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References of the references of the multi core processor wiki

Last updated at Posted at 2024-10-05

These are the references of ther references of the multicore processor wiki.
some differences at English wiki and Japanese wiki.

see also
multi core processor wiki reference check
https://qiita.com/kaizen_nagoya/items/fa90fc017e7f3b22d891

wiki

Multi-core_processor
https://en.wikipedia.org/wiki/Multi-core_processor

6

Duran, A (2011). "Ompss: a proposal for programming heterogeneous multi-core architectures". Parallel Processing Letters. 21 (2): 173–193. doi:10.1142/S0129626411000151. https://www.worldscientific.com/doi/epdf/10.1142/S0129626411000151
https://www.researchgate.net/publication/220439810_Ompss_a_Proposal_for_Programming_Heterogeneous_Multi-Core_Architectures
https://www.semanticscholar.org/paper/Ompss%3A-a-Proposal-for-Programming-Heterogeneous-Duran-Ayguadé/4b434f94fafc3ffc76e0c440897ccd222eaa38ac

6.1

A. EichenbergerK. O'Brien+14 authors Roland Koo Computer Science, Engineering IBM Systems Journal 2006

The goal in developing this compiler has been to enhance programmability while continuing to provide high performance, and the results of the compiler techniques, including SPE optimization, automatic code generation, single source parallelization, and partitioning are presented.
https://www.semanticscholar.org/paper/Using-advanced-compiler-technology-to-exploit-the-Eichenberger-O'Brien/03737e8bc92c135060a6fd7f7641b954d1dec4e9

references of 6.1

A Multiprocessor Architecture Combining Fine-Grained and Coarse-Grained Parallelism Strategies
D. Lilja Computer Science, Engineering Parallel Computing 1994

Tolerating latency through software-controlled data prefetching
T. Mowry Computer Science 1994

This dissertation proposes and evaluates a new compiler algorithm for inserting prefetches into code that attempts to minimize overheads by only issuing prefetched for references that are predicted to suffer cache misses, and investigates the architectural support necessary to make prefetching effective.

Simple vector microprocessors for multimedia applications
Corinna G. LeeMark G. Stoodley Computer Science, Engineering Proceedings. 31st Annual ACM/IEEE International… 1998

This paper demonstrates that a 2- way, in-order vector processor with a vector length of 64 and a vector width of 8 requires no more die area, and possibly significantly less area, than a 4-way, out-of-order superscalar processor with short vector extensions, and shows that the simple long vector processor is, on average, 2.7 times faster executing multimedia applications than the superscalars.

Exploiting superword level parallelism with multimedia instruction sets
S. LarsenSaman P. Amarasinghe
Computer Science ACM-SIGPLAN Symposium on Programming Language… 2000

This paper has developed a simple and robust compiler for detecting SLPP that targets basic blocks rather than loop nests, and is able to exploit parallelism both across loop iterations and within basic blocks.

A Vectorizing Compiler for Multimedia Extensions
N. SreramanR. Govindarajan
Computer Science
International journal of parallel programming
2004

An implementation of a vectorizing C compiler for Intel's MMX (Multimedia Extension) using the Stanford University Intermediate Format (SUIF), a public domain compiler tool, to enhance the scope for application of the subword semantics.

Automatic Intra-Register Vectorization for the Intel® Architecture
Aart J. C. BikM. GirkarPaul M. GreyXinmin Tian Computer Science International journal of parallel programming 2004
? A detailed overview of the automatic vectorization methods used by the high-performance Intel® C++/Fortran compiler together with an experimental validation of their effectiveness are provided.

Evaluating the impact of memory system performance on software prefetching and locality optimizations
Abdel-Hameed A. BadawyAneesh AggarwalD. YeungC. Tseng Computer Science International Conference on Supercomputing 2001

It is found for many applications, software prefetching outperforms locality optimizations when there is sufficient memory bandwidth, but locality optimizations outperform softwarePrefetching under bandwidth-limited conditions.

Efficient SIMD code generation for runtime alignment and length conversion
Peng WuA. EichenbergerAmy Wang Computer Science International Symposium on Code Generation and… 2005

This paper proposes a novel technique to simdize loops with runtime alignment nearly as efficiently as those with compile-time misalignment, and incorporates length conversion operations, e.g., conversions between data of different sizes, into the alignment handling framework.

An Analytical Approach to Performance/Cost Modeling of Parallel Computers
J. AndrewsC. Polychronopoulos Computer Science, Engineering J. Parallel Distributed Comput. 1991

Vectorization for SIMD architectures with alignment constraints
A. EichenbergerPeng WuK. O'Brien Computer Science ACM-SIGPLAN Symposium on Programming Language… 2004

This paper presents a compilation scheme that systematically vectorizes loops in the presence of misaligned memory references, and proposes several techniques to minimize the number of data reorganization operations generated.

6.2

Parallel Programming Models for Heterogeneous Multicore Architectures R. FerrerPieter Bellens+10 authors A. Bilas Computer Science, Engineering IEEE Micro 2010
https://www.semanticscholar.org/paper/fd8165b54841a5f9e2f125de9a7266451dddf1bd

It is found that task-based models using code and data annotations require the programming effort while sustaining nearly best performance, however, achieving this result requires both extensions of programming models to control locality and granularity and proper interoperability with platform-specific optimizations.

6.3

Adjoint sensitivity analysis of regional air quality models Adrian SanduD. DaescuG. CarmichaelT. Chai Environmental Science, Mathematics 2005
https://www.semanticscholar.org/paper/cb8ae3106d5dcceda3efe8eaef6edbff9df8d6fd

<この項は書きかけです。順次追記します。>
This article is not completed. I will add some words and/or centences in order.

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<この記事は個人の過去の経験に基づく個人の感想です。現在所属する組織、業務とは関係がありません。>
This article is an individual impression based on my individual experience. It has nothing to do with the organization or business to which I currently belong.

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