Bonmin  1.7
MyTMINLP Member List
This is the complete list of members for MyTMINLP, including all inherited members.
BINARY enum valueBonmin::TMINLP
branchingInfo() const MyTMINLP [inline, virtual]
CONTINUOUS enum valueBonmin::TMINLP
CONTINUOUS_UNBOUNDED enum valueBonmin::TMINLP
Convex enum valueBonmin::TMINLP
Convexity enum nameBonmin::TMINLP
eval_f(Index n, const Number *x, bool new_x, Number &obj_value)MyTMINLP [virtual]
Bonmin::TMINLP::eval_f(Ipopt::Index n, const Ipopt::Number *x, bool new_x, Ipopt::Number &obj_value)=0Bonmin::TMINLP [pure virtual]
eval_g(Index n, const Number *x, bool new_x, Index m, Number *g)MyTMINLP [virtual]
Bonmin::TMINLP::eval_g(Ipopt::Index n, const Ipopt::Number *x, bool new_x, Ipopt::Index m, Ipopt::Number *g)=0Bonmin::TMINLP [pure virtual]
eval_gi(Ipopt::Index n, const Ipopt::Number *x, bool new_x, Ipopt::Index i, Ipopt::Number &gi)Bonmin::TMINLP [inline, virtual]
eval_grad_f(Index n, const Number *x, bool new_x, Number *grad_f)MyTMINLP [virtual]
Bonmin::TMINLP::eval_grad_f(Ipopt::Index n, const Ipopt::Number *x, bool new_x, Ipopt::Number *grad_f)=0Bonmin::TMINLP [pure virtual]
eval_grad_gi(Ipopt::Index n, const Ipopt::Number *x, bool new_x, Ipopt::Index i, Ipopt::Index &nele_grad_gi, Ipopt::Index *jCol, Ipopt::Number *values)Bonmin::TMINLP [inline, virtual]
eval_h(Index n, const Number *x, bool new_x, Number obj_factor, Index m, const Number *lambda, bool new_lambda, Index nele_hess, Index *iRow, Index *jCol, Number *values)MyTMINLP [virtual]
Bonmin::TMINLP::eval_h(Ipopt::Index n, const Ipopt::Number *x, bool new_x, Ipopt::Number obj_factor, Ipopt::Index m, const Ipopt::Number *lambda, bool new_lambda, Ipopt::Index nele_hess, Ipopt::Index *iRow, Ipopt::Index *jCol, Ipopt::Number *values)=0Bonmin::TMINLP [pure virtual]
eval_jac_g(Index n, const Number *x, bool new_x, Index m, Index nele_jac, Index *iRow, Index *jCol, Number *values)MyTMINLP [virtual]
Bonmin::TMINLP::eval_jac_g(Ipopt::Index n, const Ipopt::Number *x, bool new_x, Ipopt::Index m, Ipopt::Index nele_jac, Ipopt::Index *iRow, Ipopt::Index *jCol, Ipopt::Number *values)=0Bonmin::TMINLP [pure virtual]
eval_upper_bound_f(Ipopt::Index n, const Ipopt::Number *x, Ipopt::Number &obj_value)Bonmin::TMINLP [inline, virtual]
finalize_solution(TMINLP::SolverReturn status, Index n, const Number *x, Number obj_value)MyTMINLP [virtual]
Bonmin::TMINLP::finalize_solution(TMINLP::SolverReturn status, Ipopt::Index n, const Ipopt::Number *x, Ipopt::Number obj_value)=0Bonmin::TMINLP [pure virtual]
get_bounds_info(Index n, Number *x_l, Number *x_u, Index m, Number *g_l, Number *g_u)MyTMINLP [virtual]
Bonmin::TMINLP::get_bounds_info(Ipopt::Index n, Ipopt::Number *x_l, Ipopt::Number *x_u, Ipopt::Index m, Ipopt::Number *g_l, Ipopt::Number *g_u)=0Bonmin::TMINLP [pure virtual]
get_const_xtra_id() const Bonmin::TMINLP [inline, virtual]
get_constraint_convexities(int m, TMINLP::Convexity *constraints_convexities) const Bonmin::TMINLP [inline, virtual]
