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authorSebastien Bacher <seb128@ubuntu.com>2021-01-11 18:07:03 +0100
committerSebastien Bacher <seb128@ubuntu.com>2021-01-11 18:15:57 +0100
commit2567f558da3eb9911678227d4aeb15162e707d89 (patch)
tree13c80b0e091c8ba585b14b966cda998f95f1936d /clients/cli/generate-docs-nm-settings-nmcli.xml
parent02d99ffd62ede29cffcb45fcbe33d044b7406d3a (diff)
parentf54032b30e1ddd84f10a339e0caf493772e049a7 (diff)
Merge branch 'debian/master' into ubuntu/master
Diffstat (limited to 'clients/cli/generate-docs-nm-settings-nmcli.xml')
-rw-r--r--clients/cli/generate-docs-nm-settings-nmcli.xml44
1 files changed, 25 insertions, 19 deletions
diff --git a/clients/cli/generate-docs-nm-settings-nmcli.xml b/clients/cli/generate-docs-nm-settings-nmcli.xml
index c0a0eebd..7907e038 100644
--- a/clients/cli/generate-docs-nm-settings-nmcli.xml
+++ b/clients/cli/generate-docs-nm-settings-nmcli.xml
@@ -57,6 +57,8 @@
                   description="One of NM_SETTING_WIRELESS_POWERSAVE_DISABLE (2) (disable Wi-Fi power saving), NM_SETTING_WIRELESS_POWERSAVE_ENABLE (3) (enable Wi-Fi power saving), NM_SETTING_WIRELESS_POWERSAVE_IGNORE (1) (don&apos;t touch currently configure setting) or NM_SETTING_WIRELESS_POWERSAVE_DEFAULT (0) (use the globally configured value). All other values are reserved." />
         <property name="wake-on-wlan"
                   description="The NMSettingWirelessWakeOnWLan options to enable. Not all devices support all options. May be any combination of NM_SETTING_WIRELESS_WAKE_ON_WLAN_ANY (0x2), NM_SETTING_WIRELESS_WAKE_ON_WLAN_DISCONNECT (0x4), NM_SETTING_WIRELESS_WAKE_ON_WLAN_MAGIC (0x8), NM_SETTING_WIRELESS_WAKE_ON_WLAN_GTK_REKEY_FAILURE (0x10), NM_SETTING_WIRELESS_WAKE_ON_WLAN_EAP_IDENTITY_REQUEST (0x20), NM_SETTING_WIRELESS_WAKE_ON_WLAN_4WAY_HANDSHAKE (0x40), NM_SETTING_WIRELESS_WAKE_ON_WLAN_RFKILL_RELEASE (0x80), NM_SETTING_WIRELESS_WAKE_ON_WLAN_TCP (0x100) or the special values NM_SETTING_WIRELESS_WAKE_ON_WLAN_DEFAULT (0x1) (to use global settings) and NM_SETTING_WIRELESS_WAKE_ON_WLAN_IGNORE (0x8000) (to disable management of Wake-on-LAN in NetworkManager)." />
+        <property name="ap-isolation"
+                  description="Configures AP isolation, which prevents communication between wireless devices connected to this AP. This property can be set to a value different from NM_TERNARY_DEFAULT (-1) only when the interface is configured in AP mode. If set to NM_TERNARY_TRUE (1), devices are not able to communicate with each other. This increases security because it protects devices against attacks from other clients in the network. At the same time, it prevents devices to access resources on the same wireless networks as file shares, printers, etc. If set to NM_TERNARY_FALSE (0), devices can talk to each other. When set to NM_TERNARY_DEFAULT (-1), the global default is used; in case the global default is unspecified it is assumed to be NM_TERNARY_FALSE (0)." />
     </setting>
     <setting name="802-11-wireless-security"
              alias="wifi-sec" >
@@ -316,7 +318,7 @@
         <property name="multicast-startup-query-interval"
                   description="Sets the time (in deciseconds) between queries sent out at startup to determine membership information." />
         <property name="multicast-router"
-                  description="Sets bridge&apos;s multicast router. Multicast-snooping must be enabled for this option to work. Supported values are: &apos;auto&apos;, &apos;disabled&apos;, &apos;enabled&apos;. If not specified the default value is &apos;auto&apos;." />
+                  description="Sets bridge&apos;s multicast router. Multicast-snooping must be enabled for this option to work. Supported values are: &apos;auto&apos;, &apos;disabled&apos;, &apos;enabled&apos; to which kernel assigns the numbers 1, 0, and 2, respectively. If not specified the default value is &apos;auto&apos; (1)." />
         <property name="vlan-filtering"
                   description="Control whether VLAN filtering is enabled on the bridge." />
         <property name="vlan-default-pvid"
@@ -362,7 +364,7 @@
         <property name="uuid"
                   description="A universally unique identifier for the connection, for example generated with libuuid.  It should be assigned when the connection is created, and never changed as long as the connection still applies to the same network.  For example, it should not be changed when the &quot;id&quot; property or NMSettingIP4Config changes, but might need to be re-created when the Wi-Fi SSID, mobile broadband network provider, or &quot;type&quot; property changes. The UUID must be in the format &quot;2815492f-7e56-435e-b2e9-246bd7cdc664&quot; (ie, contains only hexadecimal characters and &quot;-&quot;)." />
         <property name="stable-id"
-                  description="This represents the identity of the connection used for various purposes. It allows to configure multiple profiles to share the identity. Also, the stable-id can contain placeholders that are substituted dynamically and deterministically depending on the context. The stable-id is used for generating IPv6 stable private addresses with ipv6.addr-gen-mode=stable-privacy. It is also used to seed the generated cloned MAC address for ethernet.cloned-mac-address=stable and wifi.cloned-mac-address=stable. It is also used as DHCP client identifier with ipv4.dhcp-client-id=stable and to derive the DHCP DUID with ipv6.dhcp-duid=stable-[llt,ll,uuid]. Note that depending on the context where it is used, other parameters are also seeded into the generation algorithm. For example, a per-host key is commonly also included, so that different systems end up generating different IDs. Or with ipv6.addr-gen-mode=stable-privacy, also the device&apos;s name is included, so that different interfaces yield different addresses. The &apos;$&apos; character is treated