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  • +45 32 70 99 90
  • HPE Storage: Containers and Automation HN5A3S

    Duration
    2 Dage
    Delivery
    (Online Og På stedet)
    Price
    Pris på forespørgsel

    This course provides hands-on learning for developers and administrators who create automation and integration applications. The course focuses on:

    • Automating container applications using HPE storage arrays
    • HPE modules for Ansible-enabled automated storage provisioning
    • SDK to communicate with the HPE storage array over the WSAPI REST interface
    • Container Storage Interface that provides persistent storage for your containerized applications and popular container platforms like Docker, Kubernetes, and OpenShift
    • Tools and techniques to automate deployment of an application in Kubernetes with persistent storage

    Upon completion of this course, students will be able to:

    • Demonstrate the use of the WSAPI REST interface
    • Describe the use of storage in a Docker environment
    • Configure a Kubernetes environment that uses HPE Primera/HPE 3PAR or HPE Nimble Storage
    • Deploy applications that use persistent volumes in a Kubernetes environment

    Module 0: Course Overview

    • Course overview and objectives
    • Course benefits

     

    Module 1: Overview of Automating HPE Storage for a Container Environment

    • Benefits of HPE storage for containers
    • Containers and storage plugins overview
      • Challenges in providing storage in a container environment
      • Use cases—DevOps CI/CD pipeline, IT operations, lift and shift, CaaS
      • Storage operations for containers
      • The need for a storage plug-in

     

    Module 2: Using the Storage API

    • Storage API objects overview
    • Using the API for storage management
    • Exercise: Using Curl to make API calls to storage API
    • Exercise: Creating scripts to manage storage using the API

     

    Module 3: Using PowerShell

    • Overview of PowerShell
    • Using PowerShell Invoke-RestMethod to access the storage API
    • Exercise: Create and run PowerShell scripts to access the storage API
    • Exercise: Install and use an HPE storage PowerShell toolkit to create scripts

     

    Module 4: Using Ansible Automation for Storage Management

    • Installing and configuring Ansible modules for storage
    • Creating and managing storage volumes using Ansible playbooks
    • Exercise: Orchestrating storage with Ansible playbooks

     

    Module 5: Docker and Storage

    • Docker and storage overview
    • Storage operations in Docker
      • Creating and managing volumes
      • File sharing operations
      • Cloning and snapshots
      • Troubleshooting storage in Docker

     

    Module 6: Kubernetes and Storage

    • Kubernetes overview
      • Overview of the Kubernetes environment and architecture
      • Use cases for persistent storage
    • Storage in Kubernetes
      • HPE storage platforms for Kubernetes
      • Creating persistent storage
      • Managing the containerized volume plug-in
    • Storage plugins for Kubernetes
      • FlexVolume driver
      • Container Storage Interface
      • Exercise: Installing the Container Storage Interface for Kubernetes
    • Automated storage provisioning
      • Configuring automated volume management in Kubernetes
      • Exercise: Configuring automated volume management in Kubernetes
      • Deploying applications with automated volume creation and attachment
      • Common controls for persistent storage
      • Dynamic provisioning for Kubernetes
      • Access modes for PVCs
      • Advanced policy-based provisioning
      • Self-service zero-copy clones of PVCs
      • Setting the default storage class
    • Exercise: Creating persistent volume claims
    • Exercise: Setting the default storage class
    • Exercise: Deploying an application with automated volume creation and attachment
    • Exercise: Volume replication, backup and recovery operations
    • Exercise: Using storage in a CI/CD environment
    • Exercise: Using the NFS Server Provisioner for the HPE CSI
    • Exercise: Using host-based volume encryption

     

    lab outline

     

    Lab Exercise Overview Part 1: Using the HPE Storage APIs

    • Lab 1: Using the REST APIs with Linux and Curl
    • Lab 2: Using PowerShell scripts to allocate storage
    • Lab 3: Using Ansible with HPE storage

     

    Part 2: Automating HPE storage for applications with Kubernetes

    • Lab 4: Deploying the HPE Container Storage Interface for Kubernetes
    • Lab 5: Configuring automated volume management in Kubernetes
    • Lab 6: Creating persistent volume claims
    • Lab 7: Setting the default storage class
    • Lab 8: Deploying an application with automated volume creation and attachment
    • Lab 9: Creating a snapshot and a clone
    • Lab 10: Storage in a CI/CD environment
    • Lab 11: Using the NFS Server Provisioner for the HPE CSI
    • Lab 12: Using host-based volume encryption

    Developers and administrators who create automation and integration applications

    Prior to this course, students should have experience with:

