#OpenEBS in Kubernetes environment
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Top 5 Open Source Kubernetes Storage Solutions
Top 5 Open Source Kubernetes Storage Solutions #homelab #ceph #rook #glusterfs #longhorn #openebs #KubernetesStorageSolutions #OpenSourceStorageForKubernetes #CephRBDKubernetes #GlusterFSWithKubernetes #OpenEBSInKubernetes #RookStorage #LonghornKubernetes
Historically, Kubernetes storage has been challenging to configure, and it required specialized knowledge to get up and running. However, the landscape of K8s data storage has greatly evolved with many great options that are relatively easy to implement for data stored in Kubernetes clusters. Those who are running Kubernetes in the home lab as well will benefit from the free and open-source…

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#block storage vs object storage#Ceph RBD and Kubernetes#cloud-native storage solutions#GlusterFS with Kubernetes#Kubernetes storage solutions#Longhorn and Kubernetes integration#managing storage in Kubernetes clusters#open-source storage for Kubernetes#OpenEBS in Kubernetes environment#Rook storage in Kubernetes
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Cloud Native Storage Market Insights: Industry Share, Trends & Future Outlook 2032
TheCloud Native Storage Market Size was valued at USD 16.19 Billion in 2023 and is expected to reach USD 100.09 Billion by 2032 and grow at a CAGR of 22.5% over the forecast period 2024-2032
The cloud native storage market is experiencing rapid growth as enterprises shift towards scalable, flexible, and cost-effective storage solutions. The increasing adoption of cloud computing and containerization is driving demand for advanced storage technologies.
The cloud native storage market continues to expand as businesses seek high-performance, secure, and automated data storage solutions. With the rise of hybrid cloud, Kubernetes, and microservices architectures, organizations are investing in cloud native storage to enhance agility and efficiency in data management.
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Market Keyplayers:
Microsoft (Azure Blob Storage, Azure Kubernetes Service (AKS))
IBM, (IBM Cloud Object Storage, IBM Spectrum Scale)
AWS (Amazon S3, Amazon EBS (Elastic Block Store))
Google (Google Cloud Storage, Google Kubernetes Engine (GKE))
Alibaba Cloud (Alibaba Object Storage Service (OSS), Alibaba Cloud Container Service for Kubernetes)
VMWare (VMware vSAN, VMware Tanzu Kubernetes Grid)
Huawei (Huawei FusionStorage, Huawei Cloud Object Storage Service)
Citrix (Citrix Hypervisor, Citrix ShareFile)
Tencent Cloud (Tencent Cloud Object Storage (COS), Tencent Kubernetes Engine)
Scality (Scality RING, Scality ARTESCA)
Splunk (Splunk SmartStore, Splunk Enterprise on Kubernetes)
Linbit (LINSTOR, DRBD (Distributed Replicated Block Device))
Rackspace (Rackspace Object Storage, Rackspace Managed Kubernetes)
Robin.Io (Robin Cloud Native Storage, Robin Multi-Cluster Automation)
MayaData (OpenEBS, Data Management Platform (DMP))
Diamanti (Diamanti Ultima, Diamanti Spektra)
Minio (MinIO Object Storage, MinIO Kubernetes Operator)
Rook (Rook Ceph, Rook EdgeFS)
Ondat (Ondat Persistent Volumes, Ondat Data Mesh)
Ionir (Ionir Data Services Platform, Ionir Continuous Data Mobility)
Trilio (TrilioVault for Kubernetes, TrilioVault for OpenStack)
Upcloud (UpCloud Object Storage, UpCloud Managed Databases)
Arrikto (Kubeflow Enterprise, Rok (Data Management for Kubernetes)
Market Size, Share, and Scope
The market is witnessing significant expansion across industries such as IT, BFSI, healthcare, retail, and manufacturing.
Hybrid and multi-cloud storage solutions are gaining traction due to their flexibility and cost-effectiveness.
