BaseAttack_LOCAL_3007.py 24 KB

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  1. import socket
  2. import sys
  3. import ipaddress
  4. import os
  5. import random
  6. import re
  7. import tempfile
  8. from abc import abstractmethod, ABCMeta
  9. from scapy.layers.inet import Ether
  10. import numpy as np
  11. import ID2TLib.libpcapreader as pr
  12. from scapy.utils import PcapWriter
  13. from Attack import AttackParameters
  14. from Attack.AttackParameters import Parameter
  15. from Attack.AttackParameters import ParameterTypes
  16. class BaseAttack(metaclass=ABCMeta):
  17. """
  18. Abstract base class for all attack classes. Provides basic functionalities, like parameter validation.
  19. """
  20. def __init__(self, name, description, attack_type):
  21. """
  22. To be called within the individual attack class to initialize the required parameters.
  23. :param statistics: A reference to the Statistics class.
  24. :param name: The name of the attack class.
  25. :param description: A short description of the attack.
  26. :param attack_type: The type the attack belongs to, like probing/scanning, malware.
  27. """
  28. # Reference to statistics class
  29. self.statistics = None
  30. # Class fields
  31. self.attack_name = name
  32. self.attack_description = description
  33. self.attack_type = attack_type
  34. self.params = {}
  35. self.supported_params = {}
  36. self.attack_start_utime = 0
  37. self.attack_end_utime = 0
  38. def set_statistics(self, statistics):
  39. """
  40. Specify the statistics object that will be used to calculate the parameters of this attack.
  41. The statistics are used to calculate default parameters and to process user supplied
  42. queries.
  43. :param statistics: Reference to a statistics object.
  44. """
  45. self.statistics = statistics
  46. @abstractmethod
  47. def init_params(self):
  48. """
  49. Initialize all required parameters taking into account user supplied values. If no value is supplied,
  50. or if a user defined query is supplied, use a statistics object to do the calculations.
  51. A call to this function requires a call to 'set_statistics' first.
  52. """
  53. pass
  54. @abstractmethod
  55. def generate_attack_pcap(self):
  56. """
  57. Creates a pcap containing the attack packets.
  58. :return: The location of the generated pcap file.
  59. """
  60. pass
  61. ################################################
  62. # HELPER VALIDATION METHODS
  63. # Used to validate the given parameter values
  64. ################################################
  65. @staticmethod
  66. def _is_mac_address(mac_address: str):
  67. """
  68. Verifies if the given string is a valid MAC address. Accepts the formats 00:80:41:ae:fd:7e and 00-80-41-ae-fd-7e.
  69. :param mac_address: The MAC address as string.
  70. :return: True if the MAC address is valid, otherwise False.
  71. """
  72. pattern = re.compile('^([0-9A-Fa-f]{2}[:-]){5}([0-9A-Fa-f]{2})$', re.MULTILINE)
  73. if isinstance(mac_address, list):
  74. for mac in mac_address:
  75. if re.match(pattern, mac) is None:
  76. return False
  77. else:
  78. if re.match(pattern, mac_address) is None:
  79. return False
  80. return True
  81. @staticmethod
  82. def _is_ip_address(ip_address: str):
  83. """
  84. Verifies that the given string or list of IP addresses (strings) is a valid IPv4/IPv6 address.
  85. Accepts comma-separated lists of IP addresses, like "192.169.178.1, 192.168.178.2"
  86. :param ip_address: The IP address(es) as list of strings or comma-separated string.
  87. :return: True if all IP addresses are valid, otherwise False. And a list of IP addresses as string.
  88. """
  89. ip_address_output = []
  90. # a comma-separated list of IP addresses must be splitted first
  91. if isinstance(ip_address, str):
  92. ip_address = ip_address.split(',')
  93. for ip in ip_address:
  94. try:
  95. ipaddress.ip_address(ip)
  96. ip_address_output.append(ip)
  97. except ValueError:
  98. return False, ip_address_output
  99. if len(ip_address_output) == 1:
  100. return True, ip_address_output[0]
  101. else:
  102. return True, ip_address_output
  103. @staticmethod
  104. def _is_port(ports_input: str):
  105. """
  106. Verifies if the given value is a valid port. Accepts port ranges, like 80-90, 80..99, 80...99.
  107. :param ports_input: The port number as int or string.
