libMesh
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FEMSystem, TimeSolver and NewtonSolver will handle most tasks, but we must specify element residuals. More...
#include <curl_curl_system.h>
Public Types | |
typedef FEMSystem | sys_type |
The type of system. More... | |
typedef DifferentiableSystem | Parent |
The type of the parent. More... | |
typedef bool(TimeSolver::* | TimeSolverResPtr) (bool, DiffContext &) |
Syntax sugar to make numerical_jacobian() declaration easier. More... | |
typedef std::map< std::string, SparseMatrix< Number > * >::iterator | matrices_iterator |
Matrix iterator typedefs. More... | |
typedef std::map< std::string, SparseMatrix< Number > * >::const_iterator | const_matrices_iterator |
typedef Number(* | ValueFunctionPointer) (const Point &p, const Parameters &Parameters, const std::string &sys_name, const std::string &unknown_name) |
Projects arbitrary functions onto the current solution. More... | |
typedef Gradient(* | GradientFunctionPointer) (const Point &p, const Parameters ¶meters, const std::string &sys_name, const std::string &unknown_name) |
typedef std::map< std::string, NumericVector< Number > * >::iterator | vectors_iterator |
Vector iterator typedefs. More... | |
typedef std::map< std::string, NumericVector< Number > * >::const_iterator | const_vectors_iterator |
Public Member Functions | |
CurlCurlSystem (EquationSystems &es, const std::string &name, const unsigned int number) | |
virtual void | init_data () |
Initializes the member data fields associated with the system, so that, e.g., assemble() may be used. More... | |
virtual void | init_context (DiffContext &context) |
virtual bool | element_time_derivative (bool request_jacobian, DiffContext &context) |
Adds the time derivative contribution on elem to elem_residual. More... | |
virtual bool | side_time_derivative (bool request_jacobian, DiffContext &context) |
Adds the time derivative contribution on side of elem to elem_residual. More... | |
CurlCurlSystem (EquationSystems &es, const std::string &name, const unsigned int number) | |
virtual void | init_data () |
Initializes the member data fields associated with the system, so that, e.g., assemble() may be used. More... | |
virtual void | init_context (DiffContext &context) |
virtual bool | element_time_derivative (bool request_jacobian, DiffContext &context) |
Adds the time derivative contribution on elem to elem_residual. More... | |
virtual bool | side_time_derivative (bool request_jacobian, DiffContext &context) |
Adds the time derivative contribution on side of elem to elem_residual. More... | |
virtual void | assembly (bool get_residual, bool get_jacobian, bool apply_heterogeneous_constraints=false, bool apply_no_constraints=false) override |
Prepares matrix or rhs for matrix assembly. More... | |
virtual void | solve () override |
Invokes the solver associated with the system. More... | |
void | mesh_position_get () |
Tells the FEMSystem to set the degree of freedom coefficients which should correspond to mesh nodal coordinates. More... | |
void | mesh_position_set () |
Tells the FEMSystem to set the mesh nodal coordinates which should correspond to degree of freedom coefficients. More... | |
virtual std::unique_ptr< DiffContext > | build_context () override |
Builds a FEMContext object with enough information to do evaluations on each element. More... | |
virtual void | postprocess () override |
Runs a postprocessing loop over all elements, and if postprocess_sides is true over all sides. More... | |
virtual void | assemble_qoi (const QoISet &indices=QoISet()) override |
Runs a qoi assembly loop over all elements, and if assemble_qoi_sides is true over all sides. More... | |
virtual void | assemble_qoi_derivative (const QoISet &qoi_indices=QoISet(), bool include_liftfunc=true, bool apply_constraints=true) override |
Runs a qoi derivative assembly loop over all elements, and if assemble_qoi_sides is true over all sides. More... | |
Real | numerical_jacobian_h_for_var (unsigned int var_num) const |
If numerical_jacobian_h_for_var(var_num) is changed from its default value (numerical_jacobian_h), the FEMSystem will perturb solution vector entries for variable var_num by that amount when calculating finite differences with respect to that variable. More... | |
void | set_numerical_jacobian_h_for_var (unsigned int var_num, Real new_h) |
void | numerical_jacobian (TimeSolverResPtr res, FEMContext &context) const |
Uses the results of multiple res calls to numerically differentiate the corresponding jacobian. More... | |
void | numerical_elem_jacobian (FEMContext &context) const |
Uses the results of multiple element_residual() calls to numerically differentiate the corresponding jacobian on an element. More... | |
void | numerical_side_jacobian (FEMContext &context) const |
Uses the results of multiple side_residual() calls to numerically differentiate the corresponding jacobian on an element's side. More... | |
void | numerical_nonlocal_jacobian (FEMContext &context) const |
Uses the results of multiple side_residual() calls to numerically differentiate the corresponding jacobian on nonlocal DoFs. More... | |
virtual void | clear () override |
Clear all the data structures associated with the system. More... | |
virtual void | reinit () override |
Reinitializes the member data fields associated with the system, so that, e.g., assemble() may be used. More... | |
virtual void | assemble () override |
Prepares matrix and rhs for matrix assembly. More... | |
virtual LinearSolver< Number > * | get_linear_solver () const override |
virtual std::pair< unsigned int, Real > | get_linear_solve_parameters () const override |
virtual void | release_linear_solver (LinearSolver< Number > *) const override |
Releases a pointer to a linear solver acquired by this->get_linear_solver() More... | |
virtual std::pair< unsigned int, Real > | adjoint_solve (const QoISet &qoi_indices=QoISet()) override |
This function sets the _is_adjoint boolean member of TimeSolver to true and then calls the adjoint_solve in implicit system. More... | |
virtual std::unique_ptr< DifferentiablePhysics > | clone_physics () override |
We don't allow systems to be attached to each other. More... | |
virtual std::unique_ptr< DifferentiableQoI > | clone () override |
We don't allow systems to be attached to each other. More... | |
const DifferentiablePhysics * | get_physics () const |
DifferentiablePhysics * | get_physics () |
void | attach_physics (DifferentiablePhysics *physics_in) |
Attach external Physics object. More... | |
void | swap_physics (DifferentiablePhysics *&swap_physics) |
Swap current physics object with external object. More... | |
const DifferentiableQoI * | get_qoi () const |
DifferentiableQoI * | get_qoi () |
void | attach_qoi (DifferentiableQoI *qoi_in) |
Attach external QoI object. More... | |
void | set_time_solver (std::unique_ptr< TimeSolver > _time_solver) |
Sets the time_solver FIXME: This code is a little dangerous as it transfers ownership from the TimeSolver creator to this class. More... | |
TimeSolver & | get_time_solver () |
const TimeSolver & | get_time_solver () const |
Non-const version of the above. More... | |
virtual void | element_postprocess (DiffContext &) |
Does any work that needs to be done on elem in a postprocessing loop. More... | |
virtual void | side_postprocess (DiffContext &) |
Does any work that needs to be done on side of elem in a postprocessing loop. More... | |
unsigned int | get_second_order_dot_var (unsigned int var) const |
For a given second order (in time) variable var, this method will return the index to the corresponding "dot" variable. More... | |
bool | have_first_order_scalar_vars () const |
Check for any first order vars that are also belong to FEFamily::SCALAR. More... | |
bool | have_second_order_scalar_vars () const |
Check for any second order vars that are also belong to FEFamily::SCALAR. More... | |
sys_type & | system () |
virtual void | disable_cache () override |
Avoids use of any cached data that might affect any solve result. More... | |
virtual std::string | system_type () const override |
virtual void | assemble_residual_derivatives (const ParameterVector ¶meters) override |
Residual parameter derivative function. More... | |
virtual std::pair< unsigned int, Real > | sensitivity_solve (const ParameterVector ¶meters) override |
Assembles & solves the linear system(s) (dR/du)*u_p = -dR/dp, for those parameters contained within parameters . More... | |
virtual std::pair< unsigned int, Real > | weighted_sensitivity_solve (const ParameterVector ¶meters, const ParameterVector &weights) override |
Assembles & solves the linear system(s) (dR/du)*u_w = sum(w_p*-dR/dp), for those parameters p contained within parameters weighted by the values w_p found within weights . More... | |
virtual std::pair< unsigned int, Real > | weighted_sensitivity_adjoint_solve (const ParameterVector ¶meters, const ParameterVector &weights, const QoISet &qoi_indices=QoISet()) override |
Assembles & solves the linear system(s) (dR/du)^T*z_w = sum(w_p*(d^2q/dudp - d^2R/dudp*z)), for those parameters p contained within parameters , weighted by the values w_p found within weights . More... | |
virtual void | adjoint_qoi_parameter_sensitivity (const QoISet &qoi_indices, const ParameterVector ¶meters, SensitivityData &sensitivities) override |
Solves for the derivative of each of the system's quantities of interest q in qoi [qoi_indices] with respect to each parameter in parameters , placing the result for qoi i and parameter j into sensitivities [i][j]. More... | |
virtual void | forward_qoi_parameter_sensitivity (const QoISet &qoi_indices, const ParameterVector ¶meters, SensitivityData &sensitivities) override |
Solves for the derivative of each of the system's quantities of interest q in qoi [qoi_indices] with respect to each parameter in parameters , placing the result for qoi i and parameter j into sensitivities [i][j]. More... | |
virtual void | qoi_parameter_hessian (const QoISet &qoi_indices, const ParameterVector ¶meters, SensitivityData &hessian) override |
For each of the system's quantities of interest q in qoi [qoi_indices], and for a vector of parameters p, the parameter sensitivity Hessian H_ij is defined as H_ij = (d^2 q)/(d p_i d p_j) This Hessian is the output of this method, where for each q_i, H_jk is stored in hessian.second_derivative(i,j,k) . More... | |
virtual void | qoi_parameter_hessian_vector_product (const QoISet &qoi_indices, const ParameterVector ¶meters, const ParameterVector &vector, SensitivityData &product) override |
For each of the system's quantities of interest q in qoi [qoi_indices], and for a vector of parameters p, the parameter sensitivity Hessian H_ij is defined as H_ij = (d^2 q)/(d p_i d p_j) The Hessian-vector product, for a vector v_k in parameter space, is S_j = H_jk v_k This product is the output of this method, where for each q_i, S_j is stored in sensitivities [i][j]. More... | |
SparseMatrix< Number > & | add_matrix (const std::string &mat_name) |
Adds the additional matrix mat_name to this system. More... | |
template<template< typename > class> | |
SparseMatrix< Number > & | add_matrix (const std::string &mat_name) |
Adds the additional matrix mat_name to this system. More... | |
void | remove_matrix (const std::string &mat_name) |
Removes the additional matrix mat_name from this system. More... | |
bool | have_matrix (const std::string &mat_name) const |
const SparseMatrix< Number > * | request_matrix (const std::string &mat_name) const |
SparseMatrix< Number > * | request_matrix (const std::string &mat_name) |
const SparseMatrix< Number > & | get_matrix (const std::string &mat_name) const |
SparseMatrix< Number > & | get_matrix (const std::string &mat_name) |
virtual unsigned int | n_matrices () const override |
void | init () |
Initializes degrees of freedom on the current mesh. More... | |
virtual void | reinit_constraints () |
Reinitializes the constraints for this system. More... | |
bool | is_initialized () |
virtual void | update () |
Update the local values to reflect the solution on neighboring processors. More... | |
virtual void | restrict_solve_to (const SystemSubset *subset, const SubsetSolveMode subset_solve_mode=SUBSET_ZERO) |
After calling this method, any solve will be restricted to the given subdomain. More... | |
bool | is_adjoint_already_solved () const |
Accessor for the adjoint_already_solved boolean. More... | |
void | set_adjoint_already_solved (bool setting) |
Setter for the adjoint_already_solved boolean. More... | |
virtual void | qoi_parameter_sensitivity (const QoISet &qoi_indices, const ParameterVector ¶meters, SensitivityData &sensitivities) |
Solves for the derivative of each of the system's quantities of interest q in qoi [qoi_indices] with respect to each parameter in parameters , placing the result for qoi i and parameter j into sensitivities [i][j]. More... | |
virtual bool | compare (const System &other_system, const Real threshold, const bool verbose) const |
const std::string & | name () const |
void | project_solution (FunctionBase< Number > *f, FunctionBase< Gradient > *g=nullptr) const |
Projects arbitrary functions onto the current solution. More... | |
void | project_solution (FEMFunctionBase< Number > *f, FEMFunctionBase< Gradient > *g=nullptr) const |
Projects arbitrary functions onto the current solution. More... | |
void | project_solution (ValueFunctionPointer fptr, GradientFunctionPointer gptr, const Parameters ¶meters) const |
This method projects an arbitrary function onto the solution via L2 projections and nodal interpolations on each element. More... | |
void | project_vector (NumericVector< Number > &new_vector, FunctionBase< Number > *f, FunctionBase< Gradient > *g=nullptr, int is_adjoint=-1) const |
Projects arbitrary functions onto a vector of degree of freedom values for the current system. More... | |
void | project_vector (NumericVector< Number > &new_vector, FEMFunctionBase< Number > *f, FEMFunctionBase< Gradient > *g=nullptr, int is_adjoint=-1) const |
Projects arbitrary functions onto a vector of degree of freedom values for the current system. More... | |
void | project_vector (ValueFunctionPointer fptr, GradientFunctionPointer gptr, const Parameters ¶meters, NumericVector< Number > &new_vector, int is_adjoint=-1) const |
Projects arbitrary functions onto a vector of degree of freedom values for the current system. More... | |
void | boundary_project_solution (const std::set< boundary_id_type > &b, const std::vector< unsigned int > &variables, FunctionBase< Number > *f, FunctionBase< Gradient > *g=nullptr) |
Projects arbitrary boundary functions onto a vector of degree of freedom values for the current system. More... | |
void | boundary_project_solution (const std::set< boundary_id_type > &b, const std::vector< unsigned int > &variables, ValueFunctionPointer fptr, GradientFunctionPointer gptr, const Parameters ¶meters) |
Projects arbitrary boundary functions onto a vector of degree of freedom values for the current system. More... | |
void | boundary_project_vector (const std::set< boundary_id_type > &b, const std::vector< unsigned int > &variables, NumericVector< Number > &new_vector, FunctionBase< Number > *f, FunctionBase< Gradient > *g=nullptr, int is_adjoint=-1) const |
Projects arbitrary boundary functions onto a vector of degree of freedom values for the current system. More... | |
void | boundary_project_vector (const std::set< boundary_id_type > &b, const std::vector< unsigned int > &variables, ValueFunctionPointer fptr, GradientFunctionPointer gptr, const Parameters ¶meters, NumericVector< Number > &new_vector, int is_adjoint=-1) const |
Projects arbitrary boundary functions onto a vector of degree of freedom values for the current system. More... | |
unsigned int | number () const |
void | update_global_solution (std::vector< Number > &global_soln) const |
Fill the input vector global_soln so that it contains the global solution on all processors. More... | |
void | update_global_solution (std::vector< Number > &global_soln, const processor_id_type dest_proc) const |
Fill the input vector global_soln so that it contains the global solution on processor dest_proc . More... | |
const MeshBase & | get_mesh () const |
MeshBase & | get_mesh () |
const DofMap & | get_dof_map () const |
DofMap & | get_dof_map () |
const EquationSystems & | get_equation_systems () const |
EquationSystems & | get_equation_systems () |
bool | active () const |
void | activate () |
Activates the system. More... | |
void | deactivate () |
Deactivates the system. More... | |
void | set_basic_system_only () |
Sets the system to be "basic only": i.e. More... | |
vectors_iterator | vectors_begin () |
Beginning of vectors container. More... | |
const_vectors_iterator | vectors_begin () const |
Beginning of vectors container. More... | |
vectors_iterator | vectors_end () |
End of vectors container. More... | |
const_vectors_iterator | vectors_end () const |
End of vectors container. More... | |
NumericVector< Number > & | add_vector (const std::string &vec_name, const bool projections=true, const ParallelType type=PARALLEL) |
Adds the additional vector vec_name to this system. More... | |
void | remove_vector (const std::string &vec_name) |
Removes the additional vector vec_name from this system. More... | |
bool & | project_solution_on_reinit (void) |
Tells the System whether or not to project the solution vector onto new grids when the system is reinitialized. More... | |
bool | have_vector (const std::string &vec_name) const |
const NumericVector< Number > * | request_vector (const std::string &vec_name) const |
NumericVector< Number > * | request_vector (const std::string &vec_name) |
const NumericVector< Number > * | request_vector (const unsigned int vec_num) const |
NumericVector< Number > * | request_vector (const unsigned int vec_num) |
const NumericVector< Number > & | get_vector (const std::string &vec_name) const |
NumericVector< Number > & | get_vector (const std::string &vec_name) |
const NumericVector< Number > & | get_vector (const unsigned int vec_num) const |
NumericVector< Number > & | get_vector (const unsigned int vec_num) |
const std::string & | vector_name (const unsigned int vec_num) const |
const std::string & | vector_name (const NumericVector< Number > &vec_reference) const |
void | set_vector_as_adjoint (const std::string &vec_name, int qoi_num) |
Allows one to set the QoI index controlling whether the vector identified by vec_name represents a solution from the adjoint (qoi_num >= 0) or primal (qoi_num == -1) space. More... | |
int | vector_is_adjoint (const std::string &vec_name) const |
void | set_vector_preservation (const std::string &vec_name, bool preserve) |
Allows one to set the boolean controlling whether the vector identified by vec_name should be "preserved": projected to new meshes, saved, etc. More... | |
bool | vector_preservation (const std::string &vec_name) const |
NumericVector< Number > & | add_adjoint_solution (unsigned int i=0) |
NumericVector< Number > & | get_adjoint_solution (unsigned int i=0) |
const NumericVector< Number > & | get_adjoint_solution (unsigned int i=0) const |
NumericVector< Number > & | add_sensitivity_solution (unsigned int i=0) |
NumericVector< Number > & | get_sensitivity_solution (unsigned int i=0) |
const NumericVector< Number > & | get_sensitivity_solution (unsigned int i=0) const |
NumericVector< Number > & | add_weighted_sensitivity_adjoint_solution (unsigned int i=0) |
NumericVector< Number > & | get_weighted_sensitivity_adjoint_solution (unsigned int i=0) |
const NumericVector< Number > & | get_weighted_sensitivity_adjoint_solution (unsigned int i=0) const |
NumericVector< Number > & | add_weighted_sensitivity_solution () |
NumericVector< Number > & | get_weighted_sensitivity_solution () |
const NumericVector< Number > & | get_weighted_sensitivity_solution () const |
NumericVector< Number > & | add_adjoint_rhs (unsigned int i=0) |
NumericVector< Number > & | get_adjoint_rhs (unsigned int i=0) |
const NumericVector< Number > & | get_adjoint_rhs (unsigned int i=0) const |
NumericVector< Number > & | add_sensitivity_rhs (unsigned int i=0) |
NumericVector< Number > & | get_sensitivity_rhs (unsigned int i=0) |
const NumericVector< Number > & | get_sensitivity_rhs (unsigned int i=0) const |
unsigned int | n_vectors () const |
unsigned int | n_vars () const |
unsigned int | n_variable_groups () const |
unsigned int | n_components () const |
dof_id_type | n_dofs () const |
dof_id_type | n_active_dofs () const |
dof_id_type | n_constrained_dofs () const |
dof_id_type | n_local_constrained_dofs () const |
dof_id_type | n_local_dofs () const |
unsigned int | add_variable (const std::string &var, const FEType &type, const std::set< subdomain_id_type > *const active_subdomains=nullptr) |
Adds the variable var to the list of variables for this system. More... | |
unsigned int | add_variable (const std::string &var, const Order order=FIRST, const FEFamily=LAGRANGE, const std::set< subdomain_id_type > *const active_subdomains=nullptr) |
Adds the variable var to the list of variables for this system. More... | |
unsigned int | add_variables (const std::vector< std::string > &vars, const FEType &type, const std::set< subdomain_id_type > *const active_subdomains=nullptr) |
Adds the variable var to the list of variables for this system. More... | |
unsigned int | add_variables (const std::vector< std::string > &vars, const Order order=FIRST, const FEFamily=LAGRANGE, const std::set< subdomain_id_type > *const active_subdomains=nullptr) |
Adds the variable var to the list of variables for this system. More... | |
const Variable & | variable (unsigned int var) const |
Return a constant reference to Variable var . More... | |
const VariableGroup & | variable_group (unsigned int vg) const |
Return a constant reference to VariableGroup vg . More... | |
bool | has_variable (const std::string &var) const |
const std::string & | variable_name (const unsigned int i) const |
unsigned short int | variable_number (const std::string &var) const |
void | get_all_variable_numbers (std::vector< unsigned int > &all_variable_numbers) const |
Fills all_variable_numbers with all the variable numbers for the variables that have been added to this system. More... | |
unsigned int | variable_scalar_number (const std::string &var, unsigned int component) const |
unsigned int | variable_scalar_number (unsigned int var_num, unsigned int component) const |
const FEType & | variable_type (const unsigned int i) const |
const FEType & | variable_type (const std::string &var) const |
bool | identify_variable_groups () const |
void | identify_variable_groups (const bool) |
Toggle automatic VariableGroup identification. More... | |
Real | calculate_norm (const NumericVector< Number > &v, unsigned int var, FEMNormType norm_type, std::set< unsigned int > *skip_dimensions=nullptr) const |
Real | calculate_norm (const NumericVector< Number > &v, const SystemNorm &norm, std::set< unsigned int > *skip_dimensions=nullptr) const |
void | read_header (Xdr &io, const std::string &version, const bool read_header=true, const bool read_additional_data=true, const bool read_legacy_format=false) |
Reads the basic data header for this System. More... | |
void | read_legacy_data (Xdr &io, const bool read_additional_data=true) |
Reads additional data, namely vectors, for this System. More... | |
template<typename ValType > | |
void | read_serialized_data (Xdr &io, const bool read_additional_data=true) |
Reads additional data, namely vectors, for this System. More... | |
void | read_serialized_data (Xdr &io, const bool read_additional_data=true) |
Non-templated version for backward compatibility. More... | |
template<typename InValType > | |
std::size_t | read_serialized_vectors (Xdr &io, const std::vector< NumericVector< Number > * > &vectors) const |
Read a number of identically distributed vectors. More... | |
std::size_t | read_serialized_vectors (Xdr &io, const std::vector< NumericVector< Number > * > &vectors) const |
Non-templated version for backward compatibility. More... | |
template<typename InValType > | |
void | read_parallel_data (Xdr &io, const bool read_additional_data) |
Reads additional data, namely vectors, for this System. More... | |
void | read_parallel_data (Xdr &io, const bool read_additional_data) |
Non-templated version for backward compatibility. More... | |
void | write_header (Xdr &io, const std::string &version, const bool write_additional_data) const |
Writes the basic data header for this System. More... | |
void | write_serialized_data (Xdr &io, const bool write_additional_data=true) const |
Writes additional data, namely vectors, for this System. More... | |
std::size_t | write_serialized_vectors (Xdr &io, const std::vector< const NumericVector< Number > * > &vectors) const |
Serialize & write a number of identically distributed vectors. More... | |
void | write_parallel_data (Xdr &io, const bool write_additional_data) const |
Writes additional data, namely vectors, for this System. More... | |
std::string | get_info () const |
void | attach_init_function (void fptr(EquationSystems &es, const std::string &name)) |
Register a user function to use in initializing the system. More... | |
void | attach_init_object (Initialization &init) |
Register a user class to use to initialize the system. More... | |
void | attach_assemble_function (void fptr(EquationSystems &es, const std::string &name)) |
Register a user function to use in assembling the system matrix and RHS. More... | |
void | attach_assemble_object (Assembly &assemble) |
Register a user object to use in assembling the system matrix and RHS. More... | |
void | attach_constraint_function (void fptr(EquationSystems &es, const std::string &name)) |
Register a user function for imposing constraints. More... | |
void | attach_constraint_object (Constraint &constrain) |
Register a user object for imposing constraints. More... | |
void | attach_QOI_function (void fptr(EquationSystems &es, const std::string &name, const QoISet &qoi_indices)) |
Register a user function for evaluating the quantities of interest, whose values should be placed in System::qoi . More... | |
void | attach_QOI_object (QOI &qoi) |
Register a user object for evaluating the quantities of interest, whose values should be placed in System::qoi . More... | |
void | attach_QOI_derivative (void fptr(EquationSystems &es, const std::string &name, const QoISet &qoi_indices, bool include_liftfunc, bool apply_constraints)) |
Register a user function for evaluating derivatives of a quantity of interest with respect to test functions, whose values should be placed in System::rhs . More... | |
void | attach_QOI_derivative_object (QOIDerivative &qoi_derivative) |
Register a user object for evaluating derivatives of a quantity of interest with respect to test functions, whose values should be placed in System::rhs . More... | |
virtual void | user_initialization () |
Calls user's attached initialization function, or is overridden by the user in derived classes. More... | |
virtual void | user_assembly () |
Calls user's attached assembly function, or is overridden by the user in derived classes. More... | |
virtual void | user_constrain () |
Calls user's attached constraint function, or is overridden by the user in derived classes. More... | |
virtual void | user_QOI (const QoISet &qoi_indices) |
Calls user's attached quantity of interest function, or is overridden by the user in derived classes. More... | |
virtual void | user_QOI_derivative (const QoISet &qoi_indices=QoISet(), bool include_liftfunc=true, bool apply_constraints=true) |
Calls user's attached quantity of interest derivative function, or is overridden by the user in derived classes. More... | |
virtual void | re_update () |
Re-update the local values when the mesh has changed. More... | |
virtual void | restrict_vectors () |
Restrict vectors after the mesh has coarsened. More... | |
virtual void | prolong_vectors () |
Prolong vectors after the mesh has refined. More... | |
Number | current_solution (const dof_id_type global_dof_number) const |
unsigned int | n_qois () const |
Number of currently active quantities of interest. More... | |
Number | point_value (unsigned int var, const Point &p, const bool insist_on_success=true, const NumericVector< Number > *sol=nullptr) const |
Number | point_value (unsigned int var, const Point &p, const Elem &e, const NumericVector< Number > *sol=nullptr) const |
Number | point_value (unsigned int var, const Point &p, const Elem *e) const |
Calls the version of point_value() which takes a reference. More... | |
Number | point_value (unsigned int var, const Point &p, const NumericVector< Number > *sol) const |
Calls the parallel version of point_value(). More... | |
Gradient | point_gradient (unsigned int var, const Point &p, const bool insist_on_success=true, const NumericVector< Number > *sol=nullptr) const |
Gradient | point_gradient (unsigned int var, const Point &p, const Elem &e, const NumericVector< Number > *sol=nullptr) const |
Gradient | point_gradient (unsigned int var, const Point &p, const Elem *e) const |
Calls the version of point_gradient() which takes a reference. More... | |
Gradient | point_gradient (unsigned int var, const Point &p, const NumericVector< Number > *sol) const |
Calls the parallel version of point_gradient(). More... | |
Tensor | point_hessian (unsigned int var, const Point &p, const bool insist_on_success=true, const NumericVector< Number > *sol=nullptr) const |
Tensor | point_hessian (unsigned int var, const Point &p, const Elem &e, const NumericVector< Number > *sol=nullptr) const |
Tensor | point_hessian (unsigned int var, const Point &p, const Elem *e) const |
Calls the version of point_hessian() which takes a reference. More... | |
Tensor | point_hessian (unsigned int var, const Point &p, const NumericVector< Number > *sol) const |
Calls the parallel version of point_hessian(). More... | |
void | local_dof_indices (const unsigned int var, std::set< dof_id_type > &var_indices) const |
Fills the std::set with the degrees of freedom on the local processor corresponding the the variable number passed in. More... | |
void | zero_variable (NumericVector< Number > &v, unsigned int var_num) const |
Zeroes all dofs in v that correspond to variable number var_num . More... | |
bool & | hide_output () |
void | projection_matrix (SparseMatrix< Number > &proj_mat) const |
This method creates a projection matrix which corresponds to the operation of project_vector between old and new solution spaces. More... | |
const Parallel::Communicator & | comm () const |
processor_id_type | n_processors () const |
processor_id_type | processor_id () const |
virtual void | clear_physics () |
Clear any data structures associated with the physics. More... | |
virtual void | init_physics (const System &sys) |
Initialize any data structures associated with the physics. More... | |
virtual bool | element_constraint (bool request_jacobian, DiffContext &) |
Adds the constraint contribution on elem to elem_residual. More... | |
virtual bool | side_constraint (bool request_jacobian, DiffContext &) |
Adds the constraint contribution on side of elem to elem_residual. More... | |
virtual bool | nonlocal_time_derivative (bool request_jacobian, DiffContext &) |
Adds any nonlocal time derivative contributions (e.g. More... | |
virtual bool | nonlocal_constraint (bool request_jacobian, DiffContext &) |
Adds any nonlocal constraint contributions (e.g. More... | |
virtual void | time_evolving (unsigned int var) |
Tells the DiffSystem that variable var is evolving with respect to time. More... | |
virtual void | time_evolving (unsigned int var, unsigned int order) |
Tells the DiffSystem that variable var is evolving with respect to time. More... | |
bool | is_time_evolving (unsigned int var) const |
virtual bool | eulerian_residual (bool request_jacobian, DiffContext &) |
Adds a pseudo-convection contribution on elem to elem_residual, if the nodes of elem are being translated by a moving mesh. More... | |
virtual bool | eulerian_residual (bool request_jacobian, DiffContext &context) override |
Adds a pseudo-convection contribution on elem to elem_residual, if the nodes of elem are being translated by a moving mesh. More... | |
virtual bool | mass_residual (bool request_jacobian, DiffContext &) |
Subtracts a mass vector contribution on elem from elem_residual. More... | |
virtual bool | mass_residual (bool request_jacobian, DiffContext &) override |
Subtracts a mass vector contribution on elem from elem_residual. More... | |
virtual bool | side_mass_residual (bool request_jacobian, DiffContext &) |
Subtracts a mass vector contribution on side of elem from elem_residual. More... | |
virtual bool | nonlocal_mass_residual (bool request_jacobian, DiffContext &c) |
Subtracts any nonlocal mass vector contributions (e.g. More... | |
virtual bool | damping_residual (bool request_jacobian, DiffContext &) |
Subtracts a damping vector contribution on elem from elem_residual. More... | |
virtual bool | side_damping_residual (bool request_jacobian, DiffContext &) |
Subtracts a damping vector contribution on side of elem from elem_residual. More... | |
virtual bool | nonlocal_damping_residual (bool request_jacobian, DiffContext &) |
Subtracts any nonlocal damping vector contributions (e.g. More... | |
virtual void | set_mesh_system (System *sys) |
Tells the DifferentiablePhysics that system sys contains the isoparametric Lagrangian variables which correspond to the coordinates of mesh nodes, in problems where the mesh itself is expected to move in time. More... | |
const System * | get_mesh_system () const |
System * | get_mesh_system () |
virtual void | set_mesh_x_var (unsigned int var) |
Tells the DifferentiablePhysics that variable var from the mesh system should be used to update the x coordinate of mesh nodes, in problems where the mesh itself is expected to move in time. More... | |
unsigned int | get_mesh_x_var () const |
virtual void | set_mesh_y_var (unsigned int var) |
Tells the DifferentiablePhysics that variable var from the mesh system should be used to update the y coordinate of mesh nodes. More... | |
unsigned int | get_mesh_y_var () const |
virtual void | set_mesh_z_var (unsigned int var) |
Tells the DifferentiablePhysics that variable var from the mesh system should be used to update the z coordinate of mesh nodes. More... | |
unsigned int | get_mesh_z_var () const |
bool | _eulerian_time_deriv (bool request_jacobian, DiffContext &) |
This method simply combines element_time_derivative() and eulerian_residual(), which makes its address useful as a pointer-to-member-function when refactoring. More... | |
bool | have_first_order_vars () const |
const std::set< unsigned int > & | get_first_order_vars () const |
bool | is_first_order_var (unsigned int var) const |
bool | have_second_order_vars () const |
const std::set< unsigned int > & | get_second_order_vars () const |
bool | is_second_order_var (unsigned int var) const |
virtual void | init_qoi (std::vector< Number > &) |
Initialize system qoi. More... | |
virtual void | clear_qoi () |
Clear all the data structures associated with the QoI. More... | |
virtual void | element_qoi (DiffContext &, const QoISet &) |
Does any work that needs to be done on elem in a quantity of interest assembly loop, outputting to elem_qoi. More... | |
virtual void | element_qoi_derivative (DiffContext &, const QoISet &) |
Does any work that needs to be done on elem in a quantity of interest derivative assembly loop, outputting to elem_qoi_derivative. More... | |
virtual void | side_qoi (DiffContext &, const QoISet &) |
Does any work that needs to be done on side of elem in a quantity of interest assembly loop, outputting to elem_qoi. More... | |
virtual void | side_qoi_derivative (DiffContext &, const QoISet &) |
Does any work that needs to be done on side of elem in a quantity of interest derivative assembly loop, outputting to elem_qoi_derivative. More... | |
virtual void | thread_join (std::vector< Number > &qoi, const std::vector< Number > &other_qoi, const QoISet &qoi_indices) |
Method to combine thread-local qois. More... | |
virtual void | parallel_op (const Parallel::Communicator &communicator, std::vector< Number > &sys_qoi, std::vector< Number > &local_qoi, const QoISet &qoi_indices) |
Method to populate system qoi data structure with process-local qoi. More... | |
virtual void | finalize_derivative (NumericVector< Number > &derivatives, std::size_t qoi_index) |
Method to finalize qoi derivatives which require more than just a simple sum of element contributions. More... | |
Static Public Member Functions | |
static std::string | get_info () |
Gets a string containing the reference information. More... | |
static void | print_info (std::ostream &out=libMesh::out) |
Prints the reference information, by default to libMesh::out . More... | |
static unsigned int | n_objects () |
Prints the number of outstanding (created, but not yet destroyed) objects. More... | |
static void | enable_print_counter_info () |
Methods to enable/disable the reference counter output from print_info() More... | |
static void | disable_print_counter_info () |
Public Attributes | |
bool | fe_reinit_during_postprocess |
If fe_reinit_during_postprocess is true (it is true by default), FE objects will be reinit()ed with their default quadrature rules. More... | |
Real | numerical_jacobian_h |
If calculating numeric jacobians is required, the FEMSystem will perturb each solution vector entry by numerical_jacobian_h when calculating finite differences. More... | |
Real | verify_analytic_jacobians |
If verify_analytic_jacobian is equal to zero (as it is by default), no numeric jacobians will be calculated unless an overridden element_time_derivative(), element_constraint(), side_time_derivative(), or side_constraint() function cannot provide an analytic jacobian upon request. More... | |
std::unique_ptr< TimeSolver > | time_solver |
A pointer to the solver object we're going to use. More... | |
Real | deltat |
