ffho_net.py 48 KB

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  1. #!/usr/bin/python
  2. import collections
  3. from functools import cmp_to_key
  4. import ipaddress
  5. import re
  6. from copy import deepcopy
  7. import ffho
  8. mac_prefix = "f2"
  9. # VRF configuration map
  10. vrf_info = {
  11. 'vrf_external' : {
  12. 'table' : 1023,
  13. 'fwmark' : [ '0x1', '0x1023' ],
  14. },
  15. 'vrf_mgmt' : {
  16. 'table' : 1042,
  17. },
  18. }
  19. #
  20. # Default parameters added to any given bonding interface,
  21. # if not specified at the interface configuration.
  22. default_bond_config = {
  23. 'bond-mode': '802.3ad',
  24. 'bond-min-links': '1',
  25. 'bond-xmit-hash-policy': 'layer3+4'
  26. }
  27. #
  28. # Default parameters added to any given bridge interface,
  29. # if not specified at the interface configuration.
  30. default_bridge_config = {
  31. 'bridge-fd' : '0',
  32. 'bridge-stp' : 'no',
  33. 'bridge-ports-condone-regex' : '^[a-zA-Z0-9]+_(v[0-9]{1,4}|eth[0-9])$',
  34. }
  35. #
  36. # Hop penalty to be set if none is explicitly specified.
  37. # Check if one of these roles is configured for any given node, use first match.
  38. default_hop_penalty_by_role = {
  39. 'bbr' : 5,
  40. 'bras' : 50,
  41. 'batman_gw' : 50,
  42. 'batman_ext': 50,
  43. }
  44. batman_role_evaluation_order = [ 'bbr', 'batman_gw', 'bras' ]
  45. # By default we do not set any penalty on an interface and rely on the
  46. # regular hop penalty to do the right thing. We only want set another
  47. # penalty, if there are additional paths and we want to influnce which
  48. # path is being taken. One example are routers which have a wifi link
  49. # to the local backbone as well as a VPN link to a gateway, or a fiber
  50. # link plus a wifi backup link.
  51. default_batman_iface_penalty_by_role = {
  52. 'default' : 0,
  53. 'WBBL' : 5,
  54. 'WBBL_backup' : 10,
  55. 'VPN_intergw' : 80,
  56. 'VPN_node' : 100,
  57. }
  58. #
  59. # Default interface attributes to be added to GRE interface to AS201701 when
  60. # not already present in pillar interface configuration.
  61. GRE_FFRL_attrs = {
  62. 'mode' : 'gre',
  63. 'method' : 'tunnel',
  64. 'mtu' : '1400',
  65. 'ttl' : '64',
  66. }
  67. # The IPv4/IPv6 prefix used for Loopback IPs
  68. loopback_prefix = {
  69. 'v4' : '10.132.255.',
  70. 'v6' : '2a03:2260:2342:ffff::',
  71. }
  72. # The DNS zone base names used for generating zone files from IP address
  73. # configured on nodes interfaces.
  74. DNS_zone_names = {
  75. 'forward' : 'ffho.net',
  76. 'rev_v4' : [
  77. '132.10.in-addr.arpa',
  78. '30.172.in-addr.arpa',
  79. ],
  80. 'rev_v6' : [
  81. '2.4.3.2.0.6.2.2.3.0.a.2.ip6.arpa',
  82. ]
  83. }
  84. # MTU configuration
  85. MTU = {
  86. # The default MTU for any interface which does not have a MTU configured
  87. # explicitly in the pillar node config or does not get a MTU configured
  88. # by any means of this SDN stuff here.
  89. 'default' : 1500,
  90. # A batman underlay device, probably a VXLAN or VLAN interface.
  91. #
  92. # 1500
  93. # + 60 B.A.T.M.A.N. adv header + network coding (activated by default by Debian)
  94. 'batman_underlay_iface' : 1560,
  95. # VXLAN underlay device, probably a VLAN within $POP or between two BBRs.
  96. #
  97. # 1560
  98. # + 14 Inner Ethernet Frame
  99. # + 8 VXLAN Header
  100. # + 8 UDP Header
  101. # + 20 IPv4 Header
  102. 'vxlan_underlay_iface' : 1610,
  103. }
  104. ################################################################################
  105. # #
  106. # Internal data types and functions #
  107. # #
  108. # Touching anything below will void any warranty you never had ;) #
  109. # #
  110. ################################################################################
  111. ################################################################################
  112. # Data types #
  113. ################################################################################
  114. class Prefix (object):
  115. """An internet address with a prefix length.
  116. The given address is expected to be of format ip/plen in CIDR notation.
  117. The IP as well as the prefix length and address family will be stored
  118. in attributes.
  119. .. code-block:: pycon
  120. >>> a = Prefix ('10.132.23.42/24')
  121. >>> str (a.ip)
  122. '10.132.23.42'
  123. >>> str (a.af)
  124. '4'
  125. >>> str (a.plen)
  126. '24'
  127. >>> str (a.netmask)
  128. '255.255.255.0'
  129. >>> str (a.network_address)
  130. '10.132.23.0'
  131. """
  132. def __init__ (self, prefix):
  133. self.prefix = prefix
  134. self.ip_network = ipaddress.ip_network (u'%s' % prefix, strict = False)
  135. def __eq__ (self, other):
  136. if isinstance (other, Prefix):
  137. return self.ip_network == other.ip_network
  138. return NotImplemented
  139. def __lt__ (self, other):
  140. if isinstance (other, Prefix):
  141. return self.ip_network < other.ip_network
  142. return NotImplemented
  143. def __str__ (self):
  144. return self.prefix
  145. @property
  146. def ip (self):
  147. return self.prefix.split ('/')[0]
  148. @property
  149. def af (self):
  150. return self.ip_network.version
  151. @property
  152. def plen (self):
  153. return self.ip_network.prefixlen
  154. @property
  155. def netmask (self):
  156. return self.ip_network.netmask
  157. @property
  158. def network_address (self):
  159. return self.ip_network.network_address
  160. ################################################################################
  161. # Functions #
  162. ################################################################################
  163. sites = None
  164. def _get_site_no (sites_config, site_name):
  165. global sites
  166. if sites == None:
  167. sites = {}
  168. for site in sites_config:
  169. if site.startswith ("_"):
  170. continue
  171. sites[site] = sites_config[site].get ("site_no", -2)
  172. return sites.get (site_name, -1)
  173. #
  174. # Generate a MAC address after the format f2:dd:dd:ss:nn:nn where
  175. # dd:dd is the hexadecimal reprensentation of the nodes device_id
  176. # ff:ff representing the gluon nodes
  177. #
  178. # ss is the hexadecimal reprensentation of the site_id the interface is connected to
  179. #
  180. # nn:nn is the decimal representation of the network the interface is connected to, with
  181. # 00:00 being the BATMAN interface
  182. # 00:0d being the dummy interface
  183. # 00:0f being the VEth internal side interface
  184. # 00:e0 being an external instance BATMAN interface
  185. # 00:ed being an external instance dummy interface
  186. # 00:e1 being an inter-gw-vpn interface
  187. # 00:e4 being an nodes fastd tunnel interface of IPv4 transport
  188. # 00:e6 being an nodes fastd tunnel interface of IPv6 transport
  189. # 00:ef being an extenral instance VEth interface side
  190. # 02:xx being a connection to local Vlan 2xx
  191. # xx:xx being a VXLAN tunnel for site ss, with xx being the underlay VLAN ID (1xyz, 2xyz)
  192. # ff:ff being the gluon next-node interface
  193. def gen_batman_iface_mac (site_no, device_no, network):
  194. net_type_map = {
  195. 'bat' : "00:00",
  196. 'dummy' : "00:0d",
  197. 'int2ext' : "00:0f",
  198. 'bat-e' : "00:e0",
  199. 'intergw' : "00:e1",
  200. 'nodes4' : "00:e4",
  201. 'nodes6' : "00:e6",
  202. 'dummy-e' : "00:ed",
  203. 'ext2int' : "00:ef",
  204. }
  205. # Well-known network type?
