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root/OpenMD/branches/development/src/io/Globals.cpp
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trunk/src/io/Globals.cpp (file contents), Revision 726 by chrisfen, Fri Nov 11 15:22:11 2005 UTC vs.
branches/development/src/io/Globals.cpp (file contents), Revision 1729 by jmarr, Wed May 30 16:08:07 2012 UTC

# Line 1 | Line 1
1   /*
2 < * Copyright (c) 2005 The University of Notre Dame. All Rights Reserved.
2 > * Copyright (c) 2005, 2010 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]  Kuang & Gezelter,  J. Chem. Phys. 133, 164101 (2010).
40 + * [5]  Vardeman, Stocker & Gezelter, J. Chem. Theory Comput. 7, 834 (2011).
41   */
42  
43   #include <stdlib.h>
# Line 45 | Line 46
46   #include <string>
47  
48   #include "io/Globals.hpp"
49 + #include "io/ParamConstraint.hpp"
50 + #include "utils/MemoryUtils.hpp"
51   #include "utils/simError.h"
49 #ifdef IS_MPI
50 #include "io/mpiBASS.h"
51 #endif // is_mpi
52  
53 < #include "io/ParamConstraint.hpp"
54 <
55 < #define DefineParameter(NAME,KEYWORD)                              \
56 <  NAME.setKeyword(KEYWORD);                  \
57 <  parameters_.insert(std::make_pair(std::string(KEYWORD),  &NAME));
58 <
59 < #define DefineOptionalParameter(NAME,KEYWORD)                              \
60 <  NAME.setKeyword(KEYWORD); NAME.setOptional(true);                    \
61 <  parameters_.insert(std::make_pair(std::string(KEYWORD),  &NAME));
62 <
63 < #define DefineOptionalParameterWithDefaultValue(NAME,KEYWORD, DEFAULTVALUE)                              \
64 <  NAME.setKeyword(KEYWORD); NAME.setOptional(true); NAME.setDefaultValue(DEFAULTVALUE);                      \
65 <  parameters_.insert(std::make_pair(std::string(KEYWORD),  &NAME));
66 <
67 < #define CheckParameter(NAME, CONSTRAINT)                              \
68 <  if (!NAME.empty()) { if (!(CONSTRAINT)(NAME.getData())) { sprintf(painCave.errMsg,"Error in checking %s : should be %s\n",NAME.getKeyword().c_str(),(CONSTRAINT).getConstraintDescription().c_str()); painCave.isFatal = 1; painCave.severity = OOPSE_ERROR; simError();} }                
69 <
70 < Globals::Globals(){
71 <
53 > namespace OpenMD {
54 > Globals::Globals() {
55    DefineParameter(ForceField, "forceField")
73  DefineParameter(NComponents, "nComponents")
56  
57    DefineOptionalParameter(TargetTemp, "targetTemp");
58    DefineOptionalParameter(Ensemble, "ensemble");
59    DefineOptionalParameter(Dt, "dt");
60    DefineOptionalParameter(RunTime, "runTime");
79  DefineOptionalParameter(InitialConfig, "initialConfig");
61    DefineOptionalParameter(FinalConfig, "finalConfig");
81  DefineOptionalParameter(NMol, "nMol");
82  DefineOptionalParameter(Density, "density");
83  DefineOptionalParameter(Box, "box");
84  DefineOptionalParameter(BoxX, "boxX");
85  DefineOptionalParameter(BoxY, "boxY");
86  DefineOptionalParameter(BoxZ, "boxZ");
62    DefineOptionalParameter(SampleTime, "sampleTime");
63    DefineOptionalParameter(ResetTime, "resetTime");
64    DefineOptionalParameter(StatusTime, "statusTime");
65    DefineOptionalParameter(CutoffRadius, "cutoffRadius");
66    DefineOptionalParameter(SwitchingRadius, "switchingRadius");
92  DefineOptionalParameter(Dielectric, "dielectric");
67    DefineOptionalParameter(TempSet, "tempSet");
68    DefineOptionalParameter(ThermalTime, "thermalTime");
69 <  DefineOptionalParameter(TargetPressure, "targetPressure");
69 >  DefineOptionalParameter(TargetPressure, "targetPressure");  
70    DefineOptionalParameter(TauThermostat, "tauThermostat");
