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lustrec / src / main_lustre_compiler.ml @ 76c7023b

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(********************************************************************)
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(*                                                                  *)
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(*  The LustreC compiler toolset   /  The LustreC Development Team  *)
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(*  Copyright 2012 -    --   ONERA - CNRS - INPT                    *)
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(*                                                                  *)
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(*  LustreC is free software, distributed WITHOUT ANY WARRANTY      *)
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(*  under the terms of the GNU Lesser General Public License        *)
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(*  version 2.1.                                                    *)
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(*                                                                  *)
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(********************************************************************)
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open Format
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open Log
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open Utils
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open LustreSpec
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open Compiler_common
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exception StopPhase1 of program
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let usage = "Usage: lustrec [options] \x1b[4msource-file\x1b[0m"
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let extensions = [".ec"; ".lus"; ".lusi"]
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(* print a .lusi header file from a source prog *)
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let print_lusi prog dirname basename extension =
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  let header = Lusic.extract_header dirname basename prog in
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  let header_name = dirname ^ "/" ^ basename ^ extension in
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  let h_out = open_out header_name in
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  let h_fmt = formatter_of_out_channel h_out in
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  begin
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    Typing.uneval_prog_generics header;
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    Clock_calculus.uneval_prog_generics header;
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    Printers.pp_lusi_header h_fmt basename header;
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    close_out h_out
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  end
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(* compile a .lusi header file *)
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let compile_header dirname basename extension =
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  let destname = !Options.dest_dir ^ "/" ^ basename in
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  let header_name = basename ^ extension in
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  let lusic_ext = extension ^ "c" in
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  begin
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    Log.report ~level:1 (fun fmt -> fprintf fmt "@[<v>");
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    let header = parse_header true (dirname ^ "/" ^ header_name) in
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    ignore (Modules.load_header ISet.empty header);
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    ignore (check_top_decls header);
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    create_dest_dir ();
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    Log.report ~level:1
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      (fun fmt -> fprintf fmt ".. generating compiled header file %sc@," (destname ^ extension));
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    Lusic.write_lusic true header destname lusic_ext;
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    Lusic.print_lusic_to_h destname lusic_ext;
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    Log.report ~level:1 (fun fmt -> fprintf fmt ".. done !@ @]@.")
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  end
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(* check whether a source file has a compiled header,
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   if not, generate the compiled header *)
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let compile_source_to_header prog computed_types_env computed_clocks_env dirname basename extension =
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  let destname = !Options.dest_dir ^ "/" ^ basename in
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  let lusic_ext = extension ^ "c" in
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  let header_name = destname ^ lusic_ext in
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  begin
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    if not (Sys.file_exists header_name) then
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      begin
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	Log.report ~level:1 (fun fmt -> fprintf fmt ".. generating compiled header file %s@," header_name);
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	Lusic.write_lusic false (Lusic.extract_header dirname basename prog) destname lusic_ext;
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	Lusic.print_lusic_to_h destname lusic_ext
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      end
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    else
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      let lusic = Lusic.read_lusic destname lusic_ext in
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      if not lusic.Lusic.from_lusi then
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	begin
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	  Log.report ~level:1 (fun fmt -> fprintf fmt ".. generating compiled header file %s@," header_name);
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       	  Lusic.write_lusic false (Lusic.extract_header dirname basename prog) destname lusic_ext;
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(*List.iter (fun top_decl -> Format.eprintf "lusic: %a@." Printers.pp_decl top_decl) lusic.Lusic.contents;*)
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	  Lusic.print_lusic_to_h destname lusic_ext
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	end
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      else
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	begin
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	  Log.report ~level:1 (fun fmt -> fprintf fmt ".. loading compiled header file %s@," header_name);
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	  Modules.check_dependency lusic destname;
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	  let header = lusic.Lusic.contents in
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	  let (declared_types_env, declared_clocks_env) = get_envs_from_top_decls header in
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	  check_compatibility
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	    (prog, computed_types_env, computed_clocks_env)
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	    (header, declared_types_env, declared_clocks_env)
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	end
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  end
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(* From prog to prog *)
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let stage1 prog dirname basename =
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  (* Removing automata *) 
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  let prog = Automata.expand_decls prog in
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  (* Importing source *)
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  let _ = Modules.load_program ISet.empty prog in
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  (* Extracting dependencies *)
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  let dependencies, type_env, clock_env = import_dependencies prog in
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  (* Sorting nodes *)
