Coverage Report

Created: 2026-09-14 08:07

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/binutils-gdb/opcodes/z8k-dis.c
Line
Count
Source
1
/* Disassemble z8000 code.
2
   Copyright (C) 1992-2026 Free Software Foundation, Inc.
3
4
   This file is part of the GNU opcodes library.
5
6
   This library is free software; you can redistribute it and/or modify
7
   it under the terms of the GNU General Public License as published by
8
   the Free Software Foundation; either version 3, or (at your option)
9
   any later version.
10
11
   It is distributed in the hope that it will be useful, but WITHOUT
12
   ANY WARRANTY; without even the implied warranty of MERCHANTABILITY
13
   or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public
14
   License for more details.
15
16
   You should have received a copy of the GNU General Public License
17
   along with this file; see the file COPYING.  If not, write to the
18
   Free Software Foundation, 51 Franklin Street - Fifth Floor, Boston,
19
   MA 02110-1301, USA.  */
20
21
#include "sysdep.h"
22
#include "disassemble.h"
23
#include "libiberty.h"
24
25
#define DEFINE_TABLE
26
#include "z8k-opc.h"
27
28
#include <setjmp.h>
29
30
typedef struct
31
{
32
  /* These are all indexed by nibble number (i.e only every other entry
33
     of bytes is used, and every 4th entry of words).  */
34
  unsigned char nibbles[24];
35
  unsigned char bytes[24];
36
  unsigned short words[24];
37
38
  /* Nibble number of first word not yet fetched.  */
39
  unsigned int max_fetched;
40
  bfd_vma insn_start;
41
  OPCODES_SIGJMP_BUF bailout;
42
43
  int tabl_index;
44
  char instr_asmsrc[80];
45
  unsigned long arg_reg[0x0f];
46
  unsigned long immediate;
47
  unsigned long displacement;
48
  unsigned long address;
49
  unsigned long cond_code;
50
  unsigned long ctrl_code;
51
  unsigned long flags;
52
  unsigned long interrupts;
53
}
54
instr_data_s;
55
56
/* Make sure that bytes from INFO->PRIVATE_DATA->BUFFER (inclusive)
57
   to ADDR (exclusive) are valid.  Returns 1 for success, longjmps
58
   on error.  */
59
#define FETCH_DATA(info, nibble) \
60
1.21M
  ((nibble) < ((instr_data_s *) (info->private_data))->max_fetched \
61
1.21M
   ? 1 : fetch_data ((info), (nibble)))
62
63
static int
64
fetch_data (struct disassemble_info *info, int nibble)
65
928k
{
66
928k
  unsigned char mybuf[20];
67
928k
  int status;
68
928k
  instr_data_s *priv = (instr_data_s *) info->private_data;
69
70
928k
  if ((nibble % 4) != 0)
71
0
    abort ();
72
73
928k
  status = (*info->read_memory_func) (priv->insn_start,
74
928k
              (bfd_byte *) mybuf,
75
928k
              nibble / 2,
76
928k
              info);
77
928k
  if (status != 0)
78
267
    {
79
267
      (*info->memory_error_func) (status, priv->insn_start, info);
80
267
      OPCODES_SIGLONGJMP (priv->bailout, 1);
81
267
    }
82
83
928k
  {
84
928k
    int i;
85
928k
    unsigned char *p = mybuf;
86
87
2.11M
    for (i = 0; i < nibble;)
88
1.18M
      {
89
1.18M
  priv->words[i] = (p[0] << 8) | p[1];
90
91
1.18M
  priv->bytes[i] = *p;
92
