cduce.ml 11.7 KB
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open Location
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open Ident
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ifdef ML_INTERFACE then module ML = Ml_ocaml;;

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exception InvalidInputFilename of string
exception InvalidObjectFilename of string

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(* if set to false toplevel exception aren't cought. 
 * Useful for debugging with OCAMLRUNPARAM="b" *)
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let catch_exceptions = true

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(* retuns a filename without the suffix suff if any *) 
let prefix filename suff =
  if Filename.check_suffix filename suff then
    try
      Filename.chop_extension filename
    with Invalid_argument filename -> failwith "Not a point in the suffix?"
  else filename

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let toplevel = ref false
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let verbose = ref false
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let typing_env = State.ref "Cduce.typing_env" Builtin.env
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let compile_env = State.ref "Cduce.compile_env" Compile.empty_toplevel
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let get_global_value cenv v =
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  Eval.var (Compile.find v !compile_env)
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let get_global_type v =
  Typer.find_value v !typing_env
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let rec is_abstraction = function
  | Ast.Abstraction _ -> true
  | Ast.LocatedExpr (_,e) -> is_abstraction e
  | _ -> false

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let print_norm ppf d = 
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  Location.protect ppf 
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    (fun ppf -> Types.Print.print ppf ((*Types.normalize*) d))
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let print_sample ppf s =
  Location.protect ppf
    (fun ppf -> Sample.print ppf s)

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let print_protect ppf s =
  Location.protect ppf (fun ppf -> Format.fprintf ppf "%s" s)

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let print_value ppf v =
  Location.protect ppf (fun ppf -> Value.print ppf v)
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let dump_value ppf x t v =
  Format.fprintf ppf "@[val %a : @[%a = %a@]@]@."
    U.print (Id.value x) print_norm t print_value v

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let dump_env ppf tenv cenv =
  Format.fprintf ppf "Types:%a@." Typer.dump_types tenv;
  Format.fprintf ppf "Namespace prefixes:@\n%a" Typer.dump_ns tenv;
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  Format.fprintf ppf "Namespace prefixes used for pretty-printing:@.%t"
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    Ns.InternalPrinter.dump;
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  Format.fprintf ppf "Schemas: %s@."
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    (String.concat " " (List.map U.get_str (Typer.get_schema_names ())));
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  Format.fprintf ppf "Values:@.";
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  Typer.iter_values tenv
    (fun x t -> dump_value ppf x t (get_global_value cenv x))
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let directive_help ppf =
  Format.fprintf ppf
"Toplevel directives:
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  #quit;;                 quit the interpreter
  #env;;                  dump current environment
  #reinit_ns;;            reinitialize namespace processing
  #help;;                 shows this help message
  #dump_value <expr>;;    dump an XML-ish representation of the resulting
                          value of a given expression
  #print_schema <name>;;
  #print_type <name>;;
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"