71    DefineOptionalParameter(TauBarostat, "tauBarostat");
72    DefineOptionalParameter(ZconsTime, "zconsTime");
99  DefineOptionalParameter(NZconstraints, "nZconstraints");  
73    DefineOptionalParameter(ZconsTol, "zconsTol");
74    DefineOptionalParameter(ZconsForcePolicy, "zconsForcePolicy");
75    DefineOptionalParameter(Seed, "seed");
76    DefineOptionalParameter(Minimizer, "minimizer");
77    DefineOptionalParameter(MinimizerMaxIter,"minimizerMaxIter");
78 <  DefineOptionalParameter(MinimizerWriteFrq, "minimizerWriteFrq");
78 >  DefineOptionalParameter(MinimizerWriteFreq, "minimizerWriteFreq");
79    DefineOptionalParameter(MinimizerStepSize, "minimizerStepSize");
80    DefineOptionalParameter(MinimizerFTol, "minimizerFTol");
81    DefineOptionalParameter(MinimizerGTol, "minimizerGTol");
# Line 115 | Line 88 | Globals::Globals(){
88    DefineOptionalParameter(ThermodynamicIntegrationK, "thermodynamicIntegrationK");
89    DefineOptionalParameter(ForceFieldVariant, "forceFieldVariant");
90    DefineOptionalParameter(ForceFieldFileName, "forceFieldFileName");
91 <  DefineOptionalParameter(ThermIntDistSpringConst, "thermIntDistSpringConst");
119 <  DefineOptionalParameter(ThermIntThetaSpringConst, "thermIntThetaSpringConst");
120 <  DefineOptionalParameter(ThermIntOmegaSpringConst, "thermIntOmegaSpringConst");
91 >  DefineOptionalParameter(DampingAlpha, "dampingAlpha");
92    DefineOptionalParameter(SurfaceTension, "surfaceTension");
93    DefineOptionalParameter(PrintPressureTensor, "printPressureTensor");
94 <  DefineOptionalParameter(ElectrostaticSummationMethod, "electrostaticSummationMethod");
95 <  DefineOptionalParameter(ElectrostaticScreeningMethod, "electrostaticScreeningMethod");
96 <  DefineOptionalParameter(CutoffPolicy, "cutoffPolicy");
94 >  DefineOptionalParameter(PrintHeatFlux, "printHeatFlux");
95 >  DefineOptionalParameter(TaggedAtomPair, "taggedAtomPair");
96 >  DefineOptionalParameter(PrintTaggedPairDistance, "printTaggedPairDistance");
97    DefineOptionalParameter(SwitchingFunctionType, "switchingFunctionType");
98 <  DefineOptionalParameterWithDefaultValue(MixingRule, "mixingRule", "standard");
98 >  DefineOptionalParameter(HydroPropFile, "HydroPropFile");
99 >  DefineOptionalParameter(Viscosity, "viscosity");
100 >  DefineOptionalParameter(BeadSize, "beadSize");
101 >  DefineOptionalParameter(FrozenBufferRadius, "frozenBufferRadius");
102 >  DefineOptionalParameter(LangevinBufferRadius, "langevinBufferRadius");
103 >  DefineOptionalParameter(NeighborListNeighbors,"NeighborListNeighbors");
104 >  DefineOptionalParameter(UseMultipleTemperatureMethod, "useMultipleTemperatureMethod");
105 >  DefineOptionalParameter(ElectrostaticSummationMethod, "electrostaticSummationMethod");
106 >  DefineOptionalParameter(MTM_Ce, "MTM_Ce");
107 >  DefineOptionalParameter(MTM_G, "MTM_G");
108 >  DefineOptionalParameter(MTM_Io, "MTM_Io");
109 >  DefineOptionalParameter(MTM_Sigma, "MTM_Sigma");
110 >  DefineOptionalParameter(MTM_R, "MTM_R");
111 >  DefineOptionalParameter(Alpha, "alpha");
112 >
113 >  
114    DefineOptionalParameterWithDefaultValue(UsePeriodicBoundaryConditions, "usePeriodicBoundaryConditions", true);
115 +  DefineOptionalParameterWithDefaultValue(UseAtomicVirial, "useAtomicVirial", true);
116    DefineOptionalParameterWithDefaultValue(UseInitalTime, "useInitialTime", false);
117    DefineOptionalParameterWithDefaultValue(UseIntialExtendedSystemState, "useInitialExtendedSystemState", false);
