@plltxe · Post #5883 · 03/12/2026, 12:00 AM
Either my understanding of #Bidi is off, or Jordan Police screw up their Bidi RT: https://twitter.com/Police_Jo/status/2031410145427616135#RTL🐟
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Source channel @githubtrending · Post #14834 · Jun 17
#cuda DeepEP is a special communication library for Mixture-of-Experts (MoE) models. It helps these models work faster and more efficiently by improving how data is shared between different parts of the system. DeepEP supports low-precision operations and can handle data transfer between different types of connections, like NVLink and RDMA. This makes it very useful for both training and using AI models, especially when speed is important. Users benefit from faster processing times and better performance overall. https://github.com/deepseek-ai/DeepEP
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@plltxe · Post #5883 · 03/12/2026, 12:00 AM
Either my understanding of #Bidi is off, or Jordan Police screw up their Bidi RT: https://twitter.com/Police_Jo/status/2031410145427616135#RTL🐟
@githubtrending · Post #15220 · 10/14/2025, 01:00 PM
#verilog#cocotb#embedded#fpga#iss#risc_v#rtl#verilator#verilog#vpn#vproc#wireguard This project creates an open-source, hardware-based WireGuard VPN using an affordable FPGA board, making fast and secure VPNs more accessible. Unlike slow software VPNs or costly proprietary hardware, this FPGA design runs WireGuard encryption and packet processing at near wire speed without needing a PC host. It uses common tools and languages (SystemVerilog, open-source FPGA tools) and includes a soft CPU for control tasks and hardware logic for data encryption and routing. This means you get a faster, more efficient, and customizable VPN solution that is open and affordable, ideal for learning, development, or deployment in cost-sensitive environments. https://github.com/chili-chips-ba/wireguard-fpga