NetworkManager/libnm-glib/nm-device-vlan.c
Thomas Haller a83eb773ce all: modify line separator comments to be 80 chars wide
sed 's#^/\*\{5\}\*\+/$#/*****************************************************************************/#' $(git grep -l '\*\{5\}' | grep '\.[hc]$') -i
2016-10-03 12:01:15 +02:00

391 lines
10 KiB
C

/* -*- Mode: C; tab-width: 4; indent-tabs-mode: t; c-basic-offset: 4 -*- */
/*
* This library is free software; you can redistribute it and/or
* modify it under the terms of the GNU Lesser General Public
* License as published by the Free Software Foundation; either
* version 2 of the License, or (at your option) any later version.
*
* This library is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
* Lesser General Public License for more details.
*
* You should have received a copy of the GNU Lesser General Public
* License along with this library; if not, write to the
* Free Software Foundation, Inc., 51 Franklin Street, Fifth Floor,
* Boston, MA 02110-1301 USA.
*
* Copyright 2012 Red Hat, Inc.
*/
#include "nm-default.h"
#include <string.h>
#include <netinet/ether.h>
#include "nm-setting-connection.h"
#include "nm-setting-vlan.h"
#include "nm-utils.h"
#include "nm-device-vlan.h"
#include "nm-device-private.h"
#include "nm-object-private.h"
G_DEFINE_TYPE (NMDeviceVlan, nm_device_vlan, NM_TYPE_DEVICE)
#define NM_DEVICE_VLAN_GET_PRIVATE(o) (G_TYPE_INSTANCE_GET_PRIVATE ((o), NM_TYPE_DEVICE_VLAN, NMDeviceVlanPrivate))
typedef struct {
DBusGProxy *proxy;
char *hw_address;
gboolean carrier;
NMDevice *parent;
guint vlan_id;
} NMDeviceVlanPrivate;
enum {
PROP_0,
PROP_HW_ADDRESS,
PROP_CARRIER,
PROP_PARENT,
PROP_VLAN_ID,
LAST_PROP
};
/**
* nm_device_vlan_error_quark:
*
* Registers an error quark for #NMDeviceVlan if necessary.
*
* Returns: the error quark used for #NMDeviceVlan errors.
**/
GQuark
nm_device_vlan_error_quark (void)
{
static GQuark quark = 0;
if (G_UNLIKELY (quark == 0))
quark = g_quark_from_static_string ("nm-device-vlan-error-quark");
return quark;
}
/**
* nm_device_vlan_new:
* @connection: the #DBusGConnection
* @path: the DBus object path of the device
*
* Creates a new #NMDeviceVlan.
*
* Returns: (transfer full): a new device
**/
GObject *
nm_device_vlan_new (DBusGConnection *connection, const char *path)
{
GObject *device;
g_return_val_if_fail (connection != NULL, NULL);
g_return_val_if_fail (path != NULL, NULL);
device = g_object_new (NM_TYPE_DEVICE_VLAN,
NM_OBJECT_DBUS_CONNECTION, connection,
NM_OBJECT_DBUS_PATH, path,
NULL);
_nm_object_ensure_inited (NM_OBJECT (device));
return device;
}
/**
* nm_device_vlan_get_hw_address:
* @device: a #NMDeviceVlan
*
* Gets the hardware (MAC) address of the #NMDeviceVlan
*
* Returns: the hardware address. This is the internal string used by the
* device, and must not be modified.
**/
const char *
nm_device_vlan_get_hw_address (NMDeviceVlan *device)
{
g_return_val_if_fail (NM_IS_DEVICE_VLAN (device), NULL);
_nm_object_ensure_inited (NM_OBJECT (device));
return NM_DEVICE_VLAN_GET_PRIVATE (device)->hw_address;
}
/**
* nm_device_vlan_get_carrier:
* @device: a #NMDeviceVlan
*
* Whether the device has carrier.
