client.py 14 KB

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  1. #!/usr/bin/env python3
  2. import random # For simulation, not cryptography!
  3. import math
  4. import network
  5. import dirauth
  6. import relay
  7. import nacl.hash
  8. class VanillaCreatedExtendedHandler:
  9. """A handler for VanillaCreatedCircuitCell and
  10. VanillaExtendedCircuitCell cells."""
  11. def __init__(self, channelmgr, ntor, expecteddesc):
  12. self.channelmgr = channelmgr
  13. self.ntor = ntor
  14. self.expecteddesc = expecteddesc
  15. self.onionkey = expecteddesc.descdict['onionkey']
  16. self.idkey = expecteddesc.descdict['idkey']
  17. def received_cell(self, circhandler, cell):
  18. secret = self.ntor.verify(cell.ntor_reply, self.onionkey, self.idkey)
  19. enckey = nacl.hash.sha256(secret + b'upstream')
  20. deckey = nacl.hash.sha256(secret + b'downstream')
  21. circhandler.add_crypt_layer(enckey, deckey)
  22. if len(circhandler.circuit_descs) == 0:
  23. # This was a VanillaCreatedCircuitCell
  24. circhandler.replace_celltype_handler(
  25. relay.VanillaCreatedCircuitCell, None)
  26. else:
  27. # This was a VanillaExtendedCircuitCell
  28. circhandler.replace_celltype_handler(
  29. relay.VanillaExtendedCircuitCell, None)
  30. circhandler.circuit_descs.append(self.expecteddesc)
  31. # Are we done building the circuit?
  32. if len(circhandler.circuit_descs) == 3:
  33. # Yes!
  34. return
  35. nexthop = None
  36. while nexthop is None:
  37. nexthop = self.channelmgr.consensus.select_weighted_relay(
  38. self.channelmgr.consensus_cdf)
  39. if nexthop.descdict['addr'] in \
  40. [ desc.descdict['addr'] \
  41. for desc in circhandler.circuit_descs ]:
  42. nexthop = None
  43. # Construct the VanillaExtendCircuitCell
  44. ntor = relay.NTor(self.channelmgr.perfstats)
  45. ntor_request = ntor.request()
  46. circextendmsg = relay.VanillaExtendCircuitCell(
  47. nexthop.descdict['addr'], ntor_request)
  48. # Set up the reply handler
  49. circhandler.replace_celltype_handler(
  50. relay.VanillaExtendedCircuitCell,
  51. VanillaCreatedExtendedHandler(self.channelmgr, ntor, nexthop))
  52. # Send the cell
  53. circhandler.send_cell(circextendmsg)
  54. class ClientChannelManager(relay.ChannelManager):
  55. """The subclass of ChannelManager for clients."""
  56. def __init__(self, myaddr, dirauthaddrs, perfstats):
  57. super().__init__(myaddr, dirauthaddrs, perfstats)
  58. self.guardaddr = None
  59. self.guard = None
  60. if network.thenetwork.womode == network.WOMode.VANILLA:
  61. self.consensus_cdf = []
  62. def get_consensus_from_fallbackrelay(self):
  63. """Download a fresh consensus from a random fallbackrelay."""
  64. fb = random.choice(network.thenetwork.getfallbackrelays())
  65. self.send_msg(relay.RelayGetConsensusMsg(), fb.netaddr)
  66. def ensure_guard_vanilla(self):
  67. """Ensure that we have a channel to a guard (Vanilla Onion
  68. Routing version)."""
  69. while True:
  70. if self.guardaddr is None:
  71. # Pick a guard from the consensus
  72. self.guard = self.consensus.select_weighted_relay(self.consensus_cdf)
  73. self.guardaddr = self.guard.descdict['addr']
  74. # Connect to the guard
  75. try:
  76. self.get_channel_to(self.guardaddr)
  77. except network.NetNoServer:
  78. # Our guard is gone
  79. self.guardaddr = None
  80. self.guard = None
  81. if self.guardaddr is not None:
  82. break
  83. print('chose guard=', self.guardaddr)
  84. def ensure_guard(self):
  85. """Ensure that we have a channel to a guard."""
