SlideShare uma empresa Scribd logo
1 de 11
Baixar para ler offline
VMWARE WHITE P A P E R
W H I T E PAPER

Virtualization Overview

1
VMWARE WHITE PAPER

Table of Contents
Introduction .............................................................................................................................................. 3
Virtualization in a Nutshell ................................................................................................................... 3
Virtualization Approaches .................................................................................................................... 4
Virtualization for Server Consolidation and Containment ........................................................... 7
How Virtualization Complements New-Generation Hardware .................................................. 8
Para-virtualization ................................................................................................................................... 8
VMware’s Virtualization Portfolio ........................................................................................................ 9
Glossary ..................................................................................................................................................... 10

2
VMWARE WHITE PAPER

Virtualization Overview
Introduction

Virtualization in a Nutshell

Among the leading business challenges confronting CIOs and
IT managers today are: cost-effective utilization of IT infrastructure; responsiveness in supporting new business initiatives;
and flexibility in adapting to organizational changes. Driving
an additional sense of urgency is the continued climate of IT
budget constraints and more stringent regulatory requirements.
Virtualization is a fundamental technological innovation that
allows skilled IT managers to deploy creative solutions to such
business challenges.

Simply put, virtualization is an idea whose time has come.
The term virtualization broadly describes the separation of a
resource or request for a service from the underlying physical
delivery of that service. With virtual memory, for example,
computer software gains access to more memory than is
physically installed, via the background swapping of data to
disk storage. Similarly, virtualization techniques can be applied
to other IT infrastructure layers - including networks, storage,
laptop or server hardware, operating systems and applications.
This blend of virtualization technologies - or virtual infrastructure - provides a layer of abstraction between computing,
storage and networking hardware, and the applications running
on it (see Figure 1). The deployment of virtual infrastructure
is non-disruptive, since the user experiences are largely
unchanged. However, virtual infrastructure gives administrators
the advantage of managing pooled resources across the enterprise, allowing IT managers to be more responsive to dynamic
organizational needs and to better leverage infrastructure
investments.

�����������

����������������

�����������

�����������

����������������

����������������
����������������

���

���������������������������

����������������

������

���

����

Before Virtualization:
• Single OS image per machine

���

������

���

����

After Virtualization:

• Software and hardware tightly coupled

• Hardware-independence of operating
system and applications

• Running multiple applications on same machine
often creates conflict

• Virtual machines can be provisioned to any
system

• Underutilized resources

• Can manage OS and application as a single
unit by encapsulating them into virtual
machines

• Inflexible and costly infrastructure
Figure 1: Virtualization

3
VMWARE WHITE PAPER

Virtualization Approaches

Using virtual infrastructure solutions such as those from
VMware, enterprise IT managers can address challenges that
include:

While virtualization has been a part of the IT landscape for
decades, it is only recently (in 1998) that VMware delivered
the benefits of virtualization to industry-standard x86-based
platforms, which now form the majority of desktop, laptop and
server shipments. A key benefit of virtualization is the ability to
run multiple operating systems on a single physical system and
share the underlying hardware resources – known as partitioning.

• Server Consolidation and Containment – Eliminating ‘server
sprawl’ via deployment of systems as virtual machines (VMs)
that can run safely and move transparently across shared
hardware, and increase server utilization rates from 5-15%
to 60-80%.
• Test and Development Optimization – Rapidly provisioning
test and development servers by reusing pre-configured
systems, enhancing developer collaboration and standardizing development environments.

Today, virtualization can apply to a range of system layers,
including hardware-level virtualization, operating systemlevel virtualization, and high-level language virtual machines.
Hardware-level virtualization was pioneered on IBM mainframes
in the 1970s, and then more recently Unix/RISC system vendors
began with hardware-based partitioning capabilities before
moving on to software-based partitioning.

• Business Continuity – Reducing the cost and complexity of
business continuity (high availability and disaster recovery
solutions) by encapsulating entire systems into single files
that can be replicated and restored on any target server,
thus minimizing downtime.

For Unix/RISC and industry-standard x86 systems, the two
approaches typically used with software-based partitioning are
hosted and hypervisor architectures (See Figure 2). A hosted
approach provides partitioning services on top of a standard
operating system and supports the broadest range of hardware
configurations. In contrast, a hypervisor architecture is the first
layer of software installed on a clean x86-based system (hence
it is often referred to as a “bare metal” approach). Since it has
direct access to the hardware resources, a hypervisor is more
efficient than hosted architectures, enabling greater scalability,
robustness and performance.

• Enterprise Desktop – Securing unmanaged PCs, workstations and laptops without compromising end user
autonomy by layering a security policy in software around
desktop virtual machines.

�����������
�����������

���

���

���

���

����������
��������

����������
������

����������
������

����������
������

����������
������

�������
�������

����������������������

��������������������

���������������������������

���������������������

����������������

����������������

���

������

���
���

������

���

����

����

Hosted Architecture

Bare-Metal (Hypervisor) Architecture

• Installs and runs as an application

• Lean virtualization-centric kernel

• Relies on host OS for device support
and physical resource management

• Service Console for agents and helper
applications

Figure 2: Virtualization Architectures

4
VMWARE WHITE PAPER

Hypervisors can be designed to be tightly coupled with operating systems or can be agnostic to operating systems. The latter
approach provides customers with the capability to implement
an OS-neutral management paradigm, thereby providing
further rationalization of the data center.
Application-level partitioning is another approach, whereby
many applications share a single operating system, but this
offers less isolation (and higher risk) than hardware or software
partitioning, and limited support for legacy applications or
heterogeneous environments. However, various partitioning
techniques can be combined, albeit with increased complexity.
Hence, virtualization is a broad IT initiative, of which partitioning
is just one facet. Other benefits include the isolation of virtual
machines and the hardware-independence that results from
the virtualization process. Virtual machines are highly portable,
and can be moved or copied to any industry-standard (x86based) hardware platform, regardless of the make or model.
Thus, virtualization facilitates adaptive IT resource management,
and greater responsiveness to changing business conditions
(see Figures 3-5).
To provide advantages beyond partitioning, several system
resources must be virtualized and managed, including CPUs,
main memory, and I/O, in addition to having an inter-partition
resource management capability. While partitioning is a useful
capability for IT organizations, true virtual infrastructure delivers
business value well beyond that.

�����������

�����������

�����������

����������������

����������������

����������������

����������������

����������������

����������������

�������

�������

�������

�������

�������

�������

�������

Figure 3: Traditional Infrastructure

5
VMWARE WHITE PAPER

Hardware/Software Separation
�����������

��������

���

���

������

�������������

����������

������

������

�����

�����

������

����������

������

����������������������

�������

�������

�������

Figure 4: Virtual Infrastructure

Infrastructure is what
connects resources to your
business.

�����������

�����������

�����������

����������������

����������������

����������������

���������������

���������������

���������������

Result: decreased costs and
increased efficiencies and
responsiveness

����������������������

�������
�������

�������

�������

�������

Transforms farms of individual x86 servers, storage, and
networking into a pool of computing resources
Figure 5: VMware Virtual Infrastructure

6

Virtual Infrastructure is a
dynamic mapping of your
resources to your business.

�������
VMWARE WHITE PAPER

Virtualization for Server Consolidation and
Containment

higher management costs. Virtual infrastructure enables
more effective optimization of IT resources, through the
standardization of data center elements that need to be
managed.

