\begin{figure}[H] % Define the layers to draw the diagram \pgfdeclarelayer{tomgombackground} \pgfdeclarelayer{tombackground} \pgfsetlayers{tomgombackground,tombackground,main} % Define a new shape: page with a folded corner \makeatletter \pgfdeclareshape{flippedpage}{ \inheritsavedanchors[from=rectangle] % this is nearly a rectangle \inheritanchorborder[from=rectangle] \inheritanchor[from=rectangle]{center} \inheritanchor[from=rectangle]{north} \inheritanchor[from=rectangle]{south} \inheritanchor[from=rectangle]{west} \inheritanchor[from=rectangle]{east} % ... and possibly more \backgroundpath{% this is new % store lower left in xa/ya and upper right in xb/yb \southwest \pgf@xa=\pgf@x \pgf@ya=\pgf@y \northeast \pgf@xb=\pgf@x \pgf@yb=\pgf@y % compute corner of ``flipped page'' \pgf@xc=\pgf@xb \advance\pgf@xc by-5pt % this should be a parameter \pgf@yc=\pgf@yb \advance\pgf@yc by-5pt % diagonal path of the corner \pgfpathmoveto{\pgfpoint{\pgf@xa}{\pgf@ya}} \pgfpathlineto{\pgfpoint{\pgf@xa}{\pgf@yb}} \pgfpathlineto{\pgfpoint{\pgf@xc}{\pgf@yb}} \pgfpathlineto{\pgfpoint{\pgf@xb}{\pgf@yc}} \pgfpathlineto{\pgfpoint{\pgf@xb}{\pgf@ya}} \pgfpathclose % add little corner \pgfpathmoveto{\pgfpoint{\pgf@xc}{\pgf@yb}} \pgfpathlineto{\pgfpoint{\pgf@xc}{\pgf@yc}} \pgfpathlineto{\pgfpoint{\pgf@xb}{\pgf@yc}} \pgfpathlineto{\pgfpoint{\pgf@xc}{\pgf@yc}} } } % Define block styles \tikzstyle{compiler}=[draw, fill=blue!20, text width=6em, text centered, minimum height=2.5em, rounded corners] %\tikzstyle{compiler2}=[diamond, aspect=2, draw, fill=blue!20, text centered, rounded corners=1] \tikzstyle{compiler2}=[diamond, aspect=2, draw, text centered, rounded corners=1] %\tikzstyle{code}=[draw,shape=flippedpage,text width=2.7em, text centered, minimum height=3.7em,fill=white] \tikzstyle{code}=[draw,shape=flippedpage,text width=3em, text centered, minimum height=4.2em,fill=white] \tikzstyle{texttitle}=[fill=white, rounded corners, draw=black!50, dashed] \tikzstyle{background}=[fill=yellow!20, rounded corners, draw=black!50, dashed] \begin{center} \begin{tikzpicture} % Draw diagram elements % Draw an invisible paper and back papers \node (mapping) [code] {\figcode{Ancrages algébriques}}; \path (mapping.east)+(3,-2.5) node (datastruct)[code] {\figcode{Structures \\ de \\ données \\ Java}}; \path (mapping.west)+(-3,2.5) node (tomcode)[code] {\figcode{Tom \\ + \\ Java}}; \path (tomcode.east)+(3,0) node (tomcomp)[compiler2] {\figcode{\textbf{Compilateur {\tom}}}}; \path (mapping.east)+(3,2.5) node (javacode)[code] {\figcode{Code Java}}; \path (mapping.east)+(6,2.5) node (javacomp)[compiler2] {\figcode{\textbf{Compilateur {\java}}}}; \path (mapping.east)+(9,2.5) node (bytecode)[code] {\figcode{110010}\\\figcode{101110}\\\figcode{010100}}; % Draw gom side \path (mapping.west)+(-3.0,-2.5) node[code] (gomsig) {\figcode{Signature} \\ \figcode{Gom}}; \path (gomsig.east)+(3,0) node (gomcomp)[compiler2] {\figcode{\textbf{Compilateur {\gom}}}}; % Draw arrows between elements \path [->] (gomsig.east) edge (gomcomp); \path [->] (gomcomp.north) edge (mapping); % Use invisible mapping to avoid arrow cover back papers \path [->] (mapping.north) edge (tomcomp); \path [->] (gomcomp.east) edge (datastruct); %\path [draw, ->] (datastruct.east) -- ++(3,0) -- node [below] {} (javacomp); \draw[->] (datastruct) -- ++(3,0) -- (javacomp); %\path [->] (datastruct.east) edge (javacomp); \path [->] (tomcode.east) edge (tomcomp); \path [->] (tomcomp.east) edge (javacode); \path [->] (javacode.east) edge (javacomp); \path [->] (javacomp.east) edge (bytecode); \end{tikzpicture} \end{center} \caption{Processus de compilation d'un programme {\tom}} \label{fig:tomGomCompiler} \end{figure}