indty = tactic_term; paramspec = inverter_param_list ->
G.Inverter
(loc, name, indty, paramspec)
- | IDENT "record" ; (params,name,ty,fields) = record_spec ->
+ | IDENT "record" ; (params,name,ty,fields) = record_spec ->
G.Obj (loc, N.Record (params,name,ty,fields))
+ | IDENT "nrecord" ; (params,name,ty,fields) = record_spec ->
+ G.NObj (loc, N.Record (params,name,ty,fields))
| IDENT "default" ; what = QSTRING ; uris = LIST1 URI ->
let uris = List.map UriManager.uri_of_string uris in
G.Default (loc,what,uris)
| _ -> assert false
;;
+let rec mk_rels howmany from =
+ match howmany with
+ | 0 -> []
+ | _ -> (NCic.Rel (howmany + from)) :: (mk_rels (howmany-1) from)
+;;
+
let refine_term
metasenv subst context uri ~coercion_db ~use_coercions term expty _ ~localization_tbl=
assert (uri=None);
let attrs = `Provided, `Regular in
uri, height, [], [],
NCic.Inductive (true,leftno,tyl,attrs)
- | _ -> assert false
-(*
- | CicNotationPt.Record (params,name,ty,fields) ->
- let uri = match uri with Some uri -> uri | None -> assert false in
- let context,params =
- let context,res =
- List.fold_left
- (fun (context,res) (name,t) ->
- let t =
- match t with
- None -> CicNotationPt.Implicit
- | Some t -> t in
- let name = cic_name_of_name name in
- name::context,(name, interpretate_term context env None false t)::res
- ) ([],[]) params
- in
- context,List.rev res in
- let add_params =
- List.fold_right
- (fun (name,ty) t -> Cic.Prod (name,ty,t)) params in
- let ty' = add_params (interpretate_term context env None false ty) in
- let fields' =
- snd (
- List.fold_left
- (fun (context,res) (name,ty,_coercion,arity) ->
- let context' = Cic.Name name :: context in
- context',(name,interpretate_term context env None false ty)::res
- ) (context,[]) fields) in
- let concl =
- (*here the explicit_named_substituion is assumed to be of length 0 *)
- let mutind = Cic.MutInd (uri,0,[]) in
- if params = [] then mutind
- else
- Cic.Appl
- (mutind::CicUtil.mk_rels (List.length params) (List.length fields)) in
- let con =
+ | CicNotationPt.Record (params,name,ty,fields) ->
+ let context,params =
+ let context,res =
List.fold_left
- (fun t (name,ty) -> Cic.Prod (Cic.Name name,ty,t))
- concl fields' in
- let con' = add_params con in
- let tyl = [name,true,ty',["mk_" ^ name,con']] in
- let field_names = List.map (fun (x,_,y,z) -> x,y,z) fields in
- Cic.InductiveDefinition
- (tyl,[],List.length params,[`Class (`Record field_names)])
-*)
+ (fun (context,res) (name,t) ->
+ let t =
+ match t with
+ None -> CicNotationPt.Implicit
+ | Some t -> t in
+ let name = cic_name_of_name name in
+ let t =
+ interpretate_term ~obj_context:[] ~context ~env ~uri:None
+ ~is_path:false t
+ in
+ (name,NCic.Decl t)::context,(name,t)::res
+ ) ([],[]) params
+ in
+ context,List.rev res in
+ let add_params =
+ List.fold_right (fun (name,ty) t -> NCic.Prod (name,ty,t)) params in
+ let leftno = List.length params in
+ let ty' =
+ add_params
+ (interpretate_term ~obj_context:[] ~context ~env ~uri:None
+ ~is_path:false ty) in
+ let fields' =
+ snd (
+ List.fold_left
+ (fun (context,res) (name,ty,_coercion,_arity) ->
+ let ty =
+ interpretate_term ~obj_context:[] ~context ~env ~uri:None
+ ~is_path:false ty in
+ let context' = (name,NCic.Decl ty)::context in
+ context',(name,ty)::res
+ ) (context,[]) fields) in
+ let concl =
+ let nref =
+ NReference.reference_of_spec uri (NReference.Ind (true,0,leftno)) in
+ let mutind = NCic.Const nref in
+ if params = [] then mutind
+ else
+ NCic.Appl
+ (mutind::mk_rels (List.length params) (List.length fields)) in
+ let con =
+ List.fold_left (fun t (name,ty) -> NCic.Prod (name,ty,t)) concl fields' in
+ let con' = add_params con in
+ let relevance = [] in
+ let tyl = [relevance,name,ty',[relevance,"mk_" ^ name,con']] in
+ let field_names = List.map (fun (x,_,y,z) -> x,y,z) fields in
+ let height = (* XXX calculate *) 0 in
+ let attrs = `Provided, `Record field_names in
+ uri, height, [], [],
+ NCic.Inductive (true,leftno,tyl,attrs)
;;
let disambiguate_term ~context ~metasenv ~subst ~expty