SQLiAttack.py 15 KB

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  1. # Created by Aidmar
  2. """
  3. ATutor 2.2.1 SQL Injection / Remote Code Execution
  4. This module exploits a SQL Injection vulnerability and an authentication weakness vulnerability in ATutor. This essentially
  5. means an attacker can bypass authentication and reach the administrator's interface where they can upload malicious code.
  6. more info:
  7. https://www.rapid7.com/db/modules/exploit/multi/http/atutor_sqli
  8. """
  9. import logging
  10. import math
  11. from operator import itemgetter
  12. import operator
  13. from random import randint, uniform
  14. from lea import Lea
  15. from Attack import BaseAttack
  16. from Attack.AttackParameters import Parameter as Param
  17. from Attack.AttackParameters import ParameterTypes
  18. logging.getLogger("scapy.runtime").setLevel(logging.ERROR)
  19. # noinspection PyPep8
  20. from scapy.utils import RawPcapReader
  21. from scapy.layers.inet import IP, Ether, TCP, RandShort
  22. class SQLiAttack(BaseAttack.BaseAttack):
  23. template_attack_pcap_path = "resources/ATutorSQLi.pcap"
  24. # HTTP port
  25. http_port = 80
  26. # Metasploit experiments show this range of ports
  27. minDefaultPort = 30000
  28. maxDefaultPort = 50000
  29. def __init__(self, statistics, pcap_file_path):
  30. """
  31. Creates a new instance of the SQLi Attack.
  32. :param statistics: A reference to the statistics class.
  33. """
  34. # Initialize attack
  35. super(SQLiAttack, self).__init__(statistics, "SQLi Attack", "Injects a SQLi attack'",
  36. "Resource Exhaustion")
  37. # Define allowed parameters and their type
  38. self.supported_params = {
  39. Param.MAC_SOURCE: ParameterTypes.TYPE_MAC_ADDRESS,
  40. Param.IP_SOURCE: ParameterTypes.TYPE_IP_ADDRESS,
  41. Param.MAC_DESTINATION: ParameterTypes.TYPE_MAC_ADDRESS,
  42. Param.IP_DESTINATION: ParameterTypes.TYPE_IP_ADDRESS,
  43. Param.TARGET_HOST: ParameterTypes.TYPE_DOMAIN,
  44. #Param.TARGET_URI: ParameterTypes.TYPE_URI,
  45. Param.INJECT_AT_TIMESTAMP: ParameterTypes.TYPE_FLOAT,
  46. Param.INJECT_AFTER_PACKET: ParameterTypes.TYPE_PACKET_POSITION,
  47. Param.PACKETS_PER_SECOND: ParameterTypes.TYPE_FLOAT
  48. }
  49. # PARAMETERS: initialize with default utilsvalues
  50. # (values are overwritten if user specifies them)
  51. most_used_ip_address = self.statistics.get_most_used_ip_address()
  52. if isinstance(most_used_ip_address, list):
  53. most_used_ip_address = most_used_ip_address[0]
  54. self.add_param_value(Param.IP_SOURCE, most_used_ip_address)
  55. self.add_param_value(Param.MAC_SOURCE, self.statistics.get_mac_address(most_used_ip_address))
  56. #self.add_param_value(Param.TARGET_URI, "/")
  57. self.add_param_value(Param.TARGET_HOST, "www.hackme.com")
  58. self.add_param_value(Param.INJECT_AFTER_PACKET, randint(0, self.statistics.get_packet_count()))
  59. self.add_param_value(Param.PACKETS_PER_SECOND,
  60. (self.statistics.get_pps_sent(most_used_ip_address) +
  61. self.statistics.get_pps_received(most_used_ip_address)) / 2)
  62. # victim configuration
  63. # consider that the destination has port 80 opened
  64. random_ip_address = self.statistics.get_random_ip_address()
  65. self.add_param_value(Param.IP_DESTINATION, random_ip_address)
  66. destination_mac = self.statistics.get_mac_address(random_ip_address)
  67. if isinstance(destination_mac, list) and len(destination_mac) == 0:
  68. destination_mac = self.generate_random_mac_address()
  69. self.add_param_value(Param.MAC_DESTINATION, destination_mac)
  70. def generate_attack_pcap(self):
  71. def update_timestamp(timestamp, pps):
  72. """
  73. Calculates the next timestamp to be used based on the packet per second rate (pps) and the maximum delay.
  74. :return: Timestamp to be used for the next packet.
