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3 changed files with 111 additions and 16 deletions
11
nbe-test.rkt
11
nbe-test.rkt
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@ -83,7 +83,7 @@
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`(succ ,a))
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(check-equal? (normalize `(app ,tm-id ,tm-id)) tm-id)
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(check βη-eq? `(app ,tm-id (U 0)) '(U 0))
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(check βη-eq? `(app ,tm-id U) 'U)
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(check-equal? (normalize `(app (app (app ,tm-pair ,tm-id) ,tm-fst) ,tm-snd)) tm-fst)
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(check-equal? (normalize `(app (app (app ,tm-pair ,tm-id) ,tm-fst) ,tm-fst)) tm-id)
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(check-equal? (normalize (tm-app tm-snd (tm-app tm-pair tm-id tm-fst) tm-fst)) tm-fst)
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@ -97,5 +97,10 @@
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(tm-pnat 12000))
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(check βη-eq? (tm-padd (tm-pnat 10000) (tm-pnat 2000)) (tm-pnat 12000))
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(check βη-eq? (tm-abs (tm-app (tm-var 1) (tm-var 0))) (tm-app tm-id (tm-var 0)))
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(check βη-eq? `(Π (U 0) (Π (var 0) ,(tm-app tm-id '(var 1)))) '(Π (U 0) (Π (var 0) (var 1))))
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(check-false (βη-eq? '(U 0) '(var 0)))
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(check βη-eq? `(Π U (Π (var 0) ,(tm-app tm-id '(var 1)))) '(Π U (Π (var 0) (var 1))))
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(check-false (βη-eq? '(succ zero) '(var 0)))
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(check βη-eq? (tm-app (tm-var 0) (tm-var 1)) (tm-app (tm-var 0) (tm-var 1)))
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(check βη-eq? (tm-ind (tm-var 0) (tm-var 1) (tm-var 2)) (tm-ind (tm-var 0) (tm-var 1) (tm-var 2)))
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(check-false (βη-eq? (tm-abs (tm-app (tm-var 1) (tm-var 0))) (tm-app tm-id (tm-var 1))))
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(check-false (βη-eq? (tm-app (tm-var 0) (tm-var 0)) (tm-ind (tm-var 0) 'zero 'zero)))
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(check-false (βη-eq? 'U '(var 0)))
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82
nbe.rkt
82
nbe.rkt
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@ -1,9 +1,8 @@
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#lang typed/racket
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;; Grammar (Λ)
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;; t := λ t | app t t | i
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(define-type denv (-> V (Promise D)))
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(define-type V Nonnegative-Integer)
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(define-type Term (∪ 'zero
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'nat
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(List 'succ Term)
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@ -12,14 +11,32 @@
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(List 'app Term Term)
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(List 'ind Term Term Term)
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(List 'Π Term Term)
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(List 'U V)))
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'U))
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(define-type Neu (∪ (List 'ind Neu Norm Norm)
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(List 'var V)
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(List 'app Neu Norm)))
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(define-type Norm (∪ Neu
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'zero
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'nat
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(List 'λ Norm)
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'U
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(List 'succ Norm)
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(List 'Π Norm Norm)))
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(: embed (-> Neu Term))
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(define (embed a) a)
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(: embed-norm (-> Norm Term))
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(define (embed-norm a) a)
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(define-type D (∪ 'zero
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(List 'Π (Promise D) (-> (Promise D) D))
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(List 'succ (Promise D))
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(List 'fun (-> (Promise D) D))
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(List 'neu D-ne)
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(List 'U V)))
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'U))
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(define-type D-ne (∪ (List 'app D-ne D)
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(List 'idx V)
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@ -58,7 +75,7 @@
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(: interp (-> Term denv D))
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(define (interp a ρ)
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(match a
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[`(U ,_) a]
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['U a]
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[`(Π ,A ,B) `(Π ,(delay (interp A ρ)) ,(interp-fun B ρ))]
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[`(var ,i) (force (ρ i))]
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['zero 'zero]
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@ -70,13 +87,46 @@
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[`(λ ,a) (list 'fun (interp-fun a ρ))]
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[`(app ,a ,b) (ap a b ρ)]))
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(: reify (-> V D Term))
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(: open-dom (-> V (-> (Promise D) D) D))
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(define (open-dom n f)
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(f (delay `(neu (idx ,n)))))
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(: open-dom2 (-> V (-> (Promise D) (Promise D) D) D))
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(define (open-dom2 n f)
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(f (delay `(neu (idx ,n))) (delay `(neu (idx ,(add1 n))))))
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(: compare (-> V D D Boolean))
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(define (compare n a0 a1)
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(match (list a0 a1)
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[`((Π ,A0 ,B0) (Π ,A1 ,B1))
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(and (compare n (force A0) (force A1))
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(compare (add1 n) (open-dom n B0) (open-dom n B1)))]
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['(nat nat) #t]
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['(U U) #t]
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['(zero zero) #t]
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[`((succ ,a) (succ ,b)) (compare n (force a) (force b))]
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[`((fun ,f) (neu ,u)) (compare (add1 n) (open-dom n f) `(neu (app ,u (neu (idx ,n)))))]
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[`((neu ,_) (fun ,_)) (compare n a1 a0)]
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[`((neu ,a) (neu ,b)) (compare-neu n a b)]
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[_ #f]))
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(: compare-neu (-> V D-ne D-ne Boolean))
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(define (compare-neu n a0 a1)
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(match (list a0 a1)
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[`((idx ,i) (idx ,j)) (eqv? i j)]
