Intel and Red Hat. Matty Bakkeren Enterprise Technology Specialist
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1 Intel and Red Hat Matty Bakkeren Enterprise Technology Specialist
2 Legal Disclaimer INFORMATION IN THIS DOCUMENT IS PROVIDED IN CONNECTION WITH INTEL PRODUCTS. NO LICENSE, EXPRESS OR IMPLIED, BY ESTOPPEL OR OTHERWISE, TO ANY INTELLECTUAL PROPERTY RIGHTS IS GRANTED BY THIS DOCUMENT. EXCEPT AS PROVIDED IN INTEL S TERMS AND CONDITIONS OF SALE FOR SUCH PRODUCTS, INTEL ASSUMES NO LIABILITY WHATSOEVER, AND INTEL DISCLAIMS ANY EXPRESS OR IMPLIED WARRANTY, RELATING TO SALE AND/OR USE OF INTEL PRODUCTS INCLUDING LIABILITY OR WARRANTIES RELATING TO FITNESS FOR A PARTICULAR PURPOSE, MERCHANTABILITY, OR INFRINGEMENT OF ANY PATENT, COPYRIGHT OR OTHER INTELLECTUAL PROPERTY RIGHT. INTEL PRODUCTS ARE NOT INTENDED FOR USE IN MEDICAL, LIFE SAVING, OR LIFE SUSTAINING APPLICATIONS. Intel may make changes to specifications and product descriptions at any time, without notice. Software and workloads used in performance tests may have been optimized for performance only on Intel microprocessors. Performance tests, such as SYSmark and MobileMark, are measured using specific computer systems, components, software, operations and functions. Any change to any of those factors may cause the results to vary. You should consult other information and performance tests to assist you in fully evaluating your contemplated purchases, including the performance of that product when combined with other products. For more performance information go to Intel does not control or audit the design or implementation of third party benchmarks or Web sites referenced in this document. Intel encourages all of its customers to visit the referenced Web sites or others where similar performance benchmarks are reported and confirm whether the referenced benchmarks are accurate and reflect performance of systems available for purchase. Intel processor numbers are not a measure of performance. Processor numbers differentiate features within each processor family, not across different processor families. See for details. Intel, processors, chipsets, and desktop boards may contain design defects or errors known as errata, which may cause the product to deviate from published specifications. Current characterized errata are available on request. Intel Turbo Boost Technology requires a system with Intel Turbo Boost Technology capability. Consult your PC manufacturer. Performance varies depending on hardware, software and system configuration. For more information, visit Intel Virtualization Technology requires a computer system with a processor, chipset, BIOS, virtual machine monitor (VMM) and applications enabled for virtualization technology. Functionality, performance or other virtualization technology benefits will vary depending on hardware and software configurations. Virtualization technology-enabled BIOS and VMM applications are currently in development. 64-bit computing on Intel architecture requires a computer system with a processor, chipset, BIOS, operating system, device drivers and applications enabled for Intel 64 architecture. Performance will vary depending on your hardware and software configurations. Consult with your system vendor for more information. Intel, Intel Xeon, Intel Core microarchitecture, and the Intel logo are trademarks or registered trademarks of Intel Corporation or its subsidiaries in the United States and other countries. Copyright 2012 Intel Corporation. All rights reserved.
