This is default featured slide 1 title

Go to Blogger edit html and find these sentences.Now replace these sentences with your own descriptions.

This is default featured slide 2 title

Go to Blogger edit html and find these sentences.Now replace these sentences with your own descriptions.

This is default featured slide 3 title

Go to Blogger edit html and find these sentences.Now replace these sentences with your own descriptions.

This is default featured slide 4 title

Go to Blogger edit html and find these sentences.Now replace these sentences with your own descriptions.

This is default featured slide 5 title

Go to Blogger edit html and find these sentences.Now replace these sentences with your own descriptions.

Showing posts with label Scan. Show all posts
Showing posts with label Scan. Show all posts

spoilerwall - Avoid being scanned by spoiling movies on all your ports!


Spoilerwall introduces a brand new concept in the field of network hardening. Avoid being scanned by spoiling movies on all your ports!
Firewall? How about Fire'em'all! Stop spending thousand of dollars on big teams that you don't need! Just fire up the Spoilers Server and that's it!

Movie Spoilers DB + Open Ports + Pure Evil = Spoilerwall

Set your own:
  1. Clone this repo
$ git clone git@github.com:infobyte/spoilerwall.git
  1. Edit the file server-spoiler.py and set the HOST and PORT variables.
  2. Run the server
$ python2 server-spoiler.py
The server will listen on the selected port (8080 by default). Redirect incoming TCP traffic in all ports to this service by running:
iptables -A PREROUTING -t nat -i eth0 -p tcp --dport 1:65535 -j DNAT --to-destination {HOST}:{PORT}
Change {HOST} and {PORT} for the values set in step (2). Also, if the traffic is redirected to localhost, run:
sysctl -w net.ipv4.conf.eth0.route_localnet=1
Using this config, an nmap scan will show every port as open and a spoiler for each one.
View the live demo running in spoilerwall.faradaysec.com
~ ❯❯❯ telnet spoilerwall.faradaysec.com 23

Trying 138.197.196.144...

Connected to spoilerwall.faradaysec.com.

Escape character is '^]'.

Gummo

Fucked up people killing cats after a tornado

Connection closed by foreign host.
Browse in Shodan (but beware of the Spoilers!):
https://www.shodan.io/host/138.197.196.144
Be careful in your next CTF - you never know when the spoilers are coming!

RED HAWK - All In One Tool For Information Gathering, SQL Vulnerability Scannig and Crawling


RED HAWK is An All In One Tool For Information Gathering, SQL Vulnerability Scannig and Crawling. Coded In PHP.

Features Of The Tool:
  • Server detection
  • Cloudflare detector
  • robots scanner
  • CMS Detector
    • WordPress
    • Joomla
    • Drupal
    • Magento
  • Whois
  • GEO-IP Scan
  • NMAP Port Scan
  • DNS Lookup
  • SubNet Calculator
  • Subdomain Finder
  • Reverse IP Scanner
    • CMS detection For Sites On the same server.
  • Parameter Finder
    • Error based SQLi Detector
  • Crawler
    • Basic Crawler {69}
    • [ - ] Admin scanner
    • [ - ] Backups Finder
    • [ - ] Misc. Crawler
    • Advance Crawler{420}
    • [ - ] Admin scanner
    • [ - ] Backups Finder
    • [ - ] Misc. Crawler

Changelog:
  • Version 1.0.0
    • Initial Launch

Installation:
Run The Tool and Type fix This will Install All Required Modules.

Usage:
  • git clone https://github.com/Tuhinshubhra/RED_HAWK
  • cd RED_HAWK
  • php rhawk.php
  • Use the "help" command to see the command list or type in the domain name you want to scan (without Http:// OR Https://).
  • Select whether The Site Runs On HTTPS or not.
  • Leave The Rest To The Scanner

portSpider - A Lightning Fast Multithreaded Network Scanner Framework With Modules


A lightning fast multithreaded network scanner framework with modules.

modules:
  • http - Scan for open HTTP ports, and get the the titles.
  • mysql - Scan for open MySQL servers, and try to log in with the default credentials.
  • mongodb - Scan for open MongoDB instances, and check if they are password protected.
  • ssh - Scan for open SSH ports.
  • printer - Scan for open printer ports and websites.
  • gameserver - Scan for open game server ports.
  • manual - Scan custom ports.

commands:
  • modules - List all modules.
  • use - Use a module.
  • options - Show a module's options.
  • set - Set an option.
  • run - Run the selected module.
  • back - Go back to menu.
  • exit - Shut down portSpider.

installing:

Debian based systems:
$ sudo apt-get update && sudo apt-get install python3 python3-pip -y

$ git clone https://github.com/xdavidhu/portSpider

$ cd portSpider/

$ python3 -m pip install -r requirements.txt

macOS / OSX:
$ brew install python3

$ git clone https://github.com/xdavidhu/portSpider

$ cd portSpider/

$ python3 -m pip install -r requirements.txt
NOTE: You need to have Homebrew installed before running the macOS/OSX installation.
WARNING: portSpider is only compatible with Python 3.3 & 3.4 & 3.5 & 3.6

developers:


WPSeku v0.2 - Wordpress Security Scanner


WPSeku is a black box WordPress vulnerability scanner that can be used to scan remote WordPress installations to find security issues.

Screenshots





Cangibrina - A Fast And Powerfull Dashboard (Admin) Finder


Cangibrina is a multi platform tool which aims to obtain the Dashboard of sites using brute-force over wordlist, google, nmap, and robots.txt

Requirements:
  • Python 2.7
  • mechanize
  • PySocks
  • beautifulsoup4
  • html5lib
  • Nmap (--nmap)
  • TOR (--tor)

Install:
Linux
 git clone http://github.com/fnk0c/cangibrina.git
cd cangibrina
pip install -r requirements.txt

Usage
usage: cangibrina.py [-h] -u U [-w W] [-t T] [-v] [--ext EXT] [--user-agent]
[--tor] [--search] [--dork DORK] [--nmap [NMAP]]

Fast and powerful admin finder

optional arguments:
-h, --help show this help message and exit
-u U target site
-w W set wordlist (default: wl_medium)
-t T set threads number (default: 5)
-v enable verbose
--ext EXT filter path by target extension
--user-agent modify user-agent
--tor set TOR proxy
--search use google and duckduckgo to search
--dork DORK set custom dork
--nmap [NMAP] use nmap to scan ports and services

Examples
 python cangibrina.py -u facebook.com

python cangibrina.py -u facebook.com -v

python cangibrina.py -u facebook.com -w /root/diretorios.txt -t 10 -v

python cangibrina.py -u facebook.com --search -v

python cangibrina.py -u facebook.com --search --dork 'site:facebook.com inurl:login'

python cangibrina.py -u facebook.com -v --nmap

python cangibrina.py -u facebook.com -v --nmap 'sudo nmap -D 127.0.0.1 -F facebook.com'

python cangibrina.py -u facebook.com --user-agent

python cangibrina.py -u facebook.com --ext php

[IMPORTANT] DORK MUST BE WRITE BETWEEN QUOTES !
[Example] 'inurl:login.php'


Cameradar - An RTSP Surveillance Camera Access Multitool


Cameradar hacks its way into RTSP CCTV cameras

Cameradar allows you to:
  • Detect open RTSP hosts on any accessible target
  • Get their public info (hostname, port, camera model, etc.)
  • Launch automated dictionary attacks to get their stream route (for example /live.sdp)
  • Launch automated dictionary attacks to get the username and password of the cameras
  • Generate thumbnails from them to check if the streams are valid and to have a quick preview of their content
  • Try to create a Gstreamer pipeline to check if they are properly encoded
  • Print a summary of all the informations Cameradar could get

And all of this in a single command-line.
Of course, you can also call for individual tasks if you plug in a Database to Cameradar using the MySQL cache manager for example. You can create your own cache manager by following the simple example of the dumb cache manager.

