410 lines
17 KiB
Lua
410 lines
17 KiB
Lua
-- Copyright 2008 Steven Barth <steven@midlink.org>
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-- Copyright 2010 Jo-Philipp Wich <jow@openwrt.org>
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-- Licensed to the public under the Apache License 2.0.
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require("luci.tools.webadmin")
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local fs = require "nixio.fs"
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local util = require "luci.util"
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local ip = require "luci.ip"
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local has_ipip = fs.glob("/etc/modules.d/[0-9]*-ipip")()
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m = Map("olsrd", translate("OLSR Daemon"),
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translate("The OLSR daemon is an implementation of the Optimized Link State Routing protocol. "..
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"As such it allows mesh routing for any network equipment. "..
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"It runs on any wifi card that supports ad-hoc mode and of course on any ethernet device. "..
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"Visit <a href='http://www.olsr.org'>olsrd.org</a> for help and documentation."))
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function m.on_parse()
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local has_defaults = false
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m.uci:foreach("olsrd", "InterfaceDefaults",
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function(s)
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has_defaults = true
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return false
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end)
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if not has_defaults then
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m.uci:section("olsrd", "InterfaceDefaults")
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end
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end
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function write_float(self, section, value)
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local n = tonumber(value)
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if n ~= nil then
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return Value.write(self, section, "%.1f" % n)
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end
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end
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s = m:section(TypedSection, "olsrd", translate("General settings"))
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s.anonymous = true
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s:tab("general", translate("General Settings"))
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s:tab("lquality", translate("Link Quality Settings"))
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s:tab("smartgw", translate("SmartGW"), not has_ipip and translate("Warning: kmod-ipip is not installed. Without kmod-ipip SmartGateway will not work, please install it."))
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s:tab("advanced", translate("Advanced Settings"))
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ipv = s:taboption("general", ListValue, "IpVersion", translate("Internet protocol"),
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translate("IP-version to use. If 6and4 is selected then one olsrd instance is started for each protocol."))
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ipv:value("4", "IPv4")
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ipv:value("6and4", "6and4")
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poll = s:taboption("advanced", Value, "Pollrate", translate("Pollrate"),
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translate("Polling rate for OLSR sockets in seconds. Default is 0.05."))
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poll.optional = true
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poll.datatype = "ufloat"
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poll.placeholder = "0.05"
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nicc = s:taboption("advanced", Value, "NicChgsPollInt", translate("Nic changes poll interval"),
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translate("Interval to poll network interfaces for configuration changes (in seconds). Default is \"2.5\"."))
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nicc.optional = true
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nicc.datatype = "ufloat"
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nicc.placeholder = "2.5"
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tos = s:taboption("advanced", Value, "TosValue", translate("TOS value"),
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translate("Type of service value for the IP header of control traffic. Default is \"16\"."))
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tos.optional = true
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tos.datatype = "uinteger"
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tos.placeholder = "16"
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fib = s:taboption("general", ListValue, "FIBMetric", translate("FIB metric"),
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translate ("FIBMetric controls the metric value of the host-routes OLSRd sets. "..
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"\"flat\" means that the metric value is always 2. This is the preferred value "..
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"because it helps the linux kernel routing to clean up older routes. "..
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"\"correct\" uses the hopcount as the metric value. "..
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"\"approx\" use the hopcount as the metric value too, but does only update the hopcount if the nexthop changes too. "..
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"Default is \"flat\"."))
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fib:value("flat")
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fib:value("correct")
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fib:value("approx")
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lql = s:taboption("lquality", ListValue, "LinkQualityLevel", translate("LQ level"),
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translate("Link quality level switch between hopcount and cost-based (mostly ETX) routing.<br />"..
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"<b>0</b> = do not use link quality<br />"..
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"<b>2</b> = use link quality for MPR selection and routing<br />"..
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"Default is \"2\""))
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lql:value("2")
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lql:value("0")
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lqage = s:taboption("lquality", Value, "LinkQualityAging", translate("LQ aging"),
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translate("Link quality aging factor (only for lq level 2). Tuning parameter for etx_float and etx_fpm, smaller values "..
