DocumentCode :
2239173
Title :
Performance evaluation of the Cray X1 distributed shared memory architecture
Author :
Dunigan, Thomas H., Jr. ; Vetter, Jeffrey S. ; Worley, Patrick H.
Author_Institution :
Oak Ridge Nat. Lab., TN, USA
fYear :
2004
fDate :
25-27 Aug. 2004
Firstpage :
20
Lastpage :
25
Abstract :
The Cray X1 supercomputer is a distributed shared memory vector multiprocessor, scalable to 4096 processors and up to 65 terabytes of memory. The X1´s hierarchical design uses the basic building block of the multi-streaming processor (MSP), which is capable of 12.8 GF/s for 64-bit operations. The distributed shared memory (DSM) of the X1 presents a 64-bit global address space that is directly addressable from every MSP with an interconnect bandwidth per computation rate of one byte per floating point operation. Our results show that this high bandwidth and low latency for remote memory accesses translates into improved application performance on important applications, such as an Eulerian gyrokinetic-Maxwell solver. Furthermore, this architecture naturally supports programming models like the Cray shmem API, Unified Parallel C (UPC), and coarray FORTRAN (CAF), and it is imperative to select the appropriate models to exploit these features as our benchmarks demonstrate.
Keywords :
Cray computers; distributed shared memory systems; mainframes; multiprocessor interconnection networks; parallel machines; 12.8 GFLOPS; 64 bit; Cray X1 supercomputer; Cray shmem API; Eulerian gyrokinetic-Maxwell solver; Unified Parallel C; coarray FORTRAN; computation rate; distributed shared memory architecture; interconnect bandwidth; latency; multi-streaming processor; remote memory accesses; vector multiprocessor; Bandwidth; Computer architecture; Computer science; Government; Laboratories; Mathematics; Memory architecture; Parallel programming; Supercomputers; USA Councils;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
High Performance Interconnects, 2004. Proceedings. 12th Annual IEEE Symposium on
Print_ISBN :
0-7803-8686-8
Type :
conf
DOI :
10.1109/CONECT.2004.1375194
Filename :
1375194
Link To Document :
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