29 #include "boost/lexical_cast.hpp"
41 tok_.set_comment_pattern(
"#");
56 using namespace boost;
59 tok_.set_position( Tokenizer::Position() );
61 if (!
tok_.skip_to(
"$Nodes"))
THROW(ExcMissingSection() << EI_Section(
"$Nodes") << EI_GMSHFile(
tok_.f_name()) );
63 tok_.next_line(
false);
64 n_nodes = lexical_cast<unsigned int> (*
tok_);
66 if (n_nodes == 0)
THROW( ExcZeroNodes() << EI_Position(
tok_.position_msg()) );
69 for (
unsigned int i = 0; i < n_nodes; ++i) {
72 unsigned int id = lexical_cast<unsigned int> (*
tok_); ++
tok_;
74 coords(0) = lexical_cast<double> (*
tok_); ++
tok_;
75 coords(1) = lexical_cast<double> (*
tok_); ++
tok_;
76 coords(2) = lexical_cast<double> (*
tok_); ++
tok_;
82 }
catch (bad_lexical_cast &) {
83 THROW(ExcWrongFormat() << EI_Type(
"number") << EI_TokenizerMsg(
tok_.position_msg()) << EI_MeshFile(
tok_.f_name()) );
85 MessageOut().fmt(
"... {} nodes read. \n", n_nodes);
90 using namespace boost;
93 if (!
tok_.skip_to(
"$Elements"))
THROW(ExcMissingSection() << EI_Section(
"$Elements") << EI_GMSHFile(
tok_.f_name()) );
95 tok_.next_line(
false);
96 unsigned int n_elements = lexical_cast<unsigned int> (*
tok_);
97 if (n_elements == 0)
THROW( ExcZeroElements() << EI_Position(
tok_.position_msg()) );
105 for (
unsigned int i = 0; i < n_elements; ++i) {
107 unsigned int id = lexical_cast<unsigned int>(*
tok_); ++
tok_;
114 unsigned int type = lexical_cast<unsigned int>(*
tok_); ++
tok_;
131 THROW(ExcUnsupportedType() << EI_ElementId(
id) << EI_ElementType(type) << EI_GMSHFile(
tok_.f_name()) );
136 unsigned int n_tags = lexical_cast<unsigned int>(*
tok_);
137 if (n_tags < 2)
THROW( ExcTooManyElementTags() << EI_ElementId(
id) << EI_Position(
tok_.position_msg()) );
141 unsigned int region_id = lexical_cast<unsigned int>(*
tok_); ++
tok_;
142 lexical_cast<unsigned int>(*
tok_); ++
tok_;
144 unsigned int partition_id = 0;
145 if (n_tags > 2) { partition_id = lexical_cast<unsigned int>(*
tok_); ++
tok_; }
146 for (
unsigned int ti = 3; ti < n_tags; ti++) ++
tok_;
148 for (
unsigned int ni=0; ni<dim+1; ++ni) {
149 node_ids[ni] = lexical_cast<unsigned int>(*
tok_);
152 mesh->
add_element(
id, dim, region_id, partition_id, node_ids);
155 }
catch (bad_lexical_cast &) {
156 THROW(ExcWrongFormat() << EI_Type(
"number") << EI_TokenizerMsg(
tok_.position_msg()) << EI_MeshFile(
tok_.f_name()) );
160 MessageOut().fmt(
"... {} bulk elements, {} boundary elements. \n", mesh->
n_elements(), n_read_boundary);
166 ASSERT(mesh).error(
"Argument mesh is NULL.\n");
168 using namespace boost;
170 if (!
