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Showing posts with label OpenSSL. Show all posts
Showing posts with label OpenSSL. Show all posts

Mimir - OSINT Threat Intel Interface


OSINT Threat Intel Interface - Named after the old Norse God of knowledge.
Mimir functions as a CLI to HoneyDB which in short is an OSINT aggragative threat intel pool. Starting the program brings you to a menu the options for which are as follows.
1. Fetch Threat Feed        5. Visualize Top Malicious Hosts in Browser
2. Fetch Bad Host List 6. Visualize Top Targeted Services in Browser
3. Perform WHOIS Lookup 7. Visualize Results for Single Host in Browser
4. Invoke Nmap Scan 8. Quit
The purpose of this tool is to make intelligence gathering easier by including functionality to save the Threat Feed and Bad Host lists, and invoke either an in-script WHOIS lookup or Nmap scan to learn more about the target hosts. Logs are saved in the current working directory for future reference and further processing.
HoneyDB provides a data visualization service, this can be accessed via Mimir by selecting their respective options. Selenium will then employ the Geckodriver to open the pages.

Dependencies
pycurl
selenium
blessings
ipwhois
pprint
And the Mozilla Geckodriver

Update
Some versions of PyCurl work better with some versions of SSL than others. This is important because HoneyDB makes use of OpenSSL and having a version that does not support it makes Mimir incompatible with honeyDB. To that end I have added some logic that lets Mimir detect your version of PyCurl and automatically rebuild it from source to a version that does support OpenSSL. It does so by invoking the rebuild.sh shell script that is included in this repo.


Freedom Fighting - A collection of scripts which may come in handy during your freedom fighting activities


Freedom Fighting scripts
This repository contains scripts which may come in handy during your freedom fighting activities. It will be updated occasionally, when I find myself in need of something I can't find online. Everything here is distributed under the terms of the GPL v3 License.

nojail.py
A log cleaner which removes incriminating entries in:
  • /var/run/utmp, /var/log/wtmp, /var/log/btmp (controls the output of the who, w and last commands)
  • /var/log/lastlog (controls the output of the lastlog command)
  • /var/**/*.log (.log.1, .log.2.gz, etc. included)
  • Any additional file or folder designated by the user
Entries are deleted based on an IP address and/or associated hostname.
Special care is taken to avoid breaking file descriptors while tampering with logs. This means logs continue to be written to after they've been tampered with, making the cleanup a lot less conspicuous. All the work takes place in a tmpfs drive and any files created are wiped securely.
Warning: The script has only been tested on Linux and will not be able to clean UTMP entries on other Unix flavors.

Usage:
usage: nojail.py [-h] [--user USER] [--ip IP] [--hostname HOSTNAME]
[--verbose] [--check]
[log_files [log_files ...]]

Stealthy log file cleaner.

positional arguments:
log_files Specify any log files to clean in addition to
/var/**/*.log.

optional arguments:
-h, --help show this help message and exit
--user USER, -u USER The username to remove from the connexion logs.
--ip IP, -i IP The IP address to remove from the logs.
--hostname HOSTNAME The hostname of the user to wipe. Defaults to the rDNS
of the IP.
--verbose, -v Print debug messages.
--check, -c If present, the user will be asked to confirm each
deletion from the logs.
--daemonize, -d Start in the background and delete logs when the
current session terminates. Implies --self-delete.
--self-delete, -s Automatically delete the script after its execution.
By default, if no arguments are given, the script will try to determine the IP address to scrub based on the SSH_CONNECTION environment variable. Any entry matching the reverse DNS of that IP will be removed as well.

Basic example:
./nojail.py --user root --ip 151.80.119.32 /etc/app/logs/access.log --check
...will remove all entries for the user root where the IP address is 151.80.119.32 or the hostame is manalyzer.org. The user will also be prompted before deleting each record because of the --check option. Finally, the file /etc/app/logs/access.log will be processed in addition to all the default ones.
If folders are given as positional arguments (/etc/app/logs/ for instance), the script will recursively crawl them and clean any file with the .log extension (*.log.1, *.log.2.gz, etc. included).

Daemonizing the script
./nojail.py --daemonize
Assuming this is run from an SSH connexion, this command will delete all logs pertaining to the current user's activity with the detected IP address and hostname right after the connexion is closed. This script will subsequently automatically delete itself. Please bear in mind that you won't have any opportunity to receive error messages from the application. You are encouraged to try deleting the logs once before spawning the demon to make sure that the arguments you specified are correct.

Sample output:
root@proxy:~# ./nojail.py
[ ] Cleaning logs for root (XXX.XXX.XXX.XXX - domain.com).
[*] 2 entries removed from /var/run/utmp!
[*] 4 entries removed from /var/log/wtmp!
[ ] No entries to remove from /var/log/btmp.
[*] Lastlog set to 2017-01-09 17:12:49 from pts/0 at lns-bzn-37-79-250-104-19.adsl.proxad.net
[*] 4 lines removed from /var/log/nginx/error.log!
[*] 11 lines removed from /var/log/nginx/access.log!
[*] 4 lines removed from /var/log/auth.log!

