Coverage Report

Created: 2026-10-02 09:53

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/binutils-gdb/opcodes/sparc-dis.c
Line
Count
Source
1
/* Print SPARC instructions.
2
   Copyright (C) 1989-2026 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 program; if not, write to the Free Software
18
   Foundation, Inc., 51 Franklin Street - Fifth Floor, Boston,
19
   MA 02110-1301, USA.  */
20
21
#include "sysdep.h"
22
#include <stdio.h>
23
#include "opcode/sparc.h"
24
#include "dis-asm.h"
25
#include "libiberty.h"
26
#include "opintl.h"
27
28
/* Bitmask of v9 architectures.  */
29
#define MASK_V9 ((1 << SPARC_OPCODE_ARCH_V9) \
30
     | (1 << SPARC_OPCODE_ARCH_V9A) \
31
     | (1 << SPARC_OPCODE_ARCH_V9B) \
32
     | (1 << SPARC_OPCODE_ARCH_V9C) \
33
     | (1 << SPARC_OPCODE_ARCH_V9D) \
34
     | (1 << SPARC_OPCODE_ARCH_V9E) \
35
     | (1 << SPARC_OPCODE_ARCH_V9V) \
36
     | (1 << SPARC_OPCODE_ARCH_V9M) \
37
     | (1 << SPARC_OPCODE_ARCH_M8))
38
/* 1 if INSN is for v9 only.  */
39
#define V9_ONLY_P(insn) (! ((insn)->architecture & ~MASK_V9))
40
/* 1 if INSN is for v9.  */
41
#define V9_P(insn) (((insn)->architecture & MASK_V9) != 0)
42
43
/* The sorted opcode table.  */
44
static const sparc_opcode **sorted_opcodes;
45
46
/* For faster lookup, after insns are sorted they are hashed.  */
47
/* ??? I think there is room for even more improvement.  */
48
49
862
#define HASH_SIZE 256
50
/* It is important that we only look at insn code bits as that is how the
51
   opcode table is hashed.  OPCODE_BITS is a table of valid bits for each
52
   of the main types (0,1,2,3).  */
53
static int opcode_bits[4] = { 0x01c00000, 0x0, 0x01f80000, 0x01f80000 };
54
#define HASH_INSN(INSN) \
55
2.20M
  ((((INSN) >> 24) & 0xc0) | (((INSN) & opcode_bits[((INSN) >> 30) & 3]) >> 19))
56
typedef struct sparc_opcode_hash
57
{
58
  struct sparc_opcode_hash *next;
59
  const sparc_opcode *opcode;
60
} sparc_opcode_hash;
61
62
static sparc_opcode_hash *opcode_hash_table[HASH_SIZE];
63
64
/* Sign-extend a value which is N bits long.  */
65
#define SEX(value, bits) \
66
373k
  ((int) (((value & ((1u << (bits - 1) << 1) - 1))  \
67
373k
     ^ (1u << (bits - 1))) - (1u << (bits - 1))))
68
69
static  char *reg_names[] =
70
{ "g0", "g1", "g2", "g3", "g4", "g5", "g6", "g7",
71
  "o0", "o1", "o2", "o3", "o4", "o5", "sp", "o7",
72
  "l0", "l1", "l2", "l3", "l4", "l5", "l6", "l7",
73
  "i0", "i1", "i2", "i3", "i4", "i5", "fp", "i7",
74
  "f0", "f1", "f2", "f3", "f4", "f5", "f6", "f7",
75
  "f8", "f9", "f10", "f11", "f12", "f13", "f14", "f15",
76
  "f16", "f17", "f18", "f19", "f20", "f21", "f22", "f23",
77
  "f24", "f25", "f26", "f27", "f28", "f29", "f30", "f31",
78
  "f32", "f33", "f34", "f35", "f36", "f37", "f38", "f39",
79
  "f40", "f41", "f42", "f43", "f44", "f45", "f46", "f47",
80
  "f48", "f49", "f50", "f51", "f52", "f53", "f54", "f55",
81
  "f56", "f57", "f58", "f59", "f60", "f61", "f62", "f63",
82
/* psr, wim, tbr, fpsr, cpsr are v8 only.  */
83
  "y", "psr", "wim", "tbr", "pc", "npc", "fpsr", "cpsr"
84
};
85
86
21.1k
#define freg_names  (&reg_names[4 * 8])
87
88
/* These are ordered according to there register number in
89
   rdpr and wrpr insns.  */
90
static char *v9_priv_reg_names[] =
91
{
92
  "tpc", "tnpc", "tstate", "tt", "tick", "tba", "pstate", "tl",
93
  "pil", "cwp", "cansave", "canrestore", "cleanwin", "otherwin",
94
  "wstate", "fq", "gl"
95
  /* "ver" and "pmcdper" - special cased */
96
};
97
98
/* These are ordered according to there register number in
99
   rdhpr and wrhpr insns.  */
100
static char *v9_hpriv_reg_names[] =
101
{
102
  "hpstate", "htstate", "resv2", "hintp", "resv4", "htba", "hver",
103
  "resv7", "resv8", "resv9", "resv10", "resv11", "resv12", "resv13",
104
  "resv14", "resv15", "resv16", "resv17", "resv18", "resv19", "resv20",
105
  "resv21", "resv22", "hmcdper", "hmcddfr", "resv25", "resv26", "hva_mask_nz",
106
  "hstick_offset", "hstick_enable", "resv30", "hstick_cmpr"
107
};
108
109
/* These are ordered according to there register number in
110
   rd and wr insns (-16).  */
111
static char *v9a_asr_reg_names[] =
112
{
113
  "pcr", "pic", "dcr", "gsr", "softint_set", "softint_clear",
114
  "softint", "tick_cmpr", "stick", "stick_cmpr", "cfr",
115
  "pause", "mwait"
116
};
117
118
/* Macros used to extract instruction fields.  Not all fields have
119
   macros defined here, only those which are actually used.  */
120
121
1.86M
#define X_RD(i)      (((i) >> 25) & 0x1f)
122
465k
#define X_RS1(i)     (((i) >> 14) & 0x1f)
123
493
#define X_LDST_I(i)  (((i) >> 13) & 1)
124
25.5k
#define X_ASI(i)     (((i) >> 5) & 0xff)
125
463k
#define X_RS2(i)     (((i) >> 0) & 0x1f)
