Coverage Report

Created: 2026-07-25 10:20

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/binutils-gdb/bfd/wasm-module.c
Line
Count
Source
1
/* BFD back-end for WebAssembly modules.
2
   Copyright (C) 2017-2026 Free Software Foundation, Inc.
3
4
   Based on srec.c, mmo.c, and binary.c
5
6
   This file is part of BFD, the Binary File Descriptor library.
7
8
   This program is free software; you can redistribute it and/or modify
9
   it under the terms of the GNU General Public License as published by
10
   the Free Software Foundation; either version 3 of the License, or
11
   (at your option) any later version.
12
13
   This program is distributed in the hope that it will be useful,
14
   but WITHOUT ANY WARRANTY; without even the implied warranty of
15
   MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
16
   GNU General Public License for more details.
17
18
   You should have received a copy of the GNU General Public License
19
   along with this program; if not, write to the Free Software
20
   Foundation, Inc., 51 Franklin Street - Fifth Floor, Boston,
21
   MA 02110-1301, USA.  */
22
23
/* The WebAssembly module format is a simple object file format
24
   including up to 11 numbered sections, plus any number of named
25
   "custom" sections. It is described at:
26
   https://github.com/WebAssembly/design/blob/master/BinaryEncoding.md. */
27
28
#include "sysdep.h"
29
#include "bfd.h"
30
#include "libiberty.h"
31
#include "libbfd.h"
32
#include "wasm-module.h"
33
34
#include <limits.h>
35
#ifndef CHAR_BIT
36
#define CHAR_BIT 8
37
#endif
38
39
typedef struct
40
{
41
  asymbol *      symbols;
42
  bfd_size_type  symcount;
43
} tdata_type;
44
45
static const char * const wasm_numbered_sections[] =
46
{
47
  NULL, /* Custom section, different layout.  */
48
  WASM_SECTION ( 1, "type"),
49
  WASM_SECTION ( 2, "import"),
50
  WASM_SECTION ( 3, "function"),
51
  WASM_SECTION ( 4, "table"),
52
  WASM_SECTION ( 5, "memory"),
53
  WASM_SECTION ( 6, "global"),
54
  WASM_SECTION ( 7, "export"),
55
  WASM_SECTION ( 8, "start"),
56
  WASM_SECTION ( 9, "element"),
57
  WASM_SECTION (10, "code"),
58
  WASM_SECTION (11, "data"),
59
};
60
61
16.7k
#define WASM_NUMBERED_SECTIONS ARRAY_SIZE (wasm_numbered_sections)
62
63
/* Resolve SECTION_CODE to a section name if there is one, NULL
64
   otherwise.  */
65
66
static const char *
67
wasm_section_code_to_name (bfd_byte section_code)
68
12.6k
{
69
12.6k
  if (section_code < WASM_NUMBERED_SECTIONS)
70
12.5k
    return wasm_numbered_sections[section_code];
71
72
30
  return NULL;
73
12.6k
}
74
75
/* Translate section name NAME to a section code, or 0 if it's a
76
   custom name.  */
77
78
static unsigned int
79
wasm_section_name_to_code (const char *name)
80
758
{
81
758
  unsigned i;
82
83
3.20k
  for (i = 1; i < WASM_NUMBERED_SECTIONS; i++)
84
3.03k
    if (strcmp (name, wasm_numbered_sections[i]) == 0)
85
586
      return i;
86
87
172
  return 0;
88
758
}
89
90
/* WebAssembly LEB128 integers are sufficiently like DWARF LEB128
91
   integers that we use _bfd_safe_read_leb128, but there are two
92
   points of difference:
93
94
   - WebAssembly requires a 32-bit value to be encoded in at most 5
95
     bytes, etc.
96
   - _bfd_safe_read_leb128 accepts incomplete LEB128 encodings at the
97
     end of the buffer, while these are invalid in WebAssembly.
