Flow123d
equation_output.cc
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1 /*
2  * equation_output.cc
3  *
4  * Created on: Jul 8, 2016
5  * Author: jb
6  */
7 
8 #include "tools/time_marks.hh"
9 #include "input/input_type.hh"
10 #include "input/accessors.hh"
12 #include "fields/field.hh"
15 #include "io/output_time_set.hh"
16 #include "io/observe.hh"
18 #include "fem/dofhandler.hh"
19 #include "fem/discrete_space.hh"
20 #include "fem/fe_p.hh"
21 #include <memory>
22 
23 
24 namespace IT = Input::Type;
25 
26 
27 
29 
30  static const IT::Selection &interpolation_sel =
31  IT::Selection("Discrete_output", "Discrete type of output. Determines type of output data (element, node, native etc).")
32  .add_value(OutputTime::NODE_DATA, "P1_average", "Node data / point data.")
33  .add_value(OutputTime::CORNER_DATA, "D1_value", "Corner data.")
34  .add_value(OutputTime::ELEM_DATA, "P0_value", "Element data / cell data.")
35  .add_value(OutputTime::NATIVE_DATA, "Native", "Native data (Flow123D data).")
36  .close();
37 
38  static const IT::Record &field_output_setting =
39  IT::Record("FieldOutputSetting", "Setting of the field output. The field name, output times, output interpolation (future).")
40  .allow_auto_conversion("field")
41  .declare_key("field", IT::Parameter("output_field_selection"), IT::Default::obligatory(),
42  "The field name (from selection).")
44  "Output times specific to particular field.")
45  .declare_key("interpolation", IT::Array( interpolation_sel ), IT::Default::read_time("Interpolation type of output data."),
46  "Optional value. Implicit value is given by field and can be changed.")
47  .close();
48 
49  return IT::Record("EquationOutput",
50  "Output of the equation's fields."
51  "The output is done through the output stream of the associated balance law equation."
52  "The stream defines output format for the full space information in selected times and "
53  "observe points for the full time information. The key 'fields' select the fields for the full spatial output."
54  "The set of output times may be specified per field otherwise common time set 'times' is used. If even this is not provided"
55  "the time set of the output_stream is used. The initial time of the equation is automatically added "
56  "to the time set of every selected field. The end time of the equation is automatically added "
57  "to the common output time set.")
60  "Output times used for the output fields without is own time series specification.")
61  .declare_key("add_input_times", IT::Bool(), IT::Default("false"),
62  "Add all input time points of the equation, mentioned in the 'input_fields' list, also as the output points.")
63  .declare_key("fields", IT::Array(field_output_setting), IT::Default("[]"),
64  "Array of output fields and their individual output settings.")
65  .declare_key("observe_fields", IT::Array( IT::Parameter("output_field_selection")), IT::Default("[]"),
66  "Array of the fields evaluated in the observe points of the associated output stream.")
67  .close();
68 }
69 
70 
72 : FieldSet(), output_elem_data_assembly_(nullptr), output_node_data_assembly_(nullptr), output_corner_data_assembly_(nullptr),
73  observe_output_assembly_(nullptr) {
74  this->add_coords_field();
75 }
76 
82 }
83 
84 
85 
87  const string &additional_description)
88 {
89  string selection_name = equation_name + ":OutputFields";
90  string description = "Selection of output fields for the " + equation_name + " model.\n" + additional_description;
91  IT::Selection sel(selection_name, description );
92  int i=0;
93  // add value for each field excluding boundary fields
94  for( FieldCommon * field : field_list)
95  {
96  //DebugOut().fmt("type for field: {}\n", field->name());
97  if ( !field->is_bc() && field->flags().match( FieldFlag::allow_output) )
98  {
99  string desc = "(($[" + field->units().format_latex()+"]$)) "; + "Output of: the field " + field->name() + " ";
100  if (field->flags().match(FieldFlag::equation_input))
101  desc += "Input field: ";
102  if (field->description().length() > 0)
103  desc += field->description();