118    DefineOptionalParameterWithDefaultValue(OrthoBoxTolerance, "orthoBoxTolerance", 1E-6);  
119 <  DefineOptionalParameterWithDefaultValue(UseSolidThermInt, "useSolidThermInt", false);
120 <  DefineOptionalParameterWithDefaultValue(UseLiquidThermInt, "useLiquidThermInt", false);
121 <  DefineOptionalParameterWithDefaultValue(ThermIntDistSpringConst, "thermIntDistSpringConst", 6.0);
122 <  DefineOptionalParameterWithDefaultValue(ThermIntThetaSpringConst, "thermIntThetaSpringConst", 7.5);
123 <  DefineOptionalParameterWithDefaultValue(ThermIntOmegaSpringConst, "thermIntOmegaSpringConst", 13.5);
124 <  DefineOptionalParameterWithDefaultValue(DampingAlpha, "dampingAlpha", 0.2);
125 <  DefineOptionalParameterWithDefaultValue(CompressDumpFile, "compressDumpFile", 0);
126 <  DefineOptionalParameterWithDefaultValue(OutputForceVector, "outputForceVector", 0);
119 >  DefineOptionalParameterWithDefaultValue(CutoffMethod, "cutoffMethod", "SHIFTED_FORCE");
120 >  DefineOptionalParameterWithDefaultValue(ElectrostaticScreeningMethod, "electrostaticScreeningMethod", "DAMPED");
121 >  DefineOptionalParameterWithDefaultValue(Dielectric, "dielectric", 80.0);
122 >  DefineOptionalParameterWithDefaultValue(CompressDumpFile, "compressDumpFile", false);
123 >  DefineOptionalParameterWithDefaultValue(OutputForceVector, "outputForceVector", false);
124 >  DefineOptionalParameterWithDefaultValue(OutputParticlePotential, "outputParticlePotential", false);
125 >  DefineOptionalParameterWithDefaultValue(OutputElectricField, "outputElectricField", false);
126 >  DefineOptionalParameterWithDefaultValue(OutputFluctuatingCharges, "outputFluctuatingCharges", false);
127    DefineOptionalParameterWithDefaultValue(SkinThickness, "skinThickness", 1.0);
128    DefineOptionalParameterWithDefaultValue(StatFileFormat, "statFileFormat", "TIME|TOTAL_ENERGY|POTENTIAL_ENERGY|KINETIC_ENERGY|TEMPERATURE|PRESSURE|VOLUME|CONSERVED_QUANTITY");    
129 +  DefineOptionalParameterWithDefaultValue(UseSphericalBoundaryConditions, "useSphericalBoundaryConditions", false);
130 +  DefineOptionalParameterWithDefaultValue(AccumulateBoxDipole, "accumulateBoxDipole", false);
131  
132 <  
133 < }
132 >  DefineOptionalParameterWithDefaultValue(UseRNEMD, "useRNEMD", false);
133 >  DefineOptionalParameterWithDefaultValue(RNEMD_exchangeTime, "RNEMD_exchangeTime", 100.0);
134 >  DefineOptionalParameterWithDefaultValue(RNEMD_nBins, "RNEMD_nBins", 16);
135 >  DefineOptionalParameterWithDefaultValue(RNEMD_logWidth, "RNEMD_logWidth", 16);
136 >  DefineOptionalParameterWithDefaultValue(RNEMD_exchangeType, "RNEMD_exchangeType", "KineticScale");
137 >  DefineOptionalParameterWithDefaultValue(RNEMD_targetFlux, "RNEMD_targetFlux", 0.0);
138 >  DefineOptionalParameterWithDefaultValue(RNEMD_targetJzKE, "RNEMD_targetJzKE", 0.0);
139 >  DefineOptionalParameterWithDefaultValue(RNEMD_targetJzpx, "RNEMD_targetJzpx", 0.0);
140 >  DefineOptionalParameterWithDefaultValue(RNEMD_targetJzpy, "RNEMD_targetJzpy", 0.0);
141 >  DefineOptionalParameterWithDefaultValue(RNEMD_targetJzpz, "RNEMD_targetJzpz", 0.0);
142 >  DefineOptionalParameterWithDefaultValue(RNEMD_objectSelection, "RNEMD_objectSelection", "select all");
143 >  DefineOptionalParameterWithDefaultValue(RNEMD_binShift, "RNEMD_binShift", false);
144 >  DefineOptionalParameterWithDefaultValue(RNEMD_outputTemperature, "RNEMD_outputTemperature", false);
145 >  DefineOptionalParameterWithDefaultValue(RNEMD_outputVx, "RNEMD_outputVx", false);
146 >  DefineOptionalParameterWithDefaultValue(RNEMD_outputVy, "RNEMD_outputVy", false);
147 >  // James put this in.
