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lnxrouter
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lnxrouter
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#!/bin/bash
VERSION=0.7.6
PROGNAME="$(basename "$0")"
export LC_ALL=C
SCRIPT_UMASK=0122
umask $SCRIPT_UMASK
phead() {
echo "linux-router $VERSION (https://github.com/garywill/linux-router)"
}
phead2() {
echo "Released under LGPL, with no warranty. Use on your own risk."
}
usage() {
phead
phead2
cat << EOF
Usage: $PROGNAME <options>
Options:
-h, --help Show this help
--version Print version number
-i <interface> Interface to make NATed sub-network,
and to provide Internet to
(To create WiFi hotspot use '--ap' instead)
-o <interface> Specify an inteface to provide Internet from.
(Note using this with default DNS option may leak
queries to other interfaces)
-n Do not provide Internet
--ban-priv Disallow clients to access my private network
-g <ip> This host's IPv4 address in subnet (mask is /24)
(example: '192.168.5.1' or '5' shortly)
-6 Enable IPv6 (NAT)
--no4 Disable IPv4 Internet (not forwarding IPv4).
Usually used with '-6'
--p6 <prefix> Set IPv6 LAN address prefix (length 64)
(example: 'fd00:0:0:5::' or '5' shortly)
Using this enables '-6'
--dns <ip>|<port>|<ip:port>
DNS server's upstream DNS.
Use ',' to seperate multiple servers
(default: use /etc/resolv.conf)
(Note IPv6 addresses need '[]' around)
--no-dns Do not serve DNS
--no-dnsmasq Disable dnsmasq server (DHCP, DNS, RA)
--catch-dns Transparent DNS proxy, redirect packets(TCP/UDP)
whose destination port is 53 to this host
--log-dns Show DNS query log (dnsmasq)
--dhcp-dns <IP1[,IP2]>|no
Set IPv4 DNS offered by DHCP (default: this host).
--dhcp-dns6 <IP1[,IP2]>|no
Set IPv6 DNS offered by DHCP (RA)
(default: this host)
(Note IPv6 addresses need '[]' around)
Using both above two will enable '--no-dns'
--hostname <name> DNS server associate this name with this host.
Use '-' to read name from /etc/hostname
-d DNS server will take into account /etc/hosts
-e <hosts_file> DNS server will take into account additional
hosts file
--dns-nocache DNS server no cache
--mac <MAC> Set MAC address
--random-mac Use random MAC address
--tp <port> Transparent proxy,
redirect non-LAN TCP and UDP(not tested) traffic to
port. (usually used with '--dns')
WiFi hotspot options:
--ap <wifi interface> <SSID>
Create WiFi access point
-p, --password <password>
WiFi password
--qr Show WiFi QR code in terminal (need qrencode)
--hidden Hide access point (not broadcast SSID)
--no-virt Do not create virtual interface
Using this you can't use same wlan interface
for both Internet and AP
--virt-name <name> Set name of virtual interface
-c <channel> Specify channel (default: use current, or 1 / 36)
--country <code> Set two-letter country code for regularity
(example: US)
--freq-band <GHz> Set frequency band: 2.4 or 5 (default: 2.4)
--driver Choose your WiFi adapter driver (default: nl80211)
-w <WPA version> '2' for WPA2, '1' for WPA, '1+2' for both
(default: 2)
--psk Use 64 hex digits pre-shared-key instead of
passphrase
--mac-filter Enable WiFi hotspot MAC address filtering
--mac-filter-accept Location of WiFi hotspot MAC address filter list
(defaults to /etc/hostapd/hostapd.accept)
--hostapd-debug <level> 1 or 2. Passes -d or -dd to hostapd
--isolate-clients Disable wifi communication between clients
--no-haveged Do not run haveged automatically when needed
--hs20 Enable Hotspot 2.0
WiFi 4 (802.11n) configs:
--wifi4 Enable IEEE 802.11n (HT)
--req-ht Require station HT (High Throughput) mode
--ht-capab <HT caps> HT capabilities (default: [HT40+])
WiFi 5 (802.11ac) configs:
--wifi5 Enable IEEE 802.11ac (VHT)
--req-vht Require station VHT (Very High Thoughtput) mode
--vht-capab <VHT caps> VHT capabilities
--vht-ch-width <index> Index of VHT channel width:
0 for 20MHz or 40MHz (default)
1 for 80MHz
2 for 160MHz
3 for 80+80MHz (Non-contigous 160MHz)
--vht-seg0-ch <channel> Channel index of VHT center frequency for primary
segment. Use with '--vht-ch-width'
--vht-seg1-ch <channel> Channel index of VHT center frequency for secondary
(second 80MHz) segment. Use with '--vht-ch-width 3'
Instance managing:
--daemon Run in background
-l, --list-running Show running instances
--lc, --list-clients <id|interface>
List clients of an instance. Or list neighbors of
an interface, even if it isn't handled by us.
