dcwifi: Add Dual Channel Wi-Fi component packages

dcstad: Dual Channel Wi-Fi Station Daemon
dcwapd: Dual Channel Wi-Fi Access Point Daemon
libdcwproto: Dual Channel Wi-Fi Protocol Library
libdcwsocket: Dual Channel Wi-Fi Socket Library
macremapper: MAC Address Remapper Linux Kernel Module
mrmctl: Userland tool to get/set remap rules

Signed-off-by: Carey Sonsino <careys@edgewaterwireless.com>
Signed-off-by: Carey Sonsino <csonsino@gmail.com>
This commit is contained in:
Carey Sonsino 2019-10-15 20:54:01 +00:00
parent 0183071b22
commit 82a2e3f55f
16 changed files with 1372 additions and 0 deletions

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#
# Copyright (C) 2019 EWSI
#
# This is free software, licensed under the GNU General Public License v2.
# See /LICENSE for more information.
#
include $(TOPDIR)/rules.mk
include $(INCLUDE_DIR)/kernel.mk
PKG_NAME:=macremapper
PKG_VERSION:=1.1.0
PKG_RELEASE:=1
PKG_SOURCE:=$(PKG_NAME)-$(PKG_VERSION).tar.gz
PKG_SOURCE_URL:=https://codeload.github.com/ewsi/$(PKG_NAME)/tar.gz/v$(PKG_VERSION)?
PKG_HASH:=f9580427803123d13d50f3422623a37212034a5d72a485f9c04904f19509e4bb
PKG_MAINTAINER:=Carey Sonsino <careys@edgewaterwireless.com>
PKG_LICENSE:=GPL-2.0-only
PKG_LICENSE_FILES:=kernelmod/COPYING
include $(INCLUDE_DIR)/package.mk
define KernelPackage/macremapper
SUBMENU:=Network Support
URL:=https://www.edgewaterwireless.com
VERSION:=$(LINUX_VERSION)-$(BOARD)-$(PKG_RELEASE)
TITLE:=Dual Channel Wi-Fi macremapper Module
DEPENDS:= +kmod-cfg80211 +kmod-br-netfilter
FILES:=$(PKG_BUILD_DIR)/kernelmod/$(PKG_NAME).$(LINUX_KMOD_SUFFIX)
AUTOLOAD:=$(call AutoProbe,macremapper)
endef
define KernelPackage/macremapper/description
Linux kernel module for implementation the DCW filtering mechanism
endef
MAKE_FLAGS += KERNEL_SRC=$(LINUX_DIR) ARCH=$(LINUX_KARCH)
MAKE_PATH:=kernelmod
$(eval $(call KernelPackage,macremapper))

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--- a/kernelmod/main.c
+++ b/kernelmod/main.c
@@ -98,8 +98,11 @@ modinit( void ) {
rv = mrm_rcdb_init();
if (rv != 0) return rv;
-
+#if LINUX_VERSION_CODE < KERNEL_VERSION(4,13,0)
nf_register_hook(&_hops);
+#else
+ nf_register_net_hook(&init_net, &_hops);
+#endif
mrm_init_ctlfile(); /* XXX not checking for failure! */
printk(KERN_INFO "MRM The MAC Address Re-Mapper is now in the kernel\n");
@@ -110,7 +113,11 @@ modinit( void ) {
static void __exit
modexit( void ) {
mrm_destroy_ctlfile();
+#if LINUX_VERSION_CODE < KERNEL_VERSION(4,13,0)
nf_unregister_hook(&_hops);
+#else
+ nf_unregister_net_hook(&init_net, &_hops);
+#endif
mrm_rcdb_destroy(); /* imperative that this happens last */
printk(KERN_INFO "MRM The MAC Address Re-Mapper gone bye-bye\n");
}

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libs/libdcwproto/Makefile Normal file
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#
# Copyright (C) 2019 EWSI
#
# This is free software, licensed under the GNU General Public License v2.
# See /LICENSE for more information.
#
include $(TOPDIR)/rules.mk
PKG_NAME:=libdcwproto
PKG_VERSION:=1.1.0
PKG_RELEASE:=1
PKG_SOURCE:=$(PKG_NAME)-$(PKG_VERSION).tar.gz
PKG_SOURCE_URL:=https://codeload.github.com/ewsi/$(PKG_NAME)/tar.gz/v$(PKG_VERSION)?
PKG_HASH:=b3d12f2533eafbb293bbf27608ff39520508d955a084f33894c594f39d2f7c8e
PKG_MAINTAINER:=Carey Sonsino <careys@edgewaterwireless.com>
PKG_LICENSE:=Apache-2.0
PKG_LICENSE_FILES:=COPYING
PKG_INSTALL:=1
PKG_BUILD_PARALLEL:=1
include $(INCLUDE_DIR)/package.mk
define Package/libdcwproto
SECTION:=libs
CATEGORY:=Libraries
SUBMENU:=Networking
TITLE:=Dual-Channel WiFi messaging library
URL:=https://www.edgewaterwireless.com
DEPENDS:=+kmod-macremapper
endef
define Package/libdcwproto/description
Platform-independent C library for marshaling and serializing DCW messages
endef
TARGET_CFLAGS += -ffunction-sections -fdata-sections -flto
TARGET_LDFLAGS += -Wl,--gc-sections,--as-needed
define Build/InstallDev
$(INSTALL_DIR) $(1)/usr/include
$(INSTALL_BIN) $(PKG_INSTALL_DIR)/usr/include/*.h $(1)/usr/include/
$(INSTALL_DIR) $(1)/usr/lib
$(CP) $(PKG_INSTALL_DIR)/usr/lib/$(PKG_NAME)*.so* $(1)/usr/lib/
endef
define Package/libdcwproto/install
$(INSTALL_DIR) $(1)/usr/lib
# Note: $(INSTALL_BIN) does not keep symlinks, so use $(CP)
$(CP) $(PKG_INSTALL_DIR)/usr/lib/$(PKG_NAME)*.so* $(1)/usr/lib/
endef
$(eval $(call BuildPackage,libdcwproto))

