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root/OpenMD/branches/development/src/io/DumpReader.cpp
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Comparing:
trunk/src/io/DumpReader.cpp (file contents), Revision 381 by tim, Tue Mar 1 14:45:45 2005 UTC vs.
branches/development/src/io/DumpReader.cpp (file contents), Revision 1629 by gezelter, Wed Sep 14 21:15:17 2011 UTC

# Line 1 | Line 1
1 < /*
2 < * Copyright (c) 2005 The University of Notre Dame. All Rights Reserved.
1 > /*
2 > * Copyright (c) 2009 The University of Notre Dame. All Rights Reserved.
3   *
4   * The University of Notre Dame grants you ("Licensee") a
5   * non-exclusive, royalty free, license to use, modify and
6   * redistribute this software in source and binary code form, provided
7   * that the following conditions are met:
8   *
9 < * 1. Acknowledgement of the program authors must be made in any
10 < *    publication of scientific results based in part on use of the
11 < *    program.  An acceptable form of acknowledgement is citation of
12 < *    the article in which the program was described (Matthew
13 < *    A. Meineke, Charles F. Vardeman II, Teng Lin, Christopher
14 < *    J. Fennell and J. Daniel Gezelter, "OOPSE: An Object-Oriented
15 < *    Parallel Simulation Engine for Molecular Dynamics,"
16 < *    J. Comput. Chem. 26, pp. 252-271 (2005))
17 < *
18 < * 2. Redistributions of source code must retain the above copyright
9 > * 1. Redistributions of source code must retain the above copyright
10   *    notice, this list of conditions and the following disclaimer.
11   *
12 < * 3. Redistributions in binary form must reproduce the above copyright
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.
# Line 37 | Line 28
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]  Vardeman & Gezelter, in progress (2009).                        
40   */
41 +  
42 + #define _LARGEFILE_SOURCE64
43 + #define _FILE_OFFSET_BITS 64
44  
45 < #define _LARGEFILE_SOURCE64
46 < #define _FILE_OFFSET_BITS 64
45 > #include <sys/types.h>
46 > #include <sys/stat.h>
47 >
48 > #include <iostream>
49 > #include <math.h>
50 >
51 > #include <stdio.h>
52 > #include <stdlib.h>
53 > #include <string.h>
54 >
55 > #include "io/DumpReader.hpp"
56 > #include "primitives/Molecule.hpp"
57 > #include "utils/simError.h"
58 > #include "utils/MemoryUtils.hpp"
59 > #include "utils/StringTokenizer.hpp"
60 >
61 > #ifdef IS_MPI
62 >
63 > #include <mpi.h>
64 > #define TAKE_THIS_TAG_CHAR 0
65 > #define TAKE_THIS_TAG_INT 1
66 >
67 > #endif // is_mpi
68 >
69 >
70 > namespace OpenMD {
71 >  
72 >  DumpReader::DumpReader(SimInfo* info, const std::string& filename)
73 >    : info_(info), filename_(filename), isScanned_(false), nframes_(0), needCOMprops_(false) {
74 >    
75 > #ifdef IS_MPI
76 >    
77 >    if (worldRank == 0) {
78 > #endif
79 >      
80 >      inFile_ = new std::ifstream(filename_.c_str());
81 >      
82 >      if (inFile_->fail()) {
83 >        sprintf(painCave.errMsg,
84 >                "DumpReader: Cannot open file: %s\n",
85 >                filename_.c_str());
86 >        painCave.isFatal = 1;
87 >        simError();
88 >      }
89 >      
90 > #ifdef IS_MPI
91 >      
92 >    }
93 >    
94 >    strcpy(checkPointMsg, "Dump file opened for reading successfully.");
95 >    errorCheckPoint();
96 >    
97 > #endif
98 >    
99 >    return;
100 >  }
101 >  
102 >  DumpReader::~DumpReader() {
103 >    
104 > #ifdef IS_MPI
105 >    
106 >    if (worldRank == 0) {
107 > #endif
108 >      
109 >      delete inFile_;
110 >      
111 > #ifdef IS_MPI
112 >      
113 >    }
114 >    
115 >    strcpy(checkPointMsg, "Dump file closed successfully.");
116 >    errorCheckPoint();
117 >    
118 > #endif
119 >    
120 >    return;
121 >  }
122 >  
123 >  int DumpReader::getNFrames(void) {
124 >    
125 >    if (!isScanned_)
126 >      scanFile();
127 >    
128 >    return nframes_;
129 >  }
130 >  
131 >  void DumpReader::scanFile(void) {
132 >    int lineNo = 0;
133 >    std::streampos prevPos;
134 >    std::streampos  currPos;
135 >    
136 > #ifdef IS_MPI
137 >    
138 >    if (worldRank == 0) {
139 > #endif // is_mpi
140 >      
141 >      currPos = inFile_->tellg();
142 >      prevPos = currPos;
143 >      bool foundOpenSnapshotTag = false;
144 >      bool foundClosedSnapshotTag = false;
145 >      while(inFile_->getline(buffer, bufferSize)) {
146 >        ++lineNo;
147 >        
148 >        std::string line = buffer;
149 >        currPos = inFile_->tellg();
150 >        if (line.find("<Snapshot>")!= std::string::npos) {
151 >          if (foundOpenSnapshotTag) {
152 >            sprintf(painCave.errMsg,
153 >                    "DumpReader:<Snapshot> is multiply nested at line %d in %s \n", lineNo,
154 >                    filename_.c_str());
155 >            painCave.isFatal = 1;
