Coverage Report

Created: 2026-07-12 09:22

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/binutils-gdb/opcodes/cris-dis.c
Line
Count
Source
1
/* Disassembler code for CRIS.
2
   Copyright (C) 2000-2026 Free Software Foundation, Inc.
3
   Contributed by Axis Communications AB, Lund, Sweden.
4
   Written by Hans-Peter Nilsson.
5
6
   This file is part of the GNU opcodes library.
7
8
   This library 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, or (at your option)
11
   any later version.
12
13
   It is distributed in the hope that it will be useful, but WITHOUT
14
   ANY WARRANTY; without even the implied warranty of MERCHANTABILITY
15
   or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public
16
   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
#include "sysdep.h"
24
#include "dis-asm.h"
25
#include "opcode/cris.h"
26
#include "libiberty.h"
27

28
/* No instruction will be disassembled longer than this.  In theory, and
29
   in silicon, address prefixes can be cascaded.  In practice, cascading
30
   is not used by GCC, and not supported by the assembler.  */
31
#ifndef MAX_BYTES_PER_CRIS_INSN
32
1.82M
#define MAX_BYTES_PER_CRIS_INSN 8
33
#endif
34
35
/* Whether or not to decode prefixes, folding it into the following
36
   instruction.  FIXME: Make this optional later.  */
37
#ifndef PARSE_PREFIX
38
1.05M
#define PARSE_PREFIX 1
39
#endif
40
41
/* Sometimes we prefix all registers with this character.  */
42
591k
#define REGISTER_PREFIX_CHAR '$'
43
44
/* Whether or not to trace the following sequence:
45
   sub* X,r%d
46
   bound* Y,r%d
47
   adds.w [pc+r%d.w],pc
48
49
   This is the assembly form of a switch-statement in C.
50
   The "sub is optional.  If there is none, then X will be zero.
51
   X is the value of the first case,
52
   Y is the number of cases (including default).
53
54
   This results in case offsets printed on the form:
55
    case N: -> case_address
56
   where N is an estimation on the corresponding 'case' operand in C,
57
   and case_address is where execution of that case continues after the
58
   sequence presented above.
59
60
   The old style of output was to print the offsets as instructions,
61
   which made it hard to follow "case"-constructs in the disassembly,
62
   and caused a lot of annoying warnings about undefined instructions.
63
64
   FIXME: Make this optional later.  */
65
#ifndef TRACE_CASE
66
2.27M
#define TRACE_CASE (disdata->trace_case)
67
#endif
68
69
enum cris_disass_family
70
 { cris_dis_v0_v10, cris_dis_common_v10_v32, cris_dis_v32 };
71
72
/* Stored in the disasm_info->private_data member.  */
73
struct cris_disasm_data
74
{
75
  /* Whether to print something less confusing if we find something
76
     matching a switch-construct.  */
77
  bool trace_case;
78
79
  /* Whether this code is flagged as crisv32.  FIXME: Should be an enum
80
     that includes "compatible".  */
81
  enum cris_disass_family distype;
82
};
83
84
/* Value of first element in switch.  */
85
static long case_offset = 0;
86
87
/* How many more case-offsets to print.  */
88
static long case_offset_counter = 0;
89
90
/* Number of case offsets.  */
91
static long no_of_case_offsets = 0;
92
93
/* Candidate for next case_offset.  */
94
static long last_immediate = 0;
95
96
static int cris_constraint
97
  (const char *, unsigned, unsigned, struct cris_disasm_data *);
98
99
/* Parse disassembler options and store state in info.  FIXME: For the
100
   time being, we abuse static variables.  */
101
102
static bool
103
cris_parse_disassembler_options (disassemble_info *info,
104
         enum cris_disass_family distype)
105
600
{
106
600
  struct cris_disasm_data *disdata;
107
108
600
  info->private_data = calloc (1, sizeof (struct cris_disasm_data));
109
600
  disdata = (struct cris_disasm_data *) info->private_data;
110
600
  if (disdata == NULL)
111
0
    return false;
112
113
  /* Default true.  */
114
600
  disdata->trace_case
115
600
    = (info->disassembler_options == NULL
116
0
       || (strcmp (info->disassembler_options, "nocase") != 0));
117
118
600
  disdata->distype = distype;
119
600
  return true;
120
600
}
121
122
static const struct cris_spec_reg *
123
spec_reg_info (unsigned int sreg, enum cris_disass_family distype)
124
14.8k
{
125
14.8k
  int i;
126
127
282k
  for (i = 0; cris_spec_regs[i].name != NULL; i++)
128
282k
    {
129
282k
      if (cris_spec_regs[i].number == sreg)
130
29.1k
  {
131
29.1k
    if (distype == cris_dis_v32)
132
5.71k
      switch (cris_spec_regs[i].applicable_version)
133
5.71k
        {
134
328
        case cris_ver_warning:
135
570
        case cris_ver_version_all:
136
570
        case cris_ver_v3p:
137
570
        case cris_ver_v8p:
138
1.90k
        case cris_ver_v10p:
139
4.14k
        case cris_ver_v32p:
140
    /* No ambiguous sizes or register names with CRISv32.  */
141
4.14k
    if (cris_spec_regs[i].warning == NULL)
142
3.14k
      return &cris_spec_regs[i];
143
2.56k
        default:
144
2.56k
    ;
145
5.71k
        }
146
23.4k
    else if (cris_spec_regs[i].applicable_version != cris_ver_v32p)
147
11.6k
      return &cris_spec_regs[i];
148
29.1k
  }
149
282k
    }
150
151
0
  return NULL;
152
14.8k
}
153
154
/* Return the number of bits in the argument.  */
155
156
static int
157
number_of_bits (unsigned int val)
158
40.7k
{
159
40.7k
  int bits;
160
161
291k
  for (bits = 0; val != 0; val &= val - 1)
162
250k
    bits++;
163
164
40.7k
  return bits;
165
40.7k
}
166
167
/* Get an entry in the opcode-table.  */
168
169
static const struct cris_opcode *
170
get_opcode_entry (unsigned int insn,
171
      unsigned int prefix_insn,
172
      struct cris_disasm_data *disdata)
173
598k
{
174
  /* For non-prefixed insns, we keep a table of pointers, indexed by the
175
     insn code.  Each entry is initialized when found to be NULL.  */
176
598k
  static const struct cris_opcode **opc_table = NULL;
177
178
598k
  const struct cris_opcode *max_matchedp = NULL;
179
598k
  const struct cris_opcode **prefix_opc_table = NULL;
180
181
  /* We hold a table for each prefix that need to be handled differently.  */
182
598k
  static const struct cris_opcode **dip_prefixes = NULL;
183
598k
  static const struct cris_opcode **bdapq_m1_prefixes = NULL;
184
598k
  static const struct cris_opcode **bdapq_m2_prefixes = NULL;
185
598k
  static const struct cris_opcode **bdapq_m4_prefixes = NULL;
186
598k
  static const struct cris_opcode **rest_prefixes = NULL;
187
188
  /* Allocate and clear the opcode-table.  */
189
598k
  if (opc_table == NULL)
190
2
    {
191
2
      opc_table = malloc (65536 * sizeof (opc_table[0]));
192
2
      if (opc_table == NULL)
193
0
  return NULL;
194
195
2
      memset (opc_table, 0, 65536 * sizeof (const struct cris_opcode *));
196
197
2
      dip_prefixes
198
2
  = malloc (65536 * sizeof (const struct cris_opcode **));
199
2
      if (dip_prefixes == NULL)
200
0
  return NULL;
201
202
2
      memset (dip_prefixes, 0, 65536 * sizeof (dip_prefixes[0]));
203
204
2
      bdapq_m1_prefixes
205
2
  = malloc (65536 * sizeof (const struct cris_opcode **));
206
2
      if (bdapq_m1_prefixes == NULL)
207
0
  return NULL;
208
209
2
      memset (bdapq_m1_prefixes, 0, 65536 * sizeof (bdapq_m1_prefixes[0]));
210
211
2
      bdapq_m2_prefixes
212
2
  = malloc (65536 * sizeof (const struct cris_opcode **));
213
2
      if (bdapq_m2_prefixes == NULL)
214
0
  return NULL;
215
216
2
      memset (bdapq_m2_prefixes, 0, 65536 * sizeof (bdapq_m2_prefixes[0]));
217
218
2
      bdapq_m4_prefixes
219
2
  = malloc (65536 * sizeof (const struct cris_opcode **));
220
2
      if (bdapq_m4_prefixes == NULL)
221
0
  return NULL;
222
223
2
      memset (bdapq_m4_prefixes, 0, 65536 * sizeof (bdapq_m4_prefixes[0]));
224
225
2
      rest_prefixes
226
2
  = malloc (65536 * sizeof (const struct cris_opcode **));
227
2
      if (rest_prefixes == NULL)
228
0
  return NULL;
229
230
2
      memset (rest_prefixes, 0, 65536 * sizeof (rest_prefixes[0]));
231
2
    }
232
233
  /* Get the right table if this is a prefix.