126
139
#define X_RS3(i)     (((i) >> 9) & 0x1f)
127
2.00k
#define X_IMM(i,n)   (((i) >> 0) & ((1 << (n)) - 1))
128
54.3k
#define X_SIMM(i,n)  SEX (X_IMM ((i), (n)), (n))
129
42.7k
#define X_DISP22(i)  (((i) >> 0) & 0x3fffff)
130
42.7k
#define X_IMM22(i)   X_DISP22 (i)
131
#define X_DISP30(i)  (((i) >> 0) & 0x3fffffff)
132
760
#define X_IMM2(i)    (((i & 0x10) >> 3) | (i & 0x1))
133
134
/* These are for v9.  */
135
#define X_DISP16(i)  (((((i) >> 20) & 3) << 14) | (((i) >> 0) & 0x3fff))
136
#define X_DISP10(i)  (((((i) >> 19) & 3) << 8) | (((i) >> 5) & 0xff))
137
#define X_DISP19(i)  (((i) >> 0) & 0x7ffff)
138
0
#define X_MEMBAR(i)  ((i) & 0x7f)
139
140
/* Here is the union which was used to extract instruction fields
141
   before the shift and mask macros were written.
142
143
   union sparc_insn
144
     {
145
       unsigned long int code;
146
       struct
147
   {
148
     unsigned int anop:2;
149
     #define  op  ldst.anop
150
     unsigned int anrd:5;
151
     #define  rd  ldst.anrd
152
     unsigned int op3:6;
153
     unsigned int anrs1:5;
154
     #define  rs1 ldst.anrs1
155
     unsigned int i:1;
156
     unsigned int anasi:8;
157
     #define  asi ldst.anasi
158
     unsigned int anrs2:5;
159
     #define  rs2 ldst.anrs2
160
     #define  shcnt rs2
161
   } ldst;
162
       struct
163
   {
164
     unsigned int anop:2, anrd:5, op3:6, anrs1:5, i:1;
165
     unsigned int IMM13:13;
166
     #define  imm13 IMM13.IMM13
167
   } IMM13;
168
       struct
169
   {
170
     unsigned int anop:2;
171
     unsigned int a:1;
172
     unsigned int cond:4;
173
     unsigned int op2:3;
174
     unsigned int DISP22:22;
175
     #define  disp22  branch.DISP22
176
     #define  imm22 disp22
177
   } branch;
178
       struct
179
   {
180
     unsigned int anop:2;
181
     unsigned int a:1;
182
     unsigned int z:1;
183
     unsigned int rcond:3;
184
     unsigned int op2:3;
185
     unsigned int DISP16HI:2;
186
     unsigned int p:1;
187
     unsigned int _rs1:5;
188
     unsigned int DISP16LO:14;
189
   } branch16;
190
       struct
191
   {
192
     unsigned int anop:2;
193
     unsigned int adisp30:30;
194
     #define  disp30  call.adisp30
195
   } call;
196
     };  */
197
198
/* Nonzero if INSN is the opcode for a delayed branch.  */
199
200
static int
201
is_delayed_branch (unsigned long insn)
202
17.6k
{
203
17.6k
  sparc_opcode_hash *op;
204
205
319k
  for (op = opcode_hash_table[HASH_INSN (insn)]; op; op = op->next)
206
315k
    {
207
315k
      const sparc_opcode *opcode = op->opcode;
208
209
315k
      if ((opcode->match & insn) == opcode->match
210
36.0k
    && (opcode->lose & insn) == 0)
211
13.3k
  return opcode->flags & F_DELAYED;
212
315k
    }
213
4.37k
  return 0;
214
17.6k
}
215
216
/* extern void qsort (); */
217
218
/* Records current mask of SPARC_OPCODE_ARCH_FOO values, used to pass value
219
   to compare_opcodes.  */
220
static unsigned int current_arch_mask;
221
222
/* Given BFD mach number, return a mask of SPARC_OPCODE_ARCH_FOO values.  */
223
224
static int
225
compute_arch_mask (unsigned long mach)
226
431
{
227
431
  switch (mach)
228
431
    {
229
60
    case 0 :
230
93
    case bfd_mach_sparc :
231
93
      return (SPARC_OPCODE_ARCH_MASK (SPARC_OPCODE_ARCH_V8)
232
93
              | SPARC_OPCODE_ARCH_MASK (SPARC_OPCODE_ARCH_LEON));
233
20
    case bfd_mach_sparc_sparclet :
234
20
      return SPARC_OPCODE_ARCH_MASK (SPARC_OPCODE_ARCH_SPARCLET);
235
12
    case bfd_mach_sparc_sparclite :
236
25
    case bfd_mach_sparc_sparclite_le :
237
      /* sparclites insns are recognized by default (because that's how
238
   they've always been treated, for better or worse).  Kludge this by
239
   indicating generic v8 is also selected.  */
240
25
      return (SPARC_OPCODE_ARCH_MASK (SPARC_OPCODE_ARCH_SPARCLITE)
241
25
        | SPARC_OPCODE_ARCH_MASK (SPARC_OPCODE_ARCH_V8));
242
58
    case bfd_mach_sparc_v8plus :
243
61
    case bfd_mach_sparc_v9 :
244
61
      return SPARC_OPCODE_ARCH_MASK (SPARC_OPCODE_ARCH_V9);
245
23
    case bfd_mach_sparc_v8plusa :
246
25
    case bfd_mach_sparc_v9a :
247
25
      return SPARC_OPCODE_ARCH_MASK (SPARC_OPCODE_ARCH_V9A);
248
16
    case bfd_mach_sparc_v8plusb :
249
19
    case bfd_mach_sparc_v9b :
250
19
      return SPARC_OPCODE_ARCH_MASK (SPARC_OPCODE_ARCH_V9B);
251
0
    case bfd_mach_sparc_v8plusc :
252
1
    case bfd_mach_sparc_v9c :
253
1
      return SPARC_OPCODE_ARCH_MASK (SPARC_OPCODE_ARCH_V9C);
254
3
    case bfd_mach_sparc_v8plusd :
255
24
    case bfd_mach_sparc_v9d :
256
24
      return SPARC_OPCODE_ARCH_MASK (SPARC_OPCODE_ARCH_V9D);
257
0
    case bfd_mach_sparc_v8pluse :
