Coverage Report

Created: 2026-07-12 09:22

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/binutils-gdb/opcodes/i386-dis.c
Line
Count
Source
1
/* Print i386 instructions for GDB, the GNU debugger.
2
   Copyright (C) 1988-2026 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
22
/* 80386 instruction printer by Pace Willisson (pace@prep.ai.mit.edu)
23
   July 1988
24
    modified by John Hassey (hassey@dg-rtp.dg.com)
25
    x86-64 support added by Jan Hubicka (jh@suse.cz)
26
    VIA PadLock support by Michal Ludvig (mludvig@suse.cz).  */
27
28
/* The main tables describing the instructions is essentially a copy
29
   of the "Opcode Map" chapter (Appendix A) of the Intel 80386
30
   Programmers Manual.  Usually, there is a capital letter, followed
31
   by a small letter.  The capital letter tell the addressing mode,
32
   and the small letter tells about the operand size.  Refer to
33
   the Intel manual for details.  */
34
35
#include "sysdep.h"
36
#include "disassemble.h"
37
#include "opintl.h"
38
#include "opcode/i386.h"
39
#include "libiberty.h"
40
#include "safe-ctype.h"
41
42
typedef struct instr_info instr_info;
43
44
static bool dofloat (instr_info *, int);
45
static int putop (instr_info *, const char *, int);
46
static void oappend_with_style (instr_info *, const char *,
47
        enum disassembler_style);
48
49
static bool OP_E (instr_info *, int, int);
50
static bool OP_E_memory (instr_info *, int, int);
51
static bool OP_indirE (instr_info *, int, int);
52
static bool OP_G (instr_info *, int, int);
53
static bool OP_ST (instr_info *, int, int);
54
static bool OP_STi (instr_info *, int, int);
55
static bool OP_Skip_MODRM (instr_info *, int, int);
56
static bool OP_REG (instr_info *, int, int);
57
static bool OP_IMREG (instr_info *, int, int);
58
static bool OP_I (instr_info *, int, int);
59
static bool OP_I64 (instr_info *, int, int);
60
static bool OP_sI (instr_info *, int, int);
61
static bool OP_J (instr_info *, int, int);
62
static bool OP_SEG (instr_info *, int, int);
63
static bool OP_DIR (instr_info *, int, int);
64
static bool OP_OFF (instr_info *, int, int);
65
static bool OP_OFF64 (instr_info *, int, int);
66
static bool OP_ESreg (instr_info *, int, int);
67
static bool OP_DSreg (instr_info *, int, int);
68
static bool OP_C (instr_info *, int, int);
69
static bool OP_D (instr_info *, int, int);
70
static bool OP_T (instr_info *, int, int);
71
static bool OP_MMX (instr_info *, int, int);
72
static bool OP_XMM (instr_info *, int, int);
73
static bool OP_EM (instr_info *, int, int);
74
static bool OP_EX (instr_info *, int, int);
75
static bool OP_EMC (instr_info *, int,int);
76
static bool OP_MXC (instr_info *, int,int);
77
static bool OP_R (instr_info *, int, int);
78
static bool OP_M (instr_info *, int, int);
79
static bool OP_VEX (instr_info *, int, int);
80
static bool OP_VexR (instr_info *, int, int);
81
static bool OP_VexW (instr_info *, int, int);
82
static bool OP_Rounding (instr_info *, int, int);
83
static bool OP_REG_VexI4 (instr_info *, int, int);
84
static bool OP_VexI4 (instr_info *, int, int);
85
static bool OP_0f07 (instr_info *, int, int);
86
static bool OP_Monitor (instr_info *, int, int);
87
static bool OP_Mwait (instr_info *, int, int);
88
89
static bool PCLMUL_Fixup (instr_info *, int, int);
90
static bool VPCMP_Fixup (instr_info *, int, int);
91
static bool VPCOM_Fixup (instr_info *, int, int);
92
static bool NOP_Fixup (instr_info *, int, int);
93
static bool MONTMUL_Fixup (instr_info *, int, int);
94
static bool OP_3DNowSuffix (instr_info *, int, int);
95
static bool CMP_Fixup (instr_info *, int, int);
96
static bool REP_Fixup (instr_info *, int, int);
97
static bool SEP_Fixup (instr_info *, int, int);
98
static bool BND_Fixup (instr_info *, int, int);
99
static bool NOTRACK_Fixup (instr_info *, int, int);
100
static bool HLE_Fixup1 (instr_info *, int, int);
101
static bool HLE_Fixup2 (instr_info *, int, int);
102
static bool HLE_Fixup3 (instr_info *, int, int);
103
static bool CMPXCHG8B_Fixup (instr_info *, int, int);
104
static bool XMM_Fixup (instr_info *, int, int);
105
static bool FXSAVE_Fixup (instr_info *, int, int);
106
static bool MOVSXD_Fixup (instr_info *, int, int);
107
static bool DistinctDest_Fixup (instr_info *, int, int);
108
static bool PREFETCHI_Fixup (instr_info *, int, int);
109
static bool PUSH2_POP2_Fixup (instr_info *, int, int);
110
static bool JMPABS_Fixup (instr_info *, int, int);
111
static bool CFCMOV_Fixup (instr_info *, int, int);
112
113
static void ATTRIBUTE_PRINTF_3 i386_dis_printf (const disassemble_info *,
114
            enum disassembler_style,
115
            const char *, ...);
116
117
/* This character is used to encode style information within the output
118
   buffers.  See oappend_insert_style for more details.  */
119
201M
#define STYLE_MARKER_CHAR '\002'
120
121
/* The maximum operand buffer size.  */
122
#define MAX_OPERAND_BUFFER_SIZE 128
123
124
/* The comment buffer size.  */
125
0
#define COMMENT_BUFFER_SIZE 128
126
127
enum address_mode
128
{
129
  mode_16bit,
130
  mode_32bit,
131
  mode_64bit
132
};
133
134
static const char *prefix_name (enum address_mode, uint8_t, int);
135
136
enum x86_64_isa
137
{
138
  amd64 = 1,
139
  intel64
140
};
141
142
enum evex_type
143
{
144
  evex_default = 0,
145
  evex_from_legacy,
146
  evex_from_vex,
147
};
148
149
struct instr_info
150
{
151
  enum address_mode address_mode;
152
153
  /* Flags for the prefixes for the current instruction.  See below.  */
154
  int prefixes;
155
156
  /* REX prefix the current instruction.  See below.  */
157
  uint8_t rex;
158
  /* Bits of REX we've already used.  */
159
  uint8_t rex_used;
160
161
  /* Record W R4 X4 B4 bits for rex2.  */
162
  unsigned char rex2;
163
  /* Bits of rex2 we've already used.  */
164
  unsigned char rex2_used;
165
  unsigned char rex2_payload;
166
167
  bool need_modrm;
168
  unsigned char condition_code;
169
  unsigned char need_vex;
170
  bool has_sib;
171
172
  /* Flags for ins->prefixes which we somehow handled when printing the
173
     current instruction.  */
174
  int used_prefixes;
175
176
  /* Flags for EVEX bits which we somehow handled when printing the
177
     current instruction.  */
178
  int evex_used;
179
180
  char obuf[MAX_OPERAND_BUFFER_SIZE];
181
  char *obufp;
182
  char *cbufp;
183
  char *mnemonicendp;
184
  const uint8_t *start_codep;
185
  uint8_t *codep;
186
  const uint8_t *end_codep;
187
  unsigned char nr_prefixes;
188
  signed char last_lock_prefix;
189
  signed char last_repz_prefix;
190
  signed char last_repnz_prefix;
191
  signed char last_data_prefix;
192
  signed char last_addr_prefix;
193
  signed char last_rex_prefix;
194
  signed char last_rex2_prefix;
195
  signed char last_seg_prefix;
196
  signed char fwait_prefix;
197
  /* The active segment register prefix.  */
198
  unsigned char active_seg_prefix;
199
200
9.94M
#define MAX_CODE_LENGTH 15
201
  /* We can up to 14 ins->prefixes since the maximum instruction length is
202
     15bytes.  */
203
  uint8_t all_prefixes[MAX_CODE_LENGTH - 1];
204
  disassemble_info *info;
205
206
  struct
207
  {
208
    int mod;
209
    int reg;
210
    int rm;
211
  }
212
  modrm;
213
214
  struct
215
  {
216
    int scale;
217
    int index;
218
    int base;
219
  }
220
  sib;
221
222
  struct
223
  {
224
    int register_specifier;
225
    int length;
226
    int prefix;
227
    int mask_register_specifier;
228
    int scc;
229
    int ll;
230
    bool w;
231
    bool evex;
232
    bool v;
233
    bool zeroing;
234
    bool b;
235
    bool no_broadcast;
236
    bool nf;
237
  }
238
  vex;
239
240
/* For APX EVEX-promoted prefix, EVEX.ND shares the same bit as vex.b.  */
241
13.1M
#define nd b
242
243
  enum evex_type evex_type;
244
245
  /* Remember if the current op is a jump instruction.  */
246
  bool op_is_jump;
247
248
  bool two_source_ops;
249
250
  /* Record whether EVEX masking is used incorrectly.  */
251
  bool illegal_masking;
252
253
  /* Record whether the modrm byte has been skipped.  */
254
  bool has_skipped_modrm;
255
256
  unsigned char op_ad;
257
  signed char op_index[MAX_OPERANDS];
258
  bool op_riprel[MAX_OPERANDS];
259
  char *op_out[MAX_OPERANDS];
260
  char *cm_out[MAX_OPERANDS];
261
  bfd_vma op_address[MAX_OPERANDS];
262
  bfd_vma start_pc;
263
264
  /* On the 386's of 1988, the maximum length of an instruction is 15 bytes.
265
   *   (see topic "Redundant ins->prefixes" in the "Differences from 8086"
266
   *   section of the "Virtual 8086 Mode" chapter.)
267
   * 'pc' should be the address of this instruction, it will
268
   *   be used to print the target address if this is a relative jump or call
269
   * The function returns the length of this instruction in bytes.
270
   */
271
  char intel_syntax;
272
  bool intel_mnemonic;
273
  char open_char;
274
  char close_char;
275
  char separator_char;
276
  char scale_char;
277
278
  bool annotate_immediates;
279
280
  enum x86_64_isa isa64;
281
};
282
283
struct dis_private {
284
  bfd_vma insn_start;
285
  int orig_sizeflag;
286
287
  /* Indexes first byte not fetched.  */
288
  unsigned int fetched;
289
  uint8_t the_buffer[2 * MAX_CODE_LENGTH - 1];
290
};
291
292
/* Mark parts used in the REX prefix.  When we are testing for
293
   empty prefix (for 8bit register REX extension), just mask it
294
   out.  Otherwise test for REX bit is excuse for existence of REX
295
   only in case value is nonzero.  */
296
#define USED_REX(value)         \
297
6.31M
  {             \
298
6.31M
    if (value)           \
299
6.31M
      {             \
300
5.97M
  if (ins->rex & value)       \
301
5.97M
    ins->rex_used |= (value) | REX_OPCODE; \
302
5.97M
  if (ins->rex2 & value)       \
303
5.97M
    {           \
304
75.3k
      ins->rex2_used |= (value);      \
305
75.3k
      ins->rex_used |= REX_OPCODE;   \
306
75.3k
    }            \
307
5.97M
      }              \
308
6.31M
    else            \
309
6.31M
      ins->rex_used |= REX_OPCODE;     \
310
6.31M
  }
311
312
313
47.7k
#define EVEX_b_used 1
314
120k
#define EVEX_len_used 2
315
316
317
/* {rex2} is not printed when the REX2_SPECIAL is set.  */
318
30.6k
#define REX2_SPECIAL 16
319
320
/* Flags stored in PREFIXES.  */
321
410k
#define PREFIX_REPZ 1
322
579k
#define PREFIX_REPNZ 2
323
5.16M
#define PREFIX_CS 4
324
4.36M
#define PREFIX_SS 8
325
5.10M
#define PREFIX_DS 0x10
326
4.38M
#define PREFIX_ES 0x20
327
4.50M
#define PREFIX_FS 0x40
328
4.47M
#define PREFIX_GS 0x80
329
1.31M
#define PREFIX_LOCK 0x100
330
11.1M
#define PREFIX_DATA 0x200
331
11.2M
#define PREFIX_ADDR 0x400
332
4.56M
#define PREFIX_FWAIT 0x800
333
8.73M
#define PREFIX_REX2 0x1000
334
30.1k
#define PREFIX_NP_OR_DATA 0x2000
335
21.7k
#define NO_PREFIX   0x4000
336
337
/* Make sure that bytes from INFO->PRIVATE_DATA->BUFFER (inclusive)
338
   to ADDR (exclusive) are valid.  Returns true for success, false
339
   on error.  */
340
static bool
341
fetch_code (struct disassemble_info *info, const uint8_t *until)
342
14.9M
{
343
14.9M
  int status = -1;
344
14.9M
  struct dis_private *priv = info->private_data;
345
14.9M
  bfd_vma start = priv->insn_start + priv->fetched;
346
14.9M
  uint8_t *fetch_end = priv->the_buffer + priv->fetched;
347
14.9M
  ptrdiff_t needed = until - fetch_end;
348
349
14.9M
  if (needed <= 0)
350
4.50M
    return true;
351
352
10.4M
  if (priv->fetched + (size_t) needed <= ARRAY_SIZE (priv->the_buffer))
353
10.4M
    status = (*info->read_memory_func) (start, fetch_end, needed, info);
354
10.4M
  if (status != 0)
355
48.8k
    {
356
      /* If we did manage to read at least one byte, then
357
   print_insn_i386 will do something sensible.  Otherwise, print
358
   an error.  We do that here because this is where we know
359
   STATUS.  */
360
48.8k
      if (!priv->fetched)
361
799
  (*info->memory_error_func) (status, start, info);
362
48.8k
      return false;
363
48.8k
    }
364
365
10.3M
  priv->fetched += needed;
366
10.3M
  return true;
367
10.4M
}
368
369
static bool
370
fetch_modrm (instr_info *ins)
371
2.91M
{
372
2.91M
  if (!fetch_code (ins->info, ins->codep + 1))
373
6.67k
    return false;
374
375
2.90M
  ins->modrm.mod = (*ins->codep >> 6) & 3;
376
2.90M
  ins->modrm.reg = (*ins->codep >> 3) & 7;
377
2.90M
  ins->modrm.rm = *ins->codep & 7;
378
379
2.90M
  return true;
380
2.91M
}
381
382
static int
383
fetch_error (const instr_info *ins)
384
49.8k
{
385
  /* Getting here means we tried for data but didn't get it.  That
386
     means we have an incomplete instruction of some sort.  Just
387
     print the first byte as a prefix or a .byte pseudo-op.  */
388
49.8k
  const struct dis_private *priv = ins->info->private_data;
389
49.8k
  const char *name = NULL;
390
391
49.8k
  if (ins->codep <= priv->the_buffer)
392
799
    return -1;
393
394
49.0k
  if (ins->prefixes || ins->fwait_prefix >= 0 || (ins->rex & REX_OPCODE))
395
32.8k
    name = prefix_name (ins->address_mode, priv->the_buffer[0],
396
32.8k
      priv->orig_sizeflag);
397
49.0k
  if (name != NULL)
398
32.5k
    i386_dis_printf (ins->info, dis_style_mnemonic, "%s", name);
399
16.5k
  else
400
16.5k
    {
401
      /* Just print the first byte as a .byte instruction.  */
402
16.5k
      i386_dis_printf (ins->info, dis_style_assembler_directive, ".byte ");
403
16.5k
      i386_dis_printf (ins->info, dis_style_immediate, "%#x",
404
16.5k
           (unsigned int) priv->the_buffer[0]);
405
16.5k
    }
406
407
49.0k
  return 1;
408
49.8k
}
409
410
/* Possible values for prefix requirement.  */
411
8.78M
#define PREFIX_IGNORED_SHIFT  16
412
13.1k
#define PREFIX_IGNORED_REPZ (PREFIX_REPZ << PREFIX_IGNORED_SHIFT)
413
13.1k
#define PREFIX_IGNORED_REPNZ  (PREFIX_REPNZ << PREFIX_IGNORED_SHIFT)
414
13.1k
#define PREFIX_IGNORED_DATA (PREFIX_DATA << PREFIX_IGNORED_SHIFT)
415
#define PREFIX_IGNORED_ADDR (PREFIX_ADDR << PREFIX_IGNORED_SHIFT)
416
#define PREFIX_IGNORED_LOCK (PREFIX_LOCK << PREFIX_IGNORED_SHIFT)
417
8.73M
#define PREFIX_REX2_ILLEGAL (PREFIX_REX2 << PREFIX_IGNORED_SHIFT)
418
419
/* Opcode prefixes.  */
420
55.6k
#define PREFIX_OPCODE   (PREFIX_REPZ \
421
55.6k
         | PREFIX_REPNZ \
422
55.6k
         | PREFIX_DATA)
423
424
/* Prefixes ignored.  */
425
13.1k
#define PREFIX_IGNORED    (PREFIX_IGNORED_REPZ \
426
13.1k
         | PREFIX_IGNORED_REPNZ \
427
13.1k
         | PREFIX_IGNORED_DATA)
428
429
#define XX { NULL, 0 }
430
#define Bad_Opcode NULL, { { NULL, 0 } }, 0
431
432
#define Eb { OP_E, b_mode }
433
#define Ebnd { OP_E, bnd_mode }
434
#define EbS { OP_E, b_swap_mode }
435
#define EbndS { OP_E, bnd_swap_mode }
436
#define Ev { OP_E, v_mode }
437
#define Eva { OP_E, va_mode }
438
#define Ev_bnd { OP_E, v_bnd_mode }
439
#define EvS { OP_E, v_swap_mode }
440
#define Ed { OP_E, d_mode }
441
#define Edq { OP_E, dq_mode }
442
#define Edb { OP_E, db_mode }
443
#define Edw { OP_E, dw_mode }
444
#define Eq { OP_E, q_mode }
445
#define indirEv { OP_indirE, indir_v_mode }
446
#define indirEp { OP_indirE, f_mode }
447
#define stackEv { OP_E, stack_v_mode }
448
#define Em { OP_E, m_mode }
449
#define Ew { OP_E, w_mode }
450
#define M { OP_M, 0 }   /* lea, lgdt, etc. */
451
#define Ma { OP_M, a_mode }
452
#define Mb { OP_M, b_mode }
453
#define Md { OP_M, d_mode }
454
#define Mdq { OP_M, dq_mode }
455
#define Mo { OP_M, o_mode }
456
#define Mp { OP_M, f_mode }   /* 32 or 48 bit memory operand for LDS, LES etc */
457
#define Mq { OP_M, q_mode }
458
#define Mv { OP_M, v_mode }
459
#define Mv_bnd { OP_M, v_bndmk_mode }
460
#define Mw { OP_M, w_mode }
461
#define Mx { OP_M, x_mode }
462
#define Mxmm { OP_M, xmm_mode }
463
#define Mymm { OP_M, ymm_mode }
464
#define Gb { OP_G, b_mode }
465
#define Gbnd { OP_G, bnd_mode }
466
#define Gv { OP_G, v_mode }
467
#define Gd { OP_G, d_mode }
468
#define Gdq { OP_G, dq_mode }
469
#define Gq { OP_G, q_mode }
470
#define Gm { OP_G, m_mode }
471
#define Gva { OP_G, va_mode }
472
#define Gw { OP_G, w_mode }
473
#define Ib { OP_I, b_mode }
474
#define sIb { OP_sI, b_mode } /* sign extened byte */
475
#define sIbT { OP_sI, b_T_mode } /* sign extened byte like 'T' */
476
#define Iv { OP_I, v_mode }
477
#define sIv { OP_sI, v_mode }
478
#define Iv64 { OP_I64, v_mode }
479
#define Id { OP_I, d_mode }
480
#define Iw { OP_I, w_mode }
481
#define I1 { OP_I, const_1_mode }
482
#define Jb { OP_J, b_mode }
483
#define Jv { OP_J, v_mode }
484
#define Jdqw { OP_J, dqw_mode }
485
#define Cm { OP_C, m_mode }
486
#define Dm { OP_D, m_mode }
487
#define Td { OP_T, d_mode }
488
#define Skip_MODRM { OP_Skip_MODRM, 0 }
489
490
#define RMeAX { OP_REG, eAX_reg }
491
#define RMeBX { OP_REG, eBX_reg }
492
#define RMeCX { OP_REG, eCX_reg }
493
#define RMeDX { OP_REG, eDX_reg }
494
#define RMeSP { OP_REG, eSP_reg }
495
#define RMeBP { OP_REG, eBP_reg }
496
#define RMeSI { OP_REG, eSI_reg }
497
#define RMeDI { OP_REG, eDI_reg }
498
#define RMrAX { OP_REG, rAX_reg }
499
#define RMrBX { OP_REG, rBX_reg }
500
#define RMrCX { OP_REG, rCX_reg }
501
#define RMrDX { OP_REG, rDX_reg }
502
#define RMrSP { OP_REG, rSP_reg }
503
#define RMrBP { OP_REG, rBP_reg }
504
#define RMrSI { OP_REG, rSI_reg }
505
#define RMrDI { OP_REG, rDI_reg }
506
#define RMAL { OP_REG, al_reg }
507
#define RMCL { OP_REG, cl_reg }
508
#define RMDL { OP_REG, dl_reg }
509
#define RMBL { OP_REG, bl_reg }
510
#define RMAH { OP_REG, ah_reg }
511
#define RMCH { OP_REG, ch_reg }
512
#define RMDH { OP_REG, dh_reg }
513
#define RMBH { OP_REG, bh_reg }
514
#define RMAX { OP_REG, ax_reg }
515
#define RMDX { OP_REG, dx_reg }
516
517
#define eAX { OP_IMREG, eAX_reg }
518
#define AL { OP_IMREG, al_reg }
519
#define CL { OP_IMREG, cl_reg }
520
#define zAX { OP_IMREG, z_mode_ax_reg }
521
#define indirDX { OP_IMREG, indir_dx_reg }
522
523
#define Sw { OP_SEG, w_mode }
524
#define Sv { OP_SEG, v_mode }
525
#define Ap { OP_DIR, 0 }
526
#define Ob { OP_OFF64, b_mode }
527
#define Ov { OP_OFF64, v_mode }
528
#define Xb { OP_DSreg, eSI_reg }
529
#define Xv { OP_DSreg, eSI_reg }
530
#define Xz { OP_DSreg, eSI_reg }
531
#define Yb { OP_ESreg, eDI_reg }
532
#define Yv { OP_ESreg, eDI_reg }
533
#define DSCX { OP_DSreg, eCX_reg }
534
#define DSBX { OP_DSreg, eBX_reg }
535
536
#define es { OP_REG, es_reg }
537
#define ss { OP_REG, ss_reg }
538
#define cs { OP_REG, cs_reg }
539
#define ds { OP_REG, ds_reg }
540
#define fs { OP_REG, fs_reg }
541
#define gs { OP_REG, gs_reg }
542
543
#define MX { OP_MMX, 0 }
544
#define XM { OP_XMM, 0 }
545
#define XMScalar { OP_XMM, scalar_mode }
546
#define XMGatherD { OP_XMM, vex_vsib_d_w_dq_mode }
547
#define XMGatherQ { OP_XMM, vex_vsib_q_w_dq_mode }
548
#define XMM { OP_XMM, xmm_mode }
549
#define TMM { OP_XMM, tmm_mode }
550
#define XMxmmq { OP_XMM, xmmq_mode }
551
#define EM { OP_EM, v_mode }
552
#define EMS { OP_EM, v_swap_mode }
553
#define EMd { OP_EM, d_mode }
554
#define EMx { OP_EM, x_mode }
555
#define EXbwUnit { OP_EX, bw_unit_mode }
556
#define EXb { OP_EX, b_mode }
557
#define EXw { OP_EX, w_mode }
558
#define EXd { OP_EX, d_mode }
559
#define EXdS { OP_EX, d_swap_mode }
560
#define EXwS { OP_EX, w_swap_mode }
561
#define EXq { OP_EX, q_mode }
562
#define EXqS { OP_EX, q_swap_mode }
563
#define EXdq { OP_EX, dq_mode }
564
#define EXx { OP_EX, x_mode }
565
#define EXxh { OP_EX, xh_mode }
566
#define EXxS { OP_EX, x_swap_mode }
567
#define EXxmm { OP_EX, xmm_mode }
568
#define EXymm { OP_EX, ymm_mode }
569
#define EXxmmq { OP_EX, xmmq_mode }
570
#define EXxmmqh { OP_EX, evex_half_bcst_xmmqh_mode }
571
#define EXEvexHalfBcstXmmq { OP_EX, evex_half_bcst_xmmq_mode }
572
#define EXxmmdw { OP_EX, xmmdw_mode }
573
#define EXxmmqd { OP_EX, xmmqd_mode }
574
#define EXxmmqdh { OP_EX, evex_half_bcst_xmmqdh_mode }
575
#define EXymmq { OP_EX, ymmq_mode }
576
#define EXEvexXGscat { OP_EX, evex_x_gscat_mode }
577
#define EXEvexXNoBcst { OP_EX, evex_x_nobcst_mode }
578
#define Rd { OP_R, d_mode }
579
#define Rdq { OP_R, dq_mode }
580
#define Rq { OP_R, q_mode }
581
#define Nq { OP_R, q_mm_mode }
582
#define Ux { OP_R, x_mode }
583
#define Uxmm { OP_R, xmm_mode }
584
#define Rxmmq { OP_R, xmmq_mode }
585
#define Rymm { OP_R, ymm_mode }
586
#define Rtmm { OP_R, tmm_mode }
587
#define EMCq { OP_EMC, q_mode }
588
#define MXC { OP_MXC, 0 }
589
#define OPSUF { OP_3DNowSuffix, 0 }
590
#define SEP { SEP_Fixup, 0 }
591
#define CMP { CMP_Fixup, 0 }
592
#define XMM0 { XMM_Fixup, 0 }
593
#define FXSAVE { FXSAVE_Fixup, 0 }
594
595
#define Vex { OP_VEX, x_mode }
596
#define VexW { OP_VexW, x_mode }
597
#define VexScalar { OP_VEX, scalar_mode }
598
#define VexScalarR { OP_VexR, scalar_mode }
599
#define VexGatherD { OP_VEX, vex_vsib_d_w_dq_mode }
600
#define VexGatherQ { OP_VEX, vex_vsib_q_w_dq_mode }
601
#define VexGdq { OP_VEX, dq_mode }
602
#define VexGb { OP_VEX, b_mode }
603
#define VexGv { OP_VEX, v_mode }
604
#define VexTmm { OP_VEX, tmm_mode }
605
#define XMVexI4 { OP_REG_VexI4, x_mode }
606
#define XMVexScalarI4 { OP_REG_VexI4, scalar_mode }
607
#define VexI4 { OP_VexI4, 0 }
608
#define PCLMUL { PCLMUL_Fixup, 0 }
609
#define VPCMP { VPCMP_Fixup, 0 }
610
#define VPCOM { VPCOM_Fixup, 0 }
611
612
#define EXxEVexR { OP_Rounding, evex_rounding_mode }
613
#define EXxEVexR64 { OP_Rounding, evex_rounding_64_mode }
614
#define EXxEVexS { OP_Rounding, evex_sae_mode }
615
616
#define MaskG { OP_G, mask_mode }
617
#define MaskE { OP_E, mask_mode }
618
#define MaskR { OP_R, mask_mode }
619
#define MaskBDE { OP_E, mask_bd_mode }
620
#define MaskVex { OP_VEX, mask_mode }
621
622
#define MVexVSIBDWpX { OP_M, vex_vsib_d_w_dq_mode }
623
#define MVexVSIBQWpX { OP_M, vex_vsib_q_w_dq_mode }
624
625
#define MVexSIBMEM { OP_M, vex_sibmem_mode }
626
627
/* Used handle "rep" prefix for string instructions.  */
628
#define Xbr { REP_Fixup, eSI_reg }
629
#define Xvr { REP_Fixup, eSI_reg }
630
#define Ybr { REP_Fixup, eDI_reg }
631
#define Yvr { REP_Fixup, eDI_reg }
632
#define Yzr { REP_Fixup, eDI_reg }
633
#define indirDXr { REP_Fixup, indir_dx_reg }
634
#define ALr { REP_Fixup, al_reg }
635
#define eAXr { REP_Fixup, eAX_reg }
636
637
/* Used handle HLE prefix for lockable instructions.  */
638
#define Ebh1 { HLE_Fixup1, b_mode }
639
#define Evh1 { HLE_Fixup1, v_mode }
640
#define Ebh2 { HLE_Fixup2, b_mode }
641
#define Evh2 { HLE_Fixup2, v_mode }
642
#define Ebh3 { HLE_Fixup3, b_mode }
643
#define Evh3 { HLE_Fixup3, v_mode }
644
645
#define BND { BND_Fixup, 0 }
646
#define NOTRACK { NOTRACK_Fixup, 0 }
647
648
#define cond_jump_flag { NULL, cond_jump_mode }
649
#define loop_jcxz_flag { NULL, loop_jcxz_mode }
650
651
/* bits in sizeflag */
652
2.70M
#define SUFFIX_ALWAYS 4
653
11.3M
#define AFLAG 2
654
6.47M
#define DFLAG 1
655
656
enum
657
{
658
  /* byte operand */
659
  b_mode = 1,
660
  /* byte operand with operand swapped */
661
  b_swap_mode,
662
  /* byte operand, sign extend like 'T' suffix */
663
  b_T_mode,
664
  /* operand size depends on prefixes */
665
  v_mode,
666
  /* operand size depends on prefixes with operand swapped */
667
  v_swap_mode,
668
  /* operand size depends on address prefix */
669
  va_mode,
670
  /* word operand */
671
  w_mode,
672
  /* double word operand  */
673
  d_mode,
674
  /* word operand with operand swapped  */
675
  w_swap_mode,
676
  /* double word operand with operand swapped */
677
  d_swap_mode,
678
  /* quad word operand */
679
  q_mode,
680
  /* 8-byte MM operand */
681
  q_mm_mode,
682
  /* quad word operand with operand swapped */
683
  q_swap_mode,
684
  /* ten-byte operand */
685
  t_mode,
686
  /* 16-byte XMM, 32-byte YMM or 64-byte ZMM operand.  In EVEX with
687
     broadcast enabled.  */
688
  x_mode,
689
  /* Similar to x_mode, but with different EVEX mem shifts.  */
690
  evex_x_gscat_mode,
691
  /* Similar to x_mode, but with yet different EVEX mem shifts.  */
692
  bw_unit_mode,
693
  /* Similar to x_mode, but with disabled broadcast.  */
694
  evex_x_nobcst_mode,
695
  /* Similar to x_mode, but with operands swapped and disabled broadcast
696
     in EVEX.  */
697
  x_swap_mode,
698
  /* 16-byte XMM, 32-byte YMM or 64-byte ZMM operand.  In EVEX with
699
     broadcast of 16bit enabled.  */
700
  xh_mode,
701
  /* 16-byte XMM operand */
702
  xmm_mode,
703
  /* XMM, XMM or YMM register operand, or quad word, xmmword or ymmword
704
     memory operand (depending on vector length).  Broadcast isn't
705
     allowed.  */
706
  xmmq_mode,
707
  /* Same as xmmq_mode, but broadcast is allowed.  */
708
  evex_half_bcst_xmmq_mode,
709
  /* XMM, XMM or YMM register operand, or quad word, xmmword or ymmword
710
     memory operand (depending on vector length).  16bit broadcast.  */
711
  evex_half_bcst_xmmqh_mode,
712
  /* 16-byte XMM, word, double word or quad word operand.  */
713
  xmmdw_mode,
714
  /* 16-byte XMM, double word, quad word operand or xmm word operand.  */
715
  xmmqd_mode,
716
  /* 16-byte XMM, double word, quad word operand or xmm word operand.
717
     16bit broadcast.  */
718
  evex_half_bcst_xmmqdh_mode,
719
  /* 32-byte YMM operand */
720
  ymm_mode,
721
  /* quad word, ymmword or zmmword memory operand.  */
722
  ymmq_mode,
723
  /* TMM operand */
724
  tmm_mode,
725
  /* d_mode in 32bit, q_mode in 64bit mode.  */
726
  m_mode,
727
  /* pair of v_mode operands */
728
  a_mode,
729
  cond_jump_mode,
730
  loop_jcxz_mode,
731
  movsxd_mode,
732
  v_bnd_mode,
733
  /* like v_bnd_mode in 32bit, no RIP-rel in 64bit mode.  */
734
  v_bndmk_mode,
735
  /* operand size depends on REX.W / VEX.W.  */
736
  dq_mode,
737
  /* Displacements like v_mode without considering Intel64 ISA.  */
738
  dqw_mode,
739
  /* bounds operand */
740
  bnd_mode,
741
  /* bounds operand with operand swapped */
742
  bnd_swap_mode,
743
  /* 4- or 6-byte pointer operand */
744
  f_mode,
745
  const_1_mode,
746
  /* v_mode for indirect branch opcodes.  */
747
  indir_v_mode,
748
  /* v_mode for stack-related opcodes.  */
749
  stack_v_mode,
750
  /* non-quad operand size depends on prefixes */
751
  z_mode,
752
  /* 16-byte operand */
753
  o_mode,
754
  /* registers like d_mode, memory like b_mode.  */
755
  db_mode,
756
  /* registers like d_mode, memory like w_mode.  */
757
  dw_mode,
758
759
  /* Operand size depends on the VEX.W bit, with VSIB dword indices.  */
760
  vex_vsib_d_w_dq_mode,
761
  /* Operand size depends on the VEX.W bit, with VSIB qword indices.  */
762
  vex_vsib_q_w_dq_mode,
763
  /* mandatory non-vector SIB.  */
764
  vex_sibmem_mode,
765
766
  /* scalar, ignore vector length.  */
767
  scalar_mode,
768
769
  /* Static rounding.  */
770
  evex_rounding_mode,
771
  /* Static rounding, 64-bit mode only.  */
772
  evex_rounding_64_mode,
773
  /* Supress all exceptions.  */
774
  evex_sae_mode,
775
776
  /* Mask register operand.  */
777
  mask_mode,
778
  /* Mask register operand.  */
779
  mask_bd_mode,
780
781
  es_reg,
782
  cs_reg,
783
  ss_reg,
784
  ds_reg,
785
  fs_reg,
786
  gs_reg,
787
788
  eAX_reg,
789
  eCX_reg,
790
  eDX_reg,
791
  eBX_reg,
792
  eSP_reg,
793
  eBP_reg,
794
  eSI_reg,
795
  eDI_reg,
796
797
  al_reg,
798
  cl_reg,
799
  dl_reg,
800
  bl_reg,
801
  ah_reg,
802
  ch_reg,
803
  dh_reg,
804
  bh_reg,
805
806
  ax_reg,
807
  cx_reg,
808
  dx_reg,
809
  bx_reg,
810
  sp_reg,
811
  bp_reg,
812
  si_reg,
813
  di_reg,
814
815
  rAX_reg,
816
  rCX_reg,
817
  rDX_reg,
818
  rBX_reg,
819
  rSP_reg,
820
  rBP_reg,
821
  rSI_reg,
822
  rDI_reg,
823
824
  z_mode_ax_reg,
825
  indir_dx_reg
826
};
827
828
enum
829
{
830
  FLOATCODE = 1,
831
  USE_REG_TABLE,
832
  USE_MOD_TABLE,
833
  USE_RM_TABLE,
834
  USE_PREFIX_TABLE,
835
  USE_X86_64_TABLE,
836
  USE_X86_64_EVEX_FROM_VEX_TABLE,
837
  USE_X86_64_EVEX_PFX_TABLE,
838
  USE_X86_64_EVEX_W_TABLE,
839
  USE_X86_64_EVEX_MEM_W_TABLE,
840
  USE_3BYTE_TABLE,
841
  USE_XOP_8F_TABLE,
842
  USE_VEX_C4_TABLE,
843
  USE_VEX_C5_TABLE,
844
  USE_VEX_LEN_TABLE,
845
  USE_VEX_W_TABLE,
846
  USE_EVEX_TABLE,
847
  USE_EVEX_LEN_TABLE
848
};
849
850
#define FLOAT     NULL, { { NULL, FLOATCODE } }, 0
851
852
#define DIS386(T, I)    NULL, { { NULL, (T)}, { NULL,  (I) } }, 0
853
#define REG_TABLE(I)    DIS386 (USE_REG_TABLE, (I))
854
#define MOD_TABLE(I)    DIS386 (USE_MOD_TABLE, (I))
855
#define RM_TABLE(I)   DIS386 (USE_RM_TABLE, (I))
856
#define PREFIX_TABLE(I)   DIS386 (USE_PREFIX_TABLE, (I))
857
#define X86_64_TABLE(I)   DIS386 (USE_X86_64_TABLE, (I))
858
#define X86_64_EVEX_FROM_VEX_TABLE(I) \
859
  DIS386 (USE_X86_64_EVEX_FROM_VEX_TABLE, (I))
860
#define X86_64_EVEX_PFX_TABLE(I) DIS386 (USE_X86_64_EVEX_PFX_TABLE, (I))
861
#define X86_64_EVEX_W_TABLE(I) DIS386 (USE_X86_64_EVEX_W_TABLE, (I))
862
#define X86_64_EVEX_MEM_W_TABLE(I) DIS386 (USE_X86_64_EVEX_MEM_W_TABLE, (I))
863
#define THREE_BYTE_TABLE(I) DIS386 (USE_3BYTE_TABLE, (I))
864
#define XOP_8F_TABLE()    DIS386 (USE_XOP_8F_TABLE, 0)
865
#define VEX_C4_TABLE()    DIS386 (USE_VEX_C4_TABLE, 0)
866
#define VEX_C5_TABLE()    DIS386 (USE_VEX_C5_TABLE, 0)
867
#define VEX_LEN_TABLE(I)  DIS386 (USE_VEX_LEN_TABLE, (I))
868
#define VEX_W_TABLE(I)    DIS386 (USE_VEX_W_TABLE, (I))
869
#define EVEX_TABLE()    DIS386 (USE_EVEX_TABLE, 0)
870
#define EVEX_LEN_TABLE(I) DIS386 (USE_EVEX_LEN_TABLE, (I))
871
872
enum
873
{
874
  REG_80 = 0,
875
  REG_81,
876
  REG_83,
877
  REG_8F,
878
  REG_C0,
879
  REG_C1,
880
  REG_C6,
881
  REG_C7,
882
  REG_D0,
883
  REG_D1,
884
  REG_D2,
885
  REG_D3,
886
  REG_F6,
887
  REG_F7,
888
  REG_FE,
889
  REG_FF,
890
  REG_0F00,
891
  REG_0F01,
892
  REG_0F0D,
893
  REG_0F18,
894
  REG_0F1C_P_0_MOD_0,
895
  REG_0F1E_P_1_MOD_3,
896
  REG_0F38D8_PREFIX_1,
897
  REG_0F3A0F_P_1,
898
  REG_0F71,
899
  REG_0F72,
900
  REG_0F73,
901
  REG_0FA6,
902
  REG_0FA7,
903
  REG_0FAE,
904
  REG_0FBA,
905
  REG_0FC7,
906
  REG_VEX_0F71,
907
  REG_VEX_0F72,
908
  REG_VEX_0F73,
909
  REG_VEX_0FAE,
910
  REG_VEX_0F3849_X86_64_L_0_W_0_M_1_P_0,
911
  REG_VEX_0F38F3_L_0_P_0,
912
  REG_VEX_MAP7_F6_L_0_W_0,
913
  REG_VEX_MAP7_F8_L_0_W_0,
914
915
  REG_XOP_09_01_L_0,
916
  REG_XOP_09_02_L_0,
917
  REG_XOP_09_12_L_0,
918
  REG_XOP_0A_12_L_0,
919
920
  REG_EVEX_0F71,
921
  REG_EVEX_0F72,
922
  REG_EVEX_0F73,
923
  REG_EVEX_0F38C6_L_2,
924
  REG_EVEX_0F38C7_L_2,
925
  REG_EVEX_MAP4_80,
926
  REG_EVEX_MAP4_81,
927
  REG_EVEX_MAP4_83,
928
  REG_EVEX_MAP4_8F,
929
  REG_EVEX_MAP4_F6,
930
  REG_EVEX_MAP4_F7,
931
  REG_EVEX_MAP4_FE,
932
  REG_EVEX_MAP4_FF,
933
};
934
935
enum
936
{
937
  MOD_62_32BIT = 0,
938
  MOD_C4_32BIT,
939
  MOD_C5_32BIT,
940
  MOD_0F01_REG_0,
941
  MOD_0F01_REG_1,
942
  MOD_0F01_REG_2,
943
  MOD_0F01_REG_3,
944
  MOD_0F01_REG_5,
945
  MOD_0F01_REG_7,
946
  MOD_0F12_PREFIX_0,
947
  MOD_0F16_PREFIX_0,
948
  MOD_0F18_REG_0,
949
  MOD_0F18_REG_1,
950
  MOD_0F18_REG_2,
951
  MOD_0F18_REG_3,
952
  MOD_0F18_REG_4,
953
  MOD_0F18_REG_6,
954
  MOD_0F18_REG_7,
955
  MOD_0F1A_PREFIX_0,
956
  MOD_0F1B_PREFIX_0,
957
  MOD_0F1B_PREFIX_1,
958
  MOD_0F1C_PREFIX_0,
959
  MOD_0F1E_PREFIX_1,
960
  MOD_0FAE_REG_0,
961
  MOD_0FAE_REG_1,
962
  MOD_0FAE_REG_2,
963
  MOD_0FAE_REG_3,
964
  MOD_0FAE_REG_4,
965
  MOD_0FAE_REG_5,
966
  MOD_0FAE_REG_6,
967
  MOD_0FAE_REG_7,
968
  MOD_0FC7_REG_6,
969
  MOD_0FC7_REG_7,
970
  MOD_0F38DC_PREFIX_1,
971
  MOD_0F38F8,
972
973
  MOD_VEX_0F3849_X86_64_L_0_W_0,
974
975
  MOD_EVEX_MAP4_60,
976
  MOD_EVEX_MAP4_61,
977
  MOD_EVEX_MAP4_F8_P_1,
978
  MOD_EVEX_MAP4_F8_P_3,
979
};
980
981
enum
982
{
983
  RM_C6_REG_7 = 0,
984
  RM_C7_REG_7,
985
  RM_0F01_REG_0,
986
  RM_0F01_REG_1,
987
  RM_0F01_REG_2,
988
  RM_0F01_REG_3,
989
  RM_0F01_REG_5_MOD_3,
990
  RM_0F01_REG_7_MOD_3,
991
  RM_0F1E_P_1_MOD_3_REG_7,
992
  RM_0FAE_REG_6_MOD_3_P_0,
993
  RM_0FAE_REG_7_MOD_3,
994
  RM_0F3A0F_P_1_R_0,
995
996
  RM_VEX_0F3849_X86_64_L_0_W_0_M_1_P_0_R_0,
997
  RM_VEX_0F3849_X86_64_L_0_W_0_M_1_P_3,
998
};
999
1000
enum
1001
{
1002
  PREFIX_90 = 0,
1003
  PREFIX_0F00_REG_6_X86_64,
1004
  PREFIX_0F01_REG_0_MOD_3_RM_6,
1005
  PREFIX_0F01_REG_0_MOD_3_RM_7,
1006
  PREFIX_0F01_REG_1_RM_2,
1007
  PREFIX_0F01_REG_1_RM_4,
1008
  PREFIX_0F01_REG_1_RM_5,
1009
  PREFIX_0F01_REG_1_RM_6,
1010
  PREFIX_0F01_REG_1_RM_7,
1011
  PREFIX_0F01_REG_3_RM_1,
1012
  PREFIX_0F01_REG_5_MOD_0,
1013
  PREFIX_0F01_REG_5_MOD_3_RM_0,
1014
  PREFIX_0F01_REG_5_MOD_3_RM_1,
1015
  PREFIX_0F01_REG_5_MOD_3_RM_2,
1016
  PREFIX_0F01_REG_5_MOD_3_RM_4,
1017
  PREFIX_0F01_REG_5_MOD_3_RM_5,
1018
  PREFIX_0F01_REG_5_MOD_3_RM_6,
1019
  PREFIX_0F01_REG_5_MOD_3_RM_7,
1020
  PREFIX_0F01_REG_7_MOD_3_RM_2,
1021
  PREFIX_0F01_REG_7_MOD_3_RM_5,
1022
  PREFIX_0F01_REG_7_MOD_3_RM_6,
1023
  PREFIX_0F01_REG_7_MOD_3_RM_7,
1024
  PREFIX_0F09,
1025
  PREFIX_0F10,
1026
  PREFIX_0F11,
1027
  PREFIX_0F12,
1028
  PREFIX_0F16,
1029
  PREFIX_0F18_REG_6_MOD_0_X86_64,
1030
  PREFIX_0F18_REG_7_MOD_0_X86_64,
1031
  PREFIX_0F1A,
1032
  PREFIX_0F1B,
1033
  PREFIX_0F1C,
1034
  PREFIX_0F1E,
1035
  PREFIX_0F2A,
1036
  PREFIX_0F2B,
1037
  PREFIX_0F2C,
1038
  PREFIX_0F2D,
1039
  PREFIX_0F2E,
1040
  PREFIX_0F2F,
1041
  PREFIX_0F51,
1042
  PREFIX_0F52,
1043
  PREFIX_0F53,
1044
  PREFIX_0F58,
1045
  PREFIX_0F59,
1046
  PREFIX_0F5A,
1047
  PREFIX_0F5B,
1048
  PREFIX_0F5C,
1049
  PREFIX_0F5D,
1050
  PREFIX_0F5E,
1051
  PREFIX_0F5F,
1052
  PREFIX_0F60,
1053
  PREFIX_0F61,
1054
  PREFIX_0F62,
1055
  PREFIX_0F6F,
1056
  PREFIX_0F70,
1057
  PREFIX_0F78,
1058
  PREFIX_0F79,
1059
  PREFIX_0F7C,
1060
  PREFIX_0F7D,
1061
  PREFIX_0F7E,
1062
  PREFIX_0F7F,
1063
  PREFIX_0FA6_REG_0,
1064
  PREFIX_0FA6_REG_5,
1065
  PREFIX_0FA7_REG_6,
1066
  PREFIX_0FAE_REG_0_MOD_3,
1067
  PREFIX_0FAE_REG_1_MOD_3,
1068
  PREFIX_0FAE_REG_2_MOD_3,
1069
  PREFIX_0FAE_REG_3_MOD_3,
1070
  PREFIX_0FAE_REG_4_MOD_0,
1071
  PREFIX_0FAE_REG_4_MOD_3,
1072
  PREFIX_0FAE_REG_5_MOD_3,
1073
  PREFIX_0FAE_REG_6_MOD_0,
1074
  PREFIX_0FAE_REG_6_MOD_3,
1075
  PREFIX_0FAE_REG_7_MOD_0,
1076
  PREFIX_0FB8,
1077
  PREFIX_0FBC,
1078
  PREFIX_0FBD,
1079
  PREFIX_0FC2,
1080
  PREFIX_0FC7_REG_6_MOD_0,
1081
  PREFIX_0FC7_REG_6_MOD_3,
1082
  PREFIX_0FC7_REG_7_MOD_3,
1083
  PREFIX_0FD0,
1084
  PREFIX_0FD6,
1085
  PREFIX_0FE6,
1086
  PREFIX_0FE7,
1087
  PREFIX_0FF0,
1088
  PREFIX_0FF7,
1089
  PREFIX_0F38D8,
1090
  PREFIX_0F38DC,
1091
  PREFIX_0F38DD,
1092
  PREFIX_0F38DE,
1093
  PREFIX_0F38DF,
1094
  PREFIX_0F38F0,
1095
  PREFIX_0F38F1,
1096
  PREFIX_0F38F6,
1097
  PREFIX_0F38F8_M_0,
1098
  PREFIX_0F38F8_M_1_X86_64,
1099
  PREFIX_0F38FA,
1100
  PREFIX_0F38FB,
1101
  PREFIX_0F38FC,
1102
  PREFIX_0F3A0F,
1103
  PREFIX_VEX_0F12,
1104
  PREFIX_VEX_0F16,
1105
  PREFIX_VEX_0F2A,
1106
  PREFIX_VEX_0F2C,
1107
  PREFIX_VEX_0F2D,
1108
  PREFIX_VEX_0F41_L_1_W_0,
1109
  PREFIX_VEX_0F41_L_1_W_1,
1110
  PREFIX_VEX_0F42_L_1_W_0,
1111
  PREFIX_VEX_0F42_L_1_W_1,
1112
  PREFIX_VEX_0F44_L_0_W_0,
1113
  PREFIX_VEX_0F44_L_0_W_1,
