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\documentclass[conference]{IEEEtran}
\IEEEoverridecommandlockouts
% The preceding line is only needed to identify funding in the first footnote. If that is unneeded, please comment it out.
\usepackage{cite}
\usepackage{amsmath,amssymb,amsfonts}
\usepackage{algorithmic}
\usepackage{graphicx}
\usepackage{textcomp}
\usepackage{xcolor}
\def\BibTeX{{\rm B\kern-.05em{\sc i\kern-.025em b}\kern-.08em
    T\kern-.1667em\lower.7ex\hbox{E}\kern-.125emX}}
\begin{document}

\title{How to implement a distributed social network using IPFS}

\author{\IEEEauthorblockN{Matthias Beyer}
\IEEEauthorblockA{Tübingen, Germany \\
mail@beyermatthias.de}
}

\maketitle

\begin{abstract}
\end{abstract}

\begin{IEEEkeywords}
\end{IEEEkeywords}

\section{Introduction}
% Intro about the general idea

\section{Data types}
% Intro about the data types required for building the blockchain

\subsection{Block}
% What a "block" is used for and what data it holds
% - metadata pointer

\subsection{Metadata-Block}
% What a "metadata-block" is used for and what data it holds
% - mime
% - timestamp
% - IPNS List
% - content
%   - content pointer
%   - references to other blocks


\subsection{Content}
% What a "content" object is (and what it is not)

\subsection{Data format}
% Short note about possible data formats



\section{Profiles}
% How profiles are implemented on top of the data types

\subsection{Multi-device support}
% How multi-device support for a profile is implemented using IPNS

\subsection{Device "Authorization"}
% How devices are authorized to post to a profile

\subsection{Device "De-authorization"}
% How devices are de-authorized from posting to a profile


\section{Posts}
% what a post is

\subsection{Post types}
% What kinds of posts exist

\subsection{Comments}
% How comments on posts could be implemented


\section{Traversing Chains and profile discovery}
% What needs to be done for traversing a block chain and discover a profile

\subsection{Profile fetching}
% How profiles are fetched

\subsection{Trusting a chain}
% How a chain can be trusted



\section{Possibilities for Optimization}
% Possibilities how the block chain model could be optimized


\section{Implementation}
% Intro for architecture description

\subsection{Architecture}
% Description of the general architecture

\subsection{Backend}
% Interfacing with IPFS and providing an abstraction to
% interact with "blocks" and "profiles", using either
% - a REST interface to be run as a (possibly network-local) server, or
% - a library API for embedding into a "fat" application


\subsection{Middleware}
% Middleware library, providing
% - interfaces for working with a backend (either REST or library)
% - public-private-key crypto interfaces for IPNS name publishing

% Itself providing either a REST interface via a webserver or
% a library API for embedding into a "fat" application


\subsection{Frontend}
% Frontend implementation, abstract over the middleware implementation, which
% needs to be trusted.
%
% A frontend impl could be started on a embedded device where no public-private
% key crypto is possible, so the middleware runs on a better-suited device
%
% The frontend could also embedd the middleware and implement a desktop client
% using a CLI, TUI, GUI or WUI.


\section{Future work}
% What could be implemented on top of this idea

\section*{Acknowledgment}

\section*{References}

%\begin{thebibliography}{00}
%\end{thebibliography}
\end{document}