| 156 | return a;
|
---|
| 157 | };
|
---|
| 158 |
|
---|
[eddea2] | 159 | /** Returns vector pointing to center of the domain.
|
---|
| 160 | * \return pointer to center of the domain
|
---|
| 161 | */
|
---|
| 162 | Vector * molecule::DetermineCenterOfBox() const
|
---|
| 163 | {
|
---|
| 164 | Vector *a = new Vector(0.5,0.5,0.5);
|
---|
[cca9ef] | 165 | const RealSpaceMatrix &M = World::getInstance().getDomain().getM();
|
---|
[5108e1] | 166 | (*a) *= M;
|
---|
[eddea2] | 167 | return a;
|
---|
| 168 | };
|
---|
| 169 |
|
---|
[cee0b57] | 170 | /** Returns vector pointing to center of gravity.
|
---|
| 171 | * \param *out output stream for debugging
|
---|
| 172 | * \return pointer to center of gravity vector
|
---|
| 173 | */
|
---|
[4bb63c] | 174 | Vector * molecule::DetermineCenterOfGravity() const
|
---|
[cee0b57] | 175 | {
|
---|
[30c753] | 176 | const_iterator iter = begin(); // start at first in list
|
---|
[cee0b57] | 177 | Vector *a = new Vector();
|
---|
| 178 | Vector tmp;
|
---|
| 179 | double Num = 0;
|
---|
| 180 |
|
---|
| 181 | a->Zero();
|
---|
| 182 |
|
---|
[9879f6] | 183 | if (iter != end()) { //list not empty?
|
---|
| 184 | for (; iter != end(); ++iter) { // continue with second if present
|
---|
[83f176] | 185 | Num += (*iter)->getType()->getMass();
|
---|
| 186 | tmp = (*iter)->getType()->getMass() * (*iter)->getPosition();
|
---|
[273382] | 187 | (*a) += tmp;
|
---|
[cee0b57] | 188 | }
|
---|
[bdc91e] | 189 | a->Scale(1./Num); // divide through total mass
|
---|
[cee0b57] | 190 | }
|
---|
[47d041] | 191 | LOG(1, "INFO: Resulting center of gravity: " << *a << ".");
|
---|
[cee0b57] | 192 | return a;
|
---|
| 193 | };
|
---|
| 194 |
|
---|
| 195 | /** Centers the center of gravity of the atoms at (0,0,0).
|
---|
| 196 | * \param *out output stream for debugging
|
---|
| 197 | * \param *center return vector for translation vector
|
---|
| 198 | */
|
---|
[e138de] | 199 | void molecule::CenterPeriodic()
|
---|
[cee0b57] | 200 | {
|
---|
[1883f9] | 201 | Vector NewCenter;
|
---|
| 202 | DeterminePeriodicCenter(NewCenter);
|
---|
| 203 | // go through all atoms
|
---|
[30c753] | 204 | for (iterator iter = begin(); iter != end(); ++iter) {
|
---|
| 205 | **iter -= NewCenter;
|
---|
[1883f9] | 206 | }
|
---|
[cee0b57] | 207 | };
|
---|
| 208 |
|
---|
| 209 |
|
---|
| 210 | /** Centers the center of gravity of the atoms at (0,0,0).
|
---|
| 211 | * \param *out output stream for debugging
|
---|
| 212 | * \param *center return vector for translation vector
|
---|
| 213 | */
|
---|
[e138de] | 214 | void molecule::CenterAtVector(Vector *newcenter)
|
---|
[cee0b57] | 215 | {
|
---|
[1883f9] | 216 | // go through all atoms
|
---|
[30c753] | 217 | for (iterator iter = begin(); iter != end(); ++iter) {
|
---|
| 218 | **iter -= *newcenter;
|
---|
[1883f9] | 219 | }
|
---|
[cee0b57] | 220 | };
|
---|
| 221 |
|
---|
[1f91f4] | 222 | /** Calculate the inertia tensor of a the molecule.
