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#define _LARGEFILE_SOURCE64 |
2 |
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#define _FILE_OFFSET_BITS 64 |
3 |
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|
4 |
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#include <string.h> |
5 |
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#include <iostream> |
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#include <fstream> |
7 |
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#include <algorithm> |
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#include <utility> |
9 |
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|
10 |
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#ifdef IS_MPI |
11 |
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#include <mpi.h> |
29 |
|
if(worldRank == 0 ){ |
30 |
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#endif // is_mpi |
31 |
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|
32 |
< |
strcpy( outName, entry_plug->sampleName ); |
32 |
> |
dumpFile.open(entry_plug->sampleName, ios::out | ios::trunc ); |
33 |
|
|
34 |
< |
outFile.open(outName, ios::out | ios::trunc ); |
34 |
> |
if( !dumpFile ){ |
35 |
|
|
33 |
– |
if( !outFile ){ |
34 |
– |
|
36 |
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sprintf( painCave.errMsg, |
37 |
|
"Could not open \"%s\" for dump output.\n", |
38 |
< |
outName); |
38 |
> |
entry_plug->sampleName); |
39 |
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painCave.isFatal = 1; |
40 |
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simError(); |
41 |
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} |
42 |
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|
42 |
– |
//outFile.setf( ios::scientific ); |
43 |
– |
|
43 |
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#ifdef IS_MPI |
44 |
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} |
45 |
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|
46 |
+ |
//sort the local atoms by global index |
47 |
+ |
sortByGlobalIndex(); |
48 |
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|
49 |
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sprintf( checkPointMsg, |
50 |
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"Sucessfully opened output file for dumping.\n"); |
51 |
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MPIcheckPoint(); |
58 |
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if(worldRank == 0 ){ |
59 |
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#endif // is_mpi |
60 |
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|
61 |
< |
outFile.close(); |
61 |
> |
dumpFile.close(); |
62 |
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|
63 |
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#ifdef IS_MPI |
64 |
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} |
65 |
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#endif // is_mpi |
66 |
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} |
67 |
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|
68 |
< |
void DumpWriter::writeDump( double currentTime ){ |
68 |
> |
#ifdef IS_MPI |
69 |
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|
70 |
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/** |
71 |
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* A hook function to load balancing |
72 |
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*/ |
73 |
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|
74 |
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void DumpWriter::update(){ |
75 |
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sortByGlobalIndex(); |
76 |
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} |
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|
78 |
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/** |
79 |
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* Auxiliary sorting function |
80 |
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*/ |
81 |
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|
82 |
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bool indexSortingCriterion(const pair<int, int>& p1, const pair<int, int>& p2){ |
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return p1.second < p2.second; |
84 |
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} |
85 |
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|
86 |
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/** |
87 |
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* Sorting the local index by global index |
88 |
+ |
*/ |
89 |
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|
90 |
+ |
void DumpWriter::sortByGlobalIndex(){ |
91 |
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Molecule* mols = entry_plug->molecules; |
92 |
+ |
indexArray.clear(); |
93 |
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|
94 |
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for(int i = 0; i < entry_plug->n_mol;i++) |
95 |
+ |
indexArray.push_back(make_pair(i, mols[i].getGlobalIndex())); |
96 |
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|
97 |
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sort(indexArray.begin(), indexArray.end(), indexSortingCriterion); |
98 |
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} |
99 |
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|
100 |
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#endif |
101 |
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|
102 |
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void DumpWriter::writeDump(double currentTime){ |
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|
104 |
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ofstream finalOut; |
