zapret/blockcheck.sh

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#!/bin/sh
EXEDIR="$(dirname "$0")"
EXEDIR="$(cd "$EXEDIR"; pwd)"
ZAPRET_BASE="$EXEDIR"
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[ -f "$ZAPRET_BASE/config" ] && . "$ZAPRET_BASE/config"
. "$ZAPRET_BASE/common/base.sh"
. "$ZAPRET_BASE/common/dialog.sh"
. "$ZAPRET_BASE/common/elevate.sh"
. "$ZAPRET_BASE/common/fwtype.sh"
. "$ZAPRET_BASE/common/virt.sh"
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[ -n "$QNUM" ] || QNUM=59780
[ -n "$TPPORT" ] || TPPORT=993
[ -n "$TPWS_UID" ] || TPWS_UID=1
[ -n "$TPWS_GID" ] || TPWS_GID=3003
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[ -n "$NFQWS" ] || NFQWS="$ZAPRET_BASE/nfq/nfqws"
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[ -n "$DVTWS" ] || DVTWS="$ZAPRET_BASE/nfq/dvtws"
[ -n "$TPWS" ] || TPWS="$ZAPRET_BASE/tpws/tpws"
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[ -n "$MDIG" ] || MDIG="$ZAPRET_BASE/mdig/mdig"
[ -n "$DESYNC_MARK" ] || DESYNC_MARK=0x40000000
[ -n "$IPFW_RULE_NUM" ] || IPFW_RULE_NUM=1
[ -n "$IPFW_DIVERT_PORT" ] || IPFW_DIVERT_PORT=59780
[ -n "$DOMAINS" ] || DOMAINS=rutracker.org
[ -n "$CURL_MAX_TIME" ] || CURL_MAX_TIME=5
[ -n "$MIN_TTL" ] || MIN_TTL=1
[ -n "$MAX_TTL" ] || MAX_TTL=12
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[ -n "$USER_AGENT" ] || USER_AGENT="Mozilla"
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HDRTEMP=/tmp/zapret-hdr.txt
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NFT_TABLE=blockcheck
[ -n "$DNSCHECK_DNS" ] || DNSCHECK_DNS="8.8.8.8 1.1.1.1 77.88.8.1"
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[ -n "$DNSCHECK_DOM" ] || DNSCHECK_DOM="pornhub.com putinhuylo.com rutracker.org www.torproject.org startmail.com"
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DNSCHECK_DIG1=/tmp/dig1.txt
DNSCHECK_DIG2=/tmp/dig2.txt
DNSCHECK_DIGS=/tmp/digs.txt
killwait()
{
# $1 - signal (-9, -2, ...)
# $2 - pid
kill $1 $2
# suppress job kill message
wait $2 2>/dev/null
}
exitp()
{
local A
echo
echo press enter to continue
read A
exit $1
}
IPT()
{
$IPTABLES -C "$@" >/dev/null 2>/dev/null || $IPTABLES -I "$@"
}
IPT_DEL()
{
$IPTABLES -C "$@" >/dev/null 2>/dev/null && $IPTABLES -D "$@"
}
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IPFW_ADD()
{
ipfw -qf add $IPFW_RULE_NUM "$@"
}
IPFW_DEL()
{
ipfw -qf delete $IPFW_RULE_NUM 2>/dev/null
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}
ipt6_has_raw()
{
ip6tables -nL -t raw >/dev/null 2>/dev/null
}
ipt6_has_frag()
{
ip6tables -A OUTPUT -m frag 2>/dev/null || return 1
ip6tables -D OUTPUT -m frag 2>/dev/null
}
ipt_has_nfq()
{
# cannot just check /proc/net/ip_tables_targets because of iptables-nft or modules not loaded yet
iptables -A OUTPUT -t mangle -p 255 -j NFQUEUE --queue-num $QNUM --queue-bypass 2>/dev/null || return 1
iptables -D OUTPUT -t mangle -p 255 -j NFQUEUE --queue-num $QNUM --queue-bypass 2>/dev/null
return 0
}
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nft_has_nfq()
{
local res=1
nft delete table ${NFT_TABLE}_test 2>/dev/null
nft add table ${NFT_TABLE}_test 2>/dev/null && {
nft add chain ${NFT_TABLE}_test test
nft add rule ${NFT_TABLE}_test test queue num $QNUM bypass 2>/dev/null && res=0
nft delete table ${NFT_TABLE}_test
}
return $res
}
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check_system()
{
echo \* checking system
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UNAME=$(uname)
SUBSYS=
local s
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# can be passed FWTYPE=iptables to override default nftables preference
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case "$UNAME" in
Linux)
PKTWS="$NFQWS"
PKTWSD=nfqws
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linux_fwtype
[ "$FWTYPE" = iptables -o "$FWTYPE" = nftables ] || {
echo firewall type $FWTYPE not supported in $UNAME
exitp 5
}
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;;
FreeBSD)
PKTWS="$DVTWS"
PKTWSD=dvtws
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FWTYPE=ipfw
[ -f /etc/platform ] && read SUBSYS </etc/platform
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;;
*)
echo $UNAME not supported
exitp 5
esac
echo $UNAME${SUBSYS:+/$SUBSYS} detected
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echo firewall type is $FWTYPE
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}
freebsd_module_loaded()
{
# $1 - module name
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kldstat -qm "${1}"
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}
freebsd_modules_loaded()
{
# $1,$2,$3, ... - module names
while [ -n "$1" ]; do
freebsd_module_loaded $1 || return 1
shift
done
return 0
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}
check_prerequisites()
{
echo \* checking prerequisites
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[ -x "$PKTWS" ] && [ -x "$TPWS" ] && [ -x "$MDIG" ] || {
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echo $PKTWS or $TPWS or $MDIG is not available. run \"$ZAPRET_BASE/install_bin.sh\" or make -C \"$ZAPRET_BASE\"