|
---|
| 223 | *
|
---|
| 224 | * @return inertia tensor
|
---|
| 225 | */
|
---|
| 226 | RealSpaceMatrix molecule::getInertiaTensor() const
|
---|
| 227 | {
|
---|
| 228 | RealSpaceMatrix InertiaTensor;
|
---|
| 229 | Vector *CenterOfGravity = DetermineCenterOfGravity();
|
---|
| 230 |
|
---|
| 231 | // reset inertia tensor
|
---|
| 232 | InertiaTensor.setZero();
|
---|
| 233 |
|
---|
| 234 | // sum up inertia tensor
|
---|
[30c753] | 235 | for (const_iterator iter = begin(); iter != end(); ++iter) {
|
---|
[1f91f4] | 236 | Vector x = (*iter)->getPosition();
|
---|
| 237 | x -= *CenterOfGravity;
|
---|
| 238 | const double mass = (*iter)->getType()->getMass();
|
---|
| 239 | InertiaTensor.at(0,0) += mass*(x[1]*x[1] + x[2]*x[2]);
|
---|
| 240 | InertiaTensor.at(0,1) += mass*(-x[0]*x[1]);
|
---|
| 241 | InertiaTensor.at(0,2) += mass*(-x[0]*x[2]);
|
---|
| 242 | InertiaTensor.at(1,0) += mass*(-x[1]*x[0]);
|
---|
| 243 | InertiaTensor.at(1,1) += mass*(x[0]*x[0] + x[2]*x[2]);
|
---|
| 244 | InertiaTensor.at(1,2) += mass*(-x[1]*x[2]);
|
---|
| 245 | InertiaTensor.at(2,0) += mass*(-x[2]*x[0]);
|
---|
| 246 | InertiaTensor.at(2,1) += mass*(-x[2]*x[1]);
|
---|
| 247 | InertiaTensor.at(2,2) += mass*(x[0]*x[0] + x[1]*x[1]);
|
---|
| 248 | }
|
---|
| 249 | // print InertiaTensor
|
---|
[47d041] | 250 | LOG(1, "INFO: The inertia tensor of molecule " << getName() << " is:" << InertiaTensor);
|
---|
[1f91f4] | 251 |
|
---|
| 252 | delete CenterOfGravity;
|
---|
| 253 | return InertiaTensor;
|
---|
| 254 | }
|
---|
| 255 |
|
---|
| 256 | /** Rotates the molecule in such a way that biggest principal axis corresponds
|
---|
| 257 | * to given \a Axis.
|
---|
| 258 | *
|
---|
| 259 | * @param Axis Axis to align with biggest principal axis
|
---|
| 260 | */
|
---|
[5b6a4b7] | 261 | void molecule::RotateToPrincipalAxisSystem(const Vector &Axis)
|
---|
[1f91f4] | 262 | {
|
---|
| 263 | Vector *CenterOfGravity = DetermineCenterOfGravity();
|
---|
| 264 | RealSpaceMatrix InertiaTensor = getInertiaTensor();
|
---|
| 265 |
|
---|
| 266 | // diagonalize to determine principal axis system
|
---|
| 267 | Vector Eigenvalues = InertiaTensor.transformToEigenbasis();
|
---|
| 268 |
|
---|
| 269 | for(int i=0;i<NDIM;i++)
|
---|
[47d041] | 270 | LOG(0, "eigenvalue = " << Eigenvalues[i] << ", eigenvector = " << InertiaTensor.column(i));
|
---|
[1f91f4] | 271 |
|
---|
[47d041] | 272 | LOG(0, "STATUS: Transforming to PAS ... ");
|
---|
[1f91f4] | 273 |
|
---|
| 274 | // obtain first column, eigenvector to biggest eigenvalue
|
---|
| 275 | Vector BiggestEigenvector(InertiaTensor.column(Eigenvalues.SmallestComponent()));
|
---|
[f221e3] | 276 | Vector DesiredAxis(Axis.getNormalized());
|
---|
[1f91f4] | 277 |
|
---|
| 278 | // Creation Line that is the rotation axis
|
---|
| 279 | DesiredAxis.VectorProduct(BiggestEigenvector);
|
---|
| 280 | Line RotationAxis(Vector(0.,0.,0.), DesiredAxis);
|
---|
| 281 |
|
---|
| 282 | // determine angle
|
---|
| 283 | const double alpha = BiggestEigenvector.Angle(Axis);
|
---|
| 284 |
|
---|
[47d041] | 285 | LOG(1, "INFO: Rotation angle is " << alpha);
|
---|
[1f91f4] | 286 |
|
---|
| 287 | // and rotate
|
---|
[30c753] | 288 | for (iterator iter = begin(); iter != end(); ++iter) {
|
---|
[1f91f4] | 289 | *(*iter) -= *CenterOfGravity;
|
---|
| 290 | (*iter)->setPosition(RotationAxis.rotateVector((*iter)->getPosition(), alpha));
|
---|
| 291 | *(*iter) += *CenterOfGravity;
|
---|
| 292 | }
|
---|
[47d041] | 293 | LOG(0, "STATUS: done.");
|
---|
[1f91f4] | 294 |
|
---|
| 295 | delete CenterOfGravity;
|
---|
| 296 | }
|
---|
[cee0b57] | 297 |
|
---|
| 298 | /** Scales all atoms by \a *factor.
