• Home
  • Features
  • Pricing
  • Docs
  • Announcements
  • Sign In

nickg / nvc / 13639324349

03 Mar 2025 07:58PM UTC coverage: 92.277% (+0.2%) from 92.103%
13639324349

push

github

nickg
Add a new mid-level IR to replace vcode

4917 of 5118 new or added lines in 14 files covered. (96.07%)

130 existing lines in 6 files now uncovered.

68023 of 73716 relevant lines covered (92.28%)

481213.68 hits per line

Source File
Press 'n' to go to next uncovered line, 'b' for previous

94.73
/src/common.c
1
//
2
//  Copyright (C) 2013-2024  Nick Gasson
3
//
4
//  This program is free software: you can redistribute it and/or modify
5
//  it under the terms of the GNU General Public License as published by
6
//  the Free Software Foundation, either version 3 of the License, or
7
//  (at your option) any later version.
8
//
9
//  This program is distributed in the hope that it will be useful,
10
//  but WITHOUT ANY WARRANTY; without even the implied warranty of
11
//  MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
12
//  GNU General Public License for more details.
13
//
14
//  You should have received a copy of the GNU General Public License
15
//  along with this program.  If not, see <http://www.gnu.org/licenses/>.
16
//
17

18
#include "util.h"
19
#include "common.h"
20
#include "diag.h"
21
#include "hash.h"
22
#include "ident.h"
23
#include "lib.h"
24
#include "lower.h"
25
#include "option.h"
26
#include "phase.h"
27
#include "scan.h"
28
#include "thread.h"
29
#include "type.h"
30
#include "vlog/vlog-phase.h"
31
#include "sdf/sdf-phase.h"
32
#include "sdf/sdf-util.h"
33

34
#include <assert.h>
35
#include <ctype.h>
36
#include <string.h>
37
#include <stdlib.h>
38
#include <inttypes.h>
39

40
static vhdl_standard_t  current_std  = STD_08;
41
static bool             have_set_std = false;
42
static ident_t          id_cache[NUM_WELL_KNOWN];
43
static text_buf_t      *syntax_buf = NULL;
44

45
int64_t assume_int(tree_t t)
378,855✔
46
{
47
   int64_t value;
378,855✔
48
   if (folded_int(t, &value))
378,855✔
49
      return value;
378,855✔
50

51
   fatal_at(tree_loc(t), "expression cannot be folded to "
×
52
            "an integer constant");
53
}
54

55
void range_bounds(tree_t r, int64_t *low, int64_t *high)
28,950✔
56
{
57
   assert(tree_kind(r) == T_RANGE);
28,950✔
58

59
   const int64_t left = assume_int(tree_left(r));
28,950✔
60
   const int64_t right = assume_int(tree_right(r));
28,950✔
61

62
   *low  = tree_subkind(r) == RANGE_TO ? left : right;
28,950✔
63
   *high = tree_subkind(r) == RANGE_TO ? right : left;
28,950✔
64
}
28,950✔
65

66
bool folded_int(tree_t t, int64_t *l)
3,640,238✔
67
{
68
   switch (tree_kind(t)) {
3,673,776✔
69
   case T_LITERAL:
2,654,395✔
70
      switch (tree_subkind(t)) {
2,654,395✔
71
      case L_PHYSICAL:
16,669✔
72
         if (tree_has_ref(t))
16,669✔
73
            return false;
74
         // Fall-through
75
      case L_INT:
76
         *l = tree_ival(t);
2,607,783✔
77
         return true;
2,607,783✔
78
      default:
79
         return false;
80
      }
81
   case T_QUALIFIED:
362✔
82
      return folded_int(tree_value(t), l);
362✔
83
   case T_REF:
804,112✔
84
      if (tree_has_ref(t)) {
804,112✔
85
         tree_t decl = tree_ref(t);
804,111✔
86
         switch (tree_kind(decl)) {
804,111✔
87
         case T_CONST_DECL:
40,838✔
88
            if (tree_has_value(decl))
40,838✔
89
               return folded_int(tree_value(decl), l);
32,837✔
90
            else
91
               return false;
92
         case T_ENUM_LIT:
692,623✔
93
            *l = tree_pos(decl);
692,623✔
94
            return true;
692,623✔
95
         case T_ALIAS:
339✔
96
            return folded_int(tree_value(decl), l);
339✔
97
         default:
98
            return false;
99
         }
100
      }
101
      // Fall-through
102
   default:
103
      return false;
104
   }
105
}
106

107
bool folded_real(tree_t t, double *l)
195,646✔
108
{
109
   switch (tree_kind(t)) {
195,649✔
110
   case T_LITERAL:
187,378✔
111
      if (tree_subkind(t) == L_REAL) {
187,378✔
112
         *l = tree_dval(t);
187,307✔
113
         return true;
187,307✔
114
      }
115
      else
116
         return false;
117
   case T_QUALIFIED:
3✔
118
      return folded_real(tree_value(t), l);
3✔
119
   default:
120
      return false;
121
   }
122
}
123

124
bool folded_length(tree_t r, int64_t *l)
55,880✔
125
{
126
   int64_t low, high;
55,880✔
127
   if (folded_bounds(r, &low, &high)) {
55,880✔
128
      *l = MAX(high - low + 1, 0);
53,050✔
129
      return true;
53,050✔
130
   }
131
   else
132
      return false;
133
}
134

135
bool folded_bounds(tree_t r, int64_t *low, int64_t *high)
1,502,768✔
136
{
137
   assert(tree_kind(r) == T_RANGE);
1,502,768✔
138

139
   const range_kind_t rkind = tree_subkind(r);
1,502,768✔
140

141
   if (rkind != RANGE_TO && rkind != RANGE_DOWNTO)
1,502,768✔
142
      return false;
143

144
   int64_t left, right;
1,490,218✔
145
   if (!folded_int(tree_left(r), &left))
1,490,218✔
146
      return false;
147
   else if (!folded_int(tree_right(r), &right))
1,378,197✔
148
      return false;
149

150
   switch (rkind) {
1,341,878✔
151
   case RANGE_TO:
1,217,824✔
152
      *low  = left;
1,217,824✔
153
      *high = right;
1,217,824✔
154
      return true;
1,217,824✔
155
   case RANGE_DOWNTO:
124,054✔
156
      *low  = right;
124,054✔
157
      *high = left;
124,054✔
158
      return true;
124,054✔
159
   default:
160
      return false;
161
   }
162
}
163

164
bool folded_bounds_real(tree_t r, double *low, double *high)
78,110✔
165
{
166
   assert(tree_kind(r) == T_RANGE);
78,110✔
167

168
   const range_kind_t rkind = tree_subkind(r);
78,110✔
169

170
   if (rkind != RANGE_TO && rkind != RANGE_DOWNTO)
78,110✔
171
      return false;
172

173
   double left, right;
78,107✔
174
   if (folded_real(tree_left(r), &left) && folded_real(tree_right(r), &right)) {
78,107✔
175
      switch (rkind) {
78,022✔
176
      case RANGE_TO:
78,022✔
177
         *low  = left;
78,022✔
178
         *high = right;
78,022✔
179
         return true;
78,022✔
180
      case RANGE_DOWNTO:
×
181
         *low  = right;
×
182
         *high = left;
×
183
         return true;
×
184
      default:
185
         return false;
186
      }
187
   }
188
   else
189
      return false;
85✔
190
}
191

192
bool folded_bool(tree_t t, bool *b)
40,986✔
193
{
194
   if (tree_kind(t) == T_REF) {
40,986✔
195
      tree_t decl = tree_ref(t);
10,757✔
196
      if (tree_kind(decl) == T_ENUM_LIT
10,757✔
197
          && type_ident(tree_type(decl)) == well_known(W_STD_BOOL)) {
8,345✔
198
         *b = (tree_pos(decl) == 1);
8,345✔
199
         return true;
8,345✔
200
      }
201
   }
202

203
   return false;
204
}
205

206
tree_t get_enum_lit(tree_t t, type_t type, int pos)
7,475✔
207
{
208
   type_t enum_type = type_base_recur(type ?: tree_type(t));
7,475✔
209
   tree_t lit = type_enum_literal(enum_type, pos);
7,475✔
210

211
   tree_t b = tree_new(T_REF);
7,475✔
212
   tree_set_loc(b, tree_loc(t));
7,475✔
213
   tree_set_ref(b, lit);
7,475✔
214
   tree_set_type(b, enum_type);
7,475✔
215
   tree_set_ident(b, tree_ident(lit));
7,475✔
216

217
   return b;
7,475✔
218
}
219

220
tree_t get_int_lit(tree_t t, type_t type, int64_t i)
41,704✔
221
{
222
   tree_t f = tree_new(T_LITERAL);
41,704✔
223
   tree_set_subkind(f, L_INT);
41,704✔
224
   tree_set_ival(f, i);
41,704✔
225
   tree_set_loc(f, tree_loc(t));
41,704✔
226
   tree_set_type(f, type ?: tree_type(t));
41,704✔
227

228
   return f;
41,704✔
229
}
230

231
tree_t get_discrete_lit(tree_t t, type_t type, int64_t i)
3,458✔
232
{
233
   if (type_is_enum(type)) {
3,458✔
234
      type_t base = type_base_recur(type);
68✔
235
      const int maxlit = type_enum_literals(base);
68✔
236
      if (i >= maxlit)
68✔
237
         return NULL;
238
      else
239
         return get_enum_lit(t, type, i);
68✔
240
   }
241
   else
242
      return get_int_lit(t, type, i);
3,390✔
243
}
244

245
tree_t get_real_lit(tree_t t, type_t type, double r)
×
246
{
247
   tree_t f = tree_new(T_LITERAL);
×
248
   tree_set_loc(f, tree_loc(t));
×
249
   tree_set_subkind(f, L_REAL);
×
250
   tree_set_dval(f, r);
×
251
   tree_set_type(f, type ?: tree_type(t));
×
252

253
   return f;
×
254
}
255

256
bool parse_value(type_t type, const char *str, parsed_value_t *value)
92✔
257
{
258
   type_t base = type_base_recur(type);
92✔
259
   const type_kind_t basek = type_kind(base);
92✔
260

261
   if (basek == T_ARRAY && type_is_character_array(base)) {
92✔
262
      value->enums = NULL;
17✔
263

264
      int map[256];
17✔
265
      for (int i = 0; i < ARRAY_LEN(map); i++)
4,369✔
266
         map[i] = INT_MAX;
4,352✔
267

268
      type_t elem = type_elem(base);
17✔
269

270
      const int nlits = type_enum_literals(elem);
17✔
271
      for (int i = 0; i < nlits; i++) {
2,591✔
272
         ident_t id = tree_ident(type_enum_literal(elem, i));
2,574✔
273
         if (ident_char(id, 0) == '\'')
2,574✔
274
            map[(uint8_t)ident_char(id, 1)] = i;
1,924✔
275
      }
276

277
      while (map[(uint8_t)*str] == INT_MAX && isspace_iso88591(*str))
20✔
278
         ++str;
3✔
279

280
      const bool quoted = map['\"'] == INT_MAX && *str == '\"';
17✔
281
      if (quoted) str++;
17✔
282

283
      const size_t max = strlen(str);
17✔
284
      enum_array_t *array = xmalloc_flex(sizeof(enum_array_t), max, 1);
17✔
285

286
      int n = 0, m;
17✔
287
      for (; *str != '\0' && (m = map[(uint8_t)*str]) != INT_MAX; str++, n++)
99✔
288
         array->values[n] = m;
65✔
289

290
      assert(n <= max);
17✔
291
      array->count = n;
17✔
292

293
      if (quoted && *str++ != '\"') {
17✔
294
         free(array);
1✔
295
         return false;
1✔
296
      }
297

298
      for (; *str; str++) {
20✔
299
         if (!isspace_iso88591(*str)) {
5✔
300
            free(array);
1✔
301
            return false;
1✔
302
         }
303
      }
304

305
      value->enums = array;
15✔
306
      return true;
15✔
307
   }
308

309
   while (isspace_iso88591(*str))
85✔
310
      ++str;
10✔
311

312
   switch (basek) {
75✔
313
   case T_INTEGER:
50✔
314
      {
315
         const bool is_negative = *str == '-';
50✔
316
         int num_digits = 0;
50✔
317

318
         if (is_negative) ++str;
50✔
319

320
         int64_t sum = 0;
321
         for (; isdigit_iso88591(*str) || (*str == '_'); str++) {
144✔
322
            if (*str != '_') {
94✔
323
               sum *= 10;
92✔
324
               sum += (*str - '0');
92✔
325
               num_digits++;
92✔
326
            }
327
         }
328

329
         value->integer = is_negative ? -sum : sum;
50✔
330

331
         if (num_digits == 0)
50✔
332
            return false;
333
      }
334
      break;
335

336
   case T_ENUM:
14✔
337
      {
338
         bool upcase = true;
14✔
339
         char *copy LOCAL = xstrdup(str), *p;
27✔
340
         for (p = copy; (*p != '\0') && !isspace_iso88591(*p); p++, str++) {
55✔
341
            if (*p == '\'')
41✔
342
               upcase = false;
343
            if (upcase)
23✔
344
               *p = toupper_iso88591(*p);
14✔
345
         }
346
         *p = '\0';
14✔
347

348
         ident_t id = ident_new(copy);
14✔
349

350
         value->integer = -1;
14✔
351

352
         const int nlits = type_enum_literals(base);
14✔
353
         for (int i = 0; i < nlits; i++) {
38✔
354
            if (tree_ident(type_enum_literal(base, i)) == id) {
37✔
355
               value->integer = i;
13✔
356
               break;
13✔
357
            }
358
         }
359

360
         if (value->integer == -1)
14✔
361
            return false;
1✔
362
      }
363
      break;
364

365
   case T_REAL:
6✔
366
      {
367
         char *eptr = NULL;
6✔
368
         value->real = strtod(str, &eptr);
6✔
369
         str = eptr;
6✔
370
      }
371
      break;
6✔
372

373
   case T_PHYSICAL:
5✔
374
      {
375
         char *eptr = NULL;
5✔
376
         double scale = strtod(str, &eptr);
5✔
377
         str = eptr;
5✔
378

379
         while (isspace_iso88591(*str)) ++str;
10✔
380

381
         char *copy LOCAL = xstrdup(str), *p;
10✔
382
         for (p = copy; *p && !isspace_iso88591(*p); p++, str++)
13✔
383
            *p = toupper_iso88591(*p);
8✔
384
         *p = '\0';
5✔
385

