
During February 2025, Datapronix focused on stabilizing Wi-Fi scripting within the coolsnowwolf/immortalwrt repository, addressing reliability and compatibility issues on 5 GHz networks. They improved VHT capability detection and configuration by refining center frequency mapping for VHT160+ channels and standardizing RX-STBC notation for hostapd compatibility. Their work also enhanced MPDU length detection logic, resolving operator precedence issues and introducing sensible defaults for short GI and VHT max MPDU. Using C and UCode, Datapronix applied embedded systems and firmware development expertise to deliver targeted bug fixes, demonstrating a deep understanding of network configuration and Wi-Fi standards in a complex codebase.
February 2025 - ImmortalWRT: Focused on stabilizing Wi-Fi scripting to improve VHT capability detection and configuration, and to strengthen MPDU handling for high-channel scenarios. Delivered a tight set of fixes in wifi-scripts across the CoolSnowWolf ImmortalWRT repo to improve reliability and compatibility on 5 GHz networks. Key outcomes include corrected VHT center frequency mapping for VHT160+ (code path for channels >100), standardized RX-STBC notation for hostapd compatibility, and ensured robust VHT capability detection to prevent misconfigurations. The work also refined MPDU length detection logic (addressing operator precedence), added sensible defaults for short GI and VHT max MPDU, and refined the vht160 condition.
February 2025 - ImmortalWRT: Focused on stabilizing Wi-Fi scripting to improve VHT capability detection and configuration, and to strengthen MPDU handling for high-channel scenarios. Delivered a tight set of fixes in wifi-scripts across the CoolSnowWolf ImmortalWRT repo to improve reliability and compatibility on 5 GHz networks. Key outcomes include corrected VHT center frequency mapping for VHT160+ (code path for channels >100), standardized RX-STBC notation for hostapd compatibility, and ensured robust VHT capability detection to prevent misconfigurations. The work also refined MPDU length detection logic (addressing operator precedence), added sensible defaults for short GI and VHT max MPDU, and refined the vht160 condition.

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