DocumentCode
939258
Title
Correlation-immunity of nonlinear combining functions for cryptographic applications (Corresp.)
Author
Siegenthaler, T.
Volume
30
Issue
5
fYear
1984
fDate
9/1/1984 12:00:00 AM
Firstpage
776
Lastpage
780
Abstract
Pseudonoise generators for cryptographic applications consisting of several linear feedback shift registers with a nonlinear combining function have been proposed as running key generators in stream ciphers. These running key generators eau sometimes be broken by (ciphertext-only) correlation attacks on individual subsequences. A new class of combining functions is presented, which provides better security against such attacks. The security is quantified by the smallest number
of subsequences that must be simultaneously considered in a correlation attack. A necessary condition for such
th-order correlation-immunity is proved. A recursive construction is given that permits the construction of an
th-order immune combining function for
subsequences for any
and
with
. Finally, the trade-off between the length of the linear equivalent of the nonlinear generator and the order
of its immunity against correlation attacks is considered.
of subsequences that must be simultaneously considered in a correlation attack. A necessary condition for such
th-order correlation-immunity is proved. A recursive construction is given that permits the construction of an
th-order immune combining function for
subsequences for any
and
with
. Finally, the trade-off between the length of the linear equivalent of the nonlinear generator and the order
of its immunity against correlation attacks is considered.Keywords
Correlations; Cryptography; Shift-register coding; Ambient intelligence; Communications technology; Cryptography; Information processing; Linear feedback shift registers; NIST; Security; Testing;
fLanguage
English
Journal_Title
Information Theory, IEEE Transactions on
Publisher
ieee
ISSN
0018-9448
Type
jour
DOI
10.1109/TIT.1984.1056949
Filename
1056949
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