    • Basic storage concepts
    • Virtualization concepts, including Docker and Kubernetes
    • Scripting or coding

    This course provides hands-on learning for developers and administrators who create automation and integration applications. The course focuses on:

    • Automating container applications using HPE storage arrays
    • HPE modules for Ansible-enabled automated storage provisioning
    • SDK to communicate with the HPE storage array over the WSAPI REST interface
    • Container Storage Interface that provides persistent storage for your containerized applications and popular container platforms like Docker, Kubernetes, and OpenShift
    • Tools and techniques to automate deployment of an application in Kubernetes with persistent storage

    Upon completion of this course, students will be able to:

    • Demonstrate the use of the WSAPI REST interface
    • Describe the use of storage in a Docker environment
    • Configure a Kubernetes environment that uses HPE Primera/HPE 3PAR or HPE Nimble Storage
    • Deploy applications that use persistent volumes in a Kubernetes environment

    Module 0: Course Overview

    • Course overview and objectives
    • Course benefits

     

    Module 1: Overview of Automating HPE Storage for a Container Environment

    • Benefits of HPE storage for containers
    • Containers and storage plugins overview
      • Challenges in providing storage in a container environment
      • Use cases—DevOps CI/CD pipeline, IT operations, lift and shift, CaaS
      • Storage operations for containers
      • The need for a storage plug-in

     

    Module 2: Using the Storage API

    • Storage API objects overview
    • Using the API for storage management
    • Exercise: Using Curl to make API calls to storage API
    • Exercise: Creating scripts to manage storage using the API

     

    Module 3: Using PowerShell

    • Overview of PowerShell
    • Using PowerShell Invoke-RestMethod to access the storage API
    • Exercise: Create and run PowerShell scripts to access the storage API
    • Exercise: Install and use an HPE storage PowerShell toolkit to create scripts

     

    Module 4: Using Ansible Automation for Storage Management

    • Installing and configuring Ansible modules for storage
    • Creating and managing storage volumes using Ansible playbooks
    • Exercise: Orchestrating storage with Ansible playbooks

     

    Module 5: Docker and Storage

    • Docker and storage overview
    • Storage operations in Docker
      • Creating and managing volumes
      • File sharing operations
      • Cloning and snapshots
      • Troubleshooting storage in Docker

     

    Module 6: Kubernetes and Storage

    • Kubernetes overview
      • Overview of the Kubernetes environment and architecture
      • Use cases for persistent storage
    • Storage in Kubernetes
      • HPE storage platforms for Kubernetes
      • Creating persistent storage
      • Managing the containerized volume plug-in
    • Storage plugins for Kubernetes
      • FlexVolume driver
      • Container Storage Interface
      • Exercise: Installing the Container Storage Interface for Kubernetes
    • Automated storage provisioning
      • Configuring automated volume management in Kubernetes
      • Exercise: Configuring automated volume management in Kubernetes
      • Deploying applications with automated volume creation and attachment
      • Common controls for persistent storage
      • Dynamic provisioning for Kubernetes
      • Access modes for PVCs
      • Advanced policy-based provisioning
      • Self-service zero-copy clones of PVCs
      • Setting the default storage class
    • Exercise: Creating persistent volume claims
    • Exercise: Setting the default storage class
    • Exercise: Deploying an application with automated volume creation and attachment
    • Exercise: Volume replication, backup and recovery operations
    • Exercise: Using storage in a CI/CD environment
    • Exercise: Using the NFS Server Provisioner for the HPE CSI
    • Exercise: Using host-based volume encryption

     

    lab outline

     

    Lab Exercise Overview Part 1: Using the HPE Storage APIs

    • Lab 1: Using the REST APIs with Linux and Curl
    • Lab 2: Using PowerShell scripts to allocate storage
    • Lab 3: Using Ansible with HPE storage

     

    Part 2: Automating HPE storage for applications with Kubernetes

    • Lab 4: Deploying the HPE Container Storage Interface for Kubernetes
    • Lab 5: Configuring automated volume management in Kubernetes
    • Lab 6: Creating persistent volume claims
    • Lab 7: Setting the default storage class
    • Lab 8: Deploying an application with automated volume creation and attachment
    • Lab 9: Creating a snapshot and a clone
    • Lab 10: Storage in a CI/CD environment
    • Lab 11: Using the NFS Server Provisioner for the HPE CSI
    • Lab 12: Using host-based volume encryption

    Developers and administrators who create automation and integration applications

    Prior to this course, students should have experience with:

    • Basic storage concepts
    • Virtualization concepts, including Docker and Kubernetes
    • Scripting or coding
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