  86. if network.thenetwork.womode == network.WOMode.VANILLA:
  87. self.ensure_guard_vanilla()
  88. def new_circuit_vanilla(self):
  89. """Create a new circuit from this client. (Vanilla Onion Routing
  90. version)"""
  91. # Get our channel to the guard
  92. guardchannel = self.get_channel_to(self.guardaddr)
  93. # Allocate a new circuit id on it
  94. circid, circhandler = guardchannel.new_circuit()
  95. # Construct the VanillaCreateCircuitMsg
  96. ntor = relay.NTor(self.perfstats)
  97. ntor_request = ntor.request()
  98. circcreatemsg = relay.VanillaCreateCircuitMsg(circid, ntor_request)
  99. # Set up the reply handler
  100. circhandler.replace_celltype_handler(
  101. relay.VanillaCreatedCircuitCell,
  102. VanillaCreatedExtendedHandler(self, ntor, self.guard))
  103. # Send the message
  104. guardchannel.send_msg(circcreatemsg)
  105. return circhandler
  106. def new_circuit(self):
  107. """Create a new circuit from this client."""
  108. if network.thenetwork.womode == network.WOMode.VANILLA:
  109. return self.new_circuit_vanilla()
  110. def received_msg(self, msg, peeraddr, channel):
  111. """Callback when a NetMsg not specific to a circuit is
  112. received."""
  113. print("Client %s received msg %s from %s" % (self.myaddr, msg, peeraddr))
  114. if isinstance(msg, relay.RelayConsensusMsg) or \
  115. instance(msg, relay.RelayConsensusDiffMsg):
  116. dirauth.Consensus.verify(msg.consensus,
  117. network.thenetwork.dirauthkeys(), self.perfstats)
  118. self.consensus = msg.consensus
  119. if network.thenetwork.womode == network.WOMode.VANILLA:
  120. self.consensus_cdf = self.consensus.bw_cdf()
  121. else:
  122. return super().received_msg(msg, peeraddr, channel)
  123. def received_cell(self, circid, cell, peeraddr, channel):
  124. """Callback with a circuit-specific cell is received."""
  125. print("Client %s received cell on circ %d: %s from %s" % (self.myaddr, circid, cell, peeraddr))
  126. return super().received_cell(circid, cell, peeraddr, channel)
  127. class Client:
  128. """A class representing a Tor client."""
  129. def __init__(self, dirauthaddrs):
  130. # Get a network address for client-side use only (do not bind it
  131. # to the network)
  132. self.netaddr = network.NetAddr()
  133. self.perfstats = network.PerfStats(network.EntType.CLIENT)
  134. self.perfstats.name = "Client at %s" % self.netaddr
  135. self.perfstats.is_bootstrapping = True
  136. self.channelmgr = ClientChannelManager(self.netaddr, dirauthaddrs, self.perfstats)
  137. # Register for epoch tick notifications
  138. network.thenetwork.wantepochticks(self, True)
  139. def terminate(self):
  140. """Quit this client."""
  141. # Stop listening for epoch ticks
  142. network.thenetwork.wantepochticks(self, False)
  143. # Close relay connections
  144. self.channelmgr.terminate()
  145. def get_consensus(self):
  146. """Fetch a new consensus."""
  147. # We're going to want a new consensus from our guard. In order
  148. # to get that, we'll need a channel to our guard. In order to
  149. # get that, we'll need a guard address. In order to get that,
  150. # we'll need a consensus (uh, oh; in that case, fetch the
  151. # consensus from a fallback relay).
