NetworkManager/libnm-core/nm-setting-vxlan.c

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/* -*- 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 2015 Red Hat, Inc.
*/
#include "nm-default.h"
#include <stdlib.h>
#include <string.h>
#include "nm-setting-vxlan.h"
#include "nm-utils.h"
#include "nm-setting-private.h"
/**
* SECTION:nm-setting-vxlan
* @short_description: Describes connection properties for VXLAN interfaces
*
* The #NMSettingVxlan object is a #NMSetting subclass that describes properties
* necessary for connection to VXLAN interfaces.
**/
libnm: use NMMetaSettingInfo for tracking setting priority Previously, each (non abstract) NMSetting class had to register its name and priority via _nm_register_setting(). Note, that libnm-core.la already links against "nm-meta-setting.c", which also redundantly keeps track of the settings name and gtype as well. Re-use NMMetaSettingInfo also in libnm-core.la, to track this meta data. The goal is to get rid of private data structures that track meta data about NMSetting classes. In this case, "registered_settings" hash. Instead, we should have one place where all this meta data is tracked. This was, it is also accessible as internal API, which can be useful (for keyfile). Note that NMSettingClass has some overlap with NMMetaSettingInfo. One difference is, that NMMetaSettingInfo is const, while NMSettingClass is only initialized during the class_init() method. Appart from that, it's mostly a matter of taste, whether we attach meta data to NMSettingClass, to NMMetaSettingInfo, or to a static-array indexed by NMMetaSettingType. Note, that previously, _nm_register_setting() was private API. That means, no user could subclass a functioning NMSetting instance. The same is still true: NMMetaSettingInfo is internal API and users cannot access it to create their own NMSetting subclasses. But that is almost desired. libnm is not designed, to be extensible via subclassing, nor is it clear why that would be a useful thing to do. One day, we should remove the NMSetting and NMSettingClass definitions from public headers. Their only use is subclassing the types, which however does not work. While libnm-core was linking already against nm-meta-setting.c, nm_meta_setting_infos was unreferenced. So, this change increases the binary size of libnm and NetworkManager (1032 bytes). Note however that roughly the same information was previously allocated at runtime.
2018-07-27 14:08:14 +02:00
G_DEFINE_TYPE (NMSettingVxlan, nm_setting_vxlan, NM_TYPE_SETTING)
#define NM_SETTING_VXLAN_GET_PRIVATE(o) (G_TYPE_INSTANCE_GET_PRIVATE ((o), NM_TYPE_SETTING_VXLAN, NMSettingVxlanPrivate))
typedef struct {
char *parent;
guint id;
char *local;
char *remote;
guint source_port_min;
guint source_port_max;
guint destination_port;
guint tos;
guint ttl;
guint ageing;
guint limit;
gboolean learning;
gboolean proxy;
gboolean rsc;
gboolean l2_miss;
gboolean l3_miss;
} NMSettingVxlanPrivate;
NM_GOBJECT_PROPERTIES_DEFINE_BASE (
PROP_PARENT,
PROP_ID,
PROP_LOCAL,
PROP_REMOTE,
PROP_SOURCE_PORT_MIN,
PROP_SOURCE_PORT_MAX,
PROP_DESTINATION_PORT,
PROP_TOS,
PROP_TTL,
PROP_AGEING,
PROP_LIMIT,
PROP_LEARNING,
PROP_PROXY,
PROP_RSC,
PROP_L2_MISS,
PROP_L3_MISS,
);
#define DST_PORT_DEFAULT 8472
/**
* nm_setting_vxlan_new:
*
* Creates a new #NMSettingVxlan object with default values.
