static void
get_property (GObject *object,
              guint prop_id,
              GValue *value,
              GParamSpec *pspec)
{
	NMDeviceEthernet *device = NM_DEVICE_ETHERNET (object);

	_nm_object_ensure_inited (NM_OBJECT (object));

	switch (prop_id) {
	case PROP_HW_ADDRESS:
		g_value_set_string (value, nm_device_ethernet_get_hw_address (device));
		break;
	case PROP_PERM_HW_ADDRESS:
		g_value_set_string (value, nm_device_ethernet_get_permanent_hw_address (device));
		break;
	case PROP_SPEED:
		g_value_set_uint (value, nm_device_ethernet_get_speed (device));
		break;
	case PROP_CARRIER:
		g_value_set_boolean (value, nm_device_ethernet_get_carrier (device));
		break;
	default:
		G_OBJECT_WARN_INVALID_PROPERTY_ID (object, prop_id, pspec);
		break;
	}
}
static void
get_property (GObject *object,
              guint prop_id,
              GValue *value,
              GParamSpec *pspec)
{
	NMDeviceEthernet *device = NM_DEVICE_ETHERNET (object);
	NMDeviceEthernetPrivate *priv = NM_DEVICE_ETHERNET_GET_PRIVATE (device);

	switch (prop_id) {
	case PROP_HW_ADDRESS:
		g_value_set_string (value, nm_device_ethernet_get_hw_address (device));
		break;
	case PROP_PERM_HW_ADDRESS:
		g_value_set_string (value, nm_device_ethernet_get_permanent_hw_address (device));
		break;
	case PROP_SPEED:
		g_value_set_uint (value, nm_device_ethernet_get_speed (device));
		break;
	case PROP_CARRIER:
		g_value_set_boolean (value, nm_device_ethernet_get_carrier (device));
		break;
	case PROP_S390_SUBCHANNELS:
		g_value_set_boxed (value, priv->s390_subchannels);
		break;
	default:
		G_OBJECT_WARN_INVALID_PROPERTY_ID (object, prop_id, pspec);
		break;
	}
}
Beispiel #3
0
static void
synchronize_device_ethernet (Network *self,
                             Netinterface *iface,
                             NMDeviceEthernet *device)
{
  cockpit_network_netinterface_set_hw_address (COCKPIT_NETWORK_NETINTERFACE (iface),
                                               nm_device_ethernet_get_hw_address (device));
}
static const char *
ethernet_get_hw_address (NMDeviceItem *item)
{
    NMDeviceEthernet *device;

    device = NM_DEVICE_ETHERNET (nm_device_item_get_device (NM_DEVICE_ITEM (item)));

    return nm_device_ethernet_get_hw_address (device);
}
static gboolean
check_ethernet_compatible (NMDeviceEthernet *device, NMConnection *connection, GError **error)
{
        NMSettingConnection *s_con;
        NMSettingWired *s_wired;
        const char *connection_type;
        gboolean is_pppoe = FALSE;

        g_return_val_if_fail (error == NULL || *error == NULL, FALSE);

        s_con = NM_SETTING_CONNECTION (nm_connection_get_setting (connection, NM_TYPE_SETTING_CONNECTION));
        g_assert (s_con);

        connection_type = nm_setting_connection_get_connection_type (s_con);
        if (   strcmp (connection_type, NM_SETTING_WIRED_SETTING_NAME)
            && strcmp (connection_type, NM_SETTING_PPPOE_SETTING_NAME)) {
                g_set_error (error, 0, 0,
                             "The connection was not a wired or PPPoE connection.");
                return FALSE;
        }

        if (!strcmp (connection_type, NM_SETTING_PPPOE_SETTING_NAME))
                is_pppoe = TRUE;

        s_wired = (NMSettingWired *) nm_connection_get_setting (connection, NM_TYPE_SETTING_WIRED);
        /* Wired setting is optional for PPPoE */
        if (!is_pppoe && !s_wired) {
                g_set_error (error, 0, 0,
                             "The connection was not a valid wired connection.");
                return FALSE;
        }

        if (s_wired) {
                const GByteArray *mac;
                const char *device_mac_str;
                struct ether_addr *device_mac;

                device_mac_str = nm_device_ethernet_get_hw_address (device);
                device_mac = ether_aton (device_mac_str);
                if (!device_mac) {
                        g_set_error (error, 0, 0, "Invalid device MAC address.");
                        return FALSE;
                }

                mac = nm_setting_wired_get_mac_address (s_wired);
                if (mac && memcmp (mac->data, device_mac->ether_addr_octet, ETH_ALEN)) {
                        g_set_error (error, 0, 0,
                                     "The connection's MAC address did not match this device.");
                        return FALSE;
                }
        }

