Influence of high performance sockets on data processing intensity

Authors

  • Василь Михайлович Мельник Lutsk National Technical University 75 L’vivska str., Lutsk, Ukraine, 43018, Ukraine
  • Наталія Володимирівна Багнюк Lutsk National Technical University 75 L’vivska str., Lutsk, Ukraine, 43018, Ukraine
  • Катерина Вікторівна Мельник Lutsk National Technical University 75 L’vivska str., Lutsk, Ukraine, 43018, Ukraine

DOI:

https://doi.org/10.15587/2313-8416.2015.44380

Keywords:

Virtual Interface Architecture Sockets, high-performance network, sockets, data intensive computing, PC clusters

Abstract

Performance and limitations on the Virtual Interface Architecture Sockets (VIAS) are studied, using a component framework designed to provide runtime support for data intensive applications. The experimental results show that by reorganizing certain components, the significant performance applications improvements are achieving and performance characteristics of VIAS allow a more efficient data partitioning on the nodes

Author Biographies

Василь Михайлович Мельник, Lutsk National Technical University 75 L’vivska str., Lutsk, Ukraine, 43018

PhD-degree in physics and mathematics, Assistant professor,

Computer Engineering Department

Наталія Володимирівна Багнюк, Lutsk National Technical University 75 L’vivska str., Lutsk, Ukraine, 43018

PhD-degree in technique, Assistant professor,

Computer Engineering Department

Катерина Вікторівна Мельник, Lutsk National Technical University 75 L’vivska str., Lutsk, Ukraine, 43018

PhD-degree in technique, Assistant professor

Computer Engineering Department

References

Guerin, Roch and Schulzrinne, Henning (1999). Network quality of service, in The Grid: Blueprint for a Future Computing Infrastructure, I. Foster and C. Kesselman, eds., Morgan Kaufmann Publishers, 479–503.

Beynon, M. D., Kurc, T., Catalyurek, U., Chang, C., Sussman, A., Saltz, J. (2001). Distributed processing of very large datasets with DataCutter. Parallel Computing, 27 (11), 1457–1478. doi: 10.1016/s0167-8191(01)00099-0

Oldfield, R., Kotz, D. (2001). Armada: A parallel file system for computational. In Proceedings of CCGrid2001, 194–201. doi: 10.1109/ccgrid.2001.923193

Plale, B., Schwan, K. (2000). dQUOB: Managing Large Data Flows by Dynamic Embedded Queries. IEEE High Performance Distributed Computing (HPDC), 1–8. doi: 10.1109/hpdc.2000.868658

GigaNet Corporations. Available at: http://www.giganet.com

Boden, N. J., Cohen, D., Felderman, R. E., Kulawik, A. E., Seitz, C. L., Seizovic, J. N., Su, W. K. Myrinet: AGigabitper-Second Local Area Network. Available at: http://www.myricom.com

Frazier, H., Johnson, H. (1999). Gigabit Ethernet: from 100 to 1000Mbps. IEEE Internet Computing, 3 (1), 24–31. doi: 10.1109/4236.747317

Infiniband Trade Association. Available at: http://www.infinibandta.org

Petrini, F., Feng, W., Hoisie, A., Coll, S., Frachtenberg, E. (2001). The Quadrics Network (Qsnet): High-Performance Clustering Technology. HOT 9 Interconnects. Symposium on High Performance Interconnects, 9, 125–130. doi: 10.1109/his.2001.946704

GigaNet Corporations. cLAN for Linux: Software Users’ Guide.

Myricom Corporations. The GM Message Passing System.

Pakin, S., Lauria, M., Chien, A. (1995). High Performance Messaging on Workstations: Illinois Fast Messages (FM). In Proceedings of Supercomputing, 55. doi: 10.1145/224170.224360

Buonadonna, P., Geweke, A., Culler, D. E. (1998). BVIA: An Implementation and Analysis of Virtual Interface Architecture. In Proceedings of Supercomputing, 7–13. doi: 10.1109/sc.1998.10052

Kim, J. S., Kim, K., Jung, S. I. (2001). SOVIA: A User-level Sockets Layer over Virtual Interface Architecture. In the Proceedings of IEEE International Conference on Cluster Computing, 1–10. doi: 10.1109/clustr.2001.960006

Shah, H. V., Pu, C., Madukkarumukumana, R. S. (1999). High Performance Sockets and RPC over Virtual Interface (VI) Architecture. In the Proceedings of CANPC workshop (held in conjunction with HPCA Conference), 91–107. doi: 10.1007/10704826_7

Afework, A., Beynon, M. D., Bustamante, F., Demarzo, A., Ferreira, R., Miller, R., Silberman, M., Saltz, J., Sussman, A., Tsang, H. (1998). Digital dynamic telepathology - the Virtual Microscope. In Proceedings of the 1998 AMIA Annual Fall Symposium. American Medical Informatics Association, 1–10.

Catalyurek, U., Beynon, M. D., Chang, C., Kurc, T., Sussman, A., Saltz, J. (2003). The virtual microscope. IEEE Transactions on Information Technology in Biomedicine, 7 (4), 230–248. doi: 10.1109/titb.2004.823952

Beynon, M., Kurc, T., Sussman, A., Saltz, J. (2000). Design of a framework for data-intensive wide-area applications. In Proceedings of the 9th Heterogneous Computing Workshop (HCW2000), IEEE Computer Society Press, 116–130. doi: 10.1109/hcw.2000.843737

Balaji, P., Wu, J., Kurc, T., Catalyurek, U., Panda, D. K., Saltz, J. (2003). Impact of High Performance Sockets on Data Intensive Applications. Technical Report OSU-CISRC-1/03-TR05, The Ohio State University, Columbus, OH, January, 1–10. doi: 10.1109/hpdc.2003.1210013

Published

2015-06-21

Issue

Section

Technical Sciences