  152. guardaddr = self.channelmgr.guardaddr
  153. guardchannel = None
  154. if guardaddr is not None:
  155. try:
  156. guardchannel = self.channelmgr.get_channel_to(guardaddr)
  157. except network.NetNoServer:
  158. guardaddr = None
  159. if guardchannel is None:
  160. self.channelmgr.get_consensus_from_fallbackrelay()
  161. else:
  162. if self.channelmgr.consensus is not None and \
  163. len(self.channelmgr.consensus.consdict['relays']) > 0:
  164. guardchannel.send_msg(relay.RelayGetConsensusDiffMsg())
  165. else:
  166. guardchannel.send_msg(relay.RelayGetConsensusMsg())
  167. print('client consensus=', self.channelmgr.consensus)
  168. def newepoch(self, epoch):
  169. """Callback that fires at the start of each epoch"""
  170. # We'll need a new consensus
  171. self.get_consensus()
  172. # If we don't have a guard, pick one and make a channel to it
  173. self.channelmgr.ensure_guard()
  174. if __name__ == '__main__':
  175. perfstats = network.PerfStats(network.EntType.NONE)
  176. totsent = 0
  177. totrecv = 0
  178. dirasent = 0
  179. dirarecv = 0
  180. relaysent = 0
  181. relayrecv = 0
  182. clisent = 0
  183. clirecv = 0
  184. # Start some dirauths
  185. numdirauths = 9
  186. dirauthaddrs = []
  187. dirauths = []
  188. for i in range(numdirauths):
  189. dira = dirauth.DirAuth(i, numdirauths)
  190. dirauths.append(dira)
  191. dirauthaddrs.append(dira.netaddr)
  192. # Start some relays
  193. numrelays = 10
  194. relays = []
  195. for i in range(numrelays):
  196. # Relay bandwidths (at least the ones fast enough to get used)
  197. # in the live Tor network (as of Dec 2019) are well approximated
  198. # by (200000-(200000-25000)/3*log10(x)) where x is a
  199. # uniform integer in [1,2500]
  200. x = random.randint(1,2500)
  201. bw = int(200000-(200000-25000)/3*math.log10(x))
  202. relays.append(relay.Relay(dirauthaddrs, bw, 0))
  203. # The fallback relays are a hardcoded list of about 5% of the
  204. # relays, used by clients for bootstrapping
  205. numfallbackrelays = int(numrelays * 0.05) + 1
  206. fallbackrelays = random.sample(relays, numfallbackrelays)
  207. for r in fallbackrelays:
  208. r.set_is_fallbackrelay()
  209. network.thenetwork.setfallbackrelays(fallbackrelays)
  210. # Tick the epoch
  211. network.thenetwork.nextepoch()
  212. dirauth.Consensus.verify(dirauth.DirAuth.consensus, network.thenetwork.dirauthkeys(), perfstats)
  213. print('ticked; epoch=', network.thenetwork.getepoch())
  214. relays[3].channelmgr.send_msg(relay.RelayRandomHopMsg(30), relays[5].netaddr)
  215. # See what channels exist and do a consistency check
  216. for r in relays:
  217. print("%s: %s" % (r.netaddr, [ str(k) for k in r.channelmgr.channels.keys()]))
  218. raddr = r.netaddr
  219. for ad, ch in r.channelmgr.channels.items():
  220. if ch.peer.channelmgr.myaddr != ad:
  221. print('address mismatch:', raddr, ad, ch.peer.channelmgr.myaddr)
  222. if ch.peer.channelmgr.channels[raddr].peer is not ch:
  223. print('asymmetry:', raddr, ad, ch, ch.peer.channelmgr.channels[raddr].peer)
  224. # Start some clients
  225. numclients = 1
  226. clients = []
  227. for i in range(numclients):
  228. clients.append(Client(dirauthaddrs))
  229. # Tick the epoch
  230. network.thenetwork.nextepoch()
  231. # See what channels exist and do a consistency check