1.18M
  priv->nibbles[i++] = *p >> 4;
93
1.18M
  priv->nibbles[i++] = *p & 0xf;
94
95
1.18M
  ++p;
96
1.18M
  priv->bytes[i] = *p;
97
1.18M
  priv->nibbles[i++] = *p >> 4;
98
1.18M
  priv->nibbles[i++] = *p & 0xf;
99
100
1.18M
  ++p;
101
1.18M
      }
102
928k
  }
103
928k
  priv->max_fetched = nibble;
104
928k
  return 1;
105
928k
}
106
107
static char *codes[16] =
108
  {
109
    "f",
110
    "lt",
111
    "le",
112
    "ule",
113
    "ov/pe",
114
    "mi",
115
    "eq",
116
    "c/ult",
117
    "t",
118
    "ge",
119
    "gt",
120
    "ugt",
121
    "nov/po",
122
    "pl",
123
    "ne",
124
    "nc/uge"
125
  };
126
127
static char *ctrl_names[8] =
128
  {
129
    "<invld>",
130
    "flags",
131
    "fcw",
132
    "refresh",
133
    "psapseg",
134
    "psapoff",
135
    "nspseg",
136
    "nspoff"
137
  };
138
139
static int seg_length;
140
int z8k_lookup_instr (unsigned char *, disassemble_info *);
141
static void output_instr (instr_data_s *, unsigned long, disassemble_info *);
142
static void unpack_instr (instr_data_s *, int, disassemble_info *);
143
static void unparse_instr (instr_data_s *, int);
144
145
static int
146
print_insn_z8k (bfd_vma addr, disassemble_info *info, int is_segmented)
147
193k
{
148
193k
  instr_data_s instr_data;
149
150
193k
  info->private_data = &instr_data;
151
193k
  instr_data.max_fetched = 0;
152
193k
  instr_data.insn_start = addr;
153
193k
  if (OPCODES_SIGSETJMP (instr_data.bailout) != 0)
154
    /* Error return.  */
155
267
    return -1;
156
157
193k
  info->bytes_per_chunk = 2;
158
193k
  info->bytes_per_line = 6;
159
193k
  info->display_endian = BFD_ENDIAN_BIG;
160
161
193k
  instr_data.tabl_index = z8k_lookup_instr (instr_data.nibbles, info);
162
193k
  if (instr_data.tabl_index >= 0)
163
172k
    {
164
172k
      unpack_instr (&instr_data, is_segmented, info);
165
172k
      unparse_instr (&instr_data, is_segmented);
166
172k
      output_instr (&instr_data, addr, info);
167
172k
      return z8k_table[instr_data.tabl_index].length + seg_length;
168
172k
    }
169
20.6k
  else
170
20.6k
    {
171
20.6k
      FETCH_DATA (info, 4);
172
20.6k
      (*info->fprintf_func) (info->stream, ".word %02x%02x",
173
20.6k
           instr_data.bytes[0], instr_data.bytes[2]);
174
20.6k
      return 2;
175
20.6k
    }
176
193k
}
177
178
int
179
print_insn_z8001 (bfd_vma addr, disassemble_info *info)
180
73.2k
{
181
73.2k
  return print_insn_z8k (addr, info, 1);
182
73.2k
}
183
184
int
185
print_insn_z8002 (bfd_vma addr, disassemble_info *info)
186
120k
{
187
120k
  return print_insn_z8k (addr, info, 0);
188
120k
}
189
190
int
191
z8k_lookup_instr (unsigned char *nibbles, disassemble_info *info)
192
193k
{
193
193k
  unsigned int nibl_index, tabl_index;
194
193k
  int nibl_matched;
195
193k
  int need_fetch = 0;
196
193k
  unsigned short instr_nibl;
197
193k
  unsigned short tabl_datum, datum_class, datum_value;
198
199
193k
  nibl_matched = 0;
200
193k
  tabl_index = 0;
201
193k
  FETCH_DATA (info, 4);
202
32.6M
  while (!nibl_matched && z8k_table[tabl_index].name)
203
32.6M
    {
204
32.6M
