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root/OpenMD/branches/development/src/math/ConvexHull.cpp
Revision: 1704
Committed: Tue Apr 24 20:40:04 2012 UTC (13 years ago) by gezelter
File size: 10162 byte(s)
Log Message:
qhull modifications for compilation 


File Contents

# User Rev Content
1 gezelter 1411 /* Copyright (c) 2010 The University of Notre Dame. All Rights Reserved.
2 chuckv 1097 *
3     * The University of Notre Dame grants you ("Licensee") a
4     * non-exclusive, royalty free, license to use, modify and
5     * redistribute this software in source and binary code form, provided
6     * that the following conditions are met:
7     *
8 gezelter 1390 * 1. Redistributions of source code must retain the above copyright
9 chuckv 1097 * notice, this list of conditions and the following disclaimer.
10     *
11 gezelter 1390 * 2. Redistributions in binary form must reproduce the above copyright
12 chuckv 1097 * notice, this list of conditions and the following disclaimer in the
13     * documentation and/or other materials provided with the
14     * distribution.
15     *
16     * This software is provided "AS IS," without a warranty of any
17     * kind. All express or implied conditions, representations and
18     * warranties, including any implied warranty of merchantability,
19     * fitness for a particular purpose or non-infringement, are hereby
20     * excluded. The University of Notre Dame and its licensors shall not
21     * be liable for any damages suffered by licensee as a result of
22     * using, modifying or distributing the software or its
23     * derivatives. In no event will the University of Notre Dame or its
24     * licensors be liable for any lost revenue, profit or data, or for
25     * direct, indirect, special, consequential, incidental or punitive
26     * damages, however caused and regardless of the theory of liability,
27     * arising out of the use of or inability to use software, even if the
28     * University of Notre Dame has been advised of the possibility of
29     * such damages.
30     *
31 gezelter 1390 * SUPPORT OPEN SCIENCE! If you use OpenMD or its source code in your
32     * research, please cite the appropriate papers when you publish your
33     * work. Good starting points are:
34     *
35     * [1] Meineke, et al., J. Comp. Chem. 26, 252-271 (2005).
36     * [2] Fennell & Gezelter, J. Chem. Phys. 124, 234104 (2006).
37     * [3] Sun, Lin & Gezelter, J. Chem. Phys. 128, 24107 (2008).
38 gezelter 1665 * [4] Kuang & Gezelter, J. Chem. Phys. 133, 164101 (2010).
39     * [4] , Stocker & Gezelter, J. Chem. Theory Comput. 7, 834 (2011). *
40 chuckv 1097 *
41     * ConvexHull.cpp
42     *
43 chuckv 1137 * Purpose: To calculate convexhull, hull volume libqhull.
44 chuckv 1097 *
45     * Created by Charles F. Vardeman II on 11 Dec 2006.
46     * @author Charles F. Vardeman II
47 gezelter 1442 * @version $Id$
48 chuckv 1097 *
49     */
50    
51 chuckv 1242 /* Standard includes independent of library */
52 chuckv 1374
53 chuckv 1097 #include <iostream>
54     #include <fstream>
55 chuckv 1188 #include <list>
56     #include <algorithm>
57     #include <iterator>
58 chuckv 1141 #include "math/ConvexHull.hpp"
59 chuckv 1188 #include "utils/simError.h"
60 chuckv 1293
61     #ifdef IS_MPI
62 chuckv 1374 #include <mpi.h>
63 chuckv 1293 #endif
64    
65 gezelter 1704 #include "math/qhull.hpp"
66 chuckv 1293
67 chuckv 1374 #ifdef HAVE_QHULL
68 gezelter 1704 using namespace OpenMD;
69 chuckv 1293
70 chuckv 1374 ConvexHull::ConvexHull() : Hull(), dim_(3), options_("qhull Qt Pp") {
71     }
72 chuckv 1293
73 chuckv 1374 void ConvexHull::computeHull(std::vector<StuntDouble*> bodydoubles) {
74 chuckv 1293
75 chuckv 1374 int numpoints = bodydoubles.size();
76 chuckv 1293
77 chuckv 1374 Triangles_.clear();
78 chuckv 1242
79 chuckv 1293 vertexT *vertex, **vertexp;
80     facetT *facet;
81     setT *vertices;
82 chuckv 1374 int curlong, totlong;
83 chuckv 1404 pointT *intPoint;
84 chuckv 1242
85 gezelter 1378 std::vector<double> ptArray(numpoints*dim_);
86 chuckv 1293
87     // Copy the positon vector into a points vector for qhull.
