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-rw-r--r--man/nm-settings.xml30
1 files changed, 15 insertions, 15 deletions
diff --git a/man/nm-settings.xml b/man/nm-settings.xml
index 7c3dd96a..d70b1771 100644
--- a/man/nm-settings.xml
+++ b/man/nm-settings.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"><refentryinfo><date>19 December 2014</date></refentryinfo><refmeta><refentrytitle>nm-settings</refentrytitle><manvolnum>5</manvolnum><refmiscinfo class="source">NetworkManager</refmiscinfo><refmiscinfo class="manual">Configuration</refmiscinfo><refmiscinfo class="version">1.0.0</refmiscinfo></refmeta><refnamediv><refname>nm-settings</refname><refpurpose>Description of settings and properties of NetworkManager connection profiles</refpurpose></refnamediv><refsect1><title>DESCRIPTION</title><para>
+<refentry id="nm-settings"><refentryinfo><date>05 May 2015</date></refentryinfo><refmeta><refentrytitle>nm-settings</refentrytitle><manvolnum>5</manvolnum><refmiscinfo class="source">NetworkManager</refmiscinfo><refmiscinfo class="manual">Configuration</refmiscinfo><refmiscinfo class="version">1.0.2</refmiscinfo></refmeta><refnamediv><refname>nm-settings</refname><refpurpose>Description of settings and properties of NetworkManager connection profiles</refpurpose></refnamediv><refsect1><title>DESCRIPTION</title><para>
           NetworkManager is based on a concept of connection profiles, sometimes referred to as
           connections only. These connection profiles contain a network configuration. When
           NetworkManager activates a connection profile on a network device the configuration will
@@ -86,7 +86,7 @@
   <table><title>bond setting</title><tgroup cols="4"><thead><row><entry>Key Name</entry><entry>Value Type</entry><entry>Default Value</entry><entry>Value Description</entry></row></thead><tbody>
     <row><entry align="left">interface-name</entry><entry align="left">string</entry><entry align="left"/><entry>Deprecated in favor of connection.interface-name, but can be used for backward-compatibility with older daemons, to set the bond's interface name.</entry></row>
     <row><entry align="left">name</entry><entry align="left">string</entry><entry align="left">bond</entry><entry>The setting's name, which uniquely identifies the setting within the connection.  Each setting type has a name unique to that type, for example "ppp" or "wireless" or "wired".</entry></row>
-    <row><entry align="left">options</entry><entry align="left">dict of string to string</entry><entry align="left"/><entry>Dictionary of key/value pairs of bonding options.  Both keys and values must be strings. Option names must contain only alphanumeric characters (ie, [a-zA-Z0-9]).</entry></row>
+    <row><entry align="left">options</entry><entry align="left">dict of string to string</entry><entry align="left">{'mode': 'balance-rr'}</entry><entry>Dictionary of key/value pairs of bonding options.  Both keys and values must be strings. Option names must contain only alphanumeric characters (ie, [a-zA-Z0-9]).</entry></row>
   </tbody></tgroup></table>
   <table><title>bridge setting</title><tgroup cols="4"><thead><row><entry>Key Name</entry><entry>Value Type</entry><entry>Default Value</entry><entry>Value Description</entry></row></thead><tbody>
     <row><entry align="left">ageing-time</entry><entry align="left">uint32</entry><entry align="left">300</entry><entry>The Ethernet MAC address aging time, in seconds.</entry></row>
@@ -138,14 +138,14 @@
     <row><entry align="left">app-iscsi-flags</entry><entry align="left">NMSettingDcbFlags (uint32)</entry><entry align="left"/><entry>Specifies the NMSettingDcbFlags for the DCB iSCSI application.  Flags may be any combination of NM_SETTING_DCB_FLAG_ENABLE (0x1), NM_SETTING_DCB_FLAG_ADVERTISE (0x2), and NM_SETTING_DCB_FLAG_WILLING (0x4).</entry></row>
     <row><entry align="left">app-iscsi-priority</entry><entry align="left">int32</entry><entry align="left">-1</entry><entry>The highest User Priority (0 - 7) which iSCSI frames should use, or -1 for default priority. Only used when the "app-iscsi-flags" property includes the NM_SETTING_DCB_FLAG_ENABLE (0x1) flag.</entry></row>
     <row><entry align="left">name</entry><entry align="left">string</entry><entry align="left">dcb</entry><entry>The setting's name, which uniquely identifies the setting within the connection.  Each setting type has a name unique to that type, for example "ppp" or "wireless" or "wired".</entry></row>
