1 |
|
/* |
2 |
< |
* Copyright (C) 2000-2004 Object Oriented Parallel Simulation Engine (OOPSE) project |
3 |
< |
* |
4 |
< |
* Contact: oopse@oopse.org |
5 |
< |
* |
6 |
< |
* This program is free software; you can redistribute it and/or |
7 |
< |
* modify it under the terms of the GNU Lesser General Public License |
8 |
< |
* as published by the Free Software Foundation; either version 2.1 |
9 |
< |
* of the License, or (at your option) any later version. |
10 |
< |
* All we ask is that proper credit is given for our work, which includes |
11 |
< |
* - but is not limited to - adding the above copyright notice to the beginning |
12 |
< |
* of your source code files, and to any copyright notice that you may distribute |
13 |
< |
* with programs based on this work. |
14 |
< |
* |
15 |
< |
* This program is distributed in the hope that it will be useful, |
16 |
< |
* but WITHOUT ANY WARRANTY; without even the implied warranty of |
17 |
< |
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the |
18 |
< |
* GNU Lesser General Public License for more details. |
19 |
< |
* |
20 |
< |
* You should have received a copy of the GNU Lesser General Public License |
21 |
< |
* along with this program; if not, write to the Free Software |
22 |
< |
* Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. |
2 |
> |
* 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. Redistributions of source code must retain the above copyright |
10 |
+ |
* notice, this list of conditions and the following disclaimer. |
11 |
+ |
* |
12 |
+ |
* 2. Redistributions in binary form must reproduce the above copyright |
13 |
+ |
* notice, this list of conditions and the following disclaimer in the |
14 |
+ |
* documentation and/or other materials provided with the |
15 |
+ |
* distribution. |
16 |
+ |
* |
17 |
+ |
* This software is provided "AS IS," without a warranty of any |
18 |
+ |
* kind. All express or implied conditions, representations and |
19 |
+ |
* warranties, including any implied warranty of merchantability, |
20 |
+ |
* fitness for a particular purpose or non-infringement, are hereby |
21 |
+ |
* excluded. The University of Notre Dame and its licensors shall not |
22 |
+ |
* be liable for any damages suffered by licensee as a result of |
23 |
+ |
* using, modifying or distributing the software or its |
24 |
+ |
* derivatives. In no event will the University of Notre Dame or its |
25 |
+ |
* licensors be liable for any lost revenue, profit or data, or for |
26 |
+ |
* direct, indirect, special, consequential, incidental or punitive |
27 |
+ |
* damages, however caused and regardless of the theory of liability, |
28 |
+ |
* arising out of the use of or inability to use software, even if the |
29 |
+ |
* University of Notre Dame has been advised of the possibility of |
30 |
+ |
* such damages. |
31 |
+ |
* |
32 |
+ |
* SUPPORT OPEN SCIENCE! If you use OpenMD or its source code in your |
33 |
+ |
* research, please cite the appropriate papers when you publish your |
34 |
+ |
* work. Good starting points are: |
35 |
+ |
* |
36 |
+ |
* [1] Meineke, et al., J. Comp. Chem. 26, 252-271 (2005). |
37 |
+ |
* [2] Fennell & Gezelter, J. Chem. Phys. 124, 234104 (2006). |
38 |
+ |
* [3] Sun, Lin & Gezelter, J. Chem. Phys. 128, 24107 (2008). |
39 |
+ |
* [4] Kuang & Gezelter, J. Chem. Phys. 133, 164101 (2010). |
40 |
+ |