386
         if (p == copy)
5✔
387
            return false;
388

389
         ident_t id = ident_new(copy);
4✔
390

391
         value->integer = -1;
4✔
392

393
         const int nunits = type_units(base);
4✔
394
         for (int i = 0; i < nunits; i++) {
11✔
395
            tree_t u = type_unit(base, i);
11✔
396
            if (tree_ident(u) == id) {
11✔
397
               value->integer = scale * assume_int(tree_value(u));
4✔
398
               break;
4✔
399
            }
400
         }
401

402
         if (value->integer == -1)
4✔
403
            return false;
404
      }
405
      break;
406

407
   default:
408
      return false;
409
   }
410

411
   for (; *str; str++) {
84✔
412
      if (!isspace_iso88591(*str))
11✔
413
         return false;
414
   }
415

416
   return true;
417
}
418

419
tree_t make_ref(tree_t to)
7,777✔
420
{
421
   tree_t t = tree_new(T_REF);
7,777✔
422
   tree_set_ident(t, tree_ident(to));
7,777✔
423
   tree_set_ref(t, to);
7,777✔
424
   tree_set_type(t, tree_type(to));
7,777✔
425
   return t;
7,777✔
426
}
427

428
vhdl_standard_t standard(void)
2,691,495✔
429
{
430
   return current_std;
2,691,495✔
431
}
432

433
void set_standard(vhdl_standard_t s)
4,983✔
434
{
435
   current_std = s;
4,983✔
436
   have_set_std = true;
4,983✔
437
}
4,983✔
438

439
void set_default_standard(vhdl_standard_t s)
456✔
440
{
441
   if (!have_set_std)
456✔
442
      set_standard(s);
88✔
443
}
456✔
444

445
const char *standard_text(vhdl_standard_t s)
4,512✔
446
{
447
   static const char *text[] = {
4,512✔
448
      "1987", "1993", "2000", "2002", "2008", "2019"
449
   };
450

451
   if ((unsigned)s < ARRAY_LEN(text))
4,512✔
452
      return text[s];
4,512✔
453
   else
454
      return "????";
455
}
456

457
tree_t find_element_mode_indication(tree_t view, tree_t field, bool *converse)
397✔
458
{
459
   switch (tree_kind(view)) {
1,255✔
460
   case T_REF:
541✔
461
      return find_element_mode_indication(tree_ref(view), field, converse);
541✔
462

463
   case T_ALIAS:
144✔
464
      return find_element_mode_indication(tree_value(view), field, converse);
144✔
465

466
   case T_ATTR_REF:
173✔
467
      assert(tree_subkind(view) == ATTR_CONVERSE);
173✔
468
      *converse = !*converse;
173✔
469
      return find_element_mode_indication(tree_name(view), field, converse);
173✔
470

471
   case T_VIEW_DECL:
397✔
472
      {
473
         type_t view_type = tree_type(view);
397✔
474
         assert(type_kind(view_type) == T_VIEW);
397✔
475

476
         const int nelems = type_fields(view_type);
397✔
477
         for (int i = 0; i < nelems; i++) {
673✔
478
            tree_t e = type_field(view_type, i);
673✔
479
            if (tree_ref(e) == field)
673✔
480
               return e;
397✔
481
         }
482

483
         return NULL;
484
      }
485

486
   default:
×
487
      fatal_trace("unhandled tree kind %s in find_element_mode_indication",
488
                  tree_kind_str(tree_kind(view)));
489
   }
490
}
491

492
port_mode_t converse_mode(tree_t port, bool converse)
265✔
493
{
494
   const port_mode_t mode = tree_subkind(port);
265✔
495
   switch (mode) {
265✔
496
   case PORT_IN: return converse ? PORT_OUT : PORT_IN;
135✔
497
   case PORT_OUT: return converse ? PORT_IN : PORT_OUT;
121✔
498
   default: return mode;
499
   }
500
}
501

502
class_t class_of(tree_t t)
1,017,975✔
503
{
504
   switch (tree_kind(t)) {
1,071,446✔
505
   case T_VAR_DECL:
506
      return C_VARIABLE;
507
   case T_SIGNAL_DECL:
45,806✔
508
   case T_IMPLICIT_SIGNAL:
509
      return C_SIGNAL;
45,806✔
510
   case T_CONST_DECL:
36,589✔
511
      return C_CONSTANT;
36,589✔
512
   case T_PORT_DECL:
152,392✔
513
   case T_GENERIC_DECL:
514
   case T_PARAM_DECL:
515
   case T_EXTERNAL_NAME:
516
      return tree_class(t);
152,392✔
517
   case T_ENUM_LIT:
589,052✔
518
   case T_LITERAL:
519
   case T_STRING:
520
      return C_LITERAL;
589,052✔
521
   case T_FIELD_DECL:
1,055✔
522
   case T_ATTR_DECL:
523
      return C_DEFAULT;
1,055✔
524
   case T_VIEW_DECL:
126✔
525
      return C_VIEW;
126✔
526
   case T_UNIT_DECL:
7,537✔
527
      return C_UNITS;
7,537✔
528
   case T_ARCH:
47✔
529
      return C_ARCHITECTURE;
47✔
530
   case T_FUNC_DECL:
5,401✔
531
   case T_FUNC_BODY:
532
   case T_FUNC_INST:
533
   case T_FCALL:
534
   case T_PROT_FCALL:
535
      return C_FUNCTION;
5,401✔
536
   case T_PROC_DECL:
10,261✔
537
   case T_PROC_BODY:
538
   case T_PROC_INST:
539
   case T_PCALL:
540
   case T_PROT_PCALL:
541
      return C_PROCEDURE;
10,261✔
542
   case T_ENTITY:
135✔
543
      return C_ENTITY;
135✔
544
   case T_SUBTYPE_DECL:
18,765✔
545
      return C_SUBTYPE;
18,765✔
546
   case T_TYPE_DECL:
71,858✔
547
   case T_PROT_DECL:
548
   case T_PROT_BODY:
549
      return C_TYPE;
71,858✔
550
   case T_FILE_DECL:
1,101✔
551
      return C_FILE;
1,101✔
552
   case T_PROCESS:
138✔
553
   case T_BLOCK:
554
   case T_FOR:
555
   case T_INSTANCE:
556
   case T_CONCURRENT:
557
   case T_ELAB:
558
   case T_PSL_DECL:
559
   case T_PSL_DIRECT:
560
   case T_FOR_GENERATE:
561
   case T_IF_GENERATE:
562
   case T_CASE_GENERATE:
563
      return C_LABEL;
138✔
564
   case T_COMPONENT:
1✔
565
      return C_COMPONENT;
1✔
566
   case T_REF:
44,745✔
567
   case T_PROT_REF:
568
      return tree_has_ref(t) ? class_of(tree_ref(t)) : C_DEFAULT;
44,745✔
569
   case T_ARRAY_REF:
8,730✔
570
   case T_ARRAY_SLICE:
571
   case T_RECORD_REF:
572
   case T_ALL:
573
   case T_ALIAS:
574
   case T_QUALIFIED:
575
      return class_of(tree_value(t));
8,730✔
576
   case T_PACKAGE:
1,227✔
577
   case T_PACK_BODY:
578
   case T_PACK_INST:
579
      return C_PACKAGE;
1,227✔
580
   case T_CONFIGURATION:
1✔
581
      return C_CONFIGURATION;
1✔
582
   case T_LIBRARY:
1✔
583
      return C_LIBRARY;
1✔
584
   case T_ATTR_REF:
86✔
585
      switch (tree_subkind(t)) {
86✔
586
      case ATTR_DELAYED:
587
      case ATTR_STABLE:
588
      case ATTR_QUIET:
589
      case ATTR_TRANSACTION:
590
         return C_SIGNAL;
591
      default:
80✔
592
         return C_DEFAULT;
80✔
593
      }
594
   case T_CONTEXT:
×
595
      return C_CONTEXT;
×
596
   default:
×
597
      fatal_trace("missing class_of for %s", tree_kind_str(tree_kind(t)));
598
   }
599
}
600

601
bool class_has_type(class_t c)
861,954✔
602
{
603
   switch (c) {
861,954✔
604
   case C_LABEL:
605
   case C_ENTITY:
606
   case C_ARCHITECTURE:
607
   case C_COMPONENT:
608
   case C_CONFIGURATION:
609
   case C_PACKAGE:
610
   case C_LIBRARY:
611
      return false;
612
   default:
860,676✔
613
      return true;
860,676✔
614
   }
615
}
616

617
const char *class_str(class_t c)
444✔
618
{
619
   static const char *strs[] = {
444✔
620
      "default", "signal", "variable", "constant", "file", "entity",
621
      "component", "configuration", "architecture", "function", "package",
622
      "type", "subtype", "label", "procedure", "literal", "units", "library",
623
      "context", "view",
624
   };
625
   assert(c < ARRAY_LEN(strs));
444✔
626
   return strs[c];
444✔
627
}
628

629
const char *assoc_kind_str(assoc_kind_t akind)
9✔
630
{
631
   switch (akind) {
9✔
632
   case A_NAMED:  return "named";
633
   case A_CONCAT:
2✔
634
   case A_POS:    return "positional";
2✔
635
   case A_OTHERS: return "others";
3✔
636
   case A_SLICE:
1✔
637
   case A_RANGE:  return "range";
1✔
638
   default:       return "??";
×
639
   }
640
}
641

642
bool is_subprogram(tree_t t)
794,493✔
643
{
644
   switch (tree_kind(t)) {
794,493✔
645
   case T_FUNC_DECL:
646
   case T_FUNC_BODY:
647
   case T_FUNC_INST:
648
   case T_PROC_DECL:
649
   case T_PROC_BODY:
650
   case T_PROC_INST:
651
      return true;
652
   case T_GENERIC_DECL:
2,861✔
653
      {
654
         const class_t class = tree_class(t);
2,861✔
655
         return class == C_FUNCTION || class == C_PROCEDURE;
2,861✔
656
      }
657
   default:
624,755✔
658
      return false;
624,755✔
659
   }
660
}
661

662
bool is_loop_stmt(tree_t t)
421✔
663
{
664
   const tree_kind_t kind = tree_kind(t);
421✔
665
   return kind == T_WHILE || kind == T_FOR || kind == T_LOOP;
421✔
666
}
667

668
bool is_container(tree_t t)
10,411✔
669
{
670
   switch (tree_kind(t)) {
10,411✔
671
   case T_FUNC_BODY:
672
   case T_PROC_BODY:
673
   case T_ENTITY:
674
   case T_ARCH:
675
   case T_PACKAGE:
676
   case T_PACK_BODY:
677
   case T_CONFIGURATION:
678
   case T_BLOCK:
679
   case T_PROT_BODY:
680
   case T_ELAB:
681
   case T_FOR:
682
   case T_PROCESS:
683
   case T_PACK_INST:
684
      return true;
685
   default:
8,112✔
686
      return false;
8,112✔
687
   }
688
}
689

690
bool is_concurrent_block(tree_t t)
1,129✔
691
{
692
   switch (tree_kind(t)) {
1,129✔
693
   case T_ARCH:
694
   case T_ENTITY:
695
   case T_BLOCK:
696
   case T_IF_GENERATE:
697
   case T_FOR_GENERATE:
698
      return true;
699
   default:
376✔
700
      return false;
376✔
701
   }
702
}
703

704
bool is_package(tree_t t)
45,507✔
705
{
706
   switch (tree_kind(t)) {
45,507✔
707
   case T_PACKAGE:
708
   case T_PACK_BODY:
709
   case T_PACK_INST:
710
      return true;
711
   default:
929✔
712
      return false;
929✔
713
   }
714
}
715

716
bool is_design_unit(tree_t t)
38,377✔
717
{
718
   switch (tree_kind(t)) {
38,377✔
719
   case T_ENTITY:
720
   case T_ARCH:
721
   case T_PACKAGE:
722
   case T_PACK_BODY:
723
   case T_CONFIGURATION:
724
   case T_CONTEXT:
725
   case T_PACK_INST:
726
      return true;
727
   default:
8,608✔
728
      return false;
8,608✔
729
   }
730
}
731

732
bool is_literal(tree_t t)
31,516✔
733
{
734
   switch (tree_kind(t)) {
31,516✔
735
   case T_REF:
3,104✔
736
      return tree_has_ref(t) && tree_kind(tree_ref(t)) == T_ENUM_LIT;
4,307✔
737
   case T_LITERAL:
738
      return true;
739
   case T_STRING:
22,538✔
740
   default:
741
      return false;
22,538✔
742
   }
743
}
744

745
bool is_body(tree_t t)
6,997✔
746
{
747
   switch (tree_kind(t)) {
6,997✔
748
   case T_FUNC_BODY:
749
   case T_PROC_BODY:
750
   case T_PACK_BODY:
751
   case T_PROT_BODY:
752
      return true;
753
   default:
43✔
754
      return false;
43✔
755
   }
756
}
757

758
bool is_guarded_signal(tree_t decl)
13,829✔
759
{
760
   switch (tree_kind(decl)) {
13,829✔
761
   case T_PORT_DECL:
13,437✔
762
   case T_SIGNAL_DECL:
763
      return !!(tree_flags(decl) & (TREE_F_BUS | TREE_F_REGISTER));
13,437✔
764
   default:
765
      return false;
766
   }
767
}
768

769
bool is_type_decl(tree_t t)
991,891✔
770
{
771
   switch (tree_kind(t)) {
991,891✔
772
   case T_TYPE_DECL:
773
   case T_SUBTYPE_DECL:
774
   case T_PROT_DECL:
775
   case T_PROT_BODY:
776
      return true;
777
   default:
813,927✔
778
      return false;
813,927✔
779
   }
780
}
781

782
tree_t aliased_type_decl(tree_t decl)
124,276✔
783
{
784
   switch (tree_kind(decl)) {
124,540✔
785
   case T_ALIAS:
266✔
786
      {
787
         tree_t value = tree_value(decl);
266✔
788
         const tree_kind_t kind = tree_kind(value);
266✔
789
         if (kind == T_REF && tree_has_ref(value))
266✔
790
            return aliased_type_decl(tree_ref(value));
264✔
791
         else if (kind == T_ATTR_REF && is_type_attribute(tree_subkind(value)))
2✔
792
             return value;
793
         else
794
            return NULL;
×
795
      }
796
   case T_TYPE_DECL:
797
   case T_SUBTYPE_DECL:
798
   case T_PROT_DECL:
799
   case T_PROT_BODY:
800
      return decl;
801
   case T_GENERIC_DECL:
1,521✔
802
      if (tree_class(decl) == C_TYPE)
1,521✔
803
         return decl;
804
      else
805
         return NULL;
740✔
806
   default:
29,042✔
807
      return NULL;
29,042✔
808
   }
809
}
810