258
31
    case bfd_mach_sparc_v9e :
259
31
      return SPARC_OPCODE_ARCH_MASK (SPARC_OPCODE_ARCH_V9E);
260
9
    case bfd_mach_sparc_v8plusv :
261
25
    case bfd_mach_sparc_v9v :
262
25
      return SPARC_OPCODE_ARCH_MASK (SPARC_OPCODE_ARCH_V9V);
263
8
    case bfd_mach_sparc_v8plusm :
264
8
    case bfd_mach_sparc_v9m :
265
8
      return SPARC_OPCODE_ARCH_MASK (SPARC_OPCODE_ARCH_V9M);
266
71
    case bfd_mach_sparc_v8plusm8 :
267
99
    case bfd_mach_sparc_v9m8 :
268
99
      return SPARC_OPCODE_ARCH_MASK (SPARC_OPCODE_ARCH_M8);
269
431
    }
270
0
  abort ();
271
431
}
272
273
/* Compare opcodes A and B.  */
274
275
static int
276
compare_opcodes (const void * a, const void * b)
277
15.2M
{
278
15.2M
  sparc_opcode *op0 = * (sparc_opcode **) a;
279
15.2M
  sparc_opcode *op1 = * (sparc_opcode **) b;
280
15.2M
  unsigned long int match0 = op0->match, match1 = op1->match;
281
15.2M
  unsigned long int lose0 = op0->lose, lose1 = op1->lose;
282
15.2M
  register unsigned int i;
283
284
  /* If one (and only one) insn isn't supported by the current architecture,
285
     prefer the one that is.  If neither are supported, but they're both for
286
     the same architecture, continue processing.  Otherwise (both unsupported
287
     and for different architectures), prefer lower numbered arch's (fudged
288
     by comparing the bitmasks).  */
289
15.2M
  if (op0->architecture & current_arch_mask)
290
10.3M
    {
291
10.3M
      if (! (op1->architecture & current_arch_mask))
292
272k
  return -1;
293
10.3M
    }
294
4.92M
  else
295
4.92M
    {
296
4.92M
      if (op1->architecture & current_arch_mask)
297
177k
  return 1;
298
4.74M
      else if (op0->architecture != op1->architecture)
299
643k
  return op0->architecture - op1->architecture;
300
4.92M
    }
301
302
  /* If a bit is set in both match and lose, there is something
303
     wrong with the opcode table.  */
304
14.1M
  if (match0 & lose0)
305
0
    {
306
0
      opcodes_error_handler
307
  /* xgettext:c-format */
308
0
  (_("internal error: bad sparc-opcode.h: \"%s\", %#.8lx, %#.8lx\n"),
309
0
   op0->name, match0, lose0);
310
0
      op0->lose &= ~op0->match;
311
0
      lose0 = op0->lose;
312
0
    }
313
314
14.1M
  if (match1 & lose1)
315
0
    {
316
0
      opcodes_error_handler
317
  /* xgettext:c-format */
318
0
  (_("internal error: bad sparc-opcode.h: \"%s\", %#.8lx, %#.8lx\n"),
319
0
   op1->name, match1, lose1);
320
0
      op1->lose &= ~op1->match;
321
0
      lose1 = op1->lose;
322
0
    }
323
324
  /* Because the bits that are variable in one opcode are constant in
325
     another, it is important to order the opcodes in the right order.  */
326
280M
  for (i = 0; i < 32; ++i)
327
279M
    {
328
279M
      unsigned long int x = 1ul << i;
329
279M
      int x0 = (match0 & x) != 0;
330
279M
      int x1 = (match1 & x) != 0;
331
332
279M
      if (x0 != x1)
333
13.1M
  return x1 - x0;
334
279M
    }
335
336
21.4M
  for (i = 0; i < 32; ++i)
337
20.8M
    {
338
20.8M
      unsigned long int x = 1ul << i;
339
20.8M
      int x0 = (lose0 & x) != 0;
340
20.8M
      int x1 = (lose1 & x) != 0;
341
342
20.8M
      if (x0 != x1)
343
458k
  return x1 - x0;
344
20.8M
    }
345
346
  /* They are functionally equal.  So as long as the opcode table is
347
     valid, we can put whichever one first we want, on aesthetic grounds.  */
348
349
  /* Our first aesthetic ground is that aliases defer to real insns.  */
350
543k
  {
351
543k
    int alias_diff = (op0->flags & F_ALIAS) - (op1->flags & F_ALIAS);
352
353
543k
    if (alias_diff != 0)
354
      /* Put the one that isn't an alias first.  */
355
276k
      return alias_diff;
356
543k
  }
357
358
  /* Except for aliases, two "identical" instructions had
359
     better have the same opcode.  This is a sanity check on the table.  */
360
266k
  i = strcmp (op0->name, op1->name);
361
266k
  if (i)
362
67.5k
    {
363
67.5k
      if (op0->flags & F_ALIAS)
364
67.5k
  {
365
67.5k
    if (op0->flags & F_PREFERRED)
366
7.75k
      return -1;
367
59.8k
    if (op1->flags & F_PREFERRED)
368
0
      return 1;
369
370
    /* If they're both aliases, and neither is marked as preferred,
371
       be arbitrary.  */
372
59.8k
    return i;
373
59.8k
  }
374
0
      else
375
0
  opcodes_error_handler
376
    /* xgettext:c-format */
377
0
    (_("internal error: bad sparc-opcode.h: \"%s\" == \"%s\"\n"),
378
0
     op0->name, op1->name);
379
67.5k
    }
380
381
  /* Fewer arguments are preferred.  */
382
198k
  {
383
198k
    int length_diff = strlen (op0->args) - strlen (op1->args);
384
385
198k
    if (length_diff != 0)
386
      /* Put the one with fewer arguments first.  */