1114
  PREFIX_VEX_0F45_L_1_W_0,
1115
  PREFIX_VEX_0F45_L_1_W_1,
1116
  PREFIX_VEX_0F46_L_1_W_0,
1117
  PREFIX_VEX_0F46_L_1_W_1,
1118
  PREFIX_VEX_0F47_L_1_W_0,
1119
  PREFIX_VEX_0F47_L_1_W_1,
1120
  PREFIX_VEX_0F4A_L_1_W_0,
1121
  PREFIX_VEX_0F4A_L_1_W_1,
1122
  PREFIX_VEX_0F4B_L_1_W_0,
1123
  PREFIX_VEX_0F4B_L_1_W_1,
1124
  PREFIX_VEX_0F6F,
1125
  PREFIX_VEX_0F70,
1126
  PREFIX_VEX_0F7E,
1127
  PREFIX_VEX_0F7F,
1128
  PREFIX_VEX_0F90_L_0_W_0,
1129
  PREFIX_VEX_0F90_L_0_W_1,
1130
  PREFIX_VEX_0F91_L_0_W_0,
1131
  PREFIX_VEX_0F91_L_0_W_1,
1132
  PREFIX_VEX_0F92_L_0_W_0,
1133
  PREFIX_VEX_0F92_L_0_W_1,
1134
  PREFIX_VEX_0F93_L_0_W_0,
1135
  PREFIX_VEX_0F93_L_0_W_1,
1136
  PREFIX_VEX_0F98_L_0_W_0,
1137
  PREFIX_VEX_0F98_L_0_W_1,
1138
  PREFIX_VEX_0F99_L_0_W_0,
1139
  PREFIX_VEX_0F99_L_0_W_1,
1140
  PREFIX_VEX_0F3848_X86_64_L_0_W_0,
1141
  PREFIX_VEX_0F3849_X86_64_L_0_W_0_M_0,
1142
  PREFIX_VEX_0F3849_X86_64_L_0_W_0_M_1,
1143
  PREFIX_VEX_0F384A_X86_64_W_0_L_0,
1144
  PREFIX_VEX_0F384B_X86_64_L_0_W_0,
1145
  PREFIX_VEX_0F3850_W_0,
1146
  PREFIX_VEX_0F3851_W_0,
1147
  PREFIX_VEX_0F385C_X86_64_L_0_W_0,
1148
  PREFIX_VEX_0F385E_X86_64_L_0_W_0,
1149
  PREFIX_VEX_0F385F_X86_64_L_0_W_0,
1150
  PREFIX_VEX_0F386B_X86_64_L_0_W_0,
1151
  PREFIX_VEX_0F386C_X86_64_L_0_W_0,
1152
  PREFIX_VEX_0F386E_X86_64_L_0_W_0,
1153
  PREFIX_VEX_0F386F_X86_64_L_0_W_0,
1154
  PREFIX_VEX_0F3872,
1155
  PREFIX_VEX_0F38B0_W_0,
1156
  PREFIX_VEX_0F38B1_W_0,
1157
  PREFIX_VEX_0F38D2_W_0,
1158
  PREFIX_VEX_0F38D3_W_0,
1159
  PREFIX_VEX_0F38CB,
1160
  PREFIX_VEX_0F38CC,
1161
  PREFIX_VEX_0F38CD,
1162
  PREFIX_VEX_0F38DA_W_0,
1163
  PREFIX_VEX_0F38F2_L_0,
1164
  PREFIX_VEX_0F38F3_L_0,
1165
  PREFIX_VEX_0F38F5_L_0,
1166
  PREFIX_VEX_0F38F6_L_0,
1167
  PREFIX_VEX_0F38F7_L_0,
1168
  PREFIX_VEX_0F3AF0_L_0,
1169
  PREFIX_VEX_MAP5_F8_X86_64_L_0_W_0,
1170
  PREFIX_VEX_MAP5_F9_X86_64_L_0_W_0,
1171
  PREFIX_VEX_MAP5_FD_X86_64_L_0_W_0,
1172
  PREFIX_VEX_MAP7_F6_L_0_W_0_R_0_X86_64,
1173
  PREFIX_VEX_MAP7_F8_L_0_W_0_R_0_X86_64,
1174
1175
  PREFIX_EVEX_0F2E,
1176
  PREFIX_EVEX_0F2F,
1177
  PREFIX_EVEX_0F5B,
1178
  PREFIX_EVEX_0F6F,
1179
  PREFIX_EVEX_0F70,
1180
  PREFIX_EVEX_0F78,
1181
  PREFIX_EVEX_0F79,
1182
  PREFIX_EVEX_0F7A,
1183
  PREFIX_EVEX_0F7B,
1184
  PREFIX_EVEX_0F7E,
1185
  PREFIX_EVEX_0F7F,
1186
  PREFIX_EVEX_0FC2,
1187
  PREFIX_EVEX_0FE6,
1188
  PREFIX_EVEX_0F3810,
1189
  PREFIX_EVEX_0F3811,
1190
  PREFIX_EVEX_0F3812,
1191
  PREFIX_EVEX_0F3813,
1192
  PREFIX_EVEX_0F3814,
1193
  PREFIX_EVEX_0F3815,
1194
  PREFIX_EVEX_0F3820,
1195
  PREFIX_EVEX_0F3821,
1196
  PREFIX_EVEX_0F3822,
1197
  PREFIX_EVEX_0F3823,
1198
  PREFIX_EVEX_0F3824,
1199
  PREFIX_EVEX_0F3825,
1200
  PREFIX_EVEX_0F3826,
1201
  PREFIX_EVEX_0F3827,
1202
  PREFIX_EVEX_0F3828,
1203
  PREFIX_EVEX_0F3829,
1204
  PREFIX_EVEX_0F382A,
1205
  PREFIX_EVEX_0F3830,
1206
  PREFIX_EVEX_0F3831,
1207
  PREFIX_EVEX_0F3832,
1208
  PREFIX_EVEX_0F3833,
1209
  PREFIX_EVEX_0F3834,
1210
  PREFIX_EVEX_0F3835,
1211
  PREFIX_EVEX_0F3838,
1212
  PREFIX_EVEX_0F3839,
1213
  PREFIX_EVEX_0F383A,
1214
  PREFIX_EVEX_0F384A_X86_64_W_0_L_2,
1215
  PREFIX_EVEX_0F3852,
1216
  PREFIX_EVEX_0F3853,
1217
  PREFIX_EVEX_0F3868,
1218
  PREFIX_EVEX_0F386D_X86_64_W_0_L_2,
1219
  PREFIX_EVEX_0F3872,
1220
  PREFIX_EVEX_0F3874,
1221
  PREFIX_EVEX_0F389A,
1222
  PREFIX_EVEX_0F389B,
1223
  PREFIX_EVEX_0F38AA,
1224
  PREFIX_EVEX_0F38AB,
1225
1226
  PREFIX_EVEX_0F3A07_X86_64_W_0_L_2,
1227
  PREFIX_EVEX_0F3A08,
1228
  PREFIX_EVEX_0F3A0A,
1229
  PREFIX_EVEX_0F3A26,
1230
  PREFIX_EVEX_0F3A27,
1231
  PREFIX_EVEX_0F3A42_W_0,
1232
  PREFIX_EVEX_0F3A52,
1233
  PREFIX_EVEX_0F3A53,
1234
  PREFIX_EVEX_0F3A56,
1235
  PREFIX_EVEX_0F3A57,
1236
  PREFIX_EVEX_0F3A66,
1237
  PREFIX_EVEX_0F3A67,
1238
  PREFIX_EVEX_0F3A77_X86_64_W_0_L_2,
1239
  PREFIX_EVEX_0F3AC2,
1240
1241
  PREFIX_EVEX_MAP4_4x,
1242
  PREFIX_EVEX_MAP4_F0,
1243
  PREFIX_EVEX_MAP4_F1,
1244
  PREFIX_EVEX_MAP4_F2,
1245
  PREFIX_EVEX_MAP4_F8,
1246
1247
  PREFIX_EVEX_MAP5_10,
1248
  PREFIX_EVEX_MAP5_11,
1249
  PREFIX_EVEX_MAP5_18,
1250
  PREFIX_EVEX_MAP5_1B,
1251
  PREFIX_EVEX_MAP5_1D,
1252
  PREFIX_EVEX_MAP5_1E,
1253
  PREFIX_EVEX_MAP5_2A,
1254
  PREFIX_EVEX_MAP5_2C,
1255
  PREFIX_EVEX_MAP5_2D,
1256
  PREFIX_EVEX_MAP5_2E,
1257
  PREFIX_EVEX_MAP5_2F,
1258
  PREFIX_EVEX_MAP5_51,
1259
  PREFIX_EVEX_MAP5_58,
1260
  PREFIX_EVEX_MAP5_59,
1261
  PREFIX_EVEX_MAP5_5A,
1262
  PREFIX_EVEX_MAP5_5B,
1263
  PREFIX_EVEX_MAP5_5C,
1264
  PREFIX_EVEX_MAP5_5D,
1265
  PREFIX_EVEX_MAP5_5E,
1266
  PREFIX_EVEX_MAP5_5F,
1267
  PREFIX_EVEX_MAP5_68,
1268
  PREFIX_EVEX_MAP5_69,
1269
  PREFIX_EVEX_MAP5_6A,
1270
  PREFIX_EVEX_MAP5_6B,
1271
  PREFIX_EVEX_MAP5_6C,
1272
  PREFIX_EVEX_MAP5_6D,
1273
  PREFIX_EVEX_MAP5_6E_L_0,
1274
  PREFIX_EVEX_MAP5_6F_X86_64,
1275
  PREFIX_EVEX_MAP5_74,
1276
  PREFIX_EVEX_MAP5_78,
1277
  PREFIX_EVEX_MAP5_79,
1278
  PREFIX_EVEX_MAP5_7A,
1279
  PREFIX_EVEX_MAP5_7B,
1280
  PREFIX_EVEX_MAP5_7C,
1281
  PREFIX_EVEX_MAP5_7D,
1282
  PREFIX_EVEX_MAP5_7E_L_0,
1283
1284
  PREFIX_EVEX_MAP6_13,
1285
  PREFIX_EVEX_MAP6_2C,
1286
  PREFIX_EVEX_MAP6_42,
1287
  PREFIX_EVEX_MAP6_4C,
1288
  PREFIX_EVEX_MAP6_4E,
1289
  PREFIX_EVEX_MAP6_56,
1290
  PREFIX_EVEX_MAP6_57,
1291
  PREFIX_EVEX_MAP6_98,
1292
  PREFIX_EVEX_MAP6_9A,
1293
  PREFIX_EVEX_MAP6_9C,
1294
  PREFIX_EVEX_MAP6_9E,
1295
  PREFIX_EVEX_MAP6_A8,
1296
  PREFIX_EVEX_MAP6_AA,
1297
  PREFIX_EVEX_MAP6_AC,
1298
  PREFIX_EVEX_MAP6_AE,
1299
  PREFIX_EVEX_MAP6_B8,
1300
  PREFIX_EVEX_MAP6_BA,
1301
  PREFIX_EVEX_MAP6_BC,
1302
  PREFIX_EVEX_MAP6_BE,
1303
  PREFIX_EVEX_MAP6_D6,
1304
  PREFIX_EVEX_MAP6_D7,
1305
};
1306
1307
enum
1308
{
1309
  X86_64_06 = 0,
1310
  X86_64_07,
1311
  X86_64_0E,
1312
  X86_64_16,
1313
  X86_64_17,
1314
  X86_64_1E,
1315
  X86_64_1F,
1316
  X86_64_27,
1317
  X86_64_2F,
1318
  X86_64_37,
1319
  X86_64_3F,
1320
  X86_64_60,
1321
  X86_64_61,
1322
  X86_64_62,
1323
  X86_64_63,
1324
  X86_64_6D,
1325
  X86_64_6F,
1326
  X86_64_82,
1327
  X86_64_9A,
1328
  X86_64_C2,
1329
  X86_64_C3,
1330
  X86_64_C4,
1331
  X86_64_C5,
1332
  X86_64_CE,
1333
  X86_64_D4,
1334
  X86_64_D5,
1335
  X86_64_D6,
1336
  X86_64_E8,
1337
  X86_64_E9,
1338
  X86_64_EA,
1339
  X86_64_0F00_REG_6,
1340
  X86_64_0F01_REG_0,
1341
  X86_64_0F01_REG_0_MOD_3_RM_6_P_1,
1342
  X86_64_0F01_REG_0_MOD_3_RM_6_P_3,
1343
  X86_64_0F01_REG_0_MOD_3_RM_7_P_0,
1344
  X86_64_0F01_REG_1,
1345
  X86_64_0F01_REG_1_RM_2_PREFIX_1,
1346
  X86_64_0F01_REG_1_RM_2_PREFIX_3,
1347
  X86_64_0F01_REG_1_RM_5_PREFIX_2,
1348
  X86_64_0F01_REG_1_RM_6_PREFIX_2,
1349
  X86_64_0F01_REG_1_RM_7_PREFIX_2,
1350
  X86_64_0F01_REG_2,
1351
  X86_64_0F01_REG_3,
1352
  X86_64_0F01_REG_5_MOD_3_RM_4_PREFIX_1,
1353
  X86_64_0F01_REG_5_MOD_3_RM_5_PREFIX_1,
1354
  X86_64_0F01_REG_5_MOD_3_RM_6_PREFIX_1,
1355
  X86_64_0F01_REG_5_MOD_3_RM_7_PREFIX_1,
1356
  X86_64_0F01_REG_7_MOD_3_RM_5_PREFIX_1,
1357
  X86_64_0F01_REG_7_MOD_3_RM_5_PREFIX_3,
1358
  X86_64_0F01_REG_7_MOD_3_RM_6_PREFIX_1,
1359
  X86_64_0F01_REG_7_MOD_3_RM_6_PREFIX_3,
1360
  X86_64_0F01_REG_7_MOD_3_RM_7_PREFIX_1,
1361
  X86_64_0F18_REG_6_MOD_0,
1362
  X86_64_0F18_REG_7_MOD_0,
1363
  X86_64_0F24,
1364
  X86_64_0F26,
1365
  X86_64_0F388A,
1366
  X86_64_0F388B,
1367
  X86_64_0F38F8_M_1,
1368
  X86_64_0FAE_REG_0_MOD_3_PREFIX_1,
1369
  X86_64_0FAE_REG_1_MOD_3_PREFIX_1,
1370
  X86_64_0FAE_REG_2_MOD_3_PREFIX_1,
1371
  X86_64_0FAE_REG_3_MOD_3_PREFIX_1,
1372
  X86_64_0FC7_REG_6_MOD_3_PREFIX_1,
1373
1374
  X86_64_VEX_0F3848,
1375
  X86_64_VEX_0F3849,
1376
  X86_64_VEX_0F384A,
1377
  X86_64_VEX_0F384B,
1378
  X86_64_VEX_0F385C,
1379
  X86_64_VEX_0F385E,
1380
  X86_64_VEX_0F385F,
1381
  X86_64_VEX_0F386B,
1382
  X86_64_VEX_0F386C,
1383
  X86_64_VEX_0F386E,
1384
  X86_64_VEX_0F386F,
1385
  X86_64_VEX_0F38Ex,
1386
1387
  X86_64_VEX_MAP5_F8,
1388
  X86_64_VEX_MAP5_F9,
1389
  X86_64_VEX_MAP5_FD,
1390
  X86_64_VEX_MAP7_F6_L_0_W_0_R_0,
1391
  X86_64_VEX_MAP7_F8_L_0_W_0_R_0,
1392
1393
  X86_64_EVEX_0F384A,
1394
  X86_64_EVEX_0F386D,
1395
  X86_64_EVEX_0F3A07,
1396
  X86_64_EVEX_0F3A77,
1397
1398
  X86_64_EVEX_MAP5_6F,
1399
};
1400
1401
enum
1402
{
1403
  THREE_BYTE_0F38 = 0,
1404
  THREE_BYTE_0F3A
1405
};
1406
1407
enum
1408
{
1409
  XOP_08 = 0,
1410
  XOP_09,
1411
  XOP_0A
1412
};
1413
1414
enum
1415
{
1416
  VEX_0F = 0,
1417
  VEX_0F38,
1418
  VEX_0F3A,
1419
  VEX_MAP5,
1420
  VEX_MAP7,
1421
};
1422
1423
enum
1424
{
1425
  EVEX_0F = 0,
1426
  EVEX_0F38,
1427
  EVEX_0F3A,
1428
  EVEX_MAP4,
1429
  EVEX_MAP5,
1430
  EVEX_MAP6,
1431
  EVEX_MAP7,
1432
};
1433
1434
enum
1435
{
1436
  VEX_LEN_0F12_P_0 = 0,
1437
  VEX_LEN_0F12_P_2,
1438
  VEX_LEN_0F13,
1439
  VEX_LEN_0F16_P_0,
1440
  VEX_LEN_0F16_P_2,
1441
  VEX_LEN_0F17,
1442
  VEX_LEN_0F41,
1443
  VEX_LEN_0F42,
1444
  VEX_LEN_0F44,
1445
  VEX_LEN_0F45,
1446
  VEX_LEN_0F46,
1447
  VEX_LEN_0F47,
1448
  VEX_LEN_0F4A,
1449
  VEX_LEN_0F4B,
1450
  VEX_LEN_0F6E,
1451
  VEX_LEN_0F77,
1452
  VEX_LEN_0F7E_P_1,
1453
  VEX_LEN_0F7E_P_2,
1454
  VEX_LEN_0F90,
1455
  VEX_LEN_0F91,
1456
  VEX_LEN_0F92,
1457
  VEX_LEN_0F93,
1458
  VEX_LEN_0F98,
1459
  VEX_LEN_0F99,
1460
  VEX_LEN_0FAE_R_2,
1461
  VEX_LEN_0FAE_R_3,
1462
  VEX_LEN_0FC4,
1463
  VEX_LEN_0FD6,
1464
  VEX_LEN_0F3816,
1465
  VEX_LEN_0F3819,
1466
  VEX_LEN_0F381A,
1467
  VEX_LEN_0F3836,
1468
  VEX_LEN_0F3841,
1469
  VEX_LEN_0F3848_X86_64,
1470
  VEX_LEN_0F3849_X86_64,
1471
  VEX_LEN_0F384A_X86_64_W_0,
1472
  VEX_LEN_0F384B_X86_64,
1473
  VEX_LEN_0F385A,
1474
  VEX_LEN_0F385C_X86_64,
1475
  VEX_LEN_0F385E_X86_64,
1476
  VEX_LEN_0F385F_X86_64,
1477
  VEX_LEN_0F386B_X86_64,
1478
  VEX_LEN_0F386C_X86_64,
1479
  VEX_LEN_0F386E_X86_64,
1480
  VEX_LEN_0F386F_X86_64,
1481
  VEX_LEN_0F38CB_P_3_W_0,
1482
  VEX_LEN_0F38CC_P_3_W_0,
1483
  VEX_LEN_0F38CD_P_3_W_0,
1484
  VEX_LEN_0F38DA_W_0_P_0,
1485
  VEX_LEN_0F38DA_W_0_P_2,
1486
  VEX_LEN_0F38DB,
1487
  VEX_LEN_0F38F2,
1488
  VEX_LEN_0F38F3,
1489
  VEX_LEN_0F38F5,
1490
  VEX_LEN_0F38F6,
1491
  VEX_LEN_0F38F7,
1492
  VEX_LEN_0F3A00,
1493
  VEX_LEN_0F3A01,
1494
  VEX_LEN_0F3A06,
1495
  VEX_LEN_0F3A14,
1496
  VEX_LEN_0F3A15,
1497
  VEX_LEN_0F3A16,
1498
  VEX_LEN_0F3A17,
1499
  VEX_LEN_0F3A18,
1500
  VEX_LEN_0F3A19,
1501
  VEX_LEN_0F3A20,
1502
  VEX_LEN_0F3A21,
1503
  VEX_LEN_0F3A22,
1504
  VEX_LEN_0F3A30,
1505
  VEX_LEN_0F3A31,
1506
  VEX_LEN_0F3A32,
1507
  VEX_LEN_0F3A33,
1508
  VEX_LEN_0F3A38,
1509
  VEX_LEN_0F3A39,
1510
  VEX_LEN_0F3A41,
1511
  VEX_LEN_0F3A46,
1512
  VEX_LEN_0F3A60,
1513
  VEX_LEN_0F3A61,
1514
  VEX_LEN_0F3A62,
1515
  VEX_LEN_0F3A63,
1516
  VEX_LEN_0F3ADE_W_0,
1517
  VEX_LEN_0F3ADF,
1518
  VEX_LEN_0F3AF0,
1519
  VEX_LEN_MAP5_F8_X86_64,
1520
  VEX_LEN_MAP5_F9_X86_64,
1521
  VEX_LEN_MAP5_FD_X86_64,
1522
  VEX_LEN_MAP7_F6,
1523
  VEX_LEN_MAP7_F8,
1524
  VEX_LEN_XOP_08_85,
1525
  VEX_LEN_XOP_08_86,
1526
  VEX_LEN_XOP_08_87,
1527
  VEX_LEN_XOP_08_8E,
1528
  VEX_LEN_XOP_08_8F,
1529
  VEX_LEN_XOP_08_95,
1530
  VEX_LEN_XOP_08_96,
1531
  VEX_LEN_XOP_08_97,
1532
  VEX_LEN_XOP_08_9E,
1533
  VEX_LEN_XOP_08_9F,
1534
  VEX_LEN_XOP_08_A3,
1535
  VEX_LEN_XOP_08_A6,
1536
  VEX_LEN_XOP_08_B6,
1537
  VEX_LEN_XOP_08_C0,
1538
  VEX_LEN_XOP_08_C1,
1539
  VEX_LEN_XOP_08_C2,
1540
  VEX_LEN_XOP_08_C3,
1541
  VEX_LEN_XOP_08_CC,
1542
  VEX_LEN_XOP_08_CD,
1543
  VEX_LEN_XOP_08_CE,
1544
  VEX_LEN_XOP_08_CF,
1545
  VEX_LEN_XOP_08_EC,
1546
  VEX_LEN_XOP_08_ED,
1547
  VEX_LEN_XOP_08_EE,
1548
  VEX_LEN_XOP_08_EF,
1549
  VEX_LEN_XOP_09_01,
1550
  VEX_LEN_XOP_09_02,
1551
  VEX_LEN_XOP_09_12,
1552
  VEX_LEN_XOP_09_82_W_0,
1553
  VEX_LEN_XOP_09_83_W_0,
1554
  VEX_LEN_XOP_09_90,
1555
  VEX_LEN_XOP_09_91,
1556
  VEX_LEN_XOP_09_92,
1557
  VEX_LEN_XOP_09_93,
1558
  VEX_LEN_XOP_09_94,
1559
  VEX_LEN_XOP_09_95,
1560
  VEX_LEN_XOP_09_96,
1561
  VEX_LEN_XOP_09_97,
1562
  VEX_LEN_XOP_09_98,
1563
  VEX_LEN_XOP_09_99,
1564
  VEX_LEN_XOP_09_9A,
1565
  VEX_LEN_XOP_09_9B,
1566
  VEX_LEN_XOP_09_C1,
1567
  VEX_LEN_XOP_09_C2,
1568
  VEX_LEN_XOP_09_C3,
1569
  VEX_LEN_XOP_09_C6,
1570
  VEX_LEN_XOP_09_C7,
1571
  VEX_LEN_XOP_09_CB,
1572
  VEX_LEN_XOP_09_D1,
1573
  VEX_LEN_XOP_09_D2,
1574
  VEX_LEN_XOP_09_D3,
1575
  VEX_LEN_XOP_09_D6,
1576
  VEX_LEN_XOP_09_D7,
1577
  VEX_LEN_XOP_09_DB,
1578
  VEX_LEN_XOP_09_E1,
1579
  VEX_LEN_XOP_09_E2,
1580
  VEX_LEN_XOP_09_E3,
1581
  VEX_LEN_XOP_0A_12,
1582
};
1583
1584
enum
1585
{
1586
  EVEX_LEN_0F7E_P_1_W_0 = 0,
1587
  EVEX_LEN_0FD6_P_2_W_0,
1588
  EVEX_LEN_0F3816,
1589
  EVEX_LEN_0F3819,
1590
  EVEX_LEN_0F381A,
1591
  EVEX_LEN_0F381B,
1592
  EVEX_LEN_0F3836,
1593
  EVEX_LEN_0F384A_X86_64_W_0,
1594
  EVEX_LEN_0F385A,
1595
  EVEX_LEN_0F385B,
1596
  EVEX_LEN_0F386D_X86_64_W_0,
1597
  EVEX_LEN_0F38C6,
1598
  EVEX_LEN_0F38C7,
1599
  EVEX_LEN_0F3A00,
1600
  EVEX_LEN_0F3A01,
1601
  EVEX_LEN_0F3A07_X86_64_W_0,
1602
  EVEX_LEN_0F3A18,
1603
  EVEX_LEN_0F3A19,
1604
  EVEX_LEN_0F3A1A,
1605
  EVEX_LEN_0F3A1B,
1606
  EVEX_LEN_0F3A23,
1607
  EVEX_LEN_0F3A38,
1608
  EVEX_LEN_0F3A39,
1609
  EVEX_LEN_0F3A3A,
1610
  EVEX_LEN_0F3A3B,
1611
  EVEX_LEN_0F3A43,
1612
  EVEX_LEN_0F3A77_X86_64_W_0,
1613
1614
  EVEX_LEN_MAP5_6E,
1615
  EVEX_LEN_MAP5_7E,
1616
  EVEX_LEN_MAP6_80_W_0,
1617
  EVEX_LEN_MAP6_80_W_1,
1618
};
1619
1620
enum
1621
{
1622
  VEX_W_0F41_L_1 = 0,
1623
  VEX_W_0F42_L_1,
1624
  VEX_W_0F44_L_0,
1625
  VEX_W_0F45_L_1,
1626
  VEX_W_0F46_L_1,
1627
  VEX_W_0F47_L_1,
1628
  VEX_W_0F4A_L_1,
1629
  VEX_W_0F4B_L_1,
1630
  VEX_W_0F90_L_0,
1631
  VEX_W_0F91_L_0,
1632
  VEX_W_0F92_L_0,
1633
  VEX_W_0F93_L_0,
1634
  VEX_W_0F98_L_0,
1635
  VEX_W_0F99_L_0,
1636
  VEX_W_0F380C,
1637
  VEX_W_0F380D,
1638
  VEX_W_0F380E,
1639
  VEX_W_0F380F,
1640
  VEX_W_0F3813,
1641
  VEX_W_0F3816_L_1,
1642
  VEX_W_0F3818,
1643
  VEX_W_0F3819_L_1,
1644
  VEX_W_0F381A_L_1,
1645
  VEX_W_0F382C,
1646
  VEX_W_0F382D,
1647
  VEX_W_0F382E,
1648
  VEX_W_0F382F,
1649
  VEX_W_0F3836,
1650
  VEX_W_0F3846,
1651
  VEX_W_0F3848_X86_64_L_0,
1652
  VEX_W_0F3849_X86_64_L_0,
1653
  VEX_W_0F384A_X86_64,
1654
  VEX_W_0F384B_X86_64_L_0,
1655
  VEX_W_0F3850,
1656
  VEX_W_0F3851,
1657
  VEX_W_0F3852,
1658
  VEX_W_0F3853,
1659
  VEX_W_0F3858,
1660
  VEX_W_0F3859,
1661
  VEX_W_0F385A_L_0,
1662
  VEX_W_0F385C_X86_64_L_0,
1663
  VEX_W_0F385E_X86_64_L_0,
1664
  VEX_W_0F385F_X86_64_L_0,
1665
  VEX_W_0F386B_X86_64_L_0,
1666
  VEX_W_0F386C_X86_64_L_0,
1667
  VEX_W_0F386E_X86_64_L_0,
1668
  VEX_W_0F386F_X86_64_L_0,
1669
  VEX_W_0F3872_P_1,
1670
  VEX_W_0F3878,
1671
  VEX_W_0F3879,
1672
  VEX_W_0F38B0,
1673
  VEX_W_0F38B1,
1674
  VEX_W_0F38B4,
1675
  VEX_W_0F38B5,
1676
  VEX_W_0F38CB_P_3,
1677
  VEX_W_0F38CC_P_3,
1678
  VEX_W_0F38CD_P_3,
1679
  VEX_W_0F38CF,
1680
  VEX_W_0F38D2,
1681
  VEX_W_0F38D3,
1682
  VEX_W_0F38DA,
1683
  VEX_W_0F3A00_L_1,
1684
  VEX_W_0F3A01_L_1,
1685
  VEX_W_0F3A02,
1686
  VEX_W_0F3A04,
1687
  VEX_W_0F3A05,
1688
  VEX_W_0F3A06_L_1,
1689
  VEX_W_0F3A18_L_1,
1690
  VEX_W_0F3A19_L_1,
1691
  VEX_W_0F3A1D,
1692
  VEX_W_0F3A38_L_1,
1693
  VEX_W_0F3A39_L_1,
1694
  VEX_W_0F3A46_L_1,
1695
  VEX_W_0F3A4A,
1696
  VEX_W_0F3A4B,
1697
  VEX_W_0F3A4C,
1698
  VEX_W_0F3ACE,
1699
  VEX_W_0F3ACF,
1700
  VEX_W_0F3ADE,
1701
  VEX_W_MAP5_F8_X86_64_L_0,
1702
  VEX_W_MAP5_F9_X86_64_L_0,
1703
  VEX_W_MAP5_FD_X86_64_L_0,
1704
  VEX_W_MAP7_F6_L_0,
1705
  VEX_W_MAP7_F8_L_0,
1706
1707
  VEX_W_XOP_08_85_L_0,
1708
  VEX_W_XOP_08_86_L_0,
1709
  VEX_W_XOP_08_87_L_0,
1710
  VEX_W_XOP_08_8E_L_0,
1711
  VEX_W_XOP_08_8F_L_0,
1712
  VEX_W_XOP_08_95_L_0,
1713
  VEX_W_XOP_08_96_L_0,
1714
  VEX_W_XOP_08_97_L_0,
1715
  VEX_W_XOP_08_9E_L_0,
1716
  VEX_W_XOP_08_9F_L_0,
1717
  VEX_W_XOP_08_A6_L_0,
1718
  VEX_W_XOP_08_B6_L_0,
1719
  VEX_W_XOP_08_C0_L_0,
1720
  VEX_W_XOP_08_C1_L_0,
1721
  VEX_W_XOP_08_C2_L_0,
1722
  VEX_W_XOP_08_C3_L_0,
1723
  VEX_W_XOP_08_CC_L_0,
1724
  VEX_W_XOP_08_CD_L_0,
1725
  VEX_W_XOP_08_CE_L_0,
1726
  VEX_W_XOP_08_CF_L_0,
1727
  VEX_W_XOP_08_EC_L_0,
1728
  VEX_W_XOP_08_ED_L_0,
1729
  VEX_W_XOP_08_EE_L_0,
1730
  VEX_W_XOP_08_EF_L_0,
1731
1732
  VEX_W_XOP_09_80,
1733
  VEX_W_XOP_09_81,
1734
  VEX_W_XOP_09_82,
1735
  VEX_W_XOP_09_83,
1736
  VEX_W_XOP_09_C1_L_0,
1737
  VEX_W_XOP_09_C2_L_0,
1738
  VEX_W_XOP_09_C3_L_0,
1739
  VEX_W_XOP_09_C6_L_0,
1740
  VEX_W_XOP_09_C7_L_0,
1741
  VEX_W_XOP_09_CB_L_0,
1742
  VEX_W_XOP_09_D1_L_0,
1743
  VEX_W_XOP_09_D2_L_0,
1744
  VEX_W_XOP_09_D3_L_0,
1745
  VEX_W_XOP_09_D6_L_0,
1746
  VEX_W_XOP_09_D7_L_0,
1747
  VEX_W_XOP_09_DB_L_0,
1748
  VEX_W_XOP_09_E1_L_0,
1749
  VEX_W_XOP_09_E2_L_0,
1750
  VEX_W_XOP_09_E3_L_0,
1751
1752
  EVEX_W_0F5B_P_0,
1753
  EVEX_W_0F62,
1754
  EVEX_W_0F66,
1755
  EVEX_W_0F6A,
1756
  EVEX_W_0F6B,
1757
  EVEX_W_0F6C,
1758
  EVEX_W_0F6D,
1759
  EVEX_W_0F6F_P_1,
1760
  EVEX_W_0F6F_P_2,
1761
  EVEX_W_0F6F_P_3,
1762
  EVEX_W_0F70_P_2,
1763
  EVEX_W_0F72_R_2,
1764
  EVEX_W_0F72_R_4,
1765
  EVEX_W_0F72_R_6,
1766
  EVEX_W_0F73_R_2,
1767
  EVEX_W_0F73_R_6,
1768
  EVEX_W_0F76,
1769
  EVEX_W_0F78_P_0,
1770
  EVEX_W_0F78_P_2,
1771
  EVEX_W_0F79_P_0,
1772
  EVEX_W_0F79_P_2,
1773
  EVEX_W_0F7A_P_1,
1774
  EVEX_W_0F7A_P_2,
1775
  EVEX_W_0F7A_P_3,
1776
  EVEX_W_0F7B_P_2,
1777
  EVEX_W_0F7E_P_1,
1778
  EVEX_W_0F7F_P_1,
1779
  EVEX_W_0F7F_P_2,
1780
  EVEX_W_0F7F_P_3,
1781
  EVEX_W_0FD2,
1782
  EVEX_W_0FD3,
1783
  EVEX_W_0FD4,
1784
  EVEX_W_0FD6,
1785
  EVEX_W_0FE2,
1786
  EVEX_W_0FE6_P_1,
1787
  EVEX_W_0FE7,
1788
  EVEX_W_0FF2,
1789
  EVEX_W_0FF3,
1790
  EVEX_W_0FF4,
1791
  EVEX_W_0FFA,
1792
  EVEX_W_0FFB,
1793
  EVEX_W_0FFE,
1794
1795
  EVEX_W_0F3810_P_1,
1796
  EVEX_W_0F3810_P_2,
1797
  EVEX_W_0F3811_P_1,
1798
  EVEX_W_0F3811_P_2,
1799
  EVEX_W_0F3812_P_1,
1800
  EVEX_W_0F3812_P_2,
1801
  EVEX_W_0F3813_P_1,
1802
  EVEX_W_0F3814_P_1,
1803
  EVEX_W_0F3815_P_1,
1804
  EVEX_W_0F3819_L_n,
1805
  EVEX_W_0F381A_L_n,
1806
  EVEX_W_0F381B_L_2,
1807
  EVEX_W_0F381E,
1808
  EVEX_W_0F381F,
1809
  EVEX_W_0F3820_P_1,
1810
  EVEX_W_0F3821_P_1,
1811
  EVEX_W_0F3822_P_1,
1812
  EVEX_W_0F3823_P_1,
1813
  EVEX_W_0F3824_P_1,
1814
  EVEX_W_0F3825_P_1,
1815
  EVEX_W_0F3825_P_2,
1816
  EVEX_W_0F3828_P_2,
1817
  EVEX_W_0F3829_P_2,
1818
  EVEX_W_0F382A_P_1,
1819
  EVEX_W_0F382A_P_2,
1820
  EVEX_W_0F382B,
1821
  EVEX_W_0F3830_P_1,
1822
  EVEX_W_0F3831_P_1,
1823
  EVEX_W_0F3832_P_1,
1824
  EVEX_W_0F3833_P_1,
1825
  EVEX_W_0F3834_P_1,
1826
  EVEX_W_0F3835_P_1,
1827
  EVEX_W_0F3835_P_2,
1828
  EVEX_W_0F3837,
1829
  EVEX_W_0F383A_P_1,
1830
  EVEX_W_0F384A_X86_64,
1831
  EVEX_W_0F3859,
1832
  EVEX_W_0F385A_L_n,
1833
  EVEX_W_0F385B_L_2,
1834
  EVEX_W_0F386D_X86_64,
1835
  EVEX_W_0F3870,
1836
  EVEX_W_0F3872_P_2,
1837
  EVEX_W_0F387A,
1838
  EVEX_W_0F387B,
1839
  EVEX_W_0F3883,
1840
1841
  EVEX_W_0F3A07_X86_64,
1842
  EVEX_W_0F3A18_L_n,
1843
  EVEX_W_0F3A19_L_n,
1844
  EVEX_W_0F3A1A_L_2,
1845
  EVEX_W_0F3A1B_L_2,
1846
  EVEX_W_0F3A21,
1847
  EVEX_W_0F3A23_L_n,
1848
  EVEX_W_0F3A38_L_n,
1849
  EVEX_W_0F3A39_L_n,
1850
  EVEX_W_0F3A3A_L_2,
1851
  EVEX_W_0F3A3B_L_2,
1852
  EVEX_W_0F3A42,
1853
  EVEX_W_0F3A43_L_n,
1854
  EVEX_W_0F3A70,
1855
  EVEX_W_0F3A72,
1856
  EVEX_W_0F3A77_X86_64,
1857
1858
  EVEX_W_MAP4_8F_R_0,
1859
  EVEX_W_MAP4_F8_P1_M_1,
1860
  EVEX_W_MAP4_F8_P3_M_1,
1861
  EVEX_W_MAP4_FF_R_6,
1862
1863
  EVEX_W_MAP5_5B_P_0,
1864
  EVEX_W_MAP5_6C_P_0,
1865
  EVEX_W_MAP5_6C_P_2,
1866
  EVEX_W_MAP5_6D_P_0,
1867
  EVEX_W_MAP5_6D_P_2,
1868
  EVEX_W_MAP5_6E_P_1,
1869
  EVEX_W_MAP5_7A_P_3,
1870
  EVEX_W_MAP5_7E_P_1,
1871
  EVEX_W_MAP6_80,
1872
  EVEX_W_MAP6_81,
1873
};
1874
1875
typedef bool (*op_rtn) (instr_info *ins, int bytemode, int sizeflag);
1876
1877
struct dis386 {
1878
  const char *name;
1879
  struct
1880
    {
1881
      op_rtn rtn;
1882
      int bytemode;
1883
    } op[MAX_OPERANDS];
1884
  unsigned int prefix_requirement;
1885
};
1886
1887
/* Upper case letters in the instruction names here are macros.
1888
   'A' => print 'b' if no (suitable) register operand or suffix_always is true
1889
   'B' => print 'b' if suffix_always is true
1890
   'C' => print 's' or 'l' ('w' or 'd' in Intel mode) depending on operand
1891
    size prefix
1892
   'D' => print 'w' if no register operands or 'w', 'l' or 'q', if
1893
    suffix_always is true
1894
   'E' => print 'e' if 32-bit form of jcxz
1895
   'F' => print 'w' or 'l' depending on address size prefix (loop insns)
1896
   'G' => print 'w' or 'l' depending on operand size prefix (i/o insns)
1897
   'H' => print ",pt" or ",pn" branch hint
1898
   'I' unused.
1899
   'J' unused.
1900
   'K' => print 'd' or 'q' if rex prefix is present.
1901
   'L' => print 'l' or 'q' if suffix_always is true
1902
   'M' => print 'r' if intel_mnemonic is false.
1903
   'N' => print 'n' if instruction has no wait "prefix"
1904
   'O' => print 'd' or 'o' (or 'q' in Intel mode)
1905
   'P' => behave as 'T' except with register operand outside of suffix_always
1906
    mode
1907
   'Q' => print 'w', 'l' or 'q' if no (suitable) register operand or
1908
    suffix_always is true
1909
   'R' => print 'w', 'l' or 'q' ('d' for 'l' and 'e' in Intel mode)
1910
   'S' => print 'w', 'l' or 'q' if suffix_always is true
1911
   'T' => print 'w', 'l'/'d', or 'q' if instruction has an operand size
1912
    prefix or if suffix_always is true.
1913
   'U' unused.
1914
   'V' => print 'v' for VEX/EVEX and nothing for legacy encodings.
1915
   'W' => print 'b', 'w' or 'l' ('d' in Intel mode)
1916
   'X' => print 's', 'd' depending on data16 prefix (for XMM)
1917
   'Y' => no output, mark EVEX.aaa != 0 as bad.
1918
   'Z' => print 'q' in 64bit mode and 'l' otherwise, if suffix_always is true.
1919
   '!' => change condition from true to false or from false to true.
1920
   '%' => add 1 upper case letter to the macro.
1921
   '^' => print 'w', 'l', or 'q' (Intel64 ISA only) depending on operand size
1922
    prefix or suffix_always is true (lcall/ljmp).
1923
   '@' => in 64bit mode for Intel64 ISA or if instruction
1924
    has no operand sizing prefix, print 'q' if suffix_always is true or
1925
    nothing otherwise; behave as 'P' in all other cases
1926
1927
   2 upper case letter macros:
1928
   "CC" => print condition code
1929
   "XY" => print 'x' or 'y' if suffix_always is true or no register
1930
     operands and no broadcast.
1931
   "XZ" => print 'x', 'y', or 'z' if suffix_always is true or no
1932
     register operands and no broadcast.
1933
   "XW" => print 's', 'd' depending on the VEX.W bit (for FMA)
1934
   "XD" => print 'd' if !EVEX or EVEX.W=1, EVEX.W=0 is not a valid encoding
1935
   "XH" => print 'h' if EVEX.W=0, EVEX.W=1 is not a valid encoding (for FP16)
1936
   "XB" => print 'bf16' if EVEX.W=0, EVEX.W=1 is not a valid encoding
1937
     (for BF16)
1938
   "XS" => print 's' if !EVEX or EVEX.W=0, EVEX.W=1 is not a valid encoding
1939
   "XV" => print "{vex} " pseudo prefix
1940
   "XE" => print "{evex} " pseudo prefix if no EVEX-specific functionality is
1941
     is used by an EVEX-encoded (AVX512VL) instruction.
1942
   "ME" => Similar to "XE", but only print "{evex} " when there is no
1943
     memory operand.
1944
   "NF" => print "{nf} " pseudo prefix when EVEX.NF = 1 and print "{evex} "
1945
     pseudo prefix when instructions without NF, EGPR and VVVV,
1946
   "NE" => don't print "{evex} " pseudo prefix for some special instructions
1947
     in MAP4.
1948
   "ZU" => print 'zu' if EVEX.ZU=1.
1949
   "SC" => print suffix SCC for SCC insns
1950
   "YK" keep unused, to avoid ambiguity with the combined use of Y and K.
1951
   "YX" keep unused, to avoid ambiguity with the combined use of Y and X.
1952
   "LQ" => print 'l' ('d' in Intel mode) or 'q' for memory operand, cond
1953
     being false, or no operand at all in 64bit mode, or if suffix_always
1954
     is true.
1955
   "LB" => print "abs" in 64bit mode and behave as 'B' otherwise
1956
   "LS" => print "abs" in 64bit mode and behave as 'S' otherwise
1957
   "LV" => print "abs" for 64bit operand and behave as 'S' otherwise
1958
   "DQ" => print 'd' or 'q' depending on the VEX.W bit
1959
   "DF" => print default flag value for SCC insns
1960
   "BW" => print 'b' or 'w' depending on the VEX.W bit
1961
   "LP" => print 'w' or 'l' ('d' in Intel mode) if instruction has
1962
     an operand size prefix, or suffix_always is true.  print
1963
     'q' if rex prefix is present.
1964
1965
   Many of the above letters print nothing in Intel mode.  See "putop"
1966
   for the details.
1967
1968
   Braces '{' and '}', and vertical bars '|', indicate alternative
1969
   mnemonic strings for AT&T and Intel.  */
1970
1971
static const struct dis386 dis386[] = {
1972
  /* 00 */
1973
  { "addB",   { Ebh1, Gb }, 0 },
1974
  { "addS",   { Evh1, Gv }, 0 },
1975
  { "addB",   { Gb, EbS }, 0 },
1976
  { "addS",   { Gv, EvS }, 0 },
1977
  { "addB",   { AL, Ib }, 0 },
1978
  { "addS",   { eAX, Iv }, 0 },
1979
  { X86_64_TABLE (X86_64_06) },
1980
  { X86_64_TABLE (X86_64_07) },
1981
  /* 08 */
1982
  { "orB",    { Ebh1, Gb }, 0 },
1983
  { "orS",    { Evh1, Gv }, 0 },
1984
  { "orB",    { Gb, EbS }, 0 },
1985
  { "orS",    { Gv, EvS }, 0 },
1986
  { "orB",    { AL, Ib }, 0 },
1987
  { "orS",    { eAX, Iv }, 0 },
1988
  { X86_64_TABLE (X86_64_0E) },
1989
  { Bad_Opcode }, /* 0x0f extended opcode escape */
1990
  /* 10 */
1991
  { "adcB",   { Ebh1, Gb }, 0 },
1992
  { "adcS",   { Evh1, Gv }, 0 },
1993
  { "adcB",   { Gb, EbS }, 0 },
1994
  { "adcS",   { Gv, EvS }, 0 },
1995
  { "adcB",   { AL, Ib }, 0 },
1996
  { "adcS",   { eAX, Iv }, 0 },
1997
  { X86_64_TABLE (X86_64_16) },
1998
  { X86_64_TABLE (X86_64_17) },
1999
  /* 18 */
2000
  { "sbbB",   { Ebh1, Gb }, 0 },
2001
  { "sbbS",   { Evh1, Gv }, 0 },
2002
  { "sbbB",   { Gb, EbS }, 0 },
2003
  { "sbbS",   { Gv, EvS }, 0 },
2004
  { "sbbB",   { AL, Ib }, 0 },
2005
  { "sbbS",   { eAX, Iv }, 0 },
2006
  { X86_64_TABLE (X86_64_1E) },
2007
  { X86_64_TABLE (X86_64_1F) },
2008
  /* 20 */
2009
  { "andB",   { Ebh1, Gb }, 0 },
2010
  { "andS",   { Evh1, Gv }, 0 },
2011
  { "andB",   { Gb, EbS }, 0 },
2012
  { "andS",   { Gv, EvS }, 0 },
2013
  { "andB",   { AL, Ib }, 0 },
2014
  { "andS",   { eAX, Iv }, 0 },
2015
  { Bad_Opcode }, /* SEG ES prefix */
2016
  { X86_64_TABLE (X86_64_27) },
2017
  /* 28 */
2018
  { "subB",   { Ebh1, Gb }, 0 },
2019
  { "subS",   { Evh1, Gv }, 0 },
2020
  { "subB",   { Gb, EbS }, 0 },
2021
  { "subS",   { Gv, EvS }, 0 },
2022
  { "subB",   { AL, Ib }, 0 },
2023
  { "subS",   { eAX, Iv }, 0 },
2024
  { Bad_Opcode }, /* SEG CS prefix */
2025
  { X86_64_TABLE (X86_64_2F) },
2026
  /* 30 */
2027
  { "xorB",   { Ebh1, Gb }, 0 },
2028
  { "xorS",   { Evh1, Gv }, 0 },
2029
  { "xorB",   { Gb, EbS }, 0 },
2030
  { "xorS",   { Gv, EvS }, 0 },
2031
  { "xorB",   { AL, Ib }, 0 },
2032
  { "xorS",   { eAX, Iv }, 0 },
2033
  { Bad_Opcode }, /* SEG SS prefix */
2034
  { X86_64_TABLE (X86_64_37) },
2035
  /* 38 */
2036
  { "cmpB",   { Eb, Gb }, 0 },
2037
  { "cmpS",   { Ev, Gv }, 0 },
2038
  { "cmpB",   { Gb, EbS }, 0 },
2039
  { "cmpS",   { Gv, EvS }, 0 },
2040
  { "cmpB",   { AL, Ib }, 0 },
2041
  { "cmpS",   { eAX, Iv }, 0 },
2042
  { Bad_Opcode }, /* SEG DS prefix */
2043
  { X86_64_TABLE (X86_64_3F) },
2044
  /* 40 */
2045
  { "inc{S|}",    { RMeAX }, 0 },
2046
  { "inc{S|}",    { RMeCX }, 0 },
2047
  { "inc{S|}",    { RMeDX }, 0 },
2048
  { "inc{S|}",    { RMeBX }, 0 },
2049
  { "inc{S|}",    { RMeSP }, 0 },
2050
  { "inc{S|}",    { RMeBP }, 0 },
2051
  { "inc{S|}",    { RMeSI }, 0 },
2052
  { "inc{S|}",    { RMeDI }, 0 },
2053
  /* 48 */
2054
  { "dec{S|}",    { RMeAX }, 0 },
2055
  { "dec{S|}",    { RMeCX }, 0 },
2056
  { "dec{S|}",    { RMeDX }, 0 },
2057
  { "dec{S|}",    { RMeBX }, 0 },
2058
  { "dec{S|}",    { RMeSP }, 0 },
2059
  { "dec{S|}",    { RMeBP }, 0 },
2060
  { "dec{S|}",    { RMeSI }, 0 },
2061
  { "dec{S|}",    { RMeDI }, 0 },
2062
  /* 50 */
2063
  { "push!P",   { RMrAX }, 0 },
2064
  { "push!P",   { RMrCX }, 0 },
2065
  { "push!P",   { RMrDX }, 0 },
2066
  { "push!P",   { RMrBX }, 0 },
2067
  { "push!P",   { RMrSP }, 0 },
2068
  { "push!P",   { RMrBP }, 0 },
2069
  { "push!P",   { RMrSI }, 0 },
2070
  { "push!P",   { RMrDI }, 0 },
2071
  /* 58 */
2072
  { "pop!P",    { RMrAX }, 0 },
2073
  { "pop!P",    { RMrCX }, 0 },
2074
  { "pop!P",    { RMrDX }, 0 },
2075
  { "pop!P",    { RMrBX }, 0 },
2076
  { "pop!P",    { RMrSP }, 0 },
2077
  { "pop!P",    { RMrBP }, 0 },
2078
  { "pop!P",    { RMrSI }, 0 },
2079
  { "pop!P",    { RMrDI }, 0 },
2080
  /* 60 */
2081
  { X86_64_TABLE (X86_64_60) },
2082
  { X86_64_TABLE (X86_64_61) },
2083
  { X86_64_TABLE (X86_64_62) },
2084
  { X86_64_TABLE (X86_64_63) },
2085
  { Bad_Opcode }, /* seg fs */
2086
  { Bad_Opcode }, /* seg gs */
2087
  { Bad_Opcode }, /* op size prefix */
2088
  { Bad_Opcode }, /* adr size prefix */
2089
  /* 68 */
2090
  { "pushP",    { sIv }, 0 },
2091
  { "imulS",    { Gv, Ev, Iv }, 0 },
2092
  { "pushP",    { sIbT }, 0 },
2093
  { "imulS",    { Gv, Ev, sIb }, 0 },
2094
  { "ins{b|}",    { Ybr, indirDX }, 0 },
2095
  { X86_64_TABLE (X86_64_6D) },
2096
  { "outs{b|}",   { indirDXr, Xb }, 0 },
2097
  { X86_64_TABLE (X86_64_6F) },
2098
  /* 70 */
2099
  { "joH",    { Jb, BND, cond_jump_flag }, PREFIX_REX2_ILLEGAL },
2100
  { "jnoH",   { Jb, BND, cond_jump_flag }, PREFIX_REX2_ILLEGAL },
2101
  { "jbH",    { Jb, BND, cond_jump_flag }, PREFIX_REX2_ILLEGAL },
2102
  { "jaeH",   { Jb, BND, cond_jump_flag }, PREFIX_REX2_ILLEGAL },
2103
  { "jeH",    { Jb, BND, cond_jump_flag }, PREFIX_REX2_ILLEGAL },
2104
  { "jneH",   { Jb, BND, cond_jump_flag }, PREFIX_REX2_ILLEGAL },
2105
  { "jbeH",   { Jb, BND, cond_jump_flag }, PREFIX_REX2_ILLEGAL },
2106
  { "jaH",    { Jb, BND, cond_jump_flag }, PREFIX_REX2_ILLEGAL },
2107
  /* 78 */
2108
  { "jsH",    { Jb, BND, cond_jump_flag }, PREFIX_REX2_ILLEGAL },
2109
  { "jnsH",   { Jb, BND, cond_jump_flag }, PREFIX_REX2_ILLEGAL },
2110
  { "jpH",    { Jb, BND, cond_jump_flag }, PREFIX_REX2_ILLEGAL },
2111
  { "jnpH",   { Jb, BND, cond_jump_flag }, PREFIX_REX2_ILLEGAL },
2112
  { "jlH",    { Jb, BND, cond_jump_flag }, PREFIX_REX2_ILLEGAL },
2113
  { "jgeH",   { Jb, BND, cond_jump_flag }, PREFIX_REX2_ILLEGAL },
2114
  { "jleH",   { Jb, BND, cond_jump_flag }, PREFIX_REX2_ILLEGAL },
2115
  { "jgH",    { Jb, BND, cond_jump_flag }, PREFIX_REX2_ILLEGAL },
2116
  /* 80 */
2117
  { REG_TABLE (REG_80) },
2118
  { REG_TABLE (REG_81) },
2119
  { X86_64_TABLE (X86_64_82) },
2120
  { REG_TABLE (REG_83) },
2121
  { "testB",    { Eb, Gb }, 0 },
2122
  { "testS",    { Ev, Gv }, 0 },
2123
  { "xchgB",    { Ebh2, Gb }, 0 },
2124
  { "xchgS",    { Evh2, Gv }, 0 },
2125
  /* 88 */
2126
  { "movB",   { Ebh3, Gb }, 0 },
2127
  { "movS",   { Evh3, Gv }, 0 },
2128
  { "movB",   { Gb, EbS }, 0 },
2129
  { "movS",   { Gv, EvS }, 0 },
2130
  { "movD",   { Sv, Sw }, 0 },
2131
  { "leaS",   { Gv, M }, 0 },
2132
  { "movD",   { Sw, Sv }, 0 },
2133
  { REG_TABLE (REG_8F) },
2134
  /* 90 */
2135
  { PREFIX_TABLE (PREFIX_90) },
2136
  { "xchgS",    { RMeCX, eAX }, 0 },
2137
  { "xchgS",    { RMeDX, eAX }, 0 },
2138
  { "xchgS",    { RMeBX, eAX }, 0 },
2139
  { "xchgS",    { RMeSP, eAX }, 0 },
2140
  { "xchgS",    { RMeBP, eAX }, 0 },
2141
  { "xchgS",    { RMeSI, eAX }, 0 },
2142
  { "xchgS",    { RMeDI, eAX }, 0 },
2143
  /* 98 */
2144
  { "cW{t|}R",    { XX }, 0 },
2145
  { "cR{t|}O",    { XX }, 0 },
2146
  { X86_64_TABLE (X86_64_9A) },
2147
  { Bad_Opcode }, /* fwait */
2148
  { "pushfP",   { XX }, 0 },
2149
  { "popfP",    { XX }, 0 },
2150
  { "sahf",   { XX }, 0 },
2151
  { "lahf",   { XX }, 0 },
2152
  /* a0 */
2153
  { "mov%LB",   { AL, Ob }, PREFIX_REX2_ILLEGAL },
2154
  { "mov%LS",   { { JMPABS_Fixup, eAX_reg }, { JMPABS_Fixup, v_mode } }, PREFIX_REX2_ILLEGAL },
2155
  { "mov%LB",   { Ob, AL }, PREFIX_REX2_ILLEGAL },
2156
  { "mov%LS",   { Ov, eAX }, PREFIX_REX2_ILLEGAL },
2157
  { "movs{b|}",   { Ybr, Xb }, PREFIX_REX2_ILLEGAL },
2158
  { "movs{R|}",   { Yvr, Xv }, PREFIX_REX2_ILLEGAL },
2159
  { "cmps{b|}",   { Xb, Yb }, PREFIX_REX2_ILLEGAL },
2160
  { "cmps{R|}",   { Xv, Yv }, PREFIX_REX2_ILLEGAL },
2161
  /* a8 */
2162
  { "testB",    { AL, Ib }, PREFIX_REX2_ILLEGAL },
2163
  { "testS",    { eAX, Iv }, PREFIX_REX2_ILLEGAL },
2164
  { "stosB",    { Ybr, AL }, PREFIX_REX2_ILLEGAL },
2165
  { "stosS",    { Yvr, eAX }, PREFIX_REX2_ILLEGAL },
2166
  { "lodsB",    { ALr, Xb }, PREFIX_REX2_ILLEGAL },
2167
  { "lodsS",    { eAXr, Xv }, PREFIX_REX2_ILLEGAL },
2168
  { "scasB",    { AL, Yb }, PREFIX_REX2_ILLEGAL },
2169
  { "scasS",    { eAX, Yv }, PREFIX_REX2_ILLEGAL },
2170
  /* b0 */
2171
  { "movB",   { RMAL, Ib }, 0 },
2172
  { "movB",   { RMCL, Ib }, 0 },
2173
  { "movB",   { RMDL, Ib }, 0 },
2174
  { "movB",   { RMBL, Ib }, 0 },
2175
  { "movB",   { RMAH, Ib }, 0 },
2176
  { "movB",   { RMCH, Ib }, 0 },
2177
  { "movB",   { RMDH, Ib }, 0 },
2178
  { "movB",   { RMBH, Ib }, 0 },
2179
  /* b8 */
2180
  { "mov%LV",   { RMeAX, Iv64 }, 0 },
2181
  { "mov%LV",   { RMeCX, Iv64 }, 0 },
2182
  { "mov%LV",   { RMeDX, Iv64 }, 0 },
2183
  { "mov%LV",   { RMeBX, Iv64 }, 0 },
2184
  { "mov%LV",   { RMeSP, Iv64 }, 0 },
2185
  { "mov%LV",   { RMeBP, Iv64 }, 0 },
2186
  { "mov%LV",   { RMeSI, Iv64 }, 0 },
2187
  { "mov%LV",   { RMeDI, Iv64 }, 0 },
2188
  /* c0 */
2189
  { REG_TABLE (REG_C0) },
2190
  { REG_TABLE (REG_C1) },
2191
  { X86_64_TABLE (X86_64_C2) },
2192
  { X86_64_TABLE (X86_64_C3) },
2193
  { X86_64_TABLE (X86_64_C4) },
2194
  { X86_64_TABLE (X86_64_C5) },
2195
  { REG_TABLE (REG_C6) },
2196
  { REG_TABLE (REG_C7) },
2197
  /* c8 */
2198
  { "enterP",   { Iw, Ib }, 0 },
2199
  { "leaveP",   { XX }, 0 },
2200
  { "{l|}ret{|f}%LP", { Iw }, 0 },
2201
  { "{l|}ret{|f}%LP", { XX }, 0 },
2202
  { "int3",   { XX }, 0 },
2203
  { "int",    { Ib }, 0 },
2204
  { X86_64_TABLE (X86_64_CE) },
2205
  { "iret%LP",    { XX }, 0 },
2206
  /* d0 */
2207
  { REG_TABLE (REG_D0) },
2208
  { REG_TABLE (REG_D1) },
2209
  { REG_TABLE (REG_D2) },
2210
  { REG_TABLE (REG_D3) },
2211
  { X86_64_TABLE (X86_64_D4) },
2212
  { X86_64_TABLE (X86_64_D5) },
2213
  { X86_64_TABLE (X86_64_D6) },
2214
  { "xlat",   { DSBX }, 0 },
2215
  /* d8 */
2216
  { FLOAT },
2217
  { FLOAT },
2218
  { FLOAT },
2219
  { FLOAT },
2220
  { FLOAT },
2221
  { FLOAT },
2222
  { FLOAT },
2223
  { FLOAT },
2224
  /* e0 */
2225
  { "loopneFH",   { Jb, XX, loop_jcxz_flag }, PREFIX_REX2_ILLEGAL },
2226
  { "loopeFH",    { Jb, XX, loop_jcxz_flag }, PREFIX_REX2_ILLEGAL },
2227
  { "loopFH",   { Jb, XX, loop_jcxz_flag }, PREFIX_REX2_ILLEGAL },
2228
  { "jEcxzH",   { Jb, XX, loop_jcxz_flag }, PREFIX_REX2_ILLEGAL },
2229
  { "inB",    { AL, Ib }, PREFIX_REX2_ILLEGAL },
2230
  { "inG",    { zAX, Ib }, PREFIX_REX2_ILLEGAL },
2231
  { "outB",   { Ib, AL }, PREFIX_REX2_ILLEGAL },
2232
  { "outG",   { Ib, zAX }, PREFIX_REX2_ILLEGAL },
2233
  /* e8 */
2234
  { X86_64_TABLE (X86_64_E8) },
2235
  { X86_64_TABLE (X86_64_E9) },
2236
  { X86_64_TABLE (X86_64_EA) },
2237
  { "jmp",    { Jb, BND }, PREFIX_REX2_ILLEGAL },