811
tree_t add_param(tree_t call, tree_t value, param_kind_t kind, tree_t name)
158,553✔
812
{
813
   tree_t p = tree_new(T_PARAM);
158,553✔
814
   tree_set_loc(p, tree_loc(value));
158,553✔
815
   tree_set_subkind(p, kind);
158,553✔
816
   tree_set_value(p, value);
158,553✔
817

818
   switch (kind) {
158,553✔
819
   case P_NAMED:
74✔
820
      assert(name != NULL);
74✔
821
      tree_set_name(p, name);
74✔
822
      break;
74✔
823
   case P_POS:
158,479✔
824
      tree_set_pos(p, tree_params(call));
158,479✔
825
      break;
158,479✔
826
   }
827

828
   tree_add_param(call, p);
158,553✔
829
   return p;
158,553✔
830
}
831

832
type_t array_aggregate_type(type_t array, int from_dim)
291✔
833
{
834
   if (type_is_none(array))
291✔
835
      return type_new(T_NONE);
2✔
836

837
   if (type_is_unconstrained(array)) {
289✔
838
      const int nindex = type_indexes(array);
45✔
839
      assert(from_dim < nindex);
45✔
840

841
      type_t type = type_new(T_ARRAY);
45✔
842
      type_set_ident(type, type_ident(array));
45✔
843
      type_set_elem(type, type_elem(array));
45✔
844

845
      for (int i = from_dim; i < nindex; i++)
90✔
846
         type_add_index(type, type_index(array, i));
45✔
847

848
      return type;
849
   }
850
   else {
851
      const int ndims = dimension_of(array);
244✔
852
      assert(from_dim < ndims);
244✔
853

854
      type_t base = type_new(T_ARRAY);
244✔
855
      type_set_ident(base, type_ident(array));
244✔
856
      type_set_elem(base, type_elem(array));
244✔
857

858
      tree_t constraint = tree_new(T_CONSTRAINT);
244✔
859
      tree_set_subkind(constraint, C_INDEX);
244✔
860

861
      type_t sub = type_new(T_SUBTYPE);
244✔
862
      type_set_base(sub, base);
244✔
863
      type_set_constraint(sub, constraint);
244✔
864

865
      for (int i = from_dim; i < ndims; i++) {
510✔
866
         tree_t r = range_of(array, i);
266✔
867
         if (r == NULL) {
266✔
868
            // Not enough constraints were provided for the type
869
            r = tree_new(T_RANGE);
1✔
870
            tree_set_subkind(r, RANGE_ERROR);
1✔
871
            tree_set_type(r, type_new(T_NONE));
1✔
872
         }
873

874
         type_add_index(base, tree_type(r));
266✔
875
         tree_add_range(constraint, r);
266✔
876
      }
877

878
      return sub;
879
   }
880
}
881

882
unsigned bits_for_range(int64_t low, int64_t high)
1,774,897✔
883
{
884
   if (low > high)
1,774,897✔
885
      return 0;   // Null range
886
   else if (low < 0) {
1,774,896✔
887
      // Signed integers
888
      if (low >= INT8_MIN && high <= INT8_MAX)
549,931✔
889
         return 8;
890
      else if (low >= INT16_MIN && high <= INT16_MAX)
542,939✔
891
         return 16;
892
      else if (low >= INT32_MIN && high <= INT32_MAX)
542,705✔
893
         return 32;
894
      else
895
         return 64;
125,680✔
896
   }
897
   else {
898
      // Unsigned integers
899
      if (high <= 1)
1,224,965✔
900
         return 1;
901
      else if (high <= UINT8_MAX)
603,152✔
902
         return 8;
903
      else if (high <= UINT16_MAX)
137,941✔
904
         return 16;
905
      else if (high <= UINT32_MAX)
134,606✔
906
         return 32;
907
      else
908
         return 64;
16,054✔
909
   }
910
}
911

912
unsigned dimension_of(type_t type)
1,199,076✔
913
{
914
   switch (type_kind(type)) {
2,239,227✔
915
   case T_SUBTYPE:
1,040,149✔
916
      return dimension_of(type_base(type));
1,040,149✔
917
   case T_GENERIC:
133✔
918
      switch (type_subkind(type)) {
133✔
919
      case GTYPE_ARRAY:
121✔
920
         return type_indexes(type);
121✔
921
      case GTYPE_ACCESS:
×
922
         return dimension_of(type_designated(type));
×
923
      case GTYPE_FILE:
924
      case GTYPE_PRIVATE:
925
         return 0;
926
      default:
12✔
927
         return 1;
12✔
928
      }
929
   case T_ARRAY:
1,191,929✔
930
      return type_indexes(type);
1,191,929✔
931
   case T_NONE:
932
   case T_RECORD:
933
   case T_INCOMPLETE:
934
   case T_FILE:
935
      return 0;
936
   case T_INTEGER:
6,955✔
937
   case T_REAL:
938
   case T_PHYSICAL:
939
   case T_ENUM:
940
      return type_dims(type);
6,955✔
941
   case T_ACCESS:
2✔
942
      return dimension_of(type_designated(type));
2✔
943
   default:
×
944
      fatal_trace("invalid type kind %s in dimension_of",
945
                  type_kind_str(type_kind(type)));
946
   }
947
}
948

949
tree_t range_of(type_t type, unsigned dim)
1,531,532✔
950
{
951
   switch (type_kind(type)) {
1,563,189✔
952
   case T_SUBTYPE:
1,226,392✔
953
      if (type_has_constraint(type)) {
1,226,392✔
954
         tree_t c = type_constraint(type);
1,194,735✔
955
         switch (tree_subkind(c)) {
1,194,735✔
956
         case C_INDEX:
1,194,735✔
957
         case C_RANGE:
958
            if (dim < tree_ranges(c))
1,194,735✔
959
               return tree_range(c, dim);
1,194,734✔
960
            else
961
               return NULL;   // Must be an error
962
         default:
×
963
            should_not_reach_here();
964
         }
965
      }
966
      else
967
         return range_of(type_base(type), dim);
31,657✔
968
   case T_INTEGER:
336,797✔
969
   case T_REAL:
970
   case T_PHYSICAL:
971
   case T_ENUM:
972
      return type_dim(type, dim);
336,797✔
973
   default:
×
974
      fatal_trace("invalid type kind %s for %s in range_of",
975
                  type_kind_str(type_kind(type)), type_pp(type));
976
   }
977
}
978

979
range_kind_t direction_of(type_t type, unsigned dim)
24,529✔
980
{
981
   switch (type_kind(type)) {
24,573✔
982
   case T_ENUM:
983
      return RANGE_TO;
984
   case T_NONE:
×
985
      return RANGE_ERROR;
×
986
   case T_INTEGER:
24,468✔
987
   case T_REAL:
988
   case T_PHYSICAL:
989
   case T_SUBTYPE:
990
      {
991
         tree_t r = range_of(type, dim);
24,468✔
992
         const range_kind_t rkind = tree_subkind(r);
24,468✔
993
         if (rkind == RANGE_EXPR) {
24,468✔
994
            // Return a fixed direction if possible
995
            tree_t value = tree_value(r);
113✔
996
            assert(tree_kind(value) == T_ATTR_REF);
113✔
997

998
            DEBUG_ONLY({
113✔
999
                  const attr_kind_t attr = tree_subkind(value);
1000
                  assert(attr == ATTR_RANGE || attr == ATTR_REVERSE_RANGE);
1001
               });
113✔
1002

1003
            tree_t name = tree_name(value);
113✔
1004
            if (tree_kind(name) == T_REF && tree_has_ref(name)) {
113✔
1005
               tree_t decl = tree_ref(name);
112✔
1006
               if (is_type_decl(decl))
112✔
1007
                  return direction_of(tree_type(decl), 0);
44✔
1008
            }
1009
         }
1010

1011
         return rkind;
1012
      }
1013
   default:
×
1014
      fatal_trace("invalid type kind %s in direction_of",
1015
                  type_kind_str(type_kind(type)));
1016
   }
1017
}
1018

1019
type_t index_type_of(type_t type, unsigned dim)
212,395✔
1020
{
1021
   if (dim >= dimension_of(type))
212,397✔
1022
      return NULL;
1023

1024
   type_t base = type_base_recur(type);
212,368✔
1025
   type_kind_t base_kind = type_kind(base);
212,368✔
1026
   if (base_kind == T_ARRAY)
212,368✔
1027
      return type_index(base, dim);
209,050✔
1028
   else if (base_kind == T_ENUM || base_kind == T_NONE)
3,318✔
1029
      return type;
1030
   else if (base_kind == T_GENERIC && type_subkind(base) == GTYPE_ARRAY)
3,164✔
1031
      return type_index(base, dim);
74✔
1032
   else if (base_kind == T_RECORD || base_kind == T_GENERIC)
3,090✔
1033
      return NULL;
1034
   else if (base_kind == T_ACCESS)
3,084✔
1035
      return index_type_of(type_designated(type), dim);
2✔
1036
   else
1037
      return tree_type(range_of(base, dim));
3,082✔
1038
}
1039

1040
int64_t rebase_index(type_t array_type, int dim, int64_t value)
240✔
1041
{
1042
   // Convert value which is in the range of array_type to a zero-based index
1043
   tree_t r = range_of(array_type, dim);
240✔
1044
   const int64_t left = assume_int(tree_left(r));
240✔
1045
   return (tree_subkind(r) == RANGE_TO) ? value - left : left - value;
240✔
1046
}
1047

1048
ident_t well_known(well_known_t id)
411,705✔
1049
{
1050
   assert(id < NUM_WELL_KNOWN);
411,705✔
1051
   return id_cache[id];
411,705✔
1052
}
1053

1054
well_known_t is_well_known(ident_t ident)
268,748✔
1055
{
1056
   well_known_t pos = 0;
268,748✔
1057
   for (; pos < NUM_WELL_KNOWN; pos++) {
14,277,344✔
1058
      if (id_cache[pos] == ident)
14,139,308✔
1059
         break;
1060
   }
1061

1062
   return pos;
268,748✔
1063
}
1064

1065
void intern_strings(void)
5,135✔
1066
{
1067
   id_cache[W_STD_STANDARD]    = ident_new("STD.STANDARD");
5,135✔
1068
   id_cache[W_ALL]             = ident_new("all");
5,135✔
1069
   id_cache[W_STD_BIT]         = ident_new("STD.STANDARD.BIT");
5,135✔
1070
   id_cache[W_STD_BOOL]        = ident_new("STD.STANDARD.BOOLEAN");
5,135✔
1071
   id_cache[W_STD_CHAR]        = ident_new("STD.STANDARD.CHARACTER");
5,135✔
1072
   id_cache[W_STD_NATURAL]     = ident_new("STD.STANDARD.NATURAL");
5,135✔
1073
   id_cache[W_STD_POSITIVE]    = ident_new("STD.STANDARD.POSITIVE");
5,135✔
1074
   id_cache[W_STD_INTEGER]     = ident_new("STD.STANDARD.INTEGER");
5,135✔
1075
   id_cache[W_STD_STRING]      = ident_new("STD.STANDARD.STRING");
5,135✔
1076
   id_cache[W_STD_REAL]        = ident_new("STD.STANDARD.REAL");
5,135✔
1077
   id_cache[W_STD_TIME]        = ident_new("STD.STANDARD.TIME");
5,135✔
1078
   id_cache[W_STD_BIT_VECTOR]  = ident_new("STD.STANDARD.BIT_VECTOR");
5,135✔
1079
   id_cache[W_IEEE_SIGNED]     = ident_new("IEEE.NUMERIC_STD.SIGNED");
5,135✔
1080
   id_cache[W_IEEE_UNSIGNED]   = ident_new("IEEE.NUMERIC_STD.UNSIGNED");
5,135✔
1081
   id_cache[W_IEEE_LOGIC]      = ident_new("IEEE.STD_LOGIC_1164.STD_LOGIC");
5,135✔
1082
   id_cache[W_IEEE_ULOGIC]     = ident_new("IEEE.STD_LOGIC_1164.STD_ULOGIC");
5,135✔
1083
   id_cache[W_IEEE_1164_AND]   = ident_new("IEEE.STD_LOGIC_1164.\"and\"");
5,135✔
1084
   id_cache[W_IEEE_1164_NAND]  = ident_new("IEEE.STD_LOGIC_1164.\"nand\"");
5,135✔
1085
   id_cache[W_IEEE_1164_OR]    = ident_new("IEEE.STD_LOGIC_1164.\"or\"");
5,135✔
1086
   id_cache[W_IEEE_1164_NOR]   = ident_new("IEEE.STD_LOGIC_1164.\"nor\"");
5,135✔
1087
   id_cache[W_IEEE_1164_XOR]   = ident_new("IEEE.STD_LOGIC_1164.\"xor\"");
5,135✔
1088
   id_cache[W_IEEE_1164_XNOR]  = ident_new("IEEE.STD_LOGIC_1164.\"xnor\"");
5,135✔
1089
   id_cache[W_FOREIGN]         = ident_new("FOREIGN");
5,135✔
1090
   id_cache[W_WORK]            = ident_new("WORK");
5,135✔
1091
   id_cache[W_STD]             = ident_new("STD");
5,135✔
1092
   id_cache[W_THUNK]           = ident_new("thunk");
5,135✔
1093
   id_cache[W_BODY]            = ident_new("body");
5,135✔
1094
   id_cache[W_CARET]           = ident_new("^");
5,135✔
1095
   id_cache[W_IEEE]            = ident_new("IEEE");
5,135✔
1096
   id_cache[W_IEEE_1164]       = ident_new("IEEE.STD_LOGIC_1164");
5,135✔
1097
   id_cache[W_ERROR]           = ident_new("$error");
5,135✔
1098
   id_cache[W_ELAB]            = ident_new("elab");
5,135✔
1099
   id_cache[W_NUMERIC_STD]     = ident_new("IEEE.NUMERIC_STD");
5,135✔
1100
   id_cache[W_NUMERIC_BIT]     = ident_new("IEEE.NUMERIC_BIT");
5,135✔
1101
   id_cache[W_NVC]             = ident_new("NVC");
5,135✔
1102
   id_cache[W_DEFAULT_CLOCK]   = ident_new("default clock");
5,135✔
1103
   id_cache[W_STD_REFLECTION]  = ident_new("STD.REFLECTION");
5,135✔
1104
   id_cache[W_NEVER_WAITS]     = ident_new("NEVER_WAITS");
5,135✔
1105
   id_cache[W_NVC_VERILOG]     = ident_new("NVC.VERILOG");
5,135✔
1106
   id_cache[W_NVC_PSL_SUPPORT] = ident_new("NVC.PSL_SUPPORT");
5,135✔
1107
   id_cache[W_SHAPE]           = ident_new("shape");
5,135✔
1108
   id_cache[W_INSTANCE_NAME]   = ident_new("instance_name");
5,135✔
1109
   id_cache[W_PATH_NAME]       = ident_new("path_name");
5,135✔
1110
   id_cache[W_VITAL]           = ident_new("VITAL");
5,135✔
1111