98
99
   Those differences mean that we will accept some files that are
100
   invalid WebAssembly.  */
101
102
/* Read an LEB128-encoded integer from ABFD's I/O stream, reading one
103
   byte at a time.  Set ERROR_RETURN if no complete integer could be
104
   read, LENGTH_RETURN to the number of bytes read (including bytes in
105
   incomplete numbers).  SIGN means interpret the number as SLEB128. */
106
107
static bfd_vma
108
wasm_read_leb128 (bfd *abfd,
109
      bool *error_return,
110
      unsigned int *length_return,
111
      bool sign)
112
18.1k
{
113
18.1k
  bfd_vma result = 0;
114
18.1k
  unsigned int num_read = 0;
115
18.1k
  unsigned int shift = 0;
116
18.1k
  unsigned char byte = 0;
117
18.1k
  unsigned char lost, mask;
118
18.1k
  int status = 1;
119
120
29.7k
  while (bfd_read (&byte, 1, abfd) == 1)
121
29.5k
    {
122
29.5k
      num_read++;
123
124
29.5k
      if (shift < CHAR_BIT * sizeof (result))
125
24.8k
  {
126
24.8k
    result |= ((bfd_vma) (byte & 0x7f)) << shift;
127
    /* These bits overflowed.  */
128
24.8k
    lost = byte ^ (result >> shift);
129
    /* And this is the mask of possible overflow bits.  */
130
24.8k
    mask = 0x7f ^ ((bfd_vma) 0x7f << shift >> shift);
131
24.8k
    shift += 7;
132
24.8k
  }
133
4.66k
      else
134
4.66k
  {
135
4.66k
    lost = byte;
136
4.66k
    mask = 0x7f;
137
4.66k
  }
138
29.5k
      if ((lost & mask) != (sign && (bfd_signed_vma) result < 0 ? mask : 0))
139
3.68k
  status |= 2;
140
141
29.5k
      if ((byte & 0x80) == 0)
142
17.9k
  {
143
17.9k
    status &= ~1;
144
17.9k
    if (sign && shift < CHAR_BIT * sizeof (result) && (byte & 0x40))
145
0
      result |= -((bfd_vma) 1 << shift);
146
17.9k
    break;
147
17.9k
  }
148
29.5k
    }
149
150
18.1k
  if (length_return != NULL)
151
18.1k
    *length_return = num_read;
152
18.1k
  if (error_return != NULL)
153
18.1k
    *error_return = status != 0;
154
155
18.1k
  return result;
156
18.1k
}
157
158
/* Encode an integer V as LEB128 and write it to ABFD, return TRUE on
159
   success.  */
160
161
static bool
162
wasm_write_uleb128 (bfd *abfd, bfd_vma v)
163
295
{
164
295
  do
165
295
    {
166
295
      bfd_byte c = v & 0x7f;
167
295
      v >>= 7;
168
169
295
      if (v)
170
0
  c |= 0x80;
171
172
295
      if (bfd_write (&c, 1, abfd) != 1)
173
0
  return false;
174
295
    }
175
295
  while (v);
176
177
295
  return true;
178
295
}
179
180
/* Read the LEB128 integer at P, saving it to X; at end of buffer,
181
   jump to error_return.  */
182
#define READ_LEB128(x, p, end)            \
183
863
  do                  \
184
863
    {                 \
185
863
      if ((p) >= (end))             \
186
863
  goto error_return;           \
187
863
      (x) = _bfd_safe_read_leb128 (abfd, &(p), false, (end));   \
188
853
    }                  \
189
863
  while (0)
190
191
/* Verify the magic number at the beginning of a WebAssembly module
192
   ABFD, setting ERRORPTR if there's a mismatch.  */
193
194
static bool
195
wasm_read_magic (bfd *abfd, bool *errorptr)
196
162k
{
197
162k
  bfd_byte magic_const[SIZEOF_WASM_MAGIC] = WASM_MAGIC;
198
162k
  bfd_byte magic[SIZEOF_WASM_MAGIC];
199
200
162k
  if (bfd_read (magic, sizeof (magic), abfd) == sizeof (magic)
201
161k
      && memcmp (magic, magic_const, sizeof (magic)) == 0)
202
2.75k
    return true;
203
204
159k
  *errorptr = true;
205
159k
  return false;
206
162k
}
207
208
/* Read the version number from ABFD, returning TRUE if it's a supported
209
   version. Set ERRORPTR otherwise.  */
210
211
static bool
212
wasm_read_version (bfd *abfd, bool *errorptr)
213
2.75k
{
214
2.75k
  bfd_byte vers_const[SIZEOF_WASM_VERSION] = WASM_VERSION;
