Coverage Report

Created: 2026-07-12 09:22

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/binutils-gdb/bfd/tekhex.c
Line
Count
Source
1
/* BFD backend for Extended Tektronix Hex Format  objects.
2
   Copyright (C) 1992-2026 Free Software Foundation, Inc.
3
   Written by Steve Chamberlain of Cygnus Support <sac@cygnus.com>.
4
5
   This file is part of BFD, the Binary File Descriptor library.
6
7
   This program is free software; you can redistribute it and/or modify
8
   it under the terms of the GNU General Public License as published by
9
   the Free Software Foundation; either version 3 of the License, or
10
   (at your option) any later version.
11
12
   This program is distributed in the hope that it will be useful,
13
   but WITHOUT ANY WARRANTY; without even the implied warranty of
14
   MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
15
   GNU General Public License for more details.
16
17
   You should have received a copy of the GNU General Public License
18
   along with this program; if not, write to the Free Software
19
   Foundation, Inc., 51 Franklin Street - Fifth Floor, Boston,
20
   MA 02110-1301, USA.  */
21
22
23
/* SUBSECTION
24
  Tektronix Hex Format handling
25
26
   DESCRIPTION
27
28
  Tek Hex records can hold symbols and data, but not
29
  relocations. Their main application is communication with
30
  devices like PROM programmers and ICE equipment.
31
32
  It seems that the sections are described as being really big,
33
  the example I have says that the text section is 0..ffffffff.
34
  BFD would barf with this, many apps would try to alloc 4GB to
35
  read in the file.
36
37
  Tex Hex may contain many sections, but the data which comes in
38
  has no tag saying which section it belongs to, so we create
39
  one section for each block of data, called "blknnnn" which we
40
  stick all the data into.
41
42
  TekHex may come out of order and there is no header, so an
43
  initial scan is required  to discover the minimum and maximum
44
  addresses used to create the vma and size of the sections we
45
  create.
46
  We read in the data into pages of CHUNK_MASK+1 size and read
47
  them out from that whenever we need to.
48
49
  Any number of sections may be created for output, we save them
50
  up and output them when it's time to close the bfd.
51
52
  A TekHex record looks like:
53
  EXAMPLE
54
  %<block length><type><checksum><stuff><cr>
55
56
  DESCRIPTION
57
  Where
58
  o length
59
  is the number of bytes in the record not including the % sign.
60
  o type
61
  is one of:
62
  3) symbol record
63
  6) data record
64
  8) termination record
65
66
  The data can come out of order, and may be discontigous. This is a
67
  serial protocol, so big files are unlikely, so we keep a list of 8k chunks.  */
68
69
#include "sysdep.h"
70
#include "bfd.h"
71
#include "libbfd.h"
72
#include "libiberty.h"
73
74
typedef struct
75
{
76
  bfd_vma low;
77
  bfd_vma high;
78
} addr_range_type;
79
80
typedef struct tekhex_symbol_struct
81
{
82
  asymbol symbol;
83
  struct tekhex_symbol_struct *prev;
84
} tekhex_symbol_type;
85
86
static const char digs[] = "0123456789ABCDEF";
87
88
static char sum_block[256];
89
90
#define NOT_HEX      20
91
79.1k
#define NIBBLE(x)    hex_value(x)
92
39.5k
#define HEX(buffer) ((NIBBLE ((buffer)[0]) << 4) + NIBBLE ((buffer)[1]))
93
369k
#define ISHEX(x)    hex_p(x)
94
#define TOHEX(d, x) \
95
7.95k
  (d)[1] = digs[(x) & 0xf]; \
96
7.95k
  (d)[0] = digs[((x)>>4)&0xf];
97
98
/* Here's an example
99
   %3A6C6480004E56FFFC4E717063B0AEFFFC6D0652AEFFFC60F24E5E4E75
100
   %1B3709T_SEGMENT1108FFFFFFFF
101
   %2B3AB9T_SEGMENT7Dgcc_compiled$1087hello$c10
102
   %373829T_SEGMENT80int$t1$r1$$214741080char$t2$r2$0$12710
103
   %373769T_SEGMENT80long$int$t3$r1$$1080unsigned$int$t4$10
104
   %373CA9T_SEGMENT80long$unsigned$in1080short$int$t6$r1$10
105
   %373049T_SEGMENT80long$long$int$t71080short$unsigned$i10
106
   %373A29T_SEGMENT80long$long$unsign1080signed$char$t10$10
107
   %373D69T_SEGMENT80unsigned$char$t11080float$t12$r1$4$010
108
   %373D19T_SEGMENT80double$t13$r1$8$1080long$double$t14$10
109
   %2734D9T_SEGMENT8Bvoid$t15$151035_main10
110
   %2F3CA9T_SEGMENT81$1081$1681$1E81$21487main$F110
111
   %2832F9T_SEGMENT83i$18FFFFFFFC81$1481$214
112
   %07 8 10 10
113
114
   explanation:
115
   %3A6C6480004E56FFFC4E717063B0AEFFFC6D0652AEFFFC60F24E5E4E75
116
    ^ ^^ ^     ^-data
117
    | || +------ 4 char integer 0x8000
118
    | |+-------- checksum
119
    | +--------- type 6 (data record)
120
    +----------- length 3a chars
121
   <---------------------- 3a (58 chars) ------------------->
122
123
   %1B3709T_SEGMENT1108FFFFFFFF
124
