/mandos/release

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Viewing changes to plugins.d/mandos-client.c

  • Committer: Teddy Hogeborn
  • Date: 2014-10-05 19:39:25 UTC
  • mto: (237.7.304 trunk)
  • mto: This revision was merged to the branch mainline in revision 323.
  • Revision ID: teddy@recompile.se-20141005193925-jjqx2n2dt3icy28u
* mandos.service ([Unit]/Documentation): New.

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Lines of Context:
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  return plaintext_length;
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}
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__attribute__((warn_unused_result, const))
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static const char *safe_string(const char *str){
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  if(str == NULL)
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    return "(unknown)";
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  return str;
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}
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__attribute__((warn_unused_result))
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static const char *safer_gnutls_strerror(int value){
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  const char *ret = gnutls_strerror(value);
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  return safe_string(ret);
 
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  if(ret == NULL)
 
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    ret = "(unknown)";
 
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  return ret;
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}
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/* GnuTLS log function callback */
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                              const char *seckeyfilename,
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                              mandos_context *mc){
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  int ret;
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  unsigned int uret;
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  if(debug){
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    fprintf_plus(stderr, "Initializing GnuTLS\n");
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                 safer_gnutls_strerror(ret));
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    goto globalfail;
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  }
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  if(mc->dh_bits == 0){
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    /* Find out the optimal number of DH bits */
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    /* Try to read the private key file */
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    gnutls_datum_t buffer = { .data = NULL, .size = 0 };
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    {
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      int secfile = open(seckeyfilename, O_RDONLY);
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      size_t buffer_capacity = 0;
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      while(true){
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        buffer_capacity = incbuffer((char **)&buffer.data,
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                                    (size_t)buffer.size,
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                                    (size_t)buffer_capacity);
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        if(buffer_capacity == 0){
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          perror_plus("incbuffer");
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          free(buffer.data);
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          buffer.data = NULL;
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          break;
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        }
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        ssize_t bytes_read = read(secfile, buffer.data + buffer.size,
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                                  BUFFER_SIZE);
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        /* EOF */
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        if(bytes_read == 0){
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          break;
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        }
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        /* check bytes_read for failure */
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        if(bytes_read < 0){
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          perror_plus("read");
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          free(buffer.data);
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          buffer.data = NULL;
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          break;
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        }
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        buffer.size += (unsigned int)bytes_read;
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      }
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      close(secfile);
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    }
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    /* If successful, use buffer to parse private key */
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    gnutls_sec_param_t sec_param = GNUTLS_SEC_PARAM_ULTRA;
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    if(buffer.data != NULL){
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      {
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        gnutls_openpgp_privkey_t privkey = NULL;
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        ret = gnutls_openpgp_privkey_init(&privkey);
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        if(ret != GNUTLS_E_SUCCESS){
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          fprintf_plus(stderr, "Error initializing OpenPGP key"
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                       " structure: %s", safer_gnutls_strerror(ret));
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          free(buffer.data);
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          buffer.data = NULL;
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        } else {
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          ret = gnutls_openpgp_privkey_import(privkey, &buffer,
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                                            GNUTLS_OPENPGP_FMT_BASE64,
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                                              "", 0);
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          if(ret != GNUTLS_E_SUCCESS){
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            fprintf_plus(stderr, "Error importing OpenPGP key : %s",
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                         safer_gnutls_strerror(ret));
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            privkey = NULL;
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          }
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          free(buffer.data);
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          buffer.data = NULL;
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          if(privkey != NULL){
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            /* Use private key to suggest an appropriate sec_param */
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            sec_param = gnutls_openpgp_privkey_sec_param(privkey);
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            gnutls_openpgp_privkey_deinit(privkey);
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            if(debug){
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              fprintf_plus(stderr, "This OpenPGP key implies using a"
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                           " GnuTLS security parameter \"%s\".\n",
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                           safe_string(gnutls_sec_param_get_name
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                                       (sec_param)));
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            }
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          }
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        }
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      }
647
 
      if(sec_param == GNUTLS_SEC_PARAM_UNKNOWN){
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        /* Err on the side of caution */
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        sec_param = GNUTLS_SEC_PARAM_ULTRA;
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        if(debug){
651
 
          fprintf_plus(stderr, "Falling back to security parameter"
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                       " \"%s\"\n",
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                       safe_string(gnutls_sec_param_get_name
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                                   (sec_param)));
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        }
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      }
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    }
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    uret = gnutls_sec_param_to_pk_bits(GNUTLS_PK_DH, sec_param);
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    if(uret != 0){
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      mc->dh_bits = uret;
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      if(debug){
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        fprintf_plus(stderr, "A \"%s\" GnuTLS security parameter"
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                     " implies %u DH bits; using that.\n",
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                     safe_string(gnutls_sec_param_get_name
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                                 (sec_param)),
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                     mc->dh_bits);
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      }
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    } else {
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      fprintf_plus(stderr, "Failed to get implied number of DH"
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                   " bits for security parameter \"%s\"): %s\n",
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                   safe_string(gnutls_sec_param_get_name(sec_param)),
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                   safer_gnutls_strerror(ret));
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      goto globalfail;
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    }
675
 
  } else if(debug){
676
 
    fprintf_plus(stderr, "DH bits explicitly set to %u\n",
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                 mc->dh_bits);
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  }
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  ret = gnutls_dh_params_generate2(mc->dh_params, mc->dh_bits);
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  if(ret != GNUTLS_E_SUCCESS){
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    fprintf_plus(stderr, "Error in GnuTLS prime generation (%u bits):"
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                 " %s\n", mc->dh_bits, safer_gnutls_strerror(ret));
 
574
    fprintf_plus(stderr, "Error in GnuTLS prime generation: %s\n",
 
575
                 safer_gnutls_strerror(ret));
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    goto globalfail;
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  }
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578
  
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}
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int main(int argc, char *argv[]){
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  mandos_context mc = { .server = NULL, .dh_bits = 0,
 
1903
  mandos_context mc = { .server = NULL, .dh_bits = 1024,
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                        .priority = "SECURE256:!CTYPE-X.509:"
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                        "+CTYPE-OPENPGP:!RSA", .current_server = NULL,
 
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                        "+CTYPE-OPENPGP", .current_server = NULL,
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                        .interfaces = NULL, .interfaces_size = 0 };
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  AvahiSServiceBrowser *sb = NULL;
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  error_t ret_errno;