2238
  { "inB",    { AL, indirDX }, PREFIX_REX2_ILLEGAL },
2239
  { "inG",    { zAX, indirDX }, PREFIX_REX2_ILLEGAL },
2240
  { "outB",   { indirDX, AL }, PREFIX_REX2_ILLEGAL },
2241
  { "outG",   { indirDX, zAX }, PREFIX_REX2_ILLEGAL },
2242
  /* f0 */
2243
  { Bad_Opcode }, /* lock prefix */
2244
  { "int1",   { XX }, 0 },
2245
  { Bad_Opcode }, /* repne */
2246
  { Bad_Opcode }, /* repz */
2247
  { "hlt",    { XX }, 0 },
2248
  { "cmc",    { XX }, 0 },
2249
  { REG_TABLE (REG_F6) },
2250
  { REG_TABLE (REG_F7) },
2251
  /* f8 */
2252
  { "clc",    { XX }, 0 },
2253
  { "stc",    { XX }, 0 },
2254
  { "cli",    { XX }, 0 },
2255
  { "sti",    { XX }, 0 },
2256
  { "cld",    { XX }, 0 },
2257
  { "std",    { XX }, 0 },
2258
  { REG_TABLE (REG_FE) },
2259
  { REG_TABLE (REG_FF) },
2260
};
2261
2262
static const struct dis386 dis386_twobyte[] = {
2263
  /* 00 */
2264
  { REG_TABLE (REG_0F00 ) },
2265
  { REG_TABLE (REG_0F01 ) },
2266
  { "larS",   { Gv, Sv }, 0 },
2267
  { "lslS",   { Gv, Sv }, 0 },
2268
  { Bad_Opcode },
2269
  { "syscall",    { XX }, 0 },
2270
  { "clts",   { XX }, 0 },
2271
  { "sysret%LQ",    { XX }, 0 },
2272
  /* 08 */
2273
  { "invd",   { XX }, 0 },
2274
  { PREFIX_TABLE (PREFIX_0F09) },
2275
  { Bad_Opcode },
2276
  { "ud2",    { XX }, 0 },
2277
  { Bad_Opcode },
2278
  { REG_TABLE (REG_0F0D) },
2279
  { "femms",    { XX }, 0 },
2280
  { "",     { MX, EM, OPSUF }, 0 }, /* See OP_3DNowSuffix.  */
2281
  /* 10 */
2282
  { PREFIX_TABLE (PREFIX_0F10) },
2283
  { PREFIX_TABLE (PREFIX_0F11) },
2284
  { PREFIX_TABLE (PREFIX_0F12) },
2285
  { "movlpX",   { Mq, XM }, PREFIX_OPCODE },
2286
  { "unpcklpX",   { XM, EXx }, PREFIX_OPCODE },
2287
  { "unpckhpX",   { XM, EXx }, PREFIX_OPCODE },
2288
  { PREFIX_TABLE (PREFIX_0F16) },
2289
  { "movhpX",   { Mq, XM }, PREFIX_OPCODE },
2290
  /* 18 */
2291
  { REG_TABLE (REG_0F18) },
2292
  { "nopQ",   { Ev }, 0 },
2293
  { PREFIX_TABLE (PREFIX_0F1A) },
2294
  { PREFIX_TABLE (PREFIX_0F1B) },
2295
  { PREFIX_TABLE (PREFIX_0F1C) },
2296
  { "nopQ",   { Ev }, 0 },
2297
  { PREFIX_TABLE (PREFIX_0F1E) },
2298
  { "nopQ",   { Ev }, 0 },
2299
  /* 20 */
2300
  { "movZ",   { Em, Cm }, 0 },
2301
  { "movZ",   { Em, Dm }, 0 },
2302
  { "movZ",   { Cm, Em }, 0 },
2303
  { "movZ",   { Dm, Em }, 0 },
2304
  { X86_64_TABLE (X86_64_0F24) },
2305
  { Bad_Opcode },
2306
  { X86_64_TABLE (X86_64_0F26) },
2307
  { Bad_Opcode },
2308
  /* 28 */
2309
  { "movapX",   { XM, EXx }, PREFIX_OPCODE },
2310
  { "movapX",   { EXxS, XM }, PREFIX_OPCODE },
2311
  { PREFIX_TABLE (PREFIX_0F2A) },
2312
  { PREFIX_TABLE (PREFIX_0F2B) },
2313
  { PREFIX_TABLE (PREFIX_0F2C) },
2314
  { PREFIX_TABLE (PREFIX_0F2D) },
2315
  { PREFIX_TABLE (PREFIX_0F2E) },
2316
  { PREFIX_TABLE (PREFIX_0F2F) },
2317
  /* 30 */
2318
  { "wrmsr",    { XX }, PREFIX_REX2_ILLEGAL },
2319
  { "rdtsc",    { XX }, PREFIX_REX2_ILLEGAL },
2320
  { "rdmsr",    { XX }, PREFIX_REX2_ILLEGAL },
2321
  { "rdpmc",    { XX }, PREFIX_REX2_ILLEGAL },
2322
  { "sysenter",   { SEP }, PREFIX_REX2_ILLEGAL },
2323
  { "sysexit%LQ", { SEP }, PREFIX_REX2_ILLEGAL },
2324
  { Bad_Opcode },
2325
  { "getsec",   { XX }, PREFIX_REX2_ILLEGAL },
2326
  /* 38 */
2327
  { THREE_BYTE_TABLE (THREE_BYTE_0F38) },
2328
  { Bad_Opcode },
2329
  { THREE_BYTE_TABLE (THREE_BYTE_0F3A) },
2330
  { Bad_Opcode },
2331
  { Bad_Opcode },
2332
  { Bad_Opcode },
2333
  { Bad_Opcode },
2334
  { Bad_Opcode },
2335
  /* 40 */
2336
  { "cmovoS",   { Gv, Ev }, 0 },
2337
  { "cmovnoS",    { Gv, Ev }, 0 },
2338
  { "cmovbS",   { Gv, Ev }, 0 },
2339
  { "cmovaeS",    { Gv, Ev }, 0 },
2340
  { "cmoveS",   { Gv, Ev }, 0 },
2341
  { "cmovneS",    { Gv, Ev }, 0 },
2342
  { "cmovbeS",    { Gv, Ev }, 0 },
2343
  { "cmovaS",   { Gv, Ev }, 0 },
2344
  /* 48 */
2345
  { "cmovsS",   { Gv, Ev }, 0 },
2346
  { "cmovnsS",    { Gv, Ev }, 0 },
2347
  { "cmovpS",   { Gv, Ev }, 0 },
2348
  { "cmovnpS",    { Gv, Ev }, 0 },
2349
  { "cmovlS",   { Gv, Ev }, 0 },
2350
  { "cmovgeS",    { Gv, Ev }, 0 },
2351
  { "cmovleS",    { Gv, Ev }, 0 },
2352
  { "cmovgS",   { Gv, Ev }, 0 },
2353
  /* 50 */
2354
  { "movmskpX",   { Gdq, Ux }, PREFIX_OPCODE },
2355
  { PREFIX_TABLE (PREFIX_0F51) },
2356
  { PREFIX_TABLE (PREFIX_0F52) },
2357
  { PREFIX_TABLE (PREFIX_0F53) },
2358
  { "andpX",    { XM, EXx }, PREFIX_OPCODE },
2359
  { "andnpX",   { XM, EXx }, PREFIX_OPCODE },
2360
  { "orpX",   { XM, EXx }, PREFIX_OPCODE },
2361
  { "xorpX",    { XM, EXx }, PREFIX_OPCODE },
2362
  /* 58 */
2363
  { PREFIX_TABLE (PREFIX_0F58) },
2364
  { PREFIX_TABLE (PREFIX_0F59) },
2365
  { PREFIX_TABLE (PREFIX_0F5A) },
2366
  { PREFIX_TABLE (PREFIX_0F5B) },
2367
  { PREFIX_TABLE (PREFIX_0F5C) },
2368
  { PREFIX_TABLE (PREFIX_0F5D) },
2369
  { PREFIX_TABLE (PREFIX_0F5E) },
2370
  { PREFIX_TABLE (PREFIX_0F5F) },
2371
  /* 60 */
2372
  { PREFIX_TABLE (PREFIX_0F60) },
2373
  { PREFIX_TABLE (PREFIX_0F61) },
2374
  { PREFIX_TABLE (PREFIX_0F62) },
2375
  { "packsswb",   { MX, EM }, PREFIX_OPCODE },
2376
  { "pcmpgtb",    { MX, EM }, PREFIX_OPCODE },
2377
  { "pcmpgtw",    { MX, EM }, PREFIX_OPCODE },
2378
  { "pcmpgtd",    { MX, EM }, PREFIX_OPCODE },
2379
  { "packuswb",   { MX, EM }, PREFIX_OPCODE },
2380
  /* 68 */
2381
  { "punpckhbw",  { MX, EM }, PREFIX_OPCODE },
2382
  { "punpckhwd",  { MX, EM }, PREFIX_OPCODE },
2383
  { "punpckhdq",  { MX, EM }, PREFIX_OPCODE },
2384
  { "packssdw",   { MX, EM }, PREFIX_OPCODE },
2385
  { "punpcklqdq", { XM, EXx }, PREFIX_DATA },
2386
  { "punpckhqdq", { XM, EXx }, PREFIX_DATA },
2387
  { "movK",   { MX, Edq }, PREFIX_OPCODE },
2388
  { PREFIX_TABLE (PREFIX_0F6F) },
2389
  /* 70 */
2390
  { PREFIX_TABLE (PREFIX_0F70) },
2391
  { REG_TABLE (REG_0F71) },
2392
  { REG_TABLE (REG_0F72) },
2393
  { REG_TABLE (REG_0F73) },
2394
  { "pcmpeqb",    { MX, EM }, PREFIX_OPCODE },
2395
  { "pcmpeqw",    { MX, EM }, PREFIX_OPCODE },
2396
  { "pcmpeqd",    { MX, EM }, PREFIX_OPCODE },
2397
  { "emms",   { XX }, PREFIX_OPCODE },
2398
  /* 78 */
2399
  { PREFIX_TABLE (PREFIX_0F78) },
2400
  { PREFIX_TABLE (PREFIX_0F79) },
2401
  { Bad_Opcode },
2402
  { Bad_Opcode },
2403
  { PREFIX_TABLE (PREFIX_0F7C) },
2404
  { PREFIX_TABLE (PREFIX_0F7D) },
2405
  { PREFIX_TABLE (PREFIX_0F7E) },
2406
  { PREFIX_TABLE (PREFIX_0F7F) },
2407
  /* 80 */
2408
  { "jo@H",   { Jv, BND, cond_jump_flag }, PREFIX_REX2_ILLEGAL },
2409
  { "jno@H",    { Jv, BND, cond_jump_flag }, PREFIX_REX2_ILLEGAL },
2410
  { "jb@H",   { Jv, BND, cond_jump_flag }, PREFIX_REX2_ILLEGAL },
2411
  { "jae@H",    { Jv, BND, cond_jump_flag }, PREFIX_REX2_ILLEGAL },
2412
  { "je@H",   { Jv, BND, cond_jump_flag }, PREFIX_REX2_ILLEGAL },
2413
  { "jne@H",    { Jv, BND, cond_jump_flag }, PREFIX_REX2_ILLEGAL },
2414
  { "jbe@H",    { Jv, BND, cond_jump_flag }, PREFIX_REX2_ILLEGAL },
2415
  { "ja@H",   { Jv, BND, cond_jump_flag }, PREFIX_REX2_ILLEGAL },
2416
  /* 88 */
2417
  { "js@H",   { Jv, BND, cond_jump_flag }, PREFIX_REX2_ILLEGAL },
2418
  { "jns@H",    { Jv, BND, cond_jump_flag }, PREFIX_REX2_ILLEGAL },
2419
  { "jp@H",   { Jv, BND, cond_jump_flag }, PREFIX_REX2_ILLEGAL },
2420
  { "jnp@H",    { Jv, BND, cond_jump_flag }, PREFIX_REX2_ILLEGAL },
2421
  { "jl@H",   { Jv, BND, cond_jump_flag }, PREFIX_REX2_ILLEGAL },
2422
  { "jge@H",    { Jv, BND, cond_jump_flag }, PREFIX_REX2_ILLEGAL },
2423
  { "jle@H",    { Jv, BND, cond_jump_flag }, PREFIX_REX2_ILLEGAL },
2424
  { "jg@H",   { Jv, BND, cond_jump_flag }, PREFIX_REX2_ILLEGAL },
2425
  /* 90 */
2426
  { "seto",   { Eb }, 0 },
2427
  { "setno",    { Eb }, 0 },
2428
  { "setb",   { Eb }, 0 },
2429
  { "setae",    { Eb }, 0 },
2430
  { "sete",   { Eb }, 0 },
2431
  { "setne",    { Eb }, 0 },
2432
  { "setbe",    { Eb }, 0 },
2433
  { "seta",   { Eb }, 0 },
2434
  /* 98 */
2435
  { "sets",   { Eb }, 0 },
2436
  { "setns",    { Eb }, 0 },
2437
  { "setp",   { Eb }, 0 },
2438
  { "setnp",    { Eb }, 0 },
2439
  { "setl",   { Eb }, 0 },
2440
  { "setge",    { Eb }, 0 },
2441
  { "setle",    { Eb }, 0 },
2442
  { "setg",   { Eb }, 0 },
2443
  /* a0 */
2444
  { "pushP",    { fs }, 0 },
2445
  { "popP",   { fs }, 0 },
2446
  { "cpuid",    { XX }, 0 },
2447
  { "btS",    { Ev, Gv }, 0 },
2448
  { "shldS",    { Ev, Gv, Ib }, 0 },
2449
  { "shldS",    { Ev, Gv, CL }, 0 },
2450
  { REG_TABLE (REG_0FA6) },
2451
  { REG_TABLE (REG_0FA7) },
2452
  /* a8 */
2453
  { "pushP",    { gs }, 0 },
2454
  { "popP",   { gs }, 0 },
2455
  { "rsm",    { XX }, 0 },
2456
  { "btsS",   { Evh1, Gv }, 0 },
2457
  { "shrdS",    { Ev, Gv, Ib }, 0 },
2458
  { "shrdS",    { Ev, Gv, CL }, 0 },
2459
  { REG_TABLE (REG_0FAE) },
2460
  { "imulS",    { Gv, Ev }, 0 },
2461
  /* b0 */
2462
  { "cmpxchgB",   { Ebh1, Gb }, 0 },
2463
  { "cmpxchgS",   { Evh1, Gv }, 0 },
2464
  { "lssS",   { Gv, Mp }, 0 },
2465
  { "btrS",   { Evh1, Gv }, 0 },
2466
  { "lfsS",   { Gv, Mp }, 0 },
2467
  { "lgsS",   { Gv, Mp }, 0 },
2468
  { "movz{bR|x}", { Gv, Eb }, 0 },
2469
  { "movz{wR|x}", { Gv, Ew }, 0 }, /* yes, there really is movzww ! */
2470
  /* b8 */
2471
  { PREFIX_TABLE (PREFIX_0FB8) },
2472
  { "ud1S",   { Gv, Ev }, 0 },
2473
  { REG_TABLE (REG_0FBA) },
2474
  { "btcS",   { Evh1, Gv }, 0 },
2475
  { PREFIX_TABLE (PREFIX_0FBC) },
2476
  { PREFIX_TABLE (PREFIX_0FBD) },
2477
  { "movs{bR|x}", { Gv, Eb }, 0 },
2478
  { "movs{wR|x}", { Gv, Ew }, 0 }, /* yes, there really is movsww ! */
2479
  /* c0 */
2480
  { "xaddB",    { Ebh1, Gb }, 0 },
2481
  { "xaddS",    { Evh1, Gv }, 0 },
2482
  { PREFIX_TABLE (PREFIX_0FC2) },
2483
  { "movntiS",    { Mdq, Gdq }, PREFIX_OPCODE },
2484
  { "pinsrw",   { MX, Edw, Ib }, PREFIX_OPCODE },
2485
  { "pextrw",   { Gd, Nq, Ib }, PREFIX_OPCODE },
2486
  { "shufpX",   { XM, EXx, Ib }, PREFIX_OPCODE },
2487
  { REG_TABLE (REG_0FC7) },
2488
  /* c8 */
2489
  { "bswap",    { RMeAX }, 0 },
2490
  { "bswap",    { RMeCX }, 0 },
2491
  { "bswap",    { RMeDX }, 0 },
2492
  { "bswap",    { RMeBX }, 0 },
2493
  { "bswap",    { RMeSP }, 0 },
2494
  { "bswap",    { RMeBP }, 0 },
2495
  { "bswap",    { RMeSI }, 0 },
2496
  { "bswap",    { RMeDI }, 0 },
2497
  /* d0 */
2498
  { PREFIX_TABLE (PREFIX_0FD0) },
2499
  { "psrlw",    { MX, EM }, PREFIX_OPCODE },
2500
  { "psrld",    { MX, EM }, PREFIX_OPCODE },
2501
  { "psrlq",    { MX, EM }, PREFIX_OPCODE },
2502
  { "paddq",    { MX, EM }, PREFIX_OPCODE },
2503
  { "pmullw",   { MX, EM }, PREFIX_OPCODE },
2504
  { PREFIX_TABLE (PREFIX_0FD6) },
2505
  { "pmovmskb",   { Gdq, Nq }, PREFIX_OPCODE },
2506
  /* d8 */
2507
  { "psubusb",    { MX, EM }, PREFIX_OPCODE },
2508
  { "psubusw",    { MX, EM }, PREFIX_OPCODE },
2509
  { "pminub",   { MX, EM }, PREFIX_OPCODE },
2510
  { "pand",   { MX, EM }, PREFIX_OPCODE },
2511
  { "paddusb",    { MX, EM }, PREFIX_OPCODE },
2512
  { "paddusw",    { MX, EM }, PREFIX_OPCODE },
2513
  { "pmaxub",   { MX, EM }, PREFIX_OPCODE },
2514
  { "pandn",    { MX, EM }, PREFIX_OPCODE },
2515
  /* e0 */
2516
  { "pavgb",    { MX, EM }, PREFIX_OPCODE },
2517
  { "psraw",    { MX, EM }, PREFIX_OPCODE },
2518
  { "psrad",    { MX, EM }, PREFIX_OPCODE },
2519
  { "pavgw",    { MX, EM }, PREFIX_OPCODE },
2520
  { "pmulhuw",    { MX, EM }, PREFIX_OPCODE },
2521
  { "pmulhw",   { MX, EM }, PREFIX_OPCODE },
2522
  { PREFIX_TABLE (PREFIX_0FE6) },
2523
  { PREFIX_TABLE (PREFIX_0FE7) },
2524
  /* e8 */
2525
  { "psubsb",   { MX, EM }, PREFIX_OPCODE },
2526
  { "psubsw",   { MX, EM }, PREFIX_OPCODE },
2527
  { "pminsw",   { MX, EM }, PREFIX_OPCODE },
2528
  { "por",    { MX, EM }, PREFIX_OPCODE },
2529
  { "paddsb",   { MX, EM }, PREFIX_OPCODE },
2530
  { "paddsw",   { MX, EM }, PREFIX_OPCODE },
2531
  { "pmaxsw",   { MX, EM }, PREFIX_OPCODE },
2532
  { "pxor",   { MX, EM }, PREFIX_OPCODE },
2533
  /* f0 */
2534
  { PREFIX_TABLE (PREFIX_0FF0) },
2535
  { "psllw",    { MX, EM }, PREFIX_OPCODE },
2536
  { "pslld",    { MX, EM }, PREFIX_OPCODE },
2537
  { "psllq",    { MX, EM }, PREFIX_OPCODE },
2538
  { "pmuludq",    { MX, EM }, PREFIX_OPCODE },
2539
  { "pmaddwd",    { MX, EM }, PREFIX_OPCODE },
2540
  { "psadbw",   { MX, EM }, PREFIX_OPCODE },
2541
  { PREFIX_TABLE (PREFIX_0FF7) },
2542
  /* f8 */
2543
  { "psubb",    { MX, EM }, PREFIX_OPCODE },
2544
  { "psubw",    { MX, EM }, PREFIX_OPCODE },
2545
  { "psubd",    { MX, EM }, PREFIX_OPCODE },
2546
  { "psubq",    { MX, EM }, PREFIX_OPCODE },
2547
  { "paddb",    { MX, EM }, PREFIX_OPCODE },
2548
  { "paddw",    { MX, EM }, PREFIX_OPCODE },
2549
  { "paddd",    { MX, EM }, PREFIX_OPCODE },
2550
  { "ud0S",   { Gv, Ev }, 0 },
2551
};
2552
2553
static const bool onebyte_has_modrm[256] = {
2554
  /*       0 1 2 3 4 5 6 7 8 9 a b c d e f        */
2555
  /*       -------------------------------        */
2556
  /* 00 */ 1,1,1,1,0,0,0,0,1,1,1,1,0,0,0,0, /* 00 */
2557
  /* 10 */ 1,1,1,1,0,0,0,0,1,1,1,1,0,0,0,0, /* 10 */
2558
  /* 20 */ 1,1,1,1,0,0,0,0,1,1,1,1,0,0,0,0, /* 20 */
2559
  /* 30 */ 1,1,1,1,0,0,0,0,1,1,1,1,0,0,0,0, /* 30 */
2560
  /* 40 */ 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, /* 40 */
2561
  /* 50 */ 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, /* 50 */
2562
  /* 60 */ 0,0,1,1,0,0,0,0,0,1,0,1,0,0,0,0, /* 60 */
2563
  /* 70 */ 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, /* 70 */
2564
  /* 80 */ 1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1, /* 80 */
2565
  /* 90 */ 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, /* 90 */
2566
  /* a0 */ 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, /* a0 */
2567
  /* b0 */ 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, /* b0 */
2568
  /* c0 */ 1,1,0,0,1,1,1,1,0,0,0,0,0,0,0,0, /* c0 */
2569
  /* d0 */ 1,1,1,1,0,0,0,0,1,1,1,1,1,1,1,1, /* d0 */
2570
  /* e0 */ 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, /* e0 */
2571
  /* f0 */ 0,0,0,0,0,0,1,1,0,0,0,0,0,0,1,1  /* f0 */
2572
  /*       -------------------------------        */
2573
  /*       0 1 2 3 4 5 6 7 8 9 a b c d e f        */
2574
};
2575
2576
static const bool twobyte_has_modrm[256] = {
2577
  /*       0 1 2 3 4 5 6 7 8 9 a b c d e f        */
2578
  /*       -------------------------------        */
2579
  /* 00 */ 1,1,1,1,0,0,0,0,0,0,0,0,0,1,0,1, /* 0f */
2580
  /* 10 */ 1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1, /* 1f */
2581
  /* 20 */ 1,1,1,1,1,1,1,0,1,1,1,1,1,1,1,1, /* 2f */
2582
  /* 30 */ 0,0,0,0,0,0,0,0,1,0,1,0,0,0,0,0, /* 3f */
2583
  /* 40 */ 1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1, /* 4f */
2584
  /* 50 */ 1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1, /* 5f */
2585
  /* 60 */ 1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1, /* 6f */
2586
  /* 70 */ 1,1,1,1,1,1,1,0,1,1,1,1,1,1,1,1, /* 7f */
2587
  /* 80 */ 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, /* 8f */
2588
  /* 90 */ 1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1, /* 9f */
2589
  /* a0 */ 0,0,0,1,1,1,1,1,0,0,0,1,1,1,1,1, /* af */
2590
  /* b0 */ 1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1, /* bf */
2591
  /* c0 */ 1,1,1,1,1,1,1,1,0,0,0,0,0,0,0,0, /* cf */
2592
  /* d0 */ 1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1, /* df */
2593
  /* e0 */ 1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1, /* ef */
2594
  /* f0 */ 1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1  /* ff */
2595
  /*       -------------------------------        */
2596
  /*       0 1 2 3 4 5 6 7 8 9 a b c d e f        */
2597
};
2598
2599
2600
struct op
2601
  {
2602
    const char *name;
2603
    unsigned int len;
2604
  };
2605
2606
/* If we are accessing mod/rm/reg without need_modrm set, then the
2607
   values are stale.  Hitting this abort likely indicates that you
2608
   need to update onebyte_has_modrm or twobyte_has_modrm.  */
2609
2.17M
#define MODRM_CHECK  if (!ins->need_modrm) abort ()
2610
2611
static const char intel_index16[][6] = {
2612
  "bx+si", "bx+di", "bp+si", "bp+di", "si", "di", "bp", "bx"
2613
};
2614
2615
static const char att_names64[][8] = {
2616
  "%rax", "%rcx", "%rdx", "%rbx", "%rsp", "%rbp", "%rsi", "%rdi",
2617
  "%r8", "%r9", "%r10", "%r11", "%r12", "%r13", "%r14", "%r15",
2618
  "%r16", "%r17", "%r18", "%r19", "%r20", "%r21", "%r22", "%r23",
2619
  "%r24", "%r25", "%r26", "%r27", "%r28", "%r29", "%r30", "%r31",
2620
};
2621
static const char att_names32[][8] = {
2622
  "%eax", "%ecx", "%edx", "%ebx", "%esp", "%ebp", "%esi", "%edi",
2623
  "%r8d", "%r9d", "%r10d", "%r11d", "%r12d", "%r13d", "%r14d", "%r15d",
2624
  "%r16d", "%r17d", "%r18d", "%r19d", "%r20d", "%r21d", "%r22d", "%r23d",
2625
  "%r24d", "%r25d", "%r26d", "%r27d", "%r28d", "%r29d", "%r30d", "%r31d",
2626
};
2627
static const char att_names16[][8] = {
2628
  "%ax", "%cx", "%dx", "%bx", "%sp", "%bp", "%si", "%di",
2629
  "%r8w", "%r9w", "%r10w", "%r11w", "%r12w", "%r13w", "%r14w", "%r15w",
2630
  "%r16w", "%r17w", "%r18w", "%r19w", "%r20w", "%r21w", "%r22w", "%r23w",
2631
  "%r24w", "%r25w", "%r26w", "%r27w", "%r28w", "%r29w", "%r30w", "%r31w",
2632
};
2633
static const char att_names8[][8] = {
2634
  "%al", "%cl", "%dl", "%bl", "%ah", "%ch", "%dh", "%bh",
2635
};
2636
static const char att_names8rex[][8] = {
2637
  "%al", "%cl", "%dl", "%bl", "%spl", "%bpl", "%sil", "%dil",
2638
  "%r8b", "%r9b", "%r10b", "%r11b", "%r12b", "%r13b", "%r14b", "%r15b",
2639
  "%r16b", "%r17b", "%r18b", "%r19b", "%r20b", "%r21b", "%r22b", "%r23b",
2640
  "%r24b", "%r25b", "%r26b", "%r27b", "%r28b", "%r29b", "%r30b", "%r31b",
2641
};
2642
static const char att_names_seg[][4] = {
2643
  "%es", "%cs", "%ss", "%ds", "%fs", "%gs", "%?", "%?",
2644
};
2645
static const char att_index64[] = "%riz";
2646
static const char att_index32[] = "%eiz";
2647
static const char att_index16[][8] = {
2648
  "%bx,%si", "%bx,%di", "%bp,%si", "%bp,%di", "%si", "%di", "%bp", "%bx"
2649
};
2650
2651
static const char att_names_mm[][8] = {
2652
  "%mm0", "%mm1", "%mm2", "%mm3",
2653
  "%mm4", "%mm5", "%mm6", "%mm7"
2654
};
2655
2656
static const char att_names_bnd[][8] = {
2657
  "%bnd0", "%bnd1", "%bnd2", "%bnd3"
2658
};
2659
2660
static const char att_names_xmm[][8] = {
2661
  "%xmm0", "%xmm1", "%xmm2", "%xmm3",
2662
  "%xmm4", "%xmm5", "%xmm6", "%xmm7",
2663
  "%xmm8", "%xmm9", "%xmm10", "%xmm11",
2664
  "%xmm12", "%xmm13", "%xmm14", "%xmm15",
2665
  "%xmm16", "%xmm17", "%xmm18", "%xmm19",
2666
  "%xmm20", "%xmm21", "%xmm22", "%xmm23",
2667
  "%xmm24", "%xmm25", "%xmm26", "%xmm27",
2668
  "%xmm28", "%xmm29", "%xmm30", "%xmm31"
2669
};
2670
2671
static const char att_names_ymm[][8] = {
2672
  "%ymm0", "%ymm1", "%ymm2", "%ymm3",
2673
  "%ymm4", "%ymm5", "%ymm6", "%ymm7",
2674
  "%ymm8", "%ymm9", "%ymm10", "%ymm11",
2675
  "%ymm12", "%ymm13", "%ymm14", "%ymm15",
2676
  "%ymm16", "%ymm17", "%ymm18", "%ymm19",
2677
  "%ymm20", "%ymm21", "%ymm22", "%ymm23",
2678
  "%ymm24", "%ymm25", "%ymm26", "%ymm27",
2679
  "%ymm28", "%ymm29", "%ymm30", "%ymm31"
2680
};
2681
2682
static const char att_names_zmm[][8] = {
2683
  "%zmm0", "%zmm1", "%zmm2", "%zmm3",
2684
  "%zmm4", "%zmm5", "%zmm6", "%zmm7",
2685
  "%zmm8", "%zmm9", "%zmm10", "%zmm11",
2686
  "%zmm12", "%zmm13", "%zmm14", "%zmm15",
2687
  "%zmm16", "%zmm17", "%zmm18", "%zmm19",
2688
  "%zmm20", "%zmm21", "%zmm22", "%zmm23",
2689
  "%zmm24", "%zmm25", "%zmm26", "%zmm27",
2690
  "%zmm28", "%zmm29", "%zmm30", "%zmm31"
2691
};
2692
2693
static const char att_names_tmm[][8] = {
2694
  "%tmm0", "%tmm1", "%tmm2", "%tmm3",
2695
  "%tmm4", "%tmm5", "%tmm6", "%tmm7"
2696
};
2697
2698
static const char att_names_mask[][8] = {
2699
  "%k0", "%k1", "%k2", "%k3", "%k4", "%k5", "%k6", "%k7"
2700
};
2701
2702
static const char *const names_rounding[] =
2703
{
2704
  "{rn-",
2705
  "{rd-",
2706
  "{ru-",
2707
  "{rz-"
2708
};
2709
2710
static const struct dis386 reg_table[][8] = {
2711
  /* REG_80 */
2712
  {
2713
    { "addA", { Ebh1, Ib }, 0 },
2714
    { "orA",  { Ebh1, Ib }, 0 },
2715
    { "adcA", { Ebh1, Ib }, 0 },
2716
    { "sbbA", { Ebh1, Ib }, 0 },
2717
    { "andA", { Ebh1, Ib }, 0 },
2718
    { "subA", { Ebh1, Ib }, 0 },
2719
    { "xorA", { Ebh1, Ib }, 0 },
2720
    { "cmpA", { Eb, Ib }, 0 },
2721
  },
2722
  /* REG_81 */
2723
  {
2724
    { "addQ", { Evh1, Iv }, 0 },
2725
    { "orQ",  { Evh1, Iv }, 0 },
2726
    { "adcQ", { Evh1, Iv }, 0 },
2727
    { "sbbQ", { Evh1, Iv }, 0 },
2728
    { "andQ", { Evh1, Iv }, 0 },
2729
    { "subQ", { Evh1, Iv }, 0 },
2730
    { "xorQ", { Evh1, Iv }, 0 },
2731
    { "cmpQ", { Ev, Iv }, 0 },
2732
  },
2733
  /* REG_83 */
2734
  {
2735
    { "addQ", { Evh1, sIb }, 0 },
2736
    { "orQ",  { Evh1, sIb }, 0 },
2737
    { "adcQ", { Evh1, sIb }, 0 },
2738
    { "sbbQ", { Evh1, sIb }, 0 },
2739
    { "andQ", { Evh1, sIb }, 0 },
2740
    { "subQ", { Evh1, sIb }, 0 },
2741
    { "xorQ", { Evh1, sIb }, 0 },
2742
    { "cmpQ", { Ev, sIb }, 0 },
2743
  },
2744
  /* REG_8F */
2745
  {
2746
    { "pop{P|}", { stackEv }, 0 },
2747
    { XOP_8F_TABLE () },
2748
    { Bad_Opcode },
2749
    { Bad_Opcode },
2750
    { Bad_Opcode },
2751
    { XOP_8F_TABLE () },
2752
  },
2753
  /* REG_C0 */
2754
  {
2755
    { "%NFrolA",  { VexGb, Eb, Ib }, NO_PREFIX },
2756
    { "%NFrorA",  { VexGb, Eb, Ib }, NO_PREFIX },
2757
    { "rclA", { VexGb, Eb, Ib }, NO_PREFIX },
2758
    { "rcrA", { VexGb, Eb, Ib }, NO_PREFIX },
2759
    { "%NFshlA",  { VexGb, Eb, Ib }, NO_PREFIX },
2760
    { "%NFshrA",  { VexGb, Eb, Ib }, NO_PREFIX },
2761
    { "%NFshlA",  { VexGb, Eb, Ib }, NO_PREFIX },
2762
    { "%NFsarA",  { VexGb, Eb, Ib }, NO_PREFIX },
2763
  },
2764
  /* REG_C1 */
2765
  {
2766
    { "%NFrolQ",  { VexGv, Ev, Ib }, PREFIX_NP_OR_DATA },
2767
    { "%NFrorQ",  { VexGv, Ev, Ib }, PREFIX_NP_OR_DATA },
2768
    { "rclQ", { VexGv, Ev, Ib }, PREFIX_NP_OR_DATA },
2769
    { "rcrQ", { VexGv, Ev, Ib }, PREFIX_NP_OR_DATA },
2770
    { "%NFshlQ",  { VexGv, Ev, Ib }, PREFIX_NP_OR_DATA },
2771
    { "%NFshrQ",  { VexGv, Ev, Ib }, PREFIX_NP_OR_DATA },
2772
    { "%NFshlQ",  { VexGv, Ev, Ib }, PREFIX_NP_OR_DATA },
2773
    { "%NFsarQ",  { VexGv, Ev, Ib }, PREFIX_NP_OR_DATA },
2774
  },
2775
  /* REG_C6 */
2776
  {
2777
    { "movA", { Ebh3, Ib }, 0 },
2778
    { Bad_Opcode },
2779
    { Bad_Opcode },
2780
    { Bad_Opcode },
2781
    { Bad_Opcode },
2782
    { Bad_Opcode },
2783
    { Bad_Opcode },
2784
    { RM_TABLE (RM_C6_REG_7) },
2785
  },
2786
  /* REG_C7 */
2787
  {
2788
    { "movQ", { Evh3, Iv }, 0 },
2789
    { Bad_Opcode },
2790
    { Bad_Opcode },
2791
    { Bad_Opcode },
2792
    { Bad_Opcode },
2793
    { Bad_Opcode },
2794
    { Bad_Opcode },
2795
    { RM_TABLE (RM_C7_REG_7) },
2796
  },
2797
  /* REG_D0 */
2798
  {
2799
    { "%NFrolA",  { VexGb, Eb, I1 }, NO_PREFIX },
2800
    { "%NFrorA",  { VexGb, Eb, I1 }, NO_PREFIX },
2801
    { "rclA", { VexGb, Eb, I1 }, NO_PREFIX },
2802
    { "rcrA", { VexGb, Eb, I1 }, NO_PREFIX },
2803
    { "%NFshlA",  { VexGb, Eb, I1 }, NO_PREFIX },
2804
    { "%NFshrA",  { VexGb, Eb, I1 }, NO_PREFIX },
2805
    { "%NFshlA",  { VexGb, Eb, I1 }, NO_PREFIX },
2806
    { "%NFsarA",  { VexGb, Eb, I1 }, NO_PREFIX },
2807
  },
2808
  /* REG_D1 */
2809
  {
2810
    { "%NFrolQ",  { VexGv, Ev, I1 }, PREFIX_NP_OR_DATA },
2811
    { "%NFrorQ",  { VexGv, Ev, I1 }, PREFIX_NP_OR_DATA },
2812
    { "rclQ", { VexGv, Ev, I1 }, PREFIX_NP_OR_DATA },
2813
    { "rcrQ", { VexGv, Ev, I1 }, PREFIX_NP_OR_DATA },
2814
    { "%NFshlQ",  { VexGv, Ev, I1 }, PREFIX_NP_OR_DATA },
2815
    { "%NFshrQ",  { VexGv, Ev, I1 }, PREFIX_NP_OR_DATA },
2816
    { "%NFshlQ",  { VexGv, Ev, I1 }, PREFIX_NP_OR_DATA },
2817
    { "%NFsarQ",  { VexGv, Ev, I1 }, PREFIX_NP_OR_DATA },
2818
  },
2819
  /* REG_D2 */
2820
  {
2821
    { "%NFrolA",  { VexGb, Eb, CL }, NO_PREFIX },
2822
    { "%NFrorA",  { VexGb, Eb, CL }, NO_PREFIX },
2823
    { "rclA", { VexGb, Eb, CL }, NO_PREFIX },
2824
    { "rcrA", { VexGb, Eb, CL }, NO_PREFIX },
2825
    { "%NFshlA",  { VexGb, Eb, CL }, NO_PREFIX },
2826
    { "%NFshrA",  { VexGb, Eb, CL }, NO_PREFIX },
2827
    { "%NFshlA",  { VexGb, Eb, CL }, NO_PREFIX },
2828
    { "%NFsarA",  { VexGb, Eb, CL }, NO_PREFIX },
2829
  },
2830
  /* REG_D3 */
2831
  {
2832
    { "%NFrolQ",  { VexGv, Ev, CL }, PREFIX_NP_OR_DATA },
2833
    { "%NFrorQ",  { VexGv, Ev, CL }, PREFIX_NP_OR_DATA },
2834
    { "rclQ", { VexGv, Ev, CL }, PREFIX_NP_OR_DATA },
2835
    { "rcrQ", { VexGv, Ev, CL }, PREFIX_NP_OR_DATA },
2836
    { "%NFshlQ",  { VexGv, Ev, CL }, PREFIX_NP_OR_DATA },
2837
    { "%NFshrQ",  { VexGv, Ev, CL }, PREFIX_NP_OR_DATA },
2838
    { "%NFshlQ",  { VexGv, Ev, CL }, PREFIX_NP_OR_DATA },
2839
    { "%NFsarQ",  { VexGv, Ev, CL }, PREFIX_NP_OR_DATA },
2840
  },
2841
  /* REG_F6 */
2842
  {
2843
    { "testA",  { Eb, Ib }, 0 },
2844
    { "testA",  { Eb, Ib }, 0 },
2845
    { "notA", { Ebh1 }, 0 },
2846
    { "negA", { Ebh1 }, 0 },
2847
    { "mulA", { Eb }, 0 },  /* Don't print the implicit %al register,  */
2848
    { "imulA",  { Eb }, 0 },  /* to distinguish these opcodes from other */
2849
    { "divA", { Eb }, 0 },  /* mul/imul opcodes.  Do the same for div  */
2850
    { "idivA",  { Eb }, 0 },  /* and idiv for consistency.       */
2851
  },
2852
  /* REG_F7 */
2853
  {
2854
    { "testQ",  { Ev, Iv }, 0 },
2855
    { "testQ",  { Ev, Iv }, 0 },
2856
    { "notQ", { Evh1 }, 0 },
2857
    { "negQ", { Evh1 }, 0 },
2858
    { "mulQ", { Ev }, 0 },  /* Don't print the implicit register.  */
2859
    { "imulQ",  { Ev }, 0 },
2860
    { "divQ", { Ev }, 0 },
2861
    { "idivQ",  { Ev }, 0 },
2862
  },
2863
  /* REG_FE */
2864
  {
2865
    { "incA", { Ebh1 }, 0 },
2866
    { "decA", { Ebh1 }, 0 },
2867
  },
2868
  /* REG_FF */
2869
  {
2870
    { "incQ", { Evh1 }, 0 },
2871
    { "decQ", { Evh1 }, 0 },
2872
    { "call{@|}", { NOTRACK, indirEv, BND }, 0 },
2873
    { "{l|}call^", { indirEp }, 0 },
2874
    { "jmp{@|}", { NOTRACK, indirEv, BND }, 0 },
2875
    { "{l|}jmp^", { indirEp }, 0 },
2876
    { "push{P|}", { stackEv }, 0 },
2877
    { Bad_Opcode },
2878
  },
2879
  /* REG_0F00 */
2880
  {
2881
    { "sldtD",  { Sv }, 0 },
2882
    { "strD", { Sv }, 0 },
2883
    { "lldtD",  { Sv }, 0 },
2884
    { "ltrD", { Sv }, 0 },
2885
    { "verrD",  { Sv }, 0 },
2886
    { "verwD",  { Sv }, 0 },
2887
    { X86_64_TABLE (X86_64_0F00_REG_6) },
2888
    { Bad_Opcode },
2889
  },
2890
  /* REG_0F01 */
2891
  {
2892
    { MOD_TABLE (MOD_0F01_REG_0) },
2893
    { MOD_TABLE (MOD_0F01_REG_1) },
2894
    { MOD_TABLE (MOD_0F01_REG_2) },
2895
    { MOD_TABLE (MOD_0F01_REG_3) },
2896
    { "smswD",  { Sv }, 0 },
2897
    { MOD_TABLE (MOD_0F01_REG_5) },
2898
    { "lmsw", { Ew }, 0 },
2899
    { MOD_TABLE (MOD_0F01_REG_7) },
2900
  },
2901
  /* REG_0F0D */
2902
  {
2903
    { "prefetch", { Mb }, 0 },
2904
    { "prefetchw",  { Mb }, 0 },
2905
    { "prefetchwt1",  { Mb }, 0 },
2906
    { "prefetch", { Mb }, 0 },
2907
    { "prefetch", { Mb }, 0 },
2908
    { "prefetch", { Mb }, 0 },
2909
    { "prefetch", { Mb }, 0 },
2910
    { "prefetch", { Mb }, 0 },
2911
  },
2912
  /* REG_0F18 */
2913
  {
2914
    { MOD_TABLE (MOD_0F18_REG_0) },
2915
    { MOD_TABLE (MOD_0F18_REG_1) },
2916
    { MOD_TABLE (MOD_0F18_REG_2) },
2917
    { MOD_TABLE (MOD_0F18_REG_3) },
2918
    { MOD_TABLE (MOD_0F18_REG_4) },
2919
    { "nopQ",   { Ev }, 0 },
2920
    { MOD_TABLE (MOD_0F18_REG_6) },
2921
    { MOD_TABLE (MOD_0F18_REG_7) },
2922
  },
2923
  /* REG_0F1C_P_0_MOD_0 */
2924
  {
2925
    { "cldemote", { Mb }, 0 },
2926
    { "nopQ",   { Ev }, 0 },
2927
    { "nopQ",   { Ev }, 0 },
2928
    { "nopQ",   { Ev }, 0 },
2929
    { "nopQ",   { Ev }, 0 },
2930
    { "nopQ",   { Ev }, 0 },
2931
    { "nopQ",   { Ev }, 0 },
2932
    { "nopQ",   { Ev }, 0 },
2933
  },
2934
  /* REG_0F1E_P_1_MOD_3 */
2935
  {
2936
    { "nopQ",   { Ev }, PREFIX_IGNORED },
2937
    { "rdsspK",   { Edq }, 0 },
2938
    { "nopQ",   { Ev }, PREFIX_IGNORED },
2939
    { "nopQ",   { Ev }, PREFIX_IGNORED },
2940
    { "nopQ",   { Ev }, PREFIX_IGNORED },
2941
    { "nopQ",   { Ev }, PREFIX_IGNORED },
2942
    { "nopQ",   { Ev }, PREFIX_IGNORED },
2943
    { RM_TABLE (RM_0F1E_P_1_MOD_3_REG_7) },
2944
  },
2945
  /* REG_0F38D8_PREFIX_1 */
2946
  {
2947
    { "aesencwide128kl",  { M }, 0 },
2948
    { "aesdecwide128kl",  { M }, 0 },
2949
    { "aesencwide256kl",  { M }, 0 },
2950
    { "aesdecwide256kl",  { M }, 0 },
2951
  },
2952
  /* REG_0F3A0F_P_1 */
2953
  {
2954
    { RM_TABLE (RM_0F3A0F_P_1_R_0) },
2955
  },
2956
  /* REG_0F71 */
2957
  {
2958
    { Bad_Opcode },
2959
    { Bad_Opcode },
2960
    { "psrlw",    { Nq, Ib }, PREFIX_OPCODE },
2961
    { Bad_Opcode },
2962
    { "psraw",    { Nq, Ib }, PREFIX_OPCODE },
2963
    { Bad_Opcode },
2964
    { "psllw",    { Nq, Ib }, PREFIX_OPCODE },
2965
  },
2966
  /* REG_0F72 */
2967
  {
2968
    { Bad_Opcode },
2969
    { Bad_Opcode },
2970
    { "psrld",    { Nq, Ib }, PREFIX_OPCODE },
2971
    { Bad_Opcode },
2972
    { "psrad",    { Nq, Ib }, PREFIX_OPCODE },
2973
    { Bad_Opcode },
2974
    { "pslld",    { Nq, Ib }, PREFIX_OPCODE },
2975
  },
2976
  /* REG_0F73 */
2977
  {
2978
    { Bad_Opcode },
2979
    { Bad_Opcode },
2980
    { "psrlq",    { Nq, Ib }, PREFIX_OPCODE },
2981
    { "psrldq",   { Ux, Ib }, PREFIX_DATA },
2982
    { Bad_Opcode },
2983
    { Bad_Opcode },
2984
    { "psllq",    { Nq, Ib }, PREFIX_OPCODE },
2985
    { "pslldq",   { Ux, Ib }, PREFIX_DATA },
2986
  },
2987
  /* REG_0FA6 */
2988
  {
2989
    { PREFIX_TABLE (PREFIX_0FA6_REG_0) },
2990
    { "xsha1",    { { OP_0f07, 0 } }, 0 },
2991
    { "xsha256",  { { OP_0f07, 0 } }, 0 },
2992
    { "xsha384",  { { OP_0f07, 0 } }, 0 },
2993
    { "xsha512",  { { OP_0f07, 0 } }, 0 },
2994
    { PREFIX_TABLE (PREFIX_0FA6_REG_5) },
2995
    { "montmul2", { { OP_0f07, 0 } }, 0 },
2996
    { "xmodexp",  { { OP_0f07, 0 } }, 0 },
2997
  },
2998
  /* REG_0FA7 */
2999
  {
3000
    { "xstore-rng", { { OP_0f07, 0 } }, 0 },
3001
    { "xcrypt-ecb", { { OP_0f07, 0 } }, 0 },
3002
    { "xcrypt-cbc", { { OP_0f07, 0 } }, 0 },
3003
    { "xcrypt-ctr", { { OP_0f07, 0 } }, 0 },
3004
    { "xcrypt-cfb", { { OP_0f07, 0 } }, 0 },
3005
    { "xcrypt-ofb", { { OP_0f07, 0 } }, 0 },
3006
    { PREFIX_TABLE (PREFIX_0FA7_REG_6) },
3007
    { "xrng2",    { { OP_0f07, 0 } }, 0 },
3008
  },
3009
  /* REG_0FAE */
3010
  {
3011
    { MOD_TABLE (MOD_0FAE_REG_0) },
3012
    { MOD_TABLE (MOD_0FAE_REG_1) },
3013
    { MOD_TABLE (MOD_0FAE_REG_2) },
3014
    { MOD_TABLE (MOD_0FAE_REG_3) },
3015
    { MOD_TABLE (MOD_0FAE_REG_4) },
3016
    { MOD_TABLE (MOD_0FAE_REG_5) },
3017
    { MOD_TABLE (MOD_0FAE_REG_6) },
3018
    { MOD_TABLE (MOD_0FAE_REG_7) },
3019
  },
3020
  /* REG_0FBA */
3021
  {
3022
    { Bad_Opcode },
3023
    { Bad_Opcode },
3024
    { Bad_Opcode },
3025
    { Bad_Opcode },
3026
    { "btQ",  { Ev, Ib }, 0 },
3027
    { "btsQ", { Evh1, Ib }, 0 },
3028
    { "btrQ", { Evh1, Ib }, 0 },
3029
    { "btcQ", { Evh1, Ib }, 0 },
3030
  },
3031
  /* REG_0FC7 */
3032
  {
3033
    { Bad_Opcode },
3034
    { "cmpxchg8b", { { CMPXCHG8B_Fixup, q_mode } }, 0 },
3035
    { Bad_Opcode },
3036
    { "xrstors", { FXSAVE }, PREFIX_REX2_ILLEGAL },
3037
    { "xsavec", { FXSAVE }, PREFIX_REX2_ILLEGAL },
3038
    { "xsaves", { FXSAVE }, PREFIX_REX2_ILLEGAL },
3039
    { MOD_TABLE (MOD_0FC7_REG_6) },
3040
    { MOD_TABLE (MOD_0FC7_REG_7) },
3041
  },
3042
  /* REG_VEX_0F71 */
3043
  {
3044
    { Bad_Opcode },
3045
    { Bad_Opcode },
3046
    { "vpsrlw",   { Vex, Ux, Ib }, PREFIX_DATA },
3047
    { Bad_Opcode },
3048
    { "vpsraw",   { Vex, Ux, Ib }, PREFIX_DATA },
3049
    { Bad_Opcode },
3050
    { "vpsllw",   { Vex, Ux, Ib }, PREFIX_DATA },
3051
  },
3052
  /* REG_VEX_0F72 */
3053
  {
3054
    { Bad_Opcode },
3055
    { Bad_Opcode },
3056
    { "vpsrld",   { Vex, Ux, Ib }, PREFIX_DATA },
3057
    { Bad_Opcode },
3058
    { "vpsrad",   { Vex, Ux, Ib }, PREFIX_DATA },
3059
    { Bad_Opcode },
3060
    { "vpslld",   { Vex, Ux, Ib }, PREFIX_DATA },
3061
  },
3062
  /* REG_VEX_0F73 */
3063
  {
3064
    { Bad_Opcode },
3065
    { Bad_Opcode },
3066
    { "vpsrlq",   { Vex, Ux, Ib }, PREFIX_DATA },
3067
    { "vpsrldq",  { Vex, Ux, Ib }, PREFIX_DATA },
3068
    { Bad_Opcode },
3069
    { Bad_Opcode },
3070
    { "vpsllq",   { Vex, Ux, Ib }, PREFIX_DATA },
3071
    { "vpslldq",  { Vex, Ux, Ib }, PREFIX_DATA },
3072
  },
3073
  /* REG_VEX_0FAE */
3074
  {
3075
    { Bad_Opcode },
3076
    { Bad_Opcode },
3077
    { VEX_LEN_TABLE (VEX_LEN_0FAE_R_2) },
3078
    { VEX_LEN_TABLE (VEX_LEN_0FAE_R_3) },
3079
  },
3080
  /* REG_VEX_0F3849_X86_64_L_0_W_0_M_1_P_0 */
3081
  {
3082
    { RM_TABLE (RM_VEX_0F3849_X86_64_L_0_W_0_M_1_P_0_R_0) },
3083
  },
3084
  /* REG_VEX_0F38F3_L_0_P_0 */
3085
  {
3086
    { Bad_Opcode },
3087
    { "%NFblsrS",   { VexGdq, Edq }, 0 },
3088
    { "%NFblsmskS",   { VexGdq, Edq }, 0 },
3089
    { "%NFblsiS",   { VexGdq, Edq }, 0 },
3090
  },
3091
  /* REG_VEX_MAP7_F6_L_0_W_0 */
3092
  {
3093
    { X86_64_TABLE (X86_64_VEX_MAP7_F6_L_0_W_0_R_0) },
3094
  },
3095
  /* REG_VEX_MAP7_F8_L_0_W_0 */
3096
  {
3097
    { X86_64_TABLE (X86_64_VEX_MAP7_F8_L_0_W_0_R_0) },
3098
  },
3099
  /* REG_XOP_09_01_L_0 */
3100
  {
3101
    { Bad_Opcode },
3102
    { "blcfill",  { VexGdq, Edq }, 0 },
3103
    { "blsfill",  { VexGdq, Edq }, 0 },
3104
    { "blcs", { VexGdq, Edq }, 0 },
3105
    { "tzmsk",  { VexGdq, Edq }, 0 },
3106
    { "blcic",  { VexGdq, Edq }, 0 },
3107
    { "blsic",  { VexGdq, Edq }, 0 },
3108
    { "t1mskc", { VexGdq, Edq }, 0 },
3109
  },
3110
  /* REG_XOP_09_02_L_0 */
3111
  {
3112
    { Bad_Opcode },
3113
    { "blcmsk", { VexGdq, Edq }, 0 },
3114
    { Bad_Opcode },
3115
    { Bad_Opcode },
3116
    { Bad_Opcode },
3117
    { Bad_Opcode },
3118
    { "blci", { VexGdq, Edq }, 0 },
3119
  },
3120
  /* REG_XOP_09_12_L_0 */
3121
  {
3122
    { "llwpcb", { Rdq }, 0 },
3123
    { "slwpcb", { Rdq }, 0 },
3124
  },
3125
  /* REG_XOP_0A_12_L_0 */
3126
  {
3127
    { "lwpins", { VexGdq, Ed, Id }, 0 },
3128
    { "lwpval", { VexGdq, Ed, Id }, 0 },
3129
  },
3130
3131
#include "i386-dis-evex-reg.h"
3132
};
3133
3134
static const struct dis386 prefix_table[][4] = {
3135
  /* PREFIX_90 */
3136
  {
3137
    { "xchgS", { { NOP_Fixup, 0 }, { NOP_Fixup, 1 } }, 0 },
3138
    { "pause", { XX }, 0 },
3139
    { "xchgS", { { NOP_Fixup, 0 }, { NOP_Fixup, 1 } }, 0 },
3140
    { NULL, { { NULL, 0 } }, PREFIX_IGNORED }
3141
  },
3142
3143
  /* PREFIX_0F00_REG_6_X86_64 */
3144
  {
3145
    { Bad_Opcode },
3146
    { Bad_Opcode },
3147
    { Bad_Opcode },
3148
    { "lkgsD", { Sv }, 0 },
3149
  },
3150
3151
  /* PREFIX_0F01_REG_0_MOD_3_RM_6 */
3152
  {
3153
    { "wrmsrns",        { Skip_MODRM }, 0 },
3154
    { X86_64_TABLE (X86_64_0F01_REG_0_MOD_3_RM_6_P_1) },
3155
    { Bad_Opcode },
3156
    { X86_64_TABLE (X86_64_0F01_REG_0_MOD_3_RM_6_P_3) },
