Project

General

Profile

Download (12.9 KB) Statistics
| Branch: | Tag: | Revision:
1
(* ----------------------------------------------------------------------------
2
 * SchedMCore - A MultiCore Scheduling Framework
3
 * Copyright (C) 2009-2011, ONERA, Toulouse, FRANCE - LIFL, Lille, FRANCE
4
 *
5
 * This file is part of Prelude
6
 *
7
 * Prelude is free software; you can redistribute it and/or
8
 * modify it under the terms of the GNU Lesser General Public License
9
 * as published by the Free Software Foundation ; either version 2 of
10
 * the License, or (at your option) any later version.
11
 *
12
 * Prelude is distributed in the hope that it will be useful, but
13
 * WITHOUT ANY WARRANTY ; without even the implied warranty of
14
 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
15
 * Lesser General Public License for more details.
16
 *
17
 * You should have received a copy of the GNU Lesser General Public
18
 * License along with this program ; if not, write to the Free Software
19
 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307
20
 * USA
21
 *---------------------------------------------------------------------------- *)
22
open Corelang
23
open LustreSpec
24
open Format
25
open Utils
26

    
27
(* Prints [v] as [pp_fun] would do, but adds a backslash at each end of line,
28
   following the C convention for multiple lines macro *)
29
let pp_as_c_macro pp_fun fmt v =
30
  let (out, flush, newline, spaces) = pp_get_all_formatter_output_functions fmt () in
31
  let macro_newline () = (out "\\" 0 1; newline ()) in
32
  begin
33
    pp_set_all_formatter_output_functions fmt out flush macro_newline spaces;
34
    pp_fun fmt v;
35
    pp_set_all_formatter_output_functions fmt out flush newline spaces;
36
  end
37

    
38

    
39
let pp_var_name fmt id = fprintf fmt "%s" id.var_id
40

    
41
let pp_eq_lhs = fprintf_list ~sep:", " pp_print_string
42

    
43
let rec pp_const fmt c = 
44
  match c with
45
    | Const_int i -> pp_print_int fmt i
46
    | Const_real r -> pp_print_string fmt r
47
    | Const_float r -> pp_print_float fmt r
48
    | Const_tag  t -> pp_print_string fmt t
49
    | Const_array ca -> Format.fprintf fmt "[%a]" (Utils.fprintf_list ~sep:"," pp_const) ca
50

    
51
and pp_var fmt id = fprintf fmt "%s%s: %a" (if id.var_dec_const then "const " else "") id.var_id Types.print_ty id.var_type
52

    
53
and pp_node_var fmt id = fprintf fmt "%s%s: %a" (if id.var_dec_const then "const " else "") id.var_id Types.print_node_ty id.var_type
54

    
55
and pp_expr fmt expr =
56
  match expr.expr_desc with
57
    | Expr_const c -> pp_const fmt c
58
    | Expr_ident id -> Format.fprintf fmt "%s" id
59
(*    | Expr_cst_array (c, e) -> fprintf fmt "%a^%a" pp_expr e pp_const c *)
60
    | Expr_array a -> fprintf fmt "[%a]" pp_tuple a
61
    | Expr_access (a, d) -> fprintf fmt "%a[%a]" pp_expr a Dimension.pp_dimension d
62
    | Expr_power (a, d) -> fprintf fmt "(%a^%a)" pp_expr a Dimension.pp_dimension d
63
    | Expr_tuple el -> fprintf fmt "(%a)" pp_tuple el
64
    | Expr_ite (c, t, e) -> fprintf fmt "(if %a then %a else %a)" pp_expr c pp_expr t pp_expr e
65
    | Expr_arrow (e1, e2) -> fprintf fmt "(%a -> %a)" pp_expr e1 pp_expr e2
66
    | Expr_fby (e1, e2) -> fprintf fmt "%a fby %a" pp_expr e1 pp_expr e2
67
    | Expr_pre e -> fprintf fmt "pre %a" pp_expr e
68
    | Expr_when (e, id, l) -> fprintf fmt "%a when %s(%s)" pp_expr e l id
69
    | Expr_merge (id, hl) -> 
70
      fprintf fmt "merge %s %a" id pp_handlers hl
71
    | Expr_appl (id, e, r) -> pp_app fmt id e r
72
    | Expr_uclock _
73
    | Expr_dclock _
74
    | Expr_phclock _ -> assert false
75