156 >            simError();          
157 >          }
158 >          foundOpenSnapshotTag = true;
159 >          foundClosedSnapshotTag = false;
160 >          framePos_.push_back(prevPos);
161 >          
162 >        } else if (line.find("</Snapshot>") != std::string::npos){
163 >          if (!foundOpenSnapshotTag) {
164 >            sprintf(painCave.errMsg,
165 >                    "DumpReader:</Snapshot> appears before <Snapshot> at line %d in %s \n", lineNo,
166 >                    filename_.c_str());
167 >            painCave.isFatal = 1;
168 >            simError();
169 >          }
170 >          
171 >          if (foundClosedSnapshotTag) {
172 >            sprintf(painCave.errMsg,
173 >                    "DumpReader:</Snapshot> appears multiply nested at line %d in %s \n", lineNo,
174 >                    filename_.c_str());
175 >            painCave.isFatal = 1;
176 >            simError();
177 >          }
178 >          foundClosedSnapshotTag = true;
179 >          foundOpenSnapshotTag = false;
180 >        }
181 >        prevPos = currPos;
182 >      }
183 >      
184 >      // only found <Snapshot> for the last frame means the file is corrupted, we should discard
185 >      // it and give a warning message
186 >      if (foundOpenSnapshotTag) {
187 >        sprintf(painCave.errMsg,
188 >                "DumpReader: last frame in %s is invalid\n", filename_.c_str());
189 >        painCave.isFatal = 0;
190 >        simError();      
191 >        framePos_.pop_back();
192 >      }
193 >      
194 >      nframes_ = framePos_.size();
195 >      
196 >      if (nframes_ == 0) {
197 >        sprintf(painCave.errMsg,
198 >                "DumpReader: %s does not contain a valid frame\n", filename_.c_str());
199 >        painCave.isFatal = 1;
200 >        simError();      
201 >      }
202 > #ifdef IS_MPI
203 >    }
204 >    
205 >    MPI_Bcast(&nframes_, 1, MPI_INT, 0, MPI_COMM_WORLD);
206 >    
207 > #endif // is_mpi
208 >    
209 >    isScanned_ = true;
210 >  }
211 >  
212 >  void DumpReader::readFrame(int whichFrame) {
213 >    if (!isScanned_)
214 >      scanFile();
215 >        
216 >    int storageLayout = info_->getSnapshotManager()->getStorageLayout();
217 >    
218 >    if (storageLayout & DataStorage::dslPosition) {
219 >      needPos_ = true;
220 >    } else {
221 >      needPos_ = false;
222 >    }
223 >    
224 >    if (storageLayout & DataStorage::dslVelocity) {
225 >      needVel_ = true;
226 >    } else {
227 >      needVel_ = false;
228 >    }
229 >    
230 >    if (storageLayout & DataStorage::dslAmat || storageLayout & DataStorage::dslElectroFrame) {
231 >      needQuaternion_ = true;
232 >    } else {
233 >      needQuaternion_ = false;
234 >    }
235 >    
236 >    if (storageLayout & DataStorage::dslAngularMomentum) {
237 >      needAngMom_ = true;
238 >    } else {
239 >      needAngMom_ = false;    
240 >    }
241 >    
242 >    readSet(whichFrame);
243  
244 < #include <sys/types.h>
245 < #include <sys/stat.h>
244 >    if (needCOMprops_) {
245 >      Snapshot* s = info_->getSnapshotManager()->getCurrentSnapshot();
246 >      Vector3d com;
247 >      Vector3d comvel;
248 >      Vector3d comw;
249 >      if (needPos_ && needVel_){
250 >        info_->getComAll(com, comvel);
251 >        comw = info_->getAngularMomentum();
252 >      }else{
253 >        com = info_->getCom();
254 >        comvel = 0.0;
255 >        comw   = 0.0;
256 >      }
257 >      s->setCOMprops(com, comvel, comw);      
258 >    }
259  
260 < #include <iostream>
261 < #include <math.h>
260 >  }
261 >  
262 >  void DumpReader::readSet(int whichFrame) {    
263 >    std::string line;
264  
265 < #include <stdio.h>
266 < #include <stdlib.h>
267 < #include <string.h>
265 > #ifndef IS_MPI
266 >    inFile_->clear();  
267 >    inFile_->seekg(framePos_[whichFrame]);
268  
269 < #include "io/DumpReader.hpp"
56 < #include "primitives/Molecule.hpp"
57 < #include "utils/simError.h"
58 < #include "utils/MemoryUtils.hpp"
59 < #include "utils/StringTokenizer.hpp"
269 >    std::istream& inputStream = *inFile_;    
270  
271 < #ifdef IS_MPI
271 > #else
272 >    int masterNode = 0;
273 >    std::stringstream sstream;
274 >    if (worldRank == masterNode) {
275 >      std::string sendBuffer;
276  
277 < #include <mpi.h>
278 < #define TAKE_THIS_TAG_CHAR 0
279 < #define TAKE_THIS_TAG_INT 1
277 >      inFile_->clear();  
278 >      inFile_->seekg(framePos_[whichFrame]);
279 >      
280 >      while (inFile_->getline(buffer, bufferSize)) {
281  
282 < #endif // is_mpi
282 >        line = buffer;
283 >        sendBuffer += line;
284 >        sendBuffer += '\n';
285 >        if (line.find("</Snapshot>") != std::string::npos) {
286 >          break;
287 >        }        
288 >      }
289  
290 <
291 < namespace oopse {
292 <
293 < DumpReader::DumpReader(SimInfo* info, const std::string& filename)
