MittelmannDistCntrlNeumB1 Member List

This is the complete list of members for MittelmannDistCntrlNeumB1, including all inherited members.
AddRef(const Referencer *referencer) const Ipopt::ReferencedObject [inline]
alpha_MittelmannDistCntrlNeumB1 [private]
C_STYLE enum valueIpopt::TNLP
d_cont(Number x1, Number x2, Number y, Number u) const MittelmannDistCntrlNeumB1 [inline, protected, virtual]
d_cont_du(Number x1, Number x2, Number y, Number u) const MittelmannDistCntrlNeumB1 [inline, protected, virtual]
d_cont_dudu(Number x1, Number x2, Number y, Number u) const MittelmannDistCntrlNeumB1 [inline, protected, virtual]
d_cont_dudu_alwayszero() const MittelmannDistCntrlNeumB1 [inline, protected, virtual]
d_cont_dy(Number x1, Number x2, Number y, Number u) const MittelmannDistCntrlNeumB1 [inline, protected, virtual]
d_cont_dydu(Number x1, Number x2, Number y, Number u) const MittelmannDistCntrlNeumB1 [inline, protected, virtual]
d_cont_dydu_alwayszero() const MittelmannDistCntrlNeumB1 [inline, protected, virtual]
d_cont_dydy(Number x1, Number x2, Number y, Number u) const MittelmannDistCntrlNeumB1 [inline, protected, virtual]
d_cont_dydy_alwayszero() const MittelmannDistCntrlNeumB1 [inline, protected, virtual]
DECLARE_STD_EXCEPTION(INVALID_TNLP)Ipopt::TNLP
eval_f(Index n, const Number *x, bool new_x, Number &obj_value)MittelmannDistCntrlNeumBBase [virtual]
eval_g(Index n, const Number *x, bool new_x, Index m, Number *g)MittelmannDistCntrlNeumBBase [virtual]
eval_grad_f(Index n, const Number *x, bool new_x, Number *grad_f)MittelmannDistCntrlNeumBBase [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)MittelmannDistCntrlNeumBBase [virtual]
eval_jac_g(Index n, const Number *x, bool new_x, Index m, Index nele_jac, Index *iRow, Index *jCol, Number *values)MittelmannDistCntrlNeumBBase [virtual]
finalize_solution(SolverReturn status, Index n, const Number *x, const Number *z_L, const Number *z_U, Index m, const Number *g, const Number *lambda, Number obj_value, const IpoptData *ip_data, IpoptCalculatedQuantities *ip_cq)MittelmannDistCntrlNeumBBase [virtual]
fint_cont(Number x1, Number x2, Number y, Number u) const MittelmannDistCntrlNeumB1 [inline, protected, virtual]
fint_cont_du(Number x1, Number x2, Number y, Number u) const MittelmannDistCntrlNeumB1 [inline, protected, virtual]
fint_cont_dudu(Number x1, Number x2, Number y, Number u) const MittelmannDistCntrlNeumB1 [inline, protected, virtual]
fint_cont_dudu_alwayszero() const MittelmannDistCntrlNeumB1 [inline, protected, virtual]
fint_cont_dy(Number x1, Number x2, Number y, Number u) const MittelmannDistCntrlNeumB1 [inline, protected, virtual]
fint_cont_dydu(Number x1, Number x2, Number y, Number u) const MittelmannDistCntrlNeumB1 [inline, protected, virtual]
fint_cont_dydu_alwayszero() const MittelmannDistCntrlNeumB1 [inline, protected, virtual]
fint_cont_dydy(Number x1, Number x2, Number y, Number u) const MittelmannDistCntrlNeumB1 [inline, protected, virtual]
fint_cont_dydy_alwayszero() const MittelmannDistCntrlNeumB1 [inline, protected, virtual]
FORTRAN_STYLE enum valueIpopt::TNLP
get_bounds_info(Index n, Number *x_l, Number *x_u, Index m, Number *g_l, Number *g_u)MittelmannDistCntrlNeumBBase [virtual]
get_constraints_linearity(Index m, LinearityType *const_types)Ipopt::TNLP [inline, virtual]
get_list_of_nonlinear_variables(Index num_nonlin_vars, Index *pos_nonlin_vars)Ipopt::TNLP [inline, virtual]
get_nlp_info(Index &n, Index &m, Index &nnz_jac_g, Index &nnz_h_lag, IndexStyleEnum &index_style)MittelmannDistCntrlNeumBBase [virtual]
get_number_of_nonlinear_variables()Ipopt::TNLP [inline, virtual]
get_scaling_parameters(Number &obj_scaling, bool &use_x_scaling, Index n, Number *x_scaling, bool &use_g_scaling, Index m, Number *g_scaling)MittelmannDistCntrlNeumBBase [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)MittelmannDistCntrlNeumBBase [virtual]
get_variables_linearity(Index n, LinearityType *var_types)Ipopt::TNLP [inline, virtual]
get_warm_start_iterate(IteratesVector &warm_start_iterate)Ipopt::TNLP [inline, virtual]
IndexStyleEnum enum nameIpopt::TNLP
InitializeProblem(Index N)MittelmannDistCntrlNeumB1 [inline, virtual]
intermediate_callback(AlgorithmMode mode, Index iter, Number obj_value, Number inf_pr, Number inf_du, Number mu, Number d_norm, Number regularization_size, Number alpha_du, Number alpha_pr, Index ls_trials, const IpoptData *ip_data, IpoptCalculatedQuantities *ip_cq)Ipopt::TNLP [inline, virtual]
LINEAR enum valueIpopt::TNLP
LinearityType enum nameIpopt::TNLP
MittelmannDistCntrlNeumB1()MittelmannDistCntrlNeumB1 [inline]
MittelmannDistCntrlNeumB1(const MittelmannDistCntrlNeumB1 &)MittelmannDistCntrlNeumB1 [private]
MittelmannDistCntrlNeumBBase()MittelmannDistCntrlNeumBBase
NON_LINEAR enum valueIpopt::TNLP
operator=(const MittelmannDistCntrlNeumB1 &)MittelmannDistCntrlNeumB1 [private]
pi_MittelmannDistCntrlNeumB1 [private]
ReferenceCount() const Ipopt::ReferencedObject [inline]
ReferencedObject()Ipopt::ReferencedObject [inline]
ReleaseRef(const Referencer *referencer) const Ipopt::ReferencedObject [inline]
set_variable_values(Index n, const Number *x, bool new_x, Index m, const Number *lambda, bool new_lambda)Ipopt::TNLP [inline, virtual]
SetBaseParameters(Index N, Number lb_y, Number ub_y, Number lb_u, Number ub_u, Number b_0j, Number b_1j, Number b_i0, Number b_i1, Number u_init)MittelmannDistCntrlNeumBBase [protected]
TNLP()Ipopt::TNLP [inline]
y_d_cont(Number x1, Number x2) const MittelmannDistCntrlNeumB1 [inline, protected, virtual]
~MittelmannDistCntrlNeumB1()MittelmannDistCntrlNeumB1 [inline, virtual]
~MittelmannDistCntrlNeumBBase()MittelmannDistCntrlNeumBBase [virtual]
~ReferencedObject()Ipopt::ReferencedObject [inline, virtual]
~TNLP()Ipopt::TNLP [inline, virtual]

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