mem_neq is no more used directly. XMEM_NEQ is used instead, in the same way XMEMCMP, XMEMCPY,... are. Signed-off-by: Pascal Brand <pascal.brand@st.com>
		
			
				
	
	
		
			180 lines
		
	
	
		
			4.7 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			180 lines
		
	
	
		
			4.7 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
| /* LibTomCrypt, modular cryptographic library -- Tom St Denis
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|  *
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|  * LibTomCrypt is a library that provides various cryptographic
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|  * algorithms in a highly modular and flexible manner.
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|  *
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|  * The library is free for all purposes without any express
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|  * guarantee it works.
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|  *
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|  * Tom St Denis, tomstdenis@gmail.com, http://libtom.org
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|  */
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| #include "tomcrypt.h"
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| 
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| /**
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|   @file pkcs_1_pss_decode.c
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|   PKCS #1 PSS Signature Padding, Tom St Denis
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| */
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| 
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| #ifdef LTC_PKCS_1
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| 
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| /**
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|    PKCS #1 v2.00 PSS decode
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|    @param  msghash         The hash to verify
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|    @param  msghashlen      The length of the hash (octets)
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|    @param  sig             The signature data (encoded data)
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|    @param  siglen          The length of the signature data (octets)
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|    @param  saltlen         The length of the salt used (octets)
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|    @param  hash_idx        The index of the hash desired
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|    @param  modulus_bitlen  The bit length of the RSA modulus
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|    @param  res             [out] The result of the comparison, 1==valid, 0==invalid
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|    @return CRYPT_OK if successful (even if the comparison failed)
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| */
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| int pkcs_1_pss_decode(const unsigned char *msghash, unsigned long msghashlen,
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|                       const unsigned char *sig,     unsigned long siglen,
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|                             unsigned long saltlen,  int           hash_idx,
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|                             unsigned long modulus_bitlen, int    *res)
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| {
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|    unsigned char *DB, *mask, *salt, *hash;
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|    unsigned long x, y, hLen, modulus_len;
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|    int           err;
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|    hash_state    md;
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| 
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|    LTC_ARGCHK(msghash != NULL);
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|    LTC_ARGCHK(res     != NULL);
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| 
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|    /* default to invalid */
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|    *res = 0;
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| 
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|    /* ensure hash is valid */
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|    if ((err = hash_is_valid(hash_idx)) != CRYPT_OK) {
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|       return err;
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|    }
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| 
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|    hLen        = hash_descriptor[hash_idx].hashsize;
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|    modulus_bitlen--;
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|    modulus_len = (modulus_bitlen>>3) + (modulus_bitlen & 7 ? 1 : 0);
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| 
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|    /* check sizes */
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|    if ((saltlen > modulus_len) ||
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|        (modulus_len < hLen + saltlen + 2)) {
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|       return CRYPT_PK_INVALID_SIZE;
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|    }
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| 
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|    /* allocate ram for DB/mask/salt/hash of size modulus_len */
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|    DB   = XMALLOC(modulus_len);
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|    mask = XMALLOC(modulus_len);
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|    salt = XMALLOC(modulus_len);
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|    hash = XMALLOC(modulus_len);
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|    if (DB == NULL || mask == NULL || salt == NULL || hash == NULL) {
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|       if (DB != NULL) {
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|          XFREE(DB);
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|       }
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|       if (mask != NULL) {
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|          XFREE(mask);
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|       }
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|       if (salt != NULL) {
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|          XFREE(salt);
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|       }
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|       if (hash != NULL) {
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|          XFREE(hash);
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|       }
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|       return CRYPT_MEM;
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|    }
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| 
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|    /* ensure the 0xBC byte */
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|    if (sig[siglen-1] != 0xBC) {
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|       err = CRYPT_INVALID_PACKET;
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|       goto LBL_ERR;
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|    }
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| 
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|    /* copy out the DB */
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|    x = 0;
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|    XMEMCPY(DB, sig + x, modulus_len - hLen - 1);
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|    x += modulus_len - hLen - 1;
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| 
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|    /* copy out the hash */
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|    XMEMCPY(hash, sig + x, hLen);
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|    x += hLen;
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| 
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| 
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|    /* check the MSB */
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|    if ((sig[0] & ~(0xFF >> ((modulus_len<<3) - (modulus_bitlen)))) != 0) {
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|       err = CRYPT_INVALID_PACKET;
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|       goto LBL_ERR;
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|    }
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| 
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|    /* generate mask of length modulus_len - hLen - 1 from hash */
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|    if ((err = pkcs_1_mgf1(hash_idx, hash, hLen, mask, modulus_len - hLen - 1)) != CRYPT_OK) {
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|       goto LBL_ERR;
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|    }
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| 
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|    /* xor against DB */
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|    for (y = 0; y < (modulus_len - hLen - 1); y++) {
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|       DB[y] ^= mask[y];
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|    }
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| 
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|    /* now clear the first byte [make sure smaller than modulus] */
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|    DB[0] &= 0xFF >> ((modulus_len<<3) - (modulus_bitlen));
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| 
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|    /* DB = PS || 0x01 || salt, PS == modulus_len - saltlen - hLen - 2 zero bytes */
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| 
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|    /* check for zeroes and 0x01 */
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|    for (x = 0; x < modulus_len - saltlen - hLen - 2; x++) {
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|        if (DB[x] != 0x00) {
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|           err = CRYPT_INVALID_PACKET;
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|           goto LBL_ERR;
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|        }
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|    }
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| 
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|    /* check for the 0x01 */
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|    if (DB[x++] != 0x01) {
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|       err = CRYPT_INVALID_PACKET;
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|       goto LBL_ERR;
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|    }
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| 
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|    /* M = (eight) 0x00 || msghash || salt, mask = H(M) */
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|    if ((err = hash_descriptor[hash_idx].init(&md)) != CRYPT_OK) {
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|       goto LBL_ERR;
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|    }
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|    zeromem(mask, 8);
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|    if ((err = hash_descriptor[hash_idx].process(&md, mask, 8)) != CRYPT_OK) {
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|       goto LBL_ERR;
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|    }
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|    if ((err = hash_descriptor[hash_idx].process(&md, msghash, msghashlen)) != CRYPT_OK) {
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|       goto LBL_ERR;
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|    }
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|    if ((err = hash_descriptor[hash_idx].process(&md, DB+x, saltlen)) != CRYPT_OK) {
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|       goto LBL_ERR;
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|    }
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|    if ((err = hash_descriptor[hash_idx].done(&md, mask)) != CRYPT_OK) {
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|       goto LBL_ERR;
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|    }
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| 
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|    /* mask == hash means valid signature */
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|    if (XMEM_NEQ(mask, hash, hLen) == 0) {
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|       *res = 1;
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|    }
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| 
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|    err = CRYPT_OK;
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| LBL_ERR:
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| #ifdef LTC_CLEAN_STACK
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|    zeromem(DB,   modulus_len);
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|    zeromem(mask, modulus_len);
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|    zeromem(salt, modulus_len);
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|    zeromem(hash, modulus_len);
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| #endif
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| 
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|    XFREE(hash);
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|    XFREE(salt);
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|    XFREE(mask);
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|    XFREE(DB);
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| 
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|    return err;
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| }
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| 
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| #endif /* LTC_PKCS_1 */
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| 
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| /* $Source$ */
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| /* $Revision$ */
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| /* $Date$ */
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