Quick install
The quick install uses docker to build Cameradar without polluting your machine with dependencies and makes it easy to deploy Cameradar in a few commands. However, it may require networking knowledge, as your docker containers will need access to the cameras subnetwork.

Dependencies
The only dependencies are docker, docker-tools, git and make.

Five steps guide
  1. git clone https://github.com/EtixLabs/cameradar.git
  2. cd cameradar/deployment
  3. Tweak the conf/cameradar.conf.json as you need (see the configuration guide here for more information)
  4. docker-compose build ; docker-compose up
By default, the version of the package in the deployment should be the last stable release.
If you want to scan a different target or different ports, change the values CAMERAS_TARGET and CAMERAS_PORTS in the docker-compose.yml file.
The generated thumbnails will be in the cameradar_thumbnails folder after Cameradar has finished executing.
If you want to deploy your custom version of Cameradar using the same method, you should check the advanced docker deployment tutorial here.

Manual installation
The manual installation is recommended if you want to tweak Cameradar and quickly test them using CMake and running Cameradar in command-line. If you just want to use Cameradar, it is recommended to use the quick install instead.

Dependencies
To install Cameradar you will need these packages
  • cmake (cmake)
  • git (git)
  • gstreamer1.x (libgstreamer1.0-dev)
  • ffmpeg (ffmpeg)
  • boost (libboost-all-dev)
  • libcurl (libcurl4-openssl-dev)

Steps
The simplest way would be to follow these steps :
  1. git clone https://github.com/EtixLabs/cameradar.git
  2. cd cameradar
  3. mkdir build
  4. cd build
  5. cmake ..
  6. make
  7. cd cameradar_standalone
  8. ./cameradar -s the_target_you_want_to_scan

Output
For each camera, Cameradar will output these JSON objects :
{
"address" : "173.16.100.45",
"ids_found" : true,
"password" : "123456",
"path_found" : true,
"port" : 554,
"product" : "Vivotek FD9381-HTV",
"protocol" : "tcp",
"route" : "/live.sdp",
"service_name" : "rtsp",
"state" : "open",
"thumbnail_path" : "/tmp/127.0.0.1/1463735257.jpg",
"username" : "admin"
}

Check camera access
If you have VLC Media Player, you should be able to use the GUI to connect to the RTSP stream using this format : rtsp://username:password@address:port/route
With the above result, the RTSP URL would be rtsp://admin:123456@173.16.100.45:554/live.sdp
If you're still in your console however, you can go even faster by using vlc in commmand-line and just run vlc rtsp://username:password@address:port/route with the camera's info instead of the placeholders.

Command line options
  • "-c" : Set a custom path to the configuration file (-c /path/to/conf) <<<<<<< HEAD
  • "-s" : Set custom subnets (overrides configuration) : You can use this argument in many ways, using a subnet (e.g.: 172.16.100.0/24) or even an IP (e.g.: 172.16.100.10), a range of IPs (e.g.: 172.16.100.10-172.16.100.20) or a mix of all those (e.g.: 172.17.100.0/24,172.16.100.10-172.16.100.20,0.0.0.0). =======
  • "-s" : Set custom target (overrides configuration)
  • "-p" : Set custom ports (overrides configuration)
  • "-m" : Set number of threads (Default value : 1)
  • "-l" : Set log level
    • "-l 1" : Log level DEBUG
      • Will print everything including debugging logs
    • "-l 2" : Log level INFO
      • Prints every normal information
    • "-l 4" : Log level WARNING
      • Only prints warning and errors
    • "-l 5" : Log level ERROR
      • Only prints errors
    • "-l 6" : Log level CRITICAL
      • Doesn't print anything since Cameradar can't have critical failures right now, however you can use this level to debug your own code easily or if you add new critical layers
  • "-d" : Launch the discovery tool
  • "-b" : Launch the dictionary attack tool on all discovered devices
    • Needs either to be launched with the -d option or to use an advanced cache manager (DB, file, ...) with data already present
  • "-t" : Generate thumbnails from detected cameras
    • Needs either to be launched with the -d option or to use an advanced cache manager (DB, file, ...) with data already present
  • "-g" : Check if the stream can be opened with GStreamer
    • Needs either to be launched with the -d option or to use an advanced cache manager (DB, file, ...) with data already present
  • "-v" : Display Cameradar's version
  • "-h" : Display this help
  • "--gst-rtsp-server" : Use this option if the attack does not seem to work (only detects the username but not the path, or the opposite). This option will switch the order of the attacks to prioritize path over credentials, which is the way priority is handled for cameras that use GStreamer's RTSP server.

Reconnoitre - A Security Tool For Multithreaded Information Gathering And Service Enumeration


A reconnaissance tool made for the OSCP labs to automate information gathering and service enumeration whilst also creating a directory structure of results for each host, recommended commands to execute and directory structures for storing loot and flags.

Usage
This tool can be used and copied for personal use freely however attribution and credit should be offered to Mike Czumak who originally started the process of automating this work.
Argument Description
-h, --help Display help message and exit
-t TARGET_HOSTS Set either a target range of addresses or a single host to target. May also be a file containing hosts.
-o OUTPUT_DIRECTORY Set the target directory where results should be written.
-w WORDLIST Optionally specify your own wordlist to use for pre-compiled commands, or executed attacks.
--dns DNS_SERVER Optionally specify a DNS server to use with a service scan.
--pingsweep Write a new target.txt file in the OUTPUT_DIRECTORY by performing a ping sweep and discovering live hosts.
--dnssweep Find DNS servers from the list of target(s).
--snmpsweep Find hosts responding to SNMP requests from the list of target(s).
--services Perform a service scan over the target(s) and write recommendations for further commands to execute.
--snmpwalk SNMP walk target hosts and save results.
--hostnames Attempt to discover target hostnames and write to hostnames.txt.
--quiet Supress banner and headers and limit feedback to grepable results.
--execute Execute shell commands from recommendations as they are discovered. Likely to lead to very long execution times depending on the wordlist being used and discovered vectors.
--simple_exec Execute non-brute forcing shell comamnds only commands as they are discovered. Likely to lead to very long execution times depending on the wordlist being used and discovered vectors.
--quick Move to the next target after performing a quick scan and writing first-round recommendations.

Usage Examples
Note that these are some examples to give you insight into potential use cases for this tool. Command lines can be added or removed based on what you wish to acomplish with your scan.