special to perform dynamic substitutions at runtime. Currently supported are &quot;${CONNECTION}&quot;, &quot;${DEVICE}&quot;, &quot;${MAC}&quot;, &quot;${BOOT}&quot;, &quot;${RANDOM}&quot;. These effectively create unique IDs per-connection, per-device, per-boot, or every time. Note that &quot;${DEVICE}&quot; corresponds to the interface name of the device and &quot;${MAC}&quot; is the permanent MAC address of the device. Any unrecognized patterns following &apos;$&apos; are treated verbatim, however are reserved for future use. You are thus advised to avoid &apos;$&apos; or escape it as &quot;$$&quot;. For example, set it to &quot;${CONNECTION}-${BOOT}-${DEVICE}&quot; to create a unique id for this connection that changes with every reboot and differs depending on the interface where the profile activates. If the value is unset, a global connection default is consulted. If the value is still unset, the default is similar to &quot;${CONNECTION}&quot; and uses a unique, fixed ID for the connection." />
+                  description="This represents the identity of the connection used for various purposes. It allows to configure multiple profiles to share the identity. Also, the stable-id can contain placeholders that are substituted dynamically and deterministically depending on the context. The stable-id is used for generating IPv6 stable private addresses with ipv6.addr-gen-mode=stable-privacy. It is also used to seed the generated cloned MAC address for ethernet.cloned-mac-address=stable and wifi.cloned-mac-address=stable. It is also used as DHCP client identifier with ipv4.dhcp-client-id=stable and to derive the DHCP DUID with ipv6.dhcp-duid=stable-[llt,ll,uuid]. Note that depending on the context where it is used, other parameters are also seeded into the generation algorithm. For example, a per-host key is commonly also included, so that different systems end up generating different IDs. Or with ipv6.addr-gen-mode=stable-privacy, also the device&apos;s name is included, so that different interfaces yield different addresses. The per-host key is the identity of your machine and stored in /var/lib/NetworkManager/secret-key. The &apos;$&apos; character is treated special to perform dynamic substitutions at runtime. Currently, supported are &quot;${CONNECTION}&quot;, &quot;${DEVICE}&quot;, &quot;${MAC}&quot;, &quot;${BOOT}&quot;, &quot;${RANDOM}&quot;. These effectively create unique IDs per-connection, per-device, per-boot, or every time. Note that &quot;${DEVICE}&quot; corresponds to the interface name of the device and &quot;${MAC}&quot; is the permanent MAC address of the device. Any unrecognized patterns following &apos;$&apos; are treated verbatim, however are reserved for future use. You are thus advised to avoid &apos;$&apos; or escape it as &quot;$$&quot;. For example, set it to &quot;${CONNECTION}-${BOOT}-${DEVICE}&quot; to create a unique id for this connection that changes with every reboot and differs depending on the interface where the profile activates. If the value is unset, a global connection default is consulted. If the value is still unset, the default is similar to &quot;${CONNECTION}&quot; and uses a unique, fixed ID for the connection." />
         <property name="type"
                   alias="type"
                   description="Base type of the connection. For hardware-dependent connections, should contain the setting name of the hardware-type specific setting (ie, &quot;802-3-ethernet&quot; or &quot;802-11-wireless&quot; or &quot;bluetooth&quot;, etc), and for non-hardware dependent connections like VPN or otherwise, should contain the setting name of that setting type (ie, &quot;vpn&quot; or &quot;bridge&quot;, etc)." />
@@ -379,7 +381,7 @@
         <property name="multi-connect"
                   description="Specifies whether the profile can be active multiple times at a particular moment. The value is of type NMConnectionMultiConnect." />
         <property name="auth-retries"
-                  description="The number of retries for the authentication. Zero means to try indefinitely; -1 means to use a global default. If the global default is not set, the authentication retries for 3 times before failing the connection. Currently this only applies to 802-1x authentication." />
+                  description="The number of retries for the authentication. Zero means to try indefinitely; -1 means to use a global default. If the global default is not set, the authentication retries for 3 times before failing the connection. Currently, this only applies to 802-1x authentication." />
         <property name="timestamp"
                   description="The time, in seconds since the Unix Epoch, that the connection was last _successfully_ fully activated. NetworkManager updates the connection timestamp periodically when the connection is active to ensure that an active connection has the latest timestamp. The property is only meant for reading (changes to this property will not be preserved)." />
         <property name="read-only"
@@ -397,7 +399,7 @@
         <property name="autoconnect-slaves"
                   description="Whether or not slaves of this connection should be automatically brought up when NetworkManager activates this connection. This only has a real effect for master connections. The properties &quot;autoconnect&quot;, &quot;autoconnect-priority&quot; and &quot;autoconnect-retries&quot; are unrelated to this setting. The permitted values are: 0: leave slave connections untouched, 1: activate all the slave connections with this connection, -1: default. If -1 (default) is set, global connection.autoconnect-slaves is read to determine the real value. If it is default as well, this fallbacks to 0." />
         <property name="secondaries"
-                  description="List of connection UUIDs that should be activated when the base connection itself is activated. Currently only VPN connections are supported." />