(passive mode)
--stop <id> Stop a running instance
For <id> you can use PID or subnet interface name.
You can get them with '--list-running'
Examples:
$PROGNAME -i eth1
$PROGNAME --ap wlan0 MyAccessPoint -p MyPassPhrase
$PROGNAME -i eth1 --tp <transparent-proxy> --dns <dns-proxy>
EOF
}
check_empty_option(){
if [[ "$1" == "" ]]; then
usage
exit 0
fi
}
define_global_variables(){
# user options
GATEWAY4= # IPv4 address for this host
PREFIX6= # IPv6 LAN address prefix for this host
IID6=1 # IPv6 LAN ID for this host
IPV6=0 # enable ipv6
NO4=0 # no IPv4 Internet
BANLAN=0 # ban clients from accessing private addresses
DHCP_DNS=gateway # which ipv4 DNS the DHCP gives clients
DHCP_DNS6=gateway # which ipv6 DNS the DHCP gives clients
dnsmasq_NO_DNS=0 # disable dns server
NO_DNSMASQ=0 # disable dnsmasq (dns and dhcp)
CATCH_DNS=0 # catch clients 53 port packets
SHOW_DNS_QUERY=0 # log dns
ETC_HOSTS=0
ADDN_HOSTS=
DNS_NOCACHE=
CONN_IFACE= # which interface user choose to use to create network
INTERNET_IFACE= # which interface to get Internet from
THISHOSTNAME= # this host's name the DNS tells clients
TP_PORT= # transparent proxy port
DNS= # upstream DNS
MAC_USE_RANDOM=0
NEW_MACADDR=
DAEMONIZE=0
# script variables
SUBNET_IFACE= # which interface to create network
SHARE_METHOD=nat
OLD_MACADDR=
SUBNET_NET4=
SUBNET_NET6=
##### wifi hotspot
# user options
HIDDEN=0 # hidden wifi hotspot
WIFI_IFACE=
CHANNEL=default
HOTSPOT20=0 # For enabling Hotspot 2.0
WPA_VERSION=2
MAC_FILTER=0
MAC_FILTER_ACCEPT=/etc/hostapd/hostapd.accept
IEEE80211N=0
REQUIREHT=0
IEEE80211AC=0
REQUIREVHT=0
HT_CAPAB='[HT40+]'
VHT_CAPAB=
VHTCHANNELWIDTH=0
VHTSEG0CHINDEX=0
VHTSEG1CHINDEX=0
DRIVER=nl80211
NO_VIRT=0 # not use virtual interface
COUNTRY=
FREQ_BAND=2.4
NO_HAVEGED=0
HOSTAPD_DEBUG_ARGS=
USE_PSK=0
ISOLATE_CLIENTS=0
QR=0 # show wifi qr
# script variables
VWIFI_IFACE= # virtual wifi interface name, if created
VIRT_NAME= # name to use for virtual interface if --virt-name is used
AP_IFACE= # can be VWIFI_IFACE or WIFI_IFACE
USE_IWCONFIG=0 # some device can't use iw
#######
#-- to deal with info of a running instance. then will exit
LIST_RUNNING=0
STOP_ID=
LIST_CLIENTS_ID=
# -- variables for running
CONFDIR=
IP_VERs=
NM_UNM_LIST= # it's called "list" but for now one interface
NM_PID=
FIREWALLD_PID=
