fw.py 16.5 KB
Newer Older
1 2 3 4 5 6 7 8 9
from firewall import models
import django.conf

import re
from datetime import datetime, timedelta
from django.db.models import Q


settings = django.conf.settings.FIREWALL_SETTINGS
10 11


12 13 14 15 16 17 18 19 20
class Firewall:
    def dportsport(self, rule, repl=True):
        retval = ' '
        if rule.proto == 'tcp' or rule.proto == 'udp':
            retval = '-p %s ' % rule.proto
            if rule.sport:
                retval += ' --sport %s ' % rule.sport
            if rule.dport:
                retval += ' --dport %s ' % (rule.nat_dport
21 22
                          if (repl and rule.nat and rule.direction == '1')
                          else rule.dport)
23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38
        elif rule.proto == 'icmp':
            retval = '-p %s ' % rule.proto
        return retval

    def iptables(self, s):
        """Append rule to filter table."""
        self.RULES.append(s)

    def iptablesnat(self, s):
        """Append rule to NAT table."""
        self.RULES_NAT.append(s)

    def host2vlan(self, host, rule):
        if not rule.foreign_network:
            return

39
        if self.proto == 6 and host.ipv6:
40
            ipaddr = str(host.ipv6) + '/112'
41
        else:
42
            ipaddr = str(host.ipv4)
43 44 45 46 47 48 49 50

        dport_sport = self.dportsport(rule)

        for vlan in rule.foreign_network.vlans.all():
            if rule.accept:
                if rule.direction == '0' and vlan.name == 'PUB':
                    if rule.dport == 25:
                        self.iptables('-A PUB_OUT -s %s %s -p tcp '
51 52
                                      '--dport 25 -j LOG_ACC' %
                                      (ipaddr, rule.extra))
53 54 55 56 57 58 59
                        break
                    action = 'PUB_OUT'
                else:
                    action = 'LOG_ACC'
            else:
                action = 'LOG_DROP'

60 61 62 63
            if rule.direction == '1':  # going TO host
                self.iptables('-A %s_%s -d %s %s %s -g %s' %
                              (vlan, host.vlan, ipaddr, dport_sport,
                               rule.extra, action))
64
            else:
65 66 67
                self.iptables('-A %s_%s -s %s %s %s -g %s' %
                              (host.vlan, vlan, ipaddr, dport_sport,
                               rule.extra, action))
68 69 70 71 72 73 74 75

    def fw2vlan(self, rule):
        if not rule.foreign_network:
            return

        dport_sport = self.dportsport(rule)

        for vlan in rule.foreign_network.vlans.all():
76
            if rule.direction == '1':  # going TO host
77
                self.iptables('-A INPUT -i %s %s %s -g %s' %
78
                              (vlan.name, dport_sport, rule.extra,
79
                               'LOG_ACC' if rule.accept else 'LOG_DROP'))
80 81
            else:
                self.iptables('-A OUTPUT -o %s %s %s -g %s' %
82
                              (vlan.name, dport_sport, rule.extra,
83
                               'LOG_ACC' if rule.accept else 'LOG_DROP'))
84 85 86 87 88 89 90 91 92 93 94 95 96 97 98 99

    def vlan2vlan(self, l_vlan, rule):
        if not rule.foreign_network:
            return

        dport_sport = self.dportsport(rule)

        for vlan in rule.foreign_network.vlans.all():
            if rule.accept:
                if rule.direction == '0' and vlan.name == 'PUB':
                    action = 'PUB_OUT'
                else:
                    action = 'LOG_ACC'
            else:
                action = 'LOG_DROP'

100 101 102
            if rule.direction == '1':  # going TO host
                self.iptables('-A %s_%s %s %s -g %s' %
                              (vlan, l_vlan, dport_sport, rule.extra, action))
103 104
            else:
                self.iptables('-A %s_%s %s %s -g %s' % (l_vlan, vlan,
105 106
                                                        dport_sport,
                                                        rule.extra, action))
107 108 109 110 111 112 113 114 115 116 117 118 119

    def prerun(self):
        self.iptables('*filter')
        self.iptables(':INPUT DROP [88:6448]')
        self.iptables(':FORWARD DROP [0:0]')
        self.iptables(':OUTPUT DROP [50:6936]')

