By Rob Pooley, Jane Hillston (auth.), Jane Elizabeth Hillston BA, MSc, Peter John Beaufoy King BSc, MSc, PhD, C.Eng, MBCS, Robert John Pooley BSc, MSc (eds.)
Performance engineering is a fast-moving box the place advances in know-how suggest that new concerns continuously must be addressed. based on this, the united kingdom computing device and Telecommunications functionality Engineering workshops have been manage in 1985 to supply a beneficial chance for the dialogue and alternate of rules. they've got to that end develop into good validated because the concentration for educational and business practitioners from the united kingdom and Europe with an curiosity in functionality and modelling and research. This quantity includes the sixteen papers that have been awarded on the seventh annual workshop, held in Edinburgh in July 1991. The workshop highlighted a variety of points of parallel computing - a space that is attracting an expanding volume of curiosity - and the paintings provided in those papers is of specific curiosity because the individuals used genuine research to judge their versions. The papers hide an surprisingly wide selection of subject matters, either functional and theoretical, together with advances in queueing idea, universal functionality difficulties and their ideas, exams of accessible instruments and displays of recent theoretical effects. the result's an incredibly complete insurance of this crucial and hard box. This quantity presents an up to date evaluation of labor being performed through functionality engineers within the united kingdom and Europe and should be a useful reference publication for researchers and practitioners wishing to familiarise themselves with the advantages of functionality and analysis.
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Additional info for 7th UK Computer and Telecommunications Performance Engineering Workshop: Edinburgh, 22–23 July 1991
7 Conclusions and Future Work We have presented a modelling environm ent suitable for carrying out investigations into the general statistical prop erties of parallel programs. Experiments can'he easily defined and the corresponding programs generated in a mann er that is independent 39 both of the characteristics of the programs being explored and the domain in which they are to be modelled. Th e user has total control of how any programs generated are to be modelled . Modelling engines for simulating statie regular and time-varying parallel programs in th e MIMD domain have been presented.
Th e user has total control of how any programs generated are to be modelled . Modelling engines for simulating statie regular and time-varying parallel programs in th e MIMD domain have been presented. Future work inc1udes investigation into placement strategies through the use of the experiment generator on various types of parall el programs. We also intend to carry out a compari son and analysis of process migrati on strategies for tim evarying parallel progr ams in order to est ablish any relatio nships between program st ructure and migratio n st rate gy performance.
Lines 3-8 define the graph parameters. First of all the structure of the program graph is specified. In our example the Redfield random regular graph generation 30 Generation Teehnique Redfieldll] Random Regular Keyword Redfield RRgen Degree Range 3-5 0-30 Node Range 0-160 0-160 Tabl e 1: Random Graph Generation Strategies technique is selected, the full range of options are presented in Tabl e 1. Th en th e degree and numb er of nodes are specified. Th e number of nodes will be varied between 12 and 24 in steps of 4 th ereby allowing a set of program graphs to be investigated.
7th UK Computer and Telecommunications Performance Engineering Workshop: Edinburgh, 22–23 July 1991 by Rob Pooley, Jane Hillston (auth.), Jane Elizabeth Hillston BA, MSc, Peter John Beaufoy King BSc, MSc, PhD, C.Eng, MBCS, Robert John Pooley BSc, MSc (eds.)