105 |
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vector<ofstream*> fileStreams; |
106 |
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|
107 |
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#ifdef IS_MPI |
108 |
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if(worldRank == 0 ){ |
109 |
+ |
#endif |
110 |
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finalOut.open( entry_plug->finalName, ios::out | ios::trunc ); |
111 |
+ |
if( !finalOut ){ |
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+ |
sprintf( painCave.errMsg, |
113 |
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"Could not open \"%s\" for final dump output.\n", |
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entry_plug->finalName ); |
115 |
+ |
painCave.isFatal = 1; |
116 |
+ |
simError(); |
117 |
+ |
} |
118 |
+ |
#ifdef IS_MPI |
119 |
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} |
120 |
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#endif // is_mpi |
121 |
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|
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fileStreams.push_back(&finalOut); |
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fileStreams.push_back(&dumpFile); |
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|
125 |
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writeFrame(fileStreams, currentTime); |
126 |
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|
127 |
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#ifdef IS_MPI |
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finalOut.close(); |
129 |
+ |
#endif |
130 |
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|
131 |
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} |
132 |
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|
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void DumpWriter::writeFinal(double currentTime){ |
134 |
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|
135 |
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ofstream finalOut; |
136 |
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vector<ofstream*> fileStreams; |
137 |
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|
138 |
+ |
#ifdef IS_MPI |
139 |
+ |
if(worldRank == 0 ){ |
140 |
+ |
#endif // is_mpi |
141 |
+ |
|
142 |
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finalOut.open( entry_plug->finalName, ios::out | ios::trunc ); |
143 |
+ |
|
144 |
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if( !finalOut ){ |
145 |
+ |
sprintf( painCave.errMsg, |
146 |
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"Could not open \"%s\" for final dump output.\n", |
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+ |
entry_plug->finalName ); |
148 |
+ |
painCave.isFatal = 1; |
149 |
+ |
simError(); |
150 |
+ |
} |
151 |
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|
152 |
+ |
#ifdef IS_MPI |
153 |
+ |
} |
154 |
+ |
#endif // is_mpi |
155 |
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|
156 |
+ |
fileStreams.push_back(&finalOut); |
157 |
+ |
writeFrame(fileStreams, currentTime); |
158 |
+ |
|
159 |
+ |
#ifdef IS_MPI |
160 |
+ |
finalOut.close(); |
161 |
+ |
#endif |
162 |
+ |
|
163 |
+ |
} |
164 |
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|
165 |
+ |
void DumpWriter::writeFrame( vector<ofstream*>& outFile, double currentTime ){ |
166 |
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|
167 |
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const int BUFFERSIZE = 2000; |
168 |
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const int MINIBUFFERSIZE = 100; |
169 |
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|
170 |
< |
char tempBuffer[BUFFERSIZE]; |
170 |
> |
char tempBuffer[BUFFERSIZE]; |
171 |
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char writeLine[BUFFERSIZE]; |
172 |
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|
173 |
< |
int i; |
173 |
> |
int i, k; |
174 |
> |
|
175 |
|
#ifdef IS_MPI |
176 |
< |
int j, which_node, done, which_atom, local_index; |
177 |
< |
double atomTransData[6]; |
178 |
< |
double atomOrientData[7]; |
176 |
> |
|
177 |
> |
/********************************************************************* |
178 |
> |
* Documentation? You want DOCUMENTATION? |
179 |
> |
* |
180 |
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* Why all the potatoes below? |
181 |
> |
* |
182 |
> |
* To make a long story short, the original version of DumpWriter |
183 |
> |
* worked in the most inefficient way possible. Node 0 would |
184 |
> |
* poke each of the node for an individual atom's formatted data |
185 |
> |
* as node 0 worked its way down the global index. This was particularly |
186 |
> |
* inefficient since the method blocked all processors at every atom |
187 |
> |
* (and did it twice!). |
188 |
> |
* |
189 |
> |
* An intermediate version of DumpWriter could be described from Node |
190 |
> |
* zero's perspective as follows: |
191 |
> |
* |
192 |
> |
* 1) Have 100 of your friends stand in a circle. |
193 |
> |
* 2) When you say go, have all of them start tossing potatoes at |
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> |
* you (one at a time). |
195 |
> |
* 3) Catch the potatoes. |
196 |
> |
* |
197 |
> |
* It was an improvement, but MPI has buffers and caches that could |
198 |
> |
* best be described in this analogy as "potato nets", so there's no |
199 |
> |
* need to block the processors atom-by-atom. |
200 |
> |
* |
201 |
> |
* This new and improved DumpWriter works in an even more efficient |
202 |
> |
* way: |
203 |
> |
* |
204 |
> |
* 1) Have 100 of your friend stand in a circle. |
205 |
> |
* 2) When you say go, have them start tossing 5-pound bags of |
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> |