294 <                     : info_(info), filename_(filename), isScanned_(false), nframes_(0) {
295 <
296 < #ifdef IS_MPI
290 >      int sendBufferSize = sendBuffer.size();
291 >      MPI_Bcast(&sendBufferSize, 1, MPI_INT, masterNode, MPI_COMM_WORLD);    
292 >      MPI_Bcast((void *)sendBuffer.c_str(), sendBufferSize, MPI_CHAR, masterNode, MPI_COMM_WORLD);    
293 >      
294 >      sstream.str(sendBuffer);
295 >    } else {
296 >      int sendBufferSize;
297 >      MPI_Bcast(&sendBufferSize, 1, MPI_INT, masterNode, MPI_COMM_WORLD);    
298 >      char * recvBuffer = new char[sendBufferSize+1];
299 >      assert(recvBuffer);
300 >      recvBuffer[sendBufferSize] = '\0';
301 >      MPI_Bcast(recvBuffer, sendBufferSize, MPI_CHAR, masterNode, MPI_COMM_WORLD);    
302 >      sstream.str(recvBuffer);
303 >      delete [] recvBuffer;
304 >    }      
305  
306 <    if (worldRank == 0) {
306 >    std::istream& inputStream = sstream;  
307   #endif
308  
309 <        inFile_ = fopen(filename_.c_str(), "r");
309 >    inputStream.getline(buffer, bufferSize);
310  
311 <        if (inFile_ == NULL) {
312 <            sprintf(painCave.errMsg, "DumpReader: Cannot open file: %s\n", filename_.c_str());
313 <            painCave.isFatal = 1;
314 <            simError();
315 <        }
311 >    line = buffer;
312 >    if (line.find("<Snapshot>") == std::string::npos) {
313 >      sprintf(painCave.errMsg,
314 >              "DumpReader Error: can not find <Snapshot>\n");
315 >      painCave.isFatal = 1;
316 >      simError();
317 >    }
318 >    
319 >    //read frameData
320 >    readFrameProperties(inputStream);
321  
322 < #ifdef IS_MPI
322 >    //read StuntDoubles
323 >    readStuntDoubles(inputStream);    
324  
325 <    }
325 >    inputStream.getline(buffer, bufferSize);
326 >    line = buffer;
327 >    if (line.find("</Snapshot>") == std::string::npos) {
328 >      sprintf(painCave.errMsg,
329 >              "DumpReader Error: can not find </Snapshot>\n");
330 >      painCave.isFatal = 1;
331 >      simError();
332 >    }        
333 >  
334 >  }
335 >  
336 >  void DumpReader::parseDumpLine(const std::string& line) {
337  
338 <    strcpy(checkPointMsg, "Dump file opened for reading successfully.");
339 <    MPIcheckPoint();
338 >      
339 >    StringTokenizer tokenizer(line);
340 >    int nTokens;
341 >    
342 >    nTokens = tokenizer.countTokens();
343 >    
344 >    if (nTokens < 2) {  
345 >      sprintf(painCave.errMsg,
346 >              "DumpReader Error: Not enough Tokens.\n%s\n", line.c_str());
347 >      painCave.isFatal = 1;
348 >      simError();
349 >    }
350  
351 < #endif
351 >    int index = tokenizer.nextTokenAsInt();
352 >
353 >    StuntDouble* integrableObject = info_->getIOIndexToIntegrableObject(index);
354  
355 <    return;
356 < }
355 >    if (integrableObject == NULL) {
356 >      return;
357 >    }
358 >    std::string type = tokenizer.nextToken();
359 >    int size = type.size();
360  
361 < DumpReader::~DumpReader() {
361 >    size_t found;
362 >    
363 >    if (needPos_) {
364 >      found = type.find("p");      
365 >      if (found == std::string::npos) {
366 >        sprintf(painCave.errMsg,
367 >                "DumpReader Error: StuntDouble %d has no Position\n"
368 >                "\tField (\"p\") specified.\n%s\n", index,
369 >                line.c_str());  
370 >        painCave.isFatal = 1;
371 >        simError();
372 >      }
373 >    }
374 >    
375 >    if (integrableObject->isDirectional()) {
376 >      if (needQuaternion_) {
377 >        found = type.find("q");      
378 >        if (found == std::string::npos) {
379 >          sprintf(painCave.errMsg,
380 >                  "DumpReader Error: Directional StuntDouble %d has no\n"
381 >                  "\tQuaternion Field (\"q\") specified.\n%s\n", index,
382 >                  line.c_str());  
383 >          painCave.isFatal = 1;
384 >          simError();
385 >        }
386 >      }      
387 >    }
388  
389 < #ifdef IS_MPI
389 >    for(int i = 0; i < size; ++i) {
390 >      switch(type[i]) {
391 >        
392 >        case 'p': {
393 >            Vector3d pos;
394 >            pos[0] = tokenizer.nextTokenAsDouble();
395 >            pos[1] = tokenizer.nextTokenAsDouble();
396 >            pos[2] = tokenizer.nextTokenAsDouble();
397 >            if (needPos_) {
398 >              integrableObject->setPos(pos);
399 >            }            
400 >            break;
401 >        }
402 >        case 'v' : {
403 >            Vector3d vel;
404 >            vel[0] = tokenizer.nextTokenAsDouble();
405 >            vel[1] = tokenizer.nextTokenAsDouble();
406 >            vel[2] = tokenizer.nextTokenAsDouble();
407 >            if (needVel_) {
408 >              integrableObject->setVel(vel);
409 >            }
410 >            break;
411 >        }