+                  description="List of connection UUIDs that should be activated when the base connection itself is activated. Currently, only VPN connections are supported." />
         <property name="gateway-ping-timeout"
                   description="If greater than zero, delay success of IP addressing until either the timeout is reached, or an IP gateway replies to a ping." />
         <property name="metered"
@@ -405,9 +407,9 @@
         <property name="lldp"
                   description="Whether LLDP is enabled for the connection." />
         <property name="mdns"
-                  description="Whether mDNS is enabled for the connection. The permitted values are: &quot;yes&quot; (2) register hostname and resolving for the connection, &quot;no&quot; (0) disable mDNS for the interface, &quot;resolve&quot; (1) do not register hostname but allow resolving of mDNS host names and &quot;default&quot; (-1) to allow lookup of a global default in NetworkManager.conf. If unspecified, &quot;default&quot; ultimately depends on the DNS plugin (which for systemd-resolved currently means &quot;no&quot;). This feature requires a plugin which supports mDNS. Otherwise the setting has no effect. One such plugin is dns-systemd-resolved." />
+                  description="Whether mDNS is enabled for the connection. The permitted values are: &quot;yes&quot; (2) register hostname and resolving for the connection, &quot;no&quot; (0) disable mDNS for the interface, &quot;resolve&quot; (1) do not register hostname but allow resolving of mDNS host names and &quot;default&quot; (-1) to allow lookup of a global default in NetworkManager.conf. If unspecified, &quot;default&quot; ultimately depends on the DNS plugin (which for systemd-resolved currently means &quot;no&quot;). This feature requires a plugin which supports mDNS. Otherwise, the setting has no effect. One such plugin is dns-systemd-resolved." />
         <property name="llmnr"
-                  description="Whether Link-Local Multicast Name Resolution (LLMNR) is enabled for the connection. LLMNR is a protocol based on the Domain Name System (DNS) packet format that allows both IPv4 and IPv6 hosts to perform name resolution for hosts on the same local link. The permitted values are: &quot;yes&quot; (2) register hostname and resolving for the connection, &quot;no&quot; (0) disable LLMNR for the interface, &quot;resolve&quot; (1) do not register hostname but allow resolving of LLMNR host names If unspecified, &quot;default&quot; ultimately depends on the DNS plugin (which for systemd-resolved currently means &quot;yes&quot;). This feature requires a plugin which supports LLMNR. Otherwise the setting has no effect. One such plugin is dns-systemd-resolved." />
+                  description="Whether Link-Local Multicast Name Resolution (LLMNR) is enabled for the connection. LLMNR is a protocol based on the Domain Name System (DNS) packet format that allows both IPv4 and IPv6 hosts to perform name resolution for hosts on the same local link. The permitted values are: &quot;yes&quot; (2) register hostname and resolving for the connection, &quot;no&quot; (0) disable LLMNR for the interface, &quot;resolve&quot; (1) do not register hostname but allow resolving of LLMNR host names If unspecified, &quot;default&quot; ultimately depends on the DNS plugin (which for systemd-resolved currently means &quot;yes&quot;). This feature requires a plugin which supports LLMNR. Otherwise, the setting has no effect. One such plugin is dns-systemd-resolved." />
         <property name="mud-url"
                   description="If configured, set to a Manufacturer Usage Description (MUD) URL that points to manufacturer-recommended network policies for IoT devices. It is transmitted as a DHCPv4 or DHCPv6 option. The value must be a valid URL starting with &quot;https://&quot;. The special value &quot;none&quot; is allowed to indicate that no MUD URL is used. If the per-profile value is unspecified (the default), a global connection default gets consulted. If still unspecified, the ultimate default is &quot;none&quot;." />
         <property name="wait-device-timeout"
@@ -574,7 +576,7 @@
                   description="The IP-over-InfiniBand transport mode. Either &quot;datagram&quot; or &quot;connected&quot;." />
         <property name="p-key"
                   alias="p-key"
-                  description="The InfiniBand P_Key to use for this device. A value of -1 means to use the default P_Key (aka &quot;the P_Key at index 0&quot;).  Otherwise it is a 16-bit unsigned integer, whose high bit is set if it is a &quot;full membership&quot; P_Key." />
+                  description="The InfiniBand P_Key to use for this device. A value of -1 means to use the default P_Key (aka &quot;the P_Key at index 0&quot;). Otherwise, it is a 16-bit unsigned integer, whose high bit is set if it is a &quot;full membership&quot; P_Key." />
         <property name="parent"
                   alias="parent"
                   description="The interface name of the parent device of this device. Normally NULL, but if the &quot;p_key&quot; property is set, then you must specify the base device by setting either this property or &quot;mac-address&quot;." />
@@ -609,7 +611,7 @@
         <property name="mtu"
                   description="If non-zero, only transmit packets of the specified size or smaller, breaking larger packets up into multiple fragments." />
         <property name="flags"
-                  description="Tunnel flags. Currently the following values are supported: NM_IP_TUNNEL_FLAG_IP6_IGN_ENCAP_LIMIT (0x1), NM_IP_TUNNEL_FLAG_IP6_USE_ORIG_TCLASS (0x2), NM_IP_TUNNEL_FLAG_IP6_USE_ORIG_FLOWLABEL (0x4), NM_IP_TUNNEL_FLAG_IP6_MIP6_DEV (0x8), NM_IP_TUNNEL_FLAG_IP6_RCV_DSCP_COPY (0x10), NM_IP_TUNNEL_FLAG_IP6_USE_ORIG_FWMARK (0x20). They are valid only for IPv6 tunnels." />