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"mean slower changes of ETX value. (allowed values are between 0.01 and 1.0)"))
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lqage.optional = true
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lqage:depends("LinkQualityLevel", "2")
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lqa = s:taboption("lquality", ListValue, "LinkQualityAlgorithm", translate("LQ algorithm"),
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translate("Link quality algorithm (only for lq level 2).<br />"..
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"<b>etx_float</b>: floating point ETX with exponential aging<br />"..
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"<b>etx_fpm</b> : same as etx_float, but with integer arithmetic<br />"..
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"<b>etx_ff</b> : ETX freifunk, an etx variant which use all OLSR traffic (instead of only hellos) for ETX calculation<br />"..
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"<b>etx_ffeth</b>: incompatible variant of etx_ff that allows ethernet links with ETX 0.1.<br />"..
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"Defaults to \"etx_ff\""))
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lqa.optional = true
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lqa:value("etx_ff")
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lqa:value("etx_fpm")
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lqa:value("etx_float")
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lqa:value("etx_ffeth")
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lqa:depends("LinkQualityLevel", "2")
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lqa.optional = true
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lqfish = s:taboption("lquality", Flag, "LinkQualityFishEye", translate("LQ fisheye"),
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translate("Fisheye mechanism for TCs (checked means on). Default is \"on\""))
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lqfish.default = "1"
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lqfish.optional = true
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hyst = s:taboption("lquality", Flag, "UseHysteresis", translate("Use hysteresis"),
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translate("Hysteresis for link sensing (only for hopcount metric). Hysteresis adds more robustness to the link sensing "..
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"but delays neighbor registration. Defaults is \"yes\""))
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hyst.default = "yes"
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hyst.enabled = "yes"
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hyst.disabled = "no"
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hyst:depends("LinkQualityLevel", "0")
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hyst.optional = true
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hyst.rmempty = true
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port = s:taboption("general", Value, "OlsrPort", translate("Port"),
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translate("The port OLSR uses. This should usually stay at the IANA assigned port 698. It can have a value between 1 and 65535."))
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port.optional = true
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port.default = "698"
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port.rmempty = true
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mainip = s:taboption("general", Value, "MainIp", translate("Main IP"),
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translate("Sets the main IP (originator ip) of the router. This IP will NEVER change during the uptime of olsrd. "..
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"Default is 0.0.0.0, which triggers usage of the IP of the first interface."))
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mainip.optional = true
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mainip.rmempty = true
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mainip.datatype = "ipaddr"
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mainip.placeholder = "0.0.0.0"
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sgw = s:taboption("smartgw", Flag, "SmartGateway", translate("Enable"), translate("Enable SmartGateway. If it is disabled, then " ..
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"all other SmartGateway parameters are ignored. Default is \"no\"."))
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sgw.default="no"
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sgw.enabled="yes"
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sgw.disabled="no"
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sgw.rmempty = true
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sgwnat = s:taboption("smartgw", Flag, "SmartGatewayAllowNAT", translate("Allow gateways with NAT"), translate("Allow the selection of an outgoing ipv4 gateway with NAT"))
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sgwnat:depends("SmartGateway", "yes")
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sgwnat.default="yes"
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sgwnat.enabled="yes"
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sgwnat.disabled="no"
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sgwnat.optional = true
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sgwnat.rmempty = true
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sgwuplink = s:taboption("smartgw", ListValue, "SmartGatewayUplink", translate("Announce uplink"), translate("Which kind of uplink is exported to the other mesh nodes. " ..
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"An uplink is detected by looking for a local HNA of 0.0.0.0/0, ::ffff:0:0/96 or 2000::/3. Default setting is \"both\"."))
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sgwuplink:value("none")
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sgwuplink:value("ipv4")
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sgwuplink:value("ipv6")
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sgwuplink:value("both")
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sgwuplink:depends("SmartGateway", "yes")
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sgwuplink.default="both"
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sgwuplink.optional = true
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sgwuplink.rmempty = true
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sgwulnat = s:taboption("smartgw", Flag, "SmartGatewayUplinkNAT", translate("Uplink uses NAT"), translate("If this Node uses NAT for connections to the internet. " ..