   ^         ^^ ^- 8 character integer 0xffffffff
125
   |         |+-   1 character integer 0
126
   |         +--   type 1 symbol (section definition)
127
   +------------   9 char symbol T_SEGMENT
128
129
   %2B3AB9T_SEGMENT7Dgcc_compiled$1087hello$c10
130
   %373829T_SEGMENT80int$t1$r1$$214741080char$t2$r2$0$12710
131
   %373769T_SEGMENT80long$int$t3$r1$$1080unsigned$int$t4$10
132
   %373CA9T_SEGMENT80long$unsigned$in1080short$int$t6$r1$10
133
   %373049T_SEGMENT80long$long$int$t71080short$unsigned$i10
134
   %373A29T_SEGMENT80long$long$unsign1080signed$char$t10$10
135
   %373D69T_SEGMENT80unsigned$char$t11080float$t12$r1$4$010
136
   %373D19T_SEGMENT80double$t13$r1$8$1080long$double$t14$10
137
   %2734D9T_SEGMENT8Bvoid$t15$151035_main10
138
   %2F3CA9T_SEGMENT81$1081$1681$1E81$21487main$F110
139
   %2832F9T_SEGMENT83i$18FFFFFFFC81$1481$214
140
   %0781010
141
142
   Turns into
143
   sac@thepub$ ./objdump -dx -m m68k f
144
145
   f:     file format tekhex
146
   -----x--- 9/55728 -134219416 Sep 29 15:13 1995 f
147
   architecture: UNKNOWN!, flags 0x00000010:
148
   HAS_SYMS
149
   start address 0x00000000
150
   SECTION 0 [D00000000]  : size 00020000 vma 00000000 align 2**0
151
   ALLOC, LOAD
152
   SECTION 1 [D00008000]  : size 00002001 vma 00008000 align 2**0
153
154
   SECTION 2 [T_SEGMENT]  : size ffffffff vma 00000000 align 2**0
155
156
   SYMBOL TABLE:
157
   00000000  g       T_SEGMENT gcc_compiled$
158
   00000000  g       T_SEGMENT hello$c
159
   00000000  g       T_SEGMENT int$t1$r1$$21474
160
   00000000  g       T_SEGMENT char$t2$r2$0$127
161
   00000000  g       T_SEGMENT long$int$t3$r1$$
162
   00000000  g       T_SEGMENT unsigned$int$t4$
163
   00000000  g       T_SEGMENT long$unsigned$in
164
   00000000  g       T_SEGMENT short$int$t6$r1$
165
   00000000  g       T_SEGMENT long$long$int$t7
166
   00000000  g       T_SEGMENT short$unsigned$i
167
   00000000  g       T_SEGMENT long$long$unsign
168
   00000000  g       T_SEGMENT signed$char$t10$
169
   00000000  g       T_SEGMENT unsigned$char$t1
170
   00000000  g       T_SEGMENT float$t12$r1$4$0
171
   00000000  g       T_SEGMENT double$t13$r1$8$
172
   00000000  g       T_SEGMENT long$double$t14$
173
   00000000  g       T_SEGMENT void$t15$15
174
   00000000  g       T_SEGMENT _main
175
   00000000  g       T_SEGMENT $
176
   00000000  g       T_SEGMENT $
177
   00000000  g       T_SEGMENT $
178
   00000010  g       T_SEGMENT $
179
   00000000  g       T_SEGMENT main$F1
180
   fcffffff  g       T_SEGMENT i$1
181
   00000000  g       T_SEGMENT $
182
   00000010  g       T_SEGMENT $
183
184
   RELOCATION RECORDS FOR [D00000000]: (none)
185
186
   RELOCATION RECORDS FOR [D00008000]: (none)
187
188
   RELOCATION RECORDS FOR [T_SEGMENT]: (none)
189
190
   Disassembly of section D00000000:
191
   ...
192
   00008000 ($+)7ff0 linkw fp,#-4
193
   00008004 ($+)7ff4 nop
194
   00008006 ($+)7ff6 movel #99,d0
195
   00008008 ($+)7ff8 cmpl fp@(-4),d0
196
   0000800c ($+)7ffc blts 00008014 ($+)8004
197
   0000800e ($+)7ffe addql #1,fp@(-4)
198
   00008012 ($+)8002 bras 00008006 ($+)7ff6
199
   00008014 ($+)8004 unlk fp
200
   00008016 ($+)8006 rts
201
   ...  */
202
203
static void
204
tekhex_init (void)
205
132k
{
206
132k
  unsigned int i;
207
132k
  static bool inited = false;
208
132k
  int val;
209
210
132k
  if (! inited)
211
9
    {
212
9
      inited = true;
213
9
      hex_init ();
214
9
      val = 0;
215
99
      for (i = 0; i < 10; i++)
216
90
  sum_block[i + '0'] = val++;
217
218
243
      for (i = 'A'; i <= 'Z'; i++)
219
234
  sum_block[i] = val++;
220
221
9
      sum_block['$'] = val++;
222
9
      sum_block['%'] = val++;
223
9
      sum_block['.'] = val++;
224
9
      sum_block['_'] = val++;
225
243
      for (i = 'a'; i <= 'z'; i++)
226
234
  sum_block[i] = val++;
227
9
    }
228
132k
}
229
230
/* The maximum number of bytes on a line is FF.  */
231
27.3k
#define MAXCHUNK 0xff
232
/* The number of bytes we fit onto a line on output.  */
233
#define CHUNK 21
234
235
/* We cannot output our tekhexords as we see them, we have to glue them
236
   together, this is done in this structure : */
237
238
struct tekhex_data_list_struct
239
{
240
  unsigned char *data;
241
  bfd_vma where;
242
  bfd_size_type size;
243
  struct tekhex_data_list_struct *next;
244
245
};
246
typedef struct tekhex_data_list_struct tekhex_data_list_type;
247
248
40.9k
#define CHUNK_MASK 0x1fff
249
11.2k
#define CHUNK_SPAN 32
250
251
struct data_struct
252
{
253
  unsigned char chunk_data[CHUNK_MASK + 1];
254
  unsigned char chunk_init[(CHUNK_MASK + 1 + CHUNK_SPAN - 1) / CHUNK_SPAN];
255
  bfd_vma vma;
256
  struct data_struct *next;
257
};
258
259
typedef struct tekhex_data_struct
