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On Adaptive Vs. Non-Adaptive Security of Multiparty Protocols (2001)  (Make Corrections)  (2 citations)
Ran Canetti, Ivan Damgaard, Stefan Dziembowski, Yuval Ishai, Tal Malkin
Lecture Notes in Computer Science



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Abstract: Security analysis of multiparty cryptographic protocols distinguishes between two types of adversarial settings: In the non-adaptive setting, the set of corrupted parties is chosen in advance, before the interaction begins. In the adaptive setting, the adversary chooses who to corrupt during the course of the computation. We study the relations between adaptive security (i.e., security in the adaptive setting) and non-adaptive security, according to two definitions and in several models of... (Update)

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...described in the Introduction. A more detailed overview is deleted for lack of space and appears in the full version of this work [cddim01]. Section 2.1 shows a separating example for the case of active adversary, Section 2.2 describes separating examples for passive adversary...

Cited by:   More
On Adaptive Vs. Non-Adaptive Security of Multiparty.. - Canetti, Damgaard.. (2001)   (Correct)

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BibTeX entry:   (Update)

R. Canetti, I. Damgaard, S. Dziembowski, Y. Ishai and T. Malkin, "On adaptive vs. non-adaptive security of multiparty protocols", http://eprint.iacr.org/2001. http://citeseer.ist.psu.edu/canetti01adaptive.html   More

@article{ canetti01adaptive,
    author = "Ran Canetti and Ivan Damg{\aa}rd and Stefan Dziembowski and Yuval Ishai and Tal Malkin",
    title = "On Adaptive vs. Non-adaptive Security of Multiparty Protocols",
    journal = "Lecture Notes in Computer Science",
    volume = "2045",
    pages = "262+",
    year = "2001",
    url = "citeseer.ist.psu.edu/canetti01adaptive.html" }
Citations (may not include all citations):
326   Non-malleable cryptography - Dolev, Dwork et al.
287   Multi-party Unconditionally Secure Protocols (context) - Chaum, Crepeau et al. - 1988
278   Probabilistic encryption (context) - Goldwasser, Micali - 1984
250   How to Play any Mental Game (context) - Goldreich, Micali et al. - 1987
219   Completeness Theorems for NonCryptographic Fault-Tolerant Di.. (context) - Ben-Or, Goldwasser et al. - 1988
185   How to generate and exchange secrets (context) - Yao - 1986
167   Protocols for Secure Computation (context) - Yao - 1982
98   Fair Computation of General Functions in Presence of Immoral.. (context) - Goldwasser, Levin - 1990
90   Secure Multi-party Protocols and Zero-Knowledge Proof System.. (context) - Beaver - 1991
40   Foundations of Cryptography (Fragments of a book - Goldreich - 1995
40   Cryptographic Protocols Provably secure Against Dynamic Adve.. (context) - Beaver, Haber - 1992
23   Adaptively Secure Computation (context) - Canetti, Feige et al. - 1996
19   A unified framework for analyzing security of Protocols (context) - Canetti - 2000
19   Secure Reactive Systems - Pfitzmann, Schunter et al. - 2000
16   Plug and Play Encryption (context) - Beaver
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4   Improved non-committing encryption schemes based on a genera.. (context) - Damgaard, Nielsen - 2000
4   A paractical public-key cryptosystem provably secure against.. (context) - Cramer, Shoup - 1998
4   A General Framework for Formal Notions of Secure Systems - Pfitzmann, Waidner - 1994
3   Maurer: General Secure Multiparty Computation from Any Linea.. (context) - Cramer, Damgaard - 2000
2   On adaptive vs. non-adaptive security of multiparty protocol.. - Canetti, Damgaard et al. - 2001
2   Non malleable, non-interactive zero knowlege and adaptive ch.. (context) - Sahai

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