Scan a single host, create a file structure and discover services
python ./reconnoitre.py -t 192.168.1.5 -o /root/Documents/labs/ --services
An example output would look like:
root@kali:~/Documents/tools/reconnoitre/reconnoitre# python ./reconnoitre.py -t 192.168.1.5 --services -o /root/Documents/labs/
__
|"""\-= RECONNOITRE
(____) An OSCP scanner

[#] Performing service scans
[*] Loaded single target: 192.168.1.5
[+] Creating directory structure for 192.168.1.5
[>] Creating scans directory at: /root/Documents/labs/192.168.1.5/scans
[>] Creating exploit directory at: /root/Documents/labs/192.168.1.5/exploit
[>] Creating loot directory at: /root/Documents/labs/192.168.1.5/loot
[>] Creating proof file at: /root/Documents/labs/192.168.1.5/proof.txt
[+] Starting quick nmap scan for 192.168.1.5
[+] Writing findings for 192.168.1.5
[>] Found HTTP service on 192.168.1.5:80
[>] Found MS SMB service on 192.168.1.5:445
[>] Found RDP service on 192.168.1.5:3389
[*] TCP quick scan completed for 192.168.1.5
[+] Starting detailed TCP/UDP nmap scans for 192.168.1.5
[+] Writing findings for 192.168.1.5
[>] Found MS SMB service on 192.168.1.5:445
[>] Found RDP service on 192.168.1.5:3389
[>] Found HTTP service on 192.168.1.5:80
[*] TCP/UDP Nmap scans completed for 192.168.1.5
Which would also write the following recommendations file in the scans folder for each target:
[*] Found HTTP service on 192.168.1.50:80
[>] Use nikto & dirb / dirbuster for service enumeration, e.g
[=] nikto -h 192.168.1.50 -p 80 > /root/Documents/labs/192.168.1.50/scans/192.168.1.50_nikto.txt
[=] dirb http://192.168.1.50:80/ -o /root/Documents/labs/192.168.1.50/scans/192.168.1.50_dirb.txt -r -S -x ./dirb-extensions/php.ext
[=] java -jar /usr/share/dirbuster/DirBuster-1.0-RC1.jar -H -l /usr/share/dirbuster/wordlists/directory-list-2.3-medium.txt -r /root/Documents/labs/192.168.1.50/scans/192.168.1.50_dirbuster.txt -u http://192.168.1.50:80/
[=] gobuster -w /usr/share/seclists/Discovery/Web_Content/common.txt -u http://192.168.1.50:80/ -s '200,204,301,302,307,403,500' -e > /root/Documents/labs/192.168.1.50/scans/192.168.1.50_gobuster_common.txt -t 50
[=] gobuster -w /usr/share/seclists/Discovery/Web_Content/cgis.txt -u http://192.168.1.50:80/ -s '200,204,301,307,403,500' -e > /root/Documents/labs/192.168.1.50/scans/192.168.1.50_gobuster_cgis.txt -t 50
[>] Use curl to retreive web headers and find host information, e.g
[=] curl -i 192.168.1.50
[=] curl -i 192.168.1.50/robots.txt -s | html2text
[*] Found MS SMB service on 192.168.1.5:445
[>] Use nmap scripts or enum4linux for further enumeration, e.g
[=] nmap -sV -Pn -vv -p445 --script="smb-* -oN '/root/Documents/labs/192.168.1.5/nmap/192.168.1.5_smb.nmap' -oX '/root/Documents/labs/192.168.1.5/scans/192.168.1.5_smb_nmap_scan_import.xml' 192.168.1.5
[=] enum4linux 192.168.1.5
[*] Found RDP service on 192.168.1.5:3389
[>] Use ncrackpassword cracking, e.g
[=] ncrack -vv --user administrator -P /root/rockyou.txt rdp://192.168.1.5

Discover live hosts and hostnames within a range
python ./reconnoitre.py -t 192.168.1.1-252 -o /root/Documents/testing/ --pingsweep --hostnames

Discover live hosts within a range and then do a quick probe for services
python ./reconnoitre.py -t 192.168.1.1-252 -o /root/Documents/testing/ --pingsweep --services --quick
This will scan all services within a target range to create a file structure of live hosts as well as write recommendations for other commands to be executed based on the services discovered on these machines. Removing --quick will do a further probe but will greatly lengthen execution times.

Discover live hosts within a range and then do probe all ports (UDP and TCP) for services
python ./reconnoitre.py -t 192.168.1.1-252 -o /root/Documents/testing/ --pingsweep --services


Major Update of Acunetix Online

Acunetix Online has undergone a mammoth update, now enjoying all the features and benefits found in Acunetix On Premise, including: Integrated vulnerability management, greater manageability of threats and targets and the integration of popular WAFs and Issue Tracking systems. Acunetix Online also features a brand new UI for greater ease-of-use and manageability.

New web-based user interface

The user interface has been re-designed with a fresh new look, bringing it inline with Acunetix On Premise. The Acunetix Online UI is designed to make it easier for customers to use, by focusing on the core functionality of the product, introducing filtering options, and improving manageability of Targets.
  • All lists can be filtered (Targets, Scans, Vulnerabilities and Reports).
  • Increased configuration options (Excluded Hours, Excluded Paths, custom User Agent strings, client certificates and more).
  • Pre-seed crawls using a list of URLs, Acunetix Sniffer Log, Fiddler SAZ files, Burp Suite saved and state files, and HTTP Archive (HAR) files.

Targets and Vulnerabilities configured by business criticality

Business Criticality can now be assigned to Targets, enabling customers to immediately identify and address vulnerabilities on critical servers.
  • Vulnerabilities identified on all Targets are shown in one list
  • Vulnerability list can be filtered by Target, Business Criticality, Vulnerability, Vulnerability Status and CVSS.
  • Vulnerability can be grouped by Target Business Criticality and Vulnerability Severity.

Integration with popular WAFs and Issue Tracking Systems

Vulnerabilities can now be exported to one of the supported WAFs (F5 Big-IP ASM, Fortinet FortiWeb and Imperva SecureSphere). This allows the user to implement a virtual patch in the WAF, until a fix addressing the vulnerability is installed. Scan results can also be exported to the Acunetix generic XML for integration with other WAFs or 3rd party systems.
Acunetix Online also supports exporting vulnerabilities to either Atlassian JIRA, GitHub or Microsoft Team Foundation Server (TFS), allowing development teams to better keep track of vulnerabilities in their issue tracking systems.

Mark Vulnerabilities as Fixed or False Positives

With the ability to mark vulnerabilities as False Positive, Fixed or Ignored, users can now get rid of false positives from upcoming scans and reports. While any fixed vulnerabilities that are identified by Acunetix will be shown as Rediscovered. The user is given the option of accepting the risk of a vulnerability by marking the vulnerability as Ignored.

Custom Scan Types

Apart from using the default Scan Types included in Acunetix, Acunetix Online users are now able to choose which specific vulnerabilities to scan for. This is made possible through the creation of Custom Scan Types. For example, a Custom Scan Type can be created to scan Targets for a recently discovered vulnerability.

Enhanced Reporting

Acunetix Online now allows reports to be generated on:
  • Individual or multiple Scans,
  • Individual or multiple Targets,
  • Individual, multiple or all the Vulnerabilities identified by Acunetix.
There is also the introduction of a Scan Comparison report which highlights the differences between 2 scans, allowing the user to easily identify the new vulnerabilities in the latest scans, or the vulnerabilities that have not been detected, which could mean that they are fixed. Reports are now available in both PDF and HTML.

Network Security Scanning

Acunetix Online provides a comprehensive perimeter network security scanning service by integrating with the latest OpenVAS network vulnerability scanning engine (v9). Acunetix Online can now detect in excess of 50,000 network vulnerabilities.