tok_.skip_to(
"$PhysicalNames",
"$Nodes") )
return;
172 tok_.next_line(
false);
173 unsigned int n_physicals = lexical_cast<unsigned int> (*
tok_);
176 for (
unsigned int i = 0; i < n_physicals; ++i) {
181 unsigned int dim = lexical_cast<unsigned int>(*
tok_); ++
tok_;
182 unsigned int id = lexical_cast<unsigned int>(*
tok_); ++
tok_;
187 }
catch (bad_lexical_cast &) {
188 THROW(ExcWrongFormat() << EI_Type(
"number") << EI_TokenizerMsg(
tok_.position_msg()) << EI_MeshFile(
tok_.f_name()) );
197 using namespace boost;
200 tok_.next_line(
false);
201 unsigned int n_str = lexical_cast<unsigned int>(*
tok_); ++
tok_;
205 tok_.next_line(); n_str--;
209 tok_.next_line(); n_str--;
212 for(;n_str>0;n_str--)
tok_.next_line(
false);
216 unsigned int n_real = lexical_cast<unsigned int>(*
tok_); ++
tok_;
219 tok_.next_line(); n_real--;
222 for(;n_real>0;n_real--)
tok_.next_line(
false);
226 unsigned int n_int = lexical_cast<unsigned int>(*
tok_); ++
tok_;
232 tok_.next_line(); n_int--;
236 tok_.next_line(); n_int--;
240 tok_.next_line(); n_int--;
243 for(;n_int>0;n_int--)
tok_.next_line(
false);
246 }
catch (bad_lexical_cast &) {
247 THROW(ExcWrongFormat() << EI_Type(
"$ElementData header") << EI_TokenizerMsg(
tok_.position_msg()) << EI_MeshFile(
tok_.f_name()) );
254 bool boundary_domain) {
255 unsigned int id, i_row;
256 unsigned int n_read = 0;
265 for (i_row = 0; i_row < actual_header.
n_entities; ++i_row)
268 id = boost::lexical_cast<unsigned int>(*
tok_); ++
tok_;
270 while (id_iter != el_ids.end() && *id_iter < (
int)
id) {
273 if (id_iter == el_ids.end()) {
274 WarningOut().fmt(
"In file '{}', '$ElementData' section for field '{}', time: {}.\nData ID {} not found or is not in order. Skipping rest of data.\n",
279 if (*id_iter == (
int)
id) {
284 }
catch (boost::bad_lexical_cast &) {
285 THROW(ExcWrongFormat() << EI_Type(
"$ElementData line") << EI_TokenizerMsg(
tok_.position_msg())
286 << EI_MeshFile(
tok_.f_name()) );
289 while (i_row < actual_header.
n_entities)
tok_.next_line(
false), ++i_row;
291 LogOut().fmt(
"time: {}; {} entities of field {} read.\n",
301 while ( !
tok_.eof() ) {
302 if (
tok_.skip_to(
"$ElementData") ) {
308 vec.push_back(header);
310 }
else if ( header.
time <=
it->second.back().time ) {
311 WarningOut().fmt(
"Wrong time order: field '{}', time '{}', file '{}'. Skipping this '$ElementData' section.\n",
314 it->second.push_back(header);
319 tok_.set_position( Tokenizer::Position() );
327 if (header_query.
discretization != OutputTime::DiscreteSpace::ELEM_DATA) {
328 if (header_query.
discretization != OutputTime::DiscreteSpace::UNDEFINED && header_query.
discretization != OutputTime::DiscreteSpace::NATIVE_DATA) {
330 "Unsupported discretization for field '{}', time: {} and GMSH format.\nType 'ELEM_DATA' of discretization will be used.\n",
333 header_query.
discretization = OutputTime::DiscreteSpace::ELEM_DATA;
340 THROW( ExcFieldNameNotFound() << EI_FieldName(header_query.
field_name) << EI_MeshFile(
tok_.f_name()));
344 return t * (1.0 + 2.0*numeric_limits<double>::epsilon()) < a.time;
348 table_it->second.end(),
352 if (headers_it == table_it->second.begin()) {
354 << EI_MeshFile(
tok_.f_name()) << EI_Time(header_query.
time));