    
76
and pp_tuple fmt el =
77
 fprintf_list ~sep:"," pp_expr fmt el
78

    
79
and pp_handler fmt (t, h) =
80
 fprintf fmt "(%s -> %a)" t pp_expr h
81

    
82
and pp_handlers fmt hl =
83
 fprintf_list ~sep:" " pp_handler fmt hl
84

    
85
and pp_app fmt id e r =
86
  match r with
87
  | None ->
88
    (match id, e.expr_desc with
89
    | "+", Expr_tuple([e1;e2]) -> fprintf fmt "(%a + %a)" pp_expr e1 pp_expr e2
90
    | "uminus", _ -> fprintf fmt "(- %a)" pp_expr e
91
    | "-", Expr_tuple([e1;e2]) -> fprintf fmt "(%a - %a)" pp_expr e1 pp_expr e2
92
    | "*", Expr_tuple([e1;e2]) -> fprintf fmt "(%a * %a)" pp_expr e1 pp_expr e2
93
    | "/", Expr_tuple([e1;e2]) -> fprintf fmt "(%a / %a)" pp_expr e1 pp_expr e2
94
    | "mod", Expr_tuple([e1;e2]) -> fprintf fmt "(%a mod %a)" pp_expr e1 pp_expr e2
95
    | "&&", Expr_tuple([e1;e2]) -> fprintf fmt "(%a and %a)" pp_expr e1 pp_expr e2
96
    | "||", Expr_tuple([e1;e2]) -> fprintf fmt "(%a or %a)" pp_expr e1 pp_expr e2
97
    | "xor", Expr_tuple([e1;e2]) -> fprintf fmt "(%a xor %a)" pp_expr e1 pp_expr e2
98
    | "impl", Expr_tuple([e1;e2]) -> fprintf fmt "(%a => %a)" pp_expr e1 pp_expr e2
99
    | "<", Expr_tuple([e1;e2]) -> fprintf fmt "(%a < %a)" pp_expr e1 pp_expr e2
100
    | "<=", Expr_tuple([e1;e2]) -> fprintf fmt "(%a <= %a)" pp_expr e1 pp_expr e2
101
    | ">", Expr_tuple([e1;e2]) -> fprintf fmt "(%a > %a)" pp_expr e1 pp_expr e2
102
    | ">=", Expr_tuple([e1;e2]) -> fprintf fmt "(%a >= %a)" pp_expr e1 pp_expr e2
103
    | "!=", Expr_tuple([e1;e2]) -> fprintf fmt "(%a != %a)" pp_expr e1 pp_expr e2
104
    | "=", Expr_tuple([e1;e2]) -> fprintf fmt "(%a = %a)" pp_expr e1 pp_expr e2
105
    | "not", _ -> fprintf fmt "(not %a)" pp_expr e
106
    | _, Expr_tuple _ -> fprintf fmt "%s %a" id pp_expr e
107
    | _ -> fprintf fmt "%s (%a)" id pp_expr e
108
)
109
  | Some (x, l) -> fprintf fmt "%s (%a) every %s(%s)" id pp_expr e l x 
110
	
111
let pp_node_eq fmt eq = 
112
  fprintf fmt "%a = %a;" 
113
    pp_eq_lhs eq.eq_lhs
114
    pp_expr eq.eq_rhs
115

    
116
let pp_node_eqs = fprintf_list ~sep:"@ " pp_node_eq 
117

    
118
let pp_node_args = fprintf_list ~sep:"; " pp_node_var 
119

    
120
let pp_var_type_dec fmt ty =
121
  let rec pp_var_type_dec_desc fmt tdesc =
122
  match tdesc with 
123
    | Tydec_any -> fprintf fmt "<any>"
124
    | Tydec_int -> fprintf fmt "int"
125
    | Tydec_real -> fprintf fmt "real"
126
    | Tydec_float -> fprintf fmt "float"
127
    | Tydec_bool -> fprintf fmt "bool"
128
    | Tydec_clock t -> fprintf fmt "%a clock" pp_var_type_dec_desc t
129
    | Tydec_const t -> fprintf fmt "%s" t
130
    | Tydec_enum id_list -> fprintf fmt "enum {%a }" (fprintf_list ~sep:", " pp_print_string) id_list
131
    | Tydec_array (s, t) -> fprintf fmt "%a^%a" pp_var_type_dec_desc t Dimension.pp_dimension s
132
in pp_var_type_dec_desc fmt ty.ty_dec_desc
133