148 >  DefineOptionalParameterWithDefaultValue(RNEMD_outputDen, "RNEMD_outputDen", false);
149 >  DefineOptionalParameterWithDefaultValue(RNEMD_outputAh, "RNEMD_outputAh", false);
150 >  DefineOptionalParameterWithDefaultValue(RNEMD_outputVz, "RNEMD_outputVz", false);  
151 >  DefineOptionalParameterWithDefaultValue(RNEMD_outputXyzTemperature, "RNEMD_outputXyzTemperature", false);
152 >  DefineOptionalParameterWithDefaultValue(RNEMD_outputRotTemperature, "RNEMD_outputRotTemperature", false);
153  
154 < int Globals::globalAssign( event* the_event ){
155 <  char errorMessage[65535];
156 <  int key;
157 <  interface_assign_type the_type =  the_event->evt.asmt.asmt_type;
158 <  char* lhs = the_event->evt.asmt.lhs;
159 <  std::string keyword(lhs);
154 >  DefineOptionalParameterWithDefaultValue(UseRestraints, "useRestraints", false);
155 >  DefineOptionalParameterWithDefaultValue(Restraint_file, "Restraint_file", "idealCrystal.in");
156 >  DefineOptionalParameterWithDefaultValue(UseThermodynamicIntegration, "useThermodynamicIntegration", false);
157 >  DefineOptionalParameterWithDefaultValue(HULL_Method,"HULL_Method","Convex");
158 >  DefineOptionalParameterWithDefaultValue(FlucQPropagator, "flucQ.propagator", "NVT");
159 >  DefineOptionalParameterWithDefaultValue(FlucQFriction, "flucQ.friction", 1600.0);    
160 >  DefineOptionalParameterWithDefaultValue(FlucQTolerance, "flucQ.tolerance", 1.0e-6);    
161 >  DefineOptionalParameterWithDefaultValue(FlucQMaxIterations, "flucQ.maxIterations", 100);    
162 >  DefineOptionalParameterWithDefaultValue(FlucQTargetTemp, "flucQ.targetTemp", 1.0e-6);
163 >  DefineOptionalParameterWithDefaultValue(FlucQtauThermostat, "flucQ.tauThermostat", 10.0);
164  
165 <  bool result = false;
166 <
167 <  /**@todo fix memory leak */  
168 <  ParamMap::iterator i =parameters_.find(keyword);
169 <  if (i != parameters_.end()) {
170 <    if( the_type == STRING ){
171 <       result = i->second->setData(std::string(the_event->evt.asmt.rhs.sval));
172 <       if (!result ) {
161 <            sprintf(errorMessage, "Error in parsing %s: expect %s, but get a string \"%s\".\n", keyword.c_str(), i->second->getParamType().c_str(), the_event->evt.asmt.rhs.sval);
162 <            the_event->err_msg = strdup(errorMessage);
163 <       }
164 <    } else if( the_type == DOUBLE ){
165 <      result = i->second->setData(the_event->evt.asmt.rhs.dval);
166 <       if (!result )
167 <         sprintf(errorMessage, "Error in parsing %s: expect %s, but get a double %f.\n", keyword.c_str(), i->second->getParamType().c_str(), the_event->evt.asmt.rhs.dval );
168 <       the_event->err_msg = strdup(errorMessage);
169 <    }      
170 <    else if (the_type == INT ){
171 <      result = i->second->setData(the_event->evt.asmt.rhs.ival);
172 <       if (!result )
173 <         sprintf(errorMessage,  "Error in parsing %s: expect %s, but get an int %d.\n", keyword.c_str(), i->second->getParamType().c_str(), the_event->evt.asmt.rhs.ival );
174 <       the_event->err_msg = strdup(errorMessage);
175 <      
176 <    } else {
177 <        sprintf(errorMessage,  "Internal error of parser\n");
178 <        the_event->err_msg = strdup(errorMessage);
179 <    }
180 <  } else {
181 <    sprintf(errorMessage,  "%s is an unrecognized keyword\n", keyword.c_str() );
182 <    the_event->err_msg = strdup(errorMessage);
183 <  }
184 <
185 <  if (keyword == "nComponents" && getNComponents() > 0) {
186 <    components = new Component*[getNComponents()];
187 <  }else if (keyword == "nZconstraints" && getNZconstraints() > 0) {
188 <    zConstraints = new ZconStamp*[getNZconstraints()];
189 <  }
190 <  