Disclaimer
This script is provided without any guarantees. Don't blame me it doesn't wipe all traces of something you shouldn't have done in the first place.

share.sh
A portable and secure file sharing script. While freedom fighting, it is generally not possible to scp files into compromised machines. Alternate ways to upload files are needed, but most sharing services are either too restrictive or do not provide a way to retrieve files easily from the command line. Security considerations may also prevent people from uploading sensitive files to cloud providers for fear that they will keep a copy of it forever.
This small and portable bash script relies on transfer.sh to solve that problem. It...
  • Encrypts files before uploading them (symmetric AES-256-CBC).
  • Automatically uses torify if it is present on the system for increased anonimity.
The only dependencies needed are openssl and either curl or wget.

Usage
root@proxy:~# ./share.sh ~/file_to_share "My_Secure_Encryption_Key!"
Success! Retrieval command: ./share.sh -r file_to_share "My_Secure_Encryption_Key!" https://transfer.sh/BQPFz/28239
root@proxy:~# ./share.sh -r file_to_share "My_Secure_Encryption_Key!" https://transfer.sh/BQPFz/28239
File retrieved successfully!
Additional arguments during the upload allow you to control the maximum number of downloads allowed for the file (-m) and how many days transfer.sh will keep it (-d). The default value for both these options is 1.
Warning: Do not use spaces in the encryption key, or only the first word of your passphrase will be taken into account. This is due to the way getopts handles arguments (I think). Pull requests are welcome if anyone is interested in fixing this.

autojack.py
AutoJack is a short script leveraging EmptyMonkey's shelljack to log the terminal of any user connecting through SSH. It watches auth.log for successful connections, figures out the PID of the user's bash process,and leaves the rest to shelljack.
Launch it in a screen, and wait until other users log-in. Their session will be logged to /root/.local/sj.log.[user].[timestamp].
The script is not particularly stealthy (no attempt is made to hide the shelljack process) but it will get the job done. Note that to avoid self-incrimination, the root user is not targeted (this can be trivially commented out in the code).


SSLsplit - transparent SSL/TLS interception


SSLsplit is a tool for man-in-the-middle attacks against SSL/TLS encrypted network connections. It is intended to be useful for network forensics, application security analysis and penetration testing.
SSLsplit is designed to transparently terminate connections that are redirected to it using a network address translation engine. SSLsplit then terminates SSL/TLS and initiates a new SSL/TLS connection to the original destination address, while logging all data transmitted. Besides NAT based operation, SSLsplit also supports static destinations and using the server name indicated by SNI as upstream destination. SSLsplit is purely a transparent proxy and cannot act as a HTTP or SOCKS proxy configured in a browser.

SSLsplit supports plain TCP, plain SSL, HTTP and HTTPS connections over both IPv4 and IPv6. SSLsplit fully supports Server Name Indication (SNI) and is able to work with RSA, DSA and ECDSA keys and DHE and ECDHE cipher suites. Depending on the version of OpenSSL built against, SSLsplit supports SSL 3.0, TLS 1.0, TLS 1.1 and TLS 1.2, and optionally SSL 2.0 as well.
For SSL and HTTPS connections, SSLsplit generates and signs forged X509v3 certificates on-the-fly, mimicking the original server certificate's subject DN, subjectAltName extension and other characteristics. SSLsplit has the ability to use existing certificates of which the private key is available, instead of generating forged ones. SSLsplit supports NULL-prefix CN certificates but otherwise does not implement exploits against specific certificate verification vulnerabilities in SSL/TLS stacks.
SSLsplit implements a number of defences against mechanisms which would normally prevent MitM attacks or make them more difficult. SSLsplit can deny OCSP requests in a generic way. For HTTP and HTTPS connections, SSLsplit removes response headers for HPKP in order to prevent public key pinning, for HSTS to allow the user to accept untrusted certificates, and Alternate Protocols to prevent switching to QUIC/SPDY. HTTP compression, encodings and keep-alive are disabled to make the logs more readable.
As an experimental feature, SSLsplit supports STARTTLS and similar mechanisms, where a protocol starts on a plain text TCP connection and is later upgraded to SSL/TLS through protocol-specific means, such as the STARTTLS command in SMTP. SSLsplit supports generic upgrading of TCP connections to SSL.
See the manual page sslsplit(1) for details on using SSLsplit and setting up the various NAT engines.

Requirements
SSLsplit depends on the OpenSSL and libevent 2.x libraries. The build depends on GNU make and a POSIX.2 environment in PATH . If available, pkg-config is used to locate and configure the dependencies. The optional unit tests depend on the check library.
SSLsplit currently supports the following operating systems and NAT mechanisms:
  • FreeBSD: pf rdr and divert-to, ipfw fwd, ipfilter rdr
  • OpenBSD: pf rdr-to and divert-to
  • Linux: netfilter REDIRECT and TPROXY
  • Mac OS X: pf rdr and ipfw fwd
Support for local process information ( -i ) is currently available on Mac OS X and FreeBSD.
SSL/TLS features and compatibility greatly depend on the version of OpenSSL linked against; for optimal results, use a recent release of OpenSSL proper. OpenSSL forks like LibreSSL and BoringSSL may or may not work.

Installation
With OpenSSL, libevent 2.x, pkg-config and check available, run:
make
make test # optional unit tests
make install # optional install
Dependencies are autoconfigured using pkg-config. If dependencies are not picked up and fixing PKG_CONFIG_PATH does not help, you can specify their respective locations manually by setting OPENSSL_BASE , LIBEVENT_BASE and/or CHECK_BASE to the respective prefixes.
You can override the default install prefix ( /usr/local ) by setting PREFIX . For more build options see GNUmakefile .


Collection of Heartbleed Tools (OpenSSL CVE-2014-0160)