387
128k
      return length_diff;
388
198k
  }
389
390
  /* They are, as far as we can tell, identical.  Keep the order in
391
     the sparc_opcodes table.  */
392
70.2k
  if (op0 < op1)
393
70.2k
    return -1;
394
0
  if (op0 > op1)
395
0
    return 1;
396
0
  return 0;
397
0
}
398
399
/* Build a hash table from the opcode table.
400
   OPCODE_TABLE is a sorted list of pointers into the opcode table.  */
401
402
static void
403
build_hash_table (const sparc_opcode **opcode_table,
404
      sparc_opcode_hash **hash_table,
405
      int num_opcodes)
406
431
{
407
431
  int i;
408
431
  int hash_count[HASH_SIZE];
409
431
  static sparc_opcode_hash *hash_buf = NULL;
410
411
  /* Start at the end of the table and work backwards so that each
412
     chain is sorted.  */
413
414
431
  memset (hash_table, 0, HASH_SIZE * sizeof (hash_table[0]));
415
431
  memset (hash_count, 0, HASH_SIZE * sizeof (hash_count[0]));
416
431
  free (hash_buf);
417
431
  hash_buf = xmalloc (sizeof (* hash_buf) * num_opcodes);
418
1.52M
  for (i = num_opcodes - 1; i >= 0; --i)
419
1.52M
    {
420
1.52M
      int hash = HASH_INSN (opcode_table[i]->match);
421
1.52M
      sparc_opcode_hash *h = &hash_buf[i];
422
423
1.52M
      h->next = hash_table[hash];
424
1.52M
      h->opcode = opcode_table[i];
425
1.52M
      hash_table[hash] = h;
426
1.52M
      ++hash_count[hash];
427
1.52M
    }
428
429
#if 0 /* for debugging */
430
  {
431
    int min_count = num_opcodes, max_count = 0;
432
    int total;
433
434
    for (i = 0; i < HASH_SIZE; ++i)
435
      {
436
        if (hash_count[i] < min_count)
437
    min_count = hash_count[i];
438
  if (hash_count[i] > max_count)
439
    max_count = hash_count[i];
440
  total += hash_count[i];
441
      }
442
443
    printf ("Opcode hash table stats: min %d, max %d, ave %f\n",
444
      min_count, max_count, (double) total / HASH_SIZE);
445
  }
446
#endif
447
431
}
448
449
/* Print one instruction from MEMADDR on INFO->STREAM.
450
451
   We suffix the instruction with a comment that gives the absolute
452
   address involved, as well as its symbolic form, if the instruction
453
   is preceded by a findable `sethi' and it either adds an immediate
454
   displacement to that register, or it is an `add' or `or' instruction
455
   on that register.  */
456
457
int
458
print_insn_sparc (bfd_vma memaddr, disassemble_info *info)
459
667k
{
460
667k
  FILE *stream = info->stream;
461
667k
  bfd_byte buffer[4];
462
667k
  unsigned long insn;
463
667k
  sparc_opcode_hash *op;
464
  /* Nonzero of opcode table has been initialized.  */
465
667k
  static int opcodes_initialized = 0;
466
  /* bfd mach number of last call.  */
467
667k
  static unsigned long current_mach = 0;
468
667k
  bfd_vma (*getword) (const void *);
469
470
667k
  if (!opcodes_initialized
471
667k
      || info->mach != current_mach)
472
431
    {
473
431
      int i;
474
475
431
      current_arch_mask = compute_arch_mask (info->mach);
476
477
431
      if (!opcodes_initialized)
478
2
  sorted_opcodes =
479
2
    xmalloc (sparc_num_opcodes * sizeof (sparc_opcode *));
480
      /* Reset the sorted table so we can resort it.  */
481
1.52M
      for (i = 0; i < sparc_num_opcodes; ++i)
482
1.52M
  sorted_opcodes[i] = &sparc_opcodes[i];
483
431
      qsort ((char *) sorted_opcodes, sparc_num_opcodes,
484
431
       sizeof (sorted_opcodes[0]), compare_opcodes);
485
486
431
      build_hash_table (sorted_opcodes, opcode_hash_table, sparc_num_opcodes);
487
431
      current_mach = info->mach;
488
431
      opcodes_initialized = 1;
489
431
    }
490
491
667k
  {
492
667k
    int status =
493
667k
      (*info->read_memory_func) (memaddr, buffer, sizeof (buffer), info);
494
495
667k
    if (status != 0)
496
394
      {
497
394
  (*info->memory_error_func) (status, memaddr, info);
498
394
  return -1;
499
394
      }
500
667k
  }
501
502
  /* On SPARClite variants such as DANlite (sparc86x), instructions
503
     are always big-endian even when the machine is in little-endian mode.  */
504
666k
  if (info->endian == BFD_ENDIAN_BIG || info->mach == bfd_mach_sparc_sparclite)
505
480k
    getword = bfd_getb32;
506
186k
  else
507
186k
    getword = bfd_getl32;
508
509
666k
  insn = getword (buffer);
510
511
666k
  info->insn_info_valid = 1;      /* We do return this info.  */
512
666k
  info->insn_type = dis_nonbranch;    /* Assume non branch insn.  */
513
666k
  info->branch_delay_insns = 0;     /* Assume no delay.  */
514
666k
  info->target = 0;       /* Assume no target known.  */
515
516
15.5M
  for (op = opcode_hash_table[HASH_INSN (insn)]; op; op = op->next)
517
15.3M
    {
518
15.3M