215
2.75k
  bfd_byte vers[SIZEOF_WASM_VERSION];
216
217
2.75k
  if (bfd_read (vers, sizeof (vers), abfd) == sizeof (vers)
218
      /* Don't attempt to parse newer versions, which are likely to
219
   require code changes.  */
220
2.75k
      && memcmp (vers, vers_const, sizeof (vers)) == 0)
221
2.73k
    return true;
222
223
29
  *errorptr = true;
224
29
  return false;
225
2.75k
}
226
227
/* Read the WebAssembly header (magic number plus version number) from
228
   ABFD, setting ERRORPTR to TRUE if there is a mismatch.  */
229
230
static bool
231
wasm_read_header (bfd *abfd, bool *errorptr)
232
162k
{
233
162k
  if (! wasm_read_magic (abfd, errorptr))
234
159k
    return false;
235
236
2.75k
  if (! wasm_read_version (abfd, errorptr))
237
29
    return false;
238
239
2.73k
  return true;
240
2.75k
}
241
242
/* Scan the "function" subsection of the "name" section ASECT in the
243
   wasm module ABFD. Create symbols. Return TRUE on success.  */
244
245
static bool
246
wasm_scan_name_function_section (bfd *abfd, sec_ptr asect)
247
160
{
248
160
  bfd_byte *p;
249
160
  bfd_byte *end;
250
160
  bfd_vma payload_size;
251
160
  bfd_vma symcount = 0;
252
160
  tdata_type *tdata = abfd->tdata.any;
253
160
  asymbol *symbols = NULL;
254
160
  sec_ptr space_function_index;
255
160
  size_t amt;
256
257
160
  p = asect->contents;
258
160
  end = asect->contents + asect->size;
259
260
160
  if (!p)
261
1
    return false;
262
263
489
  while (p < end)
264
485
    {
265
485
      bfd_byte subsection_code = *p++;
266
485
      if (subsection_code == WASM_FUNCTION_SUBSECTION)
267
81
  break;
268
269
      /* subsection_code is documented to be a varuint7, meaning that
270
   it has to be a single byte in the 0 - 127 range.  If it isn't,
271
   the spec must have changed underneath us, so give up.  */
272
404
      if (subsection_code & 0x80)
273
7
  return false;
274
275
397
      READ_LEB128 (payload_size, p, end);
276
277
393
      if (payload_size > (size_t) (end - p))
278
63
  return false;
279
280
330
      p += payload_size;
281
330
    }
282
283
85
  if (p >= end)
284
5
    return false;
285
286
80
  READ_LEB128 (payload_size, p, end);
287
288
80
  if (payload_size > (size_t) (end - p))
289
32
    return false;
290
291
48
  end = p + payload_size;
292
293
48
  READ_LEB128 (symcount, p, end);
294
295
  /* Sanity check: each symbol has at least two bytes.  */
296
45
  if (symcount > payload_size / 2)
297
16
    return false;
298
299
29
  tdata->symcount = symcount;
300
301
29
  space_function_index
302
29
    = bfd_make_section_with_flags (abfd, WASM_SECTION_FUNCTION_INDEX,
303
29
           SEC_READONLY | SEC_CODE);
304
305
29
  if (!space_function_index)
306
0
    space_function_index
307
0
      = bfd_get_section_by_name (abfd, WASM_SECTION_FUNCTION_INDEX);
308
309
29
  if (!space_function_index)
310
0
    return false;
311
312
29
  if (_bfd_mul_overflow (tdata->symcount, sizeof (asymbol), &amt))
313
0
    {
314
0
      bfd_set_error (bfd_error_file_too_big);
315
0
      return false;
316
0
    }
317
29
  symbols = bfd_alloc (abfd, amt);
318
29
  if (!symbols)
319
0
    return false;
320
321
187
  for (symcount = 0; p < end && symcount < tdata->symcount; symcount++)
322
169
    {
323
169
      bfd_vma idx;
324
169
      bfd_vma len;
325
169
      char *name;
326
169
      asymbol *sym;
327
328
169
      READ_LEB128 (idx, p, end);
329
169
      READ_LEB128 (len, p, end);
330
331
166
      if (len > (size_t) (end - p))
332
8
  goto error_return;
333
334
158
      name = bfd_alloc (abfd, len + 1);
335
158
      if (!name)
336
0
  goto error_return;
337