|
---|
| 299 | * \param *factor pointer to scaling factor
|
---|
[1bd79e] | 300 | *
|
---|
| 301 | * TODO: Is this realy what is meant, i.e.
|
---|
| 302 | * x=(x[0]*factor[0],x[1]*factor[1],x[2]*factor[2]) (current impl)
|
---|
| 303 | * or rather
|
---|
| 304 | * x=(**factor) * x (as suggested by comment)
|
---|
[cee0b57] | 305 | */
|
---|
[776b64] | 306 | void molecule::Scale(const double ** const factor)
|
---|
[cee0b57] | 307 | {
|
---|
[59fff1] | 308 | for (iterator iter = begin(); iter != end(); ++iter) {
|
---|
[6625c3] | 309 | for (size_t j=0;j<(*iter)->getTrajectorySize();j++) {
|
---|
[056e70] | 310 | Vector temp = (*iter)->getPositionAtStep(j);
|
---|
[6625c3] | 311 | temp.ScaleAll(*factor);
|
---|
[056e70] | 312 | (*iter)->setPositionAtStep(j,temp);
|
---|
[6625c3] | 313 | }
|
---|
[cee0b57] | 314 | }
|
---|
| 315 | };
|
---|
| 316 |
|
---|
| 317 | /** Translate all atoms by given vector.
|
---|
| 318 | * \param trans[] translation vector.
|
---|
| 319 | */
|
---|
| 320 | void molecule::Translate(const Vector *trans)
|
---|
| 321 | {
|
---|
[59fff1] | 322 | for (iterator iter = begin(); iter != end(); ++iter) {
|
---|
[6625c3] | 323 | for (size_t j=0;j<(*iter)->getTrajectorySize();j++) {
|
---|
[056e70] | 324 | (*iter)->setPositionAtStep(j, (*iter)->getPositionAtStep(j) + (*trans));
|
---|
[6625c3] | 325 | }
|
---|
[cee0b57] | 326 | }
|
---|
| 327 | };
|
---|
| 328 |
|
---|
| 329 | /** Translate the molecule periodically in the box.
|
---|
| 330 | * \param trans[] translation vector.
|
---|
[6625c3] | 331 | * TODO treatment of trajectories missing
|
---|
[cee0b57] | 332 | */
|
---|
| 333 | void molecule::TranslatePeriodically(const Vector *trans)
|
---|
| 334 | {
|
---|
[f429d7] | 335 | Box &domain = World::getInstance().getDomain();
|
---|
[cee0b57] | 336 |
|
---|
| 337 | // go through all atoms
|
---|
[30c753] | 338 | for (iterator iter = begin(); iter != end(); ++iter) {
|
---|
| 339 | **iter += *trans;
|
---|
[d0f111] | 340 | }
|
---|
[712886] | 341 | getAtomSet().transformNodes(boost::bind(&Box::enforceBoundaryConditions,domain,_1));
|
---|
[cee0b57] | 342 |
|
---|
| 343 | };
|
---|
| 344 |
|
---|
| 345 |
|
---|
| 346 | /** Mirrors all atoms against a given plane.