234
     This code is connected to cris_constraints in that it knows what
235
     prefixes play a role in recognition of patterns; the necessary
236
     state is reflected by which table is used.  If constraints
237
     involving match or non-match of prefix insns are changed, then this
238
     probably needs changing too.  */
239
598k
  if (prefix_insn != NO_CRIS_PREFIX)
240
53.6k
    {
241
53.6k
      const struct cris_opcode *popcodep
242
53.6k
  = (opc_table[prefix_insn] != NULL
243
53.6k
     ? opc_table[prefix_insn]
244
53.6k
     : get_opcode_entry (prefix_insn, NO_CRIS_PREFIX, disdata));
245
246
53.6k
      if (popcodep == NULL)
247
0
  return NULL;
248
249
53.6k
      if (popcodep->match == BDAP_QUICK_OPCODE)
250
34.0k
  {
251
    /* Since some offsets are recognized with "push" macros, we
252
       have to have different tables for them.  */
253
34.0k
    int offset = (prefix_insn & 255);
254
255
34.0k
    if (offset > 127)
256
14.2k
      offset -= 256;
257
258
34.0k
    switch (offset)
259
34.0k
      {
260
327
      case -4:
261
327
        prefix_opc_table = bdapq_m4_prefixes;
262
327
        break;
263
264
460
      case -2:
265
460
        prefix_opc_table = bdapq_m2_prefixes;
266
460
        break;
267
268
1.14k
      case -1:
269
1.14k
        prefix_opc_table = bdapq_m1_prefixes;
270
1.14k
        break;
271
272
32.1k
      default:
273
32.1k
        prefix_opc_table = rest_prefixes;
274
32.1k
        break;
275
34.0k
      }
276
34.0k
  }
277
19.6k
      else if (popcodep->match == DIP_OPCODE)
278
  /* We don't allow postincrement when the prefix is DIP, so use a
279
     different table for DIP.  */
280
3.07k
  prefix_opc_table = dip_prefixes;
281
16.5k
      else
282
16.5k
  prefix_opc_table = rest_prefixes;
283
53.6k
    }
284
285
598k
  if (prefix_insn != NO_CRIS_PREFIX
286
53.6k
      && prefix_opc_table[insn] != NULL)
287
16.0k
    max_matchedp = prefix_opc_table[insn];
288
582k
  else if (prefix_insn == NO_CRIS_PREFIX && opc_table[insn] != NULL)
289
478k
    max_matchedp = opc_table[insn];
290
104k
  else
291
104k
    {
292
104k
      const struct cris_opcode *opcodep;
293
104k
      int max_level_of_match = -1;
294
295
104k
      for (opcodep = cris_opcodes;
296
25.2M
     opcodep->name != NULL;
297
25.1M
     opcodep++)
298
25.1M
  {
299
25.1M
    int level_of_match;
300
301
25.1M
    if (disdata->distype == cris_dis_v32)
302
3.47M
      {
303
3.47M
        switch (opcodep->applicable_version)
304
3.47M
    {
305
1.46M
    case cris_ver_version_all:
306
1.46M
      break;
307
308
28.9k
    case cris_ver_v0_3:
309
753k
    case cris_ver_v0_10:
310
753k
    case cris_ver_v3_10:
311
796k
    case cris_ver_sim_v0_10:
312
970k
    case cris_ver_v8_10:
313
1.08M
    case cris_ver_v10:
314
1.12M
    case cris_ver_warning:
315
1.12M
      continue;
316
317
28.9k
    case cris_ver_v3p:
318
246k
    case cris_ver_v8p:
319
275k
    case cris_ver_v10p:
320
883k
    case cris_ver_v32p:
321
883k
      break;
322
323
0
    case cris_ver_v8:
324
0
      abort ();
325
0
    default:
326
0
      abort ();
327
3.47M
    }
328
3.47M
      }
329
21.6M
    else
330
21.6M
      {
331
21.6M
        switch (opcodep->applicable_version)
332
21.6M
    {
333
9.10M
    case cris_ver_version_all:
334
9.28M
    case cris_ver_v0_3:
335
9.46M
    case cris_ver_v3p:
336
13.9M
    case cris_ver_v0_10:
337
15.3M
    case cris_ver_v8p:
338
16.4M
    case cris_ver_v8_10:
339
17.1M
    case cris_ver_v10:
340
17.4M
    case cris_ver_sim_v0_10:
341
17.5M
    case cris_ver_v10p:
342
17.8M
    case cris_ver_warning:
343
17.8M
      break;
344
345
3.78M
    case cris_ver_v32p:
346
3.78M
      continue;
347
348
0
    case cris_ver_v8:
349
0
      abort ();
350
0
    default:
351
0
      abort ();
352
21.6M
    }
353
21.6M
      }
354
355
    /* We give a double lead for bits matching the template in
356
       cris_opcodes.  Not even, because then "move p8,r10" would
357
       be given 2 bits lead over "clear.d r10".  When there's a
358
       tie, the first entry in the table wins.  This is
359
       deliberate, to avoid a more complicated recognition
360
       formula.  */
361
20.1M
    if ((opcodep->match & insn) == opcodep->match
362
2.49M
        && (opcodep->lose & insn) == 0
363
138k
        && ((level_of_match
364
138k
       = cris_constraint (opcodep->args,
365
138k
              insn,
366
138k
              prefix_insn,
367
138k
              disdata))
368
138k
      >= 0)
369
40.7k
        && ((level_of_match
370
40.7k
       += 2 * number_of_bits (opcodep->match
371
40.7k
            | opcodep->lose))
372
40.7k
        > max_level_of_match))
373
38.8k
        {
374
38.8k
          max_matchedp = opcodep;
375
38.8k
          max_level_of_match = level_of_match;
376
377
          /* If there was a full match, never mind looking
378
       further.  */
379
38.8k
          if (level_of_match >= 2 * 16)
380
10
      break;
381
38.8k
        }
382
20.1M
    }
383
      /* Fill in the new entry.
384
385
   If there are changes to the opcode-table involving prefixes, and
386
   disassembly then does not work correctly, try removing the
387
   else-clause below that fills in the prefix-table.  If that
388
   helps, you need to change the prefix_opc_table setting above, or
389
   something related.  */
390
104k
      if (prefix_insn == NO_CRIS_PREFIX)
391
66.9k
  opc_table[insn] = max_matchedp;
392
37.6k
      else
393
37.6k
  prefix_opc_table[insn] = max_matchedp;
394
104k
    }
395
396
598k
  return max_matchedp;
397
598k
}
398
399
/* Return -1 if the constraints of a bitwise-matched instruction say
400
   that there is no match.  Otherwise return a nonnegative number
401
   indicating the confidence in the match (higher is better).  */
402
403
static int
404
cris_constraint (const char *cs,
405
     unsigned int insn,
406
     unsigned int prefix_insn,
407
     struct cris_disasm_data *disdata)
408
138k
{
409
138k
  int retval = 0;
410
138k
  int tmp;
411
138k
  int prefix_ok = 0;
412
138k
  const char *s;
413
414
440k
  for (s = cs; *s; s++)
415
361k
    switch (*s)
416
361k
      {
417
87
      case '!':
418
  /* Do not recognize "pop" if there's a prefix and then only for
419
           v0..v10.  */
420
87
  if (prefix_insn != NO_CRIS_PREFIX
421
22
      || disdata->distype != cris_dis_v0_v10)
422
65
    return -1;
423
22
  break;
424
425
42
      case 'U':
426
  /* Not recognized at disassembly.  */
427
42
  return -1;
428
429
564
      case 'M':
430
  /* Size modifier for "clear", i.e. special register 0, 4 or 8.
