Kurssit

Insoft on palvellut IT-yhteisöä Ciscon virallisella koulutustarjonnalla vuodesta 2010. Tältä sivulta löydät kaikki olennaiset tiedot Ciscon koulutuksesta.

Katso lisää

Cisco Learning Credits

Cisco opintopisteet (CLC) ovat suoraan Ciscon kanssa lunastettuja prepaid-koulutusseteleitä, jotka helpottavat menestyksen suunnittelua ostaessasi Ciscon tuotteita ja palveluita.

Katso lisää

Cisco Continuing Education

Cisco täydennyskoulutusohjelma tarjoaa kaikille aktiivisille sertifioinnin haltijoille joustavia vaihtoehtoja uudelleensertifiointiin suorittamalla erilaisia kelvollisia koulutuskohteita.

Katso lisää

Cisco Digital Learning

Sertifioidut työntekijät ovat ARVOSTETTUJA omaisuuseriä. Tutustu Ciscon valtuutettuun digitaaliseen oppimiskirjastoon ja kouluta itseäsi tallennettujen istuntojen avulla.

Katso lisää

Cisco Business Enablement

Cisco Business Enablement Partner Program keskittyy Cisco Channel Partnersin ja asiakkaiden liiketoimintataitojen terävöittämiseen.

Katso lisää

Kurssit

Insoft Services on auktorisoitu Fortinet-kouluttaja useassa Euroopan maassa.

Katso lisää

ATC Status

Tarkista ATC-tilamme valituissa Euroopan maissa.

Katso lisää

Kurssit

Insoft Services tarjoaa Microsoftille EMEAR-koulutusta. Tarjoamme Microsoftin teknistä koulutusta ja sertifiointikursseja, joita johtavat maailmanluokan ohjaajat.

Katso lisää

Kurssit

Extreme Networks Technical Trainingin kehitys tarjoaa kattavan progressiivisen polun associate-akkreditoinnista ammatilliseen akkreditointiin.

Katso lisää

ATP-akkreditointi

Valtuutettuna koulutuskumppanina (ATP) Insoft Services varmistaa, että saat korkeimman saatavilla olevan koulutuksen.

Katso lisää

 

Maailmassa, jossa teknologiat kehittyvät nopeasti, jokainen yritys - yritys - tarvitsee kumppanin, johon luottaa ja luottaa verkkoinfrastruktuurinsa sujuvaan ja turvalliseen toimintaan.

Katso lisää

 

Missiomme: Tarjota asiantunteva joukko moderneja ja huippuluokan verkkoautomaatiotaitoja markkinoille asiantuntijapalvelujen avulla.

Katso lisää

 

Maailmassa, jossa teknologiat kehittyvät nopeasti, jokainen yritys - yritys - tarvitsee kumppanin, johon luottaa ja luottaa verkkoinfrastruktuurinsa sujuvaan ja turvalliseen toimintaan.

Katso lisää

 

Maailmassa, jossa teknologiat kehittyvät nopeasti, jokainen yritys - yritys - tarvitsee kumppanin, johon luottaa ja luottaa verkkoinfrastruktuurinsa sujuvaan ja turvalliseen toimintaan.

Katso lisää

 

Maailmassa, jossa teknologiat kehittyvät nopeasti, jokainen yritys - yritys - tarvitsee kumppanin, johon luottaa ja luottaa verkkoinfrastruktuurinsa sujuvaan ja turvalliseen toimintaan.

Katso lisää

 

Maailmassa, jossa teknologiat kehittyvät nopeasti, jokainen yritys - yritys - tarvitsee kumppanin, johon luottaa ja luottaa verkkoinfrastruktuurinsa sujuvaan ja turvalliseen toimintaan.

Katso lisää

 

Autamme organisaatioita ottamaan käyttöön Software-Defined Networking (SDN) -ratkaisuja, kuten Cisco DNA:ta.Lisäksi tiimillämme on laaja kokemus Cisco DNA Centerin integroinnista kolmannen osapuolen järjestelmiin.

Katso lisää

 

Maailmassa, jossa teknologiat kehittyvät nopeasti, jokainen yritys - yritys - tarvitsee kumppanin, johon luottaa ja luottaa verkkoinfrastruktuurinsa sujuvaan ja turvalliseen toimintaan.