      const sparc_opcode *opcode = op->opcode;
519
520
      /* If the insn isn't supported by the current architecture, skip it.  */
521
15.3M
      if (! (opcode->architecture & current_arch_mask))
522
6.46M
  continue;
523
524
8.85M
      if ((opcode->match & insn) == opcode->match
525
930k
    && (opcode->lose & insn) == 0)
526
463k
  {
527
    /* Nonzero means that we have found an instruction which has
528
       the effect of adding or or'ing the imm13 field to rs1.  */
529
463k
    int imm_added_to_rs1 = 0;
530
463k
    int imm_ored_to_rs1 = 0;
531
532
    /* Nonzero means that we have found a plus sign in the args
533
       field of the opcode table.  */
534
463k
    int found_plus = 0;
535
536
    /* Nonzero means we have an annulled branch.  */
537
463k
    int is_annulled = 0;
538
539
    /* Do we have an `add' or `or' instruction combining an
540
             immediate with rs1?  */
541
463k
    if (opcode->match == 0x80102000) /* or */
542
764
      imm_ored_to_rs1 = 1;
543
463k
    if (opcode->match == 0x80002000) /* add */
544
1.14k
      imm_added_to_rs1 = 1;
545
546
463k
    if (X_RS1 (insn) != X_RD (insn)
547
348k
        && strchr (opcode->args, 'r') != 0)
548
        /* Can't do simple format if source and dest are different.  */
549
259
        continue;
550
463k
    if (X_RS2 (insn) != X_RD (insn)
551
359k
        && strchr (opcode->args, 'O') != 0)
552
        /* Can't do simple format if source and dest are different.  */
553
75
        continue;
554
555
462k
    (*info->fprintf_func) (stream, "%s", opcode->name);
556
557
462k
    {
558
462k
      const char *s;
559
560
462k
      if (opcode->args[0] != ',')
561
434k
        (*info->fprintf_func) (stream, " ");
562
563
1.40M
      for (s = opcode->args; *s != '\0'; ++s)
564
940k
        {
565
1.18M
    while (*s == ',')
566
242k
      {
567
242k
        (*info->fprintf_func) (stream, ",");
568
242k
        ++s;
569
242k
        switch (*s)
570
242k
          {
571
19.8k
          case 'a':
572
19.8k
      (*info->fprintf_func) (stream, "a");
573
19.8k
      is_annulled = 1;
574
19.8k
      ++s;
575
19.8k
      continue;
576
14.1k
          case 'N':
577
14.1k
      (*info->fprintf_func) (stream, "pn");
578
14.1k
      ++s;
579
14.1k
      continue;
580
581
0
          case 'T':
582
0
      (*info->fprintf_func) (stream, "pt");
583
0
      ++s;
584
0
      continue;
585
586
208k
          default:
587
208k
      break;
588
242k
          }
589
242k
      }
590
591
940k
    (*info->fprintf_func) (stream, " ");
592
593
940k
    switch (*s)
594
940k
      {
595
47.1k
      case '+':
596
47.1k
        found_plus = 1;
597
        /* Fall through.  */
598
599
193k
      default:
600
193k
        (*info->fprintf_func) (stream, "%c", *s);
601
193k
        break;
602
603
0
      case '#':
604
0
        (*info->fprintf_func) (stream, "0");
605
0
        break;
606
607
243k
#define reg(n)  (*info->fprintf_func) (stream, "%%%s", reg_names[n])
608
98.2k
      case '1':
609
98.3k
      case 'r':
610
98.3k
        reg (X_RS1 (insn));
611
98.3k
        break;
612
613
32.3k
      case '2':
614
32.4k
      case 'O':
615
32.4k
        reg (X_RS2 (insn));
616
32.4k
        break;
617
618
112k
      case 'd':
619
112k
        reg (X_RD (insn));
620
112k
        break;
621
0
#undef  reg
622
623
12.0k
#define freg(n)   (*info->fprintf_func) (stream, "%%%s", freg_names[n])
624
9.10k
#define fregx(n)  (*info->fprintf_func) (stream, "%%%s", freg_names[((n) & ~1) | (((n) & 1) << 5)])
625
584
      case 'e':
626
584
        freg (X_RS1 (insn));
627
584
        break;
628
1.29k
      case 'v': /* Double/even.  */
629
1.38k
      case 'V': /* Quad/multiple of 4.  */
630
1.44k
                  case ';': /* Double/even multiple of 8 doubles.  */
631
1.44k
        fregx (X_RS1 (insn));
632
1.44k
        break;
633
634
676
      case 'f':
635
676
        freg (X_RS2 (insn));
636
676
        break;
637
689
      case 'B': /* Double/even.  */
638
861
      case 'R': /* Quad/multiple of 4.  */
639
923
                  case ':': /* Double/even multiple of 8 doubles.  */
640
923
        fregx (X_RS2 (insn));
641
923
        break;
642
643
540
      case '4':
644
540
        freg (X_RS3 (insn));
645
540
        break;
646
218
      case '5': /* Double/even.  */
647
218
        fregx (X_RS3 (insn));
648
218
        break;
649
650
10.2k
      case 'g':
651
10.2k
        freg (X_RD (insn));
652
10.2k
        break;
653
3.35k
      case 'H': /* Double/even.  */
654
5.57k
      case 'J': /* Quad/multiple of 4.  */
655
5.69k
      case '}':     /* Double/even.  */
656
5.69k
        fregx (X_RD (insn));
657
5.69k
        break;
658
                    
