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Issue title: Foundational Aspects of Security
Guest editors: Konstantinos ChatzikokolakisGuest-Editor, Sebastian Alexander MödersheimGuest-Editor, Catuscia PalamidessiGuest-Editor and Jun PangGuest-Editor
Article type: Research Article
Authors: Backes, Michaela; b | Hriţcu, Cătălina; c; d; * | Maffei, Matteoa
Affiliations: [a] CISPA, Saarland University, Saarbrücken, Germany | [b] MPI-SWS, Saarbrücken and Kaiserslautern, Germany | [c] Inria, Paris-Rocquencourt, France | [d] University of Pennsylvania, Philadelphia, PA, USA
Correspondence: [*] Corresponding author. E-mail: [email protected]
Abstract: We present a new type system for verifying the security of reference implementations of cryptographic protocols written in a core functional programming language. The type system combines prior work on refinement types, with union, intersection, and polymorphic types, and with the novel ability to reason statically about the disjointness of types. The increased expressivity enables the analysis of important protocol classes that were previously out of scope for the type-based analyses of reference protocol implementations. In particular, our types can statically characterize: (i) more usages of asymmetric cryptography, such as signatures of private data and encryptions of authenticated data; (ii) authenticity and integrity properties achieved by showing knowledge of secret data; (iii) applications based on zero-knowledge proofs. The type system comes with a mechanized proof of correctness and an efficient type-checker.
Keywords: Security protocols, reference implementations, zero-knowledge proofs, type systems, verification, refinement types, union types, intersection types, concurrent lambda-calculus, mechanized metatheory
DOI: 10.3233/JCS-130493
Journal: Journal of Computer Security, vol. 22, no. 2, pp. 301-353, 2014
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