338
158
      memcpy (name, p, len);
339
158
      name[len] = 0;
340
158
      p += len;
341
342
158
      sym = &symbols[symcount];
343
158
      sym->the_bfd = abfd;
344
158
      sym->name = name;
345
158
      sym->value = idx;
346
158
      sym->flags = BSF_GLOBAL | BSF_FUNCTION;
347
158
      sym->section = space_function_index;
348
158
      sym->udata.p = NULL;
349
158
    }
350
351
18
  if (symcount < tdata->symcount)
352
4
    goto error_return;
353
354
14
  tdata->symbols = symbols;
355
14
  abfd->symcount = symcount;
356
357
14
  return true;
358
359
22
 error_return:
360
22
  if (symbols)
361
15
    bfd_release (abfd, symbols);
362
22
  tdata->symcount = 0;
363
22
  return false;
364
18
}
365
366
/* Read a byte from ABFD and return it, or EOF for EOF or error.
367
   Set ERRORPTR on non-EOF error.  */
368
369
static int
370
wasm_read_byte (bfd *abfd, bool *errorptr)
371
15.6k
{
372
15.6k
  bfd_byte byte;
373
374
15.6k
  if (bfd_read (&byte, 1, abfd) != 1)
375
236
    {
376
236
      if (bfd_get_error () != bfd_error_file_truncated)
377
1
  *errorptr = true;
378
236
      return EOF;
379
236
    }
380
381
15.4k
  return byte;
382
15.6k
}
383
384
/* Scan the wasm module ABFD, creating sections and symbols.
385
   Return TRUE on success.  */
386
387
static bool
388
wasm_scan (bfd *abfd)
389
1.36k
{
390
1.36k
  bool error = false;
391
  /* Fake VMAs for now. Choose 0x80000000 as base to avoid clashes
392
     with actual data addresses.  */
393
1.36k
  bfd_vma vma = 0x80000000;
394
1.36k
  int section_code;
395
1.36k
  unsigned int bytes_read;
396
1.36k
  asection *bfdsec;
397
398
1.36k
  if (bfd_seek (abfd, 0, SEEK_SET) != 0)
399
0
    goto error_return;
400
401
1.36k
  if (!wasm_read_header (abfd, &error))
402
0
    goto error_return;
403
404
15.6k
  while ((section_code = wasm_read_byte (abfd, &error)) != EOF)
405
15.4k
    {
406
15.4k
      if (section_code != 0)
407
12.6k
  {
408
12.6k
    const char *sname = wasm_section_code_to_name (section_code);
409
410
12.6k
    if (!sname)
411
30
      goto error_return;
412
413
12.5k
    bfdsec = bfd_make_section_anyway_with_flags (abfd, sname,
414
12.5k
                   SEC_HAS_CONTENTS);
415
12.5k
    if (bfdsec == NULL)
416
0
      goto error_return;
417
418
12.5k
    bfdsec->size = wasm_read_leb128 (abfd, &error, &bytes_read, false);
419
12.5k
    if (error)
420
85
      goto error_return;
421
12.5k
  }
422
2.81k
      else
423
2.81k
  {
424
2.81k
    bfd_vma payload_len;
425
2.81k
    bfd_vma namelen;
426
2.81k
    char *name;
427
2.81k
    char *prefix = WASM_SECTION_PREFIX;
428
2.81k
    size_t prefixlen = strlen (prefix);
429
2.81k
    ufile_ptr filesize;
430
431
2.81k
    payload_len = wasm_read_leb128 (abfd, &error, &bytes_read, false);
432
2.81k
    if (error)
433
76
      goto error_return;
434
2.74k
    namelen = wasm_read_leb128 (abfd, &error, &bytes_read, false);
435
2.74k
    if (error || bytes_read > payload_len
436
2.66k
        || namelen > payload_len - bytes_read)
437
244
      goto error_return;
438
2.49k
    payload_len -= namelen + bytes_read;
439
2.49k
    filesize = bfd_get_file_size (abfd);
440
2.49k
    if (filesize != 0 && namelen > filesize)
441
245
      {
442
245
        bfd_set_error (bfd_error_file_truncated);
443
245
        return false;
444
245
      }
445
2.25k
    name = bfd_alloc (abfd, namelen + prefixlen + 1);
446
2.25k
    if (!name)
447
0
      goto error_return;
448
2.25k
    memcpy (name, prefix, prefixlen);
449
2.25k
    if (bfd_read (name + prefixlen, namelen, abfd) != namelen)
450
33
      goto error_return;
451
2.22k
    name[prefixlen + namelen] = 0;
452
453
2.22k
