src/Pure/term_subst.ML
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(*  Title:      Pure/term_subst.ML
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    Author:     Makarius
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Efficient type/term substitution.
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*)
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signature TERM_SUBST =
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sig
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  val map_atypsT_same: typ Same.operation -> typ Same.operation
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  val map_types_same: typ Same.operation -> term Same.operation
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  val map_aterms_same: term Same.operation -> term Same.operation
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  val generalizeT_same: Names.set -> int -> typ Same.operation
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  val generalize_same: Names.set * Names.set -> int -> term Same.operation
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  val generalizeT: Names.set -> int -> typ -> typ
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  val generalize: Names.set * Names.set -> int -> term -> term
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  val instantiateT_frees_same: typ TFrees.table -> typ Same.operation
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  val instantiate_frees_same: typ TFrees.table * term Frees.table -> term Same.operation
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  val instantiateT_frees: typ TFrees.table -> typ -> typ
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  val instantiate_frees: typ TFrees.table * term Frees.table -> term -> term
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  val instantiateT_maxidx: (typ * int) TVars.table -> typ -> int -> typ * int
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  val instantiate_maxidx: (typ * int) TVars.table * (term * int) Vars.table ->
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    term -> int -> term * int
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  val instantiate_beta_maxidx: (typ * int) TVars.table * (term * int) Vars.table ->
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    term -> int -> term * int
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  val instantiateT_same: typ TVars.table -> typ Same.operation
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  val instantiate_same: typ TVars.table * term Vars.table -> term Same.operation
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  val instantiate_beta_same: typ TVars.table * term Vars.table -> term Same.operation
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  val instantiateT: typ TVars.table -> typ -> typ
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  val instantiate: typ TVars.table * term Vars.table -> term -> term
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  val instantiate_beta: typ TVars.table * term Vars.table -> term -> term
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  val zero_var_indexes_inst: Name.context -> term list -> typ TVars.table * term Vars.table
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  val zero_var_indexes: term -> term
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  val zero_var_indexes_list: term list -> term list
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end;
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structure Term_Subst: TERM_SUBST =
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struct
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(* generic mapping *)
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fun map_atypsT_same f =
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  let
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    fun typ (Type (a, Ts)) = Type (a, Same.map typ Ts)
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      | typ T = f T;
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  in typ end;
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fun map_types_same f =
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  let
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    fun term (Const (a, T)) = Const (a, f T)
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      | term (Free (a, T)) = Free (a, f T)
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      | term (Var (v, T)) = Var (v, f T)
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      | term (Bound _) = raise Same.SAME
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      | term (Abs (x, T, t)) =
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          (Abs (x, f T, Same.commit term t)
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            handle Same.SAME => Abs (x, T, term t))
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      | term (t $ u) = (term t $ Same.commit term u handle Same.SAME => t $ term u);
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  in term end;
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fun map_aterms_same f =
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  let
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    fun term (Abs (x, T, t)) = Abs (x, T, term t)
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      | term (t $ u) = (term t $ Same.commit term u handle Same.SAME => t $ term u)
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      | term a = f a;
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  in term end;
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(* generalization of fixed variables *)
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fun generalizeT_same tfrees idx ty =
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  if Names.is_empty tfrees then raise Same.SAME
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  else
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    let
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      fun gen (Type (a, Ts)) = Type (a, Same.map gen Ts)
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        | gen (TFree (a, S)) =
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            if Names.defined tfrees a then TVar ((a, idx), S)
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            else raise Same.SAME
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        | gen _ = raise Same.SAME;
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    in gen ty end;
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fun generalize_same (tfrees, frees) idx tm =
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  if Names.is_empty tfrees andalso Names.is_empty frees then raise Same.SAME
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  else
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    let
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      val genT = generalizeT_same tfrees idx;
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      fun gen (Free (x, T)) =
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            if Names.defined frees x then
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              Var (Name.clean_index (x, idx), Same.commit genT T)
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            else Free (x, genT T)
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        | gen (Var (xi, T)) = Var (xi, genT T)
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        | gen (Const (c, T)) = Const (c, genT T)
