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authorMichael Biebl <biebl@debian.org>2019-03-26 23:25:23 +0100
committerMichael Biebl <biebl@debian.org>2019-03-26 23:25:23 +0100
commit9a6dcbf895f9da01768e64b73cec88c16157d91e (patch)
treea359958930d731e9f1b59344642e10754419fe84 /clients/common/settings-docs.h.in
parent964ae8cc391520440cf5aa13e2b9cc34850ea6c2 (diff)
New upstream version 1.16.0 upstream/1.16.0
Diffstat (limited to 'clients/common/settings-docs.h.in')
-rw-r--r--clients/common/settings-docs.h.in27
1 files changed, 19 insertions, 8 deletions
diff --git a/clients/common/settings-docs.h.in b/clients/common/settings-docs.h.in
index bc56edae..7b958faa 100644
--- a/clients/common/settings-docs.h.in
+++ b/clients/common/settings-docs.h.in
@@ -24,14 +24,14 @@
 #define DESCRIBE_DOC_NM_SETTING_WIRELESS_SECURITY_AUTH_ALG N_("When WEP is used (ie, key-mgmt = \"none\" or \"ieee8021x\") indicate the 802.11 authentication algorithm required by the AP here.  One of \"open\" for Open System, \"shared\" for Shared Key, or \"leap\" for Cisco LEAP.  When using Cisco LEAP (ie, key-mgmt = \"ieee8021x\" and auth-alg = \"leap\") the \"leap-username\" and \"leap-password\" properties must be specified.")
 #define DESCRIBE_DOC_NM_SETTING_WIRELESS_SECURITY_FILS N_("Indicates whether Fast Initial Link Setup (802.11ai) must be enabled for the connection.  One of NM_SETTING_WIRELESS_SECURITY_FILS_DEFAULT (0) (use global default value), NM_SETTING_WIRELESS_SECURITY_FILS_DISABLE (1) (disable FILS), NM_SETTING_WIRELESS_SECURITY_FILS_OPTIONAL (2) (enable FILS if the supplicant and the access point support it) or NM_SETTING_WIRELESS_SECURITY_FILS_REQUIRED (3) (enable FILS and fail if not supported).  When set to NM_SETTING_WIRELESS_SECURITY_FILS_DEFAULT (0) and no global default is set, FILS will be optionally enabled.")
 #define DESCRIBE_DOC_NM_SETTING_WIRELESS_SECURITY_GROUP N_("A list of group/broadcast encryption algorithms which prevents connections to Wi-Fi networks that do not utilize one of the algorithms in the list.  For maximum compatibility leave this property empty.  Each list element may be one of \"wep40\", \"wep104\", \"tkip\", or \"ccmp\".")
-#define DESCRIBE_DOC_NM_SETTING_WIRELESS_SECURITY_KEY_MGMT N_("Key management used for the connection.  One of \"none\" (WEP), \"ieee8021x\" (Dynamic WEP), \"wpa-none\" (Ad-Hoc WPA-PSK), \"wpa-psk\" (infrastructure WPA-PSK), or \"wpa-eap\" (WPA-Enterprise).  This property must be set for any Wi-Fi connection that uses security.")
+#define DESCRIBE_DOC_NM_SETTING_WIRELESS_SECURITY_KEY_MGMT N_("Key management used for the connection.  One of \"none\" (WEP), \"ieee8021x\" (Dynamic WEP), \"wpa-none\" (Ad-Hoc WPA-PSK), \"wpa-psk\" (infrastructure WPA-PSK), \"sae\" (SAE) or \"wpa-eap\" (WPA-Enterprise). This property must be set for any Wi-Fi connection that uses security.")
 #define DESCRIBE_DOC_NM_SETTING_WIRELESS_SECURITY_LEAP_PASSWORD N_("The login password for legacy LEAP connections (ie, key-mgmt = \"ieee8021x\" and auth-alg = \"leap\").")
 #define DESCRIBE_DOC_NM_SETTING_WIRELESS_SECURITY_LEAP_PASSWORD_FLAGS N_("Flags indicating how to handle the \"leap-password\" property.")
 #define DESCRIBE_DOC_NM_SETTING_WIRELESS_SECURITY_LEAP_USERNAME N_("The login username for legacy LEAP connections (ie, key-mgmt = \"ieee8021x\" and auth-alg = \"leap\").")