659
62
                  case '^': /* Double/even multiple of 8 doubles.  */
660
62
                    fregx (X_RD (insn) & ~0x6);
661
62
                    break;
662
                    
663
760
                  case '\'':  /* Double/even in FPCMPSHL.  */
664
760
                    fregx (X_RS2 (insn | 0x11));
665
760
                    break;
666
                    
667
0
#undef  freg
668
0
#undef  fregx
669
670
994
#define creg(n) (*info->fprintf_func) (stream, "%%c%u", (unsigned int) (n))
671
0
      case 'b':
672
0
        creg (X_RS1 (insn));
673
0
        break;
674
675
0
      case 'c':
676
0
        creg (X_RS2 (insn));
677
0
        break;
678
679
994
      case 'D':
680
994
        creg (X_RD (insn));
681
994
        break;
682
0
#undef  creg
683
684
42.6k
      case 'h':
685
42.6k
        (*info->fprintf_func) (stream, "%%hi(%#x)",
686
42.6k
             (unsigned) X_IMM22 (insn) << 10);
687
42.6k
        break;
688
689
53.4k
      case 'i': /* 13 bit immediate.  */
690
53.7k
      case 'I': /* 11 bit immediate.  */
691
54.2k
      case 'j': /* 10 bit immediate.  */
692
54.2k
        {
693
54.2k
          int imm;
694
695
54.2k
          if (*s == 'i')
696
53.4k
            imm = X_SIMM (insn, 13);
697
778
          else if (*s == 'I')
698
271
      imm = X_SIMM (insn, 11);
699
507
          else
700
507
      imm = X_SIMM (insn, 10);
701
702
          /* Check to see whether we have a 1+i, and take
703
       note of that fact.
704
705
       Note: because of the way we sort the table,
706
       we will be matching 1+i rather than i+1,
707
       so it is OK to assume that i is after +,
708
       not before it.  */
709
54.2k
          if (found_plus)
710
27.3k
      imm_added_to_rs1 = 1;
711
712
54.2k
          if (imm <= 9)
713
27.0k
      (*info->fprintf_func) (stream, "%d", imm);
714
27.1k
          else
715
27.1k
      (*info->fprintf_func) (stream, "%#x", imm);
716
54.2k
        }
717
54.2k
        break;
718
719
139
      case ')': /* 5 bit unsigned immediate from RS3.  */
720
139
        (info->fprintf_func) (stream, "%#x", (unsigned int) X_RS3 (insn));
721
139
        break;
722
723
880
      case 'X': /* 5 bit unsigned immediate.  */
724
1.00k
      case 'Y': /* 6 bit unsigned immediate.  */
725
1.00k
        {
726
1.00k
          int imm = X_IMM (insn, *s == 'X' ? 5 : 6);
727
728
1.00k
          if (imm <= 9)
729
319
      (info->fprintf_func) (stream, "%d", imm);
730
682
          else
731
682
      (info->fprintf_func) (stream, "%#x", (unsigned) imm);
732
1.00k
        }
733
1.00k
        break;
734
735
0
      case '3':
736
0
        (info->fprintf_func) (stream, "%ld", X_IMM (insn, 3));
737
0
        break;
738
739
0
      case 'K':
740
0
        {
741
0
          int mask = X_MEMBAR (insn);
742
0
          int bit = 0x40, printed_one = 0;
743
0
          const char *name;
744
745
0
          if (mask == 0)
746
0
      (info->fprintf_func) (stream, "0");
747
0
          else
748
0
      while (bit)
749
0
        {
750
0
          if (mask & bit)
751
0
            {
752
0
        if (printed_one)
753
0
          (info->fprintf_func) (stream, "|");
754
0
        name = sparc_decode_membar (bit);
755
0
        (info->fprintf_func) (stream, "%s", name);
756
0
        printed_one = 1;
757
0
            }
758
0
          bit >>= 1;
759
0
        }
760
0
          break;
761
880
        }
762
763
1.05k
      case '=':
764
1.05k
        info->target = memaddr + SEX (X_DISP10 (insn), 10) * 4;
765
1.05k
        (*info->print_address_func) (info->target, info);
766
1.05k
        break;
767
768
2.98k
      case 'k':
769
2.98k
        info->target = memaddr + SEX (X_DISP16 (insn), 16) * 4;
770
2.98k
        (*info->print_address_func) (info->target, info);
771
2.98k
        break;
772
773
22.3k
      case 'G':
774
22.3k
        info->target = memaddr + SEX (X_DISP19 (insn), 19) * 4;
775
22.3k
        (*info->print_address_func) (info->target, info);
776
22.3k
        break;
777
778
1.66k
      case '6':
779
3.54k
      case '7':
780
5.71k
      case '8':
781
8.19k
      case '9':
782
8.19k
        (*info->fprintf_func) (stream, "%%fcc%c", *s - '6' + '0');
783
8.19k
        break;
784
785
6.74k
      case 'z':
786
6.74k
        (*info->fprintf_func) (stream, "%%icc");
787
6.74k
        break;
788
789
8.05k
      case 'Z':
790
8.05k
        (*info->fprintf_func) (stream, "%%xcc");
791
8.05k
        break;
792
793
84
      case 'E':
794
84
        (*info->fprintf_func) (stream, "%%ccr");
795
84
        break;
796
797
248
      case 's':
798
248
        (*info->fprintf_func) (stream, "%%fprs");
799
248
        break;
800
801
108