431
     Check that it is one of them.  Only special register 12 could
432
     be mismatched, but checking for matches is more logical than
433
     checking for mismatches when there are only a few cases.  */
434
564
  tmp = ((insn >> 12) & 0xf);
435
564
  if (tmp != 0 && tmp != 4 && tmp != 8)
436
89
    return -1;
437
475
  break;
438
439
76.1k
      case 'm':
440
76.1k
  if ((insn & 0x30) == 0x30)
441
41.5k
    return -1;
442
34.5k
  break;
443
444
34.5k
      case 'S':
445
  /* A prefix operand without side-effect.  */
446
15.0k
  if (prefix_insn != NO_CRIS_PREFIX && (insn & 0x400) == 0)
447
1.01k
    {
448
1.01k
      prefix_ok = 1;
449
1.01k
      break;
450
1.01k
    }
451
14.0k
  else
452
14.0k
    return -1;
453
454
15.5k
      case 's':
455
17.5k
      case 'y':
456
18.0k
      case 'Y':
457
  /* If this is a prefixed insn with postincrement (side-effect),
458
     the prefix must not be DIP.  */
459
18.0k
  if (prefix_insn != NO_CRIS_PREFIX)
460
3.58k
    {
461
3.58k
      if (insn & 0x400)
462
2.77k
        {
463
2.77k
    const struct cris_opcode *prefix_opcodep
464
2.77k
      = get_opcode_entry (prefix_insn, NO_CRIS_PREFIX, disdata);
465
466
2.77k
    if (prefix_opcodep->match == DIP_OPCODE)
467
1.81k
      return -1;
468
2.77k
        }
469
470
1.77k
      prefix_ok = 1;
471
1.77k
    }
472
16.2k
  break;
473
474
16.2k
      case 'B':
475
  /* If we don't fall through, then the prefix is ok.  */
476
141
  prefix_ok = 1;
477
478
  /* A "push" prefix.  Check for valid "push" size.
479
     In case of special register, it may be != 4.  */
480
141
  if (prefix_insn != NO_CRIS_PREFIX)
481
120
    {
482
      /* Match the prefix insn to BDAPQ.  */
483
120
      const struct cris_opcode *prefix_opcodep
484
120
        = get_opcode_entry (prefix_insn, NO_CRIS_PREFIX, disdata);
485
486
120
      if (prefix_opcodep->match == BDAP_QUICK_OPCODE)
487
17
        {
488
17
    int pushsize = (prefix_insn & 255);
489
490
17
    if (pushsize > 127)
491
10
      pushsize -= 256;
492
493
17
    if (s[1] == 'P')
494
11
      {
495
11
        unsigned int spec_reg = (insn >> 12) & 15;
496
11
        const struct cris_spec_reg *sregp
497
11
          = spec_reg_info (spec_reg, disdata->distype);
498
499
        /* For a special-register, the "prefix size" must
500
           match the size of the register.  */
501
11
        if (sregp && sregp->reg_size == (unsigned int) -pushsize)
502
2
          break;
503
11
      }
504
6
    else if (s[1] == 'R')
505
6
      {
506
6
        if ((insn & 0x30) == 0x20 && pushsize == -4)
507
1
          break;
508
6
      }
509
    /* FIXME:  Should abort here; next constraint letter
510
       *must* be 'P' or 'R'.  */
511
17
        }
512
120
    }
513
138
  return -1;
514
515
2.63k
      case 'D':
516
2.63k
  retval = (((insn >> 12) & 15) == (insn & 15));
517
2.63k
  if (!retval)
518
2.14k
    return -1;
519
487
  else
520
487
    retval += 4;
521
487
  break;
522
523
2.25k
      case 'P':
524
2.25k
  {
525
2.25k
    const struct cris_spec_reg *sregp
526
2.25k
      = spec_reg_info ((insn >> 12) & 15, disdata->distype);
527
528
    /* Since we match four bits, we will give a value of 4-1 = 3
529
       in a match.  If there is a corresponding exact match of a
530
       special register in another pattern, it will get a value of
531
       4, which will be higher.  This should be correct in that an
532
       exact pattern would match better than a general pattern.
533
534
       Note that there is a reason for not returning zero; the
535
       pattern for "clear" is partly  matched in the bit-pattern
536
       (the two lower bits must be zero), while the bit-pattern
537
       for a move from a special register is matched in the
538
       register constraint.  */
539
540
2.25k
    if (sregp != NULL)
541
2.25k
      {
542
2.25k
        retval += 3;
543
2.25k
        break;
544
2.25k
      }
545
0
    else
546
0
      return -1;
547
2.25k
  }
548
361k
      }
549
550
78.3k
  if (prefix_insn != NO_CRIS_PREFIX && ! prefix_ok)
551
37.5k
    return -1;
552
553
40.7k
  return retval;
554
78.3k
}
555
556
/* Format number as hex with a leading "0x" into outbuffer.  */
557
558
static char *
559
format_hex (unsigned long number,
560
      char *outbuffer,
561
      struct cris_disasm_data *disdata)
562
44.0k
{
563
  /* Truncate negative numbers on >32-bit hosts.  */
564
44.0k
  number &= 0xffffffff;
565
566
  /* Save this value for the "case" support.  */
567
44.0k
  if (TRACE_CASE)
568
44.0k
    last_immediate = number;
569
570
44.0k
  return outbuffer + sprintf (outbuffer, "0x%lx", number);
571
44.0k
}
572
573
/* Format number as decimal into outbuffer.  Parameter signedp says
574
   whether the number should be formatted as signed (!= 0) or
575
   unsigned (== 0).  */
576
577
static char *
578
format_dec (long number, char *outbuffer, int signedp)
579
99.1k
{
580
99.1k
  last_immediate = number;
581
99.1k
  return outbuffer + sprintf (outbuffer, signedp ? "%ld" : "%lu", number);
582
99.1k
}
583
584
/* Format the name of the general register regno into outbuffer.  */
585
586
static char *
587
format_reg (struct cris_disasm_data *disdata,
588
      int regno,
589
      char *outbuffer,
590
      bool with_reg_prefix)
591
717k
{
592
717k
  if (with_reg_prefix)
593
579k
    *outbuffer++ = REGISTER_PREFIX_CHAR;
594
595
717k
  switch (regno)
596
717k
    {
597
97.4k
    case 15:
598
      /* For v32, there is no context in which we output PC.  */
599
97.4k
      if (disdata->distype == cris_dis_v32)
600
13.5k
  outbuffer = stpcpy (outbuffer, "acr");
601
83.8k
      else
602
83.8k
  outbuffer = stpcpy (outbuffer, "pc");
603
97.4k
      break;
604
605
44.7k
    case 14:
606
44.7k
      outbuffer = stpcpy (outbuffer, "sp");
607
44.7k
      break;
608
609
575k
    default:
610
575k
      outbuffer += sprintf (outbuffer, "r%d", regno);
611
575k
      break;
612
717k
    }
613
614
717k
  return outbuffer;
615
717k
}
616
617
/* Format the name of a support register into outbuffer.  */
618
619
static char *
620
format_sup_reg (unsigned int regno,
621
    char *outbuffer,
622
    bool with_reg_prefix)
623
1.20k
{
624
1.20k
  int i;
625
626
1.20k
  if (with_reg_prefix)
627
231
    *outbuffer++ = REGISTER_PREFIX_CHAR;
628
629
10.1k
  for (i = 0; cris_support_regs[i].name != NULL; i++)
630
10.1k
    if (cris_support_regs[i].number == regno)
631
1.20k
      return stpcpy (outbuffer, cris_support_regs[i].name);
632
633
  /* There's supposed to be register names covering all numbers, though
634
     some may be generic names.  */
635
0
  return stpcpy (outbuffer, "format_sup_reg-BUG");
636
1.20k
}
637
638
/* Return the length of an instruction.  */
639
640
static unsigned
641
bytes_to_skip (unsigned int insn,
642
         const struct cris_opcode *matchedp,
643
         enum cris_disass_family distype,
644
         const struct cris_opcode *prefix_matchedp)
645
565k
{
646
  /* Each insn is a word plus "immediate" operands.  */
647
565k
  unsigned to_skip = 2;
648
565k
  const char *template_name = (const char *) matchedp->args;
649
565k
  const char *s;
650
651
2.57M
  for (s = template_name; *s; s++)
652
2.01M
    if ((*s == 's' || *s == 'N' || *s == 'Y')
653
161k
  && (insn & 0x400) && (insn & 15) == 15
654
9.14k
  && prefix_matchedp == NULL)
655
8.38k
      {
656
  /* Immediate via [pc+], so we have to check the size of the
657
     operand.  */
658
8.38k
  int mode_size = 1 << ((insn >> 4) & (*template_name == 'z' ? 1 : 3));
659
660
8.38k
  if (matchedp->imm_oprnd_size == SIZE_FIX_32)
661
1.83k
    to_skip += 4;
662
6.55k
  else if (matchedp->imm_oprnd_size == SIZE_SPEC_REG)
663
458
    {
664
458
      const struct cris_spec_reg *sregp
665
458
        = spec_reg_info ((insn >> 12) & 15, distype);
666
667
      /* FIXME: Improve error handling; should have been caught
668
         earlier.  */
669
458
      if (sregp == NULL)
670
0
        return 2;
671
672
      /* PC is incremented by two, not one, for a byte.  Except on
673
         CRISv32, where constants are always DWORD-size for
674
         special registers.  */
675
458
      to_skip +=
676
458
        distype == cris_dis_v32 ? 4 : (sregp->reg_size + 1) & ~1;
677
458
    }
678
6.09k
  else
679
6.09k
    to_skip += (mode_size + 1) & ~1;
680
8.38k
      }
681
2.00M
    else if (*s == 'n')
682
167
      to_skip += 4;
683
2.00M
    else if (*s == 'b')
684
710
      to_skip += 2;
685
686
565k
  return to_skip;
687
565k
}
688
689
/* Print condition code flags.  */
690
691
static char *
692
print_flags (struct cris_disasm_data *disdata, unsigned int insn, char *cp)
693
5.74k
{
694
  /* Use the v8 (Etrax 100) flag definitions for disassembly.