104  sel.add_value(i, field->name(), desc, { {FlowAttribute::field_value_shape(), field->get_value_attribute()} });
105  i++;
106  }
107  }
108 
109  return sel.close();
110 }
111 
112 const IT::Instance &EquationOutput::make_output_type(const string &equation_name, const string &additional_description)
113 {
114  return make_output_type_from_record(get_input_type(), equation_name, additional_description);
115 }
116 
118  const string &equation_name,
119  const string &additional_description)
120 {
121  const IT::Selection &output_field_selection = create_output_field_selection(equation_name, additional_description);
122 
124  param_vec.push_back( std::make_pair("output_field_selection", std::make_shared< IT::Selection >(output_field_selection) ) );
125  return IT::Instance(in_rec, param_vec).close();
126 }
127 
128 
129 void EquationOutput::initialize(std::shared_ptr<OutputTime> stream, Mesh *mesh, Input::Record in_rec, const TimeGovernor & tg)
130 {
131  stream_ = stream;
132  mesh_ = mesh;
135  read_from_input(in_rec, tg);
136 
137  { // DOF handler of element data output
138  MixedPtr<FE_P_disc> fe_p_disc(0);
139  dh_ = make_shared<DOFHandlerMultiDim>(*mesh_);
140  std::shared_ptr<DiscreteSpace> ds = std::make_shared<EqualOrderDiscreteSpace>( mesh_, fe_p_disc);
141  dh_->distribute_dofs(ds);
142  }
143 
144  { // DOF handler of node / corner data output
145  MixedPtr<FE_P_disc> fe_p_disc(1);
146  dh_node_ = make_shared<DOFHandlerMultiDim>(*mesh_);
147  std::shared_ptr<DiscreteSpace> ds = std::make_shared<EqualOrderDiscreteSpace>( mesh_, fe_p_disc);
148  dh_node_->distribute_dofs(ds);
149  }
150 
155 }
156 
157 
158 
160 {
161  ASSERT(stream_).error("The 'set_stream' method must be called before the 'read_from_input'.");
162  auto &marks = TimeGovernor::marks();
163 
164  Input::Array times_array;
165  if (in_rec.opt_val("times", times_array) ) {
166  common_output_times_.read_from_input(times_array, tg);
167  } else {
168  // take times from the output_stream if key times is missing
169  auto times_array_it = stream_->get_time_set_array();
170  if (times_array_it) {
171  common_output_times_.read_from_input(*times_array_it, tg);
172  }
173  }
174  // always add the end time
176 
177  if (in_rec.val<bool>("add_input_times")) {
178  // copy time marks in order to prevent invalidation of the iterator
179  TimeMarks marks_copy = TimeGovernor::marks();
180  for(auto time_mark_it = marks_copy.begin(equation_type_ | marks.type_input());
181  time_mark_it != marks_copy.end(equation_type_ | marks.type_input());
182  ++time_mark_it) {
183  common_output_times_.add(time_mark_it->time(), equation_fixed_type_);
184  }
185  }
186  auto fields_array = in_rec.val<Input::Array>("fields");
187  for(auto it = fields_array.begin<Input::Record>(); it != fields_array.end(); ++it) {
188  this->init_field_item(it, tg);
189  }
190  auto observe_fields_array = in_rec.val<Input::Array>("observe_fields");
191  for(auto it = observe_fields_array.begin<Input::FullEnum>(); it != observe_fields_array.end(); ++it) {
192  observe_fields_.insert(string(*it));
193  }
194 
195 }
196 
198  string field_name = it -> val< Input::FullEnum >("field");
199  FieldCommon *found_field = field(field_name);
200 
201  Input::Array interpolations;
203  if (it->opt_val("interpolation", interpolations)) {
204  // process interpolations
205  for(auto it_interp = interpolations.begin<OutputTime::DiscreteSpace>(); it_interp != interpolations.end(); ++it_interp) {
206  interpolation[ *it_interp ] = true;
207  }
208  } else {
209  OutputTime::set_discrete_flag(interpolation, found_field->get_output_type());
210  }
211  Input::Array field_times_array;
212  FieldOutputConfig field_config;
213  if (it->opt_val("times", field_times_array)) {
214  OutputTimeSet field_times;
215  field_times.read_from_input(field_times_array, tg);
216  field_config.output_set_ = field_times;
217  } else {
218  field_config.output_set_ = common_output_times_;
219  }
220  field_config.space_flags_ = interpolation;
221  // Add init time as the output time for every output field.