      case '{':
802
108
        (*info->fprintf_func) (stream, "%%mcdper");
803
108
        break;
804
805
0
                  case '&':
806
0
                    (*info->fprintf_func) (stream, "%%entropy");
807
0
                    break;
808
809
14.4k
      case 'o':
810
14.4k
        (*info->fprintf_func) (stream, "%%asi");
811
14.4k
        break;
812
813
65
      case 'W':
814
65
        (*info->fprintf_func) (stream, "%%tick");
815
65
        break;
816
817
46
      case 'P':
818
46
        (*info->fprintf_func) (stream, "%%pc");
819
46
        break;
820
821
92
      case '?':
822
92
        if (X_RS1 (insn) == 31)
823
0
          (*info->fprintf_func) (stream, "%%ver");
824
92
        else if (X_RS1 (insn) == 23)
825
0
          (*info->fprintf_func) (stream, "%%pmcdper");
826
92
        else if ((unsigned) X_RS1 (insn) < 17)
827
92
          (*info->fprintf_func) (stream, "%%%s",
828
92
               v9_priv_reg_names[X_RS1 (insn)]);
829
0
        else
830
0
          (*info->fprintf_func) (stream, "%%reserved");
831
92
        break;
832
833
1.28k
      case '!':
834
1.28k
                    if (X_RD (insn) == 31)
835
24
                      (*info->fprintf_func) (stream, "%%ver");
836
1.26k
        else if (X_RD (insn) == 23)
837
37
          (*info->fprintf_func) (stream, "%%pmcdper");
838
1.22k
        else if ((unsigned) X_RD (insn) < 17)
839
1.22k
          (*info->fprintf_func) (stream, "%%%s",
840
1.22k
               v9_priv_reg_names[X_RD (insn)]);
841
0
        else
842
0
          (*info->fprintf_func) (stream, "%%reserved");
843
1.28k
        break;
844
845
48
      case '$':
846
48
        if ((unsigned) X_RS1 (insn) < 32)
847
48
          (*info->fprintf_func) (stream, "%%%s",
848
48
               v9_hpriv_reg_names[X_RS1 (insn)]);
849
0
        else
850
0
          (*info->fprintf_func) (stream, "%%reserved");
851
48
        break;
852
853
156
      case '%':
854
156
        if ((unsigned) X_RD (insn) < 32)
855
156
          (*info->fprintf_func) (stream, "%%%s",
856
156
               v9_hpriv_reg_names[X_RD (insn)]);
857
0
        else
858
0
          (*info->fprintf_func) (stream, "%%reserved");
859
156
        break;
860
861
63
      case '/':
862
63
        if (X_RS1 (insn) < 16 || X_RS1 (insn) > 28)
863
0
          (*info->fprintf_func) (stream, "%%reserved");
864
63
        else
865
63
          (*info->fprintf_func) (stream, "%%%s",
866
63
               v9a_asr_reg_names[X_RS1 (insn)-16]);
867
63
        break;
868
869
818
      case '_':
870
818
        if (X_RD (insn) < 16 || X_RD (insn) > 28)
871
0
          (*info->fprintf_func) (stream, "%%reserved");
872
818
        else
873
818
          (*info->fprintf_func) (stream, "%%%s",
874
818
               v9a_asr_reg_names[X_RD (insn)-16]);
875
818
        break;
876
877
4.05k
      case '*':
878
4.05k
        {
879
4.05k
          const char *name = sparc_decode_prefetch (X_RD (insn));
880
881
4.05k
          if (name)
882
2.73k
      (*info->fprintf_func) (stream, "%s", name);
883
1.32k
          else
884
1.32k
      (*info->fprintf_func) (stream, "%ld", X_RD (insn));
885
4.05k
          break;
886
5.71k
        }
887
888
40
      case 'M':
889
40
        (*info->fprintf_func) (stream, "%%asr%ld", X_RS1 (insn));
890
40
        break;
891
892
690
      case 'm':
893
690
        (*info->fprintf_func) (stream, "%%asr%ld", X_RD (insn));
894
690
        break;
895
896
117k
      case 'L':
897
117k
        info->target = memaddr + SEX (X_DISP30 (insn), 30) * 4;
898
117k
        (*info->print_address_func) (info->target, info);
899
117k
        break;
900
901
142k
      case 'n':
902
142k
        (*info->fprintf_func)
903
142k
          (stream, "%#x", SEX (X_DISP22 (insn), 22));
904
142k
        break;
905
906
32.7k
      case 'l':
907
32.7k
        info->target = memaddr + SEX (X_DISP22 (insn), 22) * 4;
908
32.7k
        (*info->print_address_func) (info->target, info);
909
32.7k
        break;
910
911
15.8k
      case 'A':
912
15.8k
        {
913
15.8k
          const char *name = sparc_decode_asi (X_ASI (insn));
914
915
15.8k
          if (name)
916
6.55k
      (*info->fprintf_func) (stream, "%s", name);
917
9.24k
          else
918
9.24k
      (*info->fprintf_func) (stream, "(%ld)", X_ASI (insn));
919
15.8k
          break;
920
5.71k
        }
921
922
451
      case 'C':
923
451
        (*info->fprintf_func) (stream, "%%csr");
924
451
        break;
925
926
142
      case 'F':
927
142
        (*info->fprintf_func) (stream, "%%fsr");
928
142
        break;
929
930
105
      case '(':
931
105
        (*info->fprintf_func) (stream, "%%efsr");
932
105
        break;
933
934
57