*
* Returns: (transfer full): the new empty #NMSettingVxlan object
*
* Since: 1.2
**/
NMSetting *
nm_setting_vxlan_new (void)
{
return (NMSetting *) g_object_new (NM_TYPE_SETTING_VXLAN, NULL);
}
/**
* nm_setting_vxlan_get_parent:
* @setting: the #NMSettingVxlan
*
* Returns: the #NMSettingVxlan:parent property of the setting
*
* Since: 1.2
**/
const char *
nm_setting_vxlan_get_parent (NMSettingVxlan *setting)
{
g_return_val_if_fail (NM_IS_SETTING_VXLAN (setting), NULL);
return NM_SETTING_VXLAN_GET_PRIVATE (setting)->parent;
}
/**
* nm_setting_vxlan_get_id:
* @setting: the #NMSettingVxlan
*
* Returns: the #NMSettingVxlan:id property of the setting
*
* Since: 1.2
**/
guint
nm_setting_vxlan_get_id (NMSettingVxlan *setting)
{
g_return_val_if_fail (NM_IS_SETTING_VXLAN (setting), 0);
return NM_SETTING_VXLAN_GET_PRIVATE (setting)->id;
}
/**
* nm_setting_vxlan_get_local:
* @setting: the #NMSettingVxlan
*
* Returns: the #NMSettingVxlan:local property of the setting
*
* Since: 1.2
**/
const char *
nm_setting_vxlan_get_local (NMSettingVxlan *setting)
{
g_return_val_if_fail (NM_IS_SETTING_VXLAN (setting), NULL);
return NM_SETTING_VXLAN_GET_PRIVATE (setting)->local;
}
/**
* nm_setting_vxlan_get_remote:
* @setting: the #NMSettingVxlan
*
* Returns: the #NMSettingVxlan:remote property of the setting
*
* Since: 1.2
**/
const char *
nm_setting_vxlan_get_remote (NMSettingVxlan *setting)
{
g_return_val_if_fail (NM_IS_SETTING_VXLAN (setting), NULL);
return NM_SETTING_VXLAN_GET_PRIVATE (setting)->remote;
}
/**
* nm_setting_vxlan_get_source_port_min:
* @setting: the #NMSettingVxlan
*
* Returns: the #NMSettingVxlan:source-port-min property of the setting
*
* Since: 1.2
**/
guint
nm_setting_vxlan_get_source_port_min (NMSettingVxlan *setting)
{
g_return_val_if_fail (NM_IS_SETTING_VXLAN (setting), 0);
return NM_SETTING_VXLAN_GET_PRIVATE (setting)->source_port_min;
}
/**
* nm_setting_vxlan_get_source_port_max:
* @setting: the #NMSettingVxlan
*
* Returns: the #NMSettingVxlan:source-port-max property of the setting
*
* Since: 1.2
**/
guint
nm_setting_vxlan_get_source_port_max (NMSettingVxlan *setting)
{
g_return_val_if_fail (NM_IS_SETTING_VXLAN (setting), 0);
return NM_SETTING_VXLAN_GET_PRIVATE (setting)->source_port_max;
}
/**
* nm_setting_vxlan_get_destination_port:
* @setting: the #NMSettingVxlan
*
* Returns: the #NMSettingVxlan:destination-port property of the setting
*
* Since: 1.2
**/
guint
nm_setting_vxlan_get_destination_port (NMSettingVxlan *setting)
{
g_return_val_if_fail (NM_IS_SETTING_VXLAN (setting), DST_PORT_DEFAULT);
return NM_SETTING_VXLAN_GET_PRIVATE (setting)->destination_port;
}
/**
* nm_setting_vxlan_get_proxy:
* @setting: the #NMSettingVxlan
*
* Returns: the #NMSettingVxlan:proxy property of the setting
*
* Since: 1.2
**/
gboolean
nm_setting_vxlan_get_proxy (NMSettingVxlan *setting)
{
g_return_val_if_fail (NM_IS_SETTING_VXLAN (setting), FALSE);
return NM_SETTING_VXLAN_GET_PRIVATE (setting)->proxy;
}
/**
* nm_setting_vxlan_get_ageing:
* @setting: the #NMSettingVxlan
*
* Returns: the #NMSettingVxlan:ageing property of the setting
*
* Since: 1.2
**/
guint
nm_setting_vxlan_get_ageing (NMSettingVxlan *setting)
{
g_return_val_if_fail (NM_IS_SETTING_VXLAN (setting), 0);
return NM_SETTING_VXLAN_GET_PRIVATE (setting)->ageing;
}
/**
* nm_setting_vxlan_get_limit:
* @setting: the #NMSettingVxlan
*
* Returns: the #NMSettingVxlan:limit property of the setting
*