TMP_FIREWALLD_ZONE=
}
parse_user_options(){
while [[ -n "$1" ]]; do
case "$1" in
-h|--help)
usage
exit 0
;;
--version)
echo "$VERSION"
exit 0
;;
-i)
shift
CONN_IFACE="$1"
shift
;;
-o)
shift
INTERNET_IFACE="$1"
shift
;;
-n)
shift
SHARE_METHOD=none
;;
--ban-priv)
shift
BANLAN=1
;;
--tp)
shift
TP_PORT="$1"
SHARE_METHOD=redsocks
shift
;;
-g)
shift
GATEWAY4="$1"
shift
;;
-6)
shift
IPV6=1
;;
--no4)
shift
NO4=1
;;
--p6)
shift
PREFIX6="$1"
IPV6=1
shift
;;
--mac)
shift
NEW_MACADDR="$1"
shift
;;
--random-mac)
shift
MAC_USE_RANDOM=1
;;
--dns)
shift
DNS="$1"
shift
;;
--no-dns)
shift
dnsmasq_NO_DNS=1
;;
--no-dnsmasq)
shift
NO_DNSMASQ=1
;;
--dhcp-dns)
shift
DHCP_DNS="$1"
shift
;;
--dhcp-dns6)
shift
DHCP_DNS6="$1"
shift
;;
--catch-dns)
shift
CATCH_DNS=1
;;
--log-dns)
shift
SHOW_DNS_QUERY=1
;;
--hostname)
shift
THISHOSTNAME="$1"
shift
;;
-d)
shift
ETC_HOSTS=1
;;
-e)
shift
ADDN_HOSTS="$1"
shift
;;
--dns-nocache)
shift
DNS_NOCACHE=1
;;
--isolate-clients)
shift
ISOLATE_CLIENTS=1
;;
--ap)
shift
WIFI_IFACE="$1"
shift
SSID="$1"
shift
;;
-p|--password)
shift
PASSPHRASE="$1"
shift
;;
--qr)
shift
QR=1
;;
--hidden)
shift
HIDDEN=1
;;
--mac-filter)
shift
MAC_FILTER=1
;;
--mac-filter-accept)
shift
MAC_FILTER_ACCEPT="$1"
shift
;;
-c)
shift
CHANNEL="$1"
shift
;;
--hs20)
shift
HOTSPOT20=1
;;
-w)
shift
WPA_VERSION="$1"
[[ "$WPA_VERSION" == "2+1" ]] && WPA_VERSION=1+2
shift
;;
--wifi4|--ieee80211n)
shift
IEEE80211N=1
;;
--req-ht|--require-ht)
shift
REQUIREHT=1
;;
--wifi5|--ieee80211ac)
shift
IEEE80211AC=1
;;
--req-vht|--require-vht)
shift
REQUIREVHT=1
;;
--ht-capab)
shift
HT_CAPAB="$1"
shift
;;
--vht-capab)
shift
VHT_CAPAB="$1"
shift
;;
--vht-ch-width|--vht-channel-width)
shift
VHTCHANNELWIDTH="$1"
shift
;;
--vht-seg0-ch|--vht-seg0-channel)
shift
VHTSEG0CHINDEX="$1"
shift
;;
--vht-seg1-ch|--vht-seg1-channel)
shift
VHTSEG1CHINDEX="$1"
shift
;;
--driver)
shift
DRIVER="$1"
shift
;;
--no-virt)
shift
NO_VIRT=1
;;
--virt-name)
shift
VIRT_NAME="$1"
shift
;;
--country)
shift
COUNTRY="$1"
shift
;;
--freq-band)
shift
FREQ_BAND="$1"
shift
;;
--no-haveged)
shift
NO_HAVEGED=1
;;
--hostapd-debug)
shift
if [ "$1" = "1" ]; then
HOSTAPD_DEBUG_ARGS="-d"
elif [ "$1" = "2" ]; then
HOSTAPD_DEBUG_ARGS="-dd"
else
printf "Error: argument for --hostapd-debug expected 1 or 2, got %s\n" "$1"
exit 1
fi
