コード例 #1
0
ファイル: uacctd.c プロジェクト: hrey/pmacct
int main(int argc,char **argv, char **envp)
{
  bpf_u_int32 localnet, netmask;  /* pcap library stuff */
  struct bpf_program filter;
  struct pcap_device device;
  char errbuf[PCAP_ERRBUF_SIZE];
  int index, logf;

  struct plugins_list_entry *list;
  struct plugin_requests req;
  char config_file[SRVBUFLEN];
  int psize = ULOG_BUFLEN;

  struct id_table bpas_table;
  struct id_table blp_table;
  struct id_table bmed_table;
  struct id_table biss_table;
  struct id_table bta_table;
  struct id_table idt;
  struct pcap_callback_data cb_data;

  /* getopt() stuff */
  extern char *optarg;
  extern int optind, opterr, optopt;
  int errflag, cp; 

  /* ULOG stuff */
  int ulog_fd, one = 1;
  struct nlmsghdr *nlh;
  struct sockaddr_nl nls;
  ulog_packet_msg_t *ulog_pkt;
  ssize_t len = 0;
  socklen_t alen;
  unsigned char *ulog_buffer;
  struct pcap_pkthdr hdr;
  struct timeval tv;

  char jumbo_container[10000];
  u_int8_t mac_len;



#if defined ENABLE_IPV6
  struct sockaddr_storage client;
#else
  struct sockaddr client;
#endif

#if defined HAVE_MALLOPT
  mallopt(M_CHECK_ACTION, 0);
#endif

  umask(077);
  compute_once();

  /* a bunch of default definitions */ 
  have_num_memory_pools = FALSE;
  reload_map = FALSE;
  tag_map_allocated = FALSE;
  bpas_map_allocated = FALSE;
  blp_map_allocated = FALSE;
  bmed_map_allocated = FALSE;
  biss_map_allocated = FALSE;
  bta_map_caching = FALSE;
  sampling_map_caching = FALSE;
  find_id_func = PM_find_id;

  errflag = 0;

  memset(cfg_cmdline, 0, sizeof(cfg_cmdline));
  memset(&config, 0, sizeof(struct configuration));
  memset(&device, 0, sizeof(struct pcap_device));
  memset(&config_file, 0, sizeof(config_file));
  memset(&failed_plugins, 0, sizeof(failed_plugins));
  memset(&req, 0, sizeof(req));
  memset(dummy_tlhdr, 0, sizeof(dummy_tlhdr));
  memset(sll_mac, 0, sizeof(sll_mac));
  memset(&bpas_table, 0, sizeof(bpas_table));
  memset(&blp_table, 0, sizeof(blp_table));
  memset(&bmed_table, 0, sizeof(bmed_table));
  memset(&biss_table, 0, sizeof(biss_table));
  memset(&bta_table, 0, sizeof(bta_table));
  memset(&client, 0, sizeof(client));
  memset(&cb_data, 0, sizeof(cb_data));
  memset(&tunnel_registry, 0, sizeof(tunnel_registry));
  memset(&reload_map_tstamp, 0, sizeof(reload_map_tstamp));
  config.acct_type = ACCT_PM;

  rows = 0;
  glob_pcapt = NULL;

  /* getting commandline values */
  while (!errflag && ((cp = getopt(argc, argv, ARGS_UACCTD)) != -1)) {
    cfg_cmdline[rows] = malloc(SRVBUFLEN);
    switch (cp) {
    case 'P':
      strlcpy(cfg_cmdline[rows], "plugins: ", SRVBUFLEN);
      strncat(cfg_cmdline[rows], optarg, CFG_LINE_LEN(cfg_cmdline[rows]));
      rows++;
      break;
    case 'D':
      strlcpy(cfg_cmdline[rows], "daemonize: true", SRVBUFLEN);
      rows++;
      break;
    case 'd':
      debug = TRUE;
      strlcpy(cfg_cmdline[rows], "debug: true", SRVBUFLEN);
      rows++;
      break;
    case 'n':
      strlcpy(cfg_cmdline[rows], "networks_file: ", SRVBUFLEN);
      strncat(cfg_cmdline[rows], optarg, CFG_LINE_LEN(cfg_cmdline[rows]));
      rows++;
      break;
    case 'o':
      strlcpy(cfg_cmdline[rows], "ports_file: ", SRVBUFLEN);
      strncat(cfg_cmdline[rows], optarg, CFG_LINE_LEN(cfg_cmdline[rows]));
      rows++;
      break; 
    case 'O':
      strlcpy(cfg_cmdline[rows], "print_output: ", SRVBUFLEN);
      strncat(cfg_cmdline[rows], optarg, CFG_LINE_LEN(cfg_cmdline[rows]));
      rows++;
      break;
    case 'u':
      strlcpy(cfg_cmdline[rows], "print_num_protos: true", SRVBUFLEN);
      rows++;
      break;
    case 'f':
      strlcpy(config_file, optarg, sizeof(config_file));
      break;
    case 'F':
      strlcpy(cfg_cmdline[rows], "pidfile: ", SRVBUFLEN);
      strncat(cfg_cmdline[rows], optarg, CFG_LINE_LEN(cfg_cmdline[rows]));
      rows++;
      break;
    case 'c':
      strlcpy(cfg_cmdline[rows], "aggregate: ", SRVBUFLEN);
      strncat(cfg_cmdline[rows], optarg, CFG_LINE_LEN(cfg_cmdline[rows]));
      rows++;
      break;
    case 'b':
      strlcpy(cfg_cmdline[rows], "imt_buckets: ", SRVBUFLEN);
      strncat(cfg_cmdline[rows], optarg, CFG_LINE_LEN(cfg_cmdline[rows]));
      rows++;
      break;
    case 'm':
      strlcpy(cfg_cmdline[rows], "imt_mem_pools_number: ", SRVBUFLEN);
      strncat(cfg_cmdline[rows], optarg, CFG_LINE_LEN(cfg_cmdline[rows]));
      have_num_memory_pools = TRUE;
      rows++;
      break;
    case 'p':
      strlcpy(cfg_cmdline[rows], "imt_path: ", SRVBUFLEN);
      strncat(cfg_cmdline[rows], optarg, CFG_LINE_LEN(cfg_cmdline[rows]));
      rows++;
      break;
    case 'r':
      strlcpy(cfg_cmdline[rows], "sql_refresh_time: ", SRVBUFLEN);
      strncat(cfg_cmdline[rows], optarg, CFG_LINE_LEN(cfg_cmdline[rows]));
      rows++;
      break;
    case 'v':
      strlcpy(cfg_cmdline[rows], "sql_table_version: ", SRVBUFLEN);
      strncat(cfg_cmdline[rows], optarg, CFG_LINE_LEN(cfg_cmdline[rows]));
      rows++;
      break;
    case 's':
      strlcpy(cfg_cmdline[rows], "imt_mem_pools_size: ", SRVBUFLEN);
      strncat(cfg_cmdline[rows], optarg, CFG_LINE_LEN(cfg_cmdline[rows]));
      rows++;
      break;
    case 'S':
      strlcpy(cfg_cmdline[rows], "syslog: ", SRVBUFLEN);
      strncat(cfg_cmdline[rows], optarg, CFG_LINE_LEN(cfg_cmdline[rows]));
      rows++;
      break;
    case 'g':
      strlcpy(cfg_cmdline[rows], "uacctd_group: ", SRVBUFLEN);
      strncat(cfg_cmdline[rows], optarg, CFG_LINE_LEN(cfg_cmdline[rows]));
      rows++;
      break;
    case 'L':
      strlcpy(cfg_cmdline[rows], "snaplen: ", SRVBUFLEN);
      strncat(cfg_cmdline[rows], optarg, CFG_LINE_LEN(cfg_cmdline[rows]));
      rows++;
      break;
    case 'R':
      strlcpy(cfg_cmdline[rows], "sfacctd_renormalize: true", SRVBUFLEN);
      rows++;
      break;
    case 'h':
      usage_daemon(argv[0]);
      exit(0);
      break;
    case 'V':
      version_daemon(UACCTD_USAGE_HEADER);
      exit(0);
      break;
    default:
      usage_daemon(argv[0]);
      exit(1);
      break;
    }
  }

  /* post-checks and resolving conflicts */
  if (strlen(config_file)) {
    if (parse_configuration_file(config_file) != SUCCESS) 
      exit(1);
  }
  else {
    if (parse_configuration_file(NULL) != SUCCESS)
      exit(1);
  }
    
  /* XXX: glue; i'm conscious it's a dirty solution from an engineering viewpoint;
     someday later i'll fix this */
  list = plugins_list;
  while (list) {
    list->cfg.acct_type = ACCT_PM;
    set_default_preferences(&list->cfg);
    if (!strcmp(list->name, "default") && !strcmp(list->type.string, "core")) { 
      memcpy(&config, &list->cfg, sizeof(struct configuration)); 
      config.name = list->name;
      config.type = list->type.string;
    }
    list = list->next;
  }

  if (config.files_umask) umask(config.files_umask);

  if (!config.snaplen) config.snaplen = psize;
  if (!config.uacctd_nl_size) config.uacctd_nl_size = psize;

  /* Let's check whether we need superuser privileges */
  if (getuid() != 0) {
    printf("%s\n\n", UACCTD_USAGE_HEADER);
    printf("ERROR ( default/core ): You need superuser privileges to run this command.\nExiting ...\n\n");
    exit(1);
  }

  if (!config.uacctd_group) {
    config.uacctd_group = DEFAULT_ULOG_GROUP;
    list = plugins_list;
    while (list) {
      list->cfg.uacctd_group = DEFAULT_ULOG_GROUP;
      list = list->next;
    }
  }

  if (config.daemon) {
    list = plugins_list;
    while (list) {
      if (!strcmp(list->type.string, "print")) printf("WARN ( default/core ): Daemonizing. Hmm, bye bye screen.\n");
      list = list->next;
    }
    if (debug || config.debug)
      printf("WARN ( default/core ): debug is enabled; forking in background. Console logging will get lost.\n"); 
    daemonize();
  }

  initsetproctitle(argc, argv, envp);
  if (config.syslog) {
    logf = parse_log_facility(config.syslog);
    if (logf == ERR) {
      config.syslog = NULL;
      printf("WARN ( default/core ): specified syslog facility is not supported; logging to console.\n");
    }
    else openlog(NULL, LOG_PID, logf);
    Log(LOG_INFO, "INFO ( default/core ): Start logging ...\n");
  }

  if (config.logfile)
  {
    config.logfile_fd = open_logfile(config.logfile);
    list = plugins_list;
    while (list) {
      list->cfg.logfile_fd = config.logfile_fd ;
      list = list->next;
    }
  }

  /* Enforcing policies over aggregation methods */
  list = plugins_list;
  while (list) {
    if (list->type.id != PLUGIN_ID_CORE) {
      /* applies to all plugins */
      if (config.classifiers_path && (list->cfg.sampling_rate || config.ext_sampling_rate)) {
        Log(LOG_ERR, "ERROR ( default/core ): Packet sampling and classification are mutual exclusive.\n");
        exit(1);
      }
      if (list->cfg.sampling_rate && config.ext_sampling_rate) {
        Log(LOG_ERR, "ERROR ( default/core ): Internal packet sampling and external packet sampling are mutual exclusive.\n");
        exit(1);
      }

      if (list->type.id == PLUGIN_ID_TEE) {
        Log(LOG_ERR, "ERROR ( default/core ): 'tee' plugin not supported in 'uacctd'.\n");
        exit(1);
      }
      else if (list->type.id == PLUGIN_ID_NFPROBE) {
	/* If we already renormalizing an external sampling rate,
	   we cancel the sampling information from the probe plugin */
	if (config.sfacctd_renormalize && list->cfg.ext_sampling_rate) list->cfg.ext_sampling_rate = 0; 

	config.handle_fragments = TRUE;
	list->cfg.nfprobe_what_to_count = list->cfg.what_to_count;
	list->cfg.nfprobe_what_to_count_2 = list->cfg.what_to_count_2;
	list->cfg.what_to_count = 0;
	list->cfg.what_to_count_2 = 0;
#if defined (HAVE_L2)
	if (list->cfg.nfprobe_version == 9 || list->cfg.nfprobe_version == 10) {
	  list->cfg.what_to_count |= COUNT_SRC_MAC;
	  list->cfg.what_to_count |= COUNT_DST_MAC;
	  list->cfg.what_to_count |= COUNT_VLAN;
	}
#endif
	list->cfg.what_to_count |= COUNT_SRC_HOST;
	list->cfg.what_to_count |= COUNT_DST_HOST;

        if (list->cfg.networks_file || list->cfg.networks_mask || list->cfg.nfacctd_net) {
          list->cfg.what_to_count |= COUNT_SRC_NMASK;
          list->cfg.what_to_count |= COUNT_DST_NMASK;
        }

	list->cfg.what_to_count |= COUNT_SRC_PORT;
	list->cfg.what_to_count |= COUNT_DST_PORT;
	list->cfg.what_to_count |= COUNT_IP_TOS;
	list->cfg.what_to_count |= COUNT_IP_PROTO;
	if (list->cfg.networks_file || (list->cfg.nfacctd_bgp && list->cfg.nfacctd_as == NF_AS_BGP)) {
	  list->cfg.what_to_count |= COUNT_SRC_AS;
	  list->cfg.what_to_count |= COUNT_DST_AS;
	  list->cfg.what_to_count |= COUNT_PEER_DST_IP;
	}
	if ((list->cfg.nfprobe_version == 9 || list->cfg.nfprobe_version == 10) && list->cfg.classifiers_path) {
	  list->cfg.what_to_count |= COUNT_CLASS; 
	  config.handle_flows = TRUE;
	}
	if (list->cfg.pre_tag_map) {
	  list->cfg.what_to_count |= COUNT_ID;
	  list->cfg.what_to_count |= COUNT_ID2;
	}
	list->cfg.what_to_count |= COUNT_IN_IFACE;
	list->cfg.what_to_count |= COUNT_OUT_IFACE;
        if (list->cfg.what_to_count & (COUNT_STD_COMM|COUNT_EXT_COMM|COUNT_LOCAL_PREF|COUNT_MED|COUNT_AS_PATH|
                                       COUNT_PEER_SRC_AS|COUNT_PEER_DST_AS|COUNT_PEER_SRC_IP|COUNT_SRC_STD_COMM|
                                       COUNT_SRC_EXT_COMM|COUNT_SRC_AS_PATH|COUNT_SRC_MED|COUNT_SRC_LOCAL_PREF|
				       COUNT_MPLS_VPN_RD)) {
          Log(LOG_ERR, "ERROR ( default/core ): 'src_as', 'dst_as' and 'peer_dst_ip' are currently the only BGP-related primitives supported within the 'nfprobe' plugin.\n");
          exit(1);
	}
	list->cfg.what_to_count |= COUNT_COUNTERS;