+                  description="Tunnel flags. Currently, the following values are supported: NM_IP_TUNNEL_FLAG_IP6_IGN_ENCAP_LIMIT (0x1), NM_IP_TUNNEL_FLAG_IP6_USE_ORIG_TCLASS (0x2), NM_IP_TUNNEL_FLAG_IP6_USE_ORIG_FLOWLABEL (0x4), NM_IP_TUNNEL_FLAG_IP6_MIP6_DEV (0x8), NM_IP_TUNNEL_FLAG_IP6_RCV_DSCP_COPY (0x10), NM_IP_TUNNEL_FLAG_IP6_USE_ORIG_FWMARK (0x20). They are valid only for IPv6 tunnels." />
     </setting>
     <setting name="ipv4" >
         <property name="method"
@@ -617,11 +619,11 @@
         <property name="dns"
                   description="Array of IP addresses of DNS servers." />
         <property name="dns-search"
-                  description="Array of DNS search domains. Domains starting with a tilde (&apos;~&apos;) are considered &apos;routing&apos; domains and are used only to decide the interface over which a query must be forwarded; they are not used to complete unqualified host names." />
+                  description="Array of DNS search domains. Domains starting with a tilde (&apos;~&apos;) are considered &apos;routing&apos; domains and are used only to decide the interface over which a query must be forwarded; they are not used to complete unqualified host names. When using a DNS plugin that supports Conditional Forwarding or Split DNS, then the search domains specify which name servers to query. This makes the behavior different from running with plain /etc/resolv.conf. For more information see also the dns-priority setting." />
         <property name="dns-options"
                   description="Array of DNS options as described in man 5 resolv.conf. NULL means that the options are unset and left at the default. In this case NetworkManager will use default options. This is distinct from an empty list of properties. The currently supported options are &quot;attempts&quot;, &quot;debug&quot;, &quot;edns0&quot;, &quot;inet6&quot;, &quot;ip6-bytestring&quot;, &quot;ip6-dotint&quot;, &quot;ndots&quot;, &quot;no-check-names&quot;, &quot;no-ip6-dotint&quot;, &quot;no-reload&quot;, &quot;no-tld-query&quot;, &quot;rotate&quot;, &quot;single-request&quot;, &quot;single-request-reopen&quot;, &quot;timeout&quot;, &quot;trust-ad&quot;, &quot;use-vc&quot;. The &quot;trust-ad&quot; setting is only honored if the profile contributes name servers to resolv.conf, and if all contributing profiles have &quot;trust-ad&quot; enabled." />
         <property name="dns-priority"
-                  description="DNS servers priority. The relative priority for DNS servers specified by this setting.  A lower value is better (higher priority). Zero selects a globally configured default value. If the latter is missing or zero too, it defaults to 50 for VPNs (including WireGuard) and 100 for other connections. Note that the priority is to order DNS settings for multiple active connections.  It does not disambiguate multiple DNS servers within the same connection profile. When using dns=default, servers with higher priority will be on top of resolv.conf.  To prioritize a given server over another one within the same connection, just specify them in the desired order.  When multiple devices have configurations with the same priority, VPNs will be considered first, then devices with the best (lowest metric) default route and then all other devices.  Negative values have the special effect of excluding other configurations with a greater priority value; so in presence of at least one negative priority, only DNS servers from connections with the lowest priority value will be used. When using a DNS resolver that supports Conditional Forwarding as dns=dnsmasq or dns=systemd-resolved, each connection is used to query domains in its search list.  Queries for domains not present in any search list are routed through connections having the &apos;~.&apos; special wildcard domain, which is added automatically to connections with the default route (or can be added manually).  When multiple connections specify the same domain, the one with the highest priority (lowest numerical value) wins.  If a connection specifies a domain which is subdomain of another domain with a negative DNS priority value, the subdomain is ignored." />
+                  description="DNS servers priority. The relative priority for DNS servers specified by this setting.  A lower numerical value is better (higher priority). Negative values have the special effect of excluding other configurations with a greater numerical priority value; so in presence of at least one negative priority, only DNS servers from connections with the lowest priority value will be used. To avoid all DNS leaks, set the priority of the profile that should be used to the most negative value of all active connections profiles. Zero selects a globally configured default value. If the latter is missing or zero too, it defaults to 50 for VPNs (including WireGuard) and 100 for other connections. Note that the priority is to order DNS settings for multiple active connections.  It does not disambiguate multiple DNS servers within the same connection profile. When multiple devices have configurations with the same priority, VPNs will be considered first, then devices with the best (lowest metric) default route and then all other devices. When using dns=default, servers with higher priority will be on top of resolv.conf. To prioritize a given server over another one within the same connection, just specify them in the desired order. Note that commonly the resolver tries name servers in /etc/resolv.conf in the order listed, proceeding with the next server in the list on failure. See for example the &quot;rotate&quot; option of the dns-options setting. If there are any negative DNS priorities, then only name servers from the devices with that lowest priority will be considered. When using a DNS resolver that supports Conditional Forwarding or Split DNS (with dns=dnsmasq or dns=systemd-resolved settings), each connection is used to query domains in its search list. The search domains determine which name servers to ask, and the DNS priority is used to prioritize name servers based on the domain.  