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	| Author | SHA1 | Date | |
|---|---|---|---|
| 
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					e75d525a6d | ||
| 
						 | 
					73d5ed7726 | 
							
								
								
									
										22
									
								
								src/main.ml
									
									
									
									
									
								
							
							
						
						
									
										22
									
								
								src/main.ml
									
									
									
									
									
								
							@@ -9,12 +9,12 @@ let print_debug d s =
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let print_verbose v s =
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  if v then Format.printf "\x1b[33;01;04mStatus:\x1b[0m %s\n" s else ()
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let exec_passes ast verbose debug passes f =
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let exec_passes ast main_fn verbose debug passes f =
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  let rec aux ast = function
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    | [] ->  f ast
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    | (n, p) :: passes ->
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        verbose (Format.asprintf "Executing pass %s:\n" n);
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        match p verbose debug ast with
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        match p verbose debug main_fn ast with
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        | None -> (exit_error ("Error while in the pass "^n^".\n"); exit 0)
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        | Some ast -> (
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        debug (Format.asprintf "Current AST (after %s):\n%a\n" n Pp.pp_ast ast);
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@@ -25,15 +25,17 @@ let exec_passes ast verbose debug passes f =
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let _ =
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  (** Usage and argument parsing. *)
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  let default_passes = ["chkvar_init_unicity"; "pre2vars"] in
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  let default_passes = ["chkvar_init_unicity"; "pre2vars"; "linearization"] in
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  let usage_msg =
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    "Usage: main [-passes p1,...,pn] [-ast] [-verbose] [-debug] \
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      [-o output_file] source_file\n" in
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      [-o output_file] [-m main_function] source_file\n" in
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  let verbose = ref false in
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  let debug = ref false in
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  let ppast = ref false in
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  let nopopt = ref false in
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  let simopt = ref false in
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  let passes = ref [] in
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  let main_fn = ref "main" in
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  let source_file = ref "" in
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  let output_file = ref "out.c" in
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  let anon_fun filename = source_file := filename in
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@@ -45,6 +47,9 @@ let _ =
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      ("-debug", Arg.Set debug, "Output a lot of debug information");
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      ("-p", Arg.String (fun s -> passes := s :: !passes),
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            "Add a pass to the compilation process");
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      ("-sim", Arg.Set simopt, "Simulate the main node");
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      ("-m", Arg.String (fun s -> main_fn := s),
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            "Defines what the main function is (defaults to main).");
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      ("-o", Arg.Set_string output_file, "Output file (defaults to [out.c])");
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    ] in
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  Arg.parse speclist anon_fun usage_msg ;
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@@ -52,6 +57,7 @@ let _ =
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  if !passes = [] then passes := default_passes;
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  let print_verbose = print_verbose !verbose in
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  let print_debug = print_debug !debug in
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  let main_fn = !main_fn in
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  (** Definition of the passes table *)
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  let passes_table  = Hashtbl.create 100 in
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@@ -59,6 +65,7 @@ let _ =
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    [
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      ("pre2vars", Passes.pre2vars);
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      ("chkvar_init_unicity", Passes.chkvar_init_unicity);
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      ("linearization", Passes.pass_linearization);
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    ];
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  (** Main functionality below *)
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@@ -101,7 +108,11 @@ let _ =
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  print_debug (Format.asprintf "Initial AST (before executing any passes):\n%a"
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                Pp.pp_ast ast) ;
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  exec_passes ast print_verbose print_debug passes
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  exec_passes ast main_fn print_verbose print_debug passes
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    begin
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    if !simopt
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      then Simulation.simulate main_fn
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      else
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        begin
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        if !ppast
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          then (Format.printf "%a" Pp.pp_ast)
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@@ -110,4 +121,5 @@ let _ =
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              then (fun _ -> ())
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              else Format.printf "%a" Ast_to_c.ast_to_c)
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        end
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    end
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@@ -161,6 +161,12 @@
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%token<bool> CONST_BOOL
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%token<Ast.real> CONST_REAL
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%left MO_not
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%left MO_pre
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%left PLUS
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%left MINUS
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%left BO_and BO_or BO_mul BO_div BO_mod BO_arrow BO_fby TO_merge
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/* The Entry Point */
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%start main
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%type <Ast.t_nodelist> main
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@@ -195,7 +201,12 @@ node_content:
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          n_automata = aut;
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          n_inputs_type = t_in;
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          n_outputs_type = t_out; } in
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      Hashtbl.add defined_nodes node_name n; n };
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      if Hashtbl.find_opt defined_nodes node_name <> None
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        then raise (MyParsingError
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                    (Format.asprintf "The node %s is already defined."
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                                      node_name,
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                    current_location()))
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        else Hashtbl.add defined_nodes node_name n; n };
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node_body:
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  | /* empty */ { ([], []) }
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@@ -1,40 +1,9 @@
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(** This file contains simplification passes for our Lustre-like AST *)
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open Ast
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open Passes_utils
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(** [node_pass] is an auxiliary function used to write passes: it will iterate
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  * the function passed as argument on all the nodes of the program *)
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let node_pass f ast: t_nodelist option =
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  Utils.list_map_option f ast