260
{
261
  tekhex_data_list_type *head;
262
  unsigned int type;
263
  struct tekhex_symbol_struct *symbols;
264
  struct data_struct *data;
265
} tdata_type;
266
267
#define enda(x) (x->vma + x->size)
268
269
static bool
270
getvalue (char **srcp, bfd_vma *valuep, char * endp)
271
62.7k
{
272
62.7k
  char *src = *srcp;
273
62.7k
  bfd_vma value = 0;
274
62.7k
  unsigned int len;
275
276
62.7k
  if (src >= endp)
277
42
    return false;
278
279
62.7k
  if (!ISHEX (*src))
280
96
    return false;
281
282
62.6k
  len = hex_value (*src++);
283
62.6k
  if (len == 0)
284
3.32k
    len = 16;
285
255k
  while (len-- && src < endp)
286
192k
    {
287
192k
      if (!ISHEX (*src))
288
153
  return false;
289
192k
      value = value << 4 | hex_value (*src++);
290
192k
    }
291
292
62.4k
  *srcp = src;
293
62.4k
  *valuep = value;
294
62.4k
  return len == -1U;
295
62.6k
}
296
297
static bool
298
getsym (char *dstp, char **srcp, unsigned int *lenp, char * endp)
299
55.0k
{
300
55.0k
  char *src = *srcp;
301
55.0k
  unsigned int i;
302
55.0k
  unsigned int len;
303
304
55.0k
  if (!ISHEX (*src))
305
58
    return false;
306
307
54.9k
  len = hex_value (*src++);
308
54.9k
  if (len == 0)
309
3.06k
    len = 16;
310
305k
  for (i = 0; i < len && (src + i) < endp; i++)
311
250k
    dstp[i] = src[i];
312
54.9k
  dstp[i] = 0;
313
54.9k
  *srcp = src + i;
314
54.9k
  *lenp = len;
315
54.9k
  return i == len;
316
55.0k
}
317
318
static struct data_struct *
319
find_chunk (bfd *abfd, bfd_vma vma, bool create)
320
10.7k
{
321
10.7k
  struct data_struct *d = abfd->tdata.tekhex_data->data;
322
323
10.7k
  vma &= ~CHUNK_MASK;
324
25.8k
  while (d && (d->vma) != vma)
325
15.0k
    d = d->next;
326
327
10.7k
  if (!d && create)
328
676
    {
329
      /* No chunk for this address, so make one up.  */
330
676
      d = bfd_zalloc (abfd, sizeof (struct data_struct));
331
676
      if (!d)
332
0
  return NULL;
333
334
676
      d->next = abfd->tdata.tekhex_data->data;
335
676
      d->vma = vma;
336
676
      abfd->tdata.tekhex_data->data = d;
337
676
    }
338
10.7k
  return d;
339
10.7k
}
340
341
static bool
342
insert_byte (bfd *abfd, int value, bfd_vma addr)
343
12.2k
{
344
12.2k
  if (value != 0)
345
10.6k
    {
346
      /* Find the chunk that this byte needs and put it in.  */
347
10.6k
      struct data_struct *d = find_chunk (abfd, addr, true);
348
10.6k
      if (!d)
349
0
  return false;
350
351
10.6k
      d->chunk_data[addr & CHUNK_MASK] = value;
352
10.6k
      d->chunk_init[(addr & CHUNK_MASK) / CHUNK_SPAN] = 1;
353
10.6k
    }
354
12.2k
  return true;
355
12.2k
}
356
357
/* The first pass is to find the names of all the sections, and see
358
  how big the data is.  */
359
360
static bool
361
first_phase (bfd *abfd, int type, char *src, char * src_end)
362
27.1k
{
363
27.1k
  asection *section, *alt_section;
364
27.1k
  unsigned int len;
365
27.1k
  bfd_vma addr;
366
27.1k
  bfd_vma val;
367
27.1k
  char sym[17];     /* A symbol can only be 16chars long.  */
368
369
27.1k
  switch (type)
370
27.1k
    {
371
3.60k
    case '6':
372
      /* Data record - read it and store it.  */
373
3.60k
      if (!getvalue (&src, &addr, src_end))
374
52
  return false;
375
376
15.8k
      while (*src && src < src_end - 1)
377
12.2k
  {
378
12.2k
    if (!insert_byte (abfd, HEX (src), addr))
379
0
      return false;
380
12.2k
    src += 2;
381
12.2k
    addr++;
382
12.2k
  }
383
3.55k
      return true;
384
385
21.0k
    case '3':
386
      /* Symbol record, read the segment.  */
387
21.0k
      if (!getsym (sym, &src, &len, src_end))
388
25
  return false;
389
21.0k
      section = bfd_get_section_by_name (abfd, sym);
390
21.0k
      if (section == NULL)
391
8.63k
  {
392
8.63k
    char *n = (char *) bfd_alloc (abfd, (bfd_size_type) len + 1);
393
394
8.63k
    if (!n)
395
0
      return false;
396
8.63k
    memcpy (n, sym, len + 1);
397
8.63k
    section = bfd_make_section_old_way (abfd, n);
398
8.63k
    if (section == NULL)
399
0
      return false;
400
8.63k
  }
401
21.0k
      alt_section = NULL;
402
67.2k
      while (src < src_end && *src)
403
46.7k
  {
404
46.7k
    switch (*src)
405
46.7k
      {
406
12.6k
      case '1':   /* Section range.  */
407
12.6k
        src++;
408
12.6k
        if (!getvalue (&src, &addr, src_end))
409
79
    return false;
410
12.6k
        if (!getvalue (&src, &val, src_end))
411
47
    return false;
412
12.5k
        if (bfd_is_const_section (section))
413
6.51k
    break;
414
6.04k
        section->vma = addr;
415
6.04k
        if (val < addr)
416
1.97k
    val = addr;
417
6.04k
        section->size = val - addr;
418
        /* PR 17512: file: objdump-s-endless-loop.tekhex.