  206. if network in net_type_map:
  207. last = net_type_map[network]
  208. elif type (network) == int:
  209. last = re.sub (r'(\d{2})(\d{2})', '\g<1>:\g<2>', "%04d" % network)
  210. else:
  211. last = "ee:ee"
  212. # Convert device_no to hex, format number to 4 digits with leading zeros and : betwwen 2nd and 3rd digit
  213. device_no_hex = re.sub (r'([0-9a-fA-F]{2})([0-9a-fA-F]{2})', '\g<1>:\g<2>', "%04x" % int (device_no))
  214. # Format site_no to two digit number with leading zero
  215. site_no_hex = "%02d" % int (site_no)
  216. return "%s:%s:%s:%s" % (mac_prefix, device_no_hex, site_no_hex, last)
  217. # Gather B.A.T.M.A.N. related config options for real batman devices (e.g. bat0)
  218. # as well as for batman member interfaces (e.g. eth0.100, fastd ifaces etc.)
  219. def _update_batman_config (node_config, iface, sites_config):
  220. try:
  221. node_batman_hop_penalty = int (node_config['batman']['hop-penalty'])
  222. except (KeyError,ValueError):
  223. node_batman_hop_penalty = None
  224. iface_config = node_config['ifaces'][iface]
  225. iface_type = iface_config.get ('type', 'inet')
  226. batman_config = {}
  227. for item in list (iface_config.keys ()):
  228. value = iface_config.get (item)
  229. if item.startswith ('batman-'):
  230. batman_config[item] = value
  231. iface_config.pop (item)
  232. # B.A.T.M.A.N. device (e.g. bat0)
  233. if iface_type == 'batman':
  234. if 'batman-hop-penalty' not in batman_config:
  235. # If there's a hop penalty set for the node, but not for the interface
  236. # apply the nodes hop penalty
  237. if node_batman_hop_penalty:
  238. batman_config['batman-hop-penalty'] = node_batman_hop_penalty
  239. # If there's no hop penalty set for the node, use a default hop penalty
  240. # for the roles the node might have, if any
  241. else:
  242. node_roles = node_config.get ('roles', [])
  243. for role in batman_role_evaluation_order:
  244. if role in node_roles:
  245. batman_config['batman-hop-penalty'] = default_hop_penalty_by_role[role]
  246. break
  247. if 'batman_ext' in node_roles and iface.endswith('-ext'):
  248. batman_config['batman-hop-penalty'] = default_hop_penalty_by_role['batman_ext']
  249. # If batman ifaces were specified as a list - which they should -
  250. # generate a sorted list of interface names as string representation
  251. if 'batman-ifaces' in batman_config and type (batman_config['batman-ifaces']) == list:
  252. batman_iface_str = " ".join (sorted (batman_config['batman-ifaces']))
  253. batman_config['batman-ifaces'] = batman_iface_str
  254. # B.A.T.M.A.N. member interface (e.g. eth.100, fastd ifaces, etc.)
  255. elif iface_type == 'batman_iface':
  256. # Generate unique MAC address for every batman iface, as B.A.T.M.A.N.
  257. # will get puzzled with multiple interfaces having the same MAC and
  258. # do nasty things.
  259. site = iface_config.get ('site')
  260. site_no = _get_site_no (sites_config, site)
  261. device_no = node_config.get ('id')
  262. network = 1234
  263. # Generate a unique BATMAN-MAC for this interfaces
  264. match = re.search (r'^vlan(\d+)', iface)
  265. if match:
  266. network = int (match.group (1))
  267. iface_config['hwaddress'] = gen_batman_iface_mac (site_no, device_no, network)
  268. iface_config['batman'] = batman_config
  269. # Mangle bond specific config items with default values and store them in
  270. # separate sub-dict for easier access and configuration.
  271. def _update_bond_config (config):
  272. bond_config = default_bond_config.copy ()
  273. to_pop = []
  274. for item, value in config.items ():
  275. if item.startswith ('bond-'):
  276. bond_config[item] = value
  277. to_pop.append (item)
  278. for item in to_pop:
  279. config.pop (item)
  280. if bond_config['bond-mode'] not in ['2', 'balance-xor', '4', '802.3ad']:
  281. bond_config.pop ('bond-xmit-hash-policy')
  282. config['bond'] = bond_config
  283. # Mangle bridge specific config items with default values and store them in
  284. # separate sub-dict for easier access and configuration.
  285. def _update_bridge_config (config):
  286. bridge_config = default_bridge_config.copy ()
  287. for item in list (config.keys ()):
  288. value = config.get (item)
  289. if not item.startswith ('bridge-'):
  290. continue
  291. bridge_config[item] = value
  292. config.pop (item)
  293. # Fix any salt mangled string interpretation back to real string.
  294. if type (value) == bool:
  295. bridge_config[item] = "yes" if value else "no"
  296. # If bridge ports were specified as a list - which they should -
  297. # generate a sorted list of interface names as string representation
  298. if 'bridge-ports' in bridge_config and type (bridge_config['bridge-ports']) == list:
  299. bridge_ports_str = " ".join (sorted (bridge_config['bridge-ports']))
  300. if not bridge_ports_str:
  301. bridge_ports_str = "none"
  302. bridge_config['bridge-ports'] = bridge_ports_str
  303. if config.get ('vlan-mode') == 'tagged':
  304. bridge_config['bridge-vlan-aware'] = 'yes'
  305. if config.get ('tagged_vlans'):
  306. bridge_config['bridge-vids'] = " ".join (map (str, config['tagged_vlans']))
  307. config['bridge'] = bridge_config
  308. # Generate config options for vlan-aware-bridge member interfaces
  309. def _update_bridge_member_config (config):
  310. bridge_config = {}
  311. if config.get ('tagged_vlans'):
  312. bridge_config['bridge-vids'] = " ".join (map (str, config['tagged_vlans']))
  313. config['bridge'] = bridge_config
  314. # Move vlan specific config items into a sub-dict for easier access and pretty-printing
  315. # in the configuration file
  316. def _update_vlan_config (config):
  317. vlan_config = {}
  318. for item in list (config.keys ()):
  319. value = config.get (item)
  320. if item.startswith ('vlan-'):
  321. vlan_config[item] = value
  322. config.pop (item)
  323. config['vlan'] = vlan_config
  324. # Pimp Veth interfaces
  325. # * Add peer interface name IF not present
  326. # * Add link-type veth IF not present
  327. def _update_veth_config (interface, config):
  328. veth_peer_name = {
  329. 'veth_ext2int' : 'veth_int2ext',
  330. 'veth_int2ext' : 'veth_ext2int'
  331. }
  332. if interface not in veth_peer_name:
  333. return
  334. if 'link-type' not in config:
  335. config['link-type'] = 'veth'
  336. if 'veth-peer-name' not in config:
  337. config['veth-peer-name'] = veth_peer_name[interface]
  338. # The given MTU to the given interface - presented by it's interface config dict -
  339. # IFF no MTU has already been set in the node pillar.