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#
# Copyright (C) 2019 EWSI
#
# This is free software, licensed under the GNU General Public License v2.
# See /LICENSE for more information.
#
include $(TOPDIR)/rules.mk
PKG_NAME:=libdcwsocket
PKG_VERSION:=1.1.0
PKG_RELEASE:=1
PKG_SOURCE:=$(PKG_NAME)-$(PKG_VERSION).tar.gz
PKG_SOURCE_URL:=https://codeload.github.com/ewsi/$(PKG_NAME)/tar.gz/v$(PKG_VERSION)?
PKG_SOURCE_SUBDIR:=$(PKG_NAME)-$(PKG_VERSION)
PKG_HASH:=71383c4d8c5f58c1299a3717d7de9a8b5dabfd51a2dcf9993248f2709908d23a
PKG_MAINTAINER:=Carey Sonsino <careys@edgewaterwireless.com>
PKG_LICENSE:=Apache-2.0
PKG_LICENSE_FILES:=COPYING
PKG_INSTALL:=1
PKG_BUILD_PARALLEL:=1
include $(INCLUDE_DIR)/package.mk
define Package/libdcwsocket
SECTION:=libs
CATEGORY:=Libraries
SUBMENU:=Networking
TITLE:=Dual-Channel socket library
URL:=https://www.edgewaterwireless.com
endef
define Package/libdcwsocket/description
User-land C library for sending and receiving DCW "EtherType"d messages
endef
TARGET_CFLAGS += -std=c89 -ffunction-sections -fdata-sections -flto
TARGET_LDFLAGS += -Wl,--gc-sections,--as-needed
define Build/InstallDev
$(INSTALL_DIR) $(1)/usr/include
$(INSTALL_BIN) $(PKG_INSTALL_DIR)/usr/include/*.h $(1)/usr/include/
$(INSTALL_DIR) $(1)/usr/lib
$(CP) $(PKG_INSTALL_DIR)/usr/lib/$(PKG_NAME)*.so* $(1)/usr/lib/
endef
define Package/libdcwsocket/install
$(INSTALL_DIR) $(1)/usr/lib
# Note: $(INSTALL_BIN) does not keep symlinks, so use $(CP)
$(CP) $(PKG_INSTALL_DIR)/usr/lib/$(PKG_NAME)*.so* $(1)/usr/lib/
endef
$(eval $(call BuildPackage,libdcwsocket))

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--- a/src/dcwsocket.c.linux
+++ b/src/dcwsocket.c.linux
@@ -31,6 +31,7 @@
#include <sys/types.h>
#include <sys/socket.h>
#include <net/if.h>
+#include <linux/if.h>
#include <linux/if_packet.h>
#include <linux/if_ether.h>
#include <linux/filter.h>

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net/dcstad/Makefile Normal file
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#
# Copyright (C) 2019 EWSI
#
# This is free software, licensed under the GNU General Public License v2.
# See /LICENSE for more information.
#
include $(TOPDIR)/rules.mk
PKG_NAME:=dcstad
PKG_VERSION:=1.1.0
PKG_RELEASE:=1
PKG_SOURCE:=$(PKG_NAME)-$(PKG_VERSION).tar.gz
PKG_SOURCE_URL:=https://codeload.github.com/ewsi/$(PKG_NAME)/tar.gz/v$(PKG_VERSION)?
PKG_HASH:=3bed8a5051c92cd41ba3477d2db211df8f10fd6e49946f0b74cf643464c1c201
PKG_MAINTAINER:=Carey Sonsino <careys@edgewaterwireless.com>
PKG_LICENSE:=Apache-2.0
PKG_LICENSE_FILES:=COPYING
PKG_FIXUP:=autoreconf
PKG_INSTALL:=1
PKG_BUILD_PARALLEL:=1
include $(INCLUDE_DIR)/package.mk
define Package/dcstad
SECTION:=net
CATEGORY:=Network
SUBMENU:=Routing and Redirection
TITLE:=Dual-Channel WiFi client daemon
URL:=https://www.edgewaterwireless.com
DEPENDS:=+libdcwsocket +libdcwproto
endef
define Package/dcstad/description
Implementation of the Dual-Channel WiFi client daemon
endef
TARGET_CFLAGS += -ffunction-sections -fdata-sections -flto
TARGET_LDFLAGS += -Wl,--gc-sections
define Package/dcstad/install
$(INSTALL_DIR) $(1)/bin
$(INSTALL_BIN) $(PKG_INSTALL_DIR)/usr/bin/dcstad $(1)/bin/
endef
$(eval $(call BuildPackage,dcstad))

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net/dcwapd/Makefile Normal file
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#
# Copyright (C) 2019 EWSI
#
# This is free software, licensed under the GNU General Public License v2.
# See /LICENSE for more information.
#
include $(TOPDIR)/rules.mk
PKG_NAME:=dcwapd
PKG_VERSION:=1.1.0
PKG_RELEASE:=1
PKG_SOURCE:=$(PKG_NAME)-$(PKG_VERSION).tar.gz
PKG_SOURCE_URL:=https://codeload.github.com/ewsi/$(PKG_NAME)/tar.gz/v$(PKG_VERSION)?
PKG_HASH:=58e52bf4e7526b2f26319740549dbcc6f6ab505f587815ee8731e40f7fecb625
PKG_MAINTAINER:=Carey Sonsino <careys@edgewaterwireless.com>
PKG_LICENSE:=Apache-2.0
PKG_LICENSE_FILES:=COPYING
PKG_FIXUP:=autoreconf
PKG_INSTALL:=1
PKG_BUILD_PARALLEL:=1
include $(INCLUDE_DIR)/uclibc++.mk
include $(INCLUDE_DIR)/package.mk
define Package/dcwapd
SECTION:=net
CATEGORY:=Network
SUBMENU:=Routing and Redirection
TITLE:=Dual-Channel WiFi AP daemon
URL:=https://www.edgewaterwireless.com
DEPENDS:=$(CXX_DEPENDS) +kmod-macremapper +libdcwsocket +libdcwproto +mrmctl +libuci
endef
define Package/dcwapd/description
Implementation of the Dual-Channel WiFi AP daemon
endef
CONFIGURE_ARGS += \
--enable-platform=linuxjsonstatic \
--enable-shared
TARGET_CXXFLAGS += -std=c++11 -DRAPIDJSON_HAS_CXX11_RVALUE_REFS=0 -ffunction-sections -fdata-sections -flto
TARGET_LDFLAGS += -ldcwproto -ldcwsocket -lmrmfilterparser -luci -Wl,--gc-sections,--as-needed
define Build/InstallDev
$(INSTALL_DIR) $(1)/usr/lib
$(CP) $(PKG_INSTALL_DIR)/usr/lib/* $(1)/usr/lib/
endef
define Package/dcwapd/install
$(INSTALL_DIR) $(1)/bin
$(INSTALL_BIN) $(PKG_INSTALL_DIR)/usr/bin/$(PKG_NAME) $(1)/bin/
$(INSTALL_DIR) $(1)/usr/lib
# Note: $(INSTALL_BIN) does not keep symlinks, so use $(CP)
$(CP) $(PKG_INSTALL_DIR)/usr/lib/*.so* $(1)/usr/lib/
# Utility files
$(INSTALL_DIR) $(1)/etc/$(PKG_NAME)
$(INSTALL_DATA) ./files/*.inc $(1)/etc/$(PKG_NAME)/
$(INSTALL_BIN) ./files/*.sh $(1)/etc/$(PKG_NAME)/
# UCI config file copy - this is here for convenience and reference only
$(INSTALL_DATA) ./files/dcwapd.uci $(1)/etc/$(PKG_NAME)/
# UCI config file
$(INSTALL_DIR) $(1)/etc/config
$(INSTALL_DATA) ./files/dcwapd.uci $(1)/etc/config/dcwapd
# Init script
$(INSTALL_DIR) $(1)/etc/init.d
$(INSTALL_BIN) ./files/dcwapd.init.d $(1)/etc/init.d/dcwapd
endef
$(eval $(call BuildPackage,dcwapd))

