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Diffstat (limited to 'man/nm-settings-ifcfg-rh.xml')
| -rw-r--r-- | man/nm-settings-ifcfg-rh.xml | 22 |
1 files changed, 15 insertions, 7 deletions
diff --git a/man/nm-settings-ifcfg-rh.xml b/man/nm-settings-ifcfg-rh.xml index 4968eb7f..8799e550 100644 --- a/man/nm-settings-ifcfg-rh.xml +++ b/man/nm-settings-ifcfg-rh.xml @@ -1,6 +1,6 @@ <?xml version="1.0"?> <!DOCTYPE refentry PUBLIC "-//OASIS//DTD DocBook XML V4.3//EN" "http://www.oasis-open.org/docbook/xml/4.3/docbookx.dtd"> -<refentry id="nm-settings-ifcfg-rh"><refentryinfo><title>nm-settings-ifcfg-rh</title><author>NetworkManager developers</author></refentryinfo><refmeta><refentrytitle>nm-settings-ifcfg-rh</refentrytitle><manvolnum>5</manvolnum><refmiscinfo class="source">NetworkManager</refmiscinfo><refmiscinfo class="manual">Configuration</refmiscinfo><refmiscinfo class="version">1.10.0</refmiscinfo></refmeta><refnamediv><refname>nm-settings-ifcfg-rh</refname><refpurpose>Description of <emphasis>ifcfg-rh</emphasis> settings plugin</refpurpose></refnamediv><refsect1 id="description"><title>Description</title><para> +<refentry id="nm-settings-ifcfg-rh"><refentryinfo><title>nm-settings-ifcfg-rh</title><author>NetworkManager developers</author></refentryinfo><refmeta><refentrytitle>nm-settings-ifcfg-rh</refentrytitle><manvolnum>5</manvolnum><refmiscinfo class="source">NetworkManager</refmiscinfo><refmiscinfo class="manual">Configuration</refmiscinfo><refmiscinfo class="version">1.10.2</refmiscinfo></refmeta><refnamediv><refname>nm-settings-ifcfg-rh</refname><refpurpose>Description of <emphasis>ifcfg-rh</emphasis> settings plugin</refpurpose></refnamediv><refsect1 id="description"><title>Description</title><para> NetworkManager is based on the concept of connection profiles that contain network configuration (see <citerefentry><refentrytitle>nm-settings</refentrytitle><manvolnum>5</manvolnum></citerefentry> for details). The profiles can be stored in various formats. NetworkManager uses plugins for reading and writing @@ -219,7 +219,7 @@ Example: </emphasis>BONDING_OPTS="miimon=100 mode=broadcast"</entry></row></tbod Allowed values: </emphasis>0 - 63</entry></row><row><entry align="left">path-cost</entry><entry align="left">BRIDGING_OPTS: path_cost=</entry><entry align="left">100</entry><entry align="left">STP cost.<emphasis role="bold"> -Allowed values: </emphasis>1 - 65535</entry></row><row><entry align="left">hairpin-mode</entry><entry align="left">BRIDGING_OPTS: hairpin_mode=</entry><entry align="left">yes</entry><entry align="left">Hairpin mode of the bridge port.</entry></row></tbody></tgroup></table><table><title>bridge setting</title><tgroup cols="4"><thead><row><entry>Property</entry><entry>Ifcfg-rh Variable</entry><entry>Default</entry><entry>Description</entry></row></thead><tbody><row><entry align="left">mac-address</entry><entry align="left">MACADDR<emphasis>(+)</emphasis></entry><entry align="left"/><entry align="left">MAC address of the bridge. Note that this requires a recent kernel support, originally introduced in 3.15 upstream kernel) MACADDR for bridges is an NM extension.</entry></row><row><entry align="left">stp</entry><entry align="left">STP</entry><entry align="left">no</entry><entry align="left">Span tree protocol participation.</entry></row><row><entry align="left">priority</entry><entry align="left">BRIDGING_OPTS: priority=</entry><entry align="left">32768</entry><entry align="left">STP priority.