Coverage Report

Created: 2026-04-04 08:16

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/binutils-gdb/opcodes/xtensa-dis.c
Line
Count
Source
1
/* xtensa-dis.c.  Disassembly functions for Xtensa.
2
   Copyright (C) 2003-2026 Free Software Foundation, Inc.
3
   Contributed by Bob Wilson at Tensilica, Inc. (bwilson@tensilica.com)
4
5
   This file is part of the GNU opcodes library.
6
7
   This library 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, or (at your option)
10
   any later version.
11
12
   It is distributed in the hope that it will be useful, but WITHOUT
13
   ANY WARRANTY; without even the implied warranty of MERCHANTABILITY
14
   or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public
15
   License for more details.
16
17
   You should have received a copy of the GNU General Public License
18
   along with this file; see the file COPYING.  If not, write to the
19
   Free Software Foundation, 51 Franklin Street - Fifth Floor, Boston,
20
   MA 02110-1301, USA.  */
21
22
#include "sysdep.h"
23
#include <stdlib.h>
24
#include <stdio.h>
25
#include <sys/types.h>
26
#include <string.h>
27
#include "xtensa-isa.h"
28
#include "ansidecl.h"
29
#include "libiberty.h"
30
#include "bfd.h"
31
#include "elf/xtensa.h"
32
#include "disassemble.h"
33
34
#include <setjmp.h>
35
36
extern xtensa_isa xtensa_default_isa;
37
38
#ifndef MAX
39
8.27M
#define MAX(a,b) (a > b ? a : b)
40
#endif
41
42
int show_raw_fields;
43
44
struct dis_private
45
{
46
  bfd_byte *byte_buf;
47
  OPCODES_SIGJMP_BUF bailout;
48
  /* Persistent fields, valid for last_section only.  */
49
  asection *last_section;
50
  property_table_entry *insn_table_entries;
51
  int insn_table_entry_count;
52
  /* Cached property table search position.  */
53
  bfd_vma insn_table_cur_addr;
54
  int insn_table_cur_idx;
55
};
56
57
static void
58
xtensa_coalesce_insn_tables (struct dis_private *priv)
59
2.91k
{
60
2.91k
  const int mask = ~(XTENSA_PROP_DATA | XTENSA_PROP_NO_TRANSFORM);
61
2.91k
  int count = priv->insn_table_entry_count;
62
2.91k
  int i, j;
63
64
  /* Loop over all entries, combining adjacent ones that differ only in
65
     the flag bits XTENSA_PROP_DATA and XTENSA_PROP_NO_TRANSFORM.  */
66
67
2.91k
  for (i = j = 0; j < count; ++i)
68
0
    {
69
0
      property_table_entry *entry = priv->insn_table_entries + i;
70
71
0
      *entry = priv->insn_table_entries[j];
72
73
0
      for (++j; j < count; ++j)
74
0
  {
75
0
    property_table_entry *next = priv->insn_table_entries + j;
76
0
    int fill = xtensa_compute_fill_extra_space (entry);
77
0
    int size = entry->size + fill;
78
79
0
    if (entry->address + size == next->address)
80
0
      {
81
0
        int entry_flags = entry->flags & mask;
82
0
        int next_flags = next->flags & mask;
83
84
0
        if (next_flags == entry_flags)
85
0
    entry->size = next->address - entry->address + next->size;
86
0
        else
87
0
    break;
88
0
      }
89
0
    else
90
0
      {
91
0
        break;
92
0
      }
93
0
  }
94
0
    }
95
2.91k
  priv->insn_table_entry_count = i;
96
2.91k
}
97
98
static property_table_entry *
99
xtensa_find_table_entry (bfd_vma memaddr, struct disassemble_info *info)
100
4.13M
{
101
4.13M
  struct dis_private *priv = (struct dis_private *) info->private_data;
102
4.13M
  int i;
103
104
4.13M
  if (priv->insn_table_entries == NULL
105
0
      || priv->insn_table_entry_count < 0)
106
4.13M
    return NULL;
107
108
0
  if (memaddr < priv->insn_table_cur_addr)
109
0
    priv->insn_table_cur_idx = 0;
110
111
0
  for (i = priv->insn_table_cur_idx; i < priv->insn_table_entry_count; ++i)
112
0
    {
113
0
      property_table_entry *block = priv->insn_table_entries + i;
114
115
0
      if (block->size != 0)
116
0
  {
117
0
    if ((memaddr >= block->address
118
0
         && memaddr < block->address + block->size)
119
0
        || memaddr < block->address)
120
0
      {
121
0
        priv->insn_table_cur_addr = memaddr;
122
0
        priv->insn_table_cur_idx = i;
123
0
        return block;
124
0
      }
125
0
  }
126
0
    }
127
0
  return NULL;
128
0
}
129
130
/* Check whether an instruction crosses an instruction block boundary
131
   (according to property tables).