-    <row><entry align="left">priority-bandwidth</entry><entry align="left">array of uint32</entry><entry align="left"/><entry>An array of 8 uint values, where the array index corresponds to the User Priority (0 - 7) and the value indicates the percentage of bandwidth of the priority's assigned group that the priority may use.  The sum of all percentages for priorities which belong to the same group must total 100 percent.</entry></row>
-    <row><entry align="left">priority-flow-control</entry><entry align="left">array of uint32</entry><entry align="left"/><entry>An array of 8 boolean values, where the array index corresponds to the User Priority (0 - 7) and the value indicates whether or not the corresponding priority should transmit priority pause.</entry></row>
+    <row><entry align="left">priority-bandwidth</entry><entry align="left">array of uint32</entry><entry align="left">[0, 0, 0, 0, 0, 0, 0, 0]</entry><entry>An array of 8 uint values, where the array index corresponds to the User Priority (0 - 7) and the value indicates the percentage of bandwidth of the priority's assigned group that the priority may use.  The sum of all percentages for priorities which belong to the same group must total 100 percent.</entry></row>
+    <row><entry align="left">priority-flow-control</entry><entry align="left">array of uint32</entry><entry align="left">[0, 0, 0, 0, 0, 0, 0, 0]</entry><entry>An array of 8 boolean values, where the array index corresponds to the User Priority (0 - 7) and the value indicates whether or not the corresponding priority should transmit priority pause.</entry></row>
     <row><entry align="left">priority-flow-control-flags</entry><entry align="left">NMSettingDcbFlags (uint32)</entry><entry align="left"/><entry>Specifies the NMSettingDcbFlags for DCB Priority Flow Control (PFC). Flags may be any combination of NM_SETTING_DCB_FLAG_ENABLE (0x1), NM_SETTING_DCB_FLAG_ADVERTISE (0x2), and NM_SETTING_DCB_FLAG_WILLING (0x4).</entry></row>
-    <row><entry align="left">priority-group-bandwidth</entry><entry align="left">array of uint32</entry><entry align="left"/><entry>An array of 8 uint values, where the array index corresponds to the Priority Group ID (0 - 7) and the value indicates the percentage of link bandwidth allocated to that group.  Allowed values are 0 - 100, and the sum of all values must total 100 percent.</entry></row>
+    <row><entry align="left">priority-group-bandwidth</entry><entry align="left">array of uint32</entry><entry align="left">[0, 0, 0, 0, 0, 0, 0, 0]</entry><entry>An array of 8 uint values, where the array index corresponds to the Priority Group ID (0 - 7) and the value indicates the percentage of link bandwidth allocated to that group.  Allowed values are 0 - 100, and the sum of all values must total 100 percent.</entry></row>
     <row><entry align="left">priority-group-flags</entry><entry align="left">NMSettingDcbFlags (uint32)</entry><entry align="left"/><entry>Specifies the NMSettingDcbFlags for DCB Priority Groups.  Flags may be any combination of NM_SETTING_DCB_FLAG_ENABLE (0x1), NM_SETTING_DCB_FLAG_ADVERTISE (0x2), and NM_SETTING_DCB_FLAG_WILLING (0x4).</entry></row>
-    <row><entry align="left">priority-group-id</entry><entry align="left">array of uint32</entry><entry align="left"/><entry>An array of 8 uint values, where the array index corresponds to the User Priority (0 - 7) and the value indicates the Priority Group ID.  Allowed Priority Group ID values are 0 - 7 or 15 for the unrestricted group.</entry></row>
-    <row><entry align="left">priority-strict-bandwidth</entry><entry align="left">array of uint32</entry><entry align="left"/><entry>An array of 8 boolean values, where the array index corresponds to the User Priority (0 - 7) and the value indicates whether or not the priority may use all of the bandwidth allocated to its assigned group.</entry></row>
-    <row><entry align="left">priority-traffic-class</entry><entry align="left">array of uint32</entry><entry align="left"/><entry>An array of 8 uint values, where the array index corresponds to the User Priority (0 - 7) and the value indicates the traffic class (0 - 7) to which the priority is mapped.</entry></row>
+    <row><entry align="left">priority-group-id</entry><entry align="left">array of uint32</entry><entry align="left">[0, 0, 0, 0, 0, 0, 0, 0]</entry><entry>An array of 8 uint values, where the array index corresponds to the User Priority (0 - 7) and the value indicates the Priority Group ID.  Allowed Priority Group ID values are 0 - 7 or 15 for the unrestricted group.</entry></row>
+    <row><entry align="left">priority-strict-bandwidth</entry><entry align="left">array of uint32</entry><entry align="left">[0, 0, 0, 0, 0, 0, 0, 0]</entry><entry>An array of 8 boolean values, where the array index corresponds to the User Priority (0 - 7) and the value indicates whether or not the priority may use all of the bandwidth allocated to its assigned group.</entry></row>
