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polyfem::solver::MinTargetDistForm Class Reference

#include <TargetForms.hpp>

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Public Member Functions

 MinTargetDistForm (const VariableToSimulationGroup &variable_to_simulations, const std::vector< int > &steps, const Eigen::VectorXd &target, const json &args, const std::shared_ptr< State > &state)
 
virtual ~MinTargetDistForm ()=default
 
Eigen::MatrixXd compute_adjoint_rhs (const Eigen::VectorXd &x, const State &state) const override
 
void compute_partial_gradient (const Eigen::VectorXd &x, Eigen::VectorXd &gradv) const override
 
- Public Member Functions inherited from polyfem::solver::AdjointForm
 AdjointForm (const VariableToSimulationGroup &variable_to_simulations)
 
virtual ~AdjointForm ()
 
virtual std::string name () const override
 
void enable_energy_print (const std::string &print_energy_keyword)
 
double value (const Eigen::VectorXd &x) const override
 Compute the value of the form multiplied with the weigth.
 
virtual void solution_changed (const Eigen::VectorXd &new_x) override
 Update cached fields upon a change in the solution.
 
const VariableToSimulationGroupget_variable_to_simulations () const
 
virtual Eigen::MatrixXd compute_reduced_adjoint_rhs (const Eigen::VectorXd &x, const State &state) const
 
virtual void first_derivative (const Eigen::VectorXd &x, Eigen::VectorXd &gradv) const final override
 Compute the first derivative of the value wrt x multiplied with the weigth.
 
virtual void update_quantities (const double t, const Eigen::VectorXd &x) final override
 Update time-dependent fields.
 
virtual void init_lagging (const Eigen::VectorXd &x) final override
 Initialize lagged fields TODO: more than one step.
 
virtual void update_lagging (const Eigen::VectorXd &x, const int iter_num) final override
 Update lagged fields.
 
virtual void set_apply_DBC (const Eigen::VectorXd &x, bool apply_DBC) final override
 Set if the Dirichlet boundary conditions should be enforced.
 
- Public Member Functions inherited from polyfem::solver::Form
virtual ~Form ()
 
virtual void init (const Eigen::VectorXd &x)
 Initialize the form.
 
Eigen::VectorXd value_per_element (const Eigen::VectorXd &x) const
 Compute the value of the form multiplied with the weigth.
 
void second_derivative (const Eigen::VectorXd &x, StiffnessMatrix &hessian) const
 Compute the second derivative of the value wrt x multiplied with the weigth.
 
virtual bool is_step_valid (const Eigen::VectorXd &x0, const Eigen::VectorXd &x1) const
 Determine if a step from solution x0 to solution x1 is allowed.
 
virtual double max_step_size (const Eigen::VectorXd &x0, const Eigen::VectorXd &x1) const
 Determine the maximum step size allowable between the current and next solution.
 
virtual void line_search_begin (const Eigen::VectorXd &x0, const Eigen::VectorXd &x1)
 Initialize variables used during the line search.
 
virtual void line_search_end ()
 Clear variables used during the line search.
 
virtual void post_step (const polysolve::nonlinear::PostStepData &data)
 Update fields after a step in the optimization.
 
virtual int max_lagging_iterations () const
 Get the maximum number of lagging iteration allowable.
 
virtual bool uses_lagging () const
 Does this form require lagging?
 
void set_project_to_psd (bool val)
 Set project to psd.
 
bool is_project_to_psd () const
 Get if the form's second derivative is projected to psd.
 
void enable ()
 Enable the form.
 
void disable ()
 Disable the form.
 
void set_enabled (const bool enabled)
 Set if the form is enabled.
 
bool enabled () const
 Determine if the form is enabled.
 
virtual double weight () const
 Get the form's multiplicative constant weight.
 
void set_weight (const double weight)
 Set the form's multiplicative constant weight.
 
virtual bool is_step_collision_free (const Eigen::VectorXd &x0, const Eigen::VectorXd &x1) const
 Checks if the step is collision free.
 
void set_output_dir (const std::string &output_dir)
 

Protected Member Functions

double value_unweighted (const Eigen::VectorXd &x) const override
 Compute the value of the form.
 
- Protected Member Functions inherited from polyfem::solver::AdjointForm
virtual void first_derivative_unweighted (const Eigen::VectorXd &x, Eigen::VectorXd &gradv) const final override
 Compute the first derivative of the value wrt x.
 
virtual void second_derivative_unweighted (const Eigen::VectorXd &x, StiffnessMatrix &hessian) const final override
 Compute the second derivative of the value wrt x.
 
- Protected Member Functions inherited from polyfem::solver::Form
std::string resolve_output_path (const std::string &path) const
 
virtual Eigen::VectorXd value_per_element_unweighted (const Eigen::VectorXd &x) const
 Compute the value of the form multiplied per element.
 