3157
  },
3158
3159
  /* PREFIX_0F01_REG_0_MOD_3_RM_7 */
3160
  {
3161
    { X86_64_TABLE (X86_64_0F01_REG_0_MOD_3_RM_7_P_0) },
3162
  },
3163
3164
  /* PREFIX_0F01_REG_1_RM_2 */
3165
  {
3166
    { "clac",   { Skip_MODRM }, 0 },
3167
    { X86_64_TABLE (X86_64_0F01_REG_1_RM_2_PREFIX_1) },
3168
    { Bad_Opcode },
3169
    { X86_64_TABLE (X86_64_0F01_REG_1_RM_2_PREFIX_3)},
3170
  },
3171
3172
  /* PREFIX_0F01_REG_1_RM_4 */
3173
  {
3174
    { Bad_Opcode },
3175
    { Bad_Opcode },
3176
    { "tdcall",   { Skip_MODRM }, 0 },
3177
    { Bad_Opcode },
3178
  },
3179
3180
  /* PREFIX_0F01_REG_1_RM_5 */
3181
  {
3182
    { Bad_Opcode },
3183
    { Bad_Opcode },
3184
    { X86_64_TABLE (X86_64_0F01_REG_1_RM_5_PREFIX_2) },
3185
    { Bad_Opcode },
3186
  },
3187
3188
  /* PREFIX_0F01_REG_1_RM_6 */
3189
  {
3190
    { Bad_Opcode },
3191
    { Bad_Opcode },
3192
    { X86_64_TABLE (X86_64_0F01_REG_1_RM_6_PREFIX_2) },
3193
    { Bad_Opcode },
3194
  },
3195
3196
  /* PREFIX_0F01_REG_1_RM_7 */
3197
  {
3198
    { "encls",    { Skip_MODRM }, 0 },
3199
    { Bad_Opcode },
3200
    { X86_64_TABLE (X86_64_0F01_REG_1_RM_7_PREFIX_2) },
3201
    { Bad_Opcode },
3202
  },
3203
3204
  /* PREFIX_0F01_REG_3_RM_1 */
3205
  {
3206
    { "vmmcall",  { Skip_MODRM }, 0 },
3207
    { "vmgexit",  { Skip_MODRM }, 0 },
3208
    { Bad_Opcode },
3209
    { "vmgexit",  { Skip_MODRM }, 0 },
3210
  },
3211
3212
  /* PREFIX_0F01_REG_5_MOD_0 */
3213
  {
3214
    { Bad_Opcode },
3215
    { "rstorssp", { Mq }, PREFIX_OPCODE },
3216
  },
3217
3218
  /* PREFIX_0F01_REG_5_MOD_3_RM_0 */
3219
  {
3220
    { "serialize",  { Skip_MODRM }, PREFIX_OPCODE },
3221
    { "setssbsy", { Skip_MODRM }, PREFIX_OPCODE },
3222
    { Bad_Opcode },
3223
    { "xsusldtrk",  { Skip_MODRM }, PREFIX_OPCODE },
3224
  },
3225
3226
  /* PREFIX_0F01_REG_5_MOD_3_RM_1 */
3227
  {
3228
    { Bad_Opcode },
3229
    { Bad_Opcode },
3230
    { Bad_Opcode },
3231
    { "xresldtrk",     { Skip_MODRM }, PREFIX_OPCODE },
3232
  },
3233
3234
  /* PREFIX_0F01_REG_5_MOD_3_RM_2 */
3235
  {
3236
    { Bad_Opcode },
3237
    { "saveprevssp",  { Skip_MODRM }, PREFIX_OPCODE },
3238
  },
3239
3240
  /* PREFIX_0F01_REG_5_MOD_3_RM_4 */
3241
  {
3242
    { Bad_Opcode },
3243
    { X86_64_TABLE (X86_64_0F01_REG_5_MOD_3_RM_4_PREFIX_1) },
3244
  },
3245
3246
  /* PREFIX_0F01_REG_5_MOD_3_RM_5 */
3247
  {
3248
    { Bad_Opcode },
3249
    { X86_64_TABLE (X86_64_0F01_REG_5_MOD_3_RM_5_PREFIX_1) },
3250
  },
3251
3252
  /* PREFIX_0F01_REG_5_MOD_3_RM_6 */
3253
  {
3254
    { "rdpkru", { Skip_MODRM }, 0 },
3255
    { X86_64_TABLE (X86_64_0F01_REG_5_MOD_3_RM_6_PREFIX_1) },
3256
  },
3257
3258
  /* PREFIX_0F01_REG_5_MOD_3_RM_7 */
3259
  {
3260
    { "wrpkru", { Skip_MODRM }, 0 },
3261
    { X86_64_TABLE (X86_64_0F01_REG_5_MOD_3_RM_7_PREFIX_1) },
3262
  },
3263
3264
  /* PREFIX_0F01_REG_7_MOD_3_RM_2 */
3265
  {
3266
    { "monitorx", { { OP_Monitor, 0 } }, 0  },
3267
    { "mcommit",  { Skip_MODRM }, 0 },
3268
  },
3269
3270
  /* PREFIX_0F01_REG_7_MOD_3_RM_5 */
3271
  {
3272
    { "rdpru", { Skip_MODRM }, 0 },
3273
    { X86_64_TABLE (X86_64_0F01_REG_7_MOD_3_RM_5_PREFIX_1) },
3274
    { Bad_Opcode },
3275
    { X86_64_TABLE (X86_64_0F01_REG_7_MOD_3_RM_5_PREFIX_3) },
3276
  },
3277
3278
  /* PREFIX_0F01_REG_7_MOD_3_RM_6 */
3279
  {
3280
    { "invlpgb",        { Skip_MODRM }, 0 },
3281
    { X86_64_TABLE (X86_64_0F01_REG_7_MOD_3_RM_6_PREFIX_1) },
3282
    { Bad_Opcode },
3283
    { X86_64_TABLE (X86_64_0F01_REG_7_MOD_3_RM_6_PREFIX_3) },
3284
  },
3285
3286
  /* PREFIX_0F01_REG_7_MOD_3_RM_7 */
3287
  {
3288
    { "tlbsync",        { Skip_MODRM }, 0 },
3289
    { X86_64_TABLE (X86_64_0F01_REG_7_MOD_3_RM_7_PREFIX_1) },
3290
    { Bad_Opcode },
3291
    { "pvalidate",      { Skip_MODRM }, 0 },
3292
  },
3293
3294
  /* PREFIX_0F09 */
3295
  {
3296
    { "wbinvd",   { XX }, 0 },
3297
    { "wbnoinvd", { XX }, 0 },
3298
  },
3299
3300
  /* PREFIX_0F10 */
3301
  {
3302
    { "%XEVmovupX", { XM, EXEvexXNoBcst }, 0 },
3303
    { "%XEVmovs%XS",  { XMScalar, VexScalarR, EXd }, 0 },
3304
    { "%XEVmovupX", { XM, EXEvexXNoBcst }, 0 },
3305
    { "%XEVmovs%XD",  { XMScalar, VexScalarR, EXq }, 0 },
3306
  },
3307
3308
  /* PREFIX_0F11 */
3309
  {
3310
    { "%XEVmovupX", { EXxS, XM }, 0 },
3311
    { "%XEVmovs%XS",  { EXdS, VexScalarR, XMScalar }, 0 },
3312
    { "%XEVmovupX", { EXxS, XM }, 0 },
3313
    { "%XEVmovs%XD",  { EXqS, VexScalarR, XMScalar }, 0 },
3314
  },
3315
3316
  /* PREFIX_0F12 */
3317
  {
3318
    { MOD_TABLE (MOD_0F12_PREFIX_0) },
3319
    { "movsldup", { XM, EXx }, 0 },
3320
    { "%XEVmovlpYX",  { XM, Vex, Mq }, 0 },
3321
    { "movddup",  { XM, EXq }, 0 },
3322
  },
3323
3324
  /* PREFIX_0F16 */
3325
  {
3326
    { MOD_TABLE (MOD_0F16_PREFIX_0) },
3327
    { "movshdup", { XM, EXx }, 0 },
3328
    { "%XEVmovhpYX",  { XM, Vex, Mq }, 0 },
3329
  },
3330
3331
  /* PREFIX_0F18_REG_6_MOD_0_X86_64 */
3332
  {
3333
    { "prefetchit1",  { { PREFETCHI_Fixup, b_mode } }, 0 },
3334
    { "nopQ",   { Ev }, 0 },
3335
    { "nopQ",   { Ev }, 0 },
3336
    { "nopQ",   { Ev }, 0 },
3337
  },
3338
3339
  /* PREFIX_0F18_REG_7_MOD_0_X86_64 */
3340
  {
3341
    { "prefetchit0",  { { PREFETCHI_Fixup, b_mode } }, 0 },
3342
    { "nopQ",   { Ev }, 0 },
3343
    { "nopQ",   { Ev }, 0 },
3344
    { "nopQ",   { Ev }, 0 },
3345
  },
3346
3347
  /* PREFIX_0F1A */
3348
  {
3349
    { MOD_TABLE (MOD_0F1A_PREFIX_0) },
3350
    { "bndcl",  { Gbnd, Ev_bnd }, 0 },
3351
    { "bndmov", { Gbnd, Ebnd }, 0 },
3352
    { "bndcu",  { Gbnd, Ev_bnd }, 0 },
3353
  },
3354
3355
  /* PREFIX_0F1B */
3356
  {
3357
    { MOD_TABLE (MOD_0F1B_PREFIX_0) },
3358
    { MOD_TABLE (MOD_0F1B_PREFIX_1) },
3359
    { "bndmov", { EbndS, Gbnd }, 0 },
3360
    { "bndcn",  { Gbnd, Ev_bnd }, 0 },
3361
  },
3362
3363
  /* PREFIX_0F1C */
3364
  {
3365
    { MOD_TABLE (MOD_0F1C_PREFIX_0) },
3366
    { "nopQ", { Ev }, PREFIX_IGNORED },
3367
    { "nopQ", { Ev }, 0 },
3368
    { "nopQ", { Ev }, PREFIX_IGNORED },
3369
  },
3370
3371
  /* PREFIX_0F1E */
3372
  {
3373
    { "nopQ", { Ev }, 0 },
3374
    { MOD_TABLE (MOD_0F1E_PREFIX_1) },
3375
    { "nopQ", { Ev }, 0 },
3376
    { NULL, { XX }, PREFIX_IGNORED },
3377
  },
3378
3379
  /* PREFIX_0F2A */
3380
  {
3381
    { "cvtpi2ps", { XM, EMCq }, PREFIX_OPCODE },
3382
    { "cvtsi2ss{%LQ|}", { XM, Edq }, PREFIX_OPCODE },
3383
    { "cvtpi2pd", { XM, EMCq }, PREFIX_OPCODE },
3384
    { "cvtsi2sd{%LQ|}", { XM, Edq }, 0 },
3385
  },
3386
3387
  /* PREFIX_0F2B */
3388
  {
3389
    { "movntps", { Mx, XM }, 0 },
3390
    { "movntss", { Md, XM }, 0 },
3391
    { "movntpd", { Mx, XM }, 0 },
3392
    { "movntsd", { Mq, XM }, 0 },
3393
  },
3394
3395
  /* PREFIX_0F2C */
3396
  {
3397
    { "cvttps2pi", { MXC, EXq }, PREFIX_OPCODE },
3398
    { "cvttss2si", { Gdq, EXd }, PREFIX_OPCODE },
3399
    { "cvttpd2pi", { MXC, EXx }, PREFIX_OPCODE },
3400
    { "cvttsd2si", { Gdq, EXq }, PREFIX_OPCODE },
3401
  },
3402
3403
  /* PREFIX_0F2D */
3404
  {
3405
    { "cvtps2pi", { MXC, EXq }, PREFIX_OPCODE },
3406
    { "cvtss2si", { Gdq, EXd }, PREFIX_OPCODE },
3407
    { "cvtpd2pi", { MXC, EXx }, PREFIX_OPCODE },
3408
    { "cvtsd2si", { Gdq, EXq }, PREFIX_OPCODE },
3409
  },
3410
3411
  /* PREFIX_0F2E */
3412
  {
3413
    { "VucomisYX",  { XMScalar, EXd, EXxEVexS }, 0 },
3414
    { Bad_Opcode },
3415
    { "VucomisYX",  { XMScalar, EXq, EXxEVexS }, 0 },
3416
  },
3417
3418
  /* PREFIX_0F2F */
3419
  {
3420
    { "VcomisYX", { XMScalar, EXd, EXxEVexS }, 0 },
3421
    { Bad_Opcode },
3422
    { "VcomisYX", { XMScalar, EXq, EXxEVexS }, 0 },
3423
  },
3424
3425
  /* PREFIX_0F51 */
3426
  {
3427
    { "%XEVsqrtpX", { XM, EXx, EXxEVexR }, 0 },
3428
    { "%XEVsqrts%XS", { XMScalar, VexScalar, EXd, EXxEVexR }, 0 },
3429
    { "%XEVsqrtpX", { XM, EXx, EXxEVexR }, 0 },
3430
    { "%XEVsqrts%XD", { XMScalar, VexScalar, EXq, EXxEVexR }, 0 },
3431
  },
3432
3433
  /* PREFIX_0F52 */
3434
  {
3435
    { "Vrsqrtps", { XM, EXx }, 0 },
3436
    { "Vrsqrtss", { XMScalar, VexScalar, EXd }, 0 },
3437
  },
3438
3439
  /* PREFIX_0F53 */
3440
  {
3441
    { "Vrcpps",   { XM, EXx }, 0 },
3442
    { "Vrcpss",   { XMScalar, VexScalar, EXd }, 0 },
3443
  },
3444
3445
  /* PREFIX_0F58 */
3446
  {
3447
    { "%XEVaddpX",  { XM, Vex, EXx, EXxEVexR }, 0 },
3448
    { "%XEVadds%XS",  { XMScalar, VexScalar, EXd, EXxEVexR }, 0 },
3449
    { "%XEVaddpX",  { XM, Vex, EXx, EXxEVexR }, 0 },
3450
    { "%XEVadds%XD",  { XMScalar, VexScalar, EXq, EXxEVexR }, 0 },
3451
  },
3452
3453
  /* PREFIX_0F59 */
3454
  {
3455
    { "%XEVmulpX",  { XM, Vex, EXx, EXxEVexR }, 0 },
3456
    { "%XEVmuls%XS",  { XMScalar, VexScalar, EXd, EXxEVexR }, 0 },
3457
    { "%XEVmulpX",  { XM, Vex, EXx, EXxEVexR }, 0 },
3458
    { "%XEVmuls%XD",  { XMScalar, VexScalar, EXq, EXxEVexR }, 0 },
3459
  },
3460
3461
  /* PREFIX_0F5A */
3462
  {
3463
    { "%XEVcvtp%XS2pd", { XM, EXEvexHalfBcstXmmq, EXxEVexS }, 0 },
3464
    { "%XEVcvts%XS2sd", { XMScalar, VexScalar, EXd, EXxEVexS }, 0 },
3465
    { "%XEVcvtp%XD2ps%XY", { XMxmmq, EXx, EXxEVexR }, 0 },
3466
    { "%XEVcvts%XD2ss", { XMScalar, VexScalar, EXq, EXxEVexR }, 0 },
3467
  },
3468
3469
  /* PREFIX_0F5B */
3470
  {
3471
    { "Vcvtdq2ps",  { XM, EXx }, 0 },
3472
    { "Vcvttps2dq", { XM, EXx }, 0 },
3473
    { "Vcvtps2dq",  { XM, EXx }, 0 },
3474
  },
3475
3476
  /* PREFIX_0F5C */
3477
  {
3478
    { "%XEVsubpX",  { XM, Vex, EXx, EXxEVexR }, 0 },
3479
    { "%XEVsubs%XS",  { XMScalar, VexScalar, EXd, EXxEVexR }, 0 },
3480
    { "%XEVsubpX",  { XM, Vex, EXx, EXxEVexR }, 0 },
3481
    { "%XEVsubs%XD",  { XMScalar, VexScalar, EXq, EXxEVexR }, 0 },
3482
  },
3483
3484
  /* PREFIX_0F5D */
3485
  {
3486
    { "%XEVminpX",  { XM, Vex, EXx, EXxEVexS }, 0 },
3487
    { "%XEVmins%XS",  { XMScalar, VexScalar, EXd, EXxEVexS }, 0 },
3488
    { "%XEVminpX",  { XM, Vex, EXx, EXxEVexS }, 0 },
3489
    { "%XEVmins%XD",  { XMScalar, VexScalar, EXq, EXxEVexS }, 0 },
3490
  },
3491
3492
  /* PREFIX_0F5E */
3493
  {
3494
    { "%XEVdivpX",  { XM, Vex, EXx, EXxEVexR }, 0 },
3495
    { "%XEVdivs%XS",  { XMScalar, VexScalar, EXd, EXxEVexR }, 0 },
3496
    { "%XEVdivpX",  { XM, Vex, EXx, EXxEVexR }, 0 },
3497
    { "%XEVdivs%XD",  { XMScalar, VexScalar, EXq, EXxEVexR }, 0 },
3498
  },
3499
3500
  /* PREFIX_0F5F */
3501
  {
3502
    { "%XEVmaxpX",  { XM, Vex, EXx, EXxEVexS }, 0 },
3503
    { "%XEVmaxs%XS",  { XMScalar, VexScalar, EXd, EXxEVexS }, 0 },
3504
    { "%XEVmaxpX",  { XM, Vex, EXx, EXxEVexS }, 0 },
3505
    { "%XEVmaxs%XD",  { XMScalar, VexScalar, EXq, EXxEVexS }, 0 },
3506
  },
3507
3508
  /* PREFIX_0F60 */
3509
  {
3510
    { "punpcklbw",{ MX, EMd }, PREFIX_OPCODE },
3511
    { Bad_Opcode },
3512
    { "punpcklbw",{ MX, EMx }, PREFIX_OPCODE },
3513
  },
3514
3515
  /* PREFIX_0F61 */
3516
  {
3517
    { "punpcklwd",{ MX, EMd }, PREFIX_OPCODE },
3518
    { Bad_Opcode },
3519
    { "punpcklwd",{ MX, EMx }, PREFIX_OPCODE },
3520
  },
3521
3522
  /* PREFIX_0F62 */
3523
  {
3524
    { "punpckldq",{ MX, EMd }, PREFIX_OPCODE },
3525
    { Bad_Opcode },
3526
    { "punpckldq",{ MX, EMx }, PREFIX_OPCODE },
3527
  },
3528
3529
  /* PREFIX_0F6F */
3530
  {
3531
    { "movq", { MX, EM }, PREFIX_OPCODE },
3532
    { "movdqu", { XM, EXx }, PREFIX_OPCODE },
3533
    { "movdqa", { XM, EXx }, PREFIX_OPCODE },
3534
  },
3535
3536
  /* PREFIX_0F70 */
3537
  {
3538
    { "pshufw", { MX, EM, Ib }, PREFIX_OPCODE },
3539
    { "pshufhw",{ XM, EXx, Ib }, PREFIX_OPCODE },
3540
    { "pshufd", { XM, EXx, Ib }, PREFIX_OPCODE },
3541
    { "pshuflw",{ XM, EXx, Ib }, PREFIX_OPCODE },
3542
  },
3543
3544
  /* PREFIX_0F78 */
3545
  {
3546
    {"vmread",  { Em, Gm }, 0 },
3547
    { Bad_Opcode },
3548
    {"extrq", { Uxmm, Ib, Ib }, 0 },
3549
    {"insertq", { XM, Uxmm, Ib, Ib }, 0 },
3550
  },
3551
3552
  /* PREFIX_0F79 */
3553
  {
3554
    {"vmwrite", { Gm, Em }, 0 },
3555
    { Bad_Opcode },
3556
    {"extrq", { XM, Uxmm }, 0 },
3557
    {"insertq", { XM, Uxmm }, 0 },
3558
  },
3559
3560
  /* PREFIX_0F7C */
3561
  {
3562
    { Bad_Opcode },
3563
    { Bad_Opcode },
3564
    { "Vhaddpd",  { XM, Vex, EXx }, 0 },
3565
    { "Vhaddps",  { XM, Vex, EXx }, 0 },
3566
  },
3567
3568
  /* PREFIX_0F7D */
3569
  {
3570
    { Bad_Opcode },
3571
    { Bad_Opcode },
3572
    { "Vhsubpd",  { XM, Vex, EXx }, 0 },
3573
    { "Vhsubps",  { XM, Vex, EXx }, 0 },
3574
  },
3575
3576
  /* PREFIX_0F7E */
3577
  {
3578
    { "movK", { Edq, MX }, PREFIX_OPCODE },
3579
    { "movq", { XM, EXq }, PREFIX_OPCODE },
3580
    { "movK", { Edq, XM }, PREFIX_OPCODE },
3581
  },
3582
3583
  /* PREFIX_0F7F */
3584
  {
3585
    { "movq", { EMS, MX }, PREFIX_OPCODE },
3586
    { "movdqu", { EXxS, XM }, PREFIX_OPCODE },
3587
    { "movdqa", { EXxS, XM }, PREFIX_OPCODE },
3588
  },
3589
3590
  /* PREFIX_0FA6_REG_0 */
3591
  {
3592
    { Bad_Opcode },
3593
    { "montmul",  { { MONTMUL_Fixup, 0 } }, 0},
3594
    { Bad_Opcode },
3595
    { "sm2",  { Skip_MODRM }, 0 },
3596
  },
3597
3598
  /* PREFIX_0FA6_REG_5 */
3599
  {
3600
    { Bad_Opcode },
3601
    { "sm3",  { Skip_MODRM }, 0 },
3602
  },
3603
3604
  /* PREFIX_0FA7_REG_6 */
3605
  {
3606
    { Bad_Opcode },
3607
    { "sm4",  { Skip_MODRM }, 0 },
3608
  },
3609
3610
  /* PREFIX_0FAE_REG_0_MOD_3 */
3611
  {
3612
    { Bad_Opcode },
3613
    { X86_64_TABLE (X86_64_0FAE_REG_0_MOD_3_PREFIX_1) },
3614
  },
3615
3616
  /* PREFIX_0FAE_REG_1_MOD_3 */
3617
  {
3618
    { Bad_Opcode },
3619
    { X86_64_TABLE (X86_64_0FAE_REG_1_MOD_3_PREFIX_1) },
3620
  },
3621
3622
  /* PREFIX_0FAE_REG_2_MOD_3 */
3623
  {
3624
    { Bad_Opcode },
3625
    { X86_64_TABLE (X86_64_0FAE_REG_2_MOD_3_PREFIX_1) },
3626
  },
3627
3628
  /* PREFIX_0FAE_REG_3_MOD_3 */
3629
  {
3630
    { Bad_Opcode },
3631
    { X86_64_TABLE (X86_64_0FAE_REG_3_MOD_3_PREFIX_1) },
3632
  },
3633
3634
  /* PREFIX_0FAE_REG_4_MOD_0 */
3635
  {
3636
    { "xsave",  { FXSAVE }, PREFIX_REX2_ILLEGAL },
3637
    { "ptwrite{%LQ|}", { Edq }, 0 },
3638
  },
3639
3640
  /* PREFIX_0FAE_REG_4_MOD_3 */
3641
  {
3642
    { Bad_Opcode },
3643
    { "ptwrite{%LQ|}", { Edq }, 0 },
3644
  },
3645
3646
  /* PREFIX_0FAE_REG_5_MOD_3 */
3647
  {
3648
    { "lfence",   { Skip_MODRM }, 0 },
3649
    { "incsspK",  { Edq }, PREFIX_OPCODE },
3650
  },
3651
3652
  /* PREFIX_0FAE_REG_6_MOD_0 */
3653
  {
3654
    { "xsaveopt", { FXSAVE }, PREFIX_OPCODE | PREFIX_REX2_ILLEGAL },
3655
    { "clrssbsy", { Mq }, PREFIX_OPCODE },
3656
    { "clwb", { Mb }, PREFIX_OPCODE },
3657
  },
3658
3659
  /* PREFIX_0FAE_REG_6_MOD_3 */
3660
  {
3661
    { RM_TABLE (RM_0FAE_REG_6_MOD_3_P_0) },
3662
    { "umonitor", { Eva }, PREFIX_OPCODE },
3663
    { "tpause", { Edq }, PREFIX_OPCODE },
3664
    { "umwait", { Edq }, PREFIX_OPCODE },
3665
  },
3666
3667
  /* PREFIX_0FAE_REG_7_MOD_0 */
3668
  {
3669
    { "clflush",  { Mb }, 0 },
3670
    { Bad_Opcode },
3671
    { "clflushopt", { Mb }, 0 },
3672
  },
3673
3674
  /* PREFIX_0FB8 */
3675
  {
3676
    { Bad_Opcode },
3677
    { "popcntS", { Gv, Ev }, 0 },
3678
  },
3679
3680
  /* PREFIX_0FBC */
3681
  {
3682
    { "bsfS", { Gv, Ev }, 0 },
3683
    { "tzcntS", { Gv, Ev }, 0 },
3684
    { "bsfS", { Gv, Ev }, 0 },
3685
  },
3686
3687
  /* PREFIX_0FBD */
3688
  {
3689
    { "bsrS", { Gv, Ev }, 0 },
3690
    { "lzcntS", { Gv, Ev }, 0 },
3691
    { "bsrS", { Gv, Ev }, 0 },
3692
  },
3693
3694
  /* PREFIX_0FC2 */
3695
  {
3696
    { "VcmppX", { XM, Vex, EXx, CMP }, 0 },
3697
    { "Vcmpss", { XMScalar, VexScalar, EXd, CMP }, 0 },
3698
    { "VcmppX", { XM, Vex, EXx, CMP }, 0 },
3699
    { "Vcmpsd", { XMScalar, VexScalar, EXq, CMP }, 0 },
3700
  },
3701
3702
  /* PREFIX_0FC7_REG_6_MOD_0 */
3703
  {
3704
    { "vmptrld",{ Mq }, 0 },
3705
    { "vmxon",  { Mq }, 0 },
3706
    { "vmclear",{ Mq }, 0 },
3707
  },
3708
3709
  /* PREFIX_0FC7_REG_6_MOD_3 */
3710
  {
3711
    { "rdrand", { Ev }, 0 },
3712
    { X86_64_TABLE (X86_64_0FC7_REG_6_MOD_3_PREFIX_1) },
3713
    { "rdrand", { Ev }, 0 }
3714
  },
3715
3716
  /* PREFIX_0FC7_REG_7_MOD_3 */
3717
  {
3718
    { "rdseed", { Ev }, 0 },
3719
    { "rdpid",  { Em }, 0 },
3720
    { "rdseed", { Ev }, 0 },
3721
  },
3722
3723
  /* PREFIX_0FD0 */
3724
  {
3725
    { Bad_Opcode },
3726
    { Bad_Opcode },
3727
    { "VaddsubpX",  { XM, Vex, EXx }, 0 },
3728
    { "VaddsubpX",  { XM, Vex, EXx }, 0 },
3729
  },
3730
3731
  /* PREFIX_0FD6 */
3732
  {
3733
    { Bad_Opcode },
3734
    { "movq2dq",{ XM, Nq }, 0 },
3735
    { "movq", { EXqS, XM }, 0 },
3736
    { "movdq2q",{ MX, Ux }, 0 },
3737
  },
3738
3739
  /* PREFIX_0FE6 */
3740
  {
3741
    { Bad_Opcode },
3742
    { "Vcvtdq2pd",  { XM, EXxmmq }, 0 },
3743
    { "Vcvttpd2dq%XY",  { XMM, EXx }, 0 },
3744
    { "Vcvtpd2dq%XY", { XMM, EXx }, 0 },
3745
  },
3746
3747
  /* PREFIX_0FE7 */
3748
  {
3749
    { "movntq",   { Mq, MX }, 0 },
3750
    { Bad_Opcode },
3751
    { "movntdq",  { Mx, XM }, 0 },
3752
  },
3753
3754
  /* PREFIX_0FF0 */
3755
  {
3756
    { Bad_Opcode },
3757
    { Bad_Opcode },
3758
    { Bad_Opcode },
3759
    { "Vlddqu",   { XM, M }, 0 },
3760
  },
3761
3762
  /* PREFIX_0FF7 */
3763
  {
3764
    { "maskmovq", { MX, Nq }, PREFIX_OPCODE },
3765
    { Bad_Opcode },
3766
    { "maskmovdqu", { XM, Ux }, PREFIX_OPCODE },
3767
  },
3768
3769
  /* PREFIX_0F38D8 */
3770
  {
3771
    { Bad_Opcode },
3772
    { REG_TABLE (REG_0F38D8_PREFIX_1) },
3773
  },
3774
3775
  /* PREFIX_0F38DC */
3776
  {
3777
    { Bad_Opcode },
3778
    { MOD_TABLE (MOD_0F38DC_PREFIX_1) },
3779
    { "aesenc", { XM, EXx }, 0 },
3780
  },
3781
3782
  /* PREFIX_0F38DD */
3783
  {
3784
    { Bad_Opcode },
3785
    { "aesdec128kl", { XM, M }, 0 },
3786
    { "aesenclast", { XM, EXx }, 0 },
3787
  },
3788
3789
  /* PREFIX_0F38DE */
3790
  {
3791
    { Bad_Opcode },
3792
    { "aesenc256kl", { XM, M }, 0 },
3793
    { "aesdec", { XM, EXx }, 0 },
3794
  },
3795
3796
  /* PREFIX_0F38DF */
3797
  {
3798
    { Bad_Opcode },
3799
    { "aesdec256kl", { XM, M }, 0 },
3800
    { "aesdeclast", { XM, EXx }, 0 },
3801
  },
3802
3803
  /* PREFIX_0F38F0 */
3804
  {
3805
    { "movbeS", { Gv, Mv }, PREFIX_OPCODE },
3806
    { Bad_Opcode },
3807
    { "movbeS", { Gv, Mv }, PREFIX_OPCODE },
3808
    { "crc32A", { Gdq, Eb }, PREFIX_OPCODE },
3809
  },
3810
3811
  /* PREFIX_0F38F1 */
3812
  {
3813
    { "movbeS", { Mv, Gv }, PREFIX_OPCODE },
3814
    { Bad_Opcode },
3815
    { "movbeS", { Mv, Gv }, PREFIX_OPCODE },
3816
    { "crc32Q", { Gdq, Ev }, PREFIX_OPCODE },
3817
  },
3818
3819
  /* PREFIX_0F38F6 */
3820
  {
3821
    { "wrssK",  { M, Gdq }, 0 },
3822
    { "adoxL",  { VexGdq, Gdq, Edq }, 0 },
3823
    { "adcxL",  { VexGdq, Gdq, Edq }, 0 },
3824
    { Bad_Opcode },
3825
  },
3826
3827
  /* PREFIX_0F38F8_M_0 */
3828
  {
3829
    { Bad_Opcode },
3830
    { "enqcmds", { Gva, M }, 0 },
3831
    { "movdir64b", { Gva, M }, 0 },
3832
    { "enqcmd", { Gva, M }, 0 },
3833
  },
3834
3835
  /* PREFIX_0F38F8_M_1_X86_64 */
3836
  {
3837
    { Bad_Opcode },
3838
    { "uwrmsr",   { Gq, Rq }, 0 },
3839
    { Bad_Opcode },
3840
    { "urdmsr",   { Rq, Gq }, 0 },
3841
  },
3842
3843
  /* PREFIX_0F38FA */
3844
  {
3845
    { Bad_Opcode },
3846
    { "encodekey128", { Gd, Rd }, 0 },
3847
  },
3848
3849
  /* PREFIX_0F38FB */
3850
  {
3851
    { Bad_Opcode },
3852
    { "encodekey256", { Gd, Rd }, 0 },
3853
  },
3854
3855
  /* PREFIX_0F38FC */
3856
  {
3857
    { "aadd", { Mdq, Gdq }, 0 },
3858
    { "axor", { Mdq, Gdq }, 0 },
3859
    { "aand", { Mdq, Gdq }, 0 },
3860
    { "aor",  { Mdq, Gdq }, 0 },
3861
  },
3862
3863
  /* PREFIX_0F3A0F */
3864
  {
3865
    { Bad_Opcode },
3866
    { REG_TABLE (REG_0F3A0F_P_1) },
3867
  },
3868
3869
  /* PREFIX_VEX_0F12 */
3870
  {
3871
    { VEX_LEN_TABLE (VEX_LEN_0F12_P_0) },
3872
    { "%XEvmov%XSldup", { XM, EXEvexXNoBcst }, 0 },
3873
    { VEX_LEN_TABLE (VEX_LEN_0F12_P_2) },
3874
    { "%XEvmov%XDdup",  { XM, EXymmq }, 0 },
3875
  },
3876
3877
  /* PREFIX_VEX_0F16 */
3878
  {
3879
    { VEX_LEN_TABLE (VEX_LEN_0F16_P_0) },
3880
    { "%XEvmov%XShdup", { XM, EXEvexXNoBcst }, 0 },
3881
    { VEX_LEN_TABLE (VEX_LEN_0F16_P_2) },
3882
  },
3883
3884
  /* PREFIX_VEX_0F2A */
3885
  {
3886
    { Bad_Opcode },
3887
    { "%XEvcvtsi2ssY{%LQ|}",  { XMScalar, VexScalar, EXxEVexR, Edq }, 0 },
3888
    { Bad_Opcode },
3889
    { "%XEvcvtsi2sdY{%LQ|}",  { XMScalar, VexScalar, EXxEVexR64, Edq }, 0 },
3890
  },
3891
3892
  /* PREFIX_VEX_0F2C */
3893
  {
3894
    { Bad_Opcode },
3895
    { "%XEvcvttss2si",  { Gdq, EXd, EXxEVexS }, 0 },
3896
    { Bad_Opcode },
3897
    { "%XEvcvttsd2si",  { Gdq, EXq, EXxEVexS }, 0 },
3898
  },
3899
3900
  /* PREFIX_VEX_0F2D */
3901
  {
3902
    { Bad_Opcode },
3903
    { "%XEvcvtss2si", { Gdq, EXd, EXxEVexR }, 0 },
3904
    { Bad_Opcode },
3905
    { "%XEvcvtsd2si", { Gdq, EXq, EXxEVexR }, 0 },
3906
  },
3907
3908
  /* PREFIX_VEX_0F41_L_1_W_0 */
3909
  {
3910
    { "kandw",          { MaskG, MaskVex, MaskR }, 0 },
3911
    { Bad_Opcode },
3912
    { "kandb",          { MaskG, MaskVex, MaskR }, 0 },
3913
  },
3914
3915
  /* PREFIX_VEX_0F41_L_1_W_1 */
3916
  {
3917
    { "kandq",          { MaskG, MaskVex, MaskR }, 0 },
3918
    { Bad_Opcode },
3919
    { "kandd",          { MaskG, MaskVex, MaskR }, 0 },
3920
  },
3921
3922
  /* PREFIX_VEX_0F42_L_1_W_0 */
3923
  {
3924
    { "kandnw",         { MaskG, MaskVex, MaskR }, 0 },
3925
    { Bad_Opcode },
3926
    { "kandnb",         { MaskG, MaskVex, MaskR }, 0 },
3927
  },
3928
3929
  /* PREFIX_VEX_0F42_L_1_W_1 */
3930
  {
3931
    { "kandnq",         { MaskG, MaskVex, MaskR }, 0 },
3932
    { Bad_Opcode },
3933
    { "kandnd",         { MaskG, MaskVex, MaskR }, 0 },
3934
  },
3935
3936
  /* PREFIX_VEX_0F44_L_0_W_0 */
3937
  {
3938
    { "knotw",          { MaskG, MaskR }, 0 },
3939
    { Bad_Opcode },
3940
    { "knotb",          { MaskG, MaskR }, 0 },
3941
  },
3942
3943
  /* PREFIX_VEX_0F44_L_0_W_1 */
3944
  {
3945
    { "knotq",          { MaskG, MaskR }, 0 },
3946
    { Bad_Opcode },
3947
    { "knotd",          { MaskG, MaskR }, 0 },
3948
  },
3949
3950
  /* PREFIX_VEX_0F45_L_1_W_0 */
3951
  {
3952
    { "korw",       { MaskG, MaskVex, MaskR }, 0 },
3953
    { Bad_Opcode },
3954
    { "korb",       { MaskG, MaskVex, MaskR }, 0 },
3955
  },
3956
3957
  /* PREFIX_VEX_0F45_L_1_W_1 */
3958
  {
3959
    { "korq",       { MaskG, MaskVex, MaskR }, 0 },
3960
    { Bad_Opcode },
3961
    { "kord",       { MaskG, MaskVex, MaskR }, 0 },
3962
  },
3963
3964
  /* PREFIX_VEX_0F46_L_1_W_0 */
3965
  {
3966
    { "kxnorw",     { MaskG, MaskVex, MaskR }, 0 },
3967
    { Bad_Opcode },
3968
    { "kxnorb",     { MaskG, MaskVex, MaskR }, 0 },
3969
  },
3970
3971
  /* PREFIX_VEX_0F46_L_1_W_1 */
3972
  {
3973
    { "kxnorq",     { MaskG, MaskVex, MaskR }, 0 },
3974
    { Bad_Opcode },
3975
    { "kxnord",     { MaskG, MaskVex, MaskR }, 0 },
3976
  },
3977
3978
  /* PREFIX_VEX_0F47_L_1_W_0 */
3979
  {
3980
    { "kxorw",      { MaskG, MaskVex, MaskR }, 0 },
3981
    { Bad_Opcode },
3982
    { "kxorb",      { MaskG, MaskVex, MaskR }, 0 },
3983
  },
3984
3985
  /* PREFIX_VEX_0F47_L_1_W_1 */
3986
  {
3987
    { "kxorq",      { MaskG, MaskVex, MaskR }, 0 },
3988
    { Bad_Opcode },
3989
    { "kxord",      { MaskG, MaskVex, MaskR }, 0 },
3990
  },
3991
3992
  /* PREFIX_VEX_0F4A_L_1_W_0 */
3993
  {
3994
    { "kaddw",          { MaskG, MaskVex, MaskR }, 0 },
3995
    { Bad_Opcode },
3996
    { "kaddb",          { MaskG, MaskVex, MaskR }, 0 },
3997
  },
3998
3999
  /* PREFIX_VEX_0F4A_L_1_W_1 */
4000
  {
4001
    { "kaddq",          { MaskG, MaskVex, MaskR }, 0 },
4002
    { Bad_Opcode },
4003
    { "kaddd",          { MaskG, MaskVex, MaskR }, 0 },
4004
  },
4005
4006
  /* PREFIX_VEX_0F4B_L_1_W_0 */
4007
  {
4008
    { "kunpckwd",   { MaskG, MaskVex, MaskR }, 0 },
4009
    { Bad_Opcode },
4010
    { "kunpckbw",   { MaskG, MaskVex, MaskR }, 0 },
4011
  },
4012
4013
  /* PREFIX_VEX_0F4B_L_1_W_1 */
4014
  {
4015
    { "kunpckdq",   { MaskG, MaskVex, MaskR }, 0 },
4016
  },
4017
4018
  /* PREFIX_VEX_0F6F */
4019
  {
4020
    { Bad_Opcode },
4021
    { "vmovdqu",  { XM, EXx }, 0 },
4022
    { "vmovdqa",  { XM, EXx }, 0 },
4023
  },
4024
4025
  /* PREFIX_VEX_0F70 */
4026
  {
4027
    { Bad_Opcode },
4028
    { "vpshufhw", { XM, EXx, Ib }, 0 },
4029
    { "vpshufd",  { XM, EXx, Ib }, 0 },
4030
    { "vpshuflw", { XM, EXx, Ib }, 0 },
4031
  },
4032
4033
  /* PREFIX_VEX_0F7E */
4034
  {
4035
    { Bad_Opcode },
4036
    { VEX_LEN_TABLE (VEX_LEN_0F7E_P_1) },
4037
    { VEX_LEN_TABLE (VEX_LEN_0F7E_P_2) },
4038
  },
4039
4040
  /* PREFIX_VEX_0F7F */
4041
  {
4042
    { Bad_Opcode },
4043
    { "vmovdqu",  { EXxS, XM }, 0 },
4044
    { "vmovdqa",  { EXxS, XM }, 0 },
4045
  },
4046
4047
  /* PREFIX_VEX_0F90_L_0_W_0 */
4048
  {
4049
    { "%XEkmovw",   { MaskG, MaskE }, 0 },
4050
    { Bad_Opcode },
4051
    { "%XEkmovb",   { MaskG, MaskBDE }, 0 },
4052
  },
4053
4054
  /* PREFIX_VEX_0F90_L_0_W_1 */
4055
  {
4056
    { "%XEkmovq",   { MaskG, MaskE }, 0 },
4057
    { Bad_Opcode },
4058
    { "%XEkmovd",   { MaskG, MaskBDE }, 0 },
4059
  },
4060
4061
  /* PREFIX_VEX_0F91_L_0_W_0 */
4062
  {
4063
    { "%XEkmovw",   { Mw, MaskG }, 0 },
4064
    { Bad_Opcode },
4065
    { "%XEkmovb",   { Mb, MaskG }, 0 },
4066
  },
4067
4068
  /* PREFIX_VEX_0F91_L_0_W_1 */
4069
  {
4070
    { "%XEkmovq",   { Mq, MaskG }, 0 },
4071
    { Bad_Opcode },
4072
    { "%XEkmovd",   { Md, MaskG }, 0 },
4073
  },
4074
4075
  /* PREFIX_VEX_0F92_L_0_W_0 */
4076
  {
4077
    { "%XEkmovw",   { MaskG, Rdq }, 0 },
4078
    { Bad_Opcode },
4079
    { "%XEkmovb",   { MaskG, Rdq }, 0 },
4080
    { "%XEkmovd",   { MaskG, Rdq }, 0 },
4081
  },
4082
4083
  /* PREFIX_VEX_0F92_L_0_W_1 */
4084
  {
4085
    { Bad_Opcode },
4086
    { Bad_Opcode },
4087
    { Bad_Opcode },
4088
    { "%XEkmovK",   { MaskG, Rdq }, 0 },
4089
  },
4090
4091
  /* PREFIX_VEX_0F93_L_0_W_0 */
4092
  {
4093
    { "%XEkmovw",   { Gdq, MaskR }, 0 },
4094
    { Bad_Opcode },
4095
    { "%XEkmovb",   { Gdq, MaskR }, 0 },
4096
    { "%XEkmovd",   { Gdq, MaskR }, 0 },
4097
  },
4098
4099
  /* PREFIX_VEX_0F93_L_0_W_1 */
4100
  {
4101
    { Bad_Opcode },
4102
    { Bad_Opcode },
4103
    { Bad_Opcode },
4104
    { "%XEkmovK",   { Gdq, MaskR }, 0 },
4105
  },
4106
4107
  /* PREFIX_VEX_0F98_L_0_W_0 */
4108
  {
4109
    { "kortestw", { MaskG, MaskR }, 0 },
4110
    { Bad_Opcode },
4111
    { "kortestb", { MaskG, MaskR }, 0 },
4112
  },
4113
4114
  /* PREFIX_VEX_0F98_L_0_W_1 */
4115
  {
4116
    { "kortestq", { MaskG, MaskR }, 0 },
4117
    { Bad_Opcode },
4118
    { "kortestd", { MaskG, MaskR }, 0 },
4119
  },
4120
4121
  /* PREFIX_VEX_0F99_L_0_W_0 */
4122
  {
4123
    { "ktestw", { MaskG, MaskR }, 0 },
4124
    { Bad_Opcode },
4125
    { "ktestb", { MaskG, MaskR }, 0 },
4126
  },
4127
4128
  /* PREFIX_VEX_0F99_L_0_W_1 */
4129
  {
4130
    { "ktestq", { MaskG, MaskR }, 0 },
4131
    { Bad_Opcode },
4132
    { "ktestd", { MaskG, MaskR }, 0 },
4133
  },
4134
4135
  /* PREFIX_VEX_0F3848_X86_64_L_0_W_0 */
4136
  {
4137
    { "ttmmultf32ps", { TMM, Rtmm, VexTmm }, 0 },
4138
    { Bad_Opcode },
4139
    { "tmmultf32ps",  { TMM, Rtmm, VexTmm }, 0 },
4140
  },
4141
4142
  /* PREFIX_VEX_0F3849_X86_64_L_0_W_0_M_0 */
4143
  {
4144
    { "ldtilecfg", { M }, 0 },
4145
    { Bad_Opcode },
4146
    { "sttilecfg", { M }, 0 },
4147
  },
4148
4149
  /* PREFIX_VEX_0F3849_X86_64_L_0_W_0_M_1 */
4150
  {
4151
    { REG_TABLE (REG_VEX_0F3849_X86_64_L_0_W_0_M_1_P_0) },
4152
    { Bad_Opcode },
4153
    { Bad_Opcode },
4154
    { RM_TABLE (RM_VEX_0F3849_X86_64_L_0_W_0_M_1_P_3) },
4155
  },
4156
4157
  /* PREFIX_VEX_0F384A_X86_64_W_0_L_0 */
4158
  {
4159
    { Bad_Opcode },
4160
    { Bad_Opcode },
4161
    { "tileloaddrst1",  { TMM, MVexSIBMEM }, 0 },
4162
    { "tileloaddrs",  { TMM, MVexSIBMEM }, 0 },
4163
  },
4164
4165
  /* PREFIX_VEX_0F384B_X86_64_L_0_W_0 */
4166
  {
4167
    { Bad_Opcode },
4168
    { "tilestored", { MVexSIBMEM, TMM }, 0 },
4169
    { "tileloaddt1",  { TMM, MVexSIBMEM }, 0 },
4170
    { "tileloadd",  { TMM, MVexSIBMEM }, 0 },
4171
  },
4172
4173
  /* PREFIX_VEX_0F3850_W_0 */
4174
  {
4175
    { "%XEvpdpbuud",  { XM, Vex, EXx }, 0 },
4176
    { "%XEvpdpbsud",  { XM, Vex, EXx }, 0 },
4177
    { "%XVvpdpbusd",  { XM, Vex, EXx }, 0 },
4178
    { "%XEvpdpbssd",  { XM, Vex, EXx }, 0 },
4179
  },
4180
4181
  /* PREFIX_VEX_0F3851_W_0 */
4182
  {
4183
    { "%XEvpdpbuuds", { XM, Vex, EXx }, 0 },
4184
    { "%XEvpdpbsuds", { XM, Vex, EXx }, 0 },
4185
    { "%XVvpdpbusds", { XM, Vex, EXx }, 0 },
4186
    { "%XEvpdpbssds", { XM, Vex, EXx }, 0 },
4187
  },
4188
  /* PREFIX_VEX_0F385C_X86_64_L_0_W_0 */
4189
  {
4190
    { Bad_Opcode },
4191
    { "tdpbf16ps", { TMM, Rtmm, VexTmm }, 0 },
4192
    { Bad_Opcode },
4193
    { "tdpfp16ps", { TMM, Rtmm, VexTmm }, 0 },
4194
  },
4195
4196
  /* PREFIX_VEX_0F385E_X86_64_L_0_W_0 */
4197
  {
4198
    { "tdpbuud", {TMM, Rtmm, VexTmm }, 0 },
4199
    { "tdpbsud", {TMM, Rtmm, VexTmm }, 0 },
4200
    { "tdpbusd", {TMM, Rtmm, VexTmm }, 0 },
4201
    { "tdpbssd", {TMM, Rtmm, VexTmm }, 0 },
4202
  },
4203
4204
  /* PREFIX_VEX_0F385F_X86_64_L_0_W_0 */
4205
  {
4206
    { Bad_Opcode },
4207
    { "ttransposed",  { TMM, Rtmm }, 0 },
4208
  },
4209
4210
  /* PREFIX_VEX_0F386B_X86_64_L_0_W_0 */
4211
  {
4212
    { "tconjtcmmimfp16ps",  { TMM, Rtmm, VexTmm }, 0 },
4213
    { "ttcmmrlfp16ps",  { TMM, Rtmm, VexTmm }, 0 },
4214
    { "tconjtfp16", { TMM, Rtmm }, 0 },
4215
    { "ttcmmimfp16ps",  { TMM, Rtmm, VexTmm }, 0 },
4216
  },
4217
4218
  /* PREFIX_VEX_0F386C_X86_64_L_0_W_0 */
4219
  {
4220
    { "tcmmrlfp16ps", { TMM, Rtmm, VexTmm }, 0 },
4221
    { "ttdpbf16ps", { TMM, Rtmm, VexTmm }, 0 },
4222
    { "tcmmimfp16ps", { TMM, Rtmm, VexTmm }, 0 },
4223
    { "ttdpfp16ps", { TMM, Rtmm, VexTmm }, 0 },
4224
  },
4225
4226
  /* PREFIX_VEX_0F386E_X86_64_L_0_W_0 */
4227
  {
4228
    { "t2rpntlvwz0",  { TMM, MVexSIBMEM }, 0 },
4229
    { Bad_Opcode },
4230
    { "t2rpntlvwz1",  { TMM, MVexSIBMEM }, 0 },
4231
  },
4232
4233
  /* PREFIX_VEX_0F386F_X86_64_L_0_W_0 */
4234
  {
4235
    { "t2rpntlvwz0t1",  { TMM, MVexSIBMEM }, 0 },
4236
    { Bad_Opcode },
4237
    { "t2rpntlvwz1t1",  { TMM, MVexSIBMEM }, 0 },
4238
  },
4239
4240
  /* PREFIX_VEX_0F3872 */
4241
  {
4242
    { Bad_Opcode },
4243
    { VEX_W_TABLE (VEX_W_0F3872_P_1) },
4244
  },
4245
4246
  /* PREFIX_VEX_0F38B0_W_0 */
4247
  {
4248
    { "vcvtneoph2ps", { XM, Mx }, 0 },
4249
    { "vcvtneebf162ps", { XM, Mx }, 0 },
4250
    { "vcvtneeph2ps", { XM, Mx }, 0 },
4251
    { "vcvtneobf162ps", { XM, Mx }, 0 },
4252
  },
4253
4254
  /* PREFIX_VEX_0F38B1_W_0 */
4255
  {
4256
    { Bad_Opcode },
4257
    { "vbcstnebf162ps", { XM, Mw }, 0 },
4258
    { "vbcstnesh2ps", { XM, Mw }, 0 },
4259
  },
4260
4261
  /* PREFIX_VEX_0F38D2_W_0 */
4262
  {
4263
    { "%XEvpdpwuud",  { XM, Vex, EXx }, 0 },
4264
    { "%XEvpdpwsud",  { XM, Vex, EXx }, 0 },
4265
    { "%XEvpdpwusd",  { XM, Vex, EXx }, 0 },
4266
  },
4267
4268
  /* PREFIX_VEX_0F38D3_W_0 */
4269
  {
4270
    { "%XEvpdpwuuds", { XM, Vex, EXx }, 0 },
4271
    { "%XEvpdpwsuds", { XM, Vex, EXx }, 0 },
4272
    { "%XEvpdpwusds", { XM, Vex, EXx }, 0 },
4273
  },
4274
4275
  /* PREFIX_VEX_0F38CB */
4276
  {
4277
    { Bad_Opcode },
4278
    { Bad_Opcode },
4279
    { Bad_Opcode },
4280
    { VEX_W_TABLE (VEX_W_0F38CB_P_3) },
4281
  },
4282
4283
  /* PREFIX_VEX_0F38CC */
4284
  {
4285
    { Bad_Opcode },
4286
    { Bad_Opcode },
4287
    { Bad_Opcode },
4288
    { VEX_W_TABLE (VEX_W_0F38CC_P_3) },
4289
  },
4290
4291
  /* PREFIX_VEX_0F38CD */
4292
  {
4293
    { Bad_Opcode },
4294
    { Bad_Opcode },
4295
    { Bad_Opcode },
4296
    { VEX_W_TABLE (VEX_W_0F38CD_P_3) },
4297
  },
4298
4299
  /* PREFIX_VEX_0F38DA_W_0 */
4300
  {
4301
    { VEX_LEN_TABLE (VEX_LEN_0F38DA_W_0_P_0) },
4302
    { "%XEvsm4key4",  { XM, Vex, EXx }, 0 },
4303
    { VEX_LEN_TABLE (VEX_LEN_0F38DA_W_0_P_2) },
4304
    { "%XEvsm4rnds4", { XM, Vex, EXx }, 0 },
4305
  },
4306
4307
  /* PREFIX_VEX_0F38F2_L_0 */
4308
  {
4309
    { "%NFandnS",          { Gdq, VexGdq, Edq }, 0 },
4310
  },
4311
4312
  /* PREFIX_VEX_0F38F3_L_0 */
4313
  {
4314
    { REG_TABLE (REG_VEX_0F38F3_L_0_P_0) },
4315
  },
4316
4317
  /* PREFIX_VEX_0F38F5_L_0 */
4318
  {
4319
    { "%NFbzhiS", { Gdq, Edq, VexGdq }, 0 },
4320
    { "%XEpextS",   { Gdq, VexGdq, Edq }, 0 },
4321
    { Bad_Opcode },
4322
    { "%XEpdepS",   { Gdq, VexGdq, Edq }, 0 },
4323
  },
4324
4325
  /* PREFIX_VEX_0F38F6_L_0 */
4326
  {
4327
    { Bad_Opcode },
4328
    { Bad_Opcode },
4329
    { Bad_Opcode },
4330
    { "%XEmulxS",   { Gdq, VexGdq, Edq }, 0 },
4331
  },
4332
4333
  /* PREFIX_VEX_0F38F7_L_0 */
4334
  {
4335
    { "%NFbextrS",  { Gdq, Edq, VexGdq }, 0 },
4336
    { "%XEsarxS",   { Gdq, Edq, VexGdq }, 0 },
4337
    { "%XEshlxS",   { Gdq, Edq, VexGdq }, 0 },
4338
    { "%XEshrxS",   { Gdq, Edq, VexGdq }, 0 },
4339
  },
4340
4341
  /* PREFIX_VEX_0F3AF0_L_0 */
4342
  {
4343
    { Bad_Opcode },
4344
    { Bad_Opcode },
4345
    { Bad_Opcode },
4346
    { "%XErorxS",   { Gdq, Edq, Ib }, 0 },
4347
  },
4348
4349
  /* PREFIX_VEX_MAP5_F8_X86_64_L_0_W_0 */
4350
  {
4351
    { "t2rpntlvwz0rs",  { TMM, MVexSIBMEM }, 0 },
4352
    { Bad_Opcode },
4353
    { "t2rpntlvwz1rs",  { TMM, MVexSIBMEM }, 0 },
4354
  },
4355
4356
  /* PREFIX_VEX_MAP5_F9_X86_64_L_0_W_0 */
4357
  {
4358
    { "t2rpntlvwz0rst1",  { TMM, MVexSIBMEM }, 0 },
4359
    { Bad_Opcode },
4360
    { "t2rpntlvwz1rst1",  { TMM, MVexSIBMEM }, 0 },
4361
  },
4362
4363
  /* PREFIX_VEX_MAP5_FD_X86_64_L_0_W_0 */
4364
  {
4365
    { "tdpbf8ps", { TMM, Rtmm, VexTmm }, 0 },
4366
    { "tdphbf8ps",  { TMM, Rtmm, VexTmm }, 0 },
4367
    { "tdphf8ps", { TMM, Rtmm, VexTmm }, 0 },
4368
    { "tdpbhf8ps",  { TMM, Rtmm, VexTmm }, 0 },
4369
  },
4370
4371
  /* PREFIX_VEX_MAP7_F6_L_0_W_0_R_0_X86_64 */
4372
  {
4373
    { Bad_Opcode },
4374
    { "wrmsrns",  { Skip_MODRM, Id, Rq }, 0 },
4375
    { Bad_Opcode },
4376
    { "rdmsr",    { Rq, Id }, 0 },
4377
  },
4378
4379
  /* PREFIX_VEX_MAP7_F8_L_0_W_0_R_0_X86_64 */
4380
  {
4381
    { Bad_Opcode },
4382
    { "uwrmsr", { Skip_MODRM, Id, Rq }, 0 },
4383
    { Bad_Opcode },
4384
    { "urdmsr", { Rq, Id }, 0 },
4385
  },
4386
4387
#include "i386-dis-evex-prefix.h"
4388
};
4389
4390
static const struct dis386 x86_64_table[][2] = {
4391
  /* X86_64_06 */
4392
  {
4393
    { "pushP", { es }, 0 },
4394
  },
4395
4396
  /* X86_64_07 */
4397
  {
4398
    { "popP", { es }, 0 },
4399
  },
4400
4401
  /* X86_64_0E */
4402
  {
4403
    { "pushP", { cs }, 0 },
4404
  },
4405
4406
  /* X86_64_16 */
4407
  {
4408
    { "pushP", { ss }, 0 },
4409
  },
4410
4411
  /* X86_64_17 */
4412
  {
4413
    { "popP", { ss }, 0 },
4414
  },
4415
4416
  /* X86_64_1E */
4417
  {
4418
    { "pushP", { ds }, 0 },
