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...You can run your preferred tool directly in-memory. JavaScript script execution (in-memory without third party dependency) Fully compliant SOCKS5 proxy. Supported agent types: Powershell (x86/x64), DLL (x86/x64), Executable (x86/x64), Shellcode (x86/x64). Server.exe can be executed in Linux (via dotnet core) The network communication is fully encrypted with a session key not recoverable from the agent binary or from a traffic dump. Communication performed via HTTP/HTTPS. No external dependencies or libraries need to be installed. ...
Flicker is a project to execute security-sensitive code in isolation from an operating system such as Windows or Linux. Flicker works on x86-class systems from AMD and Intel with support for dynamic root of trust.
Hypervisor R&D for recent x86 with support for DRTM + 2D paging
...XMHF advocates a "rich" single-guest execution model where the hypervisor framework supports only a single-guest and allows the guest direct access to all performance-critical system devices and device interrupts.
XMHF currently runs on recent multicore x86 hardware virtualized platforms with support for dynamic root of trust and nested (2-dimensional) paging. The framework is capable of running unmodified legacy multiprocessor capable OSes such as Windows and Linux.
Documentation available at: http://xmhf.sourceforge.net/doc
Small cryptographic command line tool for LINUX and OpenBSD (x86) completely in 32-Bit Assembly Language.
ORDO encrypt/decrypt files (max. size 2 GB) with AES-128-Algorithm (Rijndael) in CBC-Mode (Cipher-Block-Chaining).
No libs are included, only system-calls are used.
ORDO is under BSD License.
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Note: I haven't even looked at this project for years. I was a pretty bad programmer back then, so the code is sloppy. The next version will be better.
Similar to a stream cipher, but rather than performing an exclusive OR on the input bytes and cipher, it performs a mixture of 'rolling' (see x86 instruction ROR) and bit NOT operations according to the key.
A package of Rijndael, Twofish and Serpent encryption algorithms implemented in x86 assembly. Meant to learn basics of assembly, learn about the algorithms or to be used in a C program.
Powerful 512bit pseudo random encryption, optimized for the x86-64 architecture. Coded in x86-64 assembly language, this has the potential to be one of the most powerful and fastest file encryption engines to date.