<emphasis role="bold"> +Allowed values: </emphasis>1 - 65535</entry></row><row><entry align="left">hairpin-mode</entry><entry align="left">BRIDGING_OPTS: hairpin_mode=</entry><entry align="left">yes</entry><entry align="left">Hairpin mode of the bridge port.</entry></row></tbody></tgroup></table><table><title>bridge setting</title><tgroup cols="4"><thead><row><entry>Property</entry><entry>Ifcfg-rh Variable</entry><entry>Default</entry><entry>Description</entry></row></thead><tbody><row><entry align="left">mac-address</entry><entry align="left">BRIDGE_MACADDR<emphasis>(+)</emphasis></entry><entry align="left"/><entry align="left">MAC address of the bridge. Note that this requires a recent kernel support, originally introduced in 3.15 upstream kernel) BRIDGE_MACADDR for bridges is an NM extension.</entry></row><row><entry align="left">stp</entry><entry align="left">STP</entry><entry align="left">no</entry><entry align="left">Span tree protocol participation.</entry></row><row><entry align="left">priority</entry><entry align="left">BRIDGING_OPTS: priority=</entry><entry align="left">32768</entry><entry align="left">STP priority.<emphasis role="bold"> Allowed values: </emphasis>0 - 32768</entry></row><row><entry align="left">forward-delay</entry><entry align="left">DELAY</entry><entry align="left">15</entry><entry align="left">STP forwarding delay.<emphasis role="bold"> @@ -296,7 +296,9 @@ Example: </emphasis>DNS1=1.2.3.4 DNS2=10.0.0.254 DNS3=8.8.8.8</entry></row><row> Example: </emphasis>IPADDR=10.5.5.23 PREFIX=24 IPADDR1=1.1.1.2 PREFIX1=16</entry></row><row><entry align="left">gateway</entry><entry align="left">GATEWAY</entry><entry align="left"/><entry align="left">Gateway IP address.<emphasis role="bold"> -Example: </emphasis>GATEWAY=10.5.5.1</entry></row><row><entry align="left">routes</entry><entry align="left">ADDRESS1, NETMASK1, GATEWAY1, METRIC1, OPTIONS1, ...</entry><entry align="left"/><entry align="left">List of static routes. They are not stored in ifcfg-* file, but in route-* file instead.</entry></row><row><entry align="left">ignore-auto-routes</entry><entry align="left">PEERROUTES<emphasis>(+)</emphasis></entry><entry align="left">yes</entry><entry align="left">PEERROUTES has the opposite meaning as 'ignore-auto-routes' property.</entry></row><row><entry align="left">ignore-auto-dns</entry><entry align="left">PEERDNS</entry><entry align="left">yes</entry><entry align="left">PEERDNS has the opposite meaning as 'ignore-auto-dns' property.</entry></row><row><entry align="left">dhcp-send-hostname</entry><entry align="left">DHCP_SEND_HOSTNAME<emphasis>(+)</emphasis></entry><entry align="left">yes</entry><entry align="left">Whether DHCP_HOSTNAME should be sent to the DHCP server.</entry></row><row><entry align="left">dhcp-hostname</entry><entry align="left">DHCP_HOSTNAME</entry><entry align="left"/><entry align="left">Hostname to send to the DHCP server. When both DHCP_HOSTNAME and DHCP_FQDN are specified only the latter is used.</entry></row><row><entry align="left">never-default</entry><entry align="left">DEFROUTE (GATEWAYDEV in /etc/sysconfig/network)</entry><entry align="left">yes</entry><entry align="left">DEFROUTE=no tells NetworkManager that this connection should not be assigned the default route. DEFROUTE has the opposite meaning as 'never-default' property.</entry></row><row><entry align="left">may-fail</entry><entry align="left">IPV4_FAILURE_FATAL<emphasis>(+)</emphasis></entry><entry align="left">no</entry><entry align="left">IPV4_FAILURE_FATAL has the opposite meaning as 'may-fail' property.