\section{eo\-External\-Eval\-Func$<$ F, External, External\-EO $>$ Class Template Reference} \label{classeo_external_eval_func}\index{eoExternalEvalFunc@{eoExternalEvalFunc}} Evaluation of external struct, ctor expects a function of the following signature:. {\tt \#include $<$eo\-External\-Op\-Functions.h$>$} Inheritance diagram for eo\-External\-Eval\-Func$<$ F, External, External\-EO $>$::\begin{figure}[H] \begin{center} \leavevmode \includegraphics[height=3.80952cm]{classeo_external_eval_func} \end{center} \end{figure} \subsection*{Public Member Functions} \begin{CompactItemize} \item {\bf eo\-External\-Eval\-Func} (F($\ast$\_\-eval)(const External \&))\label{classeo_external_eval_func_a0} \item void {\bf operator()} (External\-EO \&eo)\label{classeo_external_eval_func_a1} \begin{CompactList}\small\item\em The pure virtual function that needs to be implemented by the subclass. \item\end{CompactList}\end{CompactItemize} \subsection*{Private Attributes} \begin{CompactItemize} \item F($\ast$ {\bf eval} )(const External \&)\label{classeo_external_eval_func_r0} \end{CompactItemize} \subsection{Detailed Description} \subsubsection*{template$<$class F, class External, class External\-EO = eo\-External\-EO$<$F, External$>$$>$ class eo\-External\-Eval\-Func$<$ F, External, External\-EO $>$} Evaluation of external struct, ctor expects a function of the following signature:. Fit func(External\&); Where External is the user defined struct or class and Fit the fitness type Definition at line 73 of file eo\-External\-Op\-Functions.h. The documentation for this class was generated from the following file:\begin{CompactItemize} \item eo\-External\-Op\-Functions.h\end{CompactItemize}