Queries for domains not present in any search list are routed through connections having the &apos;~.&apos; special wildcard domain, which is added automatically to connections with the default route (or can be added manually).  When multiple connections specify the same domain, the one with the best priority (lowest numerical value) wins.  If a sub domain is configured on another interface it will be accepted regardless the priority, unless parent domain on the other interface has a negative priority, which causes the sub domain to be shadowed. With Split DNS one can avoid undesired DNS leaks by properly configuring DNS priorities and the search domains, so that only name servers of the desired interface are configured." />
         <property name="addresses"
                   alias="ip4"
                   description="Array of IP addresses." />
@@ -638,7 +640,7 @@
         <property name="ignore-auto-routes"
                   description="When &quot;method&quot; is set to &quot;auto&quot; and this property to TRUE, automatically configured routes are ignored and only routes specified in the &quot;routes&quot; property, if any, are used." />
         <property name="ignore-auto-dns"
-                  description="When &quot;method&quot; is set to &quot;auto&quot; and this property to TRUE, automatically configured nameservers and search domains are ignored and only nameservers and search domains specified in the &quot;dns&quot; and &quot;dns-search&quot; properties, if any, are used." />
+                  description="When &quot;method&quot; is set to &quot;auto&quot; and this property to TRUE, automatically configured name servers and search domains are ignored and only name servers and search domains specified in the &quot;dns&quot; and &quot;dns-search&quot; properties, if any, are used." />
         <property name="dhcp-client-id"
                   description="A string sent to the DHCP server to identify the local machine which the DHCP server may use to customize the DHCP lease and options. When the property is a hex string (&apos;aa:bb:cc&apos;) it is interpreted as a binary client ID, in which case the first byte is assumed to be the &apos;type&apos; field as per RFC 2132 section 9.14 and the remaining bytes may be an hardware address (e.g. &apos;01:xx:xx:xx:xx:xx:xx&apos; where 1 is the Ethernet ARP type and the rest is a MAC address). If the property is not a hex string it is considered as a non-hardware-address client ID and the &apos;type&apos; field is set to 0. The special values &quot;mac&quot; and &quot;perm-mac&quot; are supported, which use the current or permanent MAC address of the device to generate a client identifier with type ethernet (01). Currently, these options only work for ethernet type of links. The special value &quot;duid&quot; generates a RFC4361-compliant client identifier based on a hash of the interface name as IAID and /etc/machine-id. The special value &quot;stable&quot; is supported to generate a type 0 client identifier based on the stable-id (see connection.stable-id) and a per-host key. If you set the stable-id, you may want to include the &quot;${DEVICE}&quot; or &quot;${MAC}&quot; specifier to get a per-device key. If unset, a globally configured default is used. If still unset, the default depends on the DHCP plugin." />
         <property name="dhcp-iaid"
@@ -652,13 +654,17 @@
         <property name="dhcp-fqdn"
                   description="If the &quot;dhcp-send-hostname&quot; property is TRUE, then the specified FQDN will be sent to the DHCP server when acquiring a lease. This property and &quot;dhcp-hostname&quot; are mutually exclusive and cannot be set at the same time." />
         <property name="dhcp-hostname-flags"
-                  description="Flags for the DHCP hostname and FQDN. Currently this property only includes flags to control the FQDN flags set in the DHCP FQDN option. Supported FQDN flags are NM_DHCP_HOSTNAME_FLAG_FQDN_SERV_UPDATE (0x1), NM_DHCP_HOSTNAME_FLAG_FQDN_ENCODED (0x2) and NM_DHCP_HOSTNAME_FLAG_FQDN_NO_UPDATE (0x4).  When no FQDN flag is set and NM_DHCP_HOSTNAME_FLAG_FQDN_CLEAR_FLAGS (0x8) is set, the DHCP FQDN option will contain no flag. Otherwise, if no FQDN flag is set and NM_DHCP_HOSTNAME_FLAG_FQDN_CLEAR_FLAGS (0x8) is not set, the standard FQDN flags are set in the request: NM_DHCP_HOSTNAME_FLAG_FQDN_SERV_UPDATE (0x1), NM_DHCP_HOSTNAME_FLAG_FQDN_ENCODED (0x2) for IPv4 and NM_DHCP_HOSTNAME_FLAG_FQDN_SERV_UPDATE (0x1) for IPv6. When this property is set to the default value NM_DHCP_HOSTNAME_FLAG_NONE (0x0), a global default is looked up in NetworkManager configuration. If that value is unset or also NM_DHCP_HOSTNAME_FLAG_NONE (0x0), then the standard FQDN flags described above are sent in the DHCP requests." />
+                  description="Flags for the DHCP hostname and FQDN. Currently, this property only includes flags to control the FQDN flags set in the DHCP FQDN option. Supported FQDN flags are NM_DHCP_HOSTNAME_FLAG_FQDN_SERV_UPDATE (0x1), NM_DHCP_HOSTNAME_FLAG_FQDN_ENCODED (0x2) and NM_DHCP_HOSTNAME_FLAG_FQDN_NO_UPDATE (0x4).  When no FQDN flag is set and NM_DHCP_HOSTNAME_FLAG_FQDN_CLEAR_FLAGS (0x8) is set, the DHCP FQDN option will contain no flag. Otherwise, if no FQDN flag is set and NM_DHCP_HOSTNAME_FLAG_FQDN_CLEAR_FLAGS (0x8) is not set, the standard FQDN flags are set in the request: NM_DHCP_HOSTNAME_FLAG_FQDN_SERV_UPDATE (0x1), NM_DHCP_HOSTNAME_FLAG_FQDN_ENCODED (0x2) for IPv4 and NM_DHCP_HOSTNAME_FLAG_FQDN_SERV_UPDATE (0x1) for IPv6. When this property is set to the default value NM_DHCP_HOSTNAME_FLAG_NONE (0x0), a global default is looked up in NetworkManager configuration. If that value is unset or also NM_DHCP_HOSTNAME_FLAG_NONE (0x0), then the standard FQDN flags described above are sent in the DHCP requests." />
