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Source channel @olddriverGDstudy · Post #29 · Mar 17

搜索使用说明 #搜索指南 因为电报软件对中文搜索支持不好,大队特别对队内资源搜索进行了整理汇集,使用方法说明如下: 1.1 原理: 电报对中文搜索支持不佳,汉字只有在前后含有asic码字符的前提下可以被正确搜索出,如 _广州修车大队_ (“_”指代空格)、(广州修车大队);等形式可以搜索“广州修车大队”搜索出相关信息;搜索“广州”等未被asic码间隔的汉字无法正确显示。 为正确搜索,在编制频道资源时,对重要信息可以采取Hashtag的形式已方便搜索,即以"#"字符开头,接汉字,以“空格字符”结尾的形式,点击一个hashtag即可快速定位该频道或聊天群内所有相同标签,建议所有管理在编辑重要资料包括ls信息、广播台、学习频道时正确使用hashtag。 !!注意标签不要随意编写,要参考搜索指南中有的标签类型!! 1.2 JS资源定位: JS目前支持 Hasgtag(#K老师)、数字标签(#GZ003)的搜索方式,在对应榜单和报告区中试用上述方式均可查找到JS的相关信息。 使用举例:在“广州公开榜”或“广州修车大队”的搜索栏中输入 #K老师 或 #GZ003,均可定位到K老师资料页;在报告区的搜索栏中输入#K老师 或 #GZ003,均可定位到K老师的验证报告。这两者是快速了解JS基本信息和评价的便捷办法。 1.3 标签查找 公榜榜单目前均支持标签查找,可以快速定位某种类型或地区的所有JS,目前仅支持Hashtag查找,目前常用标签解释如下: 地区标签: 一定要使用一级标签,例如 #天河区(注意不要有错别字) #颜值: 不解释 #服务: 评价中92、95的,有场子出身花式水平的,均会归入此类; #大胸: 不解释,一般D以上归入此类; #长腿: 不解释,一般168以上归入此类; #身材: 不解释,较为宽松; #嫩妹: 22岁以下或者长相很嫩的,白小纯的,loli系的,cos系的归入此类; #熟女: 30岁以上风韵犹存的,归入此类; #特服: 提供3p、3t、wt、字母等特殊服务的JS归入此类。 使用举例:在红榜的搜索栏中输入 #长腿,可以快速查看“莉贝伦”等8位长腿JS。 类型标签评价目前非常主观,有不妥之处请队内私信 JackJack 或其他管理人员修改。 1.4 资料查找 目前学习频道中试用hashtag来快速定位资料,目前使用的标签有如下几种: #安全CJ#素质CJ#卫生CJ #搜索指南 #大队玩法 #语录#秀哥语录 #技巧#知识

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Libreware

@libreware · Post #1548 · 02/15/2026, 11:52 AM

Stop Trusting #Messaging Apps! Build Your Own Global #Meshtastic#MQTT Network - Explained Simply Most messaging apps promise privacy, but very few let you control the infrastructure behind your conversations. https://rumble.com/v75rxrg #im#mesh#p2p

Venture Village Wall 🦄

@venturevillagewall · Post #3356 · 12/18/2024, 12:07 PM

Surge Raises $500K Funding Surge has successfully raised $500K in funding as of December 4, 2024. The platform specializes in providing embedded text messaging services, allowing businesses to simplify their communication and focus on their core operations. Learn more at: Surge #Funding#Messaging#Surge#Texting#Tech#Business#Communication#Embedded#Startup#Investment