88     std::vector<StuntDouble*>::iterator SD;
89     int i = 0;
90 chuckv 1374 for (SD =bodydoubles.begin(); SD != bodydoubles.end(); ++SD){
91     Vector3d pos = (*SD)->getPos();
92     ptArray[dim_ * i] = pos.x();
93     ptArray[dim_ * i + 1] = pos.y();
94     ptArray[dim_ * i + 2] = pos.z();
95     i++;
96     }
97 chuckv 1242
98 gezelter 1411 /* Clean up memory from previous convex hull calculations */
99 chuckv 1293 boolT ismalloc = False;
100 chuckv 1308
101 gezelter 1411 /* compute the hull for our local points (or all the points for single
102     processor versions) */
103 chuckv 1302 if (qh_new_qhull(dim_, numpoints, &ptArray[0], ismalloc,
104 chuckv 1374 const_cast<char *>(options_.c_str()), NULL, stderr)) {
105 gezelter 1411
106 chuckv 1374 sprintf(painCave.errMsg, "ConvexHull: Qhull failed to compute convex hull");
107     painCave.isFatal = 1;
108     simError();
109    
110 chuckv 1293 } //qh_new_qhull
111    
112    
113     #ifdef IS_MPI
114 chuckv 1374 //If we are doing the mpi version, set up some vectors for data communication
115 chuckv 1242
116 chuckv 1374 int nproc = MPI::COMM_WORLD.Get_size();
117     int myrank = MPI::COMM_WORLD.Get_rank();
118     int localHullSites = 0;
119 chuckv 1293
120 gezelter 1384 std::vector<int> hullSitesOnProc(nproc, 0);
121     std::vector<int> coordsOnProc(nproc, 0);
122     std::vector<int> displacements(nproc, 0);
123     std::vector<int> vectorDisplacements(nproc, 0);
124    
125 chuckv 1374 std::vector<double> coords;
126     std::vector<double> vels;
127 gezelter 1378 std::vector<int> indexMap;
128 chuckv 1374 std::vector<double> masses;
129    
130     FORALLvertices{
131     localHullSites++;
132 chuckv 1242
133 chuckv 1374 int idx = qh_pointid(vertex->point);
134 gezelter 1378
135     indexMap.push_back(idx);
136    
137 chuckv 1374 coords.push_back(ptArray[dim_ * idx]);
138     coords.push_back(ptArray[dim_ * idx + 1]);
139     coords.push_back(ptArray[dim_ * idx + 2]);
140 chuckv 1293
141 chuckv 1374 StuntDouble* sd = bodydoubles[idx];
142 chuckv 1188
143 chuckv 1374 Vector3d vel = sd->getVel();
144     vels.push_back(vel.x());
145     vels.push_back(vel.y());
146     vels.push_back(vel.z());
147 chuckv 1188
148 chuckv 1374 masses.push_back(sd->getMass());
149     }
150 chuckv 1188
151 chuckv 1374 MPI::COMM_WORLD.Allgather(&localHullSites, 1, MPI::INT, &hullSitesOnProc[0],
152     1, MPI::INT);
153 chuckv 1307
154 chuckv 1374 int globalHullSites = 0;
155 gezelter 1376 for (int iproc = 0; iproc < nproc; iproc++){
156 chuckv 1374 globalHullSites += hullSitesOnProc[iproc];
157     coordsOnProc[iproc] = dim_ * hullSitesOnProc[iproc];
158 chuckv 1302 }
159 chuckv 1293
160 chuckv 1374 displacements[0] = 0;
161     vectorDisplacements[0] = 0;
162 chuckv 1316
163 gezelter 1376 for (int iproc = 1; iproc < nproc; iproc++){
164 chuckv 1374 displacements[iproc] = displacements[iproc-1] + hullSitesOnProc[iproc-1];
165     vectorDisplacements[iproc] = vectorDisplacements[iproc-1] + coordsOnProc[iproc-1];
166 chuckv 1293 }