        // FIXME: check bitrate against device capabilities

        return TRUE;
}
static void
dump_wired (NMDeviceEthernet *device)
{
	const char *str;

	g_print ("Speed: %d\n", nm_device_ethernet_get_speed (device));

	str = nm_device_ethernet_get_hw_address (device);
	g_print ("MAC: %s\n", str);
}
static void
add_details (GtkWidget *details, NMDevice *device, NMConnection *connection)
{
        NMIP4Config *ip4_config = NULL;
        NMIP6Config *ip6_config = NULL;
        gchar *ip4_address = NULL;
        gchar *ip4_route = NULL;
        gchar *ip4_dns = NULL;
        gchar *ip6_address = NULL;
        gint i = 0;

        ip4_config = nm_device_get_ip4_config (device);
        if (ip4_config) {
                ip4_address = panel_get_ip4_address_as_string (ip4_config, "address");
                ip4_route = panel_get_ip4_address_as_string (ip4_config, "gateway");
                ip4_dns = panel_get_ip4_dns_as_string (ip4_config);
        }
        ip6_config = nm_device_get_ip6_config (device);
        if (ip6_config) {
                ip6_address = panel_get_ip6_address_as_string (ip6_config);
        }

        if (ip4_address && ip6_address) {
                add_details_row (details, i++, _("IPv4 Address"), ip4_address);
                add_details_row (details, i++, _("IPv6 Address"), ip6_address);
        } else if (ip4_address) {
                add_details_row (details, i++, _("IP Address"), ip4_address);
        } else if (ip6_address) {
                add_details_row (details, i++, _("IPv6 Address"), ip6_address);
        }

        add_details_row (details, i++, _("Hardware Address"),
                         nm_device_ethernet_get_hw_address (NM_DEVICE_ETHERNET (device)));

        if (ip4_route)
                add_details_row (details, i++, _("Default Route"), ip4_route);
        if (ip4_dns)
                add_details_row (details, i++, _("DNS"), ip4_dns);

        if (nm_device_get_state (device) != NM_DEVICE_STATE_ACTIVATED) {
                gchar *last_used;
                last_used = get_last_used_string (connection);
                add_details_row (details, i++, _("Last used"), last_used);
                g_free (last_used);
        }

        g_free (ip4_address);
        g_free (ip4_route);
        g_free (ip4_dns);
        g_free (ip6_address);
}
static void
show_ethernet_specific_info (NMDevice * dev) {
	NMDeviceEthernet * device = NM_DEVICE_ETHERNET (dev);

	gboolean carrier;
	const char * hw_address;
	guint32 speed;

	gchar * carrier_str;

	carrier = nm_device_ethernet_get_carrier (device);
	hw_address = nm_device_ethernet_get_hw_address (device);
	speed = nm_device_ethernet_get_speed   (device);

	carrier_str = (carrier ? "online" : "offline");

	g_print ("%-9s HWaddr:%s  Carrier:%s", "", hw_address, carrier_str);
	if(carrier)
		g_print ("  Speed:%dMb/s", speed);
	g_print ("\n");
}
Beispiel #9
0
/* return value must not be freed! */
static const gchar *
get_mac_address_of_device (NMDevice *device)
{
  const gchar *mac = NULL;
  switch (nm_device_get_device_type (device))
    {
    case NM_DEVICE_TYPE_WIFI:
      {
        NMDeviceWifi *device_wifi = NM_DEVICE_WIFI (device);
        mac = nm_device_wifi_get_hw_address (device_wifi);
        break;
      }
    case NM_DEVICE_TYPE_ETHERNET:
      {
        NMDeviceEthernet *device_ethernet = NM_DEVICE_ETHERNET (device);
        mac = nm_device_ethernet_get_hw_address (device_ethernet);
        break;
      }
    case NM_DEVICE_TYPE_WIMAX:
      {
        NMDeviceWimax *device_wimax = NM_DEVICE_WIMAX (device);
        mac = nm_device_wimax_get_hw_address (device_wimax);
        break;
      }
    case NM_DEVICE_TYPE_INFINIBAND:
      {
        NMDeviceInfiniband *device_infiniband = NM_DEVICE_INFINIBAND (device);
        mac = nm_device_infiniband_get_hw_address (device_infiniband);
        break;
      }
    default:
      break;
    }
  /* no MAC address found */
  return mac;
}
Beispiel #10
0
static void
detail_device (gpointer data, gpointer user_data)
{
	NMDevice *device = NM_DEVICE (data);
	char *tmp;
	NMDeviceState state;
	guint32 caps;
	guint32 speed;
	const GArray *array;
	gboolean is_default = FALSE;
	const char *id = NULL;
	NMActiveConnection *active;

	active = nm_device_get_active_connection (device);
	if (active) {
		NMConnection *connection;
		NMSettingConnection *s_con;

		is_default = nm_active_connection_get_default (active);

		connection = get_connection_for_active (active);
		if (connection) {
			s_con = nm_connection_get_setting_connection (connection);
			if (s_con)
				id = nm_setting_connection_get_id (s_con);
		}
	}

	print_header ("Device", nm_device_get_iface (device), id);