Virtual infrastructure initiatives often spring from data center
server consolidation projects, which focus on reducing existing
infrastructure “box count”, retiring older hardware or life-extending legacy applications. Server consolidation benefits result
from a reduction in the overall number of systems and related
recurring costs (power, cooling, rack space, etc.)

Partitioning alone does not deliver server consolidation or
containment, and in turn consolidation does not equate to
full virtual infrastructure management. Beyond partitioning and basic component-level resource management, a
core set of systems management capabilities are required
to effectively implement realistic data center solutions (see
Figure 6). These management capabilities should include
comprehensive system resource monitoring (of metrics such
as CPU activity, disk access, memory utilization and network
bandwidth), automated provisioning, high availability and
workload migration support.

While server consolidation addresses the reduction of existing
infrastructure, server containment takes a more strategic view,
leading to a goal of infrastructure unification. Server containment uses an incremental approach to workload virtualization,
whereby new projects are provisioned with virtual machines
rather than physical servers, thus deferring hardware purchases.
It is important to note that neither consolidation nor containment should be viewed as standalone exercise. In either case,
the most significant benefits result from adopting a total costof-ownership (TCO) perspective, with a focus on the ongoing,
recurring support and management costs, in addition to onetime, up-front costs. Data center environments are becoming
more complex and heterogeneous, with correspondingly

VM

VM

VM

Management
and
Distributed
Virtualization
Services

VirtualCenter

VMotion

VMM

VM
VMM

VMM

VMM

Consolidated Backup

Resource
Management

DRS
DAS

CPU
Virtualization

Distributed
Services

VMFS

Virtual
Networking

MPIO

Other Enterprise
Features

Enterprise-Class
Features

MMU
Virtualization

I/O
Virtualization

Hypervisor

ESX Server
Blade Hardware

CPU

Monitor

Provisioning

Memor y

NIC

Disk

Other Hardware

Hardware
Certification

Hardware
Figure 6: Virtual Infrastructure Management

7
VMWARE WHITE PAPER

How Virtualization Complements NewGeneration Hardware
Extensive ‘scale-out’ and multi-tier application architectures are
becoming increasingly common, and the adoption of smaller
form-factor blade servers is growing dramatically. Since the
transition to blade architectures is generally driven by a desire
for physical consolidation of IT resources, virtualization is an
ideal complement for blade servers, delivering benefits such as
resource optimization, operational efficiency and rapid provisioning.
The latest generation of x86-based systems feature processors
with 64-bit extensions supporting very large memory capacities. This enhances their ability to host large, memory-intensive
applications, as well as allowing many more virtual machines to
be hosted by a physical server deployed within a virtual infrastructure. The continual decrease in memory costs will further
accelerate this trend.
Likewise, the forthcoming dual-core processor technology
significantly benefits IT organizations by dramatically lowering
the costs of increased performance. Compared to traditional
single-core systems, systems utilizing dual-core processors will
be less expensive, since only half the number of sockets will be
required for the same number of CPUs. By significantly lowering
the cost of multi-processor systems, dual-core technology will
accelerate data center consolidation and virtual infrastructure
projects,
Beyond these enhancements, VMware is also working closely
with both Intel and AMD to ensure that new processor technology features are exploited by virtual infrastructure to the fullest
extent. In particular, the new virtualization hardware assist
enhancements (Intel’s “VT” and AMD’s “Pacifica”) will enable
robust virtualization of the CPU functionality. Such hardware
virtualization support does not replace virtual infrastructure, but
allows it to run more efficiently.

Para-virtualization
Although virtualization is rapidly becoming mainstream technology, the concept has attracted a huge amount of interest,
and enhancements continue to be investigated. One of these is
para-virtualization, whereby operating system compatibility is
traded off against performance for certain CPU-bound applications running on systems without virtualization hardware assist
(see Figure 7). The para-virtualized model offers potential performance benefits when a guest operating system or application
is ‘aware’ that it is running within a virtualized environment,
and has been modified to exploit this. One potential downside
of this approach is that such modified guests cannot ever be
migrated back to run on physical hardware.
In addition to requiring modified guest operating systems, paravirtualization leverages a hypervisor for the underlying technology. In the case of Linux distributions, this approach requires
extensive changes to an operating system kernel so that it can
coexist with the hypervisor. Accordingly, mainstream Linux
distributions (such as Red Hat or SUSE) cannot be run in a paravirtualized mode without some level of modification. Likewise,
Microsoft has suggested that a future version of the Windows
operating system will be developed that can coexist with a new
hypervisor offering from Microsoft.
Yet para-virtualization is not an entirely new concept. For
example, VMware has employed it by making available as
an option enhanced device drivers (packaged as VMware
Tools) that increase the efficiency of guest operating systems.
Furthermore, if and when para-virtualization optimizations are
eventually built into commercial enterprise Linux distributions,
VMware’s hypervisor will support those, as it does all mainstream operating systems.

�����������

�����������

���������������������
����������������

���������������������
����������������

��������������

������������
Figure 7: Para-virtualization

8
VMWARE WHITE PAPER

VMware’s Virtualization Portfolio

VMware is the only provider of high-performance virtualization
products that give customers a real choice in operating systems.
VMware supports: Windows 95/98/NT/2K/2003/XP/3.1/MS-DOS
6; Linux (Red Hat, SUSE, Mandrake, Caldera); FreeBSD (3.x, 4.04.9); Novell (NetWare 4,5,6); Sun Solaris 9 and 10 (experimental).

VMware pioneered x86-based virtualization in 1998 and
continues to be the innovator in that market, providing the
fundamental virtualization technology for all leading x86based hardware suppliers. The company offers a variety of
software-based partitioning approaches, utilizing both hosted
(Workstation and VMware Server) and hypervisor (ESX Server)
architectures. (see Figure 8)
VMware’s virtual machine (VM) approach creates a uniform
hardware image – implemented in software – on which operating systems and applications run. On top of this platform,
VMware’s VirtualCenter provides management and provisioning
of virtual machines, continuous workload consolidation across
physical servers and VMotion™ technology for virtual machine
mobility.
VirtualCenter is virtual infrastructure management software that
centrally manages an enterprise’s virtual machines as a single,
logical pool of resources. With VirtualCenter, an administrator can manage thousands of Windows NT, Windows 2000,
Windows 2003, Linux and NetWare servers from a single point
of control.

VMware is designed from the ground up to ensure compatibility with customers’ existing software infrastructure investments.
This includes not just operating systems, but also software for
management, high availability, clustering, replication, multipathing, and so on.
VMware’s hypervisor-based products and solutions have been
running at customer sites since 2001, with more than 75% of
customers running ESX Server in production deployments. As
the clear x86 virtualization market leader, VMware is uniquely
positioned to continue providing robust, supportable, highperformance virtual infrastructure for real-world, enterprise data
center applications.

Unique to VMware is the VMotion technology, whereby live,
running virtual machines can be moved from one physical
system to another while maintaining continuous service availability. VMotion thus allows fast reconfiguration and optimization of resources across the virtual infrastructure.