Libreware

@libreware · Post #968 · 07/05/2021, 01:41 AM

SplinterNet Android app designed to create an unblockable Twitter like network that uses no cellular or Internet communications. All messages are transmitted over Bluetooth between users, creating a true peer-to-peer messaging system. All messages are anonymous to prevent retaliation by government authorities. SplinterNet is a true peer-to-peer network in that it requires physical proximity to other people to transmit messages. In the current version this happens over a close range Bluetooth connection. To illustrate how SplinterNet works, here is an example scenario: You take a picture of a protest happening near your home. Fearing a spread of the protest the government shuts down cellular and Internet access to most citizens. You write a short message about the protest in SplinterNet and attach the picture. When you next meet with your friends, you sync SplinterNet with them. They now have your photo and will spread it to their friends. You also now have all their messages, which includes photos taken of protests happening in other parts of the country. Any person who can reach a working Internet connection can post all of these photos to any sharing service or send directly to journalists to publicize. If you fear capture, you can press a single button and all the messages in your copy of SplinterNet are deleted. Features Create a post with text and an optional single image. Mark posts as important to increase their spread within the network. These posts will be sent first during syncing and will be highlighted for the people you sync with. Delete posts to stop their spread. The contents of the network reflect what users of the network think is important and appropriate. You don't have to spread anything you don't want to. Project Status This is an experimental project still in development. All of the features listed here should work, they just haven't been tested in large networks. Please let us know how it works! https://raw.githubusercontent.com/megamattron/SplinterNet/master/other/splinterNet-infosheet.png https://github.com/megamattron/SplinterNet 📡@nogoolag📡@libreware #SplinterNet#im#messaging#p2p#bt#bluetooth

Libreware

@libreware · Post #954 · 06/13/2021, 03:55 AM

Berty is a secure peer-to-peer messaging app that works with or without internet access, cellular data or trust in the network –https://github.com/berty/berty Berty · Berty Technologies –https://berty.tech/ #berty#messaging#im#p2p#Privacy#ResilientNetwork

🚀 Welcome to the Future of Communication & Payments with Liberdus 🔐 A decentralized messaging + payment platform built for privacy, speed, and freedom. ✨ Features: • End-to-end encrypted messaging • Instant crypto payments • Decentralized network • Ultra low transaction fees • Built on powerful Shardus technology • Community-driven ecosystem ➡️ No central control. No censorship. Just secure communication and financial freedom. ⚡️ Liberdus is combining blockchain technology with real-world messaging utility to create the next generation of Web3 communication. 🔵Telegram: https://t.me/liberdusofficial 🔴 Website: http://liberdus.com 🐦 X: https://x.com/liberdus #Liberdus#Web3#Crypto#Blockchain#DeFi#Messaging#Decentralized#Shardus#Privacy#CryptoPayments

GitHub Trends

@githubtrending · Post #14648 · 04/30/2025, 12:30 PM

#java#ai#apache_kafka#aws#azure#cloud#cloud_first#cloud_native#ebs#gcp#kafka#llm#messaging#minio#s3#serverless#spot#streaming AutoMQ provides a cloud-native alternative to Apache Kafka that runs on S3 storage, cutting costs by up to 90% while enabling instant scaling and eliminating cross-zone traffic fees. It offers high reliability, serverless operation, and full Kafka compatibility, making it easier and cheaper to manage large-scale data streaming without sacrificing performance or features. https://github.com/AutoMQ/automq

GitHub Trends

@githubtrending · Post #14691 · 05/10/2025, 12:00 AM

#csharp#architecture#aspnetcore#clean_architecture#cqrs#ddd#dotnet#dotnetcore#event_driven_architecture#event_sourcing#kubernetes#masstransit#messaging#microservice#microservices#oauth2#opentelemetry#software_architecture#software_design#software_engineering#vertical_slice_architecture Migrating from a monolithic architecture to a cloud-native microservices architecture offers several benefits. It improves scalability, allowing different parts of the application to grow independently. This approach also enhances reliability by isolating faults, so if one service fails, others continue to work. Additionally, microservices enable faster deployment and updates, as each service can be developed and deployed separately. This flexibility allows teams to use the best technology for each service, making development more efficient and agile[2][3][5]. https://github.com/meysamhadeli/monolith-to-cloud-architecture