    bfdsec = bfd_make_section_anyway_with_flags (abfd, name,
454
2.22k
                   SEC_HAS_CONTENTS);
455
2.22k
    if (bfdsec == NULL)
456
0
      goto error_return;
457
458
2.22k
    bfdsec->size = payload_len;
459
2.22k
  }
460
461
14.7k
      bfdsec->vma = vma;
462
14.7k
      bfdsec->lma = vma;
463
14.7k
      bfdsec->alignment_power = 0;
464
14.7k
      bfdsec->filepos = bfd_tell (abfd);
465
14.7k
      if (bfdsec->size != 0)
466
10.7k
  {
467
10.7k
    bfdsec->contents = _bfd_alloc_and_read (abfd, bfdsec->size,
468
10.7k
              bfdsec->size);
469
10.7k
    if (!bfdsec->contents)
470
416
      goto error_return;
471
10.3k
    bfdsec->alloced = 1;
472
10.3k
  }
473
474
14.3k
      vma += bfdsec->size;
475
14.3k
    }
476
477
  /* Make sure we're at actual EOF.  There's no indication in the
478
     WebAssembly format of how long the file is supposed to be.  */
479
236
  if (error)
480
1
    goto error_return;
481
482
235
  return true;
483
484
885
 error_return:
485
885
  return false;
486
236
}
487
488
/* Put a numbered section ASECT of ABFD into the table of numbered
489
   sections pointed to by FSARG.  */
490
491
static void
492
wasm_register_section (bfd *abfd ATTRIBUTE_UNUSED,
493
           asection *asect,
494
           void *fsarg)
495
379
{
496
379
  sec_ptr *numbered_sections = fsarg;
497
379
  int idx = wasm_section_name_to_code (asect->name);
498
499
379
  if (idx == 0)
500
86
    return;
501
502
293
  numbered_sections[idx] = asect;
503
293
}
504
505
struct compute_section_arg
506
{
507
  bfd_vma pos;
508
  bool failed;
509
};
510
511
/* Compute the file position of ABFD's section ASECT.  FSARG is a
512
   pointer to the current file position.
513
514
   We allow section names of the form .wasm.id to encode the numbered
515
   section with ID id, if it exists; otherwise, a custom section with
516
   ID "id" is produced.  Arbitrary section names are for sections that
517
   are assumed already to contain a section header; those are appended
518
   to the WebAssembly module verbatim.  */
519
520
static void
521
wasm_compute_custom_section_file_position (bfd *abfd,
522
             sec_ptr asect,
523
             void *fsarg)
524
379
{
525
379
  struct compute_section_arg *fs = fsarg;
526
379
  int idx;
527
528
379
  if (fs->failed)
529
0
    return;
530
531
379
  idx = wasm_section_name_to_code (asect->name);
532
533
379
  if (idx != 0)
534
293
    return;
535
536
86
  if (startswith (asect->name, WASM_SECTION_PREFIX))
537
81
    {
538
81
      const char *name = asect->name + strlen (WASM_SECTION_PREFIX);
539
81
      bfd_size_type payload_len = asect->size;
540
81
      bfd_size_type name_len = strlen (name);
541
81
      bfd_size_type nl = name_len;
542
543
81
      payload_len += name_len;
544
545
81
      do
546
81
  {
547
81
    payload_len++;
548
81
    nl >>= 7;
549
81
  }
550
81
      while (nl);
551
552
81
      if (bfd_seek (abfd, fs->pos, SEEK_SET) != 0
553
81
    || ! wasm_write_uleb128 (abfd, 0)
554
81
    || ! wasm_write_uleb128 (abfd, payload_len)
555
81
    || ! wasm_write_uleb128 (abfd, name_len)
556
81
    || bfd_write (name, name_len, abfd) != name_len)
557
0
  goto error_return;
558
81
      fs->pos = asect->filepos = bfd_tell (abfd);
559
81
    }
560
5
  else
561
5
    {
562
5
      asect->filepos = fs->pos;
563
5
    }
564
565
566
86
  fs->pos += asect->size;
567
86
  return;
568
569
0
 error_return:
570
0
  fs->failed = true;
571
0
}
572
573
/* Compute the file positions for the sections of ABFD.  Currently,
574
   this writes all numbered sections first, in order, then all custom
575
   sections, in section order.