* [5] Vardeman, Stocker & Gezelter, J. Chem. Theory Comput. 7, 834 (2011). |
41 |
|
*/ |
25 |
– |
|
26 |
– |
/** |
27 |
– |
* @file Snapshot.hpp |
28 |
– |
* @author tlin |
29 |
– |
* @date 10/20/2004 |
30 |
– |
* @time 23:56am |
31 |
– |
* @version 1.0 |
32 |
– |
*/ |
42 |
|
|
43 |
+ |
/** |
44 |
+ |
* @file Snapshot.hpp |
45 |
+ |
* @author tlin |
46 |
+ |
* @date 10/20/2004 |
47 |
+ |
* @time 23:56am |
48 |
+ |
* @version 1.0 |
49 |
+ |
*/ |
50 |
+ |
|
51 |
|
#ifndef BRAINS_SNAPSHOT_HPP |
52 |
|
#define BRAINS_SNAPSHOT_HPP |
53 |
|
|
54 |
|
#include <vector> |
55 |
|
|
56 |
< |
#include "math/Vector3.hpp" |
57 |
< |
#include "math/SquareMatrix3.hpp" |
56 |
> |
#include "brains/DataStorage.hpp" |
57 |
> |
#include "brains/Stats.hpp" |
58 |
|
|
59 |
< |
using namespace std; |
59 |
> |
namespace OpenMD{ |
60 |
|
|
61 |
< |
namespace oopse{ |
61 |
> |
struct FrameData { |
62 |
> |
int id; /**< identification number of the snapshot */ |
63 |
> |
RealType currentTime; /**< current time */ |
64 |
> |
Mat3x3d hmat; /**< axes of the periodic box in matrix form */ |
65 |
> |
Mat3x3d invHmat; /**< the inverse of the Hmat matrix */ |
66 |
> |
bool orthoRhombic; /**< is this an orthorhombic periodic box? */ |
67 |
> |
RealType volume; /**< total volume of this frame */ |
68 |
> |
RealType pressure; /**< pressure of this frame */ |
69 |
> |
RealType totalEnergy; /**< total energy of this frame */ |
70 |
> |
RealType kineticEnergy; /**< kinetic energy of this frame */ |
71 |
> |
RealType potentialEnergy; /**< potential energy of this frame */ |
72 |
> |
RealType temperature; /**< temperature of this frame */ |
73 |
> |
RealType chi; /**< thermostat velocity */ |
74 |
> |
RealType integralOfChiDt; /**< the actual thermostat */ |
75 |
> |
RealType electronicTemperature; /**< temperature of the electronic degrees of freedom */ |
76 |
> |
RealType chiQ; /**< fluctuating charge thermostat velocity */ |
77 |
> |
RealType integralOfChiQDt; /**< the actual fluctuating charge thermostat */ |
78 |
> |
Mat3x3d eta; /**< barostat matrix */ |
79 |
> |
Vector3d COM; /**< location of center of mass */ |
80 |
> |
Vector3d COMvel; /**< system center of mass velocity */ |
81 |
> |
Vector3d COMw; /**< system center of mass angular velocity */ |
82 |
> |
Mat3x3d stressTensor; /**< stress tensor */ |
83 |
> |
Mat3x3d pressureTensor; /**< pressure tensor */ |
84 |
> |
Vector3d systemDipole; /**< total system dipole moment */ |
85 |
> |
Vector3d conductiveHeatFlux; /**< heat flux vector (conductive only) */ |
86 |
> |
}; |
87 |
|
|
46 |
– |
//forward declaration |
47 |
– |
class Snapshot; |
48 |
– |
class SnapshotManager; |
88 |
|
|
89 |
< |
/** |
90 |
< |
* @struct DataStorage |
91 |
< |
* @brief |
92 |
< |
*/ |
93 |
< |
class DataStorage { |
94 |
< |
public: |
95 |
< |
DataStorage() {}; |
96 |
< |
DataStorage(size_t size); |
97 |
< |
void resize(size_t size); |
59 |
< |
void reserve(size_t size); |
89 |
> |
/** |
90 |
> |
* @class Snapshot Snapshot.hpp "brains/Snapshot.hpp" |
91 |
> |
* @brief Snapshot class is a repository class for storing dynamic data during |
92 |
> |
* Simulation |
93 |
> |
* Every snapshot class will contain one DataStorage for atoms and one DataStorage |
94 |
> |
* for rigid bodies. |
95 |
> |
*/ |
96 |
> |
class Snapshot { |
97 |
> |
public: |
98 |
|
|
99 |
< |
//friend Snapshot; |
100 |
< |
