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(***********************************************************************)
(* v * The Coq Proof Assistant / The Coq Development Team *)
(* <O___,, * INRIA-Rocquencourt & LRI-CNRS-Orsay *)
(* \VV/ *************************************************************)
(* // * This file is distributed under the terms of the *)
(* * GNU Lesser General Public License Version 2.1 *)
(***********************************************************************)
(* $Id$ *)
open Names
open Term
open Declarations
open Environ
open Evd
(* An inductive type with its parameters *)
type inductive_family
val make_ind_family : inductive * constr list -> inductive_family
val dest_ind_family : inductive_family -> inductive * constr list
val map_ind_family : (constr -> constr) -> inductive_family -> inductive_family
val liftn_inductive_family : int -> int -> inductive_family -> inductive_family
val lift_inductive_family : int -> inductive_family -> inductive_family
val substnl_ind_family :
constr list -> int -> inductive_family -> inductive_family
(* An inductive type with its parameters and real arguments *)
type inductive_type = IndType of inductive_family * constr list
val make_ind_type : inductive_family * constr list -> inductive_type
val dest_ind_type : inductive_type -> inductive_family * constr list
val map_inductive_type : (constr -> constr) -> inductive_type -> inductive_type
val liftn_inductive_type : int -> int -> inductive_type -> inductive_type
val lift_inductive_type : int -> inductive_type -> inductive_type
val substnl_ind_type :
constr list -> int -> inductive_type -> inductive_type
val mkAppliedInd : inductive_type -> constr
val mis_is_recursive_subset : int list -> wf_paths -> bool
val mis_is_recursive :
inductive * mutual_inductive_body * one_inductive_body -> bool
val mis_nf_constructor_type :
inductive * mutual_inductive_body * one_inductive_body -> int -> constr
val mis_constr_nargs : inductive -> int array
val mis_constr_nargs_env : env -> inductive -> int array
type constructor_summary = {
cs_cstr : constructor;
cs_params : constr list;
cs_nargs : int;
cs_args : Sign.rel_context;
cs_concl_realargs : constr array;
}
val lift_constructor : int -> constructor_summary -> constructor_summary
val get_constructor :
inductive * mutual_inductive_body * one_inductive_body * constr list ->
int -> constructor_summary
val get_arity : env -> inductive_family -> Sign.arity
val get_constructors : env -> inductive_family -> constructor_summary array
val build_dependent_constructor : constructor_summary -> constr
val build_dependent_inductive : env -> inductive_family -> constr
val make_arity_signature :
env -> bool -> inductive_family -> Sign.rel_context
val make_arity : env -> bool -> inductive_family -> sorts -> types
val build_branch_type : env -> bool -> constr -> constructor_summary -> types
(* Raise Not_found if not given an valid inductive type *)
val extract_mrectype : constr -> inductive * constr list
val find_mrectype : env -> evar_map -> constr -> inductive * constr list
val find_rectype : env -> evar_map -> constr -> inductive_type
val find_inductive : env -> evar_map -> constr -> inductive * constr list
val find_coinductive : env -> evar_map -> constr -> inductive * constr list
(********************)
(* Determines if a case predicate type corresponds to dependent elimination *)
val is_dependent_elimination :
env -> types -> inductive_family -> bool
(* Builds the case predicate arity (dependent or not) *)
val arity_of_case_predicate :
env -> inductive_family -> bool -> sorts -> types
val type_case_branches_with_names :
env -> inductive * constr list -> unsafe_judgment -> constr ->
types array * types
val make_case_info :
env -> inductive -> case_style -> pattern_source array -> case_info
val make_default_case_info : env -> case_style -> inductive -> case_info
(********************)
val control_only_guard : env -> types -> unit
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