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exitp 6
}
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local prog progs='curl'
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case "$UNAME" in
Linux)
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case "$FWTYPE" in
iptables)
progs="$progs iptables ip6tables"
ipt_has_nfq || {
echo NFQUEUE iptables or ip6tables target is missing. pls install modules.
exitp 6
}
;;
nftables)
nft_has_nfq || {
echo nftables queue support is not available. pls install modules.
exitp 6
}
;;
esac
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;;
FreeBSD)
progs="$progs ipfw"
freebsd_modules_loaded ipfw ipdivert || {
echo ipfw or ipdivert kernel module not loaded
exitp 6
}
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[ "$(sysctl -qn net.inet.ip.fw.enable)" = 0 -o "$(sysctl -qn net.inet6.ip6.fw.enable)" = 0 ] && {
echo ipfw is disabled. use : ipfw enable firewall
exitp 6
}
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;;
esac
for prog in $progs; do
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exists $prog || {
echo $prog does not exist. please install
exitp 6
}
done
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if exists nslookup; then
LOOKUP=nslookup
elif exists host; then
LOOKUP=host
else
echo nslookup or host does not exist. please install
exitp 6
fi
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}
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curl_translate_code()
{
# $1 - code
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printf $1
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case $1 in
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0) printf ": ok"
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;;
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1) printf ": unsupported protocol"
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;;
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2) printf ": early initialization code failed"
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;;
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3) printf ": the URL was not properly formatted"
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;;
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4) printf ": feature not supported by libcurl"
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;;
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5) printf ": could not resolve proxy"
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;;
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6) printf ": could not resolve host"
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;;
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7) printf ": could not connect"
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;;
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8) printf ": invalid server reply"
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;;
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9) printf ": remote access denied"
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;;
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27) printf ": out of memory"
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;;
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28) printf ": operation timed out"
;;
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35) printf ": SSL connect error"
;;
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esac
}
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curl_supports_tls13()
{
curl --tlsv1.3 -Is -o /dev/null http://$LOCALHOST_IPT:65535 2>/dev/null
# return code 2 = init failed. likely bad command line options
[ $? = 2 ] && return 1
# curl can have tlsv1.3 key present but ssl library without TLS 1.3 support
# this is online test because there's no other way to trigger library incompatibility case
curl --tlsv1.3 --max-time $CURL_MAX_TIME -Is -o /dev/null https://w3.org 2>/dev/null
[ $? != 4 ]
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}
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curl_supports_tlsmax()
{
# supported only in OpenSSL and LibreSSL
curl --version | grep -Fq -e OpenSSL -e LibreSSL -e GnuTLS || return 1
# supported since curl 7.54
curl --tls-max 1.2 -Is -o /dev/null http://$LOCALHOST_IPT:65535 2>/dev/null
# return code 2 = init failed. likely bad command line options
[ $? != 2 ]
}
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hdrfile_http_code()
{
# $1 - hdr file
sed -nre '1,1 s/^HTTP\/1\.[0,1] ([0-9]+) .*$/\1/p' "$1"
}
hdrfile_location()
{
# $1 - hdr file
# some DPIs return CRLF line ending
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tr -d '\015' <"$1" | sed -nre 's/^[Ll][Oo][Cc][Aa][Tt][Ii][Oo][Nn]:[ ]*([^ ]*)[ ]*$/\1/p'
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}
curl_test_http()
{
# $1 - ip version : 4/6
# $2 - domain name
local code loc
curl -${1}SsD "$HDRTEMP" --max-time $CURL_MAX_TIME $CURL_OPT "http://$2" -o /dev/null 2>&1 || {
code=$?
