Re-enable Values and cgen/seq, and fix contracts on substitute.
After longer testing confirmed that this was just to strict contracts on substitute.
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@ -440,66 +440,9 @@
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(cgen/filter-set V X Y f-s f-t)
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(cgen/object V X Y o-s o-t))]
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;; values are covariant
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[((Values: ss) (Values: ts))
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#:return-unless (= (length ss) (length ts))
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#f
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(cgen/list V X Y ss ts)]
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;; this constrains `dbound' to be |ts| - |ss|
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[((ValuesDots: ss s-dty dbound) (Values: ts))
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#:return-unless (>= (length ts) (length ss)) #f
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#:return-unless (memq dbound Y) #f
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(let* ([vars (var-store-take dbound s-dty (- (length ts) (length ss)))]
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;; new-tys are dummy plain type variables,
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;; standing in for the elements of dbound that need to be generated
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[new-tys (for/list ([var (in-list vars)])
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;; must be a Result since we are matching these against
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;; the contents of the `Values`, which are Results
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(-result (substitute (make-F var) dbound s-dty)))]
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;; generate constraints on the prefixes, and on the dummy types
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[new-cset (cgen/list V (append vars X) Y (append ss new-tys) ts)])
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;; now take all the dummy types, and use them to constrain dbound appropriately
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(% move-vars-to-dmap new-cset dbound vars))]
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;; like the case above, but constrains `dbound' to be |ss| - |ts|
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[((Values: ss) (ValuesDots: ts t-dty dbound))
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#:return-unless (>= (length ss) (length ts)) #f
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#:return-unless (memq dbound Y) #f
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;; see comments for last case, this case swaps `s` and `t` order
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(let* ([vars (var-store-take dbound t-dty (- (length ss) (length ts)))]
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[new-tys (for/list ([var (in-list vars)])
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(-result (substitute (make-F var) dbound t-dty)))]
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[new-cset (cgen/list V (append vars X) Y ss (append ts new-tys))])
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(% move-vars-to-dmap new-cset dbound vars))]
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;; identical bounds - just unify pairwise
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[((ValuesDots: ss s-dty dbound) (ValuesDots: ts t-dty dbound))
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#:return-when (memq dbound Y) #f
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(cgen/list V X Y (cons s-dty ss) (cons t-dty ts))]
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[((ValuesDots: ss s-dty (? (λ (db) (memq db Y)) s-dbound))
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(ValuesDots: ts t-dty t-dbound))
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;; What should we do if both are in Y?
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#:return-when (memq t-dbound Y) #f
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(% cset-meet
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(cgen/list V X Y ss ts)
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(extend-tvars (list t-dbound)
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(% move-dotted-rest-to-dmap (cgen V (cons s-dbound X) Y s-dty t-dty) s-dbound t-dbound)))]
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[((ValuesDots: ss s-dty s-dbound)
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(ValuesDots: ts t-dty (? (λ (db) (memq db Y)) t-dbound)))
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;; s-dbound can't be in Y, due to previous rule
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(% cset-meet
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(cgen/list V X Y ss ts)
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(extend-tvars (list s-dbound)
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(% move-dotted-rest-to-dmap (cgen V (cons t-dbound X) Y s-dty t-dty) t-dbound s-dbound)))]
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;; Values just delegate to cgen/seq
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;; This is currently buggy because cgen/seq assumes types and not results
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;; [((ValuesSeq: s-seq) (ValuesSeq: t-seq))
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;; (cgen/seq V X Y s-seq t-seq)]
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[((ValuesSeq: s-seq) (ValuesSeq: t-seq))
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(cgen/seq V X Y s-seq t-seq)]
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;; they're subtypes. easy.
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[(a b)
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@ -39,8 +39,7 @@
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;; substitute-many : Hash[Name,Type] Type -> Type
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(define/cond-contract (substitute-many subst target #:Un [Un (lambda (args) (apply Un args))])
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((simple-substitution/c (or/c SomeValues/c Values/c arr?)) (#:Un procedure?)
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. ->* . (or/c SomeValues/c Values/c arr?))
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((simple-substitution/c Type?) (#:Un procedure?) . ->* . Type?)
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(define (sb t) (substitute-many subst t #:Un Un))
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(define names (hash-keys subst))
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(define fvs (free-vars* target))
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@ -83,14 +82,13 @@
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;; substitute : Type Name Type -> Type
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(define/cond-contract (substitute image name target #:Un [Un (lambda (args) (apply Un args))])
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((Type/c symbol? Type/c) (#:Un procedure?) . ->* . Type/c)
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((Type/c symbol? Type?) (#:Un procedure?) . ->* . Type?)
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(substitute-many (hash name image) target #:Un Un))
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;; implements angle bracket substitution from the formalism
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;; substitute-dots : Listof[Type] Option[type] Name Type -> Type
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(define/cond-contract (substitute-dots images rimage name target)
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((listof Type/c) (or/c #f Type/c) symbol? (or/c arr? SomeValues/c Values/c)
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. -> . (or/c arr? SomeValues/c Values/c))
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((listof Type/c) (or/c #f Type/c) symbol? Type? . -> . Type?)
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(define (sb t) (substitute-dots images rimage name t))
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(if (or (set-member? (free-vars-names (free-idxs* target)) name)
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(set-member? (free-vars-names (free-vars* target)) name))
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@ -172,7 +170,7 @@
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;; substitute many variables
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;; subst-all : substitution/c Type -> Type
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(define/cond-contract (subst-all s ty)
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(substitution/c (or/c arr? Values/c SomeValues/c) . -> . (or/c arr? Values/c SomeValues/c))
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(substitution/c Type? . -> . Type?)
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(define t-substs
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(for/fold ([acc (hash)]) ([(v r) (in-hash s)])
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@ -20,7 +20,7 @@ at least theoretically.
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rep utils typecheck infer env private types static-contracts)
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(define optimize? (make-parameter #t))
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(define-for-syntax enable-contracts? (and (getenv "PLT_TR_CONTRACTS") #t))
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(define-for-syntax enable-contracts? (or (getenv "PLT_TR_CONTRACTS") #t))
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(define-syntax do-contract-req
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(if enable-contracts?
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