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  let prog = SortProg.sort prog in
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  (* Perform inlining before any analysis *)
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  let orig, prog =
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    if !Options.global_inline && !Options.main_node <> "" then
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      (if !Options.witnesses then prog else []),
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      Inliner.global_inline basename prog type_env clock_env
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    else (* if !Option.has_local_inline *)
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      [],
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      Inliner.local_inline basename prog type_env clock_env
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  in
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  (* Checking stateless/stateful status *)
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  if Plugins.check_force_stateful () then
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    force_stateful_decls prog
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  else
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    check_stateless_decls prog;
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  (* Typing *)
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  let computed_types_env = type_decls type_env prog in
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  (* Clock calculus *)
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  let computed_clocks_env = clock_decls clock_env prog in
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  (* Generating a .lusi header file only *)
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  if !Options.lusi then
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    (* We stop here the processing and produce the current prog. It will be
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       exported as a lusi *)
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    raise (StopPhase1 prog);
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  (* Delay calculus *)
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  (* TO BE DONE LATER (Xavier)
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    if(!Options.delay_calculus)
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    then
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    begin
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    Log.report ~level:1 (fun fmt -> fprintf fmt ".. initialisation analysis@?");
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    try
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    Delay_calculus.delay_prog Basic_library.delay_env prog
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    with (Delay.Error (loc,err)) as exc ->
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    Location.print loc;
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    eprintf "%a" Delay.pp_error err;
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    Utils.track_exception ();
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    raise exc
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    end;
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  *)
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  (* Creating destination directory if needed *)
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  create_dest_dir ();
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  (* Compatibility with Lusi *)
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  (* Checking the existence of a lusi (Lustre Interface file) *)
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  let extension = ".lusi" in
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  compile_source_to_header prog computed_types_env computed_clocks_env dirname basename extension;
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  Typing.uneval_prog_generics prog;
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  Clock_calculus.uneval_prog_generics prog;
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  if !Options.global_inline && !Options.main_node <> "" && !Options.witnesses then
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    begin
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      let orig = Corelang.copy_prog orig in
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      Log.report ~level:1 (fun fmt -> fprintf fmt ".. generating witness file@,");
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      check_stateless_decls orig;
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      let _ = Typing.type_prog type_env orig in
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      let _ = Clock_calculus.clock_prog clock_env orig in
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      Typing.uneval_prog_generics orig;
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      Clock_calculus.uneval_prog_generics orig;
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      Inliner.witness
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	basename
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	!Options.main_node
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	orig prog type_env clock_env
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    end;
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  (* Computes and stores generic calls for each node,
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     only useful for ANSI C90 compliant generic node compilation *)
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  if !Options.ansi then Causality.NodeDep.compute_generic_calls prog;
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  (*Hashtbl.iter (fun id td -> match td.Corelang.top_decl_desc with
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    Corelang.Node nd -> Format.eprintf "%s calls %a" id
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    Causality.NodeDep.pp_generic_calls nd | _ -> ()) Corelang.node_table;*)
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  (* Optimization of prog: 
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     - Unfold consts 
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     - eliminate trivial expressions
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  *)
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  let prog = 
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    if !Options.const_unfold || !Options.optimization >= 4 then 
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      Optimize_prog.prog_unfold_consts prog 
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    else
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      prog
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  in
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  (* Normalization phase *)
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  Log.report ~level:1 (fun fmt -> fprintf fmt ".. normalization@,");
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  (* Special treatment of arrows in lustre backend. We want to keep them *)
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  if !Options.output = "lustre" then
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    Normalization.unfold_arrow_active := false;
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  let prog = Normalization.normalize_prog prog in
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  Log.report ~level:2 (fun fmt -> fprintf fmt "@[<v 2>@ %a@]@," Printers.pp_prog prog);
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  let prog =
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    if !Options.mpfr
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    then
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      begin
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	Log.report ~level:1 (fun fmt -> fprintf fmt ".. targetting MPFR library@,");
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	Mpfr.inject_prog prog
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      end
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    else
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      begin
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	Log.report ~level:1 (fun fmt -> fprintf fmt ".. keeping FP numbers@,");
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	prog
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      end in
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  Log.report ~level:2 (fun fmt -> fprintf fmt "@[<v 2>@ %a@]@," Printers.pp_prog prog);
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  (* Checking array accesses *)