App

App
p

App

App

OS

OS

OS

OS

CONSISTENT VIRTUAL HARDWARE PLATFORM
Open Interfaces

VMware
Infrastructure

ACE

System Architecture
& Highlights

Workstation

VMware Server

ESX Server

Secured Enterprise
Desktop

Technical
Desktop

Departmental
Computing

Enterprise
Computing

Hosted on Windows

Hosted on Windows
or Linux

Hosted on Windows
or Linux

Bare Metal
V-SMP Option

Mgmt Server,
Console & APIs
VMotion

Figure 8: Single Virtual Platform Desktop to Enterprise

9
VMWARE WHITE PAPER

Glossary
Virtual Machine
A representation of a real machine using software that provides
an operating environment which can run or host a guest operating system.
Guest Operating System
An operating system running in a virtual machine environment
that would otherwise run directly on a separate physical system.
Virtual Machine Monitor
Software that runs in a layer between a hypervisor or host operating system and one or more virtual machines that provides
the virtual machine abstraction to the guest operating systems.
With full virtualization, the virtual machine monitor exports a
virtual machine abstraction identical to a physical machine, so
that standard operating systems (e.g., Windows 2000, Windows
Server 2003, Linux, etc.) can run just as they would on physical
hardware.
Hypervisor
A thin layer of software that generally provides virtual partitioning capabilities which runs directly on hardware, but underneath higher-level virtualization services. Sometimes referred to
as a “bare metal” approach.
Hosted Virtualization
A virtualization approach where partitioning and virtualization
services run on top of a standard operating system (the host).
In this approach, the virtualization software relies on the host
operating system to provide the services to talk directly to the
underlying hardware.
Para-virtualization
A virtualization approach that exports a modified hardware
abstraction which requires operating systems to be explicitly
modified and ported to run.
Virtualization Hardware Support
Industry standard servers will provide improved hardware
support for virtualization. Initial hardware support includes
processor extensions to address CPU and some memory
virtualization. Future support will include I/O virtualization, and
eventually more complex memory virtualization management.
Hardware-level virtualization
Here the virtualization layer sits right on top of the hardware
exporting the virtual machine abstraction. Because the virtual
machine looks like the hardware, all the software written for it
will run in the virtual machine.

10

Operating system–level virtualization
In this case the virtualization layer sits between the operating
system and the application programs that run on the operating
system. The virtual machine runs applications, or sets of applications, that are written for the particular operating system being
virtualized.
High-level language virtual machines
In high-level language virtual machines, the virtualization layer
sits as an application program on top of an operating system.
The layer exports an abstraction of the virtual machine that can
run programs written and compiled to the particular abstract
machine definition. Any program written in the high-level
language and compiled for this virtual machine will run in it.

For more information:
http://www.vmware.com
http://www.vmware.com/solutions/
http://www.vmware.com/vinfrastructure/
�������������������������������������������������������������������������������������������������������
�� ������������� ����� ���� ������� ���������� ���������� ��� ���� ��� ����� ��� ����� ������� ����� ����������� ����������� �����������
����������� ����������� ����������� ����������� ����������� ����������� ����������� ����������� ���������� ���� ����������� ��������
���������������������������������������������������������������������������������������������������������������������
����������� ����� ��� ���� ������� ������� ������� ������ ��������������� ���� ������ ������ ���� ������ ���������� ������� ���� ���
�����������������������������������������

Mais conteúdo relacionado

Mais procurados

Virtualization
VirtualizationVirtualization
VirtualizationYansi Keim
 
Storage Virtualization
Storage VirtualizationStorage Virtualization
Storage VirtualizationMehul Jariwala
 
Cloud computing using virtualization (Virtual Data Center)
Cloud computing using virtualization (Virtual Data Center)Cloud computing using virtualization (Virtual Data Center)
Cloud computing using virtualization (Virtual Data Center)Sarbjeet Singh
 
Virtualization 2.0: The Next Generation of Virtualization
Virtualization 2.0: The Next Generation of VirtualizationVirtualization 2.0: The Next Generation of Virtualization
Virtualization 2.0: The Next Generation of VirtualizationEMC
 
Virtualization & Cloud computing
Virtualization & Cloud computingVirtualization & Cloud computing
Virtualization & Cloud computingAkhil Raj
 
Cloud virtualization
Cloud virtualizationCloud virtualization
Cloud virtualizationSarwan Singh
 
Server virtualization
Server virtualizationServer virtualization
Server virtualizationofsorganizer
 
IRJET- A Survey on Virtualization and Attacks on Virtual Machine Monitor (VMM)
IRJET- A Survey on Virtualization and Attacks on Virtual Machine Monitor (VMM)IRJET- A Survey on Virtualization and Attacks on Virtual Machine Monitor (VMM)
IRJET- A Survey on Virtualization and Attacks on Virtual Machine Monitor (VMM)IRJET Journal
 
New Features For Your Software Defined Storage
New Features For Your Software Defined StorageNew Features For Your Software Defined Storage
New Features For Your Software Defined StorageDataCore Software
 
Virtualization and its Types
Virtualization and its TypesVirtualization and its Types
Virtualization and its TypesHTS Hosting
 
Virtualisation with v mware
Virtualisation with v mwareVirtualisation with v mware
Virtualisation with v mwaresagaroceanic11
 
Introduction to virtualisation
Introduction to virtualisationIntroduction to virtualisation
Introduction to virtualisationsagaroceanic11
 

Mais procurados (17)

Virtualization 101
Virtualization 101Virtualization 101
Virtualization 101
 
Virtualization
VirtualizationVirtualization
Virtualization
 
Virtulization submission
Virtulization submissionVirtulization submission
Virtulization submission
 
Storage Virtualization
Storage VirtualizationStorage Virtualization
Storage Virtualization
 
Cloud computing using virtualization (Virtual Data Center)
Cloud computing using virtualization (Virtual Data Center)Cloud computing using virtualization (Virtual Data Center)
Cloud computing using virtualization (Virtual Data Center)
 
Virtualization 2.0: The Next Generation of Virtualization
Virtualization 2.0: The Next Generation of VirtualizationVirtualization 2.0: The Next Generation of Virtualization
Virtualization 2.0: The Next Generation of Virtualization
 
Virtualization & Cloud computing
Virtualization & Cloud computingVirtualization & Cloud computing
Virtualization & Cloud computing
 
Cloud virtualization
Cloud virtualizationCloud virtualization
Cloud virtualization
 
Server virtualization
Server virtualizationServer virtualization
Server virtualization
 
IRJET- A Survey on Virtualization and Attacks on Virtual Machine Monitor (VMM)
IRJET- A Survey on Virtualization and Attacks on Virtual Machine Monitor (VMM)IRJET- A Survey on Virtualization and Attacks on Virtual Machine Monitor (VMM)
IRJET- A Survey on Virtualization and Attacks on Virtual Machine Monitor (VMM)
 
New Features For Your Software Defined Storage
New Features For Your Software Defined StorageNew Features For Your Software Defined Storage
New Features For Your Software Defined Storage
 
Virtualization in cloud computing
Virtualization in cloud computingVirtualization in cloud computing
Virtualization in cloud computing
 
Virtualization and its Types
Virtualization and its TypesVirtualization and its Types
Virtualization and its Types
 
Virtualisation with v mware
Virtualisation with v mwareVirtualisation with v mware
Virtualisation with v mware
 
Introduction to virtualisation
Introduction to virtualisationIntroduction to virtualisation
Introduction to virtualisation
 
Managing The Virtualized Enterprise New Technology, New Challenges
Managing The Virtualized Enterprise New Technology, New ChallengesManaging The Virtualized Enterprise New Technology, New Challenges
Managing The Virtualized Enterprise New Technology, New Challenges
 
Block Level and File Level
Block Level and File LevelBlock Level and File Level
Block Level and File Level
 

Destaque (10)

In a monolithic kerne1
In a monolithic kerne1In a monolithic kerne1
In a monolithic kerne1
 