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(** [equation_pass] is an auxiliary function used to write passes: it will
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  * iterate the function passed as argument on all the equations of the
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  * program *)
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let equation_pass f ast: t_nodelist option =
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  let aux (node: t_node): t_node option =
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    match Utils.list_map_option f node.n_equations with
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    | None -> None
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    | Some eqs -> Some {n_name         = node.n_name;
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                        n_inputs       = node.n_inputs;
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                        n_outputs      = node.n_outputs;
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                        n_local_vars   = node.n_local_vars;
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                        n_equations    = eqs;
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                        n_automata     = node.n_automata;
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                        n_inputs_type  = node.n_inputs_type;
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                        n_outputs_type = node.n_outputs_type;
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                       }
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    in
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  node_pass aux ast
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let expression_pass f: t_nodelist -> t_nodelist option =
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  let aux (patt, expr) =
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    match f expr with
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    | None -> None
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    | Some expr -> Some (patt, expr)
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  in
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  equation_pass aux
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let pre2vars verbose debug =
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let pre2vars verbose debug main_fn =
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  let rec all_pre expr =
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    match expr with
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    | EMonOp (ty, MOp_pre, expr) -> all_pre expr
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@@ -115,7 +84,7 @@ let pre2vars verbose debug =
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  in
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  expression_pass (Utils.somify aux)
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let chkvar_init_unicity verbose debug : t_nodelist -> t_nodelist option =
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let chkvar_init_unicity verbose debug main_fn : t_nodelist -> t_nodelist option =
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  let aux (node: t_node) : t_node option =
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    let incr_aux h n =
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      match Hashtbl.find_opt h n with
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@@ -129,9 +98,7 @@ let chkvar_init_unicity verbose debug : t_nodelist -> t_nodelist option =
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      | [] -> ()
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      | eq :: eqs -> (incr_eq h eq; incr_eqlist h eqs)
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      in
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    let incr_branch h (State (_, eqs, _, _): t_state) = incr_eqlist h eqs in
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    let incr_automata h ((_, states): t_automaton) =
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      let acc = Hashtbl.copy h in
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        List.iter
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@@ -146,7 +113,6 @@ let chkvar_init_unicity verbose debug : t_nodelist -> t_nodelist option =
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                ) h_st) states;
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          Hashtbl.iter (fun v n -> Hashtbl.replace h v n) acc
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        in
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    let check_now h : bool=
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      Hashtbl.fold
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        (fun varname num old_res ->
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@@ -161,9 +127,6 @@ let chkvar_init_unicity verbose debug : t_nodelist -> t_nodelist option =
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            then (verbose (Format.asprintf "Purging %s" varname); Hashtbl.remove h varname)
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            else ()) h
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      in*)
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    let h = Hashtbl.create Config.maxvar in
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    let add_var n v =
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      match v with
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@@ -176,8 +139,6 @@ let chkvar_init_unicity verbose debug : t_nodelist -> t_nodelist option =
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    List.iter add_var_in (snd node.n_inputs);
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    List.iter add_var_loc (snd node.n_outputs);
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    List.iter add_var_loc (snd node.n_local_vars);
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    (** Usual Equations *)
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    incr_eqlist h node.n_equations;
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    if check_now h = false
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@@ -190,7 +151,43 @@ let chkvar_init_unicity verbose debug : t_nodelist -> t_nodelist option =
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            else None
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        end
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    (** never purge -> failwith never executed! purge_initialized h; *)
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  in
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  node_pass aux
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let pass_linearization verbose debug main_fn =
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  let node_lin (node: t_node): t_node option =
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    let rec tpl ((pat, exp): t_equation) =
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      match exp with
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      | ETuple (_, hexps :: texps) ->
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          let p1, p2 =
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            Utils.list_select
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              (List.length (Utils.type_exp hexps))
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              (snd pat) in
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          let t1 = List.flatten (List.map Utils.type_var p1) in
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          let t2 = List.flatten (List.map Utils.type_var p2) in
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          ((t1, p1), hexps)
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            :: (tpl ((t2, p2),
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                ETuple (List.flatten (List.map Utils.type_exp texps), texps)))
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      | ETuple (_, []) -> []
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      | _ -> [(pat, exp)]
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    in
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    let new_locvars = node.n_local_vars in
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    let new_equations = List.flatten
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      begin
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      List.map
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        tpl
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        node.n_equations
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      end in
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    Some
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      {
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        n_name = node.n_name;
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        n_inputs = node.n_inputs;
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        n_outputs = node.n_outputs;
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        n_local_vars = new_locvars;
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        n_equations = new_equations;
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        n_automata = node.n_automata;
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        n_inputs_type = node.n_inputs_type;
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        n_outputs_type = node.n_outputs_type;
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      }
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  in
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  node_pass node_lin
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										33
									