      case 'p':
935
57
        (*info->fprintf_func) (stream, "%%psr");
936
57
        break;
937
938
644
      case 'q':
939
644
        (*info->fprintf_func) (stream, "%%fq");
940
644
        break;
941
942
252
      case 'Q':
943
252
        (*info->fprintf_func) (stream, "%%cq");
944
252
        break;
945
946
228
      case 't':
947
228
        (*info->fprintf_func) (stream, "%%tbr");
948
228
        break;
949
950
46
      case 'w':
951
46
        (*info->fprintf_func) (stream, "%%wim");
952
46
        break;
953
954
493
      case 'x':
955
493
        (*info->fprintf_func) (stream, "%ld",
956
493
             ((X_LDST_I (insn) << 8)
957
493
              + X_ASI (insn)));
958
493
        break;
959
960
760
                  case '|': /* 2-bit immediate  */
961
760
                    (*info->fprintf_func) (stream, "%ld", X_IMM2 (insn));
962
760
                    break;
963
964
200
      case 'y':
965
200
        (*info->fprintf_func) (stream, "%%y");
966
200
        break;
967
968
117
      case 'u':
969
206
      case 'U':
970
206
        {
971
206
          int val = *s == 'U' ? X_RS1 (insn) : X_RD (insn);
972
206
          const char *name = sparc_decode_sparclet_cpreg (val);
973
974
206
          if (name)
975
117
      (*info->fprintf_func) (stream, "%s", name);
976
89
          else
977
89
      (*info->fprintf_func) (stream, "%%cpreg(%d)", val);
978
206
          break;
979
117
        }
980
940k
      }
981
940k
        }
982
462k
    }
983
984
    /* If we are adding or or'ing something to rs1, then
985
       check to see whether the previous instruction was
986
       a sethi to the same register as in the sethi.
987
       If so, attempt to print the result of the add or
988
       or (in this context add and or do the same thing)
989
       and its symbolic value.  */
990
462k
    if (imm_ored_to_rs1 || imm_added_to_rs1)
991
29.2k
      {
992
29.2k
        unsigned long prev_insn;
993
29.2k
        int errcode;
994
995
29.2k
        if (memaddr >= 4)
996
29.2k
    errcode =
997
29.2k
      (*info->read_memory_func)
998
29.2k
      (memaddr - 4, buffer, sizeof (buffer), info);
999
1
        else
1000
1
    errcode = 1;
1001
1002
29.2k
        prev_insn = getword (buffer);
1003
1004
29.2k
        if (errcode == 0)
1005
17.6k
    {
1006
      /* If it is a delayed branch, we need to look at the
1007
         instruction before the delayed branch.  This handles
1008
         sequences such as:
1009
1010
         sethi %o1, %hi(_foo), %o1
1011
         call _printf
1012
         or %o1, %lo(_foo), %o1  */
1013
1014
17.6k
      if (is_delayed_branch (prev_insn))
1015
5.72k
        {
1016
5.72k
          if (memaddr >= 8)
1017
5.72k
      errcode = (*info->read_memory_func)
1018
5.72k
        (memaddr - 8, buffer, sizeof (buffer), info);
1019
1
          else
1020
1
      errcode = 1;
1021
1022
5.72k
          prev_insn = getword (buffer);
1023
5.72k
        }
1024
17.6k
    }
1025
1026
        /* If there was a problem reading memory, then assume
1027
     the previous instruction was not sethi.  */
1028
29.2k
        if (errcode == 0)
1029
17.6k
    {
1030
      /* Is it sethi to the same register?  */
1031
17.6k
      if ((prev_insn & 0xc1c00000) == 0x01000000
1032
1.18k
          && X_RD (prev_insn) == X_RS1 (insn))
1033
129
        {
1034
129
          (*info->fprintf_func) (stream, "\t! ");
1035
129
          info->target = (unsigned) X_IMM22 (prev_insn) << 10;
1036
129
          if (imm_added_to_rs1)
1037
85
      info->target += X_SIMM (insn, 13);
1038
44
          else
1039
44
      info->target |= X_SIMM (insn, 13);
1040
129
          (*info->print_address_func) (info->target, info);
1041
129
          info->insn_type = dis_dref;
1042
129
          info->data_size = 4;  /* FIXME!!! */
1043
129
        }
1044
17.6k
    }
1045
29.2k
      }
1046
1047
462k
    if (opcode->flags & (F_UNBR|F_CONDBR|F_JSR))
1048
176k
      {
1049
        /* FIXME -- check is_annulled flag.  */
1050
176k
        (void) is_annulled;
1051
176k
        if (opcode->flags & F_UNBR)
1052
8.47k
    info->insn_type = dis_branch;
1053
176k
        if (opcode->flags & F_CONDBR)
1054
50.1k
    info->insn_type = dis_condbranch;
1055
176k
        if (opcode->flags & F_JSR)
1056
117k
    info->insn_type = dis_jsr;
1057
176k
        if (opcode->flags & F_DELAYED)
1058
175k
    info->branch_delay_insns = 1;
1059
176k
      }
1060
1061
462k
    return sizeof (buffer);
1062
462k
  }
1063
8.85M
    }
1064
1065
203k
  info->insn_type = dis_noninsn;  /* Mark as non-valid instruction.  */
1066
  (*info->fprintf_func) (stream, _("unknown"));
1067
203k
  return sizeof (buffer);
1068
666k
}