package comby

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Class type
type atom =
  1. | Variable of string
  2. | String of string
val atom_of_sexp : Ppx_sexp_conv_lib.Sexp.t -> atom
val sexp_of_atom : atom -> Ppx_sexp_conv_lib.Sexp.t
type antecedent = atom
val antecedent_of_sexp : Ppx_sexp_conv_lib.Sexp.t -> antecedent
val sexp_of_antecedent : antecedent -> Ppx_sexp_conv_lib.Sexp.t
type expression =
  1. | True
  2. | False
  3. | Option of string
  4. | Equal of atom * atom
  5. | Not_equal of atom * atom
  6. | Match of atom * (antecedent * consequent) list
  7. | RewriteTemplate of string
  8. | Rewrite of atom * antecedent * expression
and consequent = expression list
val expression_of_sexp : Ppx_sexp_conv_lib.Sexp.t -> expression
val consequent_of_sexp : Ppx_sexp_conv_lib.Sexp.t -> consequent
val sexp_of_expression : expression -> Ppx_sexp_conv_lib.Sexp.t
val sexp_of_consequent : consequent -> Ppx_sexp_conv_lib.Sexp.t
val (=) : atom -> atom -> expression
val (<>) : atom -> atom -> expression
type t = expression list
val t_of_sexp : Ppx_sexp_conv_lib.Sexp.t -> t
val sexp_of_t : t -> Ppx_sexp_conv_lib.Sexp.t
OCaml

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