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* Peter B. Andrews: An Introduction to Mathematical Logic and Type theory: To Truth through Proof, Springer 2002 (Chapter 5: Type Theory) | * Peter B. Andrews: An Introduction to Mathematical Logic and Type theory: To Truth through Proof, Springer 2002 (Chapter 5: Type Theory) | ||
* [[http://imps.mcmaster.ca/doc/seven-virtues.pdf|The Seven Virtues of Simple Type Theory]] | * [[http://imps.mcmaster.ca/doc/seven-virtues.pdf|The Seven Virtues of Simple Type Theory]] | ||
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[[Theorems as Abstract Data Types]] | [[Theorems as Abstract Data Types]] | ||
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- | [[Concrete Example in Scala]] | ||
[[Proof and Code Generation in LCF Systems]] | [[Proof and Code Generation in LCF Systems]] | ||
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* Logic and Computation: Interactive Proof with Cambridge LCF | * Logic and Computation: Interactive Proof with Cambridge LCF | ||
- | ===== Overview of Interactive Provers ===== | + | ===== Some Interactive Provers ===== |
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+ | [[http://hol.sourceforge.net/|HOL]] - use directly ML | ||
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+ | [[http://www.cl.cam.ac.uk/~jrh13/hol-light/|HOL Light]] - compact version, written in OCaml | ||
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+ | [[http://www.cl.cam.ac.uk/research/hvg/Isabelle/|Isabelle]] - popular, ML part largely hidden | ||
- | HOL, Isabelle | + | [[http://pvs.csl.sri.com/|PVS]] - automation through decision procedures |
- | PVS - decision procedures | + | [[http://coq.inria.fr/|Coq]] - was less automated, now catching up; more complex logic |
- | Coq, NuPRL - more complex type theory, constructive mathematics | + | [[http://www.cs.cornell.edu/Info/Projects/Nuprl/|NuPRL]] - more complex type theory, constructive mathematics |
- | ACL2 - emphasis on executable functions, quantifier-free statements, automated induction, pioneering industrial-scale case studies | + | [[http://www.cs.utexas.edu/~moore/acl2/|ACL2]] - emphasis on executable functions, quantifier-free statements, automated induction, pioneering industrial-scale case studies |