222  field_config.output_set_.add(tg.init_time(), equation_fixed_type_);
223  // register interpolation types of fields to OutputStream
224  for (uint i=0; i<OutputTime::N_DISCRETE_SPACES; ++i)
225  if (interpolation[i]) used_interpolations_.insert( OutputTime::DiscreteSpace(i) );
226  // Set output configuration to field_output_times_
227  if (found_field->is_multifield()) {
228  for (uint i_comp=0; i_comp<found_field->n_comp(); ++i_comp) {
229  field_output_times_[ found_field->full_comp_name(i_comp) ] = field_config;
230  }
231  } else {
232  field_output_times_[field_name] = field_config;
233  }
234 }
235 
237 {
238  if ( !field.get_flags().match(FieldFlag::allow_output) ) return false;
239  auto &marks = TimeGovernor::marks();
240  auto field_times_it = field_output_times_.find(field.name());
241  if (field_times_it == field_output_times_.end()) return false;
242  ASSERT( step.eq(field.time()) )(step.end())(field.time())(field.name()).error("Field is not set to the output time.");
243  auto current_mark_it = marks.current(step, equation_type_ | marks.type_output() );
244  if (current_mark_it == marks.end(equation_type_ | marks.type_output()) ) return false;
245  return (field_times_it->second.output_set_.contains(*current_mark_it) );
246 }
247 
248 
250 {
251  ASSERT_PTR(mesh_).error();
252 
253  // automatically call of stream_->write_time_frame if the time in the TimeStep is higher then in output stream
254  if (step.end() > stream_->registered_time()) {
255  stream_->write_time_frame();
256  }
257 
258  // make observe points if not already done
259  auto observe_ptr = stream_->observe(mesh_);
260 
261  this->make_output_mesh( stream_->is_parallel() );
262 
263  // NODE_DATA
264  {
265  FieldSet used_fields;
266  for(FieldListAccessor f_acc : this->fields_range()) {
267  if (is_field_output_time( *(f_acc.field()), step) && field_output_times_[f_acc->name()].space_flags_[OutputTime::NODE_DATA]) {
268  f_acc->set_output_data_cache(OutputTime::NODE_DATA, stream_);
269  used_fields += *(f_acc.field());
270  }
271  }
272  if (used_fields.size()>0) {
273  auto mixed_assmbly = output_node_data_assembly_->multidim_assembly();
274  mixed_assmbly[1_d]->set_output_data(used_fields, stream_);
275  mixed_assmbly[2_d]->set_output_data(used_fields, stream_);
276  mixed_assmbly[3_d]->set_output_data(used_fields, stream_);
278  }
279  }
280 
281  // CORNER_DATA
282  {
283  FieldSet used_fields;
284  for(FieldListAccessor f_acc : this->fields_range()) {
285  if (is_field_output_time( *(f_acc.field()), step) && field_output_times_[f_acc->name()].space_flags_[OutputTime::CORNER_DATA]) {
286  f_acc->set_output_data_cache(OutputTime::CORNER_DATA, stream_);
287  used_fields += *(f_acc.field());
288  }
289  }
290  if (used_fields.size()>0) {
291  auto mixed_assmbly = output_corner_data_assembly_->multidim_assembly();
292  mixed_assmbly[1_d]->set_output_data(used_fields, stream_);
293  mixed_assmbly[2_d]->set_output_data(used_fields, stream_);
294  mixed_assmbly[3_d]->set_output_data(used_fields, stream_);
296  }
297  }
298 
299  // ELEM_DATA
300  {
301  FieldSet used_fields;
302  for (FieldListAccessor f_acc : this->fields_range()) {
303  if (is_field_output_time( *(f_acc.field()), step) && field_output_times_[f_acc->name()].space_flags_[OutputTime::ELEM_DATA]) {
304  f_acc->set_output_data_cache(OutputTime::ELEM_DATA, stream_);
305  used_fields += *(f_acc.field());
306  }
307  }
308  if (used_fields.size()>0) {
309  auto mixed_assmbly = output_elem_data_assembly_->multidim_assembly();
310  mixed_assmbly[1_d]->set_output_data(used_fields, stream_);
311  mixed_assmbly[2_d]->set_output_data(used_fields, stream_);
312  mixed_assmbly[3_d]->set_output_data(used_fields, stream_);
314  }
315  }
316 
317  // NATIVE_DATA
318  for(FieldListAccessor f_acc : this->fields_range()) {
319  if (is_field_output_time( *(f_acc.field()), step) && field_output_times_[f_acc->name()].space_flags_[OutputTime::NATIVE_DATA]) {