  108. :return: True if the port number is valid, otherwise False. If a single port or a comma-separated list of ports
  109. was given, a list of int is returned. If a port range was given, the range is resolved
  110. and a list of int is returned.
  111. """
  112. def _is_invalid_port(num):
  113. """
  114. Checks whether the port number is invalid.
  115. :param num: The port number as int.
  116. :return: True if the port number is invalid, otherwise False.
  117. """
  118. return num < 1 or num > 65535
  119. if isinstance(ports_input, str):
  120. ports_input = ports_input.replace(' ', '').split(',')
  121. elif isinstance(ports_input, int):
  122. ports_input = [ports_input]
  123. ports_output = []
  124. for port_entry in ports_input:
  125. if isinstance(port_entry, int):
  126. if _is_invalid_port(port_entry):
  127. return False
  128. ports_output.append(port_entry)
  129. elif isinstance(port_entry, str) and port_entry.isdigit():
  130. # port_entry describes a single port
  131. port_entry = int(port_entry)
  132. if _is_invalid_port(port_entry):
  133. return False
  134. ports_output.append(port_entry)
  135. elif '-' in port_entry or '..' in port_entry:
  136. # port_entry describes a port range
  137. # allowed format: '1-49151', '1..49151', '1...49151'
  138. match = re.match('^([0-9]{1,5})(?:-|\.{2,3})([0-9]{1,5})$', port_entry)
  139. # check validity of port range
  140. # and create list of ports derived from given start and end port
  141. (port_start, port_end) = int(match.group(1)), int(match.group(2))
  142. if _is_invalid_port(port_start) or _is_invalid_port(port_end):
  143. return False
  144. else:
  145. ports_list = [i for i in range(port_start, port_end + 1)]
  146. # append ports at ports_output list
  147. ports_output += ports_list
  148. if len(ports_output) == 1:
  149. return True, ports_output[0]
  150. else:
  151. return True, ports_output
  152. @staticmethod
  153. def _is_timestamp(timestamp: str):
  154. """
  155. Checks whether the given value is in a valid timestamp format. The accepted format is:
  156. YYYY-MM-DD h:m:s, whereas h, m, s may be one or two digits.
  157. :param timestamp: The timestamp to be checked.
  158. :return: True if the timestamp is valid, otherwise False.
  159. """
  160. is_valid = re.match('[0-9]{4}(?:-[0-9]{1,2}){2} (?:[0-9]{1,2}:){2}[0-9]{1,2}', timestamp)
  161. return is_valid is not None
  162. @staticmethod
  163. def _is_boolean(value):
  164. """
  165. Checks whether the given value (string or bool) is a boolean. Strings are valid booleans if they are in:
  166. {y, yes, t, true, on, 1, n, no, f, false, off, 0}.
  167. :param value: The value to be checked.
  168. :return: True if the value is a boolean, otherwise false. And the casted boolean.
  169. """
  170. # If value is already a boolean
  171. if isinstance(value, bool):
  172. return True, value
  173. # If value is a string
  174. # True values are y, yes, t, true, on and 1;
  175. # False values are n, no, f, false, off and 0.
  176. # Raises ValueError if value is anything else.
  177. try:
  178. import distutils.core
  179. value = distutils.util.strtobool(value.lower())
  180. is_bool = True
  181. except ValueError:
  182. is_bool = False
  183. return is_bool, value
  184. @staticmethod
  185. def _is_float(value):
  186. """
  187. Checks whether the given value is a float.
  188. :param value: The value to be checked.
  189. :return: True if the value is a float, otherwise False. And the casted float.
  190. """
  191. try:
  192. value = float(value)
  193. return True, value
  194. except ValueError:
  195. return False, value
  196. # Aidmar
  197. @staticmethod
  198. def _is_domain(val: str):
  199. """
  200. Verifies that the given string is a valid URI.
  201. :param uri: The URI as string.