  340. #
  341. # @param ifaces: All interface configuration (as dict)
  342. # @param iface_name: Name of the interface to set MTU for
  343. # @param mtu: The MTU value to set (integer)
  344. # When <mtu> is <= 0, the <mtu> configured for <iface_name>
  345. # will be used to set the MTU of the upper interface, and the
  346. # default MTU if none is configured explicitly.
  347. def _set_mtu_to_iface_and_upper (ifaces, iface_name, mtu):
  348. iface_config = ifaces.get (iface_name)
  349. # By default we assume that we should set the given MTU value as the 'automtu'
  350. # attribute to allow distinction between manually set and autogenerated MTU
  351. # values.
  352. set_automtu = True
  353. # If a mtu values <= 0 is given, use the MTU configured for this interface
  354. # or, if none is set, the default value when configuring the vlan-raw-device.
  355. if mtu <= 0:
  356. set_automtu = False
  357. mtu = iface_config.get ('mtu', MTU['default'])
  358. # If this interface already has a MTU set - probably because someone manually
  359. # specified one in the node pillar - we do not touch the MTU of this interface.
  360. # Nevertheless it's worth looking at any underlying interface.
  361. if 'mtu' in iface_config:
  362. set_automtu = False
  363. # There might be - read: "we have" - a situation where on top of e.g. bond0
  364. # there are vlans holding VXLAN communicaton as well as VLANs directly carrying
  365. # BATMAN traffic. Now depending on which interface is evaluated first, the upper
  366. # MTU is either correct, or maybe to small.
  367. #
  368. # If any former autogenerated MTU is greater-or-equal than the one we want to
  369. # set now, we'll ignore it, and go for the greater one.
  370. elif 'automtu' in iface_config and iface_config['automtu'] >= mtu:
  371. set_automtu = False
  372. # If we still consider this a good move, set given MTU to this device.
  373. if set_automtu:
  374. iface_config['automtu'] = mtu
  375. # If this is a VLAN - which it probably is - fix the MTU of the underlying interface, too.
  376. # Check for 'vlan-raw-device' in iface_config and in vlan subconfig (yeah, that's not ideal).
  377. vlan_raw_device = None
  378. if 'vlan-raw-device' in iface_config:
  379. vlan_raw_device = iface_config['vlan-raw-device']
  380. elif 'vlan' in iface_config and 'vlan-raw-device' in iface_config['vlan']:
  381. vlan_raw_device = iface_config['vlan']['vlan-raw-device']
  382. if vlan_raw_device:
  383. vlan_raw_device_config = ifaces.get (vlan_raw_device, None)
  384. # vlan-raw-device might point to ethX which usually isn't configured explicitly
  385. # as ifupdown2 simply will bring it up anyway by itself. To set the MTU of such
  386. # an interface we have to add a configuration stanza for it here.
  387. if vlan_raw_device_config == None:
  388. vlan_raw_device_config = {}
  389. ifaces[vlan_raw_device] = vlan_raw_device_config
  390. # If there is a manually set MTU for this device, we don't do nothin'
  391. if 'mtu' in vlan_raw_device_config:
  392. return
  393. if 'automtu' in vlan_raw_device_config and vlan_raw_device_config['automtu'] >= mtu:
  394. return
  395. vlan_raw_device_config['automtu'] = mtu
  396. # Generate configuration entries for any batman related interfaces not
  397. # configured explicitly, but asked for implicitly by role batman and a
  398. # (list of) site(s) specified in the node config.
  399. def _generate_batman_interface_config (node_config, ifaces, sites_config):
  400. # No role 'batman', nothing to do
  401. roles = node_config.get ('roles', [])
  402. if 'batman' not in roles:
  403. return
  404. # Should there be a 2nd external BATMAN instance?
  405. batman_ext = 'batman_ext' in roles or 'bras' in roles
  406. device_no = node_config.get ('id', -1)
  407. for site in node_config.get ('sites', []):
  408. site_no = _get_site_no (sites_config, site)
  409. # Predefine interface names for regular/external BATMAN instance
  410. # and possible VEth link pair for connecting both instances.
  411. bat_site_if = "bat-%s" % site
  412. dummy_site_if = "dummy-%s" % site
  413. bat_site_if_ext = "bat-%s-ext" % site
  414. dummy_site_if_ext = "dummy-%s-e" % site
  415. int2ext_site_if = "i2e-%s" % site
  416. ext2int_site_if = "e2i-%s" % site
  417. site_ifaces = {
  418. # Regular BATMAN interface, always present
  419. bat_site_if : {
  420. 'type' : 'batman',
  421. # int2ext_site_if will be added automagically if requred
  422. 'batman-ifaces' : [ dummy_site_if ],
  423. 'batman-ifaces-ignore-regex': '.*_.*',
  424. 'hwaddress' : gen_batman_iface_mac (site_no, device_no, 'bat'),
  425. },
  426. # Dummy interface always present in regular BATMAN instance
  427. dummy_site_if : {
  428. 'link-type' : 'dummy',
  429. 'hwaddress' : gen_batman_iface_mac (site_no, device_no, 'dummy'),
  430. 'mtu' : MTU['batman_underlay_iface'],
  431. },
  432. # Optional 2nd "external" BATMAN instance
  433. bat_site_if_ext : {
  434. 'type' : 'batman',
  435. 'batman-ifaces' : [ dummy_site_if_ext, ext2int_site_if ],
  436. 'batman-ifaces-ignore-regex': '.*_.*',
  437. 'hwaddress' : gen_batman_iface_mac (site_no, device_no, 'bat-e'),
  438. 'ext_only' : True,
  439. },
  440. # Optional dummy interface always present in 2nd "external" BATMAN instance
  441. dummy_site_if_ext : {
  442. 'link-type' : 'dummy',
  443. 'hwaddress' : gen_batman_iface_mac (site_no, device_no, 'dummy-e'),
  444. 'ext_only' : True,
  445. 'mtu' : MTU['batman_underlay_iface'],
  446. },
  447. # Optional VEth interface pair - internal side
  448. int2ext_site_if : {
  449. 'link-type' : 'veth',
  450. 'veth-peer-name' : ext2int_site_if,
  451. 'hwaddress' : gen_batman_iface_mac (site_no, device_no, 'int2ext'),
  452. 'mtu' : MTU['batman_underlay_iface'],
  453. 'ext_only' : True,
  454. },
  455. # Optional VEth interface pair - "external" side
  456. ext2int_site_if : {
  457. 'link-type' : 'veth',
  458. 'veth-peer-name' : int2ext_site_if,
  459. 'hwaddress' : gen_batman_iface_mac (site_no, device_no, 'ext2int'),
  460. 'mtu' : MTU['batman_underlay_iface'],
  461. 'ext_only' : True,
  462. },
  463. }
  464. for iface, iface_config_tmpl in site_ifaces.items ():
  465. # Ignore any interface only relevant when role batman_ext is set
  466. # but it isn't
  467. if not batman_ext and iface_config_tmpl.get ('ext_only', False):
  468. continue
  469. # Remove ext_only key so we don't leak it into ifaces dict
  470. if 'ext_only' in iface_config_tmpl:
  471. del iface_config_tmpl['ext_only']
  472. # If there is no trace of the desired iface config yet...