419
     Check for overlarge section sizes.  */
420
6.04k
        if (section->size & 0x80000000)
421
9
    return false;
422
6.03k
        section->flags = SEC_HAS_CONTENTS | SEC_LOAD | SEC_ALLOC;
423
6.03k
        break;
424
3.71k
      case '0':
425
6.10k
      case '2':
426
15.5k
      case '3':
427
19.9k
      case '4':
428
22.3k
      case '6':
429
27.0k
      case '7':
430
33.9k
      case '8':
431
        /* Symbols, add to section.  */
432
33.9k
        {
433
33.9k
    size_t amt = sizeof (tekhex_symbol_type);
434
33.9k
    tekhex_symbol_type *new_symbol = (tekhex_symbol_type *)
435
33.9k
        bfd_alloc (abfd, amt);
436
33.9k
    char stype = (*src);
437
438
33.9k
    if (!new_symbol)
439
0
      return false;
440
33.9k
    new_symbol->symbol.the_bfd = abfd;
441
33.9k
    src++;
442
33.9k
    abfd->symcount++;
443
33.9k
    abfd->flags |= HAS_SYMS;
444
33.9k
    new_symbol->prev = abfd->tdata.tekhex_data->symbols;
445
33.9k
    abfd->tdata.tekhex_data->symbols = new_symbol;
446
33.9k
    if (!getsym (sym, &src, &len, src_end))
447
104
      return false;
448
33.8k
    new_symbol->symbol.name = (const char *)
449
33.8k
        bfd_alloc (abfd, (bfd_size_type) len + 1);
450
33.8k
    if (!new_symbol->symbol.name)
451
0
      return false;
452
33.8k
    memcpy ((char *) (new_symbol->symbol.name), sym, len + 1);
453
33.8k
    new_symbol->symbol.section = section;
454
33.8k
    if (stype <= '4')
455
19.9k
      new_symbol->symbol.flags = (BSF_GLOBAL | BSF_EXPORT);
456
13.9k
    else
457
13.9k
      new_symbol->symbol.flags = BSF_LOCAL;
458
33.8k
    if (stype == '2' || stype == '6')
459
4.77k
      new_symbol->symbol.section = bfd_abs_section_ptr;
460
29.0k
    else if (bfd_is_const_section (section))
461
3.65k
      ;
462
25.4k
    else if (stype == '3' || stype == '7')
463
13.2k
      {
464
13.2k
        if ((section->flags & SEC_DATA) == 0)
465
6.38k
          section->flags |= SEC_CODE;
466
6.82k
        else
467
6.82k
          {
468
6.82k
      if (alt_section == NULL)
469
3.62k
        alt_section
470
3.62k
          = bfd_get_next_section_by_name (NULL, section);
471
6.82k
      if (alt_section == NULL)
472
326
        alt_section = bfd_make_section_anyway_with_flags
473
326
          (abfd, section->name,
474
326
           (section->flags & ~SEC_DATA) | SEC_CODE);
475
6.82k
      if (alt_section == NULL)
476
0
        return false;
477
6.82k
      new_symbol->symbol.section = alt_section;
478
6.82k
          }
479
13.2k
      }
480
12.2k
    else if (stype == '4' || stype == '8')
481
10.4k
      {
482
10.4k
        if ((section->flags & SEC_CODE) == 0)
483
4.54k
          section->flags |= SEC_DATA;
484
5.92k
        else
485
5.92k
          {
486
5.92k
      if (alt_section == NULL)
487
2.59k
        alt_section
488
2.59k
          = bfd_get_next_section_by_name (NULL, section);
489
5.92k
      if (alt_section == NULL)
490
361
        alt_section = bfd_make_section_anyway_with_flags
491
361
          (abfd, section->name,
492
361
           (section->flags & ~SEC_CODE) | SEC_DATA);
493
5.92k
      if (alt_section == NULL)
494
0
        return false;
495
5.92k
      new_symbol->symbol.section = alt_section;
496
5.92k
          }
497
10.4k
      }
498
33.8k
    if (!getvalue (&src, &val, src_end))
499
208
      return false;
500
33.6k
    new_symbol->symbol.value = val - section->vma;
501
33.6k
    break;
502
33.8k
        }
503
79
      default:
504
79
        return false;
505
46.7k
      }
506
46.7k
  }
507
27.1k
    }
508
509
23.0k
  return true;
510
27.1k
}
511
512
/* Pass over a tekhex, calling one of the above functions on each
513
   record.  */
514
515
static bool
516
pass_over (bfd *abfd, bool (*func) (bfd *, int, char *, char *))
517
1.60k
{
518
1.60k
  unsigned int chars_on_line;
519
1.60k
  bool is_eof = false;
520
521
  /* To the front of the file.  */
522
1.60k
  if (bfd_seek (abfd, 0, SEEK_SET) != 0)
523
0
    return false;
524
525
28.1k
  while (! is_eof)
526
28.1k
    {
527
28.1k
      char src[MAXCHUNK];
528
28.1k
      char type;
529
530
      /* Find first '%'.  */
531
28.1k
      is_eof = bfd_read (src, 1, abfd) != 1;
532
778k
      while (!is_eof && *src != '%')
533
750k
  is_eof = bfd_read (src, 1, abfd) != 1;
534
535
28.1k
      if (is_eof)
536
728
  break;
537
538