576
577
   The spec says that the numbered sections must appear in order of
578
   their ids, but custom sections can appear in any position and any
579
   order, and more than once. FIXME: support that.  */
580
581
static bool
582
wasm_compute_section_file_positions (bfd *abfd)
583
34
{
584
34
  bfd_byte magic[SIZEOF_WASM_MAGIC] = WASM_MAGIC;
585
34
  bfd_byte vers[SIZEOF_WASM_VERSION] = WASM_VERSION;
586
34
  sec_ptr numbered_sections[WASM_NUMBERED_SECTIONS];
587
34
  struct compute_section_arg fs;
588
34
  unsigned int i;
589
590
34
  if (bfd_seek (abfd, (bfd_vma) 0, SEEK_SET) != 0
591
34
      || bfd_write (magic, sizeof (magic), abfd) != (sizeof magic)
592
34
      || bfd_write (vers, sizeof (vers), abfd) != sizeof (vers))
593
0
    return false;
594
595
442
  for (i = 0; i < WASM_NUMBERED_SECTIONS; i++)
596
408
    numbered_sections[i] = NULL;
597
598
34
  bfd_map_over_sections (abfd, wasm_register_section, numbered_sections);
599
600
34
  fs.pos = bfd_tell (abfd);
601
442
  for (i = 0; i < WASM_NUMBERED_SECTIONS; i++)
602
408
    {
603
408
      sec_ptr sec = numbered_sections[i];
604
408
      bfd_size_type size;
605
606
408
      if (! sec)
607
382
  continue;
608
26
      size = sec->size;
609
26
      if (bfd_seek (abfd, fs.pos, SEEK_SET) != 0)
610
0
  return false;
611
26
      if (! wasm_write_uleb128 (abfd, i)
612
26
    || ! wasm_write_uleb128 (abfd, size))
613
0
  return false;
614
26
      fs.pos = sec->filepos = bfd_tell (abfd);
615
26
      fs.pos += size;
616
26
    }
617
618
34
  fs.failed = false;
619
620
34
  bfd_map_over_sections (abfd, wasm_compute_custom_section_file_position, &fs);
621
622
34
  if (fs.failed)
623
0
    return false;
624
625
34
  abfd->output_has_begun = true;
626
627
34
  return true;
628
34
}
629
630
static bool
631
wasm_set_section_contents (bfd *abfd,
632
         sec_ptr section,
633
         const void *location,
634
         file_ptr offset,
635
         bfd_size_type count)
636
60
{
637
60
  if (count == 0)
638
0
    return true;
639
640
60
  if (! abfd->output_has_begun
641
34
      && ! wasm_compute_section_file_positions (abfd))
642
0
    return false;
643
644
60
  if (bfd_seek (abfd, section->filepos + offset, SEEK_SET) != 0
645
60
      || bfd_write (location, count, abfd) != count)
646
0
    return false;
647
648
60
  return true;
649
60
}
650
651
static bool
652
wasm_write_object_contents (bfd* abfd)
653
67
{
654
67
  bfd_byte magic[] = WASM_MAGIC;
655
67
  bfd_byte vers[] = WASM_VERSION;
656
657
67
  if (bfd_seek (abfd, 0, SEEK_SET) != 0)
658
0
    return false;
659
660
67
  if (bfd_write (magic, sizeof (magic), abfd) != sizeof (magic)
661
67
      || bfd_write (vers, sizeof (vers), abfd) != sizeof (vers))
662
0
    return false;
663
664
67
  return true;
665
67
}
666
667
static bool
668
wasm_mkobject (bfd *abfd)
669
1.43k
{
670
1.43k