132
   If it does, return 0 (doesn't fit), else return 1.  */
133
134
static int
135
xtensa_instruction_fits (bfd_vma memaddr, int size,
136
       property_table_entry *insn_block)
137
3.73M
{
138
3.73M
  unsigned max_size;
139
140
  /* If no property table info, assume it fits.  */
141
3.73M
  if (insn_block == NULL || size <= 0)
142
3.73M
    return 1;
143
144
  /* If too high, limit nextstop by the next insn address.  */
145
0
  if (insn_block->address > memaddr)
146
0
    {
147
      /* memaddr is not in an instruction block, but is followed by one.  */
148
0
      max_size = insn_block->address - memaddr;
149
0
    }
150
0
  else
151
0
    {
152
      /* memaddr is in an instruction block, go no further than the end.  */
153
0
      max_size = insn_block->address + insn_block->size - memaddr;
154
0
    }
155
156
  /* Crossing a boundary, doesn't "fit".  */
157
0
  if ((unsigned)size > max_size)
158
0
    return 0;
159
0
  return 1;
160
0
}
161
162
static int
163
fetch_data (struct disassemble_info *info, bfd_vma memaddr)
164
4.13M
{
165
4.13M
  int length, status = 0;
166
4.13M
  struct dis_private *priv = (struct dis_private *) info->private_data;
167
4.13M
  int insn_size = xtensa_isa_maxlength (xtensa_default_isa);
168
169
4.13M
  insn_size = MAX (insn_size, 4);
170
171
  /* Read the maximum instruction size, padding with zeros if we go past
172
     the end of the text section.  This code will automatically adjust
173
     length when we hit the end of the buffer.  */
174
175
4.13M
  memset (priv->byte_buf, 0, insn_size);
176
4.18M
  for (length = insn_size; length > 0; length--)
177
4.18M
    {
178
4.18M
      status = (*info->read_memory_func) (memaddr, priv->byte_buf, length,
179
4.18M
            info);
180
4.18M
      if (status == 0)
181
4.13M
  return length;
182
4.18M
    }
183
1
  (*info->memory_error_func) (status, memaddr, info);
184
1
  OPCODES_SIGLONGJMP (priv->bailout, 1);
185
  /*NOTREACHED*/
186
4.13M
}
187
188
189
static void
190
print_xtensa_operand (bfd_vma memaddr,
191
          struct disassemble_info *info,
192
          xtensa_opcode opc,
193
          int opnd,
194
          unsigned operand_val)
195
6.06M
{
196
6.06M
  xtensa_isa isa = xtensa_default_isa;
197
6.06M
  int signed_operand_val, status;
198
6.06M
  bfd_byte litbuf[4];
199
200
6.06M
  if (show_raw_fields)
201
0
    {
202
0
      if (operand_val < 0xa)
203
0
  (*info->fprintf_func) (info->stream, "%u", operand_val);
204
0
      else
205
0
  (*info->fprintf_func) (info->stream, "0x%x", operand_val);
206
0
      return;
207
0
    }
208
209
6.06M
  (void) xtensa_operand_decode (isa, opc, opnd, &operand_val);
210
6.06M
  signed_operand_val = (int) operand_val;
211
212
6.06M
  if (xtensa_operand_is_register (isa, opc, opnd) == 0)
213
2.02M
    {
214
2.02M
      if (xtensa_operand_is_PCrelative (isa, opc, opnd) == 1)
215
748k
  {
216
748k
    (void) xtensa_operand_undo_reloc (isa, opc, opnd,
217
748k
              &operand_val, memaddr);
218
748k
    info->target = operand_val;
219
748k
    (*info->print_address_func) (info->target, info);
220
    /*  Also display value loaded by L32R (but not if reloc exists,
221
        those tend to be wrong):  */
222
748k
    if ((info->flags & INSN_HAS_RELOC) == 0
223
748k
        && !strcmp ("l32r", xtensa_opcode_name (isa, opc)))
224
249k
      status = (*info->read_memory_func) (operand_val, litbuf, 4, info);