      nibl_matched = 1;
205
32.6M
      for (nibl_index = 0;
206
68.7M
     nibl_matched
207
36.2M
       && nibl_index < ARRAY_SIZE (z8k_table[0].byte_info)
208
36.2M
       && nibl_index < z8k_table[tabl_index].length * 2;
209
36.0M
     nibl_index++)
210
36.0M
  {
211
36.0M
    if ((nibl_index % 4) == 0)
212
32.7M
            {
213
              /* Fetch data only if it isn't already there.  */
214
32.7M
              if (nibl_index >= 4 || (nibl_index < 4 && need_fetch))
215
88.0k
                FETCH_DATA (info, nibl_index + 4);   /* Fetch one word at a time.  */
216
32.7M
              if (nibl_index < 4)
217
32.6M
                need_fetch = 0;
218
78.3k
              else
219
78.3k
                need_fetch = 1;
220
32.7M
            }
221
36.0M
    instr_nibl = nibbles[nibl_index];
222
223
36.0M
    tabl_datum = z8k_table[tabl_index].byte_info[nibl_index];
224
36.0M
    datum_class = tabl_datum & CLASS_MASK;
225
36.0M
    datum_value = ~CLASS_MASK & tabl_datum;
226
227
36.0M
    switch (datum_class)
228
36.0M
      {
229
35.3M
      case CLASS_BIT:
230
35.3M
        if (datum_value != instr_nibl)
231
32.4M
    nibl_matched = 0;
232
35.3M
        break;
233
1.34k
      case CLASS_IGNORE:
234
1.34k
        break;
235
461
      case CLASS_00II:
236
461
        if (!((~instr_nibl) & 0x4))
237
191
    nibl_matched = 0;
238
461
        break;
239
191
      case CLASS_01II:
240
191
        if (!(instr_nibl & 0x4))
241
0
    nibl_matched = 0;
242
191
        break;
243
195
      case CLASS_0CCC:
244
195
        if (!((~instr_nibl) & 0x8))
245
0
    nibl_matched = 0;
246
195
        break;
247
996
      case CLASS_1CCC:
248
996
        if (!(instr_nibl & 0x8))
249
195
    nibl_matched = 0;
250
996
        break;
251
26.6k
      case CLASS_0DISP7:
252
26.6k
        if (!((~instr_nibl) & 0x8))
253
20.9k
    nibl_matched = 0;
254
26.6k
        nibl_index += 1;
255
26.6k
        break;
256
20.9k
      case CLASS_1DISP7:
257
20.9k
        if (!(instr_nibl & 0x8))
258
0
    nibl_matched = 0;
259
20.9k
        nibl_index += 1;
260
20.9k
        break;
261
153k
      case CLASS_REGN0:
262
153k
        if (instr_nibl == 0)
263
49.8k
    nibl_matched = 0;
264
153k
        break;
265
7.26k
      case CLASS_BIT_1OR2:
266
7.26k
        if ((instr_nibl | 0x2) != (datum_value | 0x2))
267
5.79k
    nibl_matched = 0;
268
7.26k
        break;
269
564k
      default:
270
564k
        break;
271
36.0M
      }
272
36.0M
  }
273
274
32.6M
      if (nibl_matched)
275
172k
  return tabl_index;
276
277
32.4M
      tabl_index++;
278
32.4M
    }
279
20.7k
  return -1;
280
193k
}
281
282
static void
283
output_instr (instr_data_s *instr_data,
284
              unsigned long addr ATTRIBUTE_UNUSED,
285
              disassemble_info *info)
286
172k
{
287
172k
  unsigned int num_bytes;
288
172k
  char out_str[100];
289
290
172k
  out_str[0] = 0;
291
292
172k
  num_bytes = (z8k_table[instr_data->tabl_index].length + seg_length) * 2;
293
172k
  FETCH_DATA (info, num_bytes);
294
295
172k
  strcat (out_str, instr_data->instr_asmsrc);
296
297
172k