320  f_acc->field_output(stream_, OutputTime::NATIVE_DATA);
321  }
322  }
323 
324  // observe output
325  if (observe_fields_.size() > 0) {
326  for (auto observe_field : this->observe_fields_) {
327  auto *field_ptr = this->field(observe_field);
328  if ( field_ptr->flags().match( FieldFlag::allow_output) ) {
329  if (field_ptr->is_multifield()) {
330  for (uint i_comp=0; i_comp<field_ptr->n_comp(); ++i_comp) {
331  observe_ptr->prepare_compute_data(field_ptr->full_comp_name(i_comp), step.end(), field_ptr->n_shape());
332  }
333  } else {
334  observe_ptr->prepare_compute_data(field_ptr->name(), field_ptr->time(), field_ptr->n_shape());
335  }
336  }
337  }
339  }
340 }
341 
342 
343 void EquationOutput::add_output_times(double begin, double step, double end)
344 {
345  common_output_times_.add(begin,step, end, equation_fixed_type_ );
346 }
347 
348 
350 {
351  // already computed
352  if (stream_->is_output_data_caches_init()) return;
353 
354  // Read optional error control field name
355  bool need_refinment = stream_->get_output_mesh_record();
356 
357  if(need_refinment) {
358  if(stream_->enable_refinement()) {
359  // create output meshes from input record
360  output_mesh_ = std::make_shared<OutputMeshDiscontinuous>(*mesh_, *stream_->get_output_mesh_record());
361 
362  // possibly set error control field for refinement
363  auto ecf = select_error_control_field();
364  output_mesh_->set_error_control_field(ecf);
365 
366  // actually compute refined mesh
367  output_mesh_->create_refined_sub_mesh();
368  output_mesh_->make_serial_master_mesh();
369 
370  stream_->set_output_data_caches(output_mesh_);
371  return;
372  }
373  else
374  {
375  // skip creation of output mesh (use computational one)
376  WarningOut() << "Ignoring output mesh record.\n Output in GMSH format available only on computational mesh!";
377  }
378  }
379 
380  // create output mesh identical with the computational one
381  bool discont = need_refinment | (used_interpolations_.find(OutputTime::CORNER_DATA) != used_interpolations_.end());
382  //discont |= parallel;
383  if (discont) {
384  output_mesh_ = std::make_shared<OutputMeshDiscontinuous>(*mesh_);
385  } else {
386  output_mesh_ = std::make_shared<OutputMesh>(*mesh_);
387  }
388  output_mesh_->create_sub_mesh();
389  if (!parallel) {
390  output_mesh_->make_serial_master_mesh();
391  } else {
392  output_mesh_->make_parallel_master_mesh();
393  }
394  stream_->set_output_data_caches(output_mesh_);
395 }
396 
397 
399 {
400  std::string error_control_field_name = "";
401  // Read optional error control field name
402  auto it = stream_->get_output_mesh_record()->find<std::string>("error_control_field");
403  if(it) error_control_field_name = *it;
404 
405  if(error_control_field_name!="")
406  {
407  FieldCommon* field = this->field(error_control_field_name);
408  // throw input exception if the field is unknown
409  if(field == nullptr){
410  THROW(FieldSet::ExcUnknownField()
411  << FieldCommon::EI_Field(error_control_field_name));
412  }
413 
414  // throw input exception if the field is not scalar
415  if( typeid(*field) == typeid(Field<3,FieldValue<3>::Scalar>) ) {
416 
417  Field<3,FieldValue<3>::Scalar>* error_control_field = static_cast<Field<3,FieldValue<3>::Scalar>*>(field);
418  DebugOut() << "Error control field for output mesh set: " << error_control_field_name << ".";
419  auto lambda_function =
420  [error_control_field](const Armor::array &point_list, const ElementAccessor<OutputMeshBase::spacedim> &elm, std::vector<double> &value_list)->void
421  { error_control_field->value_list(point_list, elm, value_list); };
422 
423  OutputMeshBase::ErrorControlFieldFunc func = lambda_function;
424  return func;
425 
426  }
427  else{
428  THROW(ExcFieldNotScalar()
429  << FieldCommon::EI_Field(error_control_field_name));
430  }
431  }
433 }
FieldCommon::units
FieldCommon & units(const UnitSI &units)
Set basic units of the field.