1112
   id_cache[W_IEEE_LOGIC_VECTOR] =
10,270✔
1113
      ident_new("IEEE.STD_LOGIC_1164.STD_LOGIC_VECTOR");
5,135✔
1114
   id_cache[W_IEEE_ULOGIC_VECTOR] =
10,270✔
1115
      ident_new("IEEE.STD_LOGIC_1164.STD_ULOGIC_VECTOR");
5,135✔
1116
   id_cache[W_IEEE_1164_RISING_EDGE] =
10,270✔
1117
      ident_new("IEEE.STD_LOGIC_1164.RISING_EDGE(sU)B");
5,135✔
1118
   id_cache[W_IEEE_1164_FALLING_EDGE] =
10,270✔
1119
      ident_new("IEEE.STD_LOGIC_1164.FALLING_EDGE(sU)B");
5,135✔
1120

1121
   id_cache[W_NUMERIC_STD_UNSIGNED] = ident_new("IEEE.NUMERIC_STD_UNSIGNED");
5,135✔
1122
   id_cache[W_NUMERIC_BIT_UNSIGNED] = ident_new("IEEE.NUMERIC_BIT_UNSIGNED");
5,135✔
1123

1124
   id_cache[W_OP_CCONV]               = ident_new("\"??\"");
5,135✔
1125
   id_cache[W_OP_AND]                 = ident_new("\"and\"");
5,135✔
1126
   id_cache[W_OP_OR]                  = ident_new("\"or\"");
5,135✔
1127
   id_cache[W_OP_NAND]                = ident_new("\"nand\"");
5,135✔
1128
   id_cache[W_OP_NOR]                 = ident_new("\"nor\"");
5,135✔
1129
   id_cache[W_OP_XOR]                 = ident_new("\"xor\"");
5,135✔
1130
   id_cache[W_OP_XNOR]                = ident_new("\"xnor\"");
5,135✔
1131
   id_cache[W_OP_EQUAL]               = ident_new("\"=\"");
5,135✔
1132
   id_cache[W_OP_NOT_EQUAL]           = ident_new("\"/=\"");
5,135✔
1133
   id_cache[W_OP_LESS_THAN]           = ident_new("\"<\"");
5,135✔
1134
   id_cache[W_OP_LESS_EQUAL]          = ident_new("\"<=\"");
5,135✔
1135
   id_cache[W_OP_GREATER_THAN]        = ident_new("\">\"");
5,135✔
1136
   id_cache[W_OP_GREATER_EQUAL]       = ident_new("\">=\"");
5,135✔
1137
   id_cache[W_OP_MATCH_EQUAL]         = ident_new("\"?=\"");
5,135✔
1138
   id_cache[W_OP_MATCH_NOT_EQUAL]     = ident_new("\"?/=\"");
5,135✔
1139
   id_cache[W_OP_MATCH_LESS_THAN]     = ident_new("\"?<\"");
5,135✔
1140
   id_cache[W_OP_MATCH_LESS_EQUAL]    = ident_new("\"?<=\"");
5,135✔
1141
   id_cache[W_OP_MATCH_GREATER_THAN]  = ident_new("\"?>\"");
5,135✔
1142
   id_cache[W_OP_MATCH_GREATER_EQUAL] = ident_new("\"?>=\"");
5,135✔
1143
   id_cache[W_OP_SLL]                 = ident_new("\"sll\"");
5,135✔
1144
   id_cache[W_OP_SRL]                 = ident_new("\"srl\"");
5,135✔
1145
   id_cache[W_OP_SLA]                 = ident_new("\"sla\"");
5,135✔
1146
   id_cache[W_OP_SRA]                 = ident_new("\"sra\"");
5,135✔
1147
   id_cache[W_OP_ROL]                 = ident_new("\"rol\"");
5,135✔
1148
   id_cache[W_OP_ROR]                 = ident_new("\"ror\"");
5,135✔
1149
   id_cache[W_OP_ADD]                 = ident_new("\"+\"");
5,135✔
1150
   id_cache[W_OP_MINUS]               = ident_new("\"-\"");
5,135✔
1151
   id_cache[W_OP_CONCAT]              = ident_new("\"&\"");
5,135✔
1152
   id_cache[W_OP_TIMES]               = ident_new("\"*\"");
5,135✔
1153
   id_cache[W_OP_DIVIDE]              = ident_new("\"/\"");
5,135✔
1154
   id_cache[W_OP_MOD]                 = ident_new("\"mod\"");
5,135✔
1155
   id_cache[W_OP_REM]                 = ident_new("\"rem\"");
5,135✔
1156
   id_cache[W_OP_EXPONENT]            = ident_new("\"**\"");
5,135✔
1157
   id_cache[W_OP_ABS]                 = ident_new("\"abs\"");
5,135✔
1158
   id_cache[W_OP_NOT]                 = ident_new("\"not\"");
5,135✔
1159
}
5,135✔
1160

1161
bool is_uninstantiated_package(tree_t pack)
36,350✔
1162
{
1163
   return tree_kind(pack) == T_PACKAGE
36,350✔
1164
      && tree_generics(pack) > 0
35,221✔
1165
      && tree_genmaps(pack) == 0;
37,637✔
1166
}
1167

1168
bool is_uninstantiated_subprogram(tree_t decl)
98,615✔
1169
{
1170
   switch (tree_kind(decl)) {
98,615✔
1171
   case T_FUNC_DECL:
98,080✔
1172
   case T_FUNC_BODY:
1173
   case T_PROC_DECL:
1174
   case T_PROC_BODY:
1175
      return tree_generics(decl) > 0;
98,080✔
1176
   default:
1177
      return false;
1178
   }
1179
}
1180

1181
bool is_anonymous_subtype(type_t type)
176,320✔
1182
{
1183
   return type_kind(type) == T_SUBTYPE && !type_has_ident(type);
176,320✔
1184
}
1185

1186
bool unit_needs_cgen(tree_t unit)
195✔
1187
{
1188
   switch (tree_kind(unit)) {
195✔
1189
   case T_PACK_INST:
1190
      return true;
1191
   case T_PACK_BODY:
×
1192
      {
1193
         tree_t pack = tree_primary(unit);
×
1194
         return package_needs_body(pack) && !is_uninstantiated_package(pack);
×
1195
      }
1196
   case T_PACKAGE:
12✔
1197
      return !package_needs_body(unit) && !is_uninstantiated_package(unit);
24✔
1198
   default:
×
1199
      return false;
×
1200
   }
1201
}
1202

1203
bool package_needs_body(tree_t pack)
1,860✔
1204
{
1205
   assert(tree_kind(pack) == T_PACKAGE);
1,860✔
1206

1207
   const int ndecls = tree_decls(pack);
1,860✔
1208
   for (int i = 0; i < ndecls; i++) {
85,039✔
1209
      tree_t d = tree_decl(pack, i);
84,545✔
1210
      const tree_kind_t dkind = tree_kind(d);
84,545✔
1211
      if ((dkind == T_FUNC_DECL || dkind == T_PROC_DECL)
84,545✔
1212
          && !(tree_flags(d) & TREE_F_PREDEFINED))
74,254✔
1213
         return true;
1214
      else if (dkind == T_CONST_DECL && !tree_has_value(d))
83,333✔
1215
         return true;
1216
      else if (dkind == T_PROT_DECL)
83,269✔
1217
         return true;
1218
   }
1219

1220
   return false;
1221
}
1222

1223
static tree_t cached_unit(tree_t hint, tree_t *cache, well_known_t lib_name,
13,788✔
1224
                          well_known_t unit_name)
1225
{
1226
   const vhdl_standard_t curr = standard();
13,788✔
1227

1228
   if (cache[curr] == NULL) {
13,788✔
1229
      if (hint != NULL)
4,316✔
1230
         cache[curr] = hint;
1,392✔
1231
      else {
1232
         lib_t std = lib_require(well_known(lib_name));
2,924✔
1233
         cache[curr] = lib_get(std, well_known(unit_name));
2,924✔
1234
         assert(cache[curr] != NULL);
2,924✔
1235
      }
1236
   }
1237

1238
   assert(hint == NULL || hint == cache[curr]);
13,788✔
1239
   return cache[curr];
13,788✔
1240
}
1241

1242
static tree_t cached_std(tree_t hint)
13,389✔
1243
{
1244
   static tree_t standard_cache[STD_19 + 1] = {};
13,389✔
1245
   return cached_unit(hint, standard_cache, W_STD, W_STD_STANDARD);
13,389✔
1246
}
1247

1248
static tree_t search_type_decls(tree_t container, ident_t name)
13,684✔
1249
{
1250
   const int ndecls = tree_decls(container);
13,684✔
1251

1252
   for (int i = 0; i < ndecls; i++) {
883,884✔
1253
      tree_t d = tree_decl(container, i);
883,884✔
1254
      if (is_type_decl(d) && tree_ident(d) == name)
883,884✔
1255
         return d;
13,684✔
1256
   }
1257

1258
   return NULL;
1259
}
1260

1261
type_t std_type(tree_t std, std_type_t which)
938,816✔
1262
{
1263
   static type_t cache[STD_FILE_OPEN_STATE + 1] = {};
938,816✔
1264
   assert(which < ARRAY_LEN(cache));
938,816✔
1265

1266
   if (cache[which] == NULL) {
938,816✔
1267
      const char *names[] = {
13,389✔
1268
         "universal_integer",
1269
         "universal_real",
1270
         "INTEGER",
1271
         "REAL",
1272
         "BOOLEAN",
1273
         "STRING",
1274
         "TIME",
1275
         "BIT",
1276
         "FILE_OPEN_KIND",
1277
         "FILE_OPEN_STATUS",
1278
         "NATURAL",
1279
         "BIT_VECTOR",
1280
         "SEVERITY_LEVEL",
1281
         "FILE_ORIGIN_KIND",
1282
         "FILE_OPEN_STATE",
1283
      };
1284

1285
      tree_t d = search_type_decls(cached_std(std), ident_new(names[which]));
13,389✔
1286
      if (d == NULL)
13,389✔
1287
         fatal_trace("cannot find standard type %s", names[which]);
1288

1289
      // Do not cache standard types while bootstrapping as the GC will
1290
      // move the objects after parsing
1291
      static int can_cache = -1;
13,389✔
1292
      if (can_cache == -1) can_cache = !opt_get_int(OPT_BOOTSTRAP);
13,389✔
1293

1294
      if (can_cache)
13,389✔
1295
         return (cache[which] = tree_type(d));
13,199✔
1296
      else
1297
         return tree_type(d);
190✔
1298
   }
1299
   else
1300
      return cache[which];
1301
}
1302

1303
type_t ieee_type(ieee_type_t which)
1,233✔
1304
{
1305
   static type_t cache[IEEE_STD_LOGIC + 1] = {};
1,233✔
1306
   assert(which < ARRAY_LEN(cache));
1,233✔
1307

1308
   if (cache[which] == NULL) {
1,233✔
1309
      const char *names[] = {
112✔
1310
         "STD_ULOGIC",
1311
         "STD_LOGIC",
1312
      };
1313

1314
      static tree_t ieee_cache[STD_19 + 1] = {};
112✔
1315
      tree_t unit = cached_unit(NULL, ieee_cache, W_IEEE, W_IEEE_1164);
112✔
1316

1317
      tree_t d = search_type_decls(unit, ident_new(names[which]));
112✔
1318
      if (d == NULL)
112✔
1319
         fatal_trace("cannot find IEEE type %s", names[which]);
1320

1321
      // STD.STANDARD cannot depend on IEEE
1322
      assert(!opt_get_int(OPT_BOOTSTRAP));
112✔
1323

1324
      return (cache[which] = tree_type(d));
112✔
1325
   }
1326
   else
1327
      return cache[which];
1328
}
1329

1330
static tree_t cached_verilog(void)
255✔
1331
{
1332
   static tree_t verilog_cache[STD_19 + 1] = {};
255✔
1333
   return cached_unit(NULL, verilog_cache, W_NVC, W_NVC_VERILOG);
255✔
1334
}
1335

1336
type_t verilog_type(verilog_type_t which)
417✔
1337
{
1338
   static type_t cache[VERILOG_WIRE_ARRAY + 1] = {};
417✔
1339
   assert(which < ARRAY_LEN(cache));
417✔
1340

1341
   if (cache[which] == NULL) {
417✔
1342
      const char *names[] = {
151✔
1343
         [VERILOG_LOGIC] = "T_LOGIC",
1344
         [VERILOG_LOGIC_ARRAY] = "T_LOGIC_ARRAY",
1345
         [VERILOG_INT64] = "T_INT64",
1346
         [VERILOG_NET_VALUE] = "T_NET_VALUE",
1347
         [VERILOG_NET_ARRAY] = "T_NET_ARRAY",
1348
         [VERILOG_WIRE] = "T_WIRE",
1349
         [VERILOG_WIRE_ARRAY] = "T_WIRE_ARRAY",
1350
      };
1351

1352
      tree_t d = search_type_decls(cached_verilog(), ident_new(names[which]));
151✔
1353
      if (d == NULL)
151✔
1354
         fatal_trace("cannot find NVC.VERILOG type %s", names[which]);
1355

1356
      // STD.STANDARD cannot depend on NVC.VERILOG
1357
      assert(!opt_get_int(OPT_BOOTSTRAP));
151✔
1358

1359
      return (cache[which] = tree_type(d));
151✔
1360
   }
1361
   else
1362
      return cache[which];
1363
}
1364

1365
type_t reflection_type(reflect_type_t which)
183✔
1366
{
1367
   static type_t cache[REFLECT_SUBTYPE_MIRROR + 1] = {};
183✔
1368
   assert(which < ARRAY_LEN(cache));
183✔
1369

1370
   if (cache[which] == NULL) {
183✔
1371
      const char *names[] = {
32✔
1372
         "VALUE_MIRROR",
1373
         "SUBTYPE_MIRROR",
1374
      };
1375

1376
      static tree_t reflect_cache[STD_19 + 1] = {};
32✔
1377
      tree_t unit = cached_unit(NULL, reflect_cache, W_STD, W_STD_REFLECTION);
32✔
1378

1379
      tree_t d = search_type_decls(unit, ident_new(names[which]));
32✔
1380
      if (d == NULL)
32✔
1381
         fatal_trace("cannot find REFLECTION type %s", names[which]);
1382

1383
      // STD.STANDARD cannot depend on REFLECTION
1384
      assert(!opt_get_int(OPT_BOOTSTRAP));
32✔
1385