Shell intro
Shell introShell intro
Shell intro
 
Ripple lab wcg项目教程最终
Ripple lab  wcg项目教程最终Ripple lab  wcg项目教程最终
Ripple lab wcg项目教程最终
 
Intro on computers
Intro on computersIntro on computers
Intro on computers
 
25 most frequently used linux ip tables rules examples
25 most frequently used linux ip tables rules examples25 most frequently used linux ip tables rules examples
25 most frequently used linux ip tables rules examples
 
In a monolithic kerne1
In a monolithic kerne1In a monolithic kerne1
In a monolithic kerne1
 
40 basic linux command
40 basic linux command40 basic linux command
40 basic linux command
 
50 most frequently used unix
50 most frequently used unix50 most frequently used unix
50 most frequently used unix
 
50 most frequently used unix
50 most frequently used unix50 most frequently used unix
50 most frequently used unix
 
Dbms record
Dbms recordDbms record
Dbms record
 

Semelhante a Virtualization

Virtualization
VirtualizationVirtualization
Virtualizationrajan981
 
VMware Paravirtualization
VMware ParavirtualizationVMware Paravirtualization
VMware ParavirtualizationiTawy Community
 
Vmware paravirtualization
Vmware paravirtualizationVmware paravirtualization
Vmware paravirtualizationKien Le Duc
 
VMware_paravirtualization-2.pdf
VMware_paravirtualization-2.pdfVMware_paravirtualization-2.pdf
VMware_paravirtualization-2.pdfnyazirecarlington
 
Logicalis - Virtualisation overview
Logicalis - Virtualisation overviewLogicalis - Virtualisation overview
Logicalis - Virtualisation overviewLogicalis
 
Virtualisation Overview
Virtualisation OverviewVirtualisation Overview
Virtualisation OverviewLogicalis
 
NSX Reference Design version 3.0
NSX Reference Design version 3.0NSX Reference Design version 3.0
NSX Reference Design version 3.0Doddi Priyambodo
 
IBM pureflex system and vmware vcloud enterprise suite reference architecture
IBM pureflex system and vmware vcloud enterprise suite reference architectureIBM pureflex system and vmware vcloud enterprise suite reference architecture
IBM pureflex system and vmware vcloud enterprise suite reference architectureIBM India Smarter Computing
 
Virtualization In Software Testing
Virtualization In Software TestingVirtualization In Software Testing
Virtualization In Software TestingColloquium
 
Reducing Cost and Complexity with Industrial System Consolidation
Reducing Cost and Complexity with Industrial System ConsolidationReducing Cost and Complexity with Industrial System Consolidation
Reducing Cost and Complexity with Industrial System ConsolidationIntel IoT
 
Virtulization
VirtulizationVirtulization
VirtulizationAntu Sabu
 
Mid term report
Mid term reportMid term report
Mid term reportlokesh039
 
Short Economic EssayPlease answer MINIMUM 400 word I need this.docx
Short Economic EssayPlease answer MINIMUM 400 word I need this.docxShort Economic EssayPlease answer MINIMUM 400 word I need this.docx
Short Economic EssayPlease answer MINIMUM 400 word I need this.docxbudabrooks46239
 
Risk Analysis and Mitigation in Virtualized Environments
Risk Analysis and Mitigation in Virtualized EnvironmentsRisk Analysis and Mitigation in Virtualized Environments
Risk Analysis and Mitigation in Virtualized EnvironmentsSiddharth Coontoor
 

Semelhante a Virtualization (20)

Virtualization
VirtualizationVirtualization
Virtualization
 
Virtualization
VirtualizationVirtualization
Virtualization
 
Virtualization
VirtualizationVirtualization
Virtualization
 
VMware Paravirtualization
VMware ParavirtualizationVMware Paravirtualization
VMware Paravirtualization
 
Vmware paravirtualization
Vmware paravirtualizationVmware paravirtualization
Vmware paravirtualization
 
VMware_paravirtualization-2.pdf
VMware_paravirtualization-2.pdfVMware_paravirtualization-2.pdf
VMware_paravirtualization-2.pdf
 
Introduction to Virtual Desktop Architectures
Introduction to Virtual Desktop ArchitecturesIntroduction to Virtual Desktop Architectures
Introduction to Virtual Desktop Architectures
 
Logicalis - Virtualisation overview
Logicalis - Virtualisation overviewLogicalis - Virtualisation overview
Logicalis - Virtualisation overview
 
Virtualisation Overview
Virtualisation OverviewVirtualisation Overview
Virtualisation Overview
 
NSX Reference Design version 3.0
NSX Reference Design version 3.0NSX Reference Design version 3.0
NSX Reference Design version 3.0
 
Virtualizations
VirtualizationsVirtualizations
Virtualizations
 
IBM pureflex system and vmware vcloud enterprise suite reference architecture
IBM pureflex system and vmware vcloud enterprise suite reference architectureIBM pureflex system and vmware vcloud enterprise suite reference architecture
IBM pureflex system and vmware vcloud enterprise suite reference architecture
 
Sna lab prj (1)
Sna lab prj (1)Sna lab prj (1)
Sna lab prj (1)
 
Virtualization In Software Testing
Virtualization In Software TestingVirtualization In Software Testing
Virtualization In Software Testing
 
Reducing Cost and Complexity with Industrial System Consolidation
Reducing Cost and Complexity with Industrial System ConsolidationReducing Cost and Complexity with Industrial System Consolidation
Reducing Cost and Complexity with Industrial System Consolidation
 
View RA_v1_HiRez
View RA_v1_HiRezView RA_v1_HiRez
View RA_v1_HiRez
 
Virtulization
VirtulizationVirtulization
Virtulization
 
Mid term report
Mid term reportMid term report
Mid term report
 
Short Economic EssayPlease answer MINIMUM 400 word I need this.docx
Short Economic EssayPlease answer MINIMUM 400 word I need this.docxShort Economic EssayPlease answer MINIMUM 400 word I need this.docx
Short Economic EssayPlease answer MINIMUM 400 word I need this.docx
 
Risk Analysis and Mitigation in Virtualized Environments
Risk Analysis and Mitigation in Virtualized EnvironmentsRisk Analysis and Mitigation in Virtualized Environments
Risk Analysis and Mitigation in Virtualized Environments
 

Mais de Teja Bheemanapally (20)

Teradata
TeradataTeradata
Teradata
 
Teradata
TeradataTeradata
Teradata
 
Linux or unix interview questions
Linux or unix interview questionsLinux or unix interview questions
Linux or unix interview questions
 
Linux notes
Linux notesLinux notes
Linux notes
 
Linux crontab
Linux crontabLinux crontab
Linux crontab
 
Linux basic commands
Linux basic commandsLinux basic commands
Linux basic commands
 
Linux01122011
Linux01122011Linux01122011
Linux01122011
 
Kernel (computing)
Kernel (computing)Kernel (computing)
Kernel (computing)
 
Installing red hat enterprise linux1
Installing red hat enterprise linux1Installing red hat enterprise linux1
Installing red hat enterprise linux1
 
Linux basic commands tutorial
Linux basic commands tutorialLinux basic commands tutorial
Linux basic commands tutorial
 
Common linuxcommandspocketguide07
Common linuxcommandspocketguide07Common linuxcommandspocketguide07
Common linuxcommandspocketguide07
 
Basic commands
Basic commandsBasic commands
Basic commands
 
File system hierarchy standard
File system hierarchy standardFile system hierarchy standard
File system hierarchy standard
 