4419
  },
4420
4421
  /* X86_64_1F */
4422
  {
4423
    { "popP", { ds }, 0 },
4424
  },
4425
4426
  /* X86_64_27 */
4427
  {
4428
    { "daa", { XX }, 0 },
4429
  },
4430
4431
  /* X86_64_2F */
4432
  {
4433
    { "das", { XX }, 0 },
4434
  },
4435
4436
  /* X86_64_37 */
4437
  {
4438
    { "aaa", { XX }, 0 },
4439
  },
4440
4441
  /* X86_64_3F */
4442
  {
4443
    { "aas", { XX }, 0 },
4444
  },
4445
4446
  /* X86_64_60 */
4447
  {
4448
    { "pushaP", { XX }, 0 },
4449
  },
4450
4451
  /* X86_64_61 */
4452
  {
4453
    { "popaP", { XX }, 0 },
4454
  },
4455
4456
  /* X86_64_62 */
4457
  {
4458
    { MOD_TABLE (MOD_62_32BIT) },
4459
    { EVEX_TABLE () },
4460
  },
4461
4462
  /* X86_64_63 */
4463
  {
4464
    { "arplS", { Sv, Gv }, 0 },
4465
    { "movs", { Gv, { MOVSXD_Fixup, movsxd_mode } }, 0 },
4466
  },
4467
4468
  /* X86_64_6D */
4469
  {
4470
    { "ins{R|}", { Yzr, indirDX }, 0 },
4471
    { "ins{G|}", { Yzr, indirDX }, 0 },
4472
  },
4473
4474
  /* X86_64_6F */
4475
  {
4476
    { "outs{R|}", { indirDXr, Xz }, 0 },
4477
    { "outs{G|}", { indirDXr, Xz }, 0 },
4478
  },
4479
4480
  /* X86_64_82 */
4481
  {
4482
    /* Opcode 0x82 is an alias of opcode 0x80 in 32-bit mode.  */
4483
    { REG_TABLE (REG_80) },
4484
  },
4485
4486
  /* X86_64_9A */
4487
  {
4488
    { "{l|}call{P|}", { Ap }, 0 },
4489
  },
4490
4491
  /* X86_64_C2 */
4492
  {
4493
    { "retP",   { Iw, BND }, 0 },
4494
    { "ret@",   { Iw, BND }, 0 },
4495
  },
4496
4497
  /* X86_64_C3 */
4498
  {
4499
    { "retP",   { BND }, 0 },
4500
    { "ret@",   { BND }, 0 },
4501
  },
4502
4503
  /* X86_64_C4 */
4504
  {
4505
    { MOD_TABLE (MOD_C4_32BIT) },
4506
    { VEX_C4_TABLE () },
4507
  },
4508
4509
  /* X86_64_C5 */
4510
  {
4511
    { MOD_TABLE (MOD_C5_32BIT) },
4512
    { VEX_C5_TABLE () },
4513
  },
4514
4515
  /* X86_64_CE */
4516
  {
4517
    { "into", { XX }, 0 },
4518
  },
4519
4520
  /* X86_64_D4 */
4521
  {
4522
    { "aam", { Ib }, 0 },
4523
  },
4524
4525
  /* X86_64_D5 */
4526
  {
4527
    { "aad", { Ib }, 0 },
4528
  },
4529
4530
  /* X86_64_D6 */
4531
  {
4532
    { "salc", { XX }, 0 },
4533
    { "udb", { XX }, 0 },
4534
  },
4535
4536
  /* X86_64_E8 */
4537
  {
4538
    { "callP",    { Jv, BND }, 0 },
4539
    { "call@",    { Jv, BND }, PREFIX_REX2_ILLEGAL }
4540
  },
4541
4542
  /* X86_64_E9 */
4543
  {
4544
    { "jmpP",   { Jv, BND }, 0 },
4545
    { "jmp@",   { Jv, BND }, PREFIX_REX2_ILLEGAL }
4546
  },
4547
4548
  /* X86_64_EA */
4549
  {
4550
    { "{l|}jmp{P|}", { Ap }, 0 },
4551
  },
4552
4553
  /* X86_64_0F00_REG_6 */
4554
  {
4555
    { Bad_Opcode },
4556
    { PREFIX_TABLE (PREFIX_0F00_REG_6_X86_64) },
4557
  },
4558
4559
  /* X86_64_0F01_REG_0 */
4560
  {
4561
    { "sgdt{Q|Q}", { M }, 0 },
4562
    { "sgdt", { M }, 0 },
4563
  },
4564
4565
  /* X86_64_0F01_REG_0_MOD_3_RM_6_P_1 */
4566
  {
4567
    { Bad_Opcode },
4568
    { "wrmsrlist",  { Skip_MODRM }, 0 },
4569
  },
4570
4571
  /* X86_64_0F01_REG_0_MOD_3_RM_6_P_3 */
4572
  {
4573
    { Bad_Opcode },
4574
    { "rdmsrlist",  { Skip_MODRM }, 0 },
4575
  },
4576
4577
  /* X86_64_0F01_REG_0_MOD_3_RM_7_P_0 */
4578
  {
4579
    { Bad_Opcode },
4580
    { "pbndkb",   { Skip_MODRM }, 0 },
4581
  },
4582
4583
  /* X86_64_0F01_REG_1 */
4584
  {
4585
    { "sidt{Q|Q}", { M }, 0 },
4586
    { "sidt", { M }, 0 },
4587
  },
4588
4589
  /* X86_64_0F01_REG_1_RM_2_PREFIX_1 */
4590
  {
4591
    { Bad_Opcode },
4592
    { "eretu",    { Skip_MODRM }, 0 },
4593
  },
4594
4595
  /* X86_64_0F01_REG_1_RM_2_PREFIX_3 */
4596
  {
4597
    { Bad_Opcode },
4598
    { "erets",    { Skip_MODRM }, 0 },
4599
  },
4600
4601
  /* X86_64_0F01_REG_1_RM_5_PREFIX_2 */
4602
  {
4603
    { Bad_Opcode },
4604
    { "seamret",  { Skip_MODRM }, 0 },
4605
  },
4606
4607
  /* X86_64_0F01_REG_1_RM_6_PREFIX_2 */
4608
  {
4609
    { Bad_Opcode },
4610
    { "seamops",  { Skip_MODRM }, 0 },
4611
  },
4612
4613
  /* X86_64_0F01_REG_1_RM_7_PREFIX_2 */
4614
  {
4615
    { Bad_Opcode },
4616
    { "seamcall", { Skip_MODRM }, 0 },
4617
  },
4618
4619
  /* X86_64_0F01_REG_2 */
4620
  {
4621
    { "lgdt{Q|Q}", { M }, 0 },
4622
    { "lgdt", { M }, 0 },
4623
  },
4624
4625
  /* X86_64_0F01_REG_3 */
4626
  {
4627
    { "lidt{Q|Q}", { M }, 0 },
4628
    { "lidt", { M }, 0 },
4629
  },
4630
4631
  /* X86_64_0F01_REG_5_MOD_3_RM_4_PREFIX_1 */
4632
  {
4633
    { Bad_Opcode },
4634
    { "uiret",  { Skip_MODRM }, 0 },
4635
  },
4636
4637
  /* X86_64_0F01_REG_5_MOD_3_RM_5_PREFIX_1 */
4638
  {
4639
    { Bad_Opcode },
4640
    { "testui", { Skip_MODRM }, 0 },
4641
  },
4642
4643
  /* X86_64_0F01_REG_5_MOD_3_RM_6_PREFIX_1 */
4644
  {
4645
    { Bad_Opcode },
4646
    { "clui", { Skip_MODRM }, 0 },
4647
  },
4648
4649
  /* X86_64_0F01_REG_5_MOD_3_RM_7_PREFIX_1 */
4650
  {
4651
    { Bad_Opcode },
4652
    { "stui", { Skip_MODRM }, 0 },
4653
  },
4654
4655
  /* X86_64_0F01_REG_7_MOD_3_RM_5_PREFIX_1 */
4656
  {
4657
    { Bad_Opcode },
4658
    { "rmpquery", { Skip_MODRM }, 0 },
4659
  },
4660
4661
  /* X86_64_0F01_REG_7_MOD_3_RM_6_PREFIX_3 */
4662
  {
4663
    { Bad_Opcode },
4664
    { "rmpread",  { DSCX, RMrAX, Skip_MODRM }, 0 },
4665
  },
4666
4667
  /* X86_64_0F01_REG_7_MOD_3_RM_6_PREFIX_1 */
4668
  {
4669
    { Bad_Opcode },
4670
    { "rmpadjust",  { Skip_MODRM }, 0 },
4671
  },
4672
4673
  /* X86_64_0F01_REG_7_MOD_3_RM_6_PREFIX_3 */
4674
  {
4675
    { Bad_Opcode },
4676
    { "rmpupdate",  { RMrAX, DSCX, Skip_MODRM }, 0 },
4677
  },
4678
4679
  /* X86_64_0F01_REG_7_MOD_3_RM_7_PREFIX_1 */
4680
  {
4681
    { Bad_Opcode },
4682
    { "psmash", { Skip_MODRM }, 0 },
4683
  },
4684
4685
  /* X86_64_0F18_REG_6_MOD_0 */
4686
  {
4687
    { "nopQ",   { Ev }, 0 },
4688
    { PREFIX_TABLE (PREFIX_0F18_REG_6_MOD_0_X86_64) },
4689
  },
4690
4691
  /* X86_64_0F18_REG_7_MOD_0 */
4692
  {
4693
    { "nopQ",   { Ev }, 0 },
4694
    { PREFIX_TABLE (PREFIX_0F18_REG_7_MOD_0_X86_64) },
4695
  },
4696
4697
  {
4698
    /* X86_64_0F24 */
4699
    { "movZ",   { Em, Td }, 0 },
4700
  },
4701
4702
  {
4703
    /* X86_64_0F26 */
4704
    { "movZ",   { Td, Em }, 0 },
4705
  },
4706
4707
  {
4708
    /* X86_64_0F388A */
4709
    { Bad_Opcode },
4710
    { "movrsB",   { Gb, Mb }, PREFIX_OPCODE },
4711
  },
4712
4713
  {
4714
    /* X86_64_0F388B */
4715
    { Bad_Opcode },
4716
    { "movrsS",   { Gv, Mv }, PREFIX_OPCODE },
4717
  },
4718
4719
  {
4720
    /* X86_64_0F38F8_M_1 */
4721
    { Bad_Opcode },
4722
    { PREFIX_TABLE (PREFIX_0F38F8_M_1_X86_64) },
4723
  },
4724
4725
  /* X86_64_0FAE_REG_0_MOD_3_PREFIX_1 */
4726
  {
4727
    { Bad_Opcode },
4728
    { "rdfsbase", { Edq }, 0 },
4729
  },
4730
4731
  /* X86_64_0FAE_REG_1_MOD_3_PREFIX_1 */
4732
  {
4733
    { Bad_Opcode },
4734
    { "rdgsbase", { Edq }, 0 },
4735
  },
4736
4737
  /* X86_64_0FAE_REG_2_MOD_3_PREFIX_1 */
4738
  {
4739
    { Bad_Opcode },
4740
    { "wrfsbase", { Edq }, 0 },
4741
  },
4742
4743
  /* X86_64_0FAE_REG_3_MOD_3_PREFIX_1 */
4744
  {
4745
    { Bad_Opcode },
4746
    { "wrgsbase", { Edq }, 0 },
4747
  },
4748
4749
  /* X86_64_0FC7_REG_6_MOD_3_PREFIX_1 */
4750
  {
4751
    { Bad_Opcode },
4752
    { "senduipi", { Eq }, 0 },
4753
  },
4754
4755
  /* X86_64_VEX_0F3848 */
4756
  {
4757
    { Bad_Opcode },
4758
    { VEX_LEN_TABLE (VEX_LEN_0F3848_X86_64) },
4759
  },
4760
4761
  /* X86_64_VEX_0F3849 */
4762
  {
4763
    { Bad_Opcode },
4764
    { VEX_LEN_TABLE (VEX_LEN_0F3849_X86_64) },
4765
  },
4766
4767
  /* X86_64_VEX_0F384A */
4768
  {
4769
    { Bad_Opcode },
4770
    { VEX_W_TABLE (VEX_W_0F384A_X86_64) },
4771
  },
4772
4773
  /* X86_64_VEX_0F384B */
4774
  {
4775
    { Bad_Opcode },
4776
    { VEX_LEN_TABLE (VEX_LEN_0F384B_X86_64) },
4777
  },
4778
4779
  /* X86_64_VEX_0F385C */
4780
  {
4781
    { Bad_Opcode },
4782
    { VEX_LEN_TABLE (VEX_LEN_0F385C_X86_64) },
4783
  },
4784
4785
  /* X86_64_VEX_0F385E */
4786
  {
4787
    { Bad_Opcode },
4788
    { VEX_LEN_TABLE (VEX_LEN_0F385E_X86_64) },
4789
  },
4790
4791
  /* X86_64_VEX_0F385F */
4792
  {
4793
    { Bad_Opcode },
4794
    { VEX_LEN_TABLE (VEX_LEN_0F385F_X86_64) },
4795
  },
4796
4797
  /* X86_64_VEX_0F386B */
4798
  {
4799
    { Bad_Opcode },
4800
    { VEX_LEN_TABLE (VEX_LEN_0F386B_X86_64) },
4801
  },
4802
4803
  /* X86_64_VEX_0F386C */
4804
  {
4805
    { Bad_Opcode },
4806
    { VEX_LEN_TABLE (VEX_LEN_0F386C_X86_64) },
4807
  },
4808
4809
  /* X86_64_VEX_0F386E */
4810
  {
4811
    { Bad_Opcode },
4812
    { VEX_LEN_TABLE (VEX_LEN_0F386E_X86_64) },
4813
  },
4814
4815
  /* X86_64_VEX_0F386F */
4816
  {
4817
    { Bad_Opcode },
4818
    { VEX_LEN_TABLE (VEX_LEN_0F386F_X86_64) },
4819
  },
4820
4821
  /* X86_64_VEX_0F38Ex */
4822
  {
4823
    { Bad_Opcode },
4824
    { "%XEcmp%CCxadd", { Mdq, Gdq, VexGdq }, PREFIX_DATA },
4825
  },
4826
4827
  /* X86_64_VEX_MAP5_F8 */
4828
  {
4829
    { Bad_Opcode },
4830
    { VEX_LEN_TABLE (VEX_LEN_MAP5_F8_X86_64) },
4831
  },
4832
4833
  /* X86_64_VEX_MAP5_F9 */
4834
  {
4835
    { Bad_Opcode },
4836
    { VEX_LEN_TABLE (VEX_LEN_MAP5_F9_X86_64) },
4837
  },
4838
4839
  /* X86_64_VEX_MAP5_FD */
4840
  {
4841
    { Bad_Opcode },
4842
    { VEX_LEN_TABLE (VEX_LEN_MAP5_FD_X86_64) },
4843
  },
4844
4845
  /* X86_64_VEX_MAP7_F6_L_0_W_0_R_0 */
4846
  {
4847
    { Bad_Opcode },
4848
    { PREFIX_TABLE (PREFIX_VEX_MAP7_F6_L_0_W_0_R_0_X86_64) },
4849
  },
4850
4851
  /* X86_64_VEX_MAP7_F8_L_0_W_0_R_0 */
4852
  {
4853
    { Bad_Opcode },
4854
    { PREFIX_TABLE (PREFIX_VEX_MAP7_F8_L_0_W_0_R_0_X86_64) },
4855
  },
4856
4857
#include "i386-dis-evex-x86-64.h"
4858
};
4859
4860
static const struct dis386 three_byte_table[][256] = {
4861
4862
  /* THREE_BYTE_0F38 */
4863
  {
4864
    /* 00 */
4865
    { "pshufb",   { MX, EM }, PREFIX_OPCODE },
4866
    { "phaddw",   { MX, EM }, PREFIX_OPCODE },
4867
    { "phaddd",   { MX, EM }, PREFIX_OPCODE },
4868
    { "phaddsw",  { MX, EM }, PREFIX_OPCODE },
4869
    { "pmaddubsw",  { MX, EM }, PREFIX_OPCODE },
4870
    { "phsubw",   { MX, EM }, PREFIX_OPCODE },
4871
    { "phsubd",   { MX, EM }, PREFIX_OPCODE },
4872
    { "phsubsw",  { MX, EM }, PREFIX_OPCODE },
4873
    /* 08 */
4874
    { "psignb",   { MX, EM }, PREFIX_OPCODE },
4875
    { "psignw",   { MX, EM }, PREFIX_OPCODE },
4876
    { "psignd",   { MX, EM }, PREFIX_OPCODE },
4877
    { "pmulhrsw", { MX, EM }, PREFIX_OPCODE },
4878
    { Bad_Opcode },
4879
    { Bad_Opcode },
4880
    { Bad_Opcode },
4881
    { Bad_Opcode },
4882
    /* 10 */
4883
    { "pblendvb", { XM, EXx, XMM0 }, PREFIX_DATA },
4884
    { Bad_Opcode },
4885
    { Bad_Opcode },
4886
    { Bad_Opcode },
4887
    { "blendvps", { XM, EXx, XMM0 }, PREFIX_DATA },
4888
    { "blendvpd", { XM, EXx, XMM0 }, PREFIX_DATA },
4889
    { Bad_Opcode },
4890
    { "ptest",  { XM, EXx }, PREFIX_DATA },
4891
    /* 18 */
4892
    { Bad_Opcode },
4893
    { Bad_Opcode },
4894
    { Bad_Opcode },
4895
    { Bad_Opcode },
4896
    { "pabsb",    { MX, EM }, PREFIX_OPCODE },
4897
    { "pabsw",    { MX, EM }, PREFIX_OPCODE },
4898
    { "pabsd",    { MX, EM }, PREFIX_OPCODE },
4899
    { Bad_Opcode },
4900
    /* 20 */
4901
    { "pmovsxbw", { XM, EXq }, PREFIX_DATA },
4902
    { "pmovsxbd", { XM, EXd }, PREFIX_DATA },
4903
    { "pmovsxbq", { XM, EXw }, PREFIX_DATA },
4904
    { "pmovsxwd", { XM, EXq }, PREFIX_DATA },
4905
    { "pmovsxwq", { XM, EXd }, PREFIX_DATA },
4906
    { "pmovsxdq", { XM, EXq }, PREFIX_DATA },
4907
    { Bad_Opcode },
4908
    { Bad_Opcode },
4909
    /* 28 */
4910
    { "pmuldq", { XM, EXx }, PREFIX_DATA },
4911
    { "pcmpeqq", { XM, EXx }, PREFIX_DATA },
4912
    { "movntdqa", { XM, Mx }, PREFIX_DATA },
4913
    { "packusdw", { XM, EXx }, PREFIX_DATA },
4914
    { Bad_Opcode },
4915
    { Bad_Opcode },
4916
    { Bad_Opcode },
4917
    { Bad_Opcode },
4918
    /* 30 */
4919
    { "pmovzxbw", { XM, EXq }, PREFIX_DATA },
4920
    { "pmovzxbd", { XM, EXd }, PREFIX_DATA },
4921
    { "pmovzxbq", { XM, EXw }, PREFIX_DATA },
4922
    { "pmovzxwd", { XM, EXq }, PREFIX_DATA },
4923
    { "pmovzxwq", { XM, EXd }, PREFIX_DATA },
4924
    { "pmovzxdq", { XM, EXq }, PREFIX_DATA },
4925
    { Bad_Opcode },
4926
    { "pcmpgtq", { XM, EXx }, PREFIX_DATA },
4927
    /* 38 */
4928
    { "pminsb", { XM, EXx }, PREFIX_DATA },
4929
    { "pminsd", { XM, EXx }, PREFIX_DATA },
4930
    { "pminuw", { XM, EXx }, PREFIX_DATA },
4931
    { "pminud", { XM, EXx }, PREFIX_DATA },
4932
    { "pmaxsb", { XM, EXx }, PREFIX_DATA },
4933
    { "pmaxsd", { XM, EXx }, PREFIX_DATA },
4934
    { "pmaxuw", { XM, EXx }, PREFIX_DATA },
4935
    { "pmaxud", { XM, EXx }, PREFIX_DATA },
4936
    /* 40 */
4937
    { "pmulld", { XM, EXx }, PREFIX_DATA },
4938
    { "phminposuw", { XM, EXx }, PREFIX_DATA },
4939
    { Bad_Opcode },
4940
    { Bad_Opcode },
4941
    { Bad_Opcode },
4942
    { Bad_Opcode },
4943
    { Bad_Opcode },
4944
    { Bad_Opcode },
4945
    /* 48 */
4946
    { Bad_Opcode },
4947
    { Bad_Opcode },
4948
    { Bad_Opcode },
4949
    { Bad_Opcode },
4950
    { Bad_Opcode },
4951
    { Bad_Opcode },
4952
    { Bad_Opcode },
4953
    { Bad_Opcode },
4954
    /* 50 */
4955
    { Bad_Opcode },
4956
    { Bad_Opcode },
4957
    { Bad_Opcode },
4958
    { Bad_Opcode },
4959
    { Bad_Opcode },
4960
    { Bad_Opcode },
4961
    { Bad_Opcode },
4962
    { Bad_Opcode },
4963
    /* 58 */
4964
    { Bad_Opcode },
4965
    { Bad_Opcode },
4966
    { Bad_Opcode },
4967
    { Bad_Opcode },
4968
    { Bad_Opcode },
4969
    { Bad_Opcode },
4970
    { Bad_Opcode },
4971
    { Bad_Opcode },
4972
    /* 60 */
4973
    { Bad_Opcode },
4974
    { Bad_Opcode },
4975
    { Bad_Opcode },
4976
    { Bad_Opcode },
4977
    { Bad_Opcode },
4978
    { Bad_Opcode },
4979
    { Bad_Opcode },
4980
    { Bad_Opcode },
4981
    /* 68 */
4982
    { Bad_Opcode },
4983
    { Bad_Opcode },
4984
    { Bad_Opcode },
4985
    { Bad_Opcode },
4986
    { Bad_Opcode },
4987
    { Bad_Opcode },
4988
    { Bad_Opcode },
4989
    { Bad_Opcode },
4990
    /* 70 */
4991
    { Bad_Opcode },
4992
    { Bad_Opcode },
4993
    { Bad_Opcode },
4994
    { Bad_Opcode },
4995
    { Bad_Opcode },
4996
    { Bad_Opcode },
4997
    { Bad_Opcode },
4998
    { Bad_Opcode },
4999
    /* 78 */
5000
    { Bad_Opcode },
5001
    { Bad_Opcode },
5002
    { Bad_Opcode },
5003
    { Bad_Opcode },
5004
    { Bad_Opcode },
5005
    { Bad_Opcode },
5006
    { Bad_Opcode },
5007
    { Bad_Opcode },
5008
    /* 80 */
5009
    { "invept", { Gm, Mo }, PREFIX_DATA },
5010
    { "invvpid", { Gm, Mo }, PREFIX_DATA },
5011
    { "invpcid", { Gm, M }, PREFIX_DATA },
5012
    { Bad_Opcode },
5013
    { Bad_Opcode },
5014
    { Bad_Opcode },
5015
    { Bad_Opcode },
5016
    { Bad_Opcode },
5017
    /* 88 */
5018
    { Bad_Opcode },
5019
    { Bad_Opcode },
5020
    { X86_64_TABLE (X86_64_0F388A) },
5021
    { X86_64_TABLE (X86_64_0F388B) },
5022
    { Bad_Opcode },
5023
    { Bad_Opcode },
5024
    { Bad_Opcode },
5025
    { Bad_Opcode },
5026
    /* 90 */
5027
    { Bad_Opcode },
5028
    { Bad_Opcode },
5029
    { Bad_Opcode },
5030
    { Bad_Opcode },
5031
    { Bad_Opcode },
5032
    { Bad_Opcode },
5033
    { Bad_Opcode },
5034
    { Bad_Opcode },
5035
    /* 98 */
5036
    { Bad_Opcode },
5037
    { Bad_Opcode },
5038
    { Bad_Opcode },
5039
    { Bad_Opcode },
5040
    { Bad_Opcode },
5041
    { Bad_Opcode },
5042
    { Bad_Opcode },
5043
    { Bad_Opcode },
5044
    /* a0 */
5045
    { Bad_Opcode },
5046
    { Bad_Opcode },
5047
    { Bad_Opcode },
5048
    { Bad_Opcode },
5049
    { Bad_Opcode },
5050
    { Bad_Opcode },
5051
    { Bad_Opcode },
5052
    { Bad_Opcode },
5053
    /* a8 */
5054
    { Bad_Opcode },
5055
    { Bad_Opcode },
5056
    { Bad_Opcode },
5057
    { Bad_Opcode },
5058
    { Bad_Opcode },
5059
    { Bad_Opcode },
5060
    { Bad_Opcode },
5061
    { Bad_Opcode },
5062
    /* b0 */
5063
    { Bad_Opcode },
5064
    { Bad_Opcode },
5065
    { Bad_Opcode },
5066
    { Bad_Opcode },
5067
    { Bad_Opcode },
5068
    { Bad_Opcode },
5069
    { Bad_Opcode },
5070
    { Bad_Opcode },
5071
    /* b8 */
5072
    { Bad_Opcode },
5073
    { Bad_Opcode },
5074
    { Bad_Opcode },
5075
    { Bad_Opcode },
5076
    { Bad_Opcode },
5077
    { Bad_Opcode },
5078
    { Bad_Opcode },
5079
    { Bad_Opcode },
5080
    /* c0 */
5081
    { Bad_Opcode },
5082
    { Bad_Opcode },
5083
    { Bad_Opcode },
5084
    { Bad_Opcode },
5085
    { Bad_Opcode },
5086
    { Bad_Opcode },
5087
    { Bad_Opcode },
5088
    { Bad_Opcode },
5089
    /* c8 */
5090
    { "sha1nexte", { XM, EXxmm }, PREFIX_OPCODE },
5091
    { "sha1msg1", { XM, EXxmm }, PREFIX_OPCODE },
5092
    { "sha1msg2", { XM, EXxmm }, PREFIX_OPCODE },
5093
    { "sha256rnds2", { XM, EXxmm, XMM0 }, PREFIX_OPCODE },
5094
    { "sha256msg1", { XM, EXxmm }, PREFIX_OPCODE },
5095
    { "sha256msg2", { XM, EXxmm }, PREFIX_OPCODE },
5096
    { Bad_Opcode },
5097
    { "gf2p8mulb", { XM, EXxmm }, PREFIX_DATA },
5098
    /* d0 */
5099
    { Bad_Opcode },
5100
    { Bad_Opcode },
5101
    { Bad_Opcode },
5102
    { Bad_Opcode },
5103
    { Bad_Opcode },
5104
    { Bad_Opcode },
5105
    { Bad_Opcode },
5106
    { Bad_Opcode },
5107
    /* d8 */
5108
    { PREFIX_TABLE (PREFIX_0F38D8) },
5109
    { Bad_Opcode },
5110
    { Bad_Opcode },
5111
    { "aesimc", { XM, EXx }, PREFIX_DATA },
5112
    { PREFIX_TABLE (PREFIX_0F38DC) },
5113
    { PREFIX_TABLE (PREFIX_0F38DD) },
5114
    { PREFIX_TABLE (PREFIX_0F38DE) },
5115
    { PREFIX_TABLE (PREFIX_0F38DF) },
5116
    /* e0 */
5117
    { Bad_Opcode },
5118
    { Bad_Opcode },
5119
    { Bad_Opcode },
5120
    { Bad_Opcode },
5121
    { Bad_Opcode },
5122
    { Bad_Opcode },
5123
    { Bad_Opcode },
5124
    { Bad_Opcode },
5125
    /* e8 */
5126
    { Bad_Opcode },
5127
    { Bad_Opcode },
5128
    { Bad_Opcode },
5129
    { Bad_Opcode },
5130
    { Bad_Opcode },
5131
    { Bad_Opcode },
5132
    { Bad_Opcode },
5133
    { Bad_Opcode },
5134
    /* f0 */
5135
    { PREFIX_TABLE (PREFIX_0F38F0) },
5136
    { PREFIX_TABLE (PREFIX_0F38F1) },
5137
    { Bad_Opcode },
5138
    { Bad_Opcode },
5139
    { Bad_Opcode },
5140
    { "wrussK",   { M, Gdq }, PREFIX_DATA },
5141
    { PREFIX_TABLE (PREFIX_0F38F6) },
5142
    { Bad_Opcode },
5143
    /* f8 */
5144
    { MOD_TABLE (MOD_0F38F8) },
5145
    { "movdiri",  { Mdq, Gdq }, PREFIX_OPCODE },
5146
    { PREFIX_TABLE (PREFIX_0F38FA) },
5147
    { PREFIX_TABLE (PREFIX_0F38FB) },
5148
    { PREFIX_TABLE (PREFIX_0F38FC) },
5149
    { Bad_Opcode },
5150
    { Bad_Opcode },
5151
    { Bad_Opcode },
5152
  },
5153
  /* THREE_BYTE_0F3A */
5154
  {
5155
    /* 00 */
5156
    { Bad_Opcode },
5157
    { Bad_Opcode },
5158
    { Bad_Opcode },
5159
    { Bad_Opcode },
5160
    { Bad_Opcode },
5161
    { Bad_Opcode },
5162
    { Bad_Opcode },
5163
    { Bad_Opcode },
5164
    /* 08 */
5165
    { "roundps", { XM, EXx, Ib }, PREFIX_DATA },
5166
    { "roundpd", { XM, EXx, Ib }, PREFIX_DATA },
5167
    { "roundss", { XM, EXd, Ib }, PREFIX_DATA },
5168
    { "roundsd", { XM, EXq, Ib }, PREFIX_DATA },
5169
    { "blendps", { XM, EXx, Ib }, PREFIX_DATA },
5170
    { "blendpd", { XM, EXx, Ib }, PREFIX_DATA },
5171
    { "pblendw", { XM, EXx, Ib }, PREFIX_DATA },
5172
    { "palignr",  { MX, EM, Ib }, PREFIX_OPCODE },
5173
    /* 10 */
5174
    { Bad_Opcode },
5175
    { Bad_Opcode },
5176
    { Bad_Opcode },
5177
    { Bad_Opcode },
5178
    { "pextrb", { Edb, XM, Ib }, PREFIX_DATA },
5179
    { "pextrw", { Edw, XM, Ib }, PREFIX_DATA },
5180
    { "pextrK", { Edq, XM, Ib }, PREFIX_DATA },
5181
    { "extractps", { Ed, XM, Ib }, PREFIX_DATA },
5182
    /* 18 */
5183
    { Bad_Opcode },
5184
    { Bad_Opcode },
5185
    { Bad_Opcode },
5186
    { Bad_Opcode },
5187
    { Bad_Opcode },
5188
    { Bad_Opcode },
5189
    { Bad_Opcode },
5190
    { Bad_Opcode },
5191
    /* 20 */
5192
    { "pinsrb", { XM, Edb, Ib }, PREFIX_DATA },
5193
    { "insertps", { XM, EXd, Ib }, PREFIX_DATA },
5194
    { "pinsrK", { XM, Edq, Ib }, PREFIX_DATA },
5195
    { Bad_Opcode },
5196
    { Bad_Opcode },
5197
    { Bad_Opcode },
5198
    { Bad_Opcode },
5199
    { Bad_Opcode },
5200
    /* 28 */
5201
    { Bad_Opcode },
5202
    { Bad_Opcode },
5203
    { Bad_Opcode },
5204
    { Bad_Opcode },
5205
    { Bad_Opcode },
5206
    { Bad_Opcode },
5207
    { Bad_Opcode },
5208
    { Bad_Opcode },
5209
    /* 30 */
5210
    { Bad_Opcode },
5211
    { Bad_Opcode },
5212
    { Bad_Opcode },
5213
    { Bad_Opcode },
5214
    { Bad_Opcode },
5215
    { Bad_Opcode },
5216
    { Bad_Opcode },
5217
    { Bad_Opcode },
5218
    /* 38 */
5219
    { Bad_Opcode },
5220
    { Bad_Opcode },
5221
    { Bad_Opcode },
5222
    { Bad_Opcode },
5223
    { Bad_Opcode },
5224
    { Bad_Opcode },
5225
    { Bad_Opcode },
5226
    { Bad_Opcode },
5227
    /* 40 */
5228
    { "dpps", { XM, EXx, Ib }, PREFIX_DATA },
5229
    { "dppd", { XM, EXx, Ib }, PREFIX_DATA },
5230
    { "mpsadbw", { XM, EXx, Ib }, PREFIX_DATA },
5231
    { Bad_Opcode },
5232
    { "pclmulqdq", { XM, EXx, PCLMUL }, PREFIX_DATA },
5233
    { Bad_Opcode },
5234
    { Bad_Opcode },
5235
    { Bad_Opcode },
5236
    /* 48 */
5237
    { Bad_Opcode },
5238
    { Bad_Opcode },
5239
    { Bad_Opcode },
5240
    { Bad_Opcode },
5241
    { Bad_Opcode },
5242
    { Bad_Opcode },
5243
    { Bad_Opcode },
5244
    { Bad_Opcode },
5245
    /* 50 */
5246
    { Bad_Opcode },
5247
    { Bad_Opcode },
5248
    { Bad_Opcode },
5249
    { Bad_Opcode },
5250
    { Bad_Opcode },
5251
    { Bad_Opcode },
5252
    { Bad_Opcode },
5253
    { Bad_Opcode },
5254
    /* 58 */
5255
    { Bad_Opcode },
5256
    { Bad_Opcode },
5257
    { Bad_Opcode },
5258
    { Bad_Opcode },
5259
    { Bad_Opcode },
5260
    { Bad_Opcode },
5261
    { Bad_Opcode },
5262
    { Bad_Opcode },
5263
    /* 60 */
5264
    { "pcmpestrm!%LQ", { XM, EXx, Ib }, PREFIX_DATA },
5265
    { "pcmpestri!%LQ", { XM, EXx, Ib }, PREFIX_DATA },
5266
    { "pcmpistrm", { XM, EXx, Ib }, PREFIX_DATA },
5267
    { "pcmpistri", { XM, EXx, Ib }, PREFIX_DATA },
5268
    { Bad_Opcode },
5269
    { Bad_Opcode },
5270
    { Bad_Opcode },
5271
    { Bad_Opcode },
5272
    /* 68 */
5273
    { Bad_Opcode },
5274
    { Bad_Opcode },
5275
    { Bad_Opcode },
5276
    { Bad_Opcode },
5277
    { Bad_Opcode },
5278
    { Bad_Opcode },
5279
    { Bad_Opcode },
5280
    { Bad_Opcode },
5281
    /* 70 */
5282
    { Bad_Opcode },
5283
    { Bad_Opcode },
5284
    { Bad_Opcode },
5285
    { Bad_Opcode },
5286
    { Bad_Opcode },
5287
    { Bad_Opcode },
5288
    { Bad_Opcode },
5289
    { Bad_Opcode },
5290
    /* 78 */
5291
    { Bad_Opcode },
5292
    { Bad_Opcode },
5293
    { Bad_Opcode },
5294
    { Bad_Opcode },
5295
    { Bad_Opcode },
5296
    { Bad_Opcode },
5297
    { Bad_Opcode },
5298
    { Bad_Opcode },
5299
    /* 80 */
5300
    { Bad_Opcode },
5301
    { Bad_Opcode },
5302
    { Bad_Opcode },
5303
    { Bad_Opcode },
5304
    { Bad_Opcode },
5305
    { Bad_Opcode },
5306
    { Bad_Opcode },
5307
    { Bad_Opcode },
5308
    /* 88 */
5309
    { Bad_Opcode },
5310
    { Bad_Opcode },
5311
    { Bad_Opcode },
5312
    { Bad_Opcode },
5313
    { Bad_Opcode },
5314
    { Bad_Opcode },
5315
    { Bad_Opcode },
5316
    { Bad_Opcode },
5317
    /* 90 */
5318
    { Bad_Opcode },
5319
    { Bad_Opcode },
5320
    { Bad_Opcode },
5321
    { Bad_Opcode },
5322
    { Bad_Opcode },
5323
    { Bad_Opcode },
5324
    { Bad_Opcode },
5325
    { Bad_Opcode },
5326
    /* 98 */
5327
    { Bad_Opcode },
5328
    { Bad_Opcode },
5329
    { Bad_Opcode },
5330
    { Bad_Opcode },
5331
    { Bad_Opcode },
5332
    { Bad_Opcode },
5333
    { Bad_Opcode },
5334
    { Bad_Opcode },
5335
    /* a0 */
5336
    { Bad_Opcode },
5337
    { Bad_Opcode },
5338
    { Bad_Opcode },
5339
    { Bad_Opcode },
5340
    { Bad_Opcode },
5341
    { Bad_Opcode },
5342
    { Bad_Opcode },
5343
    { Bad_Opcode },
5344
    /* a8 */
5345
    { Bad_Opcode },
5346
    { Bad_Opcode },
5347
    { Bad_Opcode },
5348
    { Bad_Opcode },
5349
    { Bad_Opcode },
5350
    { Bad_Opcode },
5351
    { Bad_Opcode },
5352
    { Bad_Opcode },
5353
    /* b0 */
5354
    { Bad_Opcode },
5355
    { Bad_Opcode },
5356
    { Bad_Opcode },
5357
    { Bad_Opcode },
5358
    { Bad_Opcode },
5359
    { Bad_Opcode },
5360
    { Bad_Opcode },
5361
    { Bad_Opcode },
5362
    /* b8 */
5363
    { Bad_Opcode },
5364
    { Bad_Opcode },
5365
    { Bad_Opcode },
5366
    { Bad_Opcode },
5367
    { Bad_Opcode },
5368
    { Bad_Opcode },
5369
    { Bad_Opcode },
5370
    { Bad_Opcode },
5371
    /* c0 */
5372
    { Bad_Opcode },
5373
    { Bad_Opcode },
5374
    { Bad_Opcode },
5375
    { Bad_Opcode },
5376
    { Bad_Opcode },
5377
    { Bad_Opcode },
5378
    { Bad_Opcode },
5379
    { Bad_Opcode },
5380
    /* c8 */
5381
    { Bad_Opcode },
5382
    { Bad_Opcode },
5383
    { Bad_Opcode },
5384
    { Bad_Opcode },
5385
    { "sha1rnds4", { XM, EXxmm, Ib }, PREFIX_OPCODE },
5386
    { Bad_Opcode },
5387
    { "gf2p8affineqb", { XM, EXxmm, Ib }, PREFIX_DATA },
5388
    { "gf2p8affineinvqb", { XM, EXxmm, Ib }, PREFIX_DATA },
5389
    /* d0 */
5390
    { Bad_Opcode },
5391
    { Bad_Opcode },
5392
    { Bad_Opcode },
5393
    { Bad_Opcode },
5394
    { Bad_Opcode },
5395
    { Bad_Opcode },
5396
    { Bad_Opcode },
5397
    { Bad_Opcode },
5398
    /* d8 */
5399
    { Bad_Opcode },
5400
    { Bad_Opcode },
5401
    { Bad_Opcode },
5402
    { Bad_Opcode },
5403
    { Bad_Opcode },
5404
    { Bad_Opcode },
5405
    { Bad_Opcode },
5406
    { "aeskeygenassist", { XM, EXx, Ib }, PREFIX_DATA },
5407
    /* e0 */
5408
    { Bad_Opcode },
5409
    { Bad_Opcode },
5410
    { Bad_Opcode },
5411
    { Bad_Opcode },
5412
    { Bad_Opcode },
5413
    { Bad_Opcode },
5414
    { Bad_Opcode },
5415
    { Bad_Opcode },
5416
    /* e8 */
5417
    { Bad_Opcode },
5418
    { Bad_Opcode },
5419
    { Bad_Opcode },
5420
    { Bad_Opcode },
5421
    { Bad_Opcode },
5422
    { Bad_Opcode },
5423
    { Bad_Opcode },
5424
    { Bad_Opcode },
5425
    /* f0 */
5426
    { PREFIX_TABLE (PREFIX_0F3A0F) },
5427
    { Bad_Opcode },
5428
    { Bad_Opcode },
5429
    { Bad_Opcode },
5430
    { Bad_Opcode },
5431
    { Bad_Opcode },
5432
    { Bad_Opcode },
5433
    { Bad_Opcode },
5434
    /* f8 */
5435
    { Bad_Opcode },
5436
    { Bad_Opcode },
5437
    { Bad_Opcode },
5438
    { Bad_Opcode },
5439
    { Bad_Opcode },
5440
    { Bad_Opcode },
5441
    { Bad_Opcode },
5442
    { Bad_Opcode },
5443
  },
5444
};
5445
5446
static const struct dis386 xop_table[][256] = {
5447
  /* XOP_08 */
5448
  {
5449
    /* 00 */
5450
    { Bad_Opcode },
5451
    { Bad_Opcode },
5452
    { Bad_Opcode },
5453
    { Bad_Opcode },
5454
    { Bad_Opcode },
5455
    { Bad_Opcode },
5456
    { Bad_Opcode },
5457
    { Bad_Opcode },
5458
    /* 08 */
5459
    { Bad_Opcode },
5460
    { Bad_Opcode },
5461
    { Bad_Opcode },
5462
    { Bad_Opcode },
5463
    { Bad_Opcode },
5464
    { Bad_Opcode },
5465
    { Bad_Opcode },
5466
    { Bad_Opcode },
5467
    /* 10 */
5468
    { Bad_Opcode },
5469
    { Bad_Opcode },
5470
    { Bad_Opcode },
5471
    { Bad_Opcode },
5472
    { Bad_Opcode },
5473
    { Bad_Opcode },
5474
    { Bad_Opcode },
5475
    { Bad_Opcode },
5476
    /* 18 */
5477
    { Bad_Opcode },
5478
    { Bad_Opcode },
5479
    { Bad_Opcode },
5480
    { Bad_Opcode },
5481
    { Bad_Opcode },
5482
    { Bad_Opcode },
5483
    { Bad_Opcode },
5484
    { Bad_Opcode },
5485
    /* 20 */
5486
    { Bad_Opcode },
5487
    { Bad_Opcode },
5488
    { Bad_Opcode },
5489
    { Bad_Opcode },
5490
    { Bad_Opcode },
5491
    { Bad_Opcode },
5492
    { Bad_Opcode },
5493
    { Bad_Opcode },
5494
    /* 28 */
5495
    { Bad_Opcode },
5496
    { Bad_Opcode },
5497
    { Bad_Opcode },
5498
    { Bad_Opcode },
5499
    { Bad_Opcode },
5500
    { Bad_Opcode },
5501
    { Bad_Opcode },
5502
    { Bad_Opcode },
5503
    /* 30 */
5504
    { Bad_Opcode },
5505
    { Bad_Opcode },
5506
    { Bad_Opcode },
5507
    { Bad_Opcode },
5508
    { Bad_Opcode },
5509
    { Bad_Opcode },
5510
    { Bad_Opcode },
5511
    { Bad_Opcode },
5512
    /* 38 */
5513
    { Bad_Opcode },
5514
    { Bad_Opcode },
5515
    { Bad_Opcode },
5516
    { Bad_Opcode },
5517
    { Bad_Opcode },
5518
    { Bad_Opcode },
5519
    { Bad_Opcode },
5520
    { Bad_Opcode },
5521
    /* 40 */
5522
    { Bad_Opcode },
5523
    { Bad_Opcode },
5524
    { Bad_Opcode },
5525
    { Bad_Opcode },
5526
    { Bad_Opcode },
5527
    { Bad_Opcode },
5528
    { Bad_Opcode },
5529
    { Bad_Opcode },
5530
    /* 48 */
5531
    { Bad_Opcode },
5532
    { Bad_Opcode },
5533
    { Bad_Opcode },
5534
    { Bad_Opcode },
5535
    { Bad_Opcode },
5536
    { Bad_Opcode },
5537
    { Bad_Opcode },
5538
    { Bad_Opcode },
5539
    /* 50 */
5540
    { Bad_Opcode },
5541
    { Bad_Opcode },
5542
    { Bad_Opcode },
5543
    { Bad_Opcode },
5544
    { Bad_Opcode },
5545
    { Bad_Opcode },
5546
    { Bad_Opcode },
5547
    { Bad_Opcode },
5548
    /* 58 */
5549
    { Bad_Opcode },
5550
    { Bad_Opcode },
5551
    { Bad_Opcode },
5552
    { Bad_Opcode },
5553
    { Bad_Opcode },
5554
    { Bad_Opcode },
5555
    { Bad_Opcode },
5556
    { Bad_Opcode },
5557
    /* 60 */
5558
    { Bad_Opcode },
5559
    { Bad_Opcode },
5560
    { Bad_Opcode },
5561
    { Bad_Opcode },
5562
    { Bad_Opcode },
5563
    { Bad_Opcode },
5564
    { Bad_Opcode },
5565
    { Bad_Opcode },
5566
    /* 68 */
5567
    { Bad_Opcode },
5568
    { Bad_Opcode },
5569
    { Bad_Opcode },
5570
    { Bad_Opcode },
5571
    { Bad_Opcode },
5572
    { Bad_Opcode },
5573
    { Bad_Opcode },
5574
    { Bad_Opcode },
5575
    /* 70 */
5576
    { Bad_Opcode },
5577
    { Bad_Opcode },
5578
    { Bad_Opcode },
5579
    { Bad_Opcode },
5580
    { Bad_Opcode },
5581
    { Bad_Opcode },
5582
    { Bad_Opcode },
5583
    { Bad_Opcode },
5584
    /* 78 */
5585
    { Bad_Opcode },
5586
    { Bad_Opcode },
5587
    { Bad_Opcode },
5588
    { Bad_Opcode },
5589
    { Bad_Opcode },
5590
    { Bad_Opcode },
5591
    { Bad_Opcode },
5592
    { Bad_Opcode },
5593
    /* 80 */
5594
    { Bad_Opcode },
5595
    { Bad_Opcode },
5596
    { Bad_Opcode },
5597
    { Bad_Opcode },
5598
    { Bad_Opcode },
5599
    { VEX_LEN_TABLE (VEX_LEN_XOP_08_85) },
5600
    { VEX_LEN_TABLE (VEX_LEN_XOP_08_86) },
5601
    { VEX_LEN_TABLE (VEX_LEN_XOP_08_87) },
5602
    /* 88 */
5603
    { Bad_Opcode },
5604
    { Bad_Opcode },
5605
    { Bad_Opcode },
5606
    { Bad_Opcode },
5607
    { Bad_Opcode },
5608
    { Bad_Opcode },
5609
    { VEX_LEN_TABLE (VEX_LEN_XOP_08_8E) },
5610
    { VEX_LEN_TABLE (VEX_LEN_XOP_08_8F) },
5611
    /* 90 */
5612
    { Bad_Opcode },
5613
    { Bad_Opcode },
5614
    { Bad_Opcode },
5615
    { Bad_Opcode },
5616
    { Bad_Opcode },
5617
    { VEX_LEN_TABLE (VEX_LEN_XOP_08_95) },
5618
    { VEX_LEN_TABLE (VEX_LEN_XOP_08_96) },
5619
    { VEX_LEN_TABLE (VEX_LEN_XOP_08_97) },
5620
    /* 98 */
5621
    { Bad_Opcode },
5622
    { Bad_Opcode },
5623
    { Bad_Opcode },
5624
    { Bad_Opcode },
5625
    { Bad_Opcode },
5626
    { Bad_Opcode },
5627
    { VEX_LEN_TABLE (VEX_LEN_XOP_08_9E) },
5628
    { VEX_LEN_TABLE (VEX_LEN_XOP_08_9F) },
5629
    /* a0 */
5630
    { Bad_Opcode },
5631
    { Bad_Opcode },
5632
    { "vpcmov",   { XM, Vex, EXx, XMVexI4 }, 0 },
5633
    { VEX_LEN_TABLE (VEX_LEN_XOP_08_A3) },
5634
    { Bad_Opcode },
5635
    { Bad_Opcode },
5636
    { VEX_LEN_TABLE (VEX_LEN_XOP_08_A6) },
5637
    { Bad_Opcode },
5638
    /* a8 */
5639
    { Bad_Opcode },
5640
    { Bad_Opcode },
5641
    { Bad_Opcode },
5642
    { Bad_Opcode },
5643
    { Bad_Opcode },
5644
    { Bad_Opcode },
5645
    { Bad_Opcode },
5646
    { Bad_Opcode },
5647
    /* b0 */
5648
    { Bad_Opcode },
5649
    { Bad_Opcode },
5650
    { Bad_Opcode },
5651
    { Bad_Opcode },
5652
    { Bad_Opcode },
5653
    { Bad_Opcode },
5654
    { VEX_LEN_TABLE (VEX_LEN_XOP_08_B6) },
5655
    { Bad_Opcode },
5656
    /* b8 */
5657
    { Bad_Opcode },
5658
    { Bad_Opcode },
5659
    { Bad_Opcode },
5660
    { Bad_Opcode },
5661
    { Bad_Opcode },
5662
    { Bad_Opcode },
5663
    { Bad_Opcode },
5664
    { Bad_Opcode },
5665
    /* c0 */
5666
    { VEX_LEN_TABLE (VEX_LEN_XOP_08_C0) },
5667
    { VEX_LEN_TABLE (VEX_LEN_XOP_08_C1) },
5668
    { VEX_LEN_TABLE (VEX_LEN_XOP_08_C2) },
5669
    { VEX_LEN_TABLE (VEX_LEN_XOP_08_C3) },
5670
    { Bad_Opcode },
5671
    { Bad_Opcode },
5672
    { Bad_Opcode },
5673
    { Bad_Opcode },
5674
    /* c8 */
5675
    { Bad_Opcode },
5676
    { Bad_Opcode },
5677
    { Bad_Opcode },
5678
    { Bad_Opcode },
5679
    { VEX_LEN_TABLE (VEX_LEN_XOP_08_CC) },
5680
    { VEX_LEN_TABLE (VEX_LEN_XOP_08_CD) },
5681
    { VEX_LEN_TABLE (VEX_LEN_XOP_08_CE) },
5682
    { VEX_LEN_TABLE (VEX_LEN_XOP_08_CF) },
5683
    /* d0 */
5684
    { Bad_Opcode },
5685
    { Bad_Opcode },
5686
    { Bad_Opcode },
5687
    { Bad_Opcode },
5688
    { Bad_Opcode },
5689
    { Bad_Opcode },
5690
    { Bad_Opcode },
5691
    { Bad_Opcode },
5692
    /* d8 */
5693
    { Bad_Opcode },
5694
    { Bad_Opcode },
5695
    { Bad_Opcode },
5696
    { Bad_Opcode },
5697
    { Bad_Opcode },
5698
    { Bad_Opcode },
5699
    { Bad_Opcode },
5700
    { Bad_Opcode },
5701
    /* e0 */
5702
    { Bad_Opcode },
5703
    { Bad_Opcode },
5704
    { Bad_Opcode },
5705
    { Bad_Opcode },
5706
    { Bad_Opcode },
5707
    { Bad_Opcode },
5708
    { Bad_Opcode },
5709
    { Bad_Opcode },
5710
    /* e8 */
5711
    { Bad_Opcode },
5712
    { Bad_Opcode },
5713
    { Bad_Opcode },
5714
    { Bad_Opcode },
5715
    { VEX_LEN_TABLE (VEX_LEN_XOP_08_EC) },
5716
    { VEX_LEN_TABLE (VEX_LEN_XOP_08_ED) },
5717
    { VEX_LEN_TABLE (VEX_LEN_XOP_08_EE) },
5718
    { VEX_LEN_TABLE (VEX_LEN_XOP_08_EF) },
5719
    /* f0 */
5720
    { Bad_Opcode },
5721
    { Bad_Opcode },
5722
    { Bad_Opcode },
5723
    { Bad_Opcode },
5724
    { Bad_Opcode },
5725
    { Bad_Opcode },
5726
    { Bad_Opcode },
5727
    { Bad_Opcode },
5728
    /* f8 */
5729
    { Bad_Opcode },
5730
    { Bad_Opcode },
5731
    { Bad_Opcode },
5732
    { Bad_Opcode },
5733
    { Bad_Opcode },
5734
    { Bad_Opcode },
5735
    { Bad_Opcode },
5736
    { Bad_Opcode },
5737
  },
5738
  /* XOP_09 */
5739
  {
5740
    /* 00 */
5741
    { Bad_Opcode },
5742
    { VEX_LEN_TABLE (VEX_LEN_XOP_09_01) },
5743
    { VEX_LEN_TABLE (VEX_LEN_XOP_09_02) },
5744
    { Bad_Opcode },
5745
    { Bad_Opcode },
5746
    { Bad_Opcode },
5747
    { Bad_Opcode },
5748
    { Bad_Opcode },
5749
    /* 08 */
5750
    { Bad_Opcode },
5751
    { Bad_Opcode },
5752
    { Bad_Opcode },
5753
    { Bad_Opcode },
5754
    { Bad_Opcode },
5755
    { Bad_Opcode },
5756
    { Bad_Opcode },
5757
    { Bad_Opcode },
5758
    /* 10 */
