src/Pure/ML-Systems/smlnj.ML
author wenzelm
Fri, 17 Jul 2015 16:43:53 +0200
changeset 60745 d86b4cd0f1ec
parent 60729 f5989a2c1f67
child 60897 7aad4be8a48e
permissions -rw-r--r--
clarified ML compiler parameters: always provide PolyML.Compiler.CPDebug, ignore global default; tuned;
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(*  Title:      Pure/ML-Systems/smlnj.ML
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Compatibility file for Standard ML of New Jersey.
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*)
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val io_buffer_size = 4096;
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use "ML-Systems/proper_int.ML";
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exception Interrupt;
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fun reraise exn = raise exn;
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fun exit rc = Posix.Process.exit (Word8.fromInt rc);
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fun quit () = exit 0;
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use "ML-Systems/overloading_smlnj.ML";
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use "General/exn.ML";
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use "ML-Systems/single_assignment.ML";
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use "ML-Systems/universal.ML";
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use "ML-Systems/thread_dummy.ML";
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use "ML-Systems/multithreading.ML";
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use "ML-Systems/maximum_ml_stack_dummy.ML";
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use "ML-Systems/ml_name_space.ML";
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use "ML-Systems/ml_pretty.ML";
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structure PolyML = struct end;
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use "ML-Systems/pp_dummy.ML";
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use "ML-Systems/use_context.ML";
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use "ML-Systems/ml_positions.ML";
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val seconds = Time.fromReal;
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(*low-level pointer equality*)
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CM.autoload "$smlnj/init/init.cmi";
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val pointer_eq = InlineT.ptreql;
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(* restore old-style character / string functions *)
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val ord = mk_int o SML90.ord;
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val chr = SML90.chr o dest_int;
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val raw_explode = SML90.explode;
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val implode = SML90.implode;
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(* New Jersey ML parameters *)
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val _ =
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 (Control.Print.printLength := 1000;
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  Control.Print.printDepth := 350;
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  Control.Print.stringDepth := 250;
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  Control.Print.signatures := 2;
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  Control.MC.matchRedundantError := false);
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(* Poly/ML emulation *)
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(*limit the printing depth -- divided by 2 for comparibility with Poly/ML*)
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local
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  val depth = ref (10: int);
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in
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  fun get_default_print_depth () = ! depth;
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  fun default_print_depth n =
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   (depth := n;
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    Control.Print.printDepth := dest_int n div 2;
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    Control.Print.printLength := dest_int n);
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  val _ = default_print_depth 10;
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end;
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fun ml_make_string (_: string) = "(fn _ => \"?\")";
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(*prompts*)
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fun ml_prompts p1 p2 =
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  (Control.primaryPrompt := p1; Control.secondaryPrompt := p2);
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(*dummy implementation*)
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fun profile (n: int) f x = f x;
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(*dummy implementation*)
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fun print_exception_trace (_: exn -> string) (_: string -> unit) f = f ();
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(* ML command execution *)
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fun use_text ({tune_source, print, error, ...}: use_context) (line, name) verbose txt =
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  let
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    val ref out_orig = Control.Print.out;
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    val out_buffer = ref ([]: string list);
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    val out = {say = (fn s => out_buffer := s :: ! out_buffer), flush = (fn () => ())};
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    fun output () =
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      let val str = implode (rev (! out_buffer))
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      in String.substring (str, 0, Int.max (0, size str - 1)) end;
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  in
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    Control.Print.out := out;
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    Backend.Interact.useStream (TextIO.openString (tune_source (ml_positions line name txt)))
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      handle exn =>
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        (Control.Print.out := out_orig;
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          error ((if name = "" then "" else "Error in " ^ name ^ "\n") ^ output ()); raise exn);
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    Control.Print.out := out_orig;
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    if verbose then print (output ()) else ()
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  end;
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fun use_file context verbose name =
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  let
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    val instream = TextIO.openIn name;
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    val txt = Exn.release (Exn.capture TextIO.inputAll instream before TextIO.closeIn instream);
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  in use_text context (1, name) verbose txt end;
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(* toplevel pretty printing *)
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fun ml_pprint pps =
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  let
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    fun str "" = ()
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      | str s = PrettyPrint.string pps s;
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    fun pprint (ML_Pretty.Block ((bg, en), prts, ind)) =
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          (str bg; PrettyPrint.openHOVBox pps (PrettyPrint.Rel (dest_int ind));
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            List.app pprint prts; PrettyPrint.closeBox pps; str en)
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      | pprint (ML_Pretty.String (s, _)) = str s
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      | pprint (ML_Pretty.Break (false, wd)) = PrettyPrint.break pps {nsp = dest_int wd, offset = 0}
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      | pprint (ML_Pretty.Break (true, _)) = PrettyPrint.newline pps;
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  in pprint end;
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fun toplevel_pp context path pp =
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  use_text context (1, "pp") false
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    ("CompilerPPTable.install_pp [" ^ String.concatWith "," (map (fn s => "\"" ^ s ^ "\"")  path) ^
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      "] (fn pps => ml_pprint pps o Pretty.to_ML o (" ^ pp ^ "))");
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(** interrupts **)
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local
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fun change_signal new_handler f x =
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  let
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    val old_handler = Signals.setHandler (Signals.sigINT, new_handler);
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    val result = Exn.capture (f old_handler) x;
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    val _ = Signals.setHandler (Signals.sigINT, old_handler);
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  in Exn.release result end;
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in
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fun interruptible (f: 'a -> 'b) x =
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  let
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    val result = ref (Exn.interrupt_exn: 'b Exn.result);
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    val old_handler = Signals.inqHandler Signals.sigINT;
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  in
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    SMLofNJ.Cont.callcc (fn cont =>
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      (Signals.setHandler (Signals.sigINT, Signals.HANDLER (fn _ => cont));
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        result := Exn.capture f x));
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    Signals.setHandler (Signals.sigINT, old_handler);
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    Exn.release (! result)
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  end;
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fun uninterruptible f =
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  change_signal Signals.IGNORE
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    (fn old_handler => f (fn g => change_signal old_handler (fn _ => g)));
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end;
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use "ML-Systems/unsynchronized.ML";
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use "ML-Systems/ml_debugger.ML";
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(* ML system operations *)
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use "ML-Systems/ml_system.ML";
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structure ML_System =
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struct
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open ML_System;
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fun save_state name =
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  if SMLofNJ.exportML name then ()
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  else OS.FileSys.rename {old = name ^ "." ^ platform, new = name};
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end;