  473. if iface not in ifaces:
  474. # ... just place our template there.
  475. ifaces[iface] = iface_config_tmpl
  476. # If there should be an 2nd external BATMAN instance make sure
  477. # the internal side of the VEth iface pair is connected to the
  478. # internal BATMAN instance.
  479. if batman_ext and iface == bat_site_if:
  480. iface_config_tmpl['batman-ifaces'].append (int2ext_site_if)
  481. # If there already is an interface configuration try to enhance it with
  482. # meaningful values from our template and force correct hwaddress to be
  483. # used.
  484. else:
  485. iface_config = ifaces[iface]
  486. # Force hwaddress to be what we expect.
  487. if 'hwaddress' in iface_config_tmpl:
  488. iface_config['hwaddress'] = iface_config_tmpl['hwaddress']
  489. # Copy every attribute of the config template missing in iface config
  490. for attr in iface_config_tmpl:
  491. if attr not in iface_config:
  492. iface_config[attr] = iface_config_tmpl[attr]
  493. # Configure bat_site_if to be part of br-<site>, if present
  494. site_bridge = "br-%s" % site
  495. if site_bridge in ifaces:
  496. bridge_config = ifaces.get (site_bridge)
  497. bridge_ports = bridge_config.get ('bridge-ports', None)
  498. # There are bridge-ports configured already, but bat_site_if is not present
  499. if bridge_ports and bat_site_if not in bridge_ports:
  500. if type (bridge_ports) == list:
  501. bridge_ports.append (bat_site_if)
  502. else:
  503. bridge_config['bridge-ports'] += ' ' + bat_site_if
  504. # There are no bridge-ports configured
  505. if not bridge_ports:
  506. bridge_config['bridge-ports'] = bat_site_if
  507. # Make sure there is a bridge present for every site where a mesh_breakout
  508. # interface should be configured.
  509. for iface in list (ifaces.keys ()):
  510. config = ifaces.get (iface)
  511. iface_type = config.get ('type', 'inet')
  512. if iface_type not in ['mesh_breakout', 'batman_iface']:
  513. continue
  514. site = config.get ('site')
  515. site_bridge = "br-%s" % site
  516. batman_site_if = "bat-%s" % site
  517. if iface_type == 'mesh_breakout':
  518. # If the bridge has already been defined (with an IP maybe) make
  519. # sure that the corresbonding batman device is part of the bridge-
  520. # ports.
  521. if site_bridge in ifaces:
  522. bridge_config = ifaces.get (site_bridge)
  523. # If there already is/are (a) bridge-port(s) defined, add
  524. # the batman and the breakout interfaces if not present...
  525. bridge_ports = bridge_config.get ('bridge-ports', None)
  526. if bridge_ports:
  527. for dev in (batman_site_if, iface):
  528. if not dev in bridge_ports:
  529. if type (bridge_ports) == list:
  530. bridge_ports.append (dev)
  531. else:
  532. bridge_config['bridge-ports'] += ' ' + dev
  533. # ...if there is no bridge-port defined yet, just used
  534. # the batman and breakout iface.
  535. else:
  536. bridge_config['bridge-ports'] = [ iface, batman_site_if ]
  537. # If the bridge isn't present alltogether, add it.
  538. else:
  539. ifaces[site_bridge] = {
  540. 'bridge-ports' : [ iface, batman_site_if ],
  541. }
  542. elif iface_type == 'batman_iface':
  543. batman_ifaces = ifaces[batman_site_if]['batman-ifaces']
  544. if iface not in batman_ifaces:
  545. if type (batman_ifaces) == list:
  546. batman_ifaces.append (iface)
  547. else:
  548. batman_ifaces += ' ' + iface
  549. # Use the MTU configured for this interface or, if none is set,
  550. # the default value for batman underlay iface.
  551. mtu = config.get('mtu', MTU['batman_underlay_iface'])
  552. _set_mtu_to_iface_and_upper (ifaces, iface, mtu)
  553. #
  554. # Generate any implicitly defined VXLAN interfaces defined in the nodes iface
  555. # defined in pillar.
  556. # The keyword "batman_connect_sites" on an interface will trigger the
  557. # generation of a VXLAN overlay interfaces.
  558. def _generate_vxlan_interface_config (node_config, ifaces, sites_config):
  559. # No role 'batman', nothing to do
  560. if 'batman' not in node_config.get ('roles', []):
  561. return
  562. # Sites configured on this node. Nothing to do, if none.
  563. my_sites = node_config.get ('sites', [])
  564. if len (my_sites) == 0:
  565. return
  566. # As we're still here we can now safely assume that a B.A.T.M.A.N.
  567. # device has been configured for every site specified in sites list.
  568. device_no = node_config.get ('id', -1)
  569. for iface in list (ifaces.keys ()):
  570. iface_config = ifaces.get (iface)
  571. batman_connect_sites = iface_config.get ('batman_connect_sites', [])
  572. iface_has_prefixes = len (iface_config.get ('prefixes', {})) != 0
  573. # If we got a string, convert it to a list with a single element
  574. if type (batman_connect_sites) == str:
  575. batman_connect_sites = [ batman_connect_sites ]
  576. # If the list of sites to connect is empty, there's nothing to do here.
  577. if len (batman_connect_sites) == 0:
  578. continue
  579. # Set the MTU of this (probably) VLAN device to the MTU required for a VXLAN underlay
  580. # device, where B.A.T.M.A.N. adv. is to be expected within the VXLAN overlay.
  581. _set_mtu_to_iface_and_upper (ifaces, iface, MTU['vxlan_underlay_iface'])
  582. # If the string 'all' is part of the list, blindly use all sites configured for this node
  583. if 'all' in batman_connect_sites:
  584. batman_connect_sites = my_sites
  585. for site in batman_connect_sites:
  586. # Silenty ignore sites not configured on this node
  587. if site not in my_sites:
  588. continue
  589. # iface_name := vx_<last 5 chars of underlay iface>_<site> stripped to 15 chars
  590. vx_iface = ("vx_%s_%s" % (re.sub ('vlan', 'v', iface)[-5:], re.sub (r'[_-]', '', site)))[:15]
  591. site_no = _get_site_no (sites_config, site)
  592. bat_iface = "bat-%s" % site
  593. # If there's no batman interface for this site, there's no point
  594. # in setting up a VXLAN interfaces
  595. if bat_iface not in ifaces:
  596. continue
  597. # bail out if VXLAN tunnel already configured
  598. if vx_iface in ifaces:
  599. continue
  600. try:
  601. iface_id = int (re.sub ('vlan', '', iface))
  602. # Gather interface specific mcast address.
  603. # The address is derived from the vlan-id of the underlying interface,
  604. # assuming that it in fact is a vlan interface.
  605. # Mangle the vlan-id into two 2 digit values, eliminating any leading zeros.