  232. for c in clients:
  233. print("%s: %s" % (c.netaddr, [ str(k) for k in c.channelmgr.channels.keys()]))
  234. caddr = c.netaddr
  235. for ad, ch in c.channelmgr.channels.items():
  236. if ch.peer.channelmgr.myaddr != ad:
  237. print('address mismatch:', caddr, ad, ch.peer.channelmgr.myaddr)
  238. if ch.peer.channelmgr.channels[caddr].peer is not ch:
  239. print('asymmetry:', caddr, ad, ch, ch.peer.channelmgr.channels[caddr].peer)
  240. # Pick a bunch of bw-weighted random relays and look at the
  241. # distribution
  242. for i in range(100):
  243. r = clients[0].channelmgr.consensus.select_weighted_relay(clients[0].channelmgr.consensus_cdf)
  244. print("relay",r.descdict["addr"])
  245. #relays[3].terminate()
  246. #relaysent += relays[3].perfstats.bytes_sent
  247. #relayrecv += relays[3].perfstats.bytes_received
  248. #del relays[3]
  249. # Tick the epoch
  250. network.thenetwork.nextepoch()
  251. circs = []
  252. for i in range(20):
  253. circ = clients[0].channelmgr.new_circuit()
  254. circs.append(circ)
  255. circ.send_cell(relay.StringCell("hello world circuit %d" % i))
  256. # Tick the epoch
  257. network.thenetwork.nextepoch()
  258. # See what channels exist and do a consistency check
  259. for r in relays:
  260. print("%s: %s" % (r.netaddr, [ str(k) + str([ck for ck in r.channelmgr.channels[k].circuithandlers.keys()]) for k in r.channelmgr.channels.keys()]))
  261. raddr = r.netaddr
  262. for ad, ch in r.channelmgr.channels.items():
  263. if ch.peer.channelmgr.myaddr != ad:
  264. print('address mismatch:', raddr, ad, ch.peer.channelmgr.myaddr)
  265. if ch.peer.channelmgr.channels[raddr].peer is not ch:
  266. print('asymmetry:', raddr, ad, ch, ch.peer.channelmgr.channels[raddr].peer)
  267. # See what channels exist and do a consistency check
  268. for c in clients:
  269. print("%s: %s" % (c.netaddr, [ str(k) + str([ck for ck in c.channelmgr.channels[k].circuithandlers.keys()]) for k in c.channelmgr.channels.keys()]))
  270. caddr = c.netaddr
  271. for ad, ch in c.channelmgr.channels.items():
  272. if ch.peer.channelmgr.myaddr != ad:
  273. print('address mismatch:', caddr, ad, ch.peer.channelmgr.myaddr)
  274. if ch.peer.channelmgr.channels[caddr].peer is not ch:
  275. print('asymmetry:', caddr, ad, ch, ch.peer.channelmgr.channels[caddr].peer)
  276. if ch.circuithandlers.keys() != \
  277. ch.peer.channelmgr.channels[caddr].circuithandlers.keys():
  278. print('circuit asymmetry:', caddr, ad, ch.peer.channelmgr.myaddr)
  279. for c in circs:
  280. c.close()
  281. for d in dirauths:
  282. print(d.perfstats)
  283. dirasent += d.perfstats.bytes_sent
  284. dirarecv += d.perfstats.bytes_received
  285. print("DirAuths sent=%s recv=%s" % (dirasent, dirarecv))
  286. totsent += dirasent
  287. totrecv += dirarecv
  288. for r in relays:
  289. print(r.perfstats)
  290. relaysent += r.perfstats.bytes_sent
  291. relayrecv += r.perfstats.bytes_received
  292. print("Relays sent=%s recv=%s" % (relaysent, relayrecv))
  293. totsent += relaysent
  294. totrecv += relayrecv
  295. for c in clients:
  296. print(c.perfstats)
  297. clisent += c.perfstats.bytes_sent
  298. clirecv += c.perfstats.bytes_received
  299. print("Client sent=%s recv=%s" % (clisent, clirecv))
  300. totsent += clisent
  301. totrecv += clirecv
  302. print("Total sent=%s recv=%s" % (totsent, totrecv))