167    
168 gezelter 1377 std::vector<double> globalCoords(dim_ * globalHullSites);
169     std::vector<double> globalVels(dim_ * globalHullSites);
170 chuckv 1374 std::vector<double> globalMasses(globalHullSites);
171 gezelter 1377
172 chuckv 1374 int count = coordsOnProc[myrank];
173 chuckv 1365
174 gezelter 1377 MPI::COMM_WORLD.Allgatherv(&coords[0], count, MPI::DOUBLE, &globalCoords[0],
175     &coordsOnProc[0], &vectorDisplacements[0],
176 chuckv 1374 MPI::DOUBLE);
177 chuckv 1302
178 gezelter 1377 MPI::COMM_WORLD.Allgatherv(&vels[0], count, MPI::DOUBLE, &globalVels[0],
179     &coordsOnProc[0], &vectorDisplacements[0],
180 chuckv 1374 MPI::DOUBLE);
181 chuckv 1302
182 chuckv 1374 MPI::COMM_WORLD.Allgatherv(&masses[0], localHullSites, MPI::DOUBLE,
183 gezelter 1377 &globalMasses[0], &hullSitesOnProc[0],
184     &displacements[0], MPI::DOUBLE);
185 chuckv 1365
186 chuckv 1293 // Free previous hull
187 chuckv 1242 qh_freeqhull(!qh_ALL);
188     qh_memfreeshort(&curlong, &totlong);
189 gezelter 1411 if (curlong || totlong) {
190     sprintf(painCave.errMsg, "ConvexHull: qhull internal warning:\n"
191     "\tdid not free %d bytes of long memory (%d pieces)",
192     totlong, curlong);
193     painCave.isFatal = 1;
194     simError();
195     }
196 chuckv 1374
197     if (qh_new_qhull(dim_, globalHullSites, &globalCoords[0], ismalloc,
198     const_cast<char *>(options_.c_str()), NULL, stderr)){
199    
200     sprintf(painCave.errMsg, "ConvexHull: Qhull failed to compute global convex hull");
201     painCave.isFatal = 1;
202     simError();
203    
204 chuckv 1293 } //qh_new_qhull
205    
206     #endif
207 chuckv 1404 intPoint = qh interior_point;
208     RealType calcvol = 0.0;
209 chuckv 1374 FORALLfacets {
210     Triangle face;
211 chuckv 1404 //Qhull sets the unit normal in facet->normal
212 chuckv 1374 Vector3d V3dNormal(facet->normal[0], facet->normal[1], facet->normal[2]);
213 chuckv 1404 face.setUnitNormal(V3dNormal);
214 chuckv 1371
215 chuckv 1374 RealType faceArea = qh_facetarea(facet);
216     face.setArea(faceArea);
217    
218     vertices = qh_facet3vertex(facet);
219 chuckv 1293
220 chuckv 1374 coordT *center = qh_getcenter(vertices);
221     Vector3d V3dCentroid(center[0], center[1], center[2]);
222     face.setCentroid(V3dCentroid);
223 chuckv 1304
224 chuckv 1374 Vector3d faceVel = V3Zero;
225     Vector3d p[3];
226     RealType faceMass = 0.0;
227 gezelter 1377
228 chuckv 1374 int ver = 0;
229 chuckv 1293
230 chuckv 1374 FOREACHvertex_(vertices){
231     int id = qh_pointid(vertex->point);
232     p[ver][0] = vertex->point[0];
233     p[ver][1] = vertex->point[1];
234     p[ver][2] = vertex->point[2];
235     Vector3d vel;
236     RealType mass;
237 chuckv 1293
238 chuckv 1302 #ifdef IS_MPI
239 chuckv 1374 vel = Vector3d(globalVels[dim_ * id],
240     globalVels[dim_ * id + 1],
241     globalVels[dim_ * id + 2]);
242     mass = globalMasses[id];
243    
244 gezelter 1377 // localID will be between 0 and hullSitesOnProc[myrank] if we
245     // own this guy.