1386
      return (cache[which] = tree_type(d));
32✔
1387
   }
1388
   else
1389
      return cache[which];
1390
}
1391

1392
bool is_open_coded_builtin(subprogram_kind_t kind)
434,594✔
1393
{
1394
   switch (kind) {
434,594✔
1395
   case S_ADD:
1396
   case S_SUB:
1397
   case S_DIV:
1398
   case S_MUL:
1399
   case S_MUL_PR:
1400
   case S_MUL_RP:
1401
   case S_MUL_PI:
1402
   case S_MUL_IP:
1403
   case S_DIV_PR:
1404
   case S_DIV_PP:
1405
   case S_DIV_PI:
1406
   case S_IDENTITY:
1407
   case S_NEGATE:
1408
   case S_SCALAR_LT:
1409
   case S_SCALAR_LE:
1410
   case S_SCALAR_GT:
1411
   case S_SCALAR_GE:
1412
   case S_SCALAR_EQ:
1413
   case S_SCALAR_NEQ:
1414
   case S_ABS:
1415
   case S_MOD:
1416
   case S_REM:
1417
   case S_EXP:
1418
   case S_MUL_RI:
1419
   case S_MUL_IR:
1420
   case S_DIV_RI:
1421
   case S_CONCAT:
1422
   case S_SCALAR_AND:
1423
   case S_SCALAR_OR:
1424
   case S_SCALAR_NOT:
1425
   case S_SCALAR_NAND:
1426
   case S_SCALAR_NOR:
1427
   case S_SCALAR_XOR:
1428
   case S_SCALAR_XNOR:
1429
   case S_FILE_OPEN1:
1430
   case S_FILE_OPEN2:
1431
   case S_FILE_READ:
1432
   case S_FILE_WRITE:
1433
   case S_DEALLOCATE:
1434
      return true;
1435
   default:
182,322✔
1436
      return false;
182,322✔
1437
   }
1438
}
1439

1440
tree_t std_func(ident_t mangled)
×
1441
{
1442
   tree_t std = cached_std(NULL);
×
1443

1444
   const int ndecls = tree_decls(std);
×
1445
   for (int i = 0; i < ndecls; i++) {
×
1446
      tree_t d = tree_decl(std, i);
×
1447
      if (is_subprogram(d) && tree_has_ident2(d) && tree_ident2(d) == mangled)
×
1448
         return d;
×
1449
   }
1450

1451
   return NULL;
1452
}
1453

1454
tree_t verilog_func(ident_t mangled)
104✔
1455
{
1456
   tree_t pack = cached_verilog();
104✔
1457

1458
   const int ndecls = tree_decls(pack);
104✔
1459
   for (int i = 0; i < ndecls; i++) {
9,730✔
1460
      tree_t d = tree_decl(pack, i);
9,730✔
1461
      if (is_subprogram(d) && tree_ident2(d) == mangled)
9,730✔
1462
         return d;
104✔
1463
   }
1464

1465
   fatal_trace("missing Verilog helper function %s", istr(mangled));
1466
}
1467

1468
tree_t name_to_ref(tree_t name)
96,565✔
1469
{
1470
   tree_kind_t kind;
96,565✔
1471
   while ((kind = tree_kind(name)) != T_REF) {
110,028✔
1472
      switch (kind) {
15,137✔
1473
      case T_ARRAY_REF:
13,463✔
1474
      case T_ARRAY_SLICE:
1475
      case T_RECORD_REF:
1476
      case T_ALL:
1477
         name = tree_value(name);
13,463✔
1478
         break;
13,463✔
1479
      default:
1480
         return NULL;
1481
      }
1482
   }
1483

1484
   return name;
1485
}
1486

1487
const char *port_mode_str(port_mode_t mode)
44✔
1488
{
1489
   const char *mode_str[] = {
44✔
1490
      "INVALID", "IN", "OUT", "INOUT", "BUFFER", "LINKAGE", "VIEW", "VIEW"
1491
   };
1492
   assert(mode < ARRAY_LEN(mode_str));
44✔
1493
   return mode_str[mode];
44✔
1494
}
1495

1496
void mangle_one_type(text_buf_t *buf, type_t type)
169,879✔
1497
{
1498
   ident_t ident = type_ident(type);
169,879✔
1499

1500
   char code = 0;
169,879✔
1501
   switch (is_well_known(ident)) {
169,879✔
1502
   case W_STD_INTEGER:        code = 'I'; break;
1503
   case W_STD_STRING:         code = 'S'; break;
3,391✔
1504
   case W_STD_REAL:           code = 'R'; break;
3,555✔
1505
   case W_STD_BOOL:           code = 'B'; break;
22,928✔
1506
   case W_STD_CHAR:           code = 'C'; break;
623✔
1507
   case W_STD_TIME:           code = 'T'; break;
916✔
1508
   case W_STD_NATURAL:        code = 'N'; break;
4,231✔
1509
   case W_STD_POSITIVE:       code = 'P'; break;
365✔
1510
   case W_STD_BIT:            code = 'J'; break;
2,465✔
1511
   case W_STD_BIT_VECTOR:     code = 'Q'; break;
2,663✔
1512
   case W_IEEE_LOGIC:         code = 'L'; break;
292✔
1513
   case W_IEEE_ULOGIC:        code = 'U'; break;
4,673✔
1514
   case W_IEEE_LOGIC_VECTOR:  code = 'V'; break;
1,658✔
1515
   case W_IEEE_ULOGIC_VECTOR: code = 'Y'; break;
1,397✔
1516
   default: break;
1517
   }
1518

1519
   if (code)
49,157✔
1520
      tb_append(buf, code);
61,715✔
1521
   else {
1522
      tb_printf(buf, "%zu", ident_len(ident));
108,164✔
1523
      tb_istr(buf, ident);
108,164✔
1524
   }
1525
}
169,879✔
1526

1527
tree_t primary_unit_of(tree_t unit)
25,902✔
1528
{
1529
   switch (tree_kind(unit)) {
25,902✔
1530
   case T_ENTITY:
1531
   case T_COMPONENT:
1532
   case T_PACKAGE:
1533
   case T_BLOCK:
1534
   case T_ELAB:
1535
   case T_PACK_INST:
1536
      return unit;
1537
   case T_ARCH:
15,696✔
1538
   case T_CONFIGURATION:
1539
   case T_PACK_BODY:
1540
      return tree_primary(unit);
15,696✔
1541
   default:
×
1542
      fatal_trace("invalid kind %s in primary_unit_of",
1543
                  tree_kind_str(tree_kind(unit)));
1544
   }
1545
}
1546

1547
unsigned get_case_choice_char(tree_t value, int depth)
8,297✔
1548
{
1549
   switch (tree_kind(value)) {
8,956✔
1550
   case T_STRING:
8,179✔
1551
      if (depth < tree_chars(value))
8,179✔
1552
         return assume_int(tree_char(value, depth));
8,178✔
1553
      else
1554
         return ~0;   // Out of bounds
1555

1556
   case T_AGGREGATE:
14✔
1557
      {
1558
         const int nassocs = tree_assocs(value);
14✔
1559
         type_t type = tree_type(value);
14✔
1560

1561
         for (int i = 0; i < nassocs; i++) {
24✔
1562
            tree_t a = tree_assoc(value, i);
23✔
1563
            switch (tree_subkind(a)) {
23✔
1564
            case A_NAMED:
×
1565
               if (rebase_index(type, 0, assume_int(tree_name(a))) == depth)
×
1566
                  return assume_int(tree_value(a));
×
1567
               break;
1568

1569
            case A_POS:
23✔
1570
               if (tree_pos(a) == (unsigned)depth)
23✔
1571
                  return assume_int(tree_value(a));
13✔
1572
               break;
1573

1574
            case A_OTHERS:
×
1575
               return assume_int(tree_value(a));
×
1576
            }
1577
         }
1578

1579
         // This will produce an error during bounds checking
1580
         return ~0;
1581
      }
1582

1583
   case T_REF:
419✔
1584
      {
1585
         tree_t decl = tree_ref(value);
419✔
1586
         assert(tree_kind(decl) == T_CONST_DECL || tree_kind(decl) == T_ALIAS);
419✔
1587
         assert(tree_has_value(decl));
419✔
1588
         return get_case_choice_char(tree_value(decl), depth);
419✔
1589
      }
1590

1591
   case T_ARRAY_SLICE:
240✔
1592
      {
1593
         tree_t base = tree_value(value);
240✔
1594
         tree_t r = tree_range(value, 0);
240✔
1595
         const int64_t rleft = assume_int(tree_left(r));
240✔
1596
         const int64_t offset = rebase_index(tree_type(base), 0, rleft);
240✔
1597
         return get_case_choice_char(base, depth + offset);
240✔
1598
      }
1599

1600
   case T_FCALL:
104✔
1601
      if (tree_subkind(tree_ref(value)) == S_CONCAT) {
104✔
1602
         const int nparams = tree_params(value);
104✔
1603
         for (int i = 0; i < nparams; i++) {
156✔
1604
            tree_t left = tree_value(tree_param(value, i));
156✔
1605

1606
            type_t left_type = tree_type(left);
156✔
1607
            if (type_is_unconstrained(left_type))
156✔
1608
               fatal_at(tree_loc(left), "sorry, this expression is not "
×
1609
                        "currently supported in a case choice");
1610

1611
            tree_t lr = range_of(tree_type(left), 0);
156✔
1612
            int64_t left_len;
156✔
1613
            if (!folded_length(lr, &left_len))
156✔
1614
               fatal_at(tree_loc(left), "cannot determine length of left hand "
×
1615
                        "side of concatenation");
1616

1617
            if (depth < left_len || i + 1 == nparams)
156✔
1618
               return get_case_choice_char(left, depth);
104✔
1619

1620
            depth -= left_len;
52✔
1621
         }
1622
      }
1623
      // Fall-through
1624

1625
   default:
1626
      fatal_at(tree_loc(value), "unsupported tree type %s in case choice",
×
1627
               tree_kind_str(tree_kind(value)));
1628
   }
1629
}
1630

1631
int64_t encode_case_choice(tree_t value, int length, int bits)
1,155✔
1632
{
1633
   uint64_t enc = 0;
1,155✔
1634
   for (int i = 0; i < length; i++) {
9,326✔
1635
      if (bits > 0) {
8,171✔
1636
         enc <<= bits;
1,841✔
1637
         enc |= get_case_choice_char(value, i);
1,841✔
1638
      }
1639
      else {
1640
         enc *= 0x27d4eb2d;
6,330✔
1641
         enc += get_case_choice_char(value, i);
6,330✔
1642
      }
1643
   }
1644

1645
   return enc;
1,155✔
1646
}
1647

1648
void to_string(text_buf_t *tb, type_t type, int64_t value)
578✔
1649
{
1650
   if (type_is_integer(type))
578✔
1651
      tb_printf(tb, "%"PRIi64, value);
444✔
1652
   else if (type_is_enum(type)) {
134✔
1653
      type_t base = type_base_recur(type);
62✔
1654
      if (value < 0 || value >= type_enum_literals(base))
62✔
1655
         tb_printf(tb, "%"PRIi64, value);
3✔
1656
      else
1657
         tb_cat(tb, istr(tree_ident(type_enum_literal(base, value))));
59✔
1658
   }
1659
   else if (type_is_physical(type)) {
72✔
1660
      type_t base = type_base_recur(type);
24✔
1661
      const unsigned nunits = type_units(base);
24✔
1662
      tree_t max_unit = NULL;
24✔
1663
      int64_t max_unit_value = 0;
24✔
1664

1665
      // Find the largest unit that evenly divides the given value
1666
      for (unsigned u = 0; u < nunits; u++) {
216✔
1667
         tree_t unit = type_unit(base, u);
192✔
1668
         const int64_t unit_value = assume_int(tree_value(unit));
192✔
1669
         if ((unit_value > max_unit_value) && (value % unit_value == 0)) {
192✔
1670
            max_unit = unit;
90✔
1671
            max_unit_value = unit_value;
90✔
1672
         }
1673
      }
1674
      assert(max_unit);
24✔
1675

1676
      tb_printf(tb, "%"PRIi64" %s", value / max_unit_value,
24✔
1677
                istr(tree_ident(max_unit)));
1678
   }
1679
   else if (type_is_real(type)) {
48✔
1680
      union { int64_t i; double r; } u = { .i = value };
42✔
1681
      tb_printf(tb, "%.17g", u.r);
42✔
1682
   }
1683
   else if (type_is_access(type)) {
6✔
1684
      if (value == 0)
6✔
1685
         tb_cat(tb, "NULL");
3✔
1686
      else
1687
         tb_printf(tb, "%p", (void *)value);
3✔
1688
   }
1689
}
578✔
1690

1691
static bool is_static(tree_t expr)
5,904✔
1692
{
1693
   switch (tree_kind(expr)) {
6,008✔
1694
   case T_REF:
688✔
1695
      {
1696
         tree_t decl = tree_ref(expr);
688✔
1697
         switch (tree_kind(decl)) {
688✔
1698
         case T_CONST_DECL:
179✔
1699
            return !!(tree_flags(decl) & TREE_F_GLOBALLY_STATIC);
179✔
1700
         case T_UNIT_DECL:
1701
         case T_ENUM_LIT:
1702
         case T_GENERIC_DECL:
1703
            return true;
1704
         case T_ALIAS:
×
1705
            return is_static(tree_value(decl));
×
1706
         default:
191✔
1707
            return false;
191✔
1708
         }
1709
      }
1710

1711
   case T_LITERAL:
1712
   case T_STRING:
1713
      return true;
1714

1715
   case T_FCALL:
402✔
1716
      return !!(tree_flags(expr) & (TREE_F_LOCALLY_STATIC
402✔
1717
                                    | TREE_F_GLOBALLY_STATIC));
1718

1719
   case T_RECORD_REF:
101✔
1720
      return is_static(tree_value(expr));
101✔
1721

1722
   case T_ARRAY_REF:
60✔
1723
      {
1724
         if (!is_static(tree_value(expr)))
60✔
1725
            return false;
1726

1727
         const int nparams = tree_params(expr);
60✔
1728
         for (int i = 0; i < nparams; i++) {
120✔
1729
            if (!is_static(tree_value(tree_param(expr, i))))
60✔
1730
               return false;
1731
         }
1732

1733
         return true;
1734
      }
1735

1736
   case T_ARRAY_SLICE:
30✔
1737
      {
1738
         if (!is_static(tree_value(expr)))
30✔
1739
            return false;
1740

1741
         assert(tree_ranges(expr) == 1);
30✔
1742

1743
         tree_t r = tree_range(expr, 0);
30✔
1744
         if (!is_static(tree_left(r)) || !is_static(tree_right(r)))
30✔
1745
            return false;
×
1746