For time-dependent problems, this is the amount delta t to advance the solution in time. More... | |
bool | postprocess_sides |
If postprocess_sides is true (it is false by default), the postprocessing loop will loop over all sides as well as all elements. More... | |
bool | print_solution_norms |
Set print_residual_norms to true to print |U| whenever it is used in an assembly() call. More... | |
bool | print_solutions |
Set print_solutions to true to print U whenever it is used in an assembly() call. More... | |
bool | print_residual_norms |
Set print_residual_norms to true to print |F| whenever it is assembled. More... | |
bool | print_residuals |
Set print_residuals to true to print F whenever it is assembled. More... | |
bool | print_jacobian_norms |
Set print_jacobian_norms to true to print |J| whenever it is assembled. More... | |
bool | print_jacobians |
Set print_jacobians to true to print J whenever it is assembled. More... | |
bool | print_element_solutions |
Set print_element_solutions to true to print each U_elem input. More... | |
bool | print_element_residuals |
Set print_element_residuals to true to print each R_elem contribution. More... | |
bool | print_element_jacobians |
Set print_element_jacobians to true to print each J_elem contribution. More... | |
SparseMatrix< Number > * | matrix |
The system matrix. More... | |
bool | zero_out_matrix_and_rhs |
By default, the system will zero out the matrix and the right hand side. More... | |
NumericVector< Number > * | rhs |
The system matrix. More... | |
bool | assemble_before_solve |
Flag which tells the system to whether or not to call the user assembly function during each call to solve(). More... | |
bool | use_fixed_solution |
A boolean to be set to true by systems using elem_fixed_solution, for optional use by e.g. More... | |
int | extra_quadrature_order |
A member int that can be employed to indicate increased or reduced quadrature order. More... | |
std::unique_ptr< NumericVector< Number > > | solution |
Data structure to hold solution values. More... | |
std::unique_ptr< NumericVector< Number > > | current_local_solution |
All the values I need to compute my contribution to the simulation at hand. More... | |
Real | time |
For time-dependent problems, this is the time t at the beginning of the current timestep. More... | |
std::vector< Number > | qoi |
Values of the quantities of interest. More... | |
bool | compute_internal_sides |
compute_internal_sides is false by default, indicating that side_* computations will only be done on boundary sides. More... | |
bool | assemble_qoi_sides |
If assemble_qoi_sides is true (it is false by default), the assembly loop for a quantity of interest or its derivatives will loop over domain boundary sides. More... | |
bool | assemble_qoi_internal_sides |
If assemble_qoi_internal_sides is true (it is false by default), the assembly loop for a quantity of interest or its derivatives will loop over element sides which do not fall on domain boundaries. More... | |
bool | assemble_qoi_elements |
If assemble_qoi_elements is false (it is true by default), the assembly loop for a quantity of interest or its derivatives will skip computing on mesh elements, and will only compute on mesh sides. More... | |
Protected Types | |
typedef std::map< std::string, std::pair< unsigned int, unsigned int > > | Counts |
Data structure to log the information. More... | |
Protected Member Functions | |
void | init_dirichlet_bcs () |
RealGradient | forcing (const Point &p) |
RealGradient | exact_solution (const Point &p) |
void | init_dirichlet_bcs () |
RealGradient | forcing (const Point &p) |
RealGradient | exact_solution (const Point &p) |
void | add_second_order_dot_vars () |
Helper function to add "velocity" variables that are cousins to second order-in-time variables in the DifferentiableSystem. More... | |
void | add_dot_var_dirichlet_bcs (unsigned int var_idx, unsigned int dot_var_idx) |
Helper function to and Dirichlet boundary conditions to "dot" variable cousins of second order variables in the system. More... | |
virtual void | init_matrices () |
Initializes the matrices associated with this system. More... | |
void | project_vector (NumericVector< Number > &, int is_adjoint=-1) const |
Projects the vector defined on the old mesh onto the new mesh. More... | |
void | project_vector (const NumericVector< Number > &, NumericVector< Number > &, int is_adjoint=-1) const |
Projects the vector defined on the old mesh onto the new mesh. More... | |
void | increment_constructor_count (const std::string &name) |
Increments the construction counter. More... | |
void | increment_destructor_count (const std::string &name) |
Increments the destruction counter. More... | |
Protected Attributes | |
unsigned int | u_var |
CurlCurlExactSolution | soln |
DifferentiablePhysics * | _diff_physics |
Pointer to object to use for physics assembly evaluations. More... | |
DifferentiableQoI * | diff_qoi |
Pointer to object to use for quantity of interest assembly evaluations. More... | |
const Parallel::Communicator & | _communicator |
System * | _mesh_sys |
System from which to acquire moving mesh information. More... | |
unsigned int | _mesh_x_var |
Variables from which to acquire moving mesh information. More... | |
unsigned int | _mesh_y_var |
unsigned int | _mesh_z_var |
std::vector< unsigned int > | _time_evolving |
Stores unsigned int to tell us which variables are evolving as first order in time (1), second order in time (2), or are not time evolving (0). More... | |
std::set< unsigned int > | _first_order_vars |
Variable indices for those variables that are first order in time. More... | |
std::set< unsigned int > | _second_order_vars |
Variable indices for those variables that are second order in time. More... | |
std::map< unsigned int, unsigned int > | _second_order_dot_vars |
If the user adds any second order variables, then we need to also cache the map to their corresponding dot variable that will be added by this TimeSolver class. More... | |
Static Protected Attributes | |
static Counts | _counts |
Actually holds the data. More... | |
static Threads::atomic< unsigned int > | _n_objects |
The number of objects. More... | |
static Threads::spin_mutex | _mutex |
Mutual exclusion object to enable thread-safe reference counting. More... | |
static bool | _enable_print_counter = true |
Flag to control whether reference count information is printed when print_info is called. More... | |
Private Member Functions | |
void | add_system_matrix () |
Add the system matrix to the _matrices data structure. More... | |
void | add_system_rhs () |
Add the system right-hand-side vector to the _vectors data structure. More... | |
Real | discrete_var_norm (const NumericVector< Number > &v, unsigned int var, FEMNormType norm_type) const |
Finds the discrete norm for the entries in the vector corresponding to Dofs associated with var. More... | |
template<typename iterator_type , typename InValType > | |
std::size_t | read_serialized_blocked_dof_objects (const dof_id_type n_objects, const iterator_type begin, const iterator_type end, const InValType dummy, Xdr &io, const std::vector< NumericVector< Number > * > &vecs, const unsigned int var_to_read=libMesh::invalid_uint) const |
Reads an input vector from the stream io and assigns the values to a set of DofObjects . More... | |
unsigned int | read_SCALAR_dofs (const unsigned int var, Xdr &io, NumericVector< Number > *vec) const |
Reads the SCALAR dofs from the stream io and assigns the values to the appropriate entries of vec . More... | |
template<typename InValType > | |
numeric_index_type | read_serialized_vector (Xdr &io, NumericVector< Number > *vec) |
Reads a vector for this System. More... | |
numeric_index_type | read_serialized_vector (Xdr &io, NumericVector< Number > &vec) |
Non-templated version for backward compatibility. More... | |
template<typename iterator_type > | |
std::size_t | write_serialized_blocked_dof_objects (const std::vector< const NumericVector< Number > * > &vecs, const dof_id_type n_objects, const iterator_type begin, const iterator_type end, Xdr &io, const unsigned int var_to_write=libMesh::invalid_uint) const |
Writes an output vector to the stream io for a set of DofObjects . More... | |
unsigned int | write_SCALAR_dofs (const NumericVector< Number > &vec, const unsigned int var, Xdr &io) const |
Writes the SCALAR dofs associated with var to the stream io . More... | |
dof_id_type | write_serialized_vector (Xdr &io, const NumericVector< Number > &vec) const |
Writes a vector for this System. More... | |
Private Attributes | |
std::vector< Real > | _numerical_jacobian_h_for_var |
std::map< std::string, SparseMatrix< Number > * > | _matrices |
Some systems need an arbitrary number of matrices. More... | |
bool | _can_add_matrices |
true when additional matrices may still be added, false otherwise. More... | |
void(* | _init_system_function )(EquationSystems &es, const std::string &name) |
Function that initializes the system. More... | |
Initialization * | _init_system_object |
Object that initializes the system. More... | |
void(* | _assemble_system_function )(EquationSystems &es, const std::string &name) |
Function that assembles the system. More... | |
Assembly * | _assemble_system_object |
Object that assembles the system. More... | |
void(* | _constrain_system_function )(EquationSystems &es, const std::string &name) |
Function to impose constraints. More... | |
Constraint * | _constrain_system_object |
Object that constrains the system. More... | |
void(* | _qoi_evaluate_function )(EquationSystems &es, const std::string &name, const QoISet &qoi_indices) |
Function to evaluate quantity of interest. More... | |
QOI * | _qoi_evaluate_object |
Object to compute quantities of interest. More... | |
void(* | _qoi_evaluate_derivative_function )(EquationSystems &es, const std::string &name, const QoISet &qoi_indices, bool include_liftfunc, bool apply_constraints) |
Function to evaluate quantity of interest derivative. More... | |
QOIDerivative * | _qoi_evaluate_derivative_object |
Object to compute derivatives of quantities of interest. More... | |
std::unique_ptr< DofMap > | _dof_map |
Data structure describing the relationship between nodes, variables, etc... More... | |
EquationSystems & | _equation_systems |
Constant reference to the EquationSystems object used for the simulation. More... | |
MeshBase & | _mesh |
Constant reference to the mesh data structure used for the simulation. More... | |
const std::string | _sys_name |
A name associated with this system. More... | |
const unsigned int | _sys_number |
The number associated with this system. More... | |
std::vector< Variable > | _variables |
The Variable in this System . More... | |
std::vector< VariableGroup > | _variable_groups |
The VariableGroup in this System . More... | |
std::map< std::string, unsigned short int > | _variable_numbers |
The variable numbers corresponding to user-specified names, useful for name-based lookups. More... | |
bool | _active |
Flag stating if the system is active or not. More... | |
std::map< std::string, NumericVector< Number > * > | _vectors |
Some systems need an arbitrary number of vectors. More... | |
std::map< std::string, bool > | _vector_projections |
Holds true if a vector by that name should be projected onto a changed grid, false if it should be zeroed. More... | |
std::map< std::string, int > | _vector_is_adjoint |
Holds non-negative if a vector by that name should be projected using adjoint constraints/BCs, -1 if primal. More... | |
std::map< std::string, ParallelType > | _vector_types |
Holds the type of a vector. More... | |
bool | _solution_projection |
Holds true if the solution vector should be projected onto a changed grid, false if it should be zeroed. More... | |
bool | _basic_system_only |
Holds true if the components of more advanced system types (e.g. More... | |
bool | _is_initialized |
true when additional vectors and variables do not require immediate initialization, false otherwise. More... | |
bool | _identify_variable_groups |
true when VariableGroup structures should be automatically identified, false otherwise. More... | |
unsigned int | _additional_data_written |
This flag is used only when reading in a system from file. More... | |
std::vector< unsigned int > | _written_var_indices |
This vector is used only when reading in a system from file. More... | |
bool | adjoint_already_solved |
Has the adjoint problem already been solved? If the user sets adjoint_already_solved to true , we won't waste time solving it again. More... | |
bool | _hide_output |
Are we allowed to write this system to file? If _hide_output is true , then EquationSystems::write will ignore this system. More... | |
FEMSystem, TimeSolver and NewtonSolver will handle most tasks, but we must specify element residuals.
Definition at line 35 of file curl_curl_system.h.
|
inherited |
Definition at line 307 of file implicit_system.h.
|
inherited |
|
protectedinherited |
Data structure to log the information.
The log is identified by the class name.
Definition at line 117 of file reference_counter.h.
|
inherited |
|
inherited |
Matrix iterator typedefs.
Definition at line 306 of file implicit_system.h.
|
inherited |
The type of the parent.
Definition at line 79 of file fem_system.h.
|
inherited |
The type of system.
Definition at line 74 of file fem_system.h.
|
inherited |
Syntax sugar to make numerical_jacobian() declaration easier.
Definition at line 214 of file fem_system.h.
|
inherited |
|
inherited |
CurlCurlSystem::CurlCurlSystem | ( | EquationSystems & | es, |
const std::string & | name, | ||
const unsigned int | number | ||
) |
Definition at line 34 of file curl_curl_system.C.
CurlCurlSystem::CurlCurlSystem | ( | EquationSystems & | es, |
const std::string & | name, | ||
const unsigned int | number | ||
) |
|
inherited |
This method simply combines element_time_derivative() and eulerian_residual(), which makes its address useful as a pointer-to-member-function when refactoring.
Definition at line 102 of file diff_physics.C.
References libMesh::DifferentiablePhysics::element_time_derivative(), and libMesh::DifferentiablePhysics::eulerian_residual().
Referenced by libMesh::EulerSolver::element_residual(), libMesh::Euler2Solver::element_residual(), and libMesh::NewmarkSolver::element_residual().
|
inlineinherited |
Activates the system.
Only active systems are solved.
Definition at line 2123 of file system.h.
References libMesh::System::_active.
|
inlineinherited |
true
if the system is active, false
otherwise. An active system will be solved. Definition at line 2115 of file system.h.
References libMesh::System::_active.
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inherited |
Definition at line 1009 of file system.C.
References libMesh::System::add_vector().
Referenced by libMesh::ExplicitSystem::assemble_qoi_derivative(), and libMesh::FEMSystem::assemble_qoi_derivative().
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inherited |
Definition at line 945 of file system.C.
References libMesh::System::add_vector(), and libMesh::System::set_vector_as_adjoint().
Referenced by libMesh::ImplicitSystem::adjoint_solve().
|
protectedinherited |
Helper function to and Dirichlet boundary conditions to "dot" variable cousins of second order variables in the system.
The function takes the second order variable index, it's corresponding "dot" variable index and then searches for DirichletBoundary objects for var_idx and then adds a DirichletBoundary object for dot_var_idx using the same boundary ids and functors for the var_idx DirichletBoundary.
Definition at line 230 of file diff_system.C.
References libMesh::DofMap::add_dirichlet_boundary(), libMesh::DofMap::get_dirichlet_boundaries(), libMesh::System::get_dof_map(), and libMesh::libmesh_assert().
Referenced by libMesh::DifferentiableSystem::add_second_order_dot_vars().
|
inherited |
Adds the additional matrix mat_name
to this system.
Only allowed prior to assemble()
. All additional matrices have the same sparsity pattern as the matrix used during solution. When not System
but the user wants to initialize the mayor matrix, then all the additional matrices, if existent, have to be initialized by the user, too.
This non-template method will add a derived matrix type corresponding to the solver package. If the user wishes to specify the matrix type to add, use the templated add_matrix
method instead
Definition at line 202 of file implicit_system.C.
References libMesh::ImplicitSystem::_can_add_matrices, libMesh::ImplicitSystem::_matrices, libMesh::SparseMatrix< T >::build(), libMesh::ParallelObject::comm(), and libMesh::ImplicitSystem::have_matrix().
Referenced by libMesh::ImplicitSystem::add_system_matrix(), libMesh::EigenTimeSolver::init(), main(), and libMesh::NewmarkSystem::NewmarkSystem().
|
inlineinherited |
Adds the additional matrix mat_name
to this system.
Only allowed prior to assemble()
. All additional matrices have the same sparsity pattern as the matrix used during solution. When not System
but the user wants to initialize the mayor matrix, then all the additional matrices, if existent, have to be initialized by the user, too.
This method will create add a derived matrix of type MatrixType<Number>
. One can use the non-templated add_matrix
method to add a matrix corresponding to the default solver package
Definition at line 454 of file implicit_system.h.
References libMesh::ImplicitSystem::_can_add_matrices, libMesh::ImplicitSystem::_matrices, libMesh::ParallelObject::comm(), and libMesh::ImplicitSystem::have_matrix().
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protectedinherited |
Helper function to add "velocity" variables that are cousins to second order-in-time variables in the DifferentiableSystem.
This function is only called if the TimeSolver is a FirstOrderUnsteadySolver.
Definition at line 198 of file diff_system.C.
References libMesh::DifferentiablePhysics::_second_order_dot_vars, libMesh::Variable::active_subdomains(), libMesh::DifferentiableSystem::add_dot_var_dirichlet_bcs(), libMesh::System::add_variable(), libMesh::DifferentiablePhysics::get_second_order_vars(), libMesh::Variable::name(), libMesh::DifferentiablePhysics::time_evolving(), libMesh::Variable::type(), and libMesh::System::variable().
Referenced by libMesh::DifferentiableSystem::init_data().
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inherited |
Definition at line 1039 of file system.C.
References libMesh::System::add_vector().
Referenced by libMesh::ImplicitSystem::assemble_residual_derivatives().
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inherited |
Definition at line 894 of file system.C.
References libMesh::System::add_vector().
Referenced by libMesh::ImplicitSystem::sensitivity_solve().
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privateinherited |
Add the system matrix to the _matrices
data structure.
Useful in initialization.
Definition at line 276 of file implicit_system.C.
References libMesh::ImplicitSystem::_matrices, libMesh::ImplicitSystem::add_matrix(), libMesh::libmesh_assert(), and libMesh::ImplicitSystem::matrix.
Referenced by libMesh::ImplicitSystem::clear(), and libMesh::ImplicitSystem::ImplicitSystem().
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privateinherited |
Add the system right-hand-side vector to the _vectors
data structure.
Useful in initialization.
Definition at line 96 of file explicit_system.C.
References libMesh::System::add_vector(), libMesh::libmesh_assert(), libMesh::System::n_vectors(), and libMesh::ExplicitSystem::rhs.
Referenced by libMesh::ExplicitSystem::clear(), and libMesh::ExplicitSystem::ExplicitSystem().
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inherited |
Adds the variable var
to the list of variables for this system.
If active_subdomains
is either nullptr
(the default) or points to an empty set, then it will be assumed that var
has no subdomain restrictions
Definition at line 1069 of file system.C.
References libMesh::System::_variable_groups, libMesh::System::_variable_numbers, libMesh::System::_variables, libMesh::System::add_variables(), libMesh::System::identify_variable_groups(), libMesh::System::is_initialized(), libMesh::libmesh_assert(), libMesh::System::n_variable_groups(), libMesh::System::n_vars(), libMesh::System::variable_name(), and libMesh::System::variable_type().
Referenced by libMesh::DifferentiableSystem::add_second_order_dot_vars(), libMesh::System::add_variable(), assemble_and_solve(), OverlappingTestBase::init(), SolidSystem::init_data(), init_data(), HeatSystem::init_data(), SimpleRBConstruction::init_data(), main(), libMesh::ErrorVector::plot_error(), libMesh::System::read_header(), RationalMapTest< elem_type >::setUp(), FETest< order, family, elem_type >::setUp(), SlitMeshRefinedSystemTest::setUp(), MeshfunctionDFEM::test_mesh_function_dfem(), MeshfunctionDFEM::test_mesh_function_dfem_grad(), MeshFunctionTest::test_p_level(), SystemsTest::testAssemblyWithDgFemContext(), SystemsTest::testBlockRestrictedVarNDofs(), SystemsTest::testBoundaryProjectCube(), DofMapTest::testConstraintLoopDetection(), DefaultCouplingTest::testCoupling(), PointNeighborCouplingTest::testCoupling(), SystemsTest::testDofCouplingWithVarGroups(), DofMapTest::testDofOwner(), MeshInputTest::testDynaReadPatch(), MeshInputTest::testExodusCopyElementSolution(), MeshInputTest::testExodusWriteElementDataFromDiscontinuousNodalData(), EquationSystemsTest::testPostInitAddElem(), EquationSystemsTest::testPostInitAddRealSystem(), SystemsTest::testProjectCubeWithMeshFunction(), SystemsTest::testProjectMatrix1D(), SystemsTest::testProjectMatrix2D(), SystemsTest::testProjectMatrix3D(), EquationSystemsTest::testRefineThenReinitPreserveFlags(), EquationSystemsTest::testReinitWithNodeElem(), EquationSystemsTest::testRepartitionThenReinit(), BoundaryInfoTest::testShellFaceConstraints(), and WriteVecAndScalar::testWrite().
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inherited |
Adds the variable var
to the list of variables for this system.
Same as before, but assumes LAGRANGE
as default value for FEType.family
. If active_subdomains
is either nullptr
(the default) or points to an empty set, then it will be assumed that var
has no subdomain restrictions
Definition at line 1148 of file system.C.
References libMesh::System::add_variable().
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inherited |
Adds the variable var
to the list of variables for this system.
If active_subdomains
is either nullptr
(the default) or points to an empty set, then it will be assumed that var
has no subdomain restrictions
Definition at line 1160 of file system.C.
References libMesh::System::_variable_groups, libMesh::System::_variable_numbers, libMesh::System::_variables, libMesh::System::is_initialized(), libMesh::libmesh_assert(), libMesh::System::n_components(), libMesh::System::n_vars(), libMesh::System::variable_name(), and libMesh::System::variable_type().
Referenced by libMesh::System::add_variable(), and libMesh::System::add_variables().
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inherited |
Adds the variable var
to the list of variables for this system.
Same as before, but assumes LAGRANGE
as default value for FEType.family
. If active_subdomains
is either nullptr
(the default) or points to an empty set, then it will be assumed that var
has no subdomain restrictions
Definition at line 1213 of file system.C.
References libMesh::System::add_variables().
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inherited |
Adds the additional vector vec_name
to this system.
All the additional vectors are similarly distributed, like the solution
, and initialized to zero.
By default vectors added by add_vector are projected to changed grids by reinit(). To zero them instead (more efficient), pass "false" as the second argument
Definition at line 661 of file system.C.
References libMesh::System::_dof_map, libMesh::System::_is_initialized, libMesh::System::_vector_is_adjoint, libMesh::System::_vector_projections, libMesh::System::_vector_types, libMesh::System::_vectors, libMesh::NumericVector< T >::build(), libMesh::ParallelObject::comm(), libMesh::GHOSTED, libMesh::System::have_vector(), libMesh::NumericVector< T >::init(), libMesh::System::n_dofs(), and libMesh::System::n_local_dofs().
Referenced by libMesh::System::add_adjoint_rhs(), libMesh::System::add_adjoint_solution(), libMesh::System::add_sensitivity_rhs(), libMesh::System::add_sensitivity_solution(), libMesh::ExplicitSystem::add_system_rhs(), libMesh::System::add_weighted_sensitivity_adjoint_solution(), libMesh::System::add_weighted_sensitivity_solution(), libMesh::AdjointRefinementEstimator::estimate_error(), libMesh::SecondOrderUnsteadySolver::init(), libMesh::UnsteadySolver::init(), libMesh::OptimizationSystem::init_data(), libMesh::ContinuationSystem::init_data(), main(), libMesh::NewmarkSystem::NewmarkSystem(), libMesh::System::read_header(), libMesh::FrequencySystem::set_frequencies(), libMesh::FrequencySystem::set_frequencies_by_range(), and libMesh::FrequencySystem::set_frequencies_by_steps().
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inherited |
Definition at line 977 of file system.C.
References libMesh::System::add_vector(), and libMesh::System::set_vector_as_adjoint().
Referenced by libMesh::ImplicitSystem::weighted_sensitivity_adjoint_solve().
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inherited |
Definition at line 924 of file system.C.
References libMesh::System::add_vector().
Referenced by libMesh::ImplicitSystem::weighted_sensitivity_solve().
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overridevirtualinherited |
Solves for the derivative of each of the system's quantities of interest q in qoi
[qoi_indices] with respect to each parameter in parameters
, placing the result for qoi i
and parameter j
into sensitivities
[i][j].
Uses adjoint_solve() and the adjoint sensitivity method.
Currently uses finite differenced derivatives (partial q / partial p) and (partial R / partial p).
Reimplemented from libMesh::System.
Definition at line 686 of file implicit_system.C.
References std::abs(), libMesh::ImplicitSystem::adjoint_solve(), libMesh::SensitivityData::allocate_data(), libMesh::ExplicitSystem::assemble_qoi(), libMesh::ImplicitSystem::assemble_residual_derivatives(), libMesh::NumericVector< T >::dot(), libMesh::System::get_sensitivity_rhs(), libMesh::QoISet::has_index(), libMesh::System::is_adjoint_already_solved(), libMesh::System::n_qois(), libMesh::System::qoi, libMesh::Real, libMesh::ParameterVector::size(), and libMesh::TOLERANCE.
Referenced by main().
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overridevirtualinherited |
This function sets the _is_adjoint boolean member of TimeSolver to true and then calls the adjoint_solve in implicit system.
Reimplemented from libMesh::ImplicitSystem.
Definition at line 164 of file diff_system.C.
References libMesh::ImplicitSystem::adjoint_solve(), libMesh::DifferentiableSystem::get_time_solver(), and libMesh::TimeSolver::set_is_adjoint().
Referenced by main().
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overridevirtualinherited |
Prepares matrix
and rhs
for matrix assembly.
Users should not reimplement this. Note that in some cases only current_local_solution is used during assembly, and, therefore, if solution has been altered without update() being called, then the user must call update() before calling this function.
Reimplemented from libMesh::ImplicitSystem.
Definition at line 145 of file diff_system.C.
References libMesh::DifferentiableSystem::assembly().
Runs a qoi assembly loop over all elements, and if assemble_qoi_sides
is true over all sides.
Users may have to override this function if they have any quantities of interest that are not expressible as a sum of element qois.
Reimplemented from libMesh::ExplicitSystem.
Definition at line 1117 of file fem_system.C.
References libMesh::MeshBase::active_local_elements_begin(), libMesh::MeshBase::active_local_elements_end(), libMesh::ParallelObject::comm(), libMesh::DifferentiableSystem::diff_qoi, libMesh::System::get_mesh(), libMesh::QoISet::has_index(), mesh, libMesh::System::n_qois(), libMesh::DifferentiableQoI::parallel_op(), libMesh::Threads::parallel_reduce(), libMesh::System::qoi, libMesh::StoredRange< iterator_type, object_type >::reset(), and libMesh::System::update().
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overridevirtualinherited |
Runs a qoi derivative assembly loop over all elements, and if assemble_qoi_sides
is true over all sides.
Users may have to override this function for quantities of interest that are not expressible as a sum of element qois.
Reimplemented from libMesh::ExplicitSystem.
Definition at line 1147 of file fem_system.C.
References libMesh::MeshBase::active_local_elements_begin(), libMesh::MeshBase::active_local_elements_end(), libMesh::System::add_adjoint_rhs(), libMesh::DifferentiableSystem::diff_qoi, libMesh::DifferentiableQoI::finalize_derivative(), libMesh::System::get_mesh(), libMesh::QoISet::has_index(), mesh, libMesh::System::n_qois(), libMesh::Threads::parallel_for(), libMesh::StoredRange< iterator_type, object_type >::reset(), libMesh::System::update(), and libMesh::NumericVector< T >::zero().
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overridevirtualinherited |
Residual parameter derivative function.
Uses finite differences by default.
This will assemble the sensitivity rhs vectors to hold -(partial R / partial p_i), making them ready to solve the forward sensitivity equation.
Can be overridden in derived classes.
Reimplemented from libMesh::System.
Definition at line 643 of file implicit_system.C.
References std::abs(), libMesh::System::add_sensitivity_rhs(), libMesh::ImplicitSystem::assembly(), libMesh::NumericVector< T >::close(), libMesh::Real, libMesh::ExplicitSystem::rhs, libMesh::ParameterVector::size(), and libMesh::TOLERANCE.
Referenced by libMesh::ImplicitSystem::adjoint_qoi_parameter_sensitivity(), and libMesh::ImplicitSystem::sensitivity_solve().
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overridevirtualinherited |
Prepares matrix
or rhs
for matrix assembly.
Users may reimplement this to add pre- or post-assembly code before or after calling FEMSystem::assembly(). Note that in some cases only current_local_solution is used during assembly, and, therefore, if solution has been altered without update() being called, then the user must call update() before calling this function.
Implements libMesh::DifferentiableSystem.
Definition at line 850 of file fem_system.C.
References libMesh::MeshBase::active_local_elements_begin(), libMesh::MeshBase::active_local_elements_end(), libMesh::DenseMatrix< T >::add(), libMesh::FEMSystem::build_context(), libMesh::SparseMatrix< T >::close(), libMesh::NumericVector< T >::close(), libMesh::err, libMesh::FEType::family, libMesh::DiffContext::get_elem_jacobian(), libMesh::DiffContext::get_elem_residual(), libMesh::System::get_mesh(), libMesh::FEMSystem::init_context(), libMesh::NumericVector< T >::l1_norm(), libMesh::SparseMatrix< T >::l1_norm(), libMesh::DenseMatrix< T >::l1_norm(), libMesh::libmesh_assert(), libMesh::ImplicitSystem::matrix, mesh, libMesh::ParallelObject::n_processors(), libMesh::System::n_variable_groups(), libMesh::FEMSystem::numerical_nonlocal_jacobian(), libMesh::out, libMesh::Threads::parallel_for(), libMesh::FEMContext::pre_fe_reinit(), libMesh::BasicOStreamProxy< charT, traits >::precision(), libMesh::DifferentiableSystem::print_jacobian_norms, libMesh::DifferentiableSystem::print_jacobians, libMesh::DifferentiableSystem::print_residual_norms, libMesh::DifferentiableSystem::print_residuals, libMesh::DifferentiableSystem::print_solution_norms, libMesh::DifferentiableSystem::print_solutions, libMesh::ParallelObject::processor_id(), libMesh::Real, libMesh::StoredRange< iterator_type, object_type >::reset(), libMesh::ExplicitSystem::rhs, libMesh::SCALAR, libMesh::DenseVector< T >::size(), libMesh::System::solution, libMesh::DifferentiableSystem::time_solver, libMesh::Variable::type(), libMesh::System::variable_group(), libMesh::FEMSystem::verify_analytic_jacobians, libMesh::DenseMatrix< T >::zero(), libMesh::SparseMatrix< T >::zero(), and libMesh::NumericVector< T >::zero().
Referenced by libMesh::ContinuationSystem::continuation_solve(), HeatSystem::perturb_accumulate_residuals(), and libMesh::ContinuationSystem::solve_tangent().
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inherited |
Register a user function to use in assembling the system matrix and RHS.
Definition at line 1755 of file system.C.
References libMesh::System::_assemble_system_function, libMesh::System::_assemble_system_object, fptr(), libMesh::libmesh_assert(), and libMesh::out.
Referenced by assemble_and_solve(), main(), SystemsTest::testAssemblyWithDgFemContext(), and SystemsTest::testDofCouplingWithVarGroups().
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inherited |
Register a user object to use in assembling the system matrix and RHS.
Definition at line 1774 of file system.C.
References libMesh::System::_assemble_system_function, libMesh::System::_assemble_system_object, and libMesh::out.
Referenced by main().
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inherited |
Register a user function for imposing constraints.
Definition at line 1790 of file system.C.
References libMesh::System::_constrain_system_function, libMesh::System::_constrain_system_object, fptr(), libMesh::libmesh_assert(), and libMesh::out.
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inherited |
Register a user object for imposing constraints.
Definition at line 1809 of file system.C.
References libMesh::System::_constrain_system_function, libMesh::System::_constrain_system_object, and libMesh::out.
Referenced by DofMapTest::testConstraintLoopDetection().
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inherited |
Register a user function to use in initializing the system.
Definition at line 1720 of file system.C.
References libMesh::System::_init_system_function, libMesh::System::_init_system_object, fptr(), libMesh::libmesh_assert(), and libMesh::out.
Referenced by main().
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inherited |
Register a user class to use to initialize the system.
attach_init_function
. Definition at line 1739 of file system.C.
References libMesh::System::_init_system_function, libMesh::System::_init_system_object, and libMesh::out.
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inlineinherited |
Attach external Physics object.
Definition at line 196 of file diff_system.h.
References libMesh::DifferentiableSystem::_diff_physics, libMesh::DifferentiablePhysics::clone_physics(), and libMesh::DifferentiablePhysics::init_physics().
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inlineinherited |
Attach external QoI object.
Definition at line 224 of file diff_system.h.
References libMesh::DifferentiableQoI::clone(), libMesh::DifferentiableSystem::diff_qoi, libMesh::DifferentiableQoI::init_qoi(), and libMesh::System::qoi.
Referenced by main().
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inherited |
Register a user function for evaluating derivatives of a quantity of interest with respect to test functions, whose values should be placed in System::rhs
.
Definition at line 1861 of file system.C.
References libMesh::System::_qoi_evaluate_derivative_function, libMesh::System::_qoi_evaluate_derivative_object, fptr(), libMesh::libmesh_assert(), and libMesh::out.
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inherited |
Register a user object for evaluating derivatives of a quantity of interest with respect to test functions, whose values should be placed in System::rhs
.
Definition at line 1880 of file system.C.
References libMesh::System::_qoi_evaluate_derivative_function, libMesh::System::_qoi_evaluate_derivative_object, and libMesh::out.
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inherited |
Register a user function for evaluating the quantities of interest, whose values should be placed in System::qoi
.
Definition at line 1825 of file system.C.
References libMesh::System::_qoi_evaluate_function, libMesh::System::_qoi_evaluate_object, fptr(), libMesh::libmesh_assert(), and libMesh::out.
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inherited |
Register a user object for evaluating the quantities of interest, whose values should be placed in System::qoi
.
Definition at line 1845 of file system.C.
References libMesh::System::_qoi_evaluate_function, libMesh::System::_qoi_evaluate_object, and libMesh::out.
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inherited |
Projects arbitrary boundary functions onto a vector of degree of freedom values for the current system.
This method projects an arbitrary boundary function onto the solution via L2 projections and nodal interpolations on each element.
Only degrees of freedom which affect the function's trace on a boundary in the set b
are affected. Only degrees of freedom associated with the variables listed in the vector variables
are projected. The function value f
and its gradient g
are user-provided cloneable functors. A gradient g
is only required/used for projecting onto finite element spaces with continuous derivatives. If non-default Parameters
are to be used, they can be provided in the parameters
argument.
Definition at line 1126 of file system_projection.C.
Referenced by SystemsTest::testBoundaryProjectCube().
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inherited |
Projects arbitrary boundary functions onto a vector of degree of freedom values for the current system.
This method projects components of an arbitrary boundary function onto the solution via L2 projections and nodal interpolations on each element.
Only degrees of freedom which affect the function's trace on a boundary in the set b
are affected. Only degrees of freedom associated with the variables listed in the vector variables
are projected. The function value fptr
and its gradient gptr
are represented by function pointers. A gradient gptr
is only required/used for projecting onto finite element spaces with continuous derivatives.