* potatoes at you. |
207 |
> |
* 3) Once you've caught a friend's bag of potatoes, |
208 |
> |
* toss them a spud to let them know they can toss another bag. |
209 |
> |
* |
210 |
> |
* How's THAT for documentation? |
211 |
> |
* |
212 |
> |
*********************************************************************/ |
213 |
> |
|
214 |
> |
int *potatoes; |
215 |
> |
int myPotato; |
216 |
> |
|
217 |
> |
int nProc; |
218 |
> |
int j, which_node, done, which_atom, local_index, currentIndex; |
219 |
> |
double atomData6[6]; |
220 |
> |
double atomData13[13]; |
221 |
|
int isDirectional; |
222 |
|
char* atomTypeString; |
223 |
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char MPIatomTypeString[MINIBUFFERSIZE]; |
224 |
< |
int me; |
83 |
< |
int atomTypeTag; |
84 |
< |
int atomIsDirectionalTag; |
85 |
< |
int atomTransDataTag; |
86 |
< |
int atomOrientDataTag; |
87 |
< |
#else //is_mpi |
88 |
< |
int nAtoms = entry_plug->n_atoms; |
224 |
> |
int nObjects; |
225 |
|
#endif //is_mpi |
226 |
|
|
227 |
< |
double q[4]; |
227 |
> |
double q[4], ji[3]; |
228 |
|
DirectionalAtom* dAtom; |
93 |
– |
Atom** atoms = entry_plug->atoms; |
229 |
|
double pos[3], vel[3]; |
230 |
< |
|
231 |
< |
// write current frame to the eor file |
232 |
< |
|
233 |
< |
this->writeFinal( currentTime ); |
234 |
< |
|
230 |
> |
int nTotObjects; |
231 |
> |
StuntDouble* sd; |
232 |
> |
char* molName; |
233 |
> |
vector<StuntDouble*> integrableObjects; |
234 |
> |
vector<StuntDouble*>::iterator iter; |
235 |
> |
nTotObjects = entry_plug->getTotIntegrableObjects(); |
236 |
|
#ifndef IS_MPI |
237 |
+ |
|
238 |
+ |
for(k = 0; k < outFile.size(); k++){ |
239 |
+ |
*outFile[k] << nTotObjects << "\n"; |
240 |
|
|
241 |
< |
outFile << nAtoms << "\n"; |
241 |
> |
*outFile[k] << currentTime << ";\t" |
242 |
> |
<< entry_plug->Hmat[0][0] << "\t" |
243 |
> |
<< entry_plug->Hmat[1][0] << "\t" |
244 |
> |
<< entry_plug->Hmat[2][0] << ";\t" |
245 |
> |
|
246 |
> |
<< entry_plug->Hmat[0][1] << "\t" |
247 |
> |
<< entry_plug->Hmat[1][1] << "\t" |
248 |
> |
<< entry_plug->Hmat[2][1] << ";\t" |
249 |
|
|
250 |
< |
outFile << currentTime << ";\t" |
251 |
< |
<< entry_plug->Hmat[0][0] << "\t" |
252 |
< |
<< entry_plug->Hmat[1][0] << "\t" |
107 |
< |
<< entry_plug->Hmat[2][0] << ";\t" |
250 |
> |
<< entry_plug->Hmat[0][2] << "\t" |
251 |
> |
<< entry_plug->Hmat[1][2] << "\t" |
252 |
> |
<< entry_plug->Hmat[2][2] << ";"; |
253 |
|
|
254 |
< |
<< entry_plug->Hmat[0][1] << "\t" |
255 |
< |
<< entry_plug->Hmat[1][1] << "\t" |
256 |
< |
<< entry_plug->Hmat[2][1] << ";\t" |
254 |
> |
//write out additional parameters, such as chi and eta |
255 |
> |
*outFile[k] << entry_plug->the_integrator->getAdditionalParameters() << endl; |
256 |
> |
} |
257 |
> |
|
258 |
> |
for( i=0; i< entry_plug->n_mol; i++ ){ |
259 |
|
|
260 |
< |
<< entry_plug->Hmat[0][2] << "\t" |
261 |
< |
<< entry_plug->Hmat[1][2] << "\t" |
262 |
< |
<< entry_plug->Hmat[2][2] << ";"; |
263 |
< |
//write out additional parameters, such as chi and eta |
264 |
< |
outFile << entry_plug->the_integrator->getAdditionalParameters(); |
265 |
< |
outFile << endl; |
260 |
> |
integrableObjects = entry_plug->molecules[i].getIntegrableObjects(); |
261 |
> |
molName = (entry_plug->compStamps[entry_plug->molecules[i].getStampID()])->getID(); |
262 |
> |
|
263 |
> |
for( iter = integrableObjects.begin();iter != integrableObjects.end(); ++iter){ |
264 |
> |
sd = *iter; |
265 |
> |
sd->getPos(pos); |
266 |
> |
sd->getVel(vel); |
267 |
|
|
268 |
< |
for( i=0; i<nAtoms; i++ ){ |
268 |
> |
sprintf( tempBuffer, |
269 |
> |
"%s\t%lf\t%lf\t%lf\t%lf\t%lf\t%lf\t", |
270 |
> |
sd->getType(), |
271 |
> |
pos[0], |
272 |
> |
pos[1], |
273 |
> |
pos[2], |
274 |
> |
vel[0], |
275 |
> |
vel[1], |
276 |
> |
vel[2]); |
277 |
> |
strcpy( writeLine, tempBuffer ); |
278 |
|
|
279 |
< |
atoms[i]->getPos(pos); |
123 |
< |
atoms[i]->getVel(vel); |
279 |
> |
if( sd->isDirectional() ){ |
280 |
|
|
281 |
< |
sprintf( tempBuffer, |
282 |
< |
"%s\t%lf\t%lf\t%lf\t%lf\t%lf\t%lf\t", |
127 |
< |
atoms[i]->getType(), |
128 |
< |
pos[0], |
129 |
< |
pos[1], |
130 |
< |
pos[2], |
131 |
< |
vel[0], |
132 |
< |
vel[1], |
133 |
< |
vel[2]); |
134 |
< |
strcpy( writeLine, tempBuffer ); |
281 |
> |
sd->getQ( q ); |
282 |
> |
sd->getJ( ji ); |
283 |
|
|
284 |
< |
if( atoms[i]->isDirectional() ){ |
285 |
< |
|
286 |
< |
dAtom = (DirectionalAtom *)atoms[i]; |
287 |
< |
dAtom->getQ( q ); |
288 |
< |
|
289 |
< |
sprintf( tempBuffer, |
290 |
< |
"%lf\t%lf\t%lf\t%lf\t%lf\t%lf\t%lf\n", |
291 |
< |
q[0], |
292 |
< |
q[1], |
293 |
< |
q[2], |
294 |
< |
q[3], |
295 |
< |
dAtom->getJx(), |
296 |
< |
dAtom->getJy(), |
149 |
< |
dAtom->getJz()); |
150 |
< |
strcat( writeLine, tempBuffer ); |
284 |
> |
sprintf( tempBuffer, |
285 |
> |
"%lf\t%lf\t%lf\t%lf\t%lf\t%lf\t%lf\n", |
286 |
> |
q[0], |
287 |
> |
q[1], |
288 |
> |
q[2], |
289 |
> |
q[3], |
290 |
> |
ji[0], |
291 |
> |
ji[1], |
292 |
> |
ji[2]); |
293 |
> |
strcat( writeLine, tempBuffer ); |
294 |
> |
} |
295 |
> |
else |
296 |
> |
strcat( writeLine, "0.0\t0.0\t0.0\t0.0\t0.0\t0.0\t0.0\n" ); |
297 |
|
} |
152 |
– |
else |
153 |
– |
strcat( writeLine, "0.0\t0.0\t0.0\t0.0\t0.0\t0.0\t0.0\n" ); |
298 |
|
|
299 |
< |
outFile << writeLine; |
300 |
< |
} |
301 |
< |
outFile.flush(); |
299 |
> |
|
300 |
> |
for(k = 0; k < outFile.size(); k++) |
301 |
> |
*outFile[k] << writeLine; |
302 |
> |
} |
303 |
|
|
304 |
|
#else // is_mpi |
305 |
|
|
306 |
< |
// first thing first, suspend fatalities. |
307 |
< |
painCave.isEventLoop = 1; |
306 |
> |
/* code to find maximum tag value */ |
307 |
> |
|
308 |
> |
int *tagub, flag, MAXTAG; |
309 |
> |
MPI_Attr_get(MPI_COMM_WORLD, MPI_TAG_UB, &tagub, &flag); |
310 |
> |
if (flag) { |
311 |
> |
MAXTAG = *tagub; |
