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| author | Paul Buetow <paul@buetow.org> | 2025-08-31 15:50:22 +0300 |
|---|---|---|
| committer | Paul Buetow <paul@buetow.org> | 2025-08-31 15:50:22 +0300 |
| commit | 68b1042c9711b5898764d2b0d889d6bf39f8d45b (patch) | |
| tree | 0392adce0ddc2895a28254b6876a08c5c06b21d8 /about | |
| parent | a7428fe4a8247e4d2aa256f874a7854a761c8ce8 (diff) | |
Update content for html
Diffstat (limited to 'about')
| -rw-r--r-- | about/showcase.html | 559 |
1 files changed, 358 insertions, 201 deletions
diff --git a/about/showcase.html b/about/showcase.html index dae182b3..546015b1 100644 --- a/about/showcase.html +++ b/about/showcase.html @@ -23,35 +23,69 @@ <li><a href='#project-showcase'>Project Showcase</a></li> <li>⇢ <a href='#overall-statistics'>Overall Statistics</a></li> <li>⇢ <a href='#projects'>Projects</a></li> +<li>⇢ ⇢ <a href='#hexai'>hexai</a></li> +<li><a href='#hexai'>Hexai</a></li> +<li>⇢ ⇢ <a href='#conf'>conf</a></li> <li>⇢ ⇢ <a href='#rexfiles'>rexfiles</a></li> +<li>⇢ ⇢ <a href='#hxcode'>hxcode</a></li> +<li><a href='#hxcode'>HxCode</a></li> <li>⇢ ⇢ <a href='#totalrecall'>totalrecall</a></li> +<li><a href='#totalrecall---bulgarian-anki-flashcard-generator'>totalrecall - Bulgarian Anki Flashcard Generator</a></li> <li>⇢ ⇢ <a href='#gitsyncer'>gitsyncer</a></li> +<li><a href='#gitsyncer'>GitSyncer</a></li> <li>⇢ ⇢ <a href='#timr'>timr</a></li> +<li><a href='#timr'>timr</a></li> <li>⇢ ⇢ <a href='#tasksamurai'>tasksamurai</a></li> +<li><a href='#task-samurai'>Task Samurai</a></li> <li>⇢ ⇢ <a href='#ior'>ior</a></li> +<li><a href='#io-riot-ng-aka-ior'>I/O Riot NG (aka ior)</a></li> <li>⇢ ⇢ <a href='#dtail'>dtail</a></li> <li>⇢ ⇢ <a href='#wireguardmeshgenerator'>wireguardmeshgenerator</a></li> +<li><a href='#wireguard-mesh-generator'>WireGuard Mesh Generator</a></li> <li>⇢ ⇢ <a href='#foostats'>foostats</a></li> +<li><a href='#foostats'>foostats</a></li> <li>⇢ ⇢ <a href='#ds-sim'>ds-sim</a></li> +<li><a href='#ds-sim'>DS-Sim</a></li> <li>⇢ ⇢ <a href='#sillybench'>sillybench</a></li> +<li><a href='#silly-benchmark'>Silly Benchmark</a></li> <li>⇢ ⇢ <a href='#gos'>gos</a></li> +<li><a href='#gos-go-social-media'>Gos (Go Social Media)</a></li> <li>⇢ ⇢ <a href='#rcm'>rcm</a></li> +<li><a href='#rcm'>rcm</a></li> <li>⇢ ⇢ <a href='#gemtexter'>gemtexter</a></li> <li>⇢ ⇢ <a href='#docker-gpodder-sync-server'>docker-gpodder-sync-server</a></li> <li>⇢ ⇢ <a href='#docker-radicale-server'>docker-radicale-server</a></li> <li>⇢ ⇢ <a href='#quicklogger'>quicklogger</a></li> +<li><a href='#quick-logger'>Quick logger</a></li> <li>⇢ ⇢ <a href='#terraform'>terraform</a></li> +<li><a href='#terraform'>Terraform</a></li> <li>⇢ ⇢ <a href='#docker-anki-sync-server'>docker-anki-sync-server</a></li> <li>⇢ ⇢ <a href='#gogios'>gogios</a></li> +<li><a href='#gogios'>Gogios</a></li> <li>⇢ ⇢ <a href='#gorum'>gorum</a></li> +<li><a href='#gorum'>Gorum</a></li> <li>⇢ ⇢ <a href='#guprecords'>guprecords</a></li> +<li><a href='#guprecords---global-uptime-records'>guprecords - Global uptime records</a></li> <li>⇢ ⇢ <a href='#randomjournalpage'>randomjournalpage</a></li> +<li><a href='#read-a-random-journal'>Read a random journal</a></li> <li>⇢ ⇢ <a href='#sway-autorotate'>sway-autorotate</a></li> +<li><a href='#sway-autorotate'>sway-autorotate</a></li> <li>⇢ ⇢ <a href='#algorithms'>algorithms</a></li> <li>⇢ ⇢ <a href='#geheim'>geheim</a></li> +<li><a href='#geheimrb'>geheim.rb</a></li> <li>⇢ ⇢ <a href='#foozone'>foo.zone</a></li> <li>⇢ ⇢ <a href='#perl-c-fibonacci'>perl-c-fibonacci</a></li> <li>⇢ ⇢ <a href='#ioriot'>ioriot</a></li> +<li><a href='#io-riot'>I/O Riot
</a></li> +<li>⇢ <a href='#overview'>Overview
</a></li> +<li>⇢ <a href='#benefits'>Benefits
</a></li> +<li><a href='#send-in-patches'>Send in patches
</a></li> +<li><a href='#how-to-install-io-riot'>How to install I/O Riot
</a></li> +<li><a href='#how-to-use-io-riot'>How to use I/O Riot
</a></li> +<li><a href='#appendix'>Appendix
</a></li> +<li>⇢ <a href='#supported-file-systems'>Supported file systems
</a></li> +<li>⇢ <a href='#supported-syscalls'>Supported syscalls
</a></li> +<li>⇢ <a href='#source-code-documentation'>Source code documentation
</a></li> <li>⇢ ⇢ <a href='#photoalbum'>photoalbum</a></li> <li>⇢ ⇢ <a href='#staticfarm-apache-handlers'>staticfarm-apache-handlers</a></li> <li>⇢ ⇢ <a href='#dyndns'>dyndns</a></li> @@ -83,18 +117,65 @@ <h2 style='display: inline' id='overall-statistics'>Overall Statistics</h2><br /> <br /> <ul> -<li>📦 Total Projects: 56</li> -<li>📊 Total Commits: 10,779</li> -<li>📈 Total Lines of Code: 193,350</li> -<li>📄 Total Lines of Documentation: 21,550</li> -<li>💻 Languages: Go (32.2%), Java (20.9%), C++ (8.8%), C (8.8%), Perl (8.3%), C/C++ (6.3%), Shell (3.0%), HTML (1.9%), Config (1.9%), Ruby (1.5%), HCL (1.4%), YAML (1.0%), Python (0.8%), Make (0.8%), CSS (0.7%), Raku (0.5%), JSON (0.4%), XML (0.3%), Haskell (0.3%), TOML (0.2%)</li> -<li>📚 Documentation: Text (50.7%), Markdown (49.3%)</li> -<li>🎵 Vibe-Coded Projects: 4 out of 56 (7.1%)</li> -<li>🤖 AI-Assisted Projects (including vibe-coded): 8 out of 56 (14.3% AI-assisted, 85.7% human-only)</li> -<li>🚀 Release Status: 34 released, 22 experimental (60.7% with releases, 39.3% experimental)</li> +<li>📦 Total Projects: 59</li> +<li>📊 Total Commits: 11,848</li> +<li>📈 Total Lines of Code: 206,416</li> +<li>📄 Total Lines of Documentation: 23,246</li> +<li>💻 Languages: Go (32.9%), Java (19.6%), Perl (8.5%), C++ (8.3%), C (8.2%), C/C++ (5.9%), Shell (3.5%), Config (1.9%), HTML (1.8%), Ruby (1.7%), YAML (1.6%), HCL (1.3%), JSON (0.9%), Python (0.8%), CSS (0.8%), Make (0.7%), Raku (0.4%), TOML (0.4%), XML (0.3%), Haskell (0.3%), TypeScript (0.2%)</li> +<li>📚 Documentation: Text (50.6%), Markdown (49.4%)</li> +<li>🎵 Vibe-Coded Projects: 4 out of 59 (6.8%)</li> +<li>🤖 AI-Assisted Projects (including vibe-coded): 9 out of 59 (15.3% AI-assisted, 84.7% human-only)</li> +<li>🚀 Release Status: 35 released, 24 experimental (59.3% with releases, 40.7% experimental)</li> </ul><br /> <h2 style='display: inline' id='projects'>Projects</h2><br /> <br /> +<h3 style='display: inline' id='hexai'>hexai</h3><br /> +<br /> +<ul> +<li>💻 Languages: Go (100.0%)</li> +<li>📚 Documentation: Markdown (100.0%)</li> +<li>📊 Commits: 103</li> +<li>📈 Lines of Code: 5521</li> +<li>📄 Lines of Documentation: 399</li> +<li>📅 Development Period: 2025-08-01 to 2025-08-29</li> +<li>🔥 Recent Activity: 8.1 days (avg. age of last 42 commits)</li> +<li>⚖️ License: No license found</li> +<li>🏷️ Latest Release: v0.3.3 (2025-08-29)</li> +<li>🤖 AI-Assisted: This project was partially created with the help of generative AI</li> +</ul><br /> +<br /> +<a href='showcase/hexai/image-1.png'><img alt='hexai screenshot' title='hexai screenshot' src='showcase/hexai/image-1.png' /></a><br /> +<br /> +<h1 style='display: inline' id='hexai'>Hexai</h1><br /> +<br /> +<a class='textlink' href='https://codeberg.org/snonux/hexai'>View on Codeberg</a><br /> +<a class='textlink' href='https://github.com/snonux/hexai'>View on GitHub</a><br /> +<br /> +<span>---</span><br /> +<br /> +<h3 style='display: inline' id='conf'>conf</h3><br /> +<br /> +<ul> +<li>💻 Languages: Perl (27.4%), YAML (24.1%), Shell (23.8%), TOML (6.4%), Config (5.8%), CSS (5.7%), Ruby (4.2%), Lua (1.2%), Docker (0.7%), JSON (0.6%), INI (0.1%)</li> +<li>📚 Documentation: Text (70.2%), Markdown (29.8%)</li> +<li>📊 Commits: 964</li> +<li>📈 Lines of Code: 5749</li> +<li>📄 Lines of Documentation: 1183</li> +<li>📅 Development Period: 2021-12-28 to 2025-08-31</li> +<li>🔥 Recent Activity: 16.6 days (avg. age of last 42 commits)</li> +<li>⚖️ License: No license found</li> +<li>🧪 Status: Experimental (no releases yet)</li> +</ul><br /> +<br /> +<span>Certainly! However, the provided description ("Bapdidu di du di du dap dap dap!") does not contain any technical or contextual information about the "Jupdidu" project. To give a meaningful summary, I would need details such as the project's purpose, its main features, how it is implemented, and its architecture.</span><br /> +<br /> +<span>If you can provide a README, project documentation, or a brief description of what Jupdidu does, I can summarize it clearly and concisely, focusing on its functionality, usefulness, and technical implementation. Please share more information or context about the project!</span><br /> +<br /> +<a class='textlink' href='https://codeberg.org/snonux/conf'>View on Codeberg</a><br /> +<a class='textlink' href='https://github.com/snonux/conf'>View on GitHub</a><br /> +<br /> +<span>---</span><br /> +<br /> <h3 style='display: inline' id='rexfiles'>rexfiles</h3><br /> <br /> <ul> @@ -109,15 +190,35 @@ <li>🧪 Status: Experimental (no releases yet)</li> </ul><br /> <br /> -<span>Based on my analysis of the codebase, **rexfiles** is a comprehensive infrastructure automation and configuration management project built with the Rex framework (a Perl-based alternative to Ansible, Puppet, or Chef). The project provides structured automation for managing multiple aspects of a personal infrastructure, including dotfiles, server configurations, and application deployments.</span><br /> -<br /> -<span>The project consists of three main components: **dotfiles** management for personal development environment configuration (bash, fish shell, helix editor, tmux, etc.), **frontends** for managing production OpenBSD servers with services like DNS (nsd), web servers (httpd), mail (OpenSMTPD), SSL certificates (ACME), and monitoring systems, and **babylon5** containing Docker container startup scripts for self-hosted applications. The implementation leverages Rex's declarative syntax to define tasks for package installation, file management, service configuration, and system state management, with templates for configuration files and support for multiple operating systems (OpenBSD, FreeBSD, Fedora Linux, Termux). This approach provides a KISS (Keep It Simple, Stupid) alternative to more complex configuration management tools while maintaining the ability to manage both local development environments and production infrastructure consistently.