1747
         return true;
1748
      }
1749

1750
   case T_ATTR_REF:
9✔
1751
      {
1752
         switch (tree_subkind(expr)) {
9✔
1753
         case ATTR_EVENT:
1754
         case ATTR_ACTIVE:
1755
         case ATTR_LAST_EVENT:
1756
         case ATTR_LAST_ACTIVE:
1757
         case ATTR_LAST_VALUE:
1758
         case ATTR_DRIVING:
1759
         case ATTR_DRIVING_VALUE:
1760
         case ATTR_STABLE:
1761
         case ATTR_QUIET:
1762
            return false;
1763
         case ATTR_POS:
3✔
1764
         case ATTR_VAL:
1765
         case ATTR_LEFTOF:
1766
         case ATTR_RIGHTOF:
1767
         case ATTR_SUCC:
1768
         case ATTR_PRED:
1769
         case ATTR_VALUE:
1770
         case ATTR_IMAGE:
1771
            assert(tree_params(expr) == 1);
3✔
1772
            return is_static(tree_value(tree_param(expr, 0)));
3✔
1773
         case ATTR_LENGTH:
6✔
1774
         case ATTR_LEFT:
1775
         case ATTR_RIGHT:
1776
         case ATTR_LOW:
1777
         case ATTR_HIGH:
1778
            {
1779
               type_t type = tree_type(tree_name(expr));
6✔
1780
               if (type_is_unconstrained(type))
6✔
1781
                  return false;
1782

1783
               int64_t dim = 1;
3✔
1784
               if (tree_params(expr) == 1)
3✔
1785
                  dim = assume_int(tree_value(tree_param(expr, 0)));
×
1786

1787
               tree_t r = range_of(type, dim - 1);
3✔
1788
               if (tree_subkind(r) == RANGE_EXPR)
3✔
1789
                  return false;
1790

1791
               return is_static(tree_left(r)) && is_static(tree_right(r));
3✔
1792
            }
1793
         default:
×
1794
            return true;
×
1795
         }
1796
      }
1797

1798
   default:
×
1799
      return false;
×
1800
   }
1801
}
1802

1803
tree_t longest_static_prefix(tree_t expr)
22,519✔
1804
{
1805
   switch (tree_kind(expr)) {
22,519✔
1806
   case T_ARRAY_REF:
4,033✔
1807
      {
1808
         tree_t value = tree_value(expr);
4,033✔
1809
         tree_t prefix = longest_static_prefix(value);
4,033✔
1810

1811
         if (prefix != value)
4,033✔
1812
            return prefix;
1813

1814
         const int nparams = tree_params(expr);
4,005✔
1815
         for (int i = 0; i < nparams; i++) {
8,194✔
1816
            if (!is_static(tree_value(tree_param(expr, i))))
4,431✔
1817
               return prefix;
1818
         }
1819

1820
         return expr;
1821
      }
1822

1823
   case T_ARRAY_SLICE:
648✔
1824
      {
1825
         tree_t value = tree_value(expr);
648✔
1826
         tree_t prefix = longest_static_prefix(value);
648✔
1827

1828
         if (prefix != value)
648✔
1829
            return prefix;
1830

1831
         assert(tree_ranges(expr) == 1);
641✔
1832

1833
         tree_t r = tree_range(expr, 0);
641✔
1834
         if (tree_subkind(r) == RANGE_EXPR)
641✔
1835
            return prefix;
1836
         else if (!is_static(tree_left(r)) || !is_static(tree_right(r)))
635✔
1837
            return prefix;
16✔
1838

1839
         return expr;
1840
      }
1841

1842
   case T_RECORD_REF:
1,107✔
1843
      {
1844
         tree_t value = tree_value(expr);
1,107✔
1845
         tree_t prefix = longest_static_prefix(value);
1,107✔
1846

1847
         if (prefix != value)
1,107✔
1848
            return prefix;
21✔
1849

1850
         return expr;
1851
      }
1852

1853
   default:
1854
      return expr;
1855
   }
1856
}
1857

1858
tree_t body_of(tree_t pack)
1,402✔
1859
{
1860
   const tree_kind_t kind = tree_kind(pack);
1,402✔
1861
   if (kind == T_PACK_INST)
1,402✔
1862
      return NULL;
1863

1864
   assert(tree_kind(pack) == T_PACKAGE);
1,402✔
1865

1866
   ident_t body_i = well_known(W_BODY);
1,402✔
1867
   ident_t body_name = ident_prefix(tree_ident(pack), body_i, '-');
1,402✔
1868
   return lib_get_qualified(body_name);
1,402✔
1869
}
1870

1871
tree_t find_generic_map(tree_t unit, int pos, tree_t g)
587✔
1872
{
1873
   const int ngenmaps = tree_genmaps(unit);
587✔
1874

1875
   if (pos < ngenmaps) {
587✔
1876
      tree_t m = tree_genmap(unit, pos);
449✔
1877
      if (tree_subkind(m) == P_POS && tree_pos(m) == pos)
449✔
1878
         return tree_value(m);
303✔
1879
   }
1880

1881
   for (int j = 0; j < ngenmaps; j++) {
998✔
1882
      tree_t m = tree_genmap(unit, j);
860✔
1883
      switch (tree_subkind(m)) {
860✔
1884
      case P_NAMED:
440✔
1885
         {
1886
            tree_t name = tree_name(m);
440✔
1887
            assert(tree_kind(name) == T_REF);
440✔
1888

1889
            if (tree_has_ref(name) && tree_ref(name) == g)
440✔
1890
               return tree_value(m);
15✔
1891
         }
1892
         break;
1893

1894
      case P_POS:
420✔
1895
         if (tree_pos(m) == pos)
420✔
1896
            return tree_value(m);
131✔
1897
         break;
1898

1899
      default:
1900
         break;
1901
      }
1902
   }
1903

1904
   return NULL;
1905
}
1906

1907
bool relaxed_rules(void)
542,361✔
1908
{
1909
   return opt_get_int(OPT_RELAXED);
542,361✔
1910
}
1911

1912
bool is_type_attribute(attr_kind_t kind)
68,290✔
1913
{
1914
   switch (kind) {
68,290✔
1915
   case ATTR_SUBTYPE:
1916
   case ATTR_BASE:
1917
   case ATTR_ELEMENT:
1918
   case ATTR_DESIGNATED_SUBTYPE:
1919
   case ATTR_INDEX:
1920
      return true;
1921
   default:
67,646✔
1922
      return false;
67,646✔
1923
   }
1924
}
1925

1926
bool attribute_has_param(attr_kind_t attr)
22,726✔
1927
{
1928
   switch (attr) {
22,726✔
1929
   case ATTR_IMAGE:
1930
   case ATTR_SUCC:
1931
   case ATTR_PRED:
1932
   case ATTR_DELAYED:
1933
   case ATTR_LEFTOF:
1934
   case ATTR_RIGHTOF:
1935
   case ATTR_VALUE:
1936
   case ATTR_POS:
1937
   case ATTR_LOW:
1938
   case ATTR_HIGH:
1939
   case ATTR_LEFT:
1940
   case ATTR_RIGHT:
1941
   case ATTR_LENGTH:
1942
   case ATTR_RANGE:
1943
   case ATTR_REVERSE_RANGE:
1944
   case ATTR_VAL:
1945
   case ATTR_QUIET:
1946
   case ATTR_STABLE:
1947
   case ATTR_INDEX:
1948
   case ATTR_ASCENDING:
1949
      return true;
1950
   default:
2,169✔
1951
      return false;
2,169✔
1952
   }
1953
}
1954

1955
type_t get_type_or_null(tree_t t)
2,142,249✔
1956
{
1957
   switch (tree_kind(t)) {
2,142,249✔
1958
   case T_LIBRARY:
1959
   case T_ATTR_SPEC:
1960
   case T_PACKAGE:
1961
   case T_PACK_INST:
1962
   case T_PACK_BODY:
1963
   case T_ENTITY:
1964
   case T_ARCH:
1965
   case T_PROCESS:
1966
   case T_COMPONENT:
1967
   case T_INSTANCE:
1968
   case T_CONCURRENT:
1969
   case T_BLOCK:
1970
   case T_WHILE:
1971
   case T_FOR:
1972
   case T_LOOP:
1973
   case T_GROUP_TEMPLATE:
1974
   case T_CONFIGURATION:
1975
   case T_GROUP:
1976
   case T_FOR_GENERATE:
1977
   case T_IF_GENERATE:
1978
   case T_CASE_GENERATE:
1979
   case T_USE:
1980
   case T_CONTEXT:
1981
   case T_PSL_DECL:
1982
   case T_PSL_DIRECT:
1983
   case T_WAVEFORM:
1984
      return NULL;
1985
   default:
2,054,447✔
1986
      if (tree_has_type(t))
2,054,447✔
1987
         return tree_type(t);
2,053,079✔
1988
      else
1989
         return NULL;
1990
   }
1991
}
1992

1993
type_t subtype_for_string(tree_t str, type_t base)
25,558✔
1994
{
1995
   if (type_const_bounds(base))
25,558✔
1996
      return base;    // Can be checked statically
1997
   else if (!type_is_unconstrained(base))
22,468✔
1998
      base = type_base_recur(base);
149✔
1999

2000
   // Construct a new constrained array subtype: the direction and
2001
   // bounds are the same as those for a positional array aggregate
2002
   type_t sub = type_new(T_SUBTYPE);
22,468✔
2003
   type_set_base(sub, base);
22,468✔
2004

2005
   type_t index_type = index_type_of(base, 0);
22,468✔
2006
   const bool is_enum = type_is_enum(index_type);
22,468✔
2007

2008
   // The direction is determined by the index type
2009
   range_kind_t dir = direction_of(index_type, 0);
22,468✔
2010
   tree_t index_r = range_of(index_type, 0);
22,468✔
2011

2012
   // The left bound is the left of the index type and the right bound
2013
   // is determined by the number of elements
2014

2015
   tree_t left = NULL, right = NULL;
22,468✔
2016
   const int nchars = tree_chars(str);
22,468✔
2017

2018
   if (is_enum) {
22,468✔
2019
      const int nlits = type_enum_literals(type_base_recur(index_type));
14✔
2020
      int64_t index_left = assume_int(tree_left(index_r));
14✔
2021

2022
      int64_t iright, ileft;
14✔
2023
      if (nchars == 0) {
14✔
2024
         iright = index_left;
1✔
2025
         ileft = assume_int(tree_right(index_r));
1✔
2026
      }
2027
      else if (dir == RANGE_DOWNTO) {
13✔
2028
         ileft = index_left;
×
2029
         iright = MIN(nlits - 1, MAX(0, index_left - nchars + 1));
×
2030
      }
2031
      else {
2032
         ileft = index_left;
13✔
2033
         iright = MIN(nlits - 1, MAX(0, index_left + nchars - 1));
13✔
2034
      }
2035

2036
      left = get_enum_lit(str, index_type, ileft);
14✔
2037
      right = get_enum_lit(str, index_type, iright);
14✔
2038
   }
2039
   else {
2040
      left = tree_left(index_r);
22,454✔
2041

2042
      int64_t iright;
22,454✔
2043
      if (dir == RANGE_DOWNTO)
22,454✔
2044
         iright = assume_int(left) - nchars + 1;
×
2045
      else
2046
         iright = assume_int(left) + nchars - 1;
22,454✔
2047

2048
      right = get_int_lit(str, index_type, iright);
22,454✔
2049
   }
2050

2051
   tree_t r = tree_new(T_RANGE);
22,468✔
2052
   tree_set_subkind(r, dir);
22,468✔
2053
   tree_set_left(r, left);
22,468✔
2054
   tree_set_right(r, right);
22,468✔
2055
   tree_set_loc(r, tree_loc(str));
22,468✔
2056
   tree_set_type(r, index_type);
22,468✔
2057

2058
   tree_t c = tree_new(T_CONSTRAINT);
22,468✔
2059
   tree_set_subkind(c, C_INDEX);
22,468✔
2060
   tree_add_range(c, r);
22,468✔
2061
   tree_set_loc(c, tree_loc(str));
22,468✔
2062

2063
   type_set_constraint(sub, c);
22,468✔
2064

2065
   return sub;
22,468✔
2066
}
2067

2068
tree_t change_ref(tree_t name, tree_t new)
2,148✔
2069
{
2070
   switch (tree_kind(name)) {
2,148✔
2071
   case T_REF:
1,506✔
2072
      return make_ref(new);
1,506✔
2073

2074
   case T_ARRAY_REF:
108✔
2075
      {
2076
         tree_t t = tree_new(T_ARRAY_REF);
108✔
2077
         tree_set_loc(t, tree_loc(name));
108✔
2078
         tree_set_value(t, change_ref(tree_value(name), new));
108✔
2079
         tree_set_type(t, tree_type(name));
108✔
2080

2081
         const int nparams = tree_params(name);
108✔
2082
         for (int i = 0; i < nparams; i++)
216✔
2083
            tree_add_param(t, tree_param(name, i));
108✔
2084

2085
         return t;
2086
      }
2087

2088
   case T_ARRAY_SLICE:
46✔
2089
      {
2090
         tree_t t = tree_new(T_ARRAY_SLICE);
46✔
2091
         tree_set_loc(t, tree_loc(name));
46✔
2092
         tree_set_value(t, change_ref(tree_value(name), new));
46✔
2093
         tree_set_type(t, tree_type(name));
46✔
2094
         tree_add_range(t, tree_range(name, 0));
46✔
2095

2096
         return t;
46✔
2097
      }
2098

2099
   case T_RECORD_REF:
380✔
2100
      {
2101
         tree_t t = tree_new(T_RECORD_REF);
380✔
2102
         tree_set_loc(t, tree_loc(name));
380✔
2103
         tree_set_value(t, change_ref(tree_value(name), new));
380✔
2104
         tree_set_type(t, tree_type(name));
380✔
2105
         tree_set_ident(t, tree_ident(name));
380✔
2106
         tree_set_ref(t, tree_ref(name));
380✔
2107

2108
         return t;
380✔
2109
      }
2110

2111
   case T_CONV_FUNC:
99✔
2112
      {
2113
         tree_t t = tree_new(T_CONV_FUNC);
99✔
2114
         tree_set_loc(t, tree_loc(name));
99✔
2115
         tree_set_value(t, change_ref(tree_value(name), new));
99✔
2116
         tree_set_ident(t, tree_ident(name));
99✔
2117
         tree_set_type(t, tree_type(name));
99✔
2118
         tree_set_ref(t, tree_ref(name));
99✔
2119