	list->cfg.data_type = PIPE_TYPE_METADATA;
	list->cfg.data_type |= PIPE_TYPE_EXTRAS;
      }
      else if (list->type.id == PLUGIN_ID_SFPROBE) {
        /* If we already renormalizing an external sampling rate,
           we cancel the sampling information from the probe plugin */
        if (config.sfacctd_renormalize && list->cfg.ext_sampling_rate) list->cfg.ext_sampling_rate = 0;

	if (psize < 128) psize = config.snaplen = 128; /* SFL_DEFAULT_HEADER_SIZE */
	list->cfg.what_to_count = COUNT_PAYLOAD;
	list->cfg.what_to_count_2 = 0;
	if (list->cfg.classifiers_path) {
	  list->cfg.what_to_count |= COUNT_CLASS;
	  config.handle_fragments = TRUE;
	  config.handle_flows = TRUE;
	}
        if (list->cfg.nfacctd_bgp && list->cfg.nfacctd_as == NF_AS_BGP) {
          list->cfg.what_to_count |= COUNT_SRC_AS;
          list->cfg.what_to_count |= COUNT_DST_AS;
          list->cfg.what_to_count |= COUNT_PEER_DST_IP;
        }
        if ((list->cfg.nfacctd_bgp && list->cfg.nfacctd_net == NF_NET_BGP) ||
            (list->cfg.nfacctd_isis && list->cfg.nfacctd_net == NF_NET_IGP)) {
          list->cfg.what_to_count |= COUNT_SRC_NMASK;
          list->cfg.what_to_count |= COUNT_DST_NMASK;
        }
	if (list->cfg.pre_tag_map) {
	  list->cfg.what_to_count |= COUNT_ID;
	  list->cfg.what_to_count |= COUNT_ID2;
	}
        if (list->cfg.what_to_count & (COUNT_STD_COMM|COUNT_EXT_COMM|COUNT_LOCAL_PREF|COUNT_MED|COUNT_AS_PATH|
                                       COUNT_PEER_SRC_AS|COUNT_PEER_DST_AS|COUNT_PEER_SRC_IP|COUNT_SRC_STD_COMM|
                                       COUNT_SRC_EXT_COMM|COUNT_SRC_AS_PATH|COUNT_SRC_MED|COUNT_SRC_LOCAL_PREF|
				       COUNT_MPLS_VPN_RD)) {
          Log(LOG_ERR, "ERROR ( default/core ): 'src_as', 'dst_as' and 'peer_dst_ip' are currently the only BGP-related primitives supported within the 'sfprobe' plugin.\n");
          exit(1);
        }

#if defined (HAVE_L2)
        list->cfg.what_to_count |= COUNT_VLAN;
        list->cfg.what_to_count |= COUNT_COS;
#endif

	list->cfg.data_type = PIPE_TYPE_PAYLOAD;
      }
      else {
        if (list->cfg.what_to_count_2 & (COUNT_POST_NAT_SRC_HOST|COUNT_POST_NAT_DST_HOST|
                        COUNT_POST_NAT_SRC_PORT|COUNT_POST_NAT_DST_PORT|COUNT_NAT_EVENT|
                        COUNT_TIMESTAMP_START|COUNT_TIMESTAMP_END))
          list->cfg.data_type |= PIPE_TYPE_NAT;

	evaluate_sums(&list->cfg.what_to_count, list->name, list->type.string);
	if (list->cfg.what_to_count & (COUNT_SRC_PORT|COUNT_DST_PORT|COUNT_SUM_PORT|COUNT_TCPFLAGS))
	  config.handle_fragments = TRUE;
	if (list->cfg.what_to_count & COUNT_FLOWS) {
	  config.handle_fragments = TRUE;
	  config.handle_flows = TRUE;
	}
	if (list->cfg.what_to_count & COUNT_CLASS) {
	  config.handle_fragments = TRUE;
	  config.handle_flows = TRUE;
	}
	if (!list->cfg.what_to_count && !list->cfg.what_to_count_2) {
	  Log(LOG_WARNING, "WARN ( %s/%s ): defaulting to SRC HOST aggregation.\n", list->name, list->type.string);
	  list->cfg.what_to_count |= COUNT_SRC_HOST;
	}
	if (list->cfg.what_to_count & (COUNT_SRC_AS|COUNT_DST_AS|COUNT_SUM_AS)) {
	  if (!list->cfg.networks_file && list->cfg.nfacctd_as != NF_AS_BGP) { 
	    Log(LOG_ERR, "ERROR ( %s/%s ): AS aggregation selected but NO 'networks_file' or 'uacctd_as' are specified. Exiting...\n\n", list->name, list->type.string);
	    exit(1);
	  }
          if (list->cfg.nfacctd_as & NF_AS_FALLBACK && list->cfg.networks_file)
            list->cfg.nfacctd_as |= NF_AS_NEW;
	}
        if (list->cfg.what_to_count & (COUNT_SRC_NET|COUNT_DST_NET|COUNT_SUM_NET|COUNT_SRC_NMASK|COUNT_DST_NMASK|COUNT_PEER_DST_IP)) {
          if (!list->cfg.nfacctd_net) {
            if (list->cfg.networks_file) list->cfg.nfacctd_net |= NF_NET_NEW;
            if (list->cfg.networks_mask) list->cfg.nfacctd_net |= NF_NET_STATIC;
            if (!list->cfg.nfacctd_net) {
              Log(LOG_ERR, "ERROR ( %s/%s ): network aggregation selected but none of 'uacctd_net', 'networks_file', 'networks_mask' is specified. Exiting ...\n\n", list->name, list->type.string);
              exit(1);
            }
          }
          else {
            if ((list->cfg.nfacctd_net == NF_NET_NEW && !list->cfg.networks_file) ||
                (list->cfg.nfacctd_net == NF_NET_STATIC && !list->cfg.networks_mask) ||
                (list->cfg.nfacctd_net == NF_NET_BGP && !list->cfg.nfacctd_bgp) ||
                (list->cfg.nfacctd_net == NF_NET_IGP && !list->cfg.nfacctd_isis) ||
                (list->cfg.nfacctd_net == NF_NET_KEEP)) {
              Log(LOG_ERR, "ERROR ( %s/%s ): network aggregation selected but none of 'bgp_daemon', 'isis_daemon', 'networks_file', 'networks_mask' is specified. Exiting ...\n\n", list->name, list->type.string);
              exit(1);
            }
            if (list->cfg.nfacctd_net & NF_NET_FALLBACK && list->cfg.networks_file)
              list->cfg.nfacctd_net |= NF_NET_NEW;
          }
        }
	if (list->cfg.what_to_count & COUNT_CLASS && !list->cfg.classifiers_path) {
	  Log(LOG_ERR, "ERROR ( %s/%s ): 'class' aggregation selected but NO 'classifiers' key specified. Exiting...\n\n", list->name, list->type.string);
	  exit(1);
	}

	bgp_config_checks(&list->cfg);

	list->cfg.what_to_count |= COUNT_COUNTERS;
	list->cfg.data_type |= PIPE_TYPE_METADATA;
      }
    }
    list = list->next;
  }

  /* plugins glue: creation (since 094) */
  if (config.classifiers_path) {
    init_classifiers(config.classifiers_path);
    init_conntrack_table();
  }
  load_plugins(&req);

  if (config.handle_fragments) init_ip_fragment_handler();
  if (config.handle_flows) init_ip_flow_handler();
  load_networks(config.networks_file, &nt, &nc);

#if defined (HAVE_L2)
  device.link_type = DLT_EN10MB; 
#else
  device.link_type = DLT_RAW; 
#endif
  for (index = 0; _devices[index].link_type != -1; index++) {
    if (device.link_type == _devices[index].link_type)
      device.data = &_devices[index];
  }
  load_plugin_filters(device.link_type);

  cb_data.device = &device;
  
  /* signal handling we want to inherit to plugins (when not re-defined elsewhere) */
  signal(SIGCHLD, startup_handle_falling_child); /* takes note of plugins failed during startup phase */
  signal(SIGHUP, reload); /* handles reopening of syslog channel */
  signal(SIGUSR1, push_stats); /* logs various statistics via Log() calls */
  signal(SIGUSR2, reload_maps); /* sets to true the reload_maps flag */
  signal(SIGPIPE, SIG_IGN); /* we want to exit gracefully when a pipe is broken */

  ulog_fd = socket(PF_NETLINK, SOCK_RAW, NETLINK_NFLOG);
  if (ulog_fd == -1) {
    Log(LOG_ERR, "ERROR ( default/core ): Failed to create Netlink ULOG socket\n");
    exit_all(1);
  }

  Log(LOG_INFO, "INFO ( default/core ): Successfully connected Netlink ULOG socket\n");

  /* Turn off netlink errors from overrun. */
  if (setsockopt(ulog_fd, SOL_NETLINK, NETLINK_NO_ENOBUFS, &one, sizeof(one)))
    Log(LOG_ERR, "ERROR ( default/core ): Failed to turn off netlink ENOBUFS\n");

  if (config.uacctd_nl_size > ULOG_BUFLEN) {
    /* If configured buffer size is larger than default 4KB */
    if (setsockopt(ulog_fd, SOL_SOCKET, SO_RCVBUF, &config.uacctd_nl_size, sizeof(config.uacctd_nl_size)))
      Log(LOG_ERR, "ERROR ( default/core ): Failed to set Netlink receive buffer size\n");
    else
      Log(LOG_INFO, "INFO ( default/core ): Netlink receive buffer size set to %u\n", config.uacctd_nl_size);
  }

  ulog_buffer = malloc(config.snaplen);
  if (ulog_buffer == NULL) {
    Log(LOG_ERR, "ERROR ( default/core ): ULOG buffer malloc() failed\n");
    close(ulog_fd);
    exit_all(1);
  }

  memset(&nls, 0, sizeof(nls));
  nls.nl_family = AF_NETLINK;
  nls.nl_pid = getpid();
  nls.nl_groups = config.uacctd_group;
  alen = sizeof(nls);

  if (bind(ulog_fd, (struct sockaddr *) &nls, sizeof(nls))) {
    Log(LOG_ERR, "ERROR ( default/core ): bind() to Netlink ULOG socket failed\n");
    close(ulog_fd);
    exit_all(1);
  }
  Log(LOG_INFO, "INFO ( default/core ): Netlink ULOG: binding to group %x\n", config.uacctd_group);

  /* loading pre-tagging map, if any */
  if (config.pre_tag_map) {
    load_id_file(config.acct_type, config.pre_tag_map, &idt, &req, &tag_map_allocated);
    cb_data.idt = (u_char *) &idt;
  }
  else {
    memset(&idt, 0, sizeof(idt));
    cb_data.idt = NULL; 
  }

#if defined ENABLE_THREADS
  /* starting the ISIS threa */
  if (config.nfacctd_isis) {
    req.bpf_filter = TRUE;

    nfacctd_isis_wrapper();

    /* Let's give the ISIS thread some advantage to create its structures */
    sleep(5);
  }

  /* starting the BGP thread */
  if (config.nfacctd_bgp) {
    req.bpf_filter = TRUE;
    load_comm_patterns(&config.nfacctd_bgp_stdcomm_pattern, &config.nfacctd_bgp_extcomm_pattern, &config.nfacctd_bgp_stdcomm_pattern_to_asn);

    if (config.nfacctd_bgp_peer_as_src_type == BGP_SRC_PRIMITIVES_MAP) {
      if (config.nfacctd_bgp_peer_as_src_map) {
        load_id_file(MAP_BGP_PEER_AS_SRC, config.nfacctd_bgp_peer_as_src_map, &bpas_table, &req, &bpas_map_allocated);
	cb_data.bpas_table = (u_char *) &bpas_table;
      }
      else {
        Log(LOG_ERR, "ERROR: bgp_peer_as_src_type set to 'map' but no map defined. Exiting.\n");
        exit(1);
      }
    }
    else cb_data.bpas_table = NULL;

    if (config.nfacctd_bgp_src_local_pref_type == BGP_SRC_PRIMITIVES_MAP) {
      if (config.nfacctd_bgp_src_local_pref_map) {
        load_id_file(MAP_BGP_SRC_LOCAL_PREF, config.nfacctd_bgp_src_local_pref_map, &blp_table, &req, &blp_map_allocated);
        cb_data.blp_table = (u_char *) &blp_table;
      }
      else {
        Log(LOG_ERR, "ERROR: bgp_src_local_pref_type set to 'map' but no map defined. Exiting.\n");
        exit(1);
      }
    }
    else cb_data.bpas_table = NULL;

    if (config.nfacctd_bgp_src_med_type == BGP_SRC_PRIMITIVES_MAP) {
      if (config.nfacctd_bgp_src_med_map) {
        load_id_file(MAP_BGP_SRC_MED, config.nfacctd_bgp_src_med_map, &bmed_table, &req, &bmed_map_allocated);
        cb_data.bmed_table = (u_char *) &bmed_table;
      }
      else {
        Log(LOG_ERR, "ERROR: bgp_src_med_type set to 'map' but no map defined. Exiting.\n");
        exit(1);
      }
    }
    else cb_data.bmed_table = NULL;

    if (config.nfacctd_bgp_to_agent_map) {
      load_id_file(MAP_BGP_TO_XFLOW_AGENT, config.nfacctd_bgp_to_agent_map, &bta_table, &req, &bta_map_allocated);
      cb_data.bta_table = (u_char *) &bta_table;
    }
    else {
      Log(LOG_ERR, "ERROR ( default/core ): 'bgp_daemon' configured but no 'bgp_agent_map' has been specified. Exiting.\n");
      exit(1);
    }

    /* Limiting BGP peers to only two: one would suffice in pmacctd
       but in case maps are reloadable (ie. bta), it could be handy
       to keep a backup feed in memory */
    config.nfacctd_bgp_max_peers = 2;

    if (config.nfacctd_bgp_iface_to_rd_map) {
      Log(LOG_ERR, "ERROR ( default/core ): 'bgp_iface_to_rd_map' is not supported by this daemon. Exiting.\n");
      exit(1);
    }

    cb_data.f_agent = (char *)&client;
    nfacctd_bgp_wrapper();