Enterprises are increasingly adopting object storage, file storage, and block storage tailored for cloud native environments.
Key Market Trends Driving Growth
Rise in Cloud Adoption: Organizations are shifting workloads to public, private, and hybrid cloud environments, fueling demand for cloud native storage.
Growing Adoption of Kubernetes: Kubernetes-based storage solutions are becoming essential for managing containerized applications efficiently.
Increased Data Security and Compliance Needs: Businesses are investing in encrypted, resilient, and compliant storage solutions to meet global data protection regulations.
Advancements in AI and Automation: AI-driven storage management and self-healing storage systems are revolutionizing data handling.
Surge in Edge Computing: Cloud native storage is expanding to edge locations, enabling real-time data processing and low-latency operations.
Integration with DevOps and CI/CD Pipelines: Developers and IT teams are leveraging cloud storage automation for seamless software deployment.
Hybrid and Multi-Cloud Strategies: Enterprises are implementing multi-cloud storage architectures to optimize performance and costs.
Increased Use of Object Storage: The scalability and efficiency of object storage are driving its adoption in cloud native environments.
Serverless and API-Driven Storage Solutions: The rise of serverless computing is pushing demand for API-based cloud storage models.
Sustainability and Green Cloud Initiatives: Energy-efficient storage solutions are becoming a key focus for cloud providers and enterprises.
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Market Segmentation:
By Component
Solution
Object Storage
Block Storage
File Storage
Container Storage
Others
Services
System Integration & Deployment
Training & Consulting
Support & Maintenance
By Deployment
Private Cloud
Public Cloud
By Enterprise Size
SMEs
Large Enterprises
By End Use
BFSI
Telecom & IT
Healthcare
Retail & Consumer Goods
Manufacturing
Government
Energy & Utilities
Media & Entertainment
Others
Market Growth Analysis
Factors Driving Market Expansion
The growing need for cost-effective and scalable data storage solutions
Adoption of cloud-first strategies by enterprises and governments
Rising investments in data center modernization and digital transformation
Advancements in 5G, IoT, and AI-driven analytics
Industry Forecast 2032: Size, Share & Growth Analysis
The cloud native storage market is projected to grow significantly over the next decade, driven by advancements in distributed storage architectures, AI-enhanced storage management, and increasing enterprise digitalization.
North America leads the market, followed by Europe and Asia-Pacific, with China and India emerging as key growth hubs.
The demand for software-defined storage (SDS), container-native storage, and data resiliency solutions will drive innovation and competition in the market.
Future Prospects and Opportunities
1. Expansion in Emerging Markets
Developing economies are expected to witness increased investment in cloud infrastructure and storage solutions.
2. AI and Machine Learning for Intelligent Storage
AI-powered storage analytics will enhance real-time data optimization and predictive storage management.
3. Blockchain for Secure Cloud Storage
Blockchain-based decentralized storage models will offer improved data security, integrity, and transparency.
4. Hyperconverged Infrastructure (HCI) Growth
Enterprises are adopting HCI solutions that integrate storage, networking, and compute resources.
5. Data Sovereignty and Compliance-Driven Solutions
The demand for region-specific, compliant storage solutions will drive innovation in data governance technologies.
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Conclusion
The cloud native storage market is poised for exponential growth, fueled by technological innovations, security enhancements, and enterprise digital transformation. As businesses embrace cloud, AI, and hybrid storage strategies, the future of cloud native storage will be defined by scalability, automation, and efficiency.