  606. iface_id_4digit = "%04d" % iface_id
  607. octet2 = int (iface_id_4digit[0:2])
  608. octet3 = int (iface_id_4digit[2:4])
  609. vni = octet2 * 256 * 256 + octet3 * 256 + site_no
  610. vtep_config = {
  611. 'vxlan-id' : vni,
  612. 'vxlan-physdev' : iface,
  613. }
  614. # If there are prefixes configured on this underlay interface go for legacy IPv4 Multicast (for now)
  615. if iface_has_prefixes:
  616. vtep_config['vxlan-svcnodeip'] = "225.%s.%s.%s" % (octet2, octet3, site_no)
  617. else:
  618. vtep_config['vxlan-remote-group'] = "ff42:%s::%s" % (iface_id, site_no)
  619. except ValueError as v:
  620. vtep_config = {
  621. 'vxlan-config-error' : str (v),
  622. }
  623. iface_id = 9999
  624. mcast_ip = "225.0.0.%s" % site_no
  625. vni = site_no
  626. # Add the VXLAN interface
  627. ifaces[vx_iface] = {
  628. 'vxlan' : vtep_config,
  629. 'hwaddress' : gen_batman_iface_mac (site_no, device_no, iface_id),
  630. 'mtu' : MTU['batman_underlay_iface'],
  631. }
  632. iface_penalty = get_batman_iface_penalty (iface)
  633. if iface_penalty:
  634. ifaces[vx_iface]['batman'] = {
  635. 'batman-hop-penalty' : iface_penalty
  636. }
  637. # If the batman interface for this site doesn't have any interfaces
  638. # set up - which basicly cannot happen - add this VXLAN tunnel as
  639. # the first in the list.
  640. if not 'batman-ifaces' in ifaces[bat_iface]:
  641. ifaces[bat_iface]['batman-ifaces'] = [ vx_iface ]
  642. continue
  643. # In the hope there already are interfaces for batman set up already
  644. # add this VXLAN tunnel to the list
  645. batman_ifaces = ifaces[bat_iface]['batman-ifaces']
  646. if vx_iface not in batman_ifaces:
  647. if type (batman_ifaces) == list:
  648. batman_ifaces.append (vx_iface)
  649. else:
  650. batman_ifaces += ' ' + vx_iface
  651. #
  652. # Generate implicitly defined VRFs according to the vrf_info dict at the top
  653. # of this file
  654. def _generate_vrfs (ifaces):
  655. for iface in list (ifaces.keys ()):
  656. iface_config = ifaces.get (iface)
  657. vrf = iface_config.get ('vrf', None)
  658. if vrf and vrf not in ifaces:
  659. conf = vrf_info.get (vrf, {})
  660. table = conf.get ('table', 1234)
  661. fwmark = conf.get ('fwmark', None)
  662. ifaces[vrf] = {
  663. 'vrf-table' : table,
  664. }
  665. # Create ip rule's for any fwmarks defined
  666. if fwmark:
  667. up = []
  668. # Make sure we are dealing with a list even if there is only one mark to be set up
  669. if type (fwmark) in (str, int):
  670. fwmark = [ fwmark ]
  671. # Create ip rule entries for IPv4 and IPv6 for every fwmark
  672. for mark in fwmark:
  673. up.append ("ip rule add fwmark %s table %s" % (mark, table))
  674. up.append ("ip -6 rule add fwmark %s table %s" % (mark, table))
  675. ifaces[vrf]['up'] = up
  676. def _generate_ffrl_gre_tunnels (ifaces):
  677. for iface, iface_config in ifaces.items ():
  678. # We only care for GRE_FFRL type interfaces
  679. if iface_config.get ('type', '') != 'GRE_FFRL':
  680. continue
  681. # Copy default values to interface config
  682. for attr, val in GRE_FFRL_attrs.items ():
  683. if not attr in iface_config:
  684. iface_config[attr] = val
  685. # Guesstimate local IPv4 tunnel endpoint address from tunnel-physdev
  686. if not 'local' in iface_config and 'tunnel-physdev' in iface_config:
  687. try:
  688. physdev_prefixes = [p.split ('/')[0] for p in ifaces[iface_config['tunnel-physdev']]['prefixes'] if '.' in p]
  689. if len (physdev_prefixes) == 1:
  690. iface_config['local'] = physdev_prefixes[0]
  691. except KeyError:
  692. pass
  693. def _generate_loopback_ips (ifaces, node_config, node_id):
  694. # If this node has primary_ips set and filled there are either IPs
  695. # configured on lo or IPs on another interface - possibly ones on
  696. # the only interface present - are considered as primary IPs.
  697. if node_config.get ('primary_ips', False):
  698. return
  699. v4_ip = "%s/32" % get_primary_ip (node_config, 'v4').ip
  700. v6_ip = "%s/128" % get_primary_ip (node_config, 'v6').ip
  701. # Interface lo already present?
  702. if 'lo' not in ifaces:
  703. ifaces['lo'] = { 'prefixes' : [] }
  704. # Add 'prefixes' list if not present
  705. if 'prefixes' not in ifaces['lo']:
  706. ifaces['lo']['prefixes'] = []
  707. prefixes = ifaces['lo']['prefixes']
  708. if v4_ip not in prefixes:
  709. prefixes.append (v4_ip)
  710. if v6_ip not in prefixes:
  711. prefixes.append (v6_ip)
  712. # Generate interface descriptions / aliases for auto generated or manually
  713. # created interfaces. Currently this only is done for bridges associated
  714. # with BATMAN instanzes.
  715. #
  716. # @param node_config: The configuration of the given node (as dict)
  717. # @param sites_config Global sites configuration (as dict)
  718. def _update_interface_desc (node_config, sites_config):
  719. # Currently we only care for nodes with batman role.
  720. if 'batman' not in node_config.get ('roles', []):
  721. return
  722. for iface, iface_config in node_config.get ('ifaces', {}).items ():
  723. if 'desc' in sites_config:
  724. continue
  725. # If the interface name looks like a bridge for a BATMAN instance
  726. # try to get the name of the corresponding site
  727. match = re.search (r'^br-([a-z_-]+)$', iface)
  728. if match and match.group (1) in sites_config:
  729. try:
  730. iface_config['desc'] = sites_config[match.group (1)]['name']
  731. except KeyError:
  732. pass
  733. ################################################################################
  734. # Public functions #
  735. ################################################################################
  736. # Generate network interface configuration for given node.
  737. #
  738. # This function will read the network configuration from pillar and will
  739. # * enhance it with all default values configured at the top this file
  740. # * auto generate any implicitly configured
  741. # * VRFs
  742. # * B.A.T.M.A.N. instances and interfaces
  743. # * VXLAN interfaces to connect B.A.T.M.A.N. sites
  744. # * Loopback IPs derived from numeric node ID
  745. #
  746. # @param: node_config Pillar node configuration (as dict)
  747. # @param: sites_config Pillar sites configuration (as dict)
  748. # @param: node_id Minion name / Pillar node configuration key
  749. def get_interface_config (node_config, sites_config, node_id = ""):
  750. # Make a copy of the node_config dictionary to suppress side-effects.
  751. # This function deletes some keys from the node_config which will break
  752. # any re-run of this function or other functions relying on the node_config
  753. # to be complete.
  754. node_config = deepcopy (node_config)
  755. # Get config of this node and dict of all configured ifaces
  756. ifaces = node_config.get ('ifaces', {})
  757. # Generate configuration entries for any batman related interfaces not
  758. # configured explicitly, but asked for implicitly by role <batman> and
  759. # a (list of) site(s) specified in the node config.
  760. _generate_batman_interface_config (node_config, ifaces, sites_config)
  761. # Generate VXLAN tunnels for every interfaces specifying 'batman_connect_sites'
  762. _generate_vxlan_interface_config (node_config, ifaces, sites_config)
  763. # Enhance ifaces configuration with some meaningful defaults for
  764. # bonding, bridge and vlan interfaces, MAC address for batman ifaces, etc.
