EternalBlueExploit.py 14 KB

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  1. import logging
  2. from random import randint, uniform
  3. from lea import Lea
  4. from Attack import BaseAttack
  5. from Attack.AttackParameters import Parameter as Param
  6. from Attack.AttackParameters import ParameterTypes
  7. logging.getLogger("scapy.runtime").setLevel(logging.ERROR)
  8. # noinspection PyPep8
  9. from scapy.utils import RawPcapReader
  10. from scapy.layers.inet import IP, Ether, TCP, RandShort
  11. class EternalBlueExploit(BaseAttack.BaseAttack):
  12. template_attack_pcap_path = "resources/Win7_eternalblue_scan.pcap"
  13. # SMB port
  14. smb_port = 445
  15. # Empirical values from Metasploit experiments
  16. minDefaultPort = 30000
  17. maxDefaultPort = 50000
  18. last_conn_dst_port = 4444
  19. def __init__(self):
  20. """
  21. Creates a new instance of the EternalBlue Exploit.
  22. """
  23. # Initialize attack
  24. super(EternalBlueExploit, self).__init__("EternalBlue Exploit", "Injects an EternalBlue exploit'",
  25. "Resource Exhaustion")
  26. # Define allowed parameters and their type
  27. self.supported_params = {
  28. Param.MAC_SOURCE: ParameterTypes.TYPE_MAC_ADDRESS,
  29. Param.IP_SOURCE: ParameterTypes.TYPE_IP_ADDRESS,
  30. Param.MAC_DESTINATION: ParameterTypes.TYPE_MAC_ADDRESS,
  31. Param.IP_DESTINATION: ParameterTypes.TYPE_IP_ADDRESS,
  32. Param.INJECT_AT_TIMESTAMP: ParameterTypes.TYPE_FLOAT,
  33. Param.INJECT_AFTER_PACKET: ParameterTypes.TYPE_PACKET_POSITION,
  34. Param.PACKETS_PER_SECOND: ParameterTypes.TYPE_FLOAT
  35. }
  36. def init_params(self):
  37. """
  38. Initialize the parameters of this attack using the user supplied command line parameters.
  39. Use the provided statistics to calculate default parameters and to process user
  40. supplied queries.
  41. :param statistics: Reference to a statistics object.
  42. """
  43. # PARAMETERS: initialize with default utilsvalues
  44. # (values are overwritten if user specifies them)
  45. most_used_ip_address = self.statistics.get_most_used_ip_address()
  46. if isinstance(most_used_ip_address, list):
  47. most_used_ip_address = most_used_ip_address[0]
  48. self.add_param_value(Param.IP_SOURCE, most_used_ip_address)
  49. self.add_param_value(Param.MAC_SOURCE, self.statistics.get_mac_address(most_used_ip_address))
  50. self.add_param_value(Param.INJECT_AFTER_PACKET, randint(0, self.statistics.get_packet_count()))
  51. self.add_param_value(Param.PACKETS_PER_SECOND,
  52. (self.statistics.get_pps_sent(most_used_ip_address) +
  53. self.statistics.get_pps_received(most_used_ip_address)) / 2)
  54. # victim configuration
  55. random_ip_address = self.statistics.get_random_ip_address()
  56. self.add_param_value(Param.IP_DESTINATION, random_ip_address)
  57. destination_mac = self.statistics.get_mac_address(random_ip_address)
  58. if isinstance(destination_mac, list) and len(destination_mac) == 0:
  59. destination_mac = self.generate_random_mac_address()
  60. self.add_param_value(Param.MAC_DESTINATION, destination_mac)
  61. def generate_attack_pcap(self):
  62. def update_timestamp(timestamp, pps):
  63. """
  64. Calculates the next timestamp to be used based on the packet per second rate (pps) and the maximum delay.
  65. :return: Timestamp to be used for the next packet.
  66. """
  67. # Calculate the request timestamp
  68. # A distribution to imitate the bursty behavior of traffic
  69. randomdelay = Lea.fromValFreqsDict({1 / pps: 70, 2 / pps: 20, 5 / pps: 7, 10 / pps: 3})
  70. return timestamp + uniform(1 / pps, randomdelay.random())
  71. def getIntervalPPS(complement_interval_pps, timestamp):
  72. """
  73. Gets the packet rate (pps) in specific time interval.
  74. :return: the corresponding packet rate for packet rate (pps) .
