@plltxe · Post #5883 · 12.03.2026 г., 00:00
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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Изворен канал @pythonotes · Post #272 · 14 јул.
Наверняка у многих возникло желание потестить отправку сообщений, но Redis не установлен и вообще непонятно как с ним быть. На самом деле запустить его очень просто. 🔸 Для Windows, качаем архив, запускаем redis-server.exe 🔸 Для Linux несколько команд 🔸 Если есть Docker, то еще проще docker run --rm -p 6379:6379 redis Всё, можно экспериментировать! ______________________ А еще с сервером можно поиграть в пинг-понг > redis-cli ping PONG #tricks#libs#linux
Пребарај: #rtl
@plltxe · Post #5883 · 12.03.2026 г., 00:00
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 · 14.10.2025 г., 13:00
#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