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Executing unsigned or custom machine code during the boot process to modify system state.
Distinct from Payload Execution: Unlike the candidates, this describes a boot-time mechanism for custom code execution, not serialized proxies or file extraction.
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This project is an open source software activator and digital license tool for Microsoft operating systems. It functions as an automated utility to verify Windows 10 and 11 installations as genuine and remove activation watermarks. The software focuses on applying permanent digital licenses to the operating system to ensure activation persists after updates or reinstalls. It achieves this through the automation of license verification without requiring manual user intervention or product keys. The tool utilizes several system-level techniques to manage licensing states, including digital lic
Bundles pre-configured license keys and activation scripts into a single executable for rapid deployment.
Hekate is a bootloader and system recovery tool for Nintendo Switch hardware. It functions as a multi-OS boot manager that allows the execution of binary payloads and the launching of stock firmware, custom firmware, Android, and Linux through a graphical interface. The project provides a suite of recovery and system modification tools, including the ability to create and restore full backups of internal storage. It also features a USB HID gamepad emulator that maps device controller inputs to USB signals for interacting with external computers. The software covers broad capability areas inc
Provides the ability to run unsigned binary payloads to modify system state before the primary kernel boots.
m1n1 este un bootloader de nivel scăzut pentru hardware-ul Apple Silicon bazat pe ARM64. Acesta servește drept instrument de firmware și mediu de experimentare pentru încărcarea kernel-urilor externe și a sistemelor de operare non-native. Proiectul permite executarea de payload-uri binare concatenate care conțin kernel-uri, device tree-uri și ramdisk-uri. Oferă o platformă pentru experimentarea firmware-ului și implementarea de kernel-uri personalizate pe cipuri Apple Silicon. Sistemul acoperă abstractizarea hardware de nivel scăzut, inclusiv accesul la registre mapate în memorie, transmiterea device tree-ului și bootloading-ul pe etape. Include, de asemenea, depanare serială bazată pe UART pentru log-urile de sistem și depanare.
Supports booting from a single file that concatenates the kernel, device tree, and ramdisk into a binary payload.