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(************************************************************************)
(* v * The Coq Proof Assistant / The Coq Development Team *)
(* <O___,, * INRIA - CNRS - LIX - LRI - PPS - Copyright 1999-2012 *)
(* \VV/ **************************************************************)
(* // * This file is distributed under the terms of the *)
(* * GNU Lesser General Public License Version 2.1 *)
(************************************************************************)
open Errors
open Pp
open Names
open Term
open Context
open Environ
open Glob_term
open Termops
open Mod_subst
open Misctypes
(** Should we keep details of universes during detyping ? *)
val print_universes : bool ref
val subst_cases_pattern : substitution -> cases_pattern -> cases_pattern
val subst_glob_constr : substitution -> glob_constr -> glob_constr
(** [detype isgoal avoid ctx c] turns a closed [c], into a glob_constr
de Bruijn indexes are turned to bound names, avoiding names in [avoid]
[isgoal] tells if naming must avoid global-level synonyms as intro does
[ctx] gives the names of the free variables *)
val detype : bool -> Id.t list -> names_context -> constr -> glob_constr
val detype_case :
bool -> ('a -> glob_constr) ->
(constructor array -> int array -> 'a array ->
(Loc.t * Id.t list * cases_pattern list * glob_constr) list) ->
('a -> int -> bool) ->
Id.t list -> inductive * case_style * int array * int ->
'a option -> 'a -> 'a array -> glob_constr
val detype_sort : sorts -> glob_sort
val detype_rel_context : constr option -> Id.t list -> names_context ->
rel_context -> glob_decl list
(** look for the index of a named var or a nondep var as it is renamed *)
val lookup_name_as_displayed : env -> constr -> Id.t -> int option
val lookup_index_as_renamed : env -> constr -> int -> int option
val set_detype_anonymous : (Loc.t -> int -> glob_constr) -> unit
val force_wildcard : unit -> bool
val synthetize_type : unit -> bool
(** Utilities to transform kernel cases to simple pattern-matching problem *)
val it_destRLambda_or_LetIn_names : int -> glob_constr -> Name.t list * glob_constr
val simple_cases_matrix_of_branches :
inductive -> (int * int * glob_constr) list -> cases_clauses
val return_type_of_predicate :
inductive -> int -> glob_constr -> predicate_pattern * glob_constr option
val subst_genarg_hook :
(substitution -> Genarg.glob_generic_argument -> Genarg.glob_generic_argument) Hook.t
module PrintingInductiveMake :
functor (Test : sig
val encode : Libnames.reference -> Names.inductive
val member_message : Pp.std_ppcmds -> bool -> Pp.std_ppcmds
val field : string
val title : string
end) ->
sig
type t = Names.inductive
val encode : Libnames.reference -> Names.inductive
val subst : substitution -> t -> t
val printer : t -> Pp.std_ppcmds
val key : Goptions.option_name
val title : string
val member_message : t -> bool -> Pp.std_ppcmds
val synchronous : bool
end
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