  75. """
  76. for row in complement_interval_pps:
  77. if timestamp<=row[0]:
  78. return row[1]
  79. return complement_interval_pps[-1][1] # in case the timstamp > capture max timestamp
  80. # Timestamp
  81. timestamp_next_pkt = self.get_param_value(Param.INJECT_AT_TIMESTAMP)
  82. pps = self.get_param_value(Param.PACKETS_PER_SECOND)
  83. # calculate complement packet rates of BG traffic per interval
  84. complement_interval_pps = self.statistics.calculate_complement_packet_rates(pps)
  85. # Initialize parameters
  86. packets = []
  87. mac_source = self.get_param_value(Param.MAC_SOURCE)
  88. ip_source = self.get_param_value(Param.IP_SOURCE)
  89. mac_destination = self.get_param_value(Param.MAC_DESTINATION)
  90. ip_destination = self.get_param_value(Param.IP_DESTINATION)
  91. # Check ip.src == ip.dst
  92. self.ip_src_dst_equal_check(ip_source, ip_destination)
  93. path_attack_pcap = None
  94. # Set TTL based on TTL distribution of IP address
  95. source_ttl_dist = self.statistics.get_ttl_distribution(ip_source)
  96. if len(source_ttl_dist) > 0:
  97. source_ttl_prob_dict = Lea.fromValFreqsDict(source_ttl_dist)
  98. source_ttl_value = source_ttl_prob_dict.random()
  99. else:
  100. source_ttl_value = self.statistics.process_db_query("most_used(ttlValue)")
  101. destination_ttl_dist = self.statistics.get_ttl_distribution(ip_destination)
  102. if len(destination_ttl_dist) > 0:
  103. destination_ttl_prob_dict = Lea.fromValFreqsDict(destination_ttl_dist)
  104. destination_ttl_value = destination_ttl_prob_dict.random()
  105. else:
  106. destination_ttl_value = self.statistics.process_db_query("most_used(ttlValue)")
  107. # Scan (MS17) for EternalBlue
  108. # Read Win7_eternalblue_scan_vulnerable pcap file
  109. orig_ip_dst = None
  110. exploit_raw_packets = RawPcapReader(self.template_attack_pcap_path)
  111. inter_arrival_time_dist = self.get_inter_arrival_time_dist(exploit_raw_packets)
  112. timeSteps = Lea.fromValFreqsDict(inter_arrival_time_dist)
  113. exploit_raw_packets = RawPcapReader(self.template_attack_pcap_path)
  114. port_source = randint(self.minDefaultPort,self.maxDefaultPort) # experiments show this range of ports
  115. for pkt_num, pkt in enumerate(exploit_raw_packets):
  116. eth_frame = Ether(pkt[0])
  117. ip_pkt = eth_frame.payload
  118. tcp_pkt = ip_pkt.payload
  119. if pkt_num == 0:
  120. if tcp_pkt.getfieldval("dport") == self.smb_port:
  121. orig_ip_dst = ip_pkt.getfieldval("dst") # victim IP
  122. # Request
  123. if ip_pkt.getfieldval("dst") == orig_ip_dst: # victim IP
  124. # Ether
  125. eth_frame.setfieldval("src", mac_source)
  126. eth_frame.setfieldval("dst", mac_destination)
  127. # IP
  128. ip_pkt.setfieldval("src", ip_source)
  129. ip_pkt.setfieldval("dst", ip_destination)
  130. ip_pkt.setfieldval("ttl", source_ttl_value)
  131. # TCP
  132. tcp_pkt.setfieldval("sport",port_source)
  133. new_pkt = (eth_frame / ip_pkt / tcp_pkt)
  134. new_pkt.time = timestamp_next_pkt
  135. pps = max(getIntervalPPS(complement_interval_pps, timestamp_next_pkt), 10)
  136. timestamp_next_pkt = update_timestamp(timestamp_next_pkt, pps) + float(timeSteps.random())
  137. # Reply
  138. else:
  139. # Ether
  140. eth_frame.setfieldval("src", mac_destination)
  141. eth_frame.setfieldval("dst", mac_source)
  142. # IP
  143. ip_pkt.setfieldval("src", ip_destination)
  144. ip_pkt.setfieldval("dst", ip_source)
  145. ip_pkt.setfieldval("ttl", destination_ttl_value)
  146. # TCP
  147. tcp_pkt.setfieldval("dport", port_source)
  148. new_pkt = (eth_frame / ip_pkt / tcp_pkt)
  149. timestamp_next_pkt = update_timestamp(timestamp_next_pkt, pps) + float(timeSteps.random())
  150. new_pkt.time = timestamp_next_pkt
  151. packets.append(new_pkt)
  152. # Inject EternalBlue exploit packets
  153. # Read Win7_eternalblue_exploit pcap file
  154. exploit_raw_packets = RawPcapReader("resources/Win7_eternalblue_exploit.pcap")
  155. port_source = randint(self.minDefaultPort,self.maxDefaultPort) # experiments show this range of ports
  156. # conversations = {(ip.src, ip.dst, port.src, port.dst): packets}
  157. conversations, orderList_conversations = self.packetsToConvs(exploit_raw_packets)
  158. conv_start_timesamp = timestamp_next_pkt
  159. for conv_index, conv in enumerate(orderList_conversations):
  160. conv_start_timesamp = conv_start_timesamp + uniform(0.001,0.01) # the distance between the starts of the converstaions