      /* Fetch the type and the length and the checksum.  */
539
27.4k
      if (bfd_read (src, 5, abfd) != 5)
540
43
  return false;
541
542
27.3k
      type = src[2];
543
544
27.3k
      if (!ISHEX (src[0]) || !ISHEX (src[1]))
545
91
  break;
546
547
      /* Already read five chars.  */
548
27.3k
      chars_on_line = HEX (src) - 5;
549
550
27.3k
      if (chars_on_line >= MAXCHUNK)
551
11
  return false;
552
553
27.2k
      if (bfd_read (src, chars_on_line, abfd) != chars_on_line)
554
133
  return false;
555
556
      /* Put a null at the end.  */
557
27.1k
      src[chars_on_line] = 0;
558
27.1k
      if (!func (abfd, type, src, src + chars_on_line))
559
603
  return false;
560
27.1k
    }
561
562
819
  return true;
563
1.60k
}
564
565
static long
566
tekhex_canonicalize_symtab (bfd *abfd, asymbol **table)
567
456
{
568
456
  tekhex_symbol_type *p = abfd->tdata.tekhex_data->symbols;
569
456
  unsigned int c = bfd_get_symcount (abfd);
570
571
456
  table[c] = 0;
572
17.0k
  while (p)
573
16.5k
    {
574
16.5k
      table[--c] = &(p->symbol);
575
16.5k
      p = p->prev;
576
16.5k
    }
577
578
456
  return bfd_get_symcount (abfd);
579
456
}
580
581
static long
582
tekhex_get_symtab_upper_bound (bfd *abfd)
583
456
{
584
456
  return (abfd->symcount + 1) * (sizeof (struct tekhex_asymbol_struct *));
585
586
456
}
587
588
static bool
589
tekhex_mkobject (bfd *abfd)
590
1.86k
{
591
1.86k
  tdata_type *tdata;
592
593
1.86k
  tdata = (tdata_type *) bfd_alloc (abfd, (bfd_size_type) sizeof (tdata_type));
594
1.86k
  if (!tdata)
595
0
    return false;
596
1.86k
  abfd->tdata.tekhex_data = tdata;
597
1.86k
  tdata->type = 1;
598
1.86k
  tdata->head =  NULL;
599
1.86k
  tdata->symbols = NULL;
600
1.86k
  tdata->data = NULL;
601
1.86k
  return true;
602
1.86k
}
603
604
/* Return TRUE if the file looks like it's in TekHex format. Just look
605
   for a percent sign and some hex digits.  */
606
607
static bfd_cleanup
608
tekhex_object_p (bfd *abfd)
609
131k
{
610
131k
  char b[4];
611
612
131k
  tekhex_init ();
613
614
131k
  if (bfd_seek (abfd, 0, SEEK_SET) != 0
615
131k
      || bfd_read (b, 4, abfd) != 4)
616
530
    return NULL;
617
618
131k
  if (b[0] != '%' || !ISHEX (b[1]) || !ISHEX (b[2]) || !ISHEX (b[3]))
619
129k
    return NULL;
620
621
1.60k
  if (!tekhex_mkobject (abfd))
622
0
    return NULL;
623
624
1.60k
  if (!pass_over (abfd, first_phase))
625
790
    {
626
790
      bfd_release (abfd, abfd->tdata.tekhex_data);
627
790
      return NULL;
628
790
    }
629
630
819
  return _bfd_no_cleanup;
631
1.60k
}
632
633
static bool
634
move_section_contents (bfd *abfd,
635
           asection *section,
636
           const void * locationp,
637
           file_ptr offset,
638
           bfd_size_type count,
639
           bool get)
640
115
{
641
115
  bfd_vma addr;
642
115
  char *location = (char *) locationp;
643
115
  bfd_vma prev_number = 1;  /* Nothing can have this as a high bit.  */
644
115
  struct data_struct *d = NULL;
645
646
115
  BFD_ASSERT (offset == 0);
647
4.39k
  for (addr = section->vma; count != 0; count--, addr++)
648
4.28k
    {
649
      /* Get high bits of address.  */
650
4.28k
      bfd_vma chunk_number = addr & ~(bfd_vma) CHUNK_MASK;
651
4.28k
      bfd_vma low_bits = addr & CHUNK_MASK;
652
4.28k
      bool must_write = !get && *location != 0;
653
654
4.28k
      if (chunk_number != prev_number || (!d && must_write))
655
116
  {
656
    /* Different chunk, so move pointer. */
657
116
    d = find_chunk (abfd, chunk_number, must_write);
658
116
    if (!d && must_write)
659
0
      return false;
660
116
    prev_number = chunk_number;
661
116
  }
662
663
4.28k
      if (get)
664
4.20k
  {
665
4.20k
    if (d)
666
2.42k
      *location = d->chunk_data[low_bits];
667
1.78k
    else
668
1.78k
      *location = 0;
669
4.20k
  }
670
80
      else if (must_write)
671
3
  {
672
3
    d->chunk_data[low_bits] = *location;
673
3
    d->chunk_init[low_bits / CHUNK_SPAN] = 1;
674
3
  }
675
676
4.28k
      location++;
677
4.28k
    }
678
115
  return true;
679
115
}
680
681
static bool
682
tekhex_get_section_contents (bfd *abfd,
683
           asection *section,
684
           void *location,
685
           file_ptr offset,
686
           bfd_size_type count)
687
104
{
688
104
  if ((section->flags & (SEC_LOAD | SEC_ALLOC)) == 0)