</entry></row><row><entry align="left">route-metric</entry><entry align="left">IPV4_ROUTE_METRIC<emphasis>(+)</emphasis></entry><entry align="left">-1</entry><entry align="left">IPV4_ROUTE_METRIC is the default IPv4 metric for routes on this connection. If set to -1, a default metric based on the device type is used.</entry></row><row><entry align="left">route-table</entry><entry align="left">IPV4_ROUTE_TABLE<emphasis>(+)</emphasis></entry><entry align="left">0</entry><entry align="left">IPV4_ROUTE_TABLE enables policy-routing and sets the default routing table.</entry></row><row><entry align="left">dns-priority</entry><entry align="left">IPV4_DNS_PRIORITY<emphasis>(+)</emphasis></entry><entry align="left">0</entry><entry align="left">The priority for DNS servers of this connection. Lower values have higher priority. If zero, the default value will be used (50 for VPNs, 100 for other connections). A negative value prevents DNS from other connections with greater values to be used.<emphasis role="bold"> +Example: </emphasis>GATEWAY=10.5.5.1</entry></row><row><entry align="left">routes</entry><entry align="left">ADDRESS1, NETMASK1, GATEWAY1, METRIC1, OPTIONS1, ...</entry><entry align="left"/><entry align="left">List of static routes. They are not stored in ifcfg-* file, but in route-* file instead.</entry></row><row><entry align="left">ignore-auto-routes</entry><entry align="left">PEERROUTES<emphasis>(+)</emphasis></entry><entry align="left">yes</entry><entry align="left">PEERROUTES has the opposite meaning as 'ignore-auto-routes' property.</entry></row><row><entry align="left">ignore-auto-dns</entry><entry align="left">PEERDNS</entry><entry align="left">yes</entry><entry align="left">PEERDNS has the opposite meaning as 'ignore-auto-dns' property.</entry></row><row><entry align="left">dhcp-send-hostname</entry><entry align="left">DHCP_SEND_HOSTNAME<emphasis>(+)</emphasis></entry><entry align="left">yes</entry><entry align="left">Whether DHCP_HOSTNAME should be sent to the DHCP server.</entry></row><row><entry align="left">dhcp-hostname</entry><entry align="left">DHCP_HOSTNAME</entry><entry align="left"/><entry align="left">Hostname to send to the DHCP server. When both DHCP_HOSTNAME and DHCP_FQDN are specified only the latter is used.</entry></row><row><entry align="left">never-default</entry><entry align="left">DEFROUTE (GATEWAYDEV in /etc/sysconfig/network)</entry><entry align="left">yes</entry><entry align="left">DEFROUTE=no tells NetworkManager that this connection should not be assigned the default route. DEFROUTE has the opposite meaning as 'never-default' property.</entry></row><row><entry align="left">may-fail</entry><entry align="left">IPV4_FAILURE_FATAL<emphasis>(+)</emphasis></entry><entry align="left">no</entry><entry align="left">IPV4_FAILURE_FATAL has the opposite meaning as 'may-fail' property.</entry></row><row><entry align="left">route-metric</entry><entry align="left">IPV4_ROUTE_METRIC<emphasis>(+)</emphasis></entry><entry align="left">-1</entry><entry align="left">IPV4_ROUTE_METRIC is the default IPv4 metric for routes on this connection. If set to -1, a default metric based on the device type is used.</entry></row><row><entry align="left">route-table</entry><entry align="left">IPV4_ROUTE_TABLE<emphasis>(+)</emphasis></entry><entry align="left">0</entry><entry align="left">IPV4_ROUTE_TABLE enables policy-routing and sets the default routing table.