networks: Use streams for enumerating Boolean functions.
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2 changed files with 18 additions and 23 deletions
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@ -219,7 +219,7 @@
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[negation/list (table->function/list '((#t #f) (#f #t)))])
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(check-true (negation #f)) (check-false (negation #t))
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(check-true (negation/list '(#f))) (check-false (negation/list '(#t))))
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(let ([f1 (car (enumerate-boolean-functions 1))]
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[f1/list (car (enumerate-boolean-functions/list 1))])
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(let ([f1 (stream-first (enumerate-boolean-functions 1))]
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[f1/list (stream-first (enumerate-boolean-functions/list 1))])
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(check-false (f1 #f)) (check-false (f1 #t))
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(check-false (f1/list '(#f))) (check-false (f1/list '(#t)))))
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37
networks.rkt
37
networks.rkt
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@ -61,9 +61,9 @@
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[tabulate/boolean (-> procedure-fixed-arity? (listof (listof boolean?)))]
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[table->function (-> (listof (*list/c any/c any/c)) procedure?)]
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[table->function/list (-> (listof (*list/c any/c any/c)) procedure?)]
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[enumerate-boolean-tables (-> number? (listof (listof (*list/c any/c any/c))))]
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[enumerate-boolean-functions (-> number? (listof procedure?))]
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[enumerate-boolean-functions/list (-> number? (listof procedure?))])
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[enumerate-boolean-tables (-> number? (stream/c (listof (*list/c any/c any/c))))]
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[enumerate-boolean-functions (-> number? (stream/c procedure?))]
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[enumerate-boolean-functions/list (-> number? (stream/c procedure?))])
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;; Predicates
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(contract-out [variable? (-> any/c boolean?)]
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[state? (-> any/c boolean?)]
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@ -442,33 +442,28 @@
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;;; Returns the n-th Cartesian power of the Boolean domain: {0,1}^n.
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(define (boolean-power-n n) (apply cartesian-product (make-list n '(#f #t))))
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;;; Enumerates the truth tables of all Boolean functions of a given
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;;; arity.
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;;; Returns the stream of the truth tables of all Boolean functions of
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;;; a given arity.
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;;;
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;;; /!\ There are 2^(2^n) Boolean functions of arity n.
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;;;
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;;; TODO: Think about making this function lazy.
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;;; There are 2^(2^n) Boolean functions of arity n.
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(define (enumerate-boolean-tables n)
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(let ([inputs (boolean-power-n n)]
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[outputs (boolean-power-n (expt 2 n))])
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(for/list ([out outputs])
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(for/stream ([out outputs])
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(for/list ([in inputs] [o out])
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(append in (list o))))))
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;;; Enumerates all Boolean functions of a given arity.
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;;; Returns the stream of all Boolean functions of a given arity.
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;;;
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;;; /!\ There are 2^(2^n) Boolean functions of arity n.
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;;;
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;;; TODO: Think about making this function lazy.
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;;; There are 2^(2^n) Boolean functions of arity n.
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(define (enumerate-boolean-functions n)
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(map table->function (enumerate-boolean-tables n)))
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(stream-map table->function (enumerate-boolean-tables n)))
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;;; Enumerates all Boolean functions of a given arity. As different
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;;; from the functions returned by enumerate-boolean-functions, the
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;;; functions take lists of arguments instead of n arguments.
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;;; Returns the stream of all Boolean functions of a given arity. As
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;;; different from the functions returned by
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;;; enumerate-boolean-functions, the functions take lists of arguments
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;;; instead of n arguments.
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;;;
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;;; /!\ There are 2^(2^n) Boolean functions of arity n.
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;;;
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;;; TODO: Think about making this function lazy.
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;;; There are 2^(2^n) Boolean functions of arity n.
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(define (enumerate-boolean-functions/list n)
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(map table->function/list (enumerate-boolean-tables n)))
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(stream-map table->function/list (enumerate-boolean-tables n)))
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