37 return Selection(
"Balance_output_format",
"Format of output file for balance.")
45 return Record(
"Balance",
"Balance of a conservative quantity, boundary fluxes and sources.")
47 .
declare_key(
"add_output_times",
Bool(),
Default(
"true"),
"Add all output times of the balanced equation to the balance output times set. " 48 "Note that this is not the time set of the output stream.")
52 "If true, then balance is calculated at each computational time step, which can slow down the program.")
81 : file_prefix_(file_prefix),
85 allocation_done_(false),
87 output_line_counter_(0),
88 output_yaml_header_(false)
174 for (
auto name : names)
181 unsigned int max_dofs_per_boundary)
264 for (
unsigned int c=0; c<n_quant; ++c)
266 chkerr(MatCreateAIJ(PETSC_COMM_WORLD,
271 (
rank_==0)?n_bulk_regs_per_dof:0,
273 (rank_==0)?0:n_bulk_regs_per_dof,
277 chkerr(MatCreateAIJ(PETSC_COMM_WORLD,
282 (rank_==0)?n_bulk_regs_per_dof:0,
284 (rank_==0)?0:n_bulk_regs_per_dof,
288 chkerr(MatCreateAIJ(PETSC_COMM_WORLD,
293 (rank_==0)?n_bulk_regs_per_dof:0,
295 (rank_==0)?0:n_bulk_regs_per_dof,
299 chkerr(MatCreateAIJ(PETSC_COMM_WORLD,
310 chkerr(VecCreateMPI(PETSC_COMM_WORLD,
315 chkerr(VecCreateMPI(PETSC_COMM_WORLD,
320 chkerr(VecCreateMPI(PETSC_COMM_WORLD,
326 chkerr(MatCreateAIJ(PETSC_COMM_WORLD,
338 for (
unsigned int loc_el=0; loc_el<
be_regions_.size(); ++loc_el)
350 chkerr(VecCreateMPI(PETSC_COMM_WORLD,
358 chkerr(VecCreateMPI(PETSC_COMM_WORLD,
369 std::string default_file_name;
478 unsigned int region_idx,
485 PetscInt reg_array[1] = { (int)region_idx };
498 unsigned int boundary_idx,
505 PetscInt elem_array[1] = { int(
be_offset_+boundary_idx) };
517 unsigned int region_idx,
524 PetscInt reg_array[1] = { (int)region_idx };
537 unsigned int region_idx,
548 unsigned int boundary_idx,
562 unsigned int region_idx,
569 PetscInt reg_array[1] = { (int)region_idx };
601 chkerr(VecCreateMPIWithArray(PETSC_COMM_WORLD,
609 chkerr(VecZeroEntries(bulk_vec));
614 chkerr(VecSum(bulk_vec, &sum_sources));
615 VecDestroy(&bulk_vec);
625 chkerr(VecCreateMPIWithArray(PETSC_COMM_WORLD,
633 chkerr(VecZeroEntries(boundary_vec));
639 chkerr(VecScale(temp, -1));
641 chkerr(VecDestroy(&temp));
644 chkerr(VecSum(boundary_vec, &sum_fluxes));
645 chkerr(VecDestroy(&boundary_vec));
662 chkerr(VecCreateMPIWithArray(PETSC_COMM_WORLD,
670 chkerr(VecZeroEntries(bulk_vec));
675 VecDestroy(&bulk_vec);
687 chkerr(VecCreateMPIWithArray(PETSC_COMM_WORLD,
695 chkerr(VecZeroEntries(bulk_vec));
704 const double *sol_array, *mat_array, *rhs_array;
705 chkerr(VecGetLocalSize(solution, &lsize));
706 chkerr(VecDuplicate(solution, &mat_r));
707 chkerr(VecDuplicate(solution, &rhs_r));
708 chkerr(VecGetArrayRead(solution, &sol_array));
714 VecGetArrayRead(mat_r, &mat_array);
715 VecGetArrayRead(rhs_r, &rhs_array);
719 for (
int i=0; i<lsize; ++i)
721 double f = mat_array[i]*sol_array[i] + rhs_array[i];
726 VecRestoreArrayRead(mat_r, &mat_array);
727 VecRestoreArrayRead(rhs_r, &rhs_array);
729 chkerr(VecRestoreArrayRead(solution, &sol_array));
732 VecDestroy(&bulk_vec);
738 chkerr(VecCreateMPIWithArray(PETSC_COMM_WORLD, 1,
740 PETSC_DECIDE, &(
fluxes_[quantity_idx][0]), &boundary_vec));
743 chkerr(VecZeroEntries(boundary_vec));
749 chkerr(VecScale(temp, -1));
755 const double *flux_array;
757 chkerr(VecGetArrayRead(temp, &flux_array));