Added functionality for Acunetix Integrators

Acunetix have added a new API that may be used by system integrators, exposing all the functionality available in Acunetix. The API is able to provide up-to-the-minute status of on-going scans together with information on vulnerabilities identified for these scans.


Pybelt - The Hackers Tool Belt

Pybelt is an open source hackers tool belt complete with:
  • A port scanner
  • SQL injection scanner
  • Dork checker
  • Hash cracker
  • Hash type verification tool
  • Proxy finding tool
  • XSS scanner
It is capable of cracking hashes without prior knowledge of the algorithm, scanning ports on a given host, searching for SQLi vulnerabilities in a given URL, verifying that your Google dorks work like they should, verifying the algorithm of a given hash, scanning a URL for XSS vulnerability, and finding usable HTTP proxies.

Screenshots
SQL Injection scanning made easy, just provide a URL and watch it work

Dork checker, have some Dorks you're not sure of? Go ahead and run the Dork check with the Dork as an argument, it will pull 100 URLs and give you success rate for the Dork

Hash cracking made simple, provide the hash type at the end ":md5, :sha256, etc" for a specific hash, or ":all" for all algorithms available on your machine

And many more!

Usage

Installation
You can either clone the repository
git clone https://github.com/ekultek/pybelt.git
or download the latest release as a zip/tar ball here
Once you have the program installed cd into the directory and run the following command:
pip install -r requirements.txt
This will install all of the programs needed libraries and should be able to be run from there.
###Functionality
python pybelt.py -p 127.0.0.1
Will run a port scan on your local host
python pybelt.py -s http://example.com/php?id=2
Will run a SQLi scan on the given URL
python pybelt.py -d idea?id=55
Will run a Dork check on the given Google Dork
python pybelt.py -c 9a8b1b7eee229046fc2701b228fc2aff:all
Will attempt to crack the hash using all algorithms available on the computer
python pybelt.py -v 098f6bcd4621d373cade4e832627b4f6
Will try to verify the hash type
python pybelt.py -f
Will find usable proxies
python pybelt.py -x http://127.0.0.1/php?id=1
Will search the URL for XSS vulnerability


BruteSpray - Brute-Forcing from Nmap output (Automatically attempts default creds on found services)


BruteSpray takes nmap GNMAP output and automatically brute-forces services with default credentials using Medusa. BruteSpray can even find non-standard ports by using the -sV inside Nmap.

Usage
First do an nmap scan with '-oA nmap.gnmap'.
Command: python brutespray.py -h
Example: python brutespray.py --file nmap.gnmap --services all --threads 3 --hosts 5

Supported Services
  • ssh
  • ftp
  • telnet
  • vnc
  • mssql
  • mysql
  • postgresql
  • rsh
  • imap
  • nntp
  • pcanywhere
  • pop3
  • rexec
  • rlogin
  • smbnt
  • smtp
  • snmp
  • svn
  • vmauthd

NETATTACK 2 - An Advanced Wireless Network Scan and Attack Script


NETATTACK 2 is a python script that scans and attacks local and wireless networks. Everything is super easy because of the GUI that makes it unnecessary to remember commands and parameters.

FUNCTIONS

SCAN-FUNCTIONS
  • Scan for Wi-Fi networks
  • Scan for local hosts in your network

ATTACK-FUNCTIONS
  • Deauthing ONE / MULTIPLE targets
  • Deauthing every AP in your area
  • Kicking (ALL) user/s off your internet ( ARP-Poisoning )

REQUIREMENTS
LINUX!
  • nmap
  • argparse (Python)
  • scapy (Python)
  • iw

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.


scanless - Public Port Scan Scrapper


Command-line utility for using websites that can perform port scans on your behalf. Useful for early stages of a penetration test or if you'd like to run a port scan on a host and have it not come from your IP address.

scanless (adj): lacking respectable morals. That girl is scanless!

Public Port Scanners

Usage
Requires the requests and bs4 libraries to run, install with pip.
$ python scanless.py --help
usage: scanless.py [-h] [-t TARGET] [-s SCANNER] [-l] [-a]

scanless, public port scan scrapper

optional arguments:
-h, --help show this help message and exit
-t TARGET, --target TARGET
ip or domain to scan
-s SCANNER, --scanner SCANNER
scanner to use (default: yougetsignal)
-l, --list list scanners
-a, --all use all the scanners

$ python scanless.py --list
Scanner Name | Website
---------------|------------------------------
yougetsignal | http://www.yougetsignal.com
viewdns | http://viewdns.info
hackertarget | https://hackertarget.com
ipfingerprints | http://www.ipfingerprints.com
pingeu | http://ping.eu

$ python scanless.py -s viewdns -t scanme.nmap.org
Running scanless...

------- viewdns -------
PORT STATE SERVICE
21/tcp closed ftp
22/tcp open ssh
23/tcp closed telnet
25/tcp closed smtp
53/tcp closed dns
80/tcp open http
110/tcp closed pop3
139/tcp closed netbios
143/tcp closed imap
443/tcp closed https
445/tcp closed smb
1433/tcp closed mssql
1521/tcp closed oracle
3306/tcp closed mysql
3389/tcp closed rdp
-----------------------

$ python scanless.py -a -t scanme.nmap.org
Running scanless...

------- yougetsignal -------
PORT STATE SERVICE
21/tcp closed ftp
22/tcp open ssh
23/tcp closed telnet
25/tcp closed smtp
53/tcp closed dns
80/tcp open http
110/tcp closed pop3
115/tcp closed sftp
135/tcp closed msrpc
139/tcp closed netbios
143/tcp closed imap
194/tcp closed irc
443/tcp closed https
445/tcp closed smb
1433/tcp closed mssql
3306/tcp closed mysql
3389/tcp closed rdp
5632/tcp closed pcanywhere
5900/tcp closed vnc
6112/tcp closed wc3
----------------------------

------- viewdns -------
PORT STATE SERVICE
21/tcp closed ftp
22/tcp open ssh
23/tcp closed telnet
25/tcp closed smtp
53/tcp closed dns
80/tcp open http
110/tcp closed pop3
139/tcp closed netbios
143/tcp closed imap
443/tcp closed https
445/tcp closed smb
1433/tcp closed mssql
1521/tcp closed oracle
3306/tcp closed mysql
3389/tcp closed rdp
-----------------------

------- hackertarget -------
tarting Nmap 7.01 ( https://nmap.org ) at 2017-05-06 02:31 UTC
Nmap scan report for scanme.nmap.org (45.33.32.156)
Host is up (0.065s latency).
Other addresses for scanme.nmap.org (not scanned): 2600:3c01::f03c:91ff:fe18:bb2f
PORT STATE SERVICE VERSION
21/tcp closed ftp
22/tcp open ssh OpenSSH 6.6.1p1 Ubuntu 2ubuntu2.8 (Ubuntu Linux; protocol 2.0)
23/tcp closed telnet
25/tcp closed smtp
80/tcp open http Apache httpd 2.4.7 ((Ubuntu))
110/tcp closed pop3
143/tcp closed imap
443/tcp closed https
445/tcp closed microsoft-ds
3389/tcp closed ms-wbt-server
Service Info: OS: Linux; CPE: cpe:/o:linux:linux_kernel

Service detection performed. Please report any incorrect results at https://nmap.org/submit/ .
Nmap done: 1 IP address (1 host up) scanned in 7.05 second
----------------------------

