Initial import.
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crypto/c_keccak.c
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123
crypto/c_keccak.c
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// keccak.c
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// 19-Nov-11 Markku-Juhani O. Saarinen <mjos@iki.fi>
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// A baseline Keccak (3rd round) implementation.
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#include <stdint.h>
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#include <string.h>
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#define HASH_DATA_AREA 136
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#define KECCAK_ROUNDS 24
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#ifndef ROTL64
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#define ROTL64(x, y) (((x) << (y)) | ((x) >> (64 - (y))))
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#endif
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const uint64_t keccakf_rndc[24] =
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{
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0x0000000000000001, 0x0000000000008082, 0x800000000000808a,
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0x8000000080008000, 0x000000000000808b, 0x0000000080000001,
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0x8000000080008081, 0x8000000000008009, 0x000000000000008a,
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0x0000000000000088, 0x0000000080008009, 0x000000008000000a,
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0x000000008000808b, 0x800000000000008b, 0x8000000000008089,
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0x8000000000008003, 0x8000000000008002, 0x8000000000000080,
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0x000000000000800a, 0x800000008000000a, 0x8000000080008081,
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0x8000000000008080, 0x0000000080000001, 0x8000000080008008
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};
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const int keccakf_rotc[24] =
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{
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1, 3, 6, 10, 15, 21, 28, 36, 45, 55, 2, 14,
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27, 41, 56, 8, 25, 43, 62, 18, 39, 61, 20, 44
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};
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const int keccakf_piln[24] =
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{
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10, 7, 11, 17, 18, 3, 5, 16, 8, 21, 24, 4,
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15, 23, 19, 13, 12, 2, 20, 14, 22, 9, 6, 1
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};
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// update the state with given number of rounds
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void keccakf(uint64_t st[25], int rounds)
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{
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int i, j, round;
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uint64_t t, bc[5];
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for (round = 0; round < rounds; ++round) {
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// Theta
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bc[0] = st[0] ^ st[5] ^ st[10] ^ st[15] ^ st[20];
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bc[1] = st[1] ^ st[6] ^ st[11] ^ st[16] ^ st[21];
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bc[2] = st[2] ^ st[7] ^ st[12] ^ st[17] ^ st[22];
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bc[3] = st[3] ^ st[8] ^ st[13] ^ st[18] ^ st[23];
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bc[4] = st[4] ^ st[9] ^ st[14] ^ st[19] ^ st[24];
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for (i = 0; i < 5; ++i) {
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t = bc[(i + 4) % 5] ^ ROTL64(bc[(i + 1) % 5], 1);
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st[i ] ^= t;
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st[i + 5] ^= t;
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st[i + 10] ^= t;
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st[i + 15] ^= t;
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st[i + 20] ^= t;
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}
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// Rho Pi
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t = st[1];
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for (i = 0; i < 24; ++i) {
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bc[0] = st[keccakf_piln[i]];
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st[keccakf_piln[i]] = ROTL64(t, keccakf_rotc[i]);
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t = bc[0];
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}
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// Chi
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for (j = 0; j < 25; j += 5) {
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bc[0] = st[j ];
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bc[1] = st[j + 1];
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bc[2] = st[j + 2];
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bc[3] = st[j + 3];
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bc[4] = st[j + 4];
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st[j ] ^= (~bc[1]) & bc[2];
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st[j + 1] ^= (~bc[2]) & bc[3];
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st[j + 2] ^= (~bc[3]) & bc[4];
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st[j + 3] ^= (~bc[4]) & bc[0];
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st[j + 4] ^= (~bc[0]) & bc[1];
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}
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// Iota
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st[0] ^= keccakf_rndc[round];
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}
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}
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// compute a keccak hash (md) of given byte length from "in"
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typedef uint64_t state_t[25];
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void keccak(const uint8_t *in, int inlen, uint8_t *md, int mdlen)
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{
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state_t st;
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uint8_t temp[144];
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int i, rsiz, rsizw;
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rsiz = sizeof(state_t) == mdlen ? HASH_DATA_AREA : 200 - 2 * mdlen;
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rsizw = rsiz / 8;
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memset(st, 0, sizeof(st));
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for ( ; inlen >= rsiz; inlen -= rsiz, in += rsiz) {
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for (i = 0; i < rsizw; i++)
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st[i] ^= ((uint64_t *) in)[i];
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keccakf(st, KECCAK_ROUNDS);
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}
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// last block and padding
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memcpy(temp, in, inlen);
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temp[inlen++] = 1;
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memset(temp + inlen, 0, rsiz - inlen);
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temp[rsiz - 1] |= 0x80;
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for (i = 0; i < rsizw; i++)
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st[i] ^= ((uint64_t *) temp)[i];
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keccakf(st, KECCAK_ROUNDS);
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memcpy(md, st, mdlen);
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}
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