* Since: 1.2
**/
guint
nm_setting_vxlan_get_limit (NMSettingVxlan *setting)
{
g_return_val_if_fail (NM_IS_SETTING_VXLAN (setting), 0);
return NM_SETTING_VXLAN_GET_PRIVATE (setting)->limit;
}
/**
* nm_setting_vxlan_get_tos:
* @setting: the #NMSettingVxlan
*
* Returns: the #NMSettingVxlan:tos property of the setting
*
* Since: 1.2
**/
guint
nm_setting_vxlan_get_tos (NMSettingVxlan *setting)
{
g_return_val_if_fail (NM_IS_SETTING_VXLAN (setting), 0);
return NM_SETTING_VXLAN_GET_PRIVATE (setting)->tos;
}
/**
* nm_setting_vxlan_get_ttl:
* @setting: the #NMSettingVxlan
*
* Returns: the #NMSettingVxlan:ttl property of the setting
*
* Since: 1.2
**/
guint
nm_setting_vxlan_get_ttl (NMSettingVxlan *setting)
{
g_return_val_if_fail (NM_IS_SETTING_VXLAN (setting), 0);
return NM_SETTING_VXLAN_GET_PRIVATE (setting)->ttl;
}
/**
* nm_setting_vxlan_get_learning:
* @setting: the #NMSettingVxlan
*
* Returns: the #NMSettingVxlan:learning property of the setting
*
* Since: 1.2
**/
gboolean
nm_setting_vxlan_get_learning (NMSettingVxlan *setting)
{
g_return_val_if_fail (NM_IS_SETTING_VXLAN (setting), FALSE);
return NM_SETTING_VXLAN_GET_PRIVATE (setting)->learning;
}
/**
* nm_setting_vxlan_get_rsc:
* @setting: the #NMSettingVxlan
*
* Returns: the #NMSettingVxlan:rsc property of the setting
*
* Since: 1.2
**/
gboolean
nm_setting_vxlan_get_rsc (NMSettingVxlan *setting)
{
g_return_val_if_fail (NM_IS_SETTING_VXLAN (setting), FALSE);
return NM_SETTING_VXLAN_GET_PRIVATE (setting)->rsc;
}
/**
* nm_setting_vxlan_get_l2_miss:
* @setting: the #NMSettingVxlan
*
* Returns: the #NMSettingVxlan:l2_miss property of the setting
*
* Since: 1.2
**/
gboolean
nm_setting_vxlan_get_l2_miss (NMSettingVxlan *setting)
{
g_return_val_if_fail (NM_IS_SETTING_VXLAN (setting), FALSE);
return NM_SETTING_VXLAN_GET_PRIVATE (setting)->l2_miss;
}
/**
* nm_setting_vxlan_get_l3_miss:
* @setting: the #NMSettingVxlan
*
* Returns: the #NMSettingVxlan:l3_miss property of the setting
*
* Since: 1.2
**/
gboolean
nm_setting_vxlan_get_l3_miss (NMSettingVxlan *setting)
{
g_return_val_if_fail (NM_IS_SETTING_VXLAN (setting), FALSE);
return NM_SETTING_VXLAN_GET_PRIVATE (setting)->l3_miss;
}
/*****************************************************************************/
static void
nm_setting_vxlan_init (NMSettingVxlan *setting)
{
}
static gboolean
verify (NMSetting *setting, NMConnection *connection, GError **error)
{
NMSettingVxlanPrivate *priv = NM_SETTING_VXLAN_GET_PRIVATE (setting);
int family = AF_UNSPEC;
if (!priv->remote) {
g_set_error_literal (error,
NM_CONNECTION_ERROR,
NM_CONNECTION_ERROR_MISSING_PROPERTY,
_("property is missing"));
g_prefix_error (error, "%s.%s: ",
NM_SETTING_VXLAN_SETTING_NAME,
NM_SETTING_VXLAN_REMOTE);
return FALSE;
}
if (nm_utils_ipaddr_valid (AF_INET, priv->remote))
family = AF_INET;
else if (nm_utils_ipaddr_valid (AF_INET6, priv->remote))
family = AF_INET6;
else {
g_set_error (error,
NM_CONNECTION_ERROR,
NM_CONNECTION_ERROR_INVALID_PROPERTY,
_("'%s' is not a valid IP address"),
priv->remote);
g_prefix_error (error, "%s.%s: ",
NM_SETTING_VXLAN_SETTING_NAME,
NM_SETTING_VXLAN_REMOTE);
return FALSE;
}
if (priv->local) {
if (!nm_utils_ipaddr_valid (family, priv->local)) {
g_set_error (error,
NM_CONNECTION_ERROR,
NM_CONNECTION_ERROR_INVALID_PROPERTY,
_("'%s' is not a valid IP%c address"),
priv->local, family == AF_INET ? '4' : '6');
g_prefix_error (error, "%s.%s: ",
NM_SETTING_VXLAN_SETTING_NAME,