</entry></row><row><entry align="left">dns-options</entry><entry align="left">RES_OPTIONS<emphasis>(+)</emphasis></entry><entry align="left"/><entry align="left">List of DNS options to be added to /etc/resolv.conf<emphasis role="bold"> + +Example: </emphasis>RES_OPTIONS=ndots:2 timeout:3</entry></row><row><entry align="left">dns-priority</entry><entry align="left">IPV4_DNS_PRIORITY<emphasis>(+)</emphasis></entry><entry align="left">0</entry><entry align="left">The priority for DNS servers of this connection. Lower values have higher priority. If zero, the default value will be used (50 for VPNs, 100 for other connections). A negative value prevents DNS from other connections with greater values to be used.<emphasis role="bold"> Example: </emphasis>IPV4_DNS_PRIORITY=20</entry></row><row><entry align="left">dhcp-client-id</entry><entry align="left">DHCP_CLIENT_ID<emphasis>(+)</emphasis></entry><entry align="left"/><entry align="left">A string sent to the DHCP server to identify the local machine. A binary value can be specified using hex notation ('aa:bb:cc').<emphasis role="bold"> @@ -306,13 +308,15 @@ Example: </emphasis>ARPING_WAIT=2</entry></row><row><entry align="left">dhcp-tim Example: </emphasis>IPV4_DHCP_TIMEOUT=10</entry></row><row><entry align="left">dhcp-fqdn</entry><entry align="left">DHCP_FQDN</entry><entry align="left"/><entry align="left">FQDN to send to the DHCP server. When both DHCP_HOSTNAME and DHCP_FQDN are specified only the latter is used.<emphasis role="bold"> -Example: </emphasis>DHCP_FQDN=foo.bar.com</entry></row></tbody></tgroup></table><table><title>ipv6 setting</title><tgroup cols="4"><thead><row><entry>Property</entry><entry>Ifcfg-rh Variable</entry><entry>Default</entry><entry>Description</entry></row></thead><tbody><row><entry align="left">method</entry><entry align="left">IPV6INIT, IPV6FORWARDING, IPV6_AUTOCONF, DHCPV6C</entry><entry align="left">IPV6INIT=yes; IPV6FORWARDING=no; IPV6_AUTOCONF=!IPV6FORWARDING, DHCPV6=no</entry><entry align="left">Method used for IPv6 protocol configuration. ignore ~ IPV6INIT=no; auto ~ IPV6_AUTOCONF=yes; dhcp ~ IPV6_AUTOCONF=no and DHCPV6C=yes</entry></row><row><entry align="left">dns</entry><entry align="left">DNS1, DNS2, ...</entry><entry align="left"/><entry align="left">List of DNS servers. NetworkManager uses the variables both for IPv4 and IPv6.</entry></row><row><entry align="left">dns-search</entry><entry align="left">DOMAIN</entry><entry align="left"/><entry align="left">List of DNS search domains.</entry></row><row><entry align="left">addresses</entry><entry align="left">IPV6ADDR, IPV6ADDR_SECONDARIES</entry><entry align="left"/><entry align="left">List of static IP addresses.<emphasis role="bold"> +Example: </emphasis>DHCP_FQDN=foo.bar.com</entry></row></tbody></tgroup></table><table><title>ipv6 setting</title><tgroup cols="4"><thead><row><entry>Property</entry><entry>Ifcfg-rh Variable</entry><entry>Default</entry><entry>Description</entry></row></thead><tbody><row><entry align="left">method</entry><entry align="left">IPV6INIT, IPV6FORWARDING, IPV6_AUTOCONF, DHCPV6C</entry><entry align="left">IPV6INIT=yes; IPV6FORWARDING=no; IPV6_AUTOCONF=!IPV6FORWARDING, DHCPV6=no</entry><entry align="left">Method used for IPv6 protocol configuration. ignore ~ IPV6INIT=no; auto ~ IPV6_AUTOCONF=yes; dhcp ~ IPV6_AUTOCONF=no and DHCPV6C=yes</entry></row><row><entry align="left">dns</entry><entry align="left">DNS1, DNS2, ...