    
134
(* let rec pp_var_type fmt ty =  *)
135
(*   fprintf fmt "%a" (match ty.tdesc with  *)
136
(*     | Tvar | Tarrow | Tlink | Tunivar -> assert false *)
137
(*     | Tint -> pp_print_string fmt "int" *)
138
(*     | Treal -> pp_print_string fmt "real" *)
139
(*     | Tbool -> pp_print_string fmt "bool" *)
140
(*     | Trat -> pp_print_string fmt "rat" *)
141
(*     | Tclock -> pp_print_string fmt "clock"  *)
142
(*     | Ttuple tel -> fprintf_list ~sep:" * " pp_var_type fmt tel *)
143
(*   ) *)
144

    
145

    
146
let pp_econst fmt c = 
147
  match c with
148
    | EConst_int i -> pp_print_int fmt i
149
    | EConst_real r -> pp_print_string fmt r
150
    | EConst_float r -> pp_print_float fmt r
151
    | EConst_bool b -> pp_print_bool fmt b
152
    | EConst_string s -> pp_print_string fmt ("\"" ^ s ^ "\"")
153

    
154
let rec pp_eexpr fmt eexpr = 
155
  match eexpr.eexpr_desc with
156
    | EExpr_const c -> pp_econst fmt c
157
    | EExpr_ident id -> pp_print_string fmt id
158
    | EExpr_tuple el -> fprintf_list ~sep:"," pp_eexpr fmt el
159
    | EExpr_arrow (e1, e2) -> fprintf fmt "%a -> %a" pp_eexpr e1 pp_eexpr e2
160
    | EExpr_fby (e1, e2) -> fprintf fmt "%a fby %a" pp_eexpr e1 pp_eexpr e2
161
    (* | EExpr_concat (e1, e2) -> fprintf fmt "%a::%a" pp_eexpr e1 pp_eexpr e2 *)
162
    (* | EExpr_tail e -> fprintf fmt "tail %a" pp_eexpr e *)
163
    | EExpr_pre e -> fprintf fmt "pre %a" pp_eexpr e
164
    | EExpr_when (e, id) -> fprintf fmt "%a when %s" pp_eexpr e id
165
    | EExpr_merge (id, e1, e2) -> 
166
      fprintf fmt "merge (%s, %a, %a)" id pp_eexpr e1 pp_eexpr e2
167
    | EExpr_appl (id, e, r) -> pp_eapp fmt id e r
168
    | EExpr_forall (vars, e) -> fprintf fmt "forall %a; %a" pp_node_args vars pp_eexpr e 
169
    | EExpr_exists (vars, e) -> fprintf fmt "exists %a; %a" pp_node_args vars pp_eexpr e 
170