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  if !Options.check then
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    begin
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      Log.report ~level:1 (fun fmt -> fprintf fmt ".. array access checks@,");
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      Access.check_prog prog;
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    end;
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  prog, dependencies
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(* prog -> machine *)
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let stage2 prog =    
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  (* Computation of node equation scheduling. It also breaks dependency cycles
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     and warns about unused input or memory variables *)
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  Log.report ~level:1 (fun fmt -> fprintf fmt ".. scheduling@,");
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  let prog, node_schs = Scheduling.schedule_prog prog in
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  Log.report ~level:1 (fun fmt -> fprintf fmt "%a"              Scheduling.pp_warning_unused node_schs);
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  Log.report ~level:3 (fun fmt -> fprintf fmt "@[<v 2>@ %a@]@," Scheduling.pp_schedule node_schs);
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  Log.report ~level:3 (fun fmt -> fprintf fmt "@[<v 2>@ %a@]@," Scheduling.pp_fanin_table node_schs);
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  Log.report ~level:5 (fun fmt -> fprintf fmt "@[<v 2>@ %a@]@," Scheduling.pp_dep_graph node_schs);
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  Log.report ~level:3 (fun fmt -> fprintf fmt "@[<v 2>@ %a@]@," Printers.pp_prog prog);
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 (* Optimization of prog:
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    - Unfold consts
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    - eliminate trivial expressions
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	TODO (PL): should we keep this phase or just remove it 
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 *)
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  let prog =
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    if !Options.optimization >= 5 then
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      begin
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	Log.report ~level:1 (fun fmt -> fprintf fmt ".. constants elimination@,");
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	Optimize_prog.prog_unfold_consts prog
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      end
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    else
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      prog
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  in
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  (* TODO Salsa optimize prog: 
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     - emits warning for programs with pre inside expressions
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     - make sure each node arguments and memory is bounded by a local annotation
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     - introduce fresh local variables for each real pure subexpression
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  *)
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 (*  let prog =  *)
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 (*    if true then *)
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 (*      Salsa.Prog.normalize prog *)
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 (*    else *)
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 (*      prog *)
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 (* in *)
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  (* DFS with modular code generation *)
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  Log.report ~level:1 (fun fmt -> fprintf fmt ".. machines generation@ ");
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  let machine_code = Machine_code.translate_prog prog node_schs in
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   (* Optimize machine code *)
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  let machine_code =
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    if !Options.optimization >= 4 (* && !Options.output <> "horn" *) then
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      begin
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	Log.report ~level:1 
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	  (fun fmt -> fprintf fmt ".. machines optimization: sub-expression elimination@,");
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	Optimize_machine.machines_cse machine_code
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      end
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    else
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      machine_code
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  in
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  (* Optimize machine code *)
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  let machine_code, removed_table = 
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    if !Options.optimization >= 2 (*&& !Options.output <> "horn"*) then
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      begin
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	Log.report ~level:1 (fun fmt -> fprintf fmt 
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    ".. machines optimization: const. inlining (partial eval. with const)@,");
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	Optimize_machine.machines_unfold (Corelang.get_consts prog) node_schs machine_code
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      end
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    else
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      machine_code, IMap.empty
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  in  
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  (* Optimize machine code *)
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  let machine_code =  (* TODO reactivate. I disabled it because output variables were removed *)
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    if false && !Options.optimization >= 3 && not (Corelang.functional_backend ()) then
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      begin
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	Log.report ~level:1 (fun fmt -> fprintf fmt ".. machines optimization: minimize heap alloc by reusing vars@,");
298
	let node_schs    = Scheduling.remove_prog_inlined_locals removed_table node_schs in
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	let reuse_tables = Scheduling.compute_prog_reuse_table node_schs in
300
	Optimize_machine.machines_fusion (Optimize_machine.machines_reuse_variables machine_code reuse_tables)
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      end
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    else
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      machine_code
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  in
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306
  (* Salsa optimize machine code *)
307
  Log.report ~level:3 (fun fmt -> fprintf fmt "@[<v 2>@ %a@]@ "
308
    (Utils.fprintf_list ~sep:"@ " Machine_code.pp_machine)
309
    machine_code);
310
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  machine_code
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let stage3 prog machine_code dependencies basename =
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  (* Printing code *)
316
  let basename    =  Filename.basename basename in
317
  let destname = !Options.dest_dir ^ "/" ^ basename in
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  match !Options.output with
319
      "C" -> 
320
	begin
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	  let alloc_header_file = destname ^ "_alloc.h" in (* Could be changed *)
322
	  let source_lib_file = destname ^ ".c" in (* Could be changed *)
323
	  let source_main_file = destname ^ "_main.c" in (* Could be changed *)
324
	  let makefile_file = destname ^ ".makefile" in (* Could be changed *)
325
	  Log.report ~level:1 (fun fmt -> fprintf fmt ".. C code generation@,");
326
	  C_backend.translate_to_c
327
	    alloc_header_file source_lib_file source_main_file makefile_file
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	    basename prog machine_code dependencies
329
	end
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    | "java" ->
331
      begin
332
	failwith "Sorry, but not yet supported !"