shift
;;
--psk)
shift
USE_PSK=1
;;
--daemon)
shift
DAEMONIZE=1
;;
--stop)
shift
STOP_ID="$1"
shift
;;
-l|--list-running)
shift
LIST_RUNNING=1
;;
--lc|--list-clients)
shift
LIST_CLIENTS_ID="$1"
shift
;;
*)
echo "Invalid parameter: $1" 1>&2
exit 1
;;
esac
done
}
# seperate ip and port
sep_ip_port() {
# usage: sep_ip_port <ip:port> <var for ip> <var for port>
# input <ip:port> can be:
# port (ip is 127.0.0.1)
# ipv4
# [ipv6]
# ipv4:port
# [ipv6]:port
local IP
local PORT
local INPUT
INPUT="$1"
if (echo "$INPUT" | grep '\.' >/dev/null 2>&1) ;then
if (echo "$INPUT" | grep ':' >/dev/null 2>&1) ;then
# ipv4 + port
IP="$(echo "$INPUT" | cut -d: -f1)"
PORT="$(echo "$INPUT" | cut -d: -f2)"
else
# ipv4
IP="$INPUT"
fi
elif (echo "$INPUT" | grep '\]' >/dev/null 2>&1) ;then
if (echo "$INPUT" | grep '\]\:' >/dev/null 2>&1) ;then
# ipv6 + port
IP="$(echo "$INPUT" | cut -d']' -f1 | cut -d'[' -f2)"
PORT="$(echo "$INPUT" | cut -d']' -f2 |cut -d: -f2)"
else
# ipv6
IP="$(echo "$INPUT" | cut -d']' -f1 | cut -d'[' -f2)"
fi
else
# port
IP='127.0.0.1'
PORT="$INPUT"
fi
printf -v "$2" %s "$IP"
printf -v "$3" %s "$PORT"
}
#=========================
is_interface() {
[[ -z "$1" ]] && return 1
[[ -d "/sys/class/net/${1}" ]]
}
is_vface_name_allocated(){
is_interface "$1" || [[ -f "$COMMON_CONFDIR/vfaces/${1}" ]]
}
get_interface_phy_device() { # only for wifi interface
local x
for x in /sys/class/ieee80211/*; do
[[ ! -e "$x" ]] && continue
if [[ "${x##*/}" = "$1" ]]; then
echo "$1"
return 0
elif [[ -e "$x/device/net/$1" ]]; then
echo "${x##*/}"
return 0
elif [[ -e "$x/device/net:$1" ]]; then
echo "${x##*/}"
return 0
fi
done
echo "Failed to get phy interface" >&2
return 1
}
get_adapter_info() { # only for wifi interface
local iPHY
iPHY=$(get_interface_phy_device "$1")
[[ $? -ne 0 ]] && return 1
iw phy "$iPHY" info
}
get_adapter_kernel_module() {
local MODULE
MODULE=$(readlink -f "/sys/class/net/$1/device/driver/module")
echo "${MODULE##*/}"
}
can_be_sta_and_ap() {
# iwconfig does not provide this information, assume false
[[ $USE_IWCONFIG -eq 1 ]] && return 1
if [[ "$(get_adapter_kernel_module "$1")" == "brcmfmac" ]]; then
echo "WARN: brmfmac driver doesn't work properly with virtual interfaces and" >&2
echo " it can cause kernel panic. For this reason we disallow virtual" >&2
