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Transcript of Hp amd-rh-roadshow
Juntos cimentando el camino hacia la eficiencia
Ester de NicolásProduct Manager HP
Alejandro RuizBusiness Development Manager AMD
Octubre 2010
Power & cooling
Management software
Network
ServersStorage
Los negocios de mañana se apoyarán sobreuna infraestructura convergente
“Pools” de recursos virtuales
Recursos de cálculo, memoria, almacenamiento y red adaptables
FlexFabric
Cableado único, ensamblado dinámico, Siempre predecible
Entorno operativo de HP
Gestión mediante servicios compartidos
Data center smart gridGestión de energía inteligente entre sistemas y “facilities”
La arquitectura necesaria para ir hacia unainfraestructura convergente
3
“Pools” de recursos virtuales
Recursos de cálculo, memoria, almacenamiento y red adaptables
FlexFabric
Cableado único, ensamblado dinámico, Siempre predecible
Entorno operativo de HP
Gestión mediante servicios compartidos
Data center smart gridGestión de energía inteligente entre sistemas y “facilities”
La arquitectura necesaria para ir hacia unainfraestructura convergente
4
¿Qué es HP Data Center Smart Grid?
EnvironmentalEdge
Thermal Logic Technologies
Serv
icios
Intelligent Power Discovery
Modular cooling system
Hardware + Insight Control
Tecnologías Data Center
Tecnologías de producto
Performance Optimized
Data Center
Tecnología HP Thermal Logic
Control inteligente del consumo eléctrico
Fuentes de alimentacióninteligentes
Tecnología HP ProLiant‘sea of sensors’
6
Medidas del consumo y la refrigeración en sala y sistemas
Utilice sólo las fuentes que necesite y apaque las demás de forma automática
Triplique la capacidad de sucentro de datos
Insight Control Power Management
25 October 2010 7
10 10/25/2010
Novedad Insight Control Data Center Power Control
Priorización de los recursos energéticosbasada en tipo de carga de trabajo y criticidad para el negocio
MenorCoste
Gestión más inteligente de los picos de consumo
Incluso si la infraestructura fallapodemos asegurar las cargas de trabajo más críticas
MenorRiesgo
“Pools” de recursos virtuales
Recursos de cálculo, memoria, almacenamiento y red adaptables
FlexFabric
Cableado único, ensamblado dinámico, Siempre predecible
Entorno operativo de HP
Gestión mediante servicios compartidos
Data center smart gridGestión de energía inteligente entre sistemas y “facilities”
La arquitectura necesaria para ir hacia unainfraestructura convergente
11
AMD Virtualization Technology (AMD-V™) – 03/25/201012
Servers AMD 2010-2011:
AMD Opteron™6000 Series Platform(codenamed ”Maranello”)
Platform Consistencyand Commonality
• 2/4 socket; 4 memory channels• Highly scalable without compromising value
AMD Opteron™4000 Series Platform(codenamed “San Marino”and “Adelaide”)
4P/8P Platforms~5% of Market*
1P Platforms ~20% of Market*
2P Platforms~75% of Market*
Highly Energy Efficient and
Cost Optimized • 1/2 socket; 2 memory channels• New levels of value and power efficiency
Performance-per-watt and
Expandability
“Magny-Cours”8 and 12 cores
“Interlagos”12 and 16 cores
“Lisbon”4 and 6 cores
“Valencia”6 and 8 cores
2010 2011
“Bulldozer”Core
*AMD internal estimates of total server market as of Q309
AMD Virtualization Technology (AMD-V™) – 03/25/201013
Direct Connect Architecture 1.0Balanced and Scalable Design to Support up to 6 Cores
2 MEM
ORY
CO
NTR
OLLER
S2 M
EMO
RY
CO
NTR
OLL
ERS
2 MEM
ORY
CO
NTR
OLLER
S2 M
EMO
RY
CO
NTR
OLL
ERS
8 DIMMs per CPU
8 DIMMs per CPU
8 DIMMs per CPU
8 DIMMs per CPU
No front side bus
Integrated memory controller
HyperTransport™ technology
NUMA memory architecture
AMD Virtualization Technology (AMD-V™) – 03/25/201014
12 DIMMs per CPU
Direct Connect Architecture 2.0Balanced and Scalable Design to Support up to 16 Cores* per CPU
1-hop between processors
Up to 50% more DIMMs
Four memory controllers
Up to 33% increase in CPU to CPU communication speed*
4 MEM
ORY
CO
NTR
OLLER
S4 M
EMO
RY
CO
NTR
OLL
ERS
4 MEM
ORY
CO
NTR
OLLER
S4 M
EMO
RY
CO
NTR
OLL
ERS
12 DIMMs per CPU
12 DIMMs per CPU
12 DIMMs per CPU
Based on HyperTransport™ technology links @ up to 4.8 GT/s for Six-Core AMD Opteron™ processor vs. 6.4 GT/s for AMD Opteron™ 6100 Series processor.*16-core configuration planned for upcoming AMD processor core codenamed “Bulldozer.”