225
499k
    else
226
499k
      status = -1;
227
228
748k
    if (status == 0)
229
2.88k
      {
230
2.88k
        unsigned literal = bfd_get_bits (litbuf, 32,
231
2.88k
                 info->endian == BFD_ENDIAN_BIG);
232
233
2.88k
        (*info->fprintf_func) (info->stream, " (");
234
2.88k
        (*info->print_address_func) (literal, info);
235
2.88k
        (*info->fprintf_func) (info->stream, ")");
236
2.88k
      }
237
748k
  }
238
1.27M
      else
239
1.27M
  {
240
1.27M
    if ((signed_operand_val > -256) && (signed_operand_val < 256))
241
1.15M
      (*info->fprintf_styled_func) (info->stream, dis_style_immediate,
242
1.15M
            "%d", signed_operand_val);
243
124k
    else
244
124k
      (*info->fprintf_styled_func) (info->stream, dis_style_immediate,
245
124k
            "0x%x", signed_operand_val);
246
1.27M
  }
247
2.02M
    }
248
4.04M
  else
249
4.04M
    {
250
4.04M
      int i = 1;
251
4.04M
      xtensa_regfile opnd_rf = xtensa_operand_regfile (isa, opc, opnd);
252
4.04M
      (*info->fprintf_styled_func) (info->stream, dis_style_register,
253
4.04M
            "%s%u",
254
4.04M
            xtensa_regfile_shortname (isa, opnd_rf),
255
4.04M
            operand_val);
256
4.11M
      while (i < xtensa_operand_num_regs (isa, opc, opnd))
257
74.6k
  {
258
74.6k
    operand_val++;
259
74.6k
    (*info->fprintf_styled_func) (info->stream, dis_style_register,
260
74.6k
          ":%s%u",
261
74.6k
          xtensa_regfile_shortname (isa, opnd_rf),
262
74.6k
          operand_val);
263
74.6k
    i++;
264
74.6k
  }
265
4.04M
    }
266
6.06M
}
267
268
269
/* Print the Xtensa instruction at address MEMADDR on info->stream.
270
   Returns length of the instruction in bytes.  */
271
272
int
273
print_insn_xtensa (bfd_vma memaddr, struct disassemble_info *info)
274
4.13M
{
275
4.13M
  unsigned operand_val;
276
4.13M
  int bytes_fetched, size, maxsize, i, n, noperands, nslots;
277
4.13M
  xtensa_isa isa;
278
4.13M
  xtensa_opcode opc;
279
4.13M
  xtensa_format fmt;
280
4.13M
  static struct dis_private priv;
281
4.13M
  static bfd_byte *byte_buf = NULL;
282
4.13M
  static xtensa_insnbuf insn_buffer = NULL;
283
4.13M
  static xtensa_insnbuf slot_buffer = NULL;
284
4.13M
  int first, first_slot, valid_insn;
285
4.13M
  property_table_entry *insn_block;
286
4.13M
  enum dis_insn_type insn_type;
287
4.13M
  bfd_vma target;
288
289
4.13M
  if (!xtensa_default_isa)
290
2
    xtensa_default_isa = xtensa_isa_init (0, 0);
291
292
4.13M
  info->target = 0;
293
4.13M
  maxsize = xtensa_isa_maxlength (xtensa_default_isa);
294
295
  /* Set bytes_per_line to control the amount of whitespace between the hex
296
     values and the opcode.  For Xtensa, we always print one "chunk" and we
297
     vary bytes_per_chunk to determine how many bytes to print.  (objdump
298
     would apparently prefer that we set bytes_per_chunk to 1 and vary
299
     bytes_per_line but that makes it hard to fit 64-bit instructions on
300
     an 80-column screen.)  The value of bytes_per_line here is not exactly
301
     right, because objdump adds an extra space for each chunk so that the
302
     amount of whitespace depends on the chunk size.  Oh well, it's good
303
     enough....  Note that we set the minimum size to 4 to accomodate
304
     literal pools.  */
305
4.13M
  info->bytes_per_line = MAX (maxsize, 4);