695
     The differences with v0 (Etrax 1..4) vs. Svinto are:
696
      v0 'd' <=> v8 'm'
697
      v0 'e' <=> v8 'b'.
698
     FIXME: Emit v0..v3 flag names somehow.  */
699
5.74k
  static const char v8_fnames[] = "cvznxibm";
700
5.74k
  static const char v32_fnames[] = "cvznxiup";
701
5.74k
  const char *fnames
702
5.74k
    = disdata->distype == cris_dis_v32 ? v32_fnames : v8_fnames;
703
704
5.74k
  unsigned char flagbits = (((insn >> 8) & 0xf0) | (insn & 15));
705
5.74k
  int i;
706
707
51.6k
  for (i = 0; i < 8; i++)
708
45.9k
    if (flagbits & (1 << i))
709
29.2k
      *cp++ = fnames[i];
710
711
5.74k
  return cp;
712
5.74k
}
713
714
/* Print out an insn with its operands, and update the info->insn_type
715
   fields.  The prefix_opcodep and the rest hold a prefix insn that is
716
   supposed to be output as an address mode.  */
717
718
static void
719
print_with_operands (const struct cris_opcode *opcodep,
720
         unsigned int insn,
721
         unsigned char *buffer,
722
         bfd_vma addr,
723
         disassemble_info *info,
724
         /* If a prefix insn was before this insn (and is supposed
725
      to be output as an address), here is a description of
726
      it.  */
727
         const struct cris_opcode *prefix_opcodep,
728
         unsigned int prefix_insn,
729
         unsigned char *prefix_buffer,
730
         bool with_reg_prefix)
731
511k
{
732
  /* Get a buffer of somewhat reasonable size where we store
733
     intermediate parts of the insn.  */
734
511k
  char temp[sizeof (".d [$r13=$r12-2147483648],$r10") * 2];
735
511k
  char *tp = temp;
736
511k
  static const char mode_char[] = "bwd?";
737
511k
  const char *s;
738
511k
  const char *cs;
739
511k
  struct cris_disasm_data *disdata
740
511k
    = (struct cris_disasm_data *) info->private_data;
741
742
  /* Print out the name first thing we do.  */
743
511k
  (*info->fprintf_func) (info->stream, "%s", opcodep->name);
744
745
511k
  cs = opcodep->args;
746
511k
  s = cs;
747
748
  /* Ignore any prefix indicator.  */
749
511k
  if (*s == 'p')
750
39.6k
    s++;
751
752
511k
  if (*s == 'm' || *s == 'M' || *s == 'z')
753
240k
    {
754
240k
      *tp++ = '.';
755
756
      /* Get the size-letter.  */
757
240k
      *tp++ = *s == 'M'
758
240k
  ? (insn & 0x8000 ? 'd'
759
1.30k
     : insn & 0x4000 ? 'w' : 'b')
760
240k
  : mode_char[(insn >> 4) & (*s == 'z' ? 1 : 3)];
761
762
      /* Ignore the size and the space character that follows.  */
763
240k
      s += 2;
764
240k
    }
765
766
  /* Add a space if this isn't a long-branch, because for those will add
767
     the condition part of the name later.  */
768
511k
  if (opcodep->match != (BRANCH_PC_LOW + BRANCH_INCR_HIGH * 256))
769
510k
    *tp++ = ' ';
770
771
  /* Fill in the insn-type if deducible from the name (and there's no
772
     better way).  */
773
511k
  if (opcodep->name[0] == 'j')
774
3.76k
    {
775
3.76k
      if (startswith (opcodep->name, "jsr"))
776
  /* It's "jsr" or "jsrc".  */
777
2.55k
  info->insn_type = dis_jsr;
778
1.21k
      else
779
  /* Any other jump-type insn is considered a branch.  */
780
1.21k
  info->insn_type = dis_branch;
781
3.76k
    }
782
783
  /* We might know some more fields right now.  */
784
511k
  info->branch_delay_insns = opcodep->delayed;
785
786
  /* Handle operands.  */
787
1.83M
  for (; *s; s++)
788
1.31M
    {
789
1.31M
    switch (*s)
790
1.31M
      {
791
1.20k
      case 'T':
792
1.20k
  tp = format_sup_reg ((insn >> 12) & 15, tp, with_reg_prefix);
793
1.20k
  break;
794
795
10.4k
      case 'A':
796
10.4k
  if (with_reg_prefix)
797
3.00k
    *tp++ = REGISTER_PREFIX_CHAR;
798
10.4k
  *tp++ = 'a';
799
10.4k
  *tp++ = 'c';
800
10.4k
  *tp++ = 'r';
801
10.4k
  break;
802
803
51
      case '[':
804
102
      case ']':
805
402k
      case ',':
806
402k
  *tp++ = *s;
807
402k
  break;
808
809
2.15k
      case '!':
810
  /* Ignore at this point; used at earlier stages to avoid
811
     recognition if there's a prefix at something that in other
812
     ways looks like a "pop".  */
813
2.15k
  break;
814
815
54
      case 'd':
816
  /* Ignore.  This is an optional ".d " on the large one of
817
     relaxable insns.  */
818
54
  break;
819
820
203
      case 'B':
821
  /* This was the prefix that made this a "push".  We've already
822
     handled it by recognizing it, so signal that the prefix is
823
     handled by setting it to NULL.  */
824
203
  prefix_opcodep = NULL;
825
203
  break;
826
827
1.78k
      case 'D':
828
129k
      case 'r':
829
129k
  tp = format_reg (disdata, insn & 15, tp, with_reg_prefix);
830
129k
  break;
831
832
371k
      case 'R':
833
371k
  tp = format_reg (disdata, (insn >> 12) & 15, tp, with_reg_prefix);
834
371k
  break;
835
836
167
      case 'n':
837
167
  {
838
    /* Like N but pc-relative to the start of the insn.  */
839
167
    int32_t number = (buffer[2] + buffer[3] * 256 + buffer[4] * 65536
840
167
          + buffer[5] * 0x1000000u);
841
842
    /* Finish off and output previous formatted bytes.  */
843
167
    *tp = 0;
844
167
    if (temp[0])
845
167
      (*info->fprintf_func) (info->stream, "%s", temp);
846
167
    tp = temp;
847
848
167
    (*info->print_address_func) (addr + number, info);
849
167
  }
850
167
  break;
851
852
521
      case 'u':
853
521
  {
854
    /* Like n but the offset is bits <3:0> in the instruction.  */
855
521
    unsigned int number = (buffer[0] & 0xf) * 2;
856
857
    /* Finish off and output previous formatted bytes.  */
858
521
    *tp = 0;
859
521
    if (temp[0])
860
521
      (*info->fprintf_func) (info->stream, "%s", temp);
861
521
    tp = temp;
862
863
521
    (*info->print_address_func) (addr + number, info);
864
521
  }
865
521
  break;
866
867
88
      case 'N':
868
67.9k
      case 'y':
869
68.7k
      case 'Y':
870
71.4k
      case 'S':
871
218k
      case 's':
872
  /* Any "normal" memory operand.  */
873
218k
  if ((insn & 0x400) && (insn & 15) == 15 && prefix_opcodep == NULL)
874
60.9k
    {
875
      /* We're looking at [pc+], i.e. we need to output an immediate
876
         number, where the size can depend on different things.  */
877
60.9k
      int32_t number;
878
60.9k
      int signedp
879
60.9k
        = ((*cs == 'z' && (insn & 0x20))
880
60.0k
     || opcodep->match == BDAP_QUICK_OPCODE);
881
60.9k
      int nbytes;
882
883
60.9k
      if (opcodep->imm_oprnd_size == SIZE_FIX_32)
884
52.4k
        nbytes = 4;
885
8.53k
      else if (opcodep->imm_oprnd_size == SIZE_SPEC_REG)
886
543
        {
887
543
    const struct cris_spec_reg *sregp
888
543
      = spec_reg_info ((insn >> 12) & 15, disdata->distype);
889
890
    /* A NULL return should have been as a non-match earlier,
891
       so catch it as an internal error in the error-case
892
       below.  */
893
543
    if (sregp == NULL)
894
      /* Whatever non-valid size.  */
895
0
      nbytes = 42;
896
543
    else
897
      /* PC is always incremented by a multiple of two.
