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Titlebook: Arrays, Functional Languages, and Parallel Systems; Lenore M. R. Mullin,Michael Jenkins,Guang Gao Book 1991 Springer Science+Business Medi

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Rapid Energy Growth in Parallel Flows,d ., targeted at the Cray X-MP. and the Thinking Machines Connection Machine CM2.. . used a number of advanced features of APL, including recursive data structures (boxed arrays) and the rank adverb, which considerably simplified the effort required to produce the compiler. The use of APL allowed th
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Explosive Percolation in Random Networkse-scale scientific applications. Since arrays are an indispensable data structure for such applications, the designers of Sisal included arrays and a robust set of array operations in the language definition. In this paper, we review and evaluate those design decisions in light of the first Sisal co
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Explosive Percolation in Random Networkse for work in language definition and implementation. This paper discusses some of the fundamental design decisions that underlie the language and its implementations. Falafel has drawn ideas from array-based programming languages (APL [.] and Nial [.]_[.]), functional programming languages (Miranda
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Gilbert Ford Kinney,Kenneth Judson Grahamnt implementation of these operations remains a considerable problem. Conceptually, they must create new result objects rather than update existing onesin order to keep functional computations free of side effects. Copying repeatedly large arrays which need merely be restructured without changing th
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Explosive Welding, Forming and Compaction and multivalent. They correspond to univalent (one-dimensional) and multivalent (many-dimensional) arrays. Arrays are viewed as invariants of transformations of data. Genotype is universal, being a language that describes invariants of transformations of data. Genotype is a pure functional language
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