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Panama (cipher) : ウィキペディア英語版
Panama (cryptography)

Panama is a cryptography primitive which can be used both as a hash function and a stream cipher. Based on StepRightUp, it was designed by Joan Daemen and Craig Clapp and presented in the paper ''Fast Hashing and Stream Encryption with PANAMA'' on the Fast Software Encryption (FSE) conference 1998. The cipher has influenced several other designs, for example MUGI and SHA-3.〔http://csrc.nist.gov/groups/ST/hash/sha-3/documents/Keccak-slides-at-NIST.pdf On slide 5, it states the "starting
point: fixing Panama"〕〔(【引用サイトリンク】title=The Road from Panama to Keccak via RadioGatún )
The primitive can be used both as a hash function and a stream cipher. The stream cipher uses a 256-bit key and the performance of the cipher is very good reaching 2 cycles per byte.
==Hash function==

As a hash function, collisions have been shown by Vincent Rijmen et al. in the paper ''Producing Collisions for PANAMA'' presented at FSE 2001. The attack shows a computational complexity of 282 and with negligible memory requirements.
At FSE 2007, Joan Daemen and Gilles Van Assche presented a practical attack on the Panama hash function that generates a collision in 26 evaluations of the state updating function.
Guido Bertoni, Joan Daemen, Michaël Peeters, and Gilles Van Assche, at NIST's 2006 Second Cryptographic Hash Workshop, unveiled a Panama variant called RadioGatún. The hash function workings of RadioGatún does not have the known weaknesses that Panama's hash function has. In turn, RadioGatún inspired the new cryptographic standard SHA-3.

抄文引用元・出典: フリー百科事典『 ウィキペディア(Wikipedia)
ウィキペディアで「Panama (cryptography)」の詳細全文を読む



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