view libtomcrypt/src/encauth/ccm/ccm_add_aad.c @ 1855:35d504d59c05

Implement server-side support for sk-ecdsa U2F-backed keys (#142) * Implement server-side support for sk-ecdsa U2F-backed keys * Fix out-of-bounds read on normal ecdsa-sha2-[identifier] keys * Fix one more potential out-of-bounds read * Check if nistp256 curve is used in sk-ecdsa-sha2- key It's the only allowed curve per PROTOCOL.u2f specification * Implement server-side support for sk-ed25519 FIDO2-backed keys * Keys with type sk-* make no sense as host keys, so they should be disabled * fix typo * Make sk-ecdsa call buf_ecdsa_verify This reduces code duplication, the SK code just handles the different message format. * Reduce sk specific code The application id can be stored in signkey, then we don't need to call sk-specific functions from svr-authpubkey * Remove debugging output, which causes compilation errors with DEBUG_TRACE disabled * Proper cleanup of sk_app Co-authored-by: Matt Johnston <[email protected]>
author egor-duda <egor-duda@users.noreply.github.com>
date Sat, 22 Jan 2022 16:53:04 +0300
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"

#ifdef LTC_CCM_MODE

/**
  Add AAD to the CCM state
  @param ccm       The CCM state
  @param adata     The additional authentication data to add to the CCM state
  @param adatalen  The length of the AAD data.
  @return CRYPT_OK on success
 */
int ccm_add_aad(ccm_state *ccm,
                const unsigned char *adata,  unsigned long adatalen)
{
   unsigned long y;
   int            err;

   LTC_ARGCHK(ccm   != NULL);
   LTC_ARGCHK(adata != NULL);

   if (ccm->aadlen < ccm->current_aadlen + adatalen) {
      return CRYPT_INVALID_ARG;
   }
   ccm->current_aadlen += adatalen;

   /* now add the data */
   for (y = 0; y < adatalen; y++) {
      if (ccm->x == 16) {
         /* full block so let's encrypt it */
         if ((err = cipher_descriptor[ccm->cipher].ecb_encrypt(ccm->PAD, ccm->PAD, &ccm->K)) != CRYPT_OK) {
            return err;
         }
         ccm->x = 0;
      }
      ccm->PAD[ccm->x++] ^= adata[y];
   }

   /* remainder? */
   if (ccm->aadlen == ccm->current_aadlen) {
      if (ccm->x != 0) {
         if ((err = cipher_descriptor[ccm->cipher].ecb_encrypt(ccm->PAD, ccm->PAD, &ccm->K)) != CRYPT_OK) {
            return err;
         }
      }
      ccm->x = 0;
   }

   return CRYPT_OK;
}

#endif

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