 #define DESCRIBE_DOC_NM_SETTING_WIRELESS_SECURITY_PAIRWISE N_("A list of pairwise encryption algorithms which prevents connections to Wi-Fi networks that do not utilize one of the algorithms in the list. For maximum compatibility leave this property empty.  Each list element may be one of \"tkip\" or \"ccmp\".")
 #define DESCRIBE_DOC_NM_SETTING_WIRELESS_SECURITY_PMF N_("Indicates whether Protected Management Frames (802.11w) must be enabled for the connection.  One of NM_SETTING_WIRELESS_SECURITY_PMF_DEFAULT (0) (use global default value), NM_SETTING_WIRELESS_SECURITY_PMF_DISABLE (1) (disable PMF), NM_SETTING_WIRELESS_SECURITY_PMF_OPTIONAL (2) (enable PMF if the supplicant and the access point support it) or NM_SETTING_WIRELESS_SECURITY_PMF_REQUIRED (3) (enable PMF and fail if not supported).  When set to NM_SETTING_WIRELESS_SECURITY_PMF_DEFAULT (0) and no global default is set, PMF will be optionally enabled.")
 #define DESCRIBE_DOC_NM_SETTING_WIRELESS_SECURITY_PROTO N_("List of strings specifying the allowed WPA protocol versions to use. Each element may be one \"wpa\" (allow WPA) or \"rsn\" (allow WPA2/RSN).  If not specified, both WPA and RSN connections are allowed.")
-#define DESCRIBE_DOC_NM_SETTING_WIRELESS_SECURITY_PSK N_("Pre-Shared-Key for WPA networks.  If the key is 64-characters long, it must contain only hexadecimal characters and is interpreted as a hexadecimal WPA key.  Otherwise, the key must be between 8 and 63 ASCII characters (as specified in the 802.11i standard) and is interpreted as a WPA passphrase, and is hashed to derive the actual WPA-PSK used when connecting to the Wi-Fi network.")
+#define DESCRIBE_DOC_NM_SETTING_WIRELESS_SECURITY_PSK N_("Pre-Shared-Key for WPA networks. For WPA-PSK, it's either an ASCII passphrase of 8 to 63 characters that is (as specified in the 802.11i standard) hashed to derive the actual key, or the key in form of 64 hexadecimal character. The WPA3-Personal networks use a passphrase of any length for SAE authentication.")
 #define DESCRIBE_DOC_NM_SETTING_WIRELESS_SECURITY_PSK_FLAGS N_("Flags indicating how to handle the \"psk\" property.")
 #define DESCRIBE_DOC_NM_SETTING_WIRELESS_SECURITY_WEP_KEY_FLAGS N_("Flags indicating how to handle the \"wep-key0\", \"wep-key1\", \"wep-key2\", and \"wep-key3\" properties.")
 #define DESCRIBE_DOC_NM_SETTING_WIRELESS_SECURITY_WEP_KEY_TYPE N_("Controls the interpretation of WEP keys.  Allowed values are NM_WEP_KEY_TYPE_KEY (1), in which case the key is either a 10- or 26-character hexadecimal string, or a 5- or 13-character ASCII password; or NM_WEP_KEY_TYPE_PASSPHRASE (2), in which case the passphrase is provided as a string and will be hashed using the de-facto MD5 method to derive the actual WEP key.")
@@ -144,7 +144,7 @@
 #define DESCRIBE_DOC_NM_SETTING_CONNECTION_READ_ONLY N_("FALSE if the connection can be modified using the provided settings service's D-Bus interface with the right privileges, or TRUE if the connection is read-only and cannot be modified.")
 #define DESCRIBE_DOC_NM_SETTING_CONNECTION_SECONDARIES N_("List of connection UUIDs that should be activated when the base connection itself is activated. Currently only VPN connections are supported.")
 #define DESCRIBE_DOC_NM_SETTING_CONNECTION_SLAVE_TYPE N_("Setting name of the device type of this slave's master connection (eg, \"bond\"), or NULL if this connection is not a slave.")