191 <  return result;
192 < }
193 <
194 < int Globals::newComponent( event* the_event ){
195 <  
196 <  current_component = new Component;
197 <  int index = the_event->evt.blk_index;
198 <  char err[200];
199 <  
200 <  if( haveNComponents() && index < getNComponents() )
201 <    components[index] = current_component;
202 <  else{
203 <    if( haveNComponents()  ){
204 <      sprintf( err, "meta-data parsing error: %d out of nComponents range",
205 <               index );
206 <      the_event->err_msg = strdup( err );
207 <      return 0;
208 <    }
209 <    else{
210 <      the_event->err_msg = strdup("meta-data parsing error: nComponents not given before"
211 <                                  " first component declaration." );
212 <      return 0;
213 <    }
214 <  }  
215 <
216 <  return 1;
217 < }
218 <
219 <
220 <
221 < int Globals::componentAssign( event* the_event ){
222 <
223 <  switch( the_event->evt.asmt.asmt_type ){
224 <    
225 <  case STRING:
226 <    return current_component->assignString( the_event->evt.asmt.lhs,
227 <                                            the_event->evt.asmt.rhs.sval,
228 <                                            &(the_event->err_msg));
229 <    break;
230 <    
231 <  case DOUBLE:
232 <    return current_component->assignDouble( the_event->evt.asmt.lhs,
233 <                                            the_event->evt.asmt.rhs.dval,
234 <                                            &(the_event->err_msg));
235 <    break;
236 <    
237 <  case INT:
238 <    return current_component->assignInt( the_event->evt.asmt.lhs,
239 <                                         the_event->evt.asmt.rhs.ival,
240 <                                         &(the_event->err_msg));
241 <    break;
165 >  deprecatedKeywords_.insert("nComponents");
166 >  deprecatedKeywords_.insert("nZconstraints");
167 >  deprecatedKeywords_.insert("initialConfig");
168 >  deprecatedKeywords_.insert("thermIntDistSpringConst");
169 >  deprecatedKeywords_.insert("thermIntThetaSpringConst");
170 >  deprecatedKeywords_.insert("thermIntOmegaSpringConst");
171 >  deprecatedKeywords_.insert("useSolidThermInt");  
172 >  deprecatedKeywords_.insert("useLiquidThermInt");
173      
243  default:
244    the_event->err_msg = strdup( "Globals error. Invalid component"
245                                 " assignment type" );
246    return 0;
247    break;
248  }
249  return 0;
174   }
175  
176 < int Globals::componentEnd( event* the_event ){
177 <
178 <  the_event->err_msg = current_component->checkMe();
179 <  if( the_event->err_msg != NULL ) return 0;
256 <
257 <  return 1;
176 > Globals::~Globals() {
177 >    MemoryUtils::deletePointers(components_);
178 >    MemoryUtils::deletePointers(zconstraints_);
179 >    MemoryUtils::deletePointers(restraints_);
180   }
181  
182 < int Globals::newZconstraint( event* the_event ){
183 <  
182 > void Globals::validate() {
183 >  DataHolder::validate();
184  
263  int index = the_event->evt.blk_index;
264  char err[200];
265  current_zConstraint = new ZconStamp( index );
266  
267  if( haveNZconstraints() && index < getNZconstraints() )
268    zConstraints[index] = current_zConstraint;
269  else{
270    if( haveNZconstraints() ){
271      sprintf( err, "meta-data parsing error: %d out of nZconstraints range",
272               index );
273      the_event->err_msg = strdup( err );
274      return 0;
275    }
276    else{
277      the_event->err_msg = strdup("meta-data parsing error: nZconstraints"
278                                  " not given before"
279                                  " first zConstraint declaration." );
280      return 0;