    
171

    
172
    (* | EExpr_whennot _ *)
173
    (* | EExpr_uclock _ *)
174
    (* | EExpr_dclock _ *)
175
    (* | EExpr_phclock _ -> assert false *)
176
and pp_eapp fmt id e r =
177
  match r with
178
  | None ->
179
    (match id, e.eexpr_desc with
180
    | "+", EExpr_tuple([e1;e2]) -> fprintf fmt "(%a + %a)" pp_eexpr e1 pp_eexpr e2
181
    | "uminus", _ -> fprintf fmt "(- %a)" pp_eexpr e
182
    | "-", EExpr_tuple([e1;e2]) -> fprintf fmt "(%a - %a)" pp_eexpr e1 pp_eexpr e2
183
    | "*", EExpr_tuple([e1;e2]) -> fprintf fmt "(%a * %a)" pp_eexpr e1 pp_eexpr e2
184
    | "/", EExpr_tuple([e1;e2]) -> fprintf fmt "(%a / %a)" pp_eexpr e1 pp_eexpr e2
185
    | "mod", EExpr_tuple([e1;e2]) -> fprintf fmt "(%a mod %a)" pp_eexpr e1 pp_eexpr e2
186
    | "&&", EExpr_tuple([e1;e2]) -> fprintf fmt "(%a && %a)" pp_eexpr e1 pp_eexpr e2
187
    | "||", EExpr_tuple([e1;e2]) -> fprintf fmt "(%a || %a)" pp_eexpr e1 pp_eexpr e2
188
    | "xor", EExpr_tuple([e1;e2]) -> fprintf fmt "(%a ^^ %a)" pp_eexpr e1 pp_eexpr e2
189
    | "impl", EExpr_tuple([e1;e2]) -> fprintf fmt "(%a ==> %a)" pp_eexpr e1 pp_eexpr e2
190
    | "<", EExpr_tuple([e1;e2]) -> fprintf fmt "(%a < %a)" pp_eexpr e1 pp_eexpr e2
191
    | "<=", EExpr_tuple([e1;e2]) -> fprintf fmt "(%a <= %a)" pp_eexpr e1 pp_eexpr e2
192
    | ">", EExpr_tuple([e1;e2]) -> fprintf fmt "(%a > %a)" pp_eexpr e1 pp_eexpr e2
193
    | ">=", EExpr_tuple([e1;e2]) -> fprintf fmt "(%a >= %a)" pp_eexpr e1 pp_eexpr e2
194
    | "!=", EExpr_tuple([e1;e2]) -> fprintf fmt "(%a != %a)" pp_eexpr e1 pp_eexpr e2
195
    | "=", EExpr_tuple([e1;e2]) -> fprintf fmt "(%a == %a)" pp_eexpr e1 pp_eexpr e2
196
    | "not", _ -> fprintf fmt "(! %a)" pp_eexpr e
197
    | "ite", EExpr_tuple([e1;e2;e3]) -> fprintf fmt "(if %a then %a else %a)" pp_eexpr e1 pp_eexpr e2 pp_eexpr e3
198
    | _ -> fprintf fmt "%s (%a)" id pp_eexpr e)
199
  | Some x -> fprintf fmt "%s (%a) every %s" id pp_eexpr e x 
200

    
201
  
202
let pp_ensures fmt e =
203
  match e with
204
    | EnsuresExpr e -> fprintf fmt "ensures %a;@ " pp_eexpr e
205
    | SpecObserverNode (name, args) -> fprintf fmt "observer %s (%a);@ " name (fprintf_list ~sep:", " pp_eexpr) args
206
 
207
let pp_spec fmt spec =
208
  fprintf fmt "@[<hov 2>(*@@ ";
209
  fprintf_list ~sep:"" (fun fmt r -> fprintf fmt "requires %a;@ " pp_eexpr r) fmt spec.requires;
210
  fprintf_list ~sep:"" pp_ensures fmt spec.ensures;
211
  fprintf_list ~sep:"@ " (fun fmt (name, assumes, requires) -> 
212
    fprintf fmt "behavior %s:@[@ %a@ %a@]" 
213
      name
214
      (fprintf_list ~sep:"@ " (fun fmt r -> fprintf fmt "assumes %a;" pp_eexpr r)) assumes
215
      (fprintf_list ~sep:"@ " pp_ensures) requires
216
  ) fmt spec.behaviors;
217
  fprintf fmt "@]*)";
218
  ()
219

