Phishing Framework for Facebook, Gmail, Twitter, WiFi, Windows.
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Updated
Feb 5, 2020 - Python
Phishing Framework for Facebook, Gmail, Twitter, WiFi, Windows.
NextGenSpoofer is a Python ARP/DNS Spoofer made with love <3
A simple yet effective python3 script to perform DNS spoofing via ARP poisoning
Cybersecurity ethical hacking library and app
A collection of 10 network security tools using Scapy for traffic analysis, penetration testing, and network manipulation. Ideal for cybersecurity professionals and enthusiasts.
Some tutorials for Raspberry PI
The Izanami Framework is a phishing attacks framework, that use ARP spoof attack and DNS spoofing attack to redirect all LAN devices HTTP requests to a specified address to perform a Powerful Phishing attack, IZanami inject beef-xss hook.js file into each requested HTML page , to target and exploit users's browsers.
DNS isteklerini veya trafiği kendi istediğiniz yere yönlendirerek hedef web sitesini manipüle etmenize yarayan bir script.
A fully python dns server
The man-in-the-middle toolkit
This tool is used to perform DNS spoofing attacks on target systems.
A curated set of hands-on networking tools built in Python to master core concepts across all layers of the OSI and TCP/IP models. This repository bridges theory and real-world application, ideal for students, cybersecurity learners, and network engineers seeking practical experience.
SpoofingApp es una herramienta GUI para realizar ARP y DNS spoofing en redes locales, con escaneo de hosts y bloqueo de Internet, ideal para pentesting ético.
dns spoofing tool, with regex support, target specification and more...
DIY WIFI Pineapple with a Raspberry PI exploring DNS and SSID Spoofing
python code that detects any entites in lan and redirect them to a new site using arp and dns spoofing. the code also can see there screen and control mouse and keybord
Advanced ARP Spoofing & MiTM Suite with Real-Time Credential Sniffing, DNS Spoofing & Latency Visualization
Exploration of cryptographic vulnerabilities with Python: cracking MD5, SHA1, and SHA256 (salted vs. unsalted), brute-force & dictionary attacks, and exploiting weaknesses in Diffie-Hellman through brute-force and MITM simulations. Includes practical experiments with ARP & DNS spoofing.
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