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high performance computing etiketine sahip kayıtlar gösteriliyor. Tüm kayıtları göster

4 Ekim 2008 Cumartesi

Intel Itanium



Itanium is the brand name for 64-bit Intel microprocessors that implement the Intel Itanium architecture (formerly called IA-64). Intel has released two processor families using the brand: the original Itanium and the Itanium 2. Starting November 1, 2007, new members of the second family are again called Itanium. The processors are marketed for use in enterprise servers and high-performance computing systems. The architecture originated at Hewlett-Packard (HP) and was later developed by HP and Intel together.



Itanium's architecture differs dramatically from the x86 architectures (and the x86-64 extensions) used in other Intel processors. The architecture is based on explicit instruction-level parallelism, with the compiler making the decisions about which instructions to execute in parallel. This approach allows the processor to execute up to six instructions per clock cycle. By contrast with other superscalar architectures, Itanium does not have elaborate hardware to keep track of instruction dependencies during parallel execution - the compiler must keep track of these at build time instead.

After a protracted development process, the first Itanium was released in 2001, and more powerful Itanium processors have been released periodically. HP produces most Itanium-based systems, but several other manufacturers have also developed systems based on Itanium. As of 2007, Itanium is the fourth-most deployed microprocessor architecture for enterprise-class systems, behind x86-64, IBM POWER, and SPARC. Intel released its newest Itanium, codenamed Montvale, in November 2007.

Intel has extensively documented the Itanium instruction set and microarchitecture, and the technical press has provided overviews. The architecture has been renamed several times during its history. HP called it PA-WideWord. Intel later called it IA-64, then Itanium Processor Architecture (IPA), before settling on Intel Itanium Architecture, but it is still widely referred to as IA-64. It is a 64-bit register-rich explicitly-parallel architecture. The base data word is 64 bits, byte-addressable. The logical address space is 2^64 bytes. The architecture implements predication, speculation, and branch prediction. It uses a hardware register renaming mechanism rather than simple register windowing for parameter passing. The same mechanism is also used to permit parallel execution of loops. Speculation, prediction, predication, and renaming are under control of the compiler: each instruction word includes extra bits for this. This approach is the distinguishing characteristic of the architecture.

The architecture implements 128 integer registers, 128 floating point registers, 64 one-bit predicates, and eight branch registers. The floating point registers are 82 bits long to preserve precision for intermediate results.

9 Kasım 2007 Cuma

NEC SX-9



NEC SX-9 Press Release

NEC SX-9 is to be the world's fastest vector supercomputer with a peak processing performance of 839 TFLOPS. The SX-9 features the world's first CPU capable of a peak vector performance of 102.4 GFLOPS per single core.

In addition to the newly developed CPU, the SX-9 combines large-scale shared memory of up to 1TB and ultra high-speed interconnects achieving speeds up to 128GB/second. Through these enhanced features, the SX-9 closes in on the PFLOPS range by realizing a processing performance of 839 TFLOPS. The SX-9 also achieves an approximate three-quarter reduction in space and power consumption over conventional models. This was achieved by applying advanced LSI design and high-density packaging technology.

In comparison to scalar servers incorporating multiple general-purpose CPUs, the vector supercomputer offers superior operating performance for high-speed scientific computation and ultra high-speed processing of large-volume data. The enhanced effectiveness of the new product will be clearly demonstrated in fields such as weather forecasting, fluid dynamics and environmental simulation, as well as simulations for as-yet-unknown materials in nanotechnology and polymeric design.

The SX-9 will be showcased at SC07 (Supercomputing 2007), the world's largest supercomputing exposition, in Reno, Nevada from November 10 - 16. It will also be on display at iExpo2007 (NEC's own personal exhibition), at Tokyo's Big Site from December 5 - 7.

The machine will be built in Kobe in western Japan and operated by public research institute Riken.

5 Kasım 2007 Pazartesi

Computer Cluster



top500.org

beowulf.org

clusterknoppix

bccd.cs.uni.edu

ParallelKnoppix

openmosix

OpenSSI

chaos

A computer cluster is a group of loosely coupled computers that work together closely so that in many respects they can be viewed as though they are a single computer. The components of a cluster are commonly, but not always, connected to each other through fast local area networks. Clusters are usually deployed to improve performance and/or availability over that provided by a single computer, while typically being much more cost-effective than single computers of comparable speed or availability.



The TOP500 organization's semiannual list of the 500 fastest computers usually includes many clusters. TOP500 is a collaboration between the University of Mannheim, the University of Tennessee, and the National Energy Research Scientific Computing Center at Lawrence Berkeley National Laboratory. As of June 2007, the top supercomputer is the Department of Energy's IBM BlueGene/L system with performance of 280.6 TFlops.

Top500:

373 Clusters (74,60 %)

107 MPPs (21,40%)

20 Constellations (4,00%)

23 Ağustos 2007 Perşembe

top500.org



top500.org


The TOP500 project ranks and details the 500 most powerful publicly-known computer systems in the world. The project was started in 1993 and publishes an updated list of the supercomputers twice a year. The project aims to provide a reliable basis for tracking and detecting trends in high-performance computing and bases rankings on HPL, a portable implementation of the High-Performance LINPACK benchmark for distributed-memory computers.

The TOP500 list is compiled by Hans Meuer of the University of Mannheim, Germany, Jack Dongarra of the University of Tennessee, Knoxville, Erich Strohmaier and Horst Simon of NERSC/Lawrence Berkeley National Laboratory.

The list is updated twice a year. The first of these updates always coincides with the International Supercomputer Conference in June, the second one is presented in November at the IEEE Super Computer Conference in the USA.

The Systems Ranked #1 Since 1993

* IBM Blue Gene/L (since 2004.11)
* NEC Earth Simulator (2002.06 - 2004.11)
* IBM ASCI White (2000.11 - 2002.06)
* Intel ASCI Red (1997.06 - 2000.11)
* Hitachi CP-PACS (1996.11 - 1997.06)
* Hitachi SR2201 (1996.06 - 1996.11)
* Fujitsu Numerical Wind Tunnel (1994.11 - 1996.06)
* Intel Paragon XP/S140 (1994.06 - 1994.11)
* Fujitsu Numerical Wind Tunnel (1993.11 - 1994.06)
* TMC CM-5 (1993.06 - 1993.11)

12 Temmuz 2007 Perşembe

ITU #239 - TOP500 List 06-2007





Istanbul Technical University (ITU) | TOP500 Supercomputing Sites


27 Haziran'da, Almanya'nın Dresden kentinde yapılan Uluslararası Süperbilgisayar Konferansı'nda açıklanan listede (http://www.top500.org/list/2007/06/300), bu yılın ilk aylarında güncellenen UYHBM'nin sistemi, 6067 GFlops'luk bir hızla 239. sıraya yerleşti.