
Explore malware payload types—single payloads, stagers, and stages—and see how exploits use port scanning and payload deployment to gain control over a target system.
Explore metasploit as an open source exploit framework to locate exploits and payloads across Windows, Linux, and Apache targets for testing and auditing.
Learn to create a simple payload with Metasploit, compare MSF payloads and modules, and understand payload formats and the role of local host and port settings for Windows targets.
Learn how to create a msfvenom payload backdoor and connect via a netcat shell by configuring lhost, lport, and a listener to gain machine access.
Explore how hackers create an Android backdoor by generating a cross-platform payload, cloning a tool, and configuring a host, port, and handler to establish an incoming connection.
Explore how to create a backdoor payload and deliver it to a Windows machine to enable remote access, including payload types, hosting, and connection handling.
Expose how hackers create a backdoor in Linux systems by constructing and delivering a payload to gain remote access, illustrating real-world techniques used to compromise machines.
Explore how black hat hackers embed a payload into an original android apk to compromise devices, illustrating the tools, payload types, and methods used in the process.
Learn how attackers embed malware in normal pdf files, using social engineering and payload strategies to compromise devices and gain remote control.
Learn to install and configure ngrok, set up port forwarding to expose a local web service, and understand traffic tunneling from public networks.
Explore how netcat enables reading from and writing to network connections and demonstrates forming a backdoor to a Windows machine outside the network.
Learn how hackers hack android devices from anywhere over the internet, focusing on port forwarding and payload creation.
Explore how Python payloads, backdoors, and encryption tools are used to bypass antiviruses, using a modular framework to embed and deploy malware in controlled simulations.
Learn to detect Meterpreter on a PC using antimeter, scan memory for threats, and remove malicious processes through iterative detection.
Detect Meterpreter activity on your PC using Antipwny by scanning running processes, expanding each process to reveal backdoor connections, and terminating unknown processes for intrusion detection.
Explore LaZagne, an open-source tool designed to recover passwords stored by common software across a local machine, including Firefox, Chrome, and Skype, accessible via a liaison executable and command prompt.
Explore techniques to recover saved passwords from a remote machine using a downloadable tool, detailing how to upload, access, and extract credentials through a command-line workflow.
Learn how hackers steal passwords from a machine using a usb drive, including creating a small program and batch file to retrieve credentials from the system.
Explore Termux on Android: install the Android terminal emulator, launch packages, and install Python packages to run command line tools and lightweight web servers from your device.
Demonstrates setting up Termux storage, managing app permissions, and organizing internal and shared storage to prepare a demo framework.
Learn how the Metasploit framework is installed on Android devices, from updating and cloning the project to running the MSF console and exploring available options.
Explore creating a payload with Metasploit Framework using msfvenom, delivering it to a target, and using msf console to set up a listener and observe a reverse connection.
Learn to create and embed malware with python payloads via Metasploit's msfconsole on a Linux machine, configure payloads and handlers, and establish a reverse connection.
Explore how malware can be embedded in ordinary audio and multimedia files. Learn how attackers use social engineering and payload delivery to compromise systems.
Explore how to conceal malware inside a normal image using metasploit, including creating a payload, embedding it into an icon, and setting up a listener to receive connections.
Are you ready to dive deep into the world of ethical hacking and understand how real-world attackers craft and deploy malware? Welcome to "Offensive Security - Malware Creation, Embedding & Detection," a hands-on, lab-based course designed to teach you the techniques used by black hat hackers—so you can defend against them like a pro.
This course is not just about theory. It’s a practical, step-by-step guide that walks you through the exact methods attackers use to create backdoors, embed payloads in everyday files, and bypass security systems. You’ll learn how to replicate these techniques in a controlled environment, giving you the insight and skills needed to detect, prevent, and respond to real-world threats.
What You’ll Learn:
How Hackers Create Backdoors: Understand how attackers use both Android and PC platforms to generate malicious payloads that can compromise Windows, Linux, and Android systems.
Payload Binding Techniques: Learn how to embed malware into common file types such as PDFs, Word documents, and even original APK files—making them appear harmless to unsuspecting users.
Network-Based Attacks: Discover how hackers operate both inside and outside of a network and how they exploit connectivity to gain unauthorized access to systems.
Bypassing Antivirus Detection: Explore how attackers craft undetectable payloads that can slip past traditional antivirus software and endpoint protection tools.
Threat Detection & Defense: Most importantly, you’ll learn how to identify and analyze these threats, giving you the tools to defend your systems and networks effectively.
Why This Course?
This course is designed for ethical hackers, penetration testers, cybersecurity students, and IT professionals who want to understand the offensive side of security in order to build stronger defenses. By learning how malware is created and deployed, you’ll gain a deeper understanding of how to protect against it.
Each module is structured to provide hands-on experience in a safe, legal lab environment. You’ll follow along with real demonstrations, build your own test payloads, and simulate attacks—always with a focus on ethical application and responsible use.
This course is strictly intended for educational purposes and authorized security testing only. All techniques demonstrated should be used responsibly and within legal boundaries.