+    <row><entry align="left">priority-traffic-class</entry><entry align="left">array of uint32</entry><entry align="left">[0, 0, 0, 0, 0, 0, 0, 0]</entry><entry>An array of 8 uint values, where the array index corresponds to the User Priority (0 - 7) and the value indicates the traffic class (0 - 7) to which the priority is mapped.</entry></row>
   </tbody></tgroup></table>
   <table><title>generic setting</title><tgroup cols="4"><thead><row><entry>Key Name</entry><entry>Value Type</entry><entry>Default Value</entry><entry>Value Description</entry></row></thead><tbody>
     <row><entry align="left">name</entry><entry align="left">string</entry><entry align="left">generic</entry><entry>The setting's name, which uniquely identifies the setting within the connection.  Each setting type has a name unique to that type, for example "ppp" or "wireless" or "wired".</entry></row>
@@ -172,7 +172,7 @@
   </tbody></tgroup></table>
   <table><title>ipv4 setting</title><tgroup cols="4"><thead><row><entry>Key Name</entry><entry>Value Type</entry><entry>Default Value</entry><entry>Value Description</entry></row></thead><tbody>
     <row><entry align="left">address-data</entry><entry align="left">array of vardict</entry><entry align="left"/><entry>Array of IPv4 addresses. Each address dictionary contains at least 'address' and 'prefix' entries, containing the IP address as a string, and the prefix length as a uint32. Additional attributes may also exist on some addresses.</entry></row>
-    <row><entry align="left">addresses</entry><entry align="left">array of array of uint32</entry><entry align="left"/><entry>Deprecated in favor of the 'address-data' and 'gateway' properties, but this can be used for backward-compatibility with older daemons. Note that if you send this property the daemon will ignore 'address-data' and 'gateway'.  Array of IPv4 address structures.  Each IPv4 address structure is composed of 3 32-bit values; the first being the IPv4 address (network byte order), the second the prefix (1 - 32), and last the IPv4 gateway (network byte order). The gateway may be left as 0 if no gateway exists for that subnet.</entry></row>
+    <row><entry align="left">addresses</entry><entry align="left">array of array of uint32</entry><entry align="left">[]</entry><entry>Deprecated in favor of the 'address-data' and 'gateway' properties, but this can be used for backward-compatibility with older daemons. Note that if you send this property the daemon will ignore 'address-data' and 'gateway'.  Array of IPv4 address structures.  Each IPv4 address structure is composed of 3 32-bit values; the first being the IPv4 address (network byte order), the second the prefix (1 - 32), and last the IPv4 gateway (network byte order). The gateway may be left as 0 if no gateway exists for that subnet.</entry></row>
     <row><entry align="left">dhcp-client-id</entry><entry align="left">string</entry><entry align="left"/><entry>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.</entry></row>
     <row><entry align="left">dhcp-hostname</entry><entry align="left">string</entry><entry align="left"/><entry>If the "dhcp-send-hostname" property is TRUE, then the specified name will be sent to the DHCP server when acquiring a lease.</entry></row>
     <row><entry align="left">dhcp-send-hostname</entry><entry align="left">boolean</entry><entry align="left">TRUE</entry><entry>If TRUE, a hostname is sent to the DHCP server when acquiring a lease. Some DHCP servers use this hostname to update DNS databases, essentially providing a static hostname for the computer.  If the "dhcp-hostname" property is NULL and this property is TRUE, the current persistent hostname of the computer is sent.</entry></row>
@@ -187,11 +187,11 @@
     <row><entry align="left">never-default</entry><entry align="left">boolean</entry><entry align="left">FALSE</entry><entry>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.</entry></row>
     <row><entry align="left">route-data</entry><entry align="left">array of vardict</entry><entry align="left"/><entry>Array of IPv4 routes. Each route dictionary contains at least 'dest' and 'prefix' entries, containing the destination IP address as a string, and the prefix length as a uint32. Most routes will also have a 'gateway' entry, containing the gateway IP address as a string. If the route has a 'metric' entry (containing a uint32), that will be used as the metric for the route (otherwise NM will pick a default value appropriate to the device). Additional attributes may also exist on some routes.</entry></row>