312 |
> |
} else { |
313 |
> |
MAXTAG = 32767; |
314 |
> |
} |
315 |
|
|
164 |
– |
int myStatus; // 1 = wakeup & success; 0 = error; -1 = AllDone |
316 |
|
int haveError; |
317 |
|
|
318 |
|
MPI_Status istatus; |
319 |
< |
int *AtomToProcMap = mpiSim->getAtomToProcMap(); |
319 |
> |
int nCurObj; |
320 |
> |
int *MolToProcMap = mpiSim->getMolToProcMap(); |
321 |
|
|
322 |
|
// write out header and node 0's coordinates |
323 |
|
|
324 |
|
if( worldRank == 0 ){ |
173 |
– |
outFile << mpiSim->getTotAtoms() << "\n"; |
325 |
|
|
326 |
< |
outFile << currentTime << ";\t" |
176 |
< |
<< entry_plug->Hmat[0][0] << "\t" |
177 |
< |
<< entry_plug->Hmat[1][0] << "\t" |
178 |
< |
<< entry_plug->Hmat[2][0] << ";\t" |
326 |
> |
// Node 0 needs a list of the magic potatoes for each processor; |
327 |
|
|
328 |
< |
<< entry_plug->Hmat[0][1] << "\t" |
329 |
< |
<< entry_plug->Hmat[1][1] << "\t" |
182 |
< |
<< entry_plug->Hmat[2][1] << ";\t" |
328 |
> |
nProc = mpiSim->getNumberProcessors(); |
329 |
> |
potatoes = new int[nProc]; |
330 |
|
|
331 |
< |
<< entry_plug->Hmat[0][2] << "\t" |
332 |
< |
<< entry_plug->Hmat[1][2] << "\t" |
333 |
< |
<< entry_plug->Hmat[2][2] << ";"; |
331 |
> |
//write out the comment lines |
332 |
> |
for (i = 0; i < nProc; i++) |
333 |
> |
potatoes[i] = 0; |
334 |
> |
|
335 |
> |
for(k = 0; k < outFile.size(); k++){ |
336 |
> |
*outFile[k] << nTotObjects << "\n"; |
337 |
|
|
338 |
< |
outFile << entry_plug->the_integrator->getAdditionalParameters(); |
339 |
< |
outFile << endl; |
340 |
< |
outFile.flush(); |
341 |
< |
for (i = 0 ; i < mpiSim->getTotAtoms(); i++ ) { |
192 |
< |
// Get the Node number which has this atom; |
338 |
> |
*outFile[k] << currentTime << ";\t" |
339 |
> |
<< entry_plug->Hmat[0][0] << "\t" |
340 |
> |
<< entry_plug->Hmat[1][0] << "\t" |
341 |
> |
<< entry_plug->Hmat[2][0] << ";\t" |
342 |
|
|
343 |
< |
which_node = AtomToProcMap[i]; |
343 |
> |
<< entry_plug->Hmat[0][1] << "\t" |
344 |
> |
<< entry_plug->Hmat[1][1] << "\t" |
345 |
> |
<< entry_plug->Hmat[2][1] << ";\t" |
346 |
|
|
347 |
< |
if (which_node != 0) { |
348 |
< |
|
349 |
< |
atomTypeTag = 4*i; |
350 |
< |
atomIsDirectionalTag = 4*i + 1; |
351 |
< |
atomTransDataTag = 4*i + 2; |
201 |
< |
atomOrientDataTag = 4*i + 3; |
202 |
< |
|
203 |
< |
MPI_Recv(MPIatomTypeString, MINIBUFFERSIZE, MPI_CHAR, which_node, |
204 |
< |
atomTypeTag, MPI_COMM_WORLD, &istatus); |
205 |
< |
|
206 |
< |
strncpy(atomTypeString, MPIatomTypeString, MINIBUFFERSIZE); |
207 |
< |
|
208 |
< |
// Null terminate the atomTypeString just in case: |
209 |
< |
|
210 |
< |
atomTypeString[strlen(atomTypeString) - 1] = '\0'; |
211 |
< |
|
212 |
< |
MPI_Recv(&isDirectional, 1, MPI_INT, which_node, |
213 |
< |
atomIsDirectionalTag, MPI_COMM_WORLD, &istatus); |
214 |
< |
|
215 |
< |
MPI_Recv(atomTransData, 6, MPI_DOUBLE, which_node, |
216 |
< |
atomTransDataTag, MPI_COMM_WORLD, &istatus); |
217 |
< |
|
218 |
< |
if (isDirectional) { |
219 |
< |
|
220 |
< |
MPI_Recv(atomOrientData, 7, MPI_DOUBLE, which_node, |
221 |
< |
atomOrientDataTag, MPI_COMM_WORLD, &istatus); |
222 |
< |
|
223 |
< |
} |
224 |
< |
|
225 |
< |
} else { |
226 |
< |
|
227 |
< |
haveError = 0; |
228 |
< |
which_atom = i; |
229 |
< |
local_index=-1; |
230 |
< |
|
231 |
< |
for (j=0; (j<mpiSim->getMyNlocal()) && (local_index < 0); j++) { |
232 |
< |
if (atoms[j]->getGlobalIndex() == which_atom) local_index = j; |
233 |
< |
} |
234 |
< |
|
235 |
< |
if (local_index != -1) { |
236 |
< |
|
237 |
< |
atomTypeString = atoms[local_index]->getType(); |
238 |
< |
|
239 |
< |
atoms[local_index]->getPos(pos); |
240 |
< |
atoms[local_index]->getVel(vel); |
241 |
< |
|
242 |
< |
atomTransData[0] = pos[0]; |
243 |
< |
atomTransData[1] = pos[1]; |
244 |
< |
atomTransData[2] = pos[2]; |
245 |
< |
|
246 |
< |
atomTransData[3] = vel[0]; |
247 |
< |
atomTransData[4] = vel[1]; |
248 |
< |
atomTransData[5] = vel[2]; |
249 |
< |
|
250 |
< |
isDirectional = 0; |
251 |
< |
|
252 |
< |
if( atoms[local_index]->isDirectional() ){ |
253 |
< |
|
254 |
< |
isDirectional = 1; |
255 |
< |
|
256 |
< |
dAtom = (DirectionalAtom *)atoms[local_index]; |
257 |
< |
dAtom->getQ( q ); |
258 |
< |
|
259 |
< |
atomOrientData[0] = q[0]; |
260 |
< |
atomOrientData[1] = q[1]; |
261 |
< |
atomOrientData[2] = q[2]; |
262 |
< |
atomOrientData[3] = q[3]; |
263 |
< |
|
264 |
< |
atomOrientData[4] = dAtom->getJx(); |
265 |
< |
atomOrientData[5] = dAtom->getJy(); |
266 |
< |
atomOrientData[6] = dAtom->getJz(); |
267 |
< |
} |
268 |
< |
|
269 |
< |
} else { |
270 |
< |
sprintf(painCave.errMsg, |
271 |
< |
"Atom %d not found on processor %d\n", |
272 |
< |
i, worldRank ); |
273 |
< |
haveError= 1; |
274 |
< |
simError(); |
275 |
< |
} |
276 |
< |
|
277 |
< |
if(haveError) DieDieDie(); |
278 |
< |
|
279 |
< |
// If we've survived to here, format the line: |
280 |
< |
|
281 |
< |
sprintf( tempBuffer, |
282 |
< |
"%s\t%lf\t%lf\t%lf\t%lf\t%lf\t%lf\t", |
283 |
< |
atomTypeString, |
284 |
< |
atomTransData[0], |
285 |
< |
atomTransData[1], |
286 |
< |
atomTransData[2], |
287 |
< |
atomTransData[3], |
288 |
< |
atomTransData[4], |
289 |
< |
atomTransData[5]); |
290 |
< |
|
291 |
< |
strcpy( writeLine, tempBuffer ); |
292 |
< |
|
293 |
< |
if (isDirectional) { |
294 |
< |
|
295 |
< |
sprintf( tempBuffer, |
296 |
< |
"%lf\t%lf\t%lf\t%lf\t%lf\t%lf\t%lf\n", |
297 |
< |
atomOrientData[0], |
298 |
< |
atomOrientData[1], |
299 |
< |
atomOrientData[2], |
300 |
< |
atomOrientData[3], |
301 |
< |
atomOrientData[4], |
302 |
< |
atomOrientData[5], |
303 |
< |
atomOrientData[6]); |
304 |
< |
strcat( writeLine, tempBuffer ); |
305 |
< |
|
306 |
< |
} else { |
307 |
< |
strcat( writeLine, "0.0\t0.0\t0.0\t0.0\t0.0\t0.0\t0.0\n" ); |
308 |
< |
} |
309 |
< |
|
310 |
< |
outFile << writeLine; |