758 chkerr(VecGetLocalSize(temp, &lsize));
759 for (
int e=0; e<lsize; ++e)
761 if (flux_array[e] < 0)
764 fluxes_in_[quantity_idx][be_regions_[e]] += flux_array[e];
766 chkerr(VecRestoreArrayRead(temp, &flux_array));
768 VecDestroy(&boundary_vec);
785 const int buf_size = n_quant*2*n_blk_reg + n_quant*2*n_bdr_reg;
786 double sendbuffer[buf_size], recvbuffer[buf_size];
787 for (
unsigned int qi=0; qi<n_quant; qi++)
789 for (
unsigned int ri=0; ri<n_blk_reg; ri++)
791 sendbuffer[qi*2*n_blk_reg + + ri] =
sources_in_[qi][ri];
792 sendbuffer[qi*2*n_blk_reg + n_blk_reg + ri] =
sources_out_[qi][ri];
794 for (
unsigned int ri=0; ri<n_bdr_reg; ri++)
796 sendbuffer[n_quant*2*n_blk_reg + qi*2*n_bdr_reg + + ri] =
fluxes_in_[qi][ri];
797 sendbuffer[n_quant*2*n_blk_reg + qi*2*n_bdr_reg + n_bdr_reg + ri] =
fluxes_out_[qi][ri];
807 for (
unsigned int qi=0; qi<n_quant; qi++)
809 for (
unsigned int ri=0; ri<n_blk_reg; ri++)
811 sources_in_[qi][ri] = recvbuffer[qi*2*n_blk_reg + + ri];
812 sources_out_[qi][ri] = recvbuffer[qi*2*n_blk_reg + n_blk_reg + ri];
814 for (
unsigned int ri=0; ri<n_bdr_reg; ri++)
816 fluxes_in_[qi][ri] = recvbuffer[n_quant*2*n_blk_reg + qi*2*n_bdr_reg + + ri];
817 fluxes_out_[qi][ri] = recvbuffer[n_quant*2*n_blk_reg + qi*2*n_bdr_reg + n_bdr_reg + ri];
837 for( RegionSet::const_iterator reg = b_set.begin(); reg != b_set.end(); ++reg)
839 for (
unsigned int qi=0; qi<n_quant; qi++)
849 for( RegionSet::const_iterator reg = bulk_set.begin(); reg != bulk_set.end(); ++reg)
851 for (
unsigned int qi=0; qi<n_quant; qi++)
867 for (
unsigned int qi=0; qi<n_quant; qi++)
872 for (
unsigned int qi=0; qi<n_quant; qi++)
912 if (
rank_ != 0)
return;
919 unsigned int wl = 2*(w-5)+7;
920 string bc_head_format =
"# %-*s%-*s%-*s%-*s%-*s%-*s\n",
921 bc_format =
"%*s%-*d%-*s%-*s%-*g%-*g%-*g\n",
922 bc_total_format =
"# %-*s%-*s%-*g%-*g%-*g\n";
924 output_ <<
"# " << setw((w*c+wl-14)/2) << setfill(
'-') <<
"--" 926 << setw((w*c+wl-14)/2) << setfill(
'-') <<
"" << endl
927 <<
"# Time: " << time <<
"\n\n\n";
930 output_ <<
"# Mass flux through boundary [M/T]:\n# " 931 << setiosflags(ios::left) << setfill(
' ')
932 << setw(w) <<
"[boundary_id]" 933 << setw(wl) <<
"[label]" 934 << setw(w) <<
"[substance]" 935 << setw(w) <<
"[total flux]" 936 << setw(w) <<
"[outward flux]" 937 << setw(w) <<
"[inward flux]" 941 output_ <<
"# " << setw(w*c+wl) << setfill(
'-') <<
"" << setfill(
' ') << endl;
945 for( RegionSet::const_iterator reg = b_set.begin(); reg != b_set.end(); ++reg) {
946 for (
unsigned int qi=0; qi<n_quant; qi++) {
948 << setw(w) << (int)reg->id()
949 << setw(wl) << reg->label().c_str()
951 << setw(w) <<
fluxes_[qi][reg->boundary_idx()]
953 << setw(w) <<
fluxes_in_[qi][reg->boundary_idx()]
959 output_ <<
"# " << setw(w*c+wl) << setfill(
'-') <<
"" << setfill(
' ') << endl;
962 for (
unsigned int qi=0; qi<n_quant; qi++)
963 output_ <<
"# " << setiosflags(ios::left)
964 << setw(w+wl) <<
"Total mass flux of substance [M/T]" 974 string src_head_format =
"# %-*s%-*s%-*s%-*s%-*s\n",
975 src_format =
"%*s%-*d%-*s%-*s%-*g%-*g\n",
976 src_total_format =
"# %-*s%-*s%-*g%-*g\n";
977 output_ <<
"# Mass [M] and sources [M/T] on regions:\n" 978 <<
"# " << setiosflags(ios::left)
979 << setw(w) <<
"[region_id]" 980 << setw(wl) <<
"[label]" 981 << setw(w) <<
"[substance]" 982 << setw(w) <<