5759
    { Bad_Opcode },
5760
    { Bad_Opcode },
5761
    { VEX_LEN_TABLE (VEX_LEN_XOP_09_12) },
5762
    { Bad_Opcode },
5763
    { Bad_Opcode },
5764
    { Bad_Opcode },
5765
    { Bad_Opcode },
5766
    { Bad_Opcode },
5767
    /* 18 */
5768
    { Bad_Opcode },
5769
    { Bad_Opcode },
5770
    { Bad_Opcode },
5771
    { Bad_Opcode },
5772
    { Bad_Opcode },
5773
    { Bad_Opcode },
5774
    { Bad_Opcode },
5775
    { Bad_Opcode },
5776
    /* 20 */
5777
    { Bad_Opcode },
5778
    { Bad_Opcode },
5779
    { Bad_Opcode },
5780
    { Bad_Opcode },
5781
    { Bad_Opcode },
5782
    { Bad_Opcode },
5783
    { Bad_Opcode },
5784
    { Bad_Opcode },
5785
    /* 28 */
5786
    { Bad_Opcode },
5787
    { Bad_Opcode },
5788
    { Bad_Opcode },
5789
    { Bad_Opcode },
5790
    { Bad_Opcode },
5791
    { Bad_Opcode },
5792
    { Bad_Opcode },
5793
    { Bad_Opcode },
5794
    /* 30 */
5795
    { Bad_Opcode },
5796
    { Bad_Opcode },
5797
    { Bad_Opcode },
5798
    { Bad_Opcode },
5799
    { Bad_Opcode },
5800
    { Bad_Opcode },
5801
    { Bad_Opcode },
5802
    { Bad_Opcode },
5803
    /* 38 */
5804
    { Bad_Opcode },
5805
    { Bad_Opcode },
5806
    { Bad_Opcode },
5807
    { Bad_Opcode },
5808
    { Bad_Opcode },
5809
    { Bad_Opcode },
5810
    { Bad_Opcode },
5811
    { Bad_Opcode },
5812
    /* 40 */
5813
    { Bad_Opcode },
5814
    { Bad_Opcode },
5815
    { Bad_Opcode },
5816
    { Bad_Opcode },
5817
    { Bad_Opcode },
5818
    { Bad_Opcode },
5819
    { Bad_Opcode },
5820
    { Bad_Opcode },
5821
    /* 48 */
5822
    { Bad_Opcode },
5823
    { Bad_Opcode },
5824
    { Bad_Opcode },
5825
    { Bad_Opcode },
5826
    { Bad_Opcode },
5827
    { Bad_Opcode },
5828
    { Bad_Opcode },
5829
    { Bad_Opcode },
5830
    /* 50 */
5831
    { Bad_Opcode },
5832
    { Bad_Opcode },
5833
    { Bad_Opcode },
5834
    { Bad_Opcode },
5835
    { Bad_Opcode },
5836
    { Bad_Opcode },
5837
    { Bad_Opcode },
5838
    { Bad_Opcode },
5839
    /* 58 */
5840
    { Bad_Opcode },
5841
    { Bad_Opcode },
5842
    { Bad_Opcode },
5843
    { Bad_Opcode },
5844
    { Bad_Opcode },
5845
    { Bad_Opcode },
5846
    { Bad_Opcode },
5847
    { Bad_Opcode },
5848
    /* 60 */
5849
    { Bad_Opcode },
5850
    { Bad_Opcode },
5851
    { Bad_Opcode },
5852
    { Bad_Opcode },
5853
    { Bad_Opcode },
5854
    { Bad_Opcode },
5855
    { Bad_Opcode },
5856
    { Bad_Opcode },
5857
    /* 68 */
5858
    { Bad_Opcode },
5859
    { Bad_Opcode },
5860
    { Bad_Opcode },
5861
    { Bad_Opcode },
5862
    { Bad_Opcode },
5863
    { Bad_Opcode },
5864
    { Bad_Opcode },
5865
    { Bad_Opcode },
5866
    /* 70 */
5867
    { Bad_Opcode },
5868
    { Bad_Opcode },
5869
    { Bad_Opcode },
5870
    { Bad_Opcode },
5871
    { Bad_Opcode },
5872
    { Bad_Opcode },
5873
    { Bad_Opcode },
5874
    { Bad_Opcode },
5875
    /* 78 */
5876
    { Bad_Opcode },
5877
    { Bad_Opcode },
5878
    { Bad_Opcode },
5879
    { Bad_Opcode },
5880
    { Bad_Opcode },
5881
    { Bad_Opcode },
5882
    { Bad_Opcode },
5883
    { Bad_Opcode },
5884
    /* 80 */
5885
    { VEX_W_TABLE (VEX_W_XOP_09_80) },
5886
    { VEX_W_TABLE (VEX_W_XOP_09_81) },
5887
    { VEX_W_TABLE (VEX_W_XOP_09_82) },
5888
    { VEX_W_TABLE (VEX_W_XOP_09_83) },
5889
    { Bad_Opcode },
5890
    { Bad_Opcode },
5891
    { Bad_Opcode },
5892
    { Bad_Opcode },
5893
    /* 88 */
5894
    { Bad_Opcode },
5895
    { Bad_Opcode },
5896
    { Bad_Opcode },
5897
    { Bad_Opcode },
5898
    { Bad_Opcode },
5899
    { Bad_Opcode },
5900
    { Bad_Opcode },
5901
    { Bad_Opcode },
5902
    /* 90 */
5903
    { VEX_LEN_TABLE (VEX_LEN_XOP_09_90) },
5904
    { VEX_LEN_TABLE (VEX_LEN_XOP_09_91) },
5905
    { VEX_LEN_TABLE (VEX_LEN_XOP_09_92) },
5906
    { VEX_LEN_TABLE (VEX_LEN_XOP_09_93) },
5907
    { VEX_LEN_TABLE (VEX_LEN_XOP_09_94) },
5908
    { VEX_LEN_TABLE (VEX_LEN_XOP_09_95) },
5909
    { VEX_LEN_TABLE (VEX_LEN_XOP_09_96) },
5910
    { VEX_LEN_TABLE (VEX_LEN_XOP_09_97) },
5911
    /* 98 */
5912
    { VEX_LEN_TABLE (VEX_LEN_XOP_09_98) },
5913
    { VEX_LEN_TABLE (VEX_LEN_XOP_09_99) },
5914
    { VEX_LEN_TABLE (VEX_LEN_XOP_09_9A) },
5915
    { VEX_LEN_TABLE (VEX_LEN_XOP_09_9B) },
5916
    { Bad_Opcode },
5917
    { Bad_Opcode },
5918
    { Bad_Opcode },
5919
    { Bad_Opcode },
5920
    /* a0 */
5921
    { Bad_Opcode },
5922
    { Bad_Opcode },
5923
    { Bad_Opcode },
5924
    { Bad_Opcode },
5925
    { Bad_Opcode },
5926
    { Bad_Opcode },
5927
    { Bad_Opcode },
5928
    { Bad_Opcode },
5929
    /* a8 */
5930
    { Bad_Opcode },
5931
    { Bad_Opcode },
5932
    { Bad_Opcode },
5933
    { Bad_Opcode },
5934
    { Bad_Opcode },
5935
    { Bad_Opcode },
5936
    { Bad_Opcode },
5937
    { Bad_Opcode },
5938
    /* b0 */
5939
    { Bad_Opcode },
5940
    { Bad_Opcode },
5941
    { Bad_Opcode },
5942
    { Bad_Opcode },
5943
    { Bad_Opcode },
5944
    { Bad_Opcode },
5945
    { Bad_Opcode },
5946
    { Bad_Opcode },
5947
    /* b8 */
5948
    { Bad_Opcode },
5949
    { Bad_Opcode },
5950
    { Bad_Opcode },
5951
    { Bad_Opcode },
5952
    { Bad_Opcode },
5953
    { Bad_Opcode },
5954
    { Bad_Opcode },
5955
    { Bad_Opcode },
5956
    /* c0 */
5957
    { Bad_Opcode },
5958
    { VEX_LEN_TABLE (VEX_LEN_XOP_09_C1) },
5959
    { VEX_LEN_TABLE (VEX_LEN_XOP_09_C2) },
5960
    { VEX_LEN_TABLE (VEX_LEN_XOP_09_C3) },
5961
    { Bad_Opcode },
5962
    { Bad_Opcode },
5963
    { VEX_LEN_TABLE (VEX_LEN_XOP_09_C6) },
5964
    { VEX_LEN_TABLE (VEX_LEN_XOP_09_C7) },
5965
    /* c8 */
5966
    { Bad_Opcode },
5967
    { Bad_Opcode },
5968
    { Bad_Opcode },
5969
    { VEX_LEN_TABLE (VEX_LEN_XOP_09_CB) },
5970
    { Bad_Opcode },
5971
    { Bad_Opcode },
5972
    { Bad_Opcode },
5973
    { Bad_Opcode },
5974
    /* d0 */
5975
    { Bad_Opcode },
5976
    { VEX_LEN_TABLE (VEX_LEN_XOP_09_D1) },
5977
    { VEX_LEN_TABLE (VEX_LEN_XOP_09_D2) },
5978
    { VEX_LEN_TABLE (VEX_LEN_XOP_09_D3) },
5979
    { Bad_Opcode },
5980
    { Bad_Opcode },
5981
    { VEX_LEN_TABLE (VEX_LEN_XOP_09_D6) },
5982
    { VEX_LEN_TABLE (VEX_LEN_XOP_09_D7) },
5983
    /* d8 */
5984
    { Bad_Opcode },
5985
    { Bad_Opcode },
5986
    { Bad_Opcode },
5987
    { VEX_LEN_TABLE (VEX_LEN_XOP_09_DB) },
5988
    { Bad_Opcode },
5989
    { Bad_Opcode },
5990
    { Bad_Opcode },
5991
    { Bad_Opcode },
5992
    /* e0 */
5993
    { Bad_Opcode },
5994
    { VEX_LEN_TABLE (VEX_LEN_XOP_09_E1) },
5995
    { VEX_LEN_TABLE (VEX_LEN_XOP_09_E2) },
5996
    { VEX_LEN_TABLE (VEX_LEN_XOP_09_E3) },
5997
    { Bad_Opcode },
5998
    { Bad_Opcode },
5999
    { Bad_Opcode },
6000
    { Bad_Opcode },
6001
    /* e8 */
6002
    { Bad_Opcode },
6003
    { Bad_Opcode },
6004
    { Bad_Opcode },
6005
    { Bad_Opcode },
6006
    { Bad_Opcode },
6007
    { Bad_Opcode },
6008
    { Bad_Opcode },
6009
    { Bad_Opcode },
6010
    /* f0 */
6011
    { Bad_Opcode },
6012
    { Bad_Opcode },
6013
    { Bad_Opcode },
6014
    { Bad_Opcode },
6015
    { Bad_Opcode },
6016
    { Bad_Opcode },
6017
    { Bad_Opcode },
6018
    { Bad_Opcode },
6019
    /* f8 */
6020
    { Bad_Opcode },
6021
    { Bad_Opcode },
6022
    { Bad_Opcode },
6023
    { Bad_Opcode },
6024
    { Bad_Opcode },
6025
    { Bad_Opcode },
6026
    { Bad_Opcode },
6027
    { Bad_Opcode },
6028
  },
6029
  /* XOP_0A */
6030
  {
6031
    /* 00 */
6032
    { Bad_Opcode },
6033
    { Bad_Opcode },
6034
    { Bad_Opcode },
6035
    { Bad_Opcode },
6036
    { Bad_Opcode },
6037
    { Bad_Opcode },
6038
    { Bad_Opcode },
6039
    { Bad_Opcode },
6040
    /* 08 */
6041
    { Bad_Opcode },
6042
    { Bad_Opcode },
6043
    { Bad_Opcode },
6044
    { Bad_Opcode },
6045
    { Bad_Opcode },
6046
    { Bad_Opcode },
6047
    { Bad_Opcode },
6048
    { Bad_Opcode },
6049
    /* 10 */
6050
    { "bextrS", { Gdq, Edq, Id }, 0 },
6051
    { Bad_Opcode },
6052
    { VEX_LEN_TABLE (VEX_LEN_XOP_0A_12) },
6053
    { Bad_Opcode },
6054
    { Bad_Opcode },
6055
    { Bad_Opcode },
6056
    { Bad_Opcode },
6057
    { Bad_Opcode },
6058
    /* 18 */
6059
    { Bad_Opcode },
6060
    { Bad_Opcode },
6061
    { Bad_Opcode },
6062
    { Bad_Opcode },
6063
    { Bad_Opcode },
6064
    { Bad_Opcode },
6065
    { Bad_Opcode },
6066
    { Bad_Opcode },
6067
    /* 20 */
6068
    { Bad_Opcode },
6069
    { Bad_Opcode },
6070
    { Bad_Opcode },
6071
    { Bad_Opcode },
6072
    { Bad_Opcode },
6073
    { Bad_Opcode },
6074
    { Bad_Opcode },
6075
    { Bad_Opcode },
6076
    /* 28 */
6077
    { Bad_Opcode },
6078
    { Bad_Opcode },
6079
    { Bad_Opcode },
6080
    { Bad_Opcode },
6081
    { Bad_Opcode },
6082
    { Bad_Opcode },
6083
    { Bad_Opcode },
6084
    { Bad_Opcode },
6085
    /* 30 */
6086
    { Bad_Opcode },
6087
    { Bad_Opcode },
6088
    { Bad_Opcode },
6089
    { Bad_Opcode },
6090
    { Bad_Opcode },
6091
    { Bad_Opcode },
6092
    { Bad_Opcode },
6093
    { Bad_Opcode },
6094
    /* 38 */
6095
    { Bad_Opcode },
6096
    { Bad_Opcode },
6097
    { Bad_Opcode },
6098
    { Bad_Opcode },
6099
    { Bad_Opcode },
6100
    { Bad_Opcode },
6101
    { Bad_Opcode },
6102
    { Bad_Opcode },
6103
    /* 40 */
6104
    { Bad_Opcode },
6105
    { Bad_Opcode },
6106
    { Bad_Opcode },
6107
    { Bad_Opcode },
6108
    { Bad_Opcode },
6109
    { Bad_Opcode },
6110
    { Bad_Opcode },
6111
    { Bad_Opcode },
6112
    /* 48 */
6113
    { Bad_Opcode },
6114
    { Bad_Opcode },
6115
    { Bad_Opcode },
6116
    { Bad_Opcode },
6117
    { Bad_Opcode },
6118
    { Bad_Opcode },
6119
    { Bad_Opcode },
6120
    { Bad_Opcode },
6121
    /* 50 */
6122
    { Bad_Opcode },
6123
    { Bad_Opcode },
6124
    { Bad_Opcode },
6125
    { Bad_Opcode },
6126
    { Bad_Opcode },
6127
    { Bad_Opcode },
6128
    { Bad_Opcode },
6129
    { Bad_Opcode },
6130
    /* 58 */
6131
    { Bad_Opcode },
6132
    { Bad_Opcode },
6133
    { Bad_Opcode },
6134
    { Bad_Opcode },
6135
    { Bad_Opcode },
6136
    { Bad_Opcode },
6137
    { Bad_Opcode },
6138
    { Bad_Opcode },
6139
    /* 60 */
6140
    { Bad_Opcode },
6141
    { Bad_Opcode },
6142
    { Bad_Opcode },
6143
    { Bad_Opcode },
6144
    { Bad_Opcode },
6145
    { Bad_Opcode },
6146
    { Bad_Opcode },
6147
    { Bad_Opcode },
6148
    /* 68 */
6149
    { Bad_Opcode },
6150
    { Bad_Opcode },
6151
    { Bad_Opcode },
6152
    { Bad_Opcode },
6153
    { Bad_Opcode },
6154
    { Bad_Opcode },
6155
    { Bad_Opcode },
6156
    { Bad_Opcode },
6157
    /* 70 */
6158
    { Bad_Opcode },
6159
    { Bad_Opcode },
6160
    { Bad_Opcode },
6161
    { Bad_Opcode },
6162
    { Bad_Opcode },
6163
    { Bad_Opcode },
6164
    { Bad_Opcode },
6165
    { Bad_Opcode },
6166
    /* 78 */
6167
    { Bad_Opcode },
6168
    { Bad_Opcode },
6169
    { Bad_Opcode },
6170
    { Bad_Opcode },
6171
    { Bad_Opcode },
6172
    { Bad_Opcode },
6173
    { Bad_Opcode },
6174
    { Bad_Opcode },
6175
    /* 80 */
6176
    { Bad_Opcode },
6177
    { Bad_Opcode },
6178
    { Bad_Opcode },
6179
    { Bad_Opcode },
6180
    { Bad_Opcode },
6181
    { Bad_Opcode },
6182
    { Bad_Opcode },
6183
    { Bad_Opcode },
6184
    /* 88 */
6185
    { Bad_Opcode },
6186
    { Bad_Opcode },
6187
    { Bad_Opcode },
6188
    { Bad_Opcode },
6189
    { Bad_Opcode },
6190
    { Bad_Opcode },
6191
    { Bad_Opcode },
6192
    { Bad_Opcode },
6193
    /* 90 */
6194
    { Bad_Opcode },
6195
    { Bad_Opcode },
6196
    { Bad_Opcode },
6197
    { Bad_Opcode },
6198
    { Bad_Opcode },
6199
    { Bad_Opcode },
6200
    { Bad_Opcode },
6201
    { Bad_Opcode },
6202
    /* 98 */
6203
    { Bad_Opcode },
6204
    { Bad_Opcode },
6205
    { Bad_Opcode },
6206
    { Bad_Opcode },
6207
    { Bad_Opcode },
6208
    { Bad_Opcode },
6209
    { Bad_Opcode },
6210
    { Bad_Opcode },
6211
    /* a0 */
6212
    { Bad_Opcode },
6213
    { Bad_Opcode },
6214
    { Bad_Opcode },
6215
    { Bad_Opcode },
6216
    { Bad_Opcode },
6217
    { Bad_Opcode },
6218
    { Bad_Opcode },
6219
    { Bad_Opcode },
6220
    /* a8 */
6221
    { Bad_Opcode },
6222
    { Bad_Opcode },
6223
    { Bad_Opcode },
6224
    { Bad_Opcode },
6225
    { Bad_Opcode },
6226
    { Bad_Opcode },
6227
    { Bad_Opcode },
6228
    { Bad_Opcode },
6229
    /* b0 */
6230
    { Bad_Opcode },
6231
    { Bad_Opcode },
6232
    { Bad_Opcode },
6233
    { Bad_Opcode },
6234
    { Bad_Opcode },
6235
    { Bad_Opcode },
6236
    { Bad_Opcode },
6237
    { Bad_Opcode },
6238
    /* b8 */
6239
    { Bad_Opcode },
6240
    { Bad_Opcode },
6241
    { Bad_Opcode },
6242
    { Bad_Opcode },
6243
    { Bad_Opcode },
6244
    { Bad_Opcode },
6245
    { Bad_Opcode },
6246
    { Bad_Opcode },
6247
    /* c0 */
6248
    { Bad_Opcode },
6249
    { Bad_Opcode },
6250
    { Bad_Opcode },
6251
    { Bad_Opcode },
6252
    { Bad_Opcode },
6253
    { Bad_Opcode },
6254
    { Bad_Opcode },
6255
    { Bad_Opcode },
6256
    /* c8 */
6257
    { Bad_Opcode },
6258
    { Bad_Opcode },
6259
    { Bad_Opcode },
6260
    { Bad_Opcode },
6261
    { Bad_Opcode },
6262
    { Bad_Opcode },
6263
    { Bad_Opcode },
6264
    { Bad_Opcode },
6265
    /* d0 */
6266
    { Bad_Opcode },
6267
    { Bad_Opcode },
6268
    { Bad_Opcode },
6269
    { Bad_Opcode },
6270
    { Bad_Opcode },
6271
    { Bad_Opcode },
6272
    { Bad_Opcode },
6273
    { Bad_Opcode },
6274
    /* d8 */
6275
    { Bad_Opcode },
6276
    { Bad_Opcode },
6277
    { Bad_Opcode },
6278
    { Bad_Opcode },
6279
    { Bad_Opcode },
6280
    { Bad_Opcode },
6281
    { Bad_Opcode },
6282
    { Bad_Opcode },
6283
    /* e0 */
6284
    { Bad_Opcode },
6285
    { Bad_Opcode },
6286
    { Bad_Opcode },
6287
    { Bad_Opcode },
6288
    { Bad_Opcode },
6289
    { Bad_Opcode },
6290
    { Bad_Opcode },
6291
    { Bad_Opcode },
6292
    /* e8 */
6293
    { Bad_Opcode },
6294
    { Bad_Opcode },
6295
    { Bad_Opcode },
6296
    { Bad_Opcode },
6297
    { Bad_Opcode },
6298
    { Bad_Opcode },
6299
    { Bad_Opcode },
6300
    { Bad_Opcode },
6301
    /* f0 */
6302
    { Bad_Opcode },
6303
    { Bad_Opcode },
6304
    { Bad_Opcode },
6305
    { Bad_Opcode },
6306
    { Bad_Opcode },
6307
    { Bad_Opcode },
6308
    { Bad_Opcode },
6309
    { Bad_Opcode },
6310
    /* f8 */
6311
    { Bad_Opcode },
6312
    { Bad_Opcode },
6313
    { Bad_Opcode },
6314
    { Bad_Opcode },
6315
    { Bad_Opcode },
6316
    { Bad_Opcode },
6317
    { Bad_Opcode },
6318
    { Bad_Opcode },
6319
  },
6320
};
6321
6322
static const struct dis386 vex_table[][256] = {
6323
  /* VEX_0F */
6324
  {
6325
    /* 00 */
6326
    { Bad_Opcode },
6327
    { Bad_Opcode },
6328
    { Bad_Opcode },
6329
    { Bad_Opcode },
6330
    { Bad_Opcode },
6331
    { Bad_Opcode },
6332
    { Bad_Opcode },
6333
    { Bad_Opcode },
6334
    /* 08 */
6335
    { Bad_Opcode },
6336
    { Bad_Opcode },
6337
    { Bad_Opcode },
6338
    { Bad_Opcode },
6339
    { Bad_Opcode },
6340
    { Bad_Opcode },
6341
    { Bad_Opcode },
6342
    { Bad_Opcode },
6343
    /* 10 */
6344
    { PREFIX_TABLE (PREFIX_0F10) },
6345
    { PREFIX_TABLE (PREFIX_0F11) },
6346
    { PREFIX_TABLE (PREFIX_VEX_0F12) },
6347
    { VEX_LEN_TABLE (VEX_LEN_0F13) },
6348
    { "vunpcklpX",  { XM, Vex, EXx }, PREFIX_OPCODE },
6349
    { "vunpckhpX",  { XM, Vex, EXx }, PREFIX_OPCODE },
6350
    { PREFIX_TABLE (PREFIX_VEX_0F16) },
6351
    { VEX_LEN_TABLE (VEX_LEN_0F17) },
6352
    /* 18 */
6353
    { Bad_Opcode },
6354
    { Bad_Opcode },
6355
    { Bad_Opcode },
6356
    { Bad_Opcode },
6357
    { Bad_Opcode },
6358
    { Bad_Opcode },
6359
    { Bad_Opcode },
6360
    { Bad_Opcode },
6361
    /* 20 */
6362
    { Bad_Opcode },
6363
    { Bad_Opcode },
6364
    { Bad_Opcode },
6365
    { Bad_Opcode },
6366
    { Bad_Opcode },
6367
    { Bad_Opcode },
6368
    { Bad_Opcode },
6369
    { Bad_Opcode },
6370
    /* 28 */
6371
    { "vmovapX",  { XM, EXx }, PREFIX_OPCODE },
6372
    { "vmovapX",  { EXxS, XM }, PREFIX_OPCODE },
6373
    { PREFIX_TABLE (PREFIX_VEX_0F2A) },
6374
    { "vmovntpX", { Mx, XM }, PREFIX_OPCODE },
6375
    { PREFIX_TABLE (PREFIX_VEX_0F2C) },
6376
    { PREFIX_TABLE (PREFIX_VEX_0F2D) },
6377
    { PREFIX_TABLE (PREFIX_0F2E) },
6378
    { PREFIX_TABLE (PREFIX_0F2F) },
6379
    /* 30 */
6380
    { Bad_Opcode },
6381
    { Bad_Opcode },
6382
    { Bad_Opcode },
6383
    { Bad_Opcode },
6384
    { Bad_Opcode },
6385
    { Bad_Opcode },
6386
    { Bad_Opcode },
6387
    { Bad_Opcode },
6388
    /* 38 */
6389
    { Bad_Opcode },
6390
    { Bad_Opcode },
6391
    { Bad_Opcode },
6392
    { Bad_Opcode },
6393
    { Bad_Opcode },
6394
    { Bad_Opcode },
6395
    { Bad_Opcode },
6396
    { Bad_Opcode },
6397
    /* 40 */
6398
    { Bad_Opcode },
6399
    { VEX_LEN_TABLE (VEX_LEN_0F41) },
6400
    { VEX_LEN_TABLE (VEX_LEN_0F42) },
6401
    { Bad_Opcode },
6402
    { VEX_LEN_TABLE (VEX_LEN_0F44) },
6403
    { VEX_LEN_TABLE (VEX_LEN_0F45) },
6404
    { VEX_LEN_TABLE (VEX_LEN_0F46) },
6405
    { VEX_LEN_TABLE (VEX_LEN_0F47) },
6406
    /* 48 */
6407
    { Bad_Opcode },
6408
    { Bad_Opcode },
6409
    { VEX_LEN_TABLE (VEX_LEN_0F4A) },
6410
    { VEX_LEN_TABLE (VEX_LEN_0F4B) },
6411
    { Bad_Opcode },
6412
    { Bad_Opcode },
6413
    { Bad_Opcode },
6414
    { Bad_Opcode },
6415
    /* 50 */
6416
    { "vmovmskpX",  { Gdq, Ux }, PREFIX_OPCODE },
6417
    { PREFIX_TABLE (PREFIX_0F51) },
6418
    { PREFIX_TABLE (PREFIX_0F52) },
6419
    { PREFIX_TABLE (PREFIX_0F53) },
6420
    { "vandpX",   { XM, Vex, EXx }, PREFIX_OPCODE },
6421
    { "vandnpX",  { XM, Vex, EXx }, PREFIX_OPCODE },
6422
    { "vorpX",    { XM, Vex, EXx }, PREFIX_OPCODE },
6423
    { "vxorpX",   { XM, Vex, EXx }, PREFIX_OPCODE },
6424
    /* 58 */
6425
    { PREFIX_TABLE (PREFIX_0F58) },
6426
    { PREFIX_TABLE (PREFIX_0F59) },
6427
    { PREFIX_TABLE (PREFIX_0F5A) },
6428
    { PREFIX_TABLE (PREFIX_0F5B) },
6429
    { PREFIX_TABLE (PREFIX_0F5C) },
6430
    { PREFIX_TABLE (PREFIX_0F5D) },
6431
    { PREFIX_TABLE (PREFIX_0F5E) },
6432
    { PREFIX_TABLE (PREFIX_0F5F) },
6433
    /* 60 */
6434
    { "vpunpcklbw", { XM, Vex, EXx }, PREFIX_DATA },
6435
    { "vpunpcklwd", { XM, Vex, EXx }, PREFIX_DATA },
6436
    { "vpunpckldq", { XM, Vex, EXx }, PREFIX_DATA },
6437
    { "vpacksswb",  { XM, Vex, EXx }, PREFIX_DATA },
6438
    { "vpcmpgtb", { XM, Vex, EXx }, PREFIX_DATA },
6439
    { "vpcmpgtw", { XM, Vex, EXx }, PREFIX_DATA },
6440
    { "vpcmpgtd", { XM, Vex, EXx }, PREFIX_DATA },
6441
    { "vpackuswb",  { XM, Vex, EXx }, PREFIX_DATA },
6442
    /* 68 */
6443
    { "vpunpckhbw", { XM, Vex, EXx }, PREFIX_DATA },
6444
    { "vpunpckhwd", { XM, Vex, EXx }, PREFIX_DATA },
6445
    { "vpunpckhdq", { XM, Vex, EXx }, PREFIX_DATA },
6446
    { "vpackssdw",  { XM, Vex, EXx }, PREFIX_DATA },
6447
    { "vpunpcklqdq",  { XM, Vex, EXx }, PREFIX_DATA },
6448
    { "vpunpckhqdq",  { XM, Vex, EXx }, PREFIX_DATA },
6449
    { VEX_LEN_TABLE (VEX_LEN_0F6E) },
6450
    { PREFIX_TABLE (PREFIX_VEX_0F6F) },
6451
    /* 70 */
6452
    { PREFIX_TABLE (PREFIX_VEX_0F70) },
6453
    { REG_TABLE (REG_VEX_0F71) },
6454
    { REG_TABLE (REG_VEX_0F72) },
6455
    { REG_TABLE (REG_VEX_0F73) },
6456
    { "vpcmpeqb", { XM, Vex, EXx }, PREFIX_DATA },
6457
    { "vpcmpeqw", { XM, Vex, EXx }, PREFIX_DATA },
6458
    { "vpcmpeqd", { XM, Vex, EXx }, PREFIX_DATA },
6459
    { VEX_LEN_TABLE (VEX_LEN_0F77) },
6460
    /* 78 */
6461
    { Bad_Opcode },
6462
    { Bad_Opcode },
6463
    { Bad_Opcode },
6464
    { Bad_Opcode },
6465
    { PREFIX_TABLE (PREFIX_0F7C) },
6466
    { PREFIX_TABLE (PREFIX_0F7D) },
6467
    { PREFIX_TABLE (PREFIX_VEX_0F7E) },
6468
    { PREFIX_TABLE (PREFIX_VEX_0F7F) },
6469
    /* 80 */
6470
    { Bad_Opcode },
6471
    { Bad_Opcode },
6472
    { Bad_Opcode },
6473
    { Bad_Opcode },
6474
    { Bad_Opcode },
6475
    { Bad_Opcode },
6476
    { Bad_Opcode },
6477
    { Bad_Opcode },
6478
    /* 88 */
6479
    { Bad_Opcode },
6480
    { Bad_Opcode },
6481
    { Bad_Opcode },
6482
    { Bad_Opcode },
6483
    { Bad_Opcode },
6484
    { Bad_Opcode },
6485
    { Bad_Opcode },
6486
    { Bad_Opcode },
6487
    /* 90 */
6488
    { VEX_LEN_TABLE (VEX_LEN_0F90) },
6489
    { VEX_LEN_TABLE (VEX_LEN_0F91) },
6490
    { VEX_LEN_TABLE (VEX_LEN_0F92) },
6491
    { VEX_LEN_TABLE (VEX_LEN_0F93) },
6492
    { Bad_Opcode },
6493
    { Bad_Opcode },
6494
    { Bad_Opcode },
6495
    { Bad_Opcode },
6496
    /* 98 */
6497
    { VEX_LEN_TABLE (VEX_LEN_0F98) },
6498
    { VEX_LEN_TABLE (VEX_LEN_0F99) },
6499
    { Bad_Opcode },
6500
    { Bad_Opcode },
6501
    { Bad_Opcode },
6502
    { Bad_Opcode },
6503
    { Bad_Opcode },
6504
    { Bad_Opcode },
6505
    /* a0 */
6506
    { Bad_Opcode },
6507
    { Bad_Opcode },
6508
    { Bad_Opcode },
6509
    { Bad_Opcode },
6510
    { Bad_Opcode },
6511
    { Bad_Opcode },
6512
    { Bad_Opcode },
6513
    { Bad_Opcode },
6514
    /* a8 */
6515
    { Bad_Opcode },
6516
    { Bad_Opcode },
6517
    { Bad_Opcode },
6518
    { Bad_Opcode },
6519
    { Bad_Opcode },
6520
    { Bad_Opcode },
6521
    { REG_TABLE (REG_VEX_0FAE) },
6522
    { Bad_Opcode },
6523
    /* b0 */
6524
    { Bad_Opcode },
6525
    { Bad_Opcode },
6526
    { Bad_Opcode },
6527
    { Bad_Opcode },
6528
    { Bad_Opcode },
6529
    { Bad_Opcode },
6530
    { Bad_Opcode },
6531
    { Bad_Opcode },
6532
    /* b8 */
6533
    { Bad_Opcode },
6534
    { Bad_Opcode },
6535
    { Bad_Opcode },
6536
    { Bad_Opcode },
6537
    { Bad_Opcode },
6538
    { Bad_Opcode },
6539
    { Bad_Opcode },
6540
    { Bad_Opcode },
6541
    /* c0 */
6542
    { Bad_Opcode },
6543
    { Bad_Opcode },
6544
    { PREFIX_TABLE (PREFIX_0FC2) },
6545
    { Bad_Opcode },
6546
    { VEX_LEN_TABLE (VEX_LEN_0FC4) },
6547
    { "vpextrw",  { Gd, Uxmm, Ib }, PREFIX_DATA },
6548
    { "vshufpX",  { XM, Vex, EXx, Ib }, PREFIX_OPCODE },
6549
    { Bad_Opcode },
6550
    /* c8 */
6551
    { Bad_Opcode },
6552
    { Bad_Opcode },
6553
    { Bad_Opcode },
6554
    { Bad_Opcode },
6555
    { Bad_Opcode },
6556
    { Bad_Opcode },
6557
    { Bad_Opcode },
6558
    { Bad_Opcode },
6559
    /* d0 */
6560
    { PREFIX_TABLE (PREFIX_0FD0) },
6561
    { "vpsrlw",   { XM, Vex, EXxmm }, PREFIX_DATA },
6562
    { "vpsrld",   { XM, Vex, EXxmm }, PREFIX_DATA },
6563
    { "vpsrlq",   { XM, Vex, EXxmm }, PREFIX_DATA },
6564
    { "vpaddq",   { XM, Vex, EXx }, PREFIX_DATA },
6565
    { "vpmullw",  { XM, Vex, EXx }, PREFIX_DATA },
6566
    { VEX_LEN_TABLE (VEX_LEN_0FD6) },
6567
    { "vpmovmskb",  { Gdq, Ux }, PREFIX_DATA },
6568
    /* d8 */
6569
    { "vpsubusb", { XM, Vex, EXx }, PREFIX_DATA },
6570
    { "vpsubusw", { XM, Vex, EXx }, PREFIX_DATA },
6571
    { "vpminub",  { XM, Vex, EXx }, PREFIX_DATA },
6572
    { "vpand",    { XM, Vex, EXx }, PREFIX_DATA },
6573
    { "vpaddusb", { XM, Vex, EXx }, PREFIX_DATA },
6574
    { "vpaddusw", { XM, Vex, EXx }, PREFIX_DATA },
6575
    { "vpmaxub",  { XM, Vex, EXx }, PREFIX_DATA },
6576
    { "vpandn",   { XM, Vex, EXx }, PREFIX_DATA },
6577
    /* e0 */
6578
    { "vpavgb",   { XM, Vex, EXx }, PREFIX_DATA },
6579
    { "vpsraw",   { XM, Vex, EXxmm }, PREFIX_DATA },
6580
    { "vpsrad",   { XM, Vex, EXxmm }, PREFIX_DATA },
6581
    { "vpavgw",   { XM, Vex, EXx }, PREFIX_DATA },
6582
    { "vpmulhuw", { XM, Vex, EXx }, PREFIX_DATA },
6583
    { "vpmulhw",  { XM, Vex, EXx }, PREFIX_DATA },
6584
    { PREFIX_TABLE (PREFIX_0FE6) },
6585
    { "vmovntdq", { Mx, XM }, PREFIX_DATA },
6586
    /* e8 */
6587
    { "vpsubsb",  { XM, Vex, EXx }, PREFIX_DATA },
6588
    { "vpsubsw",  { XM, Vex, EXx }, PREFIX_DATA },
6589
    { "vpminsw",  { XM, Vex, EXx }, PREFIX_DATA },
6590
    { "vpor",   { XM, Vex, EXx }, PREFIX_DATA },
6591
    { "vpaddsb",  { XM, Vex, EXx }, PREFIX_DATA },
6592
    { "vpaddsw",  { XM, Vex, EXx }, PREFIX_DATA },
6593
    { "vpmaxsw",  { XM, Vex, EXx }, PREFIX_DATA },
6594
    { "vpxor",    { XM, Vex, EXx }, PREFIX_DATA },
6595
    /* f0 */
6596
    { PREFIX_TABLE (PREFIX_0FF0) },
6597
    { "vpsllw",   { XM, Vex, EXxmm }, PREFIX_DATA },
6598
    { "vpslld",   { XM, Vex, EXxmm }, PREFIX_DATA },
6599
    { "vpsllq",   { XM, Vex, EXxmm }, PREFIX_DATA },
6600
    { "vpmuludq", { XM, Vex, EXx }, PREFIX_DATA },
6601
    { "vpmaddwd", { XM, Vex, EXx }, PREFIX_DATA },
6602
    { "vpsadbw",  { XM, Vex, EXx }, PREFIX_DATA },
6603
    { "vmaskmovdqu",  { XM, Uxmm }, PREFIX_DATA },
6604
    /* f8 */
6605
    { "vpsubb",   { XM, Vex, EXx }, PREFIX_DATA },
6606
    { "vpsubw",   { XM, Vex, EXx }, PREFIX_DATA },
6607
    { "vpsubd",   { XM, Vex, EXx }, PREFIX_DATA },
6608
    { "vpsubq",   { XM, Vex, EXx }, PREFIX_DATA },
6609
    { "vpaddb",   { XM, Vex, EXx }, PREFIX_DATA },
6610
    { "vpaddw",   { XM, Vex, EXx }, PREFIX_DATA },
6611
    { "vpaddd",   { XM, Vex, EXx }, PREFIX_DATA },
6612
    { Bad_Opcode },
6613
  },
6614
  /* VEX_0F38 */
6615
  {
6616
    /* 00 */
6617
    { "vpshufb",  { XM, Vex, EXx }, PREFIX_DATA },
6618
    { "vphaddw",  { XM, Vex, EXx }, PREFIX_DATA },
6619
    { "vphaddd",  { XM, Vex, EXx }, PREFIX_DATA },
6620
    { "vphaddsw", { XM, Vex, EXx }, PREFIX_DATA },
6621
    { "vpmaddubsw", { XM, Vex, EXx }, PREFIX_DATA },
6622
    { "vphsubw",  { XM, Vex, EXx }, PREFIX_DATA },
6623
    { "vphsubd",  { XM, Vex, EXx }, PREFIX_DATA },
6624
    { "vphsubsw", { XM, Vex, EXx }, PREFIX_DATA },
6625
    /* 08 */
6626
    { "vpsignb",  { XM, Vex, EXx }, PREFIX_DATA },
6627
    { "vpsignw",  { XM, Vex, EXx }, PREFIX_DATA },
6628
    { "vpsignd",  { XM, Vex, EXx }, PREFIX_DATA },
6629
    { "vpmulhrsw",  { XM, Vex, EXx }, PREFIX_DATA },
6630
    { VEX_W_TABLE (VEX_W_0F380C) },
6631
    { VEX_W_TABLE (VEX_W_0F380D) },
6632
    { VEX_W_TABLE (VEX_W_0F380E) },
6633
    { VEX_W_TABLE (VEX_W_0F380F) },
6634
    /* 10 */
6635
    { Bad_Opcode },
6636
    { Bad_Opcode },
6637
    { Bad_Opcode },
6638
    { VEX_W_TABLE (VEX_W_0F3813) },
6639
    { Bad_Opcode },
6640
    { Bad_Opcode },
6641
    { VEX_LEN_TABLE (VEX_LEN_0F3816) },
6642
    { "vptest",   { XM, EXx }, PREFIX_DATA },
6643
    /* 18 */
6644
    { VEX_W_TABLE (VEX_W_0F3818) },
6645
    { VEX_LEN_TABLE (VEX_LEN_0F3819) },
6646
    { VEX_LEN_TABLE (VEX_LEN_0F381A) },
6647
    { Bad_Opcode },
6648
    { "vpabsb",   { XM, EXx }, PREFIX_DATA },
6649
    { "vpabsw",   { XM, EXx }, PREFIX_DATA },
6650
    { "vpabsd",   { XM, EXx }, PREFIX_DATA },
6651
    { Bad_Opcode },
6652
    /* 20 */
6653
    { "vpmovsxbw",  { XM, EXxmmq }, PREFIX_DATA },
6654
    { "vpmovsxbd",  { XM, EXxmmqd }, PREFIX_DATA },
6655
    { "vpmovsxbq",  { XM, EXxmmdw }, PREFIX_DATA },
6656
    { "vpmovsxwd",  { XM, EXxmmq }, PREFIX_DATA },
6657
    { "vpmovsxwq",  { XM, EXxmmqd }, PREFIX_DATA },
6658
    { "vpmovsxdq",  { XM, EXxmmq }, PREFIX_DATA },
6659
    { Bad_Opcode },
6660
    { Bad_Opcode },
6661
    /* 28 */
6662
    { "vpmuldq",  { XM, Vex, EXx }, PREFIX_DATA },
6663
    { "vpcmpeqq", { XM, Vex, EXx }, PREFIX_DATA },
6664
    { "vmovntdqa",  { XM, Mx }, PREFIX_DATA },
6665
    { "vpackusdw",  { XM, Vex, EXx }, PREFIX_DATA },
6666
    { VEX_W_TABLE (VEX_W_0F382C) },
6667
    { VEX_W_TABLE (VEX_W_0F382D) },
6668
    { VEX_W_TABLE (VEX_W_0F382E) },
6669
    { VEX_W_TABLE (VEX_W_0F382F) },
6670
    /* 30 */
6671
    { "vpmovzxbw",  { XM, EXxmmq }, PREFIX_DATA },
6672
    { "vpmovzxbd",  { XM, EXxmmqd }, PREFIX_DATA },
6673
    { "vpmovzxbq",  { XM, EXxmmdw }, PREFIX_DATA },
6674
    { "vpmovzxwd",  { XM, EXxmmq }, PREFIX_DATA },
6675
    { "vpmovzxwq",  { XM, EXxmmqd }, PREFIX_DATA },
6676
    { "vpmovzxdq",  { XM, EXxmmq }, PREFIX_DATA },
6677
    { VEX_LEN_TABLE (VEX_LEN_0F3836) },
6678
    { "vpcmpgtq", { XM, Vex, EXx }, PREFIX_DATA },
6679
    /* 38 */
6680
    { "vpminsb",  { XM, Vex, EXx }, PREFIX_DATA },
6681
    { "vpminsd",  { XM, Vex, EXx }, PREFIX_DATA },
6682
    { "vpminuw",  { XM, Vex, EXx }, PREFIX_DATA },
6683
    { "vpminud",  { XM, Vex, EXx }, PREFIX_DATA },
6684
    { "vpmaxsb",  { XM, Vex, EXx }, PREFIX_DATA },
6685
    { "vpmaxsd",  { XM, Vex, EXx }, PREFIX_DATA },
6686
    { "vpmaxuw",  { XM, Vex, EXx }, PREFIX_DATA },
6687
    { "vpmaxud",  { XM, Vex, EXx }, PREFIX_DATA },
6688
    /* 40 */
6689
    { "vpmulld",  { XM, Vex, EXx }, PREFIX_DATA },
6690
    { VEX_LEN_TABLE (VEX_LEN_0F3841) },
6691
    { Bad_Opcode },
6692
    { Bad_Opcode },
6693
    { Bad_Opcode },
6694
    { "vpsrlv%DQ", { XM, Vex, EXx }, PREFIX_DATA },
6695
    { VEX_W_TABLE (VEX_W_0F3846) },
6696
    { "vpsllv%DQ", { XM, Vex, EXx }, PREFIX_DATA },
6697
    /* 48 */
6698
    { X86_64_TABLE (X86_64_VEX_0F3848) },
6699
    { X86_64_TABLE (X86_64_VEX_0F3849) },
6700
    { X86_64_TABLE (X86_64_VEX_0F384A) },
6701
    { X86_64_TABLE (X86_64_VEX_0F384B) },
6702
    { Bad_Opcode },
6703
    { Bad_Opcode },
6704
    { Bad_Opcode },
6705
    { Bad_Opcode },
6706
    /* 50 */
6707
    { VEX_W_TABLE (VEX_W_0F3850) },
6708
    { VEX_W_TABLE (VEX_W_0F3851) },
6709
    { VEX_W_TABLE (VEX_W_0F3852) },
6710
    { VEX_W_TABLE (VEX_W_0F3853) },
6711
    { Bad_Opcode },
6712
    { Bad_Opcode },
6713
    { Bad_Opcode },
6714
    { Bad_Opcode },
6715
    /* 58 */
6716
    { VEX_W_TABLE (VEX_W_0F3858) },
6717
    { VEX_W_TABLE (VEX_W_0F3859) },
6718
    { VEX_LEN_TABLE (VEX_LEN_0F385A) },
6719
    { Bad_Opcode },
6720
    { X86_64_TABLE (X86_64_VEX_0F385C) },
6721
    { Bad_Opcode },
6722
    { X86_64_TABLE (X86_64_VEX_0F385E) },
6723
    { X86_64_TABLE (X86_64_VEX_0F385F) },
6724
    /* 60 */
6725
    { Bad_Opcode },
6726
    { Bad_Opcode },
6727
    { Bad_Opcode },
6728
    { Bad_Opcode },
6729
    { Bad_Opcode },
6730
    { Bad_Opcode },
6731
    { Bad_Opcode },
6732
    { Bad_Opcode },
6733
    /* 68 */
6734
    { Bad_Opcode },
6735
    { Bad_Opcode },
6736
    { Bad_Opcode },
6737
    { X86_64_TABLE (X86_64_VEX_0F386B) },
6738
    { X86_64_TABLE (X86_64_VEX_0F386C) },
6739
    { Bad_Opcode },
6740
    { X86_64_TABLE (X86_64_VEX_0F386E) },
6741
    { X86_64_TABLE (X86_64_VEX_0F386F) },
6742
    /* 70 */
6743
    { Bad_Opcode },
6744
    { Bad_Opcode },
6745
    { PREFIX_TABLE (PREFIX_VEX_0F3872) },
6746
    { Bad_Opcode },
6747
    { Bad_Opcode },
6748
    { Bad_Opcode },
6749
    { Bad_Opcode },
6750
    { Bad_Opcode },
6751
    /* 78 */
6752
    { VEX_W_TABLE (VEX_W_0F3878) },
6753
    { VEX_W_TABLE (VEX_W_0F3879) },
6754
    { Bad_Opcode },
6755
    { Bad_Opcode },
6756
    { Bad_Opcode },
6757
    { Bad_Opcode },
6758
    { Bad_Opcode },
6759
    { Bad_Opcode },
6760
    /* 80 */
6761
    { Bad_Opcode },
6762
    { Bad_Opcode },
6763
    { Bad_Opcode },
6764
    { Bad_Opcode },
6765
    { Bad_Opcode },
6766
    { Bad_Opcode },
6767
    { Bad_Opcode },
6768
    { Bad_Opcode },
6769
    /* 88 */
6770
    { Bad_Opcode },
6771
    { Bad_Opcode },
6772
    { Bad_Opcode },
6773
    { Bad_Opcode },
6774
    { "vpmaskmov%DQ", { XM, Vex, Mx }, PREFIX_DATA },
6775
    { Bad_Opcode },
6776
    { "vpmaskmov%DQ", { Mx, Vex, XM }, PREFIX_DATA },
6777
    { Bad_Opcode },
6778
    /* 90 */
6779
    { "vpgatherd%DQ", { XM, MVexVSIBDWpX, VexGatherD }, PREFIX_DATA },
6780
    { "vpgatherq%DQ", { XMGatherQ, MVexVSIBQWpX, VexGatherQ }, PREFIX_DATA },
6781
    { "vgatherdp%XW", { XM, MVexVSIBDWpX, VexGatherD }, PREFIX_DATA },
6782
    { "vgatherqp%XW", { XMGatherQ, MVexVSIBQWpX, VexGatherQ }, PREFIX_DATA },
6783
    { Bad_Opcode },
6784
    { Bad_Opcode },
6785
    { "vfmaddsub132p%XW", { XM, Vex, EXx }, PREFIX_DATA },
6786
    { "vfmsubadd132p%XW", { XM, Vex, EXx }, PREFIX_DATA },
6787
    /* 98 */
6788
    { "vfmadd132p%XW", { XM, Vex, EXx }, PREFIX_DATA },
6789
    { "vfmadd132s%XW", { XMScalar, VexScalar, EXdq }, PREFIX_DATA },
6790
    { "vfmsub132p%XW", { XM, Vex, EXx }, PREFIX_DATA },
6791
    { "vfmsub132s%XW", { XMScalar, VexScalar, EXdq }, PREFIX_DATA },
6792
    { "vfnmadd132p%XW", { XM, Vex, EXx }, PREFIX_DATA },
6793
    { "vfnmadd132s%XW", { XMScalar, VexScalar, EXdq }, PREFIX_DATA },
6794
    { "vfnmsub132p%XW", { XM, Vex, EXx }, PREFIX_DATA },
6795
    { "vfnmsub132s%XW", { XMScalar, VexScalar, EXdq }, PREFIX_DATA },
6796
    /* a0 */
6797
    { Bad_Opcode },
6798
    { Bad_Opcode },
6799
    { Bad_Opcode },
6800
    { Bad_Opcode },
6801
    { Bad_Opcode },
6802
    { Bad_Opcode },
6803
    { "vfmaddsub213p%XW", { XM, Vex, EXx }, PREFIX_DATA },
6804
    { "vfmsubadd213p%XW", { XM, Vex, EXx }, PREFIX_DATA },
6805
    /* a8 */
6806
    { "vfmadd213p%XW", { XM, Vex, EXx }, PREFIX_DATA },
6807
    { "vfmadd213s%XW", { XMScalar, VexScalar, EXdq }, PREFIX_DATA },
6808
    { "vfmsub213p%XW", { XM, Vex, EXx }, PREFIX_DATA },
6809
    { "vfmsub213s%XW", { XMScalar, VexScalar, EXdq }, PREFIX_DATA },
6810
    { "vfnmadd213p%XW", { XM, Vex, EXx }, PREFIX_DATA },
6811
    { "vfnmadd213s%XW", { XMScalar, VexScalar, EXdq }, PREFIX_DATA },
6812
    { "vfnmsub213p%XW", { XM, Vex, EXx }, PREFIX_DATA },
6813
    { "vfnmsub213s%XW", { XMScalar, VexScalar, EXdq }, PREFIX_DATA },
6814
    /* b0 */
6815
    { VEX_W_TABLE (VEX_W_0F38B0) },
6816
    { VEX_W_TABLE (VEX_W_0F38B1) },
6817
    { Bad_Opcode },
6818
    { Bad_Opcode },
6819
    { VEX_W_TABLE (VEX_W_0F38B4) },
6820
    { VEX_W_TABLE (VEX_W_0F38B5) },
6821
    { "vfmaddsub231p%XW", { XM, Vex, EXx }, PREFIX_DATA },
6822
    { "vfmsubadd231p%XW", { XM, Vex, EXx }, PREFIX_DATA },
6823
    /* b8 */
6824
    { "vfmadd231p%XW", { XM, Vex, EXx }, PREFIX_DATA },
6825
    { "vfmadd231s%XW", { XMScalar, VexScalar, EXdq }, PREFIX_DATA },
6826
    { "vfmsub231p%XW", { XM, Vex, EXx }, PREFIX_DATA },
6827
    { "vfmsub231s%XW", { XMScalar, VexScalar, EXdq }, PREFIX_DATA },
6828
    { "vfnmadd231p%XW", { XM, Vex, EXx }, PREFIX_DATA },
6829
    { "vfnmadd231s%XW", { XMScalar, VexScalar, EXdq }, PREFIX_DATA },
6830
    { "vfnmsub231p%XW", { XM, Vex, EXx }, PREFIX_DATA },
6831
    { "vfnmsub231s%XW", { XMScalar, VexScalar, EXdq }, PREFIX_DATA },
6832
    /* c0 */
6833
    { Bad_Opcode },
6834
    { Bad_Opcode },
6835
    { Bad_Opcode },
6836
    { Bad_Opcode },
6837
    { Bad_Opcode },
6838
    { Bad_Opcode },
6839
    { Bad_Opcode },
6840
    { Bad_Opcode },
6841
    /* c8 */
6842
    { Bad_Opcode },
6843
    { Bad_Opcode },
6844
    { Bad_Opcode },
6845
    { PREFIX_TABLE (PREFIX_VEX_0F38CB) },
6846
    { PREFIX_TABLE (PREFIX_VEX_0F38CC) },
6847
    { PREFIX_TABLE (PREFIX_VEX_0F38CD) },
6848
    { Bad_Opcode },
6849
    { VEX_W_TABLE (VEX_W_0F38CF) },
6850
    /* d0 */
6851
    { Bad_Opcode },
6852
    { Bad_Opcode },
6853
    { VEX_W_TABLE (VEX_W_0F38D2) },
6854
    { VEX_W_TABLE (VEX_W_0F38D3) },
6855
    { Bad_Opcode },
6856
    { Bad_Opcode },
6857
    { Bad_Opcode },
6858
    { Bad_Opcode },
6859
    /* d8 */
6860
    { Bad_Opcode },
6861
    { Bad_Opcode },
6862
    { VEX_W_TABLE (VEX_W_0F38DA) },
6863
    { VEX_LEN_TABLE (VEX_LEN_0F38DB) },
6864
    { "vaesenc",  { XM, Vex, EXx }, PREFIX_DATA },