Katso lisää

Tiimimme

Koulutusvalikoimaamme kuuluu laaja valikoima IT-koulutusta IP-palveluntarjoajilta, mukaan lukien Cisco, Extreme Networks, Fortinet, Microsoft, muutamia mainitakseni, EMEA-alueella.

Katso lisää

LPIC-3 305 Virtualization and Containerization

Ota yhteyttä

Voit olla meihin yhteydessä ja tiedustella koulutuksistamme täydentämällä yhteystietosi ja koulutuksen nimen oheen.

Tietosuojalauseke ja yksityisyys

Suostun vastaanottamaan sähköpostiviestejä ja/tai puheluita Insoft Services Oy: n tuotteista ja palveluista.
Hyväksyn, että tietojani kerätään ja käsitellään Insoft Servicesin tietosuojakäytännössä kuvatulla tavalla.

Close

LPIC-3 305 Virtualization and Containerization

VARAA NYT
Kesto
5 päivää
Toimitus
(Online ja paikan päällä)
Hinta
Hinta pyydettäessä

In this LPIC-3 Virtualization and Containerization training we will prepare you for the LPIC-3 certification exam 305 Virtualization and Containerization.

The LPIC-3 Virtualization and Containerization certification covers the administration of Linux systems enterprise-wide with an emphasis on virtualization and containerization.

Topic 351: Full Virtualization

351.1 Virtualization Concepts and Theory

Description: Candidates should know and understand the general concepts, theory and terminology of virtualization. This includes Xen, QEMU and libvirt terminology.

Key Knowledge Areas:

  • Understand virtualization terminology
  • Understand the pros and cons of virtualization
  • Understand the various variations of Hypervisors and Virtual Machine Monitors
  • Understand the major aspects of migrating physical to virtual machines
  • Understand the major aspects of migrating virtual machines between host systems
  • Understand the features and implications of virtualization for a virtual machine, such as snapshotting, pausing, cloning and resource limits
  • Awareness of oVirt, Proxmox, systemd-machined and VirtualBox
  • Awareness of Open vSwitch

The following is a partial list of the used files, terms and utilities:

  • Hypervisor
  • Hardware Virtual Machine (HVM)
  • Paravirtualization (PV)
  • Emulation and Simulation
  • CPU flags
  • /proc/cpuinfo
  • Migration (P2V, V2V)

351.2 Xen

Description: Candidates should be able to install, configure, maintain, migrate and troubleshoot Xen installations. The focus is on Xen version 4.x.

Key Knowledge Areas:

  • Understand architecture of Xen, including networking and storage
  • Basic configuration of Xen nodes and domains
  • Basic management of Xen nodes and domains
  • Basic troubleshooting of Xen installations
  • Awareness of XAPI
  • Awareness of XenStore
  • Awareness of Xen Boot Parameters
  • Awareness of the xm utility

The following is a partial list of the used files, terms and utilities:

  • Domain0 (Dom0), DomainU (DomU)
  • PV-DomU, HVM-DomU
  • /etc/xen/
  • xl
  • xl.cfg
  • xl.conf
  • xentop

351.3 QEMU

Description: Candidates should be able to install, configure, maintain, migrate and troubleshoot QEMU installations.

Key Knowledge Areas:

  • Understand the architecture of QEMU, including KVM, networking and storage
  • Start QEMU instances from the command line
  • Manage snapshots using the QEMU monitor
  • Install the QEMU Guest Agent and VirtIO device drivers
  • Troubleshoot QEMU installations, including networking and storage
  • Awareness of important QEMU configuration parameters

The following is a partial list of the used files, terms and utilities:

  • Kernel modules: kvm, kvm-intel and kvm-amd
  • /dev/kvm
  • QEMU monitor
  • qemu
  • qemu-system-x86_64
  • ip
  • brctl
  • tunctl

351.4 Libvirt Virtual Machine Management

Description: Candidates should be able to manage virtualization hosts and virtual machines (‘libvirt domains’) using libvirt and related tools.