*
* Returns: %TRUE if the device has carrier
**/
gboolean
nm_device_vlan_get_carrier (NMDeviceVlan *device)
{
g_return_val_if_fail (NM_IS_DEVICE_VLAN (device), FALSE);
_nm_object_ensure_inited (NM_OBJECT (device));
return NM_DEVICE_VLAN_GET_PRIVATE (device)->carrier;
}
/**
* nm_device_vlan_get_parent:
* @device: a #NMDeviceVlan
*
* Returns: (transfer none): the device's parent device
*
* Since: 1.0
**/
NMDevice *
nm_device_vlan_get_parent (NMDeviceVlan *device)
{
g_return_val_if_fail (NM_IS_DEVICE_VLAN (device), FALSE);
_nm_object_ensure_inited (NM_OBJECT (device));
return NM_DEVICE_VLAN_GET_PRIVATE (device)->parent;
}
/**
* nm_device_vlan_get_vlan_id:
* @device: a #NMDeviceVlan
*
* Returns: the device's VLAN ID
**/
guint
nm_device_vlan_get_vlan_id (NMDeviceVlan *device)
{
g_return_val_if_fail (NM_IS_DEVICE_VLAN (device), FALSE);
_nm_object_ensure_inited (NM_OBJECT (device));
return NM_DEVICE_VLAN_GET_PRIVATE (device)->vlan_id;
}
static gboolean
connection_compatible (NMDevice *device, NMConnection *connection, GError **error)
{
NMSettingConnection *s_con;
NMSettingVlan *s_vlan;
NMSettingWired *s_wired;
const char *ctype, *dev_iface_name, *vlan_iface_name;
const GByteArray *mac_address;
char *mac_address_str;
s_con = nm_connection_get_setting_connection (connection);
g_assert (s_con);
ctype = nm_setting_connection_get_connection_type (s_con);
if (strcmp (ctype, NM_SETTING_VLAN_SETTING_NAME) != 0) {
g_set_error (error, NM_DEVICE_VLAN_ERROR, NM_DEVICE_VLAN_ERROR_NOT_VLAN_CONNECTION,
"The connection was not a VLAN connection.");
return FALSE;
}
s_vlan = nm_connection_get_setting_vlan (connection);
if (!s_vlan) {
g_set_error (error, NM_DEVICE_VLAN_ERROR, NM_DEVICE_VLAN_ERROR_INVALID_VLAN_CONNECTION,
"The connection was not a valid VLAN connection.");
return FALSE;
}
if (nm_setting_vlan_get_id (s_vlan) != nm_device_vlan_get_vlan_id (NM_DEVICE_VLAN (device))) {
g_set_error (error, NM_DEVICE_VLAN_ERROR, NM_DEVICE_VLAN_ERROR_ID_MISMATCH,
"The VLAN identifiers of the device and the connection didn't match.");
return FALSE;
}
dev_iface_name = nm_device_get_iface (device);
vlan_iface_name = nm_setting_vlan_get_interface_name (s_vlan);
if (vlan_iface_name && g_strcmp0 (dev_iface_name, vlan_iface_name) != 0) {
g_set_error (error, NM_DEVICE_VLAN_ERROR, NM_DEVICE_VLAN_ERROR_INTERFACE_MISMATCH,
"The interfaces of the device and the connection didn't match.");
return FALSE;
}
s_wired = nm_connection_get_setting_wired (connection);
if (s_wired)
mac_address = nm_setting_wired_get_mac_address (s_wired);
else
mac_address = NULL;
if (mac_address) {
mac_address_str = nm_utils_hwaddr_ntoa_len (mac_address->data, mac_address->len);
if (!g_strcmp0 (mac_address_str, NM_DEVICE_VLAN_GET_PRIVATE (device)->hw_address)) {
g_set_error (error, NM_DEVICE_VLAN_ERROR, NM_DEVICE_VLAN_ERROR_MAC_MISMATCH,
"The hardware address of the device and the connection didn't match.");
}
g_free (mac_address_str);
}
return NM_DEVICE_CLASS (nm_device_vlan_parent_class)->connection_compatible (device, connection, error);
}
static GType
get_setting_type (NMDevice *device)
{
return NM_TYPE_SETTING_VLAN;
}
static const char *
get_hw_address (NMDevice *device)
{
return nm_device_vlan_get_hw_address (NM_DEVICE_VLAN (device));
}
/*****************************************************************************/
static void
nm_device_vlan_init (NMDeviceVlan *device)
{
_nm_device_set_device_type (NM_DEVICE (device), NM_DEVICE_TYPE_VLAN);
}
