DocumentCode :
2170084
Title :
General composition and universal composability in secure multi-party computation
Author :
Lindell, Yehuda
Author_Institution :
IBM T.J. Watson Res., Hawthorne, NY, USA
fYear :
2003
fDate :
11-14 Oct. 2003
Firstpage :
394
Lastpage :
403
Abstract :
Concurrent general composition relates to a setting where a secure protocol is run in a network concurrently with other, arbitrary protocols. Clearly, security in such a setting is what is desired, or even needed, in modern computer networks where many different protocols are executed concurrently. Our main result is a proof that security under concurrent general composition is equivalent to a relaxed variant of universal composability (where the only difference relates to the order of quantifiers in the definition). An important corollary of this theorem is that existing impossibility results for universal composability (or actually its relaxed variant) are inherent in any definition achieving security under concurrent general composition. We stress that the impossibility results obtained are not "black-box", and apply even to non-black-box simulation. Our main result also demonstrates that the definition of universal composability is somewhat "minimal", in that the composition guarantee provided by universal composability (almost) implies the definition itself. This indicates that the security definition of universal composability is not overly restrictive.
Keywords :
concurrency theory; cryptography; multiprocessing systems; protocols; computer networks; concurrent general composition; impossibility results; network security; nonblack box simulation; secure multiparty computation; secure protocol; universal composability; Computer networks; Computer security; Concurrent computing; Cryptography; Intelligent networks; Polynomials; Privacy; Protocols; Random variables; Stress;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Foundations of Computer Science, 2003. Proceedings. 44th Annual IEEE Symposium on
ISSN :
0272-5428
Print_ISBN :
0-7695-2040-5
Type :
conf
DOI :
10.1109/SFCS.2003.1238213
Filename :
1238213
Link To Document :
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