15 practical grep command examples in linux
15 practical grep command examples in linux15 practical grep command examples in linux
15 practical grep command examples in linux
 
25 most frequently used linux ip tables rules examples
25 most frequently used linux ip tables rules examples25 most frequently used linux ip tables rules examples
25 most frequently used linux ip tables rules examples
 
6 stages of linux boot process
6 stages of linux boot process6 stages of linux boot process
6 stages of linux boot process
 
Kernel (computing)
Kernel (computing)Kernel (computing)
Kernel (computing)
 
Installing red hat enterprise linux1
Installing red hat enterprise linux1Installing red hat enterprise linux1
Installing red hat enterprise linux1
 
In a monolithic kernel
In a monolithic kernelIn a monolithic kernel
In a monolithic kernel
 
Ftp
FtpFtp
Ftp
 

Último

MINDCTI Revenue Release Quarter One 2024
MINDCTI Revenue Release Quarter One 2024MINDCTI Revenue Release Quarter One 2024
MINDCTI Revenue Release Quarter One 2024MIND CTI
 
Boost Fertility New Invention Ups Success Rates.pdf
Boost Fertility New Invention Ups Success Rates.pdfBoost Fertility New Invention Ups Success Rates.pdf
Boost Fertility New Invention Ups Success Rates.pdfsudhanshuwaghmare1
 
Spring Boot vs Quarkus the ultimate battle - DevoxxUK
Spring Boot vs Quarkus the ultimate battle - DevoxxUKSpring Boot vs Quarkus the ultimate battle - DevoxxUK
Spring Boot vs Quarkus the ultimate battle - DevoxxUKJago de Vreede
 
Emergent Methods: Multi-lingual narrative tracking in the news - real-time ex...
Emergent Methods: Multi-lingual narrative tracking in the news - real-time ex...Emergent Methods: Multi-lingual narrative tracking in the news - real-time ex...
Emergent Methods: Multi-lingual narrative tracking in the news - real-time ex...Zilliz
 
Cloud Frontiers: A Deep Dive into Serverless Spatial Data and FME
Cloud Frontiers:  A Deep Dive into Serverless Spatial Data and FMECloud Frontiers:  A Deep Dive into Serverless Spatial Data and FME
Cloud Frontiers: A Deep Dive into Serverless Spatial Data and FMESafe Software
 
Strategize a Smooth Tenant-to-tenant Migration and Copilot Takeoff
Strategize a Smooth Tenant-to-tenant Migration and Copilot TakeoffStrategize a Smooth Tenant-to-tenant Migration and Copilot Takeoff
Strategize a Smooth Tenant-to-tenant Migration and Copilot Takeoffsammart93
 
TrustArc Webinar - Unlock the Power of AI-Driven Data Discovery
TrustArc Webinar - Unlock the Power of AI-Driven Data DiscoveryTrustArc Webinar - Unlock the Power of AI-Driven Data Discovery
TrustArc Webinar - Unlock the Power of AI-Driven Data DiscoveryTrustArc
 
Exploring the Future Potential of AI-Enabled Smartphone Processors
Exploring the Future Potential of AI-Enabled Smartphone ProcessorsExploring the Future Potential of AI-Enabled Smartphone Processors
Exploring the Future Potential of AI-Enabled Smartphone Processorsdebabhi2
 
MS Copilot expands with MS Graph connectors
MS Copilot expands with MS Graph connectorsMS Copilot expands with MS Graph connectors
MS Copilot expands with MS Graph connectorsNanddeep Nachan
 
Modular Monolith - a Practical Alternative to Microservices @ Devoxx UK 2024
Modular Monolith - a Practical Alternative to Microservices @ Devoxx UK 2024Modular Monolith - a Practical Alternative to Microservices @ Devoxx UK 2024
Modular Monolith - a Practical Alternative to Microservices @ Devoxx UK 2024Victor Rentea
 
Biography Of Angeliki Cooney | Senior Vice President Life Sciences | Albany, ...
Biography Of Angeliki Cooney | Senior Vice President Life Sciences | Albany, ...Biography Of Angeliki Cooney | Senior Vice President Life Sciences | Albany, ...
Biography Of Angeliki Cooney | Senior Vice President Life Sciences | Albany, ...Angeliki Cooney
 
Polkadot JAM Slides - Token2049 - By Dr. Gavin Wood
Polkadot JAM Slides - Token2049 - By Dr. Gavin WoodPolkadot JAM Slides - Token2049 - By Dr. Gavin Wood
Polkadot JAM Slides - Token2049 - By Dr. Gavin WoodJuan lago vázquez
 
How to Troubleshoot Apps for the Modern Connected Worker
How to Troubleshoot Apps for the Modern Connected WorkerHow to Troubleshoot Apps for the Modern Connected Worker
How to Troubleshoot Apps for the Modern Connected WorkerThousandEyes
 
Apidays New York 2024 - Scaling API-first by Ian Reasor and Radu Cotescu, Adobe
Apidays New York 2024 - Scaling API-first by Ian Reasor and Radu Cotescu, AdobeApidays New York 2024 - Scaling API-first by Ian Reasor and Radu Cotescu, Adobe
Apidays New York 2024 - Scaling API-first by Ian Reasor and Radu Cotescu, Adobeapidays
 
2024: Domino Containers - The Next Step. News from the Domino Container commu...
2024: Domino Containers - The Next Step. News from the Domino Container commu...2024: Domino Containers - The Next Step. News from the Domino Container commu...
2024: Domino Containers - The Next Step. News from the Domino Container commu...Martijn de Jong
 
Repurposing LNG terminals for Hydrogen Ammonia: Feasibility and Cost Saving
Repurposing LNG terminals for Hydrogen Ammonia: Feasibility and Cost SavingRepurposing LNG terminals for Hydrogen Ammonia: Feasibility and Cost Saving
Repurposing LNG terminals for Hydrogen Ammonia: Feasibility and Cost SavingEdi Saputra
 
Why Teams call analytics are critical to your entire business
Why Teams call analytics are critical to your entire businessWhy Teams call analytics are critical to your entire business
Why Teams call analytics are critical to your entire businesspanagenda
 
DEV meet-up UiPath Document Understanding May 7 2024 Amsterdam
DEV meet-up UiPath Document Understanding May 7 2024 AmsterdamDEV meet-up UiPath Document Understanding May 7 2024 Amsterdam
DEV meet-up UiPath Document Understanding May 7 2024 AmsterdamUiPathCommunity
 
Finding Java's Hidden Performance Traps @ DevoxxUK 2024
Finding Java's Hidden Performance Traps @ DevoxxUK 2024Finding Java's Hidden Performance Traps @ DevoxxUK 2024
Finding Java's Hidden Performance Traps @ DevoxxUK 2024Victor Rentea
 

Último (20)

MINDCTI Revenue Release Quarter One 2024
MINDCTI Revenue Release Quarter One 2024MINDCTI Revenue Release Quarter One 2024
MINDCTI Revenue Release Quarter One 2024
 
Boost Fertility New Invention Ups Success Rates.pdf
Boost Fertility New Invention Ups Success Rates.pdfBoost Fertility New Invention Ups Success Rates.pdf
Boost Fertility New Invention Ups Success Rates.pdf
 
Spring Boot vs Quarkus the ultimate battle - DevoxxUK
Spring Boot vs Quarkus the ultimate battle - DevoxxUKSpring Boot vs Quarkus the ultimate battle - DevoxxUK
Spring Boot vs Quarkus the ultimate battle - DevoxxUK
 
Emergent Methods: Multi-lingual narrative tracking in the news - real-time ex...
Emergent Methods: Multi-lingual narrative tracking in the news - real-time ex...Emergent Methods: Multi-lingual narrative tracking in the news - real-time ex...
Emergent Methods: Multi-lingual narrative tracking in the news - real-time ex...
 