Definition: field_common.hh:153
EquationOutput::EquationOutput
EquationOutput()
Default constructor.
Definition: equation_output.cc:71
FieldSet::mesh
const Mesh * mesh() const
Returns pointer to mesh.
Definition: field_set.hh:382
Input::Type::Bool
Class for declaration of the input of type Bool.
Definition: type_base.hh:452
FlagArray::match
constexpr bool match(Mask mask) const
Definition: flag_array.hh:163
Input::FullEnum
Definition: accessors.hh:129
EquationOutput::observe_output_assembly_
GenericAssemblyObserve< AssemblyObserveOutput > * observe_output_assembly_
Definition: equation_output.hh:167
FieldCommon::get_output_type
OutputTime::DiscreteSpace get_output_type() const
Definition: field_common.hh:266
FieldListAccessor
Definition: field_set.hh:61
TimeGovernor::end_time
double end_time() const
End time.
Definition: time_governor.hh:591
EquationOutput::initialize
void initialize(std::shared_ptr< OutputTime > stream, Mesh *mesh, Input::Record in_rec, const TimeGovernor &tg)
Definition: equation_output.cc:129
discrete_space.hh
Declaration of class which provides the finite element for every mesh cell.
Input::Type::Instance::close
const Instance & close() const
Used for set Instance to TypeRepository.
Definition: type_generic.cc:108
EquationOutput::select_error_control_field
OutputMeshBase::ErrorControlFieldFunc select_error_control_field()
Selects the error control field out of output field set according to input record.
Definition: equation_output.cc:398
ASSERT
#define ASSERT(expr)
Definition: asserts.hh:351
EquationOutput::create_output_field_selection
const Input::Type::Selection & create_output_field_selection(const string &equation_name, const string &additional_description)
Definition: equation_output.cc:86
TimeGovernor::equation_fixed_mark_type
TimeMark::Type equation_fixed_mark_type() const
Definition: time_governor.hh:481
Input::Record::val
const Ret val(const string &key) const
Definition: accessors_impl.hh:31
Input::Type::Selection::close
const Selection & close() const
Close the Selection, no more values can be added.
Definition: type_selection.cc:65
assembly_observe.hh
EquationOutput::is_field_output_time
bool is_field_output_time(const FieldCommon &field, TimeStep step) const
Definition: equation_output.cc:236
OutputTimeSet::add
void add(double begin, TimeMark::Type mark_type)
Definition: output_time_set.cc:77
THROW
#define THROW(whole_exception_expr)
Wrapper for throw. Saves the throwing point.
Definition: exceptions.hh:53
FieldSet::fields_range
Range< FieldListAccessor > fields_range() const
Returns range of Fields held in field_list.
Definition: field_set.cc:329
std::vector
Definition: doxy_dummy_defs.hh:7
Input::Type::Default::read_time
static Default read_time(const std::string &description)
The factory function to make an default value that will be specified at the time when a key will be r...
Definition: type_record.hh:97
ElementAccessor
Definition: dh_cell_accessor.hh:32
TimeMarks::end
TimeMarks::iterator end(TimeMark::Type mask) const
Iterator for the end mimics container-like of TimeMarks.