412  
413 <    if (worldRank == 0) {
414 < #endif
413 >        case 'q' : {
414 >           Quat4d q;
415 >           if (integrableObject->isDirectional()) {
416 >              
417 >             q[0] = tokenizer.nextTokenAsDouble();
418 >             q[1] = tokenizer.nextTokenAsDouble();
419 >             q[2] = tokenizer.nextTokenAsDouble();
420 >             q[3] = tokenizer.nextTokenAsDouble();
421 >              
422 >             RealType qlen = q.length();
423 >             if (qlen < OpenMD::epsilon) { //check quaternion is not equal to 0
424 >                
425 >               sprintf(painCave.errMsg,
426 >                       "DumpReader Error: initial quaternion error (q0^2 + q1^2 + q2^2 + q3^2) ~ 0\n");
427 >               painCave.isFatal = 1;
428 >               simError();
429 >                
430 >             }  
431 >              
432 >             q.normalize();
433 >             if (needQuaternion_) {            
434 >               integrableObject->setQ(q);
435 >             }              
436 >           }            
437 >           break;
438 >        }  
439 >        case 'j' : {
440 >          Vector3d ji;
441 >          if (integrableObject->isDirectional()) {
442 >             ji[0] = tokenizer.nextTokenAsDouble();
443 >             ji[1] = tokenizer.nextTokenAsDouble();
444 >             ji[2] = tokenizer.nextTokenAsDouble();
445 >             if (needAngMom_) {
446 >               integrableObject->setJ(ji);
447 >             }
448 >          }
449 >          break;
450 >        }  
451 >        case 'f': {
452  
453 <        int error;
454 <        error = fclose(inFile_);
453 >          Vector3d force;
454 >          force[0] = tokenizer.nextTokenAsDouble();
455 >          force[1] = tokenizer.nextTokenAsDouble();
456 >          force[2] = tokenizer.nextTokenAsDouble();          
457 >          integrableObject->setFrc(force);
458 >          break;
459 >        }
460 >        case 't' : {
461  
462 <        if (error) {
463 <            sprintf(painCave.errMsg, "DumpReader Error: Error closing %s\n", filename_.c_str());
464 <            painCave.isFatal = 1;            
465 <            simError();
462 >           Vector3d torque;
463 >           torque[0] = tokenizer.nextTokenAsDouble();
464 >           torque[1] = tokenizer.nextTokenAsDouble();
465 >           torque[2] = tokenizer.nextTokenAsDouble();          
466 >           integrableObject->setTrq(torque);          
467 >           break;
468          }
469 +        case 'u' : {
470  
471 <        MemoryUtils::deleteVectorOfPointer(framePos_);
471 >           RealType particlePot;
472 >           particlePot = tokenizer.nextTokenAsDouble();
473 >           integrableObject->setParticlePot(particlePot);          
474 >           break;
475 >        }
476 >        default: {
477 >               sprintf(painCave.errMsg,
478 >                       "DumpReader Error: %s is an unrecognized type\n", type.c_str());
479 >               painCave.isFatal = 1;
480 >               simError();
481 >          break;  
482 >        }
483  
484 < #ifdef IS_MPI
119 <
484 >      }
485      }
486 +    
487 +  }
488 +  
489  
490 <    strcpy(checkPointMsg, "Dump file closed successfully.");
123 <    MPIcheckPoint();
490 >  void  DumpReader::readStuntDoubles(std::istream& inputStream) {
491  
492 < #endif
492 >    inputStream.getline(buffer, bufferSize);
493 >    std::string line(buffer);
494 >    
495 >    if (line.find("<StuntDoubles>") == std::string::npos) {
496 >      sprintf(painCave.errMsg,
497 >              "DumpReader Error: Missing <StuntDoubles>\n");
498 >      painCave.isFatal = 1;
499 >      simError();
500 >    }
501  
502 <    return;
503 < }
502 >    while(inputStream.getline(buffer, bufferSize)) {
503 >      line = buffer;
504 >      
505 >      if(line.find("</StuntDoubles>") != std::string::npos) {
506 >        break;
507 >      }
508  
509 < int DumpReader::getNFrames(void) {
509 >      parseDumpLine(line);
510 >    }
511 >  
512 >  }
513  
514 <    if (!isScanned_)
133 <        scanFile();
514 >  void DumpReader::readFrameProperties(std::istream& inputStream) {
515  
516 <    return nframes_;
517 < }
516 >    Snapshot* s = info_->getSnapshotManager()->getCurrentSnapshot();
517 >    inputStream.getline(buffer, bufferSize);
518 >    std::string line(buffer);
519  
520 < void DumpReader::scanFile(void) {
521 <  int i, j;
522 <  int lineNum = 0;
523 <  char readBuffer[maxBufferSize];
524 <  fpos_t * currPos;
520 >    if (line.find("<FrameData>") == std::string::npos) {
521 >      sprintf(painCave.errMsg,
522 >              "DumpReader Error: Missing <FrameData>\n");
523 >      painCave.isFatal = 1;
524 >      simError();
525 >    }
526  
527 < #ifdef IS_MPI
528 <
529 <    if (worldRank == 0) {
530 < #endif // is_mpi
531 <
532 <        rewind(inFile_);