------- ipfingerprints -------
Host is up (0.16s latency).
Not shown: 484 closed ports
PORT STATE SERVICE
22/tcp open ssh
80/tcp open http
111/tcp filtered rpcbind
135/tcp filtered msrpc
136/tcp filtered profile
137/tcp filtered netbios-ns
138/tcp filtered netbios-dgm
139/tcp filtered netbios-ssn
445/tcp filtered microsoft-ds
Device type: general purpose
Running: Linux 3.X
OS CPE: cpe:/o:linux:linux_kernel:3
OS details: Linux 3.11 - 3.14
Network Distance: 10 hops
------------------------------

------- pingeu -------
PORT STATE SERVICE
21/tcp closed ftp
22/tcp open ssh
23/tcp closed telnet
25/tcp closed smtp
53/tcp closed dns
80/tcp open http
139/tcp closed netbios
443/tcp closed https
445/tcp closed smb
3389/tcp closed rdp
----------------------


WPSeku - Simple Wordpress Security Scanner


WPSeku is a black box WordPress vulnerability scanner that can be used to scan remote WordPress installations to find security issues.

Usage
                           _             
__ ___ __ ___ ___| | ___ _
\ \ /\ / / '_ \/ __|/ _ \ |/ / | | |
\ V V /| |_) \__ \ __/ <| |_| |
\_/\_/ | .__/|___/\___|_|\_\\__,_|
|_|
[--] WPSeku - Wordpress Security Scanner
[--] WPSeku - v0.1.0
[--] Momo Outaadi (@M4ll0k)
[--] https://github.com/m4ll0k/WPSeku

Usage: wpseku.py --url URL

-u --url Site URL (e.g: http://site.com)
-e --enum
[u: Usernames Enumeration
-p --plugin
[x: Search Cross Site Scripting vuln
[l: Search Local File Inclusion vuln
[s: Search SQL Injection vuln
-t --theme
[x: Search Cross Site Scripting vuln
[l: Search Local File Inclusion vuln
[s: Search SQL Injection vuln
-b --brute
[l: Bruteforce password login
[x: Bruteforce password login via XML-RPC
--user Set username, try with enum users
--wordlist Set wordlist
-h --help Show this help and exit
Examples:
wpseku.py -u www.site.com
wpseku.py -u www.site.com -e [u]
wpseku.py -u site.com/path/wp-content/plugins/wp/wp.php?id= -p [x,l,s]
wpseku.py -u site.com --user test --wordlist dict.txt -b [l,x]

Screenshot


Truehunter - Tool to detect TrueCrypt containers


The goal of Truehunter is to detect TrueCrypt containers using a fast and memory efficient approach. It was designed as a PoC some time ago as I couldn't find any open source tool with the same functionality.

Installation
Just use with Python 2.7, it does not need any additional libraries.

usage: truehunter.py [-h] [-D HEADERSFILE] [-m MINSIZE] [-M MAXSIZE]
[-R MAXHEADER] [-f] [-o OUTPUTFILE]
LOCATION
Checks for file size, unknown header, and entropy of files to determine if
they are encrypted containers.
positional arguments:
LOCATION Drive or directory to scan.
optional arguments:
-h, --help show this help message and exit.
-D HEADERSFILE, --database HEADERSFILE
Headers database file, default headers.db
-m MINSIZE, --minsize MINSIZE
Minimum file size in Kb, default 1Mb.
-M MAXSIZE, --maxsize MAXSIZE
Maximum file size in Kb, default 100Mb.
-R MAXHEADER, --repeatHeader MAXHEADER
Discard files with unknown headers repeated more than
N times, default 3.
-f, --fast Do not calculate entropy.
-o OUTPUTFILE, --outputfile OUTPUTFILE
Scan results file name, default scan_results.csv


ShodanHat - Search For Hosts Info With Shodan


Search For Hosts Info With Shodan.

Dependencies
You need to install shodan with pip install shodan or easy_install shodan.
You need to install python-nmap with pip install python-nmap.
You need to set your API Key in the 'constantes.py' file.

Options
-h, --help show this help message and exit
-i IP, --ip=IP info about one host
-l LIST, --list=LIST info about a list of hosts
-s SQ, --sq=SQ searchquery string
--nmap perform a nmap scan in the hosts
--setkey=SETKEY set your api key automatically
NMap Options:
--sS TCP Syn Scan
--sT TCP Connect Scan
--sU UDP Scan

Usage
For One Host
python shodanhat.py -i IP
For a list of Hosts
python shodanhat.py -l list.txt
You can also set a searchquery to make a specific query with '-s' option!




inquisitor - OSINT Gathering Tool for Companies and Organizations


Inquisitor is a simple for gathering information on companies and organizations through the use of Open Source Intelligence (OSINT) sources.
The key features of Inquisitor include:
  1. The ability to cascade the ownership label of an asset (e.g. if a Registrant Name is known to belong to the target organization, then the hosts and networks registered with that name shall be marked as belonging to the target organization)
  2. The ability transform assets into other potentially related assets through querying open sources such as Google and Shodan
  3. The ability to visualize the relationships of those assets through a zoomable pack layout
It is heavily inspired from how Maltego operates, except in this tool, all transforms are performed automatically.

Installation
To install Inquisitor, simply clone the repository, enter it, and execute the installation script.
git clone https://github.com/penafieljlm/inquisitor.git
cd inquisitor
pip install cython
pip install unqlite
python setup.py install

Usage
Inquisitor has five basic commands which include scan , status , classify , dump , and visualize .
usage: inquisitor.py [-h] {scan,status,classify,dump,visualize} ...

optional arguments:
-h, --help show this help message and exit

command:
{scan,status,classify,dump,visualize}
The action to perform.
scan Search OSINT sources for intelligence based on known
assets belonging to the target.
status Prints out the current status of the specified
intelligence database.
classify Classifies an existing asset as either belonging or
not belonging to the target. Adds a new asset with the
specified classification if none is present.
dump Dumps the contents of the database in JSON format
visualize Create a D3.js visualization based on the contents of
the specified intelligence database.

Scan
In scan mode, the tool runs all available transforms for all the assets you have in your Intelligence Database. Make sure to create API Keys for the various OSINT sources indicated below and provide it to the script lest the transforms using those sources be skipped. Also, make sure you seed your Intelligence Database with some known owned target assets using the classify command first because if the database does not contain any owned assets, there will be nothing to transform.
usage: inquisitor.py scan [-h] [--google-dev-key GOOGLE_DEV_KEY]
[--google-cse-id GOOGLE_CSE_ID]
[--shodan-api-key SHODAN_API_KEY]
DATABASE

positional arguments:
DATABASE The path to the intelligence database to use. If
specified file does not exist, a new one will be
created.

optional arguments:
-h, --help show this help message and exit
--google-dev-key GOOGLE_DEV_KEY
Specifies the developer key to use to query Google
Custom Search. Visit the Google APIs Console
(http://code.google.com/apis/console) to get an API
key. If notspecified, the script will simply skip
asset transforms that involve Google Search.
--google-cse-id GOOGLE_CSE_ID
Specifies the custom search engine to query. Visit the
Google Custom Search Console
(https://cse.google.com/cse/all) to create your own
Google Custom Search Engine. If not specified, the
script will simply skip asset transforms that involve
Google Search.
--shodan-api-key SHODAN_API_KEY
Specifies the API key to use to query Shodan. Log into
your Shodan account (https://www.shodan.io/) and look
at the top right corner of the page in order to view
your API key. If not specified, the script will simply
skip asset transforms that involve Shodan.