NM_SETTING_VXLAN_LOCAL);
return FALSE;
}
}
if ( priv->parent
&& !nm_utils_is_valid_iface_name (priv->parent, NULL)
&& !nm_utils_is_uuid (priv->parent)) {
g_set_error (error,
NM_CONNECTION_ERROR,
NM_CONNECTION_ERROR_INVALID_PROPERTY,
_("'%s' is neither an UUID nor an interface name"),
priv->parent);
g_prefix_error (error, "%s.%s: ", NM_SETTING_VXLAN_SETTING_NAME,
NM_SETTING_VXLAN_PARENT);
return FALSE;
}
if ( (priv->source_port_min || priv->source_port_max)
&& (priv->source_port_min > priv->source_port_max)) {
g_set_error (error,
NM_CONNECTION_ERROR,
NM_CONNECTION_ERROR_INVALID_PROPERTY,
_("%d is greater than local port max %d"),
priv->source_port_min,
priv->source_port_max);
g_prefix_error (error, "%s.%s: ",
NM_SETTING_VXLAN_SETTING_NAME,
NM_SETTING_VXLAN_SOURCE_PORT_MIN);
return FALSE;
}
return TRUE;
}
static void
set_property (GObject *object, guint prop_id,
const GValue *value, GParamSpec *pspec)
{
NMSettingVxlan *setting = NM_SETTING_VXLAN (object);
NMSettingVxlanPrivate *priv = NM_SETTING_VXLAN_GET_PRIVATE (setting);
switch (prop_id) {
case PROP_PARENT:
g_free (priv->parent);
priv->parent = g_value_dup_string (value);
break;
case PROP_ID:
priv->id = g_value_get_uint (value);
break;
case PROP_LOCAL:
g_free (priv->local);
priv->local = g_value_dup_string (value);
break;
case PROP_REMOTE:
g_free (priv->remote);
priv->remote = g_value_dup_string (value);
break;
case PROP_SOURCE_PORT_MIN:
priv->source_port_min = g_value_get_uint (value);
break;
case PROP_SOURCE_PORT_MAX:
priv->source_port_max = g_value_get_uint (value);
break;
case PROP_DESTINATION_PORT:
priv->destination_port = g_value_get_uint (value);
break;
case PROP_TOS:
priv->tos = g_value_get_uint (value);
break;
case PROP_AGEING:
priv->ageing = g_value_get_uint (value);
break;
case PROP_LIMIT:
priv->limit = g_value_get_uint (value);
break;
case PROP_PROXY:
priv->proxy = g_value_get_boolean (value);
break;
case PROP_TTL:
priv->ttl = g_value_get_uint (value);
break;
case PROP_LEARNING:
priv->learning = g_value_get_boolean (value);
break;
case PROP_RSC:
priv->rsc = g_value_get_boolean (value);
break;
case PROP_L2_MISS:
priv->l2_miss = g_value_get_boolean (value);
break;
case PROP_L3_MISS:
priv->l3_miss = g_value_get_boolean (value);
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)
{
NMSettingVxlan *setting = NM_SETTING_VXLAN (object);
NMSettingVxlanPrivate *priv = NM_SETTING_VXLAN_GET_PRIVATE (setting);
switch (prop_id) {
case PROP_PARENT:
g_value_set_string (value, priv->parent);
break;
case PROP_ID:
g_value_set_uint (value, priv->id);
break;
case PROP_LOCAL:
g_value_set_string (value, priv->local);
break;
case PROP_REMOTE:
g_value_set_string (value, priv->remote);
break;
case PROP_SOURCE_PORT_MIN:
g_value_set_uint (value, priv->source_port_min);
break;
case PROP_SOURCE_PORT_MAX:
g_value_set_uint (value, priv->source_port_max);
break;
case PROP_DESTINATION_PORT:
g_value_set_uint (value, priv->destination_port);
break;
case PROP_TOS:
g_value_set_uint (value, priv->tos);
break;
case PROP_AGEING:
g_value_set_uint (value, priv->ageing);
break;
case PROP_LIMIT:
g_value_set_uint (value, priv->limit);
break;
case PROP_PROXY:
g_value_set_boolean (value, priv->proxy);
break;
case PROP_TTL:
g_value_set_uint (value, priv->ttl);
break;
case PROP_LEARNING:
g_value_set_boolean (value, priv->learning);
break;
case PROP_RSC:
g_value_set_boolean (value, priv->rsc);
break;
