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Strictness analysis

In computer science, strictness analysis refers to any algorithm used to prove that a function in a non-strict functional programming language is strict in one or more of its arguments. This information is useful to compilers because strict functions can be compiled more efficiently. Thus, if a function is proven to be strict (using strictness analysis)…

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Approaches to strictness analysis

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Strictness analysis

Nodes19
Edges18
Triples12
Avg. degree1.89
Density0.105263
Components1

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Strictness analysis

Top relations

related to Projection-based strictness analysis · 6
Strictness analysis → By, GHC's, Hughes, Philip Wadler, Projection-based, There
related to Demand analysis · 3
Strictness analysis → GHC, In, The Glasgow Haskell Compiler
related to Forward abstract interpretation · 3
Strictness analysis → Alan Mycroft, In, Strictness

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Important terminology

strictness analysis strict function argument program demand divergence abstract interpretation non-strict arguments displaystyle one functions compiled thus enclosing diverge used

Entity relationships Subject–Predicate–Object triples

SubjectPredicateObjectConfidenceSrc
Strictness analysisrelated to Demand analysisThe Glasgow Haskell Compiler0.60section
Strictness analysisrelated to Demand analysisGHC0.60section
Strictness analysisrelated to Demand analysisIn0.60section
Strictness analysisrelated to Forward abstract interpretationStrictness0.60section
Strictness analysisrelated to Forward abstract interpretationIn0.60section
Strictness analysisrelated to Forward abstract interpretationAlan Mycroft0.60section
Strictness analysisrelated to Projection-based strictness analysisProjection-based0.60section
Strictness analysisrelated to Projection-based strictness analysisPhilip Wadler0.60section
Strictness analysisrelated to Projection-based strictness analysisHughes0.60section
Strictness analysisrelated to Projection-based strictness analysisBy0.60section
Strictness analysisrelated to Projection-based strictness analysisGHC's0.60section
Strictness analysisrelated to Projection-based strictness analysisThere0.60section

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