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net/dcwapd/files/dcwapd.inc Normal file
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#!/bin/sh
#
# Dual Channel Wi-Fi Startup Script
#
# This script creates the proper network bridge configuration
# necessary for Dual Channel Wi-Fi, and starts the dcwapd daemon
#
verbose=1
uciconfig=dcwapd
result=
# NOTE: all functions write the result to the $result variable
get_channelsets()
{
# default to empty
result=
channelsets=$(uci show $uciconfig | grep "=channel-set$")
for channelset in $channelsets; do
channelset=$(echo "$channelset" | sed -rn "s/$uciconfig\.(.*)=.*/\1/p")
result="$result $channelset"
done
if [ $verbose -eq 1 ]; then
echo "Channel Sets: $result" 2>&1 | logger
fi
}
# $1 : the channel set name
get_channelset_enabled()
{
# default to disabled
result=0
if [ -n "$1" ]; then
result=$(uci get $uciconfig."$1".enabled)
fi
if [ $verbose -eq 1 ]; then
echo "Channel Set \"$1\" Enabled: $result" 2>&1 | logger
fi
}
# $1 : the channel set name
get_primary_bridge()
{
result=
if [ -n "$1" ]; then
result=$(uci get $uciconfig."$1".bridge)
fi
if [ $verbose -eq 1 ]; then
echo "Channel Set \"$1\" Primary Bridge: $result" 2>&1 | logger
fi
}
# $1 : the channel set name
get_datachannels()
{
# default to empty
result=
if [ -n "$1" ]; then
result=$(uci get $uciconfig."$1".data_channels)
fi
if [ $verbose -eq 1 ]; then
echo "Channel Set \"$1\" Data Channels: $result" 2>&1 | logger
fi
}
# $1 : the wlan interface name
get_wifi_iface_num()
{
result=
if [ -n "$1" ];then
#result=$(echo "$1" | sed -n "s/wlan//p")
result=$(echo "$1" | sed -rn "s/wlan([0-9]*).*/\1/p")
fi
}
# $1 : the bridge name
get_bridge_network_name()
{
result=
if [ -n "$1" ];then
result=$(echo "$1" | sed -n "s/br-//p")
fi
}
# $1 : the wlan interface name
set_iface_init_state()
{
result=
if [ -n "$1" ]; then
iface=$1
# need to extract the "X" from wlanX
get_wifi_iface_num "$iface"
iface_num=$result
if [ -n "$iface_num" ]; then
# get the iface network
init_net=$(uci get wireless.@wifi-iface[$iface_num].network)
if [ -n "$init_net" ]; then
# if the iface network is a bridge, but doesn't start with "br-"
# I think we need to prepend it?
net_type=$(uci get network."$init_net".type)
if [ -n "$net_type" ] && [ "$net_type" = "bridge" ]; then
prefix_ok=$(echo "$init_net" | grep "^br-")
if [ -z "$prefix_ok" ]; then
init_net="br-$init_net"
fi
fi
fi
# make sure that the init_net section exists
init_net_section=$(uci get dcwapd.init_net)
if [ "$init_net_section" != "init_net" ]; then
# the section did not exist
uci set dcwapd.init_net=init_net
fi
# save the initial network
if [ $verbose -eq 1 ]; then
echo "Saving '$iface' initial network '$init_net'" 2>&1 | logger
fi
uci set $uciconfig.init_net."$iface"="$init_net"
uci commit
# save the initial network in the result variable
result=$init_net
fi
fi
}
# $1 : the wlan interface name
get_iface_init_state()
{
result=
if [ -n "$1" ];then
init_net=$(uci get $uciconfig.init_net."$iface")
# if the response starts with "uci: ", it was an error not the real result
err=$(echo "$init_net" | grep "^uci: ")
if [ -z "$err" ]; then
# no error, set the result
result=$init_net
if [ $verbose -eq 1 ]; then
echo "Got '$iface' initial network '$init_net'" 2>&1 | logger
fi
fi
fi
}
# $1 : the name of the data channel name to bring up
datachannel_up()
{
if [ -n "$1" ]; then
bridge=$(uci get $uciconfig."$1".bridge)
interfaces=$(uci get $uciconfig."$1".interfaces)
if [ $verbose -eq 1 ]; then
echo "Creating Data Channel Bridge: $bridge" 2>&1 | logger
fi
get_bridge_network_name "$bridge"
netname=$result
if [ -n "$netname" ]; then
uci set network."$netname"=interface
uci set network."$netname".type=bridge
uci set network."$netname".proto=static
uci set network."$netname".bridge_empty='1'
fi
# create the bridge
uci commit
/etc/init.d/network reload
for iface in $interfaces; do
# if iface is in a bridge, the bridge name should be stored in result
set_iface_init_state "$iface"
init_bridge=$result
# update uci with the new bridge info
get_wifi_iface_num "$iface"
iface_num=$result
if [ -n "$iface_num" ]; then
uci set wireless.@wifi-iface[$iface_num].network="$netname"
fi
# manually put the interface into the data bridge
# if iface is in a bridge, remove it before adding it to the data bridge
if [ -n "$init_bridge" ]; then
brctl delif "$init_bridge" "$iface" 2>&1 | logger
fi
brctl addif "$bridge" "$iface" 2>&1 | logger
done
# commit uci changes and reload the network
uci commit
/etc/init.d/network reload
#/etc/init.d/network restart
# while [ 1 ]; do
# ifconfig "$bridge" > /dev/null 2>&1
# if [ $? == 0 ]; then
# break;
# fi
# sleep 1
# done
fi
}
# $1 : the name of the data channel to bring down
datachannel_down()
{
if [ -n "$1" ]; then
bridge=$(uci get $uciconfig."$1".bridge)
interfaces=$(uci get $uciconfig."$1".interfaces)
for iface in $interfaces; do
if [ $verbose -eq 1 ]; then
echo "Deconfiguring Data Channel Interface: $iface" 2>&1 | logger
fi
# manually remove the interface from the data bridge
brctl delif "$bridge" "$iface" 2>&1 | logger
get_iface_init_state "$iface"
init_bridge=$result
if [ -n "$init_bridge" ]; then
# manually move the interface back to the original bridge
brctl addif "$init_bridge" "$iface" 2>&1 | logger
# update uci with the new bridge and interface configuration
get_wifi_iface_num "$iface"
iface_num=$result
get_bridge_network_name "$init_bridge"
netname=$result
if [ -n "$iface_num" ] && [ -n "$netname" ]; then
uci set wireless.@wifi-iface[$iface_num].network="$netname"
fi
fi
done
if [ $verbose -eq 1 ]; then
echo "Deconfiguring Data Channel Bridge: $bridge" 2>&1 | logger
fi
# delete the bridge from uci
get_bridge_network_name "$bridge"
netname=$result
if [ -n "$netname" ]; then
uci delete network."$netname"
fi
# commit uci changes and reload the network
uci commit
/etc/init.d/network reload
#`/etc/init.d/network restart`
fi
}