    /* Let's give the BGP thread some advantage to create its structures */
    sleep(5);
  }
#else
  if (config.nfacctd_isis) {
    Log(LOG_ERR, "ERROR ( default/core ): 'isis_daemon' is available only with threads (--enable-threads). Exiting.\n");
    exit(1);
  }

  if (config.nfacctd_bgp) {
    Log(LOG_ERR, "ERROR ( default/core ): 'bgp_daemon' is available only with threads (--enable-threads). Exiting.\n");
    exit(1);
  }
#endif

#if defined WITH_GEOIP
  if (config.geoip_ipv4_file || config.geoip_ipv6_file) {
    req.bpf_filter = TRUE;
  }
#endif

  /* plugins glue: creation (until 093) */
  evaluate_packet_handlers();
  pm_setproctitle("%s [%s]", "Core Process", "default");
  if (config.pidfile) write_pid_file(config.pidfile);  

  /* signals to be handled only by pmacctd;
     we set proper handlers after plugin creation */
  signal(SIGINT, my_sigint_handler);
  signal(SIGTERM, my_sigint_handler);
  signal(SIGCHLD, handle_falling_child);
  kill(getpid(), SIGCHLD);

  /* Main loop: if pcap_loop() exits maybe an error occurred; we will try closing
     and reopening again our listening device */
  for (;;) {
    if (len == -1) {
      if (errno != EAGAIN) {
        /* We can't deal with permanent errors.
         * Just sleep a bit.
         */
        Log(LOG_ERR, "ERROR ( default/core ): Syscall returned %d: %s. Sleeping for 1 sec.\n", errno, strerror(errno));
        sleep(1);
      }
    }

    len = recvfrom(ulog_fd, ulog_buffer, config.snaplen, 0, (struct sockaddr*) &nls, &alen);

    /*
     * Read timeout or failure condition.
     */
    if (len < (int)sizeof(struct nlmsghdr)) continue;
    if (alen != sizeof(nls)) continue;

    nlh = (struct nlmsghdr*) ulog_buffer;
    if ((nlh->nlmsg_flags & MSG_TRUNC) || ((size_t)len > config.snaplen)) continue;

    gettimeofday(&tv, NULL);

    while (NLMSG_OK(nlh, (size_t)len)) {
      ulog_pkt = NLMSG_DATA(nlh);
      hdr.ts = tv;
      hdr.caplen = MIN(ulog_pkt->data_len, config.snaplen);
      hdr.len = ulog_pkt->data_len;

      if (strlen(ulog_pkt->indev_name) > 1) {
	cb_data.ifindex_in = cache_ifindex(ulog_pkt->indev_name, tv.tv_sec);
      }
      else cb_data.ifindex_in = 0;

      if (strlen(ulog_pkt->outdev_name) > 1) {
	cb_data.ifindex_out = cache_ifindex(ulog_pkt->outdev_name, tv.tv_sec);
      }
      else cb_data.ifindex_out = 0;

#if defined (HAVE_L2)
      if (ulog_pkt->mac_len) {
	memcpy(jumbo_container, ulog_pkt->mac, ulog_pkt->mac_len);
	memcpy(jumbo_container+ulog_pkt->mac_len, ulog_pkt->payload, hdr.caplen);
	// XXX
	hdr.caplen += ulog_pkt->mac_len;
	hdr.len += ulog_pkt->mac_len;
      }
      else {
	memset(jumbo_container, 0, ETHER_HDRLEN);
	memcpy(jumbo_container+ETHER_HDRLEN, ulog_pkt->payload, hdr.caplen);
	hdr.caplen += ETHER_HDRLEN;
	hdr.len += ETHER_HDRLEN;

	switch (IP_V((struct my_iphdr *) ulog_pkt->payload)) {
	case 4:
	  ((struct eth_header *)jumbo_container)->ether_type = ntohs(ETHERTYPE_IP);
	  break;
	case 6:
	  ((struct eth_header *)jumbo_container)->ether_type = ntohs(ETHERTYPE_IPV6);
	  break;
	}

      }

      pcap_cb((u_char *) &cb_data, &hdr, jumbo_container);
#else
      pcap_cb((u_char *) &cb_data, &hdr, ulog_pkt->payload);
#endif

      if (nlh->nlmsg_type == NLMSG_DONE || !(nlh->nlmsg_flags & NLM_F_MULTI)) {
        /* Last part of the multilink message */
        break;
      }
      nlh = NLMSG_NEXT(nlh, len);
    }
  }
}
コード例 #2
0
ファイル: pmacctd.c プロジェクト: NeilW/pmacct
int main(int argc,char **argv, char **envp)
{
  bpf_u_int32 localnet, netmask;  /* pcap library stuff */
  struct bpf_program filter;
  struct pcap_device device;
  char errbuf[PCAP_ERRBUF_SIZE];
  int index, logf;

  struct plugins_list_entry *list;
  struct plugin_requests req;
  char config_file[SRVBUFLEN];
  int psize = DEFAULT_SNAPLEN;

  struct id_table bpas_table;
  struct id_table blp_table;
  struct id_table bmed_table;
  struct id_table biss_table;
  struct id_table bta_table;
  struct id_table idt;
  struct pcap_callback_data cb_data;

  /* getopt() stuff */
  extern char *optarg;
  extern int optind, opterr, optopt;
  int errflag, cp; 

#if defined ENABLE_IPV6
  struct sockaddr_storage client;
#else
  struct sockaddr client;
#endif


  umask(077);
  compute_once();

  /* a bunch of default definitions */ 
  have_num_memory_pools = FALSE;
  reload_map = FALSE;
  tag_map_allocated = FALSE;
  bpas_map_allocated = FALSE;
  blp_map_allocated = FALSE;
  bmed_map_allocated = FALSE;
  biss_map_allocated = FALSE;
  find_id_func = PM_find_id;

  errflag = 0;

  memset(cfg_cmdline, 0, sizeof(cfg_cmdline));
  memset(&config, 0, sizeof(struct configuration));
  memset(&device, 0, sizeof(struct pcap_device));
  memset(&config_file, 0, sizeof(config_file));
  memset(&failed_plugins, 0, sizeof(failed_plugins));
  memset(&req, 0, sizeof(req));
  memset(dummy_tlhdr, 0, sizeof(dummy_tlhdr));
  memset(sll_mac, 0, sizeof(sll_mac));
  memset(&bpas_table, 0, sizeof(bpas_table));
  memset(&blp_table, 0, sizeof(blp_table));
  memset(&bmed_table, 0, sizeof(bmed_table));
  memset(&biss_table, 0, sizeof(biss_table));
  memset(&bta_table, 0, sizeof(bta_table));
  memset(&client, 0, sizeof(client));
  memset(&cb_data, 0, sizeof(cb_data));
  memset(&tunnel_registry, 0, sizeof(tunnel_registry));
  config.acct_type = ACCT_PM;

  rows = 0;
  glob_pcapt = NULL;

  /* getting commandline values */
  while (!errflag && ((cp = getopt(argc, argv, ARGS_PMACCTD)) != -1)) {
    cfg_cmdline[rows] = malloc(SRVBUFLEN);
    switch (cp) {
    case 'P':
      strlcpy(cfg_cmdline[rows], "plugins: ", SRVBUFLEN);
      strncat(cfg_cmdline[rows], optarg, CFG_LINE_LEN(cfg_cmdline[rows]));
      rows++;
      break;
    case 'D':
      strlcpy(cfg_cmdline[rows], "daemonize: true", SRVBUFLEN);
      rows++;
      break;
    case 'd':
      debug = TRUE;
      strlcpy(cfg_cmdline[rows], "debug: true", SRVBUFLEN);
      rows++;
      break;
    case 'n':
      strlcpy(cfg_cmdline[rows], "networks_file: ", SRVBUFLEN);
      strncat(cfg_cmdline[rows], optarg, CFG_LINE_LEN(cfg_cmdline[rows]));
      rows++;
      break;
    case 'o':
      strlcpy(cfg_cmdline[rows], "ports_file: ", SRVBUFLEN);
      strncat(cfg_cmdline[rows], optarg, CFG_LINE_LEN(cfg_cmdline[rows]));
      rows++;
      break; 
    case 'O':
      strlcpy(cfg_cmdline[rows], "print_output: ", SRVBUFLEN);
      strncat(cfg_cmdline[rows], optarg, CFG_LINE_LEN(cfg_cmdline[rows]));
      rows++;
      break;
    case 'u':
      strlcpy(cfg_cmdline[rows], "print_num_protos: true", SRVBUFLEN);
      rows++;
      break;
    case 'N':
      strlcpy(cfg_cmdline[rows], "promisc: false", SRVBUFLEN);
      rows++;
      break;
    case 'f':
      strlcpy(config_file, optarg, sizeof(config_file));
      break;
    case 'F':
      strlcpy(cfg_cmdline[rows], "pidfile: ", SRVBUFLEN);
      strncat(cfg_cmdline[rows], optarg, CFG_LINE_LEN(cfg_cmdline[rows]));
      rows++;
      break;
    case 'c':
      strlcpy(cfg_cmdline[rows], "aggregate: ", SRVBUFLEN);
      strncat(cfg_cmdline[rows], optarg, CFG_LINE_LEN(cfg_cmdline[rows]));
      rows++;
      break;
    case 'b':
      strlcpy(cfg_cmdline[rows], "imt_buckets: ", SRVBUFLEN);
      strncat(cfg_cmdline[rows], optarg, CFG_LINE_LEN(cfg_cmdline[rows]));
      rows++;
      break;
    case 'm':
      strlcpy(cfg_cmdline[rows], "imt_mem_pools_number: ", SRVBUFLEN);
      strncat(cfg_cmdline[rows], optarg, CFG_LINE_LEN(cfg_cmdline[rows]));
      have_num_memory_pools = TRUE;
      rows++;
      break;
    case 'p':
      strlcpy(cfg_cmdline[rows], "imt_path: ", SRVBUFLEN);
      strncat(cfg_cmdline[rows], optarg, CFG_LINE_LEN(cfg_cmdline[rows]));
      rows++;
      break;
    case 'r':
      strlcpy(cfg_cmdline[rows], "sql_refresh_time: ", SRVBUFLEN);
      strncat(cfg_cmdline[rows], optarg, CFG_LINE_LEN(cfg_cmdline[rows]));
      rows++;
      cfg_cmdline[rows] = malloc(SRVBUFLEN);
      strlcpy(cfg_cmdline[rows], "print_refresh_time: ", SRVBUFLEN);
      strncat(cfg_cmdline[rows], optarg, CFG_LINE_LEN(cfg_cmdline[rows]));
      rows++;
      break;
    case 'v':
      strlcpy(cfg_cmdline[rows], "sql_table_version: ", SRVBUFLEN);
      strncat(cfg_cmdline[rows], optarg, CFG_LINE_LEN(cfg_cmdline[rows]));
      rows++;
      break;
    case 's':
      strlcpy(cfg_cmdline[rows], "imt_mem_pools_size: ", SRVBUFLEN);
      strncat(cfg_cmdline[rows], optarg, CFG_LINE_LEN(cfg_cmdline[rows]));
      rows++;
      break;
    case 'S':
      strlcpy(cfg_cmdline[rows], "syslog: ", SRVBUFLEN);
      strncat(cfg_cmdline[rows], optarg, CFG_LINE_LEN(cfg_cmdline[rows]));
      rows++;
      break;
    case 'i':
      strlcpy(cfg_cmdline[rows], "interface: ", SRVBUFLEN);
      strncat(cfg_cmdline[rows], optarg, CFG_LINE_LEN(cfg_cmdline[rows]));
      rows++;
      break;
    case 'I':
      strlcpy(cfg_cmdline[rows], "pcap_savefile: ", SRVBUFLEN);
      strncat(cfg_cmdline[rows], optarg, CFG_LINE_LEN(cfg_cmdline[rows]));
      rows++;
      break;
    case 'w':
      strlcpy(cfg_cmdline[rows], "interface_wait: true", SRVBUFLEN);
      rows++;
      break;
    case 'W':
      strlcpy(cfg_cmdline[rows], "savefile_wait: true", SRVBUFLEN);
      rows++;
      break;
    case 'L':
      strlcpy(cfg_cmdline[rows], "snaplen: ", SRVBUFLEN);
      strncat(cfg_cmdline[rows], optarg, CFG_LINE_LEN(cfg_cmdline[rows]));
      rows++;
      break;
    case 'R':
      strlcpy(cfg_cmdline[rows], "sfacctd_renormalize: true", SRVBUFLEN);
      rows++;
      break;
    case 'h':
      usage_daemon(argv[0]);
      exit(0);
      break;
    default:
      usage_daemon(argv[0]);
      exit(1);
      break;
    }
  }

  /* post-checks and resolving conflicts */
  if (strlen(config_file)) {
    if (parse_configuration_file(config_file) != SUCCESS) 
      exit(1);
  }
  else {
    if (parse_configuration_file(NULL) != SUCCESS)
      exit(1);
  }
    
  /* XXX: glue; i'm conscious it's a dirty solution from an engineering viewpoint;
     someday later i'll fix this */
  list = plugins_list;
  while(list) {
    list->cfg.acct_type = ACCT_PM;
    set_default_preferences(&list->cfg);
    if (!strcmp(list->name, "default") && !strcmp(list->type.string, "core")) 
      memcpy(&config, &list->cfg, sizeof(struct configuration)); 
    list = list->next;
  }

  if (config.files_umask) umask(config.files_umask);

  /* Let's check whether we need superuser privileges */
  if (config.snaplen) psize = config.snaplen;
  else config.snaplen = psize;

  if (!config.pcap_savefile) {
    if (getuid() != 0) {
      printf("%s\n\n", PMACCTD_USAGE_HEADER);
      printf("ERROR ( default/core ): You need superuser privileges to run this command.\nExiting ...\n\n");
      exit(1);
    }
  }

  if (config.daemon) {
    list = plugins_list;
    while (list) {
      if (!strcmp(list->type.string, "print")) printf("WARN ( default/core ): Daemonizing. Hmm, bye bye screen.\n");
      list = list->next;
    }
    if (debug || config.debug)
      printf("WARN ( default/core ): debug is enabled; forking in background. Console logging will get lost.\n"); 
    daemonize();
  }

  initsetproctitle(argc, argv, envp);
  if (config.syslog) {
    logf = parse_log_facility(config.syslog);
    if (logf == ERR) {
      config.syslog = NULL;
      printf("WARN ( default/core ): specified syslog facility is not supported; logging to console.\n");
    }
    else openlog(NULL, LOG_PID, logf);
    Log(LOG_INFO, "INFO ( default/core ): Start logging ...\n");
  }

  if (config.logfile)
  {
    config.logfile_fd = open_logfile(config.logfile);
    list = plugins_list;
    while (list) {
      list->cfg.logfile_fd = config.logfile_fd ;
      list = list->next;
    }
  }