  75. """
  76. # Calculate the request timestamp
  77. # A distribution to imitate the bursty behavior of traffic
  78. randomdelay = Lea.fromValFreqsDict({1 / pps: 70, 2 / pps: 20, 5 / pps: 7, 10 / pps: 3})
  79. return timestamp + uniform(1 / pps, randomdelay.random())
  80. # Aidmar
  81. def getIntervalPPS(complement_interval_pps, timestamp):
  82. """
  83. Gets the packet rate (pps) in specific time interval.
  84. :return: the corresponding packet rate for packet rate (pps) .
  85. """
  86. for row in complement_interval_pps:
  87. if timestamp <= row[0]:
  88. return row[1]
  89. return complement_interval_pps[-1][1] # in case the timstamp > capture max timestamp
  90. # Timestamp
  91. timestamp_next_pkt = self.get_param_value(Param.INJECT_AT_TIMESTAMP)
  92. pps = self.get_param_value(Param.PACKETS_PER_SECOND)
  93. # Aidmar - calculate complement packet rates of BG traffic per interval
  94. complement_interval_pps = self.statistics.calculate_complement_packet_rates(pps)
  95. # Initialize parameters
  96. packets = []
  97. mac_source = self.get_param_value(Param.MAC_SOURCE)
  98. ip_source = self.get_param_value(Param.IP_SOURCE)
  99. mac_destination = self.get_param_value(Param.MAC_DESTINATION)
  100. ip_destination = self.get_param_value(Param.IP_DESTINATION)
  101. target_host = self.get_param_value(Param.TARGET_HOST)
  102. target_uri = "/" #self.get_param_value(Param.TARGET_URI)
  103. # Check ip.src == ip.dst
  104. self.ip_src_dst_equal_check(ip_source, ip_destination)
  105. path_attack_pcap = None
  106. # Set TTL based on TTL distribution of IP address
  107. source_ttl_dist = self.statistics.get_ttl_distribution(ip_source)
  108. if len(source_ttl_dist) > 0:
  109. source_ttl_prob_dict = Lea.fromValFreqsDict(source_ttl_dist)
  110. source_ttl_value = source_ttl_prob_dict.random()
  111. else:
  112. source_ttl_value = self.statistics.process_db_query("most_used(ttlValue)")
  113. destination_ttl_dist = self.statistics.get_ttl_distribution(ip_destination)
  114. if len(destination_ttl_dist) > 0:
  115. destination_ttl_prob_dict = Lea.fromValFreqsDict(destination_ttl_dist)
  116. destination_ttl_value = destination_ttl_prob_dict.random()
  117. else:
  118. destination_ttl_value = self.statistics.process_db_query("most_used(ttlValue)")
  119. # Inject SQLi Attack
  120. # Read SQLi Attack pcap file
  121. orig_ip_dst = None
  122. exploit_raw_packets = RawPcapReader(self.template_attack_pcap_path)
  123. inter_arrival_time_dist = self.get_inter_arrival_time_dist(exploit_raw_packets)
  124. timeSteps = Lea.fromValFreqsDict(inter_arrival_time_dist)
  125. exploit_raw_packets = RawPcapReader(self.template_attack_pcap_path)
  126. port_source = randint(self.minDefaultPort,self.maxDefaultPort) # experiments show this range of ports
  127. # Random TCP sequence numbers
  128. global attacker_seq
  129. attacker_seq = randint(1000, 50000)
  130. global victim_seq
  131. victim_seq = randint(1000, 50000)
  132. for pkt_num, pkt in enumerate(exploit_raw_packets):
  133. eth_frame = Ether(pkt[0])
  134. ip_pkt = eth_frame.payload
  135. tcp_pkt = ip_pkt.payload
  136. str_tcp_seg = str(tcp_pkt.payload)
  137. # Clean payloads
  138. eth_frame.payload = b''
  139. ip_pkt.payload = b''
  140. tcp_pkt.payload = b''
  141. if pkt_num == 0:
  142. prev_orig_port_source = tcp_pkt.getfieldval("sport")
  143. orig_ip_dst = ip_pkt.getfieldval("dst") # victim IP
  144. if tcp_pkt.getfieldval("dport") == 80 or tcp_pkt.getfieldval("sport") == 80:
  145. # Attacker --> vicitm
  146. if ip_pkt.getfieldval("dst") == orig_ip_dst: # victim IP
  147. # There are 363 TCP connections with different source ports, for each of them we generate random port