     <row><entry align="left">route-metric</entry><entry align="left">int64</entry><entry align="left">-1</entry><entry>The default metric for routes that don't explicitly specify a metric. The default value -1 means that the metric is choosen automatically based on the device type. The metric applies to dynamic routes, manual (static) routes that don't have an explicit metric setting, address prefix routes, and the default route. Note that for IPv6, the kernel accepts zero (0) but coerces it to 1024 (user default). Hence, setting this property to zero effectively mean setting it to 1024. For IPv4, zero is a regular value for the metric.</entry></row>
-    <row><entry align="left">routes</entry><entry align="left">array of array of uint32</entry><entry align="left"/><entry>Deprecated in favor of the 'route-data' property, but this can be used for backward-compatibility with older daemons. Note that if you send this property the daemon will ignore 'route-data'.  Array of IPv4 route structures.  Each IPv4 route structure is composed of 4 32-bit values; the first being the destination IPv4 network or address (network byte order), the second the destination network or address prefix (1 - 32), the third being the next-hop (network byte order) if any, and the fourth being the route metric. If the metric is 0, NM will choose an appropriate default metric for the device. (There is no way to explicitly specify an actual metric of 0 with this property.)</entry></row>
+    <row><entry align="left">routes</entry><entry align="left">array of array of uint32</entry><entry align="left">[]</entry><entry>Deprecated in favor of the 'route-data' property, but this can be used for backward-compatibility with older daemons. Note that if you send this property the daemon will ignore 'route-data'.  Array of IPv4 route structures.  Each IPv4 route structure is composed of 4 32-bit values; the first being the destination IPv4 network or address (network byte order), the second the destination network or address prefix (1 - 32), the third being the next-hop (network byte order) if any, and the fourth being the route metric. If the metric is 0, NM will choose an appropriate default metric for the device. (There is no way to explicitly specify an actual metric of 0 with this property.)</entry></row>
   </tbody></tgroup></table>
   <table><title>ipv6 setting</title><tgroup cols="4"><thead><row><entry>Key Name</entry><entry>Value Type</entry><entry>Default Value</entry><entry>Value Description</entry></row></thead><tbody>
     <row><entry align="left">address-data</entry><entry align="left">array of vardict</entry><entry align="left"/><entry>Array of IPv6 addresses. Each address dictionary contains at least 'address' and 'prefix' entries, containing the IP address as a string, and the prefix length as a uint32. Additional attributes may also exist on some addresses.</entry></row>
-    <row><entry align="left">addresses</entry><entry align="left">array of legacy IPv6 address struct (a(ayuay))</entry><entry align="left"/><entry>Deprecated in favor of the 'address-data' and 'gateway' properties, but this can be used for backward-compatibility with older daemons. Note that if you send this property the daemon will ignore 'address-data' and 'gateway'.  Array of IPv6 address structures.  Each IPv6 address structure is composed of an IPv6 address, a prefix length (1 - 128), and an IPv6 gateway address. The gateway may be zeroed out if no gateway exists for that subnet.</entry></row>
+    <row><entry align="left">addresses</entry><entry align="left">array of legacy IPv6 address struct (a(ayuay))</entry><entry align="left">[]</entry><entry>Deprecated in favor of the 'address-data' and 'gateway' properties, but this can be used for backward-compatibility with older daemons. Note that if you send this property the daemon will ignore 'address-data' and 'gateway'.  Array of IPv6 address structures.  Each IPv6 address structure is composed of an IPv6 address, a prefix length (1 - 128), and an IPv6 gateway address. The gateway may be zeroed out if no gateway exists for that subnet.</entry></row>
     <row><entry align="left">dhcp-hostname</entry><entry align="left">string</entry><entry align="left"/><entry>If the "dhcp-send-hostname" property is TRUE, then the specified name will be sent to the DHCP server when acquiring a lease.</entry></row>
