function [fval,info,exit_flag,DLIK,Hess,SteadyState,trend_coeff] = TaRB_optimizer_wrapper(optpar,par_vector,parameterindices,TargetFun,varargin) % function [fval,info,exit_flag,DLIK,Hess,SteadyState,trend_coeff] = TaRB_optimizer_wrapper(optpar,par_vector,parameterindices,TargetFun,varargin) % Wrapper function for target function used in TaRB algorithm; reassembles % full parameter vector before calling target function % % INPUTS % o optpar [double] (p_opt*1) vector of subset of parameters to be considered % o par_vector [double] (p*1) full vector of parameters % o parameterindices [double] (p_opt*1) index of optpar entries in % par_vector % o TargetFun [char] string specifying the name of the objective % function (posterior kernel). % o varargin [structure] other inputs of target function % % OUTPUTS % o fval [scalar] value of (minus) the likelihood. % o info [double] (p*2) error code vector % o exit_flag [scalar] equal to zero if the routine return with a penalty (one otherwise). % o DLIK [double] (p*1) score vector of the likelihood. % o Hess [double] (p*p) asymptotic Hessian matrix. % o SteadyState [double] Vector of doubles, steady state level for the endogenous variables. % o trend_coeff [double] Matrix of doubles, coefficients of the deterministic trend in the measurement equation % % Copyright © 2015-2017 Dynare Team % % This file is part of Dynare. % % Dynare is free software: you can redistribute it and/or modify % it under the terms of the GNU General Public License as published by % the Free Software Foundation, either version 3 of the License, or % (at your option) any later version. % % Dynare is distributed in the hope that it will be useful, % but WITHOUT ANY WARRANTY; without even the implied warranty of % MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the % GNU General Public License for more details. % % You should have received a copy of the GNU General Public License % along with Dynare. If not, see . par_vector(parameterindices,:)=optpar; %reassemble parameter [fval,info,exit_flag,DLIK,Hess,SteadyState,trend_coeff] = feval(TargetFun,par_vector,varargin{:}); %call target function