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"Default is \"yes\"."))
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sgwulnat:depends("SmartGatewayUplink", "ipv4")
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sgwulnat:depends("SmartGatewayUplink", "both")
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sgwulnat.default="yes"
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sgwulnat.enabled="yes"
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sgwulnat.disabled="no"
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sgwnat.optional = true
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sgwnat.rmempty = true
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sgwspeed = s:taboption("smartgw", Value, "SmartGatewaySpeed", translate("Speed of the uplink"), translate("Specifies the speed of "..
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"the uplink in kilobits/s. First parameter is upstream, second parameter is downstream. Default is \"128 1024\"."))
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sgwspeed:depends("SmartGatewayUplink", "ipv4")
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sgwspeed:depends("SmartGatewayUplink", "ipv6")
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sgwspeed:depends("SmartGatewayUplink", "both")
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sgwspeed.optional = true
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sgwspeed.rmempty = true
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sgwprefix = s:taboption("smartgw", Value, "SmartGatewayPrefix", translate("IPv6-Prefix of the uplink"), translate("This can be used " ..
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"to signal the external IPv6 prefix of the uplink to the clients. This might allow a client to change it's local IPv6 address to " ..
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"use the IPv6 gateway without any kind of address translation. The maximum prefix length is 64 bits. " ..
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"Default is \"::/0\" (no prefix)."))
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sgwprefix:depends("SmartGatewayUplink", "ipv6")
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sgwprefix:depends("SmartGatewayUplink", "both")
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sgwprefix.optional = true
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sgwprefix.rmempty = true
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willingness = s:taboption("advanced", ListValue, "Willingness", translate("Willingness"),
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translate("The fixed willingness to use. If not set willingness will be calculated dynamically based on battery/power status. Default is \"3\"."))
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for i=0,7 do
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willingness:value(i)
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end
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willingness.optional = true
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willingness.default = "3"
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natthr = s:taboption("advanced", Value, "NatThreshold", translate("NAT threshold"),
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translate("If the route to the current gateway is to be changed, the ETX value of this gateway is "..
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"multiplied with this value before it is compared to the new one. "..
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"The parameter can be a value between 0.1 and 1.0, but should be close to 1.0 if changed.<br />"..
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"<b>WARNING:</b> This parameter should not be used together with the etx_ffeth metric!<br />"..
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"Defaults to \"1.0\"."))
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for i=1,0.1,-0.1 do
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natthr:value(i)
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end
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natthr:depends("LinkQualityAlgorithm", "etx_ff")
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natthr:depends("LinkQualityAlgorithm", "etx_float")
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natthr:depends("LinkQualityAlgorithm", "etx_fpm")
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natthr.default = "1.0"
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natthr.optional = true
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natthr.write = write_float
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i = m:section(TypedSection, "InterfaceDefaults", translate("Interfaces Defaults"))
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i.anonymous = true
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i.addremove = false
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i:tab("general", translate("General Settings"))
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i:tab("addrs", translate("IP Addresses"))
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i:tab("timing", translate("Timing and Validity"))
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mode = i:taboption("general", ListValue, "Mode", translate("Mode"),
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translate("Interface Mode is used to prevent unnecessary packet forwarding on switched ethernet interfaces. "..
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"valid Modes are \"mesh\" and \"ether\". Default is \"mesh\"."))
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mode:value("mesh")
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mode:value("ether")
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mode.optional = true
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mode.rmempty = true
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weight = i:taboption("general", Value, "Weight", translate("Weight"),
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translate("When multiple links exist between hosts the weight of interface is used to determine the link to use. "..
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"Normally the weight is automatically calculated by olsrd based on the characteristics of the interface, "..
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"but here you can specify a fixed value. Olsrd will choose links with the lowest value.<br />"..
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"<b>Note:</b> Interface weight is used only when LinkQualityLevel is set to 0. "..
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"For any other value of LinkQualityLevel, the interface ETX value is used instead."))