echo " interfaces for your adapter." >&2
echo " For more info: https://github.com/oblique/create_ap/issues/203" >&2
return 1
fi
get_adapter_info "$1" | grep -E '{.* managed.* AP.*}' > /dev/null 2>&1 && return 0
get_adapter_info "$1" | grep -E '{.* AP.* managed.*}' > /dev/null 2>&1 && return 0
return 1
}
can_be_ap() {
# iwconfig does not provide this information, assume true
[[ $USE_IWCONFIG -eq 1 ]] && return 0
get_adapter_info "$1" | grep -E '\* AP$' > /dev/null 2>&1 && return 0
return 1
}
can_transmit_to_channel() {
local IFACE CHANNEL_NUM CHANNEL_INFO
IFACE=$1
CHANNEL_NUM=$2
if [[ $USE_IWCONFIG -eq 0 ]]; then
CHANNEL_INFO=$(get_adapter_info "${IFACE}" | grep -E " [0-9]+(\.[0-9]+){0,1} MHz \[${CHANNEL_NUM}\]")
[[ -z "${CHANNEL_INFO}" ]] && return 1
[[ "${CHANNEL_INFO}" == *no\ IR* ]] && return 1
[[ "${CHANNEL_INFO}" == *disabled* ]] && return 1
return 0
else
CHANNEL_NUM=$(printf '%02d' ${CHANNEL_NUM})
CHANNEL_INFO=$(iwlist "${IFACE}" channel | grep -E "Channel[[:blank:]]${CHANNEL_NUM}[[:blank:]]?:")
[[ -z "${CHANNEL_INFO}" ]] && return 1
return 0
fi
}
# taken from iw/util.c
ieee80211_frequency_to_channel() {
local FREQ=$1
if [[ $FREQ -eq 2484 ]]; then
echo 14
elif [[ $FREQ -lt 2484 ]]; then
echo $(( ($FREQ - 2407) / 5 ))
elif [[ $FREQ -ge 4910 && $FREQ -le 4980 ]]; then
echo $(( ($FREQ - 4000) / 5 ))
elif [[ $FREQ -le 45000 ]]; then
echo $(( ($FREQ - 5000) / 5 ))
elif [[ $FREQ -ge 58320 && $FREQ -le 64800 ]]; then
echo $(( ($FREQ - 56160) / 2160 ))
else
echo 0
fi
}
is_interface_wifi_connected() {
if [[ $USE_IWCONFIG -eq 0 ]]; then
iw dev "$1" link 2>&1 | grep -E '^Connected to' > /dev/null 2>&1 && return 0
else
iwconfig "$1" 2>&1 | grep -E 'Access Point: [0-9a-fA-F]{2}:' > /dev/null 2>&1 && return 0
fi
return 1
}
is_unicast_macaddr() {
local x
x=$(echo "$1" | cut -d: -f1)
x=$(printf '%d' "0x${x}")
[[ $(expr $x % 2) -eq 0 ]]
}
get_interface_mac() {
is_interface "$1" || return
cat "/sys/class/net/${1}/address"
}
show_interface_pci_info() { # pci id / model / virtual
is_interface "$1" || return
local device_path
local bus_id=""
local device_type_and_bus_id="unknown"
local driver=""
local device_fullname=""
device_path="$(readlink -f /sys/class/net/$1)"
if [[ "$device_path" == "/sys/devices/pci"* ]]; then
local pci_path
pci_path=$device_path/../..