Definition at line 1109 of file system_projection.C.
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inherited |
Projects arbitrary boundary functions onto a vector of degree of freedom values for the current system.
This method projects an arbitrary function via L2 projections and nodal interpolations on each element.
Only degrees of freedom which affect the function's trace on a boundary in the set b
are affected. Only degrees of freedom associated with the variables listed in the vector variables
are projected. The function value f
and its gradient g
are user-provided cloneable functors. A gradient g
is only required/used for projecting onto finite element spaces with continuous derivatives. If non-default Parameters
are to be used, they can be provided in the parameters
argument.
Constrain the new vector using the requested adjoint rather than primal constraints if is_adjoint is non-negative.
Definition at line 1162 of file system_projection.C.
References libMesh::NumericVector< T >::close(), libMesh::libmesh_ignore(), and libMesh::Threads::parallel_for().
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inherited |
Projects arbitrary boundary functions onto a vector of degree of freedom values for the current system.
This method projects an arbitrary boundary function via L2 projections and nodal interpolations on each element.
Only degrees of freedom which affect the function's trace on a boundary in the set b
are affected. Only degrees of freedom associated with the variables listed in the vector variables
are projected. The function value fptr
and its gradient gptr
are represented by function pointers. A gradient gptr
is only required/used for projecting onto finite element spaces with continuous derivatives.
Constrain the new vector using the requested adjoint rather than primal constraints if is_adjoint is non-negative.
Definition at line 1144 of file system_projection.C.
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overridevirtualinherited |
Builds a FEMContext object with enough information to do evaluations on each element.
For most problems, the default FEMSystem implementation is correct; users who subclass FEMContext will need to also reimplement this method to build it.
Reimplemented from libMesh::DifferentiableSystem.
Definition at line 1314 of file fem_system.C.
References libMesh::DifferentiableSystem::deltat, libMesh::DifferentiablePhysics::get_mesh_system(), libMesh::DifferentiablePhysics::get_mesh_x_var(), libMesh::DifferentiablePhysics::get_mesh_y_var(), libMesh::DifferentiablePhysics::get_mesh_z_var(), libMesh::DifferentiableSystem::get_physics(), libMesh::DifferentiableSystem::get_time_solver(), libMesh::TimeSolver::is_adjoint(), libMesh::DiffContext::is_adjoint(), libMesh::libmesh_assert(), libMesh::DiffContext::set_deltat_pointer(), libMesh::FEMContext::set_mesh_system(), libMesh::FEMContext::set_mesh_x_var(), libMesh::FEMContext::set_mesh_y_var(), and libMesh::FEMContext::set_mesh_z_var().
Referenced by libMesh::FEMSystem::assembly(), libMesh::FEMSystem::mesh_position_get(), and libMesh::FEMSystem::mesh_position_set().
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inherited |
v
, using component_norm
and component_scale
to choose and weight the norms of each variable. Definition at line 1378 of file system.C.
References libMesh::System::_dof_map, libMesh::System::_mesh, std::abs(), libMesh::TypeVector< T >::add_scaled(), libMesh::TypeTensor< T >::add_scaled(), libMesh::FEGenericBase< OutputType >::build(), libMesh::NumericVector< T >::build(), libMesh::ParallelObject::comm(), libMesh::FEType::default_quadrature_rule(), dim, libMesh::DISCRETE_L1, libMesh::DISCRETE_L2, libMesh::DISCRETE_L_INF, libMesh::System::discrete_var_norm(), libMesh::DofMap::dof_indices(), libMesh::MeshBase::elem_dimensions(), libMesh::ReferenceElem::get(), libMesh::FEGenericBase< OutputType >::get_d2phi(), libMesh::System::get_dof_map(), libMesh::FEGenericBase< OutputType >::get_dphi(), libMesh::FEAbstract::get_JxW(), libMesh::System::get_mesh(), libMesh::FEGenericBase< OutputType >::get_phi(), libMesh::H1, libMesh::H1_SEMINORM, libMesh::H2, libMesh::H2_SEMINORM, libMesh::L1, libMesh::NumericVector< T >::l1_norm(), libMesh::L2, libMesh::NumericVector< T >::l2_norm(), libMesh::L_INF, libMesh::libmesh_assert(), libMesh::NumericVector< T >::linfty_norm(), libMesh::NumericVector< T >::localize(), libMesh::QBase::n_points(), libMesh::System::n_vars(), std::norm(), libMesh::TypeVector< T >::norm(), libMesh::TypeTensor< T >::norm(), libMesh::TensorTools::norm_sq(), libMesh::TypeVector< T >::norm_sq(), libMesh::TypeTensor< T >::norm_sq(), libMesh::Real, libMesh::FEAbstract::reinit(), libMesh::SERIAL, libMesh::NumericVector< T >::size(), std::sqrt(), libMesh::DofMap::variable_type(), libMesh::W1_INF_SEMINORM, libMesh::W2_INF_SEMINORM, and libMesh::SystemNorm::weight().
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inherited |
var
in the vector v
, in the specified norm (e.g. L2, L_INF, H1) Definition at line 1356 of file system.C.
References libMesh::DISCRETE_L1, libMesh::DISCRETE_L2, libMesh::DISCRETE_L_INF, libMesh::System::discrete_var_norm(), libMesh::L2, libMesh::System::n_vars(), and libMesh::Real.
Referenced by libMesh::AdaptiveTimeSolver::calculate_norm(), libMesh::UnsteadySolver::du(), main(), and output_norms().
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overridevirtualinherited |
Clear all the data structures associated with the system.
Reimplemented from libMesh::ImplicitSystem.
Reimplemented in libMesh::ContinuationSystem.
Definition at line 69 of file diff_system.C.
References libMesh::DifferentiableSystem::_diff_physics, libMesh::DifferentiablePhysics::clear_physics(), libMesh::DifferentiableQoI::clear_qoi(), libMesh::DifferentiableSystem::diff_qoi, and libMesh::System::use_fixed_solution.
Referenced by libMesh::ContinuationSystem::clear().
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virtualinherited |
Clear any data structures associated with the physics.
Definition at line 33 of file diff_physics.C.
References libMesh::DifferentiablePhysics::_time_evolving.
Referenced by libMesh::DifferentiableSystem::clear(), and libMesh::DifferentiablePhysics::~DifferentiablePhysics().
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inlinevirtualinherited |
Clear all the data structures associated with the QoI.
Definition at line 77 of file diff_qoi.h.
Referenced by libMesh::DifferentiableSystem::clear().
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inlineoverridevirtualinherited |
We don't allow systems to be attached to each other.
Implements libMesh::DifferentiableQoI.
Definition at line 168 of file diff_system.h.
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inlineoverridevirtualinherited |
We don't allow systems to be attached to each other.
Implements libMesh::DifferentiablePhysics.
Definition at line 158 of file diff_system.h.
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inlineinherited |
Parallel::Communicator
object used by this mesh. Definition at line 94 of file parallel_object.h.
References libMesh::ParallelObject::_communicator.
Referenced by libMesh::__libmesh_petsc_diff_solver_jacobian(), libMesh::__libmesh_petsc_diff_solver_monitor(), libMesh::__libmesh_petsc_diff_solver_residual(), libMesh::__libmesh_tao_equality_constraints(), libMesh::__libmesh_tao_equality_constraints_jacobian(), libMesh::__libmesh_tao_gradient(), libMesh::__libmesh_tao_hessian(), libMesh::__libmesh_tao_inequality_constraints(), libMesh::__libmesh_tao_inequality_constraints_jacobian(), libMesh::__libmesh_tao_objective(), libMesh::MeshRefinement::_coarsen_elements(), libMesh::ExactSolution::_compute_error(), libMesh::UniformRefinementEstimator::_estimate_error(), libMesh::BoundaryInfo::_find_id_maps(), libMesh::PetscLinearSolver< Number >::_petsc_shell_matrix_get_diagonal(), libMesh::SlepcEigenSolver< libMesh::Number >::_petsc_shell_matrix_get_diagonal(), libMesh::PetscLinearSolver< Number >::_petsc_shell_matrix_mult(), libMesh::SlepcEigenSolver< libMesh::Number >::_petsc_shell_matrix_mult(), libMesh::PetscLinearSolver< Number >::_petsc_shell_matrix_mult_add(), libMesh::EquationSystems::_read_impl(), libMesh::MeshRefinement::_refine_elements(), libMesh::MeshRefinement::_smooth_flags(), libMesh::DofMap::add_constraints_to_send_list(), add_cube_convex_hull_to_mesh(), libMesh::PetscDMWrapper::add_dofs_helper(), libMesh::PetscDMWrapper::add_dofs_to_section(), libMesh::TransientRBConstruction::add_IC_to_RB_space(), libMesh::ImplicitSystem::add_matrix(), libMesh::RBConstruction::add_scaled_matrix_and_vector(), libMesh::DynaIO::add_spline_constraints(), libMesh::System::add_vector(), libMesh::UnstructuredMesh::all_second_order(), libMesh::MeshTools::Modification::all_tri(), libMesh::LaplaceMeshSmoother::allgather_graph(), libMesh::DofMap::allgather_recursive_constraints(), libMesh::TransientRBConstruction::allocate_data_structures(), libMesh::RBConstruction::allocate_data_structures(), libMesh::TransientRBConstruction::assemble_affine_expansion(), libMesh::FEMSystem::assemble_qoi(), libMesh::MeshCommunication::assign_global_indices(), libMesh::DofMap::attach_matrix(), libMesh::MeshTools::Generation::build_extrusion(), libMesh::BoundaryInfo::build_node_list_from_side_list(), libMesh::EquationSystems::build_parallel_elemental_solution_vector(), libMesh::EquationSystems::build_parallel_solution_vector(), libMesh::PetscDMWrapper::build_section(), libMesh::PetscDMWrapper::build_sf(), libMesh::System::calculate_norm(), libMesh::DofMap::check_dirichlet_bcid_consistency(), libMesh::RBConstruction::compute_Fq_representor_innerprods(), libMesh::RBConstruction::compute_max_error_bound(), libMesh::Nemesis_IO_Helper::compute_num_global_elem_blocks(), libMesh::Nemesis_IO_Helper::compute_num_global_nodesets(), libMesh::Nemesis_IO_Helper::compute_num_global_sidesets(), libMesh::RBConstruction::compute_output_dual_innerprods(), libMesh::RBConstruction::compute_residual_dual_norm_slow(), libMesh::RBSCMConstruction::compute_SCM_bounds_on_training_set(), libMesh::Problem_Interface::computeF(), libMesh::Problem_Interface::computeJacobian(), libMesh::Problem_Interface::computePreconditioner(), libMesh::ExodusII_IO::copy_elemental_solution(), libMesh::ExodusII_IO::copy_scalar_solution(), libMesh::MeshTools::correct_node_proc_ids(), libMesh::MeshTools::create_bounding_box(), libMesh::DofMap::create_dof_constraints(), libMesh::MeshTools::create_nodal_bounding_box(), libMesh::MeshRefinement::create_parent_error_vector(), libMesh::MeshTools::create_processor_bounding_box(), libMesh::MeshTools::create_subdomain_bounding_box(), libMesh::MeshCommunication::delete_remote_elements(), libMesh::DofMap::distribute_dofs(), DMlibMeshFunction(), DMlibMeshJacobian(), DMlibMeshSetSystem_libMesh(), DMVariableBounds_libMesh(), libMesh::DTKSolutionTransfer::DTKSolutionTransfer(), libMesh::MeshRefinement::eliminate_unrefined_patches(), libMesh::RBEIMConstruction::enrich_RB_space(), libMesh::TransientRBConstruction::enrich_RB_space(), libMesh::RBConstruction::enrich_RB_space(), libMesh::EpetraVector< T >::EpetraVector(), AssembleOptimization::equality_constraints(), libMesh::WeightedPatchRecoveryErrorEstimator::estimate_error(), libMesh::PatchRecoveryErrorEstimator::estimate_error(), libMesh::JumpErrorEstimator::estimate_error(), libMesh::AdjointRefinementEstimator::estimate_error(), libMesh::ExactErrorEstimator::estimate_error(), libMesh::RBEIMConstruction::evaluate_mesh_function(), libMesh::MeshRefinement::flag_elements_by_elem_fraction(), libMesh::MeshRefinement::flag_elements_by_error_fraction(), libMesh::MeshRefinement::flag_elements_by_error_tolerance(), libMesh::MeshRefinement::flag_elements_by_mean_stddev(), libMesh::MeshRefinement::flag_elements_by_nelem_target(), libMesh::DofMap::gather_constraints(), libMesh::MeshfreeInterpolation::gather_remote_data(), libMesh::CondensedEigenSystem::get_eigenpair(), libMesh::DofMap::get_info(), libMesh::ImplicitSystem::get_linear_solver(), AssembleOptimization::inequality_constraints(), AssembleOptimization::inequality_constraints_jacobian(), libMesh::LocationMap< T >::init(), libMesh::TimeSolver::init(), libMesh::SystemSubsetBySubdomain::init(), libMesh::PetscDMWrapper::init_and_attach_petscdm(), libMesh::EigenSystem::init_matrices(), libMesh::OptimizationSystem::initialize_equality_constraints_storage(), libMesh::OptimizationSystem::initialize_inequality_constraints_storage(), libMesh::RBEIMConstruction::initialize_rb_construction(), integrate_function(), libMesh::MeshTools::libmesh_assert_consistent_distributed(), libMesh::MeshTools::libmesh_assert_consistent_distributed_nodes(), libMesh::MeshTools::libmesh_assert_contiguous_dof_ids(), libMesh::MeshTools::libmesh_assert_parallel_consistent_new_node_procids(), libMesh::MeshTools::libmesh_assert_parallel_consistent_procids< Elem >(), libMesh::MeshTools::libmesh_assert_parallel_consistent_procids< Node >(), libMesh::MeshTools::libmesh_assert_topology_consistent_procids< Node >(), libMesh::MeshTools::libmesh_assert_valid_boundary_ids(), libMesh::MeshTools::libmesh_assert_valid_dof_ids(), libMesh::MeshTools::libmesh_assert_valid_neighbors(), libMesh::DistributedMesh::libmesh_assert_valid_parallel_flags(), libMesh::DistributedMesh::libmesh_assert_valid_parallel_object_ids(), libMesh::DistributedMesh::libmesh_assert_valid_parallel_p_levels(), libMesh::MeshTools::libmesh_assert_valid_refinement_flags(), libMesh::MeshTools::libmesh_assert_valid_unique_ids(), libMesh::libmesh_petsc_preconditioner_apply(), libMesh::libmesh_petsc_snes_fd_residual(), libMesh::libmesh_petsc_snes_jacobian(), libMesh::libmesh_petsc_snes_mffd_residual(), libMesh::libmesh_petsc_snes_postcheck(), libMesh::libmesh_petsc_snes_residual(), libMesh::libmesh_petsc_snes_residual_helper(), libMesh::MeshRefinement::limit_level_mismatch_at_edge(), libMesh::MeshRefinement::limit_level_mismatch_at_node(), libMesh::MeshRefinement::limit_overrefined_boundary(), libMesh::MeshRefinement::limit_underrefined_boundary(), main(), libMesh::MeshRefinement::make_coarsening_compatible(), libMesh::MeshCommunication::make_elems_parallel_consistent(), libMesh::MeshRefinement::make_flags_parallel_consistent(), libMesh::MeshCommunication::make_new_node_proc_ids_parallel_consistent(), libMesh::MeshCommunication::make_new_nodes_parallel_consistent(), libMesh::MeshCommunication::make_node_ids_parallel_consistent(), libMesh::MeshCommunication::make_node_proc_ids_parallel_consistent(), libMesh::MeshCommunication::make_node_unique_ids_parallel_consistent(), libMesh::MeshCommunication::make_nodes_parallel_consistent(), libMesh::MeshCommunication::make_p_levels_parallel_consistent(), libMesh::MeshRefinement::make_refinement_compatible(), libMesh::TransientRBConstruction::mass_matrix_scaled_matvec(), libMesh::FEMSystem::mesh_position_set(), LinearElasticityWithContact::move_mesh(), libMesh::DistributedMesh::n_active_elem(), libMesh::MeshTools::n_active_levels(), libMesh::BoundaryInfo::n_boundary_conds(), libMesh::DofMap::n_constrained_dofs(), libMesh::BoundaryInfo::n_edge_conds(), libMesh::CondensedEigenSystem::n_global_non_condensed_dofs(), libMesh::MeshTools::n_levels(), libMesh::BoundaryInfo::n_nodeset_conds(), libMesh::MeshTools::n_p_levels(), libMesh::BoundaryInfo::n_shellface_conds(), libMesh::DistributedMesh::parallel_max_elem_id(), libMesh::DistributedMesh::parallel_max_node_id(), libMesh::ReplicatedMesh::parallel_max_unique_id(), libMesh::DistributedMesh::parallel_max_unique_id(), libMesh::DistributedMesh::parallel_n_elem(), libMesh::DistributedMesh::parallel_n_nodes(), libMesh::SparsityPattern::Build::parallel_sync(), libMesh::MeshTools::paranoid_n_levels(), libMesh::petsc_auto_fieldsplit(), libMesh::System::point_gradient(), libMesh::System::point_hessian(), libMesh::System::point_value(), libMesh::DofMap::print_dof_constraints(), FEMParameters::read(), libMesh::Nemesis_IO::read(), libMesh::XdrIO::read(), libMesh::CheckpointIO::read_header(), libMesh::XdrIO::read_header(), libMesh::System::read_header(), libMesh::RBEvaluation::read_in_vectors_from_multiple_files(), libMesh::System::read_legacy_data(), libMesh::TransientRBConstruction::read_riesz_representors_from_files(), libMesh::RBConstruction::read_riesz_representors_from_files(), libMesh::System::read_SCALAR_dofs(), libMesh::XdrIO::read_serialized_bc_names(), libMesh::XdrIO::read_serialized_bcs_helper(), libMesh::System::read_serialized_blocked_dof_objects(), libMesh::XdrIO::read_serialized_connectivity(), libMesh::XdrIO::read_serialized_nodes(), libMesh::XdrIO::read_serialized_nodesets(), libMesh::XdrIO::read_serialized_subdomain_names(), libMesh::System::read_serialized_vector(), libMesh::MeshRefinement::refine_and_coarsen_elements(), libMesh::DistributedMesh::renumber_dof_objects(), LinearElasticityWithContact::residual_and_jacobian(), OverlappingAlgebraicGhostingTest::run_ghosting_test(), OverlappingCouplingGhostingTest::run_sparsity_pattern_test(), libMesh::DofMap::scatter_constraints(), libMesh::CheckpointIO::select_split_config(), libMesh::TransientRBConstruction::set_error_temporal_data(), libMesh::RBEIMConstruction::set_explicit_sys_subvector(), libMesh::DofMap::set_nonlocal_dof_objects(), libMesh::PetscDMWrapper::set_point_range_in_section(), libMesh::PetscDiffSolver::setup_petsc_data(), libMesh::LaplaceMeshSmoother::smooth(), libMesh::split_mesh(), libMesh::BoundaryInfo::sync(), libMesh::MeshRefinement::test_level_one(), MeshfunctionDFEM::test_mesh_function_dfem(), MeshfunctionDFEM::test_mesh_function_dfem_grad(), MeshFunctionTest::test_p_level(), libMesh::MeshRefinement::test_unflagged(), SystemsTest::testBlockRestrictedVarNDofs(), PointLocatorTest::testLocator(), BoundaryInfoTest::testMesh(), SystemsTest::testProjectCubeWithMeshFunction(), CheckpointIOTest::testSplitter(), libMesh::MeshTools::total_weight(), libMesh::MeshFunctionSolutionTransfer::transfer(), libMesh::MeshfreeSolutionTransfer::transfer(), libMesh::TransientRBConstruction::truth_assembly(), libMesh::RBConstruction::truth_assembly(), libMesh::MeshRefinement::uniformly_coarsen(), libMesh::TransientRBConstruction::update_RB_initial_condition_all_N(), libMesh::RBEIMConstruction::update_RB_system_matrices(), libMesh::TransientRBConstruction::update_RB_system_matrices(), libMesh::RBConstruction::update_RB_system_matrices(), libMesh::TransientRBConstruction::update_residual_terms(), libMesh::RBConstruction::update_residual_terms(), libMesh::NameBasedIO::write(), libMesh::XdrIO::write(), libMesh::VTKIO::write_nodal_data(), libMesh::RBEvaluation::write_out_vectors(), libMesh::TransientRBConstruction::write_riesz_representors_to_files(), libMesh::RBConstruction::write_riesz_representors_to_files(), libMesh::System::write_SCALAR_dofs(), libMesh::XdrIO::write_serialized_bcs_helper(), libMesh::System::write_serialized_blocked_dof_objects(), libMesh::XdrIO::write_serialized_connectivity(), libMesh::XdrIO::write_serialized_nodes(), libMesh::XdrIO::write_serialized_nodesets(), libMesh::RBDataSerialization::RBEvaluationSerialization::write_to_file(), libMesh::RBDataSerialization::TransientRBEvaluationSerialization::write_to_file(), libMesh::RBDataSerialization::RBEIMEvaluationSerialization::write_to_file(), and libMesh::RBDataSerialization::RBSCMEvaluationSerialization::write_to_file().
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virtualinherited |
true
when the other system contains identical data, up to the given threshold. Outputs some diagnostic info when verbose
is set. Definition at line 514 of file system.C.
References libMesh::System::_is_initialized, libMesh::System::_sys_name, libMesh::System::_vectors, libMesh::System::get_vector(), libMesh::libmesh_assert(), libMesh::System::n_vectors(), libMesh::System::name(), libMesh::out, and libMesh::System::solution.
Referenced by libMesh::EquationSystems::compare().
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Definition at line 194 of file system.C.
References libMesh::System::_dof_map, and libMesh::System::current_local_solution.
Referenced by libMesh::ExactSolution::_compute_error(), libMesh::UniformRefinementEstimator::_estimate_error(), libMesh::HPCoarsenTest::add_projection(), LinearElasticityWithContact::compute_stresses(), LinearElasticity::compute_stresses(), compute_stresses(), LargeDeformationElasticity::compute_stresses(), libMesh::ExactErrorEstimator::estimate_error(), main(), libMesh::WeightedPatchRecoveryErrorEstimator::EstimateError::operator()(), libMesh::PatchRecoveryErrorEstimator::EstimateError::operator()(), libMesh::HPCoarsenTest::select_refinement(), SolidSystem::side_time_derivative(), libMesh::EnsightIO::write_scalar_ascii(), and libMesh::EnsightIO::write_vector_ascii().
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inlinevirtualinherited |
Subtracts a damping vector contribution on elem
from elem_residual.
This method is not used in first-order-in-time problems. For second-order-in-time problems, this is the \( C(u,\ddot{u})\ddot{u} \) term. This method is only called for UnsteadySolver-based TimeSolvers.
If this method receives request_jacobian = true, then it should compute elem_jacobian and return true if possible. If elem_jacobian has not been computed then the method should return false.
If the problem has no damping, the default "do-nothing" is correct. Otherwise, this must be reimplemented.
Reimplemented in SecondOrderScalarSystemFirstOrderTimeSolverBase, and SecondOrderScalarSystemSecondOrderTimeSolverBase.
Definition at line 375 of file diff_physics.h.
Referenced by libMesh::EulerSolver::element_residual(), libMesh::Euler2Solver::element_residual(), and libMesh::NewmarkSolver::element_residual().
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inlineinherited |
Deactivates the system.
Only active systems are solved.
Definition at line 2131 of file system.h.
References libMesh::System::_active.
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overridevirtualinherited |
Avoids use of any cached data that might affect any solve result.
Should be overridden in derived systems.
Reimplemented from libMesh::System.
Definition at line 293 of file implicit_system.C.
References libMesh::System::assemble_before_solve, libMesh::ImplicitSystem::get_linear_solver(), and libMesh::LinearSolver< T >::reuse_preconditioner().
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Definition at line 106 of file reference_counter.C.
References libMesh::ReferenceCounter::_enable_print_counter.
Referenced by libMesh::LibMeshInit::LibMeshInit().
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privateinherited |
Finds the discrete norm for the entries in the vector corresponding to Dofs associated with var.
Definition at line 1337 of file system.C.
References libMesh::DISCRETE_L1, libMesh::DISCRETE_L2, libMesh::DISCRETE_L_INF, libMesh::System::local_dof_indices(), libMesh::NumericVector< T >::subset_l1_norm(), libMesh::NumericVector< T >::subset_l2_norm(), and libMesh::NumericVector< T >::subset_linfty_norm().
Referenced by libMesh::System::calculate_norm().
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inlinevirtualinherited |
Adds the constraint contribution on elem
to elem_residual.
If this method receives request_jacobian = true, then it should compute elem_jacobian and return true if possible. If elem_jacobian has not been computed then the method should return false.
Users may need to reimplement this for their particular PDE.
To implement the constraint 0 = G(u), the user should examine u = elem_solution and add (G(u), phi_i) to elem_residual in elem_constraint().
Reimplemented in CoupledSystem, and NavierSystem.
Definition at line 143 of file diff_physics.h.
Referenced by libMesh::EulerSolver::element_residual(), libMesh::Euler2Solver::element_residual(), libMesh::SteadySolver::element_residual(), libMesh::EigenTimeSolver::element_residual(), and libMesh::NewmarkSolver::element_residual().
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inlinevirtualinherited |
Does any work that needs to be done on elem
in a postprocessing loop.
Reimplemented in LaplaceSystem, LaplaceSystem, and PoissonSystem.
Definition at line 281 of file diff_system.h.
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inlinevirtualinherited |
Does any work that needs to be done on elem
in a quantity of interest assembly loop, outputting to elem_qoi.
Only qois included in the supplied QoISet
need to be assembled.
Reimplemented in LaplaceQoI.
Definition at line 110 of file diff_qoi.h.
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inlinevirtualinherited |
Does any work that needs to be done on elem
in a quantity of interest derivative assembly loop, outputting to elem_qoi_derivative.
Only qois included in the supplied QoISet
need their derivatives assembled.
Reimplemented in LaplaceSystem, LaplaceSystem, LaplaceQoI, and HeatSystem.
Definition at line 122 of file diff_qoi.h.
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virtual |
Adds the time derivative contribution on elem
to elem_residual.
If this method receives request_jacobian = true, then it should compute elem_jacobian and return true if possible. If elem_jacobian has not been computed then the method should return false.
Users need to reimplement this for their particular PDE.
To implement the physics model du/dt = F(u), the user should examine u = elem_solution and add (F(u), phi_i) to elem_residual in elem_time_derivative().
Reimplemented from libMesh::DifferentiablePhysics.
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virtual |
Adds the time derivative contribution on elem
to elem_residual.
If this method receives request_jacobian = true, then it should compute elem_jacobian and return true if possible. If elem_jacobian has not been computed then the method should return false.
Users need to reimplement this for their particular PDE.
To implement the physics model du/dt = F(u), the user should examine u = elem_solution and add (F(u), phi_i) to elem_residual in elem_time_derivative().
Reimplemented from libMesh::DifferentiablePhysics.
Definition at line 104 of file curl_curl_system.C.
References forcing(), libMesh::FEGenericBase< OutputType >::get_curl_phi(), libMesh::DiffContext::get_elem_jacobian(), libMesh::DiffContext::get_elem_residual(), libMesh::FEMContext::get_element_fe(), libMesh::FEMContext::get_element_qrule(), libMesh::FEAbstract::get_JxW(), libMesh::FEGenericBase< OutputType >::get_phi(), libMesh::FEAbstract::get_xyz(), libMesh::FEMContext::interior_curl(), libMesh::FEMContext::interior_value(), libMesh::DiffContext::n_dof_indices(), libMesh::QBase::n_points(), and u_var.
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staticinherited |
Methods to enable/disable the reference counter output from print_info()
Definition at line 100 of file reference_counter.C.
References libMesh::ReferenceCounter::_enable_print_counter.
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inlinevirtualinherited |
Adds a pseudo-convection contribution on elem
to elem_residual, if the nodes of elem
are being translated by a moving mesh.
The library provides a basic implementation in FEMPhysics::eulerian_residual()
Reimplemented in SolidSystem, and libMesh::FEMPhysics.
Definition at line 295 of file diff_physics.h.
Referenced by libMesh::DifferentiablePhysics::_eulerian_time_deriv().
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overridevirtualinherited |
Adds a pseudo-convection contribution on elem
to elem_residual, if the nodes of elem
are being translated by a moving mesh.
This function assumes that the user's time derivative equations (except for any equations involving unknown mesh xyz coordinates themselves) are expressed in an Eulerian frame of reference, and that the user is satisfied with an unstabilized convection term. Lagrangian equations will probably require overriding eulerian_residual() with a blank function; ALE or stabilized formulations will require reimplementing eulerian_residual() entirely.
Reimplemented from libMesh::DifferentiablePhysics.
Reimplemented in SolidSystem.
Definition at line 38 of file fem_physics.C.
References libMesh::DifferentiablePhysics::_mesh_sys, libMesh::DifferentiablePhysics::_mesh_x_var, libMesh::DifferentiablePhysics::_mesh_y_var, libMesh::DifferentiablePhysics::_mesh_z_var, libMesh::FEMContext::get_element_qrule(), libMesh::FEMContext::interior_gradient(), libMesh::invalid_uint, libMesh::DifferentiablePhysics::is_time_evolving(), libMesh::libmesh_assert(), libMesh::libmesh_real(), libMesh::DiffContext::n_vars(), and libMesh::UnsteadySolver::old_nonlinear_solution().
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protected |
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protected |
Definition at line 238 of file curl_curl_system.C.
References libMesh::Real, and soln.
Referenced by side_time_derivative().
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virtualinherited |
Method to finalize qoi derivatives which require more than just a simple sum of element contributions.
Definition at line 53 of file diff_qoi.C.
Referenced by libMesh::FEMSystem::assemble_qoi_derivative().
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protected |
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protected |
Definition at line 231 of file curl_curl_system.C.
References CurlCurlExactSolution::forcing(), libMesh::Real, and soln.
Referenced by element_time_derivative().
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overridevirtualinherited |
Solves for the derivative of each of the system's quantities of interest q in qoi
[qoi_indices] with respect to each parameter in parameters
, placing the result for qoi i
and parameter j
into sensitivities
[i][j].
Uses the forward sensitivity method.
Currently uses finite differenced derivatives (partial q / partial p) and (partial R / partial p).
Reimplemented from libMesh::System.
Definition at line 796 of file implicit_system.C.
References std::abs(), libMesh::SensitivityData::allocate_data(), libMesh::ExplicitSystem::assemble_qoi(), libMesh::ExplicitSystem::assemble_qoi_derivative(), libMesh::ImplicitSystem::assembly(), libMesh::SparseMatrix< T >::close(), libMesh::NumericVector< T >::close(), libMesh::NumericVector< T >::dot(), libMesh::System::get_adjoint_rhs(), libMesh::System::get_sensitivity_solution(), libMesh::QoISet::has_index(), libMesh::ImplicitSystem::matrix, libMesh::System::n_qois(), libMesh::System::qoi, libMesh::Real, libMesh::ExplicitSystem::rhs, libMesh::ImplicitSystem::sensitivity_solve(), libMesh::ParameterVector::size(), and libMesh::TOLERANCE.
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inherited |
Definition at line 1019 of file system.C.
References libMesh::System::get_vector().
Referenced by libMesh::ImplicitSystem::adjoint_solve(), libMesh::ImplicitSystem::forward_qoi_parameter_sensitivity(), libMesh::ImplicitSystem::qoi_parameter_hessian(), libMesh::ImplicitSystem::qoi_parameter_hessian_vector_product(), and libMesh::ImplicitSystem::weighted_sensitivity_adjoint_solve().
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inherited |
Definition at line 1029 of file system.C.
References libMesh::System::get_vector().
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inherited |
Definition at line 957 of file system.C.
References libMesh::System::get_vector().
Referenced by libMesh::UniformRefinementEstimator::_estimate_error(), libMesh::ImplicitSystem::adjoint_solve(), libMesh::AdjointRefinementEstimator::estimate_error(), libMesh::AdjointResidualErrorEstimator::estimate_error(), main(), HeatSystem::perturb_accumulate_residuals(), libMesh::ImplicitSystem::qoi_parameter_hessian(), libMesh::ImplicitSystem::qoi_parameter_hessian_vector_product(), and libMesh::ImplicitSystem::weighted_sensitivity_adjoint_solve().
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inherited |
Definition at line 967 of file system.C.
References libMesh::System::get_vector().
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inherited |
Fills all_variable_numbers
with all the variable numbers for the variables that have been added to this system.
Definition at line 1240 of file system.C.
References libMesh::System::_variable_numbers, and libMesh::System::n_vars().
Referenced by libMesh::RBEIMConstruction::initialize_rb_construction(), MeshfunctionDFEM::test_mesh_function_dfem(), MeshfunctionDFEM::test_mesh_function_dfem_grad(), and SystemsTest::testProjectCubeWithMeshFunction().
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inlineinherited |
_dof_map
. Definition at line 2107 of file system.h.
References libMesh::System::_dof_map.
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inlineinherited |
_dof_map
. Definition at line 2099 of file system.h.
References libMesh::System::_dof_map.