"[total_mass]" 983 << setw(w) <<
"[total_source]" 987 output_ <<
"# " << setw(w*c+wl) << setfill(
'-') <<
"" << setfill(
' ') << endl;
991 for( RegionSet::const_iterator reg = bulk_set.begin(); reg != bulk_set.end(); ++reg)
993 for (
unsigned int qi=0; qi<n_quant; qi++)
996 << setw(w) << (int)reg->id()
997 << setw(wl) << reg->label().c_str()
999 << setw(w) <<
masses_[qi][reg->bulk_idx()]
1000 << setw(w) <<
sources_[qi][reg->bulk_idx()]
1006 output_ <<
"# " << setw(w*c+wl) << setfill(
'-') <<
"" << setfill(
' ') << endl;
1009 for (
unsigned int qi=0; qi<n_quant; qi++)
1010 output_ <<
"# " << setiosflags(ios::left) << setw(w+wl) <<
"Total mass [M] and sources [M/T]" 1019 output_ <<
"\n\n# Cumulative mass balance on time interval [" 1021 << setiosflags(ios::left) << time <<
"]\n" 1022 <<
"# Initial mass [M] + sources integrated over time [M] - flux integrated over time [M] = current mass [M]\n" 1023 <<
"# " << setiosflags(ios::left)
1024 << setw(w) <<
"[substance]" 1025 << setw(w) <<
"[A=init. mass]" 1026 << setw(w) <<
"[B=source]" 1027 << setw(w) <<
"[C=flux]" 1028 << setw(w) <<
"[A+B-C]" 1029 << setw(w) <<
"[D=curr. mass]" 1030 << setw(w) <<
"[A+B-C-D=err.]" 1031 << setw(w) <<
"[rel. error]" 1034 for (
unsigned int qi=0; qi<n_quant; qi++)
1037 output_ <<
" " << setiosflags(ios::left)
1056 std::stringstream ss;
1057 for (
unsigned int i=0; i<cnt; i++) ss <<
format_csv_val(0, delimiter);
1065 if (
rank_ != 0)
return;
1074 for( RegionSet::const_iterator reg = bulk_set.begin(); reg != bulk_set.end(); ++reg)
1076 for (
unsigned int qi=0; qi<n_quant; qi++)
1096 for( RegionSet::const_iterator reg = b_set.begin(); reg != b_set.end(); ++reg)
1098 for (
unsigned int qi=0; qi<n_quant; qi++) {
1115 for (
unsigned int qi=0; qi<n_quant; qi++)
1145 std::stringstream ss;
1146 if (delimiter ==
' ') {
1152 output_ << comment_string << ss.str()
1172 std::stringstream ss;
1173 std::replace( val.begin(), val.end(),
'\"',
'\'');
1175 if (!initial) ss << delimiter;
1176 if (delimiter ==
' ') {
1177 std::stringstream sval;
1178 sval <<
"\"" << val <<
"\"";
1181 ss <<
"\"" << val <<
"\"";
1189 std::stringstream ss;
1191 if (!initial) ss << delimiter;
1192 if (delimiter ==
' ') {
1210 output_yaml_ <<
"column_names: [ flux, flux_in, flux_out, mass, source, source_in, source_out, flux_increment, " 1211 <<
"source_increment, flux_cumulative, source_cumulative, error ]" << endl;
1220 for( RegionSet::const_iterator reg = bulk_set.begin(); reg != bulk_set.end(); ++reg)
1222 for (
unsigned int qi=0; qi<n_quant; qi++)
1225 output_yaml_ << setw(4) <<
"" <<
"region: " << reg->label() << endl;
1227 output_yaml_ << setw(4) <<
"" <<
"data: " <<
"[ 0, 0, 0, " <<
masses_[qi][reg->bulk_idx()] <<
", " 1229 <<
sources_out_[qi][reg->bulk_idx()] <<
", 0, 0, 0, 0, 0 ]" << endl;
1235 for( RegionSet::const_iterator reg = b_set.begin(); reg != b_set.end(); ++reg)
1237 for (
unsigned int qi=0; qi<n_quant; qi++) {
1239 output_yaml_ << setw(4) <<
"" <<
"region: " << reg->label() << endl;
1241 output_yaml_ << setw(4) <<
"" <<
"data: " <<
"[ " <<
fluxes_[qi][reg->boundary_idx()] <<
", " 1243 <<
", 0, 0, 0, 0, 0, 0, 0, 0, 0 ]" << endl;
1249 for (
unsigned int qi=0; qi<n_quant; qi++)
1253 output_yaml_ << setw(4) <<
"" <<
"region: ALL" << endl;
1261 << error <<
" ]" << endl;
UnitSI units_
Units of conserved quantities.