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net/dcwapd/files/dcwapd.init.d Executable file
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#!/bin/sh /etc/rc.common
START=99
# Setting the stop value makes the restart script unreliable when invoked by LuCI
#STOP=0
scriptdir=/etc/dcwapd
#validate_section_dcwapd() {
# uci_validate_section dcwapd general "${1}" \
# 'enabled:bool:1'
#}
start() {
# validate_section_dcwapd dcwapd
# only run the start script if the enabled uci option is set properly
enabled=$(uci get dcwapd.general.enabled)
if [ "${enabled}" = "1" ]; then
${scriptdir}/start_dcwapd.sh
else
echo "dcwapd is disabled in UCI"
return 1
fi
}
stop() {
${scriptdir}/stop_dcwapd.sh
# Add a sleep after stopping because an immediate restat will fail otherwise
sleep 1
}

116
net/dcwapd/files/dcwapd.uci Normal file
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######################################################
# Copyright 2018 EWSI
#
# Licensed to the public under the Apache License 2.0.
######################################################
# Dual Channel Wi-Fi AP Daemon configuration
###################
# General Options #
###################
# The "enabled" option controls the run state of the Dual Channel Wi-Fi AP Daemon
# 0 - disabled, 1 - enabled
# The "tmpdir" option MUST be specified
# option tmpdir '<path_of_temp_dir>'
config general 'general'
option enabled 0
option tmpdir '/tmp/dcwapd'
################
# Channel Sets #
################
# Sections of type "channel-set" define a Dual Channel Wi-Fi primary channel,
# along with it's associated data channels
#
# The "data_channels" option is a space-delimited list of "datachannel"-typed instance names
config channel-set 'channelset0'
option enabled 0
# option enabled 1
option ssid 'OpenWrt'
option bridge 'br-lan'
option data_channels 'datachannel0'
#config channel-set 'channelset1'
# option enabled 0
# option ssid 'OpenWrt2'
# option bridge 'br-lan'
# option data_channels 'datachannel1'
#################
# Data Channels #
#################
# Sections of type "datachannel" define a Dual Channel Wi-Fi data channel,
# along with it's associated bridge and wireless interfaces
#
# The "interfaces" option is a space-delimited list of wireless interface names
config datachannel 'datachannel0'
option ssid 'DCW0'
option bridge 'br-dc0'
option interfaces 'wlan2 wlan5'
#config datachannel 'datachannel1'
# option ssid 'DCW1'
# option bridge 'br-dc1'
# option interfaces 'wlan4'
####################
# Init Net Options #
####################
# The "init_net" section MUST be specified
# This section will be used to save and restore the state of the data interfaces
config init_net 'init_net'
###############
# Filter Sets #
###############
# Sections of type "filter-set" define a Dual Channel Wi-Fi group of filters,
# along with it's associated MAC address and filter rules
#
# The "TFP_Default" filter set MUST be defined, although it is not required
# to have any associated filter rules
# The "TFP_Default" filter mac option can have the value of '*', meaning match
# all MAC addresses
#
# The "filters" option is a space-delimited list of "filter"-typed instance names
config filter-set 'TFP_Default'
option mac '*'
option filters 'filter0 filter1'
#config filter-set 'filterset0'
# option mac '00:00:BE:EF:F0:0D'
# option filters 'filter2'
################
# Filter Rules #
################
# Sections of type "filter" define a Dual Channel Wi-Fi filter,
# along with it's associated filter parameters
#
# Any or all of the filter options may be set to '*' to match
# all values
config filter 'filter0'
option packet_size '*'
option source_ip '*'
option source_port '80'
option protocol 'tcp'
option dest_port '*'
config filter 'filter1'
option packet_size '*'
option source_ip '*'
option source_port '443'
option protocol 'tcp'
option dest_port '*'
#config filter 'filter2'
# option packet_size '*'
# option source_ip '*'
# option source_port '22'
# option protocol 'tcp'
# option dest_port '*'

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#!/bin/sh
#
# Dual Channel Wi-Fi Startup Script
#
# This script creates the proper network bridge configuration
# necessary for Dual Channel Wi-Fi, and starts the dcwapd daemon
#
# Note - shellcheck cannot deal with the dynamic sourcing
# shellcheck disable=SC1090
# which also messes with variables defined in the sourced file
# shellcheck disable=SC2154
scriptdir=$(dirname -- "$(readlink -f -- "$0")")
. "$scriptdir"/dcwapd.inc
get_channelsets
# get the list of channel sets
channelsets=$result
for channelset in $channelsets; do
if [ -n "$channelset" ]; then
get_channelset_enabled "$channelset"
enabled=$result
if [ "$enabled" = "1" ]; then
# the channel set is enabled
# get the list of data channels used by the channel set
get_datachannels "$channelset"
datachannels=$result
for datachannel in $datachannels; do
datachannel_up "$datachannel"
done
fi
fi
done
# start dcwapd, sending stdout and stderr to the system log
dcwapd 2>&1 | logger &