898
         For CRISv32, immediates are always 4 bytes for
899
         special registers.  */
900
543
      nbytes = disdata->distype == cris_dis_v32
901
543
        ? 4 : (sregp->reg_size + 1) & ~1;
902
543
        }
903
7.99k
      else
904
7.99k
        {
905
7.99k
    int mode_size = 1 << ((insn >> 4) & (*cs == 'z' ? 1 : 3));
906
907
7.99k
    if (mode_size == 1)
908
3.05k
      nbytes = 2;
909
4.94k
    else
910
4.94k
      nbytes = mode_size;
911
7.99k
        }
912
913
60.9k
      switch (nbytes)
914
60.9k
        {
915
0
        case 1:
916
0
    number = buffer[2];
917
0
    if (signedp && number > 127)
918
0
      number -= 256;
919
0
    break;
920
921
5.35k
        case 2:
922
5.35k
    number = buffer[2] + buffer[3] * 256;
923
5.35k
    if (signedp && number > 32767)
924
271
      number -= 65536;
925
5.35k
    break;
926
927
54.6k
        case 4:
928
54.6k
    number = (buffer[2] + buffer[3] * 256 + buffer[4] * 65536
929
54.6k
        + buffer[5] * 0x1000000u);
930
54.6k
    break;
931
932
918
        default:
933
918
    strcpy (tp, "bug");
934
918
    tp += 3;
935
918
    number = 42;
936
60.9k
        }
937
938
60.9k
      if ((*cs == 'z' && (insn & 0x20))
939
60.0k
    || (opcodep->match == BDAP_QUICK_OPCODE
940
0
        && (nbytes <= 2 || buffer[1 + nbytes] == 0)))
941
872
        tp = format_dec (number, tp, signedp);
942
60.0k
      else
943
60.0k
        {
944
60.0k
    unsigned int highbyte = (number >> 24) & 0xff;
945
946
    /* Either output this as an address or as a number.  If it's
947
       a dword with the same high-byte as the address of the
948
       insn, assume it's an address, and also if it's a non-zero
949
       non-0xff high-byte.  If this is a jsr or a jump, then
950
       it's definitely an address.  */
951
60.0k
    if (nbytes == 4
952
54.6k
        && (highbyte == ((addr >> 24) & 0xff)
953
52.2k
      || (highbyte != 0 && highbyte != 0xff)
954
38.7k
      || info->insn_type == dis_branch
955
38.7k
      || info->insn_type == dis_jsr))
956
16.0k
      {
957
        /* Finish off and output previous formatted bytes.  */
958
16.0k
        *tp = 0;
959
16.0k
        tp = temp;
960
16.0k
        if (temp[0])
961
16.0k
          (*info->fprintf_func) (info->stream, "%s", temp);
962
963
16.0k
        (*info->print_address_func) ((bfd_vma) number, info);
964
965
16.0k
        info->target = number;
966
16.0k
      }
967
44.0k
    else
968
44.0k
      tp = format_hex (number, tp, disdata);
969
60.0k
        }
970
60.9k
    }
971
157k
  else
972
157k
    {
973
      /* Not an immediate number.  Then this is a (possibly
974
         prefixed) memory operand.  */
975
157k
      if (info->insn_type != dis_nonbranch)
976
1.72k
        {
977
1.72k
    int mode_size
978
1.72k
      = 1 << ((insn >> 4)
979
1.72k
        & (opcodep->args[0] == 'z' ? 1 : 3));
980
1.72k
    int size;
981
1.72k
    info->insn_type = dis_dref;
982
1.72k
    info->flags |= CRIS_DIS_FLAG_MEMREF;
983
984
1.72k
    if (opcodep->imm_oprnd_size == SIZE_FIX_32)
985
1.72k
      size = 4;
986
0
    else if (opcodep->imm_oprnd_size == SIZE_SPEC_REG)
987
0
      {
988
0
        const struct cris_spec_reg *sregp
989
0
          = spec_reg_info ((insn >> 12) & 15, disdata->distype);
990
991
        /* FIXME: Improve error handling; should have been caught
992
           earlier.  */
993
0
        if (sregp == NULL)
994
0
          size = 4;
995
0
        else
996
0
          size = sregp->reg_size;
997
0
      }
998
0
    else
999
0
      size = mode_size;
1000
1001
1.72k
    info->data_size = size;
1002
1.72k
        }
1003
1004
157k
      *tp++ = '[';
1005
1006
157k
      if (prefix_opcodep
1007
    /* We don't match dip with a postincremented field
1008
       as a side-effect address mode.  */
1009
17.6k
    && ((insn & 0x400) == 0
1010
11.8k
        || prefix_opcodep->match != DIP_OPCODE))
1011
17.6k
        {
1012
17.6k
    if (insn & 0x400)
1013
11.8k
      {
1014
11.8k
        tp = format_reg (disdata, insn & 15, tp, with_reg_prefix);
1015
11.8k
        *tp++ = '=';
1016
11.8k
      }
1017
1018
1019
    /* We mainly ignore the prefix format string when the
1020
       address-mode syntax is output.  */
1021
17.6k
    switch (prefix_opcodep->match)
1022
17.6k
      {
1023
597
      case DIP_OPCODE:
1024
        /* It's [r], [r+] or [pc+].  */
1025
597
        if ((prefix_insn & 0x400) && (prefix_insn & 15) == 15)
1026
146
          {
1027
      /* It's [pc+].  This cannot possibly be anything
1028
         but an address.  */
1029
146
      int32_t number = (prefix_buffer[2]
1030
146
            + prefix_buffer[3] * 256
1031
146
            + prefix_buffer[4] * 65536
1032
146
            + prefix_buffer[5] * 0x1000000u);
1033
1034
146
      info->target = (bfd_vma) number;
1035
1036
      /* Finish off and output previous formatted
1037
         data.  */
1038
146
      *tp = 0;
1039
146
      tp = temp;
1040
146
      if (temp[0])
1041
146
        (*info->fprintf_func) (info->stream, "%s", temp);
1042
1043
146
      (*info->print_address_func) ((bfd_vma) number, info);
1044
146
          }
1045
451
        else
1046
451
          {
1047
      /* For a memref in an address, we use target2.