  161. timestamp_next_pkt = conv_start_timesamp
  162. conv_pkts = conversations[conv]
  163. inter_arrival_time_dist = self.get_inter_arrival_time_dist(conv_pkts)
  164. timeSteps = Lea.fromValFreqsDict(inter_arrival_time_dist)
  165. if conv_index == len(orderList_conversations) - 2: # Not the last conversation
  166. timestamp_next_pkt = packets[-1].time + uniform(0.001,0.01)
  167. if conv_index != len(orderList_conversations)-1: # Not the last conversation
  168. port_source += 2
  169. for pkt_num, pkt in enumerate(conv_pkts):
  170. eth_frame = Ether(pkt[0])
  171. ip_pkt = eth_frame.payload
  172. tcp_pkt = ip_pkt.payload
  173. if pkt_num == 0:
  174. if tcp_pkt.getfieldval("dport") == self.smb_port:
  175. orig_ip_dst = ip_pkt.getfieldval("dst")
  176. # Request
  177. if ip_pkt.getfieldval("dst") == orig_ip_dst: # victim IP
  178. # Ether
  179. eth_frame.setfieldval("src", mac_source)
  180. eth_frame.setfieldval("dst", mac_destination)
  181. # IP
  182. ip_pkt.setfieldval("src", ip_source)
  183. ip_pkt.setfieldval("dst", ip_destination)
  184. ip_pkt.setfieldval("ttl", source_ttl_value)
  185. # TCP
  186. tcp_pkt.setfieldval("sport", port_source)
  187. new_pkt = (eth_frame / ip_pkt / tcp_pkt)
  188. new_pkt.time = timestamp_next_pkt
  189. pps = max(getIntervalPPS(complement_interval_pps, timestamp_next_pkt), 10)
  190. timestamp_next_pkt = update_timestamp(timestamp_next_pkt, pps) + float(timeSteps.random())
  191. # Reply
  192. else:
  193. # Ether
  194. eth_frame.setfieldval("src", mac_destination)
  195. eth_frame.setfieldval("dst", mac_source)
  196. # IP
  197. ip_pkt.setfieldval("src", ip_destination)
  198. ip_pkt.setfieldval("dst", ip_source)
  199. ip_pkt.setfieldval("ttl", destination_ttl_value)
  200. # TCP
  201. tcp_pkt.setfieldval("dport", port_source)
  202. new_pkt = (eth_frame / ip_pkt / tcp_pkt)
  203. pps = max(getIntervalPPS(complement_interval_pps, timestamp_next_pkt), 10)
  204. timestamp_next_pkt = update_timestamp(timestamp_next_pkt, pps) + float(timeSteps.random())
  205. new_pkt.time = timestamp_next_pkt
  206. packets.append(new_pkt)
  207. else: # Last conversation where the victim start a connection with the attacker
  208. timestamp_next_pkt = packets[-1].time + uniform(0.001, 0.01)
  209. port_source = randint(self.minDefaultPort,self.maxDefaultPort)
  210. for pkt_num, pkt in enumerate(conv_pkts):
  211. eth_frame = Ether(pkt[0])
  212. ip_pkt = eth_frame.payload
  213. tcp_pkt = ip_pkt.payload
  214. # defining req/rep should be adapted to fit the last converstaion where
  215. # victim start a connection with the attacker
  216. # Request
  217. if tcp_pkt.getfieldval("dport") == self.last_conn_dst_port:
  218. # Ether
  219. eth_frame.setfieldval("src", mac_destination)
  220. eth_frame.setfieldval("dst", mac_source)
  221. # IP
  222. ip_pkt.setfieldval("src", ip_destination)
  223. ip_pkt.setfieldval("dst", ip_source)
  224. ip_pkt.setfieldval("ttl", destination_ttl_value)
  225. # TCP
  226. tcp_pkt.setfieldval("sport", port_source)
  227. new_pkt = (eth_frame / ip_pkt / tcp_pkt)
  228. new_pkt.time = timestamp_next_pkt
  229. pps = max(getIntervalPPS(complement_interval_pps, timestamp_next_pkt), 10)
  230. timestamp_next_pkt = update_timestamp(timestamp_next_pkt, pps) + float(timeSteps.random())
  231. # Reply
  232. else:
  233. # Ether
  234. eth_frame.setfieldval("src", mac_source)
  235. eth_frame.setfieldval("dst", mac_destination)
  236. # IP
  237. ip_pkt.setfieldval("src", ip_source)
  238. ip_pkt.setfieldval("dst", ip_destination)
  239. ip_pkt.setfieldval("ttl", source_ttl_value)
  240. # TCP
  241. tcp_pkt.setfieldval("dport", port_source)
  242. new_pkt = (eth_frame / ip_pkt / tcp_pkt)
  243. pps = max(getIntervalPPS(complement_interval_pps, timestamp_next_pkt), 10)
  244. timestamp_next_pkt = update_timestamp(timestamp_next_pkt, pps) + float(timeSteps.random())
  245. new_pkt.time = timestamp_next_pkt
  246. packets.append(new_pkt)
  247. # Store timestamp of first packet (for attack label)
  248. self.attack_start_utime = packets[0].time
  249. self.attack_end_utime = packets[-1].time
  250. if len(packets) > 0:
  251. packets = sorted(packets, key=lambda pkt: pkt.time)
  252. path_attack_pcap = self.write_attack_pcap(packets, True, path_attack_pcap)
  253. # return packets sorted by packet time_sec_start
  254. # pkt_num+1: because pkt_num starts at 0
  255. return pkt_num + 1, path_attack_pcap