Referenced by libMesh::__libmesh_petsc_diff_solver_jacobian(), libMesh::__libmesh_petsc_diff_solver_residual(), libMesh::ExactSolution::_compute_error(), libMesh::UniformRefinementEstimator::_estimate_error(), libMesh::DifferentiableSystem::add_dot_var_dirichlet_bcs(), libMesh::HPCoarsenTest::add_projection(), libMesh::RBConstruction::add_scaled_matrix_and_vector(), libMesh::UnsteadySolver::adjoint_advance_timestep(), libMesh::ImplicitSystem::adjoint_solve(), libMesh::NewmarkSolver::advance_timestep(), libMesh::UnsteadySolver::advance_timestep(), libMesh::EquationSystems::allgather(), libMesh::TransientRBConstruction::allocate_data_structures(), libMesh::RBConstruction::allocate_data_structures(), assemble(), LinearElasticity::assemble(), assemble_1D(), AssembleOptimization::assemble_A_and_F(), assemble_and_solve(), assemble_biharmonic(), assemble_elasticity(), assemble_ellipticdg(), assemble_helmholtz(), assemble_laplace(), assemble_mass(), assemble_matrices(), assemble_matrix_and_rhs(), assemble_poisson(), assemble_SchroedingerEquation(), assemble_shell(), assemble_stokes(), assemble_wave(), libMesh::EquationSystems::build_discontinuous_solution_vector(), libMesh::EquationSystems::build_parallel_elemental_solution_vector(), libMesh::EquationSystems::build_parallel_solution_vector(), libMesh::PetscDMWrapper::build_sf(), libMesh::System::calculate_norm(), compute_jacobian(), compute_residual(), LinearElasticityWithContact::compute_stresses(), LinearElasticity::compute_stresses(), compute_stresses(), LargeDeformationElasticity::compute_stresses(), libMesh::Problem_Interface::computeF(), libMesh::Problem_Interface::computeJacobian(), libMesh::Problem_Interface::computePreconditioner(), MyConstraint::constrain(), libMesh::ExodusII_IO::copy_scalar_solution(), DMCreateDomainDecomposition_libMesh(), DMCreateFieldDecomposition_libMesh(), DMlibMeshFunction(), DMlibMeshJacobian(), DMlibMeshSetSystem_libMesh(), libMesh::RBEIMConstruction::enrich_RB_space(), libMesh::JumpErrorEstimator::estimate_error(), libMesh::AdjointRefinementEstimator::estimate_error(), libMesh::ExactErrorEstimator::estimate_error(), libMesh::RBEIMAssembly::evaluate_basis_function(), libMesh::System::get_info(), libMesh::SystemSubsetBySubdomain::init(), libMesh::PetscDMWrapper::init_and_attach_petscdm(), libMesh::SecondOrderUnsteadySolver::init_data(), libMesh::UnsteadySolver::init_data(), HeatSystem::init_data(), SimpleRBConstruction::init_data(), LaplaceSystem::init_dirichlet_bcs(), libMesh::RBEIMConstruction::init_dof_map_between_systems(), libMesh::EigenSystem::init_matrices(), libMesh::ImplicitSystem::init_matrices(), libMesh::CondensedEigenSystem::initialize_condensed_dofs(), libMesh::OptimizationSystem::initialize_equality_constraints_storage(), libMesh::RBEIMAssembly::initialize_fe(), libMesh::OptimizationSystem::initialize_inequality_constraints_storage(), libMesh::RBEIMConstruction::initialize_rb_construction(), LaplaceYoung::jacobian(), LargeDeformationElasticity::jacobian(), libMesh::libmesh_petsc_snes_fd_residual(), libMesh::libmesh_petsc_snes_jacobian(), libMesh::libmesh_petsc_snes_mffd_residual(), libMesh::libmesh_petsc_snes_residual(), libMesh::libmesh_petsc_snes_residual_helper(), libMesh::System::local_dof_indices(), AssembleOptimization::lower_and_upper_bounds(), main(), libMesh::DofMap::max_constraint_error(), LinearElasticityWithContact::move_mesh(), libMesh::DGFEMContext::neighbor_side_fe_reinit(), libMesh::UnsteadySolver::old_nonlinear_solution(), libMesh::SecondOrderUnsteadySolver::old_solution_accel(), libMesh::SecondOrderUnsteadySolver::old_solution_rate(), libMesh::WeightedPatchRecoveryErrorEstimator::EstimateError::operator()(), libMesh::PatchRecoveryErrorEstimator::EstimateError::operator()(), libMesh::RBSCMConstruction::perform_SCM_greedy(), libMesh::petsc_auto_fieldsplit(), libMesh::ErrorVector::plot_error(), libMesh::System::point_gradient(), libMesh::System::point_hessian(), libMesh::System::point_value(), libMesh::FEMContext::pre_fe_reinit(), libMesh::RBEIMAssembly::RBEIMAssembly(), libMesh::RBEIMConstruction::RBEIMConstruction(), libMesh::System::re_update(), libMesh::System::read_parallel_data(), libMesh::System::read_SCALAR_dofs(), libMesh::SecondOrderUnsteadySolver::reinit(), libMesh::UnsteadySolver::reinit(), libMesh::EigenSystem::reinit(), libMesh::ImplicitSystem::reinit(), libMesh::System::reinit_constraints(), libMesh::EquationSystems::reinit_solutions(), LaplaceYoung::residual(), LargeDeformationElasticity::residual(), LinearElasticityWithContact::residual_and_jacobian(), libMesh::UnsteadySolver::retrieve_timestep(), OverlappingAlgebraicGhostingTest::run_ghosting_test(), OverlappingCouplingGhostingTest::run_sparsity_pattern_test(), libMesh::HPCoarsenTest::select_refinement(), libMesh::ImplicitSystem::sensitivity_solve(), libMesh::RBConstruction::set_context_solution_vec(), libMesh::PetscDMWrapper::set_point_range_in_section(), set_system_parameters(), FETest< order, family, elem_type >::setUp(), SolidSystem::side_time_derivative(), libMesh::NewtonSolver::solve(), libMesh::PetscDiffSolver::solve(), libMesh::RBConstruction::solve_for_matrix_and_rhs(), MeshfunctionDFEM::test_mesh_function_dfem(), MeshfunctionDFEM::test_mesh_function_dfem_grad(), MeshFunctionTest::test_p_level(), SystemsTest::testBlockRestrictedVarNDofs(), DofMapTest::testConstraintLoopDetection(), DefaultCouplingTest::testCoupling(), PointNeighborCouplingTest::testCoupling(), EquationSystemsTest::testDisableDefaultGhosting(), SystemsTest::testDofCouplingWithVarGroups(), DofMapTest::testDofOwner(), MeshInputTest::testDynaReadPatch(), MeshInputTest::testExodusWriteElementDataFromDiscontinuousNodalData(), SystemsTest::testProjectCubeWithMeshFunction(), SystemsTest::testProjectMatrix1D(), SystemsTest::testProjectMatrix2D(), SystemsTest::testProjectMatrix3D(), BoundaryInfoTest::testShellFaceConstraints(), libMesh::MeshFunctionSolutionTransfer::transfer(), libMesh::BoundaryVolumeSolutionTransfer::transfer_boundary_volume(), libMesh::RBEIMConstruction::truth_solve(), libMesh::RBEIMConstruction::update_RB_system_matrices(), libMesh::ImplicitSystem::weighted_sensitivity_adjoint_solve(), libMesh::ImplicitSystem::weighted_sensitivity_solve(), libMesh::Nemesis_IO_Helper::write_nodal_solution(), libMesh::System::write_parallel_data(), libMesh::EnsightIO::write_scalar_ascii(), libMesh::System::write_SCALAR_dofs(), libMesh::EnsightIO::write_vector_ascii(), and libMesh::RBConstruction::zero_constrained_dofs_on_vector().
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inlineinherited |
Definition at line 725 of file system.h.
References libMesh::System::_equation_systems.
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inlineinherited |
Definition at line 720 of file system.h.
References libMesh::System::_equation_systems.
Referenced by libMesh::UniformRefinementEstimator::_estimate_error(), libMesh::RBSCMConstruction::add_scaled_symm_Aq(), libMesh::NewmarkSystem::clear(), libMesh::FrequencySystem::clear_all(), compute_jacobian(), compute_residual(), LinearElasticityWithContact::compute_stresses(), SolidSystem::element_time_derivative(), libMesh::AdjointRefinementEstimator::estimate_error(), libMesh::AdjointResidualErrorEstimator::estimate_error(), libMesh::ExactErrorEstimator::find_squared_element_error(), libMesh::RBEIMConstruction::get_explicit_system(), libMesh::ImplicitSystem::get_linear_solve_parameters(), SolidSystem::init_data(), HeatSystem::init_data(), libMesh::FrequencySystem::init_data(), libMesh::RBEIMConstruction::init_data(), libMesh::RBEIMConstruction::initialize_rb_construction(), LaplaceYoung::jacobian(), libMesh::RBSCMConstruction::load_matrix_B(), LinearElasticityWithContact::move_mesh(), libMesh::FrequencySystem::n_frequencies(), libMesh::RBSCMConstruction::perform_SCM_greedy(), libMesh::RBEIMConstruction::plot_parametrized_functions_in_training_set(), libMesh::System::point_gradient(), libMesh::System::point_value(), LaplaceYoung::residual(), LinearElasticityWithContact::residual_and_jacobian(), SolidSystem::save_initial_mesh(), libMesh::FrequencySystem::set_current_frequency(), libMesh::FrequencySystem::set_frequencies(), libMesh::FrequencySystem::set_frequencies_by_range(), libMesh::FrequencySystem::set_frequencies_by_steps(), libMesh::NewmarkSystem::set_newmark_parameters(), libMesh::NonlinearImplicitSystem::set_solver_parameters(), SolidSystem::side_time_derivative(), libMesh::CondensedEigenSystem::solve(), libMesh::EigenSystem::solve(), libMesh::FrequencySystem::solve(), libMesh::LinearImplicitSystem::solve(), libMesh::RBConstruction::solve_for_matrix_and_rhs(), MeshFunctionTest::test_p_level(), libMesh::MeshFunctionSolutionTransfer::transfer(), libMesh::MeshfreeSolutionTransfer::transfer(), libMesh::DirectSolutionTransfer::transfer(), libMesh::DTKSolutionTransfer::transfer(), libMesh::TransientRBConstruction::truth_solve(), libMesh::RBEIMConstruction::truth_solve(), libMesh::RBConstruction::truth_solve(), and libMesh::WrappedFunction< Output >::WrappedFunction().
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inlineinherited |
Definition at line 518 of file diff_physics.h.
References libMesh::DifferentiablePhysics::_first_order_vars.
Referenced by libMesh::DifferentiableSystem::have_first_order_scalar_vars().
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staticinherited |
Gets a string containing the reference information.
Definition at line 47 of file reference_counter.C.
References libMesh::ReferenceCounter::_counts, and libMesh::Quality::name().
Referenced by libMesh::ReferenceCounter::print_info().
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inherited |
Definition at line 1636 of file system.C.
References libMesh::FEType::family, libMesh::System::get_dof_map(), libMesh::DofMap::get_info(), libMesh::System::n_constrained_dofs(), libMesh::System::n_dofs(), libMesh::System::n_local_constrained_dofs(), libMesh::System::n_local_dofs(), libMesh::System::n_matrices(), libMesh::System::n_variable_groups(), libMesh::VariableGroup::n_variables(), libMesh::System::n_vectors(), libMesh::VariableGroup::name(), libMesh::System::name(), libMesh::System::number(), libMesh::System::system_type(), libMesh::Variable::type(), libMesh::DofMap::variable_group(), and libMesh::System::variable_group().
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overridevirtualinherited |
Reimplemented from libMesh::ImplicitSystem.
Definition at line 184 of file diff_system.C.
References libMesh::libmesh_assert(), and libMesh::DifferentiableSystem::time_solver.
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overridevirtualinherited |
Reimplemented from libMesh::ImplicitSystem.
Definition at line 175 of file diff_system.C.
References libMesh::libmesh_assert(), and libMesh::DifferentiableSystem::time_solver.
Referenced by main().
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inherited |
mat_name
.None of these matrices is involved in the solution process. Access is only granted when the matrix is already properly initialized.
Definition at line 269 of file implicit_system.C.
References libMesh::ImplicitSystem::_matrices.
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inherited |
mat_name
.None of these matrices is involved in the solution process. Access is only granted when the matrix is already properly initialized.
Definition at line 262 of file implicit_system.C.
References libMesh::ImplicitSystem::_matrices.
Referenced by add_M_C_K_helmholtz(), assemble(), assemble_helmholtz(), libMesh::NewmarkSystem::compute_matrix(), main(), OverlappingCouplingGhostingTest::run_sparsity_pattern_test(), libMesh::EigenTimeSolver::solve(), and libMesh::NewmarkSystem::update_rhs().
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inlineinherited |
_mesh
. Definition at line 2091 of file system.h.
References libMesh::System::_mesh.
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inlineinherited |
_mesh
. Definition at line 2083 of file system.h.
References libMesh::System::_mesh.
Referenced by libMesh::ExactSolution::_compute_error(), LinearElasticityWithContact::add_contact_edge_elements(), libMesh::PetscDMWrapper::add_dofs_to_section(), libMesh::HPCoarsenTest::add_projection(), libMesh::RBConstruction::add_scaled_matrix_and_vector(), AssembleOptimization::assemble_A_and_F(), libMesh::FEMSystem::assemble_qoi(), libMesh::FEMSystem::assemble_qoi_derivative(), libMesh::FEMSystem::assembly(), AssemblyA0::boundary_assembly(), AssemblyF0::boundary_assembly(), AssemblyA1::boundary_assembly(), AssemblyF1::boundary_assembly(), AssemblyF2::boundary_assembly(), AssemblyA2::boundary_assembly(), libMesh::System::calculate_norm(), compute_jacobian(), compute_residual(), LinearElasticityWithContact::compute_stresses(), DMCreateDomainDecomposition_libMesh(), DMCreateFieldDecomposition_libMesh(), DMlibMeshSetSystem_libMesh(), SolidSystem::element_time_derivative(), libMesh::RBEIMConstruction::enrich_RB_space(), libMesh::WeightedPatchRecoveryErrorEstimator::estimate_error(), libMesh::PatchRecoveryErrorEstimator::estimate_error(), libMesh::JumpErrorEstimator::estimate_error(), libMesh::AdjointResidualErrorEstimator::estimate_error(), libMesh::ExactErrorEstimator::estimate_error(), libMesh::GenericProjector< FFunctor, GFunctor, FValue, ProjectionAction >::GenericProjector(), LinearElasticityWithContact::get_least_and_max_gap_function(), libMesh::SystemSubsetBySubdomain::init(), libMesh::PetscDMWrapper::init_and_attach_petscdm(), SolidSystem::init_data(), libMesh::System::init_data(), libMesh::RBEIMConstruction::init_dof_map_between_systems(), libMesh::EigenSystem::init_matrices(), libMesh::ImplicitSystem::init_matrices(), LinearElasticityWithContact::initialize_contact_load_paths(), libMesh::RBEIMAssembly::initialize_fe(), libMesh::System::local_dof_indices(), libMesh::DofMap::max_constraint_error(), libMesh::FEMSystem::mesh_position_get(), libMesh::FEMSystem::mesh_position_set(), LinearElasticityWithContact::move_mesh(), libMesh::WeightedPatchRecoveryErrorEstimator::EstimateError::operator()(), libMesh::PatchRecoveryErrorEstimator::EstimateError::operator()(), libMesh::petsc_auto_fieldsplit(), libMesh::RBEIMConstruction::plot_parametrized_functions_in_training_set(), libMesh::System::point_gradient(), libMesh::System::point_hessian(), libMesh::System::point_value(), libMesh::FEMSystem::postprocess(), libMesh::System::read_header(), libMesh::RBEvaluation::read_in_vectors_from_multiple_files(), libMesh::System::read_legacy_data(), libMesh::System::read_parallel_data(), libMesh::System::read_serialized_vector(), libMesh::System::read_serialized_vectors(), libMesh::EigenSystem::reinit(), libMesh::ImplicitSystem::reinit(), LinearElasticityWithContact::residual_and_jacobian(), OverlappingAlgebraicGhostingTest::run_ghosting_test(), OverlappingCouplingGhostingTest::run_sparsity_pattern_test(), SolidSystem::save_initial_mesh(), libMesh::HPSingularity::select_refinement(), libMesh::HPCoarsenTest::select_refinement(), libMesh::PetscDMWrapper::set_point_range_in_section(), SolidSystem::side_time_derivative(), libMesh::MeshFunctionSolutionTransfer::transfer(), libMesh::BoundaryVolumeSolutionTransfer::transfer(), libMesh::BoundaryVolumeSolutionTransfer::transfer_boundary_volume(), libMesh::BoundaryVolumeSolutionTransfer::transfer_volume_boundary(), libMesh::TransientRBConstruction::truth_solve(), libMesh::RBEIMConstruction::truth_solve(), libMesh::RBConstruction::truth_solve(), libMesh::System::write_header(), libMesh::RBEvaluation::write_out_vectors(), libMesh::System::write_parallel_data(), libMesh::System::write_serialized_vector(), libMesh::System::write_serialized_vectors(), and libMesh::System::zero_variable().
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inlineinherited |
Definition at line 631 of file diff_physics.h.
References libMesh::DifferentiablePhysics::_mesh_sys.
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inlineinherited |
Definition at line 625 of file diff_physics.h.
References libMesh::DifferentiablePhysics::_mesh_sys.
Referenced by libMesh::FEMSystem::build_context().
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inlineinherited |
Definition at line 637 of file diff_physics.h.
References libMesh::DifferentiablePhysics::_mesh_x_var.
Referenced by libMesh::FEMSystem::build_context().
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inlineinherited |
Definition at line 643 of file diff_physics.h.
References libMesh::DifferentiablePhysics::_mesh_y_var.
Referenced by libMesh::FEMSystem::build_context().
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inlineinherited |
Definition at line 649 of file diff_physics.h.
References libMesh::DifferentiablePhysics::_mesh_z_var.
Referenced by libMesh::FEMSystem::build_context().
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inlineinherited |
this
. Definition at line 190 of file diff_system.h.
References libMesh::DifferentiableSystem::_diff_physics.
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inlineinherited |
this
. Definition at line 181 of file diff_system.h.
References libMesh::DifferentiableSystem::_diff_physics.
Referenced by libMesh::EulerSolver::_general_residual(), libMesh::Euler2Solver::_general_residual(), libMesh::SteadySolver::_general_residual(), libMesh::NewmarkSolver::_general_residual(), libMesh::FEMSystem::build_context(), libMesh::EulerSolver::element_residual(), libMesh::Euler2Solver::element_residual(), libMesh::EigenTimeSolver::element_residual(), libMesh::FEMSystem::init_context(), libMesh::EigenTimeSolver::nonlocal_residual(), and libMesh::EigenTimeSolver::side_residual().
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inlineinherited |
Definition at line 218 of file diff_system.h.
References libMesh::DifferentiableSystem::diff_qoi.
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inlineinherited |
this
. Definition at line 210 of file diff_system.h.
References libMesh::DifferentiableSystem::diff_qoi.
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inherited |
For a given second order (in time) variable var, this method will return the index to the corresponding "dot" variable.
For FirstOrderUnsteadySolver classes, the "dot" variable would automatically be added and the returned index will correspond to that variable. For SecondOrderUnsteadySolver classes, this method will return var as there this is no "dot" variable per se, but having this function allows one to use the interface to treat both FirstOrderUnsteadySolver and SecondOrderUnsteadySolver simultaneously.
Definition at line 310 of file diff_system.C.
References libMesh::DifferentiablePhysics::_second_order_dot_vars, libMesh::UnsteadySolver::time_order(), and libMesh::DifferentiableSystem::time_solver.
Referenced by libMesh::FirstOrderUnsteadySolver::compute_second_order_eqns().
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inlineinherited |
Definition at line 531 of file diff_physics.h.
References libMesh::DifferentiablePhysics::_second_order_vars.
Referenced by libMesh::DifferentiableSystem::add_second_order_dot_vars(), libMesh::DiffContext::DiffContext(), libMesh::Euler2Solver::element_residual(), libMesh::DifferentiableSystem::have_second_order_scalar_vars(), and libMesh::FEMContext::pre_fe_reinit().
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inherited |
assemble_residual_derivatives()
is called.When assembled, this vector should hold -(partial R / partial p_i)
Definition at line 1049 of file system.C.
References libMesh::System::get_vector().
Referenced by libMesh::ImplicitSystem::adjoint_qoi_parameter_sensitivity(), and libMesh::ImplicitSystem::sensitivity_solve().
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inherited |
Definition at line 1059 of file system.C.
References libMesh::System::get_vector().
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inherited |
Definition at line 904 of file system.C.
References libMesh::System::get_vector().
Referenced by libMesh::ImplicitSystem::forward_qoi_parameter_sensitivity(), libMesh::ImplicitSystem::qoi_parameter_hessian(), and libMesh::ImplicitSystem::sensitivity_solve().
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inherited |
Definition at line 914 of file system.C.
References libMesh::System::get_vector().
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inlineinherited |
Definition at line 416 of file diff_system.h.
References libMesh::libmesh_assert(), and libMesh::DifferentiableSystem::time_solver.
Referenced by libMesh::DifferentiableSystem::adjoint_solve(), libMesh::FEMSystem::build_context(), libMesh::DiffContext::DiffContext(), libMesh::FEMSystem::postprocess(), libMesh::FEMContext::pre_fe_reinit(), and libMesh::DifferentiableSystem::solve().
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inlineinherited |
Non-const version of the above.
Definition at line 424 of file diff_system.h.
References libMesh::libmesh_assert(), and libMesh::DifferentiableSystem::time_solver.
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inherited |
vec_name
. Access is only granted when the vector is already properly initialized. Definition at line 781 of file system.C.
References libMesh::System::_vectors.
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inherited |
vec_name
. Access is only granted when the vector is already properly initialized. Definition at line 774 of file system.C.
References libMesh::System::_vectors.
Referenced by libMesh::UniformRefinementEstimator::_estimate_error(), add_M_C_K_helmholtz(), libMesh::UnsteadySolver::adjoint_advance_timestep(), libMesh::NewmarkSolver::advance_timestep(), libMesh::AdaptiveTimeSolver::advance_timestep(), libMesh::UnsteadySolver::advance_timestep(), apply_initial(), assemble(), libMesh::System::compare(), libMesh::NewmarkSolver::compute_initial_accel(), libMesh::UnsteadySolver::du(), libMesh::AdjointRefinementEstimator::estimate_error(), libMesh::System::get_adjoint_rhs(), libMesh::System::get_adjoint_solution(), libMesh::System::get_sensitivity_rhs(), libMesh::System::get_sensitivity_solution(), libMesh::System::get_weighted_sensitivity_adjoint_solution(), libMesh::System::get_weighted_sensitivity_solution(), libMesh::NewmarkSystem::initial_conditions(), AssembleOptimization::lower_and_upper_bounds(), main(), libMesh::NewmarkSolver::project_initial_accel(), libMesh::SecondOrderUnsteadySolver::project_initial_rate(), libMesh::SecondOrderUnsteadySolver::reinit(), libMesh::UnsteadySolver::reinit(), libMesh::MemorySolutionHistory::retrieve(), libMesh::UnsteadySolver::retrieve_timestep(), libMesh::TwostepTimeSolver::solve(), libMesh::FrequencySystem::solve(), libMesh::NewmarkSystem::update_rhs(), and libMesh::NewmarkSystem::update_u_v_a().
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inherited |
vec_num
(where the vectors are counted starting with 0). Definition at line 804 of file system.C.
References libMesh::libmesh_assert(), libMesh::System::vectors_begin(), and libMesh::System::vectors_end().
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inherited |
vec_num
(where the vectors are counted starting with 0). Definition at line 788 of file system.C.
References libMesh::libmesh_assert(), libMesh::System::vectors_begin(), and libMesh::System::vectors_end().
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inherited |
Definition at line 989 of file system.C.
References libMesh::System::get_vector().
Referenced by libMesh::ImplicitSystem::qoi_parameter_hessian_vector_product(), and libMesh::ImplicitSystem::weighted_sensitivity_adjoint_solve().
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inherited |
Definition at line 999 of file system.C.
References libMesh::System::get_vector().
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inherited |
Definition at line 931 of file system.C.
References libMesh::System::get_vector().
Referenced by libMesh::ImplicitSystem::qoi_parameter_hessian_vector_product(), and libMesh::ImplicitSystem::weighted_sensitivity_solve().
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inherited |
Definition at line 938 of file system.C.
References libMesh::System::get_vector().
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inherited |
true
if a variable named var
exists in this System Definition at line 1225 of file system.C.
References libMesh::System::_variable_numbers.
Referenced by libMesh::GMVIO::copy_nodal_solution(), and main().
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inherited |
Check for any first order vars that are also belong to FEFamily::SCALAR.
Definition at line 327 of file diff_system.C.
References libMesh::DifferentiablePhysics::get_first_order_vars(), libMesh::DifferentiablePhysics::have_first_order_vars(), libMesh::SCALAR, and libMesh::System::variable().
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inlineinherited |
Definition at line 512 of file diff_physics.h.
References libMesh::DifferentiablePhysics::_first_order_vars.
Referenced by libMesh::DifferentiableSystem::have_first_order_scalar_vars().
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inlineinherited |
true
if this System
has a matrix associated with the given name, false
otherwise. Definition at line 439 of file implicit_system.h.
References libMesh::ImplicitSystem::_matrices.
Referenced by libMesh::ImplicitSystem::add_matrix(), and libMesh::EigenTimeSolver::init().
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inherited |
Check for any second order vars that are also belong to FEFamily::SCALAR.
Definition at line 339 of file diff_system.C.
References libMesh::DifferentiablePhysics::get_second_order_vars(), libMesh::DifferentiablePhysics::have_second_order_vars(), libMesh::SCALAR, and libMesh::System::variable().
Referenced by libMesh::EulerSolver::nonlocal_residual(), and libMesh::Euler2Solver::nonlocal_residual().
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inlineinherited |
Definition at line 525 of file diff_physics.h.
References libMesh::DifferentiablePhysics::_second_order_vars.
Referenced by libMesh::EulerSolver::element_residual(), and libMesh::DifferentiableSystem::have_second_order_scalar_vars().
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inlineinherited |
true
if this System
has a vector associated with the given name, false
otherwise. Definition at line 2275 of file system.h.
References libMesh::System::_vectors.
Referenced by libMesh::System::add_vector().
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inlineinherited |
true
, then EquationSystems::write
will ignore this system. Definition at line 1712 of file system.h.
References libMesh::System::_hide_output.
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inlineinherited |
true
when VariableGroup
structures should be automatically identified, false
otherwise. Definition at line 2251 of file system.h.
References libMesh::System::_identify_variable_groups.
Referenced by libMesh::System::add_variable().
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inlineinherited |
Toggle automatic VariableGroup
identification.
Definition at line 2259 of file system.h.
References libMesh::System::_identify_variable_groups.
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inlineprotectedinherited |
Increments the construction counter.
Should be called in the constructor of any derived class that will be reference counted.
Definition at line 181 of file reference_counter.h.
References libMesh::ReferenceCounter::_counts, libMesh::Quality::name(), and libMesh::Threads::spin_mtx.
Referenced by libMesh::ReferenceCountedObject< RBParametrized >::ReferenceCountedObject().
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inlineprotectedinherited |
Increments the destruction counter.
Should be called in the destructor of any derived class that will be reference counted.
Definition at line 194 of file reference_counter.h.
References libMesh::ReferenceCounter::_counts, libMesh::Quality::name(), and libMesh::Threads::spin_mtx.
Referenced by libMesh::ReferenceCountedObject< RBParametrized >::~ReferenceCountedObject().
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inherited |
Initializes degrees of freedom on the current mesh.
Sets the
Definition at line 237 of file system.C.
References libMesh::System::_basic_system_only, libMesh::System::init_data(), libMesh::System::is_initialized(), libMesh::libmesh_assert(), libMesh::System::n_vars(), and libMesh::System::user_initialization().
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virtual |
Reimplemented from libMesh::FEMSystem.
|
virtual |
Reimplemented from libMesh::FEMSystem.
Definition at line 79 of file curl_curl_system.C.
References libMesh::FEGenericBase< OutputType >::get_curl_phi(), libMesh::FEMContext::get_element_fe(), libMesh::FEAbstract::get_JxW(), libMesh::FEGenericBase< OutputType >::get_phi(), libMesh::FEMContext::get_side_fe(), libMesh::FEAbstract::get_xyz(), and u_var.
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virtual |
Initializes the member data fields associated with the system, so that, e.g., assemble()
may be used.
Reimplemented from libMesh::FEMSystem.
|
virtual |
Initializes the member data fields associated with the system, so that, e.g., assemble()
may be used.
Reimplemented from libMesh::FEMSystem.
Definition at line 40 of file curl_curl_system.C.
References libMesh::System::add_variable(), libMesh::System::extra_quadrature_order, libMesh::FIRST, init_dirichlet_bcs(), libMesh::NEDELEC_ONE, libMesh::DifferentiableSystem::print_element_jacobians, libMesh::DifferentiableSystem::print_jacobians, libMesh::DifferentiablePhysics::time_evolving(), u_var, and libMesh::FEMSystem::verify_analytic_jacobians.
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protected |
|
protected |
Definition at line 66 of file curl_curl_system.C.
References u_var.
Referenced by init_data().
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protectedvirtualinherited |
Initializes the matrices associated with this system.
Definition at line 105 of file implicit_system.C.
References libMesh::ImplicitSystem::_can_add_matrices, libMesh::ImplicitSystem::_matrices, libMesh::DofMap::attach_matrix(), libMesh::DofMap::compute_sparsity(), libMesh::System::get_dof_map(), libMesh::System::get_mesh(), libMesh::SparseMatrix< T >::initialized(), libMesh::DofMap::is_attached(), libMesh::libmesh_assert(), and libMesh::ImplicitSystem::matrix.
Referenced by libMesh::ImplicitSystem::init_data().
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virtualinherited |
Initialize any data structures associated with the physics.
Definition at line 40 of file diff_physics.C.
References libMesh::DifferentiablePhysics::_time_evolving, and libMesh::System::n_vars().
Referenced by libMesh::DifferentiableSystem::attach_physics(), and libMesh::DifferentiableSystem::init_data().
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inlinevirtualinherited |
Initialize system qoi.
By default, does nothing in order to maintain backward compatibility for FEMSystem applications that control qoi.
Definition at line 71 of file diff_qoi.h.
Referenced by libMesh::DifferentiableSystem::attach_qoi().
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inlineinherited |
Accessor for the adjoint_already_solved boolean.
Definition at line 396 of file system.h.
References libMesh::System::adjoint_already_solved.
Referenced by libMesh::ImplicitSystem::adjoint_qoi_parameter_sensitivity(), libMesh::AdjointRefinementEstimator::estimate_error(), libMesh::AdjointResidualErrorEstimator::estimate_error(), libMesh::ImplicitSystem::qoi_parameter_hessian(), and libMesh::ImplicitSystem::qoi_parameter_hessian_vector_product().
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inlineinherited |
Definition at line 521 of file diff_physics.h.
References libMesh::DifferentiablePhysics::_first_order_vars.
|
inlineinherited |
true
iff this system has been initialized. Definition at line 2139 of file system.h.
References libMesh::System::_is_initialized.
Referenced by libMesh::System::add_variable(), libMesh::System::add_variables(), and libMesh::System::init().
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inlineinherited |
Definition at line 534 of file diff_physics.h.
References libMesh::DifferentiablePhysics::_second_order_vars.
Referenced by libMesh::FirstOrderUnsteadySolver::compute_second_order_eqns().
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inlineinherited |
true
iff variable var
is evolving with respect to time. In general, the user's init() function should have set time_evolving() for any variables which behave like du/dt = F(u), and should not call time_evolving() for any variables which behave like 0 = G(u). Definition at line 278 of file diff_physics.h.
References libMesh::DifferentiablePhysics::_time_evolving, and libMesh::libmesh_assert().
Referenced by libMesh::FEMPhysics::eulerian_residual(), libMesh::FEMSystem::init_context(), libMesh::FEMPhysics::mass_residual(), and libMesh::DifferentiablePhysics::nonlocal_mass_residual().
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Fills the std::set with the degrees of freedom on the local processor corresponding the the variable number passed in.
Definition at line 1259 of file system.C.
References libMesh::DofMap::dof_indices(), libMesh::DofMap::end_dof(), libMesh::DofMap::first_dof(), libMesh::System::get_dof_map(), libMesh::System::get_mesh(), and libMesh::libmesh_assert().
Referenced by libMesh::System::discrete_var_norm(), SystemsTest::testBlockRestrictedVarNDofs(), and libMesh::DirectSolutionTransfer::transfer().
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Subtracts a mass vector contribution on elem
from elem_residual.
For first-order-in-time problems, this is the \( M(u,\dot{u})\dot{u} \) term. For second-order-in-time problems, this is the \( M(u,\ddot{u})\ddot{u} \) term. This method is only called for UnsteadySolver-based TimeSolvers.
If this method receives request_jacobian = true, then it should compute elem_jacobian and return true if possible. If elem_jacobian has not been computed then the method should return false.
Many first-order-in-time problems can use the reimplementation in FEMPhysics::mass_residual which subtracts (du/dt,v) for each transient variable u; users with more complicated transient problems or second-order-in-time problems will need to reimplement this themselves.
Reimplemented in SecondOrderScalarSystemFirstOrderTimeSolverBase, SecondOrderScalarSystemSecondOrderTimeSolverBase, FirstOrderScalarSystemBase, ElasticitySystem, NavierSystem, and libMesh::FEMPhysics.
Definition at line 319 of file diff_physics.h.
Referenced by libMesh::EulerSolver::element_residual(), libMesh::Euler2Solver::element_residual(), libMesh::NewmarkSolver::element_residual(), and libMesh::EigenTimeSolver::element_residual().
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Subtracts a mass vector contribution on elem
from elem_residual.
If this method receives request_jacobian = true, then it should compute elem_jacobian and return true if possible. If elem_jacobian has not been computed then the method should return false.
Many problems can use the reimplementation in FEMPhysics::mass_residual which subtracts (du/dt,v) for each transient variable u; users with more complicated transient problems will need to reimplement this themselves.
Reimplemented from libMesh::DifferentiablePhysics.
Reimplemented in SecondOrderScalarSystemFirstOrderTimeSolverBase, SecondOrderScalarSystemSecondOrderTimeSolverBase, FirstOrderScalarSystemBase, ElasticitySystem, and NavierSystem.
Definition at line 200 of file fem_physics.C.
References libMesh::DiffContext::elem_solution_rate_derivative, libMesh::DiffContext::get_dof_indices(), libMesh::DiffContext::get_elem_jacobian(), libMesh::DiffContext::get_elem_residual(), libMesh::FEMContext::get_element_fe(), libMesh::FEMContext::get_element_qrule(), libMesh::FEAbstract::get_JxW(), libMesh::FEGenericBase< OutputType >::get_phi(), libMesh::FEMContext::interior_rate(), libMesh::DifferentiablePhysics::is_time_evolving(), libMesh::QBase::n_points(), and libMesh::DiffContext::n_vars().
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Tells the FEMSystem to set the degree of freedom coefficients which should correspond to mesh nodal coordinates.
Definition at line 1385 of file fem_system.C.
References libMesh::DifferentiablePhysics::_mesh_sys, libMesh::DifferentiablePhysics::_mesh_x_var, libMesh::DifferentiablePhysics::_mesh_y_var, libMesh::DifferentiablePhysics::_mesh_z_var, libMesh::MeshBase::active_local_element_ptr_range(), libMesh::FEMSystem::build_context(), libMesh::FEMContext::elem_position_get(), libMesh::DiffContext::get_dof_indices(), libMesh::DiffContext::get_elem_solution(), libMesh::System::get_mesh(), libMesh::FEMSystem::init_context(), libMesh::invalid_uint, mesh, libMesh::FEMContext::pre_fe_reinit(), libMesh::System::solution, and libMesh::System::update().