         <property name="never-default"
                   description="If TRUE, this connection will never be the default connection for this IP type, meaning it will never be assigned the default route by NetworkManager." />
         <property name="may-fail"
                   description="If TRUE, allow overall network configuration to proceed even if the configuration specified by this property times out.  Note that at least one IP configuration must succeed or overall network configuration will still fail.  For example, in IPv6-only networks, setting this property to TRUE on the NMSettingIP4Config allows the overall network configuration to succeed if IPv4 configuration fails but IPv6 configuration completes successfully." />
         <property name="dad-timeout"
                   description="Timeout in milliseconds used to check for the presence of duplicate IP addresses on the network.  If an address conflict is detected, the activation will fail.  A zero value means that no duplicate address detection is performed, -1 means the default value (either configuration ipvx.dad-timeout override or zero).  A value greater than zero is a timeout in milliseconds. The property is currently implemented only for IPv4." />
+        <property name="dhcp-vendor-class-identifier"
+                  description="The Vendor Class Identifier DHCP option (60). Special characters in the data string may be escaped using C-style escapes, nevertheless this property cannot contain nul bytes. If the per-profile value is unspecified (the default), a global connection default gets consulted. If still unspecified, the DHCP option is not sent to the server. Since 1.28" />
+        <property name="dhcp-reject-servers"
+                  description="Array of servers from which DHCP offers must be rejected. This property is useful to avoid getting a lease from misconfigured or rogue servers. For DHCPv4, each element must be an IPv4 address, optionally followed by a slash and a prefix length (e.g. &quot;192.168.122.0/24&quot;). This property is currently not implemented for DHCPv6." />
     </setting>
     <setting name="ipv6" >
         <property name="method"
@@ -666,11 +672,11 @@
         <property name="dns"
                   description="Array of IP addresses of DNS servers." />
         <property name="dns-search"
-                  description="Array of DNS search domains. Domains starting with a tilde (&apos;~&apos;) are considered &apos;routing&apos; domains and are used only to decide the interface over which a query must be forwarded; they are not used to complete unqualified host names." />
+                  description="Array of DNS search domains. Domains starting with a tilde (&apos;~&apos;) are considered &apos;routing&apos; domains and are used only to decide the interface over which a query must be forwarded; they are not used to complete unqualified host names. When using a DNS plugin that supports Conditional Forwarding or Split DNS, then the search domains specify which name servers to query. This makes the behavior different from running with plain /etc/resolv.conf. For more information see also the dns-priority setting." />
         <property name="dns-options"
                   description="Array of DNS options as described in man 5 resolv.conf. NULL means that the options are unset and left at the default. In this case NetworkManager will use default options. This is distinct from an empty list of properties. The currently supported options are &quot;attempts&quot;, &quot;debug&quot;, &quot;edns0&quot;, &quot;inet6&quot;, &quot;ip6-bytestring&quot;, &quot;ip6-dotint&quot;, &quot;ndots&quot;, &quot;no-check-names&quot;, &quot;no-ip6-dotint&quot;, &quot;no-reload&quot;, &quot;no-tld-query&quot;, &quot;rotate&quot;, &quot;single-request&quot;, &quot;single-request-reopen&quot;, &quot;timeout&quot;, &quot;trust-ad&quot;, &quot;use-vc&quot;. The &quot;trust-ad&quot; setting is only honored if the profile contributes name servers to resolv.conf, and if all contributing profiles have &quot;trust-ad&quot; enabled." />
         <property name="dns-priority"
-                  description="DNS servers priority. The relative priority for DNS servers specified by this setting.  A lower value is better (higher priority). Zero selects a globally configured default value. If the latter is missing or zero too, it defaults to 50 for VPNs (including WireGuard) and 100 for other connections. Note that the priority is to order DNS settings for multiple active connections.  It does not disambiguate multiple DNS servers within the same connection profile. When using dns=default, servers with higher priority will be on top of resolv.conf.  To prioritize a given server over another one within the same connection, just specify them in the desired order.  When multiple devices have configurations with the same priority, VPNs will be considered first, then devices with the best (lowest metric) default route and then all other devices.  Negative values have the special effect of excluding other configurations with a greater priority value; so in presence of at least one negative priority, only DNS servers from connections with the lowest priority value will be used. When using a DNS resolver that supports Conditional Forwarding as dns=dnsmasq or dns=systemd-resolved, each connection is used to query domains in its search list.  Queries for domains not present in any search list are routed through connections having the &apos;~.&apos; special wildcard domain, which is added automatically to connections with the default route (or can be added manually).  When multiple connections specify the same domain, the one with the highest priority (lowest numerical value) wins.  If a connection specifies a domain which is subdomain of another domain with a negative DNS priority value, the subdomain is ignored." />
