From security protocols to pushdown automata

Rémy Chrétien 1, 2 Véronique Cortier 2 Stéphanie Delaune 1
1 SECSI - Security of information systems
LSV - Laboratoire Spécification et Vérification [Cachan], ENS Cachan - École normale supérieure - Cachan, Inria Saclay - Ile de France, CNRS - Centre National de la Recherche Scientifique : UMR8643
2 CASSIS - Combination of approaches to the security of infinite states systems
FEMTO-ST - Franche-Comté Électronique Mécanique, Thermique et Optique - Sciences et Technologies, Inria Nancy - Grand Est, LORIA - FM - Department of Formal Methods
Abstract : Formal methods have been very successful in analyzing security protocols for reachability properties such as secrecy or authentication. In contrast, there are very few results for equivalence-based properties, crucial for studying e.g. privacy-like properties such as anonymity or vote secrecy. We study the problem of checking equivalence of security protocols for an unbounded number of sessions. Since replication leads very quickly to undecidability (even in the simple case of secrecy), we focus on a limited fragment of protocols (standard primitives but pairs, one variable per protocol's rules) for which the secrecy preservation problem is known to be decidable. Surprisingly, this fragment turns out to be undecidable for equivalence. Then, restricting our attention to deterministic protocols, we propose the first decidability result for checking equivalence of protocols for an unbounded number of sessions. This result is obtained through a characterization of equivalence of protocols in terms of equality of languages of (generalized, real-time) deterministic pushdown automata.
Type de document :
[Research Report] RR-8290, INRIA. 2013
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Contributeur : Véronique Cortier <>
Soumis le : mercredi 24 avril 2013 - 10:35:48
Dernière modification le : jeudi 11 janvier 2018 - 06:24:26
Document(s) archivé(s) le : lundi 3 avril 2017 - 09:06:13


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  • HAL Id : hal-00817230, version 1


Rémy Chrétien, Véronique Cortier, Stéphanie Delaune. From security protocols to pushdown automata. [Research Report] RR-8290, INRIA. 2013. 〈hal-00817230〉



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