  765. for interface in list (ifaces.keys ()):
  766. config = ifaces.get (interface)
  767. iface_type = config.get ('type', 'inet')
  768. # Remove any disable interfaces here as they aren't relevant for /e/n/i
  769. if config.get ('enabled', True) == False:
  770. del ifaces[interface]
  771. continue
  772. # Ignore interfaces used for PPPoE
  773. if 'pppoe' in config.get ('tags', []):
  774. del ifaces[interface]
  775. continue
  776. if 'batman-ifaces' in config or iface_type.startswith ('batman'):
  777. _update_batman_config (node_config, interface, sites_config)
  778. if 'bond-slaves' in config:
  779. _update_bond_config (config)
  780. # FIXME: This maybe will not match on bridges without any member ports configured!
  781. if 'bridge-ports' in config or interface.startswith ('br-'):
  782. _update_bridge_config (config)
  783. if 'bridge-member' in config:
  784. _update_bridge_member_config (config)
  785. if 'vlan-raw-device' in config or 'vlan-id' in config:
  786. _update_vlan_config (config)
  787. _set_mtu_to_iface_and_upper (ifaces, interface, 0)
  788. # Pimp configuration for VEth link pairs
  789. if interface.startswith ('veth_'):
  790. _update_veth_config (interface, config)
  791. # Auto generate Loopback IPs IFF not present
  792. _generate_loopback_ips (ifaces, node_config, node_id)
  793. # Auto generated VRF devices for any VRF found in ifaces and not already configured.
  794. _generate_vrfs (ifaces)
  795. # Pimp GRE_FFRL type inteface configuration with default values
  796. _generate_ffrl_gre_tunnels (ifaces)
  797. # Drop any config parameters used in node interface configuration not
  798. # relevant anymore for config file generation.
  799. for interface, config in ifaces.items ():
  800. # Set default MTU if not already set manually or by any earlier function
  801. if interface != 'lo' and ('mtu' not in config):
  802. # Set the MTU value of this interface to the autogenerated value (if any)
  803. # or set the default, when no automtu is present.
  804. config['mtu'] = config.get ('automtu', MTU['default'])
  805. for key in [ 'automtu', 'enabled', 'batman_connect_sites', 'bridge-member', 'has_gateway', 'ospf', 'site', 'type', 'tagged_vlans', 'vlan-mode' ]:
  806. if key in config:
  807. config.pop (key)
  808. # Remove route metric on non-router nodes
  809. if 'metric' in config and not 'router' in node_config.get ('roles', []):
  810. config.pop ('metric')
  811. # This leaves 'auto', 'prefixes' and 'desc' as keys which should not be directly
  812. # printed into the remaining configuration. These are handled within the jinja
  813. # interface template.
  814. # Generate meaningful interface descriptions / aliases where useful
  815. _update_interface_desc (node_config, sites_config)
  816. return ifaces
  817. vlan_vxlan_iface_re = re.compile (r'^vlan(\d+)|^vx_v(\d+)_(\w+)')
  818. def _iface_sort (iface_a, iface_b):
  819. a = vlan_vxlan_iface_re.search (iface_a)
  820. b = vlan_vxlan_iface_re.search (iface_b)
  821. # At least one interface didn't match, do regular comparison
  822. if not a or not b:
  823. return ffho.cmp (iface_a, iface_b)
  824. # Extract VLAN ID from VLAN interface (if given) or VXLAN
  825. vid_a = a.group (1) if a.group (1) else a.group (2)
  826. vid_b = b.group (1) if b.group (1) else b.group (2)
  827. # If it's different type of interfaces (one VLAN, one VXLAN), do regular comparison
  828. if (a.group (1) == None) != (b.group (1) == None):
  829. return ffho.cmp (iface_a, iface_b)
  830. # Ok, t's two VLAN or two VXLAN interfaces
  831. # If it's VXLAN interfaces and the VLAN ID is the same, sort by site name
  832. if a.group (2) and vid_a == vid_b:
  833. return ffho.cmp (a.groups (2), b.groups (2))
  834. # If it's two VLANs or two VXLANs with different VLAN IDs, sort by VLAN ID
  835. else:
  836. return ffho.cmp (int (vid_a), int (vid_b))
  837. def get_interface_list (ifaces):
  838. iface_list = []
  839. for iface in sorted (ifaces.keys (), key = cmp_to_key (_iface_sort)):
  840. iface_list.append (iface)
  841. return iface_list
  842. # Generate entries for /etc/bat-hosts for every batman interface we will configure on any node.
  843. # For readability purposes superflous/redundant information is being stripped/supressed.
  844. # As these names will only show up in batctl calls with a specific site, site_names in interfaces
  845. # are stripped. Dummy interfaces are stripped as well.
  846. def gen_bat_hosts (nodes_config, sites_config):
  847. bat_hosts = {}
  848. for node_id in sorted (nodes_config.keys ()):
  849. node_config = nodes_config.get (node_id)
  850. node_name = node_id.split ('.')[0]
  851. if 'batman' not in node_config['roles']:
  852. continue
  853. ifaces = get_interface_config (node_config, sites_config, node_id)
  854. for iface in sorted (ifaces):
  855. iface_config = ifaces.get (iface)
  856. hwaddress = iface_config.get ('hwaddress', None)
  857. if hwaddress == None:
  858. continue
  859. entry_name = node_name
  860. match = re.search (r'^dummy-(.+)(-e)?$', iface)
  861. if match:
  862. if match.group (2):
  863. entry_name += "-e"
  864. # Append site to make name unique
  865. entry_name += "/%s" % match.group (1)
  866. else:
  867. entry_name += "/%s" % re.sub (r'^(vx_.*|i2e|e2i)[_-](.*)$', '\g<1>/\g<2>', iface)
  868. bat_hosts[hwaddress] = entry_name
  869. if 'fastd' in node_config.get ('roles', []):
  870. device_no = node_config.get ('id')
  871. for site in node_config.get ('sites', []):
  872. site_no = _get_site_no (sites_config, site)
  873. for network in ('intergw', 'nodes4', 'nodes6'):
  874. hwaddress = gen_batman_iface_mac (site_no, device_no, network)
  875. bat_hosts[hwaddress] = "%s/%s/%s" % (node_name, network, site)
  876. return bat_hosts
  877. # Return the appropriate hop penalty to configure for the given interface.
  878. def get_batman_iface_penalty (iface):
  879. if iface.startswith ('vlan'):
  880. vid = int (re.sub ('vlan', '', iface))
  881. if 2000 <= vid < 2100:
  882. return default_batman_iface_penalty_by_role.get ('WBBL')
  883. if 2200 <= vid < 2300:
  884. return default_batman_iface_penalty_by_role.get ('WBBL_backup')
  885. if 'intergw' in iface:
  886. return default_batman_iface_penalty_by_role.get ('VPN_intergw')
  887. if 'nodes' in iface:
  888. return default_batman_iface_penalty_by_role.get ('VPN_node')
  889. return default_batman_iface_penalty_by_role.get ('default', 0)
  890. # Generate eBGP session parameters for FFRL Transit from nodes pillar information.