306
307
  /* Allocate buffers the first time through.  */
308
4.13M
  if (!insn_buffer)
309
2
    {
310
2
      insn_buffer = xtensa_insnbuf_alloc (xtensa_default_isa);
311
2
      slot_buffer = xtensa_insnbuf_alloc (xtensa_default_isa);
312
2
      byte_buf = (bfd_byte *) xmalloc (MAX (maxsize, 4));
313
2
    }
314
315
4.13M
  priv.byte_buf = byte_buf;
316
317
4.13M
  info->private_data = (void *) &priv;
318
319
  /* Prepare instruction tables.  */
320
321
4.13M
  if (info->section != NULL)
322
2.77M
    {
323
2.77M
      asection *section = info->section;
324
325
2.77M
      if (priv.last_section != section)
326
2.91k
  {
327
2.91k
    bfd *abfd = section->owner;
328
329
2.91k
    if (priv.last_section != NULL)
330
2.90k
      {
331
        /* Reset insn_table_entries.  */
332
2.90k
        priv.insn_table_entry_count = 0;
333
2.90k
        free (priv.insn_table_entries);
334
2.90k
        priv.insn_table_entries = NULL;
335
2.90k
      }
336
2.91k
    priv.last_section = section;
337
338
    /* Read insn_table_entries.  */
339
2.91k
    priv.insn_table_entry_count =
340
2.91k
      xtensa_read_table_entries (abfd, section,
341
2.91k
               &priv.insn_table_entries,
342
2.91k
               XTENSA_PROP_SEC_NAME, false);
343
2.91k
    if (priv.insn_table_entry_count == 0)
344
2.91k
      {
345
2.91k
        free (priv.insn_table_entries);
346
2.91k
        priv.insn_table_entries = NULL;
347
        /* Backwards compatibility support.  */
348
2.91k
        priv.insn_table_entry_count =
349
2.91k
    xtensa_read_table_entries (abfd, section,
350
2.91k
             &priv.insn_table_entries,
351
2.91k
             XTENSA_INSN_SEC_NAME, false);
352
2.91k
      }
353
2.91k
    priv.insn_table_cur_idx = 0;
354
2.91k
    xtensa_coalesce_insn_tables (&priv);
355
2.91k
  }
356
      /* Else nothing to do, same section as last time.  */
357
2.77M
    }
358
359
4.13M
  if (OPCODES_SIGSETJMP (priv.bailout) != 0)
360
      /* Error return.  */
361
1
      return -1;
362
363
  /* Fetch the maximum size instruction.  */
364
4.13M
  bytes_fetched = fetch_data (info, memaddr);
365
366
4.13M
  insn_block = xtensa_find_table_entry (memaddr, info);
367
368
  /* Don't set "isa" before the setjmp to keep the compiler from griping.  */
369
4.13M
  isa = xtensa_default_isa;
370
4.13M
  size = 0;
371
4.13M
  nslots = 0;
372
4.13M
  valid_insn = 0;
373
4.13M
  fmt = 0;
374
4.13M
  if (!insn_block || (insn_block->flags & XTENSA_PROP_INSN))
375
4.13M
    {
376
      /* Copy the bytes into the decode buffer.  */
377
4.13M
      memset (insn_buffer, 0, (xtensa_insnbuf_size (isa) *
378
4.13M
             sizeof (xtensa_insnbuf_word)));
379
4.13M
      xtensa_insnbuf_from_chars (isa, insn_buffer, priv.byte_buf,
380
4.13M
         bytes_fetched);
381
382
4.13M
      fmt = xtensa_format_decode (isa, insn_buffer);
383
4.13M
      if (fmt != XTENSA_UNDEFINED
384
3.74M
    && ((size = xtensa_format_length (isa, fmt)) <= bytes_fetched)
385
3.73M
    && xtensa_instruction_fits (memaddr, size, insn_block))
386
3.73M
  {
387
    /* Make sure all the opcodes are valid.  */
388
3.73M
    valid_insn = 1;
389
3.73M
    nslots = xtensa_format_num_slots (isa, fmt);
390
7.96M
    for (n = 0; n < nslots; n++)
391
4.22M
      {
392
4.22M
        xtensa_format_get_slot (isa, fmt, n, insn_buffer, slot_buffer);
393
4.22M
        if (xtensa_opcode_decode (isa, fmt, n, slot_buffer)