-#define DESCRIBE_DOC_NM_SETTING_CONNECTION_STABLE_ID N_("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's name is included, so that different interfaces yield different addresses. The '$' character is treated special to perform dynamic substitutions at runtime. Currently supported are \"${CONNECTION}\", \"${DEVICE}\", \"${MAC}\", \"${BOOT}\", \"${RANDOM}\". These effectively create unique IDs per-connection, per-device, per-boot, or every time. Note that \"${DEVICE}\" corresponds the the interface name of the device and \"${MAC}\" is the permanent MAC address of the device. Any unrecognized patterns following '$' are treated verbatim, however are reserved for future use. You are thus advised to avoid '$' or escape it as \"$$\". For example, set it to \"${CONNECTION}-${BOOT}-${DEVICE}\" 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 \"${CONNECTION}\" and uses a unique, fixed ID for the connection.")
+#define DESCRIBE_DOC_NM_SETTING_CONNECTION_STABLE_ID N_("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's name is included, so that different interfaces yield different addresses. The '$' character is treated special to perform dynamic substitutions at runtime. Currently supported are \"${CONNECTION}\", \"${DEVICE}\", \"${MAC}\", \"${BOOT}\", \"${RANDOM}\". These effectively create unique IDs per-connection, per-device, per-boot, or every time. Note that \"${DEVICE}\" corresponds to the interface name of the device and \"${MAC}\" is the permanent MAC address of the device. Any unrecognized patterns following '$' are treated verbatim, however are reserved for future use. You are thus advised to avoid '$' or escape it as \"$$\". For example, set it to \"${CONNECTION}-${BOOT}-${DEVICE}\" to create a unique id for this connection that changes with every reboot and differs depending on the interface where the profile activates. If the value is unset, a global connection default is consulted. If the value is still unset, the default is similar to \"${CONNECTION}\" and uses a unique, fixed ID for the connection.")
 #define DESCRIBE_DOC_NM_SETTING_CONNECTION_TIMESTAMP N_("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).")
 #define DESCRIBE_DOC_NM_SETTING_CONNECTION_TYPE N_("Base type of the connection. For hardware-dependent connections, should contain the setting name of the hardware-type specific setting (ie, \"802-3-ethernet\" or \"802-11-wireless\" or \"bluetooth\", etc), and for non-hardware dependent connections like VPN or otherwise, should contain the setting name of that setting type (ie, \"vpn\" or \"bridge\", etc).")
 #define DESCRIBE_DOC_NM_SETTING_CONNECTION_UUID N_("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 \"id\" property or NMSettingIP4Config changes, but might need to be re-created when the Wi-Fi SSID, mobile broadband network provider, or \"type\" property changes. The UUID must be in the format \"2815492f-7e56-435e-b2e9-246bd7cdc664\" (ie, contains only hexadecimal characters and \"-\").")
@@ -169,7 +169,7 @@
 #define DESCRIBE_DOC_NM_SETTING_GSM_HOME_ONLY N_("When TRUE, only connections to the home network will be allowed. Connections to roaming networks will not be made.")
 #define DESCRIBE_DOC_NM_SETTING_GSM_MTU N_("If non-zero, only transmit packets of the specified size or smaller, breaking larger packets up into multiple frames.")
 #define DESCRIBE_DOC_NM_SETTING_GSM_NETWORK_ID N_("The Network ID (GSM LAI format, ie MCC-MNC) to force specific network registration.  If the Network ID is specified, NetworkManager will attempt to force the device to register only on the specified network. This can be used to ensure that the device does not roam when direct roaming control of the device is not otherwise possible.")
-#define DESCRIBE_DOC_NM_SETTING_GSM_NUMBER N_("Number to dial when establishing a PPP data session with the GSM-based mobile broadband network.  Many modems do not require PPP for connections to the mobile network and thus this property should be left blank, which allows NetworkManager to select the appropriate settings automatically.")
+#define DESCRIBE_DOC_NM_SETTING_GSM_NUMBER N_("Legacy setting that used to help establishing PPP data sessions for GSM-based modems. Deprecated: 1")
 #define DESCRIBE_DOC_NM_SETTING_GSM_PASSWORD N_("The password used to authenticate with the network, if required.  Many providers do not require a password, or accept any password.  But if a password is required, it is specified here.")
 #define DESCRIBE_DOC_NM_SETTING_GSM_PASSWORD_FLAGS N_("Flags indicating how to handle the \"password\" property.")
 #define DESCRIBE_DOC_NM_SETTING_GSM_PIN N_("If the SIM is locked with a PIN it must be unlocked before any other operations are requested.  Specify the PIN here to allow operation of the device.")