if [[ -d "$pci_path/driver" ]] ; then
driver=$(readlink -f "$pci_path/driver" | sed 's/\//\n/g' | tail -n 1)
fi
bus_id="$(echo "$device_path" | sed 's/\//\n/g' | tail -n 3 |sed -n 1p)"
device_type_and_bus_id="PCI: $bus_id"
if which lspci >/dev/null 2>&1 ; then
device_fullname="$( lspci -D -nn -s "$bus_id" | awk '{$1="" ; print $0}' )"
fi
elif [[ "$device_path" == *"/virtual/"* ]]; then
device_type_and_bus_id="virtual interface"
fi
echo "$device_type_and_bus_id"
[[ -n "$driver" ]] && echo "System-already-loaded driver: $driver"
[[ -n "$device_fullname" ]] && echo "$device_fullname"
echo ""
# TODO usb
}
alloc_new_vface_name() { # only for wifi
local i=0
local v_iface_name="$VIRT_NAME"
if [[ -z $VIRT_NAME ]]; then
while :; do
v_iface_name="x$i${WIFI_IFACE}"
i=$((i + 1))
is_vface_name_allocated "${v_iface_name}" || break
done
fi
mkdir -p "$COMMON_CONFDIR/vfaces"
touch "$COMMON_CONFDIR/vfaces/${v_iface_name}"
echo "${v_iface_name}"
}
dealloc_vface_name() {
rm -f "$COMMON_CONFDIR/vfaces/$1"
}
#======
get_all_mac_in_system() {
cat /sys/class/net/*/address
}
get_new_macaddr_according_to_existing() {
local REALDEV OLDMAC NEWMAC LAST_BYTE i
REALDEV=$1
OLDMAC=$(get_interface_mac "$REALDEV")
NEWMAC=""
LAST_BYTE=$(printf %d 0x${OLDMAC##*:})
for i in {10..240}; do
NEWMAC="${OLDMAC%:*}:$(printf %02x $(( ($LAST_BYTE + $i) % 256 )))"
(get_all_mac_in_system | grep "$NEWMAC" > /dev/null 2>&1) || break
done
echo "$NEWMAC"
}
generate_random_mac() {
local r1 r2 r3 r4 r5 r6
local RAND_MAC
while :; do
r1=$( printf "%02x" $(($RANDOM%256/4*4)) )
r2=$( printf "%02x" $(($RANDOM%256)) )
r3=$( printf "%02x" $(($RANDOM%256)) )
r4=$( printf "%02x" $(($RANDOM%256)) )
r5=$( printf "%02x" $(($RANDOM%256)) )
r6=$( printf "%02x" $(($RANDOM%256)) )
RAND_MAC="$r1:$r2:$r3:$r4:$r5:$r6"
( ! ip link | grep "link" | grep "$RAND_MAC" > /dev/null 2>&1 ) && \
( ! ip maddress | grep "link" | grep "$RAND_MAC" > /dev/null 2>&1 ) && \
( ! ip neigh | grep "lladdr $RAND_MAC" > /dev/null 2>&1 ) && \
( ! get_all_mac_in_system | grep "$RAND_MAC" ) && \
break
done
echo "$RAND_MAC"
}
is_ip4_lan_range_available() { # checks 192.168.x.x
( ip -4 address | grep "inet 192\.168\.$1\." > /dev/null 2>&1 ) && return 1
( ip -4 route | grep "^192\.168\.$1\." > /dev/null 2>&1 ) && return 1
( ip -4 route get 192.168.$1.0 2>&1 | grep -E "\bvia\b|\bunreachable\b" > /dev/null 2>&1 ) && \
