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e8658d5
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master
flaneth
firmware
xtea.c
initial commit after making CF identify work
Stefan Schuermans
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e8658d5
at 2012-04-15 19:57:57
xtea.c
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/* flaneth - flash and ethernet version 0.2 date 2008-11-08 Copyright (C) 2007-2008 Stefan Schuermans <stefan@schuermans.info> Copyleft: GNU public license V2 - http://www.gnu.org/copyleft/gpl.html a BlinkenArea project - http://www.blinkenarea.org/ */ #include <stdint.h> #include "xtea.h" #define delta 0x9E3779B9 // XTEA encrypt a block of 64 bits // - this is not block XTEA, it's the basic XTEA algorithm static void xtea_enc_block(uint32_t key[4], uint8_t rounds, uint32_t in[2], uint32_t out[2]) { uint32_t y, z, sum; y = in[0]; z = in[1]; sum = 0; for (; rounds > 0; rounds--) { y += ((z << 4 ^ z >> 5) + z) ^ (sum + key[sum & 3]); sum += delta; z += ((y << 4 ^ y >> 5) + y) ^ (sum + key[sum >> 11 & 3]); } out[0] = y; out[1] = z; } // XTEA decrypt a block of 64 bits // - this is not block XTEA, it's the basic XTEA algorithm static void xtea_dec_block(uint32_t key[4], uint8_t rounds, uint32_t in[2], uint32_t out[2]) { uint32_t y, z, sum; y = in[0]; z = in[1]; sum = (uint32_t) delta *rounds; for (; rounds > 0; rounds--) { z -= ((y << 4 ^ y >> 5) + y) ^ (sum + key[sum >> 11 & 3]); sum -= delta; y -= ((z << 4 ^ z >> 5) + z) ^ (sum + key[sum & 3]); } out[0] = y; out[1] = z; } // XTEA encryption // rounds should be at least 32 // p_in == p_out is allowed // p_prev must be initialized to zero before first call to this function void xtea_enc(uint32_t key[4], uint8_t rounds, uint64_t * p_in, uint64_t * p_out, unsigned int block_cnt, uint64_t * p_prev) // extern { uint64_t in, out; unsigned int i; for (i = 0; i < block_cnt; i++) { in = p_in[i] ^ *p_prev; xtea_enc_block(key, rounds, (uint32_t *) & in, (uint32_t *) & out); p_out[i] = out; *p_prev = out; } } // XTEA decryption // rounds should be at least 32 // p_in == p_out is allowed // p_prev must be initialized to zero before first call to this function void xtea_dec(uint32_t key[4], uint8_t rounds, uint64_t * p_in, uint64_t * p_out, unsigned int block_cnt, uint64_t * p_prev) // extern { uint64_t in, out; unsigned int i; for (i = 0; i < block_cnt; i++) { in = p_in[i]; xtea_dec_block(key, rounds, (uint32_t *) & in, (uint32_t *) & out); p_out[i] = out ^ *p_prev; *p_prev = in; } }