Definition: time_marks.cc:206
OutputTime::ELEM_DATA
@ ELEM_DATA
Definition: output_time.hh:111
EquationOutput::dh_node_
std::shared_ptr< DOFHandlerMultiDim > dh_node_
Definition: equation_output.hh:161
FieldCommon::flags
FieldCommon & flags(FieldFlag::Flags::Mask mask)
Definition: field_common.hh:192
FieldFlag::allow_output
static constexpr Mask allow_output
The field can output. Is part of generated output selection. (default on)
Definition: field_flag.hh:37
GenericAssemblyObserve::assemble
void assemble(std::shared_ptr< DOFHandlerMultiDim > dh) override
General assemble methods.
Definition: assembly_observe.hh:69
dofhandler.hh
Declaration of class which handles the ordering of degrees of freedom (dof) and mappings between loca...
uint
unsigned int uint
Definition: mh_dofhandler.hh:101
Input::Array::begin
Iterator< ValueType > begin() const
Definition: accessors_impl.hh:145
GenericAssembly::assemble
void assemble(std::shared_ptr< DOFHandlerMultiDim > dh) override
General assemble methods.
Definition: generic_assembly.hh:209
EquationOutput::make_output_type
const Input::Type::Instance & make_output_type(const string &equation_name, const string &aditional_description="")
Definition: equation_output.cc:112
OutputMeshBase::ErrorControlFieldFunc
std::function< void(const Armor::array &, const ElementAccessor< spacedim > &, std::vector< double > &)> ErrorControlFieldFunc
Definition: output_mesh.hh:77
fe_p.hh
Definitions of basic Lagrangean finite elements with polynomial shape functions.
EquationOutput::output_node_data_assembly_
GenericAssembly< AssemblyOutputNodeData > * output_node_data_assembly_
Definition: equation_output.hh:165
OutputTime::DiscreteSpaceFlags
std::array< bool, 4 > DiscreteSpaceFlags
Definition: output_time.hh:122
EquationOutput::FieldOutputConfig::output_set_
OutputTimeSet output_set_
Set of output times.
Definition: equation_output.hh:54
Input::Iterator
Definition: accessors.hh:143
FieldSet::field_list
std::vector< FieldCommon * > field_list
List of all fields.
Definition: field_set.hh:401
TimeMarks::begin
TimeMarks::iterator begin(TimeMark::Type mask) const
Iterator for the begin mimics container-like of TimeMarks.
Definition: time_marks.cc:192
Input::Type::Default
Class Input::Type::Default specifies default value of keys of a Input::Type::Record.
Definition: type_record.hh:61
EquationOutput::output_corner_data_assembly_
GenericAssembly< AssemblyOutputNodeData > * output_corner_data_assembly_
Definition: equation_output.hh:166
equation_output.hh
OutputTime::set_discrete_flag
static void set_discrete_flag(DiscreteSpaceFlags &dsf, DiscreteSpace d_space)
Definition: output_time.hh:135
EquationOutput::mesh_
Mesh * mesh_
Definition: equation_output.hh:154
TimeStep::end
double end() const
Definition: time_governor.hh:161
EquationOutput::read_from_input
void read_from_input(Input::Record in_rec, const TimeGovernor &tg)
Definition: equation_output.cc:159
Input::Record
Accessor to the data with type Type::Record.
Definition: accessors.hh:291
GenericAssembly::multidim_assembly
MixedPtr< DimAssembly, 1 > multidim_assembly() const
Getter to set of assembly objects.
Definition: generic_assembly.hh:190
Input::Type::Record::allow_auto_conversion
virtual Record & allow_auto_conversion(const string &from_key)
Allows shorter input of the Record providing only value of the from_key given as the parameter.
Definition: type_record.cc:133
accessors.hh
flow_attribute_lib.hh
TimeStep
Representation of one time step..
Definition: time_governor.hh:123
TimeGovernor
Basic time management functionality for unsteady (and steady) solvers (class Equation).
Definition: time_governor.hh:317
Input::Type::Record::root_of_generic_subtree
virtual Record & root_of_generic_subtree()
Definition: type_record.cc:432
EquationOutput::add_output_times
void add_output_times(double begin, double step, double end)
Definition: equation_output.cc:343
OutputTime::empty_discrete_flags
static DiscreteSpaceFlags empty_discrete_flags()
Check if at least one of discrete space flag is set to true.