281    }
282  }  
283
284  return 1;
285 }
286
287
288
289 int Globals::zConstraintAssign( event* the_event ){
290
291  switch( the_event->evt.asmt.asmt_type ){
292    
293  case STRING:
294    return current_zConstraint->assignString( the_event->evt.asmt.lhs,
295                                              the_event->evt.asmt.rhs.sval,
296                                              &(the_event->err_msg));
297    break;
298    
299  case DOUBLE:
300    return current_zConstraint->assignDouble( the_event->evt.asmt.lhs,
301                                              the_event->evt.asmt.rhs.dval,
302                                              &(the_event->err_msg));
303    break;
304    
305  case INT:
306    return current_zConstraint->assignInt( the_event->evt.asmt.lhs,
307                                           the_event->evt.asmt.rhs.ival,
308                                           &(the_event->err_msg));
309    break;
310    
311  default:
312    the_event->err_msg = strdup( "Globals error. Invalid zConstraint"
313                                 " assignment type" );
314    return 0;
315    break;
316  }
317  return 0;
318 }
319
320 int Globals::zConstraintEnd( event* the_event ){
321
322  the_event->err_msg = current_zConstraint->checkMe();
323  if( the_event->err_msg != NULL ) return 0;
324
325  return 1;
326 }
327
328 char* Globals::checkMe( void ){
329
330
331  std::string err("The following required keywords are missing:\n");
332  short int have_err = 0;
333
334  ParamMap::iterator i;
335  for (i = parameters_.begin(); i != parameters_.end(); ++i) {
336    if (!i->second->isOptional() && i->second->empty()) {
337        err +=  i->second->getKeyword() + "\n";
338    }
339  }
340
185    CheckParameter(ForceField, isNotEmpty());
342  CheckParameter(NComponents,isPositive());
186    CheckParameter(TargetTemp, isPositive());
187 <  CheckParameter(Ensemble, isEqualIgnoreCase(std::string("NVE")) ||
345 <                 isEqualIgnoreCase(std::string("NVT")) ||
346 <                 isEqualIgnoreCase(std::string("NPTi")) ||
347 <                 isEqualIgnoreCase(std::string("NPTf")) ||
348 <                 isEqualIgnoreCase(std::string("NPTxyz")) );
187 >  CheckParameter(Ensemble, isEqualIgnoreCase("NVE") || isEqualIgnoreCase("NVT") || isEqualIgnoreCase("NPTi") || isEqualIgnoreCase("NPTf") || isEqualIgnoreCase("NPTxyz") || isEqualIgnoreCase("NPTsz") || isEqualIgnoreCase("NPAT")  || isEqualIgnoreCase("LANGEVINDYNAMICS") || isEqualIgnoreCase("LD") || isEqualIgnoreCase("NPRT") || isEqualIgnoreCase("NPGT") || isEqualIgnoreCase("NGammaT") || isEqualIgnoreCase("NGT") || isEqualIgnoreCase("LANGEVINHULL") || isEqualIgnoreCase("LHULL") || isEqualIgnoreCase("SMIPD"));
188    CheckParameter(Dt, isPositive());
189    CheckParameter(RunTime, isPositive());
351  CheckParameter(InitialConfig, isNotEmpty());
190    CheckParameter(FinalConfig, isNotEmpty());
353  CheckParameter(NMol, isPositive());
354  CheckParameter(Density, isPositive());
355  CheckParameter(Box, isPositive());
356  CheckParameter(BoxX, isPositive());
357  CheckParameter(BoxY, isPositive());
358  CheckParameter(BoxZ, isPositive());
191    CheckParameter(SampleTime, isNonNegative());
192    CheckParameter(ResetTime, isNonNegative());
193    CheckParameter(StatusTime, isNonNegative());
# Line 363 | Line 195 | char* Globals::checkMe( void ){
195    CheckParameter(SwitchingRadius, isNonNegative());
196    CheckParameter(Dielectric, isPositive());
197    CheckParameter(ThermalTime,  isNonNegative());
366  CheckParameter(TargetPressure,  isPositive());
198    CheckParameter(TauThermostat, isPositive());