311 |
< |
outFile.flush(); |
312 |
< |
} |
347 |
> |
<< entry_plug->Hmat[0][2] << "\t" |
348 |
> |
<< entry_plug->Hmat[1][2] << "\t" |
349 |
> |
<< entry_plug->Hmat[2][2] << ";"; |
350 |
> |
|
351 |
> |
*outFile[k] << entry_plug->the_integrator->getAdditionalParameters() << endl; |
352 |
|
} |
353 |
|
|
354 |
< |
outFile.flush(); |
316 |
< |
sprintf( checkPointMsg, |
317 |
< |
"Sucessfully took a dump.\n"); |
318 |
< |
MPIcheckPoint(); |
319 |
< |
|
320 |
< |
} else { |
354 |
> |
currentIndex = 0; |
355 |
|
|
356 |
< |
// worldRank != 0, so I'm a remote node. |
323 |
< |
|
324 |
< |
for (i = 0 ; i < mpiSim->getTotAtoms(); i++ ) { |
356 |
> |
for (i = 0 ; i < mpiSim->getTotNmol(); i++ ) { |
357 |
|
|
358 |
< |
// Am I the node which has this atom? |
358 |
> |
// Get the Node number which has this atom; |
359 |
|
|
360 |
< |
if (AtomToProcMap[i] == worldRank) { |
360 |
> |
which_node = MolToProcMap[i]; |
361 |
> |
|
362 |
> |
if (which_node != 0) { |
363 |
> |
|
364 |
> |
if (potatoes[which_node] + 1 >= MAXTAG) { |
365 |
> |
// The potato was going to exceed the maximum value, |
366 |
> |
// so wrap this processor potato back to 0: |
367 |
|
|
368 |
< |
local_index=-1; |
369 |
< |
for (j=0; (j<mpiSim->getMyNlocal()) && (local_index < 0); j++) { |
370 |
< |
if (atoms[j]->getGlobalIndex() == which_atom) local_index = j; |
368 |
> |
potatoes[which_node] = 0; |
369 |
> |
MPI_Send(&potatoes[which_node], 1, MPI_INT, which_node, 0, MPI_COMM_WORLD); |
370 |
> |
|
371 |
|
} |
334 |
– |
if (local_index != -1) { |
335 |
– |
|
336 |
– |
atomTypeString = atoms[local_index]->getType(); |
372 |
|
|
373 |
< |
atoms[local_index]->getPos(pos); |
339 |
< |
atoms[local_index]->getVel(vel); |
373 |
> |
myPotato = potatoes[which_node]; |
374 |
|
|
375 |
< |
atomTransData[0] = pos[0]; |
376 |
< |
atomTransData[1] = pos[1]; |
377 |
< |
atomTransData[2] = pos[2]; |
375 |
> |
//recieve the number of integrableObject in current molecule |
376 |
> |
MPI_Recv(&nCurObj, 1, MPI_INT, which_node, |
377 |
> |
myPotato, MPI_COMM_WORLD, &istatus); |
378 |
> |
myPotato++; |
379 |
> |
|
380 |
> |
for(int l = 0; l < nCurObj; l++){ |
381 |
|
|
382 |
< |
atomTransData[3] = vel[0]; |
383 |
< |
atomTransData[4] = vel[1]; |
384 |
< |
atomTransData[5] = vel[2]; |
348 |
< |
|
349 |
< |
isDirectional = 0; |
382 |
> |
if (potatoes[which_node] + 3 >= MAXTAG) { |
383 |
> |
// The potato was going to exceed the maximum value, |
384 |
> |
// so wrap this processor potato back to 0: |
385 |
|
|
386 |
< |
if( atoms[local_index]->isDirectional() ){ |
387 |
< |
|
353 |
< |
isDirectional = 1; |
386 |
> |
potatoes[which_node] = 0; |
387 |
> |
MPI_Send(&potatoes[which_node], 1, MPI_INT, which_node, 0, MPI_COMM_WORLD); |
388 |
|
|
355 |
– |
dAtom = (DirectionalAtom *)atoms[local_index]; |
356 |
– |
dAtom->getQ( q ); |
357 |
– |
|
358 |
– |
atomOrientData[0] = q[0]; |
359 |
– |
atomOrientData[1] = q[1]; |
360 |
– |
atomOrientData[2] = q[2]; |
361 |
– |
atomOrientData[3] = q[3]; |
362 |
– |
|
363 |
– |
atomOrientData[4] = dAtom->getJx(); |
364 |
– |
atomOrientData[5] = dAtom->getJy(); |
365 |
– |
atomOrientData[6] = dAtom->getJz(); |
389 |
|
} |
390 |
|
|
391 |
< |
} else { |
392 |
< |
sprintf(painCave.errMsg, |
370 |
< |
"Atom %d not found on processor %d\n", |
371 |
< |
i, worldRank ); |
372 |
< |
haveError= 1; |
373 |
< |
simError(); |
374 |
< |
} |
391 |
> |
MPI_Recv(MPIatomTypeString, MINIBUFFERSIZE, MPI_CHAR, which_node, |
392 |
> |
myPotato, MPI_COMM_WORLD, &istatus); |
393 |
|
|
394 |
< |
// I've survived this far, so send off the data! |
394 |
> |
atomTypeString = MPIatomTypeString; |
395 |
|
|
396 |
< |
atomTypeTag = 4*i; |
379 |
< |
atomIsDirectionalTag = 4*i + 1; |
380 |
< |
atomTransDataTag = 4*i + 2; |
381 |
< |
atomOrientDataTag = 4*i + 3; |
396 |
> |
myPotato++; |
397 |
|
|
398 |
+ |
MPI_Recv(&isDirectional, 1, MPI_INT, which_node, |
399 |
+ |
myPotato, MPI_COMM_WORLD, &istatus); |
400 |
+ |
|
401 |
+ |
myPotato++; |
402 |
|
|
403 |
< |
strncpy(MPIatomTypeString, atomTypeString, MINIBUFFERSIZE); |
403 |
> |
if (isDirectional) { |
404 |
> |
MPI_Recv(atomData13, 13, MPI_DOUBLE, which_node, |
405 |
> |
myPotato, MPI_COMM_WORLD, &istatus); |
406 |
> |
} else { |
407 |
> |
MPI_Recv(atomData6, 6, MPI_DOUBLE, which_node, |
408 |
> |
myPotato, MPI_COMM_WORLD, &istatus); |
409 |
> |
} |
410 |
|
|
411 |
< |
// null terminate the string before sending (just in case): |
412 |
< |
MPIatomTypeString[MINIBUFFERSIZE-1] = '\0'; |
411 |
> |
myPotato++; |
412 |
> |
} |
413 |
> |
potatoes[which_node] = myPotato; |
414 |
|
|
415 |
< |
MPI_Send(MPIatomTypeString, MINIBUFFERSIZE, MPI_CHAR, 0, |
390 |
< |
atomTypeTag, MPI_COMM_WORLD); |
415 |
> |
} else { |
416 |
|
|
417 |
< |
MPI_Send(&isDirectional, 1, MPI_INT, 0, |
393 |
< |
atomIsDirectionalTag, MPI_COMM_WORLD); |
417 |
> |
haveError = 0; |
418 |
|
|
419 |
< |
MPI_Send(atomTransData, 6, MPI_DOUBLE, 0, |
396 |
< |
atomTransDataTag, MPI_COMM_WORLD); |
419 |
> |
local_index = indexArray[currentIndex].first; |
420 |
|
|
421 |
< |
if (isDirectional) { |
421 |
> |
integrableObjects = (entry_plug->molecules[local_index]).getIntegrableObjects(); |
422 |
|
|
423 |
< |
MPI_Send(atomOrientData, 7, MPI_DOUBLE, 0, |
424 |
< |
atomOrientDataTag, MPI_COMM_WORLD); |
425 |
< |
|
423 |
> |
for(iter= integrableObjects.begin(); iter != integrableObjects.end(); ++iter){ |
424 |
> |
sd = *iter; |
425 |
> |
atomTypeString = sd->getType(); |
426 |
> |
|
427 |
> |
sd->getPos(pos); |
428 |
> |
sd->getVel(vel); |
429 |
> |
|
430 |
> |
atomData6[0] = pos[0]; |
431 |
> |
atomData6[1] = pos[1]; |
432 |
> |
atomData6[2] = pos[2]; |
433 |
> |
|
434 |
> |
atomData6[3] = vel[0]; |
435 |
> |
atomData6[4] = vel[1]; |
436 |
> |
atomData6[5] = vel[2]; |
437 |
> |
|
438 |
> |
isDirectional = 0; |