	/* General information */
	if (NM_IS_DEVICE_ETHERNET (device))
		print_string ("Type", "Wired");
	else if (NM_IS_DEVICE_WIFI (device))
		print_string ("Type", "802.11 WiFi");
	else if (NM_IS_DEVICE_MODEM (device)) {
		NMDeviceModemCapabilities modem_caps;

		modem_caps = nm_device_modem_get_current_capabilities (NM_DEVICE_MODEM (device));
		if (modem_caps & NM_DEVICE_MODEM_CAPABILITY_GSM_UMTS)
			print_string ("Type", "Mobile Broadband (GSM)");
		else if (modem_caps & NM_DEVICE_MODEM_CAPABILITY_CDMA_EVDO)
			print_string ("Type", "Mobile Broadband (CDMA)");
		else
			print_string ("Type", "Mobile Broadband (unknown)");
	} else if (NM_IS_DEVICE_BT (device))
		print_string ("Type", "Bluetooth");
	else if (NM_IS_DEVICE_WIMAX (device))
		print_string ("Type", "WiMAX");

	print_string ("Driver", nm_device_get_driver (device) ? nm_device_get_driver (device) : "(unknown)");

	state = nm_device_get_state (device);
	print_string ("State", get_dev_state_string (state));

	if (is_default)
		print_string ("Default", "yes");
	else
		print_string ("Default", "no");

	tmp = NULL;
	if (NM_IS_DEVICE_ETHERNET (device))
		tmp = g_strdup (nm_device_ethernet_get_hw_address (NM_DEVICE_ETHERNET (device)));
	else if (NM_IS_DEVICE_WIFI (device))
		tmp = g_strdup (nm_device_wifi_get_hw_address (NM_DEVICE_WIFI (device)));
	else if (NM_IS_DEVICE_WIMAX (device))
		tmp = g_strdup (nm_device_wimax_get_hw_address (NM_DEVICE_WIMAX (device)));

	if (tmp) {
		print_string ("HW Address", tmp);
		g_free (tmp);
	}

	/* Capabilities */
	caps = nm_device_get_capabilities (device);
	printf ("\n  Capabilities:\n");
	if (caps & NM_DEVICE_CAP_CARRIER_DETECT)
		print_string ("  Carrier Detect", "yes");

	speed = 0;
	if (NM_IS_DEVICE_ETHERNET (device)) {
		/* Speed in Mb/s */
		speed = nm_device_ethernet_get_speed (NM_DEVICE_ETHERNET (device));
	} else if (NM_IS_DEVICE_WIFI (device)) {
		/* Speed in b/s */
		speed = nm_device_wifi_get_bitrate (NM_DEVICE_WIFI (device));
		speed /= 1000;
	}

	if (speed) {
		char *speed_string;

		speed_string = g_strdup_printf ("%u Mb/s", speed);
		print_string ("  Speed", speed_string);
		g_free (speed_string);
	}

	/* Wireless specific information */
	if ((NM_IS_DEVICE_WIFI (device))) {
		guint32 wcaps;
		NMAccessPoint *active_ap = NULL;
		const char *active_bssid = NULL;
		const GPtrArray *aps;

		printf ("\n  Wireless Properties\n");

		wcaps = nm_device_wifi_get_capabilities (NM_DEVICE_WIFI (device));

		if (wcaps & (NM_WIFI_DEVICE_CAP_CIPHER_WEP40 | NM_WIFI_DEVICE_CAP_CIPHER_WEP104))
			print_string ("  WEP Encryption", "yes");
		if (wcaps & NM_WIFI_DEVICE_CAP_WPA)
			print_string ("  WPA Encryption", "yes");
		if (wcaps & NM_WIFI_DEVICE_CAP_RSN)
			print_string ("  WPA2 Encryption", "yes");

		if (nm_device_get_state (device) == NM_DEVICE_STATE_ACTIVATED) {
			active_ap = nm_device_wifi_get_active_access_point (NM_DEVICE_WIFI (device));
			active_bssid = active_ap ? nm_access_point_get_hw_address (active_ap) : NULL;
		}

		printf ("\n  Wireless Access Points %s\n", active_ap ? "(* = current AP)" : "");

		aps = nm_device_wifi_get_access_points (NM_DEVICE_WIFI (device));
		if (aps && aps->len)
			g_ptr_array_foreach ((GPtrArray *) aps, detail_access_point, (gpointer) active_bssid);
	} else if (NM_IS_DEVICE_ETHERNET (device)) {
		printf ("\n  Wired Properties\n");