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        | gen (Bound _) = raise Same.SAME
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        | gen (Abs (x, T, t)) =
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            (Abs (x, genT T, Same.commit gen t)
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              handle Same.SAME => Abs (x, T, gen t))
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        | gen (t $ u) = (gen t $ Same.commit gen u handle Same.SAME => t $ gen u);
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    in gen tm end;
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fun generalizeT names i ty = Same.commit (generalizeT_same names i) ty;
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fun generalize names i tm = Same.commit (generalize_same names i) tm;
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(* instantiation of free variables (types before terms) *)
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fun instantiateT_frees_same instT ty =
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  if TFrees.is_empty instT then raise Same.SAME
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  else
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    let
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      fun subst (Type (a, Ts)) = Type (a, Same.map subst Ts)
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        | subst (TFree v) =
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            (case TFrees.lookup instT v of
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              SOME T' => T'
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            | NONE => raise Same.SAME)
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        | subst _ = raise Same.SAME;
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    in subst ty end;
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fun instantiate_frees_same (instT, inst) tm =
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  if TFrees.is_empty instT andalso Frees.is_empty inst then raise Same.SAME
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  else
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    let
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      val substT = instantiateT_frees_same instT;
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      fun subst (Const (c, T)) = Const (c, substT T)
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        | subst (Free (x, T)) =
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            let val (T', same) = (substT T, false) handle Same.SAME => (T, true) in
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              (case Frees.lookup inst (x, T') of
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                 SOME t' => t'
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               | NONE => if same then raise Same.SAME else Free (x, T'))
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            end
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        | subst (Var (xi, T)) = Var (xi, substT T)
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        | subst (Bound _) = raise Same.SAME
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        | subst (Abs (x, T, t)) =
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            (Abs (x, substT T, Same.commit subst t)
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              handle Same.SAME => Abs (x, T, subst t))
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        | subst (t $ u) = (subst t $ Same.commit subst u handle Same.SAME => t $ subst u);
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    in subst tm end;
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fun instantiateT_frees instT ty = Same.commit (instantiateT_frees_same instT) ty;
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fun instantiate_frees inst tm = Same.commit (instantiate_frees_same inst) tm;
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(* instantiation of schematic variables (types before terms) -- recomputes maxidx *)
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local
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fun no_indexesT instT = TVars.map (fn _ => rpair ~1) instT;
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fun no_indexes inst = Vars.map (fn _ => rpair ~1) inst;
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fun instT_same maxidx instT ty =
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  let
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    fun maxify i = if i > ! maxidx then maxidx := i else ();
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    fun subst_typ (Type (a, Ts)) = Type (a, subst_typs Ts)
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      | subst_typ (TVar ((a, i), S)) =
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          (case TVars.lookup instT ((a, i), S) of
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            SOME (T', j) => (maxify j; T')
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          | NONE => (maxify i; raise Same.SAME))
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      | subst_typ _ = raise Same.SAME
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    and subst_typs (T :: Ts) =
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        (subst_typ T :: Same.commit subst_typs Ts
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          handle Same.SAME => T :: subst_typs Ts)
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      | subst_typs [] = raise Same.SAME;
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  in subst_typ ty end;
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fun inst_same maxidx (instT, inst) tm =
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  let
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    fun maxify i = if i > ! maxidx then maxidx := i else ();
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    val substT = instT_same maxidx instT;
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    fun subst (Const (c, T)) = Const (c, substT T)
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      | subst (Free (x, T)) = Free (x, substT T)
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      | subst (Var ((x, i), T)) =
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          let val (T', same) = (substT T, false) handle Same.SAME => (T, true) in
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            (case Vars.lookup inst ((x, i), T') of
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               SOME (t', j) => (maxify j; t')
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             | NONE => (maxify i; if same then raise Same.SAME else Var ((x, i), T')))
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          end
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      | subst (Bound _) = raise Same.SAME
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      | subst (Abs (x, T, t)) =
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          (Abs (x, substT T, subst_commit t)
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            handle Same.SAME => Abs (x, T, subst t))
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      | subst (t $ u) = (subst t $ subst_commit u handle Same.SAME => t $ subst u)
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    and subst_commit t = Same.commit subst t;