Cloud Frontiers: A Deep Dive into Serverless Spatial Data and FME
Cloud Frontiers:  A Deep Dive into Serverless Spatial Data and FMECloud Frontiers:  A Deep Dive into Serverless Spatial Data and FME
Cloud Frontiers: A Deep Dive into Serverless Spatial Data and FME
 
Strategize a Smooth Tenant-to-tenant Migration and Copilot Takeoff
Strategize a Smooth Tenant-to-tenant Migration and Copilot TakeoffStrategize a Smooth Tenant-to-tenant Migration and Copilot Takeoff
Strategize a Smooth Tenant-to-tenant Migration and Copilot Takeoff
 
TrustArc Webinar - Unlock the Power of AI-Driven Data Discovery
TrustArc Webinar - Unlock the Power of AI-Driven Data DiscoveryTrustArc Webinar - Unlock the Power of AI-Driven Data Discovery
TrustArc Webinar - Unlock the Power of AI-Driven Data Discovery
 
Exploring the Future Potential of AI-Enabled Smartphone Processors
Exploring the Future Potential of AI-Enabled Smartphone ProcessorsExploring the Future Potential of AI-Enabled Smartphone Processors
Exploring the Future Potential of AI-Enabled Smartphone Processors
 
+971581248768>> SAFE AND ORIGINAL ABORTION PILLS FOR SALE IN DUBAI AND ABUDHA...
+971581248768>> SAFE AND ORIGINAL ABORTION PILLS FOR SALE IN DUBAI AND ABUDHA...+971581248768>> SAFE AND ORIGINAL ABORTION PILLS FOR SALE IN DUBAI AND ABUDHA...
+971581248768>> SAFE AND ORIGINAL ABORTION PILLS FOR SALE IN DUBAI AND ABUDHA...
 
MS Copilot expands with MS Graph connectors
MS Copilot expands with MS Graph connectorsMS Copilot expands with MS Graph connectors
MS Copilot expands with MS Graph connectors
 
Modular Monolith - a Practical Alternative to Microservices @ Devoxx UK 2024
Modular Monolith - a Practical Alternative to Microservices @ Devoxx UK 2024Modular Monolith - a Practical Alternative to Microservices @ Devoxx UK 2024
Modular Monolith - a Practical Alternative to Microservices @ Devoxx UK 2024
 
Biography Of Angeliki Cooney | Senior Vice President Life Sciences | Albany, ...
Biography Of Angeliki Cooney | Senior Vice President Life Sciences | Albany, ...Biography Of Angeliki Cooney | Senior Vice President Life Sciences | Albany, ...
Biography Of Angeliki Cooney | Senior Vice President Life Sciences | Albany, ...
 
Polkadot JAM Slides - Token2049 - By Dr. Gavin Wood
Polkadot JAM Slides - Token2049 - By Dr. Gavin WoodPolkadot JAM Slides - Token2049 - By Dr. Gavin Wood
Polkadot JAM Slides - Token2049 - By Dr. Gavin Wood
 
How to Troubleshoot Apps for the Modern Connected Worker
How to Troubleshoot Apps for the Modern Connected WorkerHow to Troubleshoot Apps for the Modern Connected Worker
How to Troubleshoot Apps for the Modern Connected Worker
 
Apidays New York 2024 - Scaling API-first by Ian Reasor and Radu Cotescu, Adobe
Apidays New York 2024 - Scaling API-first by Ian Reasor and Radu Cotescu, AdobeApidays New York 2024 - Scaling API-first by Ian Reasor and Radu Cotescu, Adobe
Apidays New York 2024 - Scaling API-first by Ian Reasor and Radu Cotescu, Adobe
 
2024: Domino Containers - The Next Step. News from the Domino Container commu...
2024: Domino Containers - The Next Step. News from the Domino Container commu...2024: Domino Containers - The Next Step. News from the Domino Container commu...
2024: Domino Containers - The Next Step. News from the Domino Container commu...
 
Repurposing LNG terminals for Hydrogen Ammonia: Feasibility and Cost Saving
Repurposing LNG terminals for Hydrogen Ammonia: Feasibility and Cost SavingRepurposing LNG terminals for Hydrogen Ammonia: Feasibility and Cost Saving
Repurposing LNG terminals for Hydrogen Ammonia: Feasibility and Cost Saving
 
Why Teams call analytics are critical to your entire business
Why Teams call analytics are critical to your entire businessWhy Teams call analytics are critical to your entire business
Why Teams call analytics are critical to your entire business
 
DEV meet-up UiPath Document Understanding May 7 2024 Amsterdam
DEV meet-up UiPath Document Understanding May 7 2024 AmsterdamDEV meet-up UiPath Document Understanding May 7 2024 Amsterdam
DEV meet-up UiPath Document Understanding May 7 2024 Amsterdam
 
Finding Java's Hidden Performance Traps @ DevoxxUK 2024
Finding Java's Hidden Performance Traps @ DevoxxUK 2024Finding Java's Hidden Performance Traps @ DevoxxUK 2024
Finding Java's Hidden Performance Traps @ DevoxxUK 2024
 