    
220
let pp_node fmt nd = 
221
fprintf fmt "@[<v 0>%a%tnode %s (%a) returns (%a)@.%a%alet@.@[<h 2>   @ @[%a@]@ @]@.tel@]@."
222
  (fun fmt s -> match s with Some s -> pp_spec fmt s | _ -> ()) nd.node_spec
223
  (fun fmt -> match nd.node_spec with None -> () | Some _ -> Format.fprintf fmt "@.") 
224
  nd.node_id
225
  pp_node_args nd.node_inputs
226
  pp_node_args nd.node_outputs
227
  (fun fmt locals ->
228
  match locals with [] -> () | _ ->
229
    fprintf fmt "@[<v 4>var %a@]@ " 
230
      (fprintf_list ~sep:"@ " 
231
	 (fun fmt v -> fprintf fmt "%a;" pp_node_var v))
232
      locals
233
  ) nd.node_locals
234
  (fun fmt checks ->
235
  match checks with [] -> () | _ ->
236
    fprintf fmt "@[<v 4>check@ %a@]@ " 
237
      (fprintf_list ~sep:"@ " 
238
	 (fun fmt d -> fprintf fmt "%a" Dimension.pp_dimension d))
239
      checks
240
  ) nd.node_checks
241
  pp_node_eqs nd.node_eqs
242
(*fprintf fmt "@ /* Scheduling: %a */ @ " (fprintf_list ~sep:", " pp_print_string) (Scheduling.schedule_node nd)*)
243

    
244
let pp_imported_node fmt ind = 
245
  fprintf fmt "@[<v>node %s (%a) returns (%a) %t@]"
246
    ind.nodei_id
247
    pp_node_args ind.nodei_inputs
248
    pp_node_args ind.nodei_outputs
249
    (fun fmt -> if ind.nodei_stateless then Format.fprintf fmt "stateless") 
250

    
251
let pp_imported_fun fmt ind = 
252
  fprintf fmt "@[<v>function %s (%a) returns (%a)@]"
253
    ind.fun_id
254
    pp_node_args ind.fun_inputs
255
    pp_node_args ind.fun_outputs
256

    
257
let pp_decl fmt decl =
258
  match decl.top_decl_desc with
259
  | Node nd -> fprintf fmt "%a@ " pp_node nd
260
  | ImportedNode ind ->
261
    fprintf fmt "imported %a;@ " pp_imported_node ind
262
  | ImportedFun ind ->
263
    fprintf fmt "%a;@ " pp_imported_fun ind
264
  | Consts clist -> (
265
    fprintf fmt "const %a@ " 
266
      (fprintf_list ~sep:"@ " (fun fmt cdecl ->
267
	fprintf fmt "%s = %a;"
268
	  cdecl.const_id pp_const cdecl.const_value)) clist)
269
  | Open s -> fprintf fmt "open \"%s\"" s
270

    
271

    
272
let pp_prog fmt prog = 
273
  fprintf_list ~sep:"@ " pp_decl fmt prog
274

    
275
let pp_short_decl fmt decl =
276
  match decl.top_decl_desc with
277
  | Node nd -> fprintf fmt "node %s@ " nd.node_id
278
  | ImportedNode ind -> fprintf fmt "imported node %s" ind.nodei_id
279
  | ImportedFun ind -> fprintf fmt "function %s" ind.fun_id
280
  | Consts clist -> (
281
    fprintf fmt "const %a@ " 
282
      (fprintf_list ~sep:"@ " (fun fmt cdecl ->
283
	pp_print_string fmt cdecl.const_id)) clist)
284
  | Open s -> fprintf fmt "open \"%s\"" s
285

    
286
let pp_lusi fmt decl = 
287
  match decl.top_decl_desc with
288
  | Node nd ->  
289
    fprintf fmt 
290
      "@[<v>node %s (%a) returns (%a);@ @]@ "
291
      nd.node_id
292
      pp_node_args nd.node_inputs
293
      pp_node_args nd.node_outputs
294
  | ImportedNode _ | ImportedFun _ | Consts _ | Open _ -> ()
295

    
296

    
297

    
298

    
299
let pp_lusi_header fmt filename prog =
300
  fprintf fmt "(* Generated Lustre Interface file from %s *)@." filename;
301
  fprintf fmt "(* generated by Lustre-C compiler version %s, %a *)@." Version.number pp_date (Unix.gmtime (Unix.time ()));
302
  fprintf fmt "(* feel free to mask some of the nodes by removing them from this file. *)@.@.";
303
  List.iter (fprintf fmt "%a@." pp_lusi) prog    
304
  
305
(* Local Variables: *)
306
(* compile-command:"make -C .." *)
307
(* End: *)
(39-39/46)