DevOps&SRE Library
Библиотека статей по теме DevOps и SRE. Реклама: @ostinostin Контент: @mxssl РКН: https://www.gosuslugi.ru/snet/67704b536aa9672b963777b3
Больше📈 Аналитический обзор Telegram-канала DevOps&SRE Library
Канал DevOps&SRE Library (@devopslibrary) языкового сегмента Английский является активным участником. Сейчас сообщество объединяет 19 414 подписчиков, занимая 6 946 место в категории Технологии и приложения и 34 835 место в регионе Россия.
📊 Показатели аудитории и динамика
С момента создания невідомо проект демонстрирует стремительный рост, собрав аудиторию из 19 414 подписчиков.
Согласно последним данным от 12 июня, 2026, канал показывает стабильную активность. За последние 30 дней изменение числа участников составило 166, а за последние 24 часа — 13, при этом общий охват остаётся высоким.
- Статус верификации: Не верифицирован
- Уровень вовлечённости (ER): Средний показатель вовлечённости аудитории составляет 14.98%. В первые 24 часа после публикации контент обычно набирает 7.10% реакций от общего числа подписчиков.
- Охват публикаций: В среднем каждый пост получает 2 908 просмотров. В течение первых суток публикация набирает 1 377 просмотров.
- Реакции и взаимодействия: Аудитория активно поддерживает контент: среднее количество реакций на один пост — 1.
- Тематические интересы: Контент сосредоточен на ключевых темах, таких как kubernete, cluster, infrastructure, storage, configuration.
📝 Описание и контентная политика
Автор описывает ресурс как площадку для выражения субъективного мнения:
“Библиотека статей по теме DevOps и SRE.
Реклама: @ostinostin
Контент: @mxssl
РКН: https://www.gosuslugi.ru/snet/67704b536aa9672b963777b3”
Благодаря высокой частоте обновлений (последние данные получены 13 июня, 2026) канал поддерживает актуальность и высокий уровень охвата публикаций. Аналитика показывает, что аудитория активно взаимодействует с контентом, что делает его важной точкой влияния в категории Технологии и приложения.
Modern Kubernetes deployment methodologies have grown increasingly complex, layering abstraction upon abstraction in pursuit of flexibility. This article challenges that trajectory by examining how fundamental Unix tools combined with Makefiles can provide a more transparent and maintainable alternative to popular solutions like Helm and Kustomize.https://dev.to/avkr/replace-helm-with-kiss-456a
In today's workplace, communication tools like Slack or Microsoft Teams are essential for staying connected at work. However, as orchestration and automation needs increase, so does the volume of notifications flooding these channels. What’s meant to streamline work can quickly become overwhelming. We call it "ChatOps fatigue" - when teams get so many alerts, they start tuning them out.https://www.tines.com/blog/chatops-fatigue-how-to-create-alerts-that-matter
Super quick one I want to document here! I got myself on a side quest, again! No biggie, my ZSH shell was taking ages to load. When I say ages, more like 5+ seconds every time I opened a new terminal, that sort of thing can add up. This is just something I’ve lived with over the years, nothing has prompted this other than me wondering why it’s slow, then searching for how to profile it.https://scottspence.com/posts/speeding-up-my-zsh-shell
External Secrets is the de-facto choice for secrets management in Kubernetes clusters. It simplifies the task of the administrator(s) of the cluster, ensuring only the secrets that are explicitly defined are present and accessible. It comes with many great features but most important than all is its integration with major cloud providers. In this blog post you will learn how to deploy it without hard-coded credentials and using only the power of OpenID Connect for trust relationship between services.https://developer-friendly.blog/blog/2025/03/24/cloud-native-secret-management-oidc-in-k8s-explained/
At Freshworks, we regularly perform blue-green migrations to upgrade our EKS clusters and implement Redis-related changes with minimal disruption. In this article, we’ll walk through how we migrate approximately 900 Redis endpoints — spanning one staging region and five production regions, each with 4–5 EKS clusters — while ensuring high availability for our stateful Redis workloads. Our mission was clear: complete the migration with minimal disruption to our services while ensuring data consistency. Here’s how we tackled this complex engineering challenge and achieved near-zero downtime migrations at scale.https://medium.com/freshworks-engineering-blog/fast-k8s-upgrades-9cb60be7f93e
Insights and best practices from a real-world rollback gamedayhttps://medium.com/expedia-group-tech/lessons-from-a-rollback-gameday-4d05cf1c9524
With Yoke, you write your infrastructure definitions in Go or Rust, compile it to WebAssembly, and then you take input and output Kubernetes manifests that get applied to the cluster.https://xeiaso.net/blog/2025/yoke-k8s
RustFS is a high-performance distributed object storage software built using Rust, one of the most popular languages worldwide. Along with MinIO, it shares a range of advantages such as simplicity, S3 compatibility, open-source nature, support for data lakes, AI, and big data. Furthermore, it has a better and more user-friendly open-source license in comparison to other storage systems, being constructed under the Apache license. As Rust serves as its foundation, RustFS provides faster speed and safer distributed features for high-performance object storage.https://github.com/rustfs/rustfs
The Infrastructure team at Hugging Face is excited to share a behind-the-scenes look at the inner workings of Hugging Face's production infrastructure, which we’ve had the privilege of helping to build and maintain. Our team's dedication to designing and implementing a robust monitoring and alerting system has been instrumental in ensuring the stability and scalability of our platforms. We’re constantly reminded of the impact that our alerts have on our ability to identify and respond to potential issues before they become major incidents. In this blog post, we’ll dive into the details of three mighty alerts that play their unique role in supporting our production infrastructure, and explore how they've helped us maintain the high level of performance and uptime that our community relies on.https://huggingface.co/blog/infrastructure-alerting
Fourteen years ago, Dropbox took its first steps toward building its own hardware infrastructure—and as our product and user base has grown, so has our infrastructure. What started with just a handful of servers has evolved into one of the largest custom-built storage systems in the world. We've scaled from a few dozen machines to tens of thousands of servers with millions of drives. That evolution didn’t happen by accident. It took years of iteration, close collaboration with suppliers, and a product-first mindset that treated infrastructure as a strategic advantage. Now we’re excited to share what’s next: the launch of our seventh-generation hardware platform, now featuring Crush, Dexter, and Sonic for our traditional compute, database, and storage workloads, and our newest GPU tiers, Gumby and Godzilla. To make this leap possible, we dramatically increased storage bandwidth, effectively doubled our available rack power, and introduced a next-gen storage chassis designed to even further minimize vibration and heat. This generation represents our most efficient, capable, and scalable architecture yet—and it’ll help us as we continue to build and scale helpful AI products like Dropbox Dash. Below, we’ll walk you through how we designed the latest version of our server hardware as well as key lessons we’ll carry into generations to come.https://dropbox.tech/infrastructure/seventh-generation-server-hardware
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