2120
         return t;
99✔
2121
      }
2122

2123
   case T_TYPE_CONV:
9✔
2124
      {
2125
         tree_t t = tree_new(T_TYPE_CONV);
9✔
2126
         tree_set_loc(t, tree_loc(name));
9✔
2127
         tree_set_type(t, tree_type(name));
9✔
2128
         tree_set_value(t, change_ref(tree_value(name), new));
9✔
2129

2130
         return t;
9✔
2131
      }
2132

2133
   default:
×
2134
      fatal_trace("cannot handle tree kind %s in elab_change_ref",
2135
                  tree_kind_str(tree_kind(name)));
2136
   }
2137
}
2138

2139
static void build_wait_for_target(tree_t expr, build_wait_fn_t fn, void *ctx)
2,870✔
2140
{
2141
   switch (tree_kind(expr)) {
2,870✔
2142
   case T_ARRAY_SLICE:
77✔
2143
      build_wait(tree_range(expr, 0), fn, ctx);
77✔
2144
      break;
77✔
2145

2146
   case T_ARRAY_REF:
546✔
2147
      {
2148
         const int nparams = tree_params(expr);
546✔
2149
         for (int i = 0; i < nparams; i++)
1,092✔
2150
            build_wait(tree_value(tree_param(expr, i)), fn, ctx);
546✔
2151
      }
2152
      break;
2153

2154
   default:
2155
      break;
2156
   }
2157
}
2,870✔
2158

2159
void build_wait(tree_t expr, build_wait_fn_t fn, void *ctx)
13,465✔
2160
{
2161
   // LRM 08 section 10.2 has rules for building a wait statement from a
2162
   // sensitivity list. LRM 08 section 11.3 extends these rules to
2163
   // all-sensitised processes.
2164

2165
   switch (tree_kind(expr)) {
16,690✔
2166
   case T_REF:
4,193✔
2167
      if (class_of(tree_ref(expr)) == C_SIGNAL)
4,193✔
2168
         (*fn)(expr, ctx);
2,426✔
2169
      break;
2170

2171
   case T_EXTERNAL_NAME:
8✔
2172
      if (tree_class(expr) == C_SIGNAL)
8✔
2173
         (*fn)(expr, ctx);
8✔
2174
      break;
2175

2176
   case T_WAVEFORM:
2,798✔
2177
   case T_QUALIFIED:
2178
   case T_TYPE_CONV:
2179
   case T_INERTIAL:
2180
      if (tree_has_value(expr))
2,798✔
2181
         build_wait(tree_value(expr), fn, ctx);
2,789✔
2182
      break;
2183

2184
   case T_ASSERT:
397✔
2185
      build_wait(tree_value(expr), fn, ctx);
397✔
2186
      // Fall-through
2187
   case T_REPORT:
398✔
2188
      if (tree_has_message(expr))
398✔
2189
         build_wait(tree_message(expr), fn, ctx);
271✔
2190
      break;
2191

2192
   case T_ARRAY_REF:
806✔
2193
   case T_ARRAY_SLICE:
2194
   case T_RECORD_REF:
2195
      {
2196
         tree_t ref = name_to_ref(expr);
806✔
2197
         if (ref != NULL && class_of(ref) == C_SIGNAL
806✔
2198
             && longest_static_prefix(expr) == expr)
510✔
2199
            (*fn)(expr, ctx);
433✔
2200
         else {
2201
            build_wait(tree_value(expr), fn, ctx);
373✔
2202
            build_wait_for_target(expr, fn, ctx);
373✔
2203
         }
2204
      }
2205
      break;
2206

2207
   case T_FCALL:
2,151✔
2208
   case T_PCALL:
2209
   case T_PROT_FCALL:
2210
   case T_PROT_PCALL:
2211
      {
2212
         tree_t decl = tree_ref(expr);
2,151✔
2213
         const int nparams = tree_params(expr);
2,151✔
2214
         for (int i = 0; i < nparams; i++) {
5,926✔
2215
            tree_t p = tree_param(expr, i);
3,775✔
2216
            assert(tree_subkind(p) == P_POS);
3,775✔
2217

2218
            switch (tree_subkind(tree_port(decl, tree_pos(p)))) {
3,775✔
2219
            case PORT_IN:
3,768✔
2220
            case PORT_INOUT:
2221
            case PORT_ARRAY_VIEW:
2222
            case PORT_RECORD_VIEW:
2223
               build_wait(tree_value(p), fn, ctx);
3,768✔
2224
               break;
3,768✔
2225
            default:
2226
               break;
2227
            }
2228
         }
2229
      }
2230
      break;
2231

2232
   case T_AGGREGATE:
285✔
2233
      {
2234
         const int nassocs = tree_assocs(expr);
285✔
2235
         for (int i = 0; i < nassocs; i++) {
953✔
2236
            tree_t a = tree_assoc(expr, i);
668✔
2237
            build_wait(tree_value(a), fn, ctx);
668✔
2238

2239
            switch (tree_subkind(a)) {
668✔
2240
            case A_RANGE:
53✔
2241
            case A_SLICE:
2242
               build_wait(tree_range(a, 0), fn, ctx);
53✔
2243
               break;
53✔
2244
            case A_NAMED:
66✔
2245
               build_wait(tree_name(a), fn, ctx);
66✔
2246
               break;
66✔
2247
            }
2248
         }
2249
      }
2250
      break;
2251

2252
   case T_ATTR_REF:
322✔
2253
      {
2254
         const attr_kind_t predef = tree_subkind(expr);
322✔
2255
         if (predef == ATTR_EVENT || predef == ATTR_ACTIVE)
322✔
2256
            build_wait(tree_name(expr), fn, ctx);
139✔
2257

2258
         const int nparams = tree_params(expr);
322✔
2259
         for (int i = 0; i < nparams; i++)
333✔
2260
            build_wait(tree_value(tree_param(expr, i)), fn, ctx);
11✔
2261
      }
2262
      break;
2263

2264
   case T_LITERAL:
2265
   case T_STRING:
2266
   case T_DUMMY_DRIVER:
2267
      break;
2268

2269
   case T_IF:
217✔
2270
      {
2271
         const int nconds = tree_conds(expr);
217✔
2272
         for (int i = 0; i < nconds; i++)
587✔
2273
            build_wait(tree_cond(expr, i), fn, ctx);
370✔
2274
      }
2275
      break;
2276

2277
   case T_COND_STMT:
374✔
2278
      {
2279
         if (tree_has_value(expr))
374✔
2280
            build_wait(tree_value(expr), fn, ctx);
245✔
2281

2282
         const int nstmts = tree_stmts(expr);
374✔
2283
         for (int i = 0; i < nstmts; i++)
750✔
2284
            build_wait(tree_stmt(expr, i), fn, ctx);
376✔
2285
      }
2286
      break;
2287

2288
   case T_PROCESS:
50✔
2289
   case T_SEQUENCE:
2290
   case T_PROC_BODY:
2291
      {
2292
         const int ndecls = tree_decls(expr);
50✔
2293
         for (int i = 0; i < ndecls; i++) {
68✔
2294
            tree_t d = tree_decl(expr, i);
18✔
2295
            if (tree_kind(d) == T_PROC_BODY)
18✔
2296
               build_wait(d, fn, ctx);
2✔
2297
         }
2298

2299
         const int nstmts = tree_stmts(expr);
50✔
2300
         for (int i = 0; i < nstmts; i++)
112✔
2301
            build_wait(tree_stmt(expr, i), fn, ctx);
62✔
2302
      }
2303
      break;
2304

2305
   case T_SIGNAL_ASSIGN:
2,481✔
2306
      {
2307
         build_wait_for_target(tree_target(expr), fn, ctx);
2,481✔
2308

2309
         const int nwaves = tree_waveforms(expr);
2,481✔
2310
         for (int i = 0; i < nwaves; i++)
5,125✔
2311
            build_wait(tree_waveform(expr, i), fn, ctx);
2,644✔
2312
      }
2313
      break;
2314

2315
   case T_VAR_ASSIGN:
13✔
2316
   case T_FORCE:
2317
      build_wait_for_target(tree_target(expr), fn, ctx);
13✔
2318
      build_wait(tree_value(expr), fn, ctx);
13✔
2319
      break;
13✔
2320

2321
   case T_RELEASE:
3✔
2322
      build_wait_for_target(tree_target(expr), fn, ctx);
3✔
2323
      break;
3✔
2324

2325
   case T_CASE:
45✔
2326
   case T_MATCH_CASE:
2327
      {
2328
         build_wait(tree_value(expr), fn, ctx);
45✔
2329

2330
         const int nstmts = tree_stmts(expr);
45✔
2331
         for (int i = 0; i < nstmts; i++) {
276✔
2332
            tree_t alt = tree_stmt(expr, i);
231✔
2333

2334
            const int nstmts = tree_stmts(alt);
231✔
2335
            for (int j = 0; j < nstmts; j++)
462✔
2336
               build_wait(tree_stmt(alt, j), fn, ctx);
231✔
2337
         }
2338
      }
2339
      break;
2340

2341
   case T_FOR:
16✔
2342
      {
2343
         build_wait(tree_range(expr, 0), fn, ctx);
16✔
2344

2345
         const int nstmts = tree_stmts(expr);
16✔
2346
         for (int i = 0; i < nstmts; i++)
35✔
2347
            build_wait(tree_stmt(expr, i), fn, ctx);
19✔
2348
      }
2349
      break;
2350

2351
   case T_WHILE:
1✔
2352
      build_wait(tree_value(expr), fn, ctx);
1✔
2353
      // Fall-through
2354
   case T_LOOP:
4✔
2355
      {
2356
         const int nstmts = tree_stmts(expr);
4✔
2357
         for (int i = 0; i < nstmts; i++)
20✔
2358
            build_wait(tree_stmt(expr, i), fn, ctx);
16✔
2359
      }
2360
      break;
2361

2362
   case T_NEXT:
9✔
2363
   case T_EXIT:
2364
      if (tree_has_value(expr))
9✔
2365
         build_wait(tree_value(expr), fn, ctx);
6✔
2366
      break;
2367

2368
   case T_RANGE:
146✔
2369
      if (tree_subkind(expr) == RANGE_EXPR)
146✔
2370
         build_wait(tree_value(expr), fn, ctx);
11✔
2371
      else {
2372
         build_wait(tree_left(expr), fn, ctx);
135✔
2373
         build_wait(tree_right(expr), fn, ctx);
135✔
2374
      }
2375
      break;
2376

2377
   default:
×
2378
      fatal_trace("Cannot handle tree kind %s in wait expression",
2379
                  tree_kind_str(tree_kind(expr)));
2380
   }
2381
}
13,465✔
2382

2383
void print_syntax(const char *fmt, ...)
1,854✔
2384
{
2385
   LOCAL_TEXT_BUF tb = tb_new();
1,854✔
2386
   bool highlighting = false;
1,854✔
2387
   static bool comment = false, last_was_newline = false;
1,854✔
2388
   for (const char *p = fmt; *p != '\0'; p++) {
10,098✔
2389
      if (comment) {
8,244✔
2390
         if (*p == '\n' || *p == '\r') {
3,166✔
2391
            comment = false;
94✔
2392
            last_was_newline = true;
94✔
2393
            tb_printf(tb, "$$\n");
94✔
2394
         }
2395
         else if (*p != '~' && *p != '#') {
3,072✔
2396
            tb_append(tb, *p);
2,912✔
2397
            last_was_newline = false;
2,912✔
2398
         }
2399
         if (p > fmt && *p == '/' && *(p - 1) == '*') {
3,166✔
2400
            tb_printf(tb, "$$");
10✔
2401
            comment = false;
10✔
2402
            last_was_newline = false;
10✔
2403
         }
2404
      }
2405
      else if (*p == '\r') {
5,078✔
2406
         if (!last_was_newline) {
21✔
2407
            tb_append(tb, '\n');
×
2408
            last_was_newline = true;
×
2409
         }
2410
      }
2411
      else if (*p == '#' && *(p + 1) != '#') {
5,057✔
2412
         tb_printf(tb, "$bold$$cyan$");
347✔
2413
         last_was_newline = false;
347✔
2414
         highlighting = true;
347✔
2415
      }
2416
      else if (*p == '~' && *(p + 1) != '~') {
4,710✔
2417
         tb_printf(tb, "$yellow$");
1✔
2418
         last_was_newline = false;
1✔
2419
         highlighting = true;
1✔
2420
      }
2421
      else if ((*p == '-' && *(p + 1) == '-')
4,709✔
2422
               || (*p == '/' && *(p + 1) == '/')
4,619✔
2423
               || (*p == '/' && *(p + 1) == '*')) {
4,615✔
2424
         tb_printf(tb, "$red$%c", *p);
104✔
2425
         last_was_newline = false;
104✔
2426
         comment = true;
104✔
2427
      }
2428
      else if (!isalnum_iso88591(*p) && *p != '_'
4,605✔
2429
               && *p != '%' && highlighting) {
2,335✔
2430
         tb_printf(tb, "$$%c", *p);
304✔
2431
         last_was_newline = false;
304✔
2432
         highlighting = false;
304✔
2433
      }
2434
      else {
2435
         tb_append(tb, *p);
4,301✔
2436
         last_was_newline = (*p == '\n');
4,301✔
2437
      }
2438
   }
2439

2440
   if (highlighting)
1,854✔
2441
      tb_cat(tb, "$$");
44✔
2442

2443
   va_list ap;
1,854✔
2444
   va_start(ap, fmt);
1,854✔
2445

2446
   if (syntax_buf != NULL) {
1,854✔
2447
      char *stripped LOCAL = strip_color(tb_get(tb), ap);
3,708✔
2448
      tb_cat(syntax_buf, stripped);
1,854✔
2449
   }
2450
   else
2451
      color_vprintf(tb_get(tb), ap);
×
2452

2453
   va_end(ap);
1,854✔
2454
}
1,854✔
2455

2456
void capture_syntax(text_buf_t *tb)
9✔
2457
{
2458
   assert(tb == NULL || syntax_buf == NULL);
9✔
2459
   syntax_buf = tb;
9✔
2460
}
9✔
2461

2462
void analyse_file(const char *file, jit_t *jit, unit_registry_t *ur)
3,563✔
2463
{
2464
   input_from_file(file);
3,563✔
2465

2466
   switch (source_kind()) {
3,563✔
2467
   case SOURCE_VHDL:
3,485✔
2468
      {
2469
         lib_t work = lib_work();
3,485✔
2470
         int base_errors = 0;
3,485✔
2471
         tree_t unit;
3,485✔
2472
         while (base_errors = error_count(), (unit = parse())) {
13,479✔
2473
            if (error_count() == base_errors) {
9,994✔
2474
               lib_put(work, unit);
9,994✔
2475
               unit_registry_purge(ur, tree_ident(unit));
9,994✔
2476