439 |
> |
|
440 |
> |
if( sd->isDirectional() ){ |
441 |
> |
|
442 |
> |
isDirectional = 1; |
443 |
> |
|
444 |
> |
sd->getQ( q ); |
445 |
> |
sd->getJ( ji ); |
446 |
> |
|
447 |
> |
for (int j = 0; j < 6 ; j++) |
448 |
> |
atomData13[j] = atomData6[j]; |
449 |
> |
|
450 |
> |
atomData13[6] = q[0]; |
451 |
> |
atomData13[7] = q[1]; |
452 |
> |
atomData13[8] = q[2]; |
453 |
> |
atomData13[9] = q[3]; |
454 |
> |
|
455 |
> |
atomData13[10] = ji[0]; |
456 |
> |
atomData13[11] = ji[1]; |
457 |
> |
atomData13[12] = ji[2]; |
458 |
> |
} |
459 |
> |
|
460 |
|
} |
461 |
+ |
|
462 |
+ |
currentIndex++; |
463 |
+ |
} |
464 |
+ |
// If we've survived to here, format the line: |
465 |
|
|
466 |
+ |
if (!isDirectional) { |
467 |
+ |
|
468 |
+ |
sprintf( writeLine, |
469 |
+ |
"%s\t%lf\t%lf\t%lf\t%lf\t%lf\t%lf\t", |
470 |
+ |
atomTypeString, |
471 |
+ |
atomData6[0], |
472 |
+ |
atomData6[1], |
473 |
+ |
atomData6[2], |
474 |
+ |
atomData6[3], |
475 |
+ |
atomData6[4], |
476 |
+ |
atomData6[5]); |
477 |
+ |
|
478 |
+ |
strcat( writeLine, "0.0\t0.0\t0.0\t0.0\t0.0\t0.0\t0.0\n" ); |
479 |
+ |
|
480 |
+ |
} else { |
481 |
+ |
|
482 |
+ |
sprintf( writeLine, |
483 |
+ |
"%s\t%lf\t%lf\t%lf\t%lf\t%lf\t%lf\t%lf\t%lf\t%lf\t%lf\t%lf\t%lf\t%lf\n", |
484 |
+ |
atomTypeString, |
485 |
+ |
atomData13[0], |
486 |
+ |
atomData13[1], |
487 |
+ |
atomData13[2], |
488 |
+ |
atomData13[3], |
489 |
+ |
atomData13[4], |
490 |
+ |
atomData13[5], |
491 |
+ |
atomData13[6], |
492 |
+ |
atomData13[7], |
493 |
+ |
atomData13[8], |
494 |
+ |
atomData13[9], |
495 |
+ |
atomData13[10], |
496 |
+ |
atomData13[11], |
497 |
+ |
atomData13[12]); |
498 |
+ |
|
499 |
|
} |
500 |
+ |
|
501 |
+ |
for(k = 0; k < outFile.size(); k++) |
502 |
+ |
*outFile[k] << writeLine; |
503 |
|
} |
504 |
< |
|
504 |
> |
|
505 |
> |
for(k = 0; k < outFile.size(); k++) |
506 |
> |
outFile[k]->flush(); |
507 |
> |
|
508 |
|
sprintf( checkPointMsg, |
509 |
|
"Sucessfully took a dump.\n"); |
510 |
+ |
|
511 |
|
MPIcheckPoint(); |
512 |
|
|
513 |
< |
} |
514 |
< |
|
515 |
< |
painCave.isEventLoop = 0; |
513 |
> |
delete[] potatoes; |
514 |
> |
|
515 |
> |
} else { |
516 |
|
|
517 |
< |
#endif // is_mpi |
417 |
< |
} |
517 |
> |
// worldRank != 0, so I'm a remote node. |
518 |
|
|
519 |
< |
void DumpWriter::writeFinal(double finalTime){ |
519 |
> |
// Set my magic potato to 0: |
520 |
|
|
521 |
< |
char finalName[500]; |
522 |
< |
ofstream finalOut; |
521 |
> |
myPotato = 0; |
522 |
> |
currentIndex = 0; |
523 |
> |
|
524 |
> |
for (i = 0 ; i < mpiSim->getTotNmol(); i++ ) { |
525 |
> |
|
526 |
> |
// Am I the node which has this integrableObject? |
527 |
> |
|
528 |
> |
if (MolToProcMap[i] == worldRank) { |
529 |
|
|
424 |
– |
const int BUFFERSIZE = 2000; |
425 |
– |
const int MINIBUFFERSIZE = 100; |
426 |
– |
char tempBuffer[BUFFERSIZE]; |
427 |
– |
char writeLine[BUFFERSIZE]; |
530 |
|
|
531 |
< |
double q[4]; |
532 |
< |
DirectionalAtom* dAtom; |
533 |
< |
Atom** atoms = entry_plug->atoms; |
534 |
< |
int i; |
535 |
< |
#ifdef IS_MPI |
536 |
< |
int j, which_node, done, which_atom, local_index; |
537 |
< |
double atomTransData[6]; |
538 |
< |
double atomOrientData[7]; |
539 |
< |
int isDirectional; |
438 |
< |
char* atomTypeString; |
439 |
< |
char MPIatomTypeString[MINIBUFFERSIZE]; |
440 |
< |
int atomTypeTag; |
441 |
< |
int atomIsDirectionalTag; |
442 |
< |
int atomTransDataTag; |
443 |
< |
int atomOrientDataTag; |
444 |
< |
#else //is_mpi |
445 |
< |
int nAtoms = entry_plug->n_atoms; |
446 |
< |
#endif //is_mpi |
531 |
> |
if (myPotato + 1 >= MAXTAG) { |
532 |
> |
|
533 |
> |
// The potato was going to exceed the maximum value, |
534 |
> |
// so wrap this processor potato back to 0 (and block until |
535 |
> |
// node 0 says we can go: |
536 |
> |
|
537 |
> |
MPI_Recv(&myPotato, 1, MPI_INT, 0, 0, MPI_COMM_WORLD, &istatus); |
538 |
> |
|
539 |
> |
} |
540 |
|
|
541 |
< |
double pos[3], vel[3]; |
541 |
> |
local_index = indexArray[currentIndex].first; |
542 |
> |
integrableObjects = entry_plug->molecules[local_index].getIntegrableObjects(); |
543 |
> |
|
544 |
> |
nCurObj = integrableObjects.size(); |
545 |
> |
|
546 |
> |
MPI_Send(&nCurObj, 1, MPI_INT, 0, |
547 |
> |
myPotato, MPI_COMM_WORLD); |
548 |
> |
myPotato++; |
549 |
|
|
550 |
< |
#ifdef IS_MPI |
451 |
< |
if(worldRank == 0 ){ |
452 |
< |
#endif // is_mpi |
550 |
> |
for( iter = integrableObjects.begin(); iter != integrableObjects.end(); iter++){ |
551 |
|
|
552 |
< |
strcpy( finalName, entry_plug->finalName ); |
552 |
> |
if (myPotato + 3 >= MAXTAG) { |
553 |
> |
|
554 |
> |
// The potato was going to exceed the maximum value, |
555 |
> |
// so wrap this processor potato back to 0 (and block until |
556 |
> |
// node 0 says we can go: |
557 |
> |
|
558 |
> |
MPI_Recv(&myPotato, 1, MPI_INT, 0, 0, MPI_COMM_WORLD, &istatus); |
559 |
> |
|
560 |
> |
} |
561 |
> |
|
562 |
> |
sd = *iter; |
563 |
> |
|
564 |
> |
atomTypeString = sd->getType(); |
565 |
|
|
566 |
< |
finalOut.open( finalName, ios::out | ios::trunc ); |
567 |
< |
if( !finalOut ){ |
458 |
< |
sprintf( painCave.errMsg, |
459 |
< |
"Could not open \"%s\" for final dump output.\n", |
460 |
< |
finalName ); |
461 |
< |
painCave.isFatal = 1; |
462 |
< |
simError(); |
463 |
< |
} |
566 |
> |
sd->getPos(pos); |
567 |
> |
sd->getVel(vel); |
568 |
|
|
569 |
< |
// finalOut.setf( ios::scientific ); |
569 |
> |
atomData6[0] = pos[0]; |
570 |
> |
atomData6[1] = pos[1]; |
571 |
> |
atomData6[2] = pos[2]; |
572 |
|
|
573 |
< |
#ifdef IS_MPI |
574 |
< |
} |
573 |
> |
atomData6[3] = vel[0]; |
574 |
> |
atomData6[4] = vel[1]; |
575 |
> |
atomData6[5] = vel[2]; |
576 |
> |
|
577 |
> |
isDirectional = 0; |
578 |
|
|
579 |
< |
sprintf(checkPointMsg,"Opened file for final configuration\n"); |
471 |
< |
MPIcheckPoint(); |