  202. :return: True if URI is valid, otherwise False.
  203. """
  204. domain = re.match('^(?:[a-zA-Z]|[0-9]|[$-_@.&+]|[!*\(\),]|(?:%[0-9a-fA-F][0-9a-fA-F]))+$', val)
  205. return (domain is not None)
  206. #########################################
  207. # HELPER METHODS
  208. #########################################
  209. def add_param_value(self, param, value):
  210. """
  211. Adds the pair param : value to the dictionary of attack parameters. Prints and error message and skips the
  212. parameter if the validation fails.
  213. :param stats: Statistics used to calculate user queries or default values.
  214. :param param: Name of the parameter that we wish to modify.
  215. :param value: The value we wish to assign to the specifried parameter.
  216. :return: None.
  217. """
  218. # This function call is valid only if there is a statistics object available.
  219. if self.statistics is None:
  220. print('Error: Attack parameter added without setting a statistics object first.')
  221. exit(1)
  222. # by default no param is valid
  223. is_valid = False
  224. # get AttackParameters instance associated with param
  225. # for default values assigned in attack classes, like Parameter.PORT_OPEN
  226. if isinstance(param, AttackParameters.Parameter):
  227. param_name = param
  228. # for values given by user input, like port.open
  229. else:
  230. # Get Enum key of given string identifier
  231. param_name = AttackParameters.Parameter(param)
  232. # Get parameter type of attack's required_params
  233. param_type = self.supported_params.get(param_name)
  234. # Verify validity of given value with respect to parameter type
  235. if param_type is None:
  236. print('Parameter ' + str(param_name) + ' not available for chosen attack. Skipping parameter.')
  237. # If value is query -> get value from database
  238. elif self.statistics.is_query(value):
  239. value = self.statistics.process_db_query(value, False)
  240. if value is not None and value is not "":
  241. is_valid = True
  242. else:
  243. print('Error in given parameter value: ' + value + '. Data could not be retrieved.')
  244. # Validate parameter depending on parameter's type
  245. elif param_type == ParameterTypes.TYPE_IP_ADDRESS:
  246. is_valid, value = self._is_ip_address(value)
  247. elif param_type == ParameterTypes.TYPE_PORT:
  248. is_valid, value = self._is_port(value)
  249. elif param_type == ParameterTypes.TYPE_MAC_ADDRESS:
  250. is_valid = self._is_mac_address(value)
  251. elif param_type == ParameterTypes.TYPE_INTEGER_POSITIVE:
  252. if isinstance(value, int) and int(value) >= 0:
  253. is_valid = True
  254. elif isinstance(value, str) and value.isdigit() and int(value) >= 0:
  255. is_valid = True
  256. value = int(value)
  257. elif param_type == ParameterTypes.TYPE_FLOAT:
  258. is_valid, value = self._is_float(value)
  259. # this is required to avoid that the timestamp's microseconds of the first attack packet is '000000'
  260. # but microseconds are only chosen randomly if the given parameter does not already specify it
  261. # e.g. inject.at-timestamp=123456.987654 -> is not changed
  262. # e.g. inject.at-timestamp=123456 -> is changed to: 123456.[random digits]
  263. if param_name == Parameter.INJECT_AT_TIMESTAMP and is_valid and ((value - int(value)) == 0):
  264. value = value + random.uniform(0, 0.999999)
  265. elif param_type == ParameterTypes.TYPE_TIMESTAMP:
  266. is_valid = self._is_timestamp(value)
  267. elif param_type == ParameterTypes.TYPE_BOOLEAN:
  268. is_valid, value = self._is_boolean(value)
  269. elif param_type == ParameterTypes.TYPE_PACKET_POSITION:
  270. ts = pr.pcap_processor(self.statistics.pcap_filepath, "False").get_timestamp_mu_sec(int(value))
  271. if 0 <= int(value) <= self.statistics.get_packet_count() and ts >= 0:
  272. is_valid = True
  273. param_name = Parameter.INJECT_AT_TIMESTAMP
  274. value = (ts / 1000000) # convert microseconds from getTimestampMuSec into seconds
  275. # Aidmar
  276. elif param_type == ParameterTypes.TYPE_DOMAIN:
  277. is_valid = self._is_domain(value)
  278. # add value iff validation was successful
  279. if is_valid:
  280. self.params[param_name] = value
  281. else:
  282. print("ERROR: Parameter " + str(param) + " or parameter value " + str(value) +
  283. " not valid. Skipping parameter.")