rm -f "$HDRTEMP"
return $code
}
code=$(hdrfile_http_code "$HDRTEMP")
[ "$code" = 301 -o "$code" = 302 -o "$code" = 307 -o "$code" = 308 ] && {
loc=$(hdrfile_location "$HDRTEMP")
echo "$loc" | grep -qE "^https?://.*$2(/|$)" ||
echo "$loc" | grep -vqE '^https?://' || {
echo suspicious redirection $code to : $loc
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rm -f "$HDRTEMP"
return 254
}
}
rm -f "$HDRTEMP"
return 0
}
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curl_test_https_tls12()
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{
# $1 - ip version : 4/6
# $2 - domain name
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# do not use tls 1.3 to make sure server certificate is not encrypted
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curl -${1}ISs -A "$USER_AGENT" --max-time $CURL_MAX_TIME $CURL_OPT --tlsv1.2 $TLSMAX12 "https://$2" -o /dev/null 2>&1
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}
curl_test_https_tls13()
{
# $1 - ip version : 4/6
# $2 - domain name
# force TLS1.3 mode
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curl -${1}ISs -A "$USER_AGENT" --max-time $CURL_MAX_TIME $CURL_OPT --tlsv1.3 $TLSMAX13 "https://$2" -o /dev/null 2>&1
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}
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pktws_ipt_prepare()
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{
# $1 - port
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case "$FWTYPE" in
iptables)
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# to avoid possible INVALID state drop
IPT INPUT -p tcp --sport $1 ! --syn -j ACCEPT
IPT OUTPUT -p tcp --dport $1 -m conntrack --ctstate INVALID -j ACCEPT
if [ "$IPV" = 6 -a -n "$IP6_DEFRAG_DISABLE" ]; then
# the only way to reliable disable ipv6 defrag. works only in 4.16+ kernels
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IPT OUTPUT -t raw -p tcp -m frag -j CT --notrack
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elif [ "$IPV" = 4 ]; then
# enable fragments
IPT OUTPUT -f -j ACCEPT
fi
IPT POSTROUTING -t mangle -p tcp --dport $1 -m mark ! --mark $DESYNC_MARK/$DESYNC_MARK -j NFQUEUE --queue-num $QNUM
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;;
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nftables)
nft add table inet $NFT_TABLE
[ "$IPV" = 6 -a -n "$IP6_DEFRAG_DISABLE" ] && {
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nft "add chain inet $NFT_TABLE predefrag { type filter hook output priority -402; }"
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nft "add rule inet $NFT_TABLE predefrag meta nfproto ipv${IPV} exthdr frag exists notrack"
}
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nft "add chain inet $NFT_TABLE premangle { type filter hook output priority -152; }"
nft "add rule inet $NFT_TABLE premangle meta nfproto ipv${IPV} tcp dport $1 mark and 0x40000000 != 0x40000000 queue num $QNUM"
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;;
ipfw)
IPFW_ADD divert $IPFW_DIVERT_PORT tcp from me to any $1 proto ip${IPV} out not diverted not sockarg
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;;
esac
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}
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pktws_ipt_unprepare()
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{
# $1 - port
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case "$FWTYPE" in
iptables)
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IPT_DEL POSTROUTING -t mangle -p tcp --dport $1 -m mark ! --mark $DESYNC_MARK/$DESYNC_MARK -j NFQUEUE --queue-num $QNUM
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IPT_DEL INPUT -p tcp --sport $1 ! --syn -j ACCEPT
IPT_DEL OUTPUT -p tcp --dport $1 -m conntrack --ctstate INVALID -j ACCEPT
if [ "$IPV" = 6 -a -n "$IP6_DEFRAG_DISABLE" ]; then
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IPT_DEL OUTPUT -t raw -p tcp -m frag -j CT --notrack
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elif [ "$IPV" = 4 ]; then
IPT_DEL OUTPUT -f -j ACCEPT
fi
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;;
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nftables)
nft delete table inet $NFT_TABLE 2>/dev/null
;;
ipfw)
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IPFW_DEL
;;
esac
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}
tpws_ipt_prepare()
{
# $1 - port
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case "$FWTYPE" in
iptables)
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IPT OUTPUT -t nat -p tcp --dport $1 -m owner ! --uid-owner $TPWS_UID -j DNAT --to $LOCALHOST_IPT:$TPPORT
;;
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nftables)