AMD Virtualization Technology (AMD-V™) – 03/25/201015
Virtualization InnovationsHelps Reduce Overhead and Complexity of Virtualization
AMD-V™ Technology – CPU and memory virtualization
Extended Migration – enabling live migration of VMs
Single Core
8 – 12 Cores
Dual Core
QuadCore
6- Core
Rapid Virtualization Indexing – VM memory management
Virtual Memory 1 Virtual Memory 2
Physical Memory
VM1 VM2
AMD-Vi - I/O virtualization
Hypervisor
Device Driver
VMDevice Driver
AMD I/O Virtualization
Storage Controller
10GbeController
VM
Design goal of driving satisfying user experience and near Native Application Performance
HT Assist – helps reduce latency from inter-processor communication
CPU 1L3
CPU 3L3
CPU 2L3
CPU 4L3
AMD Virtualization Technology (AMD-V™) – 03/25/201016
AMD Opteron™ Processors in a Virtualized World
More resources to pool in your virtualized converged infrastructure
8 or12 cores
Four memory channels
No 4P Tax
Greater Resources Per ProcessorAMD-V™ Technology
Easier To DeployLarger pool of
resources enables greater VM
consolidation
Easier To ManageCommon architecture
makes managing virtual pools easier
Easier To MoveExtended Migration
delivers great flexibility for load balancing and
disaster recovery
Tagged TLB - Efficient switching between virtual machines for better application responsiveness.
Rapid Virtualization Indexing (RVI) - Hardware-based virtual machine memory management.
AMD-V™ Extended Migration – Helps enable live migration of VMs between all available AMD Opteron™ processor generations.
I/O Virtualization - Enables direct device access by a virtual machine for increased integrity and security.
AMD Virtualization Technology (AMD-V™) – 03/25/201017
Seamless Live Migration from 2004 to 2010
Single-Core2004
Quad-Core
Dual-Core
Only AMD Opteron™ processor based platforms enable live migration from 2004 to 2010
Compatible with all primary virtualization software offerings
Six-Core
“Magny-Cours”2010
Includes AMD Opteron processor versions “Rev E” to “Magny-Cours”
AMD Virtualization Technology (AMD-V™) – 03/25/201018
I/O Virtualization Overview • Direct Device Assignment
Bypasses hypervisor to enable improved performance
• Device Isolation Protects system memory from errant
device writes• Requirements
AMD chipset with IOMMU support Support by Virtualization software NIC, Graphics or Storage I/O device
drivers enabled for IOMMU• Limitations
Advanced virtualization enables features such as Live Migration, Disaster Recovery, High Availability and Fault Tolerance not supported
Hypervisor
Device Driver
Virtual Machine
Device Driver
Helps reduce overhead in path between Guest and Device
AMD-Vi (IOMMU)
Storage Controller
10GbeController
Virtual Machine
AMD Virtualization Technology (AMD-V™) – 03/25/201019
Hardware Assisted Virtualization
ProcessorTechnology
ChipsetTechnology
NIC Technology
Intel VT-xFlex MigrationVirtual Processor ID (VPID)Extended Page Tables (EPT)
AMD-V™Extended Migration
Tagged TLBRapid Virtualization Indexing (RVI)
Intel VT-dAMD-Vi (IOMMU)
implemented in RHEL(Linux, KVM and Xen
Drivers)
VMDq*I/O Acceleration Technology (IOAT)
Enables efficient virtualization by off loading certain functions from the software to hardware
AMD Intel
AMD Processor based platforms utilize this technology with Intel NICs
and other I/O Virtualization enabled NICs, e.g. Broadcom NetXtreme II
*Technology embedded in Intel based NICs
20
Red Hat Enterprise Linux 5.5 support
Support Magny-Cours topology AMD IOMMU driver support in KVM
IOMMU interrupt remapping in Xen
Memory placement and NUMA fixes in Xen
RAS features
Support Family10h EDAC (amd64_edac) driver
L3 cache index disable
*Source: SearchDataCenter survey report, 2008 “The data center purchasing intentions”
AMD Virtualization Technology (AMD-V™) – 03/25/201021
Take The Winner Ramp…
With the Same POWER!!!
