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Partie 2 - Systematic

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04secutite?&de?fense:Mise en page 1 3/11/08 11:48 Page 91<br />

SYSTEM@TIC PARIS-REGION LES PROJETS DE R&D AU CŒUR DE LA RÉVOLUTION NUMÉRIQUE<br />

Our day-to-day lives increasingly depend upon information and our ability to manipulate it securely. For this reason much effort is<br />

put on developing systems with guaranteed security properties. The development of information security systems has to evolve from<br />

an art to a science. To this end, engineers need tools that assist them in developing security systems with provable security<br />

guarantees. The aim of the SCALP project is to develop general computer-aided tools for verifying cryptographic systems with<br />

strong correctness guarantees. These tools should have the following characteristics:<br />

• Support the provable and exact security frameworks.<br />

• Be reasonably automated.<br />

• Be applicable to realistic systems.<br />

• Put emphasis on proof checkability and certification<br />

////////////////////////////////////////////////////////////////////////////////////////////////////////////////<br />

Contact<br />

Yassine LAKHNECH<br />

UNIVERISTE GRENOBLE 1/VERIMAG<br />

04 56 52 03 81<br />

yassine.lakhnech@ujf-grenoble.fr<br />

SCALP<br />

Security of Cryptographic ALgorithms with Probabilities<br />

///// GT Sécurité & Défense<br />

////////////////////////////////////////////////////////////////////////////////////////////////////////////////<br />

PROJECTS PLANS & DELIVERABLES<br />

The project will deliver a set of tools for proving the correctness of cryptographic<br />

systems, and shall demonstrate its effectiveness on three application<br />

domains: cryptographic primitives and protocols, type systems<br />

for computational information flow, and watermarking<br />

algorithms.<br />

MAJOR PHASES OF THE PROJECTS STATUS<br />

> Automated tools for proving security of asymmetric encryption<br />

schemes and symmetric encryption modes<br />

> Automated tools for proving non-interference of cryptographic programs<br />

> Automated tools for proving watermarking algorithms<br />

First prototypes of tools for proving security of cryptographic primitives<br />

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Partners<br />

Major Corporation(s)<br />

SME<br />

Coordinator: CNRS/UNIVERSITE JOSEPH FOURIER<br />

Partners:<br />

CPR TEAM AT "CENTRE D'ÉTUDES ET DE RECHERCHES<br />

EN INFORMATIQUE DU CNAM" - DCS TEAM AT VERIMAG - EVEREST TEAM<br />

AT INRIA SOPHIA-ANTIPOLIS - PLUME TEAM AT THE "LABORATOIRE D'IN-<br />

FORMATIQUE DU PARALLELISME" - PROVAL PROJECT AT LABORATOIRE<br />

DE RECHERCHE EN INFORMATIQUE AND INRIA FUTURS<br />

Duration: 48 mois<br />

Global Budget: 1,231 M €<br />

Académic(s)<br />

Funding: 472 256,00 € - Agence Nationale de la Recherche<br />

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