nft add table inet $NFT_TABLE
# -101 = pre dstnat
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nft "add chain inet $NFT_TABLE output { type nat hook output priority -102; }"
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nft "add rule inet $NFT_TABLE output tcp dport $1 skuid != $TPWS_UID dnat ip${IPVV} to $LOCALHOST_IPT:$TPPORT"
;;
ipfw)
IPFW_ADD fwd $LOCALHOST,$TPPORT tcp from me to any $1 proto ip${IPV} not uid $TPWS_UID
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;;
esac
}
tpws_ipt_unprepare()
{
# $1 - port
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case "$FWTYPE" in
iptables)
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IPT_DEL OUTPUT -t nat -p tcp --dport $1 -m owner ! --uid-owner $TPWS_UID -j DNAT --to $LOCALHOST_IPT:$TPPORT
;;
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nftables)
nft delete table inet $NFT_TABLE 2>/dev/null
;;
ipfw)
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IPFW_DEL
;;
esac
}
pktws_start()
{
case "$UNAME" in
Linux)
"$NFQWS" --dpi-desync-fwmark=$DESYNC_MARK --qnum=$QNUM "$@" >/dev/null &
;;
FreeBSD)
"$DVTWS" --port=$IPFW_DIVERT_PORT "$@" >/dev/null &
;;
esac
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PID=$!
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}
tpws_start()
{
"$TPWS" --uid $TPWS_UID:$TPWS_GID --bind-addr=$LOCALHOST --port=$TPPORT "$@" >/dev/null &
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PID=$!
# give some time to initialize
sleep 1
}
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ws_kill()
{
[ -z "$PID" ] || {
killwait -9 $PID 2>/dev/null
PID=
}
}
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curl_test()
{
# $1 - test function
# $2 - domain
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local code=0 n=0
while [ $n -lt $REPEATS ]; do
n=$(($n+1))
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[ $REPEATS -gt 1 ] && printf "[attempt $n] "
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$1 "$IPV" $2 && {
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[ $REPEATS -gt 1 ] && echo 'AVAILABLE'
continue
}
code=$?
done
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if [ $code = 254 ]; then
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echo "UNAVAILABLE"
elif [ $code = 0 ]; then
echo '!!!!! AVAILABLE !!!!!'
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else
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echo "UNAVAILABLE code=$code"
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fi
return $code
}
ws_curl_test()
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{
# $1 - ws start function
# $2 - test function
# $3 - domain
# $4,$5,$6, ... - ws params
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local code ws_start=$1 testf=$2 dom=$3
shift
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shift
shift
$ws_start "$@"
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curl_test $testf $dom
code=$?
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ws_kill
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return $code
}
tpws_curl_test()
{
# $1 - test function
# $2 - domain
# $3,$4,$5, ... - tpws params
echo - checking tpws $3 $4 $5 $6 $7 $8 $9
ws_curl_test tpws_start "$@"
}
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pktws_curl_test()
{
# $1 - test function
# $2 - domain
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# $3,$4,$5, ... - nfqws/dvtws params
echo - checking $PKTWSD $3 $4 $5 $6 $7 $8 $9
ws_curl_test pktws_start "$@"
}
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xxxws_curl_test_update()
{
# $1 - xxx_curl_test function
# $2 - test function
# $3 - domain
# $4,$5,$6, ... - nfqws/dvtws params
local code xxxf=$1 testf=$2 dom=$3
shift
shift
shift
$xxxf $testf $dom "$@"
code=$?
[ $code = 0 ] && strategy="${strategy:-$@}"
return $code
}
pktws_curl_test_update()
{
xxxws_curl_test_update pktws_curl_test "$@"
}
tpws_curl_test_update()
{
xxxws_curl_test_update tpws_curl_test "$@"
}
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report_append()
{
NREPORT=${NREPORT:-0}
eval REPORT_${NREPORT}=\"$@\"
NREPORT=$(($NREPORT+1))
}
report_print()
{
local n=0 s
NREPORT=${NREPORT:-0}
while [ $n -lt $NREPORT ]; do
eval s=\"\${REPORT_$n}\"
echo $s
n=$(($n+1))
done
}
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report_strategy()
{
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# $1 - test function
# $2 - domain
# $3 - daemon
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echo
if [ -n "$strategy" ]; then
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echo "!!!!! $1: working strategy found for ipv${IPV} $2 : $3 $strategy !!!!!"
