Functional and logic programming : 10th international symposium, FLOPS 2010, Sendai, Japan, April 19-21, 2010 : proceedings / Matthias Blume, Naoki Kobayashi, German Vidal (eds.).
Material type:
TextPublisher number: 80012138Series: Lecture notes in computer science ; 6009. | LNCS sublibrary. SL 1, Theoretical computer science and general issues.Publication details: Berlin ; New York : Springer, ©2010.Description: 1 online resource (xi, 353 pages) : illustrationsContent type: - text
- computer
- online resource
- 9783642122514
- 3642122515
- 9783642122507
- 3642122507
- 005.1/14 22
- QA76.62 .F56 2010
- QA 76.62
- 54.51
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eBook
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e-Library | eBook LNCS | Available |
Includes bibliographical references and index.
Print version record.
Invited Talks -- Beluga: Programming with Dependent Types, Contextual Data, and Contexts -- Using Static Analysis to Detect Type Errors and Concurrency Defects in Erlang Programs -- Solving Constraint Satisfaction Problems with SAT Technology -- Refereed Papers -- A Church-Style Intermediate Language for ML F -- ??: Dependent Types without the Sugar -- Haskell Type Constraints Unleashed -- A Functional Framework for Result Checking -- Tag-Free Combinators for Binding-Time Polymorphic Program Generation -- Code Generation via Higher-Order Rewrite Systems -- A Complete Axiomatization of Strict Equality -- Standardization and Böhm Trees for ??-Calculus -- An Integrated Distance for Atoms -- A Pearl on SAT Solving in Prolog -- Automatically Generating Counterexamples to Naive Free Theorems -- Applying Constraint Logic Programming to SQL Test Case Generation -- Internal Normalization, Compilation and Decompilation for System -- Towards Normalization by Evaluation for the ??-Calculus of Constructions -- Defunctionalized Interpreters for Call-by-Need Evaluation -- Complexity Analysis by Graph Rewriting -- Least Upper Bounds on the Size of Church-Rosser Diagrams in Term Rewriting and ?-Calculus -- Proving Injectivity of Functions via Program Inversion in Term Rewriting -- Delimited Control in OCaml, Abstractly and Concretely: System Description -- Automatic Parallelization of Recursive Functions Using Quantifier Elimination -- A Skeleton for Distributed Work Pools in Eden.