etcd
CoreDNS
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etcd | CoreDNS | |
---|---|---|
61 | 41 | |
46,292 | 11,776 | |
1.0% | 1.4% | |
9.9 | 9.3 | |
1 day ago | 4 days ago | |
Go | Go | |
Apache License 2.0 | Apache License 2.0 |
Stars - the number of stars that a project has on GitHub. Growth - month over month growth in stars.
Activity is a relative number indicating how actively a project is being developed. Recent commits have higher weight than older ones.
For example, an activity of 9.0 indicates that a project is amongst the top 10% of the most actively developed projects that we are tracking.
etcd
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Oracle Linux 8.8'de PostgreSQL 13 Yedekli Yapı Nasıl Kurulur? - Patroni, ETCD, HAProxy
sudo dnf -y install curl wget vim ETCD_RELEASE=$(curl -s https://api.github.com/repos/etcd-io/etcd/releases/latest|grep tag_name | cut -d '"' -f 4) echo $ETCD_RELEASE wget https://github.com/etcd-io/etcd/releases/download/${ETCD_RELEASE}/etcd-${ETCD_RELEASE}-linux-amd64.tar.gz tar xvf etcd-${ETCD_RELEASE}-linux-amd64.tar.gz cd etcd-${ETCD_RELEASE}-linux-amd64 sudo mv etcd* /usr/local/bin ls /usr/local/bin /usr/local/bin/etcd --version
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Transitioning from more traditional OOP like C# to Go, what are the biggest coding style differences.
Reading the standard library will give you ideas/insight about various Go idiomatic patterns/approaches, and you can see a full website/API implementation in the pkg.go.dev repository (https://github.com/golang/pkgsite). Projects like https://github.com/etcd-io/etcd may be interesting too.
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Fault Tolerance in Distributed Systems: Strategies and Case Studies
Failure Detection and Recovery It’s not enough to have backup systems. It’s also crucial to detect failures quickly. Modern systems employ monitoring tools and rely on distributed coordination systems such as Zookeeper or etcd to identify faults in real-time: once detected, recovery mechanisms are triggered to restore the service.
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The Complete Microservices Guide
Service Discovery: Microservices need to discover and communicate with each other dynamically. Service discovery tools like etcd, Consul, or Kubernetes built-in service discovery mechanisms help locate and connect to microservices running on different nodes within the infrastructure.
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How is Apache APISIX Fast?
APISIX uses etcd to store and synchronize configurations.
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Apache APISIX without etcd
etcd is an excellent key-value distributed database used internally by Kubernetes and managed by the CNCF. It's a great option, and that's the reason why Apache APISIX uses it too. Yet, it's not devoid of issues.
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From /etc to database
Someone on HN (https://news.ycombinator.com/item?id=36682595) suggested etcd (https://etcd.io)
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Evaluating Apache APISIX vs. Spring Cloud Gateway
In traditional mode, APISIX stores its configuration in etcd. APISIX offers a rich API to access and update the configuration, the Admin API. In standalone mode, the configuration is just plain YAML. It's the approach for GitOps practitioners: you'd store your configuration in a Git repo, watch it via your favorite tool (e.g., Argo CD or Tekton), and the latter would propagate the changes to APISIX nodes upon changes. APISIX reloads its configuration every second or so.
- Implementing a distributed key-value store on top of implementing Raft in Go
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RedisRaft
I am not sure neither. But this might overcome the etcd's soft storage limit of 8GB? [1]
CoreDNS
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Small DNS Server That Support Outgoing Address Binding?
CoreDNS supports this via the bind plugin.
- The Tailscale Universal Docker Mod
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How to use Cloudflare 1.1.1.1 with Kubernetes DNS
I'd like to use Cloudflare's 1.1.1.1 and 1.0.0.1 nameservers in Kubernetes, alongside DNS over TLS. It looks like I can do it using core-dns. I need to setup the following somehow:
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Dockerize Bind9 DNS with custom image
Shamless plug for CoreDNS. Much better DNS server than classic bind9. And of course there's already a nice container image for it.
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Kubernetes traffic discovery
But another approach that could work in Kubernetes, because the DNS servers are within the cluster itself, would be to work directly with the DNS server pods. In most Kubernetes clusters, whether standalone or managed (GKE, AKS, EKS), the cluster DNS is either coredns or kube-dns. That was great to minimize how much configuration options we’d need to support. We realized we could edit the coredns or kube-dns configmap resources to enable their log option, which would make them log all the queries they handle. We’ll cover exactly how it’s done in more detail below.
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Self hosted DNS server that responds to queries with data from web API?
CoreDNS has an ectd plugin, so your service could add entries to a database, which is used as record source. Not the same mechanism as you have described, but it will get the job done. Also this is what Kubetnetes does for incluster dns records.
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Upgrade CoreDNS without downtime and without kubernetes
nevermind there's caddy builtin upgrade method https://github.com/coredns/coredns/issues/6034
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Guide for using DNS with home lab servers?
Coredns can be spun up in a docker container, just starting to get into it myself
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What would you rewrite in Golang?
CoreDNS is a pretty good DNS server.
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Cool networking projects in golang
Core DNS (https://coredns.io).
What are some alternatives?
consul - Consul is a distributed, highly available, and data center aware solution to connect and configure applications across dynamic, distributed infrastructure.
PowerDNS - PowerDNS Authoritative, PowerDNS Recursor, dnsdist
minio - The Object Store for AI Data Infrastructure
blocky - Fast and lightweight DNS proxy as ad-blocker for local network with many features
Vault - A tool for secrets management, encryption as a service, and privileged access management
Pi-hole - A black hole for Internet advertisements
Apache ZooKeeper - Apache ZooKeeper
nsupdate.info - Dynamic DNS service
nsq - A realtime distributed messaging platform
cni - Container Network Interface - networking for Linux containers
traefik - The Cloud Native Application Proxy
Maza ad blocking - Local ad blocker. Like Pi-hole but local and using your operating system.