527 >    while(inputStream.getline(buffer, bufferSize)) {
528 >      line = buffer;
529 >      
530 >      if(line.find("</FrameData>") != std::string::npos) {
531 >        break;
532 >      }
533 >      
534 >      StringTokenizer tokenizer(line, " ;\t\n\r{}:,");
535 >      if (!tokenizer.hasMoreTokens()) {
536 >        sprintf(painCave.errMsg,
537 >                "DumpReader Error: Not enough Tokens.\n%s\n", line.c_str());
538 >        painCave.isFatal = 1;
539 >        simError();      
540 >      }
541  
542 <        currPos = new fpos_t;
543 <        fgetpos(inFile_, currPos);
544 <        fgets(readBuffer, sizeof(readBuffer), inFile_);
545 <        lineNum++;
546 <
547 <        if (feof(inFile_)) {
548 <            sprintf(painCave.errMsg,
549 <                    "DumpReader Error: File \"%s\" ended unexpectedly at line %d\n",
550 <                    filename_.c_str(),
551 <                    lineNum);
552 <            painCave.isFatal = 1;
553 <            simError();
554 <        }
555 <
556 <        while (!feof(inFile_)) {
557 <            framePos_.push_back(currPos);
558 <
559 <            i = atoi(readBuffer);
560 <
561 <            fgets(readBuffer, sizeof(readBuffer), inFile_);
562 <            lineNum++;
563 <
564 <            if (feof(inFile_)) {
565 <                sprintf(painCave.errMsg,
566 <                        "DumpReader Error: File \"%s\" ended unexpectedly at line %d\n",
567 <                        filename_.c_str(),
568 <                        lineNum);
569 <                painCave.isFatal = 1;
570 <                simError();
571 <            }
572 <
573 <            for(j = 0; j < i; j++) {
574 <                fgets(readBuffer, sizeof(readBuffer), inFile_);
575 <                lineNum++;
576 <
577 <                if (feof(inFile_)) {
578 <                    sprintf(painCave.errMsg,
579 <                            "DumpReader Error: File \"%s\" ended unexpectedly at line %d,"
580 <                                " with atom %d\n", filename_.c_str(),
581 <                            lineNum,
191 <                            j);
192 <
193 <                    painCave.isFatal = 1;
194 <                    simError();
195 <                }
196 <            }
197 <
198 <            currPos = new fpos_t;
199 <            fgetpos(inFile_, currPos);
200 <            fgets(readBuffer, sizeof(readBuffer), inFile_);
201 <            lineNum++;
202 <        }
203 <
204 <        delete currPos;
205 <        rewind(inFile_);
206 <        
207 <        nframes_ = framePos_.size();
208 < #ifdef IS_MPI
542 >      std::string propertyName = tokenizer.nextToken();
543 >      if (propertyName == "Time") {
544 >        RealType currTime = tokenizer.nextTokenAsDouble();
545 >        s->setTime(currTime);
546 >      } else if (propertyName == "Hmat"){
547 >        Mat3x3d hmat;
548 >        hmat(0, 0) = tokenizer.nextTokenAsDouble();
549 >        hmat(0, 1) = tokenizer.nextTokenAsDouble();
550 >        hmat(0, 2) = tokenizer.nextTokenAsDouble();
551 >        hmat(1, 0) = tokenizer.nextTokenAsDouble();
552 >        hmat(1, 1) = tokenizer.nextTokenAsDouble();
553 >        hmat(1, 2) = tokenizer.nextTokenAsDouble();
554 >        hmat(2, 0) = tokenizer.nextTokenAsDouble();
555 >        hmat(2, 1) = tokenizer.nextTokenAsDouble();
556 >        hmat(2, 2) = tokenizer.nextTokenAsDouble();
557 >        s->setHmat(hmat);      
558 >      } else if (propertyName == "Thermostat") {
559 >        RealType chi = tokenizer.nextTokenAsDouble();
560 >        RealType integralOfChiDt = tokenizer.nextTokenAsDouble();
561 >        s->setChi(chi);
562 >        s->setIntegralOfChiDt(integralOfChiDt);        
563 >     } else if (propertyName == "Barostat") {
564 >        Mat3x3d eta;
565 >        eta(0, 0) = tokenizer.nextTokenAsDouble();
566 >        eta(0, 1) = tokenizer.nextTokenAsDouble();
567 >        eta(0, 2) = tokenizer.nextTokenAsDouble();
568 >        eta(1, 0) = tokenizer.nextTokenAsDouble();
569 >        eta(1, 1) = tokenizer.nextTokenAsDouble();
570 >        eta(1, 2) = tokenizer.nextTokenAsDouble();
571 >        eta(2, 0) = tokenizer.nextTokenAsDouble();
572 >        eta(2, 1) = tokenizer.nextTokenAsDouble();
573 >        eta(2, 2) = tokenizer.nextTokenAsDouble();
574 >        s->setEta(eta);
575 >      } else {
576 >        sprintf(painCave.errMsg,
577 >                "DumpReader Error: %s is an invalid property in <FrameData>\n", propertyName.c_str());
578 >        painCave.isFatal = 0;
579 >        simError();        
580 >      }
581 >      
582      }
583  
584 <    MPI_Bcast(&nframes_, 1, MPI_INT, 0, MPI_COMM_WORLD);
212 <
213 <    strcpy(checkPointMsg, "Successfully scanned DumpFile\n");
214 <    MPIcheckPoint();
215 <
216 < #endif // is_mpi
217 <
218 <    isScanned_ = true;
219 < }
220 <
221 < void DumpReader::readFrame(int whichFrame) {
