35 using namespace
Input::Type;
38 return Record(
"vtk",
"Parameters of vtk output format.")
42 "Variant of output stream file format.")
45 "Parallel or serial version of file format.")
51 return Selection(
"VTK variant (ascii or binary)")
53 "ASCII variant of VTK file format")
55 "Uncompressed appended binary XML VTK format without usage of base64 encoding of appended data.")
56 #ifdef FLOW123D_HAVE_ZLIB 58 "Appended binary XML VTK format without usage of base64 encoding of appended data. Compressed with ZLib.")
59 #endif // FLOW123D_HAVE_ZLIB 92 this->
parallel_ = format_rec.val<
bool>(
"parallel");
114 << std::setw(6) << std::setfill(
'0') <<
current_step <<
"." << rank <<
".vtu";
118 << std::setw(6) << std::setfill(
'0') <<
current_step <<
".vtu";
126 <<
"<DataSet timestep=\"" << step
127 <<
"\" group=\"\" part=\"" << rank
128 <<
"\" file=\"" << file
150 if (this->
rank == 0) {
158 double corrected_time = (isfinite(this->
time)?this->
time:0);
161 for (
int i_rank=0; i_rank<
n_proc; ++i_rank) {
182 <<
", rank: " << this->
rank 183 <<
") file: " << frame_file_name <<
" ... ";
208 if(this->
rank == 0) {
222 file <<
"<?xml version=\"1.0\"?>" << endl;
225 file <<
"<VTKFile type=\"UnstructuredGrid\" version=\"0.1\" byte_order=\"LittleEndian\"";
227 file <<
" header_type=\"UInt64\"";
229 if ( this->
variant_type_ == VTKVariant::VARIANT_BINARY_ZLIB ) {
230 file <<
" compressor=\"vtkZLibDataCompressor\"";
233 file <<
"<UnstructuredGrid>" << endl;
240 auto &offsets = *( this->
offsets_->get_component_data(0).get() );
241 unsigned int n_elements = offsets.size();
247 n_nodes = offsets[0];
260 for(
unsigned int i=1; i < n_elements; i++)
262 n_nodes = offsets[i]-offsets[i-1];
285 "Int8",
"UInt8",
"Int16",
"UInt16",
"Int32",
"UInt32",
"Float32",
"Float64" };
289 file <<
"<DataArray type=\"" << types[output_data->vtk_type()] <<
"\" ";
291 if( ! output_data->field_input_name().empty())
292 file <<
"Name=\"" << output_data->field_input_name() <<
"\" ";
294 if (output_data->n_elem() > 1)
297 <<
"NumberOfComponents=\"" << output_data->n_elem() <<
"\" ";
305 output_data->print_ascii_all(file);
306 file <<
"\n</DataArray>" << endl;
309 double range_min, range_max;
310 output_data->get_min_max_range(range_min, range_max);
312 file <<
"RangeMin=\"" << range_min <<
"\" RangeMax=\"" << range_max <<
"\"/>" << endl;
313 if ( this->
variant_type_ == VTKVariant::VARIANT_BINARY_UNCOMPRESSED ) {
316 stringstream uncompressed_data, compressed_data;
317 output_data->print_binary_all( uncompressed_data,
false );
328 static const size_t BUF_SIZE = 32 * 1024;
330 string uncompressed_string = uncompressed_stream.str();
331 uLong uncompressed_size = uncompressed_string.size();
332 stringstream compressed_data;
334 uLong count_of_blocks = (uncompressed_size + BUF_SIZE - 1) / BUF_SIZE;
335 uLong last_block_size = (uncompressed_size % BUF_SIZE);
336 compressed_stream.write(reinterpret_cast<const char*>(&count_of_blocks),
sizeof(
unsigned long long int));
337 compressed_stream.write(reinterpret_cast<const char*>(&BUF_SIZE),
sizeof(
unsigned long long int));
338 compressed_stream.write(reinterpret_cast<const char*>(&last_block_size),
sizeof(
unsigned long long int));
340 for (uLong i=0; i<count_of_blocks; ++i) {
