let string_of_problem label ({freshno; div; conv; ps; deltas} as p) =
Console.print_hline ();
- prerr_endline ("\n||||| Displaying problem: " ^ label ^ " |||||");
- let nl = "\n " in
- let deltas = String.concat nl (List.map (fun r -> String.concat " <> " (List.map (fun (i,_) -> string_of_int i) !r)) deltas) in
+ prerr_string ("\n(* DISPLAY PROBLEM (" ^ label ^ ") - ");
+ let nl = "\n" in
+ let deltas = String.concat (nl^" ") (List.map (fun r -> String.concat " <> " (List.map (fun (i,_) -> string_of_int i) !r)) deltas) in
let l = Array.to_list (Array.init (freshno + 1) string_of_var) in
- nl ^ "measure="^string_of_measure(problem_measure p)^" freshno = " ^ string_of_int freshno
- ^nl^"\b> DISCRIMINATING SETS (deltas)"
- ^nl^"(*"^deltas^(if deltas = "" then "" else "*)"^nl)
- ^"\b (* DIVERGENT *)" ^ nl
- ^" "^ (match div with None -> "None" | Some div -> "(Some\""^ print ~l (div :> nf) ^"\" ") ^ nl
- ^"\b (* CONVERGENT *) [" ^ nl
- ^ String.concat "\n " (List.map (fun t -> "(* _: *) " ^ (if t = `N (-1) then "PAC;" else "\""^ print ~l (t :> nf) ^"\";")) conv) ^
+ "measure="^string_of_measure(problem_measure p) (* ^ " freshno = " ^ string_of_int freshno*)
+ ^ nl ^ " Discriminating sets (deltas):"
+ ^ nl ^ " " ^ deltas ^ (if deltas = " " then "" else nl) ^ "*)" ^ nl
+ ^" (* DIVERGENT *)" ^ nl
+ ^" "^ (match div with None -> "None" | Some div -> "(Some\""^ print ~l (div :> nf) ^"\" ") ^ nl
+ ^" (* CONVERGENT *) [" ^ nl
+ ^ String.concat "\n " (List.map (fun t -> "(* _: *) " ^ (if t = `N (-1) then "" else "\""^ print ~l (t :> nf) ^"\";")) conv) ^
(if conv = [] then "" else nl)
- ^ "\b] (* NUMERIC *) [" ^ nl
+ ^ "] (* NUMERIC *) [" ^ nl ^ " "
^ String.concat "\n " (List.mapi (fun i t -> " (* "^ string_of_int i ^" *) \"" ^ print ~l (t :> nf) ^ "\";") ps)
- ^ nl
+ ^ nl ^ "] [\"*\"];;" ^ nl
;;
open Util.Vars
open Pure
+(* debug options *)
+let debug_display_arities = false;;
+
(************ Syntax ************************************)
(* Normal forms*)
let rec string_of_term l =
let rec string_of_term_w_pars l = function
- | `Var(n,ar) -> print_name l n ^ ":" ^ string_of_int ar
+ | `Var(n,ar) -> print_name l n ^ (if debug_display_arities then ":" ^ string_of_int ar else "")
| `N n -> string_of_int n
| `I _ as t -> "(" ^ string_of_term_no_pars_app l t ^ ")"
+ | `Lam(_,`Bottom) -> "BOMB"
| `Lam _ as t -> "(" ^ string_of_term_no_pars_lam l t ^ ")"
| `Match(t,(v,ar),bs_lift,bs,args) ->
- "[match("^ string_of_var v ^":"^ string_of_int ar ^") " ^ string_of_term_no_pars l (t :> nf) ^
+ "[match_"^ string_of_var v ^ (if debug_display_arities then ":"^ string_of_int ar else "") ^"_ " ^ string_of_term_no_pars l (t :> nf) ^
" with " ^ String.concat " | " (List.map (fun (n,t) -> string_of_int n ^ " => " ^ string_of_term l (lift bs_lift (t :> nf))) !bs) ^ "] " ^
String.concat " " (List.map (string_of_term l) (args :> nf list)) ^ ")"
| `Bottom -> "BOT"
| `Pacman -> "PAC"
and string_of_term_no_pars_app l = function
- | `I((n,ar), args) -> print_name l n ^ ":" ^ string_of_int ar ^ " " ^ String.concat " " (List.map (string_of_term_w_pars l) (Listx.to_list args :> nf list))
+ | `I((n,ar), args) -> print_name l n ^ (if debug_display_arities then ":" ^ string_of_int ar else "") ^ " " ^ String.concat " " (List.map (string_of_term_w_pars l) (Listx.to_list args :> nf list))
| #nf as t -> string_of_term_w_pars l t
and string_of_term_no_pars_lam l = function
+ | `Lam(_,`Bottom) -> "BOMB"
| `Lam(_,t) -> let name = string_of_var (List.length l) in
- "λ" ^ name ^ ". " ^ (string_of_term_no_pars_lam (name::l) t)
+ "λ" ^ name ^ ". " ^ (string_of_term_no_pars_lam (name::l) t)
| _ as t -> string_of_term_no_pars l t
and string_of_term_no_pars l = function
| `Lam _ as t -> string_of_term_no_pars_lam l t
(* Replace pacmans and bottoms *)
let n_bot = try Util.index_of "BOT" free with Not_found -> min_int in
let n_pac = try Util.index_of "PAC" free with Not_found -> min_int in
+ let n_bomb = try Util.index_of "BOMB" free with Not_found -> min_int in
let fix lev v =
if v = lev + n_bot then `Bottom
else if v = lev + n_pac then `Pacman
- else `Var(v,1) in (* 1 by default when variable not applied *)
+ else if v = lev + n_bomb then `Lam(true, `Bottom)
+ else `Var(v,1) in (* 1 by default when variable not applied *)
(* Fix arity *)
let rec aux lev = function
| Parser.Lam t -> `Lam (true, aux (lev+1) t)