get_constraint_convexities(int number_non_conv, MarkedNonConvex *non_convs) const Bonmin::TMINLP [inline, virtual]
get_constraints_linearity(Index m, Ipopt::TNLP::LinearityType *const_types)MyTMINLP [virtual]
Bonmin::TMINLP::get_constraints_linearity(Ipopt::Index m, Ipopt::TNLP::LinearityType *const_types)=0Bonmin::TMINLP [pure virtual]
get_nlp_info(Index &n, Index &m, Index &nnz_jac_g, Index &nnz_h_lag, TNLP::IndexStyleEnum &index_style)MyTMINLP [virtual]
Bonmin::TMINLP::get_nlp_info(Ipopt::Index &n, Ipopt::Index &m, Ipopt::Index &nnz_jac_g, Ipopt::Index &nnz_h_lag, Ipopt::TNLP::IndexStyleEnum &index_style)=0Bonmin::TMINLP [pure virtual]
get_number_nonconvex(int &number_non_conv, int &number_concave) const Bonmin::TMINLP [inline, virtual]
get_scaling_parameters(Ipopt::Number &obj_scaling, bool &use_x_scaling, Ipopt::Index n, Ipopt::Number *x_scaling, bool &use_g_scaling, Ipopt::Index m, Ipopt::Number *g_scaling)Bonmin::TMINLP [inline, virtual]
get_simple_concave_constraints(int number_concave, SimpleConcaveConstraint *simple_concave) const Bonmin::TMINLP [inline, virtual]
get_starting_point(Index n, bool init_x, Number *x, bool init_z, Number *z_L, Number *z_U, Index m, bool init_lambda, Number *lambda)MyTMINLP [virtual]
Bonmin::TMINLP::get_starting_point(Ipopt::Index n, bool init_x, Ipopt::Number *x, bool init_z, Ipopt::Number *z_L, Ipopt::Number *z_U, Ipopt::Index m, bool init_lambda, Ipopt::Number *lambda)=0Bonmin::TMINLP [pure virtual]
get_variables_linearity(Index n, Ipopt::TNLP::LinearityType *var_types)MyTMINLP [virtual]
Bonmin::TMINLP::get_variables_linearity(Ipopt::Index n, Ipopt::TNLP::LinearityType *var_types)=0Bonmin::TMINLP [pure virtual]
get_variables_types(Index n, VariableType *var_types)MyTMINLP [virtual]
Bonmin::TMINLP::get_variables_types(Ipopt::Index n, VariableType *var_types)=0Bonmin::TMINLP [pure virtual]
hasGeneralInteger()Bonmin::TMINLP
hasLinearObjective()Bonmin::TMINLP [inline, virtual]
hasUpperBoundingObjective()Bonmin::TMINLP [inline, virtual]
INFEASIBLE enum valueBonmin::TMINLP
INTEGER enum valueBonmin::TMINLP
LIMIT_EXCEEDED enum valueBonmin::TMINLP
MINLP_ERROR enum valueBonmin::TMINLP
MyTMINLP()MyTMINLP [inline]
MyTMINLP(const MyTMINLP &other)MyTMINLP [inline]
NonConvex enum valueBonmin::TMINLP
operator=(const TMINLP &)Bonmin::TMINLP [protected]
perturbInfo() const Bonmin::TMINLP [inline, virtual]
printSol_MyTMINLP [private]
printSolutionAtEndOfAlgorithm()MyTMINLP [inline]
SimpleConcave enum valueBonmin::TMINLP
SolverReturn enum nameBonmin::TMINLP
sosConstraints() const MyTMINLP [inline, virtual]
SUCCESS enum valueBonmin::TMINLP
TMINLP()Bonmin::TMINLP
TMINLP(const TMINLP &)Bonmin::TMINLP [protected]
TMINLP2TNLP classBonmin::TMINLP [friend]
USER_INTERRUPT enum valueBonmin::TMINLP
VariableType enum nameBonmin::TMINLP
~MyTMINLP()MyTMINLP [inline, virtual]
~TMINLP()Bonmin::TMINLP [virtual]