Created
October 20, 2011 02:41
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The smart way and the dumb way
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#lang racket | |
(require redex/reduction-semantics) | |
(define-language pre-C | |
(CON X | |
nat? | |
(or/c CON CON) | |
(rec/c X CON) | |
(cons/c CON CON) | |
(CON -> CON)) | |
(X variable-not-otherwise-mentioned)) | |
(define-metafunction pre-C | |
flat? : CON -> #t or #f | |
[(flat? nat?) #t] | |
[(flat? (or/c CON_1 CON_2)) | |
,(and (term (flat? CON_1)) | |
(term (flat? CON_2)))] | |
[(flat? (rec/c X CON)) | |
(flat? (subst (subst nat? X CON) X CON))] | |
[(flat? (cons/c CON_1 CON_2)) | |
,(and (term (flat? CON_1)) | |
(term (flat? CON_2)))] | |
[(flat? (CON_1 -> CON_2)) #f]) | |
(define-metafunction pre-C | |
subst : CON X CON -> CON | |
[(subst CON X nat?) nat?] | |
[(subst CON X X) CON] | |
[(subst CON X X_1) X_1] | |
[(subst CON X (or/c CON_1 CON_2)) | |
(or/c (subst CON X CON_1) | |
(subst CON X CON_2))] | |
[(subst CON X (rec/c X CON_1)) (rec/c X CON_1)] | |
[(subst CON X (rec/c X_1 CON_1)) (rec/c X_1 (subst CON X CON_1))] | |
[(subst CON X (cons/c CON_1 CON_2)) | |
(cons/c (subst CON X CON_1) | |
(subst CON X CON_2))] | |
[(subst CON X (CON_1 -> CON_2)) | |
((subst CON X CON_1) -> (subst CON X CON_2))]) | |
(define-language C | |
(CON X | |
nat? | |
(or/c CON CON) | |
(rec/c X CON) | |
(cons/c CON CON) | |
(CON -> CON)) | |
(X variable) | |
(FLAT (side-condition (name x CON) | |
(redex-match pre-C #t (term (flat? x))))) | |
(FLAT-DUMB (side-condition (name x CON) | |
(no-arrow? (term x))))) | |
(define (no-arrow? x) | |
(match x | |
[(list-no-order '-> _ ...) #f] | |
[(list y ...) (andmap no-arrow? y)] | |
[_ #t])) | |
(define f? (redex-match C FLAT)) | |
(define h? (negate f?)) | |
(test-predicate h? '(rec/c X (nat? -> nat?))) | |
(test-predicate h? '(rec/c X (nat? -> X))) | |
(test-predicate h? '(rec/c X (X -> X))) | |
(test-predicate h? '(rec/c X (cons/c X (X -> X)))) | |
(test-predicate f? '(rec/c X (or/c (cons/c X X) (cons/c X X)))) | |
(test-predicate f? '(rec/c X (rec/c Y (or/c (cons/c X Y) (cons/c Y X))))) | |
(define fd? (redex-match C FLAT-DUMB)) | |
(define hd? (negate fd?)) | |
(test-predicate hd? '(rec/c X (nat? -> nat?))) | |
(test-predicate hd? '(rec/c X (nat? -> X))) | |
(test-predicate hd? '(rec/c X (X -> X))) | |
(test-predicate hd? '(rec/c X (cons/c X (X -> X)))) | |
(test-predicate fd? '(rec/c X (or/c (cons/c X X) (cons/c X X)))) | |
(test-predicate fd? '(rec/c X (rec/c Y (or/c (cons/c X Y) (cons/c Y X))))) | |
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