6865
    { "vaesenclast",  { XM, Vex, EXx }, PREFIX_DATA },
6866
    { "vaesdec",  { XM, Vex, EXx }, PREFIX_DATA },
6867
    { "vaesdeclast",  { XM, Vex, EXx }, PREFIX_DATA },
6868
    /* e0 */
6869
    { X86_64_TABLE (X86_64_VEX_0F38Ex) },
6870
    { X86_64_TABLE (X86_64_VEX_0F38Ex) },
6871
    { X86_64_TABLE (X86_64_VEX_0F38Ex) },
6872
    { X86_64_TABLE (X86_64_VEX_0F38Ex) },
6873
    { X86_64_TABLE (X86_64_VEX_0F38Ex) },
6874
    { X86_64_TABLE (X86_64_VEX_0F38Ex) },
6875
    { X86_64_TABLE (X86_64_VEX_0F38Ex) },
6876
    { X86_64_TABLE (X86_64_VEX_0F38Ex) },
6877
    /* e8 */
6878
    { X86_64_TABLE (X86_64_VEX_0F38Ex) },
6879
    { X86_64_TABLE (X86_64_VEX_0F38Ex) },
6880
    { X86_64_TABLE (X86_64_VEX_0F38Ex) },
6881
    { X86_64_TABLE (X86_64_VEX_0F38Ex) },
6882
    { X86_64_TABLE (X86_64_VEX_0F38Ex) },
6883
    { X86_64_TABLE (X86_64_VEX_0F38Ex) },
6884
    { X86_64_TABLE (X86_64_VEX_0F38Ex) },
6885
    { X86_64_TABLE (X86_64_VEX_0F38Ex) },
6886
    /* f0 */
6887
    { Bad_Opcode },
6888
    { Bad_Opcode },
6889
    { VEX_LEN_TABLE (VEX_LEN_0F38F2) },
6890
    { VEX_LEN_TABLE (VEX_LEN_0F38F3) },
6891
    { Bad_Opcode },
6892
    { VEX_LEN_TABLE (VEX_LEN_0F38F5) },
6893
    { VEX_LEN_TABLE (VEX_LEN_0F38F6) },
6894
    { VEX_LEN_TABLE (VEX_LEN_0F38F7) },
6895
    /* f8 */
6896
    { Bad_Opcode },
6897
    { Bad_Opcode },
6898
    { Bad_Opcode },
6899
    { Bad_Opcode },
6900
    { Bad_Opcode },
6901
    { Bad_Opcode },
6902
    { Bad_Opcode },
6903
    { Bad_Opcode },
6904
  },
6905
  /* VEX_0F3A */
6906
  {
6907
    /* 00 */
6908
    { VEX_LEN_TABLE (VEX_LEN_0F3A00) },
6909
    { VEX_LEN_TABLE (VEX_LEN_0F3A01) },
6910
    { VEX_W_TABLE (VEX_W_0F3A02) },
6911
    { Bad_Opcode },
6912
    { VEX_W_TABLE (VEX_W_0F3A04) },
6913
    { VEX_W_TABLE (VEX_W_0F3A05) },
6914
    { VEX_LEN_TABLE (VEX_LEN_0F3A06) },
6915
    { Bad_Opcode },
6916
    /* 08 */
6917
    { "vroundps", { XM, EXx, Ib }, PREFIX_DATA },
6918
    { "vroundpd", { XM, EXx, Ib }, PREFIX_DATA },
6919
    { "vroundss", { XMScalar, VexScalar, EXd, Ib }, PREFIX_DATA },
6920
    { "vroundsd", { XMScalar, VexScalar, EXq, Ib }, PREFIX_DATA },
6921
    { "vblendps", { XM, Vex, EXx, Ib }, PREFIX_DATA },
6922
    { "vblendpd", { XM, Vex, EXx, Ib }, PREFIX_DATA },
6923
    { "vpblendw", { XM, Vex, EXx, Ib }, PREFIX_DATA },
6924
    { "vpalignr", { XM, Vex, EXx, Ib }, PREFIX_DATA },
6925
    /* 10 */
6926
    { Bad_Opcode },
6927
    { Bad_Opcode },
6928
    { Bad_Opcode },
6929
    { Bad_Opcode },
6930
    { VEX_LEN_TABLE (VEX_LEN_0F3A14) },
6931
    { VEX_LEN_TABLE (VEX_LEN_0F3A15) },
6932
    { VEX_LEN_TABLE (VEX_LEN_0F3A16) },
6933
    { VEX_LEN_TABLE (VEX_LEN_0F3A17) },
6934
    /* 18 */
6935
    { VEX_LEN_TABLE (VEX_LEN_0F3A18) },
6936
    { VEX_LEN_TABLE (VEX_LEN_0F3A19) },
6937
    { Bad_Opcode },
6938
    { Bad_Opcode },
6939
    { Bad_Opcode },
6940
    { VEX_W_TABLE (VEX_W_0F3A1D) },
6941
    { Bad_Opcode },
6942
    { Bad_Opcode },
6943
    /* 20 */
6944
    { VEX_LEN_TABLE (VEX_LEN_0F3A20) },
6945
    { VEX_LEN_TABLE (VEX_LEN_0F3A21) },
6946
    { VEX_LEN_TABLE (VEX_LEN_0F3A22) },
6947
    { Bad_Opcode },
6948
    { Bad_Opcode },
6949
    { Bad_Opcode },
6950
    { Bad_Opcode },
6951
    { Bad_Opcode },
6952
    /* 28 */
6953
    { Bad_Opcode },
6954
    { Bad_Opcode },
6955
    { Bad_Opcode },
6956
    { Bad_Opcode },
6957
    { Bad_Opcode },
6958
    { Bad_Opcode },
6959
    { Bad_Opcode },
6960
    { Bad_Opcode },
6961
    /* 30 */
6962
    { VEX_LEN_TABLE (VEX_LEN_0F3A30) },
6963
    { VEX_LEN_TABLE (VEX_LEN_0F3A31) },
6964
    { VEX_LEN_TABLE (VEX_LEN_0F3A32) },
6965
    { VEX_LEN_TABLE (VEX_LEN_0F3A33) },
6966
    { Bad_Opcode },
6967
    { Bad_Opcode },
6968
    { Bad_Opcode },
6969
    { Bad_Opcode },
6970
    /* 38 */
6971
    { VEX_LEN_TABLE (VEX_LEN_0F3A38) },
6972
    { VEX_LEN_TABLE (VEX_LEN_0F3A39) },
6973
    { Bad_Opcode },
6974
    { Bad_Opcode },
6975
    { Bad_Opcode },
6976
    { Bad_Opcode },
6977
    { Bad_Opcode },
6978
    { Bad_Opcode },
6979
    /* 40 */
6980
    { "vdpps",    { XM, Vex, EXx, Ib }, PREFIX_DATA },
6981
    { VEX_LEN_TABLE (VEX_LEN_0F3A41) },
6982
    { "vmpsadbw", { XM, Vex, EXx, Ib }, PREFIX_DATA },
6983
    { Bad_Opcode },
6984
    { "vpclmulqdq", { XM, Vex, EXx, PCLMUL }, PREFIX_DATA },
6985
    { Bad_Opcode },
6986
    { VEX_LEN_TABLE (VEX_LEN_0F3A46) },
6987
    { Bad_Opcode },
6988
    /* 48 */
6989
    { "vpermil2ps", { XM, Vex, EXx, XMVexI4, VexI4 }, PREFIX_DATA },
6990
    { "vpermil2pd", { XM, Vex, EXx, XMVexI4, VexI4 }, PREFIX_DATA },
6991
    { VEX_W_TABLE (VEX_W_0F3A4A) },
6992
    { VEX_W_TABLE (VEX_W_0F3A4B) },
6993
    { VEX_W_TABLE (VEX_W_0F3A4C) },
6994
    { Bad_Opcode },
6995
    { Bad_Opcode },
6996
    { Bad_Opcode },
6997
    /* 50 */
6998
    { Bad_Opcode },
6999
    { Bad_Opcode },
7000
    { Bad_Opcode },
7001
    { Bad_Opcode },
7002
    { Bad_Opcode },
7003
    { Bad_Opcode },
7004
    { Bad_Opcode },
7005
    { Bad_Opcode },
7006
    /* 58 */
7007
    { Bad_Opcode },
7008
    { Bad_Opcode },
7009
    { Bad_Opcode },
7010
    { Bad_Opcode },
7011
    { "vfmaddsubps", { XM, Vex, EXx, XMVexI4 }, PREFIX_DATA },
7012
    { "vfmaddsubpd", { XM, Vex, EXx, XMVexI4 }, PREFIX_DATA },
7013
    { "vfmsubaddps", { XM, Vex, EXx, XMVexI4 }, PREFIX_DATA },
7014
    { "vfmsubaddpd", { XM, Vex, EXx, XMVexI4 }, PREFIX_DATA },
7015
    /* 60 */
7016
    { VEX_LEN_TABLE (VEX_LEN_0F3A60) },
7017
    { VEX_LEN_TABLE (VEX_LEN_0F3A61) },
7018
    { VEX_LEN_TABLE (VEX_LEN_0F3A62) },
7019
    { VEX_LEN_TABLE (VEX_LEN_0F3A63) },
7020
    { Bad_Opcode },
7021
    { Bad_Opcode },
7022
    { Bad_Opcode },
7023
    { Bad_Opcode },
7024
    /* 68 */
7025
    { "vfmaddps", { XM, Vex, EXx, XMVexI4 }, PREFIX_DATA },
7026
    { "vfmaddpd", { XM, Vex, EXx, XMVexI4 }, PREFIX_DATA },
7027
    { "vfmaddss", { XMScalar, VexScalar, EXd, XMVexScalarI4 }, PREFIX_DATA },
7028
    { "vfmaddsd", { XMScalar, VexScalar, EXq, XMVexScalarI4 }, PREFIX_DATA },
7029
    { "vfmsubps", { XM, Vex, EXx, XMVexI4 }, PREFIX_DATA },
7030
    { "vfmsubpd", { XM, Vex, EXx, XMVexI4 }, PREFIX_DATA },
7031
    { "vfmsubss", { XMScalar, VexScalar, EXd, XMVexScalarI4 }, PREFIX_DATA },
7032
    { "vfmsubsd", { XMScalar, VexScalar, EXq, XMVexScalarI4 }, PREFIX_DATA },
7033
    /* 70 */
7034
    { Bad_Opcode },
7035
    { Bad_Opcode },
7036
    { Bad_Opcode },
7037
    { Bad_Opcode },
7038
    { Bad_Opcode },
7039
    { Bad_Opcode },
7040
    { Bad_Opcode },
7041
    { Bad_Opcode },
7042
    /* 78 */
7043
    { "vfnmaddps", { XM, Vex, EXx, XMVexI4 }, PREFIX_DATA },
7044
    { "vfnmaddpd", { XM, Vex, EXx, XMVexI4 }, PREFIX_DATA },
7045
    { "vfnmaddss",  { XMScalar, VexScalar, EXd, XMVexScalarI4 }, PREFIX_DATA },
7046
    { "vfnmaddsd",  { XMScalar, VexScalar, EXq, XMVexScalarI4 }, PREFIX_DATA },
7047
    { "vfnmsubps", { XM, Vex, EXx, XMVexI4 }, PREFIX_DATA },
7048
    { "vfnmsubpd", { XM, Vex, EXx, XMVexI4 }, PREFIX_DATA },
7049
    { "vfnmsubss",  { XMScalar, VexScalar, EXd, XMVexScalarI4 }, PREFIX_DATA },
7050
    { "vfnmsubsd",  { XMScalar, VexScalar, EXq, XMVexScalarI4 }, PREFIX_DATA },
7051
    /* 80 */
7052
    { Bad_Opcode },
7053
    { Bad_Opcode },
7054
    { Bad_Opcode },
7055
    { Bad_Opcode },
7056
    { Bad_Opcode },
7057
    { Bad_Opcode },
7058
    { Bad_Opcode },
7059
    { Bad_Opcode },
7060
    /* 88 */
7061
    { Bad_Opcode },
7062
    { Bad_Opcode },
7063
    { Bad_Opcode },
7064
    { Bad_Opcode },
7065
    { Bad_Opcode },
7066
    { Bad_Opcode },
7067
    { Bad_Opcode },
7068
    { Bad_Opcode },
7069
    /* 90 */
7070
    { Bad_Opcode },
7071
    { Bad_Opcode },
7072
    { Bad_Opcode },
7073
    { Bad_Opcode },
7074
    { Bad_Opcode },
7075
    { Bad_Opcode },
7076
    { Bad_Opcode },
7077
    { Bad_Opcode },
7078
    /* 98 */
7079
    { Bad_Opcode },
7080
    { Bad_Opcode },
7081
    { Bad_Opcode },
7082
    { Bad_Opcode },
7083
    { Bad_Opcode },
7084
    { Bad_Opcode },
7085
    { Bad_Opcode },
7086
    { Bad_Opcode },
7087
    /* a0 */
7088
    { Bad_Opcode },
7089
    { Bad_Opcode },
7090
    { Bad_Opcode },
7091
    { Bad_Opcode },
7092
    { Bad_Opcode },
7093
    { Bad_Opcode },
7094
    { Bad_Opcode },
7095
    { Bad_Opcode },
7096
    /* a8 */
7097
    { Bad_Opcode },
7098
    { Bad_Opcode },
7099
    { Bad_Opcode },
7100
    { Bad_Opcode },
7101
    { Bad_Opcode },
7102
    { Bad_Opcode },
7103
    { Bad_Opcode },
7104
    { Bad_Opcode },
7105
    /* b0 */
7106
    { Bad_Opcode },
7107
    { Bad_Opcode },
7108
    { Bad_Opcode },
7109
    { Bad_Opcode },
7110
    { Bad_Opcode },
7111
    { Bad_Opcode },
7112
    { Bad_Opcode },
7113
    { Bad_Opcode },
7114
    /* b8 */
7115
    { Bad_Opcode },
7116
    { Bad_Opcode },
7117
    { Bad_Opcode },
7118
    { Bad_Opcode },
7119
    { Bad_Opcode },
7120
    { Bad_Opcode },
7121
    { Bad_Opcode },
7122
    { Bad_Opcode },
7123
    /* c0 */
7124
    { Bad_Opcode },
7125
    { Bad_Opcode },
7126
    { Bad_Opcode },
7127
    { Bad_Opcode },
7128
    { Bad_Opcode },
7129
    { Bad_Opcode },
7130
    { Bad_Opcode },
7131
    { Bad_Opcode },
7132
    /* c8 */
7133
    { Bad_Opcode },
7134
    { Bad_Opcode },
7135
    { Bad_Opcode },
7136
    { Bad_Opcode },
7137
    { Bad_Opcode },
7138
    { Bad_Opcode },
7139
    { VEX_W_TABLE (VEX_W_0F3ACE) },
7140
    { VEX_W_TABLE (VEX_W_0F3ACF) },
7141
    /* d0 */
7142
    { Bad_Opcode },
7143
    { Bad_Opcode },
7144
    { Bad_Opcode },
7145
    { Bad_Opcode },
7146
    { Bad_Opcode },
7147
    { Bad_Opcode },
7148
    { Bad_Opcode },
7149
    { Bad_Opcode },
7150
    /* d8 */
7151
    { Bad_Opcode },
7152
    { Bad_Opcode },
7153
    { Bad_Opcode },
7154
    { Bad_Opcode },
7155
    { Bad_Opcode },
7156
    { Bad_Opcode },
7157
    { VEX_W_TABLE (VEX_W_0F3ADE) },
7158
    { VEX_LEN_TABLE (VEX_LEN_0F3ADF) },
7159
    /* e0 */
7160
    { Bad_Opcode },
7161
    { Bad_Opcode },
7162
    { Bad_Opcode },
7163
    { Bad_Opcode },
7164
    { Bad_Opcode },
7165
    { Bad_Opcode },
7166
    { Bad_Opcode },
7167
    { Bad_Opcode },
7168
    /* e8 */
7169
    { Bad_Opcode },
7170
    { Bad_Opcode },
7171
    { Bad_Opcode },
7172
    { Bad_Opcode },
7173
    { Bad_Opcode },
7174
    { Bad_Opcode },
7175
    { Bad_Opcode },
7176
    { Bad_Opcode },
7177
    /* f0 */
7178
    { VEX_LEN_TABLE (VEX_LEN_0F3AF0) },
7179
    { Bad_Opcode },
7180
    { Bad_Opcode },
7181
    { Bad_Opcode },
7182
    { Bad_Opcode },
7183
    { Bad_Opcode },
7184
    { Bad_Opcode },
7185
    { Bad_Opcode },
7186
    /* f8 */
7187
    { Bad_Opcode },
7188
    { Bad_Opcode },
7189
    { Bad_Opcode },
7190
    { Bad_Opcode },
7191
    { Bad_Opcode },
7192
    { Bad_Opcode },
7193
    { Bad_Opcode },
7194
    { Bad_Opcode },
7195
  },
7196
};
7197
7198
#include "i386-dis-evex.h"
7199
7200
static const struct dis386 vex_len_table[][2] = {
7201
  /* VEX_LEN_0F12_P_0 */
7202
  {
7203
    { MOD_TABLE (MOD_0F12_PREFIX_0) },
7204
  },
7205
7206
  /* VEX_LEN_0F12_P_2 */
7207
  {
7208
    { "%XEVmovlpYX",  { XM, Vex, Mq }, 0 },
7209
  },
7210
7211
  /* VEX_LEN_0F13 */
7212
  {
7213
    { "%XEVmovlpYX",  { Mq, XM }, PREFIX_OPCODE },
7214
  },
7215
7216
  /* VEX_LEN_0F16_P_0 */
7217
  {
7218
    { MOD_TABLE (MOD_0F16_PREFIX_0) },
7219
  },
7220
7221
  /* VEX_LEN_0F16_P_2 */
7222
  {
7223
    { "%XEVmovhpYX",  { XM, Vex, Mq }, 0 },
7224
  },
7225
7226
  /* VEX_LEN_0F17 */
7227
  {
7228
    { "%XEVmovhpYX",  { Mq, XM }, PREFIX_OPCODE },
7229
  },
7230
7231
  /* VEX_LEN_0F41 */
7232
  {
7233
    { Bad_Opcode },
7234
    { VEX_W_TABLE (VEX_W_0F41_L_1) },
7235
  },
7236
7237
  /* VEX_LEN_0F42 */
7238
  {
7239
    { Bad_Opcode },
7240
    { VEX_W_TABLE (VEX_W_0F42_L_1) },
7241
  },
7242
7243
  /* VEX_LEN_0F44 */
7244
  {
7245
    { VEX_W_TABLE (VEX_W_0F44_L_0) },
7246
  },
7247
7248
  /* VEX_LEN_0F45 */
7249
  {
7250
    { Bad_Opcode },
7251
    { VEX_W_TABLE (VEX_W_0F45_L_1) },
7252
  },
7253
7254
  /* VEX_LEN_0F46 */
7255
  {
7256
    { Bad_Opcode },
7257
    { VEX_W_TABLE (VEX_W_0F46_L_1) },
7258
  },
7259
7260
  /* VEX_LEN_0F47 */
7261
  {
7262
    { Bad_Opcode },
7263
    { VEX_W_TABLE (VEX_W_0F47_L_1) },
7264
  },
7265
7266
  /* VEX_LEN_0F4A */
7267
  {
7268
    { Bad_Opcode },
7269
    { VEX_W_TABLE (VEX_W_0F4A_L_1) },
7270
  },
7271
7272
  /* VEX_LEN_0F4B */
7273
  {
7274
    { Bad_Opcode },
7275
    { VEX_W_TABLE (VEX_W_0F4B_L_1) },
7276
  },
7277
7278
  /* VEX_LEN_0F6E */
7279
  {
7280
    { "%XEvmovYK",  { XMScalar, Edq }, PREFIX_DATA },
7281
  },
7282
7283
  /* VEX_LEN_0F77 */
7284
  {
7285
    { "vzeroupper", { XX }, 0 },
7286
    { "vzeroall", { XX }, 0 },
7287
  },
7288
7289
  /* VEX_LEN_0F7E_P_1 */
7290
  {
7291
    { "%XEvmovqY",  { XMScalar, EXq }, 0 },
7292
  },
7293
7294
  /* VEX_LEN_0F7E_P_2 */
7295
  {
7296
    { "%XEvmovK", { Edq, XMScalar }, 0 },
7297
  },
7298
7299
  /* VEX_LEN_0F90 */
7300
  {
7301
    { VEX_W_TABLE (VEX_W_0F90_L_0) },
7302
  },
7303
7304
  /* VEX_LEN_0F91 */
7305
  {
7306
    { VEX_W_TABLE (VEX_W_0F91_L_0) },
7307
  },
7308
7309
  /* VEX_LEN_0F92 */
7310
  {
7311
    { VEX_W_TABLE (VEX_W_0F92_L_0) },
7312
  },
7313
7314
  /* VEX_LEN_0F93 */
7315
  {
7316
    { VEX_W_TABLE (VEX_W_0F93_L_0) },
7317
  },
7318
7319
  /* VEX_LEN_0F98 */
7320
  {
7321
    { VEX_W_TABLE (VEX_W_0F98_L_0) },
7322
  },
7323
7324
  /* VEX_LEN_0F99 */
7325
  {
7326
    { VEX_W_TABLE (VEX_W_0F99_L_0) },
7327
  },
7328
7329
  /* VEX_LEN_0FAE_R_2 */
7330
  {
7331
    { "vldmxcsr", { Md }, 0 },
7332
  },
7333
7334
  /* VEX_LEN_0FAE_R_3 */
7335
  {
7336
    { "vstmxcsr", { Md }, 0 },
7337
  },
7338
7339
  /* VEX_LEN_0FC4 */
7340
  {
7341
    { "%XEvpinsrwY",  { XM, Vex, Edw, Ib }, PREFIX_DATA },
7342
  },
7343
7344
  /* VEX_LEN_0FD6 */
7345
  {
7346
    { "%XEvmovqY",  { EXqS, XMScalar }, PREFIX_DATA },
7347
  },
7348
7349
  /* VEX_LEN_0F3816 */
7350
  {
7351
    { Bad_Opcode },
7352
    { VEX_W_TABLE (VEX_W_0F3816_L_1) },
7353
  },
7354
7355
  /* VEX_LEN_0F3819 */
7356
  {
7357
    { Bad_Opcode },
7358
    { VEX_W_TABLE (VEX_W_0F3819_L_1) },
7359
  },
7360
7361
  /* VEX_LEN_0F381A */
7362
  {
7363
    { Bad_Opcode },
7364
    { VEX_W_TABLE (VEX_W_0F381A_L_1) },
7365
  },
7366
7367
  /* VEX_LEN_0F3836 */
7368
  {
7369
    { Bad_Opcode },
7370
    { VEX_W_TABLE (VEX_W_0F3836) },
7371
  },
7372
7373
  /* VEX_LEN_0F3841 */
7374
  {
7375
    { "vphminposuw",  { XM, EXx }, PREFIX_DATA },
7376
  },
7377
7378
  /* VEX_LEN_0F3848_X86_64 */
7379
  {
7380
    { VEX_W_TABLE (VEX_W_0F3848_X86_64_L_0) },
7381
  },
7382
7383
  /* VEX_LEN_0F3849_X86_64 */
7384
  {
7385
    { VEX_W_TABLE (VEX_W_0F3849_X86_64_L_0) },
7386
  },
7387
7388
  /* VEX_LEN_0F384A_X86_64_W_0 */
7389
  {
7390
    { PREFIX_TABLE (PREFIX_VEX_0F384A_X86_64_W_0_L_0) },
7391
  },
7392
7393
  /* VEX_LEN_0F384B_X86_64 */
7394
  {
7395
    { VEX_W_TABLE (VEX_W_0F384B_X86_64_L_0) },
7396
  },
7397
7398
  /* VEX_LEN_0F385A */
7399
  {
7400
    { Bad_Opcode },
7401
    { VEX_W_TABLE (VEX_W_0F385A_L_0) },
7402
  },
7403
7404
  /* VEX_LEN_0F385C_X86_64 */
7405
  {
7406
    { VEX_W_TABLE (VEX_W_0F385C_X86_64_L_0) },
7407
  },
7408
7409
  /* VEX_LEN_0F385E_X86_64 */
7410
  {
7411
    { VEX_W_TABLE (VEX_W_0F385E_X86_64_L_0) },
7412
  },
7413
7414
  /* VEX_LEN_0F385F_X86_64 */
7415
  {
7416
    { VEX_W_TABLE (VEX_W_0F385F_X86_64_L_0) },
7417
  },
7418
7419
  /* VEX_LEN_0F386B_X86_64 */
7420
  {
7421
    { VEX_W_TABLE (VEX_W_0F386B_X86_64_L_0) },
7422
  },
7423
7424
  /* VEX_LEN_0F386C_X86_64 */
7425
  {
7426
    { VEX_W_TABLE (VEX_W_0F386C_X86_64_L_0) },
7427
  },
7428
7429
  /* VEX_LEN_0F386E_X86_64 */
7430
  {
7431
    { VEX_W_TABLE (VEX_W_0F386E_X86_64_L_0) },
7432
  },
7433
7434
  /* VEX_LEN_0F386F_X86_64 */
7435
  {
7436
    { VEX_W_TABLE (VEX_W_0F386F_X86_64_L_0) },
7437
  },
7438
7439
  /* VEX_LEN_0F38CB_P_3_W_0 */
7440
  {
7441
    { Bad_Opcode },
7442
    { "vsha512rnds2", { XM, Vex, Rxmmq }, 0 },
7443
  },
7444
7445
  /* VEX_LEN_0F38CC_P_3_W_0 */
7446
  {
7447
    { Bad_Opcode },
7448
    { "vsha512msg1", { XM, Rxmmq }, 0 },
7449
  },
7450
7451
  /* VEX_LEN_0F38CD_P_3_W_0 */
7452
  {
7453
    { Bad_Opcode },
7454
    { "vsha512msg2", { XM, Rymm }, 0 },
7455
  },
7456
7457
  /* VEX_LEN_0F38DA_W_0_P_0 */
7458
  {
7459
    { "vsm3msg1", { XM, Vex, EXxmm }, 0 },
7460
  },
7461
7462
  /* VEX_LEN_0F38DA_W_0_P_2 */
7463
  {
7464
    { "vsm3msg2", { XM, Vex, EXxmm }, 0 },
7465
  },
7466
7467
  /* VEX_LEN_0F38DB */
7468
  {
7469
    { "vaesimc",  { XM, EXx }, PREFIX_DATA },
7470
  },
7471
7472
  /* VEX_LEN_0F38F2 */
7473
  {
7474
    { PREFIX_TABLE (PREFIX_VEX_0F38F2_L_0) },
7475
  },
7476
7477
  /* VEX_LEN_0F38F3 */
7478
  {
7479
    { PREFIX_TABLE (PREFIX_VEX_0F38F3_L_0) },
7480
  },
7481
7482
  /* VEX_LEN_0F38F5 */
7483
  {
7484
    { PREFIX_TABLE(PREFIX_VEX_0F38F5_L_0) },
7485
  },
7486
7487
  /* VEX_LEN_0F38F6 */
7488
  {
7489
    { PREFIX_TABLE(PREFIX_VEX_0F38F6_L_0) },
7490
  },
7491
7492
  /* VEX_LEN_0F38F7 */
7493
  {
7494
    { PREFIX_TABLE(PREFIX_VEX_0F38F7_L_0) },
7495
  },
7496
7497
  /* VEX_LEN_0F3A00 */
7498
  {
7499
    { Bad_Opcode },
7500
    { VEX_W_TABLE (VEX_W_0F3A00_L_1) },
7501
  },
7502
7503
  /* VEX_LEN_0F3A01 */
7504
  {
7505
    { Bad_Opcode },
7506
    { VEX_W_TABLE (VEX_W_0F3A01_L_1) },
7507
  },
7508
7509
  /* VEX_LEN_0F3A06 */
7510
  {
7511
    { Bad_Opcode },
7512
    { VEX_W_TABLE (VEX_W_0F3A06_L_1) },
7513
  },
7514
7515
  /* VEX_LEN_0F3A14 */
7516
  {
7517
    { "%XEvpextrb", { Edb, XM, Ib }, PREFIX_DATA },
7518
  },
7519
7520
  /* VEX_LEN_0F3A15 */
7521
  {
7522
    { "%XEvpextrw", { Edw, XM, Ib }, PREFIX_DATA },
7523
  },
7524
7525
  /* VEX_LEN_0F3A16  */
7526
  {
7527
    { "%XEvpextrK", { Edq, XM, Ib }, PREFIX_DATA },
7528
  },
7529
7530
  /* VEX_LEN_0F3A17 */
7531
  {
7532
    { "%XEvextractps",  { Ed, XM, Ib }, PREFIX_DATA },
7533
  },
7534
7535
  /* VEX_LEN_0F3A18 */
7536
  {
7537
    { Bad_Opcode },
7538
    { VEX_W_TABLE (VEX_W_0F3A18_L_1) },
7539
  },
7540
7541
  /* VEX_LEN_0F3A19 */
7542
  {
7543
    { Bad_Opcode },
7544
    { VEX_W_TABLE (VEX_W_0F3A19_L_1) },
7545
  },
7546
7547
  /* VEX_LEN_0F3A20 */
7548
  {
7549
    { "%XEvpinsrbY",  { XM, Vex, Edb, Ib }, PREFIX_DATA },
7550
  },
7551
7552
  /* VEX_LEN_0F3A21 */
7553
  {
7554
    { "%XEvinsertpsY",  { XM, Vex, EXd, Ib }, PREFIX_DATA },
7555
  },
7556
7557
  /* VEX_LEN_0F3A22 */
7558
  {
7559
    { "%XEvpinsrYK",  { XM, Vex, Edq, Ib }, PREFIX_DATA },
7560
  },
7561
7562
  /* VEX_LEN_0F3A30 */
7563
  {
7564
    { "kshiftr%BW", { MaskG, MaskR, Ib }, PREFIX_DATA },
7565
  },
7566
7567
  /* VEX_LEN_0F3A31 */
7568
  {
7569
    { "kshiftr%DQ", { MaskG, MaskR, Ib }, PREFIX_DATA },
7570
  },
7571
7572
  /* VEX_LEN_0F3A32 */
7573
  {
7574
    { "kshiftl%BW", { MaskG, MaskR, Ib }, PREFIX_DATA },
7575
  },
7576
7577
  /* VEX_LEN_0F3A33 */
7578
  {
7579
    { "kshiftl%DQ", { MaskG, MaskR, Ib }, PREFIX_DATA },
7580
  },
7581
7582
  /* VEX_LEN_0F3A38 */
7583
  {
7584
    { Bad_Opcode },
7585
    { VEX_W_TABLE (VEX_W_0F3A38_L_1) },
7586
  },
7587
7588
  /* VEX_LEN_0F3A39 */
7589
  {
7590
    { Bad_Opcode },
7591
    { VEX_W_TABLE (VEX_W_0F3A39_L_1) },
7592
  },
7593
7594
  /* VEX_LEN_0F3A41 */
7595
  {
7596
    { "vdppd",    { XM, Vex, EXx, Ib }, PREFIX_DATA },
7597
  },
7598
7599
  /* VEX_LEN_0F3A46 */
7600
  {
7601
    { Bad_Opcode },
7602
    { VEX_W_TABLE (VEX_W_0F3A46_L_1) },
7603
  },
7604
7605
  /* VEX_LEN_0F3A60 */
7606
  {
7607
    { "vpcmpestrm!%LQ", { XM, EXx, Ib }, PREFIX_DATA },
7608
  },
7609
7610
  /* VEX_LEN_0F3A61 */
7611
  {
7612
    { "vpcmpestri!%LQ", { XM, EXx, Ib }, PREFIX_DATA },
7613
  },
7614
7615
  /* VEX_LEN_0F3A62 */
7616
  {
7617
    { "vpcmpistrm", { XM, EXx, Ib }, PREFIX_DATA },
7618
  },
7619
7620
  /* VEX_LEN_0F3A63 */
7621
  {
7622
    { "vpcmpistri", { XM, EXx, Ib }, PREFIX_DATA },
7623
  },
7624
7625
  /* VEX_LEN_0F3ADE_W_0 */
7626
  {
7627
    { "vsm3rnds2", { XM, Vex, EXxmm, Ib }, PREFIX_DATA },
7628
  },
7629
7630
  /* VEX_LEN_0F3ADF */
7631
  {
7632
    { "vaeskeygenassist", { XM, EXx, Ib }, PREFIX_DATA },
7633
  },
7634
7635
  /* VEX_LEN_0F3AF0 */
7636
  {
7637
    { PREFIX_TABLE (PREFIX_VEX_0F3AF0_L_0) },
7638
  },
7639
7640
  /* VEX_LEN_MAP5_F8_X86_64 */
7641
  {
7642
    { VEX_W_TABLE (VEX_W_MAP5_F8_X86_64_L_0) },
7643
  },
7644
7645
  /* VEX_LEN_MAP5_F9_X86_64 */
7646
  {
7647
    { VEX_W_TABLE (VEX_W_MAP5_F9_X86_64_L_0) },
7648
  },
7649
7650
  /* VEX_LEN_MAP5_FD_X86_64 */
7651
  {
7652
    { VEX_W_TABLE (VEX_W_MAP5_FD_X86_64_L_0) },
7653
  },
7654
7655
  /* VEX_LEN_MAP7_F6 */
7656
  {
7657
    { VEX_W_TABLE (VEX_W_MAP7_F6_L_0) },
7658
  },
7659
7660
  /* VEX_LEN_MAP7_F8 */
7661
  {
7662
    { VEX_W_TABLE (VEX_W_MAP7_F8_L_0) },
7663
  },
7664
7665
  /* VEX_LEN_XOP_08_85 */
7666
  {
7667
    { VEX_W_TABLE (VEX_W_XOP_08_85_L_0) },
7668
  },
7669
7670
  /* VEX_LEN_XOP_08_86 */
7671
  {
7672
    { VEX_W_TABLE (VEX_W_XOP_08_86_L_0) },
7673
  },
7674
7675
  /* VEX_LEN_XOP_08_87 */
7676
  {
7677
    { VEX_W_TABLE (VEX_W_XOP_08_87_L_0) },
7678
  },
7679
7680
  /* VEX_LEN_XOP_08_8E */
7681
  {
7682
    { VEX_W_TABLE (VEX_W_XOP_08_8E_L_0) },
7683
  },
7684
7685
  /* VEX_LEN_XOP_08_8F */
7686
  {
7687
    { VEX_W_TABLE (VEX_W_XOP_08_8F_L_0) },
7688
  },
7689
7690
  /* VEX_LEN_XOP_08_95 */
7691
  {
7692
    { VEX_W_TABLE (VEX_W_XOP_08_95_L_0) },
7693
  },
7694
7695
  /* VEX_LEN_XOP_08_96 */
7696
  {
7697
    { VEX_W_TABLE (VEX_W_XOP_08_96_L_0) },
7698
  },
7699
7700
  /* VEX_LEN_XOP_08_97 */
7701
  {
7702
    { VEX_W_TABLE (VEX_W_XOP_08_97_L_0) },
7703
  },
7704
7705
  /* VEX_LEN_XOP_08_9E */
7706
  {
7707
    { VEX_W_TABLE (VEX_W_XOP_08_9E_L_0) },
7708
  },
7709
7710
  /* VEX_LEN_XOP_08_9F */
7711
  {
7712
    { VEX_W_TABLE (VEX_W_XOP_08_9F_L_0) },
7713
  },
7714
7715
  /* VEX_LEN_XOP_08_A3 */
7716
  {
7717
    { "vpperm",   { XM, Vex, EXx, XMVexI4 }, 0 },
7718
  },
7719
7720
  /* VEX_LEN_XOP_08_A6 */
7721
  {
7722
    { VEX_W_TABLE (VEX_W_XOP_08_A6_L_0) },
7723
  },
7724
7725
  /* VEX_LEN_XOP_08_B6 */
7726
  {
7727
    { VEX_W_TABLE (VEX_W_XOP_08_B6_L_0) },
7728
  },
7729
7730
  /* VEX_LEN_XOP_08_C0 */
7731
  {
7732
    { VEX_W_TABLE (VEX_W_XOP_08_C0_L_0) },
7733
  },
7734
7735
  /* VEX_LEN_XOP_08_C1 */
7736
  {
7737
    { VEX_W_TABLE (VEX_W_XOP_08_C1_L_0) },
7738
  },
7739
7740
  /* VEX_LEN_XOP_08_C2 */
7741
  {
7742
    { VEX_W_TABLE (VEX_W_XOP_08_C2_L_0) },
7743
  },
7744
7745
  /* VEX_LEN_XOP_08_C3 */
7746
  {
7747
    { VEX_W_TABLE (VEX_W_XOP_08_C3_L_0) },
7748
  },
7749
7750
  /* VEX_LEN_XOP_08_CC */
7751
  {
7752
    { VEX_W_TABLE (VEX_W_XOP_08_CC_L_0) },
7753
  },
7754
7755
  /* VEX_LEN_XOP_08_CD */
7756
  {
7757
    { VEX_W_TABLE (VEX_W_XOP_08_CD_L_0) },
7758
  },
7759
7760
  /* VEX_LEN_XOP_08_CE */
7761
  {
7762
    { VEX_W_TABLE (VEX_W_XOP_08_CE_L_0) },
7763
  },
7764
7765
  /* VEX_LEN_XOP_08_CF */
7766
  {
7767
    { VEX_W_TABLE (VEX_W_XOP_08_CF_L_0) },
7768
  },
7769
7770
  /* VEX_LEN_XOP_08_EC */
7771
  {
7772
    { VEX_W_TABLE (VEX_W_XOP_08_EC_L_0) },
7773
  },
7774
7775
  /* VEX_LEN_XOP_08_ED */
7776
  {
7777
    { VEX_W_TABLE (VEX_W_XOP_08_ED_L_0) },
7778
  },
7779
7780
  /* VEX_LEN_XOP_08_EE */
7781
  {
7782
    { VEX_W_TABLE (VEX_W_XOP_08_EE_L_0) },
7783
  },
7784
7785
  /* VEX_LEN_XOP_08_EF */
7786
  {
7787
    { VEX_W_TABLE (VEX_W_XOP_08_EF_L_0) },
7788
  },
7789
7790
  /* VEX_LEN_XOP_09_01 */
7791
  {
7792
    { REG_TABLE (REG_XOP_09_01_L_0) },
7793
  },
7794
7795
  /* VEX_LEN_XOP_09_02 */
7796
  {
7797
    { REG_TABLE (REG_XOP_09_02_L_0) },
7798
  },
7799
7800
  /* VEX_LEN_XOP_09_12 */
7801
  {
7802
    { REG_TABLE (REG_XOP_09_12_L_0) },
7803
  },
7804
7805
  /* VEX_LEN_XOP_09_82_W_0 */
7806
  {
7807
    { "vfrczss",  { XM, EXd }, 0 },
7808
  },
7809
7810
  /* VEX_LEN_XOP_09_83_W_0 */
7811
  {
7812
    { "vfrczsd",  { XM, EXq }, 0 },
7813
  },
7814
7815
  /* VEX_LEN_XOP_09_90 */
7816
  {
7817
    { "vprotb",   { XM, EXx, VexW }, 0 },
7818
  },
7819
7820
  /* VEX_LEN_XOP_09_91 */
7821
  {
7822
    { "vprotw",   { XM, EXx, VexW }, 0 },
7823
  },
7824
7825
  /* VEX_LEN_XOP_09_92 */
7826
  {
7827
    { "vprotd",   { XM, EXx, VexW }, 0 },
7828
  },
7829
7830
  /* VEX_LEN_XOP_09_93 */
7831
  {
7832
    { "vprotq",   { XM, EXx, VexW }, 0 },
7833
  },
7834
7835
  /* VEX_LEN_XOP_09_94 */
7836
  {
7837
    { "vpshlb",   { XM, EXx, VexW }, 0 },
7838
  },
7839
7840
  /* VEX_LEN_XOP_09_95 */
7841
  {
7842
    { "vpshlw",   { XM, EXx, VexW }, 0 },
7843
  },
7844
7845
  /* VEX_LEN_XOP_09_96 */
7846
  {
7847
    { "vpshld",   { XM, EXx, VexW }, 0 },
7848
  },
7849
7850
  /* VEX_LEN_XOP_09_97 */
7851
  {
7852
    { "vpshlq",   { XM, EXx, VexW }, 0 },
7853
  },
7854
7855
  /* VEX_LEN_XOP_09_98 */
7856
  {
7857
    { "vpshab",   { XM, EXx, VexW }, 0 },
7858
  },
7859
7860
  /* VEX_LEN_XOP_09_99 */
7861
  {
7862
    { "vpshaw",   { XM, EXx, VexW }, 0 },
7863
  },
7864
7865
  /* VEX_LEN_XOP_09_9A */
7866
  {
7867
    { "vpshad",   { XM, EXx, VexW }, 0 },
7868
  },
7869
7870
  /* VEX_LEN_XOP_09_9B */
7871
  {
7872
    { "vpshaq",   { XM, EXx, VexW }, 0 },
7873
  },
7874
7875
  /* VEX_LEN_XOP_09_C1 */
7876
  {
7877
    { VEX_W_TABLE (VEX_W_XOP_09_C1_L_0) },
7878
  },
7879
7880
  /* VEX_LEN_XOP_09_C2 */
7881
  {
7882
    { VEX_W_TABLE (VEX_W_XOP_09_C2_L_0) },
7883
  },
7884
7885
  /* VEX_LEN_XOP_09_C3 */
7886
  {
7887
    { VEX_W_TABLE (VEX_W_XOP_09_C3_L_0) },
7888
  },
7889
7890
  /* VEX_LEN_XOP_09_C6 */
7891
  {
7892
    { VEX_W_TABLE (VEX_W_XOP_09_C6_L_0) },
7893
  },
7894
7895
  /* VEX_LEN_XOP_09_C7 */
7896
  {
7897
    { VEX_W_TABLE (VEX_W_XOP_09_C7_L_0) },
7898
  },
7899
7900
  /* VEX_LEN_XOP_09_CB */
7901
  {
7902
    { VEX_W_TABLE (VEX_W_XOP_09_CB_L_0) },
7903
  },
7904
7905
  /* VEX_LEN_XOP_09_D1 */
7906
  {
7907
    { VEX_W_TABLE (VEX_W_XOP_09_D1_L_0) },
7908
  },
7909
7910
  /* VEX_LEN_XOP_09_D2 */
7911
  {
7912
    { VEX_W_TABLE (VEX_W_XOP_09_D2_L_0) },
7913
  },
7914
7915
  /* VEX_LEN_XOP_09_D3 */
7916
  {
7917
    { VEX_W_TABLE (VEX_W_XOP_09_D3_L_0) },
7918
  },
7919
7920
  /* VEX_LEN_XOP_09_D6 */
7921
  {
7922
    { VEX_W_TABLE (VEX_W_XOP_09_D6_L_0) },
7923
  },
7924
7925
  /* VEX_LEN_XOP_09_D7 */
7926
  {
7927
    { VEX_W_TABLE (VEX_W_XOP_09_D7_L_0) },
7928
  },
7929
7930
  /* VEX_LEN_XOP_09_DB */
7931
  {
7932
    { VEX_W_TABLE (VEX_W_XOP_09_DB_L_0) },
7933
  },
7934
7935
  /* VEX_LEN_XOP_09_E1 */
7936
  {
7937
    { VEX_W_TABLE (VEX_W_XOP_09_E1_L_0) },
7938
  },
7939
7940
  /* VEX_LEN_XOP_09_E2 */
7941
  {
7942
    { VEX_W_TABLE (VEX_W_XOP_09_E2_L_0) },
7943
  },
7944
7945
  /* VEX_LEN_XOP_09_E3 */
7946
  {
7947
    { VEX_W_TABLE (VEX_W_XOP_09_E3_L_0) },
7948
  },
7949
7950
  /* VEX_LEN_XOP_0A_12 */
7951
  {
7952
    { REG_TABLE (REG_XOP_0A_12_L_0) },
7953
  },
7954
};
7955
7956
#include "i386-dis-evex-len.h"
7957
7958
static const struct dis386 vex_w_table[][2] = {
7959
  {
7960
    /* VEX_W_0F41_L_1_M_1 */
7961
    { PREFIX_TABLE (PREFIX_VEX_0F41_L_1_W_0) },
7962
    { PREFIX_TABLE (PREFIX_VEX_0F41_L_1_W_1) },
7963
  },
7964
  {
7965
    /* VEX_W_0F42_L_1_M_1 */
7966
    { PREFIX_TABLE (PREFIX_VEX_0F42_L_1_W_0) },
7967
    { PREFIX_TABLE (PREFIX_VEX_0F42_L_1_W_1) },
7968
  },
7969
  {
7970
    /* VEX_W_0F44_L_0_M_1 */
7971
    { PREFIX_TABLE (PREFIX_VEX_0F44_L_0_W_0) },
7972
    { PREFIX_TABLE (PREFIX_VEX_0F44_L_0_W_1) },
7973
  },
7974
  {
7975
    /* VEX_W_0F45_L_1_M_1 */
7976
    { PREFIX_TABLE (PREFIX_VEX_0F45_L_1_W_0) },
7977
    { PREFIX_TABLE (PREFIX_VEX_0F45_L_1_W_1) },
7978
  },
7979
  {
7980
    /* VEX_W_0F46_L_1_M_1 */
7981
    { PREFIX_TABLE (PREFIX_VEX_0F46_L_1_W_0) },
7982
    { PREFIX_TABLE (PREFIX_VEX_0F46_L_1_W_1) },
7983
  },
7984
  {
7985
    /* VEX_W_0F47_L_1_M_1 */
7986
    { PREFIX_TABLE (PREFIX_VEX_0F47_L_1_W_0) },
7987
    { PREFIX_TABLE (PREFIX_VEX_0F47_L_1_W_1) },
7988
  },
7989
  {
7990
    /* VEX_W_0F4A_L_1_M_1 */
7991
    { PREFIX_TABLE (PREFIX_VEX_0F4A_L_1_W_0) },
7992
    { PREFIX_TABLE (PREFIX_VEX_0F4A_L_1_W_1) },
7993
  },
7994
  {
7995
    /* VEX_W_0F4B_L_1_M_1 */
7996
    { PREFIX_TABLE (PREFIX_VEX_0F4B_L_1_W_0) },
7997
    { PREFIX_TABLE (PREFIX_VEX_0F4B_L_1_W_1) },
7998
  },
7999
  {
8000
    /* VEX_W_0F90_L_0 */
8001
    { PREFIX_TABLE (PREFIX_VEX_0F90_L_0_W_0) },
8002
    { PREFIX_TABLE (PREFIX_VEX_0F90_L_0_W_1) },
8003
  },
8004
  {
8005
    /* VEX_W_0F91_L_0_M_0 */
8006
    { PREFIX_TABLE (PREFIX_VEX_0F91_L_0_W_0) },
8007
    { PREFIX_TABLE (PREFIX_VEX_0F91_L_0_W_1) },
8008
  },
8009
  {
8010
    /* VEX_W_0F92_L_0_M_1 */
8011
    { PREFIX_TABLE (PREFIX_VEX_0F92_L_0_W_0) },
8012
    { PREFIX_TABLE (PREFIX_VEX_0F92_L_0_W_1) },
8013
  },
8014
  {
8015
    /* VEX_W_0F93_L_0_M_1 */
8016
    { PREFIX_TABLE (PREFIX_VEX_0F93_L_0_W_0) },
8017
    { PREFIX_TABLE (PREFIX_VEX_0F93_L_0_W_1) },
8018
  },
8019
  {
8020
    /* VEX_W_0F98_L_0_M_1 */
8021
    { PREFIX_TABLE (PREFIX_VEX_0F98_L_0_W_0) },
8022
    { PREFIX_TABLE (PREFIX_VEX_0F98_L_0_W_1) },
8023
  },
8024
  {
8025
    /* VEX_W_0F99_L_0_M_1 */
8026
    { PREFIX_TABLE (PREFIX_VEX_0F99_L_0_W_0) },
8027
    { PREFIX_TABLE (PREFIX_VEX_0F99_L_0_W_1) },
8028
  },
8029
  {
8030
    /* VEX_W_0F380C  */
8031
    { "%XEvpermilps", { XM, Vex, EXx }, PREFIX_DATA },
8032
  },
8033
  {
8034
    /* VEX_W_0F380D  */
8035
    { "vpermilpd",  { XM, Vex, EXx }, PREFIX_DATA },
8036
  },
8037
  {
8038
    /* VEX_W_0F380E  */
8039
    { "vtestps",  { XM, EXx }, PREFIX_DATA },
8040
  },
8041
  {
8042
    /* VEX_W_0F380F  */
8043
    { "vtestpd",  { XM, EXx }, PREFIX_DATA },
8044
  },
8045
  {
8046
    /* VEX_W_0F3813 */
8047
    { "vcvtph2ps", { XM, EXxmmq }, PREFIX_DATA },
8048
  },
8049
  {
8050
    /* VEX_W_0F3816_L_1  */
8051
    { "vpermps",  { XM, Vex, EXx }, PREFIX_DATA },
8052
  },
8053
  {
8054
    /* VEX_W_0F3818 */
8055
    { "%XEvbroadcastss",  { XM, EXd }, PREFIX_DATA },
8056
  },
8057
  {
8058
    /* VEX_W_0F3819_L_1 */
8059
    { "vbroadcastsd", { XM, EXq }, PREFIX_DATA },
8060
  },
8061
  {
8062
    /* VEX_W_0F381A_L_1 */
8063
    { "vbroadcastf128", { XM, Mxmm }, PREFIX_DATA },
8064
  },
8065
  {
8066
    /* VEX_W_0F382C */
8067
    { "vmaskmovps", { XM, Vex, Mx }, PREFIX_DATA },
8068
  },
8069
  {
8070
    /* VEX_W_0F382D */
8071
    { "vmaskmovpd", { XM, Vex, Mx }, PREFIX_DATA },
8072
  },
8073
  {
8074
    /* VEX_W_0F382E */
8075
    { "vmaskmovps", { Mx, Vex, XM }, PREFIX_DATA },
8076
  },
8077
  {
8078
    /* VEX_W_0F382F */
8079
    { "vmaskmovpd", { Mx, Vex, XM }, PREFIX_DATA },
8080
  },
8081
  {
8082
    /* VEX_W_0F3836  */
8083
    { "vpermd",   { XM, Vex, EXx }, PREFIX_DATA },
8084
  },
8085
  {
8086
    /* VEX_W_0F3846 */
8087
    { "vpsravd",  { XM, Vex, EXx }, PREFIX_DATA },
8088
  },
8089
  {
8090
    /* VEX_W_0F3848_X86_64_L_0 */
8091
    { PREFIX_TABLE (PREFIX_VEX_0F3848_X86_64_L_0_W_0) },
8092
  },
8093
  {
8094
    /* VEX_W_0F3849_X86_64_L_0 */
8095
    { MOD_TABLE (MOD_VEX_0F3849_X86_64_L_0_W_0) },
8096
  },
8097
  {
8098
    /* VEX_W_0F384A_X86_64 */
8099
    { VEX_LEN_TABLE (VEX_LEN_0F384A_X86_64_W_0) },
8100
  },
8101
  {
8102
    /* VEX_W_0F384B_X86_64_L_0 */
8103
    { PREFIX_TABLE (PREFIX_VEX_0F384B_X86_64_L_0_W_0) },
8104
  },
8105
  {
8106
    /* VEX_W_0F3850 */
8107
    { PREFIX_TABLE (PREFIX_VEX_0F3850_W_0) },
8108
  },
8109
  {
8110
    /* VEX_W_0F3851 */
8111
    { PREFIX_TABLE (PREFIX_VEX_0F3851_W_0) },
8112
  },
8113
  {
8114
    /* VEX_W_0F3852 */
8115
    { "%XVvpdpwssd",  { XM, Vex, EXx }, PREFIX_DATA },
8116
  },
8117
  {
8118
    /* VEX_W_0F3853 */
8119
    { "%XVvpdpwssds", { XM, Vex, EXx }, PREFIX_DATA },
8120
  },
8121
  {
8122
    /* VEX_W_0F3858 */
8123
    { "%XEvpbroadcastd", { XM, EXd }, PREFIX_DATA },
8124
  },
8125
  {
8126
    /* VEX_W_0F3859 */
8127
    { "vpbroadcastq", { XM, EXq }, PREFIX_DATA },
8128
  },
8129
  {
8130
    /* VEX_W_0F385A_L_0 */
8131
    { "vbroadcasti128", { XM, Mxmm }, PREFIX_DATA },
8132
  },
8133
  {
8134
    /* VEX_W_0F385C_X86_64_L_0 */
8135
    { PREFIX_TABLE (PREFIX_VEX_0F385C_X86_64_L_0_W_0) },
8136
  },
8137
  {
8138
    /* VEX_W_0F385E_X86_64_L_0 */
8139
    { PREFIX_TABLE (PREFIX_VEX_0F385E_X86_64_L_0_W_0) },
8140
  },
8141
  {
8142
    /* VEX_W_0F385F_X86_64_L_0 */
8143
    { PREFIX_TABLE (PREFIX_VEX_0F385F_X86_64_L_0_W_0) },
8144
  },
8145
  {
8146
    /* VEX_W_0F386B_X86_64_L_0 */
8147
    { PREFIX_TABLE (PREFIX_VEX_0F386B_X86_64_L_0_W_0) },
8148
  },
8149
  {
8150
    /* VEX_W_0F386C_X86_64_L_0 */
8151
    { PREFIX_TABLE (PREFIX_VEX_0F386C_X86_64_L_0_W_0) },
8152
  },
8153
  {
8154
    /* VEX_W_0F386E_X86_64_L_0 */
8155
    { PREFIX_TABLE (PREFIX_VEX_0F386E_X86_64_L_0_W_0) },
8156
  },
8157
  {
8158
    /* VEX_W_0F386F_X86_64_L_0 */
8159
    { PREFIX_TABLE (PREFIX_VEX_0F386F_X86_64_L_0_W_0) },
8160
  },
8161
  {
8162
    /* VEX_W_0F3872_P_1 */
8163
    { "%XVvcvtneps2bf16%XY", { XMM, EXx }, 0 },
8164
  },
8165
  {
8166
    /* VEX_W_0F3878 */
8167
    { "%XEvpbroadcastb",  { XM, EXb }, PREFIX_DATA },
8168
  },
8169
  {
8170
    /* VEX_W_0F3879 */
8171
    { "%XEvpbroadcastw",  { XM, EXw }, PREFIX_DATA },
8172
  },
8173
  {
8174
    /* VEX_W_0F38B0 */
8175
    { PREFIX_TABLE (PREFIX_VEX_0F38B0_W_0) },
8176
  },
8177
  {
8178
    /* VEX_W_0F38B1 */
8179
    { PREFIX_TABLE (PREFIX_VEX_0F38B1_W_0) },
8180
  },
8181
  {
8182
    /* VEX_W_0F38B4 */
8183
    { Bad_Opcode },
8184
    { "%XVvpmadd52luq", { XM, Vex, EXx }, PREFIX_DATA },
8185
  },
8186
  {
8187
    /* VEX_W_0F38B5 */
8188
    { Bad_Opcode },
8189
    { "%XVvpmadd52huq", { XM, Vex, EXx }, PREFIX_DATA },
8190
  },
8191
  {
8192
    /* VEX_W_0F38CB_P_3 */
8193
    { VEX_LEN_TABLE (VEX_LEN_0F38CB_P_3_W_0) },
8194
  },
8195
  {
8196
    /* VEX_W_0F38CC_P_3 */
8197
    { VEX_LEN_TABLE (VEX_LEN_0F38CC_P_3_W_0) },
8198
  },
8199
  {
8200
    /* VEX_W_0F38CD_P_3 */
8201
    { VEX_LEN_TABLE (VEX_LEN_0F38CD_P_3_W_0) },
8202
  },
8203
  {
8204
    /* VEX_W_0F38CF */
8205
    { "%XEvgf2p8mulb", { XM, Vex, EXx }, PREFIX_DATA },
8206
  },
8207
  {
8208
    /* VEX_W_0F38D2 */
8209
    { PREFIX_TABLE (PREFIX_VEX_0F38D2_W_0) },
8210
  },
8211
  {
8212
    /* VEX_W_0F38D3 */
8213
    { PREFIX_TABLE (PREFIX_VEX_0F38D3_W_0) },
8214
  },
8215
  {
8216
    /* VEX_W_0F38DA */
8217
    { PREFIX_TABLE (PREFIX_VEX_0F38DA_W_0) },
8218
  },
8219
  {
8220
    /* VEX_W_0F3A00_L_1 */
8221
    { Bad_Opcode },
8222
    { "%XEvpermq",    { XM, EXx, Ib }, PREFIX_DATA },
8223
  },
8224
  {
8225
    /* VEX_W_0F3A01_L_1 */
8226
    { Bad_Opcode },
8227
    { "%XEvpermpd", { XM, EXx, Ib }, PREFIX_DATA },
8228
  },
8229
  {
8230
    /* VEX_W_0F3A02 */
8231
    { "vpblendd", { XM, Vex, EXx, Ib }, PREFIX_DATA },
8232
  },
8233
  {
8234
    /* VEX_W_0F3A04 */
8235
    { "%XEvpermilps", { XM, EXx, Ib }, PREFIX_DATA },
8236
  },
8237
  {
8238
    /* VEX_W_0F3A05 */
8239
    { "vpermilpd",  { XM, EXx, Ib }, PREFIX_DATA },
8240
  },
8241
  {
