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Dive into the research topics where Naresh Nayar is active.

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Featured researches published by Naresh Nayar.


Ibm Journal of Research and Development | 2005

Advanced virtualization capabilities of POWER5 systems

William Joseph Armstrong; Richard Louis Arndt; David C. Boutcher; Robert G. Kovacs; David Larson; Kyle Lucke; Naresh Nayar; Randal C. Swanberg

IBM POWER5TM systems combine enhancements in the IBM PowerPCTM processor architecture with greatly enhanced firmware to significantly increase the virtualization capabilities of IBM POWERTM servers. The POWER hypervisor, the basis of the IBM Virtualization EngineTM technologies on POWER5 systems, delivers leading-edge mainframe virtualization technologies to the UNIX® marketplace. In addition to being able to create computing-intensive partitions with dedicated resources (processors, memory, and I/O adapters), customers can harness idle processor capacity to configure micropartitions with virtualized resources in order to consolidate many AIXTM, i5/OSTM, and Linux® servers onto a single platform. The POWER hypervisor provides support for virtualized processors, an IEEE virtual local area network (VLAN)- compatible virtual Ethernet switch, virtual small computer system interface (VSCSI) adapters, and virtual consoles. Many of these features are dependent upon, or take advantage of the new facilities provided in the POWER5 processor, including the hypervisor decrementer, a fast page mover, and simultaneous multithreading support. The technology behind the virtualization capabilities that are available on the POWER5 servers, enabling customers to better utilize the industry-leading computing capacity of the POWER5 processor, is discussed in this paper.


Ibm Journal of Research and Development | 2015

Advanced features in IBM POWER8 systems

Balaram Sinharoy; Randal C. Swanberg; Naresh Nayar; Bruce Mealey; Jeffrey A. Stuecheli; Berni Schiefer; Jens Leenstra; J. Jann; Philipp Oehler; David Stephen Levitan; Susan E. Eisen; D. Sanner; Thomas Pflueger; Cedric Lichtenau; William E. Hall; T. Block

The IBM POWER8™ processor includes many innovative features that enable efficient and flexible computing, along with enhancements in virtualization, security, and serviceability. These features benefit application performance, and big data and analytics computing, as well as the cloud environment. Notable features include the capabilities to dynamically and efficiently change the number of threads active on a processor, enhancing application performance via integer vector operations, encryption accelerations, and reference history arrays. Also notable is improved virtual machine density (supporting multiple simultaneous partitions per core and providing fine-grain power management), allowing continuous monitoring of system performance as well as significantly enhanced system RAS (reliability, availability, and serviceability) and security. Each of these features is technologically complex and advanced. This paper provides an in-depth description of some of these features and their exploitation through systems software and middleware. These features will continue to bring value to the system-of-record workloads in the enterprise. They also make POWER8 systems well-suited for serving the needs of newer workloads such as big data and analytics, while efficiently supporting deployment in cloud environments.


Ibm Journal of Research and Development | 2007

IBM POWER6 partition mobility: moving virtual servers seamlessly between physical systems

William Joseph Armstrong; Richard Louis Arndt; Timothy R. Marchini; Naresh Nayar; Wolfram Sauer

This paper presents the IBM Power Architecture™ extension for enhanced virtualization that is first implemented in the POWER6™ processor. Virtual partition memory enables all of the memory of a virtual server running in a logical partition to be made virtual by the POWER Hypervisor™ firmware. The Processor Compatibility register allows backward compatibility by providing a mode in which a POWER6 processor behaves like a POWER5™ processor. Enhancements to the timebase facility enable updates to the virtual timebase of a logical partition while maintaining consistency with other partitions in the system. These fundamental enhancements are explained and their role in implementing the new partition mobility junction is described. Partition mobility allows the seamless migration of virtual servers from one physical POWER6 microprocessor-based system to another.


Archive | 2007

System and Method for Determining Firmware Compatibility for Migrating Logical Partitions

William Joseph Armstrong; Robert J. Battista; David A. Larson; Naresh Nayar; Jonathan Ross Van Niewaal


Archive | 2006

Managing computer memory in a computing environment with dynamic logical partitioning

William Joseph Armstrong; Richard Louis Arndt; Michael Joseph Corrigan; David R. Engebretsen; Timothy R. Marchini; Naresh Nayar


Archive | 2007

ENTITLEMENT MANAGEMENT SYSTEM

William Joseph Armstrong; Christopher Guy Hales; Naresh Nayar


Archive | 2006

METHOD FOR EFFICIENT VIRTUAL TIME BASE OF SCALABLE MULTI-PROCESSOR COMPUTERS, EQUIPMENT, AND PROGRAM

William Joseph Armstrong; Michael Joseph Corrigan; Naresh Nayar; Scott Barnett Swaney; ウィリアム・ジョセフ・アームストロング; スコット、バーネット、スワニー; ナレーシュ、ナーヤル; マイケル、ジェイ、コリガン


Archive | 2004

Selective generation of asynchronous report about compartment managing operation for logically compartmentalized computer

William Joseph Armstrong; Naresh Nayar; Gregory Michael Nordstrom; Timothy Joseph Torzewski; ウィリアム・ジョセフ・アームストロング; グレゴリー・マイケル・ノルドストローム; ティモシー・ジョセフ・トルツェフスキー; ナレシュ・ナイヤル


Archive | 2014

Bereitstellen logischer Partitionen mit einer ausschließlichen Nutzung eines Prozessorkerns wiedergebenden hardware-strang-spezifischen Information

Naresh Nayar; Bruce Mealey; Giles R. Frazier


Archive | 2009

Interfacage de partitions logiques multiples avec un dispositif d'entree-sortie d'autovirtualisation

William Joseph Armstrong; Charles S. Graham; Sandy Kao; Kyle Lucke; Naresh Nayar; Michal Ostrowski; Renato J. Recio; Randal C. Swanberg

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