Key Knowledge Areas:

  • Understand the architecture of libvirt
  • Manage libvirt connections and nodes
  • Create and manage QEMU and Xen domains, including snapshots
  • Manage and analyze resource consumption of domains
  • Create and manage storage pools and volumes
  • Create and manage virtual networks
  • Migrate domains between nodes
  • Understand how libvirt interacts with Xen and QEMU
  • Understand how libvirt interacts with network services such as dnsmasq and radvd
  • Understand libvirt XML configuration files
  • Awareness of virtlogd and virtlockd

The following is a partial list of the used files, terms and utilities:

  • libvirtd
  • /etc/libvirt/
  • virsh (including relevant subcommands)

351.5 Virtual Machine Disk Image Management

Description: Candidates should be able to manage virtual machines disk images. This includes converting disk images between various formats and hypervisors and accessing data stored within an image.

Key Knowledge Areas:

  • Understand features of various virtual disk image formats, such as raw images, qcow2 and VMDK
  • Manage virtual machine disk images using qemu-img
  • Mount partitions and access files contained in virtual machine disk images using libguestfish
  • Copy physical disk content to a virtual machine disk image
  • Migrate disk content between various virtual machine disk image formats
  • Awareness of Open Virtualization Format (OVF)

The following is a partial list of the used files, terms and utilities:

  • qemu-img
  • guestfish (including relevant subcommands)
  • guestmount
  • guestumount
  • virt-cat
  • virt-copy-in
  • virt-copy-out
  • virt-diff
  • virt-inspector
  • virt-filesystems
  • virt-rescue
  • virt-df
  • virt-resize
  • virt-sparsify
  • virt-p2v
  • virt-p2v-make-disk
  • virt-v2v
  • virt-sysprep

Topic 352: Container Virtualization

352.1 Container Virtualization Concepts

Description: Candidates should understand the concept of container virtualization. This includes understanding the Linux components used to implement container virtualization as well as using standard Linux tools to troubleshoot these components.

Key Knowledge Areas:

  • Understand the concepts of system and application container
  • Understand and analyze kernel namespaces
  • Understand and analyze control groups
  • Understand and analyze capabilities
  • Understand the role of seccomp, SELinux and AppArmor for container virtualization
  • Understand how LXC and Docker leverage namespaces, cgroups, capabilities, seccomp and MAC
  • Understand the principle of runc
  • Understand the principle of CRI-O and containerd
  • Awareness of the OCI runtime and image specifications
  • Awareness of the Kubernetes Container Runtime Interface (CRI)
  • Awareness of podman, buildah and skopeo
  • Awareness of other container virtualization approaches in Linux and other free operating systems, such as rkt, OpenVZ, systemd-nspawn or BSD Jails

The following is a partial list of the used files, terms and utilities:

  • nsenter
  • unshare
  • ip (including relevant subcommands)
  • capsh
  • /sys/fs/cgroups
  • /proc/[0-9]+/ns
  • /proc/[0-9]+/status

352.2 LXC

Description: Candidates should be able to use system containers using LXC and LXD. The version of LXC covered is 3.0 or higher.

Key Knowledge Areas:

  • Understand the architecture of LXC and LXD
  • Manage LXC containers based on existing images using LXD, including networking and storage
  • Configure LXC container properties
  • Limit LXC container resource usage
  • Use LXD profiles
  • Understand LXC images
  • Awareness of traditional LXC tools

Partial list of the used files, terms and utilities:

  • lxd
  • lxc (including relevant subcommands)

352.3 Docker

Description: Candidate should be able to manage Docker nodes and Docker containers. This include understand the architecture of Docker as well as understanding how Docker interacts with the node’s Linux system.

Key Knowledge Areas:

  • Understand the architecture and components of Docker
  • Manage Docker containers by using images from a Docker registry
  • Understand and manage images and volumes for Docker containers
  • Understand and manage logging for Docker containers
  • Understand and manage networking for Docker
  • Use Dockerfiles to create container images
  • Run a Docker registry using the registry Docker image

Partial list of the used files, terms and utilities:

  • dockerd
  • /etc/docker/daemon.json
  • /var/lib/docker/
  • docker
  • Dockerfile

352.4 Container Orchestration Platforms

Description: Candidates should understand the importance of container orchestration and the key concepts Docker Swarm and Kubernetes provide to implement container orchestration.