  /* Enforcing policies over aggregation methods */
  list = plugins_list;
  while (list) {
    if (list->type.id != PLUGIN_ID_CORE) {
      /* applies to all plugins */
      if (config.classifiers_path && (list->cfg.sampling_rate || config.ext_sampling_rate)) {
        Log(LOG_ERR, "ERROR ( default/core ): Packet sampling and classification are mutual exclusive.\n");
        exit(1);
      }
      if (list->cfg.sampling_rate && config.ext_sampling_rate) {
        Log(LOG_ERR, "ERROR ( default/core ): Internal packet sampling and external packet sampling are mutual exclusive.\n");
        exit(1);
      }

      if (list->type.id == PLUGIN_ID_TEE) {
        Log(LOG_ERR, "ERROR ( default/core ): 'tee' plugin not supported in 'pmacctd'.\n");
        exit(1);
      }
      else if (list->type.id == PLUGIN_ID_NFPROBE) {
	/* If we already renormalizing an external sampling rate,
	   we cancel the sampling information from the probe plugin */
	if (config.sfacctd_renormalize && list->cfg.ext_sampling_rate) list->cfg.ext_sampling_rate = 0; 

	config.handle_fragments = TRUE;
	list->cfg.nfprobe_what_to_count = list->cfg.what_to_count;
	list->cfg.what_to_count = 0;
#if defined (HAVE_L2)
	if (list->cfg.nfprobe_version == 9 || list->cfg.nfprobe_version == 10) {
	  list->cfg.what_to_count |= COUNT_SRC_MAC;
	  list->cfg.what_to_count |= COUNT_DST_MAC;
	  list->cfg.what_to_count |= COUNT_VLAN;
	}
#endif
	list->cfg.what_to_count |= COUNT_SRC_HOST;
	list->cfg.what_to_count |= COUNT_DST_HOST;

	if (list->cfg.networks_file || list->cfg.networks_mask || list->cfg.nfacctd_net) {
	  list->cfg.what_to_count |= COUNT_SRC_NMASK;
	  list->cfg.what_to_count |= COUNT_DST_NMASK;
	} 

	list->cfg.what_to_count |= COUNT_SRC_PORT;
	list->cfg.what_to_count |= COUNT_DST_PORT;
	list->cfg.what_to_count |= COUNT_IP_TOS;
	list->cfg.what_to_count |= COUNT_IP_PROTO;
	if (list->cfg.networks_file || (list->cfg.nfacctd_bgp && list->cfg.nfacctd_as == NF_AS_BGP)) {
	  list->cfg.what_to_count |= COUNT_SRC_AS;
	  list->cfg.what_to_count |= COUNT_DST_AS;
	  list->cfg.what_to_count |= COUNT_PEER_DST_IP;
	}
	if ((list->cfg.nfprobe_version == 9 || list->cfg.nfprobe_version == 10) && list->cfg.classifiers_path) {
	  list->cfg.what_to_count |= COUNT_CLASS; 
	  config.handle_flows = TRUE;
	}
	if (list->cfg.pre_tag_map) {
	  list->cfg.what_to_count |= COUNT_ID;
	  list->cfg.what_to_count |= COUNT_ID2;
	}
        list->cfg.what_to_count |= COUNT_IN_IFACE;
        list->cfg.what_to_count |= COUNT_OUT_IFACE;
	if (list->cfg.what_to_count & (COUNT_STD_COMM|COUNT_EXT_COMM|COUNT_LOCAL_PREF|COUNT_MED|COUNT_AS_PATH|
                                       COUNT_PEER_SRC_AS|COUNT_PEER_DST_AS|COUNT_PEER_SRC_IP|COUNT_SRC_STD_COMM|
				       COUNT_SRC_EXT_COMM|COUNT_SRC_AS_PATH|COUNT_SRC_MED|COUNT_SRC_LOCAL_PREF|
				       COUNT_MPLS_VPN_RD)) {
	  Log(LOG_ERR, "ERROR ( default/core ): 'src_as', 'dst_as' and 'peer_dst_ip' are currently the only BGP-related primitives supported within the 'nfprobe' plugin.\n");
	  exit(1);
	}
	list->cfg.what_to_count |= COUNT_COUNTERS;

	list->cfg.data_type = PIPE_TYPE_METADATA;
	list->cfg.data_type |= PIPE_TYPE_EXTRAS;
      }
      else if (list->type.id == PLUGIN_ID_SFPROBE) {
        /* If we already renormalizing an external sampling rate,
           we cancel the sampling information from the probe plugin */
        if (config.sfacctd_renormalize && list->cfg.ext_sampling_rate) list->cfg.ext_sampling_rate = 0;

	if (psize < 128) psize = config.snaplen = 128; /* SFL_DEFAULT_HEADER_SIZE */
	list->cfg.what_to_count = COUNT_PAYLOAD;
	if (list->cfg.classifiers_path) {
	  list->cfg.what_to_count |= COUNT_CLASS;
	  config.handle_fragments = TRUE;
	  config.handle_flows = TRUE;
	}
        if (list->cfg.nfacctd_bgp && list->cfg.nfacctd_as == NF_AS_BGP) {
          list->cfg.what_to_count |= COUNT_SRC_AS;
          list->cfg.what_to_count |= COUNT_DST_AS;
          list->cfg.what_to_count |= COUNT_PEER_DST_IP;
        }
        if (list->cfg.nfacctd_bgp && list->cfg.nfacctd_net == NF_NET_BGP) {
          list->cfg.what_to_count |= COUNT_SRC_NMASK;
          list->cfg.what_to_count |= COUNT_DST_NMASK;
        }
	if (list->cfg.pre_tag_map) {
	  list->cfg.what_to_count |= COUNT_ID;
	  list->cfg.what_to_count |= COUNT_ID2;
	}
        if (list->cfg.what_to_count & (COUNT_STD_COMM|COUNT_EXT_COMM|COUNT_LOCAL_PREF|COUNT_MED|COUNT_AS_PATH|
                                       COUNT_PEER_SRC_AS|COUNT_PEER_DST_AS|COUNT_PEER_SRC_IP|COUNT_SRC_STD_COMM|
				       COUNT_SRC_EXT_COMM|COUNT_SRC_AS_PATH|COUNT_SRC_MED|COUNT_SRC_LOCAL_PREF|
				       COUNT_MPLS_VPN_RD)) {
          Log(LOG_ERR, "ERROR ( default/core ): 'src_as', 'dst_as' and 'peer_dst_ip' are currently the only BGP-related primitives supported within the 'sfprobe' plugin.\n");
          exit(1);
        }

#if defined (HAVE_L2)
        list->cfg.what_to_count |= COUNT_VLAN;
        list->cfg.what_to_count |= COUNT_COS;
#endif

	list->cfg.data_type = PIPE_TYPE_PAYLOAD;
      }
      else {
	evaluate_sums(&list->cfg.what_to_count, list->name, list->type.string);
	if (list->cfg.what_to_count & (COUNT_SRC_PORT|COUNT_DST_PORT|COUNT_SUM_PORT|COUNT_TCPFLAGS))
	  config.handle_fragments = TRUE;
	if (list->cfg.what_to_count & COUNT_FLOWS) {
	  config.handle_fragments = TRUE;
	  config.handle_flows = TRUE;
	}
	if (list->cfg.what_to_count & COUNT_CLASS) {
	  config.handle_fragments = TRUE;
	  config.handle_flows = TRUE;
	}
	if (!list->cfg.what_to_count) {
	  Log(LOG_WARNING, "WARN ( %s/%s ): defaulting to SRC HOST aggregation.\n", list->name, list->type.string);
	  list->cfg.what_to_count |= COUNT_SRC_HOST;
	}
	if ((list->cfg.what_to_count & (COUNT_SRC_AS|COUNT_DST_AS|COUNT_SUM_AS)) && !list->cfg.networks_file && list->cfg.nfacctd_as != NF_AS_BGP) { 
	  Log(LOG_ERR, "ERROR ( %s/%s ): AS aggregation selected but NO 'networks_file' or 'pmacctd_as' are specified. Exiting...\n\n", list->name, list->type.string);
	  exit(1);
	}
        if (list->cfg.what_to_count & (COUNT_SRC_NET|COUNT_DST_NET|COUNT_SUM_NET|COUNT_SRC_NMASK|COUNT_DST_NMASK)) {
          if (!list->cfg.nfacctd_net) {
            if (list->cfg.networks_file) list->cfg.nfacctd_net |= NF_NET_NEW;
            if (list->cfg.networks_mask) list->cfg.nfacctd_net |= NF_NET_STATIC;
            if (!list->cfg.nfacctd_net) {
              Log(LOG_ERR, "ERROR ( %s/%s ): network aggregation selected but none of 'pmacctd_net', 'networks_file', 'networks_mask' is specified. Exiting ...\n\n", list->name, list->type.string);
              exit(1);
            }
          }
          else {
            if ((list->cfg.nfacctd_net == NF_NET_NEW && !list->cfg.networks_file) ||
                (list->cfg.nfacctd_net == NF_NET_STATIC && !list->cfg.networks_mask) ||
                (list->cfg.nfacctd_net == NF_NET_BGP && !list->cfg.nfacctd_bgp) ||
                (list->cfg.nfacctd_net == NF_NET_KEEP)) {
              Log(LOG_ERR, "ERROR ( %s/%s ): network aggregation selected but none of 'bgp_daemon', 'networks_file', 'networks_mask' is specified. Exiting ...\n\n", list->name, list->type.string);
              exit(1);
            }
          }
        }
	if (list->cfg.what_to_count & COUNT_CLASS && !list->cfg.classifiers_path) {
	  Log(LOG_ERR, "ERROR ( %s/%s ): 'class' aggregation selected but NO 'classifiers' key specified. Exiting...\n\n", list->name, list->type.string);
	  exit(1);
	}

	bgp_config_checks(&list->cfg);

	list->cfg.what_to_count |= COUNT_COUNTERS;
	list->cfg.data_type |= PIPE_TYPE_METADATA;
      }
    }
    list = list->next;
  }

  /* plugins glue: creation (since 094) */
  if (config.classifiers_path) {
    init_classifiers(config.classifiers_path);
    init_conntrack_table();
  }
  load_plugins(&req);

  if (config.handle_fragments) init_ip_fragment_handler();
  if (config.handle_flows) init_ip_flow_handler();
  load_networks(config.networks_file, &nt, &nc);

  /* If any device/savefile have been specified, choose a suitable device
     where to listen for traffic */ 
  if (!config.dev && !config.pcap_savefile) {
    Log(LOG_WARNING, "WARN ( default/core ): Selecting a suitable device.\n");
    config.dev = pcap_lookupdev(errbuf); 
    if (!config.dev) {
      Log(LOG_WARNING, "WARN ( default/core ): Unable to find a suitable device. Exiting.\n");
      exit_all(1);
    }
    else Log(LOG_DEBUG, "DEBUG ( default/core ): device is %s\n", config.dev);
  }

  /* reading filter; if it exists, we'll take an action later */
  if (!strlen(config_file)) config.clbuf = copy_argv(&argv[optind]);

  if (config.dev && config.pcap_savefile) {
    Log(LOG_ERR, "ERROR ( default/core ): 'interface' (-i) and 'pcap_savefile' (-I) directives are mutually exclusive. Exiting.\n");
    exit_all(1); 
  }

  throttle_startup:
  if (config.dev) {
    if ((device.dev_desc = pcap_open_live(config.dev, psize, config.promisc, 1000, errbuf)) == NULL) {
      if (!config.if_wait) {
        Log(LOG_ERR, "ERROR ( default/core ): pcap_open_live(): %s\n", errbuf);
        exit_all(1);
      }
      else {
        sleep(5); /* XXX: user defined ? */
        goto throttle_startup;
      }
    } 
  }
  else if (config.pcap_savefile) {
    if ((device.dev_desc = pcap_open_offline(config.pcap_savefile, errbuf)) == NULL) {
      Log(LOG_ERR, "ERROR ( default/core ): pcap_open_offline(): %s\n", errbuf);
      exit_all(1);
    }
  }

  device.active = TRUE;
  glob_pcapt = device.dev_desc; /* SIGINT/stats handling */ 
  if (config.pipe_size) {
    int slen = sizeof(config.pipe_size), x;

#if defined (PCAP_TYPE_linux) || (PCAP_TYPE_snoop)
    Setsocksize(pcap_fileno(device.dev_desc), SOL_SOCKET, SO_RCVBUF, &config.pipe_size, slen);
    getsockopt(pcap_fileno(device.dev_desc), SOL_SOCKET, SO_RCVBUF, &x, &slen);
    Log(LOG_DEBUG, "DEBUG ( default/core ): PCAP buffer: obtained %d / %d bytes.\n", x, config.pipe_size);
#endif
  }

  device.link_type = pcap_datalink(device.dev_desc); 
  for (index = 0; _devices[index].link_type != -1; index++) {
    if (device.link_type == _devices[index].link_type)
      device.data = &_devices[index];
  }
  load_plugin_filters(device.link_type);

  /* we need to solve some link constraints */
  if (device.data == NULL) {
    Log(LOG_ERR, "ERROR ( default/core ): data link not supported: %d\n", device.link_type); 
    exit_all(1);
  }
  else Log(LOG_INFO, "OK ( default/core ): link type is: %d\n", device.link_type); 

  if (device.link_type != DLT_EN10MB && device.link_type != DLT_IEEE802 && device.link_type != DLT_LINUX_SLL) {
    list = plugins_list;
    while (list) {
      if ((list->cfg.what_to_count & COUNT_SRC_MAC) || (list->cfg.what_to_count & COUNT_DST_MAC)) {
        Log(LOG_ERR, "ERROR ( default/core ): MAC aggregation not available for link type: %d\n", device.link_type);
        exit_all(1);
      }
      list = list->next;
    }
  }

  cb_data.device = &device;
  
  /* doing pcap stuff */
  if (!config.dev || pcap_lookupnet(config.dev, &localnet, &netmask, errbuf) < 0) {
    localnet = 0;
    netmask = 0;
    Log(LOG_WARNING, "WARN ( default/core ): %s\n", errbuf);
  }

  if (pcap_compile(device.dev_desc, &filter, config.clbuf, 0, netmask) < 0)
    Log(LOG_WARNING, "WARN: %s\nWARN ( default/core ): going on without a filter\n", pcap_geterr(device.dev_desc));
  else {
    if (pcap_setfilter(device.dev_desc, &filter) < 0)
      Log(LOG_WARNING, "WARN: %s\nWARN ( default/core ): going on without a filter\n", pcap_geterr(device.dev_desc));
  }