199    CheckParameter(TauBarostat, isPositive());
200    CheckParameter(ZconsTime, isPositive());
370  CheckParameter(NZconstraints, isPositive());  
201    CheckParameter(ZconsTol, isPositive());
372  //CheckParameter(ZconsForcePolicy,);
202    CheckParameter(Seed, isPositive());
203 <  CheckParameter(Minimizer, isEqualIgnoreCase(std::string("SD")) ||
375 <                 isEqualIgnoreCase(std::string("CG")));
203 >  CheckParameter(Minimizer, isEqualIgnoreCase("SD") || isEqualIgnoreCase("CG"));
204    CheckParameter(MinimizerMaxIter, isPositive());
205 <  CheckParameter(MinimizerWriteFrq, isPositive());
205 >  CheckParameter(MinimizerWriteFreq, isPositive());
206    CheckParameter(MinimizerStepSize, isPositive());
207    CheckParameter(MinimizerFTol, isPositive());
208    CheckParameter(MinimizerGTol, isPositive());
# Line 382 | Line 210 | char* Globals::checkMe( void ){
210    CheckParameter(MinimizerLSMaxIter, isPositive());
211    CheckParameter(ZconsGap, isPositive());
212    CheckParameter(ZconsFixtime, isPositive());
213 <  CheckParameter(ThermodynamicIntegrationLambda, isPositive());
213 >  CheckParameter(ThermodynamicIntegrationLambda, isNonNegative());
214    CheckParameter(ThermodynamicIntegrationK, isPositive());
215    CheckParameter(ForceFieldVariant, isNotEmpty());
216    CheckParameter(ForceFieldFileName, isNotEmpty());
217 <  CheckParameter(ThermIntDistSpringConst, isPositive());
218 <  CheckParameter(ThermIntThetaSpringConst, isPositive());
219 <  CheckParameter(ThermIntOmegaSpringConst, isPositive());
220 <  CheckParameter(SurfaceTension, isPositive());
221 <  CheckParameter(ElectrostaticSummationMethod,
394 <                 isEqualIgnoreCase(std::string("NONE")) ||
395 <                 isEqualIgnoreCase(std::string("SHIFTED_POTENTIAL")) ||
396 <                 isEqualIgnoreCase(std::string("SHIFTED_FORCE")) ||
397 <                 isEqualIgnoreCase(std::string("REACTION_FIELD")));
398 <  CheckParameter(ElectrostaticScreeningMethod,
399 <                 isEqualIgnoreCase(std::string("UNDAMPED")) ||
400 <                 isEqualIgnoreCase(std::string("DAMPED")));
401 <  CheckParameter(CutoffPolicy, isEqualIgnoreCase(std::string("MIX")) ||
402 <                 isEqualIgnoreCase(std::string("MAX")) ||
403 <                 isEqualIgnoreCase(std::string("TRADITIONAL")));
404 <  CheckParameter(SwitchingFunctionType,
405 <                 isEqualIgnoreCase(std::string("CUBIC")) ||
406 <                 isEqualIgnoreCase(std::string("FIFTH_ORDER_POLYNOMIAL")));
407 <  //CheckParameter(StatFileFormat,);    
408 <  //CheckParameter(MixingRule,);
217 >  CheckParameter(CutoffMethod, isEqualIgnoreCase("HARD") || isEqualIgnoreCase("SWITCHED") || isEqualIgnoreCase("SHIFTED_POTENTIAL") || isEqualIgnoreCase("SHIFTED_FORCE"));
218 >  CheckParameter(CutoffPolicy, isEqualIgnoreCase("MIX") || isEqualIgnoreCase("MAX") || isEqualIgnoreCase("TRADITIONAL"));
219 >  CheckParameter(ElectrostaticSummationMethod, isEqualIgnoreCase("NONE") || isEqualIgnoreCase("HARD") || isEqualIgnoreCase("SWITCHED") || isEqualIgnoreCase("SHIFTED_POTENTIAL") || isEqualIgnoreCase("SHIFTED_FORCE") || isEqualIgnoreCase("REACTION_FIELD"));
220 >  CheckParameter(ElectrostaticScreeningMethod, isEqualIgnoreCase("UNDAMPED") || isEqualIgnoreCase("DAMPED"));
221 >  CheckParameter(SwitchingFunctionType, isEqualIgnoreCase("CUBIC") || isEqualIgnoreCase("FIFTH_ORDER_POLYNOMIAL"));
222    CheckParameter(OrthoBoxTolerance, isPositive());  
410  CheckParameter(ThermIntDistSpringConst, isPositive());
411  CheckParameter(ThermIntThetaSpringConst, isPositive());
412  CheckParameter(ThermIntOmegaSpringConst, isPositive());