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echo
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report_append "ipv${IPV} $2 $1 : $3 $strategy"
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return 0
else
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echo "$1: $3 strategy for ipv${IPV} $2 not found"
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echo
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report_append "ipv${IPV} $2 $1 : $3 not working"
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return 1
fi
}
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pktws_check_domain_bypass()
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{
# $1 - test function
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# $2 - encrypted test : 1/0
# $3 - domain
local strategy tests='fake' ret ok ttls s f e desync pos fooling frag sec="$2"
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[ "$sec" = 0 ] && {
for s in '--hostcase' '--hostspell=hoSt' '--hostnospace' '--domcase'; do
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pktws_curl_test_update $1 $3 $s
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done
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}
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s="--dpi-desync=split2"
ok=0
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pktws_curl_test_update $1 $3 $s
ret=$?
[ "$ret" = 0 ] && ok=1
[ "$ret" != 0 -o "$FORCE" = 1 ] && {
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[ "$sec" = 0 ] && pktws_curl_test_update $1 $3 $s --hostcase
for pos in 1 3 4 5 10 50 100; do
s="--dpi-desync=split2 --dpi-desync-split-pos=$pos"
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if pktws_curl_test_update $1 $3 $s; then
ok=1
break
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elif [ "$sec" = 0 ]; then
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pktws_curl_test_update $1 $3 $s --hostcase
fi
done
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}
[ "$ok" = 1 ] || tests="$tests split fake,split2 fake,split"
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pktws_curl_test_update $1 $3 --dpi-desync=disorder2
[ "$?" != 0 -o "$FORCE" = 1 ] && tests="$tests disorder fake,disorder2 fake,disorder"
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ttls=$(seq -s ' ' $MIN_TTL $MAX_TTL)
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for e in '' '--wssize 1:6'; do
[ -n "$e" ] && {
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pktws_curl_test_update $1 $3 $e
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for desync in split2 disorder2; do
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pktws_curl_test_update $1 $3 --dpi-desync=$desync $e
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done
}
for desync in $tests; do
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s="--dpi-desync=$desync"
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for ttl in $ttls; do
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pktws_curl_test_update $1 $3 $s --dpi-desync-ttl=$ttl $e && break
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done
f="badsum badseq md5sig"
[ "$IPV" = 6 ] && f="$f hopbyhop hopbyhop2"
for fooling in $f; do
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pktws_curl_test_update $1 $3 $s --dpi-desync-fooling=$fooling $e && [ "$fooling" = "md5sig" ] &&
echo 'WARNING ! although md5sig fooling worked it will not work on all sites. it typically works only on linux servers.'
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done
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done
[ "$IPV" = 6 ] && {
f="hopbyhop hopbyhop,split2 hopbyhop,disorder2 destopt destopt,split2 destopt,disorder2"
[ -n "$IP6_DEFRAG_DISABLE" ] && f="$f ipfrag1 ipfrag1,split2 ipfrag1,disorder2"
for desync in $f; do
pktws_curl_test_update $1 $3 --dpi-desync=$desync $e
done
}
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# do not do wssize test for http. it's useless
[ "$sec" = 1 ] || break
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done
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[ "$IPV" = 4 -o -n "$IP6_DEFRAG_DISABLE" ] && {
for frag in 24 32 40 64 80 104; do
tests="ipfrag2"
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[ "$IPV" = 6 ] && tests="$tests hopbyhop,ipfrag2 destopt,ipfrag2"
for desync in $tests; do
pktws_curl_test_update $1 $3 --dpi-desync=$desync --dpi-desync-ipfrag-pos-tcp=$frag
done
done
}
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report_strategy $1 $3 $PKTWSD
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}
tpws_check_domain_bypass()
{
# $1 - test function
# $2 - encrypted test : 1/0
# $3 - domain
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local s pos strategy sec="$2"
if [ "$sec" = 0 ]; then
for s in '--hostcase' '--hostspell=hoSt' '--split-http-req=method' '--split-http-req=method --hostcase' '--split-http-req=host' '--split-http-req=host --hostcase' \
'--hostdot' '--hosttab' '--hostnospace' '--methodspace' '--methodeol' '--unixeol' \
'--hostpad=1024' '--hostpad=2048' '--hostpad=4096' '--hostpad=8192' '--hostpad=16384'; do
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tpws_curl_test_update $1 $3 $s
done
else
for pos in 1 2 3 4 5 10 50 100; do
s="--split-pos=$pos"
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tpws_curl_test_update $1 $3 $s && break
done
fi
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report_strategy $1 $3 tpws
}
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check_domain()
{
# $1 - test function
# $2 - port
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# $3 - encrypted test : 1/0
# $4 - domain
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local code c
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echo
echo \* $1 ipv$IPV $4
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# in case was interrupted before
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pktws_ipt_unprepare $2
tpws_ipt_unprepare $2
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ws_kill
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echo "- checking without DPI bypass"
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curl_test $1 $4 && {
report_append "ipv${IPV} $4 $1 : working without bypass"
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[ "$FORCE" = 1 ] || return
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}
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code=$?