333
    (*let source_file = basename ^ ".java" in
334
      Log.report ~level:1 (fun fmt -> fprintf fmt ".. opening file %s@,@?" source_file);
335
      let source_out = open_out source_file in
336
      let source_fmt = formatter_of_out_channel source_out in
337
      Log.report ~level:1 (fun fmt -> fprintf fmt ".. java code generation@,@?");
338
      Java_backend.translate_to_java source_fmt basename normalized_prog machine_code;*)
339
      end
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    | "horn" ->
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      begin
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	let source_file = destname ^ ".smt2" in (* Could be changed *)
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	let source_out = open_out source_file in
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	let fmt = formatter_of_out_channel source_out in
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	Log.report ~level:1 (fun fmt -> fprintf fmt ".. hornification@,");
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        Horn_backend.translate fmt basename prog (Machine_code.arrow_machine::machine_code);
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	(* Tracability file if option is activated *)
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	if !Options.horntraces then (
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	let traces_file = destname ^ ".traces.xml" in (* Could be changed *)
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	let traces_out = open_out traces_file in
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	let fmt = formatter_of_out_channel traces_out in
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        Log.report ~level:1 (fun fmt -> fprintf fmt ".. tracing info@,");
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	Horn_backend_traces.traces_file fmt basename prog machine_code;
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	)
355
      end
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    | "lustre" ->
357
      begin
358
	let source_file = destname ^ ".lustrec.lus" in (* Could be changed *)
359
	let source_out = open_out source_file in
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	let fmt = formatter_of_out_channel source_out in
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	Printers.pp_prog fmt prog;
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(*	Lustre_backend.translate fmt basename normalized_prog machine_code *)
363
	()
364
      end
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    | _ -> assert false
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(* compile a .lus source file *)
369
let compile_source dirname basename extension =
370
371
  Log.report ~level:1 (fun fmt -> fprintf fmt "@[<v>");
372
373
  (* Parsing source *)
374
  let prog = parse_source (dirname ^ "/" ^ basename ^ extension) in
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  let prog =
377
    if !Options.mpfr then
378
      Mpfr.mpfr_module::prog
379
    else
380
      prog
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  in
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  let prog, dependencies = 
383
    try 
384
      stage1 prog dirname basename
385
    with StopPhase1 prog -> (
386
      if !Options.lusi then
387
	begin
388
	  let lusi_ext = ".lusi" (* extension ^ "i" *) in
389
	  Log.report ~level:1 (fun fmt -> fprintf fmt ".. generating interface file %s@," (dirname ^ "/" ^ basename ^ lusi_ext));
390
	  print_lusi prog dirname basename lusi_ext;
391
	  Log.report ~level:1 (fun fmt -> fprintf fmt ".. done !@ @]@.");
392
	  exit 0
393
	end
394
      else
395
        assert false
396
    )
397
  in
398
399
  let machine_code = 
400
    stage2 prog 
401
  in
402
403
  let machine_code = Plugins.refine_machine_code prog machine_code in
404
  
405
  stage3 prog machine_code dependencies basename;
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  begin
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    Log.report ~level:1 (fun fmt -> fprintf fmt ".. done !@ @]@.");
408
    (* We stop the process here *)
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    exit 0
410
  end
411
412
let compile dirname basename extension =
413
  match extension with
414
  | ".lusi"  -> compile_header dirname basename extension
415
  | ".lus"   -> compile_source dirname basename extension
416
  | _        -> assert false
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418
let anonymous filename =
419
  let ok_ext, ext = List.fold_left
420
    (fun (ok, ext) ext' ->
421
      if not ok && Filename.check_suffix filename ext' then
422
	true, ext'
423
      else
424
	ok, ext)
425
    (false, "") extensions in
426
  if ok_ext then
427
    let dirname = Filename.dirname filename in
428
    let basename = Filename.chop_suffix (Filename.basename filename) ext in
429
    compile dirname basename ext
430
  else
431
    raise (Arg.Bad ("Can only compile *.lusi, *.lus or *.ec files"))
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433
let _ =
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  Global.initialize ();
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  Corelang.add_internal_funs ();
436
  try
437
    Printexc.record_backtrace true;
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439
    let options = Options.options @ (Plugins.options ()) in
440
    
441
    Arg.parse options anonymous usage
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  with
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  | Parse.Syntax_err _ | Lexer_lustre.Error _
444
  | Types.Error (_,_) | Clocks.Error (_,_)
445
  | Corelang.Error _ (*| Task_set.Error _*)
446
  | Causality.Cycle _ -> exit 1
447
  | Sys_error msg -> (eprintf "Failure: %s@." msg)
448
  | exc -> (Utils.track_exception (); raise exc)
449
450
(* Local Variables: *)
451
(* compile-command:"make -C .." *)
452
(* End: *)