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Containers Against Virtual Machines Print

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Choosing between them.

WHAT A VIRTUAL MACHINE PROVIDES

A complete operating system, with its own kernel Strong isolation The ability to run a different operating system

WHAT IT COSTS

Gigabytes of memory and disk each Startup measured in tens of seconds Patching an operating system per machine

WHAT A CONTAINER PROVIDES

Isolation of a process Startup in under a second

Density: many on one host

A single artefact carrying its dependencies

WHAT IT COSTS

A shared kernel, so isolation is weaker Only the host's operating system family

WHAT THAT LAST POINT MEANS PRACTICALLY

Linux containers need a Linux kernel, whatever your desktop runs.

WHAT HAPPENS ON OTHER DESKTOPS

A virtual machine runs quietly underneath.

WHY THAT MATTERS

It explains performance differences developers notice.

WHEN TO PREFER VIRTUAL MACHINES

Strong isolation between untrusted parties Running different operating systems Legacy software expecting a full machine

WHEN TO PREFER CONTAINERS

Packaging your own applications Consistency across environments Many small services

WHAT IS COMMON IN PRACTICE

Containers running on virtual machines.

WHY THAT IS NOT WASTEFUL

The virtual machine provides the isolation boundary; containers provide packaging.


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