342 std::string data_block = uncompressed_string.substr(i*BUF_SIZE, BUF_SIZE);
343 uLong data_block_size = data_block.size();
346 uint8_t temp_buffer[BUF_SIZE];
352 strm.next_in =
reinterpret_cast<uint8_t *
>(&data_block[0]);
353 strm.avail_in = data_block_size;
354 strm.next_out = temp_buffer;
355 strm.avail_out = BUF_SIZE;
358 deflateInit(&strm, Z_BEST_COMPRESSION);
359 while (strm.avail_in != 0) {
360 int res = deflate(&strm, Z_NO_FLUSH);
362 if (strm.avail_out == 0) {
363 buffer.insert(buffer.end(), temp_buffer, temp_buffer + BUF_SIZE);
364 strm.next_out = temp_buffer;
365 strm.avail_out = BUF_SIZE;
368 int deflate_res = Z_OK;
369 while (deflate_res == Z_OK) {
370 if (strm.avail_out == 0) {
371 buffer.insert(buffer.end(), temp_buffer, temp_buffer + BUF_SIZE);
372 strm.next_out = temp_buffer;
373 strm.avail_out = BUF_SIZE;
375 deflate_res = deflate(&strm, Z_FINISH);
377 ASSERT_EQ(deflate_res, Z_STREAM_END).error();
378 buffer.insert(buffer.end(), temp_buffer, temp_buffer + BUF_SIZE - strm.avail_out);
382 std::string str(buffer.begin(), buffer.end());
383 uLong compressed_data_size = str.size();
384 compressed_stream.write(reinterpret_cast<const char*>(&compressed_data_size),
sizeof(
unsigned long long int));
385 compressed_data << str;
388 compressed_stream << compressed_data.str();
404 if (output_data_vec.empty())
return;
406 file <<
"Scalars=\"";
411 file <<
"Vectors=\"";
416 file <<
"Tensors=\"";
429 node_corner_data.insert(node_corner_data.end(),
432 if( ! node_corner_data.empty() ) {
434 file <<
"<PointData ";
445 file <<
"</PointData>" << endl;
455 if (data_map.empty())
return;
458 file <<
"<CellData ";
466 file <<
"</CellData>" << endl;
475 if (data_map.empty())
return;
478 file <<
"<Flow123dData ";
484 file <<
"<DataArray type=\"Float64\" ";
485 file <<
"Name=\"" << output_data->field_input_name() <<
"\" ";
487 file <<
"dof_handler_hash=\"" << output_data->dof_handler_hash() <<
"\" ";
488 file <<
"n_dofs_per_element=\"" << output_data->n_elem() <<
"\"";
493 file << std::fixed << std::setprecision(10);
494 output_data->print_ascii_all(file);
495 file <<
"\n</DataArray>" << endl;
498 double range_min, range_max;
499 output_data->get_min_max_range(range_min, range_max);
501 file <<
"RangeMin=\"" << range_min <<
"\" RangeMax=\"" << range_max <<
"\"/>" << endl;
502 if ( this->
variant_type_ == VTKVariant::VARIANT_BINARY_UNCOMPRESSED ) {
505 stringstream uncompressed_data, compressed_data;
506 output_data->print_binary_all( uncompressed_data,
false );
514 file <<
"</Flow123dData>" << endl;
522 file <<
"</UnstructuredGrid>" << endl;
525 file <<
"<AppendedData encoding=\"raw\">" << endl;
528 file <<
"</AppendedData>" << endl;
530 file <<
"</VTKFile>" << endl;
542 file <<
"<Piece NumberOfPoints=\"" << this->
nodes_->n_values()
543 <<
"\" NumberOfCells=\"" << this->
offsets_->n_values() <<
"\">" << endl;
546 file <<
"<Points>" << endl;
548 file <<
"</Points>" << endl;
551 file <<
"<Cells>" << endl;
556 file <<
"</Cells>" << endl;
568 file <<
"</Piece>" << endl;
579 if(this->
rank != 0) {
585 this->
_base_file <<
"<?xml version=\"1.0\"?>" << endl;
586 this->
_base_file <<
"<VTKFile type=\"Collection\" version=\"0.1\" byte_order=\"LittleEndian\">" << endl;
598 if(this->
rank != 0) {
Classes for auxiliary output mesh.