  284. def get_param_value(self, param: Parameter):
  285. """
  286. Returns the parameter value for a given parameter.
  287. :param param: The parameter whose value is wanted.
  288. :return: The parameter's value.
  289. """
  290. return self.params.get(param)
  291. def check_parameters(self):
  292. """
  293. Checks whether all parameter values are defined. If a value is not defined, the application is terminated.
  294. However, this should not happen as all attack should define default parameter values.
  295. """
  296. # parameters which do not require default values
  297. non_obligatory_params = [Parameter.INJECT_AFTER_PACKET, Parameter.NUMBER_ATTACKERS]
  298. for param, type in self.supported_params.items():
  299. # checks whether all params have assigned values, INJECT_AFTER_PACKET must not be considered because the
  300. # timestamp derived from it is set to Parameter.INJECT_AT_TIMESTAMP
  301. if param not in self.params.keys() and param not in non_obligatory_params:
  302. print("\033[91mCRITICAL ERROR: Attack '" + self.attack_name + "' does not define the parameter '" +
  303. str(param) + "'.\n The attack must define default values for all parameters."
  304. + "\n Cannot continue attack generation.\033[0m")
  305. import sys
  306. sys.exit(0)
  307. def write_attack_pcap(self, packets: list, append_flag: bool = False, destination_path: str = None):
  308. """
  309. Writes the attack's packets into a PCAP file with a temporary filename.
  310. :return: The path of the written PCAP file.
  311. """
  312. # Only check params initially when attack generation starts
  313. if append_flag is False and destination_path is None:
  314. # Check if all req. parameters are set
  315. self.check_parameters()
  316. # Determine destination path
  317. if destination_path is not None and os.path.exists(destination_path):
  318. destination = destination_path
  319. else:
  320. temp_file = tempfile.NamedTemporaryFile(delete=False, suffix='.pcap')
  321. destination = temp_file.name
  322. # Write packets into pcap file
  323. pktdump = PcapWriter(destination, append=append_flag)
  324. pktdump.write(packets)
  325. # Store pcap path and close file objects
  326. pktdump.close()
  327. return destination
  328. #########################################
  329. # RANDOM IP/MAC ADDRESS GENERATORS
  330. #########################################
  331. @staticmethod
  332. def generate_random_ipv4_address(ipClass, n: int = 1):
  333. """
  334. Generates n random IPv4 addresses.
  335. :param n: The number of IP addresses to be generated
  336. :return: A single IP address, or if n>1, a list of IP addresses
  337. """
  338. def is_invalid(ipAddress: ipaddress.IPv4Address):
  339. return ipAddress.is_multicast or ipAddress.is_unspecified or ipAddress.is_loopback or \
  340. ipAddress.is_link_local or ipAddress.is_reserved or ipAddress.is_private
  341. # Aidmar - generate a random IP from specific class
  342. def generate_address(ipClass):
  343. if ipClass == "Unknown":
  344. return ipaddress.IPv4Address(random.randint(0, 2 ** 32 - 1))
  345. else:
  346. # For DDoS attack, we do not generate private IPs
  347. if "private" in ipClass:
  348. ipClass = ipClass[0] # convert A-private to A
  349. ipClassesByte1 = {"A": {1,126}, "B": {128,191}, "C":{192, 223}, "D":{224, 239}, "E":{240, 254}}
  350. temp = list(ipClassesByte1[ipClass])
  351. minB1 = temp[0]
  352. maxB1 = temp[1]
  353. b1 = random.randint(minB1, maxB1)
  354. b2 = random.randint(1, 255)
  355. b3 = random.randint(1, 255)
  356. b4 = random.randint(1, 255)
  357. ipAddress = ipaddress.IPv4Address(str(b1) +"."+ str(b2) + "." + str(b3) + "." + str(b4))
  358. return ipAddress
  359. ip_addresses = []
  360. for i in range(0, n):
  361. address = generate_address(ipClass)
  362. while is_invalid(address):
  363. address = generate_address(ipClass)
  364. ip_addresses.append(str(address))
  365. if n == 1:
  366. return ip_addresses[0]
  367. else:
  368. return ip_addresses
  369. @staticmethod
  370. def generate_random_ipv6_address(n: int = 1):
  371. """
