
Over a two-month period, contributed to the LeonG19/CS4311_TRACE_Epsilon_Spring2025 repository by developing a fuzzer and brute-forcer framework with control endpoints, enabling automated and controlled security testing workflows. Leveraging Python and JavaScript, refactored core modules to improve HTTP request handling and proxy management, and expanded fuzz coverage with new wordlists. Implemented project-scoped persistence for brute-force and fuzzer results, storing structured data for reliable analytics and streamlined security assessments. Addressed frontend and API port configuration to ensure stable backend connectivity, utilizing Svelte for frontend development. The work emphasized backend reliability, asynchronous programming, and robust API integration for scalable security testing.
May 2025 monthly summary for LeonG19/CS4311_TRACE_Epsilon_Spring2025: Delivered core project-scoped persistence for security scans, stabilized backend connectivity, and improved scan control, enabling reliable analytics and faster decision-making for security assessments.
May 2025 monthly summary for LeonG19/CS4311_TRACE_Epsilon_Spring2025: Delivered core project-scoped persistence for security scans, stabilized backend connectivity, and improved scan control, enabling reliable analytics and faster decision-making for security assessments.
April 2025: Delivered a Fuzzer and Brute-Forcer Framework with Control Endpoints for the LeonG19/CS4311_TRACE_Epsilon_Spring2025 project. The release provides automated fuzzing and controlled testing workflows, refactored the brute-forcer to use updated HTTP request and proxy handling modules, and includes a new wordlist to broaden fuzz coverage. The changes align with ongoing standards and set a scalable foundation for security testing, enabling faster, repeatable vulnerability discovery and controlled experiment execution.
April 2025: Delivered a Fuzzer and Brute-Forcer Framework with Control Endpoints for the LeonG19/CS4311_TRACE_Epsilon_Spring2025 project. The release provides automated fuzzing and controlled testing workflows, refactored the brute-forcer to use updated HTTP request and proxy handling modules, and includes a new wordlist to broaden fuzz coverage. The changes align with ongoing standards and set a scalable foundation for security testing, enabling faster, repeatable vulnerability discovery and controlled experiment execution.

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