        # initialize logging
        self.iptables('-N LOG_DROP')
        # windows port scan are silently dropped
        self.iptables('-A LOG_DROP -p tcp --dport 445 -j DROP')
        self.iptables('-A LOG_DROP -p udp --dport 137 -j DROP')
        self.iptables('-A LOG_DROP -j LOG --log-level 7 '
120
                      '--log-prefix "[ipt][drop]"')
121 122 123
        self.iptables('-A LOG_DROP -j DROP')
        self.iptables('-N LOG_ACC')
        self.iptables('-A LOG_ACC -j LOG --log-level 7 '
124
                      '--log-prefix "[ipt][isok]"')
125 126 127 128
        self.iptables('-A LOG_ACC -j ACCEPT')

        self.iptables('-N PUB_OUT')

129 130
        self.iptables('-A FORWARD -m set --match-set blacklist src,dst '
                      '-j DROP')
131 132
        self.iptables('-A FORWARD -m state --state INVALID -g LOG_DROP')
        self.iptables('-A FORWARD -m state --state ESTABLISHED,RELATED '
133
                      '-j ACCEPT')
134
        self.iptables('-A FORWARD -p icmp --icmp-type echo-request '
135
                      '-g LOG_ACC')
136 137 138 139 140

        self.iptables('-A INPUT -m set --match-set blacklist src -j DROP')
        self.iptables('-A INPUT -m state --state INVALID -g LOG_DROP')
        self.iptables('-A INPUT -i lo -j ACCEPT')
        self.iptables('-A INPUT -m state --state ESTABLISHED,RELATED '
141
                      '-j ACCEPT')
142 143 144 145

        self.iptables('-A OUTPUT -m state --state INVALID -g LOG_DROP')
        self.iptables('-A OUTPUT -o lo -j ACCEPT')
        self.iptables('-A OUTPUT -m state --state ESTABLISHED,RELATED '
146
                      '-j ACCEPT')
147 148 149 150 151 152 153 154 155 156 157 158 159 160 161 162 163 164 165 166 167 168 169 170 171

    def postrun(self):
        self.iptables('-A PUB_OUT -p tcp --dport 25 -j LOG_DROP')
        self.iptables('-A PUB_OUT -p tcp --dport 445 -j LOG_DROP')
        self.iptables('-A PUB_OUT -p udp --dport 445 -j LOG_DROP')

        self.iptables('-A PUB_OUT -g LOG_ACC')
        self.iptables('-A FORWARD -g LOG_DROP')
        self.iptables('-A INPUT -g LOG_DROP')
        self.iptables('-A OUTPUT -g LOG_DROP')
        self.iptables('COMMIT')

    def ipt_nat(self):
        self.iptablesnat('*nat')
        self.iptablesnat(':PREROUTING ACCEPT [0:0]')
        self.iptablesnat(':INPUT ACCEPT [0:0]')
        self.iptablesnat(':OUTPUT ACCEPT [1:708]')
        self.iptablesnat(':POSTROUTING ACCEPT [1:708]')

        # portforward
        for host in self.hosts.exclude(pub_ipv4=None):
            for rule in host.rules.filter(nat=True, direction='1'):
                dport_sport = self.dportsport(rule, False)
                if host.vlan.snat_ip:
                    self.iptablesnat('-A PREROUTING -d %s %s %s -j DNAT '
172 173 174
                                     '--to-destination %s:%s' %
                                     (host.pub_ipv4, dport_sport, rule.extra,
                                      host.ipv4, rule.nat_dport))
175 176 177 178 179