</span><br /> +<span>Jupdidu</span><br /> +<span>=======</span><br /> <br /> <a class='textlink' href='https://codeberg.org/snonux/rexfiles'>View on Codeberg</a><br /> <a class='textlink' href='https://github.com/snonux/rexfiles'>View on GitHub</a><br /> <br /> <span>---</span><br /> <br /> +<h3 style='display: inline' id='hxcode'>hxcode</h3><br /> +<br /> +<ul> +<li>💻 Languages: JSON (53.6%), Ruby (19.3%), TypeScript (17.9%), JavaScript (3.2%), Python (3.1%), Shell (2.9%)</li> +<li>📚 Documentation: Markdown (96.5%), Text (3.5%)</li> +<li>📊 Commits: 2</li> +<li>📈 Lines of Code: 1796</li> +<li>📄 Lines of Documentation: 114</li> +<li>📅 Development Period: 2025-07-22 to 2025-07-23</li> +<li>🔥 Recent Activity: 39.7 days (avg. age of last 42 commits)</li> +<li>⚖️ License: No license found</li> +<li>🧪 Status: Experimental (no releases yet)</li> +</ul><br /> +<br /> +<h1 style='display: inline' id='hxcode'>HxCode</h1><br /> +<br /> +<a class='textlink' href='https://codeberg.org/snonux/hxcode'>View on Codeberg</a><br /> +<a class='textlink' href='https://github.com/snonux/hxcode'>View on GitHub</a><br /> +<br /> +<span>---</span><br /> +<br /> <h3 style='display: inline' id='totalrecall'>totalrecall</h3><br /> <br /> <ul> @@ -135,11 +236,7 @@ <br /> <a href='showcase/totalrecall/image-1.png'><img alt='totalrecall screenshot' title='totalrecall screenshot' src='showcase/totalrecall/image-1.png' /></a><br /> <br /> -<span>**totalrecall** is a Bulgarian language learning tool that generates comprehensive Anki flashcard materials from Bulgarian words. It creates high-quality audio pronunciations using OpenAI TTS, AI-generated contextual images via DALL-E, and automatic translations, making it easier for learners to memorize Bulgarian vocabulary through visual and auditory associations. The tool is particularly useful for language learners who want to create professional-quality flashcards with authentic Bulgarian pronunciation and memorable visual contexts without manually sourcing audio and images.</span><br /> -<br /> -<a href='showcase/totalrecall/image-2.png'><img alt='totalrecall screenshot' title='totalrecall screenshot' src='showcase/totalrecall/image-2.png' /></a><br /> -<br /> -<span>The project is implemented in Go with a modular architecture featuring both CLI and GUI interfaces. It leverages OpenAI's APIs for audio generation (11 available voices) and image creation, includes audio caching to minimize API costs, and supports batch processing from text files. The tool outputs Anki-compatible packages (.apkg format) or CSV files with all media included, following a clean package structure with separate modules for audio generation, image processing, Anki formatting, and configuration management using industry-standard libraries like Cobra for CLI and Viper for configuration.</span><br /> +<h1 style='display: inline' id='totalrecall---bulgarian-anki-flashcard-generator'>totalrecall - Bulgarian Anki Flashcard Generator</h1><br /> <br /> <a class='textlink' href='https://codeberg.org/snonux/totalrecall'>View on Codeberg</a><br /> <a class='textlink' href='https://github.com/snonux/totalrecall'>View on GitHub</a><br /> @@ -155,15 +252,13 @@ <li>📈 Lines of Code: 9605</li> <li>📄 Lines of Documentation: 2433</li> <li>📅 Development Period: 2025-06-23 to 2025-08-19</li> -<li>🔥 Recent Activity: 44.8 days (avg. age of last 42 commits)</li> +<li>🔥 Recent Activity: 44.9 days (avg. age of last 42 commits)</li> <li>⚖️ License: BSD-2-Clause</li> <li>🏷️ Latest Release: v0.9.0 (2025-08-19)</li> <li>🎵 Vibe-Coded: This project has been vibe coded</li> </ul><br /> <br /> -<span>GitSyncer is a cross-platform repository synchronization tool that automatically keeps Git repositories in sync across multiple hosting platforms like GitHub, Codeberg, and private SSH servers. It solves the common problem of maintaining consistent code across different Git hosting services by cloning repositories, adding all configured platforms as remotes, and continuously merging and pushing changes bidirectionally while handling branch creation and conflict detection.</span><br /> -<br /> -<span>The tool is implemented in Go with a clean architecture that supports both individual repository syncing and bulk operations for public repositories. Key features include automatic repository creation, SSH backup locations for private servers, branch exclusion patterns, and an opt-in backup mode for resilient offline backups. It uses a JSON configuration file to define organizations and repositories, employs safe merge strategies that never delete branches, and provides comprehensive error handling for merge conflicts and missing repositories.</span><br /> +<h1 style='display: inline' id='gitsyncer'>GitSyncer</h1><br /> <br /> <a class='textlink' href='https://codeberg.org/snonux/gitsyncer'>View on Codeberg</a><br /> <a class='textlink' href='https://github.com/snonux/gitsyncer'>View on GitHub</a><br /> @@ -179,15 +274,13 @@ <li>📈 Lines of Code: 873</li> <li>📄 Lines of Documentation: 137</li> <li>📅 Development Period: 2025-06-25 to 2025-07-19</li> -<li>🔥 Recent Activity: 64.0 days (avg. age of last 42 commits)</li> +<li>🔥 Recent Activity: 64.1 days (avg. age of last 42 commits)</li> <li>⚖️ License: BSD-2-Clause</li> <li>🏷️ Latest Release: v0.0.0 (2025-06-29)</li> <li>🎵 Vibe-Coded: This project has been vibe coded</li> </ul><br /> <br /> -<span><span class='inlinecode'>timr</span> is a minimalist command-line time tracking tool written in Go that provides a simple stopwatch-style timer for tracking work sessions. It offers commands to start, stop, reset, and check the status of the timer, with all state persisted across sessions in <span class='inlinecode'>~/.config/timr/.timr_state</span>. The tool is particularly useful for developers and professionals who need to track time spent on tasks without the overhead of complex time-tracking applications.