case PROP_L2_MISS:
g_value_set_boolean (value, priv->l2_miss);
break;
case PROP_L3_MISS:
g_value_set_boolean (value, priv->l3_miss);
break;
default:
G_OBJECT_WARN_INVALID_PROPERTY_ID (object, prop_id, pspec);
break;
}
}
static void
finalize (GObject *object)
{
NMSettingVxlan *setting = NM_SETTING_VXLAN (object);
NMSettingVxlanPrivate *priv = NM_SETTING_VXLAN_GET_PRIVATE (setting);
g_free (priv->parent);
g_free (priv->local);
g_free (priv->remote);
G_OBJECT_CLASS (nm_setting_vxlan_parent_class)->finalize (object);
}
static void
nm_setting_vxlan_class_init (NMSettingVxlanClass *klass)
{
GObjectClass *object_class = G_OBJECT_CLASS (klass);
NMSettingClass *setting_class = NM_SETTING_CLASS (klass);
g_type_class_add_private (klass, sizeof (NMSettingVxlanPrivate));
object_class->set_property = set_property;
object_class->get_property = get_property;
object_class->finalize = finalize;
libnm: rework setting metadata for property handling NMSetting internally already tracked a list of all proper GObject properties and D-Bus-only properties. Rework the tracking of the list, so that: - instead of attaching the data to the GType of the setting via g_type_set_qdata(), it is tracked in a static array indexed by NMMetaSettingType. This allows to find the setting-data by simple pointer arithmetic, instead of taking a look and iterating (like g_type_set_qdata() does). Note, that this is still thread safe, because the static table entry is initialized in the class-init function with _nm_setting_class_commit(). And it only accessed by following a NMSettingClass instance, thus the class constructor already ran (maybe not for all setting classes, but for the particular one that we look up). I think this makes initialization of the metadata simpler to understand. Previously, in a first phase each class would attach the metadata to the GType as setting_property_overrides_quark(). Then during nm_setting_class_ensure_properties() it would merge them and set as setting_properties_quark(). Now, during the first phase, we only incrementally build a properties_override GArray, which we finally hand over during nm_setting_class_commit(). - sort the property infos by name and do binary search. Also expose this meta data types as internal API in nm-setting-private.h. While not accessed yet, it can prove beneficial, to have direct (internal) access to these structures. Also, rename NMSettingProperty to NMSettInfoProperty to use a distinct naming scheme. We already have 40+ subclasses of NMSetting that are called NMSetting*. Likewise, NMMetaSetting* is heavily used already. So, choose a new, distinct name.
2018-07-28 15:26:03 +02:00
setting_class->verify = verify;
/**
* NMSettingVxlan:parent:
*
* If given, specifies the parent interface name or parent connection UUID.
*
* Since: 1.2
**/
obj_properties[PROP_PARENT] =
g_param_spec_string (NM_SETTING_VXLAN_PARENT, "", "",
NULL,
G_PARAM_READWRITE |
G_PARAM_CONSTRUCT |
NM_SETTING_PARAM_INFERRABLE |
G_PARAM_STATIC_STRINGS);
/**
* NMSettingVxlan:id:
*
* Specifies the VXLAN Network Identifier (or VXLAN Segment Identifier) to
* use.
*
* Since: 1.2
**/
obj_properties[PROP_ID] =
g_param_spec_uint (NM_SETTING_VXLAN_ID, "", "",
0, (1 << 24) - 1, 0,
G_PARAM_READWRITE |
G_PARAM_CONSTRUCT |
NM_SETTING_PARAM_INFERRABLE |
G_PARAM_STATIC_STRINGS);
/**
* NMSettingVxlan:local:
*
* If given, specifies the source IP address to use in outgoing packets.