Referenced by SolidSystem::init_data().
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Tells the FEMSystem to set the mesh nodal coordinates which should correspond to degree of freedom coefficients.
Definition at line 1057 of file fem_system.C.
References libMesh::DifferentiablePhysics::_mesh_sys, libMesh::MeshBase::active_local_element_ptr_range(), libMesh::FEMSystem::build_context(), libMesh::ParallelObject::comm(), libMesh::FEMContext::elem_fe_reinit(), libMesh::FEMContext::elem_position_set(), libMesh::FEMContext::get_elem(), libMesh::System::get_mesh(), libMesh::Elem::has_children(), libMesh::FEMSystem::init_context(), libMesh::libmesh_assert(), mesh, libMesh::MeshBase::nodes_begin(), libMesh::MeshBase::nodes_end(), libMesh::FEMContext::pre_fe_reinit(), and libMesh::Parallel::sync_dofobject_data_by_id().
Referenced by libMesh::FEMSystem::solve(), and SolidSystem::update().
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Definition at line 2267 of file system.h.
References libMesh::System::n_constrained_dofs(), and libMesh::System::n_dofs().
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n_vars()
in the case of all scalar-valued variables. Definition at line 2171 of file system.h.
References libMesh::System::_variables, libMesh::Variable::first_scalar_number(), and libMesh::Variable::n_components().
Referenced by libMesh::System::add_variables().
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Definition at line 157 of file system.C.
References libMesh::System::_dof_map.
Referenced by libMesh::System::get_info(), libMesh::System::n_active_dofs(), and BoundaryInfoTest::testShellFaceConstraints().
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Definition at line 150 of file system.C.
References libMesh::System::_dof_map.
Referenced by libMesh::TransientRBConstruction::add_IC_to_RB_space(), libMesh::System::add_vector(), libMesh::TransientRBConstruction::allocate_data_structures(), libMesh::RBConstruction::allocate_data_structures(), libMesh::TransientRBConstruction::assemble_affine_expansion(), libMesh::RBConstruction::compute_Fq_representor_innerprods(), libMesh::RBConstruction::compute_output_dual_innerprods(), libMesh::RBConstruction::compute_residual_dual_norm_slow(), libMesh::RBEIMConstruction::enrich_RB_space(), libMesh::TransientRBConstruction::enrich_RB_space(), libMesh::RBConstruction::enrich_RB_space(), libMesh::AdjointRefinementEstimator::estimate_error(), libMesh::System::get_info(), libMesh::SecondOrderUnsteadySolver::init_data(), libMesh::UnsteadySolver::init_data(), libMesh::System::init_data(), libMesh::RBEIMConstruction::init_dof_map_between_systems(), libMesh::OptimizationSystem::initialize_equality_constraints_storage(), libMesh::OptimizationSystem::initialize_inequality_constraints_storage(), libMesh::RBEIMConstruction::initialize_rb_construction(), main(), libMesh::TransientRBConstruction::mass_matrix_scaled_matvec(), libMesh::System::n_active_dofs(), libMesh::CondensedEigenSystem::n_global_non_condensed_dofs(), libMesh::FEMSystem::numerical_jacobian(), libMesh::RBSCMConstruction::perform_SCM_greedy(), libMesh::RBEIMAssembly::RBEIMAssembly(), libMesh::RBEvaluation::read_in_vectors_from_multiple_files(), libMesh::System::read_legacy_data(), libMesh::TransientRBConstruction::read_riesz_representors_from_files(), libMesh::RBConstruction::read_riesz_representors_from_files(), libMesh::SecondOrderUnsteadySolver::reinit(), libMesh::UnsteadySolver::reinit(), libMesh::System::restrict_vectors(), OverlappingAlgebraicGhostingTest::run_ghosting_test(), OverlappingCouplingGhostingTest::run_sparsity_pattern_test(), libMesh::TransientRBConstruction::set_error_temporal_data(), libMesh::RBEIMConstruction::set_explicit_sys_subvector(), MeshfunctionDFEM::test_mesh_function_dfem(), MeshfunctionDFEM::test_mesh_function_dfem_grad(), MeshFunctionTest::test_p_level(), SystemsTest::testProjectCubeWithMeshFunction(), SystemsTest::testProjectMatrix1D(), SystemsTest::testProjectMatrix2D(), SystemsTest::testProjectMatrix3D(), libMesh::MeshFunctionSolutionTransfer::transfer(), libMesh::TransientRBConstruction::truth_assembly(), libMesh::RBConstruction::truth_assembly(), libMesh::TransientRBConstruction::update_RB_initial_condition_all_N(), libMesh::RBEIMConstruction::update_RB_system_matrices(), libMesh::TransientRBConstruction::update_RB_system_matrices(), libMesh::RBConstruction::update_RB_system_matrices(), libMesh::TransientRBConstruction::update_residual_terms(), and libMesh::RBConstruction::update_residual_terms().
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Definition at line 172 of file system.C.
References libMesh::System::_dof_map.
Referenced by libMesh::System::get_info().
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Definition at line 187 of file system.C.
References libMesh::System::_dof_map, and libMesh::ParallelObject::processor_id().
Referenced by libMesh::TransientRBConstruction::add_IC_to_RB_space(), libMesh::System::add_vector(), libMesh::TransientRBConstruction::allocate_data_structures(), libMesh::RBConstruction::allocate_data_structures(), libMesh::TransientRBConstruction::assemble_affine_expansion(), libMesh::PetscDMWrapper::build_section(), libMesh::RBConstruction::compute_Fq_representor_innerprods(), libMesh::RBConstruction::compute_output_dual_innerprods(), libMesh::RBConstruction::compute_residual_dual_norm_slow(), libMesh::RBEIMConstruction::enrich_RB_space(), libMesh::TransientRBConstruction::enrich_RB_space(), libMesh::RBConstruction::enrich_RB_space(), libMesh::AdjointRefinementEstimator::estimate_error(), libMesh::System::get_info(), libMesh::SecondOrderUnsteadySolver::init_data(), libMesh::UnsteadySolver::init_data(), libMesh::System::init_data(), libMesh::OptimizationSystem::initialize_equality_constraints_storage(), libMesh::OptimizationSystem::initialize_inequality_constraints_storage(), libMesh::RBEIMConstruction::initialize_rb_construction(), main(), libMesh::TransientRBConstruction::mass_matrix_scaled_matvec(), libMesh::RBEIMAssembly::RBEIMAssembly(), libMesh::RBEvaluation::read_in_vectors_from_multiple_files(), libMesh::TransientRBConstruction::read_riesz_representors_from_files(), libMesh::RBConstruction::read_riesz_representors_from_files(), libMesh::SecondOrderUnsteadySolver::reinit(), libMesh::UnsteadySolver::reinit(), libMesh::System::restrict_vectors(), OverlappingAlgebraicGhostingTest::run_ghosting_test(), OverlappingCouplingGhostingTest::run_sparsity_pattern_test(), libMesh::TransientRBConstruction::set_error_temporal_data(), MeshFunctionTest::test_p_level(), libMesh::TransientRBConstruction::truth_assembly(), libMesh::RBConstruction::truth_assembly(), libMesh::TransientRBConstruction::update_RB_initial_condition_all_N(), libMesh::TransientRBConstruction::update_RB_system_matrices(), libMesh::RBConstruction::update_RB_system_matrices(), libMesh::TransientRBConstruction::update_residual_terms(), and libMesh::RBConstruction::update_residual_terms().
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Reimplemented from libMesh::System.
Definition at line 446 of file implicit_system.h.
References libMesh::ImplicitSystem::_matrices.
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Prints the number of outstanding (created, but not yet destroyed) objects.
Definition at line 83 of file reference_counter.h.
References libMesh::ReferenceCounter::_n_objects.
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Definition at line 100 of file parallel_object.h.
References libMesh::ParallelObject::_communicator.
Referenced by libMesh::BoundaryInfo::_find_id_maps(), libMesh::DofMap::add_constraints_to_send_list(), libMesh::PetscDMWrapper::add_dofs_to_section(), libMesh::DistributedMesh::add_elem(), libMesh::DofMap::add_neighbors_to_send_list(), libMesh::DistributedMesh::add_node(), libMesh::LaplaceMeshSmoother::allgather_graph(), libMesh::DofMap::allgather_recursive_constraints(), libMesh::FEMSystem::assembly(), libMesh::AztecLinearSolver< T >::AztecLinearSolver(), libMesh::BoundaryInfo::build_node_list_from_side_list(), libMesh::EquationSystems::build_parallel_elemental_solution_vector(), libMesh::DistributedMesh::clear(), libMesh::Nemesis_IO_Helper::compute_border_node_ids(), libMesh::Nemesis_IO_Helper::construct_nemesis_filename(), libMesh::ExodusII_IO::copy_scalar_solution(), libMesh::UnstructuredMesh::create_pid_mesh(), libMesh::MeshTools::create_processor_bounding_box(), libMesh::DofMap::distribute_dofs(), libMesh::DofMap::distribute_local_dofs_node_major(), libMesh::DofMap::distribute_local_dofs_var_major(), libMesh::EnsightIO::EnsightIO(), libMesh::SystemSubsetBySubdomain::init(), libMesh::PetscDMWrapper::init_and_attach_petscdm(), libMesh::Nemesis_IO_Helper::initialize(), libMesh::DistributedMesh::insert_elem(), libMesh::MeshTools::libmesh_assert_contiguous_dof_ids(), libMesh::MeshTools::libmesh_assert_parallel_consistent_new_node_procids(), libMesh::MeshTools::libmesh_assert_parallel_consistent_procids< Elem >(), libMesh::MeshTools::libmesh_assert_parallel_consistent_procids< Node >(), libMesh::MeshTools::libmesh_assert_topology_consistent_procids< Node >(), libMesh::MeshTools::libmesh_assert_valid_boundary_ids(), libMesh::MeshTools::libmesh_assert_valid_dof_ids(), libMesh::MeshTools::libmesh_assert_valid_neighbors(), libMesh::MeshTools::libmesh_assert_valid_refinement_flags(), libMesh::DofMap::local_variable_indices(), libMesh::MeshRefinement::make_coarsening_compatible(), libMesh::MeshBase::partition(), libMesh::System::point_gradient(), libMesh::System::point_hessian(), libMesh::System::point_value(), libMesh::DofMap::prepare_send_list(), libMesh::DofMap::print_dof_constraints(), libMesh::NameBasedIO::read(), libMesh::Nemesis_IO::read(), libMesh::CheckpointIO::read(), libMesh::CheckpointIO::read_connectivity(), libMesh::XdrIO::read_header(), libMesh::CheckpointIO::read_nodes(), libMesh::System::read_parallel_data(), libMesh::System::read_SCALAR_dofs(), libMesh::System::read_serialized_blocked_dof_objects(), libMesh::System::read_serialized_vector(), libMesh::DistributedMesh::renumber_dof_objects(), OverlappingFunctorTest::run_partitioner_test(), libMesh::DofMap::scatter_constraints(), libMesh::DofMap::set_nonlocal_dof_objects(), libMesh::PetscDMWrapper::set_point_range_in_section(), CheckpointIOTest::testSplitter(), WriteVecAndScalar::testWrite(), libMesh::MeshRefinement::uniformly_coarsen(), libMesh::DistributedMesh::update_parallel_id_counts(), libMesh::GMVIO::write_binary(), libMesh::GMVIO::write_discontinuous_gmv(), libMesh::VTKIO::write_nodal_data(), libMesh::System::write_parallel_data(), libMesh::System::write_SCALAR_dofs(), libMesh::XdrIO::write_serialized_bcs_helper(), libMesh::System::write_serialized_blocked_dof_objects(), libMesh::XdrIO::write_serialized_connectivity(), libMesh::XdrIO::write_serialized_nodes(), and libMesh::XdrIO::write_serialized_nodesets().
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Number of currently active quantities of interest.
Definition at line 2328 of file system.h.
References libMesh::System::qoi.
Referenced by libMesh::UniformRefinementEstimator::_estimate_error(), libMesh::ImplicitSystem::adjoint_qoi_parameter_sensitivity(), libMesh::ImplicitSystem::adjoint_solve(), libMesh::SensitivityData::allocate_data(), libMesh::SensitivityData::allocate_hessian_data(), libMesh::ExplicitSystem::assemble_qoi(), libMesh::FEMSystem::assemble_qoi(), libMesh::ExplicitSystem::assemble_qoi_derivative(), libMesh::FEMSystem::assemble_qoi_derivative(), libMesh::AdjointRefinementEstimator::estimate_error(), libMesh::AdjointResidualErrorEstimator::estimate_error(), libMesh::ImplicitSystem::forward_qoi_parameter_sensitivity(), libMesh::FEMContext::pre_fe_reinit(), libMesh::ImplicitSystem::qoi_parameter_hessian(), libMesh::ImplicitSystem::qoi_parameter_hessian_vector_product(), libMesh::QoISet::size(), and libMesh::ImplicitSystem::weighted_sensitivity_adjoint_solve().
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VariableGroup
variable groups in the system Definition at line 2163 of file system.h.
References libMesh::System::_variable_groups.
Referenced by libMesh::System::add_variable(), libMesh::FEMSystem::assembly(), libMesh::System::get_info(), and libMesh::System::init_data().
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Definition at line 2155 of file system.h.
References libMesh::System::_variables.
Referenced by libMesh::UniformRefinementEstimator::_estimate_error(), libMesh::PetscDMWrapper::add_dofs_helper(), libMesh::DiffContext::add_localized_vector(), libMesh::RBConstruction::add_scaled_matrix_and_vector(), libMesh::System::add_variable(), libMesh::System::add_variables(), libMesh::FEMContext::attach_quadrature_rules(), libMesh::EquationSystems::build_discontinuous_solution_vector(), libMesh::EquationSystems::build_parallel_solution_vector(), libMesh::PetscDMWrapper::build_section(), libMesh::System::calculate_norm(), LinearElasticityWithContact::compute_stresses(), LinearElasticity::compute_stresses(), compute_stresses(), LargeDeformationElasticity::compute_stresses(), libMesh::DGFEMContext::DGFEMContext(), libMesh::DiffContext::DiffContext(), libMesh::RBEIMConstruction::enrich_RB_space(), libMesh::JumpErrorEstimator::estimate_error(), libMesh::AdjointResidualErrorEstimator::estimate_error(), libMesh::ExactErrorEstimator::estimate_error(), libMesh::ErrorEstimator::estimate_errors(), libMesh::ExactSolution::ExactSolution(), libMesh::FEMContext::find_hardest_fe_type(), libMesh::EquationSystems::find_variable_numbers(), libMesh::System::get_all_variable_numbers(), libMesh::System::init(), libMesh::PetscDMWrapper::init_and_attach_petscdm(), libMesh::FEMSystem::init_context(), libMesh::RBEIMConstruction::init_context_with_sys(), libMesh::RBEIMConstruction::init_dof_map_between_systems(), libMesh::FEMContext::init_internal_data(), libMesh::DifferentiablePhysics::init_physics(), AssemblyA0::interior_assembly(), AssemblyA1::interior_assembly(), AssemblyA2::interior_assembly(), main(), libMesh::WeightedPatchRecoveryErrorEstimator::EstimateError::operator()(), libMesh::PatchRecoveryErrorEstimator::EstimateError::operator()(), output_norms(), libMesh::petsc_auto_fieldsplit(), libMesh::FEMContext::pre_fe_reinit(), libMesh::System::re_update(), libMesh::System::read_legacy_data(), libMesh::System::read_parallel_data(), libMesh::System::read_serialized_blocked_dof_objects(), libMesh::System::read_serialized_vector(), libMesh::System::read_serialized_vectors(), libMesh::HPCoarsenTest::select_refinement(), libMesh::PetscDMWrapper::set_point_range_in_section(), libMesh::SystemSubsetBySubdomain::set_var_nums(), OverlappingTestBase::setup_coupling_matrix(), SystemsTest::testDofCouplingWithVarGroups(), SlitMeshRefinedSystemTest::testRestart(), SlitMeshRefinedSystemTest::testSystem(), libMesh::RBEIMConstruction::truth_solve(), libMesh::RBEIMConstruction::update_RB_system_matrices(), libMesh::System::write_header(), libMesh::System::write_parallel_data(), libMesh::System::write_serialized_blocked_dof_objects(), libMesh::System::write_serialized_vector(), libMesh::System::write_serialized_vectors(), and libMesh::System::zero_variable().
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_vectors
map Definition at line 2283 of file system.h.
References libMesh::System::_vectors.
Referenced by libMesh::ExplicitSystem::add_system_rhs(), libMesh::System::compare(), libMesh::System::get_info(), main(), and libMesh::System::write_header().
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Definition at line 2067 of file system.h.
References libMesh::System::_sys_name.
Referenced by libMesh::System::compare(), compute_jacobian(), compute_residual(), libMesh::ContinuationSystem::ContinuationSystem(), DMlibMeshSetUpName_Private(), libMesh::ExactErrorEstimator::estimate_error(), libMesh::ExactSolution::ExactSolution(), libMesh::ExactErrorEstimator::find_squared_element_error(), libMesh::System::get_info(), libMesh::ImplicitSystem::get_linear_solver(), libMesh::NewtonSolver::init(), libMesh::TimeSolver::init_data(), main(), output_norms(), libMesh::petsc_auto_fieldsplit(), libMesh::RBEIMConstruction::plot_parametrized_functions_in_training_set(), libMesh::RBSCMConstruction::print_info(), libMesh::RBConstruction::print_info(), libMesh::TimeSolver::reinit(), libMesh::PetscDiffSolver::setup_petsc_data(), libMesh::FrequencySystem::solve(), libMesh::LinearImplicitSystem::solve(), libMesh::NonlinearImplicitSystem::solve(), libMesh::System::user_assembly(), libMesh::System::user_constrain(), libMesh::System::user_initialization(), libMesh::System::user_QOI(), libMesh::System::user_QOI_derivative(), libMesh::System::variable_number(), libMesh::System::write_header(), libMesh::System::write_parallel_data(), and libMesh::System::write_serialized_data().
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Adds any nonlocal constraint contributions (e.g.
some components of constraints in scalar variable equations) to elem_residual
If this method receives request_jacobian = true, then it should also modify elem_jacobian and return true if possible. If the Jacobian changes have not been computed then the method should return false.
Users may need to reimplement this for PDEs on systems to which SCALAR variables with non-transient equations have been added.
Definition at line 228 of file diff_physics.h.
Referenced by libMesh::EulerSolver::nonlocal_residual(), libMesh::Euler2Solver::nonlocal_residual(), libMesh::SteadySolver::nonlocal_residual(), libMesh::EigenTimeSolver::nonlocal_residual(), and libMesh::NewmarkSolver::nonlocal_residual().
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Subtracts any nonlocal damping vector contributions (e.g.
any first time derivative coefficients in scalar variable equations) from elem_residual
If this method receives request_jacobian = true, then it should also modify elem_jacobian and return true if possible. If the Jacobian changes have not been computed then the method should return false.
Definition at line 407 of file diff_physics.h.
Referenced by libMesh::EulerSolver::nonlocal_residual(), libMesh::Euler2Solver::nonlocal_residual(), and libMesh::NewmarkSolver::nonlocal_residual().
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Subtracts any nonlocal mass vector contributions (e.g.
any time derivative coefficients in scalar variable equations) from elem_residual
If this method receives request_jacobian = true, then it should also modify elem_jacobian and return true if possible. If the Jacobian changes have not been computed then the method should return false.
Many problems can use the reimplementation in FEMPhysics::mass_residual which subtracts (du/dt,v) for each transient scalar variable u; users with more complicated transient scalar variable equations will need to reimplement this themselves.
Definition at line 63 of file diff_physics.C.
References libMesh::DiffContext::elem_solution_rate_derivative, libMesh::FEType::family, libMesh::DiffContext::get_dof_indices(), libMesh::DiffContext::get_elem_jacobian(), libMesh::DiffContext::get_elem_residual(), libMesh::DiffContext::get_elem_solution(), libMesh::DiffContext::get_system(), libMesh::DifferentiablePhysics::is_time_evolving(), libMesh::DiffContext::n_vars(), libMesh::SCALAR, libMesh::Variable::type(), and libMesh::System::variable().
Referenced by libMesh::EulerSolver::nonlocal_residual(), libMesh::Euler2Solver::nonlocal_residual(), libMesh::EigenTimeSolver::nonlocal_residual(), and libMesh::NewmarkSolver::nonlocal_residual().
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Adds any nonlocal time derivative contributions (e.g.
some components of time derivatives in scalar variable equations) to elem_residual
If this method receives request_jacobian = true, then it should also modify elem_jacobian and return true if possible. If the Jacobian changes have not been computed then the method should return false.
Users may need to reimplement this for PDEs on systems to which SCALAR variables have been added.
Definition at line 210 of file diff_physics.h.
Referenced by libMesh::EulerSolver::nonlocal_residual(), libMesh::Euler2Solver::nonlocal_residual(), libMesh::SteadySolver::nonlocal_residual(), libMesh::EigenTimeSolver::nonlocal_residual(), and libMesh::NewmarkSolver::nonlocal_residual().
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Definition at line 2075 of file system.h.
References libMesh::System::_sys_number.
Referenced by libMesh::ExactSolution::_compute_error(), libMesh::PetscDMWrapper::add_dofs_helper(), assemble_matrix_and_rhs(), assemble_shell(), libMesh::EquationSystems::build_parallel_solution_vector(), libMesh::ExodusII_IO::copy_elemental_solution(), libMesh::ExodusII_IO::copy_nodal_solution(), libMesh::AdjointRefinementEstimator::estimate_error(), libMesh::ExactErrorEstimator::find_squared_element_error(), libMesh::EquationSystems::find_variable_numbers(), libMesh::System::get_info(), main(), libMesh::System::read_legacy_data(), libMesh::System::read_parallel_data(), libMesh::System::read_serialized_blocked_dof_objects(), LinearElasticityWithContact::residual_and_jacobian(), SolidSystem::save_initial_mesh(), libMesh::HPCoarsenTest::select_refinement(), libMesh::PetscDMWrapper::set_point_range_in_section(), libMesh::MeshFunctionSolutionTransfer::transfer(), libMesh::MeshfreeSolutionTransfer::transfer(), libMesh::BoundaryVolumeSolutionTransfer::transfer_boundary_volume(), libMesh::BoundaryVolumeSolutionTransfer::transfer_volume_boundary(), libMesh::DTKAdapter::update_variable_values(), libMesh::System::write_parallel_data(), libMesh::System::write_serialized_blocked_dof_objects(), and libMesh::System::zero_variable().
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Uses the results of multiple element_residual() calls to numerically differentiate the corresponding jacobian on an element.
Definition at line 1290 of file fem_system.C.
References libMesh::TimeSolver::element_residual(), and libMesh::FEMSystem::numerical_jacobian().
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Uses the results of multiple res
calls to numerically differentiate the corresponding jacobian.
Definition at line 1178 of file fem_system.C.
References libMesh::DifferentiablePhysics::_mesh_sys, libMesh::DifferentiablePhysics::_mesh_x_var, libMesh::DifferentiablePhysics::_mesh_y_var, libMesh::DifferentiablePhysics::_mesh_z_var, libMesh::DiffContext::get_dof_indices(), libMesh::FEMContext::get_elem(), libMesh::DiffContext::get_elem_jacobian(), libMesh::DiffContext::get_elem_residual(), libMesh::DiffContext::get_elem_solution(), libMesh::Elem::hmin(), libMesh::invalid_uint, libMesh::libmesh_real(), libMesh::System::n_dofs(), libMesh::DiffContext::n_vars(), libMesh::FEMSystem::numerical_jacobian_h, libMesh::FEMSystem::numerical_jacobian_h_for_var(), libMesh::Elem::point(), libMesh::Real, and libMesh::DenseVector< T >::zero().
Referenced by libMesh::FEMSystem::numerical_elem_jacobian(), libMesh::FEMSystem::numerical_nonlocal_jacobian(), and libMesh::FEMSystem::numerical_side_jacobian().
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If numerical_jacobian_h_for_var(var_num) is changed from its default value (numerical_jacobian_h), the FEMSystem will perturb solution vector entries for variable var_num by that amount when calculating finite differences with respect to that variable.
This is useful in multiphysics problems which have not been normalized.
Definition at line 259 of file fem_system.h.
References libMesh::FEMSystem::_numerical_jacobian_h_for_var, libMesh::FEMSystem::numerical_jacobian_h, and libMesh::Real.
Referenced by libMesh::FEMSystem::numerical_jacobian().
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Uses the results of multiple side_residual() calls to numerically differentiate the corresponding jacobian on nonlocal DoFs.
Definition at line 1306 of file fem_system.C.
References libMesh::TimeSolver::nonlocal_residual(), and libMesh::FEMSystem::numerical_jacobian().
Referenced by libMesh::FEMSystem::assembly().
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Uses the results of multiple side_residual() calls to numerically differentiate the corresponding jacobian on an element's side.
Definition at line 1298 of file fem_system.C.
References libMesh::FEMSystem::numerical_jacobian(), and libMesh::TimeSolver::side_residual().
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virtualinherited |
Method to populate system qoi data structure with process-local qoi.
By default, simply sums process qois into system qoi.
Definition at line 41 of file diff_qoi.C.
Referenced by libMesh::FEMSystem::assemble_qoi().
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inherited |
var
at the physical point p
in the mesh, similarly to point_value. Definition at line 2100 of file system.C.
References libMesh::Variable::active_subdomains(), libMesh::ParallelObject::comm(), libMesh::PointLocatorBase::enable_out_of_mesh_mode(), libMesh::System::get_dof_map(), libMesh::System::get_mesh(), libMesh::libmesh_assert(), mesh, libMesh::ParallelObject::n_processors(), libMesh::ParallelObject::processor_id(), libMesh::DofObject::processor_id(), and libMesh::System::variable().
Referenced by line_print(), and libMesh::System::point_gradient().
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inherited |
var
at the physical point p
in local Elem e
in the mesh, similarly to point_value. Definition at line 2162 of file system.C.
References libMesh::FEInterface::compute_data(), libMesh::Elem::contains_point(), libMesh::System::current_local_solution, dim, libMesh::Elem::dim(), libMesh::DofMap::dof_indices(), libMesh::FEComputeData::dshape, libMesh::FEComputeData::enable_derivative(), libMesh::System::get_dof_map(), libMesh::System::get_equation_systems(), libMesh::FEMap::inverse_map(), libMesh::DofMap::is_evaluable(), libMesh::libmesh_assert(), libMesh::FEComputeData::local_transform, and libMesh::DofMap::variable_type().
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inherited |
Calls the version of point_gradient() which takes a reference.
This function exists only to prevent people from calling the version of point_gradient() that has a boolean third argument, which would result in unnecessary PointLocator calls.
Definition at line 2227 of file system.C.
References libMesh::libmesh_assert(), and libMesh::System::point_gradient().
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inherited |
Calls the parallel version of point_gradient().
This function exists only to prevent people from accidentally calling the version of point_gradient() that has a boolean third argument, which would result in incorrect output.
Definition at line 2235 of file system.C.
References libMesh::System::point_gradient().
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inherited |
var
at the physical point p
in the mesh, similarly to point_value. Definition at line 2244 of file system.C.
References libMesh::Variable::active_subdomains(), libMesh::ParallelObject::comm(), libMesh::PointLocatorBase::enable_out_of_mesh_mode(), libMesh::System::get_dof_map(), libMesh::System::get_mesh(), libMesh::libmesh_assert(), mesh, libMesh::ParallelObject::n_processors(), libMesh::ParallelObject::processor_id(), libMesh::DofObject::processor_id(), and libMesh::System::variable().
Referenced by libMesh::System::point_hessian().
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inherited |
var
at the physical point p
in local Elem e
in the mesh, similarly to point_value. Definition at line 2305 of file system.C.
References libMesh::TypeTensor< T >::add_scaled(), libMesh::FEGenericBase< OutputType >::build(), libMesh::Elem::contains_point(), libMesh::System::current_local_solution, libMesh::Elem::dim(), libMesh::DofMap::dof_indices(), libMesh::System::get_dof_map(), libMesh::Elem::infinite(), libMesh::FEMap::inverse_map(), libMesh::DofMap::is_evaluable(), libMesh::libmesh_assert(), and libMesh::DofMap::variable_type().
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inherited |
Calls the version of point_hessian() which takes a reference.
This function exists only to prevent people from calling the version of point_hessian() that has a boolean third argument, which would result in unnecessary PointLocator calls.
Definition at line 2367 of file system.C.
References libMesh::libmesh_assert(), and libMesh::System::point_hessian().
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inherited |
Calls the parallel version of point_hessian().
This function exists only to prevent people from accidentally calling the version of point_hessian() that has a boolean third argument, which would result in incorrect output.
Definition at line 2375 of file system.C.
References libMesh::System::point_hessian().
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inherited |
var
at the physical point p
in the mesh, without knowing a priori which element contains p
, using the degree of freedom coefficients in sol
(or in current_local_solution
if sol
is left null).MeshBase::sub_point_locator()
; users may or may not want to call MeshBase::clear_point_locator()
afterward. Also, point_locator() is expensive (N log N for initial construction, log N for evaluations). Avoid using this function in any context where you are already looping over elements.Because the element containing p
may lie on any processor, this function is parallel-only.
By default this method expects the point to reside inside the domain and will abort if no element can be found which contains p
. The optional parameter insist_on_success
can be set to false to allow the method to return 0 when the point is not located.
Definition at line 1971 of file system.C.
References libMesh::Variable::active_subdomains(), libMesh::ParallelObject::comm(), libMesh::PointLocatorBase::enable_out_of_mesh_mode(), libMesh::System::get_dof_map(), libMesh::System::get_mesh(), libMesh::libmesh_assert(), mesh, libMesh::ParallelObject::n_processors(), libMesh::ParallelObject::processor_id(), libMesh::DofObject::processor_id(), and libMesh::System::variable().
Referenced by line_print(), main(), libMesh::System::point_value(), DefaultCouplingTest::testCoupling(), PointNeighborCouplingTest::testCoupling(), MeshInputTest::testExodusCopyElementSolution(), MeshInputTest::testExodusWriteElementDataFromDiscontinuousNodalData(), SystemsTest::testProjectCubeWithMeshFunction(), and EquationSystemsTest::testRepartitionThenReinit().
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inherited |
var
at the physical point p
contained in local Elem e
, using the degree of freedom coefficients in sol
(or in current_local_solution
if sol
is left null).This version of point_value can be run in serial, but assumes e
is in the local mesh partition or is algebraically ghosted.
Definition at line 2032 of file system.C.
References libMesh::FEInterface::compute_data(), libMesh::Elem::contains_point(), libMesh::System::current_local_solution, libMesh::Elem::dim(), libMesh::DofMap::dof_indices(), libMesh::System::get_dof_map(), libMesh::System::get_equation_systems(), libMesh::FEMap::inverse_map(), libMesh::DofMap::is_evaluable(), libMesh::libmesh_assert(), and libMesh::DofMap::variable_type().
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inherited |
Calls the version of point_value() which takes a reference.
This function exists only to prevent people from calling the version of point_value() that has a boolean third argument, which would result in unnecessary PointLocator calls.
Definition at line 2084 of file system.C.
References libMesh::libmesh_assert(), and libMesh::System::point_value().
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inherited |
Calls the parallel version of point_value().
This function exists only to prevent people from accidentally calling the version of point_value() that has a boolean third argument, which would result in incorrect output.
Definition at line 2092 of file system.C.
References libMesh::System::point_value().
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overridevirtualinherited |
Runs a postprocessing loop over all elements, and if postprocess_sides
is true over all sides.
Reimplemented from libMesh::DifferentiableSystem.
Reimplemented in PoissonSystem, CoupledSystem, NavierSystem, LaplaceSystem, and LaplaceSystem.
Definition at line 1097 of file fem_system.C.
References libMesh::MeshBase::active_local_elements_begin(), libMesh::MeshBase::active_local_elements_end(), libMesh::System::get_mesh(), libMesh::DifferentiableSystem::get_time_solver(), mesh, libMesh::Threads::parallel_for(), libMesh::StoredRange< iterator_type, object_type >::reset(), libMesh::TimeSolver::set_is_adjoint(), and libMesh::System::update().
Referenced by main(), PoissonSystem::postprocess(), and LaplaceSystem::postprocess().
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staticinherited |
Prints the reference information, by default to libMesh::out
.
Definition at line 87 of file reference_counter.C.
References libMesh::ReferenceCounter::_enable_print_counter, and libMesh::ReferenceCounter::get_info().
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inlineinherited |
Definition at line 106 of file parallel_object.h.
References libMesh::ParallelObject::_communicator.