1048
         In this case, target is zero.  */
1049
451
      info->flags
1050
451
        |= (CRIS_DIS_FLAG_MEM_TARGET2_IS_REG
1051
451
            | CRIS_DIS_FLAG_MEM_TARGET2_MEM);
1052
1053
451
      info->target2 = prefix_insn & 15;
1054
1055
451
      *tp++ = '[';
1056
451
      tp = format_reg (disdata, prefix_insn & 15, tp,
1057
451
           with_reg_prefix);
1058
451
      if (prefix_insn & 0x400)
1059
268
        *tp++ = '+';
1060
451
      *tp++ = ']';
1061
451
          }
1062
597
        break;
1063
1064
9.38k
      case BDAP_QUICK_OPCODE:
1065
9.38k
        {
1066
9.38k
          int number;
1067
1068
9.38k
          number = prefix_buffer[0];
1069
9.38k
          if (number > 127)
1070
4.60k
      number -= 256;
1071
1072
          /* Output "reg+num" or, if num < 0, "reg-num".  */
1073
9.38k
          tp = format_reg (disdata, (prefix_insn >> 12) & 15, tp,
1074
9.38k
               with_reg_prefix);
1075
9.38k
          if (number >= 0)
1076
4.78k
      *tp++ = '+';
1077
9.38k
          tp = format_dec (number, tp, 1);
1078
1079
9.38k
          info->flags |= CRIS_DIS_FLAG_MEM_TARGET_IS_REG;
1080
9.38k
          info->target = (prefix_insn >> 12) & 15;
1081
9.38k
          info->target2 = (bfd_vma) number;
1082
9.38k
          break;
1083
0
        }
1084
1085
2.31k
      case BIAP_OPCODE:
1086
        /* Output "r+R.m".  */
1087
2.31k
        tp = format_reg (disdata, prefix_insn & 15, tp,
1088
2.31k
             with_reg_prefix);
1089
2.31k
        *tp++ = '+';
1090
2.31k
        tp = format_reg (disdata, (prefix_insn >> 12) & 15, tp,
1091
2.31k
             with_reg_prefix);
1092
2.31k
        *tp++ = '.';
1093
2.31k
        *tp++ = mode_char[(prefix_insn >> 4) & 3];
1094
1095
2.31k
        info->flags
1096
2.31k
          |= (CRIS_DIS_FLAG_MEM_TARGET2_IS_REG
1097
2.31k
        | CRIS_DIS_FLAG_MEM_TARGET_IS_REG
1098
1099
2.31k
        | ((prefix_insn & 0x8000)
1100
2.31k
           ? CRIS_DIS_FLAG_MEM_TARGET2_MULT4
1101
2.31k
           : ((prefix_insn & 0x8000)
1102
1.62k
        ? CRIS_DIS_FLAG_MEM_TARGET2_MULT2 : 0)));
1103
1104
        /* Is it the casejump?  It's a "adds.w [pc+r%d.w],pc".  */
1105
2.31k
        if (insn == 0xf83f && (prefix_insn & ~0xf000) == 0x55f)
1106
          /* Then start interpreting data as offsets.  */
1107
0
          case_offset_counter = no_of_case_offsets;
1108
2.31k
        break;
1109
1110
5.30k
      case BDAP_INDIR_OPCODE:
1111
        /* Output "r+s.m", or, if "s" is [pc+], "r+s" or
1112
           "r-s".  */
1113
5.30k
        tp = format_reg (disdata, (prefix_insn >> 12) & 15, tp,
1114
5.30k
             with_reg_prefix);
1115
1116
5.30k
        if ((prefix_insn & 0x400) && (prefix_insn & 15) == 15)
1117
643
          {
1118
643
      int32_t number;
1119
643
      unsigned int nbytes;
1120
1121
      /* It's a value.  Get its size.  */
1122
643
      int mode_size = 1 << ((prefix_insn >> 4) & 3);
1123
1124
643
      if (mode_size == 1)
1125
500
        nbytes = 2;
1126
143
      else
1127
143
        nbytes = mode_size;
1128
1129
643
      switch (nbytes)
1130
643
        {
1131
0
        case 1:
1132
0
          number = prefix_buffer[2];
1133
0
          if (number > 127)
1134
0
            number -= 256;
1135
0
          break;
1136
1137
527
        case 2:
1138
527
          number = prefix_buffer[2] + prefix_buffer[3] * 256;
1139
527
          if (number > 32767)
1140
207
            number -= 65536;
1141
527
          break;
1142
1143
116
        case 4:
1144
116
          number = (prefix_buffer[2] + prefix_buffer[3] * 256
1145
116
              + prefix_buffer[4] * 65536
1146
116
              + prefix_buffer[5] * 0x1000000u);
1147
116
          break;
1148
1149
0
        default:
1150
0
          strcpy (tp, "bug");
1151
0
          tp += 3;
1152
0
          number = 42;
1153
643
        }
1154
1155
643
      info->flags |= CRIS_DIS_FLAG_MEM_TARGET_IS_REG;
1156
643
      info->target2 = (bfd_vma) number;
1157
1158
      /* If the size is dword, then assume it's an
1159
         address.  */
1160
643
      if (nbytes == 4)
1161
116
        {
1162
          /* Finish off and output previous formatted
1163
             bytes.  */
1164
116
          *tp++ = '+';
1165
116
          *tp = 0;
1166
116
          tp = temp;
1167
116
          (*info->fprintf_func) (info->stream, "%s", temp);
1168
1169
116
          (*info->print_address_func) ((bfd_vma) number, info);
1170
116
        }
1171
527
      else
1172
527
        {
1173
527
          if (number >= 0)
1174
320
            *tp++ = '+';
1175
527
          tp = format_dec (number, tp, 1);
1176
527
        }
1177
643
          }
1178
4.66k
        else
1179
4.66k
          {
1180
      /* Output "r+[R].m" or "r+[R+].m".  */
1181
4.66k
      *tp++ = '+';
1182
4.66k
      *tp++ = '[';
1183
4.66k
      tp = format_reg (disdata, prefix_insn & 15, tp,
1184
4.66k
           with_reg_prefix);
1185
4.66k
      if (prefix_insn & 0x400)
1186
2.95k
        *tp++ = '+';
1187
4.66k
      *tp++ = ']';
1188
4.66k
      *tp++ = '.';
1189
4.66k
      *tp++ = mode_char[(prefix_insn >> 4) & 3];
1190
1191
4.66k
      info->flags
1192
4.66k
        |= (CRIS_DIS_FLAG_MEM_TARGET2_IS_REG
1193
4.66k
            | CRIS_DIS_FLAG_MEM_TARGET2_MEM
1194
4.66k
            | CRIS_DIS_FLAG_MEM_TARGET_IS_REG
1195
1196
4.66k
            | (((prefix_insn >> 4) == 2)
1197
4.66k
         ? 0
1198
4.66k
         : (((prefix_insn >> 4) & 3) == 1
1199
4.66k
            ? CRIS_DIS_FLAG_MEM_TARGET2_MEM_WORD
1200
4.66k
            : CRIS_DIS_FLAG_MEM_TARGET2_MEM_BYTE)));
1201
4.66k
          }
1202
5.30k
        break;
1203
1204
5.30k
      default:
1205
0
        (*info->fprintf_func) (info->stream, "?prefix-bug");
1206
17.6k
      }
1207
1208
    /* To mark that the prefix is used, reset it.  */
1209
17.6k
    prefix_opcodep = NULL;
1210
17.6k
        }
1211
140k
      else
1212
140k
        {
1213
140k
    tp = format_reg (disdata, insn & 15, tp, with_reg_prefix);
1214
1215
140k
    info->flags |= CRIS_DIS_FLAG_MEM_TARGET_IS_REG;
1216
140k
    info->target = insn & 15;
1217
1218
140k
    if (insn & 0x400)
1219
78.9k
      *tp++ = '+';
1220
140k
        }
1221
157k
      *tp++ = ']';
1222
157k
    }
1223
218k
  break;
1224
1225
218k
      case 'x':
1226
7.53k
  tp = format_reg (disdata, (insn >> 12) & 15, tp, with_reg_prefix);
1227
7.53k
  *tp++ = '.';
1228
7.53k
  *tp++ = mode_char[(insn >> 4) & 3];
1229
7.53k
  break;
1230
1231
16.4k
      case 'I':
1232
16.4k
  tp = format_dec (insn & 63, tp, 0);
1233
16.4k
  break;
1234
1235
710
      case 'b':
1236
710
  {
1237
710
    int where = buffer[2] + buffer[3] * 256;
1238
1239
710
    if (where > 32767)
1240
212
      where -= 65536;
1241
1242
710
    where += addr + ((disdata->distype == cris_dis_v32) ? 0 : 4);
1243
1244
710
    if (insn == BA_PC_INCR_OPCODE)
1245
46
      info->insn_type = dis_branch;
1246
664
    else
1247
664
      info->insn_type = dis_condbranch;
1248
1249
710
    info->target = (bfd_vma) where;
1250
1251
710
    *tp = 0;
1252
710
    tp = temp;
1253
710
    (*info->fprintf_func) (info->stream, "%s%s ",
1254
710
         temp, cris_cc_strings[insn >> 12]);
1255
1256
710
    (*info->print_address_func) ((bfd_vma) where, info);
1257
710
  }
1258
710
      break;
1259
1260
10.4k
    case 'c':
1261
10.4k
      tp = format_dec (insn & 31, tp, 0);
1262
10.4k
      break;
1263
1264
172
    case 'C':
1265
172
      tp = format_dec (insn & 15, tp, 0);
1266
172
      break;
1267
1268
67.4k
    case 'o':
1269
67.4k