  tdata_type *tdata = (tdata_type *) bfd_alloc (abfd, sizeof (tdata_type));
671
672
1.43k
  if (! tdata)
673
0
    return false;
674
675
1.43k
  tdata->symbols = NULL;
676
1.43k
  tdata->symcount = 0;
677
678
1.43k
  abfd->tdata.any = tdata;
679
680
1.43k
  return true;
681
1.43k
}
682
683
static long
684
wasm_get_symtab_upper_bound (bfd *abfd)
685
74
{
686
74
  tdata_type *tdata = abfd->tdata.any;
687
688
74
  return (tdata->symcount + 1) * (sizeof (asymbol *));
689
74
}
690
691
static long
692
wasm_canonicalize_symtab (bfd *abfd, asymbol **alocation)
693
74
{
694
74
  tdata_type *tdata = abfd->tdata.any;
695
74
  size_t i;
696
697
168
  for (i = 0; i < tdata->symcount; i++)
698
94
    alocation[i] = &tdata->symbols[i];
699
74
  alocation[i] = NULL;
700
701
74
  return tdata->symcount;
702
74
}
703
704
static asymbol *
705
wasm_make_empty_symbol (bfd *abfd)
706
15.2k
{
707
15.2k
  size_t amt = sizeof (asymbol);
708
15.2k
  asymbol *new_symbol = (asymbol *) bfd_zalloc (abfd, amt);
709
710
15.2k
  if (! new_symbol)
711
0
    return NULL;
712
15.2k
  new_symbol->the_bfd = abfd;
713
15.2k
  return new_symbol;
714
15.2k
}
715
716
static void
717
wasm_print_symbol (bfd *abfd,
718
       void * filep,
719
       asymbol *symbol,
720
       bfd_print_symbol_type how)
721
0
{
722
0
  FILE *file = (FILE *) filep;
723
724
0
  switch (how)
725
0
    {
726
0
    case bfd_print_symbol_name:
727
0
      fprintf (file, "%s", symbol->name);
728
0
      break;
729
730
0
    default:
731
0
      bfd_print_symbol_vandf (abfd, filep, symbol);
732
0
      fprintf (file, " %-5s %s", symbol->section->name, symbol->name);
733
0
    }
734
0
}
735
736
static void
737
wasm_get_symbol_info (bfd *abfd ATTRIBUTE_UNUSED,
738
          asymbol *symbol,
739
          symbol_info *ret)
740
35
{
741
35
  bfd_symbol_info (symbol, ret);
742
35
}
743
744
/* Check whether ABFD is a WebAssembly module; if so, scan it.  */
745
746
static bfd_cleanup
747
wasm_object_p (bfd *abfd)
748
161k
{
749
161k
  bool error;
750
161k
  asection *s;
751
752
161k
  if (bfd_seek (abfd, 0, SEEK_SET) != 0)
753
0
    return NULL;
754
755
161k
  if (!wasm_read_header (abfd, &error))
756
159k
    {
757
159k
      bfd_set_error (bfd_error_wrong_format);
758
159k
      return NULL;
759
159k
    }
760
761
1.36k
  if (!wasm_mkobject (abfd))
762
0
    return NULL;
763
764
1.36k
  if (!wasm_scan (abfd)
765
235
      || !bfd_default_set_arch_mach (abfd, bfd_arch_wasm32, 0))
766
1.13k
    {
767
1.13k
      bfd_release (abfd, abfd->tdata.any);
768
1.13k
      abfd->tdata.any = NULL;
769
1.13k
      return NULL;
770
1.13k
    }
771
772
235
  s = bfd_get_section_by_name (abfd, WASM_NAME_SECTION);
773
235
  if (s != NULL && wasm_scan_name_function_section (abfd, s))
774
14
    abfd->flags |= HAS_SYMS;
775
776
235
  return _bfd_no_cleanup;
777
1.36k
}
778
779
/* BFD_JUMP_TABLE_WRITE */
