Type boolean-power/stream.
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2 changed files with 20 additions and 13 deletions
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@ -478,3 +478,12 @@ Returns the @racket[n]-th Cartesian power of the Boolean domain.
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@examples[#:eval utils-evaluator
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(boolean-power 2)
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]}
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@defproc[(boolean-power/stream [n Integer])
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(Sequenceof (Listof Boolean))]{
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Like @racket[boolean-power], but returns a stream.
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@examples[#:eval utils-evaluator
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(stream->list (boolean-power/stream 2))
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]}
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22
utils.rkt
22
utils.rkt
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@ -25,7 +25,7 @@
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update-vertices/unweighted update-graph dotit collect-by-key
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collect-by-key/sets ht-values/list->set hash->list/ordered
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multi-split-at lists-transpose in-random cartesian-product-2/stream
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cartesian-product/stream boolean-power)
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cartesian-product/stream boolean-power boolean-power/stream)
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(define-type Variable Symbol)
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(define-type (VariableMapping A) (Immutable-HashTable Variable A))
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@ -534,6 +534,13 @@
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(module+ test
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(test-case "boolean-power"
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(check-equal? (boolean-power 2) '((#f #f) (#f #t) (#t #f) (#t #t)))))
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(: boolean-power/stream (-> Integer (Sequenceof (Listof Boolean))))
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(define (boolean-power/stream n) (cartesian-product/stream (make-list n '(#f #t))))
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(module+ test
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(test-case "boolean-power/stream"
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(check-equal? (stream->list (boolean-power/stream 2)) '((#f #f) (#f #t) (#t #f) (#t #t)))))
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)
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(require 'typed)
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@ -545,14 +552,13 @@
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update-vertices/unweighted update-graph dotit collect-by-key
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collect-by-key/sets ht-values/list->set hash->list/ordered
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multi-split-at lists-transpose in-random cartesian-product-2/stream
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cartesian-product/stream boolean-power)
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cartesian-product/stream boolean-power boolean-power/stream)
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;;; Untyped section.
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(provide
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;; Functions
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(contract-out [boolean-power/stream (-> number? (stream/c (listof boolean?)))]
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[any->01 (-> any/c (or/c 0 1))]
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(contract-out [any->01 (-> any/c (or/c 0 1))]
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[01->boolean (-> (or/c 0 1) boolean?)])
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;; Contracts
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(contract-out [variable-mapping? contract?]
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@ -578,14 +584,6 @@
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;;; Boolean operations
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;;; ==================
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;;; Like boolean-power, but returns a stream whose elements the
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;;; elements of the Cartesian power.
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(define (boolean-power/stream n) (cartesian-product/stream (make-list n '(#f #t))))
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(module+ test
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(test-case "boolean-power/stream"
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(check-equal? (stream->list (boolean-power/stream 2)) '((#f #f) (#f #t) (#t #f) (#t #t)))))
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;;; Converts any non-#f value to 1 and #f to 0.
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(define (any->01 x) (if x 1 0))
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