Referenced by libMesh::BoundaryInfo::_find_id_maps(), libMesh::EquationSystems::_read_impl(), libMesh::PetscDMWrapper::add_dofs_to_section(), libMesh::DistributedMesh::add_elem(), libMesh::BoundaryInfo::add_elements(), libMesh::DofMap::add_neighbors_to_send_list(), libMesh::DistributedMesh::add_node(), libMesh::UnstructuredMesh::all_second_order(), libMesh::MeshTools::Modification::all_tri(), libMesh::DofMap::allgather_recursive_constraints(), libMesh::FEMSystem::assembly(), libMesh::Nemesis_IO_Helper::build_element_and_node_maps(), libMesh::InfElemBuilder::build_inf_elem(), libMesh::BoundaryInfo::build_node_list_from_side_list(), libMesh::EquationSystems::build_parallel_elemental_solution_vector(), libMesh::DistributedMesh::clear(), libMesh::ExodusII_IO_Helper::close(), libMesh::Nemesis_IO_Helper::compute_border_node_ids(), libMesh::Nemesis_IO_Helper::compute_communication_map_parameters(), libMesh::Nemesis_IO_Helper::compute_internal_and_border_elems_and_internal_nodes(), libMesh::RBConstruction::compute_max_error_bound(), libMesh::Nemesis_IO_Helper::compute_node_communication_maps(), libMesh::Nemesis_IO_Helper::compute_num_global_elem_blocks(), libMesh::Nemesis_IO_Helper::compute_num_global_nodesets(), libMesh::Nemesis_IO_Helper::compute_num_global_sidesets(), libMesh::Nemesis_IO_Helper::construct_nemesis_filename(), libMesh::ExodusII_IO::copy_scalar_solution(), libMesh::MeshTools::correct_node_proc_ids(), libMesh::ExodusII_IO_Helper::create(), libMesh::DistributedMesh::delete_elem(), libMesh::DistributedMesh::delete_node(), libMesh::MeshCommunication::delete_remote_elements(), libMesh::DofMap::distribute_dofs(), libMesh::DofMap::distribute_local_dofs_node_major(), libMesh::DofMap::distribute_local_dofs_var_major(), libMesh::DistributedMesh::DistributedMesh(), libMesh::DofMap::end_dof(), libMesh::DofMap::end_old_dof(), libMesh::EnsightIO::EnsightIO(), libMesh::RBEIMConstruction::evaluate_mesh_function(), libMesh::MeshFunction::find_element(), libMesh::MeshFunction::find_elements(), libMesh::UnstructuredMesh::find_neighbors(), libMesh::DofMap::first_dof(), libMesh::DofMap::first_old_dof(), libMesh::Nemesis_IO_Helper::get_cmap_params(), libMesh::Nemesis_IO_Helper::get_eb_info_global(), libMesh::Nemesis_IO_Helper::get_elem_cmap(), libMesh::Nemesis_IO_Helper::get_elem_map(), libMesh::DofMap::get_info(), libMesh::Nemesis_IO_Helper::get_init_global(), libMesh::Nemesis_IO_Helper::get_init_info(), libMesh::Nemesis_IO_Helper::get_loadbal_param(), libMesh::DofMap::get_local_constraints(), libMesh::Nemesis_IO_Helper::get_node_cmap(), libMesh::Nemesis_IO_Helper::get_node_map(), libMesh::Nemesis_IO_Helper::get_ns_param_global(), libMesh::Nemesis_IO_Helper::get_ss_param_global(), libMesh::SparsityPattern::Build::handle_vi_vj(), libMesh::SystemSubsetBySubdomain::init(), libMesh::PetscDMWrapper::init_and_attach_petscdm(), HeatSystem::init_data(), libMesh::ExodusII_IO_Helper::initialize(), libMesh::ExodusII_IO_Helper::initialize_element_variables(), libMesh::ExodusII_IO_Helper::initialize_global_variables(), libMesh::ExodusII_IO_Helper::initialize_nodal_variables(), libMesh::DistributedMesh::insert_elem(), libMesh::DofMap::is_evaluable(), libMesh::SparsityPattern::Build::join(), libMesh::DofMap::last_dof(), libMesh::TransientRBEvaluation::legacy_write_offline_data_to_files(), libMesh::RBEIMEvaluation::legacy_write_offline_data_to_files(), libMesh::RBEvaluation::legacy_write_offline_data_to_files(), libMesh::RBSCMEvaluation::legacy_write_offline_data_to_files(), libMesh::RBEIMEvaluation::legacy_write_out_interpolation_points_elem(), libMesh::MeshTools::libmesh_assert_consistent_distributed(), libMesh::MeshTools::libmesh_assert_consistent_distributed_nodes(), libMesh::MeshTools::libmesh_assert_contiguous_dof_ids(), libMesh::MeshTools::libmesh_assert_parallel_consistent_procids< Elem >(), libMesh::MeshTools::libmesh_assert_valid_neighbors(), libMesh::DistributedMesh::libmesh_assert_valid_parallel_object_ids(), libMesh::DofMap::local_variable_indices(), main(), libMesh::MeshRefinement::make_coarsening_compatible(), AugmentSparsityOnInterface::mesh_reinit(), libMesh::MeshBase::n_active_local_elem(), libMesh::BoundaryInfo::n_boundary_conds(), libMesh::BoundaryInfo::n_edge_conds(), libMesh::DofMap::n_local_dofs(), libMesh::System::n_local_dofs(), libMesh::MeshBase::n_local_elem(), libMesh::MeshBase::n_local_nodes(), libMesh::BoundaryInfo::n_nodeset_conds(), libMesh::BoundaryInfo::n_shellface_conds(), libMesh::SparsityPattern::Build::operator()(), libMesh::DistributedMesh::own_node(), libMesh::System::point_gradient(), libMesh::System::point_hessian(), libMesh::System::point_value(), libMesh::DofMap::print_dof_constraints(), libMesh::Nemesis_IO_Helper::put_cmap_params(), libMesh::Nemesis_IO_Helper::put_elem_cmap(), libMesh::Nemesis_IO_Helper::put_elem_map(), libMesh::Nemesis_IO_Helper::put_loadbal_param(), libMesh::Nemesis_IO_Helper::put_node_cmap(), libMesh::Nemesis_IO_Helper::put_node_map(), libMesh::NameBasedIO::read(), libMesh::Nemesis_IO::read(), libMesh::XdrIO::read(), libMesh::CheckpointIO::read(), libMesh::ExodusII_IO_Helper::read_elem_num_map(), libMesh::ExodusII_IO_Helper::read_global_values(), libMesh::CheckpointIO::read_header(), libMesh::XdrIO::read_header(), libMesh::System::read_header(), libMesh::RBEvaluation::read_in_vectors_from_multiple_files(), libMesh::System::read_legacy_data(), libMesh::ExodusII_IO_Helper::read_node_num_map(), libMesh::System::read_parallel_data(), libMesh::TransientRBConstruction::read_riesz_representors_from_files(), libMesh::RBConstruction::read_riesz_representors_from_files(), libMesh::System::read_SCALAR_dofs(), libMesh::XdrIO::read_serialized_bc_names(), libMesh::XdrIO::read_serialized_bcs_helper(), libMesh::System::read_serialized_blocked_dof_objects(), libMesh::XdrIO::read_serialized_connectivity(), libMesh::System::read_serialized_data(), libMesh::XdrIO::read_serialized_nodes(), libMesh::XdrIO::read_serialized_nodesets(), libMesh::XdrIO::read_serialized_subdomain_names(), libMesh::System::read_serialized_vector(), libMesh::System::read_serialized_vectors(), libMesh::DistributedMesh::renumber_dof_objects(), libMesh::DofMap::scatter_constraints(), libMesh::CheckpointIO::select_split_config(), libMesh::DofMap::set_nonlocal_dof_objects(), libMesh::PetscDMWrapper::set_point_range_in_section(), libMesh::LaplaceMeshSmoother::smooth(), DefaultCouplingTest::testCoupling(), PointNeighborCouplingTest::testCoupling(), MeshInputTest::testDynaReadElem(), MeshInputTest::testDynaReadPatch(), MeshInputTest::testExodusCopyElementSolution(), MeshInputTest::testExodusWriteElementDataFromDiscontinuousNodalData(), SystemsTest::testProjectMatrix1D(), SystemsTest::testProjectMatrix2D(), SystemsTest::testProjectMatrix3D(), BoundaryInfoTest::testShellFaceConstraints(), CheckpointIOTest::testSplitter(), WriteVecAndScalar::testWrite(), libMesh::MeshTools::total_weight(), libMesh::MeshRefinement::uniformly_coarsen(), libMesh::Parallel::Packing< Node * >::unpack(), libMesh::Parallel::Packing< Elem * >::unpack(), libMesh::DistributedMesh::update_parallel_id_counts(), libMesh::DTKAdapter::update_variable_values(), libMesh::NameBasedIO::write(), libMesh::XdrIO::write(), libMesh::CheckpointIO::write(), libMesh::EquationSystems::write(), libMesh::GMVIO::write_discontinuous_gmv(), libMesh::ExodusII_IO::write_element_data(), libMesh::ExodusII_IO_Helper::write_element_values(), libMesh::ExodusII_IO_Helper::write_element_values_element_major(), libMesh::ExodusII_IO_Helper::write_elements(), libMesh::ExodusII_IO::write_global_data(), libMesh::ExodusII_IO_Helper::write_global_values(), libMesh::System::write_header(), libMesh::ExodusII_IO::write_information_records(), libMesh::ExodusII_IO_Helper::write_information_records(), libMesh::ExodusII_IO_Helper::write_nodal_coordinates(), libMesh::VTKIO::write_nodal_data(), libMesh::UCDIO::write_nodal_data(), libMesh::ExodusII_IO::write_nodal_data(), libMesh::ExodusII_IO::write_nodal_data_discontinuous(), libMesh::ExodusII_IO_Helper::write_nodal_values(), libMesh::Nemesis_IO_Helper::write_nodesets(), libMesh::ExodusII_IO_Helper::write_nodesets(), libMesh::RBEvaluation::write_out_vectors(), write_output_solvedata(), libMesh::System::write_parallel_data(), libMesh::RBConstruction::write_riesz_representors_to_files(), libMesh::System::write_SCALAR_dofs(), libMesh::XdrIO::write_serialized_bc_names(), libMesh::XdrIO::write_serialized_bcs_helper(), libMesh::System::write_serialized_blocked_dof_objects(), libMesh::XdrIO::write_serialized_connectivity(), libMesh::System::write_serialized_data(), libMesh::XdrIO::write_serialized_nodes(), libMesh::XdrIO::write_serialized_nodesets(), libMesh::XdrIO::write_serialized_subdomain_names(), libMesh::System::write_serialized_vector(), libMesh::System::write_serialized_vectors(), libMesh::ExodusII_IO_Helper::write_sideset_data(), libMesh::Nemesis_IO_Helper::write_sidesets(), libMesh::ExodusII_IO_Helper::write_sidesets(), libMesh::ExodusII_IO::write_timestep(), libMesh::ExodusII_IO_Helper::write_timestep(), and libMesh::ExodusII_IO::write_timestep_discontinuous().
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inherited |
Projects arbitrary functions onto the current solution.
This method projects an arbitrary function onto the solution via L2 projections and nodal interpolations on each element.
The function value f
and its gradient g
are user-provided cloneable functors. A gradient g
is only required/used for projecting onto finite element spaces with continuous derivatives. If non-default Parameters
are to be used, they can be provided in the parameters
argument.
Definition at line 963 of file system_projection.C.
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inherited |
Projects arbitrary functions onto the current solution.
This method projects an arbitrary function onto the solution via L2 projections and nodal interpolations on each element.
The function value f
and its gradient g
are user-provided cloneable functors. A gradient g
is only required/used for projecting onto finite element spaces with continuous derivatives. If non-default Parameters
are to be used, they can be provided in the parameters
argument.
Definition at line 950 of file system_projection.C.
Referenced by init_sys(), initialize(), main(), FETest< order, family, elem_type >::setUp(), SlitMeshRefinedSystemTest::setUp(), MeshfunctionDFEM::test_mesh_function_dfem(), MeshfunctionDFEM::test_mesh_function_dfem_grad(), MeshFunctionTest::test_p_level(), DefaultCouplingTest::testCoupling(), PointNeighborCouplingTest::testCoupling(), MeshInputTest::testExodusCopyElementSolution(), SystemsTest::testProjectCubeWithMeshFunction(), EquationSystemsTest::testRepartitionThenReinit(), and libMesh::MeshfreeSolutionTransfer::transfer().
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inherited |
This method projects an arbitrary function onto the solution via L2 projections and nodal interpolations on each element.
Definition at line 936 of file system_projection.C.
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inlineinherited |
Tells the System whether or not to project the solution vector onto new grids when the system is reinitialized.
The solution will be projected unless project_solution_on_reinit() = false is called.
Definition at line 802 of file system.h.
References libMesh::System::_solution_projection.
Referenced by libMesh::UniformRefinementEstimator::_estimate_error(), libMesh::AdjointRefinementEstimator::estimate_error(), and libMesh::MemorySolutionHistory::store().
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protectedinherited |
Projects the vector defined on the old mesh onto the new mesh.
This method projects the vector via L2 projections or nodal interpolations on each element.
The original vector is unchanged and the new vector is passed through the second argument.
Constrain the new vector using the requested adjoint rather than primal constraints if is_adjoint is non-negative.
This method projects a solution from an old mesh to a current, refined mesh. The input vector old_v
gives the solution on the old mesh, while the new_v
gives the solution (to be computed) on the new mesh.
Definition at line 270 of file system_projection.C.
References libMesh::NumericVector< T >::clear(), libMesh::NumericVector< T >::close(), libMesh::NumericVector< T >::get(), libMesh::GHOSTED, libMesh::index_range(), libMesh::NumericVector< T >::init(), libMesh::Utility::iota(), libMesh::libmesh_assert(), libMesh::libmesh_ignore(), libMesh::NumericVector< T >::local_size(), libMesh::NumericVector< T >::localize(), n_vars, libMesh::PARALLEL, libMesh::Threads::parallel_reduce(), libMesh::SCALAR, libMesh::DofMap::SCALAR_dof_indices(), libMesh::BuildProjectionList::send_list, libMesh::SERIAL, libMesh::NumericVector< T >::set(), libMesh::NumericVector< T >::size(), libMesh::NumericVector< T >::type(), and libMesh::BuildProjectionList::unique().
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protectedinherited |
Projects the vector defined on the old mesh onto the new mesh.
Constrain the new vector using the requested adjoint rather than primal constraints if is_adjoint is non-negative.
Definition at line 252 of file system_projection.C.
References libMesh::NumericVector< T >::clone().
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inherited |
Projects arbitrary functions onto a vector of degree of freedom values for the current system.
This method projects an arbitrary function via L2 projections and nodal interpolations on each element.
The function value f
and its gradient g
are user-provided cloneable functors. A gradient g
is only required/used for projecting onto finite element spaces with continuous derivatives. If non-default Parameters
are to be used, they can be provided in the parameters
argument.
Constrain the new vector using the requested adjoint rather than primal constraints if is_adjoint is non-negative.
Definition at line 1017 of file system_projection.C.
References libMesh::NumericVector< T >::close(), libMesh::FEMFunctionBase< Output >::component(), libMesh::Utility::iota(), libMesh::libmesh_assert(), libMesh::libmesh_ignore(), n_vars, libMesh::FEMContext::pre_fe_reinit(), libMesh::SCALAR, libMesh::DofMap::SCALAR_dof_indices(), and libMesh::NumericVector< T >::set().
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inherited |
Projects arbitrary functions onto a vector of degree of freedom values for the current system.
This method projects an arbitrary function via L2 projections and nodal interpolations on each element.
The function value f
and its gradient g
are user-provided cloneable functors. A gradient g
is only required/used for projecting onto finite element spaces with continuous derivatives. If non-default Parameters
are to be used, they can be provided in the parameters
argument.
Constrain the new vector using the requested adjoint rather than primal constraints if is_adjoint is non-negative.
Definition at line 991 of file system_projection.C.
References libMesh::libmesh_assert().
Referenced by main(), libMesh::NewmarkSolver::project_initial_accel(), libMesh::SecondOrderUnsteadySolver::project_initial_rate(), and libMesh::System::restrict_vectors().
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inherited |
Projects arbitrary functions onto a vector of degree of freedom values for the current system.
This method projects an arbitrary function via L2 projections and nodal interpolations on each element.
The function value fptr
and its gradient gptr
are represented by function pointers. A gradient gptr
is only required/used for projecting onto finite element spaces with continuous derivatives.
Constrain the new vector using the requested adjoint rather than primal constraints if is_adjoint is non-negative.
Definition at line 976 of file system_projection.C.
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inherited |
This method creates a projection matrix which corresponds to the operation of project_vector between old and new solution spaces.
Heterogeneous Dirichlet boundary conditions are not taken into account here; if this matrix is used for prolongation (mesh refinement) on a side with a heterogeneous BC, the newly created degrees of freedom on that side will still match the coarse grid approximation of the BC, not the fine grid approximation.
Definition at line 870 of file system_projection.C.
References libMesh::Utility::iota(), n_vars, libMesh::SCALAR, libMesh::DofMap::SCALAR_dof_indices(), and libMesh::SparseMatrix< T >::set().
Referenced by libMesh::PetscDMWrapper::init_and_attach_petscdm(), SystemsTest::testProjectMatrix1D(), SystemsTest::testProjectMatrix2D(), and SystemsTest::testProjectMatrix3D().
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virtualinherited |
Prolong vectors after the mesh has refined.
Definition at line 380 of file system.C.
References libMesh::System::restrict_vectors().
Referenced by libMesh::EquationSystems::reinit_solutions().
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overridevirtualinherited |
For each of the system's quantities of interest q in qoi
[qoi_indices], and for a vector of parameters p, the parameter sensitivity Hessian H_ij is defined as H_ij = (d^2 q)/(d p_i d p_j) This Hessian is the output of this method, where for each q_i, H_jk is stored in hessian.second_derivative(i,j,k)
.
Note that in some cases only current_local_solution is used during assembly, and, therefore, if solution has been altered without update() being called, then the user must call update() before calling this function.
Reimplemented from libMesh::System.
Definition at line 1091 of file implicit_system.C.
References libMesh::ImplicitSystem::adjoint_solve(), libMesh::SensitivityData::allocate_hessian_data(), libMesh::ExplicitSystem::assemble_qoi(), libMesh::ExplicitSystem::assemble_qoi_derivative(), libMesh::ImplicitSystem::assembly(), libMesh::SparseMatrix< T >::close(), libMesh::NumericVector< T >::close(), libMesh::NumericVector< T >::dot(), libMesh::System::get_adjoint_rhs(), libMesh::System::get_adjoint_solution(), libMesh::System::get_sensitivity_solution(), libMesh::QoISet::has_index(), libMesh::System::is_adjoint_already_solved(), libMesh::ImplicitSystem::matrix, libMesh::System::n_qois(), libMesh::System::qoi, libMesh::Real, libMesh::ExplicitSystem::rhs, libMesh::SensitivityData::second_derivative(), libMesh::ImplicitSystem::sensitivity_solve(), libMesh::ParameterVector::size(), libMesh::System::solution, libMesh::TOLERANCE, libMesh::System::update(), and libMesh::SparseMatrix< T >::vector_mult().
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overridevirtualinherited |
For each of the system's quantities of interest q in qoi
[qoi_indices], and for a vector of parameters p, the parameter sensitivity Hessian H_ij is defined as H_ij = (d^2 q)/(d p_i d p_j) The Hessian-vector product, for a vector v_k in parameter space, is S_j = H_jk v_k This product is the output of this method, where for each q_i, S_j is stored in sensitivities
[i][j].
Reimplemented from libMesh::System.
Definition at line 886 of file implicit_system.C.
References libMesh::ImplicitSystem::adjoint_solve(), libMesh::SensitivityData::allocate_data(), libMesh::ExplicitSystem::assemble_qoi(), libMesh::ExplicitSystem::assemble_qoi_derivative(), libMesh::ImplicitSystem::assembly(), libMesh::SparseMatrix< T >::close(), libMesh::NumericVector< T >::close(), libMesh::ParameterVector::deep_copy(), libMesh::NumericVector< T >::dot(), libMesh::System::get_adjoint_rhs(), libMesh::System::get_adjoint_solution(), libMesh::System::get_weighted_sensitivity_adjoint_solution(), libMesh::System::get_weighted_sensitivity_solution(), libMesh::QoISet::has_index(), libMesh::System::is_adjoint_already_solved(), libMesh::ImplicitSystem::matrix, libMesh::System::n_qois(), libMesh::System::qoi, libMesh::Real, libMesh::ExplicitSystem::rhs, libMesh::ParameterVector::size(), libMesh::System::solution, libMesh::TOLERANCE, libMesh::ParameterVector::value_copy(), libMesh::SparseMatrix< T >::vector_mult(), libMesh::ImplicitSystem::weighted_sensitivity_adjoint_solve(), and libMesh::ImplicitSystem::weighted_sensitivity_solve().
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virtualinherited |
Solves for the derivative of each of the system's quantities of interest q in qoi
[qoi_indices] with respect to each parameter in parameters
, placing the result for qoi i
and parameter j
into sensitivities
[i][j].
parameters
is a const vector, not a vector-of-const; parameter values in this vector need to be mutable for finite differencing to work.Automatically chooses the forward method for problems with more quantities of interest than parameters, or the adjoint method otherwise.
This method is only usable in derived classes which override an implementation.
Definition at line 498 of file system.C.
References libMesh::System::adjoint_qoi_parameter_sensitivity(), libMesh::System::forward_qoi_parameter_sensitivity(), libMesh::ParameterVector::size(), and libMesh::QoISet::size().
|
virtualinherited |
Re-update the local values when the mesh has changed.
This method takes the data updated by update()
and makes it up-to-date on the current mesh.
Reimplemented in libMesh::TransientSystem< RBConstruction >.
Definition at line 429 of file system.C.
References libMesh::System::current_local_solution, libMesh::System::get_dof_map(), libMesh::DofMap::get_send_list(), libMesh::System::n_vars(), and libMesh::System::solution.
|
inherited |
Reads the basic data header for this System.
Definition at line 114 of file system_io.C.
References libMesh::System::_additional_data_written, libMesh::System::_written_var_indices, libMesh::System::add_variable(), libMesh::System::add_vector(), libMesh::System::clear(), libMesh::ParallelObject::comm(), libMesh::Xdr::data(), libMesh::FEType::family, libMesh::System::get_mesh(), libMesh::OrderWrapper::get_order(), libMesh::FEType::inf_map, libMesh::libmesh_assert(), libMesh::MeshBase::mesh_dimension(), libMesh::MONOMIAL, libMesh::on_command_line(), libMesh::FEType::order, libMesh::out, libMesh::ParallelObject::processor_id(), libMesh::FEType::radial_family, libMesh::FEType::radial_order, libMesh::Xdr::reading(), libMesh::System::variable_number(), libMesh::Xdr::version(), and libMesh::XYZ.
Referenced by libMesh::EquationSystems::_read_impl(), and libMesh::RBEvaluation::read_in_vectors_from_multiple_files().
|
inherited |
Reads additional data, namely vectors, for this System.
Definition at line 309 of file system_io.C.
References libMesh::System::_additional_data_written, libMesh::System::_vectors, libMesh::System::_written_var_indices, libMesh::ParallelObject::comm(), libMesh::Xdr::data(), libMesh::System::get_mesh(), libMesh::DofObject::invalid_id, libMesh::libmesh_assert(), libMesh::System::n_dofs(), libMesh::System::n_vars(), libMesh::System::number(), libMesh::ParallelObject::processor_id(), libMesh::Xdr::reading(), libMesh::System::solution, and libMesh::zero.
|
inherited |
Reads additional data, namely vectors, for this System.
This method may safely be called on a distributed-memory mesh. This method will read an individual file for each processor in the simulation where the local solution components for that processor are stored.
This method implements the output of the vectors contained in this System object, embedded in the output of an EquationSystems<T_sys>.
9.) The global solution vector, re-ordered to be node-major (More on this later.)
for each additional vector in the object
10.) The global additional vector, re-ordered to be node-major (More on this later.)
Note that the actual IO is handled through the Xdr class (to be renamed later?) which provides a uniform interface to both the XDR (eXternal Data Representation) interface and standard ASCII output. Thus this one section of code will read XDR or ASCII files with no changes.
Definition at line 492 of file system_io.C.
References libMesh::System::_additional_data_written, libMesh::System::_vectors, libMesh::System::_written_var_indices, libMesh::Xdr::data(), libMesh::FEType::family, libMesh::System::get_dof_map(), libMesh::System::get_mesh(), libMesh::DofObject::invalid_id, libMesh::Xdr::is_open(), libMesh::libmesh_assert(), libMesh::ParallelObject::n_processors(), libMesh::System::n_vars(), libMesh::System::number(), libMesh::ParallelObject::processor_id(), libMesh::Xdr::reading(), libMesh::SCALAR, libMesh::DofMap::SCALAR_dof_indices(), libMesh::System::solution, libMesh::Variable::type(), and libMesh::System::variable().
|
inlineinherited |
Non-templated version for backward compatibility.
Reads additional data, namely vectors, for this System. This method may safely be called on a distributed-memory mesh. This method will read an individual file for each processor in the simulation where the local solution components for that processor are stored.
|
privateinherited |
Reads the SCALAR dofs from the stream io
and assigns the values to the appropriate entries of vec
.
Reads data and discards it if vec
is a null pointer.
Definition at line 1120 of file system_io.C.
References libMesh::ParallelObject::comm(), libMesh::Xdr::data_stream(), libMesh::System::get_dof_map(), libMesh::OrderWrapper::get_order(), libMesh::index_range(), libMesh::ParallelObject::n_processors(), libMesh::FEType::order, libMesh::ParallelObject::processor_id(), libMesh::DofMap::SCALAR_dof_indices(), libMesh::NumericVector< T >::set(), libMesh::Variable::type(), and libMesh::System::variable().
Referenced by libMesh::System::read_serialized_vector(), and libMesh::System::read_serialized_vectors().
|
privateinherited |
Reads an input vector from the stream io
and assigns the values to a set of DofObjects
.
This method uses blocked input and is safe to call on a distributed memory-mesh. Unless otherwise specified, all variables are read.
If an entry in vecs
is a null pointer, the corresponding data is read (incrementing the file read location) but discarded.
Definition at line 810 of file system_io.C.
References libMesh::System::_written_var_indices, libMesh::ParallelObject::comm(), end, libMesh::MeshTools::Generation::Private::idx(), libMesh::index_range(), libMesh::invalid_uint, libMesh::Threads::NonConcurrentThread::join(), libMesh::libmesh_assert(), libMesh::ParallelObject::n_processors(), libMesh::System::n_vars(), libMesh::System::number(), and libMesh::ParallelObject::processor_id().
Referenced by libMesh::System::read_serialized_vector(), and libMesh::System::read_serialized_vectors().
|
inherited |
Reads additional data, namely vectors, for this System.
This method may safely be called on a distributed-memory mesh.
Definition at line 724 of file system_io.C.
References libMesh::System::_additional_data_written, libMesh::System::_vectors, libMesh::Xdr::comment(), libMesh::ParallelObject::processor_id(), and libMesh::System::solution.
Referenced by libMesh::TransientRBConstruction::initialize_truth(), libMesh::TransientRBConstruction::read_riesz_representors_from_files(), and libMesh::RBConstruction::read_riesz_representors_from_files().
|
inlineinherited |
|
inlineprivateinherited |
|
privateinherited |
Reads a vector for this System.
This method may safely be called on a distributed-memory mesh.
Reads data and discards it if vec
is a null pointer.
Definition at line 1167 of file system_io.C.
References libMesh::System::_written_var_indices, libMesh::NumericVector< T >::close(), libMesh::ParallelObject::comm(), libMesh::Xdr::data(), libMesh::System::get_mesh(), libMesh::GHOSTED, libMesh::libmesh_assert(), libMesh::MeshBase::n_elem(), libMesh::MeshTools::n_elem(), n_nodes, libMesh::MeshBase::n_nodes(), libMesh::ParallelObject::n_processors(), libMesh::System::n_vars(), libMesh::PARALLEL, libMesh::ParallelObject::processor_id(), libMesh::System::read_SCALAR_dofs(), libMesh::System::read_serialized_blocked_dof_objects(), libMesh::Xdr::reading(), libMesh::SCALAR, libMesh::NumericVector< T >::type(), libMesh::System::variable(), and libMesh::Xdr::version().
|
inherited |
Read a number of identically distributed vectors.
This method allows for optimization for the multiple vector case by only communicating the metadata once.
Definition at line 2199 of file system_io.C.
References libMesh::Xdr::data(), libMesh::System::get_mesh(), libMesh::libmesh_assert(), libMesh::MeshBase::n_elem(), libMesh::MeshTools::n_elem(), n_nodes, libMesh::MeshBase::n_nodes(), libMesh::System::n_vars(), libMesh::ParallelObject::processor_id(), libMesh::System::read_SCALAR_dofs(), libMesh::System::read_serialized_blocked_dof_objects(), libMesh::Xdr::reading(), libMesh::SCALAR, and libMesh::System::variable().
Referenced by libMesh::RBEvaluation::read_in_vectors_from_multiple_files().
|
inlineinherited |
Non-templated version for backward compatibility.
Read a number of identically distributed vectors. This method allows for optimization for the multiple vector case by only communicating the metadata once.
|
overridevirtualinherited |
Reinitializes the member data fields associated with the system, so that, e.g., assemble()
may be used.
Reimplemented from libMesh::ImplicitSystem.
Definition at line 96 of file diff_system.C.
References libMesh::libmesh_assert(), libMesh::ImplicitSystem::reinit(), and libMesh::DifferentiableSystem::time_solver.
|
virtualinherited |
Reinitializes the constraints for this system.
Definition at line 397 of file system.C.
References libMesh::System::_mesh, libMesh::DofMap::create_dof_constraints(), libMesh::System::get_dof_map(), libMesh::DofMap::prepare_send_list(), libMesh::DofMap::process_constraints(), libMesh::System::time, and libMesh::System::user_constrain().
Referenced by libMesh::EquationSystems::allgather(), libMesh::PetscDMWrapper::init_and_attach_petscdm(), libMesh::System::init_data(), and libMesh::EquationSystems::reinit_solutions().
|
overridevirtualinherited |
Releases a pointer to a linear solver acquired by this->get_linear_solver()
Reimplemented from libMesh::ImplicitSystem.
Definition at line 194 of file diff_system.C.
|
inherited |
Removes the additional matrix mat_name
from this system.
Definition at line 221 of file implicit_system.C.
References libMesh::ImplicitSystem::_matrices.
Referenced by libMesh::ImplicitSystem::~ImplicitSystem().
|
inherited |
Removes the additional vector vec_name
from this system.
Definition at line 699 of file system.C.
References libMesh::System::_vector_is_adjoint, libMesh::System::_vector_projections, libMesh::System::_vector_types, and libMesh::System::_vectors.
|
inherited |
mat_name
, or nullptr
if no matrix by that name exists. Definition at line 249 of file implicit_system.C.
References libMesh::ImplicitSystem::_matrices.
|
inherited |
mat_name
, or nullptr
if no matrix by that name exists. Definition at line 236 of file implicit_system.C.
References libMesh::ImplicitSystem::_matrices.
Referenced by libMesh::ImplicitSystem::sensitivity_solve(), libMesh::NewtonSolver::solve(), and libMesh::LinearImplicitSystem::solve().
|
inherited |
System
has a vector associated with the given name, nullptr
otherwise. Definition at line 728 of file system.C.
References libMesh::System::_vectors.
|
inherited |
System
has a vector associated with the given name, nullptr
otherwise. Definition at line 716 of file system.C.
References libMesh::System::_vectors.
Referenced by libMesh::UniformRefinementEstimator::_estimate_error().
|
inherited |
vec_num
(where the vectors are counted starting with 0), or nullptr
if the system has no such vector. Definition at line 757 of file system.C.
References libMesh::System::vectors_begin(), and libMesh::System::vectors_end().
|
inherited |
vec_num
(where the vectors are counted starting with 0), or nullptr
if the system has no such vector. Definition at line 740 of file system.C.
References libMesh::System::vectors_begin(), and libMesh::System::vectors_end().
|
virtualinherited |
After calling this method, any solve will be restricted to the given subdomain.
To disable this mode, call this method with subset
being a nullptr
.
Reimplemented in libMesh::LinearImplicitSystem.
|
virtualinherited |
Restrict vectors after the mesh has coarsened.
Definition at line 324 of file system.C.
References libMesh::System::_dof_map, libMesh::System::_solution_projection, libMesh::System::_vector_projections, libMesh::System::_vector_types, libMesh::System::_vectors, libMesh::System::current_local_solution, libMesh::GHOSTED, libMesh::System::n_dofs(), libMesh::System::n_local_dofs(), libMesh::PARALLEL, libMesh::System::project_vector(), libMesh::System::solution, and libMesh::System::vector_is_adjoint().
Referenced by libMesh::System::prolong_vectors(), and libMesh::EquationSystems::reinit_solutions().
|
overridevirtualinherited |
Assembles & solves the linear system(s) (dR/du)*u_p = -dR/dp, for those parameters contained within parameters
.
Reimplemented from libMesh::System.
Definition at line 301 of file implicit_system.C.
References libMesh::System::add_sensitivity_solution(), libMesh::System::assemble_before_solve, libMesh::ImplicitSystem::assemble_residual_derivatives(), libMesh::ImplicitSystem::assembly(), libMesh::SparseMatrix< T >::close(), libMesh::DofMap::enforce_constraints_exactly(), libMesh::System::get_dof_map(), libMesh::ImplicitSystem::get_linear_solve_parameters(), libMesh::ImplicitSystem::get_linear_solver(), libMesh::System::get_sensitivity_rhs(), libMesh::System::get_sensitivity_solution(), libMesh::ImplicitSystem::matrix, libMesh::ImplicitSystem::release_linear_solver(), libMesh::ImplicitSystem::request_matrix(), libMesh::ParameterVector::size(), and libMesh::LinearSolver< T >::solve().
Referenced by libMesh::ImplicitSystem::forward_qoi_parameter_sensitivity(), and libMesh::ImplicitSystem::qoi_parameter_hessian().
|
inlineinherited |
Setter for the adjoint_already_solved boolean.
Definition at line 402 of file system.h.
References libMesh::System::adjoint_already_solved.
Referenced by main().
|
inlineinherited |
Sets the system to be "basic only": i.e.
advanced system components such as ImplicitSystem matrices may not be initialized. This is useful for efficiency in certain utility programs that never use System::solve(). This method must be called after the System or derived class is created but before it is initialized; e.g. from within EquationSystems::read()
Definition at line 2147 of file system.h.
References libMesh::System::_basic_system_only.
Referenced by libMesh::EquationSystems::_read_impl().
|
inlinevirtualinherited |
Tells the DifferentiablePhysics that system sys
contains the isoparametric Lagrangian variables which correspond to the coordinates of mesh nodes, in problems where the mesh itself is expected to move in time.
The system with mesh coordinate data (which may be this
system itself, for fully coupled moving mesh problems) is currently assumed to have new (end of time step) mesh coordinates stored in solution, old (beginning of time step) mesh coordinates stored in _old_nonlinear_solution, and constant velocity motion during each time step.
Activating this function ensures that local (but not neighbor!) element geometry is correctly repositioned when evaluating element residuals.
Currently sys
must be *this
for a tightly coupled moving mesh problem or nullptr to stop mesh movement; loosely coupled moving mesh problems are not implemented.
This code is experimental. "Trust but verify, and not in that order"
Definition at line 581 of file diff_physics.h.
References libMesh::DifferentiablePhysics::_mesh_sys.
Referenced by SolidSystem::init_data().
|
inlinevirtualinherited |
Tells the DifferentiablePhysics that variable var
from the mesh system should be used to update the x coordinate of mesh nodes, in problems where the mesh itself is expected to move in time.
The system with mesh coordinate data (which may be this system itself, for fully coupled moving mesh problems) is currently assumed to have new (end of time step) mesh coordinates stored in solution, old (beginning of time step) mesh coordinates stored in _old_nonlinear_solution, and constant velocity motion during each time step.
Activating this function ensures that local (but not neighbor!) element geometry is correctly repositioned when evaluating element residuals.
Definition at line 601 of file diff_physics.h.
References libMesh::DifferentiablePhysics::_mesh_x_var.