     <row><entry align="left">dhcp-send-hostname</entry><entry align="left">boolean</entry><entry align="left">TRUE</entry><entry>If TRUE, a hostname is sent to the DHCP server when acquiring a lease. Some DHCP servers use this hostname to update DNS databases, essentially providing a static hostname for the computer.  If the "dhcp-hostname" property is NULL and this property is TRUE, the current persistent hostname of the computer is sent.</entry></row>
     <row><entry align="left">dns</entry><entry align="left">array of byte array</entry><entry align="left">[]</entry><entry>Array of IP addresses of DNS servers (in network byte order)</entry></row>
@@ -206,7 +206,7 @@
     <row><entry align="left">never-default</entry><entry align="left">boolean</entry><entry align="left">FALSE</entry><entry>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.</entry></row>
     <row><entry align="left">route-data</entry><entry align="left">array of vardict</entry><entry align="left"/><entry>Array of IPv6 routes. Each route dictionary contains at least 'dest' and 'prefix' entries, containing the destination IP address as a string, and the prefix length as a uint32. Most routes will also have a 'next-hop' entry, containing the next hop IP address as a string. If the route has a 'metric' entry (containing a uint32), that will be used as the metric for the route (otherwise NM will pick a default value appropriate to the device). Additional attributes may also exist on some routes.</entry></row>
     <row><entry align="left">route-metric</entry><entry align="left">int64</entry><entry align="left">-1</entry><entry>The default metric for routes that don't explicitly specify a metric. The default value -1 means that the metric is choosen automatically based on the device type. The metric applies to dynamic routes, manual (static) routes that don't have an explicit metric setting, address prefix routes, and the default route. Note that for IPv6, the kernel accepts zero (0) but coerces it to 1024 (user default). Hence, setting this property to zero effectively mean setting it to 1024. For IPv4, zero is a regular value for the metric.</entry></row>
-    <row><entry align="left">routes</entry><entry align="left">array of legacy IPv6 route struct (a(ayuayu))</entry><entry align="left"/><entry>Deprecated in favor of the 'route-data' property, but this can be used for backward-compatibility with older daemons. Note that if you send this property the daemon will ignore 'route-data'.  Array of IPv6 route structures.  Each IPv6 route structure is composed of an IPv6 address, a prefix length (1 - 128), an IPv6 next hop address (which may be zeroed out if there is no next hop), and a metric. If the metric is 0, NM will choose an appropriate default metric for the device.</entry></row>
+    <row><entry align="left">routes</entry><entry align="left">array of legacy IPv6 route struct (a(ayuayu))</entry><entry align="left">[]</entry><entry>Deprecated in favor of the 'route-data' property, but this can be used for backward-compatibility with older daemons. Note that if you send this property the daemon will ignore 'route-data'.  Array of IPv6 route structures.  Each IPv6 route structure is composed of an IPv6 address, a prefix length (1 - 128), an IPv6 next hop address (which may be zeroed out if there is no next hop), and a metric. If the metric is 0, NM will choose an appropriate default metric for the device.</entry></row>
   </tbody></tgroup></table>
   <table><title>802-11-olpc-mesh setting</title><tgroup cols="4"><thead><row><entry>Key Name</entry><entry>Value Type</entry><entry>Default Value</entry><entry>Value Description</entry></row></thead><tbody>
     <row><entry align="left">channel</entry><entry align="left">uint32</entry><entry align="left">0</entry><entry>Channel on which the mesh network to join is located.</entry></row>
@@ -269,10 +269,10 @@
     <row><entry align="left">parent</entry><entry align="left">string</entry><entry align="left"/><entry>If given, specifies the parent interface name or parent connection UUID from which this VLAN interface should be created.  If this property is not specified, the connection must contain an "802-3-ethernet" setting with a "mac-address" property.</entry></row>
   </tbody></tgroup></table>
   <table><title>vpn setting</title><tgroup cols="4"><thead><row><entry>Key Name</entry><entry>Value Type</entry><entry>Default Value</entry><entry>Value Description</entry></row></thead><tbody>
-    <row><entry align="left">data</entry><entry align="left">dict of string to string</entry><entry align="left"/><entry>Dictionary of key/value pairs of VPN plugin specific data.  Both keys and values must be strings.</entry></row>
+    <row><entry align="left">data</entry><entry align="left">dict of string to string</entry><entry align="left">{}</entry><entry>Dictionary of key/value pairs of VPN plugin specific data.  Both keys and values must be strings.</entry></row>