780
#define wasm_set_arch_mach      _bfd_generic_set_arch_mach
781
782
/* BFD_JUMP_TABLE_SYMBOLS */
783
#define wasm_get_symbol_version_string    _bfd_nosymbols_get_symbol_version_string
784
#define wasm_bfd_is_local_label_name     bfd_generic_is_local_label_name
785
#define wasm_bfd_is_target_special_symbol _bfd_bool_bfd_asymbol_false
786
#define wasm_get_lineno       _bfd_nosymbols_get_lineno
787
#define wasm_find_nearest_line      _bfd_nosymbols_find_nearest_line
788
#define wasm_find_nearest_line_with_alt   _bfd_nosymbols_find_nearest_line_with_alt
789
#define wasm_find_line        _bfd_nosymbols_find_line
790
#define wasm_find_inliner_info      _bfd_nosymbols_find_inliner_info
791
#define wasm_bfd_make_debug_symbol    _bfd_nosymbols_bfd_make_debug_symbol
792
#define wasm_read_minisymbols     _bfd_generic_read_minisymbols
793
#define wasm_minisymbol_to_symbol   _bfd_generic_minisymbol_to_symbol
794
795
const bfd_target wasm_vec =
796
{
797
  "wasm",     /* Name.  */
798
  bfd_target_unknown_flavour,
799
  BFD_ENDIAN_LITTLE,
800
  BFD_ENDIAN_LITTLE,
801
  (HAS_SYMS | WP_TEXT),   /* Object flags.  */
802
  (SEC_CODE | SEC_DATA | SEC_HAS_CONTENTS), /* Section flags.  */
803
  0,        /* Leading underscore.  */
804
  ' ',        /* AR_pad_char.  */
805
  255,        /* AR_max_namelen.  */
806
  0,        /* Match priority.  */
807
  TARGET_KEEP_UNUSED_SECTION_SYMBOLS, /* keep unused section symbols.  */
808
  false,      /* merge sections */
809
  /* Routines to byte-swap various sized integers from the data sections.  */
810
  bfd_getl64, bfd_getl_signed_64, bfd_putl64,
811
  bfd_getl32, bfd_getl_signed_32, bfd_putl32,
812
  bfd_getl16, bfd_getl_signed_16, bfd_putl16,
813
814
  /* Routines to byte-swap various sized integers from the file headers.  */
815
  bfd_getl64, bfd_getl_signed_64, bfd_putl64,
816
  bfd_getl32, bfd_getl_signed_32, bfd_putl32,
817
  bfd_getl16, bfd_getl_signed_16, bfd_putl16,
818
819
  {
820
    _bfd_dummy_target,
821
    wasm_object_p,    /* bfd_check_format.  */
822
    _bfd_dummy_target,
823
    _bfd_dummy_target,
824
  },
825
  {
826
    _bfd_bool_bfd_false_error,
827
    wasm_mkobject,
828
    _bfd_bool_bfd_false_error,
829
    _bfd_bool_bfd_false_error,
830
  },
831
  {       /* bfd_write_contents.  */
832
    _bfd_bool_bfd_false_error,
833
    wasm_write_object_contents,
834
    _bfd_bool_bfd_false_error,
835
    _bfd_bool_bfd_false_error,
836
  },
837
838
  BFD_JUMP_TABLE_GENERIC (_bfd_generic),
839
  BFD_JUMP_TABLE_COPY (_bfd_generic),
840
  BFD_JUMP_TABLE_CORE (_bfd_nocore),
841
  BFD_JUMP_TABLE_ARCHIVE (_bfd_noarchive),
842
  BFD_JUMP_TABLE_SYMBOLS (wasm),
843
  BFD_JUMP_TABLE_RELOCS (_bfd_norelocs),
844
  BFD_JUMP_TABLE_WRITE (wasm),
845
  BFD_JUMP_TABLE_LINK (_bfd_nolink),
846
  BFD_JUMP_TABLE_DYNAMIC (_bfd_nodynamic),
847
848
  NULL,
849
850
  NULL,
851
};