Private Member Functions

double eval2 (Eigen::VectorXd &x) const
 
Eigen::VectorXd eval2_grad (Eigen::VectorXd &x) const
 

Static Private Member Functions

static double eval1 (Eigen::VectorXd &x)
 
static Eigen::VectorXd eval1_grad (Eigen::VectorXd &x)
 

Private Attributes

const std::vector< int > steps_
 
const Eigen::VectorXd target_
 
int dim
 
std::vector< std::unique_ptr< StaticForm > > objs
 

Additional Inherited Members

- Protected Types inherited from polyfem::solver::AdjointForm
enum class  PrintStage { Inactive , AlreadyPrinted , ToPrint }
 
- Protected Attributes inherited from polyfem::solver::AdjointForm
const VariableToSimulationGroup variable_to_simulations_
 
PrintStage print_energy_ = PrintStage::Inactive
 
std::string print_energy_keyword_
 
- Protected Attributes inherited from polyfem::solver::Form
bool project_to_psd_ = false
 If true, the form's second derivative is projected to be positive semidefinite.
 
double weight_ = 1
 weight of the form (e.g., AL penalty weight or Δt²)
 
bool enabled_ = true
 If true, the form is enabled.
 
std::string output_dir_
 

Detailed Description

Definition at line 141 of file TargetForms.hpp.

Constructor & Destructor Documentation

◆ MinTargetDistForm()

polyfem::solver::MinTargetDistForm::MinTargetDistForm ( const VariableToSimulationGroup variable_to_simulations,
const std::vector< int > &  steps,
const Eigen::VectorXd &  target,
const json args,
const std::shared_ptr< State > &  state 
)

Definition at line 605 of file TargetForms.cpp.

References dim, and objs.

◆ ~MinTargetDistForm()

virtual polyfem::solver::MinTargetDistForm::~MinTargetDistForm ( )
virtualdefault

Member Function Documentation

◆ compute_adjoint_rhs()

Eigen::MatrixXd polyfem::solver::MinTargetDistForm::compute_adjoint_rhs ( const Eigen::VectorXd &  x,
const State state 
) const
overridevirtual

Reimplemented from polyfem::solver::AdjointForm.

Definition at line 617 of file TargetForms.cpp.

References polyfem::State::diff_cached, eval1_grad(), eval2(), eval2_grad(), polyfem::State::ndof(), objs, polyfem::solver::DiffCache::size(), steps_, polyfem::solver::Form::weight(), and x.

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◆ compute_partial_gradient()

void polyfem::solver::MinTargetDistForm::compute_partial_gradient ( const Eigen::VectorXd &  x,
Eigen::VectorXd &  gradv 
) const
overridevirtual

Reimplemented from polyfem::solver::AdjointForm.

Definition at line 647 of file TargetForms.cpp.

References eval1_grad(), eval2(), eval2_grad(), objs, steps_, polyfem::solver::Form::weight(), and x.

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◆ eval1()

static double polyfem::solver::MinTargetDistForm::eval1 ( Eigen::VectorXd &  x)
inlinestaticprivate

Definition at line 154 of file TargetForms.hpp.

References x.

Referenced by eval1_grad(), and value_unweighted().

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◆ eval1_grad()

static Eigen::VectorXd polyfem::solver::MinTargetDistForm::eval1_grad ( Eigen::VectorXd &  x)
inlinestaticprivate

Definition at line 158 of file TargetForms.hpp.

References eval1(), and x.

Referenced by compute_adjoint_rhs(), and compute_partial_gradient().

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◆ eval2()

double polyfem::solver::MinTargetDistForm::eval2 ( Eigen::VectorXd &  x) const
inlineprivate

Definition at line 163 of file TargetForms.hpp.

References dim, target_, and x.

Referenced by compute_adjoint_rhs(), compute_partial_gradient(), and value_unweighted().

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◆ eval2_grad()

Eigen::VectorXd polyfem::solver::MinTargetDistForm::eval2_grad ( Eigen::VectorXd &  x) const
inlineprivate

Definition at line 171 of file TargetForms.hpp.

References dim, target_, and x.

Referenced by compute_adjoint_rhs(), and compute_partial_gradient().

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◆ value_unweighted()

double polyfem::solver::MinTargetDistForm::value_unweighted ( const Eigen::VectorXd &  x) const
overrideprotectedvirtual

Compute the value of the form.

Parameters
xCurrent solution
Returns
Computed value

Implements polyfem::solver::Form.

Definition at line 677 of file TargetForms.cpp.

References eval1(), eval2(), objs, steps_, and x.

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Member Data Documentation

◆ dim

int polyfem::solver::MinTargetDistForm::dim
private

Definition at line 186 of file TargetForms.hpp.

Referenced by eval2(), eval2_grad(), and MinTargetDistForm().

◆ objs

std::vector<std::unique_ptr<StaticForm> > polyfem::solver::MinTargetDistForm::objs
private

◆ steps_

const std::vector<int> polyfem::solver::MinTargetDistForm::steps_
private

◆ target_

const Eigen::VectorXd polyfem::solver::MinTargetDistForm::target_
private

Definition at line 184 of file TargetForms.hpp.

Referenced by eval2(), and eval2_grad().


The documentation for this class was generated from the following files: