178 std::cout << std::endl <<
"Duality Gap: " << resids->
GetDualityGap() << std::endl;
180 std::cout <<
" alpha = " << alpha << std::endl;
182 std::cout <<
" *** Iteration " << i <<
" *** " << std::endl;
183 std::cout <<
" mu = " << mu <<
" relative residual norm = "
189 switch (status_code) {
191 std::cout << std::endl <<
" *** SUCCESSFUL TERMINATION ***" << std::endl;
194 std::cout << std::endl <<
" *** MAXIMUM ITERATIONS REACHED *** " << std::endl;
197 std::cout << std::endl <<
" *** TERMINATION: PROBABLY INFEASIBLE *** " << std::endl;
200 std::cout << std::endl <<
" *** TERMINATION: STATUS UNKNOWN *** " << std::endl;
223 if (
this != &source) {
int Int_t
Signed integer 4 bytes (int).
double Double_t
Double 8 bytes.
@ kSUCCESSFUL_TERMINATION
void DefMonitor(TQpDataBase *data, TQpVar *vars, TQpResidual *resids, Double_t alpha, Double_t sigma, Int_t i, Double_t mu, Int_t status_code, Int_t level) override
Print information about the optimization process and monitor the convergence status of thye algorithm...
TMehrotraSolver()
Default constructor.
TMehrotraSolver & operator=(const TMehrotraSolver &source)
Assignment operator.
~TMehrotraSolver() override
Deconstructor.
Int_t Solve(TQpDataBase *prob, TQpVar *iterate, TQpResidual *resid) override
Solve the quadratic programming problem as formulated through prob, store the final solution in itera...
Data for the general QP formulation.
virtual Double_t DataNorm()=0
default general problem formulation:
The Residuals class calculates and stores the quantities that appear on the right-hand side of the li...
Double_t GetResidualNorm()
void Set_r3_xz_alpha(TQpVar *vars, Double_t alpha)
Set the "complementarity" component of the residuals to the pairwise products of the complementary va...
void CalcResids(TQpDataBase *problem, TQpVar *vars)
Calculate residuals, their norms, and duality complementarity gap, given a problem and variable set.
void Add_r3_xz_alpha(TQpVar *vars, Double_t alpha)
Modify the "complementarity" component of the residuals, by adding the pairwise products of the compl...
virtual void Start(TQpProbBase *formulation, TQpVar *iterate, TQpDataBase *prob, TQpResidual *resid, TQpVar *step)
Implements a default starting-point heuristic.
virtual void DoMonitor(TQpDataBase *data, TQpVar *vars, TQpResidual *resids, Double_t alpha, Double_t sigma, Int_t i, Double_t mu, Int_t stop_code, Int_t level)
Monitor progress / convergence aat each interior-point iteration.
TQpSolverBase()
Default constructor.
virtual Int_t DoStatus(TQpDataBase *data, TQpVar *vars, TQpResidual *resids, Int_t i, Double_t mu, Int_t level)
Tests for termination.
virtual Double_t FinalStepLength(TQpVar *iterate, TQpVar *step)
Implements a version of Mehrotra starting point heuristic, modified to ensure identical steps in the ...
TQpSolverBase & operator=(const TQpSolverBase &source)
Assignment operator.
Class containing the variables for the general QP formulation.
int iterate(rng_state_t *X)
LongDouble_t Power(LongDouble_t x, LongDouble_t y)
Returns x raised to the power y.