        # rules for machines with dedicated public IP
        for host in self.hosts.exclude(shared_ip=True):
            if host.pub_ipv4:
                self.iptablesnat('-A PREROUTING -d %s -j DNAT '
180 181
                                 '--to-destination %s' %
                                 (host.pub_ipv4, host.ipv4))
182
                self.iptablesnat('-A POSTROUTING -s %s -j SNAT '
183 184
                                 '--to-source %s' %
                                 (host.ipv4, host.pub_ipv4))
185 186 187 188 189 190

        # default NAT rules for VLANs
        for s_vlan in self.vlans:
            if s_vlan.snat_ip:
                for d_vlan in s_vlan.snat_to.all():
                    self.iptablesnat('-A POSTROUTING -s %s -o %s -j SNAT '
191
                                     '--to-source %s' %
192
                                     (str(s_vlan.network4), d_vlan.name,
193
                                      s_vlan.snat_ip))
194 195 196 197 198 199 200 201 202 203 204 205 206 207 208 209 210 211 212

        self.iptablesnat('COMMIT')

    def ipt_filter(self):
        ipv4_re = re.compile('([0-9]{1,3}\.){3}[0-9]{1,3}')

        # pre-run stuff
        self.prerun()

        # firewall's own rules
        for f in self.fw:
            for rule in f.rules.all():
                self.fw2vlan(rule)

        # zonak kozotti lancokra ugras
        for s_vlan in self.vlans:
            for d_vlan in self.vlans:
                self.iptables('-N %s_%s' % (s_vlan, d_vlan))
                self.iptables('-A FORWARD -i %s -o %s -g %s_%s' %
213
                              (s_vlan.name, d_vlan.name, s_vlan,
214
                               d_vlan))
215 216 217 218 219 220 221 222 223 224 225 226 227 228 229 230 231 232 233 234 235 236 237

        # hosts' rules
        for i_vlan in self.vlans:
            for i_host in i_vlan.host_set.all():
                for group in i_host.groups.all():
                    for rule in group.rules.all():
                        self.host2vlan(i_host, rule)
                for rule in i_host.rules.all():
                    self.host2vlan(i_host, rule)

        # enable communication between VLANs
        for s_vlan in self.vlans:
            for rule in s_vlan.rules.all():
                self.vlan2vlan(s_vlan, rule)

        # zonak kozotti lancokat zarja le
        for s_vlan in self.vlans:
            for d_vlan in self.vlans:
                self.iptables('-A %s_%s -g LOG_DROP' % (s_vlan, d_vlan))

        # post-run stuff
        self.postrun()

238
        if self.proto == 6:
239 240 241
            self.RULES = [x for x in self.RULES if not ipv4_re.search(x)]
            self.RULES = [x.replace('icmp', 'icmpv6') for x in self.RULES]

242
    def __init__(self, proto=4):
243 244
        self.RULES = []
        self.RULES_NAT = []
245
        self.proto = proto
246 247 248 249
        self.vlans = models.Vlan.objects.all()
        self.hosts = models.Host.objects.all()
        self.fw = models.Firewall.objects.all()
        self.ipt_filter()
250
        if self.proto != 6:
251 252 253
            self.ipt_nat()

    def get(self):
254
        if self.proto == 6:
255
            return {'filter': self.RULES, }
256
        else:
257
            return {'filter': self.RULES, 'nat': self.RULES_NAT}
258 259

    def show(self):
260
        if self.proto == 6:
261 262 263
            return '\n'.join(self.RULES) + '\n'
        else:
            return ('\n'.join(self.RULES) + '\n' +
264 265
                    '\n'.join(self.RULES_NAT) + '\n')

266 267

def ipset():
268 269 270 271
    week = datetime.now() - timedelta(days=2)
    filter_ban = (Q(type='tempban', modified_at__gte=week) |
                  Q(type='permban')).values('ipv4', 'reason')
    return models.Blacklist.objects.filter(filter_ban)
272 273 274 275 276 277 278 279 280 281 282 283 284 285 286 287


def ipv6_to_octal(ipv6):
    while len(ipv6.split(':')) < 8:
        ipv6 = ipv6.replace('::', ':::')
    octets = []
    for part in ipv6.split(':'):
        if not part:
            octets.extend([0, 0])
        else:
            # Pad hex part to 4 digits.
            part = '%04x' % int(part, 16)
            octets.append(int(part[:2], 16))
            octets.append(int(part[2:], 16))
    return '\\' + '\\'.join(['%03o' % x for x in octets])