222 <    int storageLayout = info_->getSnapshotManager()->getStorageLayout();
223 <
224 <    if (storageLayout & DataStorage::dslPosition) {
225 <        needPos_ = true;
226 <    } else {
227 <        needPos_ = false;
228 <    }
229 <
230 <    if (storageLayout & DataStorage::dslVelocity) {
231 <        needVel_ = true;
232 <    } else {
233 <        needVel_ = false;
234 <    }
235 <
236 <    if (storageLayout & DataStorage::dslAmat || storageLayout & DataStorage::dslElectroFrame) {
237 <        needQuaternion_ = true;
238 <    } else {
239 <        needQuaternion_ = false;
240 <    }
241 <
242 <    if (storageLayout & DataStorage::dslAngularMomentum) {
243 <        needAngMom_ = true;
244 <    } else {
245 <        needAngMom_ = false;    
246 <    }
247 <
248 <    readSet(whichFrame);
249 < }
250 <
251 < void DumpReader::readSet(int whichFrame) {
252 <  int i;
253 <  int nTotObjs;                  // the number of atoms
254 <  char read_buffer[maxBufferSize];  //the line buffer for reading
255 <  char * eof_test;               // ptr to see when we reach the end of the file
256 <
257 <  Molecule* mol;
258 <  StuntDouble* integrableObject;
259 <  SimInfo::MoleculeIterator mi;
260 <  Molecule::IntegrableObjectIterator ii;
261 <
262 < #ifndef IS_MPI
263 <
264 <    fsetpos(inFile_, framePos_[whichFrame]);
265 <    eof_test = fgets(read_buffer, sizeof(read_buffer), inFile_);
266 <
267 <    if (eof_test == NULL) {
268 <        sprintf(painCave.errMsg,
269 <                "DumpReader error: error reading 1st line of \"%s\"\n",
270 <                filename_.c_str());
271 <        painCave.isFatal = 1;
272 <        simError();
273 <    }
274 <
275 <    nTotObjs = atoi(read_buffer);
276 <
277 <    if (nTotObjs != info_->getNGlobalIntegrableObjects()) {
278 <        sprintf(painCave.errMsg,
279 <                "DumpReader error. %s nIntegrable, %d, "
280 <                    "does not match the meta-data file's nIntegrable, %d.\n",
281 <                filename_.c_str(),
282 <                nTotObjs,
283 <                info_->getNGlobalIntegrableObjects());
284 <
285 <        painCave.isFatal = 1;
286 <        simError();
287 <    }
288 <
289 <    //read the box mat from the comment line
290 <
291 <    eof_test = fgets(read_buffer, sizeof(read_buffer), inFile_);
292 <
293 <    if (eof_test == NULL) {
294 <        sprintf(painCave.errMsg, "DumpReader Error: error in reading commment in %s\n",
295 <                filename_.c_str());
296 <        painCave.isFatal = 1;
297 <        simError();
298 <    }
299 <
300 <    parseCommentLine(read_buffer, info_->getSnapshotManager()->getCurrentSnapshot());
301 <
302 <    //parse dump lines
303 <
304 <    for (mol = info_->beginMolecule(mi); mol != NULL; mol = info_->nextMolecule(mi)) {
305 <
306 <        for (integrableObject = mol->beginIntegrableObject(ii); integrableObject != NULL;
307 <            integrableObject = mol->nextIntegrableObject(ii)) {          
308 <
309 <            eof_test = fgets(read_buffer, sizeof(read_buffer), inFile_);
310 <
311 <            if (eof_test == NULL) {
312 <                sprintf(painCave.errMsg,
313 <                        "DumpReader Error: error in reading file %s\n"
314 <                            "natoms  = %d; index = %d\n"
315 <                            "error reading the line from the file.\n",
316 <                        filename_.c_str(),
317 <                        nTotObjs,
318 <                        i);
319 <
320 <                painCave.isFatal = 1;
321 <                simError();
322 <            }
323 <
324 <            parseDumpLine(read_buffer, integrableObject);
325 <            
326 <            }
327 <    }
328 <
329 <    // MPI Section of code..........
330 <
331 < #else //IS_MPI
332 <
333 <    // first thing first, suspend fatalities.
334 <    int masterNode = 0;
335 <    int nCurObj;
336 <    painCave.isEventLoop = 1;
337 <
338 <    int myStatus; // 1 = wakeup & success; 0 = error; -1 = AllDone
339 <    int haveError;
340 <
341 <    MPI_Status istatus;
342 <    int nitems;
343 <
344 <    nTotObjs = info_->getNGlobalIntegrableObjects();
345 <    haveError = 0;
346 <
347 <    if (worldRank == masterNode) {
348 <        fsetpos(inFile_, framePos_[whichFrame]);
349 <
350 <        eof_test = fgets(read_buffer, sizeof(read_buffer), inFile_);
351 <
352 <        if (eof_test == NULL) {
353 <            sprintf(painCave.errMsg, "DumpReader Error: Error reading 1st line of %s \n ",
354 <                    filename_.c_str());
355 <            painCave.isFatal = 1;
356 <            simError();
357 <        }
358 <
359 <        nitems = atoi(read_buffer);
360 <
361 <        // Check to see that the number of integrable objects in the
362 <        // intial configuration file is the same as derived from the
363 <        // meta-data file.