</entry><entry align="left"/><entry align="left">List of DNS servers. NetworkManager uses the variables both for IPv4 and IPv6.</entry></row><row><entry align="left">dns-search</entry><entry align="left">IPV6_DOMAIN</entry><entry align="left"/><entry align="left">List of DNS search domains.</entry></row><row><entry align="left">addresses</entry><entry align="left">IPV6ADDR, IPV6ADDR_SECONDARIES</entry><entry align="left"/><entry align="left">List of static IP addresses.<emphasis role="bold"> Example: </emphasis>IPV6ADDR=ab12:9876::1 IPV6ADDR_SECONDARIES="ab12:9876::2 ab12:9876::3"</entry></row><row><entry align="left">gateway</entry><entry align="left">IPV6_DEFAULTGW</entry><entry align="left"/><entry align="left">Gateway IP address.<emphasis role="bold"> Example: </emphasis>IPV6_DEFAULTGW=abbe::1</entry></row><row><entry align="left">routes</entry><entry align="left">(none)</entry><entry align="left"/><entry align="left">List of static routes. They are not stored in ifcfg-* file, but in route6-* file instead in the form of command line for 'ip route add'.</entry></row><row><entry align="left">ignore-auto-routes</entry><entry align="left">IPV6_PEERROUTES<emphasis>(+)</emphasis></entry><entry align="left">yes</entry><entry align="left">IPV6_PEERROUTES has the opposite meaning as 'ignore-auto-routes' property.</entry></row><row><entry align="left">ignore-auto-dns</entry><entry align="left">IPV6_PEERDNS<emphasis>(+)</emphasis></entry><entry align="left">yes</entry><entry align="left">IPV6_PEERDNS has the opposite meaning as 'ignore-auto-dns' property.</entry></row><row><entry align="left">dhcp-hostname</entry><entry align="left">DHCP_HOSTNAME</entry><entry align="left"/><entry align="left">Hostname to send the DHCP server.</entry></row><row><entry align="left">never-default</entry><entry align="left">IPV6_DEFROUTE<emphasis>(+)</emphasis>, (and IPV6_DEFAULTGW, IPV6_DEFAULTDEV in /etc/sysconfig/network)</entry><entry align="left">IPV6_DEFROUTE=yes (when no variable specified)</entry><entry align="left">IPV6_DEFROUTE=no tells NetworkManager that this connection should not be assigned the default IPv6 route. IPV6_DEFROUTE has the opposite meaning as 'never-default' property.</entry></row><row><entry align="left">may-fail</entry><entry align="left">IPV6_FAILURE_FATAL<emphasis>(+)</emphasis></entry><entry align="left">no</entry><entry align="left">IPV6_FAILURE_FATAL has the opposite meaning as 'may-fail' property.</entry></row><row><entry align="left">route-metric</entry><entry align="left">IPV6_ROUTE_METRIC<emphasis>(+)</emphasis></entry><entry align="left">-1</entry><entry align="left">IPV6_ROUTE_METRIC is the default IPv6 metric for routes on this connection. If set to -1, a default metric based on the device type is used.</entry></row><row><entry align="left">route-table</entry><entry align="left">IPV6_ROUTE_TABLE<emphasis>(+)</emphasis></entry><entry align="left">0</entry><entry align="left">IPV6_ROUTE_TABLE enables policy-routing and sets the default routing table.</entry></row><row><entry align="left">dns-priority</entry><entry align="left">IPV6_DNS_PRIORITY<emphasis>(+)</emphasis></entry><entry align="left">0</entry><entry align="left">The priority for DNS servers of this connection. Lower values have higher priority. If zero, the default value will be used (50 for VPNs, 100 for other connections). A negative value prevents DNS from other connections with greater values to be used.