src/HOL/Tools/Function/sum_tree.ML
author wenzelm
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(*  Title:      HOL/Tools/Function/sum_tree.ML
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    Author:     Alexander Krauss, TU Muenchen
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Some common tools for working with sum types in balanced tree form.
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*)
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signature SUM_TREE =
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sig
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  val sumcase_split_ss: simpset
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  val access_top_down: {init: 'a, left: 'a -> 'a, right: 'a -> 'a} -> int -> int -> 'a
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  val mk_sumT: typ -> typ -> typ
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  val mk_sumcase: typ -> typ -> typ -> term -> term -> term
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  val App: term -> term -> term
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  val mk_inj: typ -> int -> int -> term -> term
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  val mk_proj: typ -> int -> int -> term -> term
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  val mk_sumcases: typ -> term list -> term
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end
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structure SumTree: SUM_TREE =
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struct
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(* Theory dependencies *)
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val sumcase_split_ss =
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  simpset_of (put_simpset HOL_basic_ss @{context}
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    addsimps (@{thm Product_Type.split} :: @{thms sum.cases}))
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(* top-down access in balanced tree *)
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fun access_top_down {left, right, init} len i =
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  Balanced_Tree.access
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    {left = (fn f => f o left), right = (fn f => f o right), init = I} len i init
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(* Sum types *)
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fun mk_sumT LT RT = Type (@{type_name Sum_Type.sum}, [LT, RT])
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fun mk_sumcase TL TR T l r =
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  Const (@{const_name sum.sum_case},
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    (TL --> T) --> (TR --> T) --> mk_sumT TL TR --> T) $ l $ r
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val App = curry op $
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fun mk_inj ST n i =
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  access_top_down
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  { init = (ST, I : term -> term),
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    left = (fn (T as Type (@{type_name Sum_Type.sum}, [LT, RT]), inj) =>
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      (LT, inj o App (Const (@{const_name Inl}, LT --> T)))),
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    right =(fn (T as Type (@{type_name Sum_Type.sum}, [LT, RT]), inj) =>
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      (RT, inj o App (Const (@{const_name Inr}, RT --> T))))} n i
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  |> snd
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fun mk_proj ST n i =
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  access_top_down
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  { init = (ST, I : term -> term),
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    left = (fn (T as Type (@{type_name Sum_Type.sum}, [LT, RT]), proj) =>
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      (LT, App (Const (@{const_name Sum_Type.Projl}, T --> LT)) o proj)),
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    right =(fn (T as Type (@{type_name Sum_Type.sum}, [LT, RT]), proj) =>
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      (RT, App (Const (@{const_name Sum_Type.Projr}, T --> RT)) o proj))} n i
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  |> snd
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fun mk_sumcases T fs =
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  Balanced_Tree.make (fn ((f, fT), (g, gT)) => (mk_sumcase fT gT T f g, mk_sumT fT gT))
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    (map (fn f => (f, domain_type (fastype_of f))) fs)
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  |> fst
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end