+                  description="DNS servers priority. The relative priority for DNS servers specified by this setting.  A lower numerical value is better (higher priority). Negative values have the special effect of excluding other configurations with a greater numerical priority value; so in presence of at least one negative priority, only DNS servers from connections with the lowest priority value will be used. To avoid all DNS leaks, set the priority of the profile that should be used to the most negative value of all active connections profiles. Zero selects a globally configured default value. If the latter is missing or zero too, it defaults to 50 for VPNs (including WireGuard) and 100 for other connections. Note that the priority is to order DNS settings for multiple active connections.  It does not disambiguate multiple DNS servers within the same connection profile. When multiple devices have configurations with the same priority, VPNs will be considered first, then devices with the best (lowest metric) default route and then all other devices. When using dns=default, servers with higher priority will be on top of resolv.conf. To prioritize a given server over another one within the same connection, just specify them in the desired order. Note that commonly the resolver tries name servers in /etc/resolv.conf in the order listed, proceeding with the next server in the list on failure. See for example the &quot;rotate&quot; option of the dns-options setting. If there are any negative DNS priorities, then only name servers from the devices with that lowest priority will be considered. When using a DNS resolver that supports Conditional Forwarding or Split DNS (with dns=dnsmasq or dns=systemd-resolved settings), each connection is used to query domains in its search list. The search domains determine which name servers to ask, and the DNS priority is used to prioritize name servers based on the domain.  Queries for domains not present in any search list are routed through connections having the &apos;~.&apos; special wildcard domain, which is added automatically to connections with the default route (or can be added manually).  When multiple connections specify the same domain, the one with the best priority (lowest numerical value) wins.  If a sub domain is configured on another interface it will be accepted regardless the priority, unless parent domain on the other interface has a negative priority, which causes the sub domain to be shadowed. With Split DNS one can avoid undesired DNS leaks by properly configuring DNS priorities and the search domains, so that only name servers of the desired interface are configured." />
         <property name="addresses"
                   alias="ip6"
                   description="Array of IP addresses." />
@@ -687,7 +693,7 @@
         <property name="ignore-auto-routes"
                   description="When &quot;method&quot; is set to &quot;auto&quot; and this property to TRUE, automatically configured routes are ignored and only routes specified in the &quot;routes&quot; property, if any, are used." />
         <property name="ignore-auto-dns"
-                  description="When &quot;method&quot; is set to &quot;auto&quot; and this property to TRUE, automatically configured nameservers and search domains are ignored and only nameservers and search domains specified in the &quot;dns&quot; and &quot;dns-search&quot; properties, if any, are used." />
+                  description="When &quot;method&quot; is set to &quot;auto&quot; and this property to TRUE, automatically configured name servers and search domains are ignored and only name servers and search domains specified in the &quot;dns&quot; and &quot;dns-search&quot; properties, if any, are used." />
         <property name="never-default"
                   description="If TRUE, this connection will never be the default connection for this IP type, meaning it will never be assigned the default route by NetworkManager." />
         <property name="may-fail"
@@ -709,7 +715,7 @@
         <property name="dhcp-hostname"
                   description="If the &quot;dhcp-send-hostname&quot; property is TRUE, then the specified name will be sent to the DHCP server when acquiring a lease. This property and &quot;dhcp-fqdn&quot; are mutually exclusive and cannot be set at the same time." />
         <property name="dhcp-hostname-flags"
-                  description="Flags for the DHCP hostname and FQDN. Currently this property only includes flags to control the FQDN flags set in the DHCP FQDN option. Supported FQDN flags are NM_DHCP_HOSTNAME_FLAG_FQDN_SERV_UPDATE (0x1), NM_DHCP_HOSTNAME_FLAG_FQDN_ENCODED (0x2) and NM_DHCP_HOSTNAME_FLAG_FQDN_NO_UPDATE (0x4).  When no FQDN flag is set and NM_DHCP_HOSTNAME_FLAG_FQDN_CLEAR_FLAGS (0x8) is set, the DHCP FQDN option will contain no flag. Otherwise, if no FQDN flag is set and NM_DHCP_HOSTNAME_FLAG_FQDN_CLEAR_FLAGS (0x8) is not set, the standard FQDN flags are set in the request: NM_DHCP_HOSTNAME_FLAG_FQDN_SERV_UPDATE (0x1), NM_DHCP_HOSTNAME_FLAG_FQDN_ENCODED (0x2) for IPv4 and NM_DHCP_HOSTNAME_FLAG_FQDN_SERV_UPDATE (0x1) for IPv6. When this property is set to the default value NM_DHCP_HOSTNAME_FLAG_NONE (0x0), a global default is looked up in NetworkManager configuration. If that value is unset or also NM_DHCP_HOSTNAME_FLAG_NONE (0x0), then the standard FQDN flags described above are sent in the DHCP requests." />
