@Nomad01290 · Post #4026 · 11/18/2021, 11:27 AM
https://snikket.org/ #xmpp#selfhosted#messaging
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TGINSIGHT SIMILAR POSTS
Source channel @olddriverGDstudy · Post #53 · Mar 24
#知识#接吻 第一式:舔吻 用舌舔对方的上下唇,让对方感受舌部味蕾舔掠的感觉,注意要保持唾液的充分,如果唾液太少,干燥的舔吻会有不舒服的感觉。 第二式:咬吻 用牙齿轻咬对方的唇,但别咬的太用力,以免受伤喔! 第三式:吸吻 轻轻的吸吮对方的唇部;可用自己的唾液轻抹在对方的唇部,然后吸吮干净。 第四式:推动吻 把舌伸进对方口中,让舌与舌互相推放,男生力气应放小,以免女生疼痛;这种互推吻可形成快感。 第五式:吸舌吻 以你的唇含住他的舌,轻轻的吸吮对方的舌头,动作宜缓慢而轻柔,勿过于仓促。 第六式:齿龈吻 用舌探索对方的牙及牙龈的内外两侧,以刺激口内粘膜为目的。动作要仔细,慢,轻柔的介于碰触与不碰触之间,以产生一种特殊的亲密感。 第七式:滑动吻 用舌尖稍用力的舔对方的舌部内侧,由里向外滑舔。 第八式:舔舌吻 双方以舌对舌互舔,以用舌尖为主,不用唇。 第九式:嚼食之吻 咬住对方的舌头,似欲吞食般的吻;请小心别用力过火,只是假装而已。想像对方的舌头是好吃的东西,又咬又舔又吸的想吞进肚子里去。 第十式:律动之吻 以舌在对方的口中,有节奏律动般的的绕着对方的舌尖,画圈似的舔吻。 第十一式:深喉咙吻 将舌深入对方的喉咙重舔。重压,是霸道占有般的吻;这是一种颇不舒服的吻法,但还是有乐在其中的人。 第十二式:热情之吻 将自己的舌把对方的舌包卷于口中,上下左右回旋翻动,用放肆的旋动来增加快感,虽嫌粗鲁但颇具挑战性,是接吻高手必备的技巧之一。 第十三式:甘泉之吻 利用两唇相接时……以舌将自己的唾液渡入对方口中,并吸食对方的唾液。适用于两情相悦且身体健康的爱侣,会觉入口之唾液为琼浆玉液般,世间独有。
Search: #messaging
@Nomad01290 · Post #4026 · 11/18/2021, 11:27 AM
https://snikket.org/ #xmpp#selfhosted#messaging
Hashtags
@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
@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 · 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 · 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
@gemscrypto100x · Post #2094 · 05/15/2026, 06:24 PM
🚀 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
@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
@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