  372. Generates n random IPv6 addresses.
  373. :param n: The number of IP addresses to be generated
  374. :return: A single IP address, or if n>1, a list of IP addresses
  375. """
  376. def is_invalid(ipAddress: ipaddress.IPv6Address):
  377. return ipAddress.is_multicast or ipAddress.is_unspecified or ipAddress.is_loopback or \
  378. ipAddress.is_link_local or ipAddress.is_private or ipAddress.is_reserved
  379. def generate_address():
  380. return ipaddress.IPv6Address(random.randint(0, 2 ** 128 - 1))
  381. ip_addresses = []
  382. for i in range(0, n):
  383. address = generate_address()
  384. while is_invalid(address):
  385. address = generate_address()
  386. ip_addresses.append(str(address))
  387. if n == 1:
  388. return ip_addresses[0]
  389. else:
  390. return ip_addresses
  391. @staticmethod
  392. def generate_random_mac_address(n: int = 1):
  393. """
  394. Generates n random MAC addresses.
  395. :param n: The number of MAC addresses to be generated.
  396. :return: A single MAC addres, or if n>1, a list of MAC addresses
  397. """
  398. def is_invalid(address: str):
  399. first_octet = int(address[0:2], 16)
  400. is_multicast_address = bool(first_octet & 0b01)
  401. is_locally_administered = bool(first_octet & 0b10)
  402. return is_multicast_address or is_locally_administered
  403. def generate_address():
  404. mac = [random.randint(0x00, 0xff) for i in range(0, 6)]
  405. return ':'.join(map(lambda x: "%02x" % x, mac))
  406. mac_addresses = []
  407. for i in range(0, n):
  408. address = generate_address()
  409. while is_invalid(address):
  410. address = generate_address()
  411. mac_addresses.append(address)
  412. if n == 1:
  413. return mac_addresses[0]
  414. else:
  415. return mac_addresses
  416. # Aidmar
  417. def get_reply_delay(self, ip_dst):
  418. """
  419. Gets the minimum and the maximum reply delay for all the connections of a specific IP.
  420. :param ip_dst: The IP to reterive its reply delay.
  421. :return minDelay: minimum delay
  422. :return maxDelay: maximum delay
  423. """
  424. result = self.statistics.process_db_query(
  425. "SELECT AVG(minDelay), AVG(maxDelay) FROM conv_statistics WHERE ipAddressB='6.6.6.6';") #" + ip_dst + "';")
  426. if result[0][0] and result[0][1]:
  427. minDelay = result[0][0]
  428. maxDelay = result[0][1]
  429. else:
  430. allMinDelays = self.statistics.process_db_query("SELECT minDelay FROM conv_statistics LIMIT 500;")
  431. minDelay = np.median(allMinDelays)
  432. allMaxDelays = self.statistics.process_db_query("SELECT maxDelay FROM conv_statistics LIMIT 500;")
  433. maxDelay = np.median(allMaxDelays)
  434. minDelay = int(minDelay) * 10 ** -6 # convert from micro to seconds
  435. maxDelay = int(maxDelay) * 10 ** -6
  436. return minDelay, maxDelay
  437. # Group the packets in conversations
  438. def packetsToConvs(self,exploit_raw_packets):
  439. """
  440. Classifies a bunch of packets to conversations groups. A conversation is a set of packets go between host A (IP,port)
  441. to host B (IP,port)
  442. :param exploit_raw_packets: A set of packets contains several conversations.