+                  description="Flags for the DHCP hostname and FQDN. Currently, this property only includes flags to control the FQDN flags set in the DHCP FQDN option. Supported FQDN flags are NM_DHCP_HOSTNAME_FLAG_FQDN_SERV_UPDATE (0x1), NM_DHCP_HOSTNAME_FLAG_FQDN_ENCODED (0x2) and NM_DHCP_HOSTNAME_FLAG_FQDN_NO_UPDATE (0x4).  When no FQDN flag is set and NM_DHCP_HOSTNAME_FLAG_FQDN_CLEAR_FLAGS (0x8) is set, the DHCP FQDN option will contain no flag. Otherwise, if no FQDN flag is set and NM_DHCP_HOSTNAME_FLAG_FQDN_CLEAR_FLAGS (0x8) is not set, the standard FQDN flags are set in the request: NM_DHCP_HOSTNAME_FLAG_FQDN_SERV_UPDATE (0x1), NM_DHCP_HOSTNAME_FLAG_FQDN_ENCODED (0x2) for IPv4 and NM_DHCP_HOSTNAME_FLAG_FQDN_SERV_UPDATE (0x1) for IPv6. When this property is set to the default value NM_DHCP_HOSTNAME_FLAG_NONE (0x0), a global default is looked up in NetworkManager configuration. If that value is unset or also NM_DHCP_HOSTNAME_FLAG_NONE (0x0), then the standard FQDN flags described above are sent in the DHCP requests." />
         <property name="token"
                   description="Configure the token for draft-chown-6man-tokenised-ipv6-identifiers-02 IPv6 tokenized interface identifiers. Useful with eui64 addr-gen-mode." />
     </setting>
@@ -884,7 +890,7 @@
         <property name="total-vfs"
                   description="The total number of virtual functions to create. Note that when the sriov setting is present NetworkManager enforces the number of virtual functions on the interface (also when it is zero) during activation and resets it upon deactivation. To prevent any changes to SR-IOV parameters don&apos;t add a sriov setting to the connection." />
         <property name="vfs"
-                  description="Array of virtual function descriptors. Each VF descriptor is a dictionary mapping attribute names to GVariant values. The &apos;index&apos; entry is mandatory for each VF. When represented as string a VF is in the form: &quot;INDEX [ATTR=VALUE[ ATTR=VALUE]...]&quot;. for example: &quot;2 mac=00:11:22:33:44:55 spoof-check=true&quot;. Multiple VFs can be specified using a comma as separator. Currently the following attributes are supported: mac, spoof-check, trust, min-tx-rate, max-tx-rate, vlans. The &quot;vlans&quot; attribute is represented as a semicolon-separated list of VLAN descriptors, where each descriptor has the form &quot;ID[.PRIORITY[.PROTO]]&quot;. PROTO can be either &apos;q&apos; for 802.1Q (the default) or &apos;ad&apos; for 802.1ad." />
+                  description="Array of virtual function descriptors. Each VF descriptor is a dictionary mapping attribute names to GVariant values. The &apos;index&apos; entry is mandatory for each VF. When represented as string a VF is in the form: &quot;INDEX [ATTR=VALUE[ ATTR=VALUE]...]&quot;. for example: &quot;2 mac=00:11:22:33:44:55 spoof-check=true&quot;. Multiple VFs can be specified using a comma as separator. Currently, the following attributes are supported: mac, spoof-check, trust, min-tx-rate, max-tx-rate, vlans. The &quot;vlans&quot; attribute is represented as a semicolon-separated list of VLAN descriptors, where each descriptor has the form &quot;ID[.PRIORITY[.PROTO]]&quot;. PROTO can be either &apos;q&apos; for 802.1Q (the default) or &apos;ad&apos; for 802.1ad." />
         <property name="autoprobe-drivers"
                   description="Whether to autoprobe virtual functions by a compatible driver. If set to NM_TERNARY_TRUE (1), the kernel will try to bind VFs to a compatible driver and if this succeeds a new network interface will be instantiated for each VF. If set to NM_TERNARY_FALSE (0), VFs will not be claimed and no network interfaces will be created for them. When set to NM_TERNARY_DEFAULT (-1), the global default is used; in case the global default is unspecified it is assumed to be NM_TERNARY_TRUE (1)." />
     </setting>
@@ -1050,7 +1056,7 @@
     <setting name="wifi-p2p" >
         <property name="peer"
                   alias="peer"
-                  description="The P2P device that should be connected to. Currently this is the only way to create or join a group." />
+                  description="The P2P device that should be connected to. Currently, this is the only way to create or join a group." />
         <property name="wps-method"
                   description="Flags indicating which mode of WPS is to be used. There&apos;s little point in changing the default setting as NetworkManager will automatically determine the best method to use." />
         <property name="wfd-ies"
@@ -1072,7 +1078,7 @@
         <property name="listen-port"
                   description="The listen-port. If listen-port is not specified, the port will be chosen randomly when the interface comes up." />
         <property name="fwmark"
-                  description="The use of fwmark is optional and is by default off. Setting it to 0 disables it. Otherwise it is a 32-bit fwmark for outgoing packets. Note that &quot;ip4-auto-default-route&quot; or &quot;ip6-auto-default-route&quot; enabled, implies to automatically choose a fwmark." />
+                  description="The use of fwmark is optional and is by default off. Setting it to 0 disables it. Otherwise, it is a 32-bit fwmark for outgoing packets. Note that &quot;ip4-auto-default-route&quot; or &quot;ip6-auto-default-route&quot; enabled, implies to automatically choose a fwmark." />
         <property name="peer-routes"
                   description="Whether to automatically add routes for the AllowedIPs ranges of the peers. If TRUE (the default), NetworkManager will automatically add routes in the routing tables according to ipv4.route-table and ipv6.route-table. Usually you want this automatism enabled. If FALSE, no such routes are added automatically. In this case, the user may want to configure static routes in ipv4.routes and ipv6.routes, respectively. Note that if the peer&apos;s AllowedIPs is &quot;0.0.0.0/0&quot; or &quot;::/0&quot; and the profile&apos;s ipv4.never-default or ipv6.never-default setting is enabled, the peer route for this peer won&apos;t be added automatically." />
         <property name="mtu"