  /* signal handling we want to inherit to plugins (when not re-defined elsewhere) */
  signal(SIGCHLD, startup_handle_falling_child); /* takes note of plugins failed during startup phase */
  signal(SIGHUP, reload); /* handles reopening of syslog channel */
  signal(SIGUSR1, push_stats); /* logs various statistics via Log() calls */
  signal(SIGUSR2, reload_maps); /* sets to true the reload_maps flag */
  signal(SIGPIPE, SIG_IGN); /* we want to exit gracefully when a pipe is broken */

  /* loading pre-tagging map, if any */
  if (config.pre_tag_map) {
    load_id_file(config.acct_type, config.pre_tag_map, &idt, &req, &tag_map_allocated);
    cb_data.idt = (u_char *) &idt;
  }
  else {
    memset(&idt, 0, sizeof(idt));
    cb_data.idt = NULL; 
  }

#if defined ENABLE_THREADS
  /* starting the BGP thread */
  if (config.nfacctd_bgp) {
    req.bpf_filter = TRUE;
    load_comm_patterns(&config.nfacctd_bgp_stdcomm_pattern, &config.nfacctd_bgp_extcomm_pattern, &config.nfacctd_bgp_stdcomm_pattern_to_asn);

    if (config.nfacctd_bgp_peer_as_src_type == BGP_SRC_PRIMITIVES_MAP) {
      if (config.nfacctd_bgp_peer_as_src_map) {
        load_id_file(MAP_BGP_PEER_AS_SRC, config.nfacctd_bgp_peer_as_src_map, &bpas_table, &req, &bpas_map_allocated);
	cb_data.bpas_table = (u_char *) &bpas_table;
      }
      else {
        Log(LOG_ERR, "ERROR: bgp_peer_as_src_type set to 'map' but no map defined. Exiting.\n");
        exit(1);
      }
    }
    else cb_data.bpas_table = NULL;

    if (config.nfacctd_bgp_src_local_pref_type == BGP_SRC_PRIMITIVES_MAP) {
      if (config.nfacctd_bgp_src_local_pref_map) {
        load_id_file(MAP_BGP_SRC_LOCAL_PREF, config.nfacctd_bgp_src_local_pref_map, &blp_table, &req, &blp_map_allocated);
        cb_data.blp_table = (u_char *) &blp_table;
      }
      else {
        Log(LOG_ERR, "ERROR: bgp_src_local_pref_type set to 'map' but no map defined. Exiting.\n");
        exit(1);
      }
    }
    else cb_data.blp_table = NULL;

    if (config.nfacctd_bgp_src_med_type == BGP_SRC_PRIMITIVES_MAP) {
      if (config.nfacctd_bgp_src_med_map) {
        load_id_file(MAP_BGP_SRC_MED, config.nfacctd_bgp_src_med_map, &bmed_table, &req, &bmed_map_allocated);
        cb_data.bmed_table = (u_char *) &bmed_table;
      }
      else {
        Log(LOG_ERR, "ERROR: bgp_src_med_type set to 'map' but no map defined. Exiting.\n");
        exit(1);
      }
    }
    else cb_data.bmed_table = NULL;

    if (config.nfacctd_bgp_to_agent_map) {
      load_id_file(MAP_BGP_TO_XFLOW_AGENT, config.nfacctd_bgp_to_agent_map, &bta_table, &req, &bta_map_allocated);
      cb_data.bta_table = (u_char *) &bta_table;
    }
    else {
      Log(LOG_ERR, "ERROR ( default/core ): 'bgp_daemon' configured but no 'bgp_agent_map' has been specified. Exiting.\n");
      exit(1);
    }

    /* Limiting BGP peers to only two: one would suffice in pmacctd
       but in case maps are reloadable (ie. bta), it could be handy
       to keep a backup feed in memory */
    config.nfacctd_bgp_max_peers = 2;

    if (config.nfacctd_bgp_iface_to_rd_map) {
      Log(LOG_ERR, "ERROR ( default/core ): 'bgp_iface_to_rd_map' is not supported by this daemon. Exiting.\n");
      exit(1);
    }

    cb_data.f_agent = (char *)&client;
    nfacctd_bgp_wrapper();

    /* Let's give the BGP thread some advantage to create its structures */
    sleep(5);
  }
#else
  if (config.nfacctd_bgp) {
    Log(LOG_ERR, "ERROR ( default/core ): 'bgp_daemon' is available only with threads (--enable-threads). Exiting.\n");
    exit(1);
  }
#endif

  /* Init tunnel handlers */
  tunnel_registry_init();

  /* plugins glue: creation (until 093) */
  evaluate_packet_handlers();
  pm_setproctitle("%s [%s]", "Core Process", "default");
  if (config.pidfile) write_pid_file(config.pidfile);  

  /* signals to be handled only by pmacctd;
     we set proper handlers after plugin creation */
  signal(SIGINT, my_sigint_handler);
  signal(SIGTERM, my_sigint_handler);
  signal(SIGCHLD, handle_falling_child);
  kill(getpid(), SIGCHLD);

  /* When reading packets from a savefile, things are lightning fast; we will sit 
     here just few seconds, thus allowing plugins to complete their startup operations */ 
  if (config.pcap_savefile) {
    Log(LOG_INFO, "INFO ( default/core ): PCAP capture file, sleeping for 2 seconds\n");
    sleep(2);
  }

  /* Main loop: if pcap_loop() exits maybe an error occurred; we will try closing
     and reopening again our listening device */
  for(;;) {
    if (!device.active) {
      Log(LOG_WARNING, "WARN ( default/core ): %s has become unavailable; throttling ...\n", config.dev);
      throttle_loop:
      sleep(5); /* XXX: user defined ? */
      if ((device.dev_desc = pcap_open_live(config.dev, psize, config.promisc, 1000, errbuf)) == NULL)
        goto throttle_loop;
      pcap_setfilter(device.dev_desc, &filter);
      device.active = TRUE;
    }
    pcap_loop(device.dev_desc, -1, pcap_cb, (u_char *) &cb_data);
    pcap_close(device.dev_desc);

    if (config.pcap_savefile) {
      if (config.sf_wait) {
	fill_pipe_buffer();
	Log(LOG_INFO, "INFO ( default/core ): finished reading PCAP capture file\n");
	wait(NULL);
      }
      stop_all_childs();
    }
    device.active = FALSE;
  }
}
コード例 #3
0
ファイル: uacctd.c プロジェクト: Rosiak/pmacct
int main(int argc,char **argv, char **envp)
{
    struct pcap_device device;
    int index, logf, ret;

    struct plugins_list_entry *list;
    struct plugin_requests req;
    char config_file[SRVBUFLEN];

    struct id_table bpas_table;
    struct id_table blp_table;
    struct id_table bmed_table;
    struct id_table biss_table;
    struct id_table bta_table;
    struct pcap_callback_data cb_data;

    /* getopt() stuff */
    extern char *optarg;
    extern int optind, opterr, optopt;
    int errflag, cp;

    /* NFLOG stuff */
    struct nflog_handle *nfh = NULL;
    struct nflog_g_handle *nfgh = NULL;
    int one = 1;
    ssize_t len = 0;
    unsigned char *nflog_buffer;

#if defined ENABLE_IPV6
    struct sockaddr_storage client;
#else
    struct sockaddr client;
#endif

#if defined HAVE_MALLOPT
    mallopt(M_CHECK_ACTION, 0);
#endif

    umask(077);
    compute_once();

    /* a bunch of default definitions */
    reload_map = FALSE;
    reload_geoipv2_file = FALSE;
    bpas_map_allocated = FALSE;
    blp_map_allocated = FALSE;
    bmed_map_allocated = FALSE;
    biss_map_allocated = FALSE;
    bta_map_caching = FALSE;
    sampling_map_caching = FALSE;
    custom_primitives_allocated = FALSE;
    find_id_func = PM_find_id;
    plugins_list = NULL;

    errflag = 0;

    memset(cfg_cmdline, 0, sizeof(cfg_cmdline));
    memset(&config, 0, sizeof(struct configuration));
    memset(&device, 0, sizeof(struct pcap_device));
    memset(&config_file, 0, sizeof(config_file));
    memset(&failed_plugins, 0, sizeof(failed_plugins));
    memset(&req, 0, sizeof(req));
    memset(dummy_tlhdr, 0, sizeof(dummy_tlhdr));
    memset(sll_mac, 0, sizeof(sll_mac));
    memset(&bpas_table, 0, sizeof(bpas_table));
    memset(&blp_table, 0, sizeof(blp_table));
    memset(&bmed_table, 0, sizeof(bmed_table));
    memset(&biss_table, 0, sizeof(biss_table));
    memset(&bta_table, 0, sizeof(bta_table));
    memset(&client, 0, sizeof(client));
    memset(&cb_data, 0, sizeof(cb_data));
    memset(&tunnel_registry, 0, sizeof(tunnel_registry));
    memset(&reload_map_tstamp, 0, sizeof(reload_map_tstamp));
    log_notifications_init(&log_notifications);
    config.acct_type = ACCT_PM;

    rows = 0;
    glob_pcapt = NULL;

    /* getting commandline values */
    while (!errflag && ((cp = getopt(argc, argv, ARGS_UACCTD)) != -1)) {
        cfg_cmdline[rows] = malloc(SRVBUFLEN);
        switch (cp) {
        case 'P':
            strlcpy(cfg_cmdline[rows], "plugins: ", SRVBUFLEN);
            strncat(cfg_cmdline[rows], optarg, CFG_LINE_LEN(cfg_cmdline[rows]));
            rows++;
            break;
        case 'D':
            strlcpy(cfg_cmdline[rows], "daemonize: true", SRVBUFLEN);
            rows++;
            break;
        case 'd':
            debug = TRUE;
            strlcpy(cfg_cmdline[rows], "debug: true", SRVBUFLEN);
            rows++;
            break;
        case 'n':
            strlcpy(cfg_cmdline[rows], "networks_file: ", SRVBUFLEN);
            strncat(cfg_cmdline[rows], optarg, CFG_LINE_LEN(cfg_cmdline[rows]));
            rows++;
            break;
        case 'o':
            strlcpy(cfg_cmdline[rows], "ports_file: ", SRVBUFLEN);
            strncat(cfg_cmdline[rows], optarg, CFG_LINE_LEN(cfg_cmdline[rows]));
            rows++;
            break;
        case 'O':
            strlcpy(cfg_cmdline[rows], "print_output: ", SRVBUFLEN);
            strncat(cfg_cmdline[rows], optarg, CFG_LINE_LEN(cfg_cmdline[rows]));
            rows++;
            break;
        case 'u':
            strlcpy(cfg_cmdline[rows], "print_num_protos: true", SRVBUFLEN);
            rows++;
            break;
        case 'f':
            strlcpy(config_file, optarg, sizeof(config_file));
            break;
        case 'F':
            strlcpy(cfg_cmdline[rows], "pidfile: ", SRVBUFLEN);
            strncat(cfg_cmdline[rows], optarg, CFG_LINE_LEN(cfg_cmdline[rows]));
            rows++;
            break;
        case 'c':
            strlcpy(cfg_cmdline[rows], "aggregate: ", SRVBUFLEN);
            strncat(cfg_cmdline[rows], optarg, CFG_LINE_LEN(cfg_cmdline[rows]));
            rows++;
            break;
        case 'b':
            strlcpy(cfg_cmdline[rows], "imt_buckets: ", SRVBUFLEN);
            strncat(cfg_cmdline[rows], optarg, CFG_LINE_LEN(cfg_cmdline[rows]));
            rows++;
            break;
        case 'm':
            strlcpy(cfg_cmdline[rows], "imt_mem_pools_number: ", SRVBUFLEN);
            strncat(cfg_cmdline[rows], optarg, CFG_LINE_LEN(cfg_cmdline[rows]));
            rows++;
            break;
        case 'p':
            strlcpy(cfg_cmdline[rows], "imt_path: ", SRVBUFLEN);
            strncat(cfg_cmdline[rows], optarg, CFG_LINE_LEN(cfg_cmdline[rows]));
            rows++;
            break;
        case 'r':
            strlcpy(cfg_cmdline[rows], "sql_refresh_time: ", SRVBUFLEN);
            strncat(cfg_cmdline[rows], optarg, CFG_LINE_LEN(cfg_cmdline[rows]));
            rows++;
            break;
        case 'v':
            strlcpy(cfg_cmdline[rows], "sql_table_version: ", SRVBUFLEN);
            strncat(cfg_cmdline[rows], optarg, CFG_LINE_LEN(cfg_cmdline[rows]));
            rows++;
            break;
        case 's':
            strlcpy(cfg_cmdline[rows], "imt_mem_pools_size: ", SRVBUFLEN);
            strncat(cfg_cmdline[rows], optarg, CFG_LINE_LEN(cfg_cmdline[rows]));
            rows++;
            break;
        case 'S':
            strlcpy(cfg_cmdline[rows], "syslog: ", SRVBUFLEN);
            strncat(cfg_cmdline[rows], optarg, CFG_LINE_LEN(cfg_cmdline[rows]));
            rows++;
            break;
        case 'g':
            strlcpy(cfg_cmdline[rows], "uacctd_group: ", SRVBUFLEN);
            strncat(cfg_cmdline[rows], optarg, CFG_LINE_LEN(cfg_cmdline[rows]));
            rows++;
            break;
        case 'L':
            strlcpy(cfg_cmdline[rows], "snaplen: ", SRVBUFLEN);
            strncat(cfg_cmdline[rows], optarg, CFG_LINE_LEN(cfg_cmdline[rows]));
            rows++;
            break;
        case 'R':
            strlcpy(cfg_cmdline[rows], "sfacctd_renormalize: true", SRVBUFLEN);
            rows++;
            break;
        case 'h':
            usage_daemon(argv[0]);
            exit(0);
            break;
        case 'V':
            version_daemon(UACCTD_USAGE_HEADER);
            exit(0);
            break;
        case 'a':
            print_primitives(config.acct_type, UACCTD_USAGE_HEADER);
            exit(0);
            break;
        default:
            usage_daemon(argv[0]);
            exit(1);
            break;
        }
    }