579 |
> |
if( sd->isDirectional() ){ |
580 |
|
|
581 |
< |
#endif //is_mpi |
581 |
> |
isDirectional = 1; |
582 |
> |
|
583 |
> |
sd->getQ( q ); |
584 |
> |
sd->getJ( ji ); |
585 |
> |
|
586 |
> |
for (int j = 0; j < 6 ; j++) |
587 |
> |
atomData13[j] = atomData6[j]; |
588 |
> |
|
589 |
> |
atomData13[6] = q[0]; |
590 |
> |
atomData13[7] = q[1]; |
591 |
> |
atomData13[8] = q[2]; |
592 |
> |
atomData13[9] = q[3]; |
593 |
> |
|
594 |
> |
atomData13[10] = ji[0]; |
595 |
> |
atomData13[11] = ji[1]; |
596 |
> |
atomData13[12] = ji[2]; |
597 |
> |
} |
598 |
|
|
599 |
+ |
|
600 |
+ |
strncpy(MPIatomTypeString, atomTypeString, MINIBUFFERSIZE); |
601 |
|
|
602 |
< |
#ifndef IS_MPI |
602 |
> |
// null terminate the string before sending (just in case): |
603 |
> |
MPIatomTypeString[MINIBUFFERSIZE-1] = '\0'; |
604 |
|
|
605 |
< |
finalOut << nAtoms << "\n"; |
605 |
> |
MPI_Send(MPIatomTypeString, MINIBUFFERSIZE, MPI_CHAR, 0, |
606 |
> |
myPotato, MPI_COMM_WORLD); |
607 |
> |
|
608 |
> |
myPotato++; |
609 |
|
|
610 |
< |
finalOut << finalTime << ";\t" |
611 |
< |
<< entry_plug->Hmat[0][0] << "\t" |
612 |
< |
<< entry_plug->Hmat[1][0] << "\t" |
613 |
< |
<< entry_plug->Hmat[2][0] << ";\t" |
610 |
> |
MPI_Send(&isDirectional, 1, MPI_INT, 0, |
611 |
> |
myPotato, MPI_COMM_WORLD); |
612 |
> |
|
613 |
> |
myPotato++; |
614 |
> |
|
615 |
> |
if (isDirectional) { |
616 |
|
|
617 |
< |
<< entry_plug->Hmat[0][1] << "\t" |
618 |
< |
<< entry_plug->Hmat[1][1] << "\t" |
619 |
< |
<< entry_plug->Hmat[2][1] << ";\t" |
620 |
< |
|
489 |
< |
<< entry_plug->Hmat[0][2] << "\t" |
490 |
< |
<< entry_plug->Hmat[1][2] << "\t" |
491 |
< |
<< entry_plug->Hmat[2][2] << ";"; |
492 |
< |
|
493 |
< |
//write out additional parameters, such as chi and eta |
494 |
< |
finalOut << entry_plug->the_integrator->getAdditionalParameters(); |
495 |
< |
finalOut << endl; |
496 |
< |
|
497 |
< |
for( i=0; i<nAtoms; i++ ){ |
498 |
< |
|
499 |
< |
atoms[i]->getPos(pos); |
500 |
< |
atoms[i]->getVel(vel); |
501 |
< |
|
502 |
< |
sprintf( tempBuffer, |
503 |
< |
"%s\t%lf\t%lf\t%lf\t%lf\t%lf\t%lf\t", |
504 |
< |
atoms[i]->getType(), |
505 |
< |
pos[0], |
506 |
< |
pos[1], |
507 |
< |
pos[2], |
508 |
< |
vel[0], |
509 |
< |
vel[1], |
510 |
< |
vel[2]); |
511 |
< |
strcpy( writeLine, tempBuffer ); |
512 |
< |
|
513 |
< |
if( atoms[i]->isDirectional() ){ |
514 |
< |
|
515 |
< |
dAtom = (DirectionalAtom *)atoms[i]; |
516 |
< |
dAtom->getQ( q ); |
517 |
< |
|
518 |
< |
sprintf( tempBuffer, |
519 |
< |
"%lf\t%lf\t%lf\t%lf\t%lf\t%lf\t%lf\n", |
520 |
< |
q[0], |
521 |
< |
q[1], |
522 |
< |
q[2], |
523 |
< |
q[3], |
524 |
< |
dAtom->getJx(), |
525 |
< |
dAtom->getJy(), |
526 |
< |
dAtom->getJz()); |
527 |
< |
strcat( writeLine, tempBuffer ); |
528 |
< |
} |
529 |
< |
else |
530 |
< |
strcat( writeLine, "0.0\t0.0\t0.0\t0.0\t0.0\t0.0\t0.0\n" ); |
617 |
> |
MPI_Send(atomData13, 13, MPI_DOUBLE, 0, |
618 |
> |
myPotato, MPI_COMM_WORLD); |
619 |
> |
|
620 |
> |
} else { |
621 |
|
|
622 |
< |
finalOut << writeLine; |
623 |
< |
} |
624 |
< |
finalOut.flush(); |
535 |
< |
finalOut.close(); |
622 |
> |
MPI_Send(atomData6, 6, MPI_DOUBLE, 0, |
623 |
> |
myPotato, MPI_COMM_WORLD); |
624 |
> |
} |
625 |
|
|
626 |
< |
#else // is_mpi |
626 |
> |
myPotato++; |
627 |
|
|
539 |
– |
// first thing first, suspend fatalities. |
540 |
– |
painCave.isEventLoop = 1; |
541 |
– |
|
542 |
– |
int myStatus; // 1 = wakeup & success; 0 = error; -1 = AllDone |
543 |
– |
int haveError; |
544 |
– |
|
545 |
– |
MPI_Status istatus; |
546 |
– |
int *AtomToProcMap = mpiSim->getAtomToProcMap(); |
547 |
– |
|
548 |
– |
// write out header and node 0's coordinates |
549 |
– |
|
550 |
– |
if( worldRank == 0 ){ |
551 |
– |
finalOut << mpiSim->getTotAtoms() << "\n"; |
552 |
– |
|
553 |
– |
finalOut << finalTime << ";\t" |
554 |
– |
<< entry_plug->Hmat[0][0] << "\t" |
555 |
– |
<< entry_plug->Hmat[1][0] << "\t" |
556 |
– |
<< entry_plug->Hmat[2][0] << ";\t" |
557 |
– |
|
558 |
– |
<< entry_plug->Hmat[0][1] << "\t" |
559 |
– |
<< entry_plug->Hmat[1][1] << "\t" |
560 |
– |
<< entry_plug->Hmat[2][1] << ";\t" |
561 |
– |
|
562 |
– |
<< entry_plug->Hmat[0][2] << "\t" |
563 |
– |
<< entry_plug->Hmat[1][2] << "\t" |
564 |
– |
<< entry_plug->Hmat[2][2] << ";"; |
565 |
– |
|
566 |
– |
finalOut << entry_plug->the_integrator->getAdditionalParameters(); |
567 |
– |
finalOut << endl; |
568 |
– |
finalOut.flush(); |
569 |
– |
for (i = 0 ; i < mpiSim->getTotAtoms(); i++ ) { |
570 |
– |
// Get the Node number which has this atom; |
571 |
– |
|
572 |
– |
which_node = AtomToProcMap[i]; |
573 |
– |
|
574 |
– |
if (which_node != 0) { |
575 |
– |
|
576 |
– |
atomTypeTag = 4*i; |
577 |
– |
atomIsDirectionalTag = 4*i + 1; |
578 |
– |
atomTransDataTag = 4*i + 2; |
579 |
– |
atomOrientDataTag = 4*i + 3; |
580 |
– |
|
581 |
– |
MPI_Recv(MPIatomTypeString, MINIBUFFERSIZE, MPI_CHAR, which_node, |
582 |
– |
atomTypeTag, MPI_COMM_WORLD, &istatus); |
583 |
– |
|
584 |
– |
strncpy(atomTypeString, MPIatomTypeString, MINIBUFFERSIZE); |
585 |
– |
|
586 |
– |
MPI_Recv(&isDirectional, 1, MPI_INT, which_node, |
587 |
– |
atomIsDirectionalTag, MPI_COMM_WORLD, &istatus); |
588 |
– |
|
589 |
– |
MPI_Recv(atomTransData, 6, MPI_DOUBLE, which_node, |
590 |
– |
atomTransDataTag, MPI_COMM_WORLD, &istatus); |
591 |
– |
|
592 |
– |
if (isDirectional) { |
593 |
– |
|
594 |
– |
MPI_Recv(atomOrientData, 7, MPI_DOUBLE, which_node, |
595 |
– |
atomOrientDataTag, MPI_COMM_WORLD, &istatus); |
596 |
– |
|
597 |
– |
} |
598 |
– |
|
599 |
– |
} else { |
600 |
– |
|
601 |
– |
haveError = 0; |
602 |
– |
which_atom = i; |
603 |
– |
local_index=-1; |
604 |
– |
|
605 |
– |
for (j=0; (j<mpiSim->getMyNlocal()) && (local_index < 0); j++) { |
606 |
– |
if (atoms[j]->getGlobalIndex() == which_atom) local_index = j; |
