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Titolo: | Provable Security : 8th International Conference, ProvSec 2014, Hong Kong, China, October 9-10, 2014. Proceedings / / edited by Sherman S.M. Chow, Joseph K. Liu, Lucas C.K. Hui, Siu Ming Yiu |
Pubblicazione: | Cham : , : Springer International Publishing : , : Imprint : Springer, , 2014 |
Edizione: | 1st ed. 2014. |
Descrizione fisica: | 1 online resource (XVIII, 351 p. 41 illus.) |
Disciplina: | 005.82 |
Soggetto topico: | Data encryption (Computer science) |
Computer security | |
Computers and civilization | |
Application software | |
Management information systems | |
Computer science | |
Cryptology | |
Systems and Data Security | |
Computers and Society | |
Computer Appl. in Administrative Data Processing | |
Management of Computing and Information Systems | |
Persona (resp. second.): | ChowSherman S.M |
LiuJoseph K | |
HuiLucas C.K | |
YiuSiu Ming | |
Note generali: | Bibliographic Level Mode of Issuance: Monograph |
Nota di contenuto: | Invited Paper -- Password-Based Authenticated Key Exchange: An Overview -- Practical and Provably Secure Attribute Based Encryption -- Fundamental -- Adaptive versus Static Security in the UC Model -- Impossibility of Surjective Icart-Like Encodings -- Symmetric Key Encryption -- On the practical security bound of GF-NLFSR structure with SPN round function -- Misuse-Resistant Variants of the OMD Authenticated Encryption Mode -- A Block-Cipher-Based Hash Function Using an MMO-Type Double-Block Compression Function -- Authentication.-Forward-Secure Sequential Aggregate Message Authentication Revisited: Formalization and a Provably Secure Scheme -- A Provable Secure Batch Authentication Scheme for EPCGen2 Tags -- Signatures -- Generic Transformation to Strongly Existentially Unforgettable Signature Schemes with Leakage Resiliency -- Bounded Pre-Image Awareness and the Security of Hash-Tree Keyless Signatures -- Protocol -- Verifiable Computation in Multiparty Protocols with Honest Majority -- Public Key Encryption -- Lossy Trapdoor Relation and Its Application to Lossy Encryption and Adaptive Trapdoor Relation.-Compact Public Key Encryption with Minimum Ideal Property of Hash Functions -- Proxy Re-Encryption -- RCCA-Secure Multi-use Bidirectional Proxy Re-Encryption with Master Secret Security -- Fine-grained Conditional Proxy Re-encryption and Application -- Predicate Encryption -- Constructing Subspace Membership Encryption through Inner Product Encryption -- Efficient (Anonymous) Compact HIBE From Standard Assumptions -- Attribute-based Cryptosystem -- Computationally Efficient Ciphertext-Policy Attribute-Based Encryption with Constant-Size Ciphertexts -- Attribute-Based Signcryption : Signer Privacy, Strong Unforgetability and IND-CCA2 Security in Adaptive-Predicates Attack -- Short Papers -- How to Use Pseudorandom Generators in Unconditional Security Settings -- Equivalence between MAC and PRF for Blockcipher based Constructions -- A Short Fail-Stop Signature Scheme from Factoring -- Computational Soundness of Asymmetric Bilinear Pairing-based Protocols -- Timed-Release Computational Secret Sharing Scheme and Its Applications -- Deniable Version of SIGMA Key Exchange Protocol Resilient to Ephemeral Key Leakage -- Complete Robustness in Identity-Based Encryption. |
Sommario/riassunto: | This book constitutes the refereed proceedings of the 8th International Conference on Provable Security, ProvSec 2012, held in Chengdu, China, in September 2012. The 20 full papers and 7 short papers presented together with 2 invited talks were carefully reviewed and selected from 68 submissions. The papers are grouped in topical sections on fundamental, symmetric key encryption, authentication, signatures, protocol, public key encryption, proxy re-encryption, predicate encryption, and attribute-based cryptosystem. |
Titolo autorizzato: | Provable Security |
ISBN: | 3-319-12475-7 |
Formato: | Materiale a stampa |
Livello bibliografico | Monografia |
Lingua di pubblicazione: | Inglese |
Record Nr.: | 9910484835503321 |
Lo trovi qui: | Univ. Federico II |
Opac: | Controlla la disponibilità qui |