for c in 1 2 3 4 6 27 ; do
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[ $code = $c ] && {
report_append "ipv${IPV} $4 $1 : test aborted, no reason to continue. curl code $(curl_translate_code $code)"
return
}
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done
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echo
if [ "$SUBSYS" = "pfSense" ] ; then
echo "tpws tests are not possible on pfSense"
report_append "ipv${IPV} $4 $1 : automated tpws tests are not possible on pfSense. check docs/bsd.txt"
else
echo preparing tpws redirection
tpws_ipt_prepare $2
tpws_check_domain_bypass $1 $3 $4
echo clearing tpws redirection
tpws_ipt_unprepare $2
fi
echo
2021-12-12 16:03:07 +03:00
echo preparing $PKTWSD redirection
pktws_ipt_prepare $2
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pktws_check_domain_bypass $1 $3 $4
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echo clearing $PKTWSD redirection
pktws_ipt_unprepare $2
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}
check_domain_http()
{
# $1 - domain
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check_domain curl_test_http 80 0 $1
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}
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check_domain_https_tls12()
{
# $1 - domain
check_domain curl_test_https_tls12 443 1 $1
}
check_domain_https_tls13()
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{
# $1 - domain
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check_domain curl_test_https_tls13 443 1 $1
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}
configure_ip_version()
{
if [ "$IPV" = 6 ]; then
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LOCALHOST=::1
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LOCALHOST_IPT=[${LOCALHOST}]
IPVV=6
else
IPTABLES=iptables
LOCALHOST=127.0.0.1
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LOCALHOST_IPT=$LOCALHOST
IPVV=
fi
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IPTABLES=ip${IPVV}tables
}
configure_curl_opt()
{
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# wolfssl : --tlsv1.x mandates exact ssl version, tls-max not supported
# openssl : --tlsv1.x means "version equal or greater", tls-max supported
TLSMAX12=
TLSMAX13=
curl_supports_tlsmax && {
TLSMAX12="--tls-max 1.2"
TLSMAX13="--tls-max 1.3"
}
TLS13=
curl_supports_tls13 && TLS13=1
}
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linux_ipv6_defrag_can_be_disabled()
{
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linux_min_version 4 16
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}
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configure_defrag()
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{
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IP6_DEFRAG_DISABLE=
[ "$IPVS" = 4 ] && return
[ "$UNAME" = "Linux" ] && {
linux_ipv6_defrag_can_be_disabled || {
echo "WARNING ! ipv6 defrag can only be effectively disabled in linux kernel 4.16+"
echo "WARNING ! ipv6 ipfrag tests are disabled"
echo
return
}
}
case "$FWTYPE" in
iptables)
if ipt6_has_raw ; then
if ipt6_has_frag; then
IP6_DEFRAG_DISABLE=1
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else
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echo "WARNING ! ip6tables does not have '-m frag' module, ipv6 ipfrag tests are disabled"
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echo
fi
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else
echo "WARNING ! ip6tables raw table is not available, ipv6 ipfrag tests are disabled"
echo
fi
[ -n "$IP6_DEFRAG_DISABLE" ] && {
local ipexe="$(readlink -f $(whichq ip6tables))"
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if contains "$ipexe" nft; then
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echo "WARNING ! ipv6 ipfrag tests may have no effect if ip6tables-nft is used. current ip6tables point to : $ipexe"
else
echo "WARNING ! ipv6 ipfrag tests may have no effect if ip6table_raw kernel module is not loaded with parameter : raw_before_defrag=1"
fi
echo
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}
;;
*)
IP6_DEFRAG_DISABLE=1
;;
esac
}
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ask_params()
{
echo
echo NOTE ! this test should be run with zapret or any other bypass software disabled, without VPN
echo
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echo "specify domain(s) to test. multiple domains are space separated."
