resolving whitelist every minute
parent
51f5f66c91
commit
5ed113c47f
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@ -6,6 +6,7 @@ import time
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import atexit
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import atexit
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import signal
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import signal
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import ipaddress
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import ipaddress
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from collections import Counter
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from random import randint
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from random import randint
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from threading import Thread
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from threading import Thread
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from threading import Lock
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from threading import Lock
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@ -38,18 +39,13 @@ RULES[5] = 'mailcow UI: Invalid password for .+ by ([0-9a-f\.:]+)'
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RULES[6] = '([0-9a-f\.:]+) \"GET \/SOGo\/.* HTTP.+\" 403 .+'
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RULES[6] = '([0-9a-f\.:]+) \"GET \/SOGo\/.* HTTP.+\" 403 .+'
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#RULES[7] = '-login: Aborted login \(no auth .+\): user=.+, rip=([0-9a-f\.:]+), lip.+'
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#RULES[7] = '-login: Aborted login \(no auth .+\): user=.+, rip=([0-9a-f\.:]+), lip.+'
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WHITELIST = []
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bans = {}
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bans = {}
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log = {}
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log = {}
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quit_now = False
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quit_now = False
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lock = Lock()
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lock = Lock()
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def is_ip_network(address):
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try:
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ipaddress.ip_network(address.decode('ascii'), False)
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except ValueError:
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return False
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return True
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def refreshF2boptions():
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def refreshF2boptions():
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global f2boptions
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global f2boptions
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global quit_now
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global quit_now
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@ -118,7 +114,6 @@ def ban(address):
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RETRY_WINDOW = int(f2boptions['retry_window'])
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RETRY_WINDOW = int(f2boptions['retry_window'])
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NETBAN_IPV4 = '/' + str(f2boptions['netban_ipv4'])
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NETBAN_IPV4 = '/' + str(f2boptions['netban_ipv4'])
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NETBAN_IPV6 = '/' + str(f2boptions['netban_ipv6'])
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NETBAN_IPV6 = '/' + str(f2boptions['netban_ipv6'])
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WHITELIST = r.hgetall('F2B_WHITELIST')
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ip = ipaddress.ip_address(address.decode('ascii'))
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ip = ipaddress.ip_address(address.decode('ascii'))
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if type(ip) is ipaddress.IPv6Address and ip.ipv4_mapped:
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if type(ip) is ipaddress.IPv6Address and ip.ipv4_mapped:
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@ -128,50 +123,9 @@ def ban(address):
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return
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return
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self_network = ipaddress.ip_network(address.decode('ascii'))
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self_network = ipaddress.ip_network(address.decode('ascii'))
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if WHITELIST:
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if WHITELIST:
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wl_hostnames=[]
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wl_networks=[]
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for wl_key in WHITELIST:
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for wl_key in WHITELIST:
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if is_ip_network(wl_key):
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wl_networks.append(wl_key)
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else:
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wl_hostnames.append(wl_key)
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for w1_hostname in wl_hostnames:
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hostname_ips = []
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for rdtype in ['A', 'AAAA']:
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try:
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answer = resolver.query(qname=w1_hostname, rdtype=rdtype, lifetime=1)
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except dns.exception.Timeout as timout:
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log['time'] = int(round(time.time()))
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log['priority'] = 'info'
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log['message'] = 'Hostname %s timedout on resolve' % (w1_hostname)
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r.lpush('NETFILTER_LOG', json.dumps(log, ensure_ascii=False))
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print 'Hostname %s timedout on resolve' % (w1_hostname)
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break
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except (dns.resolver.NXDOMAIN, dns.resolver.NoAnswer):
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continue
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except dns.exception.DNSException as dnsexception:
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log['time'] = int(round(time.time()))
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log['priority'] = 'info'
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log['message'] = '%s' % (dnsexception)
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r.lpush('NETFILTER_LOG', json.dumps(log, ensure_ascii=False))
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print '%s' % (dnsexception)
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continue
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for rdata in answer:
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hostname_ips.append(rdata.to_text())
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wl_networks.extend(hostname_ips)
