39 #include <boost/core/ignore_unused.hpp> 53 ProcessCombineAvg::create,
54 "combine two fields containing averages (and possibly Reynolds " 55 "stresses). Must specify fromfld.");
60 ConfigOption(
false,
"NotSet",
"Fld file form which to add field");
69 boost::ignore_unused(vm);
72 if (
m_f->m_exp[0]->GetNumElmts() == 0)
78 "Need to specify fromfld=file.fld ");
80 int nfields =
m_f->m_variables.size();
81 int nq =
m_f->m_exp[0]->GetTotPoints();
82 int expdim =
m_f->m_graph->GetMeshDimension();
83 int spacedim = expdim;
84 if ((
m_f->m_numHomogeneousDir) == 1 || (
m_f->m_numHomogeneousDir) == 2)
86 spacedim +=
m_f->m_numHomogeneousDir;
92 for (
int j = 0; j < nfields; ++j)
98 string fromfld =
m_config[
"fromfld"].as<
string>();
104 for (
int i = 0; i <
m_f->m_exp[0]->GetExpSize(); ++i)
106 ElementGIDs[i] =
m_f->m_exp[0]->GetExp(i)->GetGeom()->GetGlobalID();
109 m_f->FieldIOForFile(fromfld)->Import(
110 fromfld, fromField->m_fielddef, fromField->m_data, fromFieldMetaDataMap,
112 ASSERTL0(fromField->m_fielddef[0]->m_fields.size() == nfields,
113 "Mismatch in number of fields");
115 for (
int j = 0; j < nfields; ++j)
117 ASSERTL0(fromField->m_fielddef[0]->m_fields[j] ==
119 "Field names do not match.");
122 for (
int i = 0; i < fromField->m_data.size(); ++i)
124 m_f->m_exp[j]->ExtractDataToCoeffs(
125 fromField->m_fielddef[i], fromField->m_data[i],
127 m_f->m_exp[j]->UpdateCoeffs());
129 m_f->m_exp[j]->BwdTrans(
m_f->m_exp[j]->GetCoeffs(), fromPhys[j]);
133 ASSERTL0(
m_f->m_fieldMetaDataMap.count(
"NumberOfFieldDumps") != 0,
134 "Missing NumberOfFieldDumps metadata.");
135 ASSERTL0(fromFieldMetaDataMap.count(
"NumberOfFieldDumps") != 0,
136 "Missing NumberOfFieldDumps metadata.");
138 s_num =
m_f->m_fieldMetaDataMap[
"NumberOfFieldDumps"];
139 int na = atoi(s_num.c_str());
140 s_num = fromFieldMetaDataMap[
"NumberOfFieldDumps"];
141 int nb = atoi(s_num.c_str());
145 for (
int j = 0; j < nfields; ++j)
147 if (
m_f->m_variables[j] ==
"uu")
160 for (
int i = 0; i < spacedim; ++i)
162 for (
int j = i; j < spacedim; ++j, ++n)
172 Vmath::Vmul(nq, correction[n], 1, tmp, 1, correction[n], 1);
173 Vmath::Smul(nq, fac, correction[n], 1, correction[n], 1);
178 for (
int j = 0; j < nfields; ++j)
182 m_f->m_exp[j]->UpdatePhys(), 1);
183 Vmath::Svtvp(nq, 1.0 * nb, fromPhys[j], 1,
m_f->m_exp[j]->GetPhys(), 1,
184 m_f->m_exp[j]->UpdatePhys(), 1);
186 m_f->m_exp[j]->UpdatePhys(), 1);
188 m_f->m_exp[j]->UpdatePhys(), 1);
190 m_f->m_exp[j]->FwdTrans_IterPerExp(
m_f->m_exp[j]->GetPhys(),
191 m_f->m_exp[j]->UpdateCoeffs());
195 m_f->m_fieldMetaDataMap[
"NumberOfFieldDumps"] =
196 boost::lexical_cast<std::string>(na + nb);
199 if (
m_f->m_fieldMetaDataMap.count(
"InitialTime"))
201 string s_t =
m_f->m_fieldMetaDataMap[
"InitialTime"];
206 if (fromFieldMetaDataMap.count(
"InitialTime"))
208 string s_t = fromFieldMetaDataMap[
"InitialTime"];
217 t0 = std::min(t0, t);
220 if (
m_f->m_fieldMetaDataMap.count(
"FinalTime"))
222 string s_t =
m_f->m_fieldMetaDataMap[
"FinalTime"];
225 finTime = std::max(t0, t);
227 if (fromFieldMetaDataMap.count(
"FinalTime"))
229 string s_t = fromFieldMetaDataMap[
"FinalTime"];
232 finTime = std::max(t0, t);
236 m_f->m_fieldMetaDataMap[
"InitialTime"] =
237 boost::lexical_cast<std::string>(t0);
241 m_f->m_fieldMetaDataMap[
"FinalTime"] =
242 boost::lexical_cast<std::string>(finTime);
#define ASSERTL0(condition, msg)
std::map< std::string, ConfigOption > m_config
List of configuration values.
Represents a command-line configuration option.
void Svtvp(int n, const T alpha, const T *x, const int incx, const T *y, const int incy, T *z, const int incz)
svtvp (scalar times vector plus vector): z = alpha*x + y
std::shared_ptr< Field > FieldSharedPtr
std::map< std::string, std::string > FieldMetaDataMap
std::pair< ModuleType, std::string > ModuleKey
void Smul(int n, const T alpha, const T *x, const int incx, T *y, const int incy)
Scalar multiply y = alpha*y.
virtual ~ProcessCombineAvg()
void Vsub(int n, const T *x, const int incx, const T *y, const int incy, T *z, const int incz)
Subtract vector z = x-y.
virtual void Process(po::variables_map &vm)
Write mesh to output file.
tKey RegisterCreatorFunction(tKey idKey, CreatorFunction classCreator, std::string pDesc="")
Register a class with the factory.
Abstract base class for processing modules.
void Vadd(int n, const T *x, const int incx, const T *y, const int incy, T *z, const int incz)
Add vector z = x+y.
void Vmul(int n, const T *x, const int incx, const T *y, const int incy, T *z, const int incz)
Multiply vector z = x*y.
ModuleFactory & GetModuleFactory()
FieldSharedPtr m_f
Field object.