      {
1270
67.4k
  long offset = insn & 0xfe;
1271
67.4k
  bfd_vma target;
1272
1273
67.4k
  if (insn & 1)
1274
29.4k
    offset |= ~0xff;
1275
1276
67.4k
  if (opcodep->match == BA_QUICK_OPCODE)
1277
1.99k
    info->insn_type = dis_branch;
1278
65.4k
  else
1279
65.4k
    info->insn_type = dis_condbranch;
1280
1281
67.4k
  target = addr + ((disdata->distype == cris_dis_v32) ? 0 : 2) + offset;
1282
67.4k
  info->target = target;
1283
67.4k
  *tp = 0;
1284
67.4k
  tp = temp;
1285
67.4k
  (*info->fprintf_func) (info->stream, "%s", temp);
1286
67.4k
  (*info->print_address_func) (target, info);
1287
67.4k
      }
1288
67.4k
      break;
1289
1290
7.66k
    case 'Q':
1291
32.1k
    case 'O':
1292
32.1k
      {
1293
32.1k
  long number = buffer[0];
1294
1295
32.1k
  if (number > 127)
1296
11.3k
    number = number - 256;
1297
1298
32.1k
  tp = format_dec (number, tp, 1);
1299
32.1k
  *tp++ = ',';
1300
32.1k
  tp = format_reg (disdata, (insn >> 12) & 15, tp, with_reg_prefix);
1301
32.1k
      }
1302
32.1k
      break;
1303
1304
5.74k
    case 'f':
1305
5.74k
      tp = print_flags (disdata, insn, tp);
1306
5.74k
      break;
1307
1308
29.1k
    case 'i':
1309
29.1k
      tp = format_dec ((insn & 32) ? (insn & 31) | ~31L : insn & 31, tp, 1);
1310
29.1k
      break;
1311
1312
11.5k
    case 'P':
1313
11.5k
      {
1314
11.5k
  const struct cris_spec_reg *sregp
1315
11.5k
    = spec_reg_info ((insn >> 12) & 15, disdata->distype);
1316
1317
11.5k
  if (sregp->name == NULL)
1318
    /* Should have been caught as a non-match eariler.  */
1319
0
    *tp++ = '?';
1320
11.5k
  else
1321
11.5k
    {
1322
11.5k
      if (with_reg_prefix)
1323
8.73k
        *tp++ = REGISTER_PREFIX_CHAR;
1324
11.5k
      strcpy (tp, sregp->name);
1325
11.5k
      tp += strlen (tp);
1326
11.5k
    }
1327
11.5k
      }
1328
11.5k
      break;
1329
1330
0
    default:
1331
0
      strcpy (tp, "???");
1332
0
      tp += 3;
1333
1.31M
    }
1334
1.31M
  }
1335
1336
511k
  *tp = 0;
1337
1338
511k
  if (prefix_opcodep)
1339
0
    (*info->fprintf_func) (info->stream, " (OOPS unused prefix \"%s: %s\")",
1340
0
         prefix_opcodep->name, prefix_opcodep->args);
1341
1342
511k
  (*info->fprintf_func) (info->stream, "%s", temp);
1343
1344
  /* Get info for matching case-tables, if we don't have any active.
1345
     We assume that the last constant seen is used; either in the insn
1346
     itself or in a "move.d const,rN, sub.d rN,rM"-like sequence.  */
1347
511k
  if (TRACE_CASE && case_offset_counter == 0)
1348
511k
    {
1349
511k
      if (startswith (opcodep->name, "sub"))
1350
33.1k
  case_offset = last_immediate;
1351
1352
      /* It could also be an "add", if there are negative case-values.  */
1353
478k
      else if (startswith (opcodep->name, "add"))
1354
  /* The first case is the negated operand to the add.  */
1355
75.5k
  case_offset = -last_immediate;
1356
1357
      /* A bound insn will tell us the number of cases.  */
1358
402k
      else if (startswith (opcodep->name, "bound"))
1359
14.4k
  no_of_case_offsets = last_immediate + 1;
1360
1361
      /* A jump or jsr or branch breaks the chain of insns for a
1362
   case-table, so assume default first-case again.  */
1363
388k
      else if (info->insn_type == dis_jsr
1364
387k
         || info->insn_type == dis_branch
1365
384k
         || info->insn_type == dis_condbranch)
1366
70.2k
  case_offset = 0;
1367
511k
    }
1368
511k
}
1369
1370
1371
/* Print the CRIS instruction at address memaddr on stream.  Returns
1372
   length of the instruction, in bytes.  Prefix register names with `$' if
1373
   WITH_REG_PREFIX.  */
1374
1375
static int
1376
print_insn_cris_generic (bfd_vma memaddr,
1377
       disassemble_info *info,
1378
       bool with_reg_prefix)
1379
606k
{
1380
606k
  int nbytes;
1381
606k
  unsigned int insn;
1382
606k
  const struct cris_opcode *matchedp;
1383
606k
  int advance = 0;
1384
606k
  struct cris_disasm_data *disdata
1385
606k
    = (struct cris_disasm_data *) info->private_data;
1386
1387
  /* No instruction will be disassembled as longer than this number of
1388
     bytes; stacked prefixes will not be expanded.  */
1389
606k
  unsigned char buffer[MAX_BYTES_PER_CRIS_INSN];
1390
606k
  unsigned char *bufp;
1391
606k
  int status = 0;
1392
606k
  bfd_vma addr;
1393
1394
  /* There will be an "out of range" error after the last instruction.
1395
     Reading pairs of bytes in decreasing number, we hope that we will get
1396
     at least the amount that we will consume.
1397
1398
     If we can't get any data, or we do not get enough data, we print
1399
     the error message.  */
1400
1401
610k
  for (nbytes = MAX_BYTES_PER_CRIS_INSN; nbytes > 0; nbytes -= 2)
1402
610k
    {
1403
610k
      status = (*info->read_memory_func) (memaddr, buffer, nbytes, info);
1404
610k
      if (status == 0)
1405
605k
  break;
1406
610k
    }
1407
1408
  /* If we did not get all we asked for, then clear the rest.
1409
     Hopefully this makes a reproducible result in case of errors.  */
1410
606k
  if (nbytes != MAX_BYTES_PER_CRIS_INSN)
1411
1.99k
    memset (buffer + nbytes, 0, MAX_BYTES_PER_CRIS_INSN - nbytes);
1412
1413
606k
  addr = memaddr;
1414
606k
  bufp = buffer;
1415
1416
  /* Set some defaults for the insn info.  */
1417
606k
  info->insn_info_valid = 1;
1418
606k
  info->branch_delay_insns = 0;
1419
606k
  info->data_size = 0;
1420
606k
  info->insn_type = dis_nonbranch;
1421
606k
  info->flags = 0;
1422
606k
  info->target = 0;
1423
606k
  info->target2 = 0;
1424
1425
  /* If we got any data, disassemble it.  */
1426
606k
  if (nbytes != 0)
1427
605k
    {
1428
605k
      matchedp = NULL;
1429
1430
605k
      insn = bufp[0] + bufp[1] * 256;
1431
1432
      /* If we're in a case-table, don't disassemble the offsets.  */
1433
605k
      if (TRACE_CASE && case_offset_counter != 0)
1434
0
  {
1435
0
    info->insn_type = dis_noninsn;
1436
0
    advance += 2;
1437
1438
    /* If to print data as offsets, then shortcut here.  */
1439
0
    (*info->fprintf_func) (info->stream, "case %ld%s: -> ",
1440
0
         case_offset + no_of_case_offsets
1441
0
         - case_offset_counter,
1442
0
         case_offset_counter == 1 ? "/default" :
1443
0
         "");
1444
1445
0
    (*info->print_address_func) ((bfd_vma)
1446
0
               ((short) (insn)
1447
0
          + (long) (addr
1448
0
              - (no_of_case_offsets
1449
0
                 - case_offset_counter)
1450
0
              * 2)), info);
1451
0
    case_offset_counter--;
1452
1453
    /* The default case start (without a "sub" or "add") must be
1454
       zero.  */
1455
0
    if (case_offset_counter == 0)
1456
0
      case_offset = 0;
1457
0
  }
1458
605k
      else if (insn == 0)
1459
63.7k
  {
1460
    /* We're often called to disassemble zeroes.  While this is a
1461
       valid "bcc .+2" insn, it is also useless enough and enough
1462
       of a nuiscance that we will just output "bcc .+2" for it
1463
       and signal it as a noninsn.  */
1464
63.7k
    (*info->fprintf_func) (info->stream,
1465
63.7k
         disdata->distype == cris_dis_v32
1466
63.7k
         ? "bcc ." : "bcc .+2");
1467
63.7k
    info->insn_type = dis_noninsn;
1468
63.7k
    advance += 2;
1469
63.7k
  }
1470
542k
      else
1471
542k
  {
1472
542k
    const struct cris_opcode *prefix_opcodep = NULL;
1473
542k
    unsigned char *prefix_buffer = bufp;
1474
542k
    unsigned int prefix_insn = insn;
1475
542k
    int prefix_size = 0;
1476
1477
542k