//friend SnapshotManager; |
101 |
< |
//private: |
102 |
< |
vector<Vector3d> position; /** position array */ |
103 |
< |
vector<Vector3d> velocity; /** velocity array */ |
104 |
< |
vector<RotMat3x3d> Amat; /** rotation matrix array */ |
105 |
< |
vector<Vector3d> angularMomentum;/** velocity array */ |
106 |
< |
vector<Vector3d> ul; /** the lab frame unit vector array*/ |
107 |
< |
vector<double> zAngle; /** z -angle array */ |
108 |
< |
vector<Vector3d> force; /** force array */ |
109 |
< |
vector<Vector3d> torque; /** torque array */ |
99 |
> |
Snapshot(int nAtoms, int nRigidbodies, |
100 |
> |
int nCutoffGroups) : atomData(nAtoms), |
101 |
> |
rigidbodyData(nRigidbodies), |
102 |
> |
cgData(nCutoffGroups, DataStorage::dslPosition), |
103 |
> |
orthoTolerance_(1e-6), hasCOM_(false), hasVolume_(false){ |
104 |
> |
|
105 |
> |
frameData.id = -1; |
106 |
> |
frameData.currentTime = 0; |
107 |
> |
frameData.hmat = Mat3x3d(0.0); |
108 |
> |
frameData.invHmat = Mat3x3d(0.0); |
109 |
> |
frameData.orthoRhombic = false; |
110 |
> |
frameData.volume = 0.0; |
111 |
> |
frameData.pressure = 0.0; |
112 |
> |
frameData.totalEnergy = 0.0; |
113 |
> |
frameData.kineticEnergy = 0.0; |
114 |
> |
frameData.potentialEnergy = 0.0; |
115 |
> |
frameData.temperature = 0.0; |
116 |
> |
frameData.chi = 0.0; |
117 |
> |
frameData.integralOfChiDt = 0.0; |
118 |
> |
frameData.electronicTemperature = 0.0; |
119 |
> |
frameData.chiQ = 0.0; |
120 |
> |
frameData.integralOfChiQDt = 0.0; |
121 |
> |
frameData.eta = Mat3x3d(0.0); |
122 |
> |
frameData.COM = V3Zero; |
123 |
> |
frameData.COMvel = V3Zero; |
124 |
> |
frameData.COMw = V3Zero; |
125 |
> |
frameData.stressTensor = Mat3x3d(0.0); |
126 |
> |
frameData.pressureTensor = Mat3x3d(0.0); |
127 |
> |
frameData.systemDipole = V3Zero; |
128 |
> |
frameData.conductiveHeatFlux = V3Zero; |
129 |
> |
} |
130 |
|
|
131 |
< |
}; |
131 |
> |
Snapshot(int nAtoms, int nRigidbodies, int nCutoffGroups, |
132 |
> |
int storageLayout) : atomData(nAtoms, storageLayout), |
133 |
> |
rigidbodyData(nRigidbodies, storageLayout), |
134 |
> |
cgData(nCutoffGroups, DataStorage::dslPosition), |
135 |
> |
orthoTolerance_(1e-6), |
136 |
> |
hasCOM_(false), |
137 |
> |
hasVolume_(false) { |
138 |
> |
frameData.id = -1; |
139 |
> |
frameData.currentTime = 0; |
140 |
> |
frameData.hmat = Mat3x3d(0.0); |
141 |
> |
frameData.invHmat = Mat3x3d(0.0); |
142 |
> |
frameData.orthoRhombic = false; |
143 |
> |
frameData.volume = 0.0; |
144 |
> |
frameData.pressure = 0.0; |
145 |
> |
frameData.totalEnergy = 0.0; |
146 |
> |
frameData.kineticEnergy = 0.0; |
147 |
> |
frameData.potentialEnergy = 0.0; |
148 |
> |
frameData.temperature = 0.0; |
149 |
> |
frameData.chi = 0.0; |
150 |
> |
frameData.integralOfChiDt = 0.0; |
151 |
> |
frameData.electronicTemperature = 0.0; |
152 |
> |
frameData.chiQ = 0.0; |
153 |
> |
frameData.integralOfChiQDt = 0.0; |
154 |
> |
frameData.eta = Mat3x3d(0.0); |
155 |
> |
frameData.COM = V3Zero; |
156 |
> |
frameData.COMvel = V3Zero; |
157 |
> |
frameData.COMw = V3Zero; |
158 |
> |
frameData.stressTensor = Mat3x3d(0.0); |
159 |
> |
frameData.pressureTensor = Mat3x3d(0.0); |
160 |
> |
frameData.systemDipole = V3Zero; |
161 |
> |
frameData.conductiveHeatFlux = V3Zero; |
162 |
> |
} |
163 |
> |
|
164 |
> |
/** Returns the id of this Snapshot */ |
165 |
> |
int getID() { |
166 |
> |