Virtualization

  • 1. VMWARE WHITE P A P E R W H I T E PAPER Virtualization Overview 1
  • 2. VMWARE WHITE PAPER Table of Contents Introduction .............................................................................................................................................. 3 Virtualization in a Nutshell ................................................................................................................... 3 Virtualization Approaches .................................................................................................................... 4 Virtualization for Server Consolidation and Containment ........................................................... 7 How Virtualization Complements New-Generation Hardware .................................................. 8 Para-virtualization ................................................................................................................................... 8 VMware’s Virtualization Portfolio ........................................................................................................ 9 Glossary ..................................................................................................................................................... 10 2
  • 3. VMWARE WHITE PAPER Virtualization Overview Introduction Virtualization in a Nutshell Among the leading business challenges confronting CIOs and IT managers today are: cost-effective utilization of IT infrastructure; responsiveness in supporting new business initiatives; and flexibility in adapting to organizational changes. Driving an additional sense of urgency is the continued climate of IT budget constraints and more stringent regulatory requirements. Virtualization is a fundamental technological innovation that allows skilled IT managers to deploy creative solutions to such business challenges. Simply put, virtualization is an idea whose time has come. The term virtualization broadly describes the separation of a resource or request for a service from the underlying physical delivery of that service. With virtual memory, for example, computer software gains access to more memory than is physically installed, via the background swapping of data to disk storage. Similarly, virtualization techniques can be applied to other IT infrastructure layers - including networks, storage, laptop or server hardware, operating systems and applications. This blend of virtualization technologies - or virtual infrastructure - provides a layer of abstraction between computing, storage and networking hardware, and the applications running on it (see Figure 1). The deployment of virtual infrastructure is non-disruptive, since the user experiences are largely unchanged. However, virtual infrastructure gives administrators the advantage of managing pooled resources across the enterprise, allowing IT managers to be more responsive to dynamic organizational needs and to better leverage infrastructure investments. ����������� ���������������� ����������� ����������� ���������������� ���������������� ���������������� ��� ��������������������������� ���������������� ������ ��� ���� Before Virtualization: • Single OS image per machine ��� ������ ��� ���� After Virtualization: • Software and hardware tightly coupled • Hardware-independence of operating system and applications • Running multiple applications on same machine often creates conflict • Virtual machines can be provisioned to any system • Underutilized resources • Can manage OS and application as a single unit by encapsulating them into virtual machines • Inflexible and costly infrastructure Figure 1: Virtualization 3
  • 4. VMWARE WHITE PAPER Virtualization Approaches Using virtual infrastructure solutions such as those from VMware, enterprise IT managers can address challenges that include: While virtualization has been a part of the IT landscape for decades, it is only recently (in 1998) that VMware delivered the benefits of virtualization to industry-standard x86-based platforms, which now form the majority of desktop, laptop and server shipments. A key benefit of virtualization is the ability to run multiple operating systems on a single physical system and share the underlying hardware resources – known as partitioning. • Server Consolidation and Containment – Eliminating ‘server sprawl’ via deployment of systems as virtual machines (VMs) that can run safely and move transparently across shared hardware, and increase server utilization rates from 5-15% to 60-80%. • Test and Development Optimization – Rapidly provisioning test and development servers by reusing pre-configured systems, enhancing developer collaboration and standardizing development environments. Today, virtualization can apply to a range of system layers, including hardware-level virtualization, operating systemlevel virtualization, and high-level language virtual machines. Hardware-level virtualization was pioneered on IBM mainframes in the 1970s, and then more recently Unix/RISC system vendors began with hardware-based partitioning capabilities before moving on to software-based partitioning. • Business Continuity – Reducing the cost and complexity of business continuity (high availability and disaster recovery solutions) by encapsulating entire systems into single files that can be replicated and restored on any target server, thus minimizing downtime. For Unix/RISC and industry-standard x86 systems, the two approaches typically used with software-based partitioning are hosted and hypervisor architectures (See Figure 2). A hosted approach provides partitioning services on top of a standard operating system and supports the broadest range of hardware configurations. In contrast, a hypervisor architecture is the first layer of software installed on a clean x86-based system (hence it is often referred to as a “bare metal” approach). Since it has direct access to the hardware resources, a hypervisor is more efficient than hosted architectures, enabling greater scalability, robustness and performance. • Enterprise Desktop – Securing unmanaged PCs, workstations and laptops without compromising end user autonomy by layering a security policy in software around desktop virtual machines. ����������� ����������� ��� ��� ��� ��� ���������� �������� ���������� ������ ���������� ������ ���������� ������ ���������� ������ ������� ������� ���������������������� �������������������� ��������������������������� ��������������������� ���������������� ���������������� ��� ������ ��� ��� ������ ��� ���� ���� Hosted Architecture Bare-Metal (Hypervisor) Architecture • Installs and runs as an application • Lean virtualization-centric kernel • Relies on host OS for device support and physical resource management • Service Console for agents and helper applications Figure 2: Virtualization Architectures 4
  • 5. VMWARE WHITE PAPER Hypervisors can be designed to be tightly coupled with operating systems or can be agnostic to operating systems. The latter approach provides customers with the capability to implement an OS-neutral management paradigm, thereby providing further rationalization of the data center. Application-level partitioning is another approach, whereby many applications share a single operating system, but this offers less isolation (and higher risk) than hardware or software partitioning, and limited support for legacy applications or heterogeneous environments. However, various partitioning techniques can be combined, albeit with increased complexity. Hence, virtualization is a broad IT initiative, of which partitioning is just one facet. Other benefits include the isolation of virtual machines and the hardware-independence that results from the virtualization process. Virtual machines are highly portable, and can be moved or copied to any industry-standard (x86based) hardware platform, regardless of the make or model. Thus, virtualization facilitates adaptive IT resource management, and greater responsiveness to changing business conditions (see Figures 3-5). To provide advantages beyond partitioning, several system resources must be virtualized and managed, including CPUs, main memory, and I/O, in addition to having an inter-partition resource management capability. While partitioning is a useful capability for IT organizations, true virtual infrastructure delivers business value well beyond that. ����������� ����������� ����������� ���������������� ���������������� ���������������� ���������������� ���������������� ���������������� ������� ������� ������� ������� ������� ������� ������� Figure 3: Traditional Infrastructure 5
  • 6. VMWARE WHITE PAPER Hardware/Software Separation ����������� �������� ��� ��� ������ ������������� ���������� ������ ������ ����� ����� ������ ���������� ������ ���������������������� ������� ������� ������� Figure 4: Virtual Infrastructure Infrastructure is what connects resources to your business. ����������� ����������� ����������� ���������������� ���������������� ���������������� ��������������� ��������������� ��������������� Result: decreased costs and increased efficiencies and responsiveness ���������������������� ������� ������� ������� ������� ������� Transforms farms of individual x86 servers, storage, and networking into a pool of computing resources Figure 5: VMware Virtual Infrastructure 6 Virtual Infrastructure is a dynamic mapping of your resources to your business. �������
  • 7. VMWARE WHITE PAPER Virtualization for Server Consolidation and Containment higher management costs. Virtual infrastructure enables more effective optimization of IT resources, through the standardization of data center elements that need to be managed. Virtual infrastructure initiatives often spring from data center server consolidation projects, which focus on reducing existing infrastructure “box count”, retiring older hardware or life-extending legacy applications. Server consolidation benefits result from a reduction in the overall number of systems and related recurring costs (power, cooling, rack space, etc.) Partitioning alone does not deliver server consolidation or containment, and in turn consolidation does not equate to full virtual infrastructure management. Beyond partitioning and basic component-level resource management, a core set of systems management capabilities are required to effectively implement realistic data center solutions (see Figure 6). These management capabilities should include comprehensive system resource monitoring (of metrics such as CPU activity, disk access, memory utilization and network bandwidth), automated provisioning, high availability and workload migration support. While server consolidation addresses the reduction of existing infrastructure, server containment takes a more strategic view, leading to a goal of infrastructure unification. Server containment uses an incremental approach to workload virtualization, whereby new projects are provisioned with virtual machines rather than physical servers, thus deferring hardware purchases. It is important to note that neither consolidation nor containment should be viewed as standalone exercise. In either case, the most significant benefits result from adopting a total costof-ownership (TCO) perspective, with a focus on the ongoing, recurring support and management costs, in addition to onetime, up-front costs. Data center environments are becoming more complex and heterogeneous, with correspondingly VM VM VM Management and Distributed Virtualization Services VirtualCenter VMotion VMM VM VMM VMM VMM Consolidated Backup Resource Management DRS DAS CPU Virtualization Distributed Services VMFS Virtual Networking MPIO Other Enterprise Features Enterprise-Class Features MMU Virtualization I/O Virtualization Hypervisor ESX Server Blade Hardware CPU Monitor Provisioning Memor y NIC Disk Other Hardware Hardware Certification Hardware Figure 6: Virtual Infrastructure Management 7