    /* post-checks and resolving conflicts */
    if (strlen(config_file)) {
        if (parse_configuration_file(config_file) != SUCCESS)
            exit(1);
    }
    else {
        if (parse_configuration_file(NULL) != SUCCESS)
            exit(1);
    }

    /* XXX: glue; i'm conscious it's a dirty solution from an engineering viewpoint;
       someday later i'll fix this */
    list = plugins_list;
    while (list) {
        list->cfg.acct_type = ACCT_PM;
        set_default_preferences(&list->cfg);
        if (!strcmp(list->type.string, "core")) {
            memcpy(&config, &list->cfg, sizeof(struct configuration));
            config.name = list->name;
            config.type = list->type.string;
        }
        list = list->next;
    }

    if (config.files_umask) umask(config.files_umask);

    if (!config.snaplen) config.snaplen = DEFAULT_SNAPLEN;
    if (!config.uacctd_nl_size) config.uacctd_nl_size = DEFAULT_NFLOG_BUFLEN;
    if (!config.uacctd_threshold) config.uacctd_threshold = DEFAULT_NFLOG_THRESHOLD;

    /* Let's check whether we need superuser privileges */
    if (getuid() != 0) {
        printf("%s (%s)\n\n", UACCTD_USAGE_HEADER, PMACCT_BUILD);
        printf("ERROR ( %s/core ): You need superuser privileges to run this command.\nExiting ...\n\n", config.name);
        exit(1);
    }

    if (!config.uacctd_group) {
        config.uacctd_group = DEFAULT_NFLOG_GROUP;
        list = plugins_list;
        while (list) {
            list->cfg.uacctd_group = DEFAULT_NFLOG_GROUP;
            list = list->next;
        }
    }

    if (config.daemon) {
        list = plugins_list;
        while (list) {
            if (!strcmp(list->type.string, "print") && !list->cfg.print_output_file)
                printf("INFO ( %s/%s ): Daemonizing. Bye bye screen.\n", list->name, list->type.string);
            list = list->next;
        }
        if (debug || config.debug)
            printf("WARN ( %s/core ): debug is enabled; forking in background. Logging to standard error (stderr) will get lost.\n", config.name);
        daemonize();
    }

    initsetproctitle(argc, argv, envp);
    if (config.syslog) {
        logf = parse_log_facility(config.syslog);
        if (logf == ERR) {
            config.syslog = NULL;
            printf("WARN ( %s/core ): specified syslog facility is not supported. Logging to standard error (stderr).\n", config.name);
        }
        else openlog(NULL, LOG_PID, logf);
        Log(LOG_INFO, "INFO ( %s/core ): Start logging ...\n", config.name);
    }

    if (config.logfile)
    {
        config.logfile_fd = open_output_file(config.logfile, "a", FALSE);
        list = plugins_list;
        while (list) {
            list->cfg.logfile_fd = config.logfile_fd ;
            list = list->next;
        }
    }

    if (config.proc_priority) {
        int ret;

        ret = setpriority(PRIO_PROCESS, 0, config.proc_priority);
        if (ret) Log(LOG_WARNING, "WARN ( %s/core ): proc_priority failed (errno: %d)\n", config.name, errno);
        else Log(LOG_INFO, "INFO ( %s/core ): proc_priority set to %d\n", config.name, getpriority(PRIO_PROCESS, 0));
    }

    if (strlen(config_file)) {
        char canonical_path[PATH_MAX], *canonical_path_ptr;

        canonical_path_ptr = realpath(config_file, canonical_path);
        if (canonical_path_ptr) Log(LOG_INFO, "INFO ( %s/core ): Reading configuration file '%s'.\n", config.name, canonical_path);
    }
    else Log(LOG_INFO, "INFO ( %s/core ): Reading configuration from cmdline.\n", config.name);

    /* Enforcing policies over aggregation methods */
    list = plugins_list;
    while (list) {
        if (list->type.id != PLUGIN_ID_CORE) {
            /* applies to all plugins */
            plugin_pipe_check(&list->cfg);

            if (config.classifiers_path && (list->cfg.sampling_rate || config.ext_sampling_rate)) {
                Log(LOG_ERR, "ERROR ( %s/core ): Packet sampling and classification are mutual exclusive.\n", config.name);
                exit(1);
            }

            if (list->cfg.sampling_rate && config.ext_sampling_rate) {
                Log(LOG_ERR, "ERROR ( %s/core ): Internal packet sampling and external packet sampling are mutual exclusive.\n", config.name);
                exit(1);
            }

            /* applies to specific plugins */
            if (list->type.id == PLUGIN_ID_TEE) {
                Log(LOG_ERR, "ERROR ( %s/core ): 'tee' plugin not supported in 'uacctd'.\n", config.name);
                exit(1);
            }
            else if (list->type.id == PLUGIN_ID_NFPROBE) {
                /* If we already renormalizing an external sampling rate,
                   we cancel the sampling information from the probe plugin */
                if (config.sfacctd_renormalize && list->cfg.ext_sampling_rate) list->cfg.ext_sampling_rate = 0;

                config.handle_fragments = TRUE;
                list->cfg.nfprobe_what_to_count = list->cfg.what_to_count;
                list->cfg.nfprobe_what_to_count_2 = list->cfg.what_to_count_2;
                list->cfg.what_to_count = 0;
                list->cfg.what_to_count_2 = 0;
#if defined (HAVE_L2)
                if (list->cfg.nfprobe_version == 9 || list->cfg.nfprobe_version == 10) {
                    list->cfg.what_to_count |= COUNT_SRC_MAC;
                    list->cfg.what_to_count |= COUNT_DST_MAC;
                    list->cfg.what_to_count |= COUNT_VLAN;
                }
#endif
                list->cfg.what_to_count |= COUNT_SRC_HOST;
                list->cfg.what_to_count |= COUNT_DST_HOST;

                if (list->cfg.networks_file || list->cfg.networks_mask || list->cfg.nfacctd_net) {
                    list->cfg.what_to_count |= COUNT_SRC_NMASK;
                    list->cfg.what_to_count |= COUNT_DST_NMASK;
                }

                list->cfg.what_to_count |= COUNT_SRC_PORT;
                list->cfg.what_to_count |= COUNT_DST_PORT;
                list->cfg.what_to_count |= COUNT_IP_TOS;
                list->cfg.what_to_count |= COUNT_IP_PROTO;
                if (list->cfg.networks_file || (list->cfg.nfacctd_bgp && list->cfg.nfacctd_as == NF_AS_BGP)) {
                    list->cfg.what_to_count |= COUNT_SRC_AS;
                    list->cfg.what_to_count |= COUNT_DST_AS;
                    list->cfg.what_to_count |= COUNT_PEER_DST_IP;
                }
                if ((list->cfg.nfprobe_version == 9 || list->cfg.nfprobe_version == 10) && list->cfg.classifiers_path) {
                    list->cfg.what_to_count |= COUNT_CLASS;
                    config.handle_flows = TRUE;
                }
                if (list->cfg.pre_tag_map) {
                    list->cfg.what_to_count |= COUNT_TAG;
                    list->cfg.what_to_count |= COUNT_TAG2;
                    list->cfg.what_to_count_2 |= COUNT_LABEL;
                }
                list->cfg.what_to_count |= COUNT_IN_IFACE;
                list->cfg.what_to_count |= COUNT_OUT_IFACE;
                if (list->cfg.what_to_count & (COUNT_STD_COMM|COUNT_EXT_COMM|COUNT_LOCAL_PREF|COUNT_MED|COUNT_AS_PATH|
                                               COUNT_PEER_SRC_AS|COUNT_PEER_DST_AS|COUNT_PEER_SRC_IP|COUNT_SRC_STD_COMM|
                                               COUNT_SRC_EXT_COMM|COUNT_SRC_AS_PATH|COUNT_SRC_MED|COUNT_SRC_LOCAL_PREF|
                                               COUNT_MPLS_VPN_RD)) {
                    Log(LOG_ERR, "ERROR ( %s/core ): 'src_as', 'dst_as' and 'peer_dst_ip' are currently the only BGP-related primitives supported within the 'nfprobe' plugin.\n", config.name);
                    exit(1);
                }
                list->cfg.what_to_count |= COUNT_COUNTERS;

                if (list->cfg.nfacctd_as & NF_AS_FALLBACK && list->cfg.networks_file)
                    list->cfg.nfacctd_as |= NF_AS_NEW;

                if (list->cfg.nfacctd_net & NF_NET_FALLBACK && list->cfg.networks_file)
                    list->cfg.nfacctd_net |= NF_NET_NEW;

                list->cfg.data_type = PIPE_TYPE_METADATA;
                list->cfg.data_type |= PIPE_TYPE_EXTRAS;

                if (list->cfg.what_to_count_2 & (COUNT_LABEL))
                    list->cfg.data_type |= PIPE_TYPE_VLEN;
            }
            else if (list->type.id == PLUGIN_ID_SFPROBE) {
                /* If we already renormalizing an external sampling rate,
                   we cancel the sampling information from the probe plugin */
                if (config.sfacctd_renormalize && list->cfg.ext_sampling_rate) list->cfg.ext_sampling_rate = 0;

                if (config.snaplen < 128) config.snaplen = 128; /* SFL_DEFAULT_HEADER_SIZE */
                list->cfg.what_to_count = COUNT_PAYLOAD;
                list->cfg.what_to_count_2 = 0;
                if (list->cfg.classifiers_path) {
                    list->cfg.what_to_count |= COUNT_CLASS;
                    config.handle_fragments = TRUE;
                    config.handle_flows = TRUE;
                }
                if (list->cfg.networks_file || (list->cfg.nfacctd_bgp && list->cfg.nfacctd_as == NF_AS_BGP)) {
                    list->cfg.what_to_count |= COUNT_SRC_AS;
                    list->cfg.what_to_count |= COUNT_DST_AS;
                    list->cfg.what_to_count |= COUNT_PEER_DST_IP;
                }
                if (list->cfg.networks_file || list->cfg.networks_mask || list->cfg.nfacctd_net) {
                    list->cfg.what_to_count |= COUNT_SRC_NMASK;
                    list->cfg.what_to_count |= COUNT_DST_NMASK;
                }
                if (list->cfg.pre_tag_map) {
                    list->cfg.what_to_count |= COUNT_TAG;
                    list->cfg.what_to_count |= COUNT_TAG2;
                }
                if (list->cfg.what_to_count & (COUNT_STD_COMM|COUNT_EXT_COMM|COUNT_LOCAL_PREF|COUNT_MED|COUNT_AS_PATH|
                                               COUNT_PEER_SRC_AS|COUNT_PEER_DST_AS|COUNT_PEER_SRC_IP|COUNT_SRC_STD_COMM|
                                               COUNT_SRC_EXT_COMM|COUNT_SRC_AS_PATH|COUNT_SRC_MED|COUNT_SRC_LOCAL_PREF|
                                               COUNT_MPLS_VPN_RD)) {
                    Log(LOG_ERR, "ERROR ( %s/core ): 'src_as', 'dst_as' and 'peer_dst_ip' are currently the only BGP-related primitives supported within the 'sfprobe' plugin.\n", config.name);
                    exit(1);
                }

#if defined (HAVE_L2)
                list->cfg.what_to_count |= COUNT_VLAN;
                list->cfg.what_to_count |= COUNT_COS;
#endif

                if (list->cfg.nfacctd_as & NF_AS_FALLBACK && list->cfg.networks_file)
                    list->cfg.nfacctd_as |= NF_AS_NEW;

                if (list->cfg.nfacctd_net & NF_NET_FALLBACK && list->cfg.networks_file)
                    list->cfg.nfacctd_net |= NF_NET_NEW;

                list->cfg.data_type = PIPE_TYPE_PAYLOAD;
            }
            else {
                if (list->cfg.what_to_count_2 & (COUNT_POST_NAT_SRC_HOST|COUNT_POST_NAT_DST_HOST|
                                                 COUNT_POST_NAT_SRC_PORT|COUNT_POST_NAT_DST_PORT|COUNT_NAT_EVENT|
                                                 COUNT_TIMESTAMP_START|COUNT_TIMESTAMP_END|COUNT_TIMESTAMP_ARRIVAL))
                    list->cfg.data_type |= PIPE_TYPE_NAT;

                if (list->cfg.what_to_count_2 & (COUNT_MPLS_LABEL_TOP|COUNT_MPLS_LABEL_BOTTOM|
                                                 COUNT_MPLS_STACK_DEPTH))
                    list->cfg.data_type |= PIPE_TYPE_MPLS;

                if (list->cfg.what_to_count_2 & (COUNT_LABEL))
                    list->cfg.data_type |= PIPE_TYPE_VLEN;