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[`((app ,u0 ,v0) (app ,u1 ,v1)) (and (compare-neu n u0 u1) (compare n v0 v1))]
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[`((ind ,a0 ,b0 ,c0) (ind ,a1 ,b1 ,c1)) (and (compare-neu n a0 a1)
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(compare n b0 b1)
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(compare (+ n 2) (open-dom2 n c0) (open-dom2 n c1)))]
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[_ #f]))
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(: reify (-> V D Norm))
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(define (reify n a)
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(match a
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[`(Π ,A ,B) `(Π ,(reify n (force A)) ,(reify (+ n 1) (B (delay `(neu (idx ,n))))))]
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['zero 'zero]
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[`(succ ,a) `(succ ,(reify n (force a)))]
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[`(U ,_) a]
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['U a]
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[`(fun ,f) (list 'λ (reify (+ n 1) (f (delay `(neu (idx ,n))))))]
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[`(neu ,a) (reify-neu n a)]))
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@ -87,7 +137,7 @@
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(error "variable to index conversion failed")
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ret)))
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(: reify-neu (-> V D-ne Term))
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(: reify-neu (-> V D-ne Neu))
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(define (reify-neu n a)
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(match a
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[`(ind ,a ,b ,c) (list 'ind
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@ -106,7 +156,7 @@
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(define (scope a)
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(match a
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[`(Π ,A ,B) (max (scope A) (- (scope B) 2))]
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[`(U ,_) 0]
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['U 0]
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['zero 0]
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[`(succ ,a) (scope a)]
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(`(ind ,a ,b ,c) (max (scope a) (scope b) (- (scope c) 2)))
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@ -115,6 +165,10 @@
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[`(app ,a ,b) (max (scope a) (scope b))]
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[`(var ,i) (+ i 1)]))
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(: interp-with-scope (-> V Term D))
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(define (interp-with-scope n a)
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(interp a (λ (x) (delay (idsub n x)))))
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(: normalize (-> Term Term))
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(define (normalize a)
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(let ([sa (scope a)])
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@ -127,7 +181,7 @@
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(: subst (-> (-> V Term) Term Term))
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(define (subst ρ a)
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(match a
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[`(U ,_) a]
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['U a]
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[`(Π ,A ,B) `(Π ,(subst ρ A) ,(subst (up 1 ρ) B))]
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[`(var ,i) (ρ i)]
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[`(app ,a ,b) `(app ,(subst ρ a) ,(subst ρ b))]
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@ -143,10 +197,11 @@
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(subst (ext idsub-tm b) a))
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;; Coquand's algorithm but for β-normal forms
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;; Subsumed by the compare function
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(: η-eq? (-> Term Term Boolean))
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(define (η-eq? a b)
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(match (list a b)
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[`((U ,i) (U ,j)) (eqv? i j) ]
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['(U U) #t ]
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[`((Π ,A0 ,B0) (Π ,A1 ,B1))
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(and (η-eq? A0 A1) (η-eq? B0 B1))]
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['(zero zero) true]
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@ -162,10 +217,11 @@
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(: βη-eq? (-> Term Term Boolean))
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(define (βη-eq? a b)
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(η-eq? (normalize a) (normalize b)))
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(let ([n (max (scope a) (scope b))])
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(compare n (interp a (λ (x) (delay (idsub n x)))) (interp b (λ (x) (delay (idsub n x)))))))
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(: β-eq? (-> Term Term Boolean))
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(define (β-eq? a b)
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(equal? (normalize a) (normalize b)))
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(provide reify interp normalize β-eq? Term D V βη-eq?)
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(provide reify interp normalize β-eq? Term D D-ne V βη-eq? ext subst1 subst idsub-tm)
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34
type-checker.rkt
Normal file
34
type-checker.rkt
Normal file
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@ -0,0 +1,34 @@
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#lang typed/racket
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(require "nbe.rkt")
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(define-type context (Immutable-HashTable V Term))
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(: context-len (-> context V))
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(define (context-len Γ)
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(hash-count Γ))
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(: context-ext (-> context Term context))
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(define (context-ext Γ A)
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(hash-set Γ (context-len Γ) A))
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(: context-get (-> context V Term))
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(define (context-get Γ i)
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(if (< i (context-len Γ))
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(subst (λ (j) `(var ,(+ i j 1))) (hash-ref Γ (- (context-len Γ) (add1 i))))
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(error "context-get: out of bound")))
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(: context-empty context)
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(define context-empty (hash))
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(: synth (-> context Term Term))
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(define (synth Γ a)
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(match a
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[`(var ,i) (context-get Γ i)]
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[`(app ,a ,b)
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(let ([A (synth Γ a)]
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[D (interp-with-scope (context-len Γ) A)]))]))
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(: check (-> context Term D Boolean))
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(define (check Γ a A)
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(error "unimplemented"))
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