Programming Environments for Massively Parallel Distributed Systems: Working Conference of the Ifip Wg 10.3, April 25-29, 1994Karsten M. Decker, René M. Rehmann Springer Science & Business Media, 1994 - 420 lappuses The Cray Research MPP Fortran Programming Model.- Resource Optimisation via Structured Parallel Programming.- SYNAPS/3 - An Extension of C for Scientific Computations.- The Pyramid Programming System.- Intelligent Algorithm Decomposition for Parallelism with Alfer.- Symbolic Array Data Flow Analysis and Pattern Recognition in Numerical Codes.- A GUI for Parallel Code Generation.- Formal Techniques Based on Nets, Object Orientation and Reusability for Rapid Prototyping of Complex Systems.- Adaptor - A Transformation Tool for HPF Programs.- A Parallel Framework for Unstructured Grid Solvers.- A Study of Software Development for High Performance Computing.- Parallel Computational Frames: An Approach to Parallel Application Development based on Message Passing Systems.- A Knowledge-Based Scientific Parallel Programming Environment.- Parallel Distributed Algorithm Design Through Specification Transformation: The Asynchronous Vision System.- Steps Towards Reusability and Portability in Parallel Programming.- An Environment for Portable Distributed Memory Parallel Programming.- Reuse, Portability and Parallel Libraries.- Assessing the Usability of Parallel Programming Systems: The Cowichan Problems.- Experimentally Assessing the Usability of Parallel Programming Systems.- Experiences with Parallel Programming Tools.- The MPI Message Passing Interface Standard.- An Efficient Implementation of MPI.- Post: A New Postal Delivery Model.- Asynchronous Backtrackable Communications in the SLOOP Object-Oriented Language.- A Parallel I/O System for High-Performance Distributed Computing.- Language and Compiler Support for Parallel I/O.- Locality in Scheduling Models of Parallel Computation.- A Load Balancing Algorithm for Massively Parallel Systems.- Static Performance Prediction in PCASE: A Programming Environment for Parallel Supercomputers.- A Performance Tool for High-Level Parallel Programming Languages.- Implementation of a Scalable Trace Analysis Tool.- The Design of a Tool for Parallel Program Performance Analysis and Tuning.- The MPP Apprentice Performance Tool: Delivering the Performance of the Cray T3D.- Optimized Record-Replay Mechanism for RPC-based Parallel Programming.- Abstract Debugging of Distributed Applications.- Design of a Parallel Object-Oriented Linear Algebra Library.- A Library for Coarse Grain Macro-Pipelining in Distributed Memory Architectures.- An Improved Massively Parallel Implementation of Colored Petri-Net Specifications.- A Tool for Parallel System Configuration and Program Mapping based on Genetic Algorithms.- Emulating a Paragon XP/S on a Network of Workstations.- Evaluating VLIW-in-the-large.- Implementing a N-Mixed Memory Model on a Distributed Memory System.- Working Group Report: Reducing the Complexity of Parallel Software Development.- Working Group Report: Usability of Parallel Programming System.- Working Group Report: Skeletons/Templates. |
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1.–5. rezultāts no 92.
viii. lappuse
... Memory Parallel Programming Christian Clémençon , Akiyoshi Endo , Josef Fritscher , Andreas Müller , Roland Rühl and Brian J . N . Wylie . . . . . . . . 159 allel Librarichari M . Treue Chapple Reuse , Portability and Parallel Libraries ...
... Memory Parallel Programming Christian Clémençon , Akiyoshi Endo , Josef Fritscher , Andreas Müller , Roland Rühl and Brian J . N . Wylie . . . . . . . . 159 allel Librarichari M . Treue Chapple Reuse , Portability and Parallel Libraries ...
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Saturs
The Cray Research MPP Fortran Programming Model | 1 |
Resource Optimisation via Structured Parallel Programming | 13 |
SYNAPS3 An Extension of C for Scientific Computations | 27 |
The Pyramid Programming System | 37 |
Intelligent Algorithm Decomposition for Parallelism with Alfer | 47 |
Symbolic Array Data Flow Analysis and Pattern Recognition | 57 |
A GUI for Parallel Code Generation | 69 |
Formal Techniques Based on Nets Object Orientation | 81 |
The MPI Message Passing Interface Standard | 213 |
An Efficient Implementation of | 219 |
A New Postal Delivery Model | 231 |
Asynchronous Backtrackable Communications in the SLOOP | 239 |
A Parallel IO System for HighPerformance Distributed | 245 |
Language and Compiler Support for Parallel | 257 |
Locality in Scheduling Models of Parallel Computation | 265 |
A Load Balancing Algorithm for Massively Parallel Systems | 275 |
Adaptor A Transformation Tool for HPF Programs | 91 |
A Parallel Framework for Unstructured Grid Solvers | 97 |
A Study of Software Development for High Performance | 107 |
An Approach to Parallel | 117 |
A KnowledgeBased Scientific Parallel Programming | 127 |
Parallel Distributed Algorithm Design Through Specification | 139 |
Steps Towards Reusability and Portability in Parallel | 147 |
An Environment for Portable Distributed Memory Parallel | 159 |
Reuse Portability and Parallel Libraries | 171 |
Experimentally Assessing the Usability of Parallel | 193 |
Experiences with Parallel Programming Tools | 203 |
A Programming | 287 |
A Performance Tool for HighLevel Parallel Programming | 299 |
Implementation of a Scalable Trace Analysis Tool | 315 |
The Design of a Tool for Parallel Program Performance | 321 |
Delivering | 333 |
Optimized RecordReplay Mechanism for RPCbased Parallel | 347 |
Abstract Debugging of Distributed Applications | 353 |
Design of a Parallel ObjectOriented Linear Algebra Library | 359 |
Citi izdevumi - Skatīt visu
Programming Environments for Massively Parallel Distributed Systems: Working ... Karsten M. Decker,Rene M. Rehmann Ierobežota priekšskatīšana - 2013 |
Programming Environments for Massively Parallel Distributed Systems: Working ... Karsten M. Decker,Rene M. Rehmann Priekšskatījums nav pieejams - 2012 |
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abstraction algorithm allow analysis application approach architecture array assignment balancing block called communication compiler complete computation consists corresponding cost defined della delle dependencies described directive display distributed distributed memory efficient environment example execution Figure Fortran functions graph implementation instance interactions interface language load loop machine mapping matematica matrix measured memory message passing method modello modo node numeri object ogni operations optimal Parallel Computing parallel programming performance phase più possible present problem processor punto può References represents routines schedule sequential shared shows sistema solo specification statements step structure task template tempo tion trace values variables