  148. if tcp_pkt.getfieldval("sport") != prev_orig_port_source and tcp_pkt.getfieldval("dport") != 4444:
  149. port_source = randint(self.minDefaultPort, self.maxDefaultPort)
  150. prev_orig_port_source = tcp_pkt.getfieldval("sport")
  151. # New connection, new random TCP sequence numbers
  152. attacker_seq = randint(1000, 50000)
  153. victim_seq = randint(1000, 50000)
  154. # First packet in a connection has ACK = 0
  155. tcp_pkt.setfieldval("ack", 0)
  156. # Ether
  157. eth_frame.setfieldval("src", mac_source)
  158. eth_frame.setfieldval("dst", mac_destination)
  159. # IP
  160. ip_pkt.setfieldval("src", ip_source)
  161. ip_pkt.setfieldval("dst", ip_destination)
  162. ip_pkt.setfieldval("ttl", source_ttl_value)
  163. # TCP
  164. tcp_pkt.setfieldval("sport",port_source)
  165. if len(str_tcp_seg) > 0:
  166. # convert payload bytes to str => str = "b'..\\r\\n..'"
  167. str_tcp_seg = str_tcp_seg[2:-1]
  168. str_tcp_seg = str_tcp_seg.replace('/ATutor', target_uri)
  169. str_tcp_seg = str_tcp_seg.replace(orig_ip_dst, target_host)
  170. str_tcp_seg = self.clean_white_spaces(str_tcp_seg)
  171. # TCP Seq, Ack
  172. if tcp_pkt.getfieldval("ack") != 0:
  173. tcp_pkt.setfieldval("ack", victim_seq)
  174. tcp_pkt.setfieldval("seq", attacker_seq)
  175. if not (tcp_pkt.getfieldval("flags") == 16 and len(str_tcp_seg) == 0): # flags=A:
  176. attacker_seq += max(len(str_tcp_seg), 1)
  177. new_pkt = (eth_frame / ip_pkt/ tcp_pkt / str_tcp_seg)
  178. new_pkt.time = timestamp_next_pkt
  179. pps = max(getIntervalPPS(complement_interval_pps, timestamp_next_pkt), 10)
  180. timestamp_next_pkt = update_timestamp(timestamp_next_pkt, pps) + float(timeSteps.random())
  181. # Victim --> attacker
  182. else:
  183. # Ether
  184. eth_frame.setfieldval("src", mac_destination)
  185. eth_frame.setfieldval("dst", mac_source)
  186. # IP
  187. ip_pkt.setfieldval("src", ip_destination)
  188. ip_pkt.setfieldval("dst", ip_source)
  189. ip_pkt.setfieldval("ttl", destination_ttl_value)
  190. # TCP
  191. tcp_pkt.setfieldval("dport", port_source)
  192. if len(str_tcp_seg) > 0:
  193. # convert payload bytes to str => str = "b'..\\r\\n..'"
  194. str_tcp_seg = str_tcp_seg[2:-1]
  195. str_tcp_seg = str_tcp_seg.replace('/ATutor', target_uri)
  196. str_tcp_seg = str_tcp_seg.replace(orig_ip_dst, target_host)
  197. str_tcp_seg = self.clean_white_spaces(str_tcp_seg)
  198. # TCP Seq, ACK
  199. tcp_pkt.setfieldval("ack", attacker_seq)
  200. tcp_pkt.setfieldval("seq", victim_seq)
  201. strLen = len(str_tcp_seg)
  202. if not (tcp_pkt.getfieldval("flags") == 16 and strLen == 0): # flags=A:
  203. victim_seq += max(strLen, 1)
  204. new_pkt = (eth_frame / ip_pkt / tcp_pkt / str_tcp_seg)
  205. timestamp_next_pkt = update_timestamp(timestamp_next_pkt, pps) + float(timeSteps.random())
  206. new_pkt.time = timestamp_next_pkt
  207. # The last connection
  208. else:
  209. # New connection, new random TCP sequence numbers
  210. attacker_seq = randint(1000, 50000)
  211. victim_seq = randint(1000, 50000)
  212. # First packet in a connection has ACK = 0
  213. tcp_pkt.setfieldval("ack", 0)
  214. #port_source = randint(self.minDefaultPort, self.maxDefaultPort)
  215. # Attacker --> vicitm
  216. if ip_pkt.getfieldval("dst") == orig_ip_dst: # victim IP
  217. # Ether
  218. eth_frame.setfieldval("src", mac_source)
  219. eth_frame.setfieldval("dst", mac_destination)
  220. # IP
  221. ip_pkt.setfieldval("src", ip_source)
  222. ip_pkt.setfieldval("dst", ip_destination)
  223. ip_pkt.setfieldval("ttl", source_ttl_value)
  224. # TCP
  225. #tcp_pkt.setfieldval("sport", port_source)
  226. if len(str_tcp_seg) > 0:
  227. # convert payload bytes to str => str = "b'..\\r\\n..'"