</span><br /> -<br /> -<span>The project is implemented using a clean modular architecture with the CLI entry point in <span class='inlinecode'>/cmd/timr/main.go</span>, core timer logic in <span class='inlinecode'>/internal/timer/</span>, and an interactive TUI mode powered by Bubble Tea in <span class='inlinecode'>/internal/live/</span>. Key features include persistent state across sessions, shell prompt integration for displaying timer status, raw output modes for scripting, and a full-screen live timer interface with keyboard controls. The tool maintains atomic state updates and handles unexpected exits gracefully by immediately persisting state changes.</span><br /> +<h1 style='display: inline' id='timr'>timr</h1><br /> <br /> <a class='textlink' href='https://codeberg.org/snonux/timr'>View on Codeberg</a><br /> <a class='textlink' href='https://github.com/snonux/timr'>View on GitHub</a><br /> @@ -203,7 +296,7 @@ <li>📈 Lines of Code: 6160</li> <li>📄 Lines of Documentation: 162</li> <li>📅 Development Period: 2025-06-19 to 2025-07-12</li> -<li>🔥 Recent Activity: 65.8 days (avg. age of last 42 commits)</li> +<li>🔥 Recent Activity: 65.9 days (avg. age of last 42 commits)</li> <li>⚖️ License: BSD-2-Clause</li> <li>🏷️ Latest Release: v0.9.2 (2025-07-02)</li> <li>🎵 Vibe-Coded: This project has been vibe coded</li> @@ -211,11 +304,7 @@ <br /> <a href='showcase/tasksamurai/image-1.png'><img alt='tasksamurai screenshot' title='tasksamurai screenshot' src='showcase/tasksamurai/image-1.png' /></a><br /> <br /> -<span>TaskSamurai is a fast terminal user interface (TUI) for Taskwarrior written in Go that provides a keyboard-driven table interface for task management. It acts as a visual frontend to the Taskwarrior command-line tool, displaying tasks in a table format where users can perform operations like adding, completing, starting, and annotating tasks through hotkeys without leaving their keyboard. The application was created to provide a faster alternative to existing Python-based UIs while exploring the Bubble Tea framework for Go terminal applications.</span><br /> -<br /> -<a href='showcase/tasksamurai/image-2.png'><img alt='tasksamurai screenshot' title='tasksamurai screenshot' src='showcase/tasksamurai/image-2.png' /></a><br /> -<br /> -<span>The implementation follows a clean architecture with clear separation of concerns: the <span class='inlinecode'>internal/task/</span> package handles all Taskwarrior CLI integration by executing task commands and parsing JSON responses, while <span class='inlinecode'>internal/ui/</span> manages the terminal interface using Bubble Tea's message-driven architecture. The custom table widget in <span class='inlinecode'>internal/atable/</span> provides efficient rendering for large task lists, and the entire system maintains real-time synchronization with Taskwarrior by automatically refreshing the display after each operation. The application supports all standard Taskwarrior filters as command-line arguments and includes features like regex search, customizable themes, and even a "disco mode" that changes colors dynamically.</span><br /> +<h1 style='display: inline' id='task-samurai'>Task Samurai</h1><br /> <br /> <a class='textlink' href='https://codeberg.org/snonux/tasksamurai'>View on Codeberg</a><br /> <a class='textlink' href='https://github.com/snonux/tasksamurai'>View on GitHub</a><br /> @@ -239,13 +328,7 @@ <br /> <a href='showcase/ior/image-1.png'><img alt='ior screenshot' title='ior screenshot' src='showcase/ior/image-1.png' /></a><br /> <br /> -<span>Based on my analysis of the codebase, here's a comprehensive summary of the I/O Riot NG (ior) project:</span><br /> -<br /> -<a href='showcase/ior/image-2.svg'><img alt='ior screenshot' title='ior screenshot' src='showcase/ior/image-2.svg' /></a><br /> -<br /> -<span>**I/O Riot NG** is a Linux-based performance monitoring tool that uses eBPF (extended Berkeley Packet Filter) to trace synchronous I/O system calls and analyze their execution times. This tool is particularly valuable for system performance analysis, allowing developers and system administrators to visualize I/O bottlenecks through detailed flamegraphs. It serves as a modern successor to the original I/O Riot project, migrating from SystemTap/C to a Go/C/BPF implementation for better performance and maintainability.</span><br /> -<br /> -<span>The architecture combines kernel-level tracing with user-space analysis: eBPF programs (<span class='inlinecode'>internal/c/ior.bpf.c</span>) attach to kernel tracepoints to capture syscall entry/exit events, which are then processed by a Go-based event loop (<span class='inlinecode'>internal/eventloop.go</span>) that correlates enter/exit pairs, tracks file descriptors, and measures timing. The tool can operate in real-time mode for live monitoring or post-processing mode to generate flamegraphs from previously collected data using the Inferno flamegraph library. Key features include filtering capabilities for specific processes or file patterns, comprehensive statistics collection, and support for various I/O syscalls like open, read, write, close, and dup operations.</span><br /> +<h1 style='display: inline' id='io-riot-ng-aka-ior'>I/O Riot NG (aka ior)</h1><br /> <br /> <a class='textlink' href='https://codeberg.org/snonux/ior'>View on Codeberg</a><br /> <a class='textlink' href='https://github.com/snonux/ior'>View on GitHub</a><br /> @@ -269,11 +352,8 @@ <br /> <a href='showcase/dtail/image-1.png'><img alt='dtail screenshot' title='dtail screenshot' src='showcase/dtail/image-1.png' /></a><br /> <br /> -<span>DTail is a distributed log processing system written in Go that allows DevOps engineers to tail, cat, and grep log files across thousands of servers concurrently. It provides secure access through SSH authentication and respects UNIX file system permissions, making it ideal for enterprise environments where log analysis needs to scale horizontally across large server fleets. The tool supports advanced features like compressed file handling (gzip/zstd) and distributed MapReduce aggregations for complex log analytics.