                evaluate_sums(&list->cfg.what_to_count, list->name, list->type.string);
                if (list->cfg.what_to_count & (COUNT_SRC_PORT|COUNT_DST_PORT|COUNT_SUM_PORT|COUNT_TCPFLAGS))
                    config.handle_fragments = TRUE;
                if (list->cfg.what_to_count & COUNT_FLOWS) {
                    config.handle_fragments = TRUE;
                    config.handle_flows = TRUE;
                }
                if (list->cfg.what_to_count & COUNT_CLASS) {
                    config.handle_fragments = TRUE;
                    config.handle_flows = TRUE;
                }
                if (!list->cfg.what_to_count && !list->cfg.what_to_count_2 && !list->cfg.cpptrs.num) {
                    Log(LOG_WARNING, "WARN ( %s/%s ): defaulting to SRC HOST aggregation.\n", list->name, list->type.string);
                    list->cfg.what_to_count |= COUNT_SRC_HOST;
                }
                if (((list->cfg.what_to_count & COUNT_SRC_HOST) && (list->cfg.what_to_count & COUNT_SRC_NET)) ||
                        ((list->cfg.what_to_count & COUNT_DST_HOST) && (list->cfg.what_to_count & COUNT_DST_NET))) {
                    if (!list->cfg.tmp_net_own_field) {
                        Log(LOG_ERR, "ERROR ( %s/%s ): src_host, src_net and dst_host, dst_net are mutually exclusive: set tmp_net_own_field to true. Exiting...\n\n", list->name, list->type.string);
                        exit(1);
                    }
                }
                if (list->cfg.what_to_count & (COUNT_SRC_AS|COUNT_DST_AS|COUNT_SUM_AS)) {
                    if (!list->cfg.networks_file && list->cfg.nfacctd_as != NF_AS_BGP) {
                        Log(LOG_ERR, "ERROR ( %s/%s ): AS aggregation selected but NO 'networks_file' or 'uacctd_as' are specified. Exiting...\n\n", list->name, list->type.string);
                        exit(1);
                    }
                    if (list->cfg.nfacctd_as & NF_AS_FALLBACK && list->cfg.networks_file)
                        list->cfg.nfacctd_as |= NF_AS_NEW;
                }
                if (list->cfg.what_to_count & (COUNT_SRC_NET|COUNT_DST_NET|COUNT_SUM_NET|COUNT_SRC_NMASK|COUNT_DST_NMASK|COUNT_PEER_DST_IP)) {
                    if (!list->cfg.nfacctd_net) {
                        if (list->cfg.networks_file) list->cfg.nfacctd_net |= NF_NET_NEW;
                        if (list->cfg.networks_mask) list->cfg.nfacctd_net |= NF_NET_STATIC;
                        if (!list->cfg.nfacctd_net) {
                            Log(LOG_ERR, "ERROR ( %s/%s ): network aggregation selected but none of 'uacctd_net', 'networks_file', 'networks_mask' is specified. Exiting ...\n\n", list->name, list->type.string);
                            exit(1);
                        }
                    }
                    else {
                        if ((list->cfg.nfacctd_net == NF_NET_NEW && !list->cfg.networks_file) ||
                                (list->cfg.nfacctd_net == NF_NET_STATIC && !list->cfg.networks_mask) ||
                                (list->cfg.nfacctd_net == NF_NET_BGP && !list->cfg.nfacctd_bgp) ||
                                (list->cfg.nfacctd_net == NF_NET_IGP && !list->cfg.nfacctd_isis) ||
                                (list->cfg.nfacctd_net == NF_NET_KEEP)) {
                            Log(LOG_ERR, "ERROR ( %s/%s ): network aggregation selected but none of 'bgp_daemon', 'isis_daemon', 'networks_file', 'networks_mask' is specified. Exiting ...\n\n", list->name, list->type.string);
                            exit(1);
                        }
                        if (list->cfg.nfacctd_net & NF_NET_FALLBACK && list->cfg.networks_file)
                            list->cfg.nfacctd_net |= NF_NET_NEW;
                    }
                }
                if (list->cfg.what_to_count & COUNT_CLASS && !list->cfg.classifiers_path) {
                    Log(LOG_ERR, "ERROR ( %s/%s ): 'class' aggregation selected but NO 'classifiers' key specified. Exiting...\n\n", list->name, list->type.string);
                    exit(1);
                }

                bgp_config_checks(&list->cfg);

                list->cfg.what_to_count |= COUNT_COUNTERS;
                list->cfg.data_type |= PIPE_TYPE_METADATA;
            }
        }
        list = list->next;
    }

    /* plugins glue: creation (since 094) */
    if (config.classifiers_path) {
        init_classifiers(config.classifiers_path);
        init_conntrack_table();
    }

    if (config.aggregate_primitives) {
        req.key_value_table = (void *) &custom_primitives_registry;
        load_id_file(MAP_CUSTOM_PRIMITIVES, config.aggregate_primitives, NULL, &req, &custom_primitives_allocated);
    }
    else memset(&custom_primitives_registry, 0, sizeof(custom_primitives_registry));

    /* fixing per plugin custom primitives pointers, offsets and lengths */
    list = plugins_list;
    while(list) {
        custom_primitives_reconcile(&list->cfg.cpptrs, &custom_primitives_registry);
        if (custom_primitives_vlen(&list->cfg.cpptrs)) list->cfg.data_type |= PIPE_TYPE_VLEN;
        list = list->next;
    }

    load_plugins(&req);

    if (config.handle_fragments) init_ip_fragment_handler();
    if (config.handle_flows) init_ip_flow_handler();
    load_networks(config.networks_file, &nt, &nc);

#if defined (HAVE_L2)
    device.link_type = DLT_EN10MB;
#else
    device.link_type = DLT_RAW;
#endif
    for (index = 0; _devices[index].link_type != -1; index++) {
        if (device.link_type == _devices[index].link_type)
            device.data = &_devices[index];
    }
    load_plugin_filters(device.link_type);

    cb_data.device = &device;

    /* signal handling we want to inherit to plugins (when not re-defined elsewhere) */
    signal(SIGCHLD, startup_handle_falling_child); /* takes note of plugins failed during startup phase */
    signal(SIGHUP, reload); /* handles reopening of syslog channel */
    signal(SIGUSR1, push_stats); /* logs various statistics via Log() calls */
    signal(SIGUSR2, reload_maps); /* sets to true the reload_maps flag */
    signal(SIGPIPE, SIG_IGN); /* we want to exit gracefully when a pipe is broken */

    nfh = nflog_open();
    if (nfh == NULL) {
        Log(LOG_ERR, "ERROR ( %s/core ): Failed to create Netlink NFLOG socket\n", config.name);
        nflog_close(nfh);
        exit_all(1);
    }

    Log(LOG_INFO, "INFO ( %s/core ): Successfully connected Netlink NFLOG socket\n", config.name);

    /* Bind to IPv4 (and IPv6) */
    if (nflog_unbind_pf(nfh, AF_INET) < 0) {
        Log(LOG_ERR, "ERROR ( %s/core ): Failed to unbind Netlink NFLOG socket from IPv4\n", config.name);
        nflog_close(nfh);
        exit_all(1);
    }
    if (nflog_bind_pf(nfh, AF_INET) < 0) {
        Log(LOG_ERR, "ERROR ( %s/core ): Failed to bind Netlink NFLOG socket from IPv4\n", config.name);
        nflog_close(nfh);
        exit_all(1);
    }
#if defined ENABLE_IPV6
    if (nflog_unbind_pf(nfh, AF_INET6) < 0) {
        Log(LOG_ERR, "ERROR ( %s/core ): Failed to unbind Netlink NFLOG socket from IPv6\n", config.name);
        nflog_close(nfh);
        exit_all(1);
    }
    if (nflog_bind_pf(nfh, AF_INET6) < 0) {
        Log(LOG_ERR, "ERROR ( %s/core ): Failed to bind Netlink NFLOG socket from IPv6\n", config.name);
        nflog_close(nfh);
        exit_all(1);
    }
#endif

    /* Bind to group */
    if ((nfgh = nflog_bind_group(nfh, config.uacctd_group)) == NULL) {
        Log(LOG_ERR, "ERROR ( %s/core ): Failed to join NFLOG group %d\n", config.name, config.uacctd_group);
        nflog_close(nfh);
        exit_all(1);
    }

    /* Set snaplen */
    if (nflog_set_mode(nfgh, NFULNL_COPY_PACKET, config.snaplen) < 0) {
        Log(LOG_ERR, "ERROR ( %s/core ): Failed to set snaplen to %d\n", config.name, config.snaplen);
        nflog_unbind_group(nfgh);
        nflog_close(nfh);
        exit_all(1);
    }

    /* Set threshold */
    if (nflog_set_qthresh(nfgh, config.uacctd_threshold) < 0) {
        Log(LOG_ERR, "ERROR ( %s/core ): Failed to set threshold to %d\n", config.name, config.uacctd_threshold);
        nflog_unbind_group(nfgh);
        nflog_close(nfh);
        exit_all(1);
    }

    /* Set buffer size */
    if (nflog_set_nlbufsiz(nfgh, config.uacctd_nl_size) < 0) {
        Log(LOG_ERR, "ERROR ( %s/core ): Failed to set receive buffer size to %d\n", config.name, config.uacctd_nl_size);
        nflog_unbind_group(nfgh);
        nflog_close(nfh);
        exit_all(1);
    }

    /* Turn off netlink errors from overrun. */
    if (setsockopt(nflog_fd(nfh), SOL_NETLINK, NETLINK_NO_ENOBUFS, &one, sizeof(one)))
        Log(LOG_ERR, "ERROR ( %s/core ): Failed to turn off netlink ENOBUFS\n", config.name);

    nflog_callback_register(nfgh, &nflog_incoming, &cb_data);
    nflog_buffer = malloc(config.uacctd_nl_size);
    if (nflog_buffer == NULL) {
        Log(LOG_ERR, "ERROR ( %s/core ): NFLOG buffer malloc() failed\n", config.name);
        nflog_unbind_group(nfgh);
        nflog_close(nfh);
        exit_all(1);
    }

#if defined ENABLE_THREADS
    /* starting the ISIS threa */
    if (config.nfacctd_isis) {
        req.bpf_filter = TRUE;

        nfacctd_isis_wrapper();

        /* Let's give the ISIS thread some advantage to create its structures */
        sleep(5);
    }

    /* starting the BGP thread */
    if (config.nfacctd_bgp) {
        req.bpf_filter = TRUE;
        load_comm_patterns(&config.nfacctd_bgp_stdcomm_pattern, &config.nfacctd_bgp_extcomm_pattern, &config.nfacctd_bgp_stdcomm_pattern_to_asn);

        if (config.nfacctd_bgp_peer_as_src_type == BGP_SRC_PRIMITIVES_MAP) {
            if (config.nfacctd_bgp_peer_as_src_map) {
                load_id_file(MAP_BGP_PEER_AS_SRC, config.nfacctd_bgp_peer_as_src_map, &bpas_table, &req, &bpas_map_allocated);
                cb_data.bpas_table = (u_char *) &bpas_table;
            }
            else {
                Log(LOG_ERR, "ERROR ( %s/core ): bgp_peer_as_src_type set to 'map' but no map defined. Exiting.\n", config.name);
                exit(1);
            }
        }
        else cb_data.bpas_table = NULL;

        if (config.nfacctd_bgp_src_local_pref_type == BGP_SRC_PRIMITIVES_MAP) {
            if (config.nfacctd_bgp_src_local_pref_map) {
                load_id_file(MAP_BGP_SRC_LOCAL_PREF, config.nfacctd_bgp_src_local_pref_map, &blp_table, &req, &blp_map_allocated);
                cb_data.blp_table = (u_char *) &blp_table;
            }
            else {
                Log(LOG_ERR, "ERROR ( %s/core ): bgp_src_local_pref_type set to 'map' but no map defined. Exiting.\n", config.name);
                exit(1);
            }
        }
        else cb_data.bpas_table = NULL;

        if (config.nfacctd_bgp_src_med_type == BGP_SRC_PRIMITIVES_MAP) {
            if (config.nfacctd_bgp_src_med_map) {
                load_id_file(MAP_BGP_SRC_MED, config.nfacctd_bgp_src_med_map, &bmed_table, &req, &bmed_map_allocated);
                cb_data.bmed_table = (u_char *) &bmed_table;
            }
            else {
                Log(LOG_ERR, "ERROR ( %s/core ): bgp_src_med_type set to 'map' but no map defined. Exiting.\n", config.name);
                exit(1);
            }
        }
        else cb_data.bmed_table = NULL;

        if (config.nfacctd_bgp_to_agent_map) {
            load_id_file(MAP_BGP_TO_XFLOW_AGENT, config.nfacctd_bgp_to_agent_map, &bta_table, &req, &bta_map_allocated);
            cb_data.bta_table = (u_char *) &bta_table;
        }
        else {
            Log(LOG_ERR, "ERROR ( %s/core ): 'bgp_daemon' configured but no 'bgp_agent_map' has been specified. Exiting.\n", config.name);
            exit(1);
        }

        /* Limiting BGP peers to only two: one would suffice in pmacctd
           but in case maps are reloadable (ie. bta), it could be handy
           to keep a backup feed in memory */
        config.nfacctd_bgp_max_peers = 2;

        cb_data.f_agent = (char *)&client;
        nfacctd_bgp_wrapper();

        /* Let's give the BGP thread some advantage to create its structures */
        sleep(5);
    }
#else
    if (config.nfacctd_isis) {
        Log(LOG_ERR, "ERROR ( %s/core ): 'isis_daemon' is available only with threads (--enable-threads). Exiting.\n", config.name);
        exit(1);
    }

    if (config.nfacctd_bgp) {
        Log(LOG_ERR, "ERROR ( %s/core ): 'bgp_daemon' is available only with threads (--enable-threads). Exiting.\n", config.name);
        exit(1);
    }
#endif

#if defined WITH_GEOIP
    if (config.geoip_ipv4_file || config.geoip_ipv6_file) {
        req.bpf_filter = TRUE;
    }
#endif

#if defined WITH_GEOIPV2
    if (config.geoipv2_file) {
        req.bpf_filter = TRUE;
    }
#endif

    if (config.nfacctd_flow_to_rd_map) {
        Log(LOG_ERR, "ERROR ( %s/core ): 'flow_to_rd_map' is not supported by this daemon. Exiting.\n", config.name);
        exit(1);
    }

    /* plugins glue: creation (until 093) */
    evaluate_packet_handlers();
    pm_setproctitle("%s [%s]", "Core Process", config.proc_name);
    if (config.pidfile) write_pid_file(config.pidfile);

    /* signals to be handled only by pmacctd;
       we set proper handlers after plugin creation */
    signal(SIGINT, my_sigint_handler);
    signal(SIGTERM, my_sigint_handler);
    signal(SIGCHLD, handle_falling_child);
    kill(getpid(), SIGCHLD);

    /* Main loop: if pcap_loop() exits maybe an error occurred; we will try closing
       and reopening again our listening device */
    for (;;) {
        if (len == -1) {
            if (errno != EAGAIN) {
                /* We can't deal with permanent errors.
                 * Just sleep a bit.
                 */
                Log(LOG_ERR, "ERROR ( %s/core ): Syscall returned %d: %s. Sleeping for 1 sec.\n", config.name, errno, strerror(errno));
                sleep(1);
            }
        }

        len = recv(nflog_fd(nfh), nflog_buffer, config.uacctd_nl_size, 0);
        if (len < 0) continue;
        if (nflog_handle_packet(nfh, nflog_buffer, len) != 0) continue;
    }
}
コード例 #4
0
ファイル: tee_plugin.c プロジェクト: WuHan0608/pmacct
void tee_plugin(int pipe_fd, struct configuration *cfgptr, void *ptr)
{
  struct pkt_msg *msg;
  unsigned char *pipebuf;
  struct pollfd pfd;
  int timeout, err;
  int ret, num, fd, pool_idx, recv_idx;
  struct ring *rg = &((struct channels_list_entry *)ptr)->rg;
  struct ch_status *status = ((struct channels_list_entry *)ptr)->status;
  u_int32_t bufsz = ((struct channels_list_entry *)ptr)->bufsize;
  char *dataptr, dest_addr[256], dest_serv[256];
  struct tee_receiver *target = NULL;
  struct plugin_requests req;

  unsigned char *rgptr;
  int pollagain = TRUE;
  u_int32_t seq = 1, rg_err_count = 0;

  memcpy(&config, cfgptr, sizeof(struct configuration));
  recollect_pipe_memory(ptr);
  pm_setproctitle("%s [%s]", "Tee Plugin", config.name);
  if (config.pidfile) write_pid_file_plugin(config.pidfile, config.type, config.name);
  if (config.logfile) {
    fclose(config.logfile_fd);
    config.logfile_fd = open_logfile(config.logfile, "a");
  }

  if (config.proc_priority) {
    int ret;

    ret = setpriority(PRIO_PROCESS, 0, config.proc_priority);
    if (ret) Log(LOG_WARNING, "WARN ( %s/%s ): proc_priority failed (errno: %d)\n", config.name, config.type, errno);
    else Log(LOG_INFO, "INFO ( %s/%s ): proc_priority set to %d\n", config.name, config.type, getpriority(PRIO_PROCESS, 0));
  }