05
101520253035404550
2003 2004 2005 2006 2007 2008 2009 2010 2011
Floating Point Integer
16 core“Interlagos”*
“12 coreMagny-Cours”*
6 core“Istanbul”
Single Core Quad CoreDual Core
Future
Perf
orm
ance
rel
ativ
e to
origi
nal
AM
D O
pter
on™
Pro
cess
or
“Interlagos” data is based on AMD projections
AMD Virtualization Technology (AMD-V™) – 03/25/201022
Price/Performance Comparison “Magny-Cours” vs. “Westmere”/”Gainestown”
Low Power25% of market – lots of competition but we win
Standard Power70%+ of the market , Intel is quad core only;
AMD’s clear advantage
High Power5% of the market, Intel’s heavy
focus; we still win
Estim
ated
1KU
pric
e
Estim
ated
Per
form
ance
(Int
eger
Thr
ough
put )
“Performance projections are based on Integer Throughput (SPECint®_rate2006)SPEC and SPECint are registered trademarks of the Standard Performance Evaluation Corporation. The results for AMD Opteron™ 6000 processors and Intel Xeon 5600 processors are estimated. The results for Intel Xeon 5500 processors are based upon results published on http://www.spec.org/cpu2006/results as of January 7, 2010. The comparisons above are based on the best performing two-socket servers using the specified processor model number. For the latest SPECint_rate2006 results, visit http://www.spec.org/cput2006/results. ”
$0
$200
$400
$600
$800
$1.000
$1.200
$1.400
$1.600
0%
50%
100%
150%
200%
250%
300%
AMD Virtualization Technology (AMD-V™) – 03/25/201023
Superior Four-Socket Server Price and Performance(Integer Throughput)
SPEC and SPECint are registered trademarks of the Standard Performance Evaluation Corporation. The results for AMD Opteron™ processors are estimates. The other results stated above reflectresults published on http://www.spec.org/cpu2006/results/ as of April 1, 2010. The comparison presented above is based on the best performing four-socket servers using the specified processormodel number. For the latest SPECint®_rate2006 results, visit http://www.spec.org/cpu2006/results/. Pricing reflects 1KU tray pricing for total system processor price on www.amd.com andwww.intel.com as of April 1, 2010.
Est. Est.
Est.
Est.Est. Est.
Est.Est. Est. Est.