     <row><entry align="left">name</entry><entry align="left">string</entry><entry align="left">vpn</entry><entry>The setting's name, which uniquely identifies the setting within the connection.  Each setting type has a name unique to that type, for example "ppp" or "wireless" or "wired".</entry></row>
     <row><entry align="left">persistent</entry><entry align="left">boolean</entry><entry align="left">FALSE</entry><entry>If the VPN service supports persistence, and this property is TRUE, the VPN will attempt to stay connected across link changes and outages, until explicitly disconnected.</entry></row>
-    <row><entry align="left">secrets</entry><entry align="left">dict of string to string</entry><entry align="left"/><entry>Dictionary of key/value pairs of VPN plugin specific secrets like passwords or private keys.  Both keys and values must be strings.</entry></row>
+    <row><entry align="left">secrets</entry><entry align="left">dict of string to string</entry><entry align="left">{}</entry><entry>Dictionary of key/value pairs of VPN plugin specific secrets like passwords or private keys.  Both keys and values must be strings.</entry></row>
     <row><entry align="left">service-type</entry><entry align="left">string</entry><entry align="left"/><entry>D-Bus service name of the VPN plugin that this setting uses to connect to its network.  i.e. org.freedesktop.NetworkManager.vpnc for the vpnc plugin.</entry></row>
     <row><entry align="left">user-name</entry><entry align="left">string</entry><entry align="left"/><entry>If the VPN connection requires a user name for authentication, that name should be provided here.  If the connection is available to more than one user, and the VPN requires each user to supply a different name, then leave this property empty.  If this property is empty, NetworkManager will automatically supply the username of the user which requested the VPN connection.</entry></row>
   </tbody></tgroup></table>
@@ -291,7 +291,7 @@
     <row><entry align="left">name</entry><entry align="left">string</entry><entry align="left">802-3-ethernet</entry><entry>The setting's name, which uniquely identifies the setting within the connection.  Each setting type has a name unique to that type, for example "ppp" or "wireless" or "wired".</entry></row>
     <row><entry align="left">port</entry><entry align="left">string</entry><entry align="left"/><entry>Specific port type to use if multiple the device supports multiple attachment methods.  One of "tp" (Twisted Pair), "aui" (Attachment Unit Interface), "bnc" (Thin Ethernet) or "mii" (Media Independent Interface. If the device supports only one port type, this setting is ignored.</entry></row>
     <row><entry align="left">s390-nettype</entry><entry align="left">string</entry><entry align="left"/><entry>s390 network device type; one of "qeth", "lcs", or "ctc", representing the different types of virtual network devices available on s390 systems.</entry></row>
-    <row><entry align="left">s390-options</entry><entry align="left">dict of string to string</entry><entry align="left"/><entry>Dictionary of key/value pairs of s390-specific device options.  Both keys and values must be strings.  Allowed keys include "portno", "layer2", "portname", "protocol", among others.  Key names must contain only alphanumeric characters (ie, [a-zA-Z0-9]).</entry></row>
+    <row><entry align="left">s390-options</entry><entry align="left">dict of string to string</entry><entry align="left">{}</entry><entry>Dictionary of key/value pairs of s390-specific device options.  Both keys and values must be strings.  Allowed keys include "portno", "layer2", "portname", "protocol", among others.  Key names must contain only alphanumeric characters (ie, [a-zA-Z0-9]).</entry></row>
     <row><entry align="left">s390-subchannels</entry><entry align="left">array of string</entry><entry align="left">[]</entry><entry>Identifies specific subchannels that this network device uses for communication with z/VM or s390 host.  Like the "mac-address" property for non-z/VM devices, this property can be used to ensure this connection only applies to the network device that uses these subchannels.  The list should contain exactly 3 strings, and each string may only be composed of hexadecimal characters and the period (.) character.</entry></row>
     <row><entry align="left">speed</entry><entry align="left">uint32</entry><entry align="left">0</entry><entry>If non-zero, request that the device use only the specified speed.  In Mbit/s, ie 100 == 100Mbit/s.</entry></row>
   </tbody></tgroup></table>