Type make-same-domains, make-boolean-domains, make-boolean-network.
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2 changed files with 77 additions and 33 deletions
71
networks.rkt
71
networks.rkt
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@ -9,7 +9,9 @@
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(provide
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State UpdateFunction DomainMapping
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(struct-out network) Network)
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(struct-out network) Network
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make-same-domains make-boolean-domains make-boolean-network)
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(define-type (State a) (VariableMapping a))
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(define-type (UpdateFunction a) (-> (State a) a))
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@ -19,6 +21,40 @@
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[domains : (DomainMapping a)])
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#:transparent
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#:type-name Network)
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(: make-same-domains (All (a) (-> (Listof Variable) (Listof a)
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(DomainMapping a))))
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(define (make-same-domains vars domain)
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(for/hash ([var vars]) : (DomainMapping a)
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(values var domain)))
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(module+ test
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(test-case "make-same-domains"
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(check-equal? (make-same-domains '(a b) '(1 2))
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#hash((a . (1 2)) (b . (1 2))))))
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(: make-boolean-domains (-> (Listof Variable) (DomainMapping Boolean)))
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(define (make-boolean-domains vars)
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(make-same-domains vars '(#f #t)))
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(module+ test
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(test-case "make-boolean-domains"
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(check-equal? (make-boolean-domains '(a b))
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#hash((a . (#f #t)) (b . (#f #t))))))
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(: make-boolean-network (-> (VariableMapping (UpdateFunction Boolean))
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(Network Boolean)))
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(define (make-boolean-network funcs)
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(network funcs (make-boolean-domains (hash-keys funcs))))
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(module+ test
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(test-case "make-boolean-network"
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(define f1 (λ ([s : (State Boolean)])
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(and (hash-ref s 'x1) (not (hash-ref s 'x2)))))
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(define f2 (λ ([s : (State Boolean)])
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(not (hash-ref s 'x2))))
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(define bn (make-boolean-network (hash 'x1 f1 'x2 f2)))
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(check-equal? (network-domains bn) (hash 'x1 '(#f #t) 'x2 '(#f #t)))))
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)
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(require 'typed)
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@ -39,8 +75,7 @@
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[struct network-form ([forms variable-mapping?]
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[domains domain-mapping/c])])
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;; Functions
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(contract-out [make-boolean-network (-> (hash/c variable? procedure?) network?)]
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[make-01-network (-> (hash/c variable? procedure?) network?)]
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(contract-out [make-01-network (-> (hash/c variable? procedure?) network?)]
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[update (-> network? state? (set/c variable? #:kind 'dont-care) state?)]
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[make-state (-> (listof (cons/c symbol? any/c)) state?)]
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[make-state-booleanize (-> (listof (cons/c symbol? (or/c 0 1))) state?)]
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@ -58,8 +93,6 @@
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[build-signed-interaction-graph (-> network? graph?)]
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[build-signed-interaction-graph/form (-> network-form? graph?)]
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[build-all-states (-> domain-mapping/c (listof state?))]
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[make-same-domains (-> (listof variable?) generic-set? domain-mapping/c)]
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[make-boolean-domains (-> (listof variable?) (hash/c variable? (list/c #f #t)))]
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[make-01-domains (-> (listof variable?) (hash/c variable? (list/c 0 1)))]
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[build-all-boolean-states (-> (listof variable?) (listof state?))]
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[build-all-01-states (-> (listof variable?) (listof state?))]
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@ -191,26 +224,11 @@
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;;; values in their domains.
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(define domain-mapping/c (hash/c variable? list?))
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;;; Builds a network from a given hash table assigning functions to
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;;; variables by attributing Boolean domains to every variable.
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(define (make-boolean-network funcs)
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(network funcs (make-boolean-domains (hash-keys funcs))))
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;;; Build a network from a given hash table assigning functions to
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;;; variables by attributing the domain {0,1} to every variable.
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(define (make-01-network funcs)
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(network funcs (make-01-domains (hash-keys funcs))))
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(module+ test
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(test-case "make-boolean-network"
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(define f1 (λ (s) (let ([x1 (hash-ref s 'x1)]
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[x2 (hash-ref s 'x2)])
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(and x1 (not x2)))))
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(define f2 (λ (s) (let ([x2 (hash-ref s 'x2)])
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(not x2))))
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(define bn (make-boolean-network (hash 'x1 f1 'x2 f2)))
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(check-equal? (network-domains bn) (hash 'x1 '(#f #t) 'x2 '(#f #t)))))
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;;; Given a state s updates all the variables from xs.
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(define (update network s xs)
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(define funcs (network-functions network))
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@ -418,19 +436,6 @@
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#hash((a . #f) (b . 2))
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#hash((a . #f) (b . 3))))))
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;;; Makes a hash set mapping all variables to a single domain.
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(define (make-same-domains vars domain)
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(for/hash ([var vars]) (values var domain)))
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;;; Makes a hash set mapping all variables to the Boolean domain.
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(define (make-boolean-domains vars)
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(make-same-domains vars '(#f #t)))
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(module+ test
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(test-case "make-same-domains, make-boolean-domains"
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(check-equal? (make-boolean-domains '(a b))
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#hash((a . (#f #t)) (b . (#f #t))))))
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;;; Makes a hash set mapping all variables to the Boolean domain,
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;;; expressed as {0,1}.
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(define (make-01-domains vars)
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@ -77,6 +77,45 @@ The type of the instances of @racket[Network].
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'b '(#f #t)))
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]}
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@section{Constructing networks}
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@defproc[(make-same-domains [vars (Listof Variable)]
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[domain (Listof a)])
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(DomainMapping a)]{
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Makes a hash set mapping all variables to a single domain.
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@ex[
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(make-same-domains '(a b) '(1 2))
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]}
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@defproc[(make-boolean-domains [vars (Listof Variable)])
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(DomainMapping Boolean)]{
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Makes a hash set mapping all variables to the Boolean domain.
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@ex[
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(make-boolean-domains '(a b))
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]}
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@defproc[(make-boolean-network [vars (VariableMapping (UpdateFunction Boolean))])
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(Network Boolean)]{
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Builds a Boolean network from a given hash table assigning functions to
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variables by attributing Boolean domains to every variable.
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@ex[
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(: or-func (UpdateFunction Boolean))
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(define (or-func s)
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(or (hash-ref s 'a) (hash-ref s 'b)))
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(: and-func (UpdateFunction Boolean))
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(define (and-func s)
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(and (hash-ref s 'a) (hash-ref s 'b)))
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(make-boolean-network (hash 'a or-func 'b and-func))
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]}
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@section{Syntactic description of networks}
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@section{Inferring interaction graphs}
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