$0
$3,000
$6,000
$9,000
$12,000
$15,000
0%
50%
100%
150%
200%
250%
6124 HE8-core1.8GHz
6128 HE8-core2.0GHz
6164 HE12-core1.7GHz
L75456-core
1.86GHz
L75558-core
1.86GHz
61288-core2.0GHz
61348-core2.3GHz
61368-core2.4GHz
616812-core1.9GHz
E75204-core
1.86GHz
617212-core2.1GHz
617412-core2.2GHz
6176 SE12-core2.3GHz
E75306-core
1.86GHz
E75406-core2.0GHz
X75426-core
2.66GHz
X75508-core2.0GHz
X75608-core
2.26GHz
Tota
l Pro
cess
orPr
ice
(red
lin
e)
Inte
ger T
hrou
ghpu
t Per
form
ance
(bar
cha
rt)
24
“Pools” de recursos virtuales
Recursos de cálculo, memoria, almacenamiento y red adaptables
FlexFabric
Cableado único, ensamblado dinámico, Siempre predecible
Entorno operativo de HP
Gestión mediante servicios compartidos
Data center smart gridGestión de energía inteligente entre sistemas y “facilities”
La arquitectura necesaria para ir hacia unainfraestructura convergente
25
La posibilidad de ofrecer los recusos de red comoun servicio
Nuestra visión: HP FlexFabric
Convergencia de servidoresalmacenamiento y red
Virtualización y orquestación del fabric
Basado en módulosestándaresescalables
Entorno tradicional de servidores en rack
SAN
Switch de acceso red
Switch de distribución
Switch FC SAN
Switch de acceso red
Switch FC SAN
Switch FC SAN
Core de red
Entorno tradicional de servidores blade
Switch de acceso red
Switch de distribución
Core de red
Switch FC SAN
Switch de acceso red
Switch FC SAN
Switch FC SAN
SAN
Midplane chasis de blades
… 4 a 13 …
… 4 a 13 …
Midplane chasis de blades
Entorno con HP Virtual Connect
Virtual ConnectEthernet
Switch de distribución
Core de red
Virtual ConnectFibre Channel
Virtual ConnectEthernet
Virtual ConnectFibre Channel
Switch FC SAN
SAN
Midplane chasis de blades
… 4 a 13 …
… 4 a 13 …
Midplane chasis de blades
Separación clara entre redes y servidores
REDNODOS
Entorno con HP Virtual Connect Flex-10
Virtual ConnectFlex-10 Ethernet
Switch de distribución
Core de red
Virtual ConnectFibre Channel
Virtual ConnectFlex-10 Ethernet
Virtual ConnectFibre Channel
Switch FC SAN
SAN
Midplane chasis de blades
… 4 a 13 …
… 4 a 13 …
Midplane chasis de blades
Entorno con HP Virtual Connect FlexFabric
Virtual ConnectFlexFabric
Switch de distribución
Core de red
Switch FC SAN
SAN
Midplane chasis de blades
… 4 a 13 …
… 4 a 13 …
Midplane chasis de blades
Virtual ConnectFlexFabric
Perspectiva a futuro
Virtual ConnectFlexFabric
Core de red
Switch CEE
SAN FCoE
Midplane chasis de blades
… 4 a 13 …
… 4 a 13 …
Midplane chasis de blades
Virtual ConnectFlexFabric
“Pools” de recursos virtuales
Recursos de cálculo, memoria, almacenamiento y red adaptables
FlexFabric
Cableado único, ensamblado dinámico, Siempre predecible
Entorno operativo de HP
Gestión mediante servicios compartidos
Data center smart gridGestión de energía inteligente entre sistemas y “facilities”
La arquitectura necesaria para ir hacia unainfraestructura convergente
33
Problemas de poner en marcha un servicioAprovisionamiento manual y procesos muy específicos para cada sistema
Negocio pide la aplicación
Definición de la arquitectura
Evaluación Aprobacionesde compra
Pedido
Más reuniones Entorno de pruebas
Desembalaje Entrega del material
Reuniones
Coordinaciónpara la puesta
en marcha
Aprovacionespara pasar a producción
Movimiento de máquinas
Recableados parael entorno de producción
Aceptación final
HP Operating Environment
Gestión de los servicios compartidos más sencilla, abierta y eficiente
Orquestación y automatización de nuevas peticionesde servicio
Optimización del uso de los recursos y la continuidad del servicio
Definiciones de servicio paramayor predictibilidad
Unos pocos pasos automatizados, menos tiempo
Select Portal Template Resources Initiate Provision
36
Beneficios de una solución convergenteEl tiempo de parada no planificada se puede reducir en un 50%(*) con un proyecto de virtualización avanzada, y en un 77%(**) gracias a HP Insight Software
Fuentes:(*) IDC Whitepaper: Business Value of Virtualization: Realizing the Benefits of Integrated Solutions, July 2008(**) Gaining Business Value and ROI with HP Insight Control, IDC, May 2009
HP Enterprise Business. Outcomes that matter.