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printf "domain(s) (default: $DOMAINS) : "
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local dom
read dom
[ -n "$dom" ] && DOMAINS="$dom"
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2022-02-15 20:51:45 +03:00
printf "ip protocol version(s) - 4, 6 or 46 for both (default: 4) : "
read IPVS
[ -n "$IPVS" ] || IPVS=4
[ "$IPVS" = 4 -o "$IPVS" = 6 -o "$IPVS" = 46 ] || {
echo 'invalid ip version(s). should be 4, 6 or 46.'
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exitp 1
}
[ "$IPVS" = 46 ] && IPVS="4 6"
configure_curl_opt
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ENABLE_HTTP=1
ask_yes_no_var ENABLE_HTTP "check http"
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ENABLE_HTTPS_TLS12=1
ask_yes_no_var ENABLE_HTTPS_TLS12 "check https tls 1.2"
ENABLE_HTTPS_TLS13=0
echo
if [ -n "$TLS13" ]; then
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echo "TLS 1.3 is the new standard for encrypted communications over TCP"
2021-12-10 15:16:02 +03:00
echo "its the most important feature for DPI bypass is encrypted TLS ServerHello"
2021-12-10 11:18:25 +03:00
echo "more and more sites enable TLS 1.3 but still there're many sites with only TLS 1.2 support"
2021-12-10 11:22:42 +03:00
echo "with TLS 1.3 more DPI bypass strategies can work but they may not apply to all sites"
2021-12-10 11:18:25 +03:00
echo "if a strategy works with TLS 1.2 it will also work with TLS 1.3"
echo "if nothing works with TLS 1.2 this test may find TLS1.3 only strategies"
echo "make sure that $DOMAINS support TLS 1.3 otherwise all test will return an error"
2021-12-10 11:18:25 +03:00
ask_yes_no_var ENABLE_HTTPS_TLS13 "check https tls 1.3"
else
echo "installed curl version does not support TLS 1.3 . tests disabled."
fi
2021-12-08 15:20:44 +03:00
IGNORE_CA=0
CURL_OPT=
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[ $ENABLE_HTTPS_TLS13 = 1 -o $ENABLE_HTTPS_TLS12 = 1 ] && {
echo
2021-12-22 12:31:45 +03:00
echo "on limited systems like openwrt CA certificates might not be installed to preserve space"
echo "in such a case curl cannot verify server certificate and you should either install ca-bundle or disable verification"
echo "however disabling verification will break https check if ISP does MitM attack and substitutes server certificate"
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ask_yes_no_var IGNORE_CA "do not verify server certificate"
[ "$IGNORE_CA" = 1 ] && CURL_OPT=-k
}
2021-12-22 12:31:45 +03:00
echo
echo "sometimes ISPs use multiple DPIs or load balancing. bypass strategies may work unstable."
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printf "how many times to repeat each test (default: 1) : "
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read REPEATS
REPEATS=$((0+${REPEATS:-1}))
[ "$REPEATS" = 0 ] && {
echo invalid repeat count
exitp 1
}
2021-12-13 17:01:50 +03:00
echo
2022-02-09 10:06:01 +03:00
FORCE=0
ask_yes_no_var FORCE "do all tests despite of result ?"
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echo
2022-02-09 10:43:18 +03:00
configure_defrag
2021-12-08 15:20:44 +03:00
}
pingtest()
{
ping -c 1 -W 1 $1 >/dev/null
}
dnstest()
{
# $1 - dns server. empty for system resolver
2021-12-12 16:03:07 +03:00
"$LOOKUP" w3.org $1 >/dev/null 2>/dev/null
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}
find_working_public_dns()
{
2022-01-11 00:46:32 +03:00
local dns
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for dns in $DNSCHECK_DNS; do
pingtest $dns && dnstest $dns && {
PUBDNS=$dns
return 0
}
done
return 1
}
2021-12-12 16:03:07 +03:00
lookup4()
{
# $1 - domain
# $2 - DNS
case "$LOOKUP" in
nslookup)
nslookup $1 $2 | sed -n '/Name:/,$p' | grep ^Address | grep -oE '([0-9]{1,3}\.){3}[0-9]{1,3}'
;;
host)
host -t A $1 $2 | grep "has address" | grep -oE '([0-9]{1,3}\.){3}[0-9]{1,3}'
;;
esac
}
2021-12-08 15:20:44 +03:00
check_dns_spoof()
{
# $1 - domain
# $2 - public DNS
2021-12-12 16:03:07 +03:00
echo $1 | "$MDIG" --family=4 >"$DNSCHECK_DIG1"
lookup4 $1 $2 >"$DNSCHECK_DIG2"
2021-12-08 15:20:44 +03:00
# check whether system resolver returns anything other than public DNS
grep -qvFf "$DNSCHECK_DIG2" "$DNSCHECK_DIG1"
}
check_dns_cleanup()
{
rm -f "$DNSCHECK_DIG1" "$DNSCHECK_DIG2" "$DNSCHECK_DIGS" 2>/dev/null
}
check_dns()
{
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local C1 C2 dom
2021-12-08 15:20:44 +03:00
echo \* checking DNS
[ -f "$DNSCHECK_DIGS" ] && rm -f "$DNSCHECK_DIGS"
dnstest || {
echo -- DNS is not working. It's either misconfigured or blocked or you don't have inet access.