Status
In status mode, the tool simply prints out a quick summary of the status of your scan database.
usage: inquisitor.py status [-h] DATABASE

positional arguments:
DATABASE The path to the intelligence database to use. If specified file
does not exist, a new one will be created.

optional arguments:
-h, --help show this help message and exit

Classify
In classify mode, you will be able to manually add assets and re-classify already existing assets in the Intelligence Database. You should use this command to seed your Intelligence Database with known owned target assets.
usage: inquisitor.py classify [-h] [-ar REGISTRANT [REGISTRANT ...]]
[-ur REGISTRANT [REGISTRANT ...]]
[-rr REGISTRANT [REGISTRANT ...]]
[-ab BLOCK [BLOCK ...]] [-ub BLOCK [BLOCK ...]]
[-rb BLOCK [BLOCK ...]] [-ah HOST [HOST ...]]
[-uh HOST [HOST ...]] [-rh HOST [HOST ...]]
[-ae EMAIL [EMAIL ...]] [-ue EMAIL [EMAIL ...]]
[-re EMAIL [EMAIL ...]]
DATABASE

positional arguments:
DATABASE The path to the intelligence database to use. If
specified file does not exist, a new one will be
created.

optional arguments:
-h, --help show this help message and exit
-ar REGISTRANT [REGISTRANT ...], --accept-registrant REGISTRANT [REGISTRANT ...]
Specifies a registrant to classify as accepted.
-ur REGISTRANT [REGISTRANT ...], --unmark-registrant REGISTRANT [REGISTRANT ...]
Specifies a registrant to classify as unmarked.
-rr REGISTRANT [REGISTRANT ...], --reject-registrant REGISTRANT [REGISTRANT ...]
Specifies a registrant to classify as rejected.
-ab BLOCK [BLOCK ...], --accept-block BLOCK [BLOCK ...]
Specifies a block to classify as accepted.
-ub BLOCK [BLOCK ...], --unmark-block BLOCK [BLOCK ...]
Specifies a block to classify as unmarked.
-rb BLOCK [BLOCK ...], --reject-block BLOCK [BLOCK ...]
Specifies a block to classify as rejected.
-ah HOST [HOST ...], --accept-host HOST [HOST ...]
Specifies a host to classify as accepted.
-uh HOST [HOST ...], --unmark-host HOST [HOST ...]
Specifies a host to classify as unmarked.
-rh HOST [HOST ...], --reject-host HOST [HOST ...]
Specifies a host to classify as rejected.
-ae EMAIL [EMAIL ...], --accept-email EMAIL [EMAIL ...]
Specifies a email to classify as accepted.
-ue EMAIL [EMAIL ...], --unmark-email EMAIL [EMAIL ...]
Specifies a email to classify as unmarked.
-re EMAIL [EMAIL ...], --reject-email EMAIL [EMAIL ...]
Specifies a email to classify as rejected.

Dump
In dump mode, you will be able to dump the contents of the Intelligence Database into a human-readable JSON file.
usage: inquisitor.py dump [-h] DATABASE JSON_FILE

positional arguments:
DATABASE The path to the intelligence database to use. If specified file
does not exist, a new one will be created.
JSON_FILE The path to dump the JSON file to. Overwrites existing files.

optional arguments:
-h, --help show this help message and exit

Visualize
In visualize mode, you will be able to acquire a hierarchical visualization of the Intelligence Repository.
usage: inquisitor.py visualize [-h] DATABASE HTML_FILE

positional arguments:
DATABASE The path to the intelligence database to use. If specified file
does not exist, a new one will be created.
HTML_FILE The path to dump the visualization file to. Overwrites existing
files.

optional arguments:
-h, --help show this help message and exit


droopescan - A plugin-based scanner that aids security researchers in identifying issues with several CMSs (Drupal, Silverstripe & Wordpress)


A plugin-based scanner that aids security researchers in identifying issues with several CMS:
  • Drupal.
  • SilverStripe.
  • Wordpress.

Partial functionality for:
  • Joomla (version enumeration and interesting URLs only).
  • Moodle (identification doesn't work yet. You need to force 'scan moodle')
computer:~/droopescan$ droopescan scan drupal -u http://example.org/ -t 8
[+] No themes found.

[+] Possible interesting urls found:
Default changelog file - https://www.example.org/CHANGELOG.txt
Default admin - https://www.example.org/user/login

[+] Possible version(s):
7.34

[+] Plugins found:
views https://www.example.org/sites/all/modules/views/
https://www.example.org/sites/all/modules/views/README.txt
https://www.example.org/sites/all/modules/views/LICENSE.txt
token https://www.example.org/sites/all/modules/token/
https://www.example.org/sites/all/modules/token/README.txt
https://www.example.org/sites/all/modules/token/LICENSE.txt
pathauto https://www.example.org/sites/all/modules/pathauto/
https://www.example.org/sites/all/modules/pathauto/README.txt
https://www.example.org/sites/all/modules/pathauto/LICENSE.txt
https://www.example.org/sites/all/modules/pathauto/API.txt
libraries https://www.example.org/sites/all/modules/libraries/
https://www.example.org/sites/all/modules/libraries/CHANGELOG.txt
https://www.example.org/sites/all/modules/libraries/README.txt
https://www.example.org/sites/all/modules/libraries/LICENSE.txt
entity https://www.example.org/sites/all/modules/entity/
https://www.example.org/sites/all/modules/entity/README.txt
https://www.example.org/sites/all/modules/entity/LICENSE.txt
google_analytics https://www.example.org/sites/all/modules/google_analytics/
https://www.example.org/sites/all/modules/google_analytics/README.txt
https://www.example.org/sites/all/modules/google_analytics/LICENSE.txt
ctools https://www.example.org/sites/all/modules/ctools/
https://www.example.org/sites/all/modules/ctools/CHANGELOG.txt
https://www.example.org/sites/all/modules/ctools/LICENSE.txt
https://www.example.org/sites/all/modules/ctools/API.txt
features https://www.example.org/sites/all/modules/features/
https://www.example.org/sites/all/modules/features/CHANGELOG.txt
https://www.example.org/sites/all/modules/features/README.txt
https://www.example.org/sites/all/modules/features/LICENSE.txt
https://www.example.org/sites/all/modules/features/API.txt
[... snip for README ...]

[+] Scan finished (0:04:59.502427 elapsed)
You can get a full list of options by running:
droopescan --help
droopescan scan --help

Why not X?
Because droopescan:
  • is fast
  • is stable
  • is up to date
  • allows simultaneous scanning of multiple sites
  • is 100% python

Installation
Installation is easy using pip:
apt-get install python-pip
pip install droopescan
Manual installation is as follows:
git clone https://github.com/droope/droopescan.git
cd droopescan
pip install -r requirements.txt
./droopescan scan --help
The master branch corresponds to the latest release (what is in pypi). Development branch is unstable and all pull requests must be made against it. More notes regarding installation can be found here .