		if (nm_device_ethernet_get_carrier (NM_DEVICE_ETHERNET (device)))
			print_string ("  Carrier", "on");
		else
			print_string ("  Carrier", "off");
	} else if (NM_IS_DEVICE_WIMAX (device)) {
		NMDeviceWimax *wimax = NM_DEVICE_WIMAX (device);
		NMWimaxNsp *active_nsp = NULL;
		const char *active_name = NULL;
		const GPtrArray *nsps;

		if (nm_device_get_state (device) == NM_DEVICE_STATE_ACTIVATED) {
			guint tmp_uint;
			gint tmp_int;
			const char *tmp_str;

			active_nsp = nm_device_wimax_get_active_nsp (wimax);
			active_name = active_nsp ? nm_wimax_nsp_get_name (active_nsp) : NULL;

			printf ("\n  Link Status\n");

			tmp_uint = nm_device_wimax_get_center_frequency (wimax);
			if (tmp_uint)
				tmp = g_strdup_printf ("%'.1f MHz", (double) tmp_uint / 1000.0);
			else
				tmp = g_strdup ("(unknown)");
			print_string ("  Center Freq.", tmp);
			g_free (tmp);

			tmp_int = nm_device_wimax_get_rssi (wimax);
			if (tmp_int)
				tmp = g_strdup_printf ("%d dBm", tmp_int);
			else
				tmp = g_strdup ("(unknown)");
			print_string ("  RSSI", tmp);
			g_free (tmp);

			tmp_int = nm_device_wimax_get_cinr (wimax);
			if (tmp_int)
				tmp = g_strdup_printf ("%d dB", tmp_int);
			else
				tmp = g_strdup ("(unknown)");
			print_string ("  CINR", tmp);
			g_free (tmp);

			tmp_int = nm_device_wimax_get_tx_power (wimax);
			if (tmp_int)
				tmp = g_strdup_printf ("%'.2f dBm", (float) tmp_int / 2.0);
			else
				tmp = g_strdup ("(unknown)");
			print_string ("  TX Power", tmp);
			g_free (tmp);

			tmp_str = nm_device_wimax_get_bsid (wimax);
			if (tmp_str)
				print_string ("  BSID", tmp_str);
			else
				print_string ("  BSID", "(unknown)");
		}

		printf ("\n  WiMAX NSPs %s\n", active_nsp ? "(* current NSP)" : "");

		nsps = nm_device_wimax_get_nsps (NM_DEVICE_WIMAX (device));
		if (nsps && nsps->len)
			g_ptr_array_foreach ((GPtrArray *) nsps, detail_nsp, (gpointer) active_name);
	}

	/* IP Setup info */
	if (state == NM_DEVICE_STATE_ACTIVATED) {
		NMIP4Config *cfg4 = nm_device_get_ip4_config (device);
		NMIP6Config *cfg6 = nm_device_get_ip6_config (device);
		GSList *iter;

		if (cfg4) {
			printf ("\n  IPv4 Settings:\n");

			for (iter = (GSList *) nm_ip4_config_get_addresses (cfg4); iter; iter = g_slist_next (iter)) {
				NMIP4Address *addr = (NMIP4Address *) iter->data;
				guint32 prefix = nm_ip4_address_get_prefix (addr);
				char *tmp2;

				tmp = ip4_address_as_string (nm_ip4_address_get_address (addr));
				print_string ("  Address", tmp);
				g_free (tmp);

				tmp2 = ip4_address_as_string (nm_utils_ip4_prefix_to_netmask (prefix));
				tmp = g_strdup_printf ("%d (%s)", prefix, tmp2);
				g_free (tmp2);
				print_string ("  Prefix", tmp);
				g_free (tmp);

				tmp = ip4_address_as_string (nm_ip4_address_get_gateway (addr));
				print_string ("  Gateway", tmp);
				g_free (tmp);
				printf ("\n");
			}

			array = nm_ip4_config_get_nameservers (cfg4);
			if (array) {
				int i;

				for (i = 0; i < array->len; i++) {
					tmp = ip4_address_as_string (g_array_index (array, guint32, i));
					print_string ("  DNS", tmp);
					g_free (tmp);
				}
			}
		}

		if (cfg6) {
			printf ("\n  IPv6 Settings:\n");

			for (iter = (GSList *) nm_ip6_config_get_addresses (cfg6); iter; iter = g_slist_next (iter)) {
				NMIP6Address *addr = (NMIP6Address *) iter->data;
				guint32 prefix = nm_ip6_address_get_prefix (addr);

				tmp = ip6_address_as_string (nm_ip6_address_get_address (addr));
				print_string ("  Address", tmp);
				g_free (tmp);

				tmp = g_strdup_printf ("%d", prefix);
				print_string ("  Prefix", tmp);
				g_free (tmp);

