Geninterntype intern_variable_status = {| intern_ids : Names.Id.Set.t; | 
| notation_variable_status : (bool Stdlib.ref
                            * Notation_term.subscopes option Stdlib.ref
                            * Notation_term.notation_var_internalization_type)
                             Names.Id.Map.t; | 
}type glob_sign = {| ltacvars : Names.Id.Set.t; | 
| genv : Environ.env; | 
| extra : Store.t; | 
| intern_sign : intern_variable_status; | 
| strict_check : bool; | 
}val empty_glob_sign : strict:bool -> Environ.env -> glob_signtype glob_constr_and_expr =
  Glob_term.glob_constr * Constrexpr.constr_expr optionIn globalize tactics, we need to keep the initial constr_expr to recompute in the environment by the effective calls to Intro, Inversion, etc The constr_expr field is None in TacDef though
type glob_constr_pattern_and_expr =
  Names.Id.Set.t * glob_constr_and_expr * Pattern.constr_patternThe type of functions used for internalizing generic arguments.
val intern : 
  ( 'raw, 'glb, 'top ) Genarg.genarg_type ->
  ( 'raw, 'glb ) intern_funval generic_intern : 
  ( Genarg.raw_generic_argument, Genarg.glob_generic_argument ) intern_funtype 'glb subst_fun = Mod_subst.substitution -> 'glb -> 'glbThe type of functions used for substituting generic arguments.
val substitute : ( 'raw, 'glb, 'top ) Genarg.genarg_type -> 'glb subst_funval generic_substitute : Genarg.glob_generic_argument subst_funtype 'glb ntn_subst_fun =
  Names.Id.Set.t ->
  Glob_term.glob_constr Names.Id.Map.t ->
  'glb ->
  'glbval substitute_notation : 
  ( 'raw, 'glb, 'top ) Genarg.genarg_type ->
  'glb ntn_subst_funval generic_substitute_notation : Genarg.glob_generic_argument ntn_subst_funRegistering functions
val register_intern0 : 
  ( 'raw, 'glb, 'top ) Genarg.genarg_type ->
  ( 'raw, 'glb ) intern_fun ->
  unitval register_subst0 : 
  ( 'raw, 'glb, 'top ) Genarg.genarg_type ->
  'glb subst_fun ->
  unitval register_ntn_subst0 : 
  ( 'raw, 'glb, 'top ) Genarg.genarg_type ->
  'glb ntn_subst_fun ->
  unit