Features

Scan types.
Droopescan aims to be the most accurate by default, while not overloading the target server due to excessive concurrent requests. Due to this, by default, a large number of requests will be made with four threads; change these settings by using the --number and --threads arguments respectively.
This tool is able to perform four kinds of tests. By default all tests are ran, but you can specify one of the following with the -e or --enumerate flag:
  • p -- Plugin checks : Performs several thousand HTTP requests and returns a listing of all plugins found to be installed in the target host.
  • t -- Theme checks : As above, but for themes.
  • v -- Version checks : Downloads several files and, based on the checksums of these files, returns a list of all possible versions.
  • i -- Interesting url checks : Checks for interesting urls (admin panels, readme files, etc.)
More notes regarding scanning can be found here .

Target specification.
You can specify a particular host to scan by passing the -u or --url parameter:
    droopescan scan drupal -u example.org
You can also omit the drupal argument. This will trigger “CMS identification”, like so:
    droopescan scan -u example.org
Multiple URLs may be scanned utilising the -U or --url-file parameter. This parameter should be set to the path of a file which contains a list of URLs.
    droopescan scan drupal -U list_of_urls.txt
The drupal parameter may also be ommited in this example. For each site, it will make several GET requests in order to perform CMS identification, and if the site is deemed to be a supported CMS, it is scanned and added to the output list. This can be useful, for example, to run droopescan across all your organisation's sites.
    droopescan scan -U list_of_urls.txt
The code block below contains an example list of URLs, one per line:
http://localhost/drupal/6.0/
http://localhost/drupal/6.1/
http://localhost/drupal/6.10/
http://localhost/drupal/6.11/
http://localhost/drupal/6.12/
A file containing URLs and a value to override the default host header with separated by tabs or spaces is also OK for URL files. This can be handy when conducting a scan through a large range of hosts and you want to prevent unnecessary DNS queries. To clarify, an example below:
192.168.1.1 example.org
http://192.168.1.1/ example.org
http://192.168.1.2/drupal/ example.org
It is quite tempting to test whether the scanner works for a particular CMS by scanning the official site (e.g. wordpress.org for wordpress), but the official sites rarely run vainilla installations of their respective CMS or do unorthodox things. For example, wordpress.org runs the bleeding edge version of wordpress, which will not be identified as wordpress by droopescan at all because the checksums do not match any known wordpress version.

Authentication.
The application fully supports .netrc files and http_proxy environment variables.
Use a .netrc file for basic authentication. An example netrc (a file named .netrc placed in your root home directory) file could look as follows:
machine secret.google.com
login admin@google.com
password Winter01
You can set the http_proxy and https_proxy variables. These allow you to set a parent HTTP proxy, in which you can handle more complex types of authentication (e.g. Fiddler, ZAP, Burp)
export http_proxy='user:password@localhost:8080'
export https_proxy='user:password@localhost:8080'
droopescan scan drupal --url http://localhost/drupal
WARNING: By design, to allow intercepting proxies and the testing of applications with bad SSL, droopescan allows self-signed or otherwise invalid certificates. ˙ ͜ʟ˙

Output.
This application supports both "standard output", meant for human consumption, or JSON, which is more suitable for machine consumption. This output is stable between major versions.
This can be controlled with the --output flag. Some sample JSON output would look as follows (minus the excessive whitespace):
{
"themes": {
"is_empty": true,
"finds": [

]
},
"interesting urls": {
"is_empty": false,
"finds": [
{
"url": "https:\/\/www.drupal.org\/CHANGELOG.txt",
"description": "Default changelog file."
},
{
"url": "https:\/\/www.drupal.org\/user\/login",
"description": "Default admin."
}
]
},
"version": {
"is_empty": false,
"finds": [
"7.29",
"7.30",
"7.31"
]
},
"plugins": {
"is_empty": false,
"finds": [
{
"url": "https:\/\/www.drupal.org\/sites\/all\/modules\/views\/",
"name": "views"
},
[...snip...]
]
}
}
Some attributes might be missing from the JSON object if parts of the scan are not ran.
This is how multi-site output looks like; each line contains a valid JSON object as shown above.
    $ droopescan scan drupal -U six_and_above.txt -e v
{"host": "http://localhost/drupal-7.6/", "version": {"is_empty": false, "finds": ["7.6"]}}
{"host": "http://localhost/drupal-7.7/", "version": {"is_empty": false, "finds": ["7.7"]}}
{"host": "http://localhost/drupal-7.8/", "version": {"is_empty": false, "finds": ["7.8"]}}
{"host": "http://localhost/drupal-7.9/", "version": {"is_empty": false, "finds": ["7.9"]}}
{"host": "http://localhost/drupal-7.10/", "version": {"is_empty": false, "finds": ["7.10"]}}
{"host": "http://localhost/drupal-7.11/", "version": {"is_empty": false, "finds": ["7.11"]}}
{"host": "http://localhost/drupal-7.12/", "version": {"is_empty": false, "finds": ["7.12"]}}
{"host": "http://localhost/drupal-7.13/", "version": {"is_empty": false, "finds": ["7.13"]}}
{"host": "http://localhost/drupal-7.14/", "version": {"is_empty": false, "finds": ["7.14"]}}
{"host": "http://localhost/drupal-7.15/", "version": {"is_empty": false, "finds": ["7.15"]}}
{"host": "http://localhost/drupal-7.16/", "version": {"is_empty": false, "finds": ["7.16"]}}
{"host": "http://localhost/drupal-7.17/", "version": {"is_empty": false, "finds": ["7.17"]}}
{"host": "http://localhost/drupal-7.18/", "version": {"is_empty": false, "finds": ["7.18"]}}
{"host": "http://localhost/drupal-7.19/", "version": {"is_empty": false, "finds": ["7.19"]}}
{"host": "http://localhost/drupal-7.20/", "version": {"is_empty": false, "finds": ["7.20"]}}
{"host": "http://localhost/drupal-7.21/", "version": {"is_empty": false, "finds": ["7.21"]}}
{"host": "http://localhost/drupal-7.22/", "version": {"is_empty": false, "finds": ["7.22"]}}
{"host": "http://localhost/drupal-7.23/", "version": {"is_empty": false, "finds": ["7.23"]}}
{"host": "http://localhost/drupal-7.24/", "version": {"is_empty": false, "finds": ["7.24"]}}
{"host": "http://localhost/drupal-7.25/", "version": {"is_empty": false, "finds": ["7.25"]}}
{"host": "http://localhost/drupal-7.26/", "version": {"is_empty": false, "finds": ["7.26"]}}
{"host": "http://localhost/drupal-7.27/", "version": {"is_empty": false, "finds": ["7.27"]}}
{"host": "http://localhost/drupal-7.28/", "version": {"is_empty": false, "finds": ["7.28"]}}
{"host": "http://localhost/drupal-7.29/", "version": {"is_empty": false, "finds": ["7.29"]}}
{"host": "http://localhost/drupal-7.30/", "version": {"is_empty": false, "finds": ["7.30"]}}
{"host": "http://localhost/drupal-7.31/", "version": {"is_empty": false, "finds": ["7.31"]}}
{"host": "http://localhost/drupal-7.32/", "version": {"is_empty": false, "finds": ["7.32"]}}
{"host": "http://localhost/drupal-7.33/", "version": {"is_empty": false, "finds": ["7.33"]}}
{"host": "http://localhost/drupal-7.34/", "version": {"is_empty": false, "finds": ["7.34"]}}

Debug.
When things are not going exactly your way, you can check why by using the --debug-requests command.
Some output might look like this:
computer:~/droopescan# droopescan scan silverstripe -u http://localhost -n 10 -e p --debug-requests
[head] http://localhost/framework/... 403
[head] http://localhost/cms/css/layout.css... 404
[head] http://localhost/framework/css/UploadField.css... 200
[head] http://localhost/misc/test/error/404/ispresent.html... 404
[head] http://localhost/widgetextensions/... 404
[head] http://localhost/orbit/... 404
[head] http://localhost/sitemap/... 404
[head] http://localhost/simplestspam/... 404
[head] http://localhost/ecommerce_modifier_example/... 404
[head] http://localhost/silverstripe-hashpath/... 404
[head] http://localhost/timeline/... 404
[head] http://localhost/silverstripe-hiddenfields/... 404
[head] http://localhost/addressable/... 404
[head] http://localhost/silverstripe-description/... 404
[+] No plugins found.

