cifertech/esp32-div

ESP32DIV is a multi-purpose wireless offensive and defensive toolkit powered by an ESP32

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Summary Information

Updated 3 minutes ago
Added to GitGenius on September 17th, 2026
Created on October 1st, 2023
Open Issues & Pull Requests: 147 (+0)
GitHub issues: Enabled
Number of forks: 545
Total Stargazers: 4,060 (+0)
Total Subscribers: 123 (-1)

Repository Insights (GitGenius)

Median issue/PR response: 23.9 hours
Mean response time: 10.7 days
90th percentile: 17.0 days
Tracked items: 127

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How this project is maintained

Roughly one issue in three opened in the past year never receives a reply. 100% of open issues come from outside the core team, so the backlog reflects real-world use rather than internal planning. 56% of tracked open issues have had no activity in three months. Only 16% of issues opened in the past year have been closed.

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Issue Activity (beta)

Open issues: 139
New in 7 days: 3
Closed in 7 days: 0
Avg open age: 198 days
Stale 30+ days: 125
Stale 90+ days: 91

Recent activity

Opened in 7 days: 3
Closed in 7 days: 0
Comments in 7 days: 3
Events in 7 days: 3

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Detailed Description

ESP32DIV is a wireless security toolkit that runs on ESP32 microcontrollers and provides both offensive and defensive capabilities for wireless networks and protocols.

The toolkit addresses the need for a portable, hardware-based platform to test and analyze wireless security across multiple protocols. It operates by leveraging the ESP32's built-in wireless capabilities alongside additional hardware interfaces to perform tasks across WiFi, Bluetooth, infrared, and Sub-GHz frequencies. The approach consolidates multiple security testing functions into a single device, reducing the need to carry separate tools for different wireless attack and defense scenarios.

Developers and security researchers working with ESP32 hardware who need a unified toolkit for wireless penetration testing and defensive analysis should consider this project. It suits projects where portability and hardware-level wireless access are priorities, and where testing across multiple protocols from a single device is valuable. The toolkit is compatible with standard ESP32 boards as well as ESP32-S3 variants, making it accessible across different hardware options.

The project shows active development with regular commits addressing new features and bug fixes. The codebase demonstrates ongoing refinement of existing functionality rather than major architectural changes. Community engagement appears present through issue tracking and pull request activity, indicating responsiveness to user feedback and contributions. The project maintains documentation through a dedicated homepage separate from the repository, suggesting commitment to user accessibility and onboarding.