288

289 290 291 292
def ipv4_to_arpa(ipv4, cname=False):
    m2 = re.search(r'^([0-9]+)\.([0-9]+)\.([0-9]+)\.([0-9]+)$', ipv4)
    if cname:
        return ('%s.dns1.%s.%s.%s.in-addr.arpa' %
293
                (m2.group(4), m2.group(3), m2.group(2), m2.group(1)))
294 295
    else:
        return ('%s.%s.%s.%s.in-addr.arpa' %
296 297
                (m2.group(4), m2.group(3), m2.group(2), m2.group(1)))

298 299 300 301 302 303 304 305 306 307 308 309 310 311 312 313 314 315 316 317 318 319 320 321 322

def ipv6_to_arpa(ipv6):
    while len(ipv6.split(':')) < 8:
        ipv6 = ipv6.replace('::', ':::')
    octets = []
    for part in ipv6.split(':'):
        if not part:
            octets.extend([0, 0, 0, 0])
        else:
            # Pad hex part to 4 digits.
            part = '%04x' % int(part, 16)
            octets.insert(0, int(part[0], 16))
            octets.insert(0, int(part[1], 16))
            octets.insert(0, int(part[2], 16))
            octets.insert(0, int(part[3], 16))
    return '.'.join(['%1x' % x for x in octets]) + '.ip6.arpa'


# =fqdn:ip:ttl          A, PTR
# &fqdn:ip:x:ttl        NS
# ZfqdnSOA
# +fqdn:ip:ttl          A
# ^                     PTR
# C                     CNAME
# :                     generic
323
# 'fqdn:s:ttl           TXT
324

325
def generate_ptr_records():
326 327
    DNS = []

328 329 330 331 332 333 334
    for host in models.Host.objects.order_by('vlan').all():
        rev = host.vlan.reverse_domain
        ipv4 = str(host.pub_ipv4 if host.pub_ipv4 and
                   not host.shared_ip else host.ipv4)
        i = ipv4.split('.', 4)
        reverse = (host.reverse if host.reverse and
                   len(host.reverse) else host.get_fqdn())
335

336 337 338 339 340 341 342 343 344 345 346 347 348 349 350 351 352 353 354 355
        # ipv4
        if host.ipv4:
            DNS.append("^%s:%s:%s" % (
                (rev % {'a': int(i[0]), 'b': int(i[1]), 'c': int(i[2]),
                        'd': int(i[3])}),
                reverse, models.settings['dns_ttl']))

        # ipv6
        if host.ipv6:
            DNS.append("^%s:%s:%s" % (ipv6_to_arpa(str(host.ipv6)),
                                      reverse, models.settings['dns_ttl']))
        return DNS


def txt_to_octal(txt):
    return '\\' + '\\'.join(['%03o' % ord(x) for x in txt])


def generate_records():
    DNS = []
356 357

    for r in models.Record.objects.all():
358 359 360
        if r.type == 'A':
            DNS.append("+%s:%s:%s" % (r.fqdn, r.address, r.ttl))
        elif r.type == 'AAAA':
361
            DNS.append(":%s:28:%s:%s" %
362 363 364 365 366 367 368
                       (r.fqdn, ipv6_to_octal(r.address), r.ttl))
        elif r.type == 'NS':
            DNS.append("&%s::%s:%s" % (r.fqdn, r.address, r.ttl))
        elif r.type == 'CNAME':
            DNS.append("C%s:%s:%s" % (r.fqdn, r.address, r.ttl))
        elif r.type == 'MX':
            mx = r.address.split(':', 2)
369
            DNS.append("@%(fqdn)s::%(mx)s:%(dist)s:%(ttl)s" %
370 371 372 373
                       {'fqdn': r.fqdn, 'mx': mx[1], 'dist': mx[0],
                        'ttl': r.ttl})
        elif r.type == 'PTR':
            DNS.append("^%s:%s:%s" % (r.fqdn, r.address, r.ttl))
374 375 376 377 378 379 380 381 382 383 384 385 386 387 388 389 390 391 392 393 394
        elif r.type == 'TXT':
            DNS.append("'%s:%s:%s" % (r.fqdn,
                                      txt_to_octal(r.address), r.ttl))

    return DNS


def dns():
    DNS = []