Referenced by SolidSystem::init_data().
|
inlinevirtualinherited |
Tells the DifferentiablePhysics that variable var
from the mesh system should be used to update the y coordinate of mesh nodes.
Definition at line 609 of file diff_physics.h.
References libMesh::DifferentiablePhysics::_mesh_y_var.
Referenced by SolidSystem::init_data().
|
inlinevirtualinherited |
Tells the DifferentiablePhysics that variable var
from the mesh system should be used to update the z coordinate of mesh nodes.
Definition at line 617 of file diff_physics.h.
References libMesh::DifferentiablePhysics::_mesh_z_var.
Referenced by SolidSystem::init_data().
|
inlineinherited |
Definition at line 269 of file fem_system.h.
References libMesh::FEMSystem::_numerical_jacobian_h_for_var, and libMesh::Real.
|
inlineinherited |
Sets the time_solver FIXME: This code is a little dangerous as it transfers ownership from the TimeSolver creator to this class.
The user must no longer access his original TimeSolver object after calling this function.
Definition at line 241 of file diff_system.h.
References libMesh::DifferentiableSystem::time_solver.
|
inherited |
Allows one to set the QoI index controlling whether the vector identified by vec_name represents a solution from the adjoint (qoi_num >= 0) or primal (qoi_num == -1) space.
This becomes significant if those spaces have differing heterogeneous Dirichlet constraints.
qoi_num == -2 can be used to indicate a vector which should not be affected by constraints during projection operations.
Definition at line 873 of file system.C.
References libMesh::System::_vector_is_adjoint.
Referenced by libMesh::System::add_adjoint_solution(), and libMesh::System::add_weighted_sensitivity_adjoint_solution().
|
inherited |
Allows one to set the boolean controlling whether the vector identified by vec_name should be "preserved": projected to new meshes, saved, etc.
Definition at line 855 of file system.C.
References libMesh::System::_vector_projections.
Referenced by main().
|
inlinevirtualinherited |
Adds the constraint contribution on side
of elem
to elem_residual.
If this method receives request_jacobian = true, then it should compute elem_jacobian and return true if possible. If elem_jacobian has not been computed then the method should return false.
Users may need to reimplement this for their particular PDE depending on the boundary conditions.
To implement a weak form of the constraint 0 = G(u), the user should examine u = elem_solution and add (G(u), phi_i) boundary integral contributions to elem_residual in side_constraint().
Reimplemented in LaplaceSystem, LaplaceSystem, LaplaceSystem, and NavierSystem.
Definition at line 192 of file diff_physics.h.
Referenced by libMesh::EulerSolver::side_residual(), libMesh::Euler2Solver::side_residual(), libMesh::SteadySolver::side_residual(), libMesh::EigenTimeSolver::side_residual(), and libMesh::NewmarkSolver::side_residual().
|
inlinevirtualinherited |
Subtracts a damping vector contribution on side
of elem
from elem_residual.
If this method receives request_jacobian = true, then it should compute elem_jacobian and return true if possible. If elem_jacobian has not been computed then the method should return false.
For most problems, the default implementation of "do nothing" is correct; users with boundary conditions including first time derivatives may need to reimplement this themselves.
Definition at line 392 of file diff_physics.h.
Referenced by libMesh::EulerSolver::side_residual(), libMesh::Euler2Solver::side_residual(), and libMesh::NewmarkSolver::side_residual().
|
inlinevirtualinherited |
Subtracts a mass vector contribution on side
of elem
from elem_residual.
If this method receives request_jacobian = true, then it should compute elem_jacobian and return true if possible. If elem_jacobian has not been computed then the method should return false.
For most problems, the default implementation of "do nothing" is correct; users with boundary conditions including time derivatives may need to reimplement this themselves.
Definition at line 336 of file diff_physics.h.
Referenced by libMesh::EulerSolver::side_residual(), libMesh::Euler2Solver::side_residual(), libMesh::EigenTimeSolver::side_residual(), and libMesh::NewmarkSolver::side_residual().
|
inlinevirtualinherited |
Does any work that needs to be done on side
of elem
in a postprocessing loop.
Reimplemented in LaplaceSystem, and LaplaceSystem.
Definition at line 287 of file diff_system.h.
|
inlinevirtualinherited |
Does any work that needs to be done on side
of elem
in a quantity of interest assembly loop, outputting to elem_qoi.
Only qois included in the supplied QoISet
need to be assembled.
Reimplemented in CoupledSystemQoI.
Definition at line 133 of file diff_qoi.h.
|
inlinevirtualinherited |
Does any work that needs to be done on side
of elem
in a quantity of interest derivative assembly loop, outputting to elem_qoi_derivative.
Only qois included in the supplied QoISet
need their derivatives assembled.
Reimplemented in LaplaceSystem, LaplaceSystem, and CoupledSystemQoI.
Definition at line 145 of file diff_qoi.h.
|
virtual |
Adds the time derivative contribution on side
of elem
to elem_residual.
If this method receives request_jacobian = true, then it should compute elem_jacobian and return true if possible. If elem_jacobian has not been computed then the method should return false.
Users may need to reimplement this for their particular PDE depending on the boundary conditions.
To implement a weak form of the source term du/dt = F(u) on sides, such as might arise in a flux boundary condition, the user should examine u = elem_solution and add (F(u), phi_i) boundary integral contributions to elem_residual in side_constraint().
Reimplemented from libMesh::DifferentiablePhysics.
|
virtual |
Adds the time derivative contribution on side
of elem
to elem_residual.
If this method receives request_jacobian = true, then it should compute elem_jacobian and return true if possible. If elem_jacobian has not been computed then the method should return false.
Users may need to reimplement this for their particular PDE depending on the boundary conditions.
To implement a weak form of the source term du/dt = F(u) on sides, such as might arise in a flux boundary condition, the user should examine u = elem_solution and add (F(u), phi_i) boundary integral contributions to elem_residual in side_constraint().
Reimplemented from libMesh::DifferentiablePhysics.
Definition at line 173 of file curl_curl_system.C.
References exact_solution(), libMesh::DiffContext::get_elem_jacobian(), libMesh::DiffContext::get_elem_residual(), libMesh::FEAbstract::get_JxW(), libMesh::FEAbstract::get_normals(), libMesh::FEGenericBase< OutputType >::get_phi(), libMesh::FEMContext::get_side_fe(), libMesh::FEMContext::get_side_qrule(), libMesh::FEAbstract::get_xyz(), libMesh::DiffContext::n_dof_indices(), libMesh::QBase::n_points(), libMesh::Real, libMesh::FEMContext::side_value(), and u_var.
|
overridevirtualinherited |
Invokes the solver associated with the system.
For steady state solvers, this will find a root x where F(x) = 0. For transient solvers, this will integrate dx/dt = F(x).
For moving mesh systems, this also translates the mesh to the solution position.
Reimplemented from libMesh::DifferentiableSystem.
Reimplemented in libMesh::ContinuationSystem.
Definition at line 1046 of file fem_system.C.
References libMesh::FEMSystem::mesh_position_set(), and libMesh::DifferentiableSystem::solve().
Referenced by main().
|
inherited |
Swap current physics object with external object.
Definition at line 353 of file diff_system.C.
References libMesh::DifferentiableSystem::_diff_physics, and swap().
|
inlineinherited |
|
inlineoverridevirtualinherited |
"Implicit"
. Helps in identifying the system type in an equation system file. Reimplemented from libMesh::ExplicitSystem.
Reimplemented in libMesh::OptimizationSystem, libMesh::NonlinearImplicitSystem, libMesh::LinearImplicitSystem, libMesh::RBConstruction, libMesh::FrequencySystem, libMesh::NewmarkSystem, libMesh::TransientSystem< RBConstruction >, and SolidSystem.
Definition at line 118 of file implicit_system.h.
|
virtualinherited |
Method to combine thread-local qois.
By default, simply sums thread qois.
Definition at line 33 of file diff_qoi.C.
References libMesh::index_range().
|
inlinevirtualinherited |
Tells the DiffSystem that variable var is evolving with respect to time.
In general, the user's init() function should call time_evolving() for any variables which behave like du/dt = F(u), and should not call time_evolving() for any variables which behave like 0 = G(u).
Most derived systems will not have to reimplement this function; however any system which reimplements mass_residual() may have to reimplement time_evolving() to prepare data structures.
Definition at line 250 of file diff_physics.h.
Referenced by libMesh::DifferentiableSystem::add_second_order_dot_vars(), init_data(), and HeatSystem::init_data().
|
virtualinherited |
Tells the DiffSystem that variable var is evolving with respect to time.
In general, the user's init() function should call time_evolving() with order 1 for any variables which behave like du/dt = F(u), with order 2 for any variables that behave like d^2u/dt^2 = F(u), and should not call time_evolving() for any variables which behave like 0 = G(u).
Most derived systems will not have to reimplement this function; however any system which reimplements mass_residual() may have to reimplement time_evolving() to prepare data structures.
Definition at line 46 of file diff_physics.C.
References libMesh::DifferentiablePhysics::_first_order_vars, libMesh::DifferentiablePhysics::_second_order_vars, and libMesh::DifferentiablePhysics::_time_evolving.
|
virtualinherited |
Update the local values to reflect the solution on neighboring processors.
Reimplemented in SolidSystem.
Definition at line 408 of file system.C.
References libMesh::System::_dof_map, libMesh::System::current_local_solution, libMesh::libmesh_assert(), and libMesh::System::solution.
Referenced by libMesh::__libmesh_petsc_diff_solver_jacobian(), libMesh::__libmesh_petsc_diff_solver_residual(), libMesh::UniformRefinementEstimator::_estimate_error(), libMesh::FEMSystem::assemble_qoi(), libMesh::FEMSystem::assemble_qoi_derivative(), libMesh::NonlinearImplicitSystem::assembly(), libMesh::EquationSystems::build_parallel_elemental_solution_vector(), libMesh::EquationSystems::build_parallel_solution_vector(), libMesh::NewmarkSolver::compute_initial_accel(), LinearElasticityWithContact::compute_stresses(), LinearElasticity::compute_stresses(), compute_stresses(), LargeDeformationElasticity::compute_stresses(), libMesh::Problem_Interface::computeF(), libMesh::Problem_Interface::computeJacobian(), libMesh::Problem_Interface::computePreconditioner(), libMesh::ExodusII_IO::copy_elemental_solution(), libMesh::ExodusII_IO::copy_nodal_solution(), libMesh::GMVIO::copy_nodal_solution(), libMesh::ExodusII_IO::copy_scalar_solution(), DMlibMeshFunction(), DMlibMeshJacobian(), libMesh::RBEIMConstruction::enrich_RB_space(), libMesh::AdjointRefinementEstimator::estimate_error(), libMesh::CondensedEigenSystem::get_eigenpair(), libMesh::TransientRBConstruction::initialize_truth(), libMesh::libmesh_petsc_snes_jacobian(), libMesh::libmesh_petsc_snes_residual_helper(), libMesh::NewtonSolver::line_search(), libMesh::RBEIMConstruction::load_basis_function(), libMesh::RBConstruction::load_basis_function(), libMesh::RBEIMConstruction::load_rb_solution(), libMesh::RBConstruction::load_rb_solution(), libMesh::TransientRBConstruction::load_rb_solution(), libMesh::FEMSystem::mesh_position_get(), HeatSystem::perturb_accumulate_residuals(), libMesh::FEMSystem::postprocess(), libMesh::ImplicitSystem::qoi_parameter_hessian(), libMesh::NewtonSolver::solve(), libMesh::ExplicitSystem::solve(), libMesh::LinearImplicitSystem::solve(), libMesh::NonlinearImplicitSystem::solve(), libMesh::OptimizationSystem::solve(), libMesh::RBConstruction::solve_for_matrix_and_rhs(), libMesh::MeshFunctionSolutionTransfer::transfer(), libMesh::DirectSolutionTransfer::transfer(), and libMesh::RBEIMConstruction::truth_solve().
|
inherited |
Fill the input vector global_soln
so that it contains the global solution on all processors.
Requires communication with all other processors.
Definition at line 642 of file system.C.
References libMesh::System::solution.
Referenced by libMesh::ExactSolution::_compute_error(), libMesh::EquationSystems::build_discontinuous_solution_vector(), libMesh::ExactErrorEstimator::estimate_error(), and main().
|
inherited |
Fill the input vector global_soln
so that it contains the global solution on processor dest_proc
.
Requires communication with all other processors.
Definition at line 651 of file system.C.
References libMesh::System::solution.
|
virtualinherited |
Calls user's attached assembly function, or is overridden by the user in derived classes.
Definition at line 1910 of file system.C.
References libMesh::System::_assemble_system_function, libMesh::System::_assemble_system_object, libMesh::System::_equation_systems, libMesh::System::Assembly::assemble(), and libMesh::System::name().
Referenced by libMesh::System::assemble().
|
virtualinherited |
Calls user's attached constraint function, or is overridden by the user in derived classes.
Definition at line 1924 of file system.C.
References libMesh::System::_constrain_system_function, libMesh::System::_constrain_system_object, libMesh::System::_equation_systems, libMesh::System::Constraint::constrain(), and libMesh::System::name().
Referenced by libMesh::System::reinit_constraints().
|
virtualinherited |
Calls user's attached initialization function, or is overridden by the user in derived classes.
Definition at line 1896 of file system.C.
References libMesh::System::_equation_systems, libMesh::System::_init_system_function, libMesh::System::_init_system_object, libMesh::System::Initialization::initialize(), and libMesh::System::name().
Referenced by libMesh::System::init(), and libMesh::NewmarkSystem::initial_conditions().
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virtualinherited |
Calls user's attached quantity of interest function, or is overridden by the user in derived classes.
Definition at line 1938 of file system.C.
References libMesh::System::_equation_systems, libMesh::System::_qoi_evaluate_function, libMesh::System::_qoi_evaluate_object, libMesh::System::name(), and libMesh::System::QOI::qoi().
Referenced by libMesh::System::assemble_qoi().
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virtualinherited |
Calls user's attached quantity of interest derivative function, or is overridden by the user in derived classes.
Definition at line 1952 of file system.C.
References libMesh::System::_equation_systems, libMesh::System::_qoi_evaluate_derivative_function, libMesh::System::_qoi_evaluate_derivative_object, libMesh::System::name(), and libMesh::System::QOIDerivative::qoi_derivative().
Referenced by libMesh::System::assemble_qoi_derivative().
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inlineinherited |
Return a constant reference to Variable
var
.
Definition at line 2183 of file system.h.
References libMesh::System::_variables.
Referenced by libMesh::ExactSolution::_compute_error(), libMesh::PetscDMWrapper::add_dofs_to_section(), libMesh::DifferentiableSystem::add_second_order_dot_vars(), libMesh::EquationSystems::build_discontinuous_solution_vector(), libMesh::EquationSystems::build_parallel_elemental_solution_vector(), libMesh::EquationSystems::build_parallel_solution_vector(), libMesh::FirstOrderUnsteadySolver::compute_second_order_eqns(), libMesh::DifferentiableSystem::have_first_order_scalar_vars(), libMesh::DifferentiableSystem::have_second_order_scalar_vars(), main(), libMesh::DifferentiablePhysics::nonlocal_mass_residual(), libMesh::GenericProjector< FFunctor, GFunctor, FValue, ProjectionAction >::SortAndCopy::operator()(), libMesh::System::point_gradient(), libMesh::System::point_hessian(), libMesh::System::point_value(), libMesh::System::read_parallel_data(), libMesh::System::read_SCALAR_dofs(), libMesh::System::read_serialized_vector(), libMesh::System::read_serialized_vectors(), libMesh::PetscDMWrapper::set_point_range_in_section(), libMesh::System::write_header(), libMesh::System::write_parallel_data(), libMesh::System::write_serialized_vector(), and libMesh::System::write_serialized_vectors().
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inlineinherited |
Return a constant reference to VariableGroup
vg
.
Definition at line 2193 of file system.h.
References libMesh::System::_variable_groups.
Referenced by libMesh::FEMSystem::assembly(), libMesh::System::get_info(), and libMesh::System::init_data().
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inlineinherited |
i
. Definition at line 2203 of file system.h.
References libMesh::System::_variables.
Referenced by libMesh::System::add_variable(), libMesh::System::add_variables(), libMesh::EquationSystems::build_discontinuous_solution_vector(), libMesh::PetscDMWrapper::build_section(), libMesh::ExactErrorEstimator::estimate_error(), libMesh::ExactSolution::ExactSolution(), libMesh::EquationSystems::find_variable_numbers(), main(), output_norms(), libMesh::petsc_auto_fieldsplit(), MeshInputTest::testExodusWriteElementDataFromDiscontinuousNodalData(), libMesh::System::write_header(), and libMesh::Nemesis_IO_Helper::write_nodal_solution().
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inherited |
var
. Definition at line 1232 of file system.C.
References libMesh::System::_variable_numbers, libMesh::System::_variables, and libMesh::System::name().
Referenced by libMesh::ExactSolution::_compute_error(), LinearElasticity::assemble(), AssembleOptimization::assemble_A_and_F(), assemble_elasticity(), assemble_matrix_and_rhs(), assemble_shell(), assemble_stokes(), LinearElasticityWithContact::compute_stresses(), LinearElasticity::compute_stresses(), compute_stresses(), LargeDeformationElasticity::compute_stresses(), libMesh::ExodusII_IO::copy_elemental_solution(), libMesh::ExodusII_IO::copy_nodal_solution(), libMesh::GMVIO::copy_nodal_solution(), libMesh::ExactErrorEstimator::estimate_error(), libMesh::ExactErrorEstimator::find_squared_element_error(), LargeDeformationElasticity::jacobian(), line_print(), main(), LinearElasticityWithContact::move_mesh(), libMesh::System::read_header(), LargeDeformationElasticity::residual(), LinearElasticityWithContact::residual_and_jacobian(), OverlappingAlgebraicGhostingTest::run_ghosting_test(), OverlappingCouplingGhostingTest::run_sparsity_pattern_test(), OverlappingTestBase::setup_coupling_matrix(), libMesh::DTKAdapter::update_variable_values(), libMesh::System::variable_scalar_number(), libMesh::System::variable_type(), libMesh::EnsightIO::write_scalar_ascii(), and libMesh::EnsightIO::write_vector_ascii().
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inlineinherited |
variable_number(var)
Irony: currently our only non-scalar-valued variable type is SCALAR.
Definition at line 2214 of file system.h.
References libMesh::System::variable_number().
Referenced by libMesh::ExactSolution::_compute_error(), libMesh::ExodusII_IO::copy_scalar_solution(), and libMesh::ExactErrorEstimator::find_squared_element_error().
|
inlineinherited |
var_num
Irony: currently our only non-scalar-valued variable type is SCALAR.
Definition at line 2224 of file system.h.
References libMesh::System::_variables.
|
inlineinherited |
var
. Definition at line 2243 of file system.h.
References libMesh::System::_variables, and libMesh::System::variable_number().
|
inlineinherited |
i
. Definition at line 2233 of file system.h.
References libMesh::System::_variables.
Referenced by libMesh::System::add_variable(), libMesh::System::add_variables(), assemble(), assemble_ellipticdg(), assemble_shell(), assemble_stokes(), libMesh::FEMContext::attach_quadrature_rules(), libMesh::EquationSystems::build_discontinuous_solution_vector(), libMesh::EquationSystems::build_parallel_solution_vector(), libMesh::ExodusII_IO::copy_elemental_solution(), libMesh::GMVIO::copy_nodal_solution(), libMesh::DGFEMContext::DGFEMContext(), libMesh::JumpErrorEstimator::estimate_error(), libMesh::FEMContext::find_hardest_fe_type(), libMesh::EquationSystems::find_variable_numbers(), libMesh::FEMSystem::init_context(), libMesh::FEMContext::init_internal_data(), RationalMapTest< elem_type >::setUp(), FETest< order, family, elem_type >::setUp(), libMesh::System::write_header(), libMesh::Nemesis_IO_Helper::write_nodal_solution(), libMesh::EnsightIO::write_scalar_ascii(), and libMesh::EnsightIO::write_vector_ascii().
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inherited |
Definition at line 884 of file system.C.
References libMesh::System::_vector_is_adjoint, and libMesh::libmesh_assert().
Referenced by libMesh::System::restrict_vectors().
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inherited |
Definition at line 834 of file system.C.
References libMesh::libmesh_assert(), libMesh::System::vectors_begin(), and libMesh::System::vectors_end().
|
inherited |
vec_num
(where the vectors are counted starting with 0). Definition at line 820 of file system.C.
References libMesh::libmesh_assert(), libMesh::System::vectors_begin(), and libMesh::System::vectors_end().
Referenced by main().
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inherited |
Definition at line 863 of file system.C.
References libMesh::System::_vector_projections.
Referenced by libMesh::MemorySolutionHistory::store().
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inlineinherited |
Beginning of vectors container.
Definition at line 2295 of file system.h.
References libMesh::System::_vectors.
Referenced by libMesh::UniformRefinementEstimator::_estimate_error(), libMesh::AdjointRefinementEstimator::estimate_error(), libMesh::System::get_vector(), libMesh::System::request_vector(), libMesh::MemorySolutionHistory::store(), and libMesh::System::vector_name().
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inlineinherited |
Beginning of vectors container.
Definition at line 2301 of file system.h.
References libMesh::System::_vectors.
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inlineinherited |
End of vectors container.
Definition at line 2307 of file system.h.
References libMesh::System::_vectors.
Referenced by libMesh::UniformRefinementEstimator::_estimate_error(), libMesh::AdjointRefinementEstimator::estimate_error(), libMesh::System::get_vector(), libMesh::System::request_vector(), libMesh::MemorySolutionHistory::store(), and libMesh::System::vector_name().
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inlineinherited |
End of vectors container.
Definition at line 2313 of file system.h.
References libMesh::System::_vectors.
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overridevirtualinherited |
Assembles & solves the linear system(s) (dR/du)^T*z_w = sum(w_p*(d^2q/dudp - d^2R/dudp*z)), for those parameters p contained within parameters
, weighted by the values w_p found within weights
.
Assumes that adjoint_solve has already calculated z for each qoi in qoi_indices
.
Reimplemented from libMesh::System.
Definition at line 412 of file implicit_system.C.
References libMesh::System::add_weighted_sensitivity_adjoint_solution(), libMesh::ExplicitSystem::assemble_qoi_derivative(), libMesh::ImplicitSystem::assembly(), libMesh::SparseMatrix< T >::close(), libMesh::NumericVector< T >::close(), libMesh::ParameterVector::deep_copy(), libMesh::DofMap::enforce_constraints_exactly(), libMesh::System::get_adjoint_rhs(), libMesh::System::get_adjoint_solution(), libMesh::System::get_dof_map(), libMesh::ImplicitSystem::get_linear_solve_parameters(), libMesh::ImplicitSystem::get_linear_solver(), libMesh::SparseMatrix< T >::get_transpose(), libMesh::System::get_weighted_sensitivity_adjoint_solution(), libMesh::DofMap::has_adjoint_dirichlet_boundaries(), libMesh::QoISet::has_index(), libMesh::libmesh_assert(), libMesh::ImplicitSystem::matrix, libMesh::System::n_qois(), libMesh::Real, libMesh::ImplicitSystem::release_linear_solver(), libMesh::ExplicitSystem::rhs, libMesh::LinearSolver< T >::solve(), libMesh::TOLERANCE, libMesh::ParameterVector::value_copy(), libMesh::SparseMatrix< T >::vector_mult_add(), and libMesh::NumericVector< T >::zero_clone().
Referenced by libMesh::ImplicitSystem::qoi_parameter_hessian_vector_product().
|
overridevirtualinherited |
Assembles & solves the linear system(s) (dR/du)*u_w = sum(w_p*-dR/dp), for those parameters p contained within parameters
weighted by the values w_p found within weights
.
Reimplemented from libMesh::System.
Definition at line 560 of file implicit_system.C.
References libMesh::System::add_weighted_sensitivity_solution(), libMesh::ImplicitSystem::assembly(), libMesh::NumericVector< T >::clone(), libMesh::SparseMatrix< T >::close(), libMesh::NumericVector< T >::close(), libMesh::ParameterVector::deep_copy(), libMesh::DofMap::enforce_constraints_exactly(), libMesh::System::get_dof_map(), libMesh::ImplicitSystem::get_linear_solve_parameters(), libMesh::ImplicitSystem::get_linear_solver(), libMesh::System::get_weighted_sensitivity_solution(), libMesh::ImplicitSystem::matrix, libMesh::Real, libMesh::ImplicitSystem::release_linear_solver(), libMesh::ExplicitSystem::rhs, libMesh::LinearSolver< T >::solve(), libMesh::TOLERANCE, and libMesh::ParameterVector::value_copy().
Referenced by libMesh::ImplicitSystem::qoi_parameter_hessian_vector_product().
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inherited |
Writes the basic data header for this System.
This method implements the output of a System object, embedded in the output of an EquationSystems<T_sys>. This warrants some documentation. The output of this part consists of 5 sections:
for this system
5.) The number of variables in the system (unsigned int)
for each variable in the system
6.) The name of the variable (string)
6.1.) subdomain where the variable lives
7.) Combined in an FEType:
end variable loop
8.) The number of additional vectors (unsigned int),
for each additional vector in the system object
9.) the name of the additional vector (string)
end system
Definition at line 1298 of file system_io.C.
References libMesh::System::_vectors, libMesh::Variable::active_subdomains(), libMesh::Xdr::data(), libMesh::FEType::family, libMesh::System::get_mesh(), libMesh::FEType::inf_map, libMesh::libmesh_assert(), libMesh::System::n_vars(), libMesh::System::n_vectors(), libMesh::System::name(), libMesh::ParallelObject::processor_id(), libMesh::FEType::radial_family, libMesh::System::variable(), libMesh::System::variable_name(), libMesh::System::variable_type(), and libMesh::Xdr::writing().
Referenced by libMesh::RBEvaluation::write_out_vectors().
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inherited |
Writes additional data, namely vectors, for this System.
This method may safely be called on a distributed-memory mesh. This method will create an individual file for each processor in the simulation where the local solution components for that processor will be stored.
This method implements the output of the vectors contained in this System object, embedded in the output of an EquationSystems<T_sys>.
9.) The global solution vector, re-ordered to be node-major (More on this later.)
for each additional vector in the object
10.) The global additional vector, re-ordered to be node-major (More on this later.)
Note that the actual IO is handled through the Xdr class (to be renamed later?) which provides a uniform interface to both the XDR (eXternal Data Representation) interface and standard ASCII output. Thus this one section of code will read XDR or ASCII files with no changes.
Definition at line 1503 of file system_io.C.
References libMesh::System::_vectors, libMesh::Xdr::data(), libMesh::FEType::family, libMesh::System::get_dof_map(), libMesh::System::get_mesh(), libMesh::DofObject::invalid_id, libMesh::libmesh_assert(), libMesh::ParallelObject::n_processors(), libMesh::System::n_vars(), libMesh::System::name(), libMesh::System::number(), libMesh::ParallelObject::processor_id(), libMesh::SCALAR, libMesh::DofMap::SCALAR_dof_indices(), libMesh::System::solution, libMesh::Variable::type(), libMesh::System::variable(), and libMesh::Xdr::writing().
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privateinherited |
Writes the SCALAR dofs associated with var to the stream io
.
Definition at line 2097 of file system_io.C.
References libMesh::ParallelObject::comm(), libMesh::Xdr::data_stream(), libMesh::System::get_dof_map(), libMesh::ParallelObject::n_processors(), libMesh::ParallelObject::processor_id(), and libMesh::DofMap::SCALAR_dof_indices().
Referenced by libMesh::System::write_serialized_vector(), and libMesh::System::write_serialized_vectors().
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privateinherited |
Writes an output vector to the stream io
for a set of DofObjects
.
This method uses blocked output and is safe to call on a distributed memory-mesh.
Definition at line 1811 of file system_io.C.
References libMesh::ParallelObject::comm(), end, libMesh::MeshTools::Generation::Private::idx(), libMesh::invalid_uint, libMesh::libmesh_assert(), libMesh::ParallelObject::n_processors(), libMesh::System::n_vars(), libMesh::System::number(), and libMesh::ParallelObject::processor_id().
Referenced by libMesh::System::write_serialized_vector(), and libMesh::System::write_serialized_vectors().
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inherited |
Writes additional data, namely vectors, for this System.
This method may safely be called on a distributed-memory mesh.
This method implements the output of the vectors contained in this System object, embedded in the output of an EquationSystems<T_sys>.
9.) The global solution vector, re-ordered to be node-major (More on this later.)
for each additional vector in the object
10.) The global additional vector, re-ordered to be node-major (More on this later.)
Definition at line 1703 of file system_io.C.
References libMesh::System::_vectors, libMesh::Xdr::comment(), libMesh::System::name(), libMesh::ParallelObject::processor_id(), libMesh::System::solution, and libMesh::System::write_serialized_vector().
Referenced by libMesh::TransientRBConstruction::write_riesz_representors_to_files(), and libMesh::RBConstruction::write_riesz_representors_to_files().
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privateinherited |
Writes a vector for this System.
This method may safely be called on a distributed-memory mesh.
Definition at line 2152 of file system_io.C.
References libMesh::Xdr::data(), libMesh::System::get_mesh(), libMesh::libmesh_assert(), libMesh::MeshTools::n_elem(), n_nodes, libMesh::System::n_vars(), libMesh::ParallelObject::processor_id(), libMesh::SCALAR, libMesh::NumericVector< T >::size(), libMesh::System::variable(), libMesh::System::write_SCALAR_dofs(), libMesh::System::write_serialized_blocked_dof_objects(), and libMesh::Xdr::writing().
Referenced by libMesh::System::write_serialized_data().
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inherited |
Serialize & write a number of identically distributed vectors.
This method allows for optimization for the multiple vector case by only communicating the metadata once.
Definition at line 2293 of file system_io.C.
References libMesh::Xdr::data(), libMesh::System::get_mesh(), libMesh::libmesh_assert(), libMesh::MeshBase::n_elem(), libMesh::MeshTools::n_elem(), n_nodes, libMesh::MeshBase::n_nodes(), libMesh::System::n_vars(), libMesh::ParallelObject::processor_id(), libMesh::SCALAR, libMesh::System::variable(), libMesh::System::write_SCALAR_dofs(), libMesh::System::write_serialized_blocked_dof_objects(), and libMesh::Xdr::writing().
Referenced by libMesh::RBEvaluation::write_out_vectors().
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inherited |
Zeroes all dofs in v
that correspond to variable number var_num
.
Definition at line 1300 of file system.C.
References libMesh::System::get_mesh(), mesh, libMesh::System::n_vars(), libMesh::System::number(), and libMesh::NumericVector< T >::set().
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privateinherited |
Flag stating if the system is active or not.
Definition at line 1977 of file system.h.
Referenced by libMesh::System::activate(), libMesh::System::active(), and libMesh::System::deactivate().
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privateinherited |
This flag is used only when reading in a system from file.
Based on the system header, it keeps track of how many additional vectors were actually written for this file.
Definition at line 2034 of file system.h.
Referenced by libMesh::System::read_header(), libMesh::System::read_legacy_data(), libMesh::System::read_parallel_data(), and libMesh::System::read_serialized_data().
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privateinherited |
Function that assembles the system.
Definition at line 1885 of file system.h.
Referenced by libMesh::System::attach_assemble_function(), libMesh::System::attach_assemble_object(), libMesh::System::user_assembly(), and libMesh::System::~System().
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privateinherited |
Object that assembles the system.
Definition at line 1891 of file system.h.
Referenced by libMesh::System::attach_assemble_function(), libMesh::System::attach_assemble_object(), libMesh::System::user_assembly(), and libMesh::System::~System().
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privateinherited |
Holds true if the components of more advanced system types (e.g.
system matrices) should not be initialized.
Definition at line 2015 of file system.h.
Referenced by libMesh::System::init(), and libMesh::System::set_basic_system_only().
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privateinherited |
true
when additional matrices may still be added, false
otherwise.
Definition at line 431 of file implicit_system.h.
Referenced by libMesh::ImplicitSystem::add_matrix(), libMesh::ImplicitSystem::clear(), and libMesh::ImplicitSystem::init_matrices().
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protectedinherited |
Definition at line 112 of file parallel_object.h.
Referenced by libMesh::EquationSystems::build_parallel_elemental_solution_vector(), libMesh::EquationSystems::build_parallel_solution_vector(), libMesh::ParallelObject::comm(), libMesh::ParallelObject::n_processors(), libMesh::ParallelObject::operator=(), and libMesh::ParallelObject::processor_id().
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privateinherited |
Function to impose constraints.
Definition at line 1896 of file system.h.
Referenced by libMesh::System::attach_constraint_function(), libMesh::System::attach_constraint_object(), libMesh::System::user_constrain(), and libMesh::System::~System().
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privateinherited |
Object that constrains the system.
Definition at line 1902 of file system.h.
Referenced by libMesh::System::attach_constraint_function(), libMesh::System::attach_constraint_object(), libMesh::System::user_constrain(), and libMesh::System::~System().
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staticprotectedinherited |
Actually holds the data.
Definition at line 122 of file reference_counter.h.
Referenced by libMesh::ReferenceCounter::get_info(), libMesh::ReferenceCounter::increment_constructor_count(), and libMesh::ReferenceCounter::increment_destructor_count().
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protectedinherited |
Pointer to object to use for physics assembly evaluations.
Defaults to this
for backwards compatibility; in the future users should create separate physics objects.
Definition at line 370 of file diff_system.h.
Referenced by libMesh::DifferentiableSystem::attach_physics(), libMesh::DifferentiableSystem::clear(), libMesh::DifferentiableSystem::get_physics(), libMesh::DifferentiableSystem::init_data(), libMesh::DifferentiableSystem::swap_physics(), and libMesh::DifferentiableSystem::~DifferentiableSystem().
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privateinherited |
Data structure describing the relationship between nodes, variables, etc...
and degrees of freedom.
Definition at line 1934 of file system.h.
Referenced by libMesh::System::add_vector(), libMesh::System::calculate_norm(), libMesh::System::clear(), libMesh::System::current_solution(), libMesh::System::get_dof_map(), libMesh::System::init_data(), libMesh::System::n_constrained_dofs(), libMesh::System::n_dofs(), libMesh::System::n_local_constrained_dofs(), libMesh::System::n_local_dofs(), libMesh::System::restrict_vectors(), and libMesh::System::update().
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staticprotectedinherited |
Flag to control whether reference count information is printed when print_info is called.
Definition at line 141 of file reference_counter.h.
Referenced by libMesh::ReferenceCounter::disable_print_counter_info(), libMesh::ReferenceCounter::enable_print_counter_info(), and libMesh::ReferenceCounter::print_info().