  (*info->fprintf_func) (info->stream, "%s", out_str);
298
172k
}
299
300
static void
301
unpack_instr (instr_data_s *instr_data, int is_segmented, disassemble_info *info)
302
172k
{
303
172k
  unsigned int nibl_count, loop;
304
172k
  unsigned short instr_nibl, instr_byte, instr_word;
305
172k
  long instr_long;
306
172k
  unsigned int tabl_datum, datum_class;
307
172k
  unsigned short datum_value;
308
309
172k
  nibl_count = 0;
310
172k
  loop = 0;
311
172k
  seg_length = 0;
312
313
909k
  while (z8k_table[instr_data->tabl_index].byte_info[loop] != 0)
314
736k
    {
315
736k
      FETCH_DATA (info, nibl_count + 4 - (nibl_count % 4));
316
736k
      instr_nibl = instr_data->nibbles[nibl_count];
317
736k
      instr_byte = instr_data->bytes[nibl_count & ~1];
318
736k
      instr_word = instr_data->words[nibl_count & ~3];
319
320
736k
      tabl_datum = z8k_table[instr_data->tabl_index].byte_info[loop];
321
736k
      datum_class = tabl_datum & CLASS_MASK;
322
736k
      datum_value = tabl_datum & ~CLASS_MASK;
323
324
736k
      switch (datum_class)
325
736k
  {
326
6.62k
  case CLASS_DISP:
327
6.62k
    switch (datum_value)
328
6.62k
      {
329
898
      case ARG_DISP16:
330
898
        instr_data->displacement = instr_data->insn_start + 4
331
898
    + (signed short) (instr_word & 0xffff);
332
898
        nibl_count += 3;
333
898
        break;
334
5.72k
      case ARG_DISP12:
335
5.72k
        if (instr_word & 0x800)
336
    /* Negative 12 bit displacement.  */
337
2.76k
    instr_data->displacement = instr_data->insn_start + 2
338
2.76k
      - (signed short) ((instr_word & 0xfff) | 0xf000) * 2;
339
2.95k
        else
340
2.95k
    instr_data->displacement = instr_data->insn_start + 2
341
2.95k
      - (instr_word & 0x0fff) * 2;
342
343
5.72k
        nibl_count += 2;
344
5.72k
        break;
345
0
      default:
346
0
        break;
347
6.62k
      }
348
6.62k
    break;
349
103k
  case CLASS_IMM:
350
103k
    switch (datum_value)
351
103k
      {
352
8.33k
      case ARG_IMM4:
353
8.33k
        instr_data->immediate = instr_nibl;
354
8.33k
        break;
355
298
      case ARG_NIM4:
356
298
        instr_data->immediate = (- instr_nibl) & 0xf;
357
298
        break;
358
114
      case ARG_NIM8:
359
114
        instr_data->immediate = (- instr_byte) & 0xff;
360
114
        nibl_count += 1;
361
114
        break;
362
79.0k
      case ARG_IMM8:
363
79.0k
        instr_data->immediate = instr_byte;
364
79.0k
        nibl_count += 1;
365
79.0k
        break;
366
8.61k
      case ARG_IMM16:
367
8.61k
        instr_data->immediate = instr_word;
368
8.61k
        nibl_count += 3;
369
8.61k
        break;
370
1.71k
      case ARG_IMM32:
371
1.71k
        FETCH_DATA (info, nibl_count + 8);
372
1.71k
        instr_long = ((unsigned) instr_data->words[nibl_count] << 16
373
1.71k
          | instr_data->words[nibl_count + 4]);
374
1.71k
        instr_data->immediate = instr_long;
375
1.71k
        nibl_count += 7;
376
1.71k
        break;
377
0
      case ARG_IMMN:
378
0
        instr_data->immediate = instr_nibl - 1;
379
0