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net/dcwapd/files/stop_dcwapd.sh Executable file
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#!/bin/sh
#
# Dual Channel Wi-Fi Startup Script
#
# This script creates the proper network bridge configuration
# necessary for Dual Channel Wi-Fi, and starts the dcwapd daemon
#
# Note - shellcheck cannot deal with the dynamic sourcing
# shellcheck disable=SC1090
# which also messes with variables defined in the sourced file
# shellcheck disable=SC2154
scriptdir=$(dirname -- "$(readlink -f -- "$0")")
. "$scriptdir"/dcwapd.inc
pid=$(pidof dcwapd)
if [ -n "$pid" ]; then
if [ "$verbose" -eq "1" ]; then
echo "Stopping dcwapd..." 2>&1 | logger
fi
kill "$pid"
fi
get_channelsets
# get the list of channel sets
channelsets=$result
for channelset in $channelsets; do
if [ -n "$channelset" ]; then
# we don't care if it is enabled, tear it down
# get_channelset_enabled $channelset
# enabled=$result
# if [ $enabled = "1" ]; then
# # the channel set is enabled
# get the list of data channels used by the channel set
get_datachannels "$channelset"
datachannels=$result
for datachannel in $datachannels; do
datachannel_down "$datachannel"
done
# fi
fi
done

