#ifndef NGAUSS_MODEL_H_ #define NGAUSS_MODEL_H_ #define OPT_HEADER #include #include #include namespace opt_utilities { template class normed_gauss1d :public model,optvec,optvec,std::string> { private: normed_gauss1d* do_clone()const { return new normed_gauss1d(*this); } const char* do_get_type_name()const { return "1d normed gaussian"; } public: normed_gauss1d() { this->push_param_info(param_info >("x0",0)); this->push_param_info(param_info >("sigma",1)); } public: optvec do_eval(const optvec& x,const optvec& param) { const double pi=3.14159265358979323846; T x0=get_element(param,0); T sigma=get_element(param,1); if(sigma*sigma::epsilon()) { sigma=std::numeric_limits::epsilon(); } T N=1/sqrt(sigma*sigma*pi*2); optvec y=(x-x0)/sigma; return N*exp(-y*y/2.); } private: std::string do_get_information()const { return ""; } }; } #endif //EOF