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@@ -23,7 +23,8 @@ |
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#include "aes.h" |
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typedef struct AVAES{ |
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uint8_t round_key[15][4][4]; |
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uint8_t round_enc_key[15][4][4]; |
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uint8_t round_dec_key[15][4][4]; |
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uint8_t state[4][4]; |
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int rounds; |
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}AVAES; |
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@@ -74,40 +75,38 @@ static inline void mix(uint8_t state[4][4], uint32_t multbl[4][256]){ |
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void av_aes_decrypt(AVAES *a){ |
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int t, r; |
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addkey(a->state, a->round_key[a->rounds]); |
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for(r=a->rounds-1; r>=0; r--){ |
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if(r!=a->rounds-1) |
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mix(a->state, dec_multbl); |
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SUBSHIFT0((a->state[0]+0), inv_sbox) |
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SUBSHIFT3((a->state[0]+1), inv_sbox) |
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SUBSHIFT2((a->state[0]+2), inv_sbox) |
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SUBSHIFT1((a->state[0]+3), inv_sbox) |
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addkey(a->state, a->round_key[r]); |
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addkey(a->state, a->round_enc_key[a->rounds]); |
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for(r=a->rounds-2; r>=0; r--){ |
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// SUBSHIFT0((a->state[0]+0), inv_sbox) |
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SUBSHIFT3x((a->state[0]+1), inv_sbox) |
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SUBSHIFT2x((a->state[0]+2), inv_sbox) |
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SUBSHIFT1x((a->state[0]+3), inv_sbox) |
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mix(a->state, dec_multbl); |
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addkey(a->state, a->round_dec_key[r+1]); |
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} |
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SUBSHIFT0((a->state[0]+0), inv_sbox) |
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SUBSHIFT3((a->state[0]+1), inv_sbox) |
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SUBSHIFT2((a->state[0]+2), inv_sbox) |
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SUBSHIFT1((a->state[0]+3), inv_sbox) |
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addkey(a->state, a->round_enc_key[0]); |
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} |
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void av_aes_encrypt(AVAES *a){ |
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int r, t; |
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for(r=0; r<a->rounds-1; r++){ |
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addkey(a->state, a->round_key[r]); |
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addkey(a->state, a->round_enc_key[r]); |
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SUBSHIFT1x((a->state[0]+1), sbox) |
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SUBSHIFT2x((a->state[0]+2), sbox) |
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SUBSHIFT3x((a->state[0]+3), sbox) |
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mix(a->state, enc_multbl); //FIXME replace log8 by const / optimze mix as this can be simplified alot |
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} |
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addkey(a->state, a->round_key[r]); |
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addkey(a->state, a->round_enc_key[r]); |
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SUBSHIFT0((a->state[0]+0), sbox) |
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SUBSHIFT1((a->state[0]+1), sbox) |
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SUBSHIFT2((a->state[0]+2), sbox) |
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SUBSHIFT3((a->state[0]+3), sbox) |
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addkey(a->state, a->round_key[r+1]); |
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} |
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static init_multbl(uint8_t tbl[1024], int c[4], uint8_t *log8, uint8_t *alog8){ |
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int i; |
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for(i=4; i<1024; i++) |
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tbl[i]= alog8[ log8[i/4] + log8[c[i&3]] ]; |
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addkey(a->state, a->round_enc_key[r+1]); |
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} |
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static init_multbl2(uint8_t tbl[1024], int c[4], uint8_t *log8, uint8_t *alog8, uint8_t *sbox){ |
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@@ -147,11 +146,11 @@ AVAES *av_aes_init(uint8_t *key, int key_bits) { |
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sbox [i]= j; |
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// av_log(NULL, AV_LOG_ERROR, "%d, ", log8[i]); |
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} |
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init_multbl(dec_multbl[0], (int[4]){0xe, 0x9, 0xd, 0xb}, log8, alog8); |
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init_multbl2(dec_multbl[0], (int[4]){0xe, 0x9, 0xd, 0xb}, log8, alog8, inv_sbox); |
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#ifndef CONFIG_SMALL |
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init_multbl(dec_multbl[1], (int[4]){0xb, 0xe, 0x9, 0xd}, log8, alog8); |
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init_multbl(dec_multbl[2], (int[4]){0xd, 0xb, 0xe, 0x9}, log8, alog8); |
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init_multbl(dec_multbl[3], (int[4]){0x9, 0xd, 0xb, 0xe}, log8, alog8); |
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init_multbl2(dec_multbl[1], (int[4]){0xb, 0xe, 0x9, 0xd}, log8, alog8, inv_sbox); |
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init_multbl2(dec_multbl[2], (int[4]){0xd, 0xb, 0xe, 0x9}, log8, alog8, inv_sbox); |
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init_multbl2(dec_multbl[3], (int[4]){0x9, 0xd, 0xb, 0xe}, log8, alog8, inv_sbox); |
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#endif |
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init_multbl2(enc_multbl[0], (int[4]){0x2, 0x1, 0x1, 0x3}, log8, alog8, sbox); |
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#ifndef CONFIG_SMALL |
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@@ -170,7 +169,7 @@ AVAES *av_aes_init(uint8_t *key, int key_bits) { |
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memcpy(tk, key, KC*4); |
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for(t= 0; t < (rounds+1)*4;) { |
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memcpy(a->round_key[0][t], tk, KC*4); |
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memcpy(a->round_enc_key[0][t], tk, KC*4); |
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t+= KC; |
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for(i = 0; i < 4; i++) |
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@@ -184,6 +183,12 @@ AVAES *av_aes_init(uint8_t *key, int key_bits) { |
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for(i = 0; i < 4; i++) tk[j][i] ^= sbox[tk[j-1][i]]; |
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} |
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} |
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for(i=0; i<sizeof(a->round_enc_key); i++) |
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a->round_dec_key[0][0][i]= sbox[a->round_enc_key[0][0][i]]; |
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for(i=1; i<rounds; i++) |
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mix(a->round_dec_key[i], dec_multbl); |
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return a; |
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} |
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