|
---|
| 347 | * \param n[] normal vector of mirror plane.
|
---|
| 348 | */
|
---|
| 349 | void molecule::Mirror(const Vector *n)
|
---|
| 350 | {
|
---|
[76c0d6] | 351 | OBSERVE;
|
---|
[ccf826] | 352 | Plane p(*n,0);
|
---|
[30c753] | 353 | getAtomSet().transformNodes(boost::bind(&Plane::mirrorVector,p,_1));
|
---|
[cee0b57] | 354 | };
|
---|
| 355 |
|
---|
| 356 | /** Determines center of molecule (yet not considering atom masses).
|
---|
| 357 | * \param center reference to return vector
|
---|
[07a47e] | 358 | * \param saturation whether to treat hydrogen special or not
|
---|
[cee0b57] | 359 | */
|
---|
[07a47e] | 360 | void molecule::DeterminePeriodicCenter(Vector ¢er, const enum HydrogenSaturation saturation)
|
---|
[cee0b57] | 361 | {
|
---|
[cca9ef] | 362 | const RealSpaceMatrix &matrix = World::getInstance().getDomain().getM();
|
---|
| 363 | const RealSpaceMatrix &inversematrix = World::getInstance().getDomain().getM();
|
---|
[cee0b57] | 364 | double tmp;
|
---|
| 365 | bool flag;
|
---|
| 366 | Vector Testvector, Translationvector;
|
---|
[1883f9] | 367 | Vector Center;
|
---|
[7adf0f] | 368 | BondGraph *BG = World::getInstance().getBondGraph();
|
---|
[cee0b57] | 369 |
|
---|
| 370 | do {
|
---|
| 371 | Center.Zero();
|
---|
| 372 | flag = true;
|
---|
[30c753] | 373 | for (const_iterator iter = begin(); iter != end(); ++iter) {
|
---|
[07a47e] | 374 | if ((saturation == DontSaturate) || ((*iter)->getType()->getAtomicNumber() != 1)) {
|
---|
[d74077] | 375 | Testvector = inversematrix * (*iter)->getPosition();
|
---|
[cee0b57] | 376 | Translationvector.Zero();
|
---|
[9d83b6] | 377 | const BondList& ListOfBonds = (*iter)->getListOfBonds();
|
---|
| 378 | for (BondList::const_iterator Runner = ListOfBonds.begin();
|
---|
| 379 | Runner != ListOfBonds.end();
|
---|
| 380 | ++Runner) {
|
---|
[735b1c] | 381 | if ((*iter)->getNr() < (*Runner)->GetOtherAtom((*iter))->getNr()) // otherwise we shift one to, the other fro and gain nothing
|
---|
[cee0b57] | 382 | for (int j=0;j<NDIM;j++) {
|
---|
[d74077] | 383 | tmp = (*iter)->at(j) - (*Runner)->GetOtherAtom(*iter)->at(j);
|
---|
[607eab] | 384 | const range<double> MinMaxBondDistance(
|
---|
| 385 | BG->getMinMaxDistance((*iter), (*Runner)->GetOtherAtom(*iter)));
|
---|
[300220] | 386 | if (fabs(tmp) > MinMaxBondDistance.last) { // check against Min is not useful for components
|
---|
[cee0b57] | 387 | flag = false;
|
---|
[47d041] | 388 | LOG(0, "Hit: atom " << (*iter)->getName() << " in bond " << *(*Runner) << " has to be shifted due to " << tmp << ".");
|
---|
[cee0b57] | 389 | if (tmp > 0)
|
---|
[0a4f7f] | 390 | Translationvector[j] -= 1.;
|
---|
[cee0b57] | 391 | else
|
---|
[0a4f7f] | 392 | Translationvector[j] += 1.;
|
---|
[cee0b57] | 393 | }
|
---|
| 394 | }
|
---|
| 395 | }
|
---|
[273382] | 396 | Testvector += Translationvector;
|
---|