return 1
}
echo system DNS is working
if find_working_public_dns ; then
echo comparing system resolver to public DNS : $PUBDNS
for dom in $DNSCHECK_DOM; do
if check_dns_spoof $dom $PUBDNS ; then
echo $dom : MISMATCH
echo -- system resolver :
cat "$DNSCHECK_DIG1"
echo -- $PUBDNS :
cat "$DNSCHECK_DIG2"
check_dns_cleanup
echo -- POSSIBLE DNS HIJACK DETECTED. ZAPRET WILL NOT HELP YOU IN CASE DNS IS SPOOFED !!!
echo -- DNS CHANGE OR DNSCRYPT MAY BE REQUIRED
return 1
else
echo $dom : OK
cat "$DNSCHECK_DIG1" >>"$DNSCHECK_DIGS"
fi
done
else
echo no working public DNS was found. looks like public DNS blocked.
2021-12-12 16:03:07 +03:00
for dom in $DNSCHECK_DOM; do echo $dom; done | "$MDIG" --threads=10 --family=4 >"$DNSCHECK_DIGS"
2021-12-08 15:20:44 +03:00
fi
echo checking resolved IP uniqueness for : $DNSCHECK_DOM
echo censor\'s DNS can return equal result for multiple blocked domains.
C1=$(wc -l <"$DNSCHECK_DIGS")
C2=$(sort -u "$DNSCHECK_DIGS" | wc -l)
[ "$C1" -eq 0 ] &&
{
echo -- DNS is not working. It's either misconfigured or blocked or you don't have inet access.
check_dns_cleanup
return 1
}
[ "$C1" = "$C2" ] ||
{
echo system dns resolver has returned equal IPs for some domains checked above \($C1 total, $C2 unique\)
echo non-unique IPs :
sort "$DNSCHECK_DIGS" | uniq -d
echo -- POSSIBLE DNS HIJACK DETECTED. ZAPRET WILL NOT HELP YOU IN CASE DNS IS SPOOFED !!!
echo -- DNSCRYPT MAY BE REQUIRED
check_dns_cleanup
return 1
}
echo all resolved IPs are unique
echo -- DNS looks good
echo -- NOTE this check is Russia targeted. In your country other domains may be blocked.
check_dns_cleanup
return 0
}
unprepare_all()
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{
2021-12-24 13:21:08 +03:00
# make sure we are not in a middle state that impacts connectivity
rm -f "$HDRTEMP"
[ -n "$IPV" ] && {
tpws_ipt_unprepare 80
tpws_ipt_unprepare 443
2021-12-12 16:03:07 +03:00
pktws_ipt_unprepare 80
pktws_ipt_unprepare 443
}
2021-12-10 11:18:25 +03:00
ws_kill
}
sigint()
{
echo
echo terminating...
unprepare_all
exitp 1
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}
sigpipe()
{
# must not write anything here to stdout
unprepare_all
exit 1
}
2021-12-08 15:20:44 +03:00
fix_sbin_path
2021-12-08 15:20:44 +03:00
check_system
require_root
check_prerequisites
2021-12-08 15:20:44 +03:00
check_dns
check_virt
2021-12-08 15:20:44 +03:00
ask_params
2021-12-10 11:18:25 +03:00
PID=
2021-12-25 12:22:47 +03:00
NREPORT=
trap sigint INT
trap sigpipe PIPE
for dom in $DOMAINS; do
for IPV in $IPVS; do
configure_ip_version
[ "$ENABLE_HTTP" = 1 ] && check_domain_http $dom
[ "$ENABLE_HTTPS_TLS12" = 1 ] && check_domain_https_tls12 $dom
[ "$ENABLE_HTTPS_TLS13" = 1 ] && check_domain_https_tls13 $dom
done
done
trap - PIPE
trap - INT
2021-12-08 21:12:41 +03:00
2021-12-25 12:22:47 +03:00
echo
echo \* SUMMARY
report_print
2021-12-08 21:12:41 +03:00
exitp 0