689
0
    return false;
690
104
  return move_section_contents (abfd, section, location, offset, count, true);
691
104
}
692
693
static bool
694
tekhex_set_arch_mach (bfd *abfd,
695
          enum bfd_architecture arch,
696
          unsigned long machine)
697
200
{
698
  /* Ignore errors about unknown architecture.  */
699
200
  return (bfd_default_set_arch_mach (abfd, arch, machine)
700
200
    || arch == bfd_arch_unknown);
701
200
}
702
703
/* We have to save up all the Tekhexords for a splurge before output.  */
704
705
static bool
706
tekhex_set_section_contents (bfd *abfd,
707
           sec_ptr section,
708
           const void *location,
709
           file_ptr offset,
710
           bfd_size_type count)
711
11
{
712
11
  if ((section->flags & (SEC_LOAD | SEC_ALLOC)) == 0)
713
0
    return false;
714
11
  return move_section_contents (abfd, section, location, offset, count, false);
715
11
}
716
717
static void
718
writevalue (char **dst, bfd_vma value)
719
4.34k
{
720
4.34k
  char *p = *dst;
721
4.34k
  int len;
722
4.34k
  int shift;
723
724
62.4k
  for (len = BFD_ARCH_SIZE / 4, shift = len * 4 - 4; len > 1; shift -= 4, len--)
725
61.1k
    if ((value >> shift) & 0xf)
726
3.03k
      break;
727
728
4.34k
  *p++ = digs[len & 0xf];
729
15.7k
  for (; len; shift -= 4, len--)
730
11.3k
    *p++ = digs[(value >> shift) & 0xf];
731
4.34k
  *dst = p;
732
4.34k
}
733
734
static void
735
writesym (char **dst, const char *sym)
736
7.54k
{
737
7.54k
  char *p = *dst;
738
7.54k
  int len = (sym ? strlen (sym) : 0);
739
740
7.54k
  if (len >= 16)
741
430
    len = 16;
742
7.11k
  else if (len == 0)
743
245
    {
744
245
      len = 1;
745
245
      sym = "$";
746
245
    }
747
748
7.54k
  *p++ = digs[len & 0xf];
749
49.6k
  while (len--)
750
42.0k
    *p++ = *sym++;
751
752
7.54k
  *dst = p;
753
7.54k
}
754
755
static void
756
out (bfd *abfd, int type, char *start, char *end)
757
3.96k
{
758
3.96k
  int sum = 0;
759
3.96k
  char *s;
760
3.96k
  char front[6];
761
3.96k
  bfd_size_type wrlen;
762
763
3.96k
  front[0] = '%';
764
3.96k
  TOHEX (front + 1, end - start + 5);
765
3.96k
  front[3] = type;
766
767
72.9k
  for (s = start; s < end; s++)
768
68.9k
    sum += sum_block[(unsigned char) *s];
769
770
3.96k
  sum += sum_block[(unsigned char) front[1]]; /* Length.  */
771
3.96k
  sum += sum_block[(unsigned char) front[2]];
772
3.96k
  sum += sum_block[(unsigned char) front[3]]; /* Type.  */
773
3.96k
  TOHEX (front + 4, sum);
774
3.96k
  if (bfd_write (front, 6, abfd) != 6)
775
0
    abort ();
776
3.96k
  end[0] = '\n';
777
3.96k
  wrlen = end - start + 1;
778
3.96k
  if (bfd_write (start, wrlen, abfd) != wrlen)
779
0
    abort ();
780
3.96k
}
781
782
static bool
783
tekhex_write_object_contents (bfd *abfd)
784
200
{
785
200
  char buffer[100];
786
200
  asymbol **p;
787
200
  asection *s;
788
200
  struct data_struct *d;
789
790
200
  tekhex_init ();
791
792
  /* And the raw data.  */
793
200
  for (d = abfd->tdata.tekhex_data->data;
794
201
       d != NULL;
795
200
       d = d->next)
796
1
    {
797
1
      int low;
798
1
      int addr;
799
800
      /* Write it in blocks of 32 bytes.  */
801
257
      for (addr = 0; addr < CHUNK_MASK + 1; addr += CHUNK_SPAN)
802
256
  {
803
256
    if (d->chunk_init[addr / CHUNK_SPAN])
804
1
      {
805
1
        char *dst = buffer;
806
807
1
        writevalue (&dst, addr + d->vma);
808
33
        for (low = 0; low < CHUNK_SPAN; low++)
809
32
    {
810
32
      TOHEX (dst, d->chunk_data[addr + low]);
811
32
      dst += 2;
812
32
    }
813
1
        out (abfd, '6', buffer, dst);
814
1
      }
815
256
  }
816
1
    }
817
818
  /* Write all the section headers for the sections.  */
819
581
  for (s = abfd->sections; s != NULL; s = s->next)
820
381
    {
821
381
      char *dst = buffer;
822
823
381
      writesym (&dst, s->name);
824
381
      *dst++ = '1';
825
381
      writevalue (&dst, s->vma);
826
381
      writevalue (&dst, s->vma + s->size);
827
381
      out (abfd, '3', buffer, dst);
828
381
    }
829
830
  /* And the symbols.  */
831
200
  if (abfd->outsymbols)
832
178
    {
833
3.77k
      for (p = abfd->outsymbols; *p; p++)
834
3.60k
  {
835
3.60k
    int section_code = bfd_decode_symclass (*p);
836
837
3.60k
    if (section_code != '?')