223    CheckParameter(DampingAlpha,isNonNegative());
224    CheckParameter(SkinThickness, isPositive());
225 +  CheckParameter(Viscosity, isNonNegative());
226 +  CheckParameter(BeadSize, isPositive());
227 +  CheckParameter(FrozenBufferRadius, isPositive());
228 +  CheckParameter(LangevinBufferRadius, isPositive());
229 +  CheckParameter(NeighborListNeighbors, isPositive());
230 +  CheckParameter(RNEMD_exchangeTime, isPositive());
231 +  CheckParameter(RNEMD_nBins, isPositive() && isEven());
232 +  CheckParameter(RNEMD_exchangeType, isEqualIgnoreCase("KineticSwap") || isEqualIgnoreCase("KineticScale") || isEqualIgnoreCase("KineticScaleVAM") || isEqualIgnoreCase("KineticScaleAM") || isEqualIgnoreCase("Px") || isEqualIgnoreCase("Py") || isEqualIgnoreCase("Pz") || isEqualIgnoreCase("PxScale") || isEqualIgnoreCase("PyScale") || isEqualIgnoreCase("PzScale") || isEqualIgnoreCase("ShiftScaleV") || isEqualIgnoreCase("ShiftScaleVAM"));
233 +  CheckParameter(HULL_Method, isEqualIgnoreCase("Convex") || isEqualIgnoreCase("AlphaShape"));
234 +  CheckParameter(Alpha, isPositive());
235 +  CheckParameter(FlucQPropagator, isEqualIgnoreCase("NVT") || isEqualIgnoreCase("Langevin") || isEqualIgnoreCase("Minimizer") || isEqualIgnoreCase("Exact") );
236 +  CheckParameter(FlucQFriction, isNonNegative());    
237 +  CheckParameter(FlucQTolerance, isPositive());    
238 +  CheckParameter(FlucQMaxIterations, isPositive());    
239 +  CheckParameter(FlucQTargetTemp,  isNonNegative());
240 +  CheckParameter(FlucQtauThermostat, isPositive());
241    
242 <  //@todo memory leak
243 <  if( have_err )
244 <    return strdup( err.c_str() );
245 <  
246 <  return NULL;
242 >  for(std::vector<Component*>::iterator i = components_.begin(); i != components_.end(); ++i) {
243 >    if (!(*i)->findMoleculeStamp(moleculeStamps_)) {
244 >        std::ostringstream oss;
245 >        oss << "Globals Error: can not find molecule stamp for component " << (*i)->getType() << std::endl;
246 >        throw OpenMDException(oss.str());          
247 >    }
248 >  }
249 > }
250  
251 + bool Globals::addComponent(Component* comp) {
252 +    components_.push_back(comp);
253 +    return true;
254 + }
255  
256 + bool Globals::addZConsStamp(ZConsStamp* zcons) {
257 +    zconstraints_.push_back(zcons);
258 +    return true;
259   }
260  
261 < int Globals::globalEnd( event* the_event ){
262 <  
263 <  the_event->err_msg = checkMe();
264 <  if( the_event->err_msg != NULL ) return 0;
261 > bool Globals::addRestraintStamp(RestraintStamp* rest) {
262 >    restraints_.push_back(rest);
263 >    return true;
264 > }
265  
266 <  return 1;
266 > bool Globals::addMoleculeStamp(MoleculeStamp* molStamp) {
267 >    std::string molStampName = molStamp->getName();
268 >    std::map<std::string, MoleculeStamp*>::iterator i;
269 >    bool ret = false;
270 >    i = moleculeStamps_.find(molStampName);
271 >    if (i == moleculeStamps_.end()) {
272 >        moleculeStamps_.insert(std::map<std::string, MoleculeStamp*>::value_type(molStampName, molStamp));
273 >        ret = true;
274 >    } else {
275 >        std::ostringstream oss;
276 >        oss << "Globals Error: Molecule Stamp " << molStamp->getName() << "appears multiple times\n";
277 >        throw OpenMDException(oss.str());  
278 >    }
279 >    return ret;
280   }
281 +
282 +
283 + }

Comparing:
trunk/src/io/Globals.cpp (property svn:keywords), Revision 726 by chrisfen, Fri Nov 11 15:22:11 2005 UTC vs.
branches/development/src/io/Globals.cpp (property svn:keywords), Revision 1729 by jmarr, Wed May 30 16:08:07 2012 UTC

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