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  in subst tm end;
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(*version with local beta reduction*)
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fun inst_beta_same maxidx (instT, inst) tm =
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  let
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    fun maxify i = if i > ! maxidx then maxidx := i else ();
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    val substT = instT_same maxidx instT;
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    fun expand_head t =
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      (case Term.head_of t of
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        Var ((x, i), T) =>
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          let val (T', same) = (substT T, false) handle Same.SAME => (T, true) in
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            (case Vars.lookup inst ((x, i), T') of
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              SOME (t', j) => (maxify j; SOME t')
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            | NONE => (maxify i; if same then NONE else SOME (Var ((x, i), T'))))
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          end
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      | _ => NONE);
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    fun subst t =
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      (case expand_head t of
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        NONE =>
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          (case t of
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            Const (c, T) => Const (c, substT T)
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          | Free (x, T) => Free (x, substT T)
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          | Var _ => raise Same.SAME
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          | Bound _ => raise Same.SAME
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          | Abs (x, T, b) =>
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              (Abs (x, substT T, subst_commit b)
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                handle Same.SAME => Abs (x, T, subst b))
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          | _ $ _ => subst_comb t)
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      | SOME (u as Abs _) => Term.betapplys (u, map subst_commit (Term.args_of t))
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      | SOME u => subst_head u t)
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    and subst_comb (t $ u) = (subst_comb t $ subst_commit u handle Same.SAME => t $ subst u)
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      | subst_comb (Var _) = raise Same.SAME
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      | subst_comb t = subst t
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    and subst_head h (t $ u) = subst_head h t $ subst_commit u
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      | subst_head h _ = h
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    and subst_commit t = Same.commit subst t;
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  in subst tm end;
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in
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fun instantiateT_maxidx instT ty i =
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  let val maxidx = Unsynchronized.ref i
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  in (Same.commit (instT_same maxidx instT) ty, ! maxidx) end;
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fun instantiate_maxidx insts tm i =
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  let val maxidx = Unsynchronized.ref i
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  in (Same.commit (inst_same maxidx insts) tm, ! maxidx) end;
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fun instantiate_beta_maxidx insts tm i =
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  let val maxidx = Unsynchronized.ref i
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  in (Same.commit (inst_beta_same maxidx insts) tm, ! maxidx) end;
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fun instantiateT_same instT ty =
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  if TVars.is_empty instT then raise Same.SAME
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  else instT_same (Unsynchronized.ref ~1) (no_indexesT instT) ty;
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fun instantiate_same (instT, inst) tm =
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  if TVars.is_empty instT andalso Vars.is_empty inst then raise Same.SAME
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  else inst_same (Unsynchronized.ref ~1) (no_indexesT instT, no_indexes inst) tm;
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fun instantiate_beta_same (instT, inst) tm =
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  if TVars.is_empty instT andalso Vars.is_empty inst then raise Same.SAME
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  else inst_beta_same (Unsynchronized.ref ~1) (no_indexesT instT, no_indexes inst) tm;
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fun instantiateT instT ty = Same.commit (instantiateT_same instT) ty;
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fun instantiate inst tm = Same.commit (instantiate_same inst) tm;
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fun instantiate_beta inst tm = Same.commit (instantiate_beta_same inst) tm;
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end;
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(* zero var indexes *)
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fun zero_var_inst ins mk (v as ((x, i), X)) (inst, used) =
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  let val (x', used') = Name.variant (if Name.is_bound x then "u" else x) used
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  in if x = x' andalso i = 0 then (inst, used') else (ins (v, mk ((x', 0), X)) inst, used') end;
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fun zero_var_indexes_inst used ts =
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  let
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    val (instT, _) =
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      (TVars.empty, used) |> TVars.fold (zero_var_inst TVars.add TVar o #1)
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        (TVars.build (ts |> (fold o fold_types o fold_atyps)
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          (fn TVar v => TVars.add (v, ()) | _ => I)));
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    val (inst, _) =
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      (Vars.empty, used) |> Vars.fold (zero_var_inst Vars.add Var o #1)
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        (Vars.build (ts |> (fold o fold_aterms)
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          (fn Var (xi, T) => Vars.add ((xi, instantiateT instT T), ()) | _ => I)));
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  in (instT, inst) end;
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fun zero_var_indexes_list ts = map (instantiate (zero_var_indexes_inst Name.context ts)) ts;
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val zero_var_indexes = singleton zero_var_indexes_list;
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end;