return frameData.id; |
167 |
> |
} |
168 |
|
|
169 |
< |
/** |
170 |
< |
* @class Snapshot Snapshot.hpp "brains/Snapshot.hpp" |
171 |
< |
* @brief Snapshot class is a repository class for storing dynamic data during |
172 |
< |
* Simulation |
173 |
< |
* Every snapshot class will contain one DataStorage for atoms and one DataStorage |
174 |
< |
* for rigid bodies. |
175 |
< |
* @see SimData |
176 |
< |
*/ |
177 |
< |
class Snapshot { |
178 |
< |
public: |
169 |
> |
/** Sets the id of this Snapshot */ |
170 |
> |
void setID(int id) { |
171 |
> |
frameData.id = id; |
172 |
> |
} |
173 |
> |
|
174 |
> |
int getSize() { |
175 |
> |
return atomData.getSize() + rigidbodyData.getSize(); |
176 |
> |
} |
177 |
> |
|
178 |
> |
/** Returns the number of atoms */ |
179 |
> |
int getNumberOfAtoms() { |
180 |
> |
return atomData.getSize(); |
181 |
> |
} |
182 |
> |
|
183 |
> |
/** Returns the number of rigid bodies */ |
184 |
> |
int getNumberOfRigidBodies() { |
185 |
> |
return rigidbodyData.getSize(); |
186 |
> |
} |
187 |
> |
|
188 |
> |
/** Returns the number of rigid bodies */ |
189 |
> |
int getNumberOfCutoffGroups() { |
190 |
> |
return cgData.getSize(); |
191 |
> |
} |
192 |
> |
|
193 |
> |
/** Returns the H-Matrix */ |
194 |
> |
Mat3x3d getHmat() { |
195 |
> |
return frameData.hmat; |
196 |
> |
} |
197 |
> |
|
198 |
> |
/** Sets the H-Matrix */ |
199 |
> |
void setHmat(const Mat3x3d& m); |
200 |
|
|
201 |
< |
Snapshot() {} |
202 |
< |
Snapshot(int i) { |
201 |
> |
RealType getVolume() { |
202 |
> |
if (hasVolume_){ |
203 |
> |
return frameData.volume; |
204 |
> |
}else{ |
205 |
> |
return frameData.hmat.determinant(); |
206 |
> |
} |
207 |
> |
} |
208 |
|
|
209 |
< |
} |
209 |
> |
void setVolume(RealType volume){ |
210 |
> |
hasVolume_=true; |
211 |
> |
frameData.volume = volume; |
212 |
> |
} |
213 |
|
|
214 |
< |
Snapshot(const Snapshot& s); |
214 |
> |
/** Returns the inverse H-Matrix */ |
215 |
> |
Mat3x3d getInvHmat() { |
216 |
> |
return frameData.invHmat; |
217 |
> |
} |
218 |
|
|
219 |
< |
Snapshot& operator =(const Snapshot& s); |
219 |
> |
/** Wrapping the vector according to periodic boundary condition*/ |
220 |
> |
void wrapVector(Vector3d& v); |
221 |
> |
/** Scaling a vector to multiples of the periodic box */ |
222 |
> |
Vector3d scaleVector(Vector3d &v); |
223 |
> |
|
224 |
> |
|
225 |
> |
Vector3d getCOM(); |
226 |
> |
Vector3d getCOMvel(); |
227 |
> |
Vector3d getCOMw(); |
228 |
|
|
229 |
< |
/** Returns the id of this Snapshot */ |
230 |
< |
int getID() { |
231 |
< |
return id_; |
98 |
< |
} |
229 |
> |
RealType getTime() { |
230 |
> |
return frameData.currentTime; |
231 |
> |
} |
232 |
|
|
233 |
< |
/** Sets the id of this Snapshot */ |
234 |
< |
void setID(int id) { |
235 |
< |
id_ = id; |
103 |
< |
} |
233 |
> |
void increaseTime(RealType dt) { |
234 |
> |
setTime(getTime() + dt); |
235 |
> |
} |
236 |
|
|
237 |
< |
//template<typename T> |
238 |
< |
//static typename T::ElemPointerType getArrayPointer(vector<T>& v) { |
239 |
< |
// return v[0]->getArrayPointer(); |
240 |
< |
//} |
237 |
> |
void setTime(RealType time) { |
238 |
> |
frameData.currentTime =time; |
239 |
> |
//time at statData is redundant |
240 |
> |
statData[Stats::TIME] = frameData.currentTime; |
241 |
> |
} |
242 |
|
|
243 |
< |
static double* getArrayPointer(vector<Vector3d>& v) { |
244 |
< |
assert(v.size() > 0); |