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let rec print_exn ppf = function
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  | Location (loc, w, exn) ->
      Format.fprintf ppf "Error %a:@." Location.print_loc (loc,w);
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      Format.fprintf ppf "%a" Location.html_hilight (loc,w); 
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      print_exn ppf exn
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  | Value.CDuceExn v ->
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      Format.fprintf ppf "Uncaught CDuce exception: @[%a@]@."
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        print_value v
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  | Typer.WrongLabel (t,l) ->
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      Format.fprintf ppf "Wrong record selection; field %a " 
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        Label.print (LabelPool.value l);
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      Format.fprintf ppf "not present in an expression of type:@.%a@."
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        print_norm t
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  | Typer.ShouldHave (t,msg) ->
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      Format.fprintf ppf "This expression should have type:@.%a@.%a@." 
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        print_norm t
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        print_protect msg
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  | Typer.ShouldHave2 (t1,msg,t2) ->
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      Format.fprintf ppf "This expression should have type:@.%a@.%a %a@." 
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        print_norm t1
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        print_protect msg
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        print_norm t2
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  | Typer.Error s ->
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      Format.fprintf ppf "%a@." print_protect s
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  | Typer.Constraint (s,t) ->
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      Format.fprintf ppf "This expression should have type:@.%a@." 
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        print_norm t;
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      Format.fprintf ppf "but its inferred type is:@.%a@." 
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        print_norm s;
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      Format.fprintf ppf "which is not a subtype, as shown by the sample:@.%a@." 
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	print_sample (Sample.get (Types.diff s t))
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  | Typer.NonExhaustive t ->
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      Format.fprintf ppf "This pattern matching is not exhaustive@.";
      Format.fprintf ppf "Residual type:@.%a@."
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	print_norm t;
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      Format.fprintf ppf "Sample:@.%a@." print_sample (Sample.get t)
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  | Typer.UnboundId (x,tn) ->
      Format.fprintf ppf "Unbound identifier %a%s@." U.print (Id.value x)
        (if tn then " (it is a type name)" else "")
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  | Typer.UnboundExtId (cu,x) ->
      Format.fprintf ppf "Unbound external identifier %a:%a@." 
	U.print (Types.CompUnit.value cu)
	U.print (Id.value x)
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  | Ulexer.Error (i,j,s) ->
      let loc = Location.loc_of_pos (i,j), `Full in
      Format.fprintf ppf "Error %a:@." Location.print_loc loc;
      Format.fprintf ppf "%a%s" Location.html_hilight loc s
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  | Parser.Error s | Stream.Error s -> 
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      Format.fprintf ppf "Parsing error: %a@." print_protect s
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  | Librarian.InconsistentCrc id ->
      Format.fprintf ppf "Link error:@.";
      let name = Encodings.Utf8.to_string (Types.CompUnit.value id) in
      Format.fprintf ppf "Inconsistent checksum (compilation unit: %s)@."
	name
  | Librarian.NoImplementation id ->
      Format.fprintf ppf "Link error:@.";
      let name = Encodings.Utf8.to_string (Types.CompUnit.value id) in
      Format.fprintf ppf "No implementation found for compilation unit: %s@."
	name
  | Librarian.Loop id ->
      Format.fprintf ppf "Compilation error:@.";
      let name = Encodings.Utf8.to_string (Types.CompUnit.value id) in
      Format.fprintf ppf "Loop between compilation unit (compilation unit: %s)@."
	name
  | InvalidInputFilename f ->
      Format.fprintf ppf "Compilation error:@.";
      Format.fprintf ppf "Source filename must have extension .cd@.";
  | InvalidObjectFilename f ->
      Format.fprintf ppf "Compilation error:@.";
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      Format.fprintf ppf "Object filename must have extension .cdo and no path@.";
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  | Librarian.InvalidObject f ->
      Format.fprintf ppf "Invalid object file %s@." f
  | Librarian.CannotOpen f ->
      Format.fprintf ppf "Cannot open file %s@." f
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  | Location.Generic s ->
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      Format.fprintf ppf "%a@." print_protect s
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  | exn ->
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(*      raise exn *)
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      Format.fprintf ppf "%a@." print_protect (Printexc.to_string exn)
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let eval_quiet tenv cenv e = 
  let (e,_) = Typer.type_expr tenv e in
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  let e = Compile.compile_expr cenv e in 
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  Eval.expr e

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let debug ppf tenv cenv = function
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  | `Subtype (t1,t2) ->
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      Format.fprintf ppf "[DEBUG:subtype]@.";
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      let t1 = Types.descr (Typer.typ tenv t1)
      and t2 = Types.descr (Typer.typ tenv t2) in
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      let s = Types.subtype t1 t2 in
      Format.fprintf ppf "%a %a %a : %b@." print_norm t1 print_protect "<=" print_norm t2 s
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  | `Sample t ->
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      Format.fprintf ppf "[DEBUG:sample]@.";
      (try
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	 let t = Types.descr (Typer.typ tenv t) in
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	 Format.fprintf ppf "%a@." print_sample (Sample.get t)
       with Not_found ->
	 Format.fprintf ppf "Empty type : no sample !@.")
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  | `Filter (t,p) -> 
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      Format.fprintf ppf "[DEBUG:filter]@.";
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      let t = Typer.typ tenv t
      and p = Typer.pat tenv p in
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      let f = Patterns.filter (Types.descr t) p in
      List.iter (fun (x,t) ->
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		   Format.fprintf ppf " %a:%a@." U.print (Id.value x)
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		     print_norm (Types.descr t)) f
  | `Accept p ->
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      Format.fprintf ppf "[DEBUG:accept]@.";
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      let p = Typer.pat tenv p in
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      let t = Patterns.accept p in
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      Format.fprintf ppf " %a@." Types.Print.print (Types.descr t)
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  | `Compile (t,pl) ->
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      Format.fprintf ppf "[DEBUG:compile]@.";
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      let t = Typer.typ tenv t
      and pl = List.map (Typer.pat tenv) pl in
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      Patterns.Compile.debug_compile ppf t pl
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  | `Explain (t,e) ->
      Format.fprintf ppf "[DEBUG:explain]@.";
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      let t = Typer.typ tenv t in
      (match Explain.explain (Types.descr t) (eval_quiet tenv cenv e) with
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	 | Some p ->
	     Format.fprintf ppf "Explanation: @[%a@]@." 
	       Explain.print_path p
	 | None ->
	     Format.fprintf ppf "Explanation: value has given type@.")
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let flush_ppf ppf = Format.fprintf ppf "@."