[5108e1] | 397 | Testvector *= matrix;
|
---|
[273382] | 398 | Center += Testvector;
|
---|
[47d041] | 399 | LOG(1, "vector is: " << Testvector);
|
---|
[07a47e] | 400 | if (saturation == DoSaturate) {
|
---|
| 401 | // now also change all hydrogens
|
---|
| 402 | for (BondList::const_iterator Runner = ListOfBonds.begin();
|
---|
| 403 | Runner != ListOfBonds.end();
|
---|
| 404 | ++Runner) {
|
---|
| 405 | if ((*Runner)->GetOtherAtom((*iter))->getType()->getAtomicNumber() == 1) {
|
---|
| 406 | Testvector = inversematrix * (*Runner)->GetOtherAtom((*iter))->getPosition();
|
---|
| 407 | Testvector += Translationvector;
|
---|
| 408 | Testvector *= matrix;
|
---|
| 409 | Center += Testvector;
|
---|
[47d041] | 410 | LOG(1, "Hydrogen vector is: " << Testvector);
|
---|
[07a47e] | 411 | }
|
---|
[cee0b57] | 412 | }
|
---|
| 413 | }
|
---|
| 414 | }
|
---|
| 415 | }
|
---|
| 416 | } while (!flag);
|
---|
[1614174] | 417 |
|
---|
[ea7176] | 418 | Center.Scale(1./static_cast<double>(getAtomCount()));
|
---|
[1883f9] | 419 | CenterAtVector(&Center);
|
---|
[cee0b57] | 420 | };
|
---|
| 421 |
|
---|
| 422 | /** Align all atoms in such a manner that given vector \a *n is along z axis.
|
---|
| 423 | * \param n[] alignment vector.
|
---|
| 424 | */
|
---|
| 425 | void molecule::Align(Vector *n)
|
---|
| 426 | {
|
---|
| 427 | double alpha, tmp;
|
---|
| 428 | Vector z_axis;
|
---|
[0a4f7f] | 429 | z_axis[0] = 0.;
|
---|
| 430 | z_axis[1] = 0.;
|
---|
| 431 | z_axis[2] = 1.;
|
---|
[cee0b57] | 432 |
|
---|
| 433 | // rotate on z-x plane
|
---|
[47d041] | 434 | LOG(0, "Begin of Aligning all atoms.");
|
---|
[0a4f7f] | 435 | alpha = atan(-n->at(0)/n->at(2));
|
---|
[47d041] | 436 | LOG(1, "INFO: Z-X-angle: " << alpha << " ... ");
|
---|
[59fff1] | 437 | for (iterator iter = begin(); iter != end(); ++iter) {
|
---|
[d74077] | 438 | tmp = (*iter)->at(0);
|
---|
| 439 | (*iter)->set(0, cos(alpha) * tmp + sin(alpha) * (*iter)->at(2));
|
---|
| 440 | (*iter)->set(2, -sin(alpha) * tmp + cos(alpha) * (*iter)->at(2));
|
---|
[cee0b57] | 441 | for (int j=0;j<MDSteps;j++) {
|
---|
[6625c3] | 442 | Vector temp;
|
---|
[056e70] | 443 | temp[0] = cos(alpha) * (*iter)->getPositionAtStep(j)[0] + sin(alpha) * (*iter)->getPositionAtStep(j)[2];
|
---|
| 444 | temp[2] = -sin(alpha) * (*iter)->getPositionAtStep(j)[0] + cos(alpha) * (*iter)->getPositionAtStep(j)[2];
|
---|
| 445 | (*iter)->setPositionAtStep(j,temp);
|
---|
[cee0b57] | 446 | }
|
---|
| 447 | }
|
---|
| 448 | // rotate n vector
|
---|
[0a4f7f] | 449 | tmp = n->at(0);
|
---|
| 450 | n->at(0) = cos(alpha) * tmp + sin(alpha) * n->at(2);
|
---|
| 451 | n->at(2) = -sin(alpha) * tmp + cos(alpha) * n->at(2);
|
---|
[47d041] | 452 | LOG(1, "alignment vector after first rotation: " << n);
|
---|
[cee0b57] | 453 |
|
---|
| 454 | // rotate on z-y plane
|
---|
[0a4f7f] | 455 | alpha = atan(-n->at(1)/n->at(2));