				tmp = ip6_address_as_string (nm_ip6_address_get_gateway (addr));
				print_string ("  Gateway", tmp);
				g_free (tmp);
				printf ("\n");
			}

			for (iter = (GSList *) nm_ip6_config_get_nameservers (cfg6); iter; iter = g_slist_next (iter)) {
				tmp = ip6_address_as_string (iter->data);
				print_string ("  DNS", tmp);
				g_free (tmp);
			}
		}
	}

	printf ("\n\n");
}
static const char *
get_hw_address (NMDevice *device)
{
	return nm_device_ethernet_get_hw_address (NM_DEVICE_ETHERNET (device));
}
Beispiel #12
0
static void
info_dialog_add_page (GtkNotebook *notebook,
					  NMConnection *connection,
					  gboolean is_default,
					  NMDevice *device)
{
	GtkTable *table;
	guint32 speed = 0;
	char *str;
	const char *iface;
	NMIP4Config *ip4_config;
	const GArray *dns;
	NMIP4Address *def_addr = NULL;
	guint32 hostmask, network, bcast, netmask;
	int row = 0;
	SpeedInfo* info = NULL;
	GtkWidget* speed_label;
	const GSList *addresses;

	table = GTK_TABLE (gtk_table_new (12, 2, FALSE));
	gtk_table_set_col_spacings (table, 12);
	gtk_table_set_row_spacings (table, 6);
	gtk_container_set_border_width (GTK_CONTAINER (table), 12);

	/* Interface */
	iface = nm_device_get_iface (device);
	if (NM_IS_DEVICE_ETHERNET (device))
		str = g_strdup_printf (_("Ethernet (%s)"), iface);
	else if (NM_IS_DEVICE_WIFI (device))
		str = g_strdup_printf (_("802.11 WiFi (%s)"), iface);
	else if (NM_IS_GSM_DEVICE (device))
		str = g_strdup_printf (_("GSM (%s)"), iface);
	else if (NM_IS_CDMA_DEVICE (device))
		str = g_strdup_printf (_("CDMA (%s)"), iface);
	else
		str = g_strdup (iface);

	gtk_table_attach_defaults (table,
							   create_info_label (_("Interface:"), FALSE),
							   0, 1, row, row + 1);
	gtk_table_attach_defaults (table,
							   create_info_label (str, TRUE),
							   1, 2, row, row + 1);
	g_free (str);
	row++;

	/* Hardware address */
	str = NULL;
	if (NM_IS_DEVICE_ETHERNET (device))
		str = g_strdup (nm_device_ethernet_get_hw_address (NM_DEVICE_ETHERNET (device)));
	else if (NM_IS_DEVICE_WIFI (device))
		str = g_strdup (nm_device_wifi_get_hw_address (NM_DEVICE_WIFI (device)));

	gtk_table_attach_defaults (table,
							   create_info_label (_("Hardware Address:"), FALSE),
							   0, 1, row, row + 1);
	gtk_table_attach_defaults (table,
							   create_info_label (str, TRUE),
							   1, 2, row, row + 1);
	g_free (str);
	row++;

	/* Driver */
	gtk_table_attach_defaults (table,
							   create_info_label (_("Driver:"), FALSE),
							   0, 1, row, row + 1);
	gtk_table_attach_defaults (table,
							   create_info_label (nm_device_get_driver (device), TRUE),
							   1, 2, row, row + 1);
	row++;

	speed_label = create_info_label ("", TRUE);

	/* Speed */
	str = NULL;
	if (NM_IS_DEVICE_ETHERNET (device)) {
		/* Wired speed in Mb/s */
		speed = nm_device_ethernet_get_speed (NM_DEVICE_ETHERNET (device));
	} else if (NM_IS_DEVICE_WIFI (device)) {
		/* Wireless speed in Kb/s */
		speed = nm_device_wifi_get_bitrate (NM_DEVICE_WIFI (device)) / 1000;

		/* Listen for wifi speed changes */
		info = g_malloc0 (sizeof (SpeedInfo));
		info->device = device;
		info->label = speed_label;
		info->id = g_signal_connect (device,
		                             "notify::" NM_DEVICE_WIFI_BITRATE,
		                             G_CALLBACK (bitrate_changed_cb),
		                             speed_label);

		g_object_weak_ref (G_OBJECT(speed_label), label_destroyed, info);
		g_object_weak_ref (G_OBJECT(device), device_destroyed, info);
	}

	if (speed)
		str = g_strdup_printf (_("%u Mb/s"), speed);

	gtk_label_set_text (GTK_LABEL(speed_label), str ? str : _("Unknown"));
	g_free (str);

	gtk_table_attach_defaults (table,
							   create_info_label (_("Speed:"), FALSE),
							   0, 1, row, row + 1);
	gtk_table_attach_defaults (table,
							   speed_label,
							   1, 2, row, row + 1);
	row++;