static const Input::Type::Record & get_input_type()
Main balance input record type.
std::vector< double > integrated_sources_
unsigned int add_quantity(const string &name)
std::vector< double > sum_fluxes_out_
void calculate_mass(unsigned int quantity_idx, const Vec &solution, vector< double > &output_array)
TimeMark::Type output_mark_type_
TimeMark type for output of particular equation.
void allocate(unsigned int n_loc_dofs, unsigned int max_dofs_per_boundary)
TimeMark::Type balance_output_type_
TimeMark type for balance output of particular equation.
unsigned int * boundary_idx_
std::string format_text() const
void finish_source_assembly(unsigned int quantity_idx)
This method must be called after assembling the matrix and vectors for computing source.
unsigned int bulk_size() const
void add_mass_vec_value(unsigned int quantity_idx, unsigned int region_idx, double value)
bool initial_
true before calculating the mass at initial time, otherwise false
std::vector< std::vector< double > > sources_in_
void add_cumulative_source(unsigned int quantity_idx, double source)
std::vector< std::vector< double > > fluxes_in_
std::vector< double > sum_fluxes_in_
std::vector< std::vector< double > > fluxes_out_
const TimeGovernor * time_
void add_source_vec_values(unsigned int quantity_idx, unsigned int region_idx, const std::vector< int > &dof_values, const std::vector< double > &values)
Vec ones_
auxiliary vectors for summation of matrix columns
Mat * region_source_rhs_
Matrices for calculation of signed source (n_dofs x n_bulk_regions).
RegionSet get_region_set(const string &set_name) const
void add_mass_matrix_values(unsigned int quantity_idx, unsigned int region_idx, const std::vector< int > &dof_indices, const std::vector< double > &values)
Input::Record input_record_
Record for current balance.
ofstream output_
Handle for file for output in given OutputFormat of balance and total fluxes over individual regions ...
void read_from_input(Input::Array in_array, const TimeGovernor &tg)
#define FOR_ELEMENT_SIDES(i, j)
void chkerr(unsigned int ierr)
Replacement of new/delete operator in the spirit of xmalloc.
void output_legacy(double time)
Perform output in old format (for compatibility)
int * get_el_4_loc() const
const RegionDB & region_db() const
#define ASSERT(expr)
Allow use shorter versions of macro names if these names is not used with external library...
const TimeStep & step(int index=-1) const
bool allocation_done_
true before allocating necessary internal structures (Petsc matrices etc.)
void calculate_cumulative(unsigned int quantity_idx, const Vec &solution)
Basic time management functionality for unsteady (and steady) solvers (class Equation).
static TimeMarks & marks()
#define MPI_Reduce(sendbuf, recvbuf, count, datatype, op, root, comm)
void calculate_instant(unsigned int quantity_idx, const Vec &solution)
void add_flux_vec_value(unsigned int quantity_idx, unsigned int boundary_idx, double value)
Basic time management class.
std::vector< double > sum_fluxes_
bool balance_on_
If the balance is on. Balance is off in the case of no balance output time marks. ...
static constexpr bool value
std::vector< double > increment_sources_
Vec * be_flux_vec_
Vectors for calculation of flux (n_boundary_edges).