static void
register_properties (NMDeviceVlan *device)
{
NMDeviceVlanPrivate *priv = NM_DEVICE_VLAN_GET_PRIVATE (device);
const NMPropertiesInfo property_info[] = {
{ NM_DEVICE_VLAN_HW_ADDRESS, &priv->hw_address },
{ NM_DEVICE_VLAN_CARRIER, &priv->carrier },
{ NM_DEVICE_VLAN_PARENT, &priv->parent, NULL, NM_TYPE_DEVICE },
{ NM_DEVICE_VLAN_VLAN_ID, &priv->vlan_id },
{ NULL },
};
_nm_object_register_properties (NM_OBJECT (device),
priv->proxy,
property_info);
}
static void
constructed (GObject *object)
{
NMDeviceVlanPrivate *priv = NM_DEVICE_VLAN_GET_PRIVATE (object);
G_OBJECT_CLASS (nm_device_vlan_parent_class)->constructed (object);
priv->proxy = _nm_object_new_proxy (NM_OBJECT (object), NULL, NM_DBUS_INTERFACE_DEVICE_VLAN);
register_properties (NM_DEVICE_VLAN (object));
}
static void
dispose (GObject *object)
{
NMDeviceVlanPrivate *priv = NM_DEVICE_VLAN_GET_PRIVATE (object);
g_clear_object (&priv->parent);
g_clear_object (&priv->proxy);
G_OBJECT_CLASS (nm_device_vlan_parent_class)->dispose (object);
}
static void
finalize (GObject *object)
{
NMDeviceVlanPrivate *priv = NM_DEVICE_VLAN_GET_PRIVATE (object);
g_free (priv->hw_address);
G_OBJECT_CLASS (nm_device_vlan_parent_class)->finalize (object);
}
static void
get_property (GObject *object,
guint prop_id,
GValue *value,
GParamSpec *pspec)
{
NMDeviceVlan *device = NM_DEVICE_VLAN (object);
_nm_object_ensure_inited (NM_OBJECT (object));
switch (prop_id) {
case PROP_HW_ADDRESS:
g_value_set_string (value, nm_device_vlan_get_hw_address (device));
break;
case PROP_CARRIER:
g_value_set_boolean (value, nm_device_vlan_get_carrier (device));
break;
case PROP_PARENT:
g_value_set_object (value, nm_device_vlan_get_parent (device));
break;
case PROP_VLAN_ID:
g_value_set_uint (value, nm_device_vlan_get_vlan_id (device));
break;
default:
G_OBJECT_WARN_INVALID_PROPERTY_ID (object, prop_id, pspec);
break;
}
}
static void
nm_device_vlan_class_init (NMDeviceVlanClass *vlan_class)
{
GObjectClass *object_class = G_OBJECT_CLASS (vlan_class);
NMDeviceClass *device_class = NM_DEVICE_CLASS (vlan_class);
g_type_class_add_private (vlan_class, sizeof (NMDeviceVlanPrivate));
/* virtual methods */
object_class->constructed = constructed;
object_class->dispose = dispose;
object_class->finalize = finalize;
object_class->get_property = get_property;
device_class->connection_compatible = connection_compatible;
device_class->get_setting_type = get_setting_type;
device_class->get_hw_address = get_hw_address;
/* properties */
/**
* NMDeviceVlan:hw-address:
*
* The hardware (MAC) address of the device.
**/
g_object_class_install_property
(object_class, PROP_HW_ADDRESS,
g_param_spec_string (NM_DEVICE_VLAN_HW_ADDRESS, "", "",
NULL,
G_PARAM_READABLE |
G_PARAM_STATIC_STRINGS));
/**
* NMDeviceVlan:carrier:
*
* Whether the device has carrier.
**/
g_object_class_install_property
(object_class, PROP_CARRIER,
g_param_spec_boolean (NM_DEVICE_VLAN_CARRIER, "", "",
FALSE,
G_PARAM_READABLE |
G_PARAM_STATIC_STRINGS));
/**
* NMDeviceVlan:parent:
*
* The devices's parent device.
*
* Since: 1.0
**/
g_object_class_install_property
(object_class, PROP_PARENT,
g_param_spec_object (NM_DEVICE_VLAN_PARENT, "", "",
NM_TYPE_DEVICE,
G_PARAM_READABLE |
G_PARAM_STATIC_STRINGS));
/**
* NMDeviceVlan:vlan-id:
*
* The device's VLAN ID.
**/
g_object_class_install_property
(object_class, PROP_VLAN_ID,
g_param_spec_uint (NM_DEVICE_VLAN_VLAN_ID, "", "",
0, 4095, 0,
G_PARAM_READABLE |
G_PARAM_STATIC_STRINGS));
}