	/* Security */
	gtk_table_attach_defaults (table,
							   create_info_label (_("Security:"), FALSE),
							   0, 1, row, row + 1);
	gtk_table_attach_defaults (table,
							   create_info_label_security (connection),
							   1, 2, row, row + 1);
	row++;

	/* Empty line */
	gtk_table_attach_defaults (table,
							   gtk_label_new (""),
							   0, 2, row, row + 1);
	row++;

	/* IP4 */

	ip4_config = nm_device_get_ip4_config (device);
	addresses = nm_ip4_config_get_addresses (ip4_config);
	if (g_slist_length ((GSList *) addresses))
		def_addr = addresses->data;

	/* Address */
	gtk_table_attach_defaults (table,
							   create_info_label (_("IP Address:"), FALSE),
							   0, 1, row, row + 1);
	str = def_addr ? ip4_address_as_string (nm_ip4_address_get_address (def_addr)) : g_strdup (_("Unknown"));
	gtk_table_attach_defaults (table,
							   create_info_label (str, TRUE),
							   1, 2, row, row + 1);
	g_free (str);
	row++;

	/* Broadcast */
	if (def_addr) {
		netmask = nm_utils_ip4_prefix_to_netmask (nm_ip4_address_get_prefix (def_addr));
		network = ntohl (nm_ip4_address_get_address (def_addr)) & ntohl (netmask);
		hostmask = ~ntohl (netmask);
		bcast = htonl (network | hostmask);
	}

	gtk_table_attach_defaults (table,
							   create_info_label (_("Broadcast Address:"), FALSE),
							   0, 1, row, row + 1);
	str = def_addr ? ip4_address_as_string (bcast) : g_strdup (_("Unknown"));
	gtk_table_attach_defaults (table,
							   create_info_label (str, TRUE),
							   1, 2, row, row + 1);
	g_free (str);
	row++;

	/* Prefix */
	gtk_table_attach_defaults (table,
							   create_info_label (_("Subnet Mask:"), FALSE),
							   0, 1, row, row + 1);
	str = def_addr ? ip4_address_as_string (netmask) : g_strdup (_("Unknown"));
	gtk_table_attach_defaults (table,
							   create_info_label (str, TRUE),
							   1, 2, row, row + 1);
	g_free (str);
	row++;

	/* Gateway */
	if (def_addr && nm_ip4_address_get_gateway (def_addr)) {
		gtk_table_attach_defaults (table,
								   create_info_label (_("Default Route:"), FALSE),
								   0, 1, row, row + 1);
		str = ip4_address_as_string (nm_ip4_address_get_gateway (def_addr));
		gtk_table_attach_defaults (table,
								   create_info_label (str, TRUE),
								   1, 2, row, row + 1);
		g_free (str);
		row++;
	}

	/* DNS */
	dns = def_addr ? nm_ip4_config_get_nameservers (ip4_config) : NULL;
	if (dns && dns->len) {
		gtk_table_attach_defaults (table,
								   create_info_label (_("Primary DNS:"), FALSE),
								   0, 1, row, row + 1);
		str = ip4_address_as_string (g_array_index (dns, guint32, 0));
		gtk_table_attach_defaults (table,
								   create_info_label (str, TRUE),
								   1, 2, row, row + 1);
		g_free (str);
		row++;

		if (dns->len > 1) {
			gtk_table_attach_defaults (table,
									   create_info_label (_("Secondary DNS:"), FALSE),
									   0, 1, row, row + 1);
			str = ip4_address_as_string (g_array_index (dns, guint32, 1));
			gtk_table_attach_defaults (table,
									   create_info_label (str, TRUE),
									   1, 2, row, row + 1);
			g_free (str);
			row++;
		}
	}

	gtk_notebook_append_page (notebook, GTK_WIDGET (table),
							  create_info_notebook_label (connection, is_default));

	gtk_widget_show_all (GTK_WIDGET (table));
}
Beispiel #13
0
static void
detail_device (gpointer data, gpointer user_data)
{
	NMDevice *device = NM_DEVICE (data);
	struct cb_info *info = user_data;
	char *tmp;
	NMDeviceState state;
	guint32 caps;
	guint32 speed;
	const GArray *array;
	int j;
	gboolean is_default = FALSE;
	const char *id = NULL;

	state = nm_device_get_state (device);

	for (j = 0; info->active && (j < info->active->len); j++) {
		NMActiveConnection *candidate = g_ptr_array_index (info->active, j);
		const GPtrArray *devices = nm_active_connection_get_devices (candidate);
		NMDevice *candidate_dev;
		NMConnection *connection;
		NMSettingConnection *s_con;

		if (!devices || !devices->len)
			continue;
		candidate_dev = g_ptr_array_index (devices, 0);

		if (candidate_dev == device) {
			if (nm_active_connection_get_default (candidate))
				is_default = TRUE;

			connection = get_connection_for_active (candidate);
			if (!connection)
				break;

			s_con = (NMSettingConnection *) nm_connection_get_setting (connection, NM_TYPE_SETTING_CONNECTION);
			if (s_con)
				id = nm_setting_connection_get_id (s_con);
			break;
		}
	}

	print_header ("Device", nm_device_get_iface (device), id);