245 |
< |
return v[0].getArrayPointer(); |
246 |
< |
} |
243 |
> |
RealType getChi() { |
244 |
> |
return frameData.chi; |
245 |
> |
} |
246 |
> |
|
247 |
> |
void setChi(RealType chi) { |
248 |
> |
frameData.chi = chi; |
249 |
> |
} |
250 |
> |
|
251 |
> |
RealType getIntegralOfChiDt() { |
252 |
> |
return frameData.integralOfChiDt; |
253 |
> |
} |
254 |
> |
|
255 |
> |
void setIntegralOfChiDt(RealType integralOfChiDt) { |
256 |
> |
frameData.integralOfChiDt = integralOfChiDt; |
257 |
> |
} |
258 |
|
|
259 |
< |
static double* getArrayPointer(vector<RotMat3x3d>& v) { |
260 |
< |
assert(v.size() > 0); |
261 |
< |
return v[0].getArrayPointer(); |
262 |
< |
} |
259 |
> |
RealType getChiElectronic() { |
260 |
> |
return frameData.chiQ; |
261 |
> |
} |
262 |
> |
|
263 |
> |
void setChiElectronic(RealType chiQ) { |
264 |
> |
frameData.chiQ = chiQ; |
265 |
> |
} |
266 |
> |
|
267 |
> |
RealType getIntegralOfChiElectronicDt() { |
268 |
> |
return frameData.integralOfChiQDt; |
269 |
> |
} |
270 |
> |
|
271 |
> |
void setIntegralOfChiElectronicDt(RealType integralOfChiQDt) { |
272 |
> |
frameData.integralOfChiQDt = integralOfChiQDt; |
273 |
> |
} |
274 |
|
|
120 |
– |
static double* getArrayPointer(vector<double>& v) { |
121 |
– |
assert(v.size() > 0); |
122 |
– |
return &(v[0]); |
123 |
– |
} |
124 |
– |
|
125 |
– |
/** */ |
126 |
– |
void resize(size_t size); |
275 |
|
|
276 |
+ |
void setOrthoTolerance(RealType orthoTolerance) { |
277 |
+ |
orthoTolerance_ = orthoTolerance; |
278 |
+ |
} |
279 |
|
|
280 |
< |
/** */ |
281 |
< |
void reserve(size_t size); |
280 |
> |
Mat3x3d getEta() { |
281 |
> |
return frameData.eta; |
282 |
> |
} |
283 |
|
|
284 |
< |
DataStorage atomData; |
285 |
< |
DataStorage rigidbodyData; |
284 |
> |
void setEta(const Mat3x3d& eta) { |
285 |
> |
frameData.eta = eta; |
286 |
> |
} |
287 |
|
|
288 |
< |
friend class SnapshotManager; |
289 |
< |
private: |
288 |
> |
Mat3x3d getStressTensor() { |
289 |
> |
return frameData.stressTensor; |
290 |
> |
} |
291 |
> |
|
292 |
> |
void setStressTensor(const Mat3x3d& stressTensor) { |
293 |
> |
frameData.stressTensor = stressTensor; |
294 |
> |
} |
295 |
|
|
296 |
< |
int id_; /**< identification number of the snapshot */ |
297 |
< |
}; |
296 |
> |
Vector3d getConductiveHeatFlux() { |
297 |
> |
return frameData.conductiveHeatFlux; |
298 |
> |
} |
299 |
> |
|
300 |
> |
void setConductiveHeatFlux(const Vector3d& heatFlux) { |
301 |
> |
frameData.conductiveHeatFlux = heatFlux; |
302 |
> |
} |
303 |
|
|
304 |
< |
typedef DataStorage* (Snapshot::*DataStoragePointer); |
304 |
> |
bool hasCOM() { |
305 |
> |
return hasCOM_; |
306 |
> |
} |
307 |
> |
|
308 |
> |
void setCOMprops(const Vector3d& COM, const Vector3d& COMvel, const Vector3d& COMw) { |
309 |
> |
frameData.COM = COM; |
310 |
> |
frameData.COMvel = COMvel; |
311 |
> |
frameData.COMw = COMw; |
312 |
> |
hasCOM_ = true; |
313 |
> |
} |
314 |
> |
|
315 |
> |
DataStorage atomData; |
316 |
> |
DataStorage rigidbodyData; |
317 |
> |
DataStorage cgData; |
318 |
> |
FrameData frameData; |
319 |
> |
Stats statData; |
320 |
> |
|
321 |
> |
private: |
322 |
> |
RealType orthoTolerance_; |
323 |
> |
bool hasCOM_; |
324 |
> |
bool hasVolume_; |
325 |
> |
}; |
326 |
> |
|
327 |
> |
typedef DataStorage (Snapshot::*DataStoragePointer); |
328 |
|
} |
329 |
|
#endif //BRAINS_SNAPSHOT_HPP |