838
3.58k
      {
839
        /* Do not include debug symbols.  */
840
3.58k
        asymbol *sym = *p;
841
3.58k
        char *dst = buffer;
842
843
3.58k
        writesym (&dst, sym->section->name);
844
845
3.58k
        switch (section_code)
846
3.58k
    {
847
198
    case 'A':
848
198
      *dst++ = '2';
849
198
      break;
850
198
    case 'a':
851
198
      *dst++ = '6';
852
198
      break;
853
516
    case 'D':
854
758
    case 'B':
855
758
    case 'O':
856
758
      *dst++ = '4';
857
758
      break;
858
577
    case 'd':
859
577
    case 'b':
860
577
    case 'o':
861
577
      *dst++ = '8';
862
577
      break;
863
1.26k
    case 'T':
864
1.26k
      *dst++ = '3';
865
1.26k
      break;
866
262
    case 't':
867
262
      *dst++ = '7';
868
262
      break;
869
5
    case 'C':
870
5
    case 'U':
871
5
      bfd_set_error (bfd_error_wrong_format);
872
5
      goto fail;
873
3.58k
    }
874
875
3.58k
        writesym (&dst, sym->name);
876
3.58k
        writevalue (&dst, sym->value + sym->section->vma);
877
3.58k
        out (abfd, '3', buffer, dst);
878
3.58k
      }
879
3.60k
  }
880
178
    }
881
882
  /* And the terminator.  */
883
195
  if (bfd_write ("%0781010\n", 9, abfd) != 9)
884
0
    goto fail;
885
195
  return true;
886
887
5
 fail:
888
5
  return false;
889
195
}
890
891
static int
892
tekhex_sizeof_headers (bfd *abfd ATTRIBUTE_UNUSED,
893
           struct bfd_link_info *info ATTRIBUTE_UNUSED)
894
0
{
895
0
  return 0;
896
0
}
897
898
static asymbol *
899
tekhex_make_empty_symbol (bfd *abfd)
900
3.62k
{
901
3.62k
  size_t amt = sizeof (struct tekhex_symbol_struct);
902
3.62k
  tekhex_symbol_type *new_symbol = (tekhex_symbol_type *) bfd_zalloc (abfd,
903
3.62k
                      amt);
904
905
3.62k
  if (!new_symbol)
906
0
    return NULL;
907
3.62k
  new_symbol->symbol.the_bfd = abfd;
908
3.62k
  new_symbol->prev =  NULL;
909
3.62k
  return &(new_symbol->symbol);
910
3.62k
}
911
912
static void
913
tekhex_get_symbol_info (bfd *abfd ATTRIBUTE_UNUSED,
914
      asymbol *symbol,
915
      symbol_info *ret)
916
2.92k
{
917
2.92k
  bfd_symbol_info (symbol, ret);
918
2.92k
}
919
920
static void
921
tekhex_print_symbol (bfd *abfd,
922
         void * filep,
923
         asymbol *symbol,
924
         bfd_print_symbol_type how)
925
0
{
926
0
  FILE *file = (FILE *) filep;
927
928
0
  switch (how)
929
0
    {
930
0
    case bfd_print_symbol_name:
931
0
      fprintf (file, "%s", symbol->name);
932
0
      break;
933
0
    case bfd_print_symbol_more:
934
0
      break;
935
936
0
    case bfd_print_symbol_all:
937
0
      {
938
0
  const char *section_name = symbol->section->name;
939
940
0
  bfd_print_symbol_vandf (abfd, (void *) file, symbol);
941
942
0
  fprintf (file, " %-5s %s",
943
0
     section_name, symbol->name);
944
0
      }
945
0
    }
946
0
}
947
948
#define tekhex_close_and_cleanup        _bfd_generic_close_and_cleanup
949
#define tekhex_bfd_free_cached_info       _bfd_generic_bfd_free_cached_info
950
#define tekhex_new_section_hook         _bfd_generic_new_section_hook
951
#define tekhex_bfd_is_target_special_symbol     _bfd_bool_bfd_asymbol_false
952
#define tekhex_bfd_is_local_label_name         bfd_generic_is_local_label_name
953
#define tekhex_get_lineno         _bfd_nosymbols_get_lineno
954
#define tekhex_find_nearest_line        _bfd_nosymbols_find_nearest_line
955
#define tekhex_find_nearest_line_with_alt     _bfd_nosymbols_find_nearest_line_with_alt
956
#define tekhex_find_line          _bfd_nosymbols_find_line
957
#define tekhex_find_inliner_info        _bfd_nosymbols_find_inliner_info
958