  891. def get_ffrl_bgp_config (ifaces, proto):
  892. _generate_ffrl_gre_tunnels (ifaces)
  893. sessions = {}
  894. for iface in sorted (ifaces):
  895. # We only care for GRE tunnels to the FFRL Backbone
  896. if not iface.startswith ('gre_ffrl_'):
  897. continue
  898. iface_config = ifaces.get (iface)
  899. # Search for IPv4/IPv6 prefix as defined by proto parameter
  900. local = None
  901. neighbor = None
  902. for prefix in iface_config.get ('prefixes', []):
  903. if (proto == 'v4' and '.' in prefix) or (proto == 'v6' and ':' in prefix):
  904. local = prefix.split ('/')[0]
  905. # Calculate neighbor IP as <local IP> - 1
  906. neighbor = str (ipaddress.ip_address (u'%s' % local) - 1)
  907. break
  908. # Strip gre_ prefix iface name and use it as identifier for the eBGP session.
  909. name = re.sub ('gre_ffrl_', 'ffrl_', iface)
  910. sessions[name] = {
  911. 'local' : local,
  912. 'neighbor' : neighbor,
  913. 'bgp_local_pref' : iface_config.get ('bgp_local_pref', None),
  914. }
  915. return sessions
  916. # Get list of IP address configured on given interface on given node.
  917. #
  918. # @param: node_config Pillar node configuration (as dict)
  919. # @param: iface_name Name of the interface defined in pillar node config
  920. # OR name of VRF ("vrf_<something>") whichs ifaces are
  921. # to be examined.
  922. # @param: with_mask Don't strip the netmask from the prefix. (Default false)
  923. def get_node_iface_ips (node_config, iface_name, with_mask = False):
  924. ips = {
  925. 'v4' : [],
  926. 'v6' : [],
  927. }
  928. ifaces = node_config.get ('ifaces', {})
  929. ifaces_names = [ iface_name ]
  930. if iface_name.startswith ('vrf_'):
  931. # Reset list of ifaces_names to consider
  932. ifaces_names = []
  933. vrf = iface_name
  934. for iface, iface_config in ifaces.items ():
  935. # Ignore any iface NOT in the given VRF
  936. if iface_config.get ('vrf', None) != vrf:
  937. continue
  938. # Ignore any VEth pairs
  939. if iface.startswith ('veth'):
  940. continue
  941. ifaces_names.append (iface)
  942. try:
  943. for iface in ifaces_names:
  944. for prefix in ifaces[iface]['prefixes']:
  945. ip_ver = 'v6' if ':' in prefix else 'v4'
  946. if not with_mask:
  947. prefix = prefix.split ('/')[0]
  948. ips[ip_ver].append (prefix)
  949. except KeyError:
  950. pass
  951. return ips
  952. #
  953. # Get the primary IP(s) of the given node
  954. #
  955. # @param node_config: Pillar node configuration (as dict)
  956. # @param af: Address family
  957. def get_primary_ip (node_config, af):
  958. # Compatility glue
  959. if 'primary_ips' not in node_config:
  960. return Prefix ("%s%s" % (loopback_prefix[af], node_config['id']))
  961. return Prefix (node_config['primary_ips'][af])
  962. #
  963. # Get the router id (read: IPv4 Lo-IP) out of the given node config.
  964. def get_router_id (node_config, node_id):
  965. return get_primary_ip (node_config, 'v4').ip
  966. # Compute minions OSPF interface configuration according to FFHO routing policy
  967. # See https://wiki.ffho.net/infrastruktur:vlans for information about Vlans
  968. #
  969. # Costs are based on the following reference values:
  970. #
  971. # Iface speed | Cost
  972. # ------------+---------
  973. # 100 Gbit/s | 1
  974. # 40 Gbit/s | 2
  975. # 25 Gbit/s | 4
  976. # 20 Gbit/s | 5
  977. # 10 Gbit/s | 10
  978. # 1 Gbit/s | 100
  979. # 100 Mbit/s | 1000
  980. # VPN | 10000
  981. #
  982. def get_ospf_config (node_config, grains_id):
  983. ospf_config = {
  984. # <area> : {
  985. # <iface> : {
  986. # config ...
  987. # }
  988. # }
  989. }
  990. for iface, iface_config in node_config.get ('ifaces', {}).items ():
  991. # By default we don't speak OSPF on interfaces
  992. ospf_on = False
  993. area = 0
  994. # Defaults for OSPF interfaces
  995. ospf_iface_cfg = {
  996. 'stub' : True, # Active/Passive interface
  997. 'cost' : 12345,
  998. # 'type' # Area type
  999. }
  1000. # OSPF configuration for interface present?
  1001. ospf_iface_cfg_pillar = iface_config.get ('ospf', {})
  1002. # Should be completely ignore this interface?
  1003. if ospf_iface_cfg_pillar.get ('ignore', False):
  1004. continue
  1005. # Ignore interfaces without any IPs configured
  1006. if not iface_config.get ('prefixes'):
  1007. continue
  1008. # If this interface is within a (non-default) VRF, don't OSPF here
  1009. if iface_config.get ('vrf'):
  1010. continue
  1011. # Wireless Local Links (WLL)
  1012. if re.search (r'^vlan90\d$', iface):
  1013. ospf_on = True
  1014. ospf_iface_cfg['stub'] = True
  1015. ospf_iface_cfg['cost'] = 10
  1016. ospf_iface_cfg['desc'] = "Wireless Local Link (WLL)"
  1017. # Local Gigabit Ethernet based connections (PTP or L2 subnets), cost 10
  1018. elif re.search (r'^(br-?|br\d+\.|vlan)10\d\d$', iface):
  1019. ospf_on = True
  1020. ospf_iface_cfg['stub'] = False
  1021. ospf_iface_cfg['cost'] = 100
  1022. ospf_iface_cfg['desc'] = "Wired Gigabit connection"
  1023. # 10/20 Gbit/s Dark Fiber connection
  1024. elif re.search (r'^vlan12\d\d$', iface):
  1025. ospf_on = True
  1026. ospf_iface_cfg['stub'] = False
  1027. ospf_iface_cfg['cost'] = 10
  1028. ospf_iface_cfg['desc'] = "Wired 10Gb/s connection"
  1029. # VLL connection
  1030. elif re.search (r'^vlan15\d\d$', iface):
  1031. ospf_on = True
  1032. ospf_iface_cfg['stub'] = False
  1033. ospf_iface_cfg['cost'] = 200
  1034. ospf_iface_cfg['desc'] = "VLL connection"
  1035. # WBBL connection
  1036. elif re.search (r'^vlan20\d\d$', iface):
  1037. ospf_on = True
  1038. ospf_iface_cfg['stub'] = False
  1039. ospf_iface_cfg['cost'] = 1000
  1040. ospf_iface_cfg['desc'] = "WBBL connection"
  1041. # Legacy WBBL connection
  1042. elif re.search (r'^vlan22\d\d$', iface):
  1043. ospf_on = True
  1044. ospf_iface_cfg['stub'] = False
  1045. ospf_iface_cfg['cost'] = 1000
  1046. ospf_iface_cfg['desc'] = "WBBL connection"
  1047. # Management Vlans
  1048. elif re.search (r'^vlan30\d\d$', iface):
  1049. ospf_on = True
  1050. ospf_iface_cfg['stub'] = True
  1051. ospf_iface_cfg['cost'] = 10
  1052. # Management X-Connects
  1053. elif re.search (r'^vlan32\d\d$', iface):
  1054. ospf_on = True
  1055. ospf_iface_cfg['stub'] = False
  1056. ospf_iface_cfg['cost'] = 10