	/* General information */
	if (NM_IS_DEVICE_ETHERNET (device))
		print_string ("Type", "Wired");
	else if (NM_IS_DEVICE_WIFI (device))
		print_string ("Type", "802.11 WiFi");
	else if (NM_IS_GSM_DEVICE (device))
		print_string ("Type", "Mobile Broadband (GSM)");
	else if (NM_IS_CDMA_DEVICE (device))
		print_string ("Type", "Mobile Broadband (CDMA)");
	else if (NM_IS_DEVICE_BT (device))
		print_string ("Type", "Bluetooth");

	print_string ("Driver", nm_device_get_driver (device) ? nm_device_get_driver (device) : "(unknown)");

	print_string ("State", get_dev_state_string (state));

	if (is_default)
		print_string ("Default", "yes");
	else
		print_string ("Default", "no");

	tmp = NULL;
	if (NM_IS_DEVICE_ETHERNET (device))
		tmp = g_strdup (nm_device_ethernet_get_hw_address (NM_DEVICE_ETHERNET (device)));
	else if (NM_IS_DEVICE_WIFI (device))
		tmp = g_strdup (nm_device_wifi_get_hw_address (NM_DEVICE_WIFI (device)));

	if (tmp) {
		print_string ("HW Address", tmp);
		g_free (tmp);
	}

	/* Capabilities */
	caps = nm_device_get_capabilities (device);
	printf ("\n  Capabilities:\n");
	if (caps & NM_DEVICE_CAP_CARRIER_DETECT)
		print_string ("  Carrier Detect", "yes");

	speed = 0;
	if (NM_IS_DEVICE_ETHERNET (device)) {
		/* Speed in Mb/s */
		speed = nm_device_ethernet_get_speed (NM_DEVICE_ETHERNET (device));
	} else if (NM_IS_DEVICE_WIFI (device)) {
		/* Speed in b/s */
		speed = nm_device_wifi_get_bitrate (NM_DEVICE_WIFI (device));
		speed /= 1000;
	}

	if (speed) {
		char *speed_string;

		speed_string = g_strdup_printf ("%u Mb/s", speed);
		print_string ("  Speed", speed_string);
		g_free (speed_string);
	}

	/* Wireless specific information */
	if ((NM_IS_DEVICE_WIFI (device))) {
		guint32 wcaps;
		NMAccessPoint *active_ap = NULL;
		const char *active_bssid = NULL;
		const GPtrArray *aps;

		printf ("\n  Wireless Properties\n");

		wcaps = nm_device_wifi_get_capabilities (NM_DEVICE_WIFI (device));

		if (wcaps & (NM_WIFI_DEVICE_CAP_CIPHER_WEP40 | NM_WIFI_DEVICE_CAP_CIPHER_WEP104))
			print_string ("  WEP Encryption", "yes");
		if (wcaps & NM_WIFI_DEVICE_CAP_WPA)
			print_string ("  WPA Encryption", "yes");
		if (wcaps & NM_WIFI_DEVICE_CAP_RSN)
			print_string ("  WPA2 Encryption", "yes");

		if (nm_device_get_state (device) == NM_DEVICE_STATE_ACTIVATED) {
			active_ap = nm_device_wifi_get_active_access_point (NM_DEVICE_WIFI (device));
			active_bssid = active_ap ? nm_access_point_get_hw_address (active_ap) : NULL;
		}

		printf ("\n  Wireless Access Points %s\n", active_ap ? "(* = current AP)" : "");

		aps = nm_device_wifi_get_access_points (NM_DEVICE_WIFI (device));
		if (aps && aps->len)
			g_ptr_array_foreach ((GPtrArray *) aps, detail_access_point, (gpointer) active_bssid);
	} else if (NM_IS_DEVICE_ETHERNET (device)) {
		printf ("\n  Wired Properties\n");

		if (nm_device_ethernet_get_carrier (NM_DEVICE_ETHERNET (device)))
			print_string ("  Carrier", "on");
		else
			print_string ("  Carrier", "off");
	}