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log['time'] = int(round(time.time()))
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log['priority'] = 'info'
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log['message'] = 'Hostname %s is resolved to %s' % (w1_hostname, hostname_ips)
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r.lpush('NETFILTER_LOG', json.dumps(log, ensure_ascii=False))
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print 'Hostname %s is resolved to %s' % (w1_hostname, hostname_ips)
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for wl_key in wl_networks:
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wl_net = ipaddress.ip_network(wl_key.decode('ascii'), False)
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wl_net = ipaddress.ip_network(wl_key.decode('ascii'), False)
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if wl_net.overlaps(self_network):
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if wl_net.overlaps(self_network):
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@ -419,6 +373,73 @@ def autopurge():
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if time.time() - bans[net]['last_attempt'] > BAN_TIME:
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if time.time() - bans[net]['last_attempt'] > BAN_TIME:
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unban(net)
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unban(net)
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def isIpNetwork(address):
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try:
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ipaddress.ip_network(address.decode('ascii'), False)
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except ValueError:
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return False
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return True
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def genNetworkList(list):
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hostnames = []
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networks = []
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for key in list:
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if isIpNetwork(key):
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networks.append(key.encode("utf-8"))
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else:
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hostnames.append(key)
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for hostname in hostnames:
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hostname_ips = []
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for rdtype in ['A', 'AAAA']:
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try:
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answer = resolver.query(qname=hostname, rdtype=rdtype, lifetime=10)
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except dns.exception.Timeout:
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log['time'] = int(round(time.time()))
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log['priority'] = 'info'
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log['message'] = 'Hostname %s timedout on resolve' % (hostname)
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r.lpush('NETFILTER_LOG', json.dumps(log, ensure_ascii=False))
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print 'Hostname %s timedout on resolve' % (hostname)
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break
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except (dns.resolver.NXDOMAIN, dns.resolver.NoAnswer):
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continue
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except dns.exception.DNSException as dnsexception:
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log['time'] = int(round(time.time()))
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log['priority'] = 'info'
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log['message'] = '%s' % (dnsexception)
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r.lpush('NETFILTER_LOG', json.dumps(log, ensure_ascii=False))
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print '%s' % (dnsexception)
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continue
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for rdata in answer:
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hostname_ips.append(rdata.to_text().encode("utf-8"))
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networks.extend(hostname_ips)
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return networks
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def whitelistUpdate():
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global lock
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global quit_now
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global WHITELIST
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while not quit_now:
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start_time = time.time()
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list = r.hgetall('F2B_WHITELIST')
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if list:
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new_whitelist = genNetworkList(list)
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if Counter(new_whitelist) != Counter(WHITELIST):
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WHITELIST = new_whitelist
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log['time'] = int(round(time.time()))
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log['priority'] = 'info'
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log['message'] = 'New entrys for whitelist %s' % (WHITELIST)
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r.lpush('NETFILTER_LOG', json.dumps(log, ensure_ascii=False))
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print 'New entrys for whitelist %s' % (WHITELIST)
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time.sleep(60.0 - ((time.time() - start_time) % 60.0))
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def initChain():
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def initChain():
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# Is called before threads start, no locking
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# Is called before threads start, no locking
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print "Initializing mailcow netfilter chain"
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print "Initializing mailcow netfilter chain"
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@ -520,6 +541,10 @@ if __name__ == '__main__':
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mailcowchainwatch_thread.daemon = True
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mailcowchainwatch_thread.daemon = True
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mailcowchainwatch_thread.start()
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mailcowchainwatch_thread.start()
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whitelistupdate_thread = Thread(target=whitelistUpdate)
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whitelistupdate_thread.daemon = True
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whitelistupdate_thread.start()
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signal.signal(signal.SIGTERM, quit)
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signal.signal(signal.SIGTERM, quit)
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atexit.register(clear)
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atexit.register(clear)
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