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weight.optional = true
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weight.datatype = "uinteger"
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weight.placeholder = "0"
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lqmult = i:taboption("general", DynamicList, "LinkQualityMult", translate("LinkQuality Multiplicator"),
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translate("Multiply routes with the factor given here. Allowed values are between 0.01 and 1.0. "..
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"It is only used when LQ-Level is greater than 0. Examples:<br />"..
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"reduce LQ to 192.168.0.1 by half: 192.168.0.1 0.5<br />"..
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"reduce LQ to all nodes on this interface by 20%: default 0.8"))
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lqmult.optional = true
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lqmult.rmempty = true
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lqmult.cast = "table"
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lqmult.placeholder = "default 1.0"
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function lqmult.validate(self, value)
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for _, v in pairs(value) do
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if v ~= "" then
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local val = util.split(v, " ")
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local host = val[1]
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local mult = val[2]
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if not host or not mult then
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return nil, translate("LQMult requires two values (IP address or 'default' and multiplicator) seperated by space.")
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end
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if not (host == "default" or ip.IPv4(host) or ip.IPv6(host)) then
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return nil, translate("Can only be a valid IPv4 or IPv6 address or 'default'")
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end
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if not tonumber(mult) or tonumber(mult) > 1 or tonumber(mult) < 0.01 then
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return nil, translate("Invalid Value for LQMult-Value. Must be between 0.01 and 1.0.")
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end
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if not mult:match("[0-1]%.[0-9]+") then
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return nil, translate("Invalid Value for LQMult-Value. You must use a decimal number between 0.01 and 1.0 here.")
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end
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end
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end
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return value
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end
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ip4b = i:taboption("addrs", Value, "Ip4Broadcast", translate("IPv4 broadcast"),
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translate("IPv4 broadcast address for outgoing OLSR packets. One useful example would be 255.255.255.255. "..
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"Default is \"0.0.0.0\", which triggers the usage of the interface broadcast IP."))
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ip4b.optional = true
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ip4b.datatype = "ip4addr"
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ip4b.placeholder = "0.0.0.0"
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ip6m = i:taboption("addrs", Value, "IPv6Multicast", translate("IPv6 multicast"),
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translate("IPv6 multicast address. Default is \"FF02::6D\", the manet-router linklocal multicast."))
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ip6m.optional = true
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ip6m.datatype = "ip6addr"
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ip6m.placeholder = "FF02::6D"
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ip4s = i:taboption("addrs", Value, "IPv4Src", translate("IPv4 source"),
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translate("IPv4 src address for outgoing OLSR packages. Default is \"0.0.0.0\", which triggers usage of the interface IP."))
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ip4s.optional = true
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ip4s.datatype = "ip4addr"
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ip4s.placeholder = "0.0.0.0"
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ip6s = i:taboption("addrs", Value, "IPv6Src", translate("IPv6 source"),
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translate("IPv6 src prefix. OLSRd will choose one of the interface IPs which matches the prefix of this parameter. "..
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"Default is \"0::/0\", which triggers the usage of a not-linklocal interface IP."))