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privateinherited |
Constant reference to the EquationSystems
object used for the simulation.
Definition at line 1940 of file system.h.
Referenced by libMesh::System::get_equation_systems(), libMesh::System::user_assembly(), libMesh::System::user_constrain(), libMesh::System::user_initialization(), libMesh::System::user_QOI(), and libMesh::System::user_QOI_derivative().
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protectedinherited |
Variable indices for those variables that are first order in time.
Definition at line 560 of file diff_physics.h.
Referenced by libMesh::DifferentiablePhysics::get_first_order_vars(), libMesh::DifferentiablePhysics::have_first_order_vars(), libMesh::DifferentiablePhysics::is_first_order_var(), and libMesh::DifferentiablePhysics::time_evolving().
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privateinherited |
Are we allowed to write this system to file? If _hide_output
is true
, then EquationSystems::write
will ignore this system.
Definition at line 2059 of file system.h.
Referenced by libMesh::System::hide_output().
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privateinherited |
true
when VariableGroup
structures should be automatically identified, false
otherwise.
Defaults to true
.
Definition at line 2027 of file system.h.
Referenced by libMesh::System::identify_variable_groups().
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privateinherited |
Function that initializes the system.
Definition at line 1874 of file system.h.
Referenced by libMesh::System::attach_init_function(), libMesh::System::attach_init_object(), libMesh::System::user_initialization(), and libMesh::System::~System().
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privateinherited |
Object that initializes the system.
Definition at line 1880 of file system.h.
Referenced by libMesh::System::attach_init_function(), libMesh::System::attach_init_object(), libMesh::System::user_initialization(), and libMesh::System::~System().
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privateinherited |
true
when additional vectors and variables do not require immediate initialization, false
otherwise.
Definition at line 2021 of file system.h.
Referenced by libMesh::System::add_vector(), libMesh::System::clear(), libMesh::System::compare(), libMesh::System::init_data(), and libMesh::System::is_initialized().
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privateinherited |
Some systems need an arbitrary number of matrices.
Definition at line 426 of file implicit_system.h.
Referenced by libMesh::ImplicitSystem::add_matrix(), libMesh::ImplicitSystem::add_system_matrix(), libMesh::ImplicitSystem::clear(), libMesh::ImplicitSystem::get_matrix(), libMesh::ImplicitSystem::have_matrix(), libMesh::ImplicitSystem::init_data(), libMesh::ImplicitSystem::init_matrices(), libMesh::ImplicitSystem::n_matrices(), libMesh::ImplicitSystem::reinit(), libMesh::ImplicitSystem::remove_matrix(), and libMesh::ImplicitSystem::request_matrix().
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privateinherited |
Constant reference to the mesh
data structure used for the simulation.
Definition at line 1946 of file system.h.
Referenced by libMesh::System::calculate_norm(), libMesh::System::get_mesh(), and libMesh::System::reinit_constraints().
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protectedinherited |
System from which to acquire moving mesh information.
Definition at line 543 of file diff_physics.h.
Referenced by libMesh::FEMPhysics::eulerian_residual(), libMesh::DifferentiablePhysics::get_mesh_system(), libMesh::FEMSystem::mesh_position_get(), libMesh::FEMSystem::mesh_position_set(), libMesh::FEMSystem::numerical_jacobian(), and libMesh::DifferentiablePhysics::set_mesh_system().
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protectedinherited |
Variables from which to acquire moving mesh information.
Definition at line 548 of file diff_physics.h.
Referenced by libMesh::FEMPhysics::eulerian_residual(), libMesh::DifferentiablePhysics::get_mesh_x_var(), libMesh::FEMSystem::mesh_position_get(), libMesh::FEMSystem::numerical_jacobian(), and libMesh::DifferentiablePhysics::set_mesh_x_var().
|
protectedinherited |
|
protectedinherited |
|
staticprotectedinherited |
Mutual exclusion object to enable thread-safe reference counting.
Definition at line 135 of file reference_counter.h.
|
staticprotectedinherited |
The number of objects.
Print the reference count information when the number returns to 0.
Definition at line 130 of file reference_counter.h.
Referenced by libMesh::ReferenceCounter::n_objects(), libMesh::ReferenceCounter::ReferenceCounter(), and libMesh::ReferenceCounter::~ReferenceCounter().
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privateinherited |
Definition at line 252 of file fem_system.h.
Referenced by libMesh::FEMSystem::numerical_jacobian_h_for_var(), and libMesh::FEMSystem::set_numerical_jacobian_h_for_var().
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privateinherited |
Function to evaluate quantity of interest derivative.
Definition at line 1919 of file system.h.
Referenced by libMesh::System::attach_QOI_derivative(), libMesh::System::attach_QOI_derivative_object(), libMesh::System::user_QOI_derivative(), and libMesh::System::~System().
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privateinherited |
Object to compute derivatives of quantities of interest.
Definition at line 1928 of file system.h.
Referenced by libMesh::System::attach_QOI_derivative(), libMesh::System::attach_QOI_derivative_object(), libMesh::System::user_QOI_derivative(), and libMesh::System::~System().
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privateinherited |
Function to evaluate quantity of interest.
Definition at line 1907 of file system.h.
Referenced by libMesh::System::attach_QOI_function(), libMesh::System::attach_QOI_object(), libMesh::System::user_QOI(), and libMesh::System::~System().
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privateinherited |
Object to compute quantities of interest.
Definition at line 1914 of file system.h.
Referenced by libMesh::System::attach_QOI_function(), libMesh::System::attach_QOI_object(), libMesh::System::user_QOI(), and libMesh::System::~System().
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protectedinherited |
If the user adds any second order variables, then we need to also cache the map to their corresponding dot variable that will be added by this TimeSolver class.
Definition at line 572 of file diff_physics.h.
Referenced by libMesh::DifferentiableSystem::add_second_order_dot_vars(), and libMesh::DifferentiableSystem::get_second_order_dot_var().
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protectedinherited |
Variable indices for those variables that are second order in time.
Definition at line 565 of file diff_physics.h.
Referenced by libMesh::DifferentiablePhysics::get_second_order_vars(), libMesh::DifferentiablePhysics::have_second_order_vars(), libMesh::DifferentiablePhysics::is_second_order_var(), and libMesh::DifferentiablePhysics::time_evolving().
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privateinherited |
Holds true if the solution vector should be projected onto a changed grid, false if it should be zeroed.
This is true by default.
Definition at line 2009 of file system.h.
Referenced by libMesh::System::project_solution_on_reinit(), and libMesh::System::restrict_vectors().
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privateinherited |
A name associated with this system.
Definition at line 1951 of file system.h.
Referenced by libMesh::System::compare(), and libMesh::System::name().
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privateinherited |
The number associated with this system.
Definition at line 1956 of file system.h.
Referenced by libMesh::System::number().
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protectedinherited |
Stores unsigned int to tell us which variables are evolving as first order in time (1), second order in time (2), or are not time evolving (0).
Definition at line 555 of file diff_physics.h.
Referenced by libMesh::DifferentiablePhysics::clear_physics(), libMesh::DifferentiablePhysics::init_physics(), libMesh::DifferentiablePhysics::is_time_evolving(), and libMesh::DifferentiablePhysics::time_evolving().
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privateinherited |
The VariableGroup
in this System
.
Definition at line 1966 of file system.h.
Referenced by libMesh::System::add_variable(), libMesh::System::add_variables(), libMesh::System::n_variable_groups(), and libMesh::System::variable_group().
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privateinherited |
The variable numbers corresponding to user-specified names, useful for name-based lookups.
Definition at line 1972 of file system.h.
Referenced by libMesh::System::add_variable(), libMesh::System::add_variables(), libMesh::System::clear(), libMesh::System::get_all_variable_numbers(), libMesh::System::has_variable(), and libMesh::System::variable_number().
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privateinherited |
The Variable
in this System
.
Definition at line 1961 of file system.h.
Referenced by libMesh::System::add_variable(), libMesh::System::add_variables(), libMesh::System::clear(), libMesh::System::n_components(), libMesh::System::n_vars(), libMesh::System::variable(), libMesh::System::variable_name(), libMesh::System::variable_number(), libMesh::System::variable_scalar_number(), and libMesh::System::variable_type().
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privateinherited |
Holds non-negative if a vector by that name should be projected using adjoint constraints/BCs, -1 if primal.
Definition at line 1997 of file system.h.
Referenced by libMesh::System::add_vector(), libMesh::System::clear(), libMesh::System::remove_vector(), libMesh::System::set_vector_as_adjoint(), and libMesh::System::vector_is_adjoint().
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privateinherited |
Holds true if a vector by that name should be projected onto a changed grid, false if it should be zeroed.
Definition at line 1991 of file system.h.
Referenced by libMesh::System::add_vector(), libMesh::System::clear(), libMesh::System::remove_vector(), libMesh::System::restrict_vectors(), libMesh::System::set_vector_preservation(), and libMesh::System::vector_preservation().
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privateinherited |
Holds the type of a vector.
Definition at line 2002 of file system.h.
Referenced by libMesh::System::add_vector(), libMesh::System::clear(), libMesh::System::init_data(), libMesh::System::remove_vector(), and libMesh::System::restrict_vectors().
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privateinherited |
Some systems need an arbitrary number of vectors.
This map allows names to be associated with arbitrary vectors. All the vectors in this map will be distributed in the same way as the solution vector.
Definition at line 1985 of file system.h.
Referenced by libMesh::System::add_vector(), libMesh::System::clear(), libMesh::System::compare(), libMesh::System::get_vector(), libMesh::System::have_vector(), libMesh::System::init_data(), libMesh::System::n_vectors(), libMesh::System::read_legacy_data(), libMesh::System::read_parallel_data(), libMesh::System::read_serialized_data(), libMesh::System::remove_vector(), libMesh::System::request_vector(), libMesh::System::restrict_vectors(), libMesh::System::vectors_begin(), libMesh::System::vectors_end(), libMesh::System::write_header(), libMesh::System::write_parallel_data(), and libMesh::System::write_serialized_data().
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privateinherited |
This vector is used only when reading in a system from file.
Based on the system header, it keeps track of any index remapping between variable names in the data file and variable names in the already-constructed system. I.e. if we have a system with variables "A1", "A2", "B1", and "B2", but we read in a data file with only "A1" and "B1" defined, then we don't want to try and read in A2 or B2, and we don't want to assign A1 and B1 values to different dof indices.
Definition at line 2046 of file system.h.
Referenced by libMesh::System::read_header(), libMesh::System::read_legacy_data(), libMesh::System::read_parallel_data(), libMesh::System::read_serialized_blocked_dof_objects(), and libMesh::System::read_serialized_vector().
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privateinherited |
Has the adjoint problem already been solved? If the user sets adjoint_already_solved
to true
, we won't waste time solving it again.
Definition at line 2053 of file system.h.
Referenced by libMesh::System::is_adjoint_already_solved(), and libMesh::System::set_adjoint_already_solved().
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inherited |
Flag which tells the system to whether or not to call the user assembly function during each call to solve().
By default, every call to solve() begins with a call to the user assemble, so this flag is true. (For explicit systems, "solving" the system occurs during the assembly step, so this flag is always true for explicit systems.)
You will only want to set this to false if you need direct control over when the system is assembled, and are willing to track the state of its assembly yourself. An example of such a case is an implicit system with multiple right hand sides. In this instance, a single assembly would likely be followed with multiple calls to solve.
The frequency system and Newmark system have their own versions of this flag, called _finished_assemble, which might be able to be replaced with this more general concept.
Definition at line 1493 of file system.h.
Referenced by libMesh::ImplicitSystem::adjoint_solve(), libMesh::ImplicitSystem::disable_cache(), libMesh::System::disable_cache(), main(), libMesh::RBConstruction::RBConstruction(), libMesh::RBSCMConstruction::RBSCMConstruction(), libMesh::ImplicitSystem::sensitivity_solve(), libMesh::CondensedEigenSystem::solve(), libMesh::EigenSystem::solve(), and libMesh::LinearImplicitSystem::solve().
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inherited |
If assemble_qoi_elements
is false (it is true by default), the assembly loop for a quantity of interest or its derivatives will skip computing on mesh elements, and will only compute on mesh sides.
Definition at line 101 of file diff_qoi.h.
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inherited |
If assemble_qoi_internal_sides
is true (it is false by default), the assembly loop for a quantity of interest or its derivatives will loop over element sides which do not fall on domain boundaries.
Definition at line 93 of file diff_qoi.h.
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inherited |
If assemble_qoi_sides
is true (it is false by default), the assembly loop for a quantity of interest or its derivatives will loop over domain boundary sides.
To add domain interior sides, also set assemble_qoi_internal_sides to true.
Definition at line 85 of file diff_qoi.h.
Referenced by main().
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inherited |
compute_internal_sides
is false by default, indicating that side_* computations will only be done on boundary sides.
If compute_internal_sides is true, computations will be done on sides between elements as well.
Definition at line 154 of file diff_physics.h.
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inherited |
All the values I need to compute my contribution to the simulation at hand.
Think of this as the current solution with any ghost values needed from other processors. This vector is necessarily larger than the solution
vector in the case of a parallel simulation. The update()
member is used to synchronize the contents of the solution
and current_local_solution
vectors.
Definition at line 1551 of file system.h.
Referenced by libMesh::__libmesh_petsc_diff_solver_jacobian(), libMesh::__libmesh_petsc_diff_solver_residual(), libMesh::UniformRefinementEstimator::_estimate_error(), libMesh::NonlinearImplicitSystem::assembly(), libMesh::EquationSystems::build_parallel_elemental_solution_vector(), libMesh::EquationSystems::build_parallel_solution_vector(), libMesh::System::clear(), libMesh::Problem_Interface::computeF(), libMesh::Problem_Interface::computeJacobian(), libMesh::Problem_Interface::computePreconditioner(), libMesh::System::current_solution(), DMlibMeshFunction(), DMlibMeshJacobian(), libMesh::AdjointRefinementEstimator::estimate_error(), libMesh::ExactErrorEstimator::estimate_error(), libMesh::System::init_data(), libMesh::libmesh_petsc_snes_fd_residual(), libMesh::libmesh_petsc_snes_jacobian(), libMesh::libmesh_petsc_snes_mffd_residual(), libMesh::libmesh_petsc_snes_residual(), libMesh::libmesh_petsc_snes_residual_helper(), libMesh::System::point_gradient(), libMesh::System::point_hessian(), libMesh::System::point_value(), libMesh::FEMContext::pre_fe_reinit(), libMesh::System::re_update(), libMesh::System::reinit(), libMesh::System::restrict_vectors(), OverlappingAlgebraicGhostingTest::run_ghosting_test(), OverlappingCouplingGhostingTest::run_sparsity_pattern_test(), SolidSystem::save_initial_mesh(), libMesh::RBConstruction::set_context_solution_vec(), setup(), FETest< order, family, elem_type >::testGradU(), FETest< order, family, elem_type >::testGradUComp(), FETest< order, family, elem_type >::testU(), libMesh::BoundaryVolumeSolutionTransfer::transfer_boundary_volume(), libMesh::TransientRBConstruction::truth_assembly(), libMesh::TransientRBConstruction::truth_solve(), libMesh::System::update(), and libMesh::Nemesis_IO_Helper::write_nodal_solution().
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inherited |
For time-dependent problems, this is the amount delta t to advance the solution in time.
Definition at line 260 of file diff_system.h.
Referenced by libMesh::EulerSolver::_general_residual(), libMesh::Euler2Solver::_general_residual(), libMesh::NewmarkSolver::_general_residual(), libMesh::UnsteadySolver::adjoint_advance_timestep(), libMesh::NewmarkSolver::advance_timestep(), libMesh::UnsteadySolver::advance_timestep(), libMesh::FEMSystem::build_context(), libMesh::DifferentiableSystem::build_context(), libMesh::FEMSystem::init_context(), SolidSystem::init_data(), main(), set_system_parameters(), libMesh::TwostepTimeSolver::solve(), and libMesh::UnsteadySolver::solve().
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protectedinherited |
Pointer to object to use for quantity of interest assembly evaluations.
Defaults to this
for backwards compatibility; in the future users should create separate physics objects.
Definition at line 377 of file diff_system.h.
Referenced by libMesh::FEMSystem::assemble_qoi(), libMesh::FEMSystem::assemble_qoi_derivative(), libMesh::DifferentiableSystem::attach_qoi(), libMesh::DifferentiableSystem::clear(), libMesh::DifferentiableSystem::get_qoi(), and libMesh::DifferentiableSystem::~DifferentiableSystem().
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inherited |
A member int that can be employed to indicate increased or reduced quadrature order.
Definition at line 1524 of file system.h.
Referenced by libMesh::JumpErrorEstimator::estimate_error(), init_data(), and set_system_parameters().
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inherited |
If fe_reinit_during_postprocess is true (it is true by default), FE objects will be reinit()ed with their default quadrature rules.
If false, FE objects will need to be reinit()ed by the user or will be in an undefined state.
Definition at line 170 of file fem_system.h.
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inherited |
The system matrix.
Implicit systems are characterized by the need to solve the linear system Ax=b. This is the system matrix A.
Definition at line 393 of file implicit_system.h.
Referenced by libMesh::__libmesh_petsc_diff_solver_jacobian(), add_M_C_K_helmholtz(), libMesh::ImplicitSystem::add_system_matrix(), libMesh::ImplicitSystem::adjoint_solve(), assemble(), libMesh::ImplicitSystem::assemble(), LinearElasticity::assemble(), assemble_1D(), assemble_biharmonic(), assemble_elasticity(), assemble_ellipticdg(), assemble_helmholtz(), assemble_laplace(), assemble_matrix_and_rhs(), assemble_poisson(), assemble_shell(), assemble_stokes(), assemble_wave(), libMesh::FEMSystem::assembly(), libMesh::LinearImplicitSystem::assembly(), libMesh::NonlinearImplicitSystem::assembly(), assembly_with_dg_fem_context(), libMesh::NewmarkSystem::compute_matrix(), libMesh::RBConstruction::compute_residual_dual_norm_slow(), libMesh::ContinuationSystem::continuation_solve(), DMlibMeshJacobian(), libMesh::RBConstruction::enrich_basis_from_rhs_terms(), fill_dirichlet_bc(), libMesh::ImplicitSystem::forward_qoi_parameter_sensitivity(), libMesh::ImplicitSystem::init_matrices(), main(), libMesh::ImplicitSystem::qoi_parameter_hessian(), libMesh::ImplicitSystem::qoi_parameter_hessian_vector_product(), OverlappingCouplingGhostingTest::run_sparsity_pattern_test(), libMesh::ImplicitSystem::sensitivity_solve(), libMesh::NewtonSolver::solve(), libMesh::PetscDiffSolver::solve(), libMesh::NoxNonlinearSolver< Number >::solve(), libMesh::EigenTimeSolver::solve(), libMesh::FrequencySystem::solve(), libMesh::LinearImplicitSystem::solve(), libMesh::NonlinearImplicitSystem::solve(), libMesh::ContinuationSystem::solve_tangent(), libMesh::TransientRBConstruction::truth_assembly(), libMesh::RBConstruction::truth_assembly(), libMesh::TransientRBConstruction::truth_solve(), libMesh::RBConstruction::truth_solve(), libMesh::ImplicitSystem::weighted_sensitivity_adjoint_solve(), and libMesh::ImplicitSystem::weighted_sensitivity_solve().
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inherited |
If calculating numeric jacobians is required, the FEMSystem will perturb each solution vector entry by numerical_jacobian_h when calculating finite differences.
This defaults to the libMesh TOLERANCE but can be set manually.
For ALE terms, the FEMSystem will perturb each mesh point in an element by numerical_jacobian_h * Elem::hmin()
Definition at line 181 of file fem_system.h.
Referenced by libMesh::FEMSystem::numerical_jacobian(), libMesh::FEMSystem::numerical_jacobian_h_for_var(), and set_system_parameters().
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inherited |
If postprocess_sides
is true (it is false by default), the postprocessing loop will loop over all sides as well as all elements.
Definition at line 314 of file diff_system.h.
Referenced by main().
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inherited |
Set print_element_jacobians to true to print each J_elem contribution.
Definition at line 361 of file diff_system.h.
Referenced by init_data(), and set_system_parameters().
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inherited |
Set print_element_residuals to true to print each R_elem contribution.
Definition at line 356 of file diff_system.h.
Referenced by set_system_parameters().
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inherited |
Set print_element_solutions to true to print each U_elem input.
Definition at line 351 of file diff_system.h.
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inherited |
Set print_jacobian_norms to true to print |J| whenever it is assembled.
Definition at line 341 of file diff_system.h.
Referenced by libMesh::FEMSystem::assembly(), and set_system_parameters().
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inherited |
Set print_jacobians to true to print J whenever it is assembled.
Definition at line 346 of file diff_system.h.
Referenced by libMesh::FEMSystem::assembly(), init_data(), and set_system_parameters().
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inherited |
Set print_residual_norms to true to print |F| whenever it is assembled.
Definition at line 331 of file diff_system.h.
Referenced by libMesh::FEMSystem::assembly(), and set_system_parameters().
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inherited |
Set print_residuals to true to print F whenever it is assembled.
Definition at line 336 of file diff_system.h.
Referenced by libMesh::FEMSystem::assembly(), and set_system_parameters().
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inherited |
Set print_residual_norms to true to print |U| whenever it is used in an assembly() call.
Definition at line 320 of file diff_system.h.
Referenced by libMesh::FEMSystem::assembly(), and set_system_parameters().
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inherited |
Set print_solutions to true to print U whenever it is used in an assembly() call.
Definition at line 326 of file diff_system.h.
Referenced by libMesh::FEMSystem::assembly(), and set_system_parameters().
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inherited |
Values of the quantities of interest.
This vector needs to be both resized and filled by the user before any quantity of interest assembly is done and before any sensitivities are calculated.
Definition at line 1574 of file system.h.
Referenced by libMesh::ImplicitSystem::adjoint_qoi_parameter_sensitivity(), libMesh::ExplicitSystem::assemble_qoi(), libMesh::FEMSystem::assemble_qoi(), libMesh::DifferentiableSystem::attach_qoi(), libMesh::DiffContext::DiffContext(), libMesh::ImplicitSystem::forward_qoi_parameter_sensitivity(), libMesh::System::n_qois(), CoupledSystem::postprocess(), libMesh::ImplicitSystem::qoi_parameter_hessian(), and libMesh::ImplicitSystem::qoi_parameter_hessian_vector_product().
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inherited |
The system matrix.
Implicit systems are characterized by the need to solve the linear system Ax=b. This is the right-hand-side vector b.
Definition at line 114 of file explicit_system.h.
Referenced by libMesh::__libmesh_petsc_diff_solver_residual(), add_M_C_K_helmholtz(), libMesh::ExplicitSystem::add_system_rhs(), assemble(), libMesh::ImplicitSystem::assemble(), LinearElasticity::assemble(), assemble_1D(), assemble_biharmonic(), assemble_elasticity(), assemble_ellipticdg(), assemble_laplace(), assemble_matrix_and_rhs(), assemble_poisson(), libMesh::ImplicitSystem::assemble_residual_derivatives(), assemble_shell(), assemble_stokes(), assemble_wave(), libMesh::FEMSystem::assembly(), libMesh::LinearImplicitSystem::assembly(), libMesh::NonlinearImplicitSystem::assembly(), assembly_with_dg_fem_context(), libMesh::RBConstruction::compute_Fq_representor_innerprods(), libMesh::RBConstruction::compute_output_dual_innerprods(), libMesh::RBConstruction::compute_residual_dual_norm_slow(), libMesh::Problem_Interface::computeF(), libMesh::ContinuationSystem::continuation_solve(), DMlibMeshFunction(), libMesh::RBConstruction::enrich_basis_from_rhs_terms(), fill_dirichlet_bc(), libMesh::ImplicitSystem::forward_qoi_parameter_sensitivity(), libMesh::NewtonSolver::line_search(), HeatSystem::perturb_accumulate_residuals(), libMesh::ImplicitSystem::qoi_parameter_hessian(), libMesh::ImplicitSystem::qoi_parameter_hessian_vector_product(), libMesh::NewtonSolver::solve(), libMesh::PetscDiffSolver::solve(), libMesh::FrequencySystem::solve(), libMesh::LinearImplicitSystem::solve(), libMesh::NonlinearImplicitSystem::solve(), libMesh::ContinuationSystem::solve_tangent(), libMesh::TransientRBConstruction::truth_assembly(), libMesh::RBConstruction::truth_assembly(), libMesh::TransientRBConstruction::truth_solve(), libMesh::RBEIMConstruction::truth_solve(), libMesh::RBConstruction::truth_solve(), libMesh::TransientRBConstruction::update_residual_terms(), libMesh::RBConstruction::update_residual_terms(), libMesh::NewmarkSystem::update_rhs(), libMesh::ImplicitSystem::weighted_sensitivity_adjoint_solve(), and libMesh::ImplicitSystem::weighted_sensitivity_solve().
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protected |
Definition at line 69 of file curl_curl_system.h.
Referenced by exact_solution(), and forcing().
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inherited |
Data structure to hold solution values.
Definition at line 1539 of file system.h.
Referenced by libMesh::__libmesh_petsc_diff_solver_jacobian(), libMesh::__libmesh_petsc_diff_solver_residual(), libMesh::ExactSolution::_compute_error(), libMesh::UniformRefinementEstimator::_estimate_error(), libMesh::TransientRBConstruction::add_IC_to_RB_space(), libMesh::NewmarkSolver::advance_timestep(), libMesh::AdaptiveTimeSolver::advance_timestep(), libMesh::UnsteadySolver::advance_timestep(), libMesh::ContinuationSystem::apply_predictor(), libMesh::TransientRBConstruction::assemble_affine_expansion(), libMesh::FEMSystem::assembly(), libMesh::LinearImplicitSystem::assembly(), libMesh::EquationSystems::build_parallel_elemental_solution_vector(), libMesh::EquationSystems::build_parallel_solution_vector(), libMesh::System::clear(), libMesh::System::compare(), libMesh::RBEIMConstruction::compute_best_fit_error(), libMesh::RBConstruction::compute_Fq_representor_innerprods(), libMesh::NewmarkSolver::compute_initial_accel(), libMesh::RBConstruction::compute_output_dual_innerprods(), libMesh::RBConstruction::compute_residual_dual_norm_slow(), LinearElasticityWithContact::compute_stresses(), LinearElasticity::compute_stresses(), compute_stresses(), LargeDeformationElasticity::compute_stresses(), libMesh::Problem_Interface::computeF(), libMesh::Problem_Interface::computeJacobian(), libMesh::Problem_Interface::computePreconditioner(), libMesh::ContinuationSystem::continuation_solve(), libMesh::ExodusII_IO::copy_elemental_solution(), libMesh::ExodusII_IO::copy_nodal_solution(), libMesh::GMVIO::copy_nodal_solution(), libMesh::ExodusII_IO::copy_scalar_solution(), DMCreateGlobalVector_libMesh(), DMlibMeshFunction(), DMlibMeshJacobian(), libMesh::UnsteadySolver::du(), libMesh::RBEIMConstruction::enrich_RB_space(), libMesh::RBConstruction::enrich_RB_space(), libMesh::WeightedPatchRecoveryErrorEstimator::estimate_error(), libMesh::PatchRecoveryErrorEstimator::estimate_error(), libMesh::JumpErrorEstimator::estimate_error(), libMesh::AdjointRefinementEstimator::estimate_error(), libMesh::AdjointResidualErrorEstimator::estimate_error(), libMesh::ExactErrorEstimator::estimate_error(), libMesh::RBSCMConstruction::evaluate_stability_constant(), libMesh::CondensedEigenSystem::get_eigenpair(), libMesh::EigenSystem::get_eigenpair(), LinearElasticityWithContact::get_least_and_max_gap_function(), libMesh::System::init_data(), libMesh::RBEIMConstruction::initialize_parametrized_functions_in_training_set(), libMesh::ContinuationSystem::initialize_tangent(), libMesh::TransientRBConstruction::initialize_truth(), libMesh::libmesh_petsc_snes_jacobian(), libMesh::libmesh_petsc_snes_residual_helper(), libMesh::RBEIMConstruction::load_basis_function(), libMesh::RBConstruction::load_basis_function(), libMesh::RBEIMConstruction::load_rb_solution(), libMesh::RBConstruction::load_rb_solution(), libMesh::TransientRBConstruction::load_rb_solution(), main(), libMesh::DofMap::max_constraint_error(), libMesh::FEMSystem::mesh_position_get(), libMesh::ErrorVector::plot_error(), libMesh::RBEIMConstruction::plot_parametrized_functions_in_training_set(), libMesh::RBConstruction::print_basis_function_orthogonality(), libMesh::ImplicitSystem::qoi_parameter_hessian(), libMesh::ImplicitSystem::qoi_parameter_hessian_vector_product(), libMesh::System::re_update(), libMesh::System::read_legacy_data(), libMesh::System::read_parallel_data(), libMesh::TransientRBConstruction::read_riesz_representors_from_files(), libMesh::RBConstruction::read_riesz_representors_from_files(), libMesh::System::read_serialized_data(), libMesh::System::reinit(), libMesh::System::restrict_vectors(), libMesh::MemorySolutionHistory::retrieve(), OverlappingAlgebraicGhostingTest::run_ghosting_test(), OverlappingCouplingGhostingTest::run_sparsity_pattern_test(), libMesh::ContinuationSystem::save_current_solution(), libMesh::TransientRBConstruction::set_error_temporal_data(), setup(), libMesh::TwostepTimeSolver::solve(), libMesh::NewtonSolver::solve(), libMesh::PetscDiffSolver::solve(), libMesh::FrequencySystem::solve(), libMesh::LinearImplicitSystem::solve(), libMesh::NonlinearImplicitSystem::solve(), libMesh::RBConstruction::solve_for_matrix_and_rhs(), libMesh::ContinuationSystem::solve_tangent(), libMesh::MemorySolutionHistory::store(), MeshfunctionDFEM::test_mesh_function_dfem(), MeshfunctionDFEM::test_mesh_function_dfem_grad(), MeshFunctionTest::test_p_level(), SystemsTest::testBoundaryProjectCube(), SystemsTest::testDofCouplingWithVarGroups(), MeshInputTest::testExodusWriteElementDataFromDiscontinuousNodalData(), SystemsTest::testProjectCubeWithMeshFunction(), WriteVecAndScalar::testWrite(), libMesh::MeshFunctionSolutionTransfer::transfer(), libMesh::MeshfreeSolutionTransfer::transfer(), libMesh::DirectSolutionTransfer::transfer(), libMesh::BoundaryVolumeSolutionTransfer::transfer_boundary_volume(), libMesh::BoundaryVolumeSolutionTransfer::transfer_volume_boundary(), libMesh::TransientRBConstruction::truth_solve(), libMesh::RBEIMConstruction::truth_solve(), libMesh::RBConstruction::truth_solve(), libMesh::System::update(), libMesh::System::update_global_solution(), libMesh::TransientRBConstruction::update_RB_initial_condition_all_N(), libMesh::RBEIMConstruction::update_RB_system_matrices(), libMesh::TransientRBConstruction::update_residual_terms(), libMesh::RBConstruction::update_residual_terms(), libMesh::ContinuationSystem::update_solution(), libMesh::NewmarkSystem::update_u_v_a(), libMesh::DTKAdapter::update_variable_values(), libMesh::System::write_parallel_data(), libMesh::TransientRBConstruction::write_riesz_representors_to_files(), libMesh::RBConstruction::write_riesz_representors_to_files(), and libMesh::System::write_serialized_data().
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inherited |
For time-dependent problems, this is the time t at the beginning of the current timestep.
Definition at line 1561 of file system.h.
Referenced by libMesh::UnsteadySolver::adjoint_advance_timestep(), libMesh::AdaptiveTimeSolver::advance_timestep(), libMesh::UnsteadySolver::advance_timestep(), fill_dirichlet_bc(), libMesh::ExactErrorEstimator::find_squared_element_error(), libMesh::MemorySolutionHistory::find_stored_entry(), initialize(), main(), libMesh::WeightedPatchRecoveryErrorEstimator::EstimateError::operator()(), libMesh::System::reinit_constraints(), libMesh::MemorySolutionHistory::retrieve(), libMesh::TwostepTimeSolver::solve(), and libMesh::MemorySolutionHistory::store().
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inherited |
A pointer to the solver object we're going to use.
This must be instantiated by the user before solving!
Definition at line 233 of file diff_system.h.
Referenced by libMesh::FEMSystem::assembly(), libMesh::ContinuationSystem::continuation_solve(), libMesh::DifferentiableSystem::get_linear_solve_parameters(), libMesh::DifferentiableSystem::get_linear_solver(), libMesh::DifferentiableSystem::get_second_order_dot_var(), libMesh::DifferentiableSystem::get_time_solver(), SolidSystem::init_data(), libMesh::DifferentiableSystem::init_data(), main(), libMesh::DifferentiableSystem::reinit(), set_system_parameters(), libMesh::DifferentiableSystem::set_time_solver(), SolidSystem::SolidSystem(), libMesh::DifferentiableSystem::solve(), and libMesh::ContinuationSystem::solve_tangent().
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protected |
Definition at line 59 of file curl_curl_system.h.
Referenced by element_time_derivative(), init_context(), init_data(), init_dirichlet_bcs(), and side_time_derivative().
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inherited |
A boolean to be set to true by systems using elem_fixed_solution, for optional use by e.g.
stabilized methods. False by default.
Definition at line 1509 of file system.h.
Referenced by libMesh::EulerSolver::_general_residual(), libMesh::Euler2Solver::_general_residual(), libMesh::SteadySolver::_general_residual(), libMesh::NewmarkSolver::_general_residual(), libMesh::DifferentiableSystem::clear(), libMesh::DiffContext::DiffContext(), and libMesh::FEMContext::pre_fe_reinit().
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inherited |
If verify_analytic_jacobian is equal to zero (as it is by default), no numeric jacobians will be calculated unless an overridden element_time_derivative(), element_constraint(), side_time_derivative(), or side_constraint() function cannot provide an analytic jacobian upon request.
If verify_analytic_jacobian is equal to the positive value tol, then any time a full analytic element jacobian can be calculated it will be tested against a numerical jacobian on the same element, and the program will abort if the relative error (in matrix l1 norms) exceeds tol.
Definition at line 209 of file fem_system.h.
Referenced by libMesh::FEMSystem::assembly(), init_data(), and set_system_parameters().
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By default, the system will zero out the matrix and the right hand side.
If this flag is false, it is the responsibility of the client code to take care of setting these to zero before assembly begins
Definition at line 400 of file implicit_system.h.
Referenced by libMesh::ImplicitSystem::assemble().