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#cloud native storage market#cloud native storage market Scope#cloud native storage market Size#cloud native storage market Analysis#cloud native storage market Trends
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In the previous article, we discussed how to Setup self-hosted Gitea private repository on a Kubernetes cluster. This article will discuss how to install Jenkins server on a Kubernetes/OpenShift cluster. Kubernetes/OpenShift adds an additional automation layer on Jenkins server which in turn makes sure that the resources allocated to the Jenkins deployment are efficiently utilized. This means that with the use of an orchestration layer such as Kubernetes/OpenShift, resources can be scaled up/down depending on consumption/usage. This article will discuss the available methods of setting up Jenkins server on a Kubernetes/OpenShift cluster. Install Jenkins on Kubernetes using Helm3 In our guide we assume that you have a fully fuctional Kubernetes/OpenShift cluster. You also need access to the control plane either natively or remote. Helm is a package manager for Kubernetes/OpenShift that packages deployments in a format called chat. The installation of Helm3 is covered in the article below Install and Use Helm 3 on Kubernetes Cluster Step 1. Create Jenkins namespace Create the jenkins namespace that will be used for this deployment. kubectl create ns jenkins Once you have Helm3 installed, add Jenkins repo to your environment $ helm repo add jenkinsci https://charts.jenkins.io $ helm repo update Step 2. Create a Persistent Volume Once the Jenkins repo is added, we need to configure a persistent volume since Jenkins is a stateful application and needs to store persistent data on a volume. Creating Persistent Volume from Host Path Create a PersistentVolume on your Kubernetes cluster: $ vim jenkins-localpv.yaml kind: StorageClass apiVersion: storage.k8s.io/v1 metadata: name: jenkins-sc provisioner: kubernetes.io/no-provisioner volumeBindingMode: WaitForFirstConsumer --- apiVersion: v1 kind: PersistentVolume metadata: name: jenkins-pv labels: type: local spec: storageClassName: jenkins-sc capacity: storage: 10Gi accessModes: - ReadWriteOnce hostPath: path: "/mnt" --- apiVersion: v1 kind: PersistentVolumeClaim metadata: name: jenkins-pvc spec: storageClassName: jenkins-sc accessModes: - ReadWriteOnce resources: requests: storage: 10Gi Apply the configuration kubectl apply -f jenkins-localpv.yaml The above command creates a persistent volume and persistentVolumeClaim using hostPath. The volume will be saved at /mnt path of the node. Dynamic Persistent Volume creation using StorageClass If you have any StorageClass provided by a custom storage solution, create new file called jenkins-pvc.yaml vim jenkins-pvc.yaml Modify below configuration to provide StorageClass name: apiVersion: v1 kind: PersistentVolumeClaim metadata: name: jenkins-pvc spec: accessModes: - ReadWriteOnce storageClassName: storage-class-name resources: requests: storage: 10Gi Then apply the configuration after modification: kubectl apply -f jenkins-pvc.yaml Using openEBS Storage You can use dynamic storage provisioning using tools such as openEBS and provision storageClasses. For dynamic storage, create a storageClass config: $ vim jenkins-sc.yaml apiVersion: storage.k8s.io/v1 kind: StorageClass metadata: name: jenkins-sc annotations: openebs.io/cas-type: jiva cas.openebs.io/config: | - name: ReplicaCount value: "2" - name: StoragePool value: gpdpool provisioner: openebs.io/provisioner-iscsi Apply the configuration kubectl apply -f jenkins-sc.yaml Create a persistenVolume and PersistenVolumeClaim based on the above storageClass $ vim dynamic-pv.yaml apiVersion: v1 kind: PersistentVolume metadata: name: jenkins-pv labels: type: local spec: storageClassName: jenkins-sc capacity: storage: 10Gi accessModes: - ReadWriteOnce hostPath: path: "/data/jenkins-volume" --- apiVersion: v1 kind: PersistentVolumeClaim metadata:
name: jenkins-pvc spec: storageClassName: jenkins-sc accessModes: - ReadWriteOnce resources: requests: storage: 10Gi Apply the configuration kubectl apply -f dynamic-pv.yaml More about persistent volumes on Kubernetes/OpenShift has been covered on the article below: Deploy and Use OpenEBS Container Storage on Kubernetes Step 3. Create a service account Create a service account for the pods to communicate with ther API server. We will also create the ClusterRole and the permissions. kubectl apply -f -
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