Definition: output_time.hh:130
Input::Type::Default::obligatory
static Default obligatory()
The factory function to make an empty default value which is obligatory.
Definition: type_record.hh:110
EquationOutput::field_output_times_
std::unordered_map< string, FieldOutputConfig > field_output_times_
Time sets of individual fields.
Definition: equation_output.hh:139
FieldCommon
Common abstract parent of all Field<...> classes.
Definition: field_common.hh:77
FieldSet::add_coords_field
void add_coords_field()
Definition: field_set.cc:307
EquationOutput::equation_type_
TimeMark::Type equation_type_
The time mark type of the equation.
Definition: equation_output.hh:132
EquationOutput::get_input_type
static Input::Type::Record & get_input_type()
Definition: equation_output.cc:28
Input::Record::opt_val
bool opt_val(const string &key, Ret &value) const
Definition: accessors_impl.hh:107
Input::Type::Instance
Helper class that stores data of generic types.
Definition: type_generic.hh:89
Input::Type::Record::declare_key
Record & declare_key(const string &key, std::shared_ptr< TypeBase > type, const Default &default_value, const string &description, TypeBase::attribute_map key_attributes=TypeBase::attribute_map())
Declares a new key of the Record.
Definition: type_record.cc:503
FieldCommon::is_bc
bool is_bc() const
Definition: field_common.hh:269
FieldSet
Container for various descendants of FieldCommonBase.
Definition: field_set.hh:159
output_time_set.hh
Input::Type::Selection
Template for classes storing finite set of named values.
Definition: type_selection.hh:65
Input::Type::Record::close
Record & close() const
Close the Record for further declarations of keys.
Definition: type_record.cc:304
OutputTimeSet::read_from_input
void read_from_input(Input::Array in_array, const TimeGovernor &tg)
Definition: output_time_set.cc:35
Input::Type
Definition: balance.hh:41
Input::Type::Record
Record type proxy class.
Definition: type_record.hh:182
FieldCommon::is_multifield
bool is_multifield() const
Definition: field_common.hh:461
observe.hh
TimeStep::eq
bool eq(double other_time) const
Definition: time_governor.hh:191
EquationOutput::output
void output(TimeStep step)
Definition: equation_output.cc:249
input_type.hh
TimeMarks
This class is a collection of time marks to manage various events occurring during simulation time.
Definition: time_marks.hh:206
EquationOutput::observe_fields_
std::unordered_set< string > observe_fields_
Set of observed fields. The observe points are given within the observe stream.
Definition: equation_output.hh:142
Mesh
Definition: mesh.h:362
OutputTime::NODE_DATA
@ NODE_DATA
Definition: output_time.hh:109
OutputTimeSet::get_input_type
static const Input::Type::Array get_input_type()
Definition: output_time_set.cc:17
Input::Type::Array
Class for declaration of inputs sequences.
Definition: type_base.hh:339
TimeGovernor::marks
static TimeMarks & marks()
Definition: time_governor.hh:338
Field::value_list
virtual void value_list(const Armor::array &point_list, const ElementAccessor< spacedim > &elm, std::vector< typename Value::return_type > &value_list) const
Definition: field.hh:459
Input::Array
Accessor to input data conforming to declared Array.
Definition: accessors.hh:566
WarningOut
#define WarningOut()
Macro defining 'warning' record of log.
Definition: logger.hh:278
FieldFlag::equation_input
static constexpr Mask equation_input
The field is data parameter of the owning equation. (default on)
Definition: field_flag.hh:33
OutputTime::CORNER_DATA
@ CORNER_DATA
Definition: output_time.hh:110
MixedPtr< FE_P_disc >
FieldCommon::get_flags
FieldFlag::Flags get_flags() const
Definition: field_common.hh:293
EquationOutput::make_output_type_from_record
const Input::Type::Instance & make_output_type_from_record(Input::Type::Record &in_rec, const string &equation_name, const string &aditional_description="")
Definition: equation_output.cc:117
TimeGovernor::equation_mark_type
TimeMark::Type equation_mark_type() const
Definition: time_governor.hh:475
Armor::Array< double >
assembly_output.hh
EquationOutput::FieldOutputConfig
Configuration of output of one field. Pair of OutputTimeSet and DiscreteSpaces.