2477
               simplify_local(unit, jit, ur);
9,994✔
2478
               bounds_check(unit);
9,994✔
2479
            }
2480
            else
UNCOV
2481
               lib_put_error(work, unit);
×
2482
         }
2483
      }
2484
      break;
2485

2486
   case SOURCE_VERILOG:
78✔
2487
      {
2488
         LOCAL_TEXT_BUF tb = tb_new();
156✔
2489
         vlog_preprocess(tb, true);
78✔
2490

2491
         input_from_buffer(tb_get(tb), tb_len(tb), SOURCE_VERILOG);
78✔
2492

2493
         lib_t work = lib_work();
78✔
2494
         vlog_node_t module;
78✔
2495
         while ((module = vlog_parse())) {
248✔
2496
            if (error_count() == 0) {
92✔
2497
               vlog_check(module);
92✔
2498

2499
               if (error_count() == 0) {
92✔
2500
                  vlog_simp(module);
92✔
2501
                  lib_put_vlog(work, module);
92✔
2502
               }
2503
            }
2504
         }
2505
      }
2506
      break;
78✔
2507

2508
   case SOURCE_SDF:
×
2509
      {
2510
         sdf_file_t *sdf_file = sdf_parse(file, 0);
×
2511
         progress("analysed SDF file: %s", file);
×
2512

2513
         if (sdf_file != NULL) {
×
2514
            warnf("SDF is not yet supported");
×
2515
            sdf_file_free(sdf_file);
×
2516
         }
2517
      }
2518
      break;
2519
   }
2520
}
3,560✔
2521

2522
bool all_character_literals(type_t type)
1,940✔
2523
{
2524
   assert(type_is_enum(type));
1,940✔
2525

2526
   type_t base = type_base_recur(type);
1,940✔
2527
   const int nlits = type_enum_literals(base);
1,940✔
2528
   for (int i = 0; i < nlits; i++) {
7,802✔
2529
      if (ident_char(tree_ident(type_enum_literal(base, i)), 0) != '\'')
6,722✔
2530
         return false;
2531
   }
2532

2533
   return true;
2534
}
2535

2536
bool is_operator_symbol(ident_t ident)
27,633✔
2537
{
2538
   const int len = ident_len(ident);
27,633✔
2539
   if (len < 3)
27,633✔
2540
      return false;
2541
   else if (ident_char(ident, 0) != '"')
27,383✔
2542
      return false;
2543
   else if (ident_char(ident, len - 1) != '"')
16,002✔
2544
      return false;
2545

2546
   const well_known_t wk = is_well_known(ident);
16,002✔
2547

2548
   if (standard() < STD_08)
16,002✔
2549
      return wk >= W_OP_AND && wk <= W_OP_NOT;
3,345✔
2550
   else
2551
      return wk >= W_OP_AND && wk <= W_OP_MATCH_GREATER_EQUAL;
12,657✔
2552
}
2553

2554
bool same_tree(tree_t a, tree_t b)
7,157✔
2555
{
2556
   const tree_kind_t akind = tree_kind(a);
7,157✔
2557
   if (akind != tree_kind(b))
7,157✔
2558
      return false;
2559

2560
   switch (akind) {
7,038✔
2561
   case T_REF:
3,376✔
2562
      return tree_ref(a) == tree_ref(b);
3,376✔
2563
   case T_ARRAY_REF:
1,069✔
2564
      {
2565
         if (!same_tree(tree_value(a), tree_value(b)))
1,069✔
2566
            return false;
2567

2568
         const int nparams = tree_params(a);
1,047✔
2569
         assert(nparams == tree_params(b));
1,047✔
2570

2571
         for (int i = 0; i < nparams; i++) {
1,926✔
2572
            tree_t pa = tree_value(tree_param(a, i));
1,722✔
2573
            tree_t pb = tree_value(tree_param(b, i));
1,722✔
2574
            if (!same_tree(pa, pb))
1,722✔
2575
               return false;
2576
         }
2577

2578
         return true;
2579
      }
2580
   case T_ARRAY_SLICE:
38✔
2581
      {
2582
         if (!same_tree(tree_value(a), tree_value(b)))
38✔
2583
            return false;
2584

2585
         tree_t ra = tree_range(a, 0);
38✔
2586
         tree_t rb = tree_range(b, 0);
38✔
2587

2588
         const range_kind_t rakind = tree_subkind(ra);
38✔
2589
         if (rakind != tree_subkind(rb) || rakind == RANGE_EXPR)
38✔
2590
            return false;
2591

2592
         return same_tree(tree_left(ra), tree_left(rb))
38✔
2593
            && same_tree(tree_right(ra), tree_right(rb));
38✔
2594
      }
2595

2596
   case T_RECORD_REF:
747✔
2597
      return tree_ident(a) == tree_ident(b)
747✔
2598
         && same_tree(tree_value(a), tree_value(b));
750✔
2599

2600
   case T_LITERAL:
1,808✔
2601
      {
2602
         const literal_kind_t alkind = tree_subkind(a);
1,808✔
2603
         if (alkind != tree_subkind(b) || alkind != L_INT)
1,808✔
2604
            return false;
2605
         else
2606
            return tree_ival(a) == tree_ival(b);
1,769✔
2607
      }
2608
   default:
2609
      return false;
2610
   }
2611
}
2612

2613
void instance_name_to_path(text_buf_t *tb, const char *str)
9,490✔
2614
{
2615
   bool delete = false;
9,490✔
2616
   for (const char *p = str; *p; p++) {
629,099✔
2617
      if (*p == '@' || (*p == '(' && !isdigit_iso88591(*(p + 1))))
619,609✔
2618
         delete = true;
2619
      else if (*p == ')' && delete)
588,063✔
2620
         delete = false;
2621
      else if (*p == ':') {
567,578✔
2622
         delete = false;
36,489✔
2623
         tb_append(tb, ':');
36,489✔
2624
      }
2625
      else if (!delete)
531,089✔
2626
         tb_append(tb, *p);
324,578✔
2627
   }
2628
}
9,490✔
2629

2630
bool calculate_aggregate_bounds(tree_t expr, range_kind_t *kind,
2,621✔
2631
                                int64_t *left, int64_t *right)
2632
{
2633
   // Calculate the direction and bounds of an array aggregate using the
2634
   // rules in LRM 93 7.3.2.2
2635

2636
   type_t type = tree_type(expr);
2,621✔
2637
   type_t index_type = index_type_of(type, 0);
2,621✔
2638
   if (index_type == NULL || type_is_none(index_type))
2,621✔
2639
      return false;
1✔
2640

2641
   tree_t index_r = range_of(index_type, 0), base_r = index_r;
2,620✔
2642

2643
   int64_t low, high;
2,620✔
2644
   if (!folded_bounds(index_r, &low, &high))
2,620✔
2645
      return false;
2646

2647
   int64_t clow = INT64_MAX, chigh = INT64_MIN;  // Actual bounds computed below
2,605✔
2648

2649
   range_kind_t dir;
2,605✔
2650
   if (type_is_unconstrained(type))
2,605✔
2651
      dir = tree_subkind(index_r);
2,363✔
2652
   else {
2653
      base_r = range_of(type, 0);
242✔
2654
      dir = tree_subkind(base_r);
242✔
2655
   }
2656

2657
   const int nassocs = tree_assocs(expr);
2,605✔
2658

2659
   if (standard() >= STD_08) {
2,605✔
2660
      // VHDL-2008 range association determines index direction for
2661
      // unconstrained aggregate when the expression type matches the
2662
      // array type
2663
      for (int i = 0; i < nassocs; i++) {
3,278✔
2664
         tree_t a = tree_assoc(expr, i);
2,101✔
2665
         if (tree_subkind(a) == A_SLICE)
2,101✔
2666
            dir = tree_subkind(tree_range(a, 0));
47✔
2667
      }
2668
   }
2669

2670
   if (dir != RANGE_TO && dir != RANGE_DOWNTO)
2,605✔
2671
      return false;
2672

2673
   int64_t pos = 0;
2674
   for (int i = 0; i < nassocs; i++) {
11,997✔
2675
      tree_t a = tree_assoc(expr, i);
10,245✔
2676
      int64_t ilow = 0, ihigh = 0;
10,245✔
2677
      const assoc_kind_t akind = tree_subkind(a);
10,245✔
2678

2679
      switch (akind) {
10,245✔
2680
      case A_NAMED:
543✔
2681
         {
2682
            tree_t name = tree_name(a);
543✔
2683
            if (folded_int(name, &ilow))
543✔
2684
               ihigh = ilow;
533✔
2685
            else
2686
               return false;
816✔
2687
         }
2688
         break;
533✔
2689

2690
      case A_RANGE:
1,174✔
2691
      case A_SLICE:
2692
         {
2693
            tree_t r = tree_range(a, 0);
1,174✔
2694
            const range_kind_t rkind = tree_subkind(r);
1,174✔
2695
            if (rkind == RANGE_TO || rkind == RANGE_DOWNTO) {
1,174✔
2696
               tree_t left = tree_left(r), right = tree_right(r);
832✔
2697

2698
               int64_t ileft, iright;
832✔
2699
               if (folded_int(left, &ileft) && folded_int(right, &iright)) {
832✔
2700
                  ilow = (rkind == RANGE_TO ? ileft : iright);
402✔
2701
                  ihigh = (rkind == RANGE_TO ? iright : ileft);
402✔
2702
               }
2703
               else
2704
                  return false;
430✔
2705
            }
2706
            else
2707
               return false;
2708
         }
2709
         break;
2710

2711
      case A_OTHERS:
2712
         return false;
2713

2714
      case A_POS:
8,485✔
2715
         if (i == 0) {
8,485✔
2716
            int64_t ileft;
1,138✔
2717
            if (folded_int(tree_left(base_r), &ileft))
1,138✔
2718
               ilow = ihigh = ileft;
1,138✔
2719
            else
2720
               return false;
×
2721
         }
2722
         else if (dir == RANGE_TO)
7,347✔
2723
            ilow = ihigh = clow + pos;
7,345✔
2724
         else
2725
            ilow = ihigh = chigh - pos;
2✔
2726
         pos++;
8,485✔
2727
         break;
8,485✔
2728

2729
      case A_CONCAT:
41✔
2730
         {
2731
            type_t value_type = tree_type(tree_value(a));
41✔
2732

2733
            int64_t length;
41✔
2734
            if (type_is_unconstrained(value_type))
41✔
2735
               return false;
32✔
2736
            else if (folded_length(range_of(value_type, 0), &length)) {
16✔
2737
               if (i == 0) {
9✔
2738
                  int64_t ileft;
2✔
2739
                  if (folded_int(tree_left(base_r), &ileft))
2✔
2740
                     ilow = ihigh = ileft;
2✔
2741
                  else
2742
                     return false;
×
2743
               }
2744
               else if (dir == RANGE_TO) {
7✔
2745
                  ilow = clow + pos;
7✔
2746
                  ihigh = ilow + length - 1;
7✔
2747
               }
2748
               else {
2749
                  ihigh = chigh - pos;
×
2750
                  ilow = ihigh - length + 1;
×
2751
               }
2752
               pos += length;
9✔
2753
            }
2754
            else
2755
               return false;
2756
         }
2757
         break;
2758
      }
2759

2760
      clow = MIN(clow, ilow);
9,429✔
2761
      chigh = MAX(chigh, ihigh);
9,429✔
2762
   }
2763

2764
   if (clow < low || chigh > high)
1,752✔
2765
      return false;   // Will raise a bounds check error later
2766

2767
   *kind = dir;
1,747✔
2768
   *left = dir == RANGE_TO ? clow : chigh;
1,747✔
2769
   *right = dir == RANGE_TO ? chigh : clow;
1,747✔
2770

2771
   return true;
1,747✔
2772
}
2773

2774
type_t calculate_aggregate_subtype(tree_t expr)
2,395✔
2775
{
2776
   range_kind_t dir;
2,395✔
2777
   int64_t ileft, iright;
2,395✔
2778
   if (!calculate_aggregate_bounds(expr, &dir, &ileft, &iright))
2,395✔
2779
      return NULL;
2780

2781
   type_t type = tree_type(expr);
1,729✔
2782

2783
   const int ndims = dimension_of(type);
1,729✔
2784
   type_t a0_type = NULL;
1,729✔
2785
   if (ndims > 1) {
1,729✔
2786
      a0_type = tree_type(tree_value(tree_assoc(expr, 0)));
66✔
2787
      if (type_is_unconstrained(a0_type))
66✔
2788
         return NULL;
2789

2790
      assert(dimension_of(a0_type) == ndims - 1);
66✔
2791
   }
2792

2793
   type_t index_type = index_type_of(type, 0);
1,729✔
2794

2795
   tree_t left = get_discrete_lit(expr, index_type, ileft);
1,729✔
2796
   tree_t right = get_discrete_lit(expr, index_type, iright);
1,729✔
2797
   assert(left != NULL && right != NULL);
1,729✔
2798

2799
   type_t sub = type_new(T_SUBTYPE);
1,729✔
2800
   type_set_base(sub, type_base_recur(type));
1,729✔
2801

2802
   type_t elem = type_elem(type);
1,729✔
2803
   if (type_is_unconstrained(elem)) {
1,729✔
2804
      a0_type = tree_type(tree_value(tree_assoc(expr, 0)));
91✔
2805
      if (!type_is_unconstrained(a0_type))
91✔
2806
         elem = a0_type;
47✔
2807
   }
2808

2809
   type_set_elem(sub, elem);
1,729✔
2810

2811
   tree_t cons = tree_new(T_CONSTRAINT);
1,729✔
2812
   tree_set_subkind(cons, C_INDEX);
1,729✔
2813

2814
   tree_t r = tree_new(T_RANGE);
1,729✔
2815
   tree_set_subkind(r, dir);
1,729✔
2816
   tree_set_type(r, index_type);
1,729✔
2817
   tree_set_left(r, left);
1,729✔
2818
   tree_set_right(r, right);
1,729✔
2819

2820
   tree_add_range(cons, r);
1,729✔
2821

2822
   for (int i = 1; i < ndims; i++)
1,795✔
2823
      tree_add_range(cons, range_of(a0_type, i - 1));
66✔
2824

2825
   type_set_constraint(sub, cons);
1,729✔
2826

2827
   return sub;
1,729✔
2828
}
STATUS · Troubleshooting · Open an Issue · Sales · Support · CAREERS · ENTERPRISE · START FREE · SCHEDULE DEMO
ANNOUNCEMENTS · TWITTER · TOS & SLA · Supported CI Services · What's a CI service? · Automated Testing

© 2026 Coveralls, Inc