3 Intel and Red Hat: Better Together Driving synchronized innovation and comprehensive solutions Fueling the mission-critical migration from Legacy RISC/UNIX The platform of choice for virtualization and cloud adoption (
4 Customers Around The World Agree Our partnership with Red Hat enables us to offer a robust, scalable, high performance, flexible, and cost-effective technological platform which has the potential to drive telecom innovation in the future. Aayush Bhatnager, Manger, Software Development, Rancore January 3, 2012 The Red Hat open source business model was of huge significance when assessing our consolidation options. Daniel Demonakis, Wintel and UNIX Platform Manager, Transport for London, January 9, 2012 We see a clear ROI from our use of Red Hat Enterprise Virtualization, not only from the hardware savings, but/ also from manpower efficiencies due to how fast we can spin up clusters and deploy virtual machines. And our software licensing costs are dramatically less with Red Hat Enterprise Virtualization as well. Michael Waltz, UNIX/Linus Engineering Group, Qualcomm, January, 2012 The system is so stable that there have been no problems over the past 18 months. The downtime currently stands at zero. Vincent Van der Kussen, system engineer open system, BTR Service January 17, 2012
5 Intel nm 65 nm 45 nm 32 nm 22 nm Invented SiGe Strained Silicon 2 nd Gen. SiGe Strained Silicon STRAINED SILICON Invented Gate-Last High-k Metal Gate 2 nd Gen. Gate-Last High-k Metal Gate First to Implement Tri-Gate HIGH-k METAL GATE The Foundation for all computing TRI-GATE
6 Intel s Investment in Manufacturing New Capacity for 14nm and Beyond 22nm Fab Upgrades D1X Oregon Development Fab Fab 42 Arizona High Volume Fab D1D Oregon D1C Oregon Fab 32 Arizona Fab 28 Israel Fab 12 Arizona
7 Tick Tock: Predictable Model for Sustained Microprocessor Leadership Tick Tock Tick Tock Tick Tock Tick 45nm 32nm 22nm 15nm Penryn Nehalem Westmere Sandybridge Ivybridge Haswell Future
8 2012 Intel Xeon Processor Families New Levels of Choice & Flexibility Intel Xeon Processor E7 Family Highest reliability & scalability E7-8800/4800/ Socket+/4-Socket/2-Socket Top of the Line Performance Intel Xeon Processor E5 Family Most flexible & efficient E Dense 4-Socket E Mainstream Leadership E Entry 2-Socket Intel Xeon Processor E3 Family Highest density, lowest cost E v2 Dependable & Economical 1-Socket
9 Choice of compute platforms Intel Xeon E5 Family Intel Xeon E7 Family Integrated PCI Express* 3.0 Up to 40 lanes per socket Up to four channels DDR3 1600MHz memory Up to eight cores Up to 20 MB cache Up to 80% performance boost compared to prior generation Intel integrated I/O with PCI express* 3.0 provices more bandwith for large datasets Latest DDR3 Memory technology/ capacity for Reduced memory latency Highest cache and thread performance for large dataset processing Up to 2TB memory footprint (4-socket platform) for in memory apps Highest reliability & 8 socket+ scalability
10 Intel s contribution to Open Source Enable open source operating environments to run best on Intel architecture UPSTREAM Code Capital Foster open source ecosystems and develop new markets for Intel and its partners DOWNSTREAM Alliances Foundations OEM Service Provider Enteprise
11 Intel and Red Hat: Proven Solutions Built on Open Architectures
12 Intel delivers world s first 6W 64 bit Data Center class SOC Intel Atom S1200 Processor Long-standing optimization on Intel Xeon processors extends today to the Intel Atom S1200 processor. With a single code base, Intel and Red Hat deliver the binary compatibility needed to run the most complex customer applications unchanged. Jim Totton, VP & GM, Platform Business Unit, Red Hat
13 Working Together for Synchronized Innovation and Comprehensive Solutions
14 Red Hat Enterprise Linux 6 Tremendous headroom for growth, for up to: Support for mission-critical workloads 4,096 processors 64 TB of memory 100 TB file systems Advanced feature set NUMA technology Ticketed spinlocks Transparent huge pages Control groups Dramatic performance improvements Most comprehensive release in the history of Red Hat Enterprise Linux
15 The Performance Results Speak for Themselves 400,931.8 $0.35/QphHv 436,788.9 $0.88/QphH SAP SD (8 socket): 124,430 SAPS, users Defeats all previous Linux positions by up to 86%! SPECint_rate_base2006 (8-socket): 1790 (up ~20+% vs.intel Xeon 7500 SPECvirt_sc2010: 234 VMs, 39 tiles (4-socket) SPECvirt_sc2010: 432 Vms, 72 tiles (8-socket)