  • 8. VMWARE WHITE PAPER How Virtualization Complements NewGeneration Hardware Extensive ‘scale-out’ and multi-tier application architectures are becoming increasingly common, and the adoption of smaller form-factor blade servers is growing dramatically. Since the transition to blade architectures is generally driven by a desire for physical consolidation of IT resources, virtualization is an ideal complement for blade servers, delivering benefits such as resource optimization, operational efficiency and rapid provisioning. The latest generation of x86-based systems feature processors with 64-bit extensions supporting very large memory capacities. This enhances their ability to host large, memory-intensive applications, as well as allowing many more virtual machines to be hosted by a physical server deployed within a virtual infrastructure. The continual decrease in memory costs will further accelerate this trend. Likewise, the forthcoming dual-core processor technology significantly benefits IT organizations by dramatically lowering the costs of increased performance. Compared to traditional single-core systems, systems utilizing dual-core processors will be less expensive, since only half the number of sockets will be required for the same number of CPUs. By significantly lowering the cost of multi-processor systems, dual-core technology will accelerate data center consolidation and virtual infrastructure projects, Beyond these enhancements, VMware is also working closely with both Intel and AMD to ensure that new processor technology features are exploited by virtual infrastructure to the fullest extent. In particular, the new virtualization hardware assist enhancements (Intel’s “VT” and AMD’s “Pacifica”) will enable robust virtualization of the CPU functionality. Such hardware virtualization support does not replace virtual infrastructure, but allows it to run more efficiently. Para-virtualization Although virtualization is rapidly becoming mainstream technology, the concept has attracted a huge amount of interest, and enhancements continue to be investigated. One of these is para-virtualization, whereby operating system compatibility is traded off against performance for certain CPU-bound applications running on systems without virtualization hardware assist (see Figure 7). The para-virtualized model offers potential performance benefits when a guest operating system or application is ‘aware’ that it is running within a virtualized environment, and has been modified to exploit this. One potential downside of this approach is that such modified guests cannot ever be migrated back to run on physical hardware. In addition to requiring modified guest operating systems, paravirtualization leverages a hypervisor for the underlying technology. In the case of Linux distributions, this approach requires extensive changes to an operating system kernel so that it can coexist with the hypervisor. Accordingly, mainstream Linux distributions (such as Red Hat or SUSE) cannot be run in a paravirtualized mode without some level of modification. Likewise, Microsoft has suggested that a future version of the Windows operating system will be developed that can coexist with a new hypervisor offering from Microsoft. Yet para-virtualization is not an entirely new concept. For example, VMware has employed it by making available as an option enhanced device drivers (packaged as VMware Tools) that increase the efficiency of guest operating systems. Furthermore, if and when para-virtualization optimizations are eventually built into commercial enterprise Linux distributions, VMware’s hypervisor will support those, as it does all mainstream operating systems. ����������� ����������� ��������������������� ���������������� ��������������������� ���������������� �������������� ������������ Figure 7: Para-virtualization 8
  • 9. VMWARE WHITE PAPER VMware’s Virtualization Portfolio VMware is the only provider of high-performance virtualization products that give customers a real choice in operating systems. VMware supports: Windows 95/98/NT/2K/2003/XP/3.1/MS-DOS 6; Linux (Red Hat, SUSE, Mandrake, Caldera); FreeBSD (3.x, 4.04.9); Novell (NetWare 4,5,6); Sun Solaris 9 and 10 (experimental). VMware pioneered x86-based virtualization in 1998 and continues to be the innovator in that market, providing the fundamental virtualization technology for all leading x86based hardware suppliers. The company offers a variety of software-based partitioning approaches, utilizing both hosted (Workstation and VMware Server) and hypervisor (ESX Server) architectures. (see Figure 8) VMware’s virtual machine (VM) approach creates a uniform hardware image – implemented in software – on which operating systems and applications run. On top of this platform, VMware’s VirtualCenter provides management and provisioning of virtual machines, continuous workload consolidation across physical servers and VMotion™ technology for virtual machine mobility. VirtualCenter is virtual infrastructure management software that centrally manages an enterprise’s virtual machines as a single, logical pool of resources. With VirtualCenter, an administrator can manage thousands of Windows NT, Windows 2000, Windows 2003, Linux and NetWare servers from a single point of control. VMware is designed from the ground up to ensure compatibility with customers’ existing software infrastructure investments. This includes not just operating systems, but also software for management, high availability, clustering, replication, multipathing, and so on. VMware’s hypervisor-based products and solutions have been running at customer sites since 2001, with more than 75% of customers running ESX Server in production deployments. As the clear x86 virtualization market leader, VMware is uniquely positioned to continue providing robust, supportable, highperformance virtual infrastructure for real-world, enterprise data center applications. Unique to VMware is the VMotion technology, whereby live, running virtual machines can be moved from one physical system to another while maintaining continuous service availability. VMotion thus allows fast reconfiguration and optimization of resources across the virtual infrastructure. App App p App App OS OS OS OS CONSISTENT VIRTUAL HARDWARE PLATFORM Open Interfaces VMware Infrastructure ACE System Architecture & Highlights Workstation VMware Server ESX Server Secured Enterprise Desktop Technical Desktop Departmental Computing Enterprise Computing Hosted on Windows Hosted on Windows or Linux Hosted on Windows or Linux Bare Metal V-SMP Option Mgmt Server, Console & APIs VMotion Figure 8: Single Virtual Platform Desktop to Enterprise 9
  • 10. VMWARE WHITE PAPER Glossary Virtual Machine A representation of a real machine using software that provides an operating environment which can run or host a guest operating system. Guest Operating System An operating system running in a virtual machine environment that would otherwise run directly on a separate physical system. Virtual Machine Monitor Software that runs in a layer between a hypervisor or host operating system and one or more virtual machines that provides the virtual machine abstraction to the guest operating systems. With full virtualization, the virtual machine monitor exports a virtual machine abstraction identical to a physical machine, so that standard operating systems (e.g., Windows 2000, Windows Server 2003, Linux, etc.) can run just as they would on physical hardware. Hypervisor A thin layer of software that generally provides virtual partitioning capabilities which runs directly on hardware, but underneath higher-level virtualization services. Sometimes referred to as a “bare metal” approach. Hosted Virtualization A virtualization approach where partitioning and virtualization services run on top of a standard operating system (the host). In this approach, the virtualization software relies on the host operating system to provide the services to talk directly to the underlying hardware. Para-virtualization A virtualization approach that exports a modified hardware abstraction which requires operating systems to be explicitly modified and ported to run. Virtualization Hardware Support Industry standard servers will provide improved hardware support for virtualization. Initial hardware support includes processor extensions to address CPU and some memory virtualization. Future support will include I/O virtualization, and eventually more complex memory virtualization management. Hardware-level virtualization Here the virtualization layer sits right on top of the hardware exporting the virtual machine abstraction. Because the virtual machine looks like the hardware, all the software written for it will run in the virtual machine. 10 Operating system–level virtualization In this case the virtualization layer sits between the operating system and the application programs that run on the operating system. The virtual machine runs applications, or sets of applications, that are written for the particular operating system being virtualized. High-level language virtual machines In high-level language virtual machines, the virtualization layer sits as an application program on top of an operating system. The layer exports an abstraction of the virtual machine that can run programs written and compiled to the particular abstract machine definition. Any program written in the high-level language and compiled for this virtual machine will run in it. For more information: http://www.vmware.com http://www.vmware.com/solutions/ http://www.vmware.com/vinfrastructure/
  • 11. ������������������������������������������������������������������������������������������������������� �� ������������� ����� ���� ������� ���������� ���������� ��� ���� ��� ����� ��� ����� ������� ����� ����������� ����������� ����������� ����������� ����������� ����������� ����������� ����������� ����������� ����������� ����������� ���������� ���� ����������� �������� ��������������������������������������������������������������������������������������������������������������������� ����������� ����� ��� ���� ������� ������� ������� ������ ��������������� ���� ������ ������ ���� ������ ���������� ������� ���� ��� �����������������������������������������