  228. str_tcp_seg = str_tcp_seg[2:-1]
  229. str_tcp_seg = str_tcp_seg.replace('/ATutor', target_uri)
  230. str_tcp_seg = str_tcp_seg.replace(orig_ip_dst, target_host)
  231. str_tcp_seg = self.clean_white_spaces(str_tcp_seg)
  232. # TCP Seq, Ack
  233. if tcp_pkt.getfieldval("ack") != 0:
  234. tcp_pkt.setfieldval("ack", victim_seq)
  235. tcp_pkt.setfieldval("seq", attacker_seq)
  236. if not (tcp_pkt.getfieldval("flags") == 16 and len(str_tcp_seg) == 0): # flags=A:
  237. attacker_seq += max(len(str_tcp_seg), 1)
  238. new_pkt = (eth_frame / ip_pkt / tcp_pkt / str_tcp_seg)
  239. new_pkt.time = timestamp_next_pkt
  240. pps = max(getIntervalPPS(complement_interval_pps, timestamp_next_pkt), 10)
  241. timestamp_next_pkt = update_timestamp(timestamp_next_pkt, pps) + float(timeSteps.random())
  242. # Victim --> attacker
  243. else:
  244. # Ether
  245. eth_frame.setfieldval("src", mac_destination)
  246. eth_frame.setfieldval("dst", mac_source)
  247. # IP
  248. ip_pkt.setfieldval("src", ip_destination)
  249. ip_pkt.setfieldval("dst", ip_source)
  250. ip_pkt.setfieldval("ttl", destination_ttl_value)
  251. # TCP
  252. #tcp_pkt.setfieldval("dport", port_source)
  253. if len(str_tcp_seg) > 0:
  254. # convert payload bytes to str => str = "b'..\\r\\n..'"
  255. str_tcp_seg = str_tcp_seg[2:-1]
  256. str_tcp_seg = str_tcp_seg.replace('/ATutor', target_uri)
  257. str_tcp_seg = str_tcp_seg.replace(orig_ip_dst, target_host)
  258. str_tcp_seg = self.clean_white_spaces(str_tcp_seg)
  259. # TCP Seq, ACK
  260. tcp_pkt.setfieldval("ack", attacker_seq)
  261. tcp_pkt.setfieldval("seq", victim_seq)
  262. strLen = len(str_tcp_seg)
  263. if not (tcp_pkt.getfieldval("flags") == 16 and strLen == 0): # flags=A:
  264. victim_seq += max(strLen, 1)
  265. new_pkt = (eth_frame / ip_pkt / tcp_pkt / str_tcp_seg)
  266. timestamp_next_pkt = update_timestamp(timestamp_next_pkt, pps) + float(timeSteps.random())
  267. new_pkt.time = timestamp_next_pkt
  268. packets.append(new_pkt)
  269. # Store timestamp of first packet (for attack label)
  270. self.attack_start_utime = packets[0].time
  271. self.attack_end_utime = packets[-1].time
  272. if len(packets) > 0:
  273. packets = sorted(packets, key=lambda pkt: pkt.time)
  274. path_attack_pcap = self.write_attack_pcap(packets, True, path_attack_pcap)
  275. # return packets sorted by packet time_sec_start
  276. # pkt_num+1: because pkt_num starts at 0
  277. return pkt_num + 1, path_attack_pcap