@@ -204,7 +204,7 @@
 #define DESCRIBE_DOC_NM_SETTING_IP4_CONFIG_DHCP_TIMEOUT N_("A timeout for a DHCP transaction in seconds.")
 #define DESCRIBE_DOC_NM_SETTING_IP4_CONFIG_DNS N_("Array of IP addresses of DNS servers.")
 #define DESCRIBE_DOC_NM_SETTING_IP4_CONFIG_DNS_OPTIONS N_("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.")
-#define DESCRIBE_DOC_NM_SETTING_IP4_CONFIG_DNS_PRIORITY N_("DNS servers priority. The relative priority for DNS servers specified by this setting.  A lower value is better (higher priority).  Zero selects the default value, which is 50 for VPNs 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, the one with an active default route will be preferred.  Negative values have the special effect of excluding other configurations with a greater priority value; so in presence of at least a negative priority, only DNS servers from connections with the lowest priority value will be used. When using a DNS resolver that supports split-DNS 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 '~.' 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.")
+#define DESCRIBE_DOC_NM_SETTING_IP4_CONFIG_DNS_PRIORITY N_("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 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, the one with an active default route will be preferred.  Negative values have the special effect of excluding other configurations with a greater priority value; so in presence of at least a negative priority, only DNS servers from connections with the lowest priority value will be used. When using a DNS resolver that supports split-DNS 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 '~.' 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.")
 #define DESCRIBE_DOC_NM_SETTING_IP4_CONFIG_DNS_SEARCH N_("Array of DNS search domains. Domains starting with a tilde ('~') are considered 'routing' 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.")
 #define DESCRIBE_DOC_NM_SETTING_IP4_CONFIG_GATEWAY N_("The gateway associated with this configuration. This is only meaningful if \"addresses\" is also set.")
 #define DESCRIBE_DOC_NM_SETTING_IP4_CONFIG_IGNORE_AUTO_DNS N_("When \"method\" is set to \"auto\" and this property to TRUE, automatically configured nameservers and search domains are ignored and only nameservers and search domains specified in the \"dns\" and \"dns-search\" properties, if any, are used.")
@@ -224,7 +224,7 @@
 #define DESCRIBE_DOC_NM_SETTING_IP6_CONFIG_DHCP_TIMEOUT N_("A timeout for a DHCP transaction in seconds.")
 #define DESCRIBE_DOC_NM_SETTING_IP6_CONFIG_DNS N_("Array of IP addresses of DNS servers.")
 #define DESCRIBE_DOC_NM_SETTING_IP6_CONFIG_DNS_OPTIONS N_("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.")
-#define DESCRIBE_DOC_NM_SETTING_IP6_CONFIG_DNS_PRIORITY N_("DNS servers priority. The relative priority for DNS servers specified by this setting.  A lower value is better (higher priority).  Zero selects the default value, which is 50 for VPNs 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, the one with an active default route will be preferred.  Negative values have the special effect of excluding other configurations with a greater priority value; so in presence of at least a negative priority, only DNS servers from connections with the lowest priority value will be used. When using a DNS resolver that supports split-DNS 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 '~.' 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.")
+#define DESCRIBE_DOC_NM_SETTING_IP6_CONFIG_DNS_PRIORITY N_("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 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, the one with an active default route will be preferred.  Negative values have the special effect of excluding other configurations with a greater priority value; so in presence of at least a negative priority, only DNS servers from connections with the lowest priority value will be used. When using a DNS resolver that supports split-DNS 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 '~.' 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.")
 #define DESCRIBE_DOC_NM_SETTING_IP6_CONFIG_DNS_SEARCH N_("Array of DNS search domains. Domains starting with a tilde ('~') are considered 'routing' 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.")
 #define DESCRIBE_DOC_NM_SETTING_IP6_CONFIG_GATEWAY N_("The gateway associated with this configuration. This is only meaningful if \"addresses\" is also set.")
 #define DESCRIBE_DOC_NM_SETTING_IP6_CONFIG_IGNORE_AUTO_DNS N_("When \"method\" is set to \"auto\" and this property to TRUE, automatically configured nameservers and search domains are ignored and only nameservers and search domains specified in the \"dns\" and \"dns-search\" properties, if any, are used.")
@@ -301,7 +301,7 @@
 #define DESCRIBE_DOC_NM_SETTING_TC_CONFIG_QDISCS N_("Array of TC queueing disciplines.")
