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VMPC Stream Cipher (2003)  (Make Corrections)  
Bartosz Zoltak



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Abstract: The VMPC Stream Cipher is a simple encryption algorithm, designed as a proposed practical application of the VMPC one-way function. The general structure of the Cipher is based on an internal 256-element permutation. The VMPC Cipher, together with its Key Scheduling Algorithm, were designed in particular to eliminate some of the known weaknesses characteristic of the alleged RC4 keystream generator. (Update)

Active bibliography (related documents):   More   All
1.0:   A New Stream Cipher HC-256 - Wu (2004)   (Correct)
0.6:   Block Ciphers and Stream Ciphers: The State of the Art - Biryukov (2004)   (Correct)
0.4:   Py (Roo, ...): A Fast and Secure Stream Cipher using Rolling.. - Biham, Seberry (2005)   (Correct)

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1.6:   Tail-MAC: An Efficient Message Authentication Scheme for Stream.. - Zoltak (2004)   (Correct)
1.1:   VMPC-MAC: A Stream Cipher Based Authenticated Encryption Scheme - Zoltak (2004)   (Correct)
0.7:   One-Way IND-CNA Key Setup - a Step Towards Provably Secure.. - Zoltak (2004)   (Correct)

BibTeX entry:   (Update)

@misc{ zoltak-vmpc,
  author = "Bartosz Zoltak",
  title = "VMPC Stream Cipher",
  url = "citeseer.ist.psu.edu/zoltak03vmpc.html" }
Citations (may not include all citations):
223   The Art of Computer Programming (context) - Knuth - 1997
10   Weaknesses in the Key Scheduling Algorithm of RC4 (context) - Fluhrer, Mantin et al.
8   A Practical Attack on Broadcast RC4 (context) - Mantin, Shamir
5   Analysis Methods for (Alleged) RC4 (context) - Knudsen, Meier et al.
3   Statistical Analysis of the Alleged RC4 Keystream Generator (context) - Fluhrer, McGrew
3   Cryptanalysis of RC4-like Ciphers (context) - Mister, Tavares
1   An RC4 Cycle That Can't Happen (context) - Finney
1   A Related-Key Cryptanalysis of RC4 (context) - Grosul, Wallach
http://stat.fsu.edu/~geo/diehard.html
http://csrc.nist.gov/rng

Documents on the same site (http://eprint.iacr.org/search.pl?last=10000&title=1):   More
Safe Prime Generation with a Combined Sieve - Wiener (2003)   (Correct)
Efficient Provably Secure Public Key Steganography - Van Le (2003)   (Correct)
Efficient Public Key Steganography Secure Against Adaptively .. - Van Le, Kurosawa (2003)   (Correct)

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