[+] Scan finished (0:00:00.058422 elapsed)
The --debug paramter also exists and may be used to debug application internals.

Stats.
You can get an up to date report on the capabilities of the scanner by running the following command
    droopescan stats
Some sample output might look as follows:
Functionality available for ‘drupal’:
- Enumerate plugins (XXXX plugins.)
- Enumerate themes (XXXX themes.)
- Enumerate interesting urls (X urls.)
- Enumerate version (up to version X.X.X-alphaXX, X.XX, X.XX.)
Functionality available for ‘joomla’:
- Enumerate interesting urls (X urls.)
- Enumerate version (up to version XX.X, X.X.X, X.X.XX.rcX.)
Functionality available for ‘wordpress’:
- Enumerate interesting urls (X urls.)
- Enumerate version (up to version X.X.X, X.X.X, X.X.X.)
Functionality available for ‘silverstripe’:
- Enumerate plugins (XXX plugins.)
- Enumerate themes (XX themes.)
- Enumerate interesting urls (X urls.)
- Enumerate version (up to version X.X.XX, X.X.XX, X.X.XX.)
It is important to verify that the latest version available for the CMS installation is available within droopescan , as otherwise results may be inaccurate.

Contribute.

Create your own plugin.
You can add suport for your favourite CMS. The process is actually quite simple, and a lot of information can be glimpsed by viewing the example.py file in the plugins/ folder.
This file should serve well as a base for your implementation.
You can create your own plugin for Joomla and enable it as follows:
$ cp plugins/example.py plugins/joomla.py
$ cp plugins.d/example.conf plugins.d/joomla.conf
You then need to go to plugins/joomla.py and change a few things:
  • The class name needs to be Joomla.
  • The plugin label (located at Meta.label) needs to be changed to joomla.
  • At the end of the file, the register call needs to be modified to reflect the correct class name.
  • The exposed function, 'example', needs to be renamed to joomla.
    @controller.expose(help='example scanner')
def joomla(self):
self.plugin_init()
We also need to change the plugins.d/joomla.conf file, and change it to the following:
[joomla]
enable_plugin = true
We should now be in a state which looks as follows:
$ droopescan scan joomla
[+] --url parameter is required.
Your next step would be to generate a valid plugin wordlist, a valid theme wordlist, a versions.xml file, and optionally a list of interesting URLs, as well as replace all variables that are in joomla.py with values that are correct for your implementation.
The plugin needs to update automatically in order for a pull request to be accepted. Further documentation may be later made available, but for now, keep in mind that the update_version_check, update_version, update_plugins_check and update_plugins need to be implemented. For reference, please review the drupal.py file. This is required in order to ensure plugins are kept to date.

Issues & Pull Requests.
Pull requests that create new plugins are welcome provided that maintenance for those plugins is done automatically.
Please remember to make your pull requests against the develoment branch rather than the master. Issues can be raised on the issue tracker here on GitHub.
To run tests, some dependencies must be installed. Running the following commands will result in them being installed and the tests being ran:
    apt-get install libxslt1-dev libxml2-dev zlib1g-dev python python-pip python-dev python3 python3-pip python3-dev
pip install -r requirements.txt -r requirements_test.txt
pip3 install -r requirements.txt -r requirements_test.txt
./droopescan test
You can run individual tests with the -s flag.
./droopescan test -s test_integration_drupal



Acunetix Online Vulnerability Scanner


Acunetix Online Vulnerability Scanner acts as a virtual security officer for your company, scanning your websites, including integrated web applications, web servers and any additional perimeter servers for vulnerabilities. And allowing you to fix them before hackers exploit the weak points in your IT infrastructure!

Leverages Acunetix leading web application scanner

Building on Acunetix’ advanced web scanning technology, Acunetix OVS scans your website for vulnerabilities – without requiring to you to license, install and operate Acunetix Web Vulnerability scanner. Acunetix OVS will deep scan your website – with its legendary crawling capability – including full HTML 5 support, and its unmatched SQL injection and Cross Site Scripting finding capabilities.

Unlike other online security scanners, Acunetix is able to find a much greater number of vulnerabilities because of its intelligent analysis engine – it can even detect DOM Cross-Site Scripting and Blind SQL Injection vulnerabilities. And with a minimum of false positives. Remember that in the world of web scanning its not the number of different vulnerabilities that it can find, its the depth with which it can check for vulnerabilities. Each scanner can find one or more SQL injection vulnerabilities, but few can find ALMOST ALL. Few scanners are able to find all pages and analyze all content, leaving large parts of your website unchecked. Acunetix will crawl the largest number of pages and analyze all content.

Utilizes OpenVAS for cutting edge network security scanning

And Acunetix OVS does not stop at web vulnerabilities. Recognizing the need to scan at network level and wanting to offer best of breed technology only, Acunetix has partnered with OpenVAS – the leading network security scanner. OpenVAS has been in development for more then 10 years and is backed by renowned security developers Greenbone. OpenVAS draws on a vulnerability database of thousands of network level vulnerabilities. Importantly, OpenVAS vulnerability databases are always up to date, boasting an average response rate of less than 24 hours for updating and deploying vulnerability signatures to scanners.

Start your scan today

Getting Acunetix on your side is easy – sign up in minutes, install the site verification code and your scan will commence. Scanning can take several hours, depending on the amount of pages and the complexity of the content. After completion, scan reports are emailed to you – and Acunetix Security Consultants are on standby to explain the results and help you action remediation. For a limited time period, 2 full Network Scans are included for FREE in the 14-day trial. 


Nipper - Toolkit Web Scan for Android


La Primera herramienta de escáner de vulnerabilidades WEB, En entorno Android (Versión para iOS en desarrollo), este escáner de vulnerabilidad fue enfocado para CMS más usadas, (WordPress, Drupal, Joomla. Blogger ).

En su primera versión Nipper cuenta con 10 módulos distintos, para recopilar información acerca de un URL en específica.

Su interfaz ha sido pensada para que tan solo con unos “toques” en su interfaz extraerías gran parte de su información.

Módulos Disponibles:
  • IP Server
  • CMS Detect & Version
  • DNS Lookup
  • Nmap ports IP SERVER
  • Enumeration Users
  • Enumeration Plugins
  • Find Exploit Core CMS
  • Find Exploit DB
  • CloudFlare Resolver
Nipper NO requiere ROOT, tan solo requiere permiso a internet.
Compatible desde 2.3 a Android L.