Languages and compilers for parallel computing : 8th international workshop, LCPC ½95, Columbus, Ohio, USA, August 1995 : proceedings

This book presents the refereed proceedings of the Eighth Annual Workshop on Languages and Compilers for Parallel Computing, held in Columbus, Ohio in August 1995. The 38 full revised papers presented were carefully selected for inclusion in the proceedings and reflect the state of the art of resear...

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Autor corporatiu: International Workshop on languages and compilers for parallel computing :Colombus, Ohio
Altres autors: Huang, Chua-Huang (Director editorial), Sadayappan, Ponnuswamy, 19..- (Director editorial), Banerjee, Utpal, 1942- (Director editorial)
Format: Livre numérique
Idioma:Anglais
Publicat: Berlin [etc.] : Springer [20..].
Cham : Springer Nature
Col·lecció:Lecture notes in computer science 1033
Matèries:
Accés en línia:Accès sur la plateforme de l'éditeur
Accès sur la plateforme Istex
Accès Université d'Orléans
Accès INSA CVL
Nota: Archives Springer e-books (Licence nationale)
Archives Springer e-books (Licence nationale)
Autres localisations: Voir dans le Sudoc
Edition sous un autre format:• Languages and compilers for parallel computing, 8th international workshop, LCPC ½95, Columbus, Ohio, USA, August 1995, proceedings, C.- H. Huang, P. Sadayappan, U. Banerjee ... [et al.] (eds.), 1996, Berlin, Springer, 1 vol. (XIV-606 p.), Lecture notes in computer science, 3-540-60765-X
• Languages and Compilers for Parallel Computing, Texte imprimé, 9783662170939
Taula de continguts:
  • Array data flow analysis for load-store optimizations in superscalar architectures
  • An experimental study of an ILP-based exact solution method for software pipelining
  • Insertion scheduling: An alternative to list scheduling for modulo schedulers
  • Interprocedural array region analyses
  • Interprocedural analysis for parallelization
  • Interprocedural array data-flow analysis for cache coherence
  • An interprocedural parallelizing compiler and its support for memory hierarchy research
  • V-cal: a calculus for the compilation of data parallel languages
  • Transitive closure of infinite graphs and its applications
  • Demand-driven, symbolic range propagation
  • Optimizing Fortran 90 shift operations on distributed-memory multicomputers
  • A loop parallelization algorithm for HPF compilers
  • Fast address sequence generation for data-parallel programs using integer lattices
  • Compiling array statements for efficient execution on distributed-memory machines: Two-level mappings
  • A communication backend for parallel language compilers
  • Parallel simulation of data parallel programs
  • A parallel processing support library based on synchronized aggregate communication
  • FALCON: A MATLAB interactive restructuring compiler
  • A simple mechanism for improving the accuracy and efficiency of instruction-level disambiguation
  • Hoisting branch conditions improving super-scalar processor performance
  • Integer loop code generation for VLIW
  • Dependence analysis in parallel loops with i +- k subscripts
  • Piecewise execution of nested data-parallel programs
  • Recovering logical structures of data
  • Efficient distribution analysis via graph contraction
  • Automatic selection of dynamic data partitioning schemes for distributed-memory multicomputers
  • Data redistribution in an automatic datadistribution tool
  • General purpose optimization technology
  • Compiler architectures for heterogeneous systems
  • Virtual topologies: A new concurrency abstraction for high-level parallel languages
  • Interprocedural data flow based optimizations for compilation of irregular problems
  • Automatic parallelization of the conjugate gradient algorithm
  • Annotations for a sparse compiler
  • Connection analysis: A practical interprocedural heap analysis for C
  • Language and run-time support for network parallel computing
  • Agents: An undistorted representation of problem structure
  • Type directed cloning for Object-Oriented programs
  • The performance impact of granularity control and functional parallelism.