Key Knowledge Areas:

  • Understand the relevance of container orchestration
  • Understand the key concepts of Docker Compose and Docker Swarm
  • Understand the key concepts of Kubernetes and Helm
  • Awareness of OpenShift, Rancher and Mesosphere DC/OS

Topic 353: VM Deployment and Provisioning

353.1 Cloud Management Tools

Description: Candidates should understand common offerings in public clouds and have basic feature knowledge of commonly available cloud management tools.

Key Knowledge Areas:

  • Understand common offerings in public clouds
  • Basic feature knowledge of OpenStack
  • Basic feature knowledge of Terraform
  • Awareness of CloudStack, Eucalyptus and OpenNebula

Partial list of the used files, terms and utilities:

  • IaaS, PaaS, SaaS
  • OpenStack
  • Terraform

353.2 Packer

Description: Candidates should be able to use Packer to create system images. This includes running Packer in various public and private cloud environments as well as building container images for LXC/LXD.

Key Knowledge Areas:

  • Understand the functionality and features of Packer
  • Create and maintain template files
  • Build images from template files using different builders

Partial list of the used files, terms and utilities:

  • packer

353.3 cloud-init

Description: Candidates should able to use cloud-init to configure virtual machines created from standardized images. This includes adjusting virtual machines to match their available hardware resources, specifically, disk space and volumes. Additionally, candidates should be able to configure instances to allow secure SSH logins and install a specific set of software packages. Furthermore, candidates should be able to create new system images with cloud-init support.

Key Knowledge Areas:

  • Understanding the features and concepts of cloud-init, including user-data, initializing and configuring cloud-init
  • Use cloud-init to create, resize and mount file systems, configure user accounts, including login credentials such as SSH keys and install software packages from the distribution’s repository
  • Integrate cloud-init into system images
  • Use config drive datasource for testing

Partial list of the used files, terms and utilities:

  • cloud-init
  • user-data
  • /var/lib/cloud/

353.4 Vagrant

Description: Candidate should be able to use Vagrant to manage virtual machines, including provisioning of the virtual machine.

Key Knowledge Areas:

  • Understand Vagrant architecture and concepts, including storage and networking
  • Retrieve and use boxes from Atlas
  • Create and run Vagrantfiles
  • Access Vagrant virtual machines
  • Share and synchronize folder between a Vagrant virtual machine and the host system
  • Understand Vagrant provisioning, i.e. File and Shell provisioners
  • Understand multi-machine setup

Partial list of the used files, terms and utilities:

  • vagrant
  • Vagrantfile
  • Administrators
  • Linux-LPI – Complete training for LPIC-1 (101 and 102)
  • Linux-LPI – Complete training for LPIC-2 (201 and 202)

In this LPIC-3 Virtualization and Containerization training we will prepare you for the LPIC-3 certification exam 305 Virtualization and Containerization.

The LPIC-3 Virtualization and Containerization certification covers the administration of Linux systems enterprise-wide with an emphasis on virtualization and containerization.

Topic 351: Full Virtualization

351.1 Virtualization Concepts and Theory

Description: Candidates should know and understand the general concepts, theory and terminology of virtualization. This includes Xen, QEMU and libvirt terminology.

Key Knowledge Areas:

  • Understand virtualization terminology
  • Understand the pros and cons of virtualization
  • Understand the various variations of Hypervisors and Virtual Machine Monitors
  • Understand the major aspects of migrating physical to virtual machines
  • Understand the major aspects of migrating virtual machines between host systems
  • Understand the features and implications of virtualization for a virtual machine, such as snapshotting, pausing, cloning and resource limits
  • Awareness of oVirt, Proxmox, systemd-machined and VirtualBox
  • Awareness of Open vSwitch

The following is a partial list of the used files, terms and utilities:

  • Hypervisor
  • Hardware Virtual Machine (HVM)
  • Paravirtualization (PV)
  • Emulation and Simulation
  • CPU flags
  • /proc/cpuinfo
  • Migration (P2V, V2V)

351.2 Xen

Description: Candidates should be able to install, configure, maintain, migrate and troubleshoot Xen installations. The focus is on Xen version 4.x.