|
---|
[47d041] | 456 | LOG(1, "INFO: Z-Y-angle: " << alpha << " ... ");
|
---|
[59fff1] | 457 | for (iterator iter = begin(); iter != end(); ++iter) {
|
---|
[d74077] | 458 | tmp = (*iter)->at(1);
|
---|
| 459 | (*iter)->set(1, cos(alpha) * tmp + sin(alpha) * (*iter)->at(2));
|
---|
| 460 | (*iter)->set(2, -sin(alpha) * tmp + cos(alpha) * (*iter)->at(2));
|
---|
[cee0b57] | 461 | for (int j=0;j<MDSteps;j++) {
|
---|
[6625c3] | 462 | Vector temp;
|
---|
[056e70] | 463 | temp[1] = cos(alpha) * (*iter)->getPositionAtStep(j)[1] + sin(alpha) * (*iter)->getPositionAtStep(j)[2];
|
---|
| 464 | temp[2] = -sin(alpha) * (*iter)->getPositionAtStep(j)[1] + cos(alpha) * (*iter)->getPositionAtStep(j)[2];
|
---|
| 465 | (*iter)->setPositionAtStep(j,temp);
|
---|
[cee0b57] | 466 | }
|
---|
| 467 | }
|
---|
| 468 | // rotate n vector (for consistency check)
|
---|
[0a4f7f] | 469 | tmp = n->at(1);
|
---|
| 470 | n->at(1) = cos(alpha) * tmp + sin(alpha) * n->at(2);
|
---|
| 471 | n->at(2) = -sin(alpha) * tmp + cos(alpha) * n->at(2);
|
---|
[cee0b57] | 472 |
|
---|
| 473 |
|
---|
[47d041] | 474 | LOG(1, "alignment vector after second rotation: " << n);
|
---|
| 475 | LOG(0, "End of Aligning all atoms.");
|
---|
[cee0b57] | 476 | };
|
---|
| 477 |
|
---|
| 478 |
|
---|
| 479 | /** Calculates sum over least square distance to line hidden in \a *x.
|
---|
| 480 | * \param *x offset and direction vector
|
---|
| 481 | * \param *params pointer to lsq_params structure
|
---|
| 482 | * \return \f$ sum_i^N | y_i - (a + t_i b)|^2\f$
|
---|
| 483 | */
|
---|
| 484 | double LeastSquareDistance (const gsl_vector * x, void * params)
|
---|
| 485 | {
|
---|
| 486 | double res = 0, t;
|
---|
| 487 | Vector a,b,c,d;
|
---|
| 488 | struct lsq_params *par = (struct lsq_params *)params;
|
---|
| 489 |
|
---|
| 490 | // initialize vectors
|
---|
[0a4f7f] | 491 | a[0] = gsl_vector_get(x,0);
|
---|
| 492 | a[1] = gsl_vector_get(x,1);
|
---|
| 493 | a[2] = gsl_vector_get(x,2);
|
---|
| 494 | b[0] = gsl_vector_get(x,3);
|
---|
| 495 | b[1] = gsl_vector_get(x,4);
|
---|
| 496 | b[2] = gsl_vector_get(x,5);
|
---|
[cee0b57] | 497 | // go through all atoms
|
---|
[9879f6] | 498 | for (molecule::const_iterator iter = par->mol->begin(); iter != par->mol->end(); ++iter) {
|
---|
[d74077] | 499 | if ((*iter)->getType() == ((struct lsq_params *)params)->type) { // for specific type
|
---|
| 500 | c = (*iter)->getPosition() - a;
|
---|
[273382] | 501 | t = c.ScalarProduct(b); // get direction parameter
|
---|
| 502 | d = t*b; // and create vector
|
---|
| 503 | c -= d; // ... yielding distance vector
|
---|
| 504 | res += d.ScalarProduct(d); // add squared distance
|
---|
[cee0b57] | 505 | }
|
---|
| 506 | }
|
---|
| 507 | return res;
|
---|
| 508 | };
|
---|
| 509 |
|
---|
| 510 | /** By minimizing the least square distance gains alignment vector.