</span><br /> -<br /> -<a href='showcase/dtail/image-2.gif'><img alt='dtail screenshot' title='dtail screenshot' src='showcase/dtail/image-2.gif' /></a><br /> -<br /> -<span>The system uses a client-server architecture where dtail servers run on target machines (listening on port 2222) and clients connect to multiple servers simultaneously. It can also operate in serverless mode for local operations. The implementation leverages SSH for secure communication, includes sophisticated connection throttling and resource management, and provides specialized tools (dcat, dgrep, dmap) for different log processing tasks. The MapReduce functionality supports SQL-like queries with server-side local aggregation and client-side final aggregation, enabling powerful distributed analytics across log data.</span><br /> +<span>DTail</span><br /> +<span>=====</span><br /> <br /> <a class='textlink' href='https://codeberg.org/snonux/dtail'>View on Codeberg</a><br /> <a class='textlink' href='https://github.com/snonux/dtail'>View on GitHub</a><br /> @@ -294,9 +374,7 @@ <li>🏷️ Latest Release: v1.0.0 (2025-05-11)</li> </ul><br /> <br /> -<span>WireGuard Mesh Generator is a Ruby-based automation tool that simplifies the creation and management of WireGuard mesh VPN networks across multiple hosts. It automatically generates WireGuard configuration files for each node in the mesh, handles cryptographic key generation and management (including public/private keys and preshared keys), and provides automated deployment to remote machines via SSH/SCP. The tool is particularly useful for setting up secure, encrypted mesh networks between multiple servers or devices, eliminating the manual overhead of configuring WireGuard connections between every pair of nodes.</span><br /> -<br /> -<span>The implementation uses a YAML configuration file to define the network topology, including host details, SSH credentials, and network addressing schemes. It supports mixed operating systems (FreeBSD, Linux, OpenBSD) with OS-specific configuration handling, intelligently determines network connectivity patterns (LAN vs internet-facing hosts), and includes features like NAT traversal detection and persistent keepalive configuration. The tool provides a complete workflow from key generation to deployment, making it ideal for infrastructure automation and maintaining consistent WireGuard mesh networks across diverse environments.</span><br /> +<h1 style='display: inline' id='wireguard-mesh-generator'>WireGuard Mesh Generator</h1><br /> <br /> <a class='textlink' href='https://codeberg.org/snonux/wireguardmeshgenerator'>View on Codeberg</a><br /> <a class='textlink' href='https://github.com/snonux/wireguardmeshgenerator'>View on GitHub</a><br /> @@ -317,9 +395,7 @@ <li>🏷️ Latest Release: v0.1.0 (2025-07-12)</li> </ul><br /> <br /> -<span>Based on the README and project structure, **foostats** is a privacy-respecting web analytics tool written in Perl specifically designed for OpenBSD systems. It processes both traditional HTTP/HTTPS logs and Gemini protocol logs to generate comprehensive traffic statistics while maintaining visitor privacy through SHA3-512 IP hashing. The tool is built for the foo.zone ecosystem and similar sites that need analytics without compromising user privacy.</span><br /> -<br /> -<span>The project implements a modular architecture with seven core components: FileHelper for I/O operations, DateHelper for date management, Logreader for log parsing, Filter for security filtering, Aggregator for statistics collection, FileOutputter for compressed JSON storage, Replicator for multi-node data sharing, Merger for combining statistics, and Reporter for generating human-readable Gemtext reports. It supports distributed deployments with replication between partner nodes and includes security features like suspicious request filtering based on configurable patterns (blocking common attack vectors like WordPress admin paths and PHP files).</span><br /> +<h1 style='display: inline' id='foostats'>foostats</h1><br /> <br /> <a class='textlink' href='https://codeberg.org/snonux/foostats'>View on Codeberg</a><br /> <a class='textlink' href='https://github.com/snonux/foostats'>View on GitHub</a><br /> @@ -335,7 +411,7 @@ <li>📈 Lines of Code: 25762</li> <li>📄 Lines of Documentation: 3101</li> <li>📅 Development Period: 2008-05-15 to 2025-06-27</li> -<li>🔥 Recent Activity: 138.0 days (avg. age of last 42 commits)</li> +<li>🔥 Recent Activity: 138.1 days (avg. age of last 42 commits)</li> <li>⚖️ License: Custom License</li> <li>🧪 Status: Experimental (no releases yet)</li> <li>🤖 AI-Assisted: This project was partially created with the help of generative AI</li> @@ -343,9 +419,7 @@ <br /> <a href='showcase/ds-sim/image-1.png'><img alt='ds-sim screenshot' title='ds-sim screenshot' src='showcase/ds-sim/image-1.png' /></a><br /> <br /> -<span>DS-Sim is an open-source Java-based simulator for distributed systems that provides a comprehensive environment for learning and experimenting with distributed algorithms. It features protocol simulation, event handling, and implementations of time concepts like Lamport and Vector timestamps. The simulator includes an interactive Swing GUI and comprehensive logging capabilities, making it particularly valuable for educational purposes and distributed systems research.