607 |
– |
} |
608 |
– |
|
609 |
– |
if (local_index != -1) { |
610 |
– |
|
611 |
– |
atomTypeString = atoms[local_index]->getType(); |
612 |
– |
|
613 |
– |
atoms[local_index]->getPos(pos); |
614 |
– |
atoms[local_index]->getVel(vel); |
615 |
– |
|
616 |
– |
atomTransData[0] = pos[0]; |
617 |
– |
atomTransData[1] = pos[1]; |
618 |
– |
atomTransData[2] = pos[2]; |
619 |
– |
|
620 |
– |
atomTransData[3] = vel[0]; |
621 |
– |
atomTransData[4] = vel[1]; |
622 |
– |
atomTransData[5] = vel[2]; |
623 |
– |
|
624 |
– |
isDirectional = 0; |
625 |
– |
|
626 |
– |
if( atoms[local_index]->isDirectional() ){ |
627 |
– |
|
628 |
– |
isDirectional = 1; |
629 |
– |
|
630 |
– |
dAtom = (DirectionalAtom *)atoms[local_index]; |
631 |
– |
dAtom->getQ( q ); |
632 |
– |
|
633 |
– |
atomOrientData[0] = q[0]; |
634 |
– |
atomOrientData[1] = q[1]; |
635 |
– |
atomOrientData[2] = q[2]; |
636 |
– |
atomOrientData[3] = q[3]; |
637 |
– |
|
638 |
– |
atomOrientData[4] = dAtom->getJx(); |
639 |
– |
atomOrientData[5] = dAtom->getJy(); |
640 |
– |
atomOrientData[6] = dAtom->getJz(); |
628 |
|
} |
629 |
|
|
630 |
< |
} else { |
631 |
< |
sprintf(painCave.errMsg, |
645 |
< |
"Atom %d not found on processor %d\n", |
646 |
< |
i, worldRank ); |
647 |
< |
haveError= 1; |
648 |
< |
simError(); |
649 |
< |
} |
650 |
< |
|
651 |
< |
if(haveError) DieDieDie(); |
652 |
< |
|
653 |
< |
// If we've survived to here, format the line: |
654 |
< |
|
655 |
< |
sprintf( tempBuffer, |
656 |
< |
"%s\t%lf\t%lf\t%lf\t%lf\t%lf\t%lf\t", |
657 |
< |
atomTypeString, |
658 |
< |
atomTransData[0], |
659 |
< |
atomTransData[1], |
660 |
< |
atomTransData[2], |
661 |
< |
atomTransData[3], |
662 |
< |
atomTransData[4], |
663 |
< |
atomTransData[5]); |
664 |
< |
|
665 |
< |
strcpy( writeLine, tempBuffer ); |
666 |
< |
|
667 |
< |
if (isDirectional) { |
668 |
< |
|
669 |
< |
sprintf( tempBuffer, |
670 |
< |
"%lf\t%lf\t%lf\t%lf\t%lf\t%lf\t%lf\n", |
671 |
< |
atomOrientData[0], |
672 |
< |
atomOrientData[1], |
673 |
< |
atomOrientData[2], |
674 |
< |
atomOrientData[3], |
675 |
< |
atomOrientData[4], |
676 |
< |
atomOrientData[5], |
677 |
< |
atomOrientData[6]); |
678 |
< |
strcat( writeLine, tempBuffer ); |
679 |
< |
|
680 |
< |
} else { |
681 |
< |
strcat( writeLine, "0.0\t0.0\t0.0\t0.0\t0.0\t0.0\t0.0\n" ); |
630 |
> |
currentIndex++; |
631 |
> |
|
632 |
|
} |
633 |
< |
|
684 |
< |
finalOut << writeLine; |
685 |
< |
finalOut.flush(); |
633 |
> |
|
634 |
|
} |
687 |
– |
} |
635 |
|
|
689 |
– |
finalOut.flush(); |
636 |
|
sprintf( checkPointMsg, |
637 |
|
"Sucessfully took a dump.\n"); |
638 |
< |
MPIcheckPoint(); |
638 |
> |
MPIcheckPoint(); |
639 |
|
|
694 |
– |
} else { |
695 |
– |
|
696 |
– |
// worldRank != 0, so I'm a remote node. |
697 |
– |
|
698 |
– |
for (i = 0 ; i < mpiSim->getTotAtoms(); i++ ) { |
699 |
– |
|
700 |
– |
// Am I the node which has this atom? |
701 |
– |
|
702 |
– |
if (AtomToProcMap[i] == worldRank) { |
703 |
– |
|
704 |
– |
local_index=-1; |
705 |
– |
for (j=0; (j<mpiSim->getMyNlocal()) && (local_index < 0); j++) { |
706 |
– |
if (atoms[j]->getGlobalIndex() == which_atom) local_index = j; |
707 |
– |
} |
708 |
– |
if (local_index != -1) { |
709 |
– |
|
710 |
– |
atomTypeString = atoms[local_index]->getType(); |
711 |
– |
|
712 |
– |
atoms[local_index]->getPos(pos); |
713 |
– |
atoms[local_index]->getVel(vel); |
714 |
– |
|
715 |
– |
atomTransData[0] = pos[0]; |
716 |
– |
atomTransData[1] = pos[1]; |
717 |
– |
atomTransData[2] = pos[2]; |
718 |
– |
|
719 |
– |
atomTransData[3] = vel[0]; |
720 |
– |
atomTransData[4] = vel[1]; |
721 |
– |
atomTransData[5] = vel[2]; |
722 |
– |
|
723 |
– |
isDirectional = 0; |
724 |
– |
|
725 |
– |
if( atoms[local_index]->isDirectional() ){ |
726 |
– |
|
727 |
– |
isDirectional = 1; |
728 |
– |
|
729 |
– |
dAtom = (DirectionalAtom *)atoms[local_index]; |
730 |
– |
dAtom->getQ( q ); |
731 |
– |
|
732 |
– |
atomOrientData[0] = q[0]; |
733 |
– |
atomOrientData[1] = q[1]; |
734 |
– |
atomOrientData[2] = q[2]; |
735 |
– |
atomOrientData[3] = q[3]; |
736 |
– |
|
737 |
– |
atomOrientData[4] = dAtom->getJx(); |
738 |
– |
atomOrientData[5] = dAtom->getJy(); |
739 |
– |
atomOrientData[6] = dAtom->getJz(); |
740 |
– |
} |
741 |
– |
|
742 |
– |
} else { |
743 |
– |
sprintf(painCave.errMsg, |
744 |
– |
"Atom %d not found on processor %d\n", |
745 |
– |
i, worldRank ); |
746 |
– |
haveError= 1; |
747 |
– |
simError(); |
748 |
– |
} |
749 |
– |
|
750 |
– |
// I've survived this far, so send off the data! |
751 |
– |
|
752 |
– |
atomTypeTag = 4*i; |
753 |
– |
atomIsDirectionalTag = 4*i + 1; |
754 |
– |
atomTransDataTag = 4*i + 2; |
755 |
– |
atomOrientDataTag = 4*i + 3; |
756 |
– |
|
757 |
– |
strncpy(MPIatomTypeString, atomTypeString, MINIBUFFERSIZE); |
758 |
– |
|
759 |
– |
MPI_Send(MPIatomTypeString, MINIBUFFERSIZE, MPI_CHAR, 0, |
760 |
– |
atomTypeTag, MPI_COMM_WORLD); |
761 |
– |
|
762 |
– |
MPI_Send(&isDirectional, 1, MPI_INT, 0, |
763 |
– |
atomIsDirectionalTag, MPI_COMM_WORLD); |
764 |
– |
|
765 |
– |
MPI_Send(atomTransData, 6, MPI_DOUBLE, 0, |
766 |
– |
atomTransDataTag, MPI_COMM_WORLD); |
767 |
– |
|
768 |
– |
if (isDirectional) { |
769 |
– |
|
770 |
– |
MPI_Send(atomOrientData, 7, MPI_DOUBLE, 0, |
771 |
– |
atomOrientDataTag, MPI_COMM_WORLD); |
772 |
– |
|
773 |
– |
} |
774 |
– |
|
775 |
– |
} |
640 |
|
} |
641 |
|
|
778 |
– |
sprintf( checkPointMsg, |
779 |
– |
"Sucessfully wrote final file.\n"); |
780 |
– |
MPIcheckPoint(); |
781 |
– |
|
782 |
– |
} |
783 |
– |
|
784 |
– |
painCave.isEventLoop = 0; |
642 |
|
|
643 |
< |
if( worldRank == 0 ) finalOut.close(); |
643 |
> |
|
644 |
|
#endif // is_mpi |
645 |
|
} |
646 |
|
|
790 |
– |
|
791 |
– |
|
647 |
|
#ifdef IS_MPI |
648 |
|
|
649 |
|
// a couple of functions to let us escape the write loop |