<emphasis role="bold"> -Example: </emphasis>IPV6_DNS_PRIORITY=20</entry></row><row><entry align="left">ip6-privacy</entry><entry align="left">IPV6_PRIVACY, IPV6_PRIVACY_PREFER_PUBLIC_IP<emphasis>(+)</emphasis></entry><entry align="left">no</entry><entry align="left">Configure IPv6 Privacy Extensions for SLAAC (RFC4941).<emphasis role="bold"> +Example: </emphasis>IPV6_DNS_PRIORITY=20</entry></row><row><entry align="left">dns-options</entry><entry align="left">IPV6_RES_OPTIONS<emphasis>(+)</emphasis></entry><entry align="left"/><entry align="left">List of DNS options to be added to /etc/resolv.conf<emphasis role="bold"> + +Example: </emphasis>IPV6_RES_OPTIONS=ndots:2 timeout:3</entry></row><row><entry align="left">ip6-privacy</entry><entry align="left">IPV6_PRIVACY, IPV6_PRIVACY_PREFER_PUBLIC_IP<emphasis>(+)</emphasis></entry><entry align="left">no</entry><entry align="left">Configure IPv6 Privacy Extensions for SLAAC (RFC4941).<emphasis role="bold"> Example: </emphasis>IPV6_PRIVACY=rfc3041 IPV6_PRIVACY_PREFER_PUBLIC_IP=yes<emphasis role="bold"> @@ -328,7 +332,11 @@ Allowed values: </emphasis>none, auto</entry></row><row><entry align="left">brow Example: </emphasis>PAC_URL=http://wpad.mycompany.com/wpad.dat</entry></row><row><entry align="left">pac-script</entry><entry align="left">PAC_SCRIPT<emphasis>(+)</emphasis></entry><entry align="left"/><entry align="left">Path of the PAC script.<emphasis role="bold"> -Example: </emphasis>PAC_SCRIPT=/home/joe/proxy.pac</entry></row></tbody></tgroup></table><table><title>team-port setting</title><tgroup cols="4"><thead><row><entry>Property</entry><entry>Ifcfg-rh Variable</entry><entry>Default</entry><entry>Description</entry></row></thead><tbody><row><entry align="left">config</entry><entry align="left">TEAM_PORT_CONFIG</entry><entry align="left"/><entry align="left">Team port configuration in JSON. See man teamd.conf for details.</entry></row></tbody></tgroup></table><table><title>team setting</title><tgroup cols="4"><thead><row><entry>Property</entry><entry>Ifcfg-rh Variable</entry><entry>Default</entry><entry>Description</entry></row></thead><tbody><row><entry align="left">config</entry><entry align="left">TEAM_CONFIG</entry><entry align="left"/><entry align="left">Team configuration in JSON. See man teamd.conf for details.</entry></row></tbody></tgroup></table><table><title>user setting</title><tgroup cols="4"><thead><row><entry>Property</entry><entry>Ifcfg-rh Variable</entry><entry>Default</entry><entry>Description</entry></row></thead><tbody><row><entry align="left">data</entry><entry align="left">NM_USER_*</entry><entry align="left"/><entry align="left">each key/value pair is stored as a separate variable with name composed by concatenating NM_USER_ with the encoded key. The key is encoded by substituting lowercase letters with uppercase and prepending uppercase letters with an underscore. A dot is encoded as a double underscore. Remaining characters are encoded as underscore followed by a 3 digit octal representation of the character.<emphasis role="bold"> +Example: </emphasis>PAC_SCRIPT=/home/joe/proxy.pac</entry></row></tbody></tgroup></table><table><title>tc setting</title><tgroup cols="4"><thead><row><entry>Property</entry><entry>Ifcfg-rh Variable</entry><entry>Default</entry><entry>Description</entry></row></thead><tbody><row><entry align="left">qdiscs</entry><entry align="left">QDISC1, QDISC2, ...</entry><entry align="left"/><entry align="left">Queueing disciplines<emphasis role="bold"> + +Example: </emphasis>QDISC1=ingress, QDISC2="root handle 1234: fq_codel"</entry></row><row><entry align="left">qdiscs</entry><entry align="left">FILTER1, FILTER2, ...