</span><br /> -<br /> -<span>The project is built on an event-driven architecture with clear component separation. At its core, VSSimulator drives the simulation loop with VSTaskManager executing time-ordered tasks, while VSAbstractProcess provides the foundation for simulation processes. The framework supports pluggable protocols through VSAbstractProtocol base classes, includes sophisticated time management with multiple clock types, and uses VSMessage objects for network communication simulation. The Maven-based architecture follows standard Java conventions and includes 141 unit tests covering core components like Two-Phase Commit, Berkeley Time synchronization, and PingPong protocols.</span><br /> +<h1 style='display: inline' id='ds-sim'>DS-Sim</h1><br /> <br /> <a class='textlink' href='https://codeberg.org/snonux/ds-sim'>View on Codeberg</a><br /> <a class='textlink' href='https://github.com/snonux/ds-sim'>View on GitHub</a><br /> @@ -366,9 +440,7 @@ <li>🧪 Status: Experimental (no releases yet)</li> </ul><br /> <br /> -<span>**SillyBench** is a simple Go benchmarking project designed to compare CPU performance between FreeBSD and Linux Bhyve VM environments. The project implements basic mathematical operations (integer multiplication and floating-point arithmetic) to measure computational performance differences across different operating systems and virtualization setups.</span><br /> -<br /> -<span>The implementation is minimal and focused, consisting of a basic Go module with two CPU-intensive benchmark functions: <span class='inlinecode'>BenchmarkCPUSilly1</span> performs simple integer squaring operations, while <span class='inlinecode'>BenchmarkCPUSilly2</span> executes more complex floating-point calculations involving addition, multiplication, and division. The project includes a simple shell script (<span class='inlinecode'>run.sh</span>) that executes the benchmarks using Go's built-in testing framework, making it easy to run consistent performance comparisons across different systems.</span><br /> +<h1 style='display: inline' id='silly-benchmark'>Silly Benchmark</h1><br /> <br /> <a class='textlink' href='https://codeberg.org/snonux/sillybench'>View on Codeberg</a><br /> <a class='textlink' href='https://github.com/snonux/sillybench'>View on GitHub</a><br /> @@ -391,11 +463,7 @@ <br /> <a href='showcase/gos/image-1.png'><img alt='gos screenshot' title='gos screenshot' src='showcase/gos/image-1.png' /></a><br /> <br /> -<span>Gos is a command-line social media scheduling tool written in Go that serves as a self-hosted replacement for Buffer.com. It allows users to create, queue, and schedule posts across multiple platforms (currently Mastodon, LinkedIn, and a "Noop" tracker platform) using a simple file-based approach. Users compose posts as text files in a designated directory (<span class='inlinecode'>~/.gosdir</span>), and can control posting behavior through filename tags (e.g., <span class='inlinecode'>share:mastodon</span>, <span class='inlinecode'>prio</span>, <span class='inlinecode'>now</span>) or inline tags within the content.</span><br /> -<br /> -<a href='showcase/gos/image-2.png'><img alt='gos screenshot' title='gos screenshot' src='showcase/gos/image-2.png' /></a><br /> -<br /> -<span>The tool is architected around a file-based queueing system where posts progress through lifecycle stages: <span class='inlinecode'>.txt</span> files are processed into platform-specific queues (<span class='inlinecode'>.queued</span> files), then marked as <span class='inlinecode'>.posted</span> after successful publishing. It features intelligent scheduling based on configurable targets (posts per week), pause periods between posts, priority handling, and OAuth2 authentication for LinkedIn. The system includes pause functionality for vacations, dry-run mode for testing, and can generate Gemini Gemtext summaries of posted content. Its design emphasizes automation, configurability, and integration into command-line workflows while maintaining a clean separation between platforms through a common interface.</span><br /> +<h1 style='display: inline' id='gos-go-social-media'>Gos (Go Social Media)</h1><br /> <br /> <a class='textlink' href='https://codeberg.org/snonux/gos'>View on Codeberg</a><br /> <a class='textlink' href='https://github.com/snonux/gos'>View on GitHub</a><br /> @@ -416,9 +484,7 @@ <li>🧪 Status: Experimental (no releases yet)</li> </ul><br /> <br /> -<span>RCM (Ruby Configuration Management) is a lightweight, KISS (Keep It Simple, Stupid) configuration management system written in Ruby and designed for personal use. The project provides a domain-specific language (DSL) for declaratively managing system configuration, including files, directories, symlinks, and packages. It serves as an alternative to more complex configuration management tools like Ansible or Puppet, focusing on simplicity and ease of use for individual system administration tasks.