view libtomcrypt/src/mac/xcbc/xcbc_done.c @ 1659:d32bcb5c557d

Add Ed25519 support (#91) * Add support for Ed25519 as a public key type Ed25519 is a elliptic curve signature scheme that offers better security than ECDSA and DSA and good performance. It may be used for both user and host keys. OpenSSH key import and fuzzer are not supported yet. Initially inspired by Peter Szabo. * Add curve25519 and ed25519 fuzzers * Add import and export of Ed25519 keys
author Vladislav Grishenko <themiron@users.noreply.github.com>
date Wed, 11 Mar 2020 21:09:45 +0500
parents 6dba84798cd5
children
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/* LibTomCrypt, modular cryptographic library -- Tom St Denis
 *
 * LibTomCrypt is a library that provides various cryptographic
 * algorithms in a highly modular and flexible manner.
 *
 * The library is free for all purposes without any express
 * guarantee it works.
 */
#include "tomcrypt.h"

/**
  @file xcbc_done.c
  XCBC Support, terminate the state
*/

#ifdef LTC_XCBC

/** Terminate the XCBC-MAC state
  @param xcbc     XCBC state to terminate
  @param out      [out] Destination for the MAC tag
  @param outlen   [in/out] Destination size and final tag size
  Return CRYPT_OK on success
*/
int xcbc_done(xcbc_state *xcbc, unsigned char *out, unsigned long *outlen)
{
   int err, x;
   LTC_ARGCHK(xcbc != NULL);
   LTC_ARGCHK(out  != NULL);

   /* check structure */
   if ((err = cipher_is_valid(xcbc->cipher)) != CRYPT_OK) {
      return err;
   }

   if ((xcbc->blocksize > cipher_descriptor[xcbc->cipher].block_length) || (xcbc->blocksize < 0) ||
       (xcbc->buflen > xcbc->blocksize) || (xcbc->buflen < 0)) {
      return CRYPT_INVALID_ARG;
   }

   /* which key do we use? */
   if (xcbc->buflen == xcbc->blocksize) {
      /* k2 */
      for (x = 0; x < xcbc->blocksize; x++) {
         xcbc->IV[x] ^= xcbc->K[1][x];
      }
   } else {
      xcbc->IV[xcbc->buflen] ^= 0x80;
      /* k3 */
      for (x = 0; x < xcbc->blocksize; x++) {
         xcbc->IV[x] ^= xcbc->K[2][x];
      }
   }

   /* encrypt */
   cipher_descriptor[xcbc->cipher].ecb_encrypt(xcbc->IV, xcbc->IV, &xcbc->key);
   cipher_descriptor[xcbc->cipher].done(&xcbc->key);

   /* extract tag */
   for (x = 0; x < xcbc->blocksize && (unsigned long)x < *outlen; x++) {
      out[x] = xcbc->IV[x];
   }
   *outlen = x;

#ifdef LTC_CLEAN_STACK
   zeromem(xcbc, sizeof(*xcbc));
#endif
   return CRYPT_OK;
}

#endif

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