    matchedp = get_opcode_entry (insn, NO_CRIS_PREFIX, disdata);
1478
1479
    /* Check if we're supposed to write out prefixes as address
1480
       modes and if this was a prefix.  */
1481
542k
    if (matchedp != NULL && PARSE_PREFIX && matchedp->args[0] == 'p')
1482
53.6k
      {
1483
        /* If it's a prefix, put it into the prefix vars and get the
1484
     main insn.  */
1485
53.6k
        prefix_size = bytes_to_skip (prefix_insn, matchedp,
1486
53.6k
             disdata->distype, NULL);
1487
53.6k
        prefix_opcodep = matchedp;
1488
1489
53.6k
        insn = bufp[prefix_size] + bufp[prefix_size + 1] * 256;
1490
53.6k
        matchedp = get_opcode_entry (insn, prefix_insn, disdata);
1491
1492
53.6k
        if (matchedp != NULL)
1493
17.8k
    {
1494
17.8k
      addr += prefix_size;
1495
17.8k
      bufp += prefix_size;
1496
17.8k
      advance += prefix_size;
1497
17.8k
    }
1498
35.8k
        else
1499
35.8k
    {
1500
      /* The "main" insn wasn't valid, at least not when
1501
         prefixed.  Put back things enough to output the
1502
         prefix insn only, as a normal insn.  */
1503
35.8k
      matchedp = prefix_opcodep;
1504
35.8k
      insn = prefix_insn;
1505
35.8k
      prefix_opcodep = NULL;
1506
35.8k
    }
1507
53.6k
      }
1508
1509
542k
    if (matchedp == NULL)
1510
30.6k
      {
1511
30.6k
        (*info->fprintf_func) (info->stream, "??0x%x", insn);
1512
30.6k
        advance += 2;
1513
1514
30.6k
        info->insn_type = dis_noninsn;
1515
30.6k
      }
1516
511k
    else
1517
511k
      {
1518
511k
        advance
1519
511k
    += bytes_to_skip (insn, matchedp, disdata->distype,
1520
511k
          prefix_opcodep);
1521
1522
        /* The info_type and assorted fields will be set according
1523
     to the operands.   */
1524
511k
        print_with_operands (matchedp, insn, bufp, addr, info,
1525
511k
           prefix_opcodep, prefix_insn,
1526
511k
           prefix_buffer, with_reg_prefix);
1527
511k
      }
1528
542k
  }
1529
605k
    }
1530
327
  else
1531
327
    info->insn_type = dis_noninsn;
1532
1533
  /* If we read less than MAX_BYTES_PER_CRIS_INSN, i.e. we got an error
1534
     status when reading that much, and the insn decoding indicated a
1535
     length exceeding what we read, there is an error.  */
1536
606k
  if (status != 0 && (nbytes == 0 || advance > nbytes))
1537
327
    {
1538
327
      (*info->memory_error_func) (status, memaddr, info);
1539
327
      return -1;
1540
327
    }
1541
1542
  /* Max supported insn size with one folded prefix insn.  */
1543
605k
  info->bytes_per_line = MAX_BYTES_PER_CRIS_INSN;
1544
1545
  /* I would like to set this to a fixed value larger than the actual
1546
     number of bytes to print in order to avoid spaces between bytes,
1547
     but objdump.c (2.9.1) does not like that, so we print 16-bit
1548
     chunks, which is the next choice.  */
1549
605k
  info->bytes_per_chunk = 2;
1550
1551
  /* Printing bytes in order of increasing addresses makes sense,
1552
     especially on a little-endian target.
1553
     This is completely the opposite of what you think; setting this to
1554
     BFD_ENDIAN_LITTLE will print bytes in order N..0 rather than the 0..N
1555
     we want.  */
1556
605k
  info->display_endian = BFD_ENDIAN_BIG;
1557
1558
605k
  return advance;
1559
606k
}
1560
1561
/* Disassemble, prefixing register names with `$'.  CRIS v0..v10.  */
1562
1563
static int
1564
print_insn_cris_with_register_prefix (bfd_vma vma,
1565
              disassemble_info *info)
1566
485k
{
1567
485k
  if (info->private_data == NULL
1568
502
      && !cris_parse_disassembler_options (info, cris_dis_v0_v10))
1569
0
    return -1;
1570
485k
  return print_insn_cris_generic (vma, info, true);
1571
485k
}
1572
1573
/* Disassemble, prefixing register names with `$'.  CRIS v32.  */
1574
1575
static int
1576
print_insn_crisv32_with_register_prefix (bfd_vma vma,
1577
           disassemble_info *info)
1578
1.08k
{
1579
1.08k
  if (info->private_data == NULL
1580
1
      && !cris_parse_disassembler_options (info, cris_dis_v32))
1581
0
    return -1;
1582
1.08k
  return print_insn_cris_generic (vma, info, true);
1583
1.08k
}
1584
1585
/* Disassemble, prefixing register names with `$'.
1586
   Common v10 and v32 subset.  */
1587
1588
static int
1589
print_insn_crisv10_v32_with_register_prefix (bfd_vma vma,
1590
               disassemble_info *info)
1591
0
{
1592
0
  if (info->private_data == NULL
1593
0
      && !cris_parse_disassembler_options (info, cris_dis_common_v10_v32))
1594
0
    return -1;
1595
0
  return print_insn_cris_generic (vma, info, true);
1596
0
}
1597
1598
/* Disassemble, no prefixes on register names.  CRIS v0..v10.  */
1599
1600
static int
1601
print_insn_cris_without_register_prefix (bfd_vma vma,
1602
           disassemble_info *info)
1603
15.0k
{
1604
15.0k
  if (info->private_data == NULL
1605
12
      && !cris_parse_disassembler_options (info, cris_dis_v0_v10))
1606
0
    return -1;
1607
15.0k
  return print_insn_cris_generic (vma, info, false);
1608
15.0k
}
1609
1610
/* Disassemble, no prefixes on register names.  CRIS v32.  */
1611
1612
static int
1613
print_insn_crisv32_without_register_prefix (bfd_vma vma,
1614
              disassemble_info *info)
1615
105k
{
1616
105k
  if (info->private_data == NULL
1617
85
      && !cris_parse_disassembler_options (info, cris_dis_v32))
1618
0
    return -1;
1619
105k
  return print_insn_cris_generic (vma, info, false);
1620
105k
}
1621
1622
/* Disassemble, no prefixes on register names.
1623
   Common v10 and v32 subset.  */
1624
1625
static int
1626
print_insn_crisv10_v32_without_register_prefix (bfd_vma vma,
1627
            disassemble_info *info)
1628
0
{
1629
0
  if (info->private_data == NULL
1630
0
      && !cris_parse_disassembler_options (info, cris_dis_common_v10_v32))
1631
0
    return -1;
1632
0
  return print_insn_cris_generic (vma, info, false);
1633
0
}
1634
1635
/* Return a disassembler-function that prints registers with a `$' prefix,
1636
   or one that prints registers without a prefix.
1637
   FIXME: We should improve the solution to avoid the multitude of
1638
   functions seen above.  */
1639
1640
disassembler_ftype
1641
cris_get_disassembler (bfd *abfd)
1642
600
{
1643
  /* If there's no bfd in sight, we return what is valid as input in all
1644
     contexts if fed back to the assembler: disassembly *with* register
1645
     prefix.  Unfortunately this will be totally wrong for v32.  */
1646
600
  if (abfd == NULL)
1647
430
    return print_insn_cris_with_register_prefix;
1648
1649
170
  if (bfd_get_symbol_leading_char (abfd) == 0)
1650
73
    {
1651
73
      if (bfd_get_mach (abfd) == bfd_mach_cris_v32)
1652
1
  return print_insn_crisv32_with_register_prefix;
1653
72
      if (bfd_get_mach (abfd) == bfd_mach_cris_v10_v32)
1654
0
  return print_insn_crisv10_v32_with_register_prefix;
1655
1656
      /* We default to v10.  This may be specifically specified in the
1657
   bfd mach, but is also the default setting.  */
1658
72
      return print_insn_cris_with_register_prefix;
1659
72
    }
1660
1661
97
  if (bfd_get_mach (abfd) == bfd_mach_cris_v32)
1662
85
    return print_insn_crisv32_without_register_prefix;
1663
12
  if (bfd_get_mach (abfd) == bfd_mach_cris_v10_v32)
1664
0
    return print_insn_crisv10_v32_without_register_prefix;
1665
12
  return print_insn_cris_without_register_prefix;
1666
12
}
1667
1668
/* Local variables:
1669
   eval: (c-set-style "gnu")
1670
   indent-tabs-mode: t
1671
   End:  */