</span><br /> -<br /> -<span>The system is implemented with a modular architecture centered around a DSL class that provides keywords for different resource types (file, directory, symlink, touch, package). Each resource type inherits from a base Resource class and implements specific evaluation logic for creating, modifying, or removing system resources. Key features include automatic backup functionality (with SHA256 checksums), ERB template support, conditional execution, parent directory management, and support for file permissions and ownership. The system uses a declarative approach where users define desired states in configuration blocks, and RCM handles the imperative steps to achieve those states, making it particularly useful for personal dotfile management and system configuration automation.</span><br /> +<h1 style='display: inline' id='rcm'>rcm</h1><br /> <br /> <a class='textlink' href='https://codeberg.org/snonux/rcm'>View on Codeberg</a><br /> <a class='textlink' href='https://github.com/snonux/rcm'>View on GitHub</a><br /> @@ -439,9 +505,8 @@ <li>🏷️ Latest Release: 3.0.0 (2024-10-01)</li> </ul><br /> <br /> -<span>**Gemtexter** is a static site generator and blog engine that transforms content written in Gemini Gemtext format into multiple output formats. It's a comprehensive Bash-based tool designed to support the Gemini protocol (a simpler alternative to HTTP) while maintaining compatibility with traditional web technologies. The project converts a single source of Gemtext content into HTML (XHTML 1.0 Transitional), Markdown, and native Gemtext formats, enabling authors to write once and publish across multiple platforms including Gemini capsules, traditional websites, and GitHub/Codeberg pages.</span><br /> -<br /> -<span>The implementation is built entirely in Bash (version 5.x+) using a modular library approach with separate source files for different functionality (atomfeed, gemfeed, HTML generation, Markdown conversion, templating, etc.). Key features include automatic blog post indexing, Atom feed generation, customizable HTML themes, source code highlighting, Bash-based templating system, and integrated Git workflow management. The architecture separates content directories by format (gemtext/, html/, md/) and includes comprehensive theming support, font embedding, and publishing workflows that can automatically sync content to multiple Git repositories for deployment on various platforms.</span><br /> +<span>The Gemtexter blog engine and static site generator</span><br /> +<span>===================================================</span><br /> <br /> <a class='textlink' href='https://codeberg.org/snonux/gemtexter'>View on Codeberg</a><br /> <a class='textlink' href='https://github.com/snonux/gemtexter'>View on GitHub</a><br /> @@ -462,9 +527,9 @@ <li>🧪 Status: Experimental (no releases yet)</li> </ul><br /> <br /> -<span>This project is a **Docker containerization wrapper for a GPodder sync server**, specifically built around the micro-gpodder-server implementation from https://github.com/bohwaz/micro-gpodder-server. GPodder is a podcast client that allows users to synchronize their podcast subscriptions and episode states across multiple devices. The sync server enables this synchronization by providing a centralized service that podcast clients can connect to for managing subscriptions, episode progress, and playback history.</span><br /> +<span>This project provides a Dockerized build environment for the GPodder sync server, specifically targeting the [mygpo](https://github.com/gpodder/mygpo) backend. The GPodder sync server enables users to synchronize podcast subscriptions and playback progress across multiple devices and clients, making it easier to keep listening experiences consistent. By containerizing the server with Docker, the project simplifies deployment and management, ensuring that all dependencies and configurations are encapsulated and reproducible.</span><br /> <br /> -<span>The project is implemented as a simple Docker build system with a Makefile that provides convenient commands for building, running, and deploying the containerized service. The actual server code is included as a git submodule, while this wrapper provides infrastructure automation including data persistence through volume mounting (<span class='inlinecode'>./data</span> to <span class='inlinecode'>/var/www/server/data</span>), network configuration (port 8080 exposure), and AWS ECR deployment capabilities. This approach makes it easy to deploy a self-hosted GPodder sync server with minimal setup, useful for podcast enthusiasts who want to maintain their own synchronization service rather than relying on third-party services.</span><br /> +<span>The implementation centers around a Dockerfile and related configuration files that automate the setup of the mygpo server, including its Python dependencies and any required services (such as a database). Key features include ease of deployment (just a few Docker commands to get started), isolation from the host system, and portability across different environments. The architecture leverages Docker’s layered image system to build, run, and update the GPodder sync server efficiently, making it accessible for both development and production use.