								
								src/passes_utils.ml
									
									
									
									
									
										Normal file
									
								
							
							
						
						
									
										33
									
								
								src/passes_utils.ml
									
									
									
									
									
										Normal file
									
								
							@@ -0,0 +1,33 @@
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open Ast
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(** [node_pass] is an auxiliary function used to write passes: it will iterate
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  * the function passed as argument on all the nodes of the program *)
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let node_pass f ast: t_nodelist option =
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  Utils.list_map_option f ast
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(** [equation_pass] is an auxiliary function used to write passes: it will
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  * iterate the function passed as argument on all the equations of the
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  * program *)
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let equation_pass (f: t_equation -> t_equation option) ast: t_nodelist option =
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  let aux (node: t_node): t_node option =
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    match Utils.list_map_option f node.n_equations with
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    | None -> None
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    | Some eqs -> Some {n_name         = node.n_name;
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                        n_inputs       = node.n_inputs;
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                        n_outputs      = node.n_outputs;
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                        n_local_vars   = node.n_local_vars;
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                        n_equations    = eqs;
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                        n_automata     = node.n_automata;
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                        n_inputs_type  = node.n_inputs_type;
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                        n_outputs_type = node.n_outputs_type;
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                       }
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    in
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  node_pass aux ast
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let expression_pass f: t_nodelist -> t_nodelist option =
 | 
			
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  let aux (patt, expr) =
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    match f expr with
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    | None -> None
 | 
			
		||||
    | Some expr -> Some (patt, expr)
 | 
			
		||||
  in
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		||||
  equation_pass aux
 | 
			
		||||
							
								
								
									
										4
									
								
								src/test2.node
									
									
									
									
									
										Normal file
									
								
							
							
						
						
									
										4
									
								
								src/test2.node
									
									
									
									
									
										Normal file
									
								
							@@ -0,0 +1,4 @@
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node diagonal_int (i: int) returns (o1, o2 : int);
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let
 | 
			
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	(o1, o2) = (i, i);
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		||||
tel
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		||||
							
								
								
									
										21
									
								
								src/utils.ml
									
									
									
									
									
								
							
							
						
						
									
										21
									
								
								src/utils.ml
									
									
									
									
									
								
							@@ -1,5 +1,14 @@
 | 
			
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open Ast
 | 
			
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let rec list_select n = function
 | 
			
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  | [] -> [], []
 | 
			
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  | h :: t ->
 | 
			
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      if n = 0
 | 
			
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        then ([], h :: t)
 | 
			
		||||
        else
 | 
			
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          let p1, p2 = list_select (n-1) t in
 | 
			
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          h :: p1, p2
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		||||
 | 
			
		||||
let rec list_map_option (f: 'a -> 'b option) (l: 'a list) : 'b list option =
 | 
			
		||||
  List.fold_right (fun elt acc ->
 | 
			
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    match acc, f elt with
 | 
			
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@@ -39,3 +48,15 @@ let name_of_var: t_var -> ident = function
 | 
			
		||||
  | IVar s -> s
 | 
			
		||||
  | BVar s -> s
 | 
			
		||||
  | RVar s -> s
 | 
			
		||||
 | 
			
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let rec fresh_var_name (l: t_varlist) n : ident =
 | 
			
		||||
  let rec aux acc n =
 | 
			
		||||
    let r = Random.int 26 in
 | 
			
		||||
    Format.asprintf "%c%s"
 | 
			
		||||
      (char_of_int (r + (if Random.bool () then 65 else 97)))
 | 
			
		||||
      (if n = 0 then acc else aux acc (n-1))
 | 
			
		||||
  in
 | 
			
		||||
  let name = aux "" n in
 | 
			
		||||
  if List.filter (fun v -> name_of_var v = name) (snd l) = []
 | 
			
		||||
    then name
 | 
			
		||||
    else fresh_var_name l n
 | 
			
		||||
 
 | 
			
		||||
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