|
---|
| 511 | * \bug this is not yet working properly it seems
|
---|
| 512 | */
|
---|
| 513 | void molecule::GetAlignvector(struct lsq_params * par) const
|
---|
| 514 | {
|
---|
| 515 | int np = 6;
|
---|
| 516 |
|
---|
| 517 | const gsl_multimin_fminimizer_type *T =
|
---|
| 518 | gsl_multimin_fminimizer_nmsimplex;
|
---|
| 519 | gsl_multimin_fminimizer *s = NULL;
|
---|
| 520 | gsl_vector *ss;
|
---|
| 521 | gsl_multimin_function minex_func;
|
---|
| 522 |
|
---|
| 523 | size_t iter = 0, i;
|
---|
| 524 | int status;
|
---|
| 525 | double size;
|
---|
| 526 |
|
---|
| 527 | /* Initial vertex size vector */
|
---|
| 528 | ss = gsl_vector_alloc (np);
|
---|
| 529 |
|
---|
| 530 | /* Set all step sizes to 1 */
|
---|
| 531 | gsl_vector_set_all (ss, 1.0);
|
---|
| 532 |
|
---|
| 533 | /* Starting point */
|
---|
| 534 | par->x = gsl_vector_alloc (np);
|
---|
| 535 | par->mol = this;
|
---|
| 536 |
|
---|
| 537 | gsl_vector_set (par->x, 0, 0.0); // offset
|
---|
| 538 | gsl_vector_set (par->x, 1, 0.0);
|
---|
| 539 | gsl_vector_set (par->x, 2, 0.0);
|
---|
| 540 | gsl_vector_set (par->x, 3, 0.0); // direction
|
---|
| 541 | gsl_vector_set (par->x, 4, 0.0);
|
---|
| 542 | gsl_vector_set (par->x, 5, 1.0);
|
---|
| 543 |
|
---|
| 544 | /* Initialize method and iterate */
|
---|
| 545 | minex_func.f = &LeastSquareDistance;
|
---|
| 546 | minex_func.n = np;
|
---|
| 547 | minex_func.params = (void *)par;
|
---|
| 548 |
|
---|
| 549 | s = gsl_multimin_fminimizer_alloc (T, np);
|
---|
| 550 | gsl_multimin_fminimizer_set (s, &minex_func, par->x, ss);
|
---|
| 551 |
|
---|
| 552 | do
|
---|
| 553 | {
|
---|
| 554 | iter++;
|
---|
| 555 | status = gsl_multimin_fminimizer_iterate(s);
|
---|
| 556 |
|
---|
| 557 | if (status)
|
---|
| 558 | break;
|
---|
| 559 |
|
---|
| 560 | size = gsl_multimin_fminimizer_size (s);
|
---|
| 561 | status = gsl_multimin_test_size (size, 1e-2);
|
---|
| 562 |
|
---|
| 563 | if (status == GSL_SUCCESS)
|
---|
| 564 | {
|
---|
| 565 | printf ("converged to minimum at\n");
|
---|
| 566 | }
|
---|
| 567 |
|
---|
| 568 | printf ("%5d ", (int)iter);
|
---|
| 569 | for (i = 0; i < (size_t)np; i++)
|
---|
| 570 | {
|
---|
| 571 | printf ("%10.3e ", gsl_vector_get (s->x, i));
|
---|
| 572 | }
|
---|
| 573 | printf ("f() = %7.3f size = %.3f\n", s->fval, size);
|
---|
| 574 | }
|
---|
| 575 | while (status == GSL_CONTINUE && iter < 100);
|
---|
| 576 |
|
---|
| 577 | for (i=0;i<(size_t)np;i++)
|
---|
| 578 | gsl_vector_set(par->x, i, gsl_vector_get(s->x, i));
|
---|
| 579 | //gsl_vector_free(par->x);
|
---|
| 580 | gsl_vector_free(ss);
|
---|
| 581 | gsl_multimin_fminimizer_free (s);
|
---|
| 582 | };
|
---|