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(.require
 [library
  [lux (.except function)
   [abstract
    [monad (.only do)]
    ["[0]" enum]]
   [control
    ["[0]" maybe]]
   [data
    [number
     ["n" nat]]
    [collection
     ["[0]" list (.use "[1]#[0]" functor)]]]
   [math
    ["r" random (.only Random) (.use "[1]#[0]" monad)]]
   [meta
    [compiler
     [analysis (.only Arity)]
     ["[0]" reference (.only Register)]
     ["[0]" synthesis (.only Synthesis)]]]]
  [test
   ["_" property (.only Test)]]]
 ["[0]" //
  ["[1][0]" case]
  [//
   [common (.only Runner)]]])

(def max_arity
  Arity
  10)

(def arity
  (Random Arity)
  (|> r.nat (r#each (|>> (n.% max_arity) (n.max 1)))))

(def (local arity)
  (-> Arity (Random Register))
  (|> r.nat (r#each (|>> (n.% arity) ++))))

(def function
  (Random [Arity Register Synthesis])
  (do r.monad
    [arity ..arity
     local (..local arity)]
    (in [arity local
         (synthesis.function/abstraction
          [synthesis.#environment (list)
           synthesis.#arity arity
           synthesis.#body (synthesis.variable/local local)])])))

(def .public (spec run)
  (-> Runner Test)
  (do [! r.monad]
    [[arity local functionS] ..function
     partial_arity (|> r.nat (at ! each (|>> (n.% arity) (n.max 1))))
     inputs (r.list arity r.safe_frac)
     .let [expectation (maybe.trusted (list.item (-- local) inputs))
           inputsS (list#each (|>> synthesis.f64) inputs)]]
    (all _.and
         (_.test "Can read arguments."
           (|> (synthesis.function/apply [synthesis.#function functionS
                                          synthesis.#arguments inputsS])
               (run "with_local")
               (//case.verify expectation)))
         (_.test "Can partially apply functions."
           (or (n.= 1 arity)
               (let [preS (list.first partial_arity inputsS)
                     postS (list.after partial_arity inputsS)
                     partialS (synthesis.function/apply [synthesis.#function functionS
                                                         synthesis.#arguments preS])]
                 (|> (synthesis.function/apply [synthesis.#function partialS
                                                synthesis.#arguments postS])
                     (run "partial_application")
                     (//case.verify expectation)))))
         (_.test "Can read environment."
           (or (n.= 1 arity)
               (let [environment (|> partial_arity
                                     (enum.range n.enum 1)
                                     (list#each (|>> {reference.#Local})))
                     variableS (if (n.<= partial_arity local)
                                 (synthesis.variable/foreign (-- local))
                                 (synthesis.variable/local (|> local (n.- partial_arity))))
                     inner_arity (n.- partial_arity arity)
                     innerS (synthesis.function/abstraction
                             [synthesis.#environment environment
                              synthesis.#arity inner_arity
                              synthesis.#body variableS])
                     outerS (synthesis.function/abstraction
                             [synthesis.#environment (list)
                              synthesis.#arity partial_arity
                              synthesis.#body innerS])]
                 (|> (synthesis.function/apply [synthesis.#function outerS
                                                synthesis.#arguments inputsS])
                     (run "with_foreign")
                     (//case.verify expectation)))))
         )))