Input::Record input_record_
void fix_main_file_extension(std::string extension)
static const std::vector< std::string > formats
Formats of DataArray section.
std::shared_ptr< ElementDataCache< unsigned int > > connectivity_
Vector maps the nodes to their coordinates in vector nodes_.
static const Input::Type::Record & get_input_type()
The definition of input record for vtk file format.
void write_vtk_field_data(OutputDataFieldVec &output_data_map)
std::shared_ptr< ElementDataCache< unsigned int > > fill_element_types_data()
Fills the data cache with VTK element types indicators.
void write_vtk_vtu(void)
This function write all scalar and vector data on nodes and elements to the VTK file (...
std::shared_ptr< ElementDataCache< unsigned int > > offsets_
Vector of offsets of node indices of elements. Maps elements to their nodes in connectivity_.
void write_vtk_data(OutputDataPtr output_data)
double convert_unit_from(std::string actual_unit) const
Convert and check user-defined unit.
static const int registrar
Registrar of class to factory.
static Input::Type::Abstract & get_input_format_type()
The specification of output file format.
std::shared_ptr< ElementDataCacheBase > OutputDataPtr
std::shared_ptr< ElementDataCache< double > > nodes_
Vector of node coordinates. [spacedim x n_nodes].
string main_output_basename_
Basename of main output file (without extension)
#define ASSERT(expr)
Allow use shorter versions of macro names if these names is not used with external library...
int write_head(void)
This function writes header of VTK (.pvd) file format.
string main_output_dir_
Main output file directory.
void write_vtk_element_data(void)
Write data on elements to the VTK file (.vtu)
#define LogOut()
Macro defining 'log' record of log.
VTKVariant
The declaration enumeration used for variant of file VTK format.
bool parallel_
Parallel or serial version of file format (parallel has effect only for VTK)
void open_stream(Stream &stream) const
int write_data(void)
This function write data to VTK (.pvd) file format for curent time.
ostringstream appended_data_
void write_vtk_vtu_tail(void)
Write tail of VTK file (.vtu)
This class is used for output data to VTK file format.
string parent_path() const
int write_tail(void)
This function writes tail of VTK (.pvd) file format.
void set_stream_precision(std::ofstream &stream)
string unit_string_
String representation of time unit.
~OutputVTK()
The destructor of this class. It writes tail of the file too.
void write_vtk_native_data(void)
Write native data (part of our own data skipped by Paraview) to the VTK file (.vtu) ...
Dedicated class for storing path to input and output files.
virtual void init_from_input(const std::string &equation_name, const Input::Record &in_rec, std::string unit_str)
Constructor of OutputTime object. It opens base file for writing.
OutputVTK()
The constructor of this class. The head of file is written, when constructor is called.
#define ASSERT_PTR(ptr)
Definition of assert macro checking non-null pointer (PTR)
string form_vtu_filename_(string basename, int i_step, int rank)
VTKVariant variant_type_
Output format (ascii, binary or binary compressed)
void write_vtk_node_data(void)
Write data on nodes to the VTK file (.vtu)
string pvd_dataset_line(double step, int rank, string file)
OutputDataFieldVec output_data_vec_[N_DISCRETE_SPACES]
void compress_data(stringstream &uncompressed_stream, stringstream &compressed_stream)
bool enable_refinement_
Auxiliary flag for refinement enabling, due to gmsh format.
void write_vtk_vtu_head(void)
Write header of VTK file (.vtu)
Class for representation SI units of Fields.
void init_from_input(const std::string &equation_name, const Input::Record &in_rec, std::string unit_str) override
Override OutputTime::init_from_input.
#define FLOW123D_FORCE_LINK_IN_CHILD(x)
#define ASSERT_EQ(a, b)
Definition of comparative assert macro (EQual)
static const Input::Type::Selection & get_input_type_variant()
The definition of input record for selection of variant of file format.
void write_vtk_data_names(ofstream &file, OutputDataFieldVec &output_data_map)
Write names of data sets in output_data vector that have value type equal to type. Output is done into stream file.