APPARC deliverables

These APPARC related files are maintained by Lex Wolters.
PCA2
F.X. Roux
Structural Analysis Problems with Direct Solvers
PCA3a
P. d'Anfray, F. Rogier, and T. Priol
Particle Methods for Boltzmann Equations with Virtual Shared Memory
PCA3b
L. Wolters, G. Cats, and N. Gustafsson
A Massively Parallel Implementation of a Numerical Weather Forecast Model
PCA4
E. Briere de l'Isle, P. Leca, and P. Weidner
The APPARC Test Matrices
PCA5
R. Knecht and G.A. Kohring
Parallelizing Distinct Element Simulations
PaA2
S.M. Balle, P.C. Hansen, and N.J. Higman
A Strassen-Type Matrix Inversion Algorithm
PaA3a
A. Basermann, P. Weidner, P.C. Hansen, T. Ostromsky, and Z. Zlatev
Alternative Linear Algebra Routines
PaA3b
A. Basermann, C. Schelthoff, and P. Weidner
Optimized Kernels for the Solution of Partial Differential Equations on Distributed Memory Machines
PaA4
F.-X. Roux and J.P. Geschiere
Domain Decomposition Techniques for Solving Linear Systems
PaA5a
A. Basermann, M. Buecker, P.C. Hansen, R.M. Larsen, and P. Weidner
Parallel Iterative Methods for Nonsymmetric Large-Scale Problems
PaA5b
A.C.N. van Duin, H.A.G. Wijshoff, P.C. Hansen, T.T. Ostromsky, and Z.I. Zlatev
Improving the Numerical Stability and the Performance of a Parallel Sparse Solver
PaA6a
Z.I. Zlatev, J. Wasniewski, P.C. Hansen, and T.T. Ostromsky
PARASPAR: A Package for the Solution of Large and Sparse Systems of Linear Algebraic Equations, on Parallel Computers with Shared Memory
PaA6b
A.C.N. van Duin and H.A.G. Wijshoff
ILU preconditioning with a fill drop strategy based on strongly connected components
PSE2
T.S. Papatheodorou, G.E. Kalamaras, K.N. Pantazopoulos, and E.D. Polychronopoulos
Object Oriented Knowledge Frameworks and Machine Independent Environments
PSE4
T.S. Papatheodorou
Intermediate Language/Compiler
PSE6a
R. van Engelen, L. Wolters, and G. Cats
Ctadel: A Generator of Efficient Code for PDE-based Scientific Applications
PSE6b
T.S. Papatheodorou, M.D. Koulisianis, E.D. Polychronopoulos, D.S. Nikolopoulos, and O.I. Pyrovolakis
Problem Solving Environment and Demonstrator of Graphical User Interfaces and a Very High Level Language
PME1
A.D. Malony and H.A.G. Wijshoff
Perturbation Analysis as a Basis for Parallel System Performance Evaluation
PME2
O. Temam, C. Fricker, E. Granston, and W. Jalby
Cache Performance Analysis
PME3
O. Temam, C. Fricker, and W. Jalby
Cache Interference Phenomena
PME4a
D.F. Snelling, S. Hooton and J. Gurd
Architectural Simulation
PME4b
O. Temam
Performance Analysis of Multiprocessors Memory System
PME5
E. van der Deijl, O. Temam, E. Granston, and G. Kanbier
The Cache Visualization Tool
HLL1
R.H. Perrott and Adib Zarea-Aliabadi
Review of Existing Language Proposals for Programming Distributed Memory MIMD Systems
HLL2
R.H. Perrott and Adib Zarea-Aliabadi
Analysis of Applications
HLL3
R.H. Perrot and A. Zarea-Aliabadi
Identification of Abstractions
HLL4
R.H. Perrot and A. Zarea-Aliabad
Parallel Computational Models and High Level Programming Abstractions
HLL5
R.H. Perrot and A. Zarea-Aliabad
Incorporation of Abstractions Within Current Approaches - Using Fortran 90 As A Binding Parallel Programming Model
HLL6
R.H. Perrot and A. Zarea-Aliabad
Implementation Techniques
CoD1
C. Eisenbeis, O. Temam, and H. Wijshoff
Exact Quantitative Dependence Analysis
CoD2
F. Bodin, C. Eisenbeis, W. Jalby, T. Montaut, P. Rabain, and D. Windheiser
Symbolic Analysis of Data Locality
CoD3
F. Bodin, W. Jalby, A. Seznec, M. O'Boyle and G. Hedayat
Management of Data Transfers/Data Allocation
CoD4
H. Wijshoff, A. Bik, P. Knijnenburg, J. Torres, and E. Ayguade
Advanced Compiler Transformations
CoD5a
F. Bodin, L. Kervella, and M. O'Boyle
Restructuring Compilers for Data Locality Optimization and Handling Complex Data Structures
CoD6
R. Berrendorf and M. Gerndt
Compiling Data Parallel Languages for Shared Virtual Memory Systems
OpS2
R. Berrendorf, M. Gerndt, Z. Lahjomri, T. Priol, and P. d'Anfray
Evaluation of Numerical Applications running with Shared Virtual Memory
OpS4a
S. Girona, T. Cortes, J. Labarta, V. Pillet, A. Perez, and E. Lopez
Resource Management Policies
OpS4b
R. Berrendorf and T. Priol
Performance Analysis Tools for SVM Architectures
OpS6
R.W. Ford, A.P. Nisbet, J.M. Bull, M. Hahad, J. Erhel, and T. Priol
Compile Time and Run Time Analysis for Managing Shared Virtual Memory
HwA1
M. Valero, T. Lang, M. Peiron, Ed. Ayguade, J.M. Llaberia, and JJ. Navarro
Reduced Memory Latency for Regular Data Access
HwA2
Montse Peiron, Mateo Valero, Eduard Ayguade, and Tomas Lang
Special Memory Interleaving Schemes
HwA3
D.F. Snelling, A. Niessen, W. Jalby, and M. Valero
In Memory Computation
HwA4
J.J. Navarro, T. Lang, T. Juan, J. Gallardo, E. Garcia, O. Temam, C. Fricker, Y. Jegou, W. Jalby, and D. Snelling
Memory Organization and Managements for Linear Algebra Computations
HwA5a
D.F. Snelling
Architectural Support for Sparse Matching
HwA5b
E. Garcia, J.L. Larriba--Pey, J.R. Herrero, T. Juan, J.J. Navarro, and T. Lang
Multilevel Blocking and Prefetching for Linear Algebra Computations
HwA6
D.F. Snelling, O. Temam, N. Drach, T. Juan, D. Royo, J.J. Navarro, A. Gonzalez, C. Aliagas, and M. Valero
Advanced Caching Mechanisms

This index was generated from a master file in bib format.


Last modified on May 13, 1996 by J.H.M.Dassen. (C) 1995 by Leiden University