( ip -4 route get 192.168.$1.255 2>&1 | grep -E "\bvia\b|\bunreachable\b" > /dev/null 2>&1 ) && return 0
return 1
}
is_ip6_lan_range_available() { # checks fdxx::
( ip -6 address | grep -i "inet6 fd$1:$2$3:$4$5:$6$7:" > /dev/null 2>&1 ) && return 1
( ip -6 route | grep -i "^fd$1:$2$3:$4$5:$6$7:" > /dev/null 2>&1 ) && return 1
( ip -6 route get fd$1:$2$3:$4$5:$6$7:: 2>&1 | grep -E "\bvia\b|\bunreachable\b" > /dev/null 2>&1 ) && \
( ip -6 route get fd$1:$2$3:$4$5:$6$7:ffff:ffff:ffff:ffff 2>&1 | grep -E "\bvia\b|\bunreachable\b" > /dev/null 2>&1 ) && return 0
return 1
}
generate_random_ip4() {
local random_ip4
while :; do
random_ip4=$(($RANDOM%256))
is_ip4_lan_range_available $random_ip4 && break
done
echo "192.168.$random_ip4.1"
}
generate_random_lan_ip6_prefix() {
local r1 r2 r3 r4 r5 r6 r7
while :; do
r1=$( printf "%x" $(($RANDOM%240+16)) )
r2=$( printf "%x" $(($RANDOM%240+16)) )
r3=$( printf "%x" $(($RANDOM%240+16)) )
r4=$( printf "%x" $(($RANDOM%240+16)) )
r5=$( printf "%x" $(($RANDOM%240+16)) )
r6=$( printf "%x" $(($RANDOM%240+16)) )
r7=$( printf "%x" $(($RANDOM%240+16)) )
is_ip6_lan_range_available "$r1" "$r2" "$r3" "$r4" "$r5" "$r6" "$r7" && break
done
echo "fd$r1:$r2$r3:$r4$r5:$r6$r7::"
}
# start haveged when needed
haveged_watchdog() {
local show_warn=1
while :; do
if [[ $(cat /proc/sys/kernel/random/entropy_avail) -lt 1000 ]]; then
if ! which haveged > /dev/null 2>&1; then
if [[ $show_warn -eq 1 ]]; then
echo "WARN: Low entropy detected. We recommend you to install \`haveged'" 1>&2
show_warn=0
fi
elif ! pidof haveged > /dev/null 2>&1; then # TODO judge zombie ?
echo "Low entropy detected, starting haveged" 1>&2
# boost low-entropy
haveged -w 1024 -p $COMMON_CONFDIR/haveged.pid
fi
fi
sleep 2
done
}
pid_watchdog() {
local PID="$1"
local SLEEP="$2"
local ERR_MSG="$3"
local ST
while true
do
if [[ -e "/proc/$PID" ]]; then
ST="$(cat "/proc/$PID/status" | grep "^State:" | awk '{print $2}')"
if [[ "$ST" != 'Z' ]]; then
sleep "$SLEEP"
continue
fi
fi
die "$ERR_MSG"
done
}
#========
get_pid_by_dbus_name() {
local DBUS_NAME="$1"
local pid r
which dbus-send >/dev/null 2>&1 || return 1
pid="$( dbus-send --system --print-reply --dest=org.freedesktop.DBus /org/freedesktop/DBus org.freedesktop.DBus.GetConnectionUnixProcessID string:$DBUS_NAME 2>/dev/null | grep " uint32 " | awk '{print $2}' )"
r=$?
