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  2. Containerization (computing) - Wikipedia

    en.wikipedia.org/wiki/Containerization_(computing)

    In software engineering, containerization is operating-system–level virtualization or application-level virtualization over multiple network resources so that software applications can run in isolated user spaces called containers in any cloud or non-cloud environment, regardless of type or vendor. [1]

  3. OS-level virtualization - Wikipedia

    en.wikipedia.org/wiki/OS-level_virtualization

    OS-level virtualization is an operating system (OS) virtualization paradigm in which the kernel allows the existence of multiple isolated user space instances, including containers (LXC, Solaris Containers, AIX WPARs, HP-UX SRP Containers, Docker, Podman), zones (Solaris Containers), virtual private servers (), partitions, virtual environments (VEs), virtual kernels (DragonFly BSD), and jails ...

  4. Solaris Containers - Wikipedia

    en.wikipedia.org/wiki/Solaris_Containers

    Solaris Containers (including Solaris Zones) is an implementation of operating system-level virtualization technology for x86 and SPARC systems, first released publicly in February 2004 in build 51 beta of Solaris 10, and subsequently in the first full release of Solaris 10, 2005.

  5. Hypervisor - Wikipedia

    en.wikipedia.org/wiki/Hypervisor

    Other differences between virtualization in server/desktop and embedded environments include requirements for efficient sharing of resources across virtual machines, high-bandwidth, low-latency inter-VM communication, a global view of scheduling and power management, and fine-grained control of information flows. [17]

  6. Virtualization - Wikipedia

    en.wikipedia.org/wiki/Virtualization

    However, programs running inside a container can only see the container's contents and devices assigned to the container. This provides many of the benefits that virtual machines have such as standardization and scalability, while using less resources as the kernel is shared between containers.

  7. Cloud computing - Wikipedia

    en.wikipedia.org/wiki/Cloud_computing

    Linux containers run in isolated partitions of a single Linux kernel running directly on the physical hardware. Linux cgroups and namespaces are the underlying Linux kernel technologies used to isolate, secure and manage the containers. The use of containers offers higher performance than virtualization because there is no hypervisor overhead.

  8. Software appliance - Wikipedia

    en.wikipedia.org/wiki/Software_appliance

    A virtual appliance is a virtual machine image designed to run on a specific virtualization platform, while a software appliance is often packaged in more generally applicable image format (e.g., Live CD) that supports installations to physical machines and multiple types of virtual machines. [4] [5] [6]

  9. Virtual machine - Wikipedia

    en.wikipedia.org/wiki/Virtual_machine

    Nested virtualization becomes more necessary as widespread operating systems gain built-in hypervisor functionality, which in a virtualized environment can be used only if the surrounding hypervisor supports nested virtualization; for example, Windows 7 is capable of running Windows XP applications inside a built-in virtual machine.