let directive ppf tenv cenv = function
  | `Debug d ->
      debug ppf tenv cenv d
  | `Quit ->
      (if !toplevel then raise End_of_file)
  | `Env ->
      dump_env ppf tenv cenv
  | `Print_schema schema ->
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      Schema_common.print_schema ppf (Typer.get_schema schema);
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      flush_ppf ppf
  | `Print_type name ->
      Typer.dump_type ppf tenv name;
      flush_ppf ppf
  | `Print_schema_type schema_ref ->
      Typer.dump_schema_type ppf schema_ref;
      flush_ppf ppf
  | `Reinit_ns ->
      Typer.set_ns_table_for_printer tenv
  | `Help ->
      directive_help ppf
  | `Dump pexpr ->
      Value.dump_xml ppf (eval_quiet tenv cenv pexpr);
      flush_ppf ppf

let print_id_opt ppf = function
  | None -> Format.fprintf ppf "-"
  | Some id -> Format.fprintf ppf "val %a" U.print (Id.value id)

let print_value_opt ppf = function
  | None -> ()
  | Some v -> Format.fprintf ppf " = %a" print_value v

let show ppf id t v =
  Format.fprintf ppf "@[%a : @[%a%a@]@]@."
    print_id_opt id 
    print_norm t 
    print_value_opt v

let phrases ppf phs =
  let (tenv,cenv,_) = 
    Compile.comp_unit 
      ~run:true ~show:(show ppf) 
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      ~loading:Librarian.import_and_run
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      ~directive:(directive ppf)
      !typing_env !compile_env phs in
  typing_env := tenv;
  compile_env := cenv
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let catch_exn ppf_err exn =
  if not catch_exceptions then raise exn;
  match exn with
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  | (End_of_file | Failure _ | Not_found | Invalid_argument _ | Sys.Break) 
      as e -> 
      raise e
  | exn -> 
      print_exn ppf_err exn;
      Format.fprintf ppf_err "@."

let parse rule input =
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  try Parser.localize_exn (fun () -> rule input)
  with e -> Parser.sync (); raise e
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let run rule ppf ppf_err input =
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  try phrases ppf (parse rule input); true
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  with exn -> catch_exn ppf_err exn; false
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let topinput = run Parser.top_phrases
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let script = run Parser.prog
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ifdef ML_INTERFACE then 
  let check_ml cu id out_dir out =
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    let fnam = String.copy cu in
    String.set fnam 0 ( Char.lowercase ( String.get fnam 0 ) );
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    try
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      let name = fnam ^ ".cmi" in
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      let file = List.find ( 
	fun dir -> Sys.file_exists ( Filename.concat dir name ) 
      ) !Librarian.obj_path in
      if file = "" then raise Not_found;
      let file = Filename.concat file name in
      let ml_cu = ML.CompUnit.from_bytecode file cu
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      and cd_cu = Ml_cduce.CompUnit.from_types_cu cu id in
      Ml_checker.run ml_cu cd_cu;
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      let out = open_out ( Filename.concat out_dir (fnam ^ ".ml") ) in
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      let fmt = Format.formatter_of_out_channel out in
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      Ml_generator.ML.generate fmt fnam ml_cu cd_cu;
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      close_out out;
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    with Not_found -> ( 
      let name = fnam ^ ".mli" in
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      let has_cmi = List.exists (
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	fun dir -> Sys.file_exists ( Filename.concat dir name )
      ) !Librarian.obj_path in
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      if has_cmi then 
	Format.eprintf 
	  "Warning: found %s.mli but no %s.cmi: forgotten compilation?@." 
	  fnam fnam;
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    )
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else 
  let check_ml cu id out_dir out = ();;

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let compile src out_dir =
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  try
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    if not (Filename.check_suffix src ".cd")
    then raise (InvalidInputFilename src);
    let cu = Filename.chop_suffix (Filename.basename src) ".cd" in
    let out_dir = 
      match out_dir with
	| None -> Filename.dirname src
	| Some x -> x in
    let out = Filename.concat out_dir (cu ^ ".cdo") in
    let id = Types.CompUnit.mk (U.mk_latin1 cu) in
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    Librarian.compile !verbose id src;
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    Librarian.save id out;
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    check_ml cu id out_dir out;
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    exit 0
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  with exn -> catch_exn Format.err_formatter exn; exit 1
  
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let compile_run src =
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  try
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    if not (Filename.check_suffix src ".cd")
    then raise (InvalidInputFilename src);
    let cu = Filename.chop_suffix (Filename.basename src) ".cd" in
    let id = Types.CompUnit.mk (U.mk_latin1 cu) in
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    Librarian.compile !verbose id src;
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    Librarian.run id
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  with exn -> catch_exn Format.err_formatter exn; exit 1
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let run obj =  
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  try
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    if not (Filename.check_suffix obj ".cdo") || (Filename.basename obj <> obj)
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    then raise (InvalidObjectFilename obj);
    let cu = Filename.chop_suffix (Filename.basename obj) ".cdo" in
    let id = Types.CompUnit.mk (U.mk_latin1 cu) in
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    Librarian.import_and_run id
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  with exn -> catch_exn Format.err_formatter exn; exit 1
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let dump_env ppf = dump_env ppf !typing_env !compile_env