246    
247 chuckv 1374 int localID = id - displacements[myrank];
248 gezelter 1377
249 chuckv 1410
250     if (localID >= 0 && localID < hullSitesOnProc[myrank]){
251 gezelter 1378 face.addVertexSD(bodydoubles[indexMap[localID]]);
252 chuckv 1410 }else{
253     face.addVertexSD(NULL);
254     }
255 chuckv 1307 #else
256 chuckv 1374 vel = bodydoubles[id]->getVel();
257     mass = bodydoubles[id]->getMass();
258     face.addVertexSD(bodydoubles[id]);
259 gezelter 1411 #endif
260 chuckv 1374 faceVel = faceVel + vel;
261     faceMass = faceMass + mass;
262     ver++;
263     } //Foreachvertex
264 chuckv 1302
265 chuckv 1374 face.addVertices(p[0], p[1], p[2]);
266     face.setFacetMass(faceMass);
267 gezelter 1668 face.setFacetVelocity(faceVel / RealType(3.0));
268 chuckv 1404 /*
269     RealType comparea = face.computeArea();
270     realT calcarea = qh_facetarea (facet);
271     Vector3d V3dCompNorm = -face.computeUnitNormal();
272     RealType thisOffset = ((0.0-p[0][0])*V3dCompNorm[0] + (0.0-p[0][1])*V3dCompNorm[1] + (0.0-p[0][2])*V3dCompNorm[2]);
273     RealType dist = facet->offset + intPoint[0]*V3dNormal[0] + intPoint[1]*V3dNormal[1] + intPoint[2]*V3dNormal[2];
274     std::cout << "facet offset and computed offset: " << facet->offset << " " << thisOffset << std::endl;
275     calcvol += -dist*comparea/qh hull_dim;
276     */
277 chuckv 1374 Triangles_.push_back(face);
278     qh_settempfree(&vertices);
279    
280     } //FORALLfacets
281    
282     qh_getarea(qh facet_list);
283     volume_ = qh totvol;
284     area_ = qh totarea;
285 chuckv 1404 // std::cout << "My volume is: " << calcvol << " qhull volume is:" << volume_ << std::endl;
286 chuckv 1374 qh_freeqhull(!qh_ALL);
287     qh_memfreeshort(&curlong, &totlong);
288 gezelter 1411 if (curlong || totlong) {
289     sprintf(painCave.errMsg, "ConvexHull: qhull internal warning:\n"
290     "\tdid not free %d bytes of long memory (%d pieces)",
291     totlong, curlong);
292     painCave.isFatal = 1;
293     simError();
294     }
295 chuckv 1097 }
296    
297 chuckv 1374 void ConvexHull::printHull(const std::string& geomFileName) {
298 gezelter 1384
299     #ifdef IS_MPI
300     if (worldRank == 0) {
301     #endif
302 chuckv 1242 FILE *newGeomFile;
303    
304     //create new .md file based on old .md file
305     newGeomFile = fopen(geomFileName.c_str(), "w");
306     qh_findgood_all(qh facet_list);
307     for (int i = 0; i < qh_PRINTEND; i++)
308     qh_printfacets(newGeomFile, qh PRINTout[i], qh facet_list, NULL, !qh_ALL);
309    
310     fclose(newGeomFile);
311 gezelter 1384 #ifdef IS_MPI
312     }
313     #endif
314 chuckv 1097 }
315 chuckv 1242 #endif //QHULL

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