</entry><entry align="left"/><entry align="left">Traffic filters<emphasis role="bold"> + +Example: </emphasis>FILTER1="parent ffff: matchall action simple sdata Input", ...</entry></row></tbody></tgroup></table><table><title>team-port setting</title><tgroup cols="4"><thead><row><entry>Property</entry><entry>Ifcfg-rh Variable</entry><entry>Default</entry><entry>Description</entry></row></thead><tbody><row><entry align="left">config</entry><entry align="left">TEAM_PORT_CONFIG</entry><entry align="left"/><entry align="left">Team port configuration in JSON. See man teamd.conf for details.</entry></row></tbody></tgroup></table><table><title>team setting</title><tgroup cols="4"><thead><row><entry>Property</entry><entry>Ifcfg-rh Variable</entry><entry>Default</entry><entry>Description</entry></row></thead><tbody><row><entry align="left">config</entry><entry align="left">TEAM_CONFIG</entry><entry align="left"/><entry align="left">Team configuration in JSON. See man teamd.conf for details.</entry></row></tbody></tgroup></table><table><title>user setting</title><tgroup cols="4"><thead><row><entry>Property</entry><entry>Ifcfg-rh Variable</entry><entry>Default</entry><entry>Description</entry></row></thead><tbody><row><entry align="left">data</entry><entry align="left">NM_USER_*</entry><entry align="left"/><entry align="left">each key/value pair is stored as a separate variable with name composed by concatenating NM_USER_ with the encoded key. The key is encoded by substituting lowercase letters with uppercase and prepending uppercase letters with an underscore. A dot is encoded as a double underscore. Remaining characters are encoded as underscore followed by a 3 digit octal representation of the character.<emphasis role="bold"> Example: </emphasis>NM_USER_FOO__BAR=something</entry></row></tbody></tgroup></table><table><title>vlan setting</title><tgroup cols="4"><thead><row><entry>Property</entry><entry>Ifcfg-rh Variable</entry><entry>Default</entry><entry>Description</entry></row></thead><tbody><row><entry align="left">parent</entry><entry align="left">DEVICE or PHYSDEV</entry><entry align="left"/><entry align="left">Parent interface of the VLAN.</entry></row><row><entry align="left">id</entry><entry align="left">VLAN_ID or DEVICE</entry><entry align="left"/><entry align="left">VLAN identifier.</entry></row><row><entry align="left">flags</entry><entry align="left">GVRP, MVRP, VLAN_FLAGS</entry><entry align="left"/><entry align="left">VLAN flags.<emphasis role="bold"> @@ -364,7 +372,7 @@ Example: </emphasis>PMF=required<emphasis role="bold"> Allowed values: </emphasis>default, disable, optional, required</entry></row><row><entry align="left">leap-username</entry><entry align="left">IEEE_8021X_IDENTITY<emphasis>(+)</emphasis></entry><entry align="left"/><entry align="left">Login name for LEAP.</entry></row><row><entry align="left">wep-key0</entry><entry align="left">KEY1, KEY_PASSPHRASE1<emphasis>(+)</emphasis></entry><entry align="left"/><entry align="left">The first WEP key (used in most networks). See also DEFAULTKEY for key index.</entry></row><row><entry align="left">wep-key1</entry><entry align="left">KEY2, KEY_PASSPHRASE2<emphasis>(+)</emphasis></entry><entry align="left"/><entry align="left">WEP key with index 1. See also DEFAULTKEY for key index.