</span><br /> <br /> <a class='textlink' href='https://codeberg.org/snonux/docker-gpodder-sync-server'>View on Codeberg</a><br /> <a class='textlink' href='https://github.com/snonux/docker-gpodder-sync-server'>View on GitHub</a><br /> @@ -485,9 +550,9 @@ <li>🧪 Status: Experimental (no releases yet)</li> </ul><br /> <br /> -<span>This project is a **Docker containerization setup for Radicale**, a CalDAV and CardDAV server written in Python. Radicale is a lightweight, standards-compliant calendar and contacts server that allows users to synchronize their calendars and address books across multiple devices and applications. The project provides a complete Docker image and deployment configuration that makes it easy to run a personal or small-team calendar/contacts server.</span><br /> +<span>This project provides a Docker image for the [Radicale server](https://radicale.org), an open-source CalDAV and CardDAV server for managing calendars and contacts. By containerizing Radicale, the project makes it easy to deploy and run the server in isolated, reproducible environments, simplifying installation and upgrades. Users can quickly set up a personal or small-team calendar/contact server without worrying about system dependencies or manual configuration.</span><br /> <br /> -<span>The implementation uses Alpine Linux as the base image for a minimal footprint, installs Python 3 and Radicale via pip, and configures the server with HTTP basic authentication using htpasswd. The setup includes persistent storage for collections (calendars/contacts) and authentication data through Docker volumes, exposes the service on port 8080, and includes a Makefile for easy building and deployment. The project also supports pushing to AWS ECR for cloud deployment, making it suitable for both local development and production use cases where you need a self-hosted alternative to cloud-based calendar services.</span><br /> +<span>The Docker image is built to be lightweight and configurable, exposing necessary ports and allowing persistent storage of data via Docker volumes. The architecture typically involves a Dockerfile that installs Radicale and its dependencies, sets up configuration files, and defines entrypoints for running the server. This approach ensures portability, consistency across environments, and ease of integration with orchestration tools like Docker Compose or Kubernetes. Key features include simplified deployment, secure isolation, and support for custom configuration through environment variables or mounted files.</span><br /> <br /> <a class='textlink' href='https://codeberg.org/snonux/docker-radicale-server'>View on Codeberg</a><br /> <a class='textlink' href='https://github.com/snonux/docker-radicale-server'>View on GitHub</a><br /> @@ -510,11 +575,7 @@ <br /> <a href='showcase/quicklogger/image-1.png'><img alt='quicklogger screenshot' title='quicklogger screenshot' src='showcase/quicklogger/image-1.png' /></a><br /> <br /> -<span>**QuickLogger** is a minimalist Go-based GUI application built with the Fyne framework that's designed for rapid text note capture, primarily targeting mobile Android devices. It provides a simple interface for quickly logging thoughts, ideas, or notes to timestamped Markdown files (<span class='inlinecode'>ql-YYMMDD-HHMMSS.md</span>) with customizable categorization through dropdown menus for tags, activities, and time periods. The app is optimized for mobile use with features like character count indicators, text length warnings, and a clear button for quick text clearing.</span><br /> -<br /> -<a href='showcase/quicklogger/image-2.png'><img alt='quicklogger screenshot' title='quicklogger screenshot' src='showcase/quicklogger/image-2.png' /></a><br /> -<br /> -<span>The project follows a clean, single-file architecture with all functionality contained in <span class='inlinecode'>main.go</span>, making it easy to understand and maintain. It includes both a main logging interface and a preferences window for customizing save directories and dropdown options. The build system supports cross-platform compilation with special focus on Android APK generation, and the saved files are designed to work well with file syncing tools like Syncthing, making it a practical tool for capturing notes on mobile devices that can be automatically synchronized across multiple devices.</span><br /> +<h1 style='display: inline' id='quick-logger'>Quick logger</h1><br /> <br /> <a class='textlink' href='https://codeberg.org/snonux/quicklogger'>View on Codeberg</a><br /> <a class='textlink' href='https://github.com/snonux/quicklogger'>View on GitHub</a><br /> @@ -535,9 +596,7 @@ <li>🧪 Status: Experimental (no releases yet)</li> </ul><br /> <br /> -<span>This is a comprehensive personal cloud infrastructure project built with Terraform that deploys a multi-tier AWS architecture for hosting self-hosted services. The infrastructure is organized into modular components: <span class='inlinecode'>org-buetow-base</span> provides the foundation (VPC, subnets, EFS storage, ECR), <span class='inlinecode'>org-buetow-bastion</span> creates a bastion host for secure access, <span class='inlinecode'>org-buetow-elb</span> sets up application load balancing, and <span class='inlinecode'>org-buetow-ecs</span> runs containerized services on AWS Fargate. The project also includes an EKS cluster option with EFS CSI driver integration for Kubernetes workloads.</span><br /> -<br /> -<span>The system is designed to host multiple personal services including Anki sync server, Audiobookshelf, Vaultwarden, Syncthing, Radicale (CalDAV/CardDAV), and others, all with persistent storage via EFS and secure TLS termination. The architecture follows |