        break;
380
5.29k
      case ARG_IMM4M1:
381
5.29k
        instr_data->immediate = instr_nibl + 1;
382
5.29k
        break;
383
0
      case ARG_IMM_1:
384
0
        instr_data->immediate = 1;
385
0
        break;
386
0
      case ARG_IMM_2:
387
0
        instr_data->immediate = 2;
388
0
        break;
389
0
      case ARG_IMM2:
390
0
        instr_data->immediate = instr_nibl & 0x3;
391
0
        break;
392
0
      default:
393
0
        break;
394
103k
      }
395
103k
    break;
396
103k
  case CLASS_CC:
397
5.67k
    instr_data->cond_code = instr_nibl;
398
5.67k
    break;
399
22.0k
  case CLASS_ADDRESS:
400
22.0k
    if (is_segmented)
401
7.95k
      {
402
7.95k
        if (instr_nibl & 0x8)
403
2.24k
    {
404
2.24k
      FETCH_DATA (info, nibl_count + 8);
405
2.24k
      instr_long = ((unsigned) instr_data->words[nibl_count] << 16
406
2.24k
        | instr_data->words[nibl_count + 4]);
407
2.24k
      instr_data->address = ((instr_word & 0x7f00) << 16
408
2.24k
           | (instr_long & 0xffff));
409
2.24k
      nibl_count += 7;
410
2.24k
      seg_length = 2;
411
2.24k
    }
412
5.70k
        else
413
5.70k
    {
414
5.70k
      instr_data->address = ((instr_word & 0x7f00) << 16
415
5.70k
           | (instr_word & 0x00ff));
416
5.70k
      nibl_count += 3;
417
5.70k
    }
418
7.95k
      }
419
14.1k
    else
420
14.1k
      {
421
14.1k
        instr_data->address = instr_word;
422
14.1k
        nibl_count += 3;
423
14.1k
      }
424
22.0k
    break;
425
195
  case CLASS_0CCC:
426
996
  case CLASS_1CCC:
427
996
    instr_data->ctrl_code = instr_nibl & 0x7;
428
996
    break;
429
5.62k
  case CLASS_0DISP7:
430
5.62k
    instr_data->displacement =
431
5.62k
      instr_data->insn_start + 2 - (instr_byte & 0x7f) * 2;
432
5.62k
    nibl_count += 1;
433
5.62k
    break;
434
20.9k
  case CLASS_1DISP7:
435
20.9k
    instr_data->displacement =
436
20.9k
      instr_data->insn_start + 2 - (instr_byte & 0x7f) * 2;
437
20.9k
    nibl_count += 1;
438
20.9k
    break;
439
191
  case CLASS_01II:
440
191
    instr_data->interrupts = instr_nibl & 0x3;
441
191
    break;
442
270
  case CLASS_00II:
443
270
    instr_data->interrupts = instr_nibl & 0x3;
444
270
    break;
445
626
  case CLASS_IGNORE:
446
350k
  case CLASS_BIT:
447
350k
    instr_data->ctrl_code = instr_nibl & 0x7;
448
350k
    break;
449
1.10k
  case CLASS_FLAGS:
450
1.10k
    instr_data->flags = instr_nibl;
451
1.10k
    break;
452
156k
  case CLASS_REG:
453
156k
    instr_data->arg_reg[datum_value] = instr_nibl;
454
156k
    break;
455
55.5k
  case CLASS_REGN0:
456
55.5k
    instr_data->arg_reg[datum_value] = instr_nibl;
457
55.5k
    break;
458
5.09k
  case CLASS_DISP8:
459
5.09k
    instr_data->displacement =
460
5.09k
      instr_data->insn_start + 2 + (signed char) instr_byte * 2;
461
5.09k
    nibl_count += 1;
462
5.09k
    break;
463
1.47k
        case CLASS_BIT_1OR2:
464
1.47k
          instr_data->immediate = ((instr_nibl >> 1) & 0x1) + 1;
465
1.47k
          nibl_count += 1;
466
1.47k
    break;
467
0
  default:
468
0
    abort ();
469
0
    break;