8242
    /* VEX_W_0F3A06_L_1 */
8243
    { "vperm2f128", { XM, Vex, EXx, Ib }, PREFIX_DATA },
8244
  },
8245
  {
8246
    /* VEX_W_0F3A18_L_1 */
8247
    { "vinsertf128",  { XM, Vex, EXxmm, Ib }, PREFIX_DATA },
8248
  },
8249
  {
8250
    /* VEX_W_0F3A19_L_1 */
8251
    { "vextractf128", { EXxmm, XM, Ib }, PREFIX_DATA },
8252
  },
8253
  {
8254
    /* VEX_W_0F3A1D */
8255
    { "%XEvcvtps2ph", { EXxmmq, XM, EXxEVexS, Ib }, PREFIX_DATA },
8256
  },
8257
  {
8258
    /* VEX_W_0F3A38_L_1 */
8259
    { "vinserti128",  { XM, Vex, EXxmm, Ib }, PREFIX_DATA },
8260
  },
8261
  {
8262
    /* VEX_W_0F3A39_L_1 */
8263
    { "vextracti128", { EXxmm, XM, Ib }, PREFIX_DATA },
8264
  },
8265
  {
8266
    /* VEX_W_0F3A46_L_1 */
8267
    { "vperm2i128", { XM, Vex, EXx, Ib }, PREFIX_DATA },
8268
  },
8269
  {
8270
    /* VEX_W_0F3A4A */
8271
    { "vblendvps",  { XM, Vex, EXx, XMVexI4 }, PREFIX_DATA },
8272
  },
8273
  {
8274
    /* VEX_W_0F3A4B */
8275
    { "vblendvpd",  { XM, Vex, EXx, XMVexI4 }, PREFIX_DATA },
8276
  },
8277
  {
8278
    /* VEX_W_0F3A4C */
8279
    { "vpblendvb",  { XM, Vex, EXx, XMVexI4 }, PREFIX_DATA },
8280
  },
8281
  {
8282
    /* VEX_W_0F3ACE */
8283
    { Bad_Opcode },
8284
    { "%XEvgf2p8affineqb", { XM, Vex, EXx, Ib }, PREFIX_DATA },
8285
  },
8286
  {
8287
    /* VEX_W_0F3ACF */
8288
    { Bad_Opcode },
8289
    { "%XEvgf2p8affineinvqb",  { XM, Vex, EXx, Ib }, PREFIX_DATA },
8290
  },
8291
  {
8292
    /* VEX_W_0F3ADE */
8293
    { VEX_LEN_TABLE (VEX_LEN_0F3ADE_W_0) },
8294
  },
8295
  {
8296
    /* VEX_W_MAP5_F8_X86_64 */
8297
    { PREFIX_TABLE (PREFIX_VEX_MAP5_F8_X86_64_L_0_W_0) },
8298
  },
8299
  {
8300
    /* VEX_W_MAP5_F9_X86_64 */
8301
    { PREFIX_TABLE (PREFIX_VEX_MAP5_F9_X86_64_L_0_W_0) },
8302
  },
8303
  {
8304
    /* VEX_W_MAP5_FD_X86_64 */
8305
    { PREFIX_TABLE (PREFIX_VEX_MAP5_FD_X86_64_L_0_W_0) },
8306
  },
8307
  {
8308
    /* VEX_W_MAP7_F6_L_0 */
8309
    { REG_TABLE (REG_VEX_MAP7_F6_L_0_W_0) },
8310
  },
8311
  {
8312
    /* VEX_W_MAP7_F8_L_0 */
8313
    { REG_TABLE (REG_VEX_MAP7_F8_L_0_W_0) },
8314
  },
8315
  /* VEX_W_XOP_08_85_L_0 */
8316
  {
8317
    { "vpmacssww",  { XM, Vex, EXx, XMVexI4 }, 0 },
8318
  },
8319
  /* VEX_W_XOP_08_86_L_0 */
8320
  {
8321
    { "vpmacsswd",  { XM, Vex, EXx, XMVexI4 }, 0 },
8322
  },
8323
  /* VEX_W_XOP_08_87_L_0 */
8324
  {
8325
    { "vpmacssdql",   { XM, Vex, EXx, XMVexI4 }, 0 },
8326
  },
8327
  /* VEX_W_XOP_08_8E_L_0 */
8328
  {
8329
    { "vpmacssdd",  { XM, Vex, EXx, XMVexI4 }, 0 },
8330
  },
8331
  /* VEX_W_XOP_08_8F_L_0 */
8332
  {
8333
    { "vpmacssdqh",   { XM, Vex, EXx, XMVexI4 }, 0 },
8334
  },
8335
  /* VEX_W_XOP_08_95_L_0 */
8336
  {
8337
    { "vpmacsww",   { XM, Vex, EXx, XMVexI4 }, 0 },
8338
  },
8339
  /* VEX_W_XOP_08_96_L_0 */
8340
  {
8341
    { "vpmacswd",   { XM, Vex, EXx, XMVexI4 }, 0 },
8342
  },
8343
  /* VEX_W_XOP_08_97_L_0 */
8344
  {
8345
    { "vpmacsdql",  { XM, Vex, EXx, XMVexI4 }, 0 },
8346
  },
8347
  /* VEX_W_XOP_08_9E_L_0 */
8348
  {
8349
    { "vpmacsdd",   { XM, Vex, EXx, XMVexI4 }, 0 },
8350
  },
8351
  /* VEX_W_XOP_08_9F_L_0 */
8352
  {
8353
    { "vpmacsdqh",  { XM, Vex, EXx, XMVexI4 }, 0 },
8354
  },
8355
  /* VEX_W_XOP_08_A6_L_0 */
8356
  {
8357
    { "vpmadcsswd",   { XM, Vex, EXx, XMVexI4 }, 0 },
8358
  },
8359
  /* VEX_W_XOP_08_B6_L_0 */
8360
  {
8361
    { "vpmadcswd",  { XM, Vex, EXx, XMVexI4 }, 0 },
8362
  },
8363
  /* VEX_W_XOP_08_C0_L_0 */
8364
  {
8365
    { "vprotb",   { XM, EXx, Ib }, 0 },
8366
  },
8367
  /* VEX_W_XOP_08_C1_L_0 */
8368
  {
8369
    { "vprotw",   { XM, EXx, Ib }, 0 },
8370
  },
8371
  /* VEX_W_XOP_08_C2_L_0 */
8372
  {
8373
    { "vprotd",   { XM, EXx, Ib }, 0 },
8374
  },
8375
  /* VEX_W_XOP_08_C3_L_0 */
8376
  {
8377
    { "vprotq",   { XM, EXx, Ib }, 0 },
8378
  },
8379
  /* VEX_W_XOP_08_CC_L_0 */
8380
  {
8381
     { "vpcomb",  { XM, Vex, EXx, VPCOM }, 0 },
8382
  },
8383
  /* VEX_W_XOP_08_CD_L_0 */
8384
  {
8385
     { "vpcomw",  { XM, Vex, EXx, VPCOM }, 0 },
8386
  },
8387
  /* VEX_W_XOP_08_CE_L_0 */
8388
  {
8389
     { "vpcomd",  { XM, Vex, EXx, VPCOM }, 0 },
8390
  },
8391
  /* VEX_W_XOP_08_CF_L_0 */
8392
  {
8393
     { "vpcomq",  { XM, Vex, EXx, VPCOM }, 0 },
8394
  },
8395
  /* VEX_W_XOP_08_EC_L_0 */
8396
  {
8397
     { "vpcomub", { XM, Vex, EXx, VPCOM }, 0 },
8398
  },
8399
  /* VEX_W_XOP_08_ED_L_0 */
8400
  {
8401
     { "vpcomuw", { XM, Vex, EXx, VPCOM }, 0 },
8402
  },
8403
  /* VEX_W_XOP_08_EE_L_0 */
8404
  {
8405
     { "vpcomud", { XM, Vex, EXx, VPCOM }, 0 },
8406
  },
8407
  /* VEX_W_XOP_08_EF_L_0 */
8408
  {
8409
     { "vpcomuq", { XM, Vex, EXx, VPCOM }, 0 },
8410
  },
8411
  /* VEX_W_XOP_09_80 */
8412
  {
8413
    { "vfrczps",  { XM, EXx }, 0 },
8414
  },
8415
  /* VEX_W_XOP_09_81 */
8416
  {
8417
    { "vfrczpd",  { XM, EXx }, 0 },
8418
  },
8419
  /* VEX_W_XOP_09_82 */
8420
  {
8421
    { VEX_LEN_TABLE (VEX_LEN_XOP_09_82_W_0) },
8422
  },
8423
  /* VEX_W_XOP_09_83 */
8424
  {
8425
    { VEX_LEN_TABLE (VEX_LEN_XOP_09_83_W_0) },
8426
  },
8427
  /* VEX_W_XOP_09_C1_L_0 */
8428
  {
8429
    { "vphaddbw", { XM, EXxmm }, 0 },
8430
  },
8431
  /* VEX_W_XOP_09_C2_L_0 */
8432
  {
8433
    { "vphaddbd", { XM, EXxmm }, 0 },
8434
  },
8435
  /* VEX_W_XOP_09_C3_L_0 */
8436
  {
8437
    { "vphaddbq", { XM, EXxmm }, 0 },
8438
  },
8439
  /* VEX_W_XOP_09_C6_L_0 */
8440
  {
8441
    { "vphaddwd", { XM, EXxmm }, 0 },
8442
  },
8443
  /* VEX_W_XOP_09_C7_L_0 */
8444
  {
8445
    { "vphaddwq", { XM, EXxmm }, 0 },
8446
  },
8447
  /* VEX_W_XOP_09_CB_L_0 */
8448
  {
8449
    { "vphadddq", { XM, EXxmm }, 0 },
8450
  },
8451
  /* VEX_W_XOP_09_D1_L_0 */
8452
  {
8453
    { "vphaddubw",  { XM, EXxmm }, 0 },
8454
  },
8455
  /* VEX_W_XOP_09_D2_L_0 */
8456
  {
8457
    { "vphaddubd",  { XM, EXxmm }, 0 },
8458
  },
8459
  /* VEX_W_XOP_09_D3_L_0 */
8460
  {
8461
    { "vphaddubq",  { XM, EXxmm }, 0 },
8462
  },
8463
  /* VEX_W_XOP_09_D6_L_0 */
8464
  {
8465
    { "vphadduwd",  { XM, EXxmm }, 0 },
8466
  },
8467
  /* VEX_W_XOP_09_D7_L_0 */
8468
  {
8469
    { "vphadduwq",  { XM, EXxmm }, 0 },
8470
  },
8471
  /* VEX_W_XOP_09_DB_L_0 */
8472
  {
8473
    { "vphaddudq",  { XM, EXxmm }, 0 },
8474
  },
8475
  /* VEX_W_XOP_09_E1_L_0 */
8476
  {
8477
    { "vphsubbw", { XM, EXxmm }, 0 },
8478
  },
8479
  /* VEX_W_XOP_09_E2_L_0 */
8480
  {
8481
    { "vphsubwd", { XM, EXxmm }, 0 },
8482
  },
8483
  /* VEX_W_XOP_09_E3_L_0 */
8484
  {
8485
    { "vphsubdq", { XM, EXxmm }, 0 },
8486
  },
8487
8488
#include "i386-dis-evex-w.h"
8489
};
8490
8491
static const struct dis386 mod_table[][2] = {
8492
  {
8493
    /* MOD_62_32BIT */
8494
    { "bound{S|}",  { Gv, Ma }, 0 },
8495
    { EVEX_TABLE () },
8496
  },
8497
  {
8498
    /* MOD_C4_32BIT */
8499
    { "lesS",   { Gv, Mp }, 0 },
8500
    { VEX_C4_TABLE () },
8501
  },
8502
  {
8503
    /* MOD_C5_32BIT */
8504
    { "ldsS",   { Gv, Mp }, 0 },
8505
    { VEX_C5_TABLE () },
8506
  },
8507
  {
8508
    /* MOD_0F01_REG_0 */
8509
    { X86_64_TABLE (X86_64_0F01_REG_0) },
8510
    { RM_TABLE (RM_0F01_REG_0) },
8511
  },
8512
  {
8513
    /* MOD_0F01_REG_1 */
8514
    { X86_64_TABLE (X86_64_0F01_REG_1) },
8515
    { RM_TABLE (RM_0F01_REG_1) },
8516
  },
8517
  {
8518
    /* MOD_0F01_REG_2 */
8519
    { X86_64_TABLE (X86_64_0F01_REG_2) },
8520
    { RM_TABLE (RM_0F01_REG_2) },
8521
  },
8522
  {
8523
    /* MOD_0F01_REG_3 */
8524
    { X86_64_TABLE (X86_64_0F01_REG_3) },
8525
    { RM_TABLE (RM_0F01_REG_3) },
8526
  },
8527
  {
8528
    /* MOD_0F01_REG_5 */
8529
    { PREFIX_TABLE (PREFIX_0F01_REG_5_MOD_0) },
8530
    { RM_TABLE (RM_0F01_REG_5_MOD_3) },
8531
  },
8532
  {
8533
    /* MOD_0F01_REG_7 */
8534
    { "invlpg",   { Mb }, 0 },
8535
    { RM_TABLE (RM_0F01_REG_7_MOD_3) },
8536
  },
8537
  {
8538
    /* MOD_0F12_PREFIX_0 */
8539
    { "%XEVmovlpYX",  { XM, Vex, EXq }, 0 },
8540
    { "%XEVmovhlpY%XS", { XM, Vex, EXq }, 0 },
8541
  },
8542
  {
8543
    /* MOD_0F16_PREFIX_0 */
8544
    { "%XEVmovhpYX",  { XM, Vex, EXq }, 0 },
8545
    { "%XEVmovlhpY%XS", { XM, Vex, EXq }, 0 },
8546
  },
8547
  {
8548
    /* MOD_0F18_REG_0 */
8549
    { "prefetchnta",  { Mb }, 0 },
8550
    { "nopQ",   { Ev }, 0 },
8551
  },
8552
  {
8553
    /* MOD_0F18_REG_1 */
8554
    { "prefetcht0", { Mb }, 0 },
8555
    { "nopQ",   { Ev }, 0 },
8556
  },
8557
  {
8558
    /* MOD_0F18_REG_2 */
8559
    { "prefetcht1", { Mb }, 0 },
8560
    { "nopQ",   { Ev }, 0 },
8561
  },
8562
  {
8563
    /* MOD_0F18_REG_3 */
8564
    { "prefetcht2", { Mb }, 0 },
8565
    { "nopQ",   { Ev }, 0 },
8566
  },
8567
  {
8568
    /* MOD_0F18_REG_4 */
8569
    { "prefetchrst2", { Mb }, 0 },
8570
    { "nopQ",   { Ev }, 0 },
8571
  },
8572
  {
8573
    /* MOD_0F18_REG_6 */
8574
    { X86_64_TABLE (X86_64_0F18_REG_6_MOD_0) },
8575
    { "nopQ",   { Ev }, 0 },
8576
  },
8577
  {
8578
    /* MOD_0F18_REG_7 */
8579
    { X86_64_TABLE (X86_64_0F18_REG_7_MOD_0) },
8580
    { "nopQ",   { Ev }, 0 },
8581
  },
8582
  {
8583
    /* MOD_0F1A_PREFIX_0 */
8584
    { "bndldx",   { Gbnd, Mv_bnd }, 0 },
8585
    { "nopQ",   { Ev }, 0 },
8586
  },
8587
  {
8588
    /* MOD_0F1B_PREFIX_0 */
8589
    { "bndstx",   { Mv_bnd, Gbnd }, 0 },
8590
    { "nopQ",   { Ev }, 0 },
8591
  },
8592
  {
8593
    /* MOD_0F1B_PREFIX_1 */
8594
    { "bndmk",    { Gbnd, Mv_bnd }, 0 },
8595
    { "nopQ",   { Ev }, PREFIX_IGNORED },
8596
  },
8597
  {
8598
    /* MOD_0F1C_PREFIX_0 */
8599
    { REG_TABLE (REG_0F1C_P_0_MOD_0) },
8600
    { "nopQ",   { Ev }, 0 },
8601
  },
8602
  {
8603
    /* MOD_0F1E_PREFIX_1 */
8604
    { "nopQ",   { Ev }, PREFIX_IGNORED },
8605
    { REG_TABLE (REG_0F1E_P_1_MOD_3) },
8606
  },
8607
  {
8608
    /* MOD_0FAE_REG_0 */
8609
    { "fxsave",   { FXSAVE }, 0 },
8610
    { PREFIX_TABLE (PREFIX_0FAE_REG_0_MOD_3) },
8611
  },
8612
  {
8613
    /* MOD_0FAE_REG_1 */
8614
    { "fxrstor",  { FXSAVE }, 0 },
8615
    { PREFIX_TABLE (PREFIX_0FAE_REG_1_MOD_3) },
8616
  },
8617
  {
8618
    /* MOD_0FAE_REG_2 */
8619
    { "ldmxcsr",  { Md }, 0 },
8620
    { PREFIX_TABLE (PREFIX_0FAE_REG_2_MOD_3) },
8621
  },
8622
  {
8623
    /* MOD_0FAE_REG_3 */
8624
    { "stmxcsr",  { Md }, 0 },
8625
    { PREFIX_TABLE (PREFIX_0FAE_REG_3_MOD_3) },
8626
  },
8627
  {
8628
    /* MOD_0FAE_REG_4 */
8629
    { PREFIX_TABLE (PREFIX_0FAE_REG_4_MOD_0) },
8630
    { PREFIX_TABLE (PREFIX_0FAE_REG_4_MOD_3) },
8631
  },
8632
  {
8633
    /* MOD_0FAE_REG_5 */
8634
    { "xrstor",   { FXSAVE }, PREFIX_OPCODE | PREFIX_REX2_ILLEGAL },
8635
    { PREFIX_TABLE (PREFIX_0FAE_REG_5_MOD_3) },
8636
  },
8637
  {
8638
    /* MOD_0FAE_REG_6 */
8639
    { PREFIX_TABLE (PREFIX_0FAE_REG_6_MOD_0) },
8640
    { PREFIX_TABLE (PREFIX_0FAE_REG_6_MOD_3) },
8641
  },
8642
  {
8643
    /* MOD_0FAE_REG_7 */
8644
    { PREFIX_TABLE (PREFIX_0FAE_REG_7_MOD_0) },
8645
    { RM_TABLE (RM_0FAE_REG_7_MOD_3) },
8646
  },
8647
  {
8648
    /* MOD_0FC7_REG_6 */
8649
    { PREFIX_TABLE (PREFIX_0FC7_REG_6_MOD_0) },
8650
    { PREFIX_TABLE (PREFIX_0FC7_REG_6_MOD_3) }
8651
  },
8652
  {
8653
    /* MOD_0FC7_REG_7 */
8654
    { "vmptrst",  { Mq }, 0 },
8655
    { PREFIX_TABLE (PREFIX_0FC7_REG_7_MOD_3) }
8656
  },
8657
  {
8658
    /* MOD_0F38DC_PREFIX_1 */
8659
    { "aesenc128kl",    { XM, M }, 0 },
8660
    { "loadiwkey",      { XM, EXx }, 0 },
8661
  },
8662
  /* MOD_0F38F8 */
8663
  {
8664
    { PREFIX_TABLE (PREFIX_0F38F8_M_0) },
8665
    { X86_64_TABLE (X86_64_0F38F8_M_1) },
8666
  },
8667
  {
8668
    /* MOD_VEX_0F3849_X86_64_L_0_W_0 */
8669
    { PREFIX_TABLE (PREFIX_VEX_0F3849_X86_64_L_0_W_0_M_0) },
8670
    { PREFIX_TABLE (PREFIX_VEX_0F3849_X86_64_L_0_W_0_M_1) },
8671
  },
8672
8673
#include "i386-dis-evex-mod.h"
8674
};
8675
8676
static const struct dis386 rm_table[][8] = {
8677
  {
8678
    /* RM_C6_REG_7 */
8679
    { "xabort",   { Skip_MODRM, Ib }, 0 },
8680
  },
8681
  {
8682
    /* RM_C7_REG_7 */
8683
    { "xbeginT",  { Skip_MODRM, Jdqw }, 0 },
8684
  },
8685
  {
8686
    /* RM_0F01_REG_0 */
8687
    { "enclv",    { Skip_MODRM }, 0 },
8688
    { "vmcall",   { Skip_MODRM }, 0 },
8689
    { "vmlaunch", { Skip_MODRM }, 0 },
8690
    { "vmresume", { Skip_MODRM }, 0 },
8691
    { "vmxoff",   { Skip_MODRM }, 0 },
8692
    { "pconfig",  { Skip_MODRM }, 0 },
8693
    { PREFIX_TABLE (PREFIX_0F01_REG_0_MOD_3_RM_6) },
8694
    { PREFIX_TABLE (PREFIX_0F01_REG_0_MOD_3_RM_7) },
8695
  },
8696
  {
8697
    /* RM_0F01_REG_1 */
8698
    { "monitor",  { { OP_Monitor, 0 } }, 0 },
8699
    { "mwait",    { { OP_Mwait, 0 } }, 0 },
8700
    { PREFIX_TABLE (PREFIX_0F01_REG_1_RM_2) },
8701
    { "stac",   { Skip_MODRM }, 0 },
8702
    { PREFIX_TABLE (PREFIX_0F01_REG_1_RM_4) },
8703
    { PREFIX_TABLE (PREFIX_0F01_REG_1_RM_5) },
8704
    { PREFIX_TABLE (PREFIX_0F01_REG_1_RM_6) },
8705
    { PREFIX_TABLE (PREFIX_0F01_REG_1_RM_7) },
8706
  },
8707
  {
8708
    /* RM_0F01_REG_2 */
8709
    { "xgetbv",   { Skip_MODRM }, 0 },
8710
    { "xsetbv",   { Skip_MODRM }, 0 },
8711
    { Bad_Opcode },
8712
    { Bad_Opcode },
8713
    { "vmfunc",   { Skip_MODRM }, 0 },
8714
    { "xend",   { Skip_MODRM }, 0 },
8715
    { "xtest",    { Skip_MODRM }, 0 },
8716
    { "enclu",    { Skip_MODRM }, 0 },
8717
  },
8718
  {
8719
    /* RM_0F01_REG_3 */
8720
    { "vmrun",    { Skip_MODRM }, 0 },
8721
    { PREFIX_TABLE (PREFIX_0F01_REG_3_RM_1) },
8722
    { "vmload",   { Skip_MODRM }, 0 },
8723
    { "vmsave",   { Skip_MODRM }, 0 },
8724
    { "stgi",   { Skip_MODRM }, 0 },
8725
    { "clgi",   { Skip_MODRM }, 0 },
8726
    { "skinit",   { Skip_MODRM }, 0 },
8727
    { "invlpga",  { Skip_MODRM }, 0 },
8728
  },
8729
  {
8730
    /* RM_0F01_REG_5_MOD_3 */
8731
    { PREFIX_TABLE (PREFIX_0F01_REG_5_MOD_3_RM_0) },
8732
    { PREFIX_TABLE (PREFIX_0F01_REG_5_MOD_3_RM_1) },
8733
    { PREFIX_TABLE (PREFIX_0F01_REG_5_MOD_3_RM_2) },
8734
    { Bad_Opcode },
8735
    { PREFIX_TABLE (PREFIX_0F01_REG_5_MOD_3_RM_4) },
8736
    { PREFIX_TABLE (PREFIX_0F01_REG_5_MOD_3_RM_5) },
8737
    { PREFIX_TABLE (PREFIX_0F01_REG_5_MOD_3_RM_6) },
8738
    { PREFIX_TABLE (PREFIX_0F01_REG_5_MOD_3_RM_7) },
8739
  },
8740
  {
8741
    /* RM_0F01_REG_7_MOD_3 */
8742
    { "swapgs",   { Skip_MODRM }, 0  },
8743
    { "rdtscp",   { Skip_MODRM }, 0  },
8744
    { PREFIX_TABLE (PREFIX_0F01_REG_7_MOD_3_RM_2) },
8745
    { "mwaitx",   { { OP_Mwait, eBX_reg } }, PREFIX_OPCODE },
8746
    { "clzero",   { Skip_MODRM }, 0  },
8747
    { PREFIX_TABLE (PREFIX_0F01_REG_7_MOD_3_RM_5) },
8748
    { PREFIX_TABLE (PREFIX_0F01_REG_7_MOD_3_RM_6) },
8749
    { PREFIX_TABLE (PREFIX_0F01_REG_7_MOD_3_RM_7) },
8750
  },
8751
  {
8752
    /* RM_0F1E_P_1_MOD_3_REG_7 */
8753
    { "nopQ",   { Ev }, PREFIX_IGNORED },
8754
    { "nopQ",   { Ev }, PREFIX_IGNORED },
8755
    { "endbr64",  { Skip_MODRM }, 0 },
8756
    { "endbr32",  { Skip_MODRM }, 0 },
8757
    { "nopQ",   { Ev }, PREFIX_IGNORED },
8758
    { "nopQ",   { Ev }, PREFIX_IGNORED },
8759
    { "nopQ",   { Ev }, PREFIX_IGNORED },
8760
    { "nopQ",   { Ev }, PREFIX_IGNORED },
8761
  },
8762
  {
8763
    /* RM_0FAE_REG_6_MOD_3 */
8764
    { "mfence",   { Skip_MODRM }, 0 },
8765
  },
8766
  {
8767
    /* RM_0FAE_REG_7_MOD_3 */
8768
    { "sfence",   { Skip_MODRM }, 0 },
8769
  },
8770
  {
8771
    /* RM_0F3A0F_P_1_R_0 */
8772
    { "hreset",   { Skip_MODRM, Ib }, 0 },
8773
  },
8774
  {
8775
    /* RM_VEX_0F3849_X86_64_L_0_W_0_M_1_P_0_R_0 */
8776
    { "tilerelease",  { Skip_MODRM }, 0 },
8777
  },
8778
  {
8779
    /* RM_VEX_0F3849_X86_64_L_0_W_0_M_1_P_3 */
8780
    { "tilezero", { TMM, Skip_MODRM }, 0 },
8781
  },
8782
};
8783
8784
0
#define INTERNAL_DISASSEMBLER_ERROR _("<internal disassembler error>")
8785
8786
/* The values used here must be non-zero, fit in 'unsigned char', and not be
8787
   in conflict with actual prefix opcodes.  */
8788
922
#define REP_PREFIX  0x01
8789
3.95k
#define XACQUIRE_PREFIX 0x02
8790
5.66k
#define XRELEASE_PREFIX 0x03
8791
4.12k
#define BND_PREFIX  0x04
8792
6.00k
#define NOTRACK_PREFIX  0x05
8793
8794
static enum {
8795
  ckp_okay,
8796
  ckp_bogus,
8797
  ckp_fetch_error,
8798
}
8799
ckprefix (instr_info *ins)
8800
4.65M
{
8801
4.65M
  int i, length;
8802
4.65M
  uint8_t newrex;
8803
8804
4.65M
  i = 0;
8805
4.65M
  length = 0;
8806
  /* The maximum instruction length is 15bytes.  */
8807
5.60M
  while (length < MAX_CODE_LENGTH - 1)
8808
5.60M
    {
8809
5.60M
      if (!fetch_code (ins->info, ins->codep + 1))
8810
3.55k
  return ckp_fetch_error;
8811
5.59M
      newrex = 0;
8812
5.59M
      switch (*ins->codep)
8813
5.59M
  {
8814
  /* REX prefixes family.  */
8815
23.8k
  case 0x40:
8816
56.4k
  case 0x41:
8817
78.4k
  case 0x42:
8818
96.2k
  case 0x43:
8819
116k
  case 0x44:
8820
139k
  case 0x45:
8821
167k
  case 0x46:
8822
186k
  case 0x47:
8823
241k
  case 0x48:
8824
278k
  case 0x49:
8825
295k
  case 0x4a:
8826
303k
  case 0x4b:
8827
326k
  case 0x4c:
8828
346k
  case 0x4d:
8829
369k
  case 0x4e:
8830
416k
  case 0x4f:
8831
416k
    if (ins->address_mode == mode_64bit)
8832
376k
      newrex = *ins->codep;
8833
40.3k
    else
8834
40.3k
      return ckp_okay;
8835
376k
    ins->last_rex_prefix = i;
8836
376k
    break;
8837
  /* REX2 must be the last prefix. */
8838
48.0k
  case REX2_OPCODE:
8839
48.0k
    if (ins->address_mode == mode_64bit)
8840
46.4k
      {
8841
46.4k
        if (ins->last_rex_prefix >= 0)
8842
777
    return ckp_bogus;
8843
8844
45.6k
        ins->codep++;
8845
45.6k
        if (!fetch_code (ins->info, ins->codep + 1))
8846
115
    return ckp_fetch_error;
8847
45.5k
        ins->rex2_payload = *ins->codep;
8848
45.5k
        ins->rex2 = ins->rex2_payload >> 4;
8849
45.5k
        ins->rex = (ins->rex2_payload & 0xf) | REX_OPCODE;
8850
45.5k
        ins->codep++;
8851
45.5k
        ins->last_rex2_prefix = i;
8852
45.5k
        ins->all_prefixes[i] = REX2_OPCODE;
8853
45.5k
      }
8854
47.1k
    return ckp_okay;
8855
37.9k
  case 0xf3:
8856
37.9k
    ins->prefixes |= PREFIX_REPZ;
8857
37.9k
    ins->last_repz_prefix = i;
8858
37.9k
    break;
8859
50.4k
  case 0xf2:
8860
50.4k
    ins->prefixes |= PREFIX_REPNZ;
8861
50.4k
    ins->last_repnz_prefix = i;
8862
50.4k
    break;
8863
49.3k
  case 0xf0:
8864
49.3k
    ins->prefixes |= PREFIX_LOCK;
8865
49.3k
    ins->last_lock_prefix = i;
8866
49.3k
    break;
8867
49.6k
  case 0x2e:
8868
49.6k
    ins->prefixes |= PREFIX_CS;
8869
49.6k
    ins->last_seg_prefix = i;
8870
49.6k
    if (ins->address_mode != mode_64bit)
8871
13.0k
      ins->active_seg_prefix = PREFIX_CS;
8872
49.6k
    break;
8873
22.7k
  case 0x36:
8874
22.7k
    ins->prefixes |= PREFIX_SS;
8875
22.7k
    ins->last_seg_prefix = i;
8876
22.7k
    if (ins->address_mode != mode_64bit)
8877
5.30k
      ins->active_seg_prefix = PREFIX_SS;
8878
22.7k
    break;
8879
107k
  case 0x3e:
8880
107k
    ins->prefixes |= PREFIX_DS;
8881
107k
    ins->last_seg_prefix = i;
8882
107k
    if (ins->address_mode != mode_64bit)
8883
15.0k
      ins->active_seg_prefix = PREFIX_DS;
8884
107k
    break;
8885
35.2k
  case 0x26:
8886
35.2k
    ins->prefixes |= PREFIX_ES;
8887
35.2k
    ins->last_seg_prefix = i;
8888
35.2k
    if (ins->address_mode != mode_64bit)
8889
9.79k
      ins->active_seg_prefix = PREFIX_ES;
8890
35.2k
    break;
8891
74.4k
  case 0x64:
8892
74.4k
    ins->prefixes |= PREFIX_FS;
8893
74.4k
    ins->last_seg_prefix = i;
8894
74.4k
    ins->active_seg_prefix = PREFIX_FS;
8895
74.4k
    break;
8896
60.3k
  case 0x65:
8897
60.3k
    ins->prefixes |= PREFIX_GS;
8898
60.3k
    ins->last_seg_prefix = i;
8899
60.3k
    ins->active_seg_prefix = PREFIX_GS;
8900
60.3k
    break;
8901
80.7k
  case 0x66:
8902
80.7k
    ins->prefixes |= PREFIX_DATA;
8903
80.7k
    ins->last_data_prefix = i;
8904
80.7k
    break;
8905
102k
  case 0x67:
8906
102k
    ins->prefixes |= PREFIX_ADDR;
8907
102k
    ins->last_addr_prefix = i;
8908
102k
    break;
8909
20.9k
  case FWAIT_OPCODE:
8910
    /* fwait is really an instruction.  If there are prefixes
8911
       before the fwait, they belong to the fwait, *not* to the
8912
       following instruction.  */
8913
20.9k
    ins->fwait_prefix = i;
8914
20.9k
    if (ins->prefixes || ins->rex)
8915
8.45k
      {
8916
8.45k
        ins->prefixes |= PREFIX_FWAIT;
8917
8.45k
        ins->codep++;
8918
        /* This ensures that the previous REX prefixes are noticed
8919
     as unused prefixes, as in the return case below.  */
8920
8.45k
        return ins->rex ? ckp_bogus : ckp_okay;
8921
8.45k
      }
8922
12.4k
    ins->prefixes = PREFIX_FWAIT;
8923
12.4k
    break;
8924
4.44M
  default:
8925
4.44M
    return ckp_okay;
8926
5.59M
  }
8927
      /* Rex is ignored when followed by another prefix.  */
8928
1.05M
      if (ins->rex)
8929
112k
  return ckp_bogus;
8930
946k
      if (*ins->codep != FWAIT_OPCODE)
8931
934k
  ins->all_prefixes[i++] = *ins->codep;
8932
946k
      ins->rex = newrex;
8933
946k
      ins->codep++;
8934
946k
      length++;
8935
946k
    }
8936
3.26k
  return ckp_bogus;
8937
4.65M
}
8938
8939
/* Return the name of the prefix byte PREF, or NULL if PREF is not a
8940
   prefix byte.  */
8941
8942
static const char *
8943
prefix_name (enum address_mode mode, uint8_t pref, int sizeflag)
8944
599k
{
8945
599k
  static const char *rexes [16] =
8946
599k
    {
8947
599k
      "rex",    /* 0x40 */
8948
599k
      "rex.B",    /* 0x41 */
8949
599k
      "rex.X",    /* 0x42 */
8950
599k
      "rex.XB",   /* 0x43 */
8951
599k
      "rex.R",    /* 0x44 */
8952
599k
      "rex.RB",   /* 0x45 */
8953
599k
      "rex.RX",   /* 0x46 */
8954
599k
      "rex.RXB",  /* 0x47 */
8955
599k
      "rex.W",    /* 0x48 */
8956
599k
      "rex.WB",   /* 0x49 */
8957
599k
      "rex.WX",   /* 0x4a */
8958
599k
      "rex.WXB",  /* 0x4b */
8959
599k
      "rex.WR",   /* 0x4c */
8960
599k
      "rex.WRB",  /* 0x4d */
8961
599k
      "rex.WRX",  /* 0x4e */
8962
599k
      "rex.WRXB", /* 0x4f */
8963
599k
    };
8964
8965
599k
  switch (pref)
8966
599k
    {
8967
    /* REX prefixes family.  */
8968
15.0k
    case 0x40:
8969
24.7k
    case 0x41:
8970
38.4k
    case 0x42:
8971
47.6k
    case 0x43:
8972
56.9k
    case 0x44:
8973
67.4k
    case 0x45:
8974
83.7k
    case 0x46:
8975
95.1k
    case 0x47:
8976
113k
    case 0x48:
8977
130k
    case 0x49:
8978
141k
    case 0x4a:
8979
146k
    case 0x4b:
8980
157k
    case 0x4c:
8981
168k
    case 0x4d:
8982
182k
    case 0x4e:
8983
209k
    case 0x4f:
8984
209k
      return rexes [pref - 0x40];
8985
23.0k
    case 0xf3:
8986
23.0k
      return "repz";
8987
27.0k
    case 0xf2:
8988
27.0k
      return "repnz";
8989
37.5k
    case 0xf0:
8990
37.5k
      return "lock";
8991
33.1k
    case 0x2e:
8992
33.1k
      return "cs";
8993
15.8k
    case 0x36:
8994
15.8k
      return "ss";
8995
34.0k
    case 0x3e:
8996
34.0k
      return "ds";
8997
22.1k
    case 0x26:
8998
22.1k
      return "es";
8999
44.7k
    case 0x64:
9000
44.7k
      return "fs";
9001
27.2k
    case 0x65:
9002
27.2k
      return "gs";
9003
35.4k
    case 0x66:
9004
35.4k
      return (sizeflag & DFLAG) ? "data16" : "data32";
9005
56.3k
    case 0x67:
9006
56.3k
      if (mode == mode_64bit)
9007
37.6k
  return (sizeflag & AFLAG) ? "addr32" : "addr64";
9008
18.7k
      else
9009
18.7k
  return (sizeflag & AFLAG) ? "addr16" : "addr32";
9010
189
    case FWAIT_OPCODE:
9011
189
      return "fwait";
9012
461
    case REP_PREFIX:
9013
461
      return "rep";
9014
1.89k
    case XACQUIRE_PREFIX:
9015
1.89k
      return "xacquire";
9016
2.63k
    case XRELEASE_PREFIX:
9017
2.63k
      return "xrelease";
9018
2.06k
    case BND_PREFIX:
9019
2.06k
      return "bnd";
9020
2.91k
    case NOTRACK_PREFIX:
9021
2.91k
      return "notrack";
9022
22.5k
    case REX2_OPCODE:
9023
22.5k
      return "rex2";
9024
314
    default:
9025
314
      return NULL;
9026
599k
    }
9027
599k
}
9028
9029
void
9030
print_i386_disassembler_options (FILE *stream)
9031
0
{
9032
0
  fprintf (stream, _("\n\
9033
0
The following i386/x86-64 specific disassembler options are supported for use\n\
9034
0
with the -M switch (multiple options should be separated by commas):\n"));
9035
9036
0
  fprintf (stream, _("  x86-64      Disassemble in 64bit mode\n"));
9037
0
  fprintf (stream, _("  i386        Disassemble in 32bit mode\n"));
9038
0
  fprintf (stream, _("  i8086       Disassemble in 16bit mode\n"));
9039
0
  fprintf (stream, _("  att         Display instruction in AT&T syntax\n"));
9040
0
  fprintf (stream, _("  intel       Display instruction in Intel syntax\n"));
9041
0
  fprintf (stream, _("  att-mnemonic  (AT&T syntax only)\n"
9042
0
         "              Display instruction with AT&T mnemonic\n"));
9043
0
  fprintf (stream, _("  intel-mnemonic  (AT&T syntax only)\n"
9044
0
         "              Display instruction with Intel mnemonic\n"));
9045
0
  fprintf (stream, _("  addr64      Assume 64bit address size\n"));
9046
0
  fprintf (stream, _("  addr32      Assume 32bit address size\n"));
9047
0
  fprintf (stream, _("  addr16      Assume 16bit address size\n"));
9048
0
  fprintf (stream, _("  data32      Assume 32bit data size\n"));
9049
0
  fprintf (stream, _("  data16      Assume 16bit data size\n"));
9050
0
  fprintf (stream, _("  suffix      Always display instruction suffix in AT&T syntax\n"));
9051
0
  fprintf (stream, _("  amd64       Display instruction in AMD64 ISA\n"));
9052
0
  fprintf (stream, _("  intel64     Display instruction in Intel64 ISA\n"));
9053
0
  fprintf (stream, _("  annotate-immediates  Annotate immediate operands that match symbols\n"));
9054
0
}
9055
9056
/* Bad opcode.  */
9057
static const struct dis386 bad_opcode = { "(bad)", { XX }, 0 };
9058
9059
/* Fetch error indicator.  */
9060
static const struct dis386 err_opcode = { NULL, { XX }, 0 };
9061
9062
static const struct dis386 map5_f8_opcode = { X86_64_TABLE (X86_64_VEX_MAP5_F8) };
9063
static const struct dis386 map5_f9_opcode = { X86_64_TABLE (X86_64_VEX_MAP5_F9) };
9064
static const struct dis386 map5_fd_opcode = { X86_64_TABLE (X86_64_VEX_MAP5_FD) };
9065
static const struct dis386 map7_f6_opcode = { VEX_LEN_TABLE (VEX_LEN_MAP7_F6) };
9066
static const struct dis386 map7_f8_opcode = { VEX_LEN_TABLE (VEX_LEN_MAP7_F8) };
9067
9068
/* Get a pointer to struct dis386 with a valid name.  */
9069
9070
static const struct dis386 *
9071
get_valid_dis386 (const struct dis386 *dp, instr_info *ins)
9072
5.53M
{
9073
5.53M
  int vindex, vex_table_index;
9074
9075
5.53M
  if (dp->name != NULL)
9076
3.14M
    return dp;
9077
9078
2.39M
  switch (dp->op[0].bytemode)
9079
2.39M
    {
9080
673k
    case USE_REG_TABLE:
9081
673k
      dp = &reg_table[dp->op[1].bytemode][ins->modrm.reg];
9082
673k
      break;
9083
9084
64.0k
    case USE_MOD_TABLE:
9085
64.0k
      vindex = ins->modrm.mod == 0x3 ? 1 : 0;
9086
64.0k
      dp = &mod_table[dp->op[1].bytemode][vindex];
9087
64.0k
      break;
9088
9089
8.13k
    case USE_RM_TABLE:
9090
8.13k
      dp = &rm_table[dp->op[1].bytemode][ins->modrm.rm];
9091
8.13k
      break;
9092
9093
117k
    case USE_PREFIX_TABLE:
9094
118k
    use_prefix_table:
9095
118k
      if (ins->need_vex)
9096
61.8k
  {
9097
    /* The prefix in VEX is implicit.  */
9098
61.8k
    switch (ins->vex.prefix)
9099
61.8k
      {
9100
14.3k
      case 0:
9101
14.3k
        vindex = 0;
9102
14.3k
        break;
9103
16.3k
      case REPE_PREFIX_OPCODE:
9104
16.3k
        vindex = 1;
9105
16.3k
        break;
9106
17.6k
      case DATA_PREFIX_OPCODE:
9107
17.6k
        vindex = 2;
9108
17.6k
        break;
9109
13.4k
      case REPNE_PREFIX_OPCODE:
9110
13.4k
        vindex = 3;
9111
13.4k
        break;
9112
0
      default:
9113
0
        abort ();
9114
0
        break;
9115
61.8k
      }
9116
61.8k
  }
9117
56.8k
      else
9118
56.8k
  {
9119
56.8k
    int last_prefix = -1;
9120
56.8k
    int prefix = 0;
9121
56.8k
    vindex = 0;
9122
    /* We check PREFIX_REPNZ and PREFIX_REPZ before PREFIX_DATA.
9123
       When there are multiple PREFIX_REPNZ and PREFIX_REPZ, the
9124
       last one wins.  */
9125
56.8k
    if ((ins->prefixes & (PREFIX_REPZ | PREFIX_REPNZ)) != 0)
9126
10.6k
      {
9127
10.6k
        if (ins->last_repz_prefix > ins->last_repnz_prefix)
9128
4.80k
    {
9129
4.80k
      vindex = 1;
9130
4.80k
      prefix = PREFIX_REPZ;
9131
4.80k
      last_prefix = ins->last_repz_prefix;
9132
4.80k
    }
9133
5.86k
        else
9134
5.86k
    {
9135
5.86k
      vindex = 3;
9136
5.86k
      prefix = PREFIX_REPNZ;
9137
5.86k
      last_prefix = ins->last_repnz_prefix;
9138
5.86k
    }
9139
9140
        /* Check if prefix should be ignored.  */
9141
10.6k
        if ((((prefix_table[dp->op[1].bytemode][vindex].prefix_requirement
9142
10.6k
         & PREFIX_IGNORED) >> PREFIX_IGNORED_SHIFT)
9143
10.6k
       & prefix) != 0
9144
2.64k
      && !prefix_table[dp->op[1].bytemode][vindex].name)
9145
562
    vindex = 0;
9146
10.6k
      }
9147
9148
56.8k
    if (vindex == 0 && (ins->prefixes & PREFIX_DATA) != 0)
9149
7.25k
      {
9150
7.25k
        vindex = 2;
9151
7.25k
        prefix = PREFIX_DATA;
9152
7.25k
        last_prefix = ins->last_data_prefix;
9153
7.25k
      }
9154
9155
56.8k
    if (vindex != 0)
9156
17.3k
      {
9157
17.3k
        ins->used_prefixes |= prefix;
9158
17.3k
        ins->all_prefixes[last_prefix] = 0;
9159
17.3k
      }
9160
56.8k
  }
9161
118k
      dp = &prefix_table[dp->op[1].bytemode][vindex];
9162
118k
      break;
9163
9164
4.15k
    case USE_X86_64_EVEX_FROM_VEX_TABLE:
9165
6.19k
    case USE_X86_64_EVEX_PFX_TABLE:
9166
7.57k
    case USE_X86_64_EVEX_W_TABLE:
9167
8.86k
    case USE_X86_64_EVEX_MEM_W_TABLE:
9168
8.86k
      ins->evex_type = evex_from_vex;
9169
      /* EVEX from VEX instructions are 64-bit only and require that EVEX.z,
9170
   EVEX.L'L, EVEX.b, and the lower 2 bits of EVEX.aaa must be 0.  */
9171
8.86k
      if (ins->address_mode != mode_64bit
9172
8.13k
    || (ins->vex.mask_register_specifier & 0x3) != 0
9173
6.75k
    || ins->vex.ll != 0
9174
6.32k
    || ins->vex.zeroing != 0
9175
5.98k
    || ins->vex.b)
9176
3.25k
  return &bad_opcode;
9177
9178
5.61k
      if (dp->op[0].bytemode == USE_X86_64_EVEX_PFX_TABLE)
9179
1.00k
  goto use_prefix_table;
9180
4.60k
      if (dp->op[0].bytemode == USE_X86_64_EVEX_W_TABLE)
9181
988
  goto use_vex_w_table;
9182
3.61k
      if (dp->op[0].bytemode == USE_X86_64_EVEX_MEM_W_TABLE)
9183
877
  {
9184
877
    if (ins->modrm.mod == 3)
9185
603
      return &bad_opcode;
9186
274
    goto use_vex_w_table;
9187
877
  }
9188
9189
      /* Fall through.  */
9190
620k
    case USE_X86_64_TABLE:
9191
620k
      vindex = ins->address_mode == mode_64bit ? 1 : 0;
9192
620k
      dp = &x86_64_table[dp->op[1].bytemode][vindex];
9193
620k
      break;
9194
9195
5.42k
    case USE_3BYTE_TABLE:
9196
5.42k
      if (ins->last_rex2_prefix >= 0)
9197
988
  return &err_opcode;
9198
4.43k
      if (!fetch_code (ins->info, ins->codep + 2))
9199
88
  return &err_opcode;
9200
4.34k
      vindex = *ins->codep++;
9201
4.34k
      dp = &three_byte_table[dp->op[1].bytemode][vindex];
9202
4.34k
      ins->end_codep = ins->codep;
9203
4.34k
      if (!fetch_modrm (ins))
9204
0
  return &err_opcode;
9205
4.34k
      break;
9206
9207
22.6k
    case USE_VEX_LEN_TABLE:
9208
22.6k
      if (!ins->need_vex)
9209
0
  abort ();
9210
9211
22.6k
      switch (ins->vex.length)
9212
22.6k
  {
9213
16.7k
  case 128:
9214
16.7k
    vindex = 0;
9215
16.7k
    break;
9216
730
  case 512:
9217
    /* This allows re-using in particular table entries where only
9218
       128-bit operand size (VEX.L=0 / EVEX.L'L=0) are valid.  */
9219
730
    if (ins->vex.evex)
9220
730
      {
9221
5.86k
  case 256:
9222
5.86k
        vindex = 1;
9223
5.86k
        break;
9224
730
      }
9225
  /* Fall through.  */
9226
0
  default:
9227
0
    abort ();
9228
0
    break;
9229
22.6k
  }
9230
9231
22.6k
      dp = &vex_len_table[dp->op[1].bytemode][vindex];
9232
22.6k
      break;
9233
9234
4.00k
    case USE_EVEX_LEN_TABLE:
9235
4.00k
      if (!ins->vex.evex)
9236
0
  abort ();
9237
9238
4.00k
      switch (ins->vex.length)
9239
4.00k
  {
9240
1.04k
  case 128:
9241
1.04k
    vindex = 0;
9242
1.04k
    break;
9243
862
  case 256:
9244
862
    vindex = 1;
9245
862
    break;
9246
2.09k
  case 512:
9247
2.09k
    vindex = 2;
9248
2.09k
    break;
9249
0
  default:
9250
0
    abort ();
9251
0
    break;
9252
4.00k
  }
9253
9254
4.00k
      dp = &evex_len_table[dp->op[1].bytemode][vindex];
9255
4.00k
      break;
9256
9257
24.7k
    case USE_XOP_8F_TABLE:
9258
24.7k
      if (!fetch_code (ins->info, ins->codep + 3))
9259
140
  return &err_opcode;
9260
24.6k
      ins->rex = ~(*ins->codep >> 5) & 0x7;
9261
9262
      /* VEX_TABLE_INDEX is the mmmmm part of the XOP byte 1 "RCB.mmmmm".  */
9263
24.6k
      switch ((*ins->codep & 0x1f))
9264
24.6k
  {
9265
17.6k
  default:
9266
17.6k
    dp = &bad_opcode;
9267
17.6k
    return dp;
9268
2.41k
  case 0x8:
9269
2.41k
    vex_table_index = XOP_08;
9270
2.41k
    break;
9271
2.68k
  case 0x9:
9272
2.68k
    vex_table_index = XOP_09;
9273
2.68k
    break;
9274
1.83k
  case 0xa:
9275
1.83k
    vex_table_index = XOP_0A;
9276
1.83k
    break;
9277
24.6k
  }
9278
6.93k
      ins->codep++;
9279
6.93k
      ins->vex.w = *ins->codep & 0x80;
9280
6.93k
      if (ins->vex.w && ins->address_mode == mode_64bit)
9281
2.18k
  ins->rex |= REX_W;
9282
9283
6.93k
      ins->vex.register_specifier = (~(*ins->codep >> 3)) & 0xf;
9284
6.93k
      if (ins->address_mode != mode_64bit)
9285
1.98k
  {
9286
    /* In 16/32-bit mode REX_B is silently ignored.  */
9287
1.98k
    ins->rex &= ~REX_B;
9288
1.98k
  }
9289
9290
6.93k
      ins->vex.length = (*ins->codep & 0x4) ? 256 : 128;
9291
6.93k
      switch ((*ins->codep & 0x3))
9292
6.93k
  {
9293
5.21k
  case 0:
9294
5.21k
    break;
9295
527
  case 1:
9296
527
    ins->vex.prefix = DATA_PREFIX_OPCODE;
9297
527
    break;
9298
705
  case 2:
9299
705
    ins->vex.prefix = REPE_PREFIX_OPCODE;
9300
705
    break;
9301
482
  case 3:
9302
482
    ins->vex.prefix = REPNE_PREFIX_OPCODE;
9303
482
    break;
9304
6.93k
  }
9305
6.93k
      ins->need_vex = 3;
9306
6.93k
      ins->codep++;
9307
6.93k
      vindex = *ins->codep++;
9308
6.93k
      dp = &xop_table[vex_table_index][vindex];
9309
9310
6.93k
      ins->end_codep = ins->codep;
9311
6.93k
      if (!fetch_modrm (ins))
9312
384
  return &err_opcode;
9313
9314
      /* No XOP encoding so far allows for a non-zero embedded prefix. Avoid
9315
   having to decode the bits for every otherwise valid encoding.  */
9316
6.54k
      if (ins->vex.prefix)
9317
1.49k
  return &bad_opcode;
9318
5.05k
      break;
9319
9320
65.0k
    case USE_VEX_C4_TABLE:
9321
      /* VEX prefix.  */
9322
65.0k
      if (!fetch_code (ins->info, ins->codep + 3))
9323
288
  return