View File

@ -0,0 +1,475 @@
--- a/dev/null
+++ b/dcwlinux/uci_configuration_provider.h
@@ -0,0 +1,104 @@
+#ifndef UCI_CONFIGURATION_PROVIDER_H_INCLUDED
+#define UCI_CONFIGURATION_PROVIDER_H_INCLUDED
+
+#include "./ap_configuration.h"
+
+namespace dcwlinux {
+
+class UciConfigurationProvider : public APConfigurationProvider {
+
+ static const char *SECTION_TYPE_GENERAL;
+ static const char *SECTION_TYPE_CHANNEL_SET;
+ static const char *SECTION_TYPE_DATA_CHANNEL;
+ static const char *SECTION_TYPE_FILTER_SET;
+ static const char *SECTION_TYPE_FILTER;
+ static const char *DEFAULT_FILTER_SET_NAME;
+
+ static const char *OPTION_TMPDIR;
+ static const char *OPTION_ENABLED;
+ static const char *OPTION_SSID;
+ static const char *OPTION_BRIDGE;
+ static const char *OPTION_DATA_CHANNELS;
+ static const char *OPTION_INTERFACES;
+ static const char *OPTION_MAC_ADDRESS;
+ static const char *OPTION_FILTERS;
+ static const char *OPTION_PACKET_SIZE;
+ static const char *OPTION_SOURCE_IP;
+ static const char *OPTION_SOURCE_PORT;
+ static const char *OPTION_PROTOCOL;
+ static const char *OPTION_DEST_PORT;
+
+ static const char *FILTER_FILE_EXTENSION;
+
+ UciConfigurationProvider(const UciConfigurationProvider&); //no copy
+
+ typedef std::map<std::string, std::string> DataChannelBridgeMap;
+ struct PrimaryChannel {
+ std::string bridgeName;
+ DataChannelBridgeMap dataChannels;
+ };
+ typedef std::map<std::string, PrimaryChannel> PrimaryChannelMap;
+ typedef std::map<dcw::MacAddress, std::string> StationFilterMap;
+
+ struct uci_context *_uciContext;
+ struct uci_package *_uciPackage;
+ const char *_uciConfig;
+
+ std::string _filterDirectory;
+ PrimaryChannelMap _primaryChannels;
+ StationFilterMap _stationFilters;
+
+public:
+ UciConfigurationProvider(const char * const uciConfig); // the "config" part of UCI commands
+ virtual ~UciConfigurationProvider();
+
+ virtual void InstanciateCFileTrafficFilterProfiles(CFTFPList& output) const;
+ virtual void GetPrimarySsids(SsidSet& output) const;
+ virtual void GetDataSsids(SsidSet& output, const char * const primarySsid) const;
+ virtual const char *GetSsidIfname(const char * const ssid) const;
+ virtual void GetStationTrafficFilterProfiles(StationTFPMap& output) const;
+};
+
+}; //namespace dcwlinux {
+
+#endif //#ifndef UCI_CONFIGURATION_PROVIDER_H_INCLUDED
+#ifndef UCI_CONFIGURATION_PROVIDER_H_INCLUDED
+#define UCI_CONFIGURATION_PROVIDER_H_INCLUDED
+
+#include "./ap_configuration.h"
+
+namespace dcwlinux {
+
+class UciConfigurationProvider : public APConfigurationProvider {
+ UciConfigurationProvider(const UciConfigurationProvider&); //no copy
+
+ typedef std::map<std::string, std::string> DataChannelBridgeMap;
+ struct PrimaryChannel {
+ std::string bridgeName;
+ DataChannelBridgeMap dataChannels;
+ };
+ typedef std::map<std::string, PrimaryChannel> PrimaryChannelMap;
+ typedef std::map<dcw::MacAddress, std::string> StationFilterMap;
+
+ struct uci_context *_uciContext;
+ struct uci_package *_uciPackage;
+ const char *_uciConfig;
+
+ PrimaryChannelMap _primaryChannels;
+ StationFilterMap _stationFilters;
+ CFTFPList _defaultFilters;
+
+public:
+ UciConfigurationProvider(const char * const uciConfig); // the "config" part of UCI commands
+ virtual ~UciConfigurationProvider();
+
+ virtual void InstanciateCFileTrafficFilterProfiles(CFTFPList& output) const;
+ virtual void GetPrimarySsids(SsidSet& output) const;
+ virtual void GetDataSsids(SsidSet& output, const char * const primarySsid) const;
+ virtual const char *GetSsidIfname(const char * const ssid) const;
+ virtual void GetStationTrafficFilterProfiles(StationTFPMap& output) const;
+};
+
+}; //namespace dcwlinux {
+
+#endif //#ifndef UCI_CONFIGURATION_PROVIDER_H_INCLUDED
--- a/dev/null
+++ b/dcwlinux/uci_configuration_provider.cxx
@@ -0,0 +1,365 @@
+
+#include <uci.h>
+#include <string.h>
+
+#include <stdlib.h>
+#include <stdexcept>
+#include <sys/stat.h>
+#include <cerrno>
+#include <iostream>
+#include <fstream>
+
+#include "./uci_configuration_provider.h"
+
+#include "dcwposix/filterdirscanner.h"
+#include "dcw/macaddress.h"
+#include "dcw/dcwlog.h"
+
+using namespace dcwlinux;
+
+ const char *UciConfigurationProvider::SECTION_TYPE_GENERAL = "general";
+ const char *UciConfigurationProvider::SECTION_TYPE_CHANNEL_SET = "channel-set";
+ const char *UciConfigurationProvider::SECTION_TYPE_DATA_CHANNEL = "datachannel";
+ const char *UciConfigurationProvider::SECTION_TYPE_FILTER_SET = "filter-set";
+ const char *UciConfigurationProvider::SECTION_TYPE_FILTER = "filter";
+ const char *UciConfigurationProvider::DEFAULT_FILTER_SET_NAME = "TFP_Default";
+
+ const char *UciConfigurationProvider::OPTION_TMPDIR = "tmpdir";
+ const char *UciConfigurationProvider::OPTION_ENABLED = "enabled";
+ const char *UciConfigurationProvider::OPTION_SSID = "ssid";
+ const char *UciConfigurationProvider::OPTION_BRIDGE = "bridge";
+ const char *UciConfigurationProvider::OPTION_DATA_CHANNELS = "data_channels";
+ const char *UciConfigurationProvider::OPTION_INTERFACES = "interfaces";
+ const char *UciConfigurationProvider::OPTION_MAC_ADDRESS = "mac";
+ const char *UciConfigurationProvider::OPTION_FILTERS = "filters";
+ const char *UciConfigurationProvider::OPTION_PACKET_SIZE = "packet_size";
+ const char *UciConfigurationProvider::OPTION_SOURCE_IP = "source_ip";
+ const char *UciConfigurationProvider::OPTION_SOURCE_PORT = "source_port";
+ const char *UciConfigurationProvider::OPTION_PROTOCOL = "protocol";
+ const char *UciConfigurationProvider::OPTION_DEST_PORT = "dest_port";
+
+ const char *UciConfigurationProvider::FILTER_FILE_EXTENSION = ".tfp";
+
+ UciConfigurationProvider::UciConfigurationProvider(const char * const uciConfig) : _uciConfig(uciConfig) {
+
+ //printf("*** Start UciConfigurationProvider(%s)\n", _uciConfig);
+ //printf("*** About to uci_alloc_context()\n");
+
+ _uciContext = uci_alloc_context();
+
+ //printf("*** uci_alloc_context() complete\n");
+ //printf("*** About to uci_load()\n");
+
+ if (_uciContext == NULL)
+ {
+ std::string err = "Error creating UCI context ";
+ throw std::runtime_error(err);
+ }
+
+ uci_load(_uciContext, _uciConfig, &_uciPackage);
+
+ //printf("*** uci_load complete()\n");
+
+ if (_uciPackage == NULL)
+ {
+ std::string err = "Error loading UCI package " + std::string(_uciConfig);
+ throw std::runtime_error(err);
+ }
+
+ uci_section *generalSection = uci_lookup_section(_uciContext, _uciPackage, UciConfigurationProvider::SECTION_TYPE_GENERAL);
+ if (generalSection == NULL)
+ {
+ std::string err = "Error: A general section (" + std::string(UciConfigurationProvider::SECTION_TYPE_GENERAL) + ") must be specified!";
+ throw std::runtime_error(err);
+ }
+
+ uci_option *opt_tmpdir = uci_lookup_option(_uciContext, generalSection, UciConfigurationProvider::OPTION_TMPDIR);
+ if (opt_tmpdir == NULL)
+ {
+ std::string err = "Error: A temporary directory (" + std::string(UciConfigurationProvider::OPTION_TMPDIR) + ") must be specified!";
+ throw std::runtime_error(err);
+ }
+ char *tmpdir = opt_tmpdir->v.string;
+ //printf(" *** Set tmpdir: %s\n", tmpdir);
+
+ // make sure that tmpdir exists
+ int status = mkdir(tmpdir, S_IRWXU | S_IRWXG | S_IROTH | S_IXOTH);
+ if ((status != 0) && // failure
+ (errno != EEXIST)) // the failure was not that the directory already existed
+ {
+ std::string err = "Error: Unable to create the temporary directory (tmpdir), error # " + errno;
+ throw std::runtime_error(err);
+ }
+ _filterDirectory = std::string(tmpdir);
+
+ if (uci_lookup_section(_uciContext, _uciPackage, UciConfigurationProvider::DEFAULT_FILTER_SET_NAME) == NULL)
+ {
+ std::string err = "Error: A default traffic filter profile named " + std::string(UciConfigurationProvider::DEFAULT_FILTER_SET_NAME) + " MUST exist!";
+ throw std::runtime_error(err);
+ }
+
+ // iterate over all of the sections in the package
+ uci_element *elem;
+ uci_foreach_element(&_uciPackage->sections, elem)
+ {
+ //printf("--==-- element.type: %d\n", elem->type);
+ //printf("--==-- element.name: %s\n", elem->name);
+
+ if (elem->type == UCI_TYPE_SECTION)
+ {
+ // look up the section and get it's type
+
+ uci_section *section = NULL;
+ //printf("*** Looking up section: %s\n", elem->name);
+
+ section = uci_lookup_section(_uciContext, _uciPackage, elem->name);
+
+ if ((section != NULL) && (section->type != NULL))
+ {
+ //printf(" *** Section type: %s\n", section->type);
+ if (strcmp(elem->name, UciConfigurationProvider::SECTION_TYPE_GENERAL) == 0)
+ {
+ // we already processed the general section for the tmpdir
+ }
+ else if (strcmp(section->type, UciConfigurationProvider::SECTION_TYPE_CHANNEL_SET) == 0)
+ {
+ // the section is a channel set, populate it with the specified values
+
+ uci_option *enabled = uci_lookup_option(_uciContext, section, UciConfigurationProvider::OPTION_ENABLED);