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ip6s.optional = true
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ip6s.datatype = "ip6addr"
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ip6s.placeholder = "0::/0"
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hi = i:taboption("timing", Value, "HelloInterval", translate("Hello interval"))
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hi.optional = true
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hi.datatype = "ufloat"
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hi.placeholder = "5.0"
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hi.write = write_float
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hv = i:taboption("timing", Value, "HelloValidityTime", translate("Hello validity time"))
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hv.optional = true
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hv.datatype = "ufloat"
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hv.placeholder = "40.0"
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hv.write = write_float
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ti = i:taboption("timing", Value, "TcInterval", translate("TC interval"))
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ti.optional = true
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ti.datatype = "ufloat"
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ti.placeholder = "2.0"
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ti.write = write_float
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tv = i:taboption("timing", Value, "TcValidityTime", translate("TC validity time"))
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tv.optional = true
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tv.datatype = "ufloat"
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tv.placeholder = "256.0"
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tv.write = write_float
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mi = i:taboption("timing", Value, "MidInterval", translate("MID interval"))
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mi.optional = true
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mi.datatype = "ufloat"
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mi.placeholder = "18.0"
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mi.write = write_float
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mv = i:taboption("timing", Value, "MidValidityTime", translate("MID validity time"))
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mv.optional = true
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mv.datatype = "ufloat"
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mv.placeholder = "324.0"
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mv.write = write_float
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ai = i:taboption("timing", Value, "HnaInterval", translate("HNA interval"))
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ai.optional = true
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ai.datatype = "ufloat"
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ai.placeholder = "18.0"
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ai.write = write_float
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av = i:taboption("timing", Value, "HnaValidityTime", translate("HNA validity time"))
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av.optional = true
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av.datatype = "ufloat"
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av.placeholder = "108.0"
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av.write = write_float
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ifs = m:section(TypedSection, "Interface", translate("Interfaces"))
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ifs.addremove = true
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ifs.anonymous = true
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ifs.extedit = luci.dispatcher.build_url("admin/services/olsrd/iface/%s")
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ifs.template = "cbi/tblsection"
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function ifs.create(...)
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local sid = TypedSection.create(...)
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luci.http.redirect(ifs.extedit % sid)
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end
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ign = ifs:option(Flag, "ignore", translate("Enable"))
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ign.enabled = "0"
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ign.disabled = "1"
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ign.rmempty = false
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function ign.cfgvalue(self, section)
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return Flag.cfgvalue(self, section) or "0"
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end
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network = ifs:option(DummyValue, "interface", translate("Network"))
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network.template = "cbi/network_netinfo"
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mode = ifs:option(DummyValue, "Mode", translate("Mode"))
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function mode.cfgvalue(...)
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return Value.cfgvalue(...) or m.uci:get_first("olsrd", "InterfaceDefaults", "Mode", "mesh")
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end
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hello = ifs:option(DummyValue, "_hello", translate("Hello"))
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function hello.cfgvalue(self, section)
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local i = tonumber(m.uci:get("olsrd", section, "HelloInterval")) or tonumber(m.uci:get_first("olsrd", "InterfaceDefaults", "HelloInterval", 5))
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local v = tonumber(m.uci:get("olsrd", section, "HelloValidityTime")) or tonumber(m.uci:get_first("olsrd", "InterfaceDefaults", "HelloValidityTime", 40))
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return "%.01fs / %.01fs" %{ i, v }
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end
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tc = ifs:option(DummyValue, "_tc", translate("TC"))
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function tc.cfgvalue(self, section)
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local i = tonumber(m.uci:get("olsrd", section, "TcInterval")) or tonumber(m.uci:get_first("olsrd", "InterfaceDefaults", "TcInterval", 2))
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local v = tonumber(m.uci:get("olsrd", section, "TcValidityTime")) or tonumber(m.uci:get_first("olsrd", "InterfaceDefaults", "TcValidityTime", 256))
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return "%.01fs / %.01fs" %{ i, v }
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end
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mid = ifs:option(DummyValue, "_mid", translate("MID"))
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function mid.cfgvalue(self, section)
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local i = tonumber(m.uci:get("olsrd", section, "MidInterval")) or tonumber(m.uci:get_first("olsrd", "InterfaceDefaults", "MidInterval", 18))
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local v = tonumber(m.uci:get("olsrd", section, "MidValidityTime")) or tonumber(m.uci:get_first("olsrd", "InterfaceDefaults", "MidValidityTime", 324))
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return "%.01fs / %.01fs" %{ i, v }
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end
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hna = ifs:option(DummyValue, "_hna", translate("HNA"))
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function hna.cfgvalue(self, section)
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local i = tonumber(m.uci:get("olsrd", section, "HnaInterval")) or tonumber(m.uci:get_first("olsrd", "InterfaceDefaults", "HnaInterval", 18))
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local v = tonumber(m.uci:get("olsrd", section, "HnaValidityTime")) or tonumber(m.uci:get_first("olsrd", "InterfaceDefaults", "HnaValidityTime", 108))
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return "%.01fs / %.01fs" %{ i, v }
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end
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return m
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