  /* signal handling */
  signal(SIGINT, Tee_exit_now);
  signal(SIGUSR1, SIG_IGN);
  signal(SIGUSR2, reload_maps); /* sets to true the reload_maps flag */
  signal(SIGPIPE, SIG_IGN);
  signal(SIGCHLD, SIG_IGN);

  if (config.tee_transparent && getuid() != 0) {
    Log(LOG_ERR, "ERROR ( %s/%s ): Transparent mode requires super-user permissions. Exiting ...\n", config.name, config.type);
    exit_plugin(1);
  }

  if (config.nfprobe_receiver && config.tee_receivers) {
    Log(LOG_ERR, "ERROR ( %s/%s ): tee_receiver and tee_receivers are mutually exclusive. Exiting ...\n", config.name, config.type);
    exit_plugin(1);
  }
  else if (!config.nfprobe_receiver && !config.tee_receivers) {
    Log(LOG_ERR, "ERROR ( %s/%s ): No receivers specified: tee_receiver or tee_receivers is required. Exiting ...\n", config.name, config.type);
    exit_plugin(1);
  }

  memset(&receivers, 0, sizeof(receivers));
  memset(&req, 0, sizeof(req));
  reload_map = FALSE;

  /* Setting up pools */
  if (!config.tee_max_receiver_pools) config.tee_max_receiver_pools = MAX_TEE_POOLS;

  receivers.pools = malloc((config.tee_max_receiver_pools+1)*sizeof(struct tee_receivers_pool));
  if (!receivers.pools) {
    Log(LOG_ERR, "ERROR ( %s/%s ): unable to allocate receiver pools. Exiting ...\n", config.name, config.type);
    exit_plugin(1);
  }
  else memset(receivers.pools, 0, (config.tee_max_receiver_pools+1)*sizeof(struct tee_receivers_pool));

  /* Setting up receivers per pool */
  if (!config.tee_max_receivers) config.tee_max_receivers = MAX_TEE_RECEIVERS;

  for (pool_idx = 0; pool_idx < MAX_TEE_POOLS; pool_idx++) { 
    receivers.pools[pool_idx].receivers = malloc(config.tee_max_receivers*sizeof(struct tee_receivers));
    if (!receivers.pools[pool_idx].receivers) {
      Log(LOG_ERR, "ERROR ( %s/%s ): unable to allocate receivers for pool #%u. Exiting ...\n", config.name, config.type, pool_idx);
      exit_plugin(1);
    }
    else memset(receivers.pools[pool_idx].receivers, 0, config.tee_max_receivers*sizeof(struct tee_receivers));
  }

  if (config.nfprobe_receiver) {
    pool_idx = 0; recv_idx = 0;

    target = &receivers.pools[pool_idx].receivers[recv_idx];
    target->dest_len = sizeof(target->dest);
    if (Tee_parse_hostport(config.nfprobe_receiver, (struct sockaddr *) &target->dest, &target->dest_len)) {
      Log(LOG_ERR, "ERROR ( %s/%s ): Invalid receiver %s . ", config.name, config.type, config.nfprobe_receiver);
      exit_plugin(1);
    }
    else {
      recv_idx++; receivers.pools[pool_idx].num = recv_idx;
      pool_idx++; receivers.num = pool_idx;
    }
  }
  else if (config.tee_receivers) {
    int recvs_allocated = FALSE;

    req.key_value_table = (void *) &receivers;
    load_id_file(MAP_TEE_RECVS, config.tee_receivers, NULL, &req, &recvs_allocated);
  }

  config.sql_refresh_time = DEFAULT_TEE_REFRESH_TIME;
  timeout = config.sql_refresh_time*1000;

  pipebuf = (unsigned char *) Malloc(config.buffer_size);

  pfd.fd = pipe_fd;
  pfd.events = POLLIN;
  setnonblocking(pipe_fd);

  memset(pipebuf, 0, config.buffer_size);
  err_cant_bridge_af = 0;

  /* Arrange send socket */
  Tee_init_socks();

  /* plugin main loop */
  for (;;) {
    poll_again:
    status->wakeup = TRUE;
    ret = poll(&pfd, 1, timeout);
    if (ret < 0) goto poll_again;

    if (reload_map) {
      int recvs_allocated = FALSE;

      Tee_destroy_recvs();
      load_id_file(MAP_TEE_RECVS, config.tee_receivers, NULL, &req, &recvs_allocated);

      Tee_init_socks();
      reload_map = FALSE;
    }

    switch (ret) {
    case 0: /* timeout */
      /* reserved for future since we don't currently cache/batch/etc */
      break;
    default: /* we received data */
      read_data:
      if (!pollagain) {
        seq++;
        seq %= MAX_SEQNUM;
        if (seq == 0) rg_err_count = FALSE;
      }
      else {
        if ((ret = read(pipe_fd, &rgptr, sizeof(rgptr))) == 0)
          exit_plugin(1); /* we exit silently; something happened at the write end */
      }

      if ((rg->ptr + bufsz) > rg->end) rg->ptr = rg->base;

      if (((struct ch_buf_hdr *)rg->ptr)->seq != seq) {
        if (!pollagain) {
          pollagain = TRUE;
          goto poll_again;
        }
        else {
          rg_err_count++;
          if (config.debug || (rg_err_count > MAX_RG_COUNT_ERR)) {
            Log(LOG_ERR, "ERROR ( %s/%s ): We are missing data.\n", config.name, config.type);
            Log(LOG_ERR, "If you see this message once in a while, discard it. Otherwise some solutions follow:\n");
            Log(LOG_ERR, "- increase shared memory size, 'plugin_pipe_size'; now: '%u'.\n", config.pipe_size);
            Log(LOG_ERR, "- increase buffer size, 'plugin_buffer_size'; now: '%u'.\n", config.buffer_size);
            Log(LOG_ERR, "- increase system maximum socket size.\n\n");
          }
          seq = ((struct ch_buf_hdr *)rg->ptr)->seq;
        }
      }

      pollagain = FALSE;
      memcpy(pipebuf, rg->ptr, bufsz);
      rg->ptr += bufsz;

      msg = (struct pkt_msg *) (pipebuf+sizeof(struct ch_buf_hdr));
      Log(LOG_DEBUG, "DEBUG ( %s/%s ): buffer received seq=%u num_entries=%u\n", config.name, config.type, seq, ((struct ch_buf_hdr *)pipebuf)->num);

      while (((struct ch_buf_hdr *)pipebuf)->num > 0) {
	for (pool_idx = 0; pool_idx < receivers.num; pool_idx++) {
	  if (!evaluate_tags(&receivers.pools[pool_idx].tag_filter, msg->tag)) {
	    if (!receivers.pools[pool_idx].balance.func) {
	      for (recv_idx = 0; recv_idx < receivers.pools[pool_idx].num; recv_idx++) {
	        target = &receivers.pools[pool_idx].receivers[recv_idx];
	        Tee_send(msg, (struct sockaddr *) &target->dest, target->fd);
	      }
	    }
	    else {
	      target = receivers.pools[pool_idx].balance.func(&receivers.pools[pool_idx], msg);
	      Tee_send(msg, (struct sockaddr *) &target->dest, target->fd);
	    }
	  }
	}

        ((struct ch_buf_hdr *)pipebuf)->num--;
        if (((struct ch_buf_hdr *)pipebuf)->num) {
	  dataptr = (unsigned char *) msg;
          dataptr += PmsgSz;
	  msg = (struct pkt_msg *) dataptr;
	}
      }
      goto read_data;
    }
  }  
}
コード例 #5
0
ファイル: isis.c プロジェクト: Rosiak/pmacct
void skinny_isis_daemon()
{
  char errbuf[PCAP_ERRBUF_SIZE];
  struct pcap_device device;
  struct pcap_isis_callback_data cb_data;
  struct host_addr addr;
  struct prefix_ipv4 *ipv4;
  struct plugin_requests req;
  int index, ret;

  char area_tag[] = "default";
  struct isis_area *area;
  struct isis_circuit *circuit;
  struct interface interface;

  memset(&device, 0, sizeof(struct pcap_device));
  memset(&cb_data, 0, sizeof(cb_data));
  memset(&interface, 0, sizeof(interface));
  memset(&isis_spf_deadline, 0, sizeof(isis_spf_deadline));

  memset(&ime, 0, sizeof(ime));
  memset(&req, 0, sizeof(req));
  reload_map = FALSE;
  glob_isis_seq_num = 0;

  /* initializing IS-IS structures */
  isis = NULL;
  isis_init();
  dyn_cache_init();

  /* thread master */
  master = thread_master_create();

  if (!config.nfacctd_isis_iface && !config.igp_daemon_map) {
    Log(LOG_ERR, "ERROR ( %s/core/ISIS ): No 'isis_daemon_iface' and 'igp_daemon_map' values specified. Terminating thread.\n", config.name);
    exit_all(1);
  }
  else if (config.nfacctd_isis_iface && config.igp_daemon_map) {
    Log(LOG_ERR, "ERROR ( %s/core/ISIS ): 'isis_daemon_iface' and 'igp_daemon_map' are mutually exclusive. Terminating thread.\n", config.name);
    exit_all(1);
  }

  if (config.nfacctd_isis_iface) {
    if ((device.dev_desc = pcap_open_live(config.nfacctd_isis_iface, 65535, 0, 1000, errbuf)) == NULL) {
      Log(LOG_ERR, "ERROR ( %s/core/ISIS ): pcap_open_live(): %s\n", config.name, errbuf);
      exit(1);
    }

    device.link_type = pcap_datalink(device.dev_desc);
    for (index = 0; _isis_devices[index].link_type != -1; index++) {
      if (device.link_type == _isis_devices[index].link_type)
        device.data = &_isis_devices[index];
    }

    if (device.data == NULL) {
      Log(LOG_ERR, "ERROR ( %s/core/ISIS ): data link not supported: %d\n", config.name, device.link_type);
      return;
    }
    else {
      Log(LOG_INFO, "OK ( %s/core/ISIS ): link type is: %d\n", config.name, device.link_type);
      cb_data.device = &device;
    }
  }

  if (config.igp_daemon_map) {
    int igp_map_allocated = FALSE;

    glob_isis_seq_num++;
    req.key_value_table = (void *) &ime;
    memset(&sysid_fragment_table, 0, sizeof(sysid_fragment_table));
    load_id_file(MAP_IGP, config.igp_daemon_map, NULL, &req, &igp_map_allocated);
  }

  area = isis_area_create();
  area->area_tag = area_tag;
  area->is_type = IS_LEVEL_2;
  area->newmetric = TRUE;
  isis_listnode_add(isis->area_list, area);
  Log(LOG_DEBUG, "DEBUG ( %s/core/ISIS ): New IS-IS area instance %s\n", config.name, area->area_tag);
  if (config.nfacctd_isis_net) area_net_title(area, config.nfacctd_isis_net);
  else {
    Log(LOG_ERR, "ERROR ( %s/core/ISIS ): 'isis_daemon_net' value is not specified. Terminating thread.\n", config.name);
    exit_all(1);
  }

  circuit = isis_circuit_new();
  circuit->circ_type = CIRCUIT_T_P2P;
  if (config.nfacctd_isis_iface) {
    circuit->fd = pcap_fileno(device.dev_desc);
    circuit->tx = isis_send_pdu_p2p;
  }
  else {
    circuit->fd = 0;
    circuit->tx = NULL;
  }
  circuit->interface = &interface;
  circuit->state = C_STATE_UP;

  if (config.nfacctd_isis_ip) {
    trim_spaces(config.nfacctd_isis_ip);
    ret = str_to_addr(config.nfacctd_isis_ip, &addr);
    if (!ret) {
      Log(LOG_ERR, "ERROR ( %s/core/ISIS ): 'isis_daemon_ip' value is not a valid IPv4/IPv6 address. Terminating thread.\n", config.name);
      exit_all(1);
    }
  }
  else {
    Log(LOG_ERR, "ERROR ( %s/core/ISIS ): 'isis_daemon_ip' value is not specified. Terminating thread.\n", config.name);
    exit_all(1);
  }

  circuit->ip_router = addr.address.ipv4.s_addr;
  ipv4 = isis_prefix_ipv4_new();
  ipv4->prefixlen = 32;
  ipv4->prefix.s_addr = addr.address.ipv4.s_addr;
  circuit->ip_addrs = isis_list_new();
  isis_listnode_add(circuit->ip_addrs, ipv4);

  circuit_update_nlpids(circuit);
  isis_circuit_configure(circuit, area);
  cb_data.circuit = circuit;

  area->ip_circuits = 1;
  if (config.nfacctd_isis_iface) {
    memcpy(circuit->interface->name, config.nfacctd_isis_iface, strlen(config.nfacctd_isis_iface));
    circuit->interface->ifindex = if_nametoindex(config.nfacctd_isis_iface);
  }
  else {
    // XXX
  }

  if (!config.nfacctd_isis_mtu) config.nfacctd_isis_mtu = SNAPLEN_ISIS_DEFAULT;

  if (config.nfacctd_isis_iface) {
    for (;;) {
      /* XXX: should get a select() here at some stage? */
      pcap_loop(device.dev_desc, -1, isis_pdu_runner, (u_char *) &cb_data);

      break;
    }

    pcap_close(device.dev_desc);
  }
  else if (config.igp_daemon_map) {
    for (;;) {
      sleep(3);

      if (reload_map) {
        int igp_map_allocated = FALSE;

	glob_isis_seq_num++;
	memset(&sysid_fragment_table, 0, sizeof(sysid_fragment_table));
        load_id_file(MAP_IGP, config.igp_daemon_map, NULL, &req, &igp_map_allocated);
	reload_map = FALSE;
      }
    }
  }
}