+ if ((enabled == NULL) || (strcmp(enabled->v.string, "1") != 0))
+ {
+ // found a disabled channel set, ignore it
+ continue;
+ }
+
+ uci_option *ssid = uci_lookup_option(_uciContext, section, UciConfigurationProvider::OPTION_SSID);
+ uci_option *bridge = uci_lookup_option(_uciContext, section, UciConfigurationProvider::OPTION_BRIDGE);
+ uci_option *dataChannels = uci_lookup_option(_uciContext, section, UciConfigurationProvider::OPTION_DATA_CHANNELS);
+
+ if ((ssid != NULL) && (bridge != NULL) && (dataChannels != NULL))
+ {
+ PrimaryChannel &pc = _primaryChannels[ssid->v.string];
+ pc.bridgeName = bridge->v.string;
+
+ char dataChannels_list[255];
+ // The dataChannels option is not a list
+ //if (dataChannels->type == UCI_TYPE_LIST)
+ if (dataChannels->v.string != NULL)
+ {
+ strcpy(dataChannels_list, dataChannels->v.string);
+ std::string str_dataChannels = dataChannels->v.string;
+ size_t start_pos = 0;
+ size_t pos = 0;
+ while(start_pos != std::string::npos)
+ {
+ pos = str_dataChannels.find(" ", start_pos);
+ //printf("****** start_pos: %u, pos: %u\n", start_pos, pos);
+ std::string str_dataChannel = str_dataChannels.substr(start_pos,
+ pos == std::string::npos ? pos : pos-start_pos);
+ //printf("*** dataChannel: %s\n", str_dataChannel.c_str());
+
+ // update the start position for next loop
+ start_pos = (pos == std::string::npos ? pos : pos+1);
+
+ uci_section *dcSection = uci_lookup_section(_uciContext, _uciPackage, str_dataChannel.c_str());
+ if (dcSection != NULL)
+ {
+ uci_option *dcSsid = uci_lookup_option(_uciContext, dcSection, UciConfigurationProvider::OPTION_SSID);
+ uci_option *dcBridge = uci_lookup_option(_uciContext, dcSection, UciConfigurationProvider::OPTION_BRIDGE);
+
+ // TODO: configure dcBridge and dcInterfaces
+ //uci_option *dcInterfaces = uci_lookup_option(_uciContext, dcSection, UciConfigurationProvider::OPTION_INTERFACES);
+
+ if ((dcSsid != NULL) && (dcBridge != NULL))
+ {
+ pc.dataChannels[dcSsid->v.string];
+ pc.dataChannels[dcSsid->v.string] = dcBridge->v.string;
+ }
+ }
+ }
+ }
+
+ //printf("Section: %s, SSID: %s, Bridge: %s, Data Channels: %s\n", section->e.name, ssid->v.string, bridge->v.string, dataChannels_list);
+ }
+ }
+ else if (strcmp(section->type, UciConfigurationProvider::SECTION_TYPE_DATA_CHANNEL) == 0)
+ {
+ // data channels are processed by the channel set
+ }
+ else if (strcmp(section->type, UciConfigurationProvider::SECTION_TYPE_FILTER_SET) == 0)
+ {
+ // the section is a filter set, populate it with the specified values
+ //printf("*** filter set: %s\n", elem->name);
+
+ // create a tfp file for the sectionName
+ std::ofstream tfpFile;
+ std::string tfpFilePath =
+ tmpdir + std::string("/") +
+ std::string(elem->name) +
+ std::string(UciConfigurationProvider::FILTER_FILE_EXTENSION);
+ tfpFile.open(tfpFilePath.c_str(), std::ios::out | std::ios::trunc);
+ if (!tfpFile.is_open())
+ {
+ std::string err = "Error: Unable to open the filter file: " + tfpFilePath;
+ throw std::runtime_error(err);
+ }
+
+ const char *filterDelimiter = "\n";
+ char sFilterContents[2048];
+ sFilterContents[0] = '\0';
+
+ uci_option *filters = uci_lookup_option(_uciContext, section, UciConfigurationProvider::OPTION_FILTERS);
+ // The filters option is not a list
+ //if ((filters != NULL) && (filters->type == UCI_TYPE_LIST))
+ if (filters != NULL)
+ {
+ //printf("*** %s.filters is a list.\n", elem->name);
+ //struct uci_element *e;
+ //uci_foreach_element(&filters->v.list, e)
+
+ std::string str_filters = filters->v.string;
+ //printf("*** STR_FILTERS: %s\n", str_filters.c_str());
+ size_t start_pos = 0;
+ size_t pos = 0;
+ while(start_pos != std::string::npos)
+ {
+ pos = str_filters.find(" ", start_pos);
+ //printf("****** start_pos: %u, pos: %u\n", start_pos, pos);
+ std::string str_filter = str_filters.substr(start_pos,
+ pos == std::string::npos ? pos : pos-start_pos);
+ //printf("*** Looking for filter section named: %s ...\n", str_filter.c_str());
+
+ // update the start position for next loop
+ start_pos = (pos == std::string::npos ? pos : pos+1);
+
+ uci_section *fSection = uci_lookup_section(_uciContext, _uciPackage, str_filter.c_str());
+ if (fSection != NULL)
+ {
+ uci_option *fPacketSize = uci_lookup_option(_uciContext, fSection, UciConfigurationProvider::OPTION_PACKET_SIZE);
+ uci_option *fSourceIp = uci_lookup_option(_uciContext, fSection, UciConfigurationProvider::OPTION_SOURCE_IP);
+ uci_option *fSourcePort = uci_lookup_option(_uciContext, fSection, UciConfigurationProvider::OPTION_SOURCE_PORT);
+ uci_option *fProtocol = uci_lookup_option(_uciContext, fSection, UciConfigurationProvider::OPTION_PROTOCOL);
+ uci_option *fDestPort = uci_lookup_option(_uciContext, fSection, UciConfigurationProvider::OPTION_DEST_PORT);
+
+ if ((fPacketSize != NULL) &&
+ (fSourceIp != NULL) &&
+ (fSourcePort != NULL) &&
+ (fProtocol != NULL) &&
+ (fDestPort != NULL))
+ {
+ //printf("*** filter: %s %s:%s:%s:%s:%s\n", e->name,
+ // fPacketSize->v.string, fSourceIp->v.string, fSourcePort->v.string,
+ // fProtocol->v.string, fDestPort->v.string);
+
+ strcpy(sFilterContents, fPacketSize->v.string);
+ strcat(sFilterContents, ":");
+ strcat(sFilterContents, fSourceIp->v.string);
+ strcat(sFilterContents, ":");
+ strcat(sFilterContents, fSourcePort->v.string);
+ strcat(sFilterContents, ":");
+ strcat(sFilterContents, fProtocol->v.string);
+ strcat(sFilterContents, ":");
+ strcat(sFilterContents, fDestPort->v.string);
+ strcat(sFilterContents, filterDelimiter);
+
+ //printf("*** Writing filter contents to file: %s\n", sFilterContents);
+ tfpFile << sFilterContents;
+ }
+ else
+ {
+ std::string err = "Error parsing filter: " + str_filter;
+ throw std::runtime_error(err);
+ }
+ }
+ }
+ }
+ tfpFile.close();
+
+ // if there is a MAC address for the filter set, we need to add it to the station filters list
+ uci_option *mac = uci_lookup_option(_uciContext, section, UciConfigurationProvider::OPTION_MAC_ADDRESS);
+ if (mac != NULL)
+ {
+ // ignore wildcard MAC address
+ if (strcmp(mac->v.string,"*") != 0)
+ {
+ //printf(" *** MAC Address: %s\n", mac->v.string);
+ _stationFilters[::dcw::MacAddress(mac->v.string)] = elem->name;
+ }
+ }
+ }
+ else if (strcmp(section->type, UciConfigurationProvider::SECTION_TYPE_FILTER) == 0)
+ {
+ // filters are processed by the filter set
+ }
+ else
+ {
+ //std::string err = "Error: Unknown UCI section type: " + std::string(section->type);
+ //throw std::runtime_error(err);
+
+ // Don't throw an exception. It is fine for UCI to contain things that we do not know about
+ // that it may use for other purposes, like UI or internal state
+ dcwlogdbgf("Ignoring UCI section type: %s\n", section->type);
+ }
+ }
+ }
+ }
+ }
+
+ UciConfigurationProvider::~UciConfigurationProvider() {
+ uci_free_context(_uciContext);
+ }
+
+ void UciConfigurationProvider::InstanciateCFileTrafficFilterProfiles(CFTFPList& output) const {
+ ::dcwposix::FilterdirScanner::FileFilterProfileList ffpl;
+ ::dcwposix::FilterdirScanner dirScanner(_filterDirectory.c_str());
+ dirScanner.Scan(ffpl);
+
+ for (::dcwposix::FilterdirScanner::FileFilterProfileList::const_iterator i = ffpl.begin(); i != ffpl.end(); i++) {
+ output.push_back(new ::dcw::FileTrafficFilterProfile(*i));
+ }
+ }
+
+
+ void UciConfigurationProvider::GetPrimarySsids(SsidSet& output) const {
+ for (PrimaryChannelMap::const_iterator i = _primaryChannels.begin(); i != _primaryChannels.end(); i++) {
+ output.insert(i->first);
+ }
+ }
+
+ void UciConfigurationProvider::GetDataSsids(SsidSet& output, const char * const primarySsid) const {
+ const PrimaryChannelMap::const_iterator pssid = _primaryChannels.find(primarySsid);
+ if (pssid == _primaryChannels.end()) return;
+
+ for (DataChannelBridgeMap::const_iterator i = pssid->second.dataChannels.begin(); i != pssid->second.dataChannels.end(); i++) {
+ output.insert(i->first);
+ }
+ }
+
+ const char *UciConfigurationProvider::GetSsidIfname(const char * const ssid) const {
+ PrimaryChannelMap::const_iterator pssid = _primaryChannels.find(ssid);
+ if (pssid != _primaryChannels.end()) {
+ if (pssid->second.bridgeName.empty()) {
+ return NULL;
+ }
+ return pssid->second.bridgeName.c_str();
+ }
+
+ for (pssid = _primaryChannels.begin(); pssid != _primaryChannels.end(); pssid++) {
+ const DataChannelBridgeMap& dataChannels = pssid->second.dataChannels;
+ const DataChannelBridgeMap::const_iterator dc = dataChannels.find(ssid);
+ if (dc == dataChannels.end()) continue;
+ if (dc->second.empty()) {
+ return NULL;
+ }
+ return dc->second.c_str();
+ }
+
+ return NULL;
+ }
+
+ void UciConfigurationProvider::GetStationTrafficFilterProfiles(StationTFPMap& output) const {
+ for (StationFilterMap::const_iterator i = _stationFilters.begin(); i != _stationFilters.end(); i++) {
+ output[i->first] = i->second;
+ }
+
+ }