364 <
365 <        if (nTotObjs != nitems) {
366 <            sprintf(painCave.errMsg,
367 <                    "DumpReader Error. %s nIntegrable, %d, "
368 <                        "does not match the meta-data file's nIntegrable, %d.\n",
369 <                    filename_.c_str(),
370 <                    nTotObjs,
371 <                    info_->getNGlobalIntegrableObjects());
584 >  }
585  
586 <            painCave.isFatal = 1;
587 <            simError();
375 <        }
376 <
377 <        //read the boxMat from the comment line
378 <
379 <        eof_test = fgets(read_buffer, sizeof(read_buffer), inFile_);
380 <
381 <        if (eof_test == NULL) {
382 <            sprintf(painCave.errMsg, "DumpReader Error: error in reading commment in %s\n",
383 <                    filename_.c_str());
384 <            painCave.isFatal = 1;
385 <            simError();
386 <        }
387 <
388 <        //Every single processor will parse the comment line by itself
389 <        //By using this way, we might lose some efficiency, but if we want to add
390 <        //more parameters into comment line, we only need to modify function
391 <        //parseCommentLine
392 <
393 <        MPI_Bcast(read_buffer, maxBufferSize, MPI_CHAR, masterNode, MPI_COMM_WORLD);
394 <        parseCommentLine(read_buffer, info_->getSnapshotManager()->getCurrentSnapshot());
395 <
396 <        for(i = 0; i < info_->getNGlobalMolecules(); i++) {
397 <            int which_node = info_->getMolToProc(i);
398 <
399 <            if (which_node == masterNode) {
400 <                //molecules belong to master node
401 <
402 <                mol = info_->getMoleculeByGlobalIndex(i);
403 <
404 <                if (mol == NULL) {
405 <                    sprintf(painCave.errMsg, "DumpReader Error: Molecule not found on node %d!", worldRank);
406 <                        painCave.isFatal = 1;
407 <                    simError();
408 <                }
409 <
410 <                for (integrableObject = mol->beginIntegrableObject(ii); integrableObject != NULL;
411 <                       integrableObject = mol->nextIntegrableObject(ii)){
412 <                        
413 <                    eof_test = fgets(read_buffer, sizeof(read_buffer), inFile_);
414 <
415 <                    if (eof_test == NULL) {
416 <                        sprintf(painCave.errMsg,
417 <                                "DumpReader Error: error in reading file %s\n"
418 <                                    "natoms  = %d; index = %d\n"
419 <                                    "error reading the line from the file.\n",
420 <                                filename_.c_str(),
421 <                                nTotObjs,
422 <                                i);
423 <
424 <                        painCave.isFatal = 1;
425 <                        simError();
426 <                    }
427 <
428 <                    parseDumpLine(read_buffer, integrableObject);
429 <                }
430 <            } else {
431 <                //molecule belongs to slave nodes
432 <
433 <                MPI_Recv(&nCurObj, 1, MPI_INT, which_node, TAKE_THIS_TAG_INT,
434 <                         MPI_COMM_WORLD, &istatus);
435 <
436 <                for(int j = 0; j < nCurObj; j++) {
437 <                    eof_test = fgets(read_buffer, sizeof(read_buffer), inFile_);
438 <
439 <                    if (eof_test == NULL) {
440 <                        sprintf(painCave.errMsg,
441 <                                "DumpReader Error: error in reading file %s\n"
442 <                                    "natoms  = %d; index = %d\n"
443 <                                    "error reading the line from the file.\n",
444 <                                filename_.c_str(),
445 <                                nTotObjs,
446 <                                i);
447 <
448 <                        painCave.isFatal = 1;
449 <                        simError();
450 <                    }
451 <                    
452 <                    MPI_Send(read_buffer, maxBufferSize, MPI_CHAR, which_node,
453 <                             TAKE_THIS_TAG_CHAR, MPI_COMM_WORLD);
454 <                }
455 <            }
456 <        }
457 <    } else {
458 <        //actions taken at slave nodes
459 <        MPI_Bcast(read_buffer, maxBufferSize, MPI_CHAR, masterNode, MPI_COMM_WORLD);
460 <
461 <        /**@todo*/
462 <        parseCommentLine(read_buffer, info_->getSnapshotManager()->getCurrentSnapshot());
463 <
464 <        for(i = 0; i < info_->getNGlobalMolecules(); i++) {
465 <            int which_node = info_->getMolToProc(i);
466 <
467 <            if (which_node == worldRank) {
468 <                //molecule with global index i belongs to this processor
469 <                
470 <                mol = info_->getMoleculeByGlobalIndex(i);
471 <                if (mol == NULL) {
472 <                    sprintf(painCave.errMsg, "DumpReader Error: Molecule not found on node %d!", worldRank);
473 <                    painCave.isFatal = 1;
474 <                    simError();
475 <                }
476 <                
477 <                nCurObj = mol->getNIntegrableObjects();
478 <
479 <                MPI_Send(&nCurObj, 1, MPI_INT, masterNode, TAKE_THIS_TAG_INT,
480 <                         MPI_COMM_WORLD);
481 <
482 <                for (integrableObject = mol->beginIntegrableObject(ii); integrableObject != NULL;
483 <                       integrableObject = mol->nextIntegrableObject(ii)){
484 <                        
485 <                    MPI_Recv(read_buffer, maxBufferSize, MPI_CHAR, masterNode,
486 <                             TAKE_THIS_TAG_CHAR, MPI_COMM_WORLD, &istatus);