static void set_yaml_output()
Set global variable to output balance files into YAML format (in addition to the table format)...
static const Input::Type::Selection & get_format_selection_input_type()
Input selection for file format.
std::vector< double > integrated_fluxes_
unsigned int boundary_idx() const
Returns index of the region in the boundary set.
std::vector< Quantity > quantities_
Names of conserved quantities.
std::string csv_zero_vals(unsigned int cnt, char delimiter)
Return part of output represented by zero values. Count of zero values is given by cnt parameter...
std::vector< std::vector< double > > sources_out_
Mat * be_flux_matrix_
Matrices for calculation of flux (n_boundary_edges x n_dofs).
double last_time_
time of last calculated balance
void open_stream(Stream &stream) const
std::vector< std::vector< double > > fluxes_
void finish_mass_assembly(unsigned int quantity_idx)
This method must be called after assembling the matrix for computing mass.
TimeMark::Type equation_fixed_mark_type() const
void format_csv_output_header(char delimiter, const std::string &comment_string)
Print output header.
TimeMark::Type equation_mark_type() const
void init_from_input(const Input::Record &in_rec, TimeGovernor &tg)
Mat * region_mass_matrix_
Matrices for calculation of mass (n_dofs x n_bulk_regions).
std::vector< std::vector< double > > sources_
std::vector< double > sum_sources_out_
unsigned int max_dofs_per_boundary_
bool cumulative_
if true then cumulative balance is computed
Mat * region_source_matrix_
Matrices for calculation of source (n_dofs x n_bulk_regions).
std::vector< double > increment_fluxes_
void chkerr_assert(unsigned int ierr)
SideIter side(const unsigned int loc_index)
bool is_current()
Returns true if the current time step is marked for the balance output.
Balance(const std::string &file_prefix, const Mesh *mesh)
void output_csv(double time, char delimiter, const std::string &comment_string, unsigned int repeat=0)
Perform output in csv format.
void add_flux_matrix_values(unsigned int quantity_idx, unsigned int boundary_idx, const std::vector< int > &dof_indices, const std::vector< double > &values)
Distribution * get_el_ds() const
static bool do_yaml_output_
std::vector< unsigned int > add_quantities(const std::vector< string > &names)
Dedicated class for storing path to input and output files.
void output_yaml(double time)
Perform output in yaml format.
void output()
Perform output to file for given time instant.
std::vector< double > sum_sources_
void start_flux_assembly(unsigned int quantity_idx)
std::vector< double > initial_mass_
static const unsigned int output_column_width
Size of column in output (used if delimiter is space)
#define ASSERT_PTR(ptr)
Definition of assert macro checking non-null pointer (PTR)
unsigned int boundary_size() const
void finish_flux_assembly(unsigned int quantity_idx)
This method must be called after assembling the matrix and vector for computing flux.
std::vector< unsigned int > be_regions_
Number of boundary region for each local boundary edge.
OutputFormat output_format_
Format of output file.
static const Input::Type::Array get_input_type()
void units(const UnitSI &unit)
Setter for units of conserved quantities.
int be_offset_
Offset for local part of vector of boundary edges.
std::vector< std::vector< double > > masses_
Vec * region_source_vec_
Vectors for calculation of source (n_bulk_regions).
void start_mass_assembly(unsigned int quantity_idx)
std::vector< double > sum_masses_
Vec * region_mass_vec_
Vectors for calculation of mass (n_bulk_regions).
unsigned int output_line_counter_
hold count of line printed into output_
bool add_output_times_
Add output time marks to balance output time marks.
Class for representation SI units of Fields.
unsigned int n_loc_dofs_
Allocation parameters. Set by the allocate method used in the lazy_initialize.
void add_source_matrix_values(unsigned int quantity_idx, unsigned int region_idx, const std::vector< int > &dof_indices, const std::vector< double > &values)
void undef(bool val=true)
void start_source_assembly(unsigned int quantity_idx)
FilePath balance_output_file_
File path for output_ stream.
std::string file_prefix_
Save prefix passed in in constructor.
bool output_yaml_header_
marks whether YAML output has printed header
std::string format_csv_val(std::string val, char delimiter, bool initial=false)
Format string value of csv output. Wrap string into quotes and if delimiter is space, align text to column.
ElementVector element
Vector of elements of the mesh.
std::vector< double > sum_sources_in_
unsigned int lsize(int proc) const
get local size