394
4.22M
      == XTENSA_UNDEFINED)
395
0
    {
396
0
      valid_insn = 0;
397
0
      break;
398
0
    }
399
4.22M
      }
400
3.73M
  }
401
4.13M
    }
402
403
4.13M
  if (!valid_insn)
404
401k
    {
405
401k
      if (insn_block && (insn_block->flags & XTENSA_PROP_LITERAL)
406
0
    && (memaddr & 3) == 0 && bytes_fetched >= 4)
407
0
  {
408
0
    info->bytes_per_chunk = 4;
409
0
    return 4;
410
0
  }
411
401k
      else
412
401k
  {
413
401k
    (*info->fprintf_styled_func) (info->stream,
414
401k
          dis_style_assembler_directive,
415
401k
          ".byte");
416
401k
    (*info->fprintf_func) (info->stream, "\t");
417
401k
    (*info->fprintf_styled_func) (info->stream,
418
401k
          dis_style_immediate,
419
401k
          "%#02x", priv.byte_buf[0]);
420
401k
    return 1;
421
401k
  }
422
401k
    }
423
424
3.73M
  if (nslots > 1)
425
335k
    (*info->fprintf_func) (info->stream, "{ ");
426
427
3.73M
  insn_type = dis_nonbranch;
428
3.73M
  target = 0;
429
3.73M
  first_slot = 1;
430
7.96M
  for (n = 0; n < nslots; n++)
431
4.22M
    {
432
4.22M
      int imm_pcrel = 0;
433
434
4.22M
      if (first_slot)
435
3.73M
  first_slot = 0;
436
492k
      else
437
492k
  (*info->fprintf_func) (info->stream, "; ");
438
439
4.22M
      xtensa_format_get_slot (isa, fmt, n, insn_buffer, slot_buffer);
440
4.22M
      opc = xtensa_opcode_decode (isa, fmt, n, slot_buffer);
441
4.22M
      (*info->fprintf_styled_func) (info->stream,
442
4.22M
            dis_style_mnemonic, "%s",
443
4.22M
            xtensa_opcode_name (isa, opc));
444
445
4.22M
      if (xtensa_opcode_is_branch (isa, opc))
446
275k
  info->insn_type = dis_condbranch;
447
3.95M
      else if (xtensa_opcode_is_jump (isa, opc))
448
84.6k
  info->insn_type = dis_branch;
449
3.86M
      else if (xtensa_opcode_is_call (isa, opc))
450
157k
  info->insn_type = dis_jsr;
451
3.71M
      else
452
3.71M
  info->insn_type = dis_nonbranch;
453
454
      /* Print the operands (if any).  */
455
4.22M
      noperands = xtensa_opcode_num_operands (isa, opc);
456
4.22M
      first = 1;
457
10.4M
      for (i = 0; i < noperands; i++)
458
6.24M
  {
459
6.24M
    if (xtensa_operand_is_visible (isa, opc, i) == 0)
460
176k
      continue;
461
6.06M
    if (first)
462
2.36M
      {
463
2.36M
        (*info->fprintf_func) (info->stream, "\t");
464
2.36M
        first = 0;
465
2.36M
      }
466
3.70M
    else
467
3.70M
      (*info->fprintf_func) (info->stream, ", ");
468
6.06M
    (void) xtensa_operand_get_field (isa, opc, i, fmt, n,
469
6.06M
             slot_buffer, &operand_val);
470
471
6.06M
    print_xtensa_operand (memaddr, info, opc, i, operand_val);
472
6.06M
    if (xtensa_operand_is_PCrelative (isa, opc, i))
473
748k
      ++imm_pcrel;
474
6.06M
  }
475
4.22M
      if (!imm_pcrel)
476
3.48M
  info->insn_type = dis_nonbranch;
477
4.22M
      if (info->insn_type != dis_nonbranch)
478
497k
  {
479
497k
    insn_type = info->insn_type;
480
497k
    target = info->target;
481
497k
  }
482
4.22M
    }
483
3.73M
  info->insn_type = insn_type;
484
3.73M
  info->target = target;
485
3.73M
  info->insn_info_valid = 1;
486
487
3.73M
  if (nslots > 1)
488
335k
    (*info->fprintf_func) (info->stream, " }");
489
490
3.73M
  info->bytes_per_chunk = size;
491
3.73M
  info->display_endian = info->endian;
492
493
3.73M
  return size;
494
4.13M
}
495