    # host PTR record
    DNS += generate_ptr_records()

    # domain SOA record
    for domain in models.Domain.objects.all():
        DNS.append("Z%s:%s:support.ik.bme.hu::::::%s" %
                   (domain.name, settings['dns_hostname'],
                    models.settings['dns_ttl']))

    # records
    DNS += generate_records()
395 396 397 398 399 400

    return DNS


def dhcp():
    regex = re.compile(r'^([0-9]+)\.([0-9]+)\.[0-9]+\.[0-9]+\s+'
401
                       r'([0-9]+)\.([0-9]+)\.[0-9]+\.[0-9]+$')
402 403 404 405
    DHCP = []

# /tools/dhcp3/dhcpd.conf.generated

406
    for i_vlan in models.Vlan.objects.all():
407 408 409
        if(i_vlan.dhcp_pool):
            m = regex.search(i_vlan.dhcp_pool)
            if(m or i_vlan.dhcp_pool == "manual"):
410
                DHCP.append('''
411 412 413 414 415 416 417 418 419 420 421
    # %(name)s - %(interface)s
    subnet %(net)s netmask %(netmask)s {
      %(extra)s;
      option domain-name "%(domain)s";
      option routers %(router)s;
      option domain-name-servers %(dnsserver)s;
      option ntp-servers %(ntp)s;
      next-server %(tftp)s;
      authoritative;
      filename \"pxelinux.0\";
      allow bootp; allow booting;
422
    }''' % {
423 424
                    'net': str(i_vlan.network4.network),
                    'netmask': str(i_vlan.network4.netmask),
425 426 427 428 429
                    'domain': i_vlan.domain,
                    'router': i_vlan.ipv4,
                    'ntp': i_vlan.ipv4,
                    'dnsserver': settings['rdns_ip'],
                    'extra': ("range %s" % i_vlan.dhcp_pool
430
                              if m else "deny unknown-clients"),
431
                    'interface': i_vlan.name,
432 433 434 435 436
                    'name': i_vlan.name,
                    'tftp': i_vlan.ipv4
                })

                for i_host in i_vlan.host_set.all():
437
                    DHCP.append('''
438 439 440 441 442 443 444 445 446 447
                    host %(hostname)s {
                      hardware ethernet %(mac)s;
                      fixed-address %(ipv4)s;
                    }''' % {
                        'hostname': i_host.hostname,
                        'mac': i_host.mac,
                        'ipv4': i_host.ipv4,
                    })

    return DHCP
448 449 450 451


def vlan():
    obj = models.Vlan.objects.values('vid', 'name', 'network4', 'network6')
452 453 454 455 456 457 458 459 460 461 462 463 464 465 466 467 468 469 470 471 472 473
    retval = {x['name']: {'tag': x['vid'],
                          'type': 'internal',
                          'interfaces': [x['name']],
                          'addresses': [str(x['network4']),
                                        str(x['network6'])]}
              for x in obj}
    for p in models.SwitchPort.objects.all():
        eth_count = p.ethernet_devices.count()
        if eth_count > 1:
            name = 'bond%d' % p.id
        elif eth_count == 1:
            name = p.ethernet_devices.get().name
        else:  # 0
            continue
        tag = p.untagged_vlan.vid
        retval[name] = {'tag': tag}
        if p.tagged_vlans is not None:
            trunk = list(p.tagged_vlans.vlans.values_list('vid', flat=True))
            retval[name]['trunks'] = sorted(trunk)
        retval[name]['interfaces'] = list(
            p.ethernet_devices.values_list('name', flat=True))
    return retval