Definition: equation_output.hh:53
EquationOutput::FieldOutputConfig::space_flags_
OutputTime::DiscreteSpaceFlags space_flags_
Array of used DiscreteSpaces.
Definition: equation_output.hh:55
FieldCommon::n_comp
unsigned int n_comp() const
Definition: field_common.hh:272
EquationOutput::make_output_mesh
void make_output_mesh(bool parallel)
Definition: equation_output.cc:349
EquationOutput::dh_
std::shared_ptr< DOFHandlerMultiDim > dh_
Objects for distribution of dofs.
Definition: equation_output.hh:160
OutputTime::DiscreteSpace
DiscreteSpace
Definition: output_time.hh:108
FieldCommon::full_comp_name
std::string full_comp_name(unsigned int i_comp) const
Definition: field_common.hh:280
EquationOutput::used_interpolations_
std::set< OutputTime::DiscreteSpace > used_interpolations_
Definition: equation_output.hh:149
EquationOutput::common_output_times_
OutputTimeSet common_output_times_
The time set used for the fields without explicit time set.
Definition: equation_output.hh:136
GenericAssemblyObserve< AssemblyObserveOutput >
time_marks.hh
EquationOutput::output_elem_data_assembly_
GenericAssembly< AssemblyOutputElemData > * output_elem_data_assembly_
general assembly objects, hold assembly objects of appropriate dimension
Definition: equation_output.hh:164
FieldCommon::description
FieldCommon & description(const string &description)
Definition: field_common.hh:128
Field
Class template representing a field with values dependent on: point, element, and region.
Definition: field.hh:92
Input::Type::Parameter
Class for representing parametric types in IST.
Definition: type_generic.hh:53
DebugOut
#define DebugOut()
Macro defining 'debug' record of log.
Definition: logger.hh:284
Input::Type::Selection::add_value
Selection & add_value(const int value, const std::string &key, const std::string &description="", TypeBase::attribute_map attributes=TypeBase::attribute_map())
Adds one new value with name given by key to the Selection.
Definition: type_selection.cc:50
OutputTimeSet
Definition: output_time_set.hh:28
ASSERT_PTR
#define ASSERT_PTR(ptr)
Definition of assert macro checking non-null pointer (PTR) only for debug mode.
Definition: asserts.hh:341
EquationOutput::stream_
std::shared_ptr< OutputTime > stream_
output stream (may be shared by more equation)
Definition: equation_output.hh:130
EquationOutput::equation_fixed_type_
TimeMark::Type equation_fixed_type_
The fixed time mark type of the equation.
Definition: equation_output.hh:134
Input::Type::Default::optional
static Default optional()
The factory function to make an empty default value which is optional.
Definition: type_record.hh:124
OutputTime::N_DISCRETE_SPACES
static const unsigned int N_DISCRETE_SPACES
Definition: output_time.hh:107
EquationOutput::~EquationOutput
~EquationOutput()
Destructor.
Definition: equation_output.cc:77
TimeGovernor::init_time
double init_time() const
Definition: time_governor.hh:536
Input::Array::end
IteratorBase end() const
Definition: accessors_impl.hh:157
EquationOutput::init_field_item
void init_field_item(Input::Iterator< Input::Record > it, const TimeGovernor &tg)
Initialize data of Field given by passed Input::Record.
Definition: equation_output.cc:197
GenericAssembly< AssemblyOutputElemData >
FieldCommon::time
double time() const
Definition: field_common.hh:300
EquationOutput::output_mesh_
std::shared_ptr< OutputMeshBase > output_mesh_
Output mesh.
Definition: equation_output.hh:157
field.hh
OutputTime::NATIVE_DATA
@ NATIVE_DATA
Definition: output_time.hh:112
FieldSet::field
FieldCommon * field(const std::string &field_name) const
Definition: field_set.cc:168
FieldCommon::name
FieldCommon & name(const string &name)
Definition: field_common.hh:121
FieldValue
Definition: field_values.hh:645