 #define DESCRIBE_DOC_NM_SETTING_TC_CONFIG_TFILTERS N_("Array of TC traffic filters.")
 #define DESCRIBE_DOC_NM_SETTING_TEAM_CONFIG N_("The JSON configuration for the team network interface.  The property should contain raw JSON configuration data suitable for teamd, because the value is passed directly to teamd. If not specified, the default configuration is used.  See man teamd.conf for the format details.")
-#define DESCRIBE_DOC_NM_SETTING_TEAM_LINK_WATCHERS N_("Link watchers configuration for the connection: each link watcher is defined by a dictionary, whose keys depend upon the selected link watcher. Available link watchers are 'ethtool', 'nsna_ping' and 'arp_ping' and it is specified in the dictionary with the key 'name'. Available keys are:   ethtool: 'delay-up', 'delay-down', 'init-wait'; nsna_ping: 'init-wait', 'interval', 'missed-max', 'target-host'; arp_ping: all the ones in nsna_ping and 'source-host', 'validate-active', 'validate-incative', 'send-always'. See teamd.conf man for more details.")
+#define DESCRIBE_DOC_NM_SETTING_TEAM_LINK_WATCHERS N_("Link watchers configuration for the connection: each link watcher is defined by a dictionary, whose keys depend upon the selected link watcher. Available link watchers are 'ethtool', 'nsna_ping' and 'arp_ping' and it is specified in the dictionary with the key 'name'. Available keys are:   ethtool: 'delay-up', 'delay-down', 'init-wait'; nsna_ping: 'init-wait', 'interval', 'missed-max', 'target-host'; arp_ping: all the ones in nsna_ping and 'source-host', 'validate-active', 'validate-inactive', 'send-always'. See teamd.conf man for more details.")
 #define DESCRIBE_DOC_NM_SETTING_TEAM_MCAST_REJOIN_COUNT N_("Corresponds to the teamd mcast_rejoin.count.")
 #define DESCRIBE_DOC_NM_SETTING_TEAM_MCAST_REJOIN_INTERVAL N_("Corresponds to the teamd mcast_rejoin.interval.")
 #define DESCRIBE_DOC_NM_SETTING_TEAM_NOTIFY_PEERS_COUNT N_("Corresponds to the teamd notify_peers.count.")
@@ -319,7 +319,7 @@
 #define DESCRIBE_DOC_NM_SETTING_TEAM_PORT_CONFIG N_("The JSON configuration for the team port. The property should contain raw JSON configuration data suitable for teamd, because the value is passed directly to teamd. If not specified, the default configuration is used. See man teamd.conf for the format details.")
 #define DESCRIBE_DOC_NM_SETTING_TEAM_PORT_LACP_KEY N_("Corresponds to the teamd ports.PORTIFNAME.lacp_key.")
 #define DESCRIBE_DOC_NM_SETTING_TEAM_PORT_LACP_PRIO N_("Corresponds to the teamd ports.PORTIFNAME.lacp_prio.")
-#define DESCRIBE_DOC_NM_SETTING_TEAM_PORT_LINK_WATCHERS N_("Link watchers configuration for the connection: each link watcher is defined by a dictionary, whose keys depend upon the selected link watcher. Available link watchers are 'ethtool', 'nsna_ping' and 'arp_ping' and it is specified in the dictionary with the key 'name'. Available keys are:   ethtool: 'delay-up', 'delay-down', 'init-wait'; nsna_ping: 'init-wait', 'interval', 'missed-max', 'target-host'; arp_ping: all the ones in nsna_ping and 'source-host', 'validate-active', 'validate-incative', 'send-always'. See teamd.conf man for more details.")
+#define DESCRIBE_DOC_NM_SETTING_TEAM_PORT_LINK_WATCHERS N_("Link watchers configuration for the connection: each link watcher is defined by a dictionary, whose keys depend upon the selected link watcher. Available link watchers are 'ethtool', 'nsna_ping' and 'arp_ping' and it is specified in the dictionary with the key 'name'. Available keys are:   ethtool: 'delay-up', 'delay-down', 'init-wait'; nsna_ping: 'init-wait', 'interval', 'missed-max', 'target-host'; arp_ping: all the ones in nsna_ping and 'source-host', 'validate-active', 'validate-inactive', 'send-always'. See teamd.conf man for more details.")