*
* Since: 1.2
**/
obj_properties[PROP_LOCAL] =
g_param_spec_string (NM_SETTING_VXLAN_LOCAL, "", "",
NULL,
G_PARAM_READWRITE |
G_PARAM_CONSTRUCT |
NM_SETTING_PARAM_INFERRABLE |
G_PARAM_STATIC_STRINGS);
/**
* NMSettingVxlan:remote:
*
* Specifies the unicast destination IP address to use in outgoing packets
* when the destination link layer address is not known in the VXLAN device
* forwarding database, or the multicast IP address to join.
*
* Since: 1.2
**/
obj_properties[PROP_REMOTE] =
g_param_spec_string (NM_SETTING_VXLAN_REMOTE, "", "",
NULL,
G_PARAM_READWRITE |
G_PARAM_CONSTRUCT |
NM_SETTING_PARAM_INFERRABLE |
G_PARAM_STATIC_STRINGS);
/**
* NMSettingVxlan:source-port-min:
*
* Specifies the minimum UDP source port to communicate to the remote VXLAN
* tunnel endpoint.
*
* Since: 1.2
**/
obj_properties[PROP_SOURCE_PORT_MIN] =
g_param_spec_uint (NM_SETTING_VXLAN_SOURCE_PORT_MIN, "", "",
0, G_MAXUINT16, 0,
G_PARAM_READWRITE |
G_PARAM_CONSTRUCT |
NM_SETTING_PARAM_INFERRABLE |
G_PARAM_STATIC_STRINGS);
/**
* NMSettingVxlan:source-port-max:
*
* Specifies the maximum UDP source port to communicate to the remote VXLAN
* tunnel endpoint.
*
* Since: 1.2
**/
obj_properties[PROP_SOURCE_PORT_MAX] =
g_param_spec_uint (NM_SETTING_VXLAN_SOURCE_PORT_MAX, "", "",
0, G_MAXUINT16, 0,
G_PARAM_READWRITE |
G_PARAM_CONSTRUCT |
NM_SETTING_PARAM_INFERRABLE |
G_PARAM_STATIC_STRINGS);
/**
* NMSettingVxlan:destination-port:
*
* Specifies the UDP destination port to communicate to the remote VXLAN
* tunnel endpoint.
*
* Since: 1.2
**/
obj_properties[PROP_DESTINATION_PORT] =
g_param_spec_uint (NM_SETTING_VXLAN_DESTINATION_PORT, "", "",
0, G_MAXUINT16, DST_PORT_DEFAULT,
G_PARAM_READWRITE |
G_PARAM_CONSTRUCT |
NM_SETTING_PARAM_INFERRABLE |
G_PARAM_STATIC_STRINGS);
/**
* NMSettingVxlan:ageing:
*
* Specifies the lifetime in seconds of FDB entries learnt by the kernel.
*
* Since: 1.2
**/
obj_properties[PROP_AGEING] =
g_param_spec_uint (NM_SETTING_VXLAN_AGEING, "", "",
0, G_MAXUINT32, 300,
G_PARAM_READWRITE |
G_PARAM_CONSTRUCT |
NM_SETTING_PARAM_INFERRABLE |
G_PARAM_STATIC_STRINGS);
/**
* NMSettingVxlan:limit:
*
* Specifies the maximum number of FDB entries. A value of zero means that
* the kernel will store unlimited entries.
*
* Since: 1.2
**/
obj_properties[PROP_LIMIT] =
g_param_spec_uint (NM_SETTING_VXLAN_LIMIT, "", "",
0, G_MAXUINT32, 0,
G_PARAM_READWRITE |
G_PARAM_CONSTRUCT |
NM_SETTING_PARAM_INFERRABLE |
G_PARAM_STATIC_STRINGS);
/**
* NMSettingVxlan:tos:
*
* Specifies the TOS value to use in outgoing packets.
*
* Since: 1.2
**/
obj_properties[PROP_TOS] =
g_param_spec_uint (NM_SETTING_VXLAN_TOS, "", "",
0, 255, 0,
G_PARAM_READWRITE |
G_PARAM_CONSTRUCT |
NM_SETTING_PARAM_INFERRABLE |
G_PARAM_STATIC_STRINGS);
/**
* NMSettingVxlan:ttl:
*
* Specifies the time-to-live value to use in outgoing packets.