#define tekhex_get_symbol_version_string      _bfd_nosymbols_get_symbol_version_string
959
#define tekhex_bfd_make_debug_symbol        _bfd_nosymbols_bfd_make_debug_symbol
960
#define tekhex_read_minisymbols         _bfd_generic_read_minisymbols
961
#define tekhex_minisymbol_to_symbol       _bfd_generic_minisymbol_to_symbol
962
#define tekhex_bfd_get_relocated_section_contents   bfd_generic_get_relocated_section_contents
963
#define tekhex_bfd_relax_section        bfd_generic_relax_section
964
#define tekhex_bfd_gc_sections          bfd_generic_gc_sections
965
#define tekhex_bfd_lookup_section_flags       bfd_generic_lookup_section_flags
966
#define tekhex_bfd_is_group_section       bfd_generic_is_group_section
967
#define tekhex_bfd_group_name         bfd_generic_group_name
968
#define tekhex_bfd_discard_group        bfd_generic_discard_group
969
#define tekhex_section_already_linked       _bfd_generic_section_already_linked
970
#define tekhex_bfd_define_common_symbol       bfd_generic_define_common_symbol
971
#define tekhex_bfd_link_hide_symbol       _bfd_generic_link_hide_symbol
972
#define tekhex_bfd_define_start_stop        bfd_generic_define_start_stop
973
#define tekhex_bfd_link_hash_table_create     _bfd_generic_link_hash_table_create
974
#define tekhex_bfd_link_add_symbols       _bfd_generic_link_add_symbols
975
#define tekhex_bfd_link_just_syms       _bfd_generic_link_just_syms
976
#define tekhex_bfd_copy_link_hash_symbol_type     _bfd_generic_copy_link_hash_symbol_type
977
#define tekhex_bfd_final_link         _bfd_generic_final_link
978
#define tekhex_bfd_link_split_section       _bfd_generic_link_split_section
979
#define tekhex_bfd_link_check_relocs        _bfd_generic_link_check_relocs
980
981
const bfd_target tekhex_vec =
982
{
983
  "tekhex",     /* Name.  */
984
  bfd_target_tekhex_flavour,
985
  BFD_ENDIAN_UNKNOWN,   /* Target byte order.  */
986
  BFD_ENDIAN_UNKNOWN,   /* Target headers byte order.  */
987
  EXEC_P | HAS_SYMS,    /* Object flags.  */
988
  (SEC_CODE | SEC_DATA | SEC_ROM | SEC_HAS_CONTENTS
989
   | SEC_ALLOC | SEC_LOAD), /* Section flags.  */
990
  0,        /* Leading underscore.  */
991
  ' ',        /* AR_pad_char.  */
992
  16,       /* AR_max_namelen.  */
993
  0,        /* match priority.  */
994
  TARGET_KEEP_UNUSED_SECTION_SYMBOLS, /* keep unused section symbols.  */
995
  TARGET_MERGE_SECTIONS,
996
  bfd_getb64, bfd_getb_signed_64, bfd_putb64,
997
  bfd_getb32, bfd_getb_signed_32, bfd_putb32,
998
  bfd_getb16, bfd_getb_signed_16, bfd_putb16, /* Data.  */
999
  bfd_getb64, bfd_getb_signed_64, bfd_putb64,
1000
  bfd_getb32, bfd_getb_signed_32, bfd_putb32,
1001
  bfd_getb16, bfd_getb_signed_16, bfd_putb16, /* Headers.  */
1002
1003
  {
1004
    _bfd_dummy_target,
1005
    tekhex_object_p,    /* bfd_check_format.  */
1006
    _bfd_dummy_target,
1007
    _bfd_dummy_target,
1008
  },
1009
  {
1010
    _bfd_bool_bfd_false_error,
1011
    tekhex_mkobject,
1012
    _bfd_bool_bfd_false_error,
1013
    _bfd_bool_bfd_false_error,
1014
  },
1015
  {       /* bfd_write_contents.  */
1016
    _bfd_bool_bfd_false_error,
1017
    tekhex_write_object_contents,
1018
    _bfd_bool_bfd_false_error,
1019
    _bfd_bool_bfd_false_error,
1020
  },
1021
1022
  BFD_JUMP_TABLE_GENERIC (tekhex),
1023
  BFD_JUMP_TABLE_COPY (_bfd_generic),
1024
  BFD_JUMP_TABLE_CORE (_bfd_nocore),
1025
  BFD_JUMP_TABLE_ARCHIVE (_bfd_noarchive),
1026
  BFD_JUMP_TABLE_SYMBOLS (tekhex),
1027
  BFD_JUMP_TABLE_RELOCS (_bfd_norelocs),
1028
  BFD_JUMP_TABLE_WRITE (tekhex),
1029
  BFD_JUMP_TABLE_LINK (tekhex),
1030
  BFD_JUMP_TABLE_DYNAMIC (_bfd_nodynamic),
1031
1032
  NULL,
1033
1034
  NULL
1035
};