</entry></row><row><entry align="left">wep-key2</entry><entry align="left">KEY3, KEY_PASSPHRASE3<emphasis>(+)</emphasis></entry><entry align="left"/><entry align="left">WEP key with index 2. See also DEFAULTKEY for key index.</entry></row><row><entry align="left">wep-key3</entry><entry align="left">KEY4, KEY_PASSPHRASE4<emphasis>(+)</emphasis></entry><entry align="left"/><entry align="left">WEP key with index 3. See also DEFAULTKEY for key index.</entry></row><row><entry align="left">wep-key-flags</entry><entry align="left">WEP_KEY_FLAGS<emphasis>(+)</emphasis></entry><entry align="left"/><entry align="left">Password flags for KEY<i>, KEY_PASSPHRASE<i> password. (see <xref linkend="secrets-flags"/> for _FLAGS values)</entry></row><row><entry align="left">psk</entry><entry align="left">WPA_PSK</entry><entry align="left"/><entry align="left">Pre-Shared-Key for WPA networks.</entry></row><row><entry align="left">psk-flags</entry><entry align="left">WPA_PSK_FLAGS<emphasis>(+)</emphasis></entry><entry align="left"/><entry align="left">Password flags for WPA_PSK_FLAGS. (see <xref linkend="secrets-flags"/> for _FLAGS values)<emphasis role="bold"> -Example: </emphasis>WPA_PSK_FLAGS=user</entry></row><row><entry align="left">leap-password</entry><entry align="left">IEEE_8021X_PASSWORD<emphasis>(+)</emphasis></entry><entry align="left"/><entry align="left">Password for LEAP. It can also go to "key-" lookaside file, or it can be owned by a secret agent.</entry></row><row><entry align="left">leap-password-flags</entry><entry align="left">IEEE_8021X_PASSWORD_FLAGS<emphasis>(+)</emphasis></entry><entry align="left"/><entry align="left">Password flags for IEEE_8021X_PASSWORD_FLAGS. (see <xref linkend="secrets-flags"/> for _FLAGS values)</entry></row><row><entry align="left">wep-key-type</entry><entry align="left">KEY<i> or KEY_PASSPHRASE<i><emphasis>(+)</emphasis></entry><entry align="left"/><entry align="left">KEY is used for "key" type (10 or 26 hexadecimal characters, or 5 or 13 character string prefixed with "s:"). KEY_PASSPHRASE is used for WEP passphrases.<emphasis role="bold"> +Example: </emphasis>WPA_PSK_FLAGS=user</entry></row><row><entry align="left">leap-password</entry><entry align="left">IEEE_8021X_PASSWORD<emphasis>(+)</emphasis></entry><entry align="left"/><entry align="left">Password for LEAP. It can also go to "key-" lookaside file, or it can be owned by a secret agent.</entry></row><row><entry align="left">leap-password-flags</entry><entry align="left">IEEE_8021X_PASSWORD_FLAGS<emphasis>(+)</emphasis></entry><entry align="left"/><entry align="left">Password flags for IEEE_8021X_PASSWORD_FLAGS. (see <xref linkend="secrets-flags"/> for _FLAGS values)</entry></row><row><entry align="left">wep-key-type</entry><entry align="left">KEY<i> or KEY_PASSPHRASE<i><emphasis>(+)</emphasis>; KEY_TYPE<emphasis>(+)</emphasis></entry><entry align="left"/><entry align="left">KEY is used for "key" type (10 or 26 hexadecimal characters, or 5 or 13 character string prefixed with "s:"). KEY_PASSPHRASE is used for WEP passphrases. KEY_TYPE specifies the key type and can be either 'key' or 'passphrase'. KEY_TYPE is redundant and can be omitted.<emphasis role="bold"> Example: </emphasis>KEY1=s:ahoj, KEY1=0a1c45bc02, KEY_PASSPHRASE1=mysupersecretkey</entry></row><row><entry align="left">wps-method</entry><entry align="left">WPS_METHOD</entry><entry align="left"/><entry align="left">Used to control the WPS methods to be used Valid values are "default", "auto", "disabled", "pin" and "pbc". If omitted, whatver the AP announces is used.<emphasis role="bold"> |