echo "$pid"
return $r
}
is_same_netns() {
local pid2="$1"
[[ ! -f /proc/$$/ns/net ]] && return 0 # no netns feature. treat as same
[[ "$(readlink /proc/$$/ns/net)" == "$(readlink /proc/$pid2/ns/net)" ]] && return 0
return 1
}
#-----------------
# only support NetworkManager >= 0.9.9
is_nm_running() {
NM_PID="$(get_pid_by_dbus_name "org.freedesktop.NetworkManager")"
[[ ! -n "$NM_PID" ]] && return 1 # not running
if (which nmcli >/dev/null 2>&1 ) && (nmcli -t -f RUNNING g 2>&1 | grep -E '^running$' >/dev/null 2>&1 ) ; then
if is_same_netns "$NM_PID"; then
return 0
fi
fi
NM_PID= # cancel value if treat as not running
return 1 # not running
}
nm_knows() {
(nmcli dev show "$1" | grep -E "^GENERAL.STATE:" >/dev/null 2>&1 ) && return 0 # nm sees
return 1 # nm doesn't see this interface
}
nm_get_manage() { # get an interface's managed state
local s
s=$(nmcli dev show "$1" | grep -E "^GENERAL.STATE:") || return 2 # no such interface
(echo "$s" | grep "unmanaged" >/dev/null 2>&1) && return 1 # unmanaged
return 0 # managed
}
nm_set_unmanaged() {
while ! nm_knows "$1" ; do # wait for virtual wifi interface seen by NM
sleep 0.5
done
if nm_get_manage "$1" ;then
echo "Set $1 unmanaged by NetworkManager"
nmcli dev set "$1" managed no || die "Failed to set $1 unmanaged by NetworkManager"
NM_UNM_LIST=$1
sleep 1
fi
}
nm_set_managed() {
nmcli dev set "$1" managed yes
NM_UNM_LIST=
}
nm_restore_manage() {
if [[ $NM_UNM_LIST ]]; then
echo "Restore $NM_UNM_LIST managed by NetworkManager"
nm_set_managed "$NM_UNM_LIST"
sleep 0.5
fi
}
#-------
is_firewalld_running() {
FIREWALLD_PID="$(get_pid_by_dbus_name "org.fedoraproject.FirewallD1")"
[[ ! -n "$FIREWALLD_PID" ]] && return 1 # not running
if (which firewall-cmd >/dev/null 2>&1 ) && [[ "$(firewall-cmd --state 2>&1)" == "running" ]] ; then
if is_same_netns "$FIREWALLD_PID"; then
echo "firewalld is running ($(firewall-cmd --version))"
return 0
fi
fi
FIREWALLD_PID= # cancel value if treat as not running
return 1 # not running
}
firewalld_add_tmpzone() {
# TMP_FIREWALLD_ZONE="lrt${$}${SUBNET_IFACE}"
TMP_FIREWALLD_ZONE="trusted"
# firewall-cmd --new-zone=$TMP_FIREWALLD_ZONE || die "Failed creating temporary firewalld zone"
echo "Adding $SUBNET_IFACE to firewalld '$TMP_FIREWALLD_ZONE' zone"
firewall-cmd --zone=$TMP_FIREWALLD_ZONE --add-interface=$SUBNET_IFACE >/dev/null || die "Failed adding interface to firewalld temporary zone"
}
firewalld_del_tmpzone() {
if [[ -n "$TMP_FIREWALLD_ZONE" ]];then
echo "Removing $SUBNET_IFACE from firewalld '$TMP_FIREWALLD_ZONE' zone"
firewall-cmd --zone=$TMP_FIREWALLD_ZONE --remove-interface=$SUBNET_IFACE >/dev/null
# firewall-cmd --delete-zone=$TMP_FIREWALLD_ZONE
fi
}
#=========
CUSTOM_CHAINS_4_filter=
CUSTOM_CHAINS_4_nat=
CUSTOM_CHAINS_6_filter=
CUSTOM_CHAINS_6_nat=
iptb()
{
local FoS=$1 # 4 | 6
shift
local Vis=$1 # 'v' | 'n'
shift
local T=$1 # table
shift
local ACT=$1 # action: I | A | N . On undo: I or A -> D , N -> F+X
shift
local CH=$1 # chain
shift
[[ "$IPV6" -ne 1 && "$FoS" == "6" ]] && return
local CMD_HEAD=""
local MOUTH=""
local NECK=""
local HAND_UN_NC=0
local TAIL=""
local FULL=""
local ADD_TO_UNDO=1
local arr_name w
for arr_name in CUSTOM_CHAINS_4_filter CUSTOM_CHAINS_4_nat CUSTOM_CHAINS_6_filter CUSTOM_CHAINS_6_nat
do
local arr_content
eval arr_content=\"\${$arr_name}\"
#echo $arr_content
for w in $arr_content
do
if [[ "$arr_name" =~ "$FoS" && "$arr_name" =~ "$T" && "$w" == "$CH" ]]; then
ADD_TO_UNDO=0
fi
done