  1057. ospf_iface_cfg['AF'] = 4
  1058. area = 51
  1059. # OPS Vlans
  1060. elif re.search (r'^vlan39\d\d$', iface):
  1061. ospf_on = True
  1062. ospf_iface_cfg['stub'] = True
  1063. ospf_iface_cfg['cost'] = 10
  1064. # Active OSPF on OpenVPN tunnels, cost 10000
  1065. elif iface.startswith ('ovpn-'):
  1066. ospf_on = True
  1067. ospf_iface_cfg['stub'] = False
  1068. ospf_iface_cfg['cost'] = 10000
  1069. # Inter-Core links should have cost 5000
  1070. if iface.startswith ('ovpn-cr') and grains_id.startswith ('cr'):
  1071. ospf_iface_cfg['cost'] = 5000
  1072. # OpenVPN tunnels to EdgeRouters
  1073. elif iface.startswith ('ovpn-er-'):
  1074. ospf_iface_cfg['type'] = 'broadcast'
  1075. # Active OSPF on Wireguard tunnels, cost 10000
  1076. elif iface.startswith ('wg-'):
  1077. ospf_on = True
  1078. ospf_iface_cfg['stub'] = False
  1079. ospf_iface_cfg['cost'] = 10000
  1080. # Inter-Core links should have cost 5000
  1081. if iface.startswith ('wg-cr') and grains_id.startswith ('cr'):
  1082. ospf_iface_cfg['cost'] = 5000
  1083. # OSPF explicitly enabled for interface
  1084. elif 'ospf' in iface_config:
  1085. ospf_on = True
  1086. # iface ospf parameters will be applied later
  1087. # Go on if OSPF should not be actived
  1088. if not ospf_on:
  1089. continue
  1090. # Explicit OSPF interface configuration parameters take precendence over generated ones
  1091. for attr, val in ospf_iface_cfg_pillar.items ():
  1092. ospf_iface_cfg[attr] = val
  1093. # Store interface configuration
  1094. if area not in ospf_config:
  1095. ospf_config[area] = {}
  1096. ospf_config[area][iface] = ospf_iface_cfg
  1097. return ospf_config
  1098. # Return (possibly empty) subset of Traffic Engineering entries from 'te' pillar entry
  1099. # relevenant for this minion and protocol (IPv4 / IPv6)
  1100. def get_te_prefixes (te_node_config, grains_id, proto):
  1101. te_config = {}
  1102. for prefix, prefix_config in te_node_config.get ('prefixes', {}).items ():
  1103. prefix_proto = 'v6' if ':' in prefix else 'v4'
  1104. # Should this TE policy be applied on this node and is the prefix
  1105. # of the proto we are looking for?
  1106. if grains_id in prefix_config.get ('nodes', []) and prefix_proto == proto:
  1107. te_config[prefix] = prefix_config
  1108. return te_config
  1109. def generate_DNS_entries (nodes_config, sites_config):
  1110. forward_zone_name = ""
  1111. forward_zone = []
  1112. zones = {
  1113. # <forward_zone_name>: [],
  1114. # <rev_zone1_name>: [],
  1115. # <rev_zone2_name>: [],
  1116. # ...
  1117. }
  1118. # Fill zones dict with zones configured in DNS_zone_names at the top of this file.
  1119. # Make sure the zone base names provided start with a leading . so the string
  1120. # operations later can be done easily and safely. Proceed with fingers crossed.
  1121. for entry, value in DNS_zone_names.items ():
  1122. if entry == "forward":
  1123. zone = value
  1124. if not zone.startswith ('.'):
  1125. zone = ".%s" % zone
  1126. zones[zone] = forward_zone
  1127. forward_zone_name = zone
  1128. if entry in [ 'rev_v4', 'rev_v6' ]:
  1129. for zone in value:
  1130. if not zone.startswith ('.'):
  1131. zone = ".%s" % zone
  1132. zones[zone] = []
  1133. # Process all interfaace of all nodes defined in pillar and generate forward
  1134. # and reverse entries for all zones defined in DNS_zone_names. Automagically
  1135. # put reverse entries into correct zone.
  1136. for node_id in sorted (nodes_config):
  1137. node_config = nodes_config.get (node_id)
  1138. ifaces = get_interface_config (node_config, sites_config, node_id)
  1139. for iface in sorted (ifaces):
  1140. iface_config = ifaces.get (iface)
  1141. # We only care for interfaces with IPs configured
  1142. prefixes = iface_config.get ("prefixes", None)
  1143. if prefixes == None:
  1144. continue
  1145. # Ignore any interface in $VRF
  1146. if iface_config.get ('vrf', "") in [ 'vrf_external' ]:
  1147. continue
  1148. for prefix in sorted (prefixes):
  1149. ip = ipaddress.ip_address (u'%s' % prefix.split ('/')[0])
  1150. proto = 'v%s' % ip.version
  1151. # The entry name is
  1152. # <node_id> when interface 'lo'
  1153. # <node_name>.srv.<residual> when interface 'srv' (or magically detected internal srv record)
  1154. # <interface>.<node_id> else
  1155. entry_name = node_id
  1156. if iface != "lo":
  1157. entry_name = "%s.%s" % (iface, node_id)
  1158. elif iface == 'srv' or re.search (r'^(10.132.251|2a03:2260:2342:f251:)', prefix):
  1159. entry_name = re.sub (r'^([^.]+)\.(.+)$', r'\g<1>.srv.\g<2>', entry_name)
  1160. # Strip forward zone name from entry_name and store forward entry
  1161. # with correct entry type for found IP address.
  1162. forward_entry_name = re.sub (forward_zone_name, "", entry_name)
  1163. forward_entry_name = re.sub (forward_zone_name, "", entry_name)
  1164. forward_entry_typ = "A" if ip.version == 4 else "AAAA"
  1165. forward_zone.append ("%s IN %s %s" % (forward_entry_name, forward_entry_typ, ip))
  1166. # Find correct reverse zone, if configured and strip reverse zone name
  1167. # from calculated reverse pointer name. Store reverse entry if we found
  1168. # a zone for it. If no configured reverse zone did match, this reverse
  1169. # entry will be ignored.
  1170. for zone in zones:
  1171. if ip.reverse_pointer.find (zone) > 0:
  1172. PTR_entry = re.sub (zone, "", ip.reverse_pointer)
  1173. zones[zone].append ("%s IN PTR %s." % (PTR_entry, entry_name))
  1174. break
  1175. return zones
  1176. # Convert the CIDR network from the given prefix into a dotted netmask
  1177. def cidr_to_dotted_mask (prefix):
  1178. return str (ipaddress.ip_network (prefix, strict = False).netmask)
  1179. def is_subprefix (prefix, subprefix):
  1180. p = ipaddress.ip_network (prefix, strict = False)
  1181. s = ipaddress.ip_network (subprefix, strict = False)
  1182. return s.subnet_of (p)
  1183. # Return the network address of the given prefix
  1184. def get_network_address (prefix, with_prefixlen = False):
  1185. net_h = ipaddress.ip_network (u'%s' % prefix, strict = False)
  1186. network = str (net_h.network_address)
  1187. if with_prefixlen:
  1188. network += "/%s" % net_h.prefixlen
  1189. return network