470
736k
  }
471
472
736k
      loop += 1;
473
736k
      nibl_count += 1;
474
736k
    }
475
172k
}
476
477
static void
478
print_intr(char *tmp_str, unsigned long interrupts)
479
461
{
480
461
  int comma = 0;
481
482
461
  *tmp_str = 0;
483
461
  if (! (interrupts & 2))
484
233
    {
485
233
      strcat (tmp_str, "vi");
486
233
      comma = 1;
487
233
    }
488
461
  if (! (interrupts & 1))
489
365
    {
490
365
      if (comma) strcat (tmp_str, ",");
491
365
      strcat (tmp_str, "nvi");
492
365
    }
493
461
}
494
495
static void
496
print_flags(char *tmp_str, unsigned long flags)
497
1.10k
{
498
1.10k
  int comma = 0;
499
500
1.10k
  *tmp_str = 0;
501
1.10k
  if (flags & 8)
502
338
    {
503
338
      strcat (tmp_str, "c");
504
338
      comma = 1;
505
338
    }
506
1.10k
  if (flags & 4)
507
384
    {
508
384
      if (comma) strcat (tmp_str, ",");
509
384
      strcat (tmp_str, "z");
510
384
      comma = 1;
511
384
    }
512
1.10k
  if (flags & 2)
513
479
    {
514
479
      if (comma) strcat (tmp_str, ",");
515
479
      strcat (tmp_str, "s");
516
479
      comma = 1;
517
479
    }
518
1.10k
  if (flags & 1)
519
398
    {
520
398
      if (comma) strcat (tmp_str, ",");
521
398
      strcat (tmp_str, "p");
522
398
    }
523
1.10k
}
524
525
static void
526
unparse_instr (instr_data_s *instr_data, int is_segmented)
527
172k
{
528
172k
  unsigned short datum_value;
529
172k
  unsigned int tabl_datum, datum_class;
530
172k
  int loop, loop_limit;
531
172k
  char out_str[80], tmp_str[25];
532
533
172k
  sprintf (out_str, "%s\t", z8k_table[instr_data->tabl_index].name);
534
535
172k
  loop_limit = z8k_table[instr_data->tabl_index].noperands;
536
498k
  for (loop = 0; loop < loop_limit; loop++)
537
326k
    {
538
326k
      if (loop)
539
156k
  strcat (out_str, ",");
540
541
326k
      tabl_datum = z8k_table[instr_data->tabl_index].arg_info[loop];
542
326k
      datum_class = tabl_datum & CLASS_MASK;
543
326k
      datum_value = tabl_datum & ~CLASS_MASK;
544
545
326k
      switch (datum_class)
546
326k
  {
547
18.9k
  case CLASS_X:
548
18.9k
          sprintf (tmp_str, "0x%0lx(r%ld)", instr_data->address,
549
18.9k
                   instr_data->arg_reg[datum_value]);
550
18.9k
    strcat (out_str, tmp_str);
551
18.9k
    break;
552
4.31k
  case CLASS_BA:
553
4.31k
          if (is_segmented)
554
1.45k
            sprintf (tmp_str, "rr%ld(#0x%lx)", instr_data->arg_reg[datum_value],
555
1.45k
                     instr_data->immediate);
556
2.86k
          else
557
2.86k
            sprintf (tmp_str, "r%ld(#0x%lx)", instr_data->arg_reg[datum_value],
558
2.86k
                     instr_data->immediate);
559
4.31k
    strcat (out_str, tmp_str);
560
4.31k
    break;
561
551
  case CLASS_BX:
562
551
          if (is_segmented)
563
291
            sprintf (tmp_str, "rr%ld(r%ld)", instr_data->arg_reg[datum_value],
564
291
                     instr_data->arg_reg[ARG_RX]);
565
260
          else
566
260
            sprintf (tmp_str, "r%ld(r%ld)", instr_data->arg_reg[datum_value],
567
260
                     instr_data->arg_reg[ARG_RX]);
