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  2. S-box - Wikipedia

    en.wikipedia.org/wiki/S-box

    In cryptography, an S-box (substitution-box) is a basic component of symmetric key algorithms which performs substitution. In block ciphers, they are typically used to obscure the relationship between the key and the ciphertext, thus ensuring Shannon's property of confusion. Mathematically, an S-box is a nonlinear [1] vectorial Boolean function ...

  3. Rijndael S-box - Wikipedia

    en.wikipedia.org/wiki/Rijndael_S-box

    The Rijndael S-box can be replaced in the Rijndael cipher, [1] which defeats the suspicion of a backdoor built into the cipher that exploits a static S-box. The authors claim that the Rijndael cipher structure is likely to provide enough resistance against differential and linear cryptanalysis even if an S-box with "average" correlation ...

  4. Substitution–permutation network - Wikipedia

    en.wikipedia.org/wiki/Substitution–permutation...

    The S-boxes are the S i, the P-boxes are the same P, and the round keys are the K i. In cryptography , an SP-network , or substitution–permutation network ( SPN ), is a series of linked mathematical operations used in block cipher algorithms such as AES (Rijndael) , 3-Way , Kalyna , Kuznyechik , PRESENT , SAFER , SHARK , and Square .

  5. DES supplementary material - Wikipedia

    en.wikipedia.org/wiki/DES_supplementary_material

    The "Left" and "Right" halves of the table show which bits from the input key form the left and right sections of the key schedule state. Note that only 56 bits of the 64 bits of the input are selected; the remaining eight (8, 16, 24, 32, 40, 48, 56, 64) were specified for use as parity bits.

  6. Block cipher - Wikipedia

    en.wikipedia.org/wiki/Block_cipher

    It is a 16-round Feistel cipher and uses large key-dependent S-boxes. Notable features of the design include the key-dependent S-boxes and a highly complex key schedule. It was designed as a general-purpose algorithm, intended as an alternative to the aging DES and free of the problems and constraints associated with other algorithms.

  7. Camellia (cipher) - Wikipedia

    en.wikipedia.org/wiki/Camellia_(cipher)

    Camellia is a Feistel cipher with either 18 rounds (when using 128-bit keys) or 24 rounds (when using 192- or 256-bit keys). Every six rounds, a logical transformation layer is applied: the so-called "FL-function" or its inverse. Camellia uses four 8×8-bit S-boxes with input and output affine transformations and logical

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  9. Serpent (cipher) - Wikipedia

    en.wikipedia.org/wiki/Serpent_(cipher)

    The round function in Serpent consists of key-mixing XOR, thirty-two parallel applications of the same 4×4 S-box, and a linear transformation, except in the last round, wherein another key-mixing XOR replaces the linear transformation. The nonlinear layer in Rijndael uses an 8×8 S-box whereas Serpent uses eight different 4×4 S-boxes.