Key Knowledge Areas:

  • Understand architecture of Xen, including networking and storage
  • Basic configuration of Xen nodes and domains
  • Basic management of Xen nodes and domains
  • Basic troubleshooting of Xen installations
  • Awareness of XAPI
  • Awareness of XenStore
  • Awareness of Xen Boot Parameters
  • Awareness of the xm utility

The following is a partial list of the used files, terms and utilities:

  • Domain0 (Dom0), DomainU (DomU)
  • PV-DomU, HVM-DomU
  • /etc/xen/
  • xl
  • xl.cfg
  • xl.conf
  • xentop

351.3 QEMU

Description: Candidates should be able to install, configure, maintain, migrate and troubleshoot QEMU installations.

Key Knowledge Areas:

  • Understand the architecture of QEMU, including KVM, networking and storage
  • Start QEMU instances from the command line
  • Manage snapshots using the QEMU monitor
  • Install the QEMU Guest Agent and VirtIO device drivers
  • Troubleshoot QEMU installations, including networking and storage
  • Awareness of important QEMU configuration parameters

The following is a partial list of the used files, terms and utilities:

  • Kernel modules: kvm, kvm-intel and kvm-amd
  • /dev/kvm
  • QEMU monitor
  • qemu
  • qemu-system-x86_64
  • ip
  • brctl
  • tunctl

351.4 Libvirt Virtual Machine Management

Description: Candidates should be able to manage virtualization hosts and virtual machines (‘libvirt domains’) using libvirt and related tools.

Key Knowledge Areas:

  • Understand the architecture of libvirt
  • Manage libvirt connections and nodes
  • Create and manage QEMU and Xen domains, including snapshots
  • Manage and analyze resource consumption of domains
  • Create and manage storage pools and volumes
  • Create and manage virtual networks
  • Migrate domains between nodes
  • Understand how libvirt interacts with Xen and QEMU
  • Understand how libvirt interacts with network services such as dnsmasq and radvd
  • Understand libvirt XML configuration files
  • Awareness of virtlogd and virtlockd

The following is a partial list of the used files, terms and utilities:

  • libvirtd
  • /etc/libvirt/
  • virsh (including relevant subcommands)

351.5 Virtual Machine Disk Image Management

Description: Candidates should be able to manage virtual machines disk images. This includes converting disk images between various formats and hypervisors and accessing data stored within an image.

Key Knowledge Areas:

  • Understand features of various virtual disk image formats, such as raw images, qcow2 and VMDK
  • Manage virtual machine disk images using qemu-img
  • Mount partitions and access files contained in virtual machine disk images using libguestfish
  • Copy physical disk content to a virtual machine disk image
  • Migrate disk content between various virtual machine disk image formats
  • Awareness of Open Virtualization Format (OVF)

The following is a partial list of the used files, terms and utilities:

  • qemu-img
  • guestfish (including relevant subcommands)
  • guestmount
  • guestumount
  • virt-cat
  • virt-copy-in
  • virt-copy-out
  • virt-diff
  • virt-inspector
  • virt-filesystems
  • virt-rescue
  • virt-df
  • virt-resize
  • virt-sparsify
  • virt-p2v
  • virt-p2v-make-disk
  • virt-v2v
  • virt-sysprep

Topic 352: Container Virtualization

352.1 Container Virtualization Concepts

Description: Candidates should understand the concept of container virtualization. This includes understanding the Linux components used to implement container virtualization as well as using standard Linux tools to troubleshoot these components.

Key Knowledge Areas:

  • Understand the concepts of system and application container
  • Understand and analyze kernel namespaces
  • Understand and analyze control groups
  • Understand and analyze capabilities
  • Understand the role of seccomp, SELinux and AppArmor for container virtualization
  • Understand how LXC and Docker leverage namespaces, cgroups, capabilities, seccomp and MAC
  • Understand the principle of runc
  • Understand the principle of CRI-O and containerd
  • Awareness of the OCI runtime and image specifications
  • Awareness of the Kubernetes Container Runtime Interface (CRI)
  • Awareness of podman, buildah and skopeo
  • Awareness of other container virtualization approaches in Linux and other free operating systems, such as rkt, OpenVZ, systemd-nspawn or BSD Jails

The following is a partial list of the used files, terms and utilities:

  • nsenter
  • unshare
  • ip (including relevant subcommands)
  • capsh
  • /sys/fs/cgroups
  • /proc/[0-9]+/ns
  • /proc/[0-9]+/status

352.2 LXC

Description: Candidates should be able to use system containers using LXC and LXD. The version of LXC covered is 3.0 or higher.