*
* Since: 1.2
**/
obj_properties[PROP_TTL] =
g_param_spec_uint (NM_SETTING_VXLAN_TTL, "", "",
0, 255, 0,
G_PARAM_READWRITE |
G_PARAM_CONSTRUCT |
NM_SETTING_PARAM_INFERRABLE |
G_PARAM_STATIC_STRINGS);
/**
* NMSettingVxlan:proxy:
*
* Specifies whether ARP proxy is turned on.
*
* Since: 1.2
**/
obj_properties[PROP_PROXY] =
g_param_spec_boolean (NM_SETTING_VXLAN_PROXY, "", "",
FALSE,
G_PARAM_READWRITE |
G_PARAM_CONSTRUCT |
NM_SETTING_PARAM_INFERRABLE |
G_PARAM_STATIC_STRINGS);
/**
* NMSettingVxlan:learning:
*
* Specifies whether unknown source link layer addresses and IP addresses
* are entered into the VXLAN device forwarding database.
*
* Since: 1.2
**/
obj_properties[PROP_LEARNING] =
g_param_spec_boolean (NM_SETTING_VXLAN_LEARNING, "", "",
TRUE,
G_PARAM_READWRITE |
G_PARAM_CONSTRUCT |
NM_SETTING_PARAM_INFERRABLE |
G_PARAM_STATIC_STRINGS);
/**
* NMSettingVxlan:rsc:
*
* Specifies whether route short circuit is turned on.
*
* Since: 1.2
**/
obj_properties[PROP_RSC] =
g_param_spec_boolean (NM_SETTING_VXLAN_RSC, "", "",
FALSE,
G_PARAM_READWRITE |
G_PARAM_CONSTRUCT |
NM_SETTING_PARAM_INFERRABLE |
G_PARAM_STATIC_STRINGS);
/**
* NMSettingVxlan:l2-miss:
*
* Specifies whether netlink LL ADDR miss notifications are generated.
*
* Since: 1.2
**/
obj_properties[PROP_L2_MISS] =
g_param_spec_boolean (NM_SETTING_VXLAN_L2_MISS, "", "",
FALSE,
G_PARAM_READWRITE |
G_PARAM_CONSTRUCT |
NM_SETTING_PARAM_INFERRABLE |
G_PARAM_STATIC_STRINGS);
/**
* NMSettingVxlan:l3-miss:
*
* Specifies whether netlink IP ADDR miss notifications are generated.
*
* Since: 1.2
**/
obj_properties[PROP_L3_MISS] =
g_param_spec_boolean (NM_SETTING_VXLAN_L3_MISS, "", "",
FALSE,
G_PARAM_READWRITE |
G_PARAM_CONSTRUCT |
NM_SETTING_PARAM_INFERRABLE |
G_PARAM_STATIC_STRINGS);
g_object_class_install_properties (object_class, _PROPERTY_ENUMS_LAST, obj_properties);
libnm: rework setting metadata for property handling NMSetting internally already tracked a list of all proper GObject properties and D-Bus-only properties. Rework the tracking of the list, so that: - instead of attaching the data to the GType of the setting via g_type_set_qdata(), it is tracked in a static array indexed by NMMetaSettingType. This allows to find the setting-data by simple pointer arithmetic, instead of taking a look and iterating (like g_type_set_qdata() does). Note, that this is still thread safe, because the static table entry is initialized in the class-init function with _nm_setting_class_commit(). And it only accessed by following a NMSettingClass instance, thus the class constructor already ran (maybe not for all setting classes, but for the particular one that we look up). I think this makes initialization of the metadata simpler to understand. Previously, in a first phase each class would attach the metadata to the GType as setting_property_overrides_quark(). Then during nm_setting_class_ensure_properties() it would merge them and set as setting_properties_quark(). Now, during the first phase, we only incrementally build a properties_override GArray, which we finally hand over during nm_setting_class_commit(). - sort the property infos by name and do binary search. Also expose this meta data types as internal API in nm-setting-private.h. While not accessed yet, it can prove beneficial, to have direct (internal) access to these structures. Also, rename NMSettingProperty to NMSettInfoProperty to use a distinct naming scheme. We already have 40+ subclasses of NMSetting that are called NMSetting*. Likewise, NMMetaSetting* is heavily used already. So, choose a new, distinct name.
2018-07-28 15:26:03 +02:00
_nm_setting_class_commit (setting_class, NM_META_SETTING_TYPE_VXLAN);
}