568
551
    strcat (out_str, tmp_str);
569
551
    break;
570
38.3k
  case CLASS_DISP:
571
38.3k
    sprintf (tmp_str, "0x%0lx", instr_data->displacement);
572
38.3k
    strcat (out_str, tmp_str);
573
38.3k
    break;
574
65.2k
  case CLASS_IMM:
575
65.2k
    if (datum_value == ARG_IMM2)  /* True with EI/DI instructions only.  */
576
461
      {
577
461
        print_intr (tmp_str, instr_data->interrupts);
578
461
        strcat (out_str, tmp_str);
579
461
        break;
580
461
      }
581
64.8k
    sprintf (tmp_str, "#0x%0lx", instr_data->immediate);
582
64.8k
    strcat (out_str, tmp_str);
583
64.8k
    break;
584
5.67k
  case CLASS_CC:
585
5.67k
    sprintf (tmp_str, "%s", codes[instr_data->cond_code]);
586
5.67k
    strcat (out_str, tmp_str);
587
5.67k
    break;
588
1.02k
  case CLASS_CTRL:
589
1.02k
    sprintf (tmp_str, "%s", ctrl_names[instr_data->ctrl_code]);
590
1.02k
    strcat (out_str, tmp_str);
591
1.02k
    break;
592
3.17k
  case CLASS_DA:
593
3.17k
  case CLASS_ADDRESS:
594
3.17k
    sprintf (tmp_str, "0x%0lx", instr_data->address);
595
3.17k
    strcat (out_str, tmp_str);
596
3.17k
    break;
597
31.8k
  case CLASS_IR:
598
31.8k
    if (is_segmented)
599
11.3k
      sprintf (tmp_str, "@rr%ld", instr_data->arg_reg[datum_value]);
600
20.4k
    else
601
20.4k
      sprintf (tmp_str, "@r%ld", instr_data->arg_reg[datum_value]);
602
31.8k
    strcat (out_str, tmp_str);
603
31.8k
    break;
604
2.50k
  case CLASS_IRO:
605
2.50k
          sprintf (tmp_str, "@r%ld", instr_data->arg_reg[datum_value]);
606
2.50k
    strcat (out_str, tmp_str);
607
2.50k
    break;
608
1.10k
  case CLASS_FLAGS:
609
1.10k
    print_flags(tmp_str, instr_data->flags);
610
1.10k
    strcat (out_str, tmp_str);
611
1.10k
    break;
612
85.1k
  case CLASS_REG_BYTE:
613
85.1k
    if (instr_data->arg_reg[datum_value] >= 0x8)
614
29.5k
      sprintf (tmp_str, "rl%ld",
615
29.5k
         instr_data->arg_reg[datum_value] - 0x8);
616
55.5k
    else
617
55.5k
      sprintf (tmp_str, "rh%ld", instr_data->arg_reg[datum_value]);
618
85.1k
    strcat (out_str, tmp_str);
619
85.1k
    break;
620
51.1k
  case CLASS_REG_WORD:
621
51.1k
    sprintf (tmp_str, "r%ld", instr_data->arg_reg[datum_value]);
622
51.1k
    strcat (out_str, tmp_str);
623
51.1k
    break;
624
2.90k
  case CLASS_REG_QUAD:
625
2.90k
    sprintf (tmp_str, "rq%ld", instr_data->arg_reg[datum_value]);
626
2.90k
    strcat (out_str, tmp_str);
627
2.90k
    break;
628
11.9k
  case CLASS_REG_LONG:
629
11.9k
    sprintf (tmp_str, "rr%ld", instr_data->arg_reg[datum_value]);
630
11.9k
    strcat (out_str, tmp_str);
631
11.9k
    break;
632
2.30k
  case CLASS_PR:
633
2.30k
    if (is_segmented)
634
1.16k
      sprintf (tmp_str, "rr%ld", instr_data->arg_reg[datum_value]);
635
1.13k
    else
636
1.13k
      sprintf (tmp_str, "r%ld", instr_data->arg_reg[datum_value]);
637
2.30k
    strcat (out_str, tmp_str);
638
2.30k
    break;
639
0
  default:
640
0
    abort ();
641
0
    break;
642
326k
  }
643
326k
    }
644
645
172k
  strcpy (instr_data->instr_asmsrc, out_str);
646
172k
}