Key Knowledge Areas:

  • Understand the architecture of LXC and LXD
  • Manage LXC containers based on existing images using LXD, including networking and storage
  • Configure LXC container properties
  • Limit LXC container resource usage
  • Use LXD profiles
  • Understand LXC images
  • Awareness of traditional LXC tools

Partial list of the used files, terms and utilities:

  • lxd
  • lxc (including relevant subcommands)

352.3 Docker

Description: Candidate should be able to manage Docker nodes and Docker containers. This include understand the architecture of Docker as well as understanding how Docker interacts with the node’s Linux system.

Key Knowledge Areas:

  • Understand the architecture and components of Docker
  • Manage Docker containers by using images from a Docker registry
  • Understand and manage images and volumes for Docker containers
  • Understand and manage logging for Docker containers
  • Understand and manage networking for Docker
  • Use Dockerfiles to create container images
  • Run a Docker registry using the registry Docker image

Partial list of the used files, terms and utilities:

  • dockerd
  • /etc/docker/daemon.json
  • /var/lib/docker/
  • docker
  • Dockerfile

352.4 Container Orchestration Platforms

Description: Candidates should understand the importance of container orchestration and the key concepts Docker Swarm and Kubernetes provide to implement container orchestration.

Key Knowledge Areas:

  • Understand the relevance of container orchestration
  • Understand the key concepts of Docker Compose and Docker Swarm
  • Understand the key concepts of Kubernetes and Helm
  • Awareness of OpenShift, Rancher and Mesosphere DC/OS

Topic 353: VM Deployment and Provisioning

353.1 Cloud Management Tools

Description: Candidates should understand common offerings in public clouds and have basic feature knowledge of commonly available cloud management tools.

Key Knowledge Areas:

  • Understand common offerings in public clouds
  • Basic feature knowledge of OpenStack
  • Basic feature knowledge of Terraform
  • Awareness of CloudStack, Eucalyptus and OpenNebula

Partial list of the used files, terms and utilities:

  • IaaS, PaaS, SaaS
  • OpenStack
  • Terraform

353.2 Packer

Description: Candidates should be able to use Packer to create system images. This includes running Packer in various public and private cloud environments as well as building container images for LXC/LXD.

Key Knowledge Areas:

  • Understand the functionality and features of Packer
  • Create and maintain template files
  • Build images from template files using different builders

Partial list of the used files, terms and utilities:

  • packer

353.3 cloud-init

Description: Candidates should able to use cloud-init to configure virtual machines created from standardized images. This includes adjusting virtual machines to match their available hardware resources, specifically, disk space and volumes. Additionally, candidates should be able to configure instances to allow secure SSH logins and install a specific set of software packages. Furthermore, candidates should be able to create new system images with cloud-init support.

Key Knowledge Areas:

  • Understanding the features and concepts of cloud-init, including user-data, initializing and configuring cloud-init
  • Use cloud-init to create, resize and mount file systems, configure user accounts, including login credentials such as SSH keys and install software packages from the distribution’s repository
  • Integrate cloud-init into system images
  • Use config drive datasource for testing

Partial list of the used files, terms and utilities:

  • cloud-init
  • user-data
  • /var/lib/cloud/

353.4 Vagrant

Description: Candidate should be able to use Vagrant to manage virtual machines, including provisioning of the virtual machine.

Key Knowledge Areas:

  • Understand Vagrant architecture and concepts, including storage and networking
  • Retrieve and use boxes from Atlas
  • Create and run Vagrantfiles
  • Access Vagrant virtual machines
  • Share and synchronize folder between a Vagrant virtual machine and the host system
  • Understand Vagrant provisioning, i.e. File and Shell provisioners
  • Understand multi-machine setup

Partial list of the used files, terms and utilities:

  • vagrant
  • Vagrantfile
  • Administrators
  • Linux-LPI – Complete training for LPIC-1 (101 and 102)
  • Linux-LPI – Complete training for LPIC-2 (201 and 202)