487 <
488 <                    parseDumpLine(read_buffer, integrableObject);
489 <                }
490 <                      
491 <            }
492 <            
493 <        }
494 <        
495 <    }
496 <
497 < #endif
498 <
499 < }
500 <
501 < void DumpReader::parseDumpLine(char *line, StuntDouble *integrableObject) {
502 <
503 <    Vector3d pos;  // position place holders
504 <    Vector3d vel;  // velocity placeholders
505 <    Quat4d q;    // the quaternions
506 <    Vector3d ji;   // angular velocity placeholders;
507 <    StringTokenizer tokenizer(line);
508 <    int nTokens;
509 <    
510 <    nTokens = tokenizer.countTokens();
511 <
512 <    if (nTokens < 14) {
513 <            sprintf(painCave.errMsg,
514 <                    "DumpReader Error: Not enough Tokens.\n%s\n", line);
515 <            painCave.isFatal = 1;
516 <            simError();
517 <    }
518 <
519 <    std::string name = tokenizer.nextToken();
520 <
521 <    if (name != integrableObject->getType()) {
522 <
523 <            sprintf(painCave.errMsg,
524 <                    "DumpReader Error: Atom type [%s] in %s does not match Atom Type [%s] in .md file.\n",
525 <                    name.c_str(), filename_.c_str(), integrableObject->getType().c_str());
526 <            painCave.isFatal = 1;
527 <            simError();        
528 <    }
529 <
530 <    pos[0] = tokenizer.nextTokenAsDouble();
531 <    pos[1] = tokenizer.nextTokenAsDouble();
532 <    pos[2] = tokenizer.nextTokenAsDouble();
533 <    if (needPos_) {
534 <        integrableObject->setPos(pos);
535 <    }
536 <    
537 <    vel[0] = tokenizer.nextTokenAsDouble();
538 <    vel[1] = tokenizer.nextTokenAsDouble();
539 <    vel[2] = tokenizer.nextTokenAsDouble();
540 <    if (needVel_) {
541 <        integrableObject->setVel(vel);
542 <    }
543 <    
544 <    if (integrableObject->isDirectional()) {
545 <        
546 <        q[0] = tokenizer.nextTokenAsDouble();
547 <        q[1] = tokenizer.nextTokenAsDouble();
548 <        q[2] = tokenizer.nextTokenAsDouble();
549 <        q[3] = tokenizer.nextTokenAsDouble();
550 <
551 <        double qlen = q.length();
552 <        if (qlen < oopse::epsilon) { //check quaternion is not equal to 0
553 <            
554 <            sprintf(painCave.errMsg,
555 <                    "DumpReader Error: initial quaternion error (q0^2 + q1^2 + q2^2 + q3^2 ~ 0).\n");
556 <            painCave.isFatal = 1;
557 <            simError();
558 <            
559 <        }
560 <
561 <        q.normalize();
562 <        if (needQuaternion_) {          
563 <            integrableObject->setQ(q);
564 <        }
565 <
566 <        ji[0] = tokenizer.nextTokenAsDouble();
567 <        ji[1] = tokenizer.nextTokenAsDouble();
568 <        ji[2] = tokenizer.nextTokenAsDouble();
569 <        if (needAngMom_) {
570 <            integrableObject->setJ(ji);
571 <        }
572 <    }
573 <
574 < }
575 <
576 <
577 < void DumpReader::parseCommentLine(char* line, Snapshot* s) {
578 <    double currTime;
579 <    Mat3x3d hmat;
580 <    double chi;
581 <    double integralOfChiDt;
582 <    Mat3x3d eta;
583 <
584 <    StringTokenizer tokenizer(line);
585 <    int nTokens;
586 <
587 <    nTokens = tokenizer.countTokens();
588 <
589 <    //comment line should at least contain 10 tokens: current time(1 token) and  h-matrix(9 tokens)
590 <    if (nTokens < 10) {
591 <            sprintf(painCave.errMsg,
592 <                    "DumpReader Error: Not enough tokens in comment line: %s", line);
593 <            painCave.isFatal = 1;
594 <            simError();  
595 <    }
596 <
597 <    //read current time
598 <    currTime = tokenizer.nextTokenAsDouble();
599 <    s->setTime(currTime);
600 <    
601 <    //read h-matrix
602 <    hmat(0, 0) = tokenizer.nextTokenAsDouble();
603 <    hmat(0, 1) = tokenizer.nextTokenAsDouble();
604 <    hmat(0, 2) = tokenizer.nextTokenAsDouble();
605 <    hmat(1, 0) = tokenizer.nextTokenAsDouble();
606 <    hmat(1, 1) = tokenizer.nextTokenAsDouble();
607 <    hmat(1, 2) = tokenizer.nextTokenAsDouble();
608 <    hmat(2, 0) = tokenizer.nextTokenAsDouble();
609 <    hmat(2, 1) = tokenizer.nextTokenAsDouble();
610 <    hmat(2, 2) = tokenizer.nextTokenAsDouble();
611 <    s->setHmat(hmat);
612 <    
613 <    //read chi and integralOfChidt, they should apprear in pair
614 <    if (tokenizer.countTokens() >= 2) {
615 <        chi = tokenizer.nextTokenAsDouble();
616 <        integralOfChiDt = tokenizer.nextTokenAsDouble();            
617 <
618 <        s->setChi(chi);
619 <        s->setIntegralOfChiDt(integralOfChiDt);
620 <    }
621 <    
622 <    //read eta (eta is 3x3 matrix)
623 <    if (tokenizer.countTokens() >= 9) {
624 <        eta(0, 0) = tokenizer.nextTokenAsDouble();
625 <        eta(0, 1) = tokenizer.nextTokenAsDouble();
626 <        eta(0, 2) = tokenizer.nextTokenAsDouble();
627 <        eta(1, 0) = tokenizer.nextTokenAsDouble();
628 <        eta(1, 1) = tokenizer.nextTokenAsDouble();
629 <        eta(1, 2) = tokenizer.nextTokenAsDouble();
630 <        eta(2, 0) = tokenizer.nextTokenAsDouble();
631 <        eta(2, 1) = tokenizer.nextTokenAsDouble();
632 <        eta(2, 2) = tokenizer.nextTokenAsDouble();      
633 <
634 <        s->setEta(eta);
635 <    }
636 <
637 <    
638 < }
639 <
640 < }//end namespace oopse
586 >  
587 > }//end namespace OpenMD

Comparing:
trunk/src/io/DumpReader.cpp (property svn:keywords), Revision 381 by tim, Tue Mar 1 14:45:45 2005 UTC vs.
branches/development/src/io/DumpReader.cpp (property svn:keywords), Revision 1629 by gezelter, Wed Sep 14 21:15:17 2011 UTC

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