16 Technology Progress and New Features
17 Technical Advancements Since 2007: Intel Turbo Boost Technology 2.0 Additional performance to address workload spikes Intel Virtualization Technology Additional platform capabilities to enhance virtualization performance Intel AES-NI Accelerate encryption by up to 10X 1 Intel Trusted Execution Technology Defend against attacks during launch Intel Advanced Vector Extensions Increases FLOPS per clock up to 2X 2 Intel Integrated I/O Reduce I/O latency up to 30% 3 Intel Hyperthreading Boost performance with double the number of threads per core Intel Node Manager 2.0 Power monitoring & limiting to maximize operating efficiency Intel Data Center Manager Data to enable improved dynamic workload placement & migration Intel QuickPath Interconnect Faster communication between processors Integrated Power Gates Enables idle cores to go to near zero power draw Software and workloads used in performance tests may have been optimized for performance only on Intel microprocessors. Performance tests, such as SYSmark and MobileMark, are measured using specific computer systems, components, software, operations and functions. Any change to any of those factors may cause the results to vary. You should consult other information and performance tests to assist you in fully evaluating your contemplated purchases, including the performance of that product when combined with other products. For more information go to 1 (AES-NI Performance) Source: testing with Oracle Database Enterprise Edition with Transparent Data Encryption (TDE) AES-256 shows as much as a 10x speedup when inserting one million rows 30 times into an empty table on the Intel Xeon processor X5680 (3.33 GHz, 36 MB RAM) using Intel IPP routines, compared to the Intel Xeon processor X5560 (2.93 GHz, 36 MB RAM) without Intel IPP. 2 (AVX Performance) Source: Performance comparison using Linpack benchmark. Baseline score of based on Intel internal measurements as of 4 August 2011 using a Supermicro* X8DTN+ system with two Intel Xeon processor X5690, Turbo Enabled or Disabled, EIST Enabled, Hyper-Threading Enabled, 48 GB RAM, Red Hat* Enterprise Linux Server 6.1 beta for x86_6. New score of Y based on Intel internal measurements using an Intel Rose City platform with two Intel Xeon processor E5-2690, Turbo Enabled or Disabled, EIST Enabled, Hyper-Threading Enabled, 64 GB RAM, Red Hat* Enterprise Linux Server 6.1 beta for x86_6. 3 (Integrated I/O) Intel measurements of average time for an I/O device read to local system memory under idle conditions. Improvement compares Xeon processor E product family vs Xeon processor 5600 series
18 Red Hat KVM Hypervisor Fully-integrated virtualization Certify-once, deploy anywhere Faster innovation Industry-leading performance and scalability Works with Intel Virtualization Technology (Intel VT) Comprehensive hardware assists Intel Extended Page Tables SR-IOV VM1 Hypervisor Standard NIC VM2 Hypervisor processes all I/O traffic with Optimized Drivers VM1 Hypervisor VM2 Intel VT-c SR-IOV Hypervisor Bypass using SR-IOV for multiple VMs per port
19 Intel Technologies for server security Isolate Intel VT & Intel TXT Protects VM isolation and provides a more secure platform launch Mf. Enforce Intel TXT Establishes trusted status foundation to control migration based on security policy Encrypt Intel AES-NI Delivers built-in encryption acceleration for better data protection VM1 VM1 VM1 VM1 VM1 VMM Policy VMM
20 Power Intel Intelligent Power Node Manager 1 Hardware-based engine to report & control server power Capabilities Monitor & track actual power usage directly from the server Cap node power and increase rack density with confidence 2 With enabled software, monitor & control server, rack and row power Automatically reduce power to maintain operations during power events or disasters Policy Limit Actual Usage Time Load balance servers to manage datacenter hot spots
21 Red hat and Intel A strong and on-going history of collaboration and innovation Exceptional support for mission-critical computing v The right choice for virtualization and cloud computing
22
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