 #define DESCRIBE_DOC_NM_SETTING_TEAM_PORT_PRIO N_("Corresponds to the teamd ports.PORTIFNAME.prio.")
 #define DESCRIBE_DOC_NM_SETTING_TEAM_PORT_QUEUE_ID N_("Corresponds to the teamd ports.PORTIFNAME.queue_id. When set to -1 means the parameter is skipped from the json config.")
 #define DESCRIBE_DOC_NM_SETTING_TEAM_PORT_STICKY N_("Corresponds to the teamd ports.PORTIFNAME.sticky.")
@@ -357,8 +357,19 @@
 #define DESCRIBE_DOC_NM_SETTING_VXLAN_SOURCE_PORT_MIN N_("Specifies the minimum UDP source port to communicate to the remote VXLAN tunnel endpoint.")
 #define DESCRIBE_DOC_NM_SETTING_VXLAN_TOS N_("Specifies the TOS value to use in outgoing packets.")
 #define DESCRIBE_DOC_NM_SETTING_VXLAN_TTL N_("Specifies the time-to-live value to use in outgoing packets.")
+#define DESCRIBE_DOC_NM_SETTING_WIFI_P2P_PEER N_("The P2P device that should be connected to. Currently this is the only way to create or join a group.")
+#define DESCRIBE_DOC_NM_SETTING_WIFI_P2P_WFD_IES N_("The Wi-Fi Display (WFD) Information Elements (IEs) to set. Wi-Fi Display requires a protocol specific information element to be set in certain Wi-Fi frames. These can be specified here for the purpose of establishing a connection. This setting is only useful when implementing a Wi-Fi Display client.")
+#define DESCRIBE_DOC_NM_SETTING_WIFI_P2P_WPS_METHOD N_("Flags indicating which mode of WPS is to be used. There's little point in changing the default setting as NetworkManager will automatically determine the best method to use.")
 #define DESCRIBE_DOC_NM_SETTING_WIMAX_MAC_ADDRESS N_("If specified, this connection will only apply to the WiMAX device whose MAC address matches. This property does not change the MAC address of the device (known as MAC spoofing). Deprecated: 1")
 #define DESCRIBE_DOC_NM_SETTING_WIMAX_NETWORK_NAME N_("Network Service Provider (NSP) name of the WiMAX network this connection should use. Deprecated: 1")
+#define DESCRIBE_DOC_NM_SETTING_WIREGUARD_FWMARK N_("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.")
+#define DESCRIBE_DOC_NM_SETTING_WIREGUARD_LISTEN_PORT N_("The listen-port. If listen-port is not specified, the port will be chosen randomly when the interface comes up.")
+#define DESCRIBE_DOC_NM_SETTING_WIREGUARD_MTU N_("If non-zero, only transmit packets of the specified size or smaller, breaking larger packets up into multiple fragments. If zero a default MTU is used. Note that contrary to wg-quick's MTU setting, this does not take into account the current routes at the time of activation.")
+#define DESCRIBE_DOC_NM_SETTING_WIREGUARD_PEER_ROUTES N_("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. 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.")
+#define DESCRIBE_DOC_NM_SETTING_WIREGUARD_PRIVATE_KEY N_("The 256 bit private-key in base64 encoding.")
+#define DESCRIBE_DOC_NM_SETTING_WIREGUARD_PRIVATE_KEY_FLAGS N_("Flags indicating how to handle the \"private-key\" property.")
+#define DESCRIBE_DOC_NM_SETTING_WPAN_CHANNEL N_("IEEE 802.15.4 channel. A positive integer or -1, meaning \"do not set, use whatever the device is already set to\".")
 #define DESCRIBE_DOC_NM_SETTING_WPAN_MAC_ADDRESS N_("If specified, this connection will only apply to the IEEE 802.15.4 (WPAN) MAC layer device whose permanent MAC address matches.")
+#define DESCRIBE_DOC_NM_SETTING_WPAN_PAGE N_("IEEE 802.15.4 channel page. A positive integer or -1, meaning \"do not set, use whatever the device is already set to\".")
 #define DESCRIBE_DOC_NM_SETTING_WPAN_PAN_ID N_("IEEE 802.15.4 Personal Area Network (PAN) identifier.")
 #define DESCRIBE_DOC_NM_SETTING_WPAN_SHORT_ADDRESS N_("Short IEEE 802.15.4 address to be used within a restricted environment.")