View File

@ -0,0 +1,20 @@
--- a/dcwapd.linuxjsonstatic/main.cxx
+++ b/dcwapd.linuxjsonstatic/main.cxx
@@ -10,6 +10,7 @@
#include "dcwlinux/ap_configuration.h"
#include "dcwlinux/vap_manager.h"
#include "dcwlinux/json_configuration_provider.h"
+#include "dcwlinux/uci_configuration_provider.h"
#include "dcw/dcwlog.h"
@@ -19,7 +20,8 @@ int
main( void ) {
try {
- dcwlinux::JsonConfigurationProvider configProvider("./dcwapdconf.json");
+ //dcwlinux::JsonConfigurationProvider configProvider("./dcwapdconf.json");
+ dcwlinux::UciConfigurationProvider configProvider("dcwapd");
dcwposix::ProcessSignalManager sigman;
dcwposix::SelectEventReactor eventReactor;

View File

@ -0,0 +1,10 @@
--- a/dcwlinux/Makefile.am
+++ b/dcwlinux/Makefile.am
@@ -6,6 +6,7 @@ libdcwlinux_la_SOURCES =
ap_configuration.cxx \
brctlnetwork.cxx \
json_configuration_provider.cxx \
+ uci_configuration_provider.cxx \
macremapper_driver.cxx \
vap_manager.cxx \
virtual_ap.cxx

64
net/mrmctl/Makefile Normal file
View File

@ -0,0 +1,64 @@
#
# Copyright (C) 2019 EWSI
#
# This is free software, licensed under the GNU General Public License v2.
# See /LICENSE for more information.
#
include $(TOPDIR)/rules.mk
PKG_NAME:=mrmctl
PKG_VERSION:=1.1.0
PKG_RELEASE:=1
PKG_SOURCE:=macremapper-$(PKG_VERSION).tar.gz
PKG_SOURCE_URL:=https://codeload.github.com/ewsi/macremapper/tar.gz/v$(PKG_VERSION)?
PKG_HASH:=f9580427803123d13d50f3422623a37212034a5d72a485f9c04904f19509e4bb
PKG_BUILD_DIR:=$(BUILD_DIR)/macremapper-$(PKG_VERSION)
PKG_MAINTAINER:=Carey Sonsino <careys@edgewaterwireless.com>
PKG_LICENSE:=Apache-2.0
PKG_LICENSE_FILES:=userland/COPYING
PKG_INSTALL:=1
PKG_BUILD_PARALLEL:=1
include $(INCLUDE_DIR)/package.mk
define Package/mrmctl
SECTION:=net
CATEGORY:=Network
SUBMENU:=Routing and Redirection
TITLE:=Dual-Channel WiFi macremapper utility
URL:=https://www.edgewaterwireless.com
DEPENDS:= +kmod-macremapper
endef
define Package/mrmctl/description
Command-line utility to manually manipulate the macremapper kernel module
endef
MAKE_PATH:=userland
CONFIGURE_PATH:=userland
CONFIGURE_ARGS += \
--enable-shared
TARGET_CFLAGS += -std=c89 -ffunction-sections -fdata-sections -flto
TARGET_LDFLAGS += -Wl,--gc-sections,--as-needed
define Build/InstallDev
$(INSTALL_DIR) $(1)/usr/include
$(INSTALL_BIN) $(PKG_INSTALL_DIR)/usr/include/*.h $(1)/usr/include/
$(INSTALL_DIR) $(1)/usr/lib
$(CP) $(PKG_INSTALL_DIR)/usr/lib/*.so* $(1)/usr/lib/
endef
define Package/mrmctl/install
$(INSTALL_DIR) $(1)/bin
$(INSTALL_BIN) $(PKG_INSTALL_DIR)/usr/bin/$(PKG_NAME) $(1)/bin/
$(INSTALL_DIR) $(1)/usr/lib
$(CP) $(PKG_INSTALL_DIR)/usr/lib/*.so* $(1)/usr/lib/
endef
$(eval $(call BuildPackage,mrmctl))