	/* IP Setup info */
	if (state == NM_DEVICE_STATE_ACTIVATED) {
		NMIP4Config *cfg = nm_device_get_ip4_config (device);
		GSList *iter;

		printf ("\n  IPv4 Settings:\n");

		for (iter = (GSList *) nm_ip4_config_get_addresses (cfg); iter; iter = g_slist_next (iter)) {
			NMIP4Address *addr = (NMIP4Address *) iter->data;
			guint32 prefix = nm_ip4_address_get_prefix (addr);
			char *tmp2;

			tmp = ip4_address_as_string (nm_ip4_address_get_address (addr));
			print_string ("  Address", tmp);
			g_free (tmp);

			tmp2 = ip4_address_as_string (nm_utils_ip4_prefix_to_netmask (prefix));
			tmp = g_strdup_printf ("%d (%s)", prefix, tmp2);
			g_free (tmp2);
			print_string ("  Prefix", tmp);
			g_free (tmp);

			tmp = ip4_address_as_string (nm_ip4_address_get_gateway (addr));
			print_string ("  Gateway", tmp);
			g_free (tmp);
			printf ("\n");
		}

		array = nm_ip4_config_get_nameservers (cfg);
		if (array) {
			int i;

			for (i = 0; i < array->len; i++) {
				tmp = ip4_address_as_string (g_array_index (array, guint32, i));
				print_string ("  DNS", tmp);
				g_free (tmp);
			}
		}
	}

	printf ("\n\n");
}
static void
connect_details_page (CEPageDetails *page)
{
        guint speed;
        guint strength;
        NMDeviceState state;
        NMAccessPoint *active_ap;
        const gchar *str;
        gboolean device_is_active;

        if (NM_IS_DEVICE_WIFI (page->device))
                active_ap = nm_device_wifi_get_active_access_point (NM_DEVICE_WIFI (page->device));
        else
                active_ap = NULL;

        state = page->device ? nm_device_get_state (page->device) : NM_DEVICE_STATE_DISCONNECTED;

        device_is_active = FALSE;
        speed = 0;
        if (active_ap && page->ap == active_ap && state != NM_DEVICE_STATE_UNAVAILABLE) {
                device_is_active = TRUE;
                if (NM_IS_DEVICE_WIFI (page->device))
                        speed = nm_device_wifi_get_bitrate (NM_DEVICE_WIFI (page->device)) / 1000;
        } else if (page->device) {
                NMActiveConnection *ac;
                const gchar *p1, *p2;

                ac = nm_device_get_active_connection (page->device);
                p1 = ac ? nm_active_connection_get_connection (ac) : NULL;
                p2 = nm_connection_get_path (CE_PAGE (page)->connection);
                if (g_strcmp0 (p1, p2) == 0) {
                        device_is_active = TRUE;
                        if (NM_IS_DEVICE_WIFI (page->device))
                                speed = nm_device_wifi_get_bitrate (NM_DEVICE_WIFI (page->device)) / 1000;
                        else if (NM_IS_DEVICE_ETHERNET (page->device))
                                speed = nm_device_ethernet_get_speed (NM_DEVICE_ETHERNET (page->device));
                }
        }
        if (speed > 0)
                str = g_strdup_printf (_("%d Mb/s"), speed);
        else
                str = NULL;
        panel_set_device_widget_details (CE_PAGE (page)->builder, "speed", str);
        g_clear_pointer (&str, g_free);

        if (NM_IS_DEVICE_WIFI (page->device))
                str = nm_device_wifi_get_hw_address (NM_DEVICE_WIFI (page->device));
        else if (NM_IS_DEVICE_ETHERNET (page->device))
                str = nm_device_ethernet_get_hw_address (NM_DEVICE_ETHERNET (page->device));

        panel_set_device_widget_details (CE_PAGE (page)->builder, "mac", str);

        str = NULL;
        if (device_is_active && active_ap)
                str = get_ap_security_string (active_ap);
        panel_set_device_widget_details (CE_PAGE (page)->builder, "security", str);
        g_clear_pointer (&str, g_free);

        strength = 0;
        if (page->ap != NULL)
                strength = nm_access_point_get_strength (page->ap);

        if (strength <= 0)
                str = NULL;
        else if (strength < 20)
                str = C_("Signal strength", "None");
        else if (strength < 40)
                str = C_("Signal strength", "Weak");
        else if (strength < 50)
                str = C_("Signal strength", "Ok");
        else if (strength < 80)
                str = C_("Signal strength", "Good");
        else
                str = C_("Signal strength", "Excellent");
        panel_set_device_widget_details (CE_PAGE (page)->builder, "strength", str);

        /* set IP entries */
        if (device_is_active)
                panel_set_device_widgets (CE_PAGE (page)->builder, page->device);
        else
                panel_unset_device_widgets (CE_PAGE (page)->builder);

        if (!device_is_active && CE_PAGE (page)->connection)
                update_last_used (page, CE_PAGE (page)->connection);
        else
                panel_set_device_widget_details (CE_PAGE (page)->builder, "last_used", NULL);

}