nftables #41
4 changed files with 0 additions and 223 deletions
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@ -1,85 +0,0 @@
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#!/bin/bash
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% if not node.metadata.get('iptables/enabled', True):
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exit 0
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% endif
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lock_try=0
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while ! mkdir /run/bw-iptables.lock >/dev/null 2>&1
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do
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((lock_try++))
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if (( lock_try == 10 ))
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then
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echo 'FATAL: iptables-enforce: Could not get lock!' >&2
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exit 1
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fi
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sleep 1
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done
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trap 'rmdir /run/bw-iptables.lock' EXIT
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iptables_both()
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{
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iptables "$@"
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ip6tables "$@"
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}
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iptables_both -P INPUT DROP
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iptables_both -P OUTPUT ACCEPT
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iptables_both -P FORWARD DROP
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iptables_both -F
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iptables_both -X
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iptables_both -t nat -F
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iptables_both -t nat -X
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iptables_both -t nat -Z
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iptables_both -t filter -F
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iptables_both -t filter -X
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iptables_both -t filter -Z
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iptables_both -t mangle -F
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iptables_both -t mangle -X
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iptables_both -t mangle -Z
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# Workaround for CVE-2019-11477, CVE-2019-11478 and CVE-2019-11479
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# https://www.openwall.com/lists/oss-security/2019/06/17/5
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# https://people.canonical.com/~ubuntu-security/cve/2019/CVE-2019-11477.html
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iptables_both -I INPUT -p tcp -m tcpmss --mss 1:500 -j DROP
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# Dummy rules to make sure the conntrack table(s) will be updated.
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iptables_both -I INPUT -m state --state NEW,ESTABLISHED,RELATED
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iptables_both -I OUTPUT -m state --state NEW,ESTABLISHED,RELATED
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iptables_both -I FORWARD -m state --state NEW,ESTABLISHED,RELATED
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# open up local loopback
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iptables_both -A INPUT -i lo -j ACCEPT
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# Set Up counting rules
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% for ip in sorted(ipv4):
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iptables -A INPUT -d ${ip}
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iptables -A OUTPUT -s ${ip}
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% endfor
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% for ip in sorted(ipv6):
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ip6tables -A INPUT -d ${ip}
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ip6tables -A OUTPUT -s ${ip}
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% endfor
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iptables -A INPUT -p ICMP --icmp-type timestamp-request -j DROP
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iptables -A INPUT -p ICMP --icmp-type timestamp-reply -j DROP
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# allow ICMP -- answers for IPv4 are covered by conntrack
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iptables -A INPUT -p icmp -j ACCEPT
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# ICMP6 is used for so many things, we should under no circumstances
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# ignore it and thus should not rely on any conntrack heuristics.
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ip6tables -A INPUT -p ipv6-icmp -j ACCEPT
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# Allow incoming answers. Install this first (before the larger ruleset
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# from /etc/network/iptables-rules.d/), so that iptables can match/exit
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# early.
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iptables_both -A INPUT -m state --state ESTABLISHED,RELATED -j ACCEPT
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shopt -s nullglob
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for i in /etc/iptables-rules.d/*
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do
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. "$i"
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done
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cat /etc/sysctl.d/*.conf /etc/sysctl.conf | sysctl -e -p -
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@ -1,11 +0,0 @@
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[Unit]
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Description=Run iptables-enforce after networkd startup
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Requires=network-online.target
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After=network-online.target
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[Service]
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Type=oneshot
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ExecStart=/usr/local/sbin/iptables-enforce
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[Install]
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WantedBy=multi-user.target
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@ -1,66 +0,0 @@
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directories = {
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'/etc/iptables-rules.d': {
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'purge': True,
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'triggers': {
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'action:iptables_enforce',
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},
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},
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}
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files = {
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'/etc/systemd/system/iptables-enforce.service': {
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'triggers': {
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'action:systemd-reload',
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},
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},
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'/usr/local/sbin/iptables-enforce': {
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'content_type': 'mako',
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'context': repo.libs.tools.resolve_identifier(repo, node.name),
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'mode': '0700',
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'triggers': {
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'action:iptables_enforce',
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},
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},
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}
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enforce_deps = {
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'directory:/etc/iptables-rules.d',
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'file:/usr/local/sbin/iptables-enforce',
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}
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for bundle, rules in node.metadata.get('iptables/bundle_rules', {}).items():
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files[f'/etc/iptables-rules.d/20-{bundle}'] = {
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# We must never use sorted() here. Bundles might rely on their order.
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'content': '\n'.join(rules) + '\n',
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'triggers': {
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'action:iptables_enforce',
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},
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}
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enforce_deps.add(f'file:/etc/iptables-rules.d/20-{bundle}')
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if 'custom_rules' in node.metadata.get('iptables', {}):
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files['/etc/iptables-rules.d/40-custom'] = {
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'content': '\n'.join(node.metadata['iptables']['custom_rules']) + '\n',
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'triggers': {
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'action:iptables_enforce',
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},
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}
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enforce_deps.add('file:/etc/iptables-rules.d/40-custom')
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actions = {
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'iptables_enforce': {
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'command': '/usr/local/sbin/iptables-enforce',
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'triggered': True,
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'needs': enforce_deps,
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},
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}
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svc_systemd = {
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'iptables-enforce': {
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'running': None,
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'needs': {
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'file:/etc/systemd/system/iptables-enforce.service',
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},
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},
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}
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@ -1,61 +0,0 @@
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from bundlewrap.exceptions import BundleError
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defaults = {
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'pacman': {
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'packages': {
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'iptables': {},
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},
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},
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}
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@metadata_reactor.provides(
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'iptables/bundle_rules/iptables',
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)
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def port_rules_to_iptables(metadata):
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# Using this, bundles can simply set up port based rules. This
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# reactor will then take care of converting those rules to actual
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# iptables rules
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ruleset = set()
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# Plese note we do not set any defaults for ports. Bundles are
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# expected to know themselves which default to use.
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for portdef, targets in metadata.get('iptables/port_rules', {}).items():
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if '/' in portdef:
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port, proto = portdef.split('/', 2)
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if proto not in {'udp'}:
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raise BundleError(f'iptables/port_rules: illegal identifier {portdef} in metadata for {node.name}')
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else:
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port = portdef
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proto = 'tcp'
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for target in targets:
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if port == '*' and target == '*':
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raise BundleError('iptables/port_rules: setting both port and target to * is unsupported')
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comment = f'-m comment --comment "iptables port_rules {target}"'
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if port != '*':
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port_str = f'--dport {port}'
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else:
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port_str = ''
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if target == '*':
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ruleset.add(f'iptables_both -A INPUT -p {proto} {port_str} {comment} -j ACCEPT')
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else:
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resolved = repo.libs.tools.resolve_identifier(repo, target)
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for address in resolved['ipv4']:
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ruleset.add(f'iptables -A INPUT -p {proto} -s {address} {port_str} {comment} -j ACCEPT')
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for address in resolved['ipv6']:
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ruleset.add(f'ip6tables -A INPUT -p {proto} -s {address} {port_str} {comment} -j ACCEPT')
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return {
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'iptables': {
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'bundle_rules': {
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# order does not matter here.
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'iptables': list(sorted(ruleset)),
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},
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},
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}
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