  443. :return conversations: A set of arrays, each array contains the packet of specifc conversation
  444. :return orderList_conversations: An array contains the conversations ids (IP_A,port_A, IP_b,port_B) in the order
  445. they appeared in the original packets.
  446. """
  447. conversations = {}
  448. orderList_conversations = []
  449. for pkt_num, pkt in enumerate(exploit_raw_packets):
  450. eth_frame = Ether(pkt[0])
  451. ip_pkt = eth_frame.payload
  452. ip_dst = ip_pkt.getfieldval("dst")
  453. ip_src = ip_pkt.getfieldval("src")
  454. tcp_pkt = ip_pkt.payload
  455. port_dst = tcp_pkt.getfieldval("dport")
  456. port_src = tcp_pkt.getfieldval("sport")
  457. conv_req = (ip_src, port_src, ip_dst, port_dst)
  458. conv_rep = (ip_dst, port_dst, ip_src, port_src)
  459. if conv_req not in conversations and conv_rep not in conversations:
  460. pktList = [pkt]
  461. conversations[conv_req] = pktList
  462. # Order list of conv
  463. orderList_conversations.append(conv_req)
  464. else:
  465. if conv_req in conversations:
  466. pktList = conversations[conv_req]
  467. pktList.append(pkt)
  468. conversations[conv_req] = pktList
  469. else:
  470. pktList = conversations[conv_rep]
  471. pktList.append(pkt)
  472. conversations[conv_rep] = pktList
  473. return (conversations, orderList_conversations)
  474. def is_valid_ip_address(self,addr):
  475. """
  476. Checks if the IP address family is supported.
  477. :param addr: IP address to be checked.
  478. :return: Boolean
  479. """
  480. try:
  481. socket.inet_aton(addr)
  482. return True
  483. except socket.error:
  484. return False
  485. def ip_src_dst_equal_check(self, ip_source, ip_destination):
  486. """
  487. Checks if the source IP and destination IP are equal.
  488. :param ip_source: source IP address.
  489. :param ip_destination: destination IP address.
  490. """
  491. equal = False
  492. if isinstance(ip_source, list):
  493. if ip_destination in ip_source:
  494. equal = True
  495. else:
  496. if ip_source == ip_destination:
  497. equal = True
  498. if equal:
  499. print("\nERROR: Invalid IP addresses; source IP is the same as destination IP: " + ip_source + ".")
  500. sys.exit(0)
  501. def get_inter_arrival_time_dist(self, packets):
  502. timeSteps = []
  503. prvsPktTime = 0
  504. for index, pkt in enumerate(packets):
  505. eth_frame = Ether(pkt[0])
  506. if index == 0:
  507. prvsPktTime = eth_frame.time
  508. else:
  509. timeSteps.append(eth_frame.time - prvsPktTime)
  510. prvsPktTime = eth_frame.time
  511. import numpy as np
  512. freq,values = np.histogram(timeSteps,bins=20)
  513. dict = {}
  514. for i,val in enumerate(values):
  515. if i < len(freq):
  516. dict[str(val)] = freq[i]
  517. return dict
  518. def clean_white_spaces(self, str):
  519. str = str.replace("\\n", "\n")
  520. str = str.replace("\\r", "\r")
  521. str = str.replace("\\t", "\t")
  522. str = str.replace("\\\'", "\'")
  523. return str
  524. def modify_payload(self,str_tcp_seg, orig_target_uri, target_uri, orig_ip_dst, target_host):
  525. if len(str_tcp_seg) > 0:
  526. # convert payload bytes to str => str = "b'..\\r\\n..'"
  527. str_tcp_seg = str_tcp_seg[2:-1]
  528. str_tcp_seg = str_tcp_seg.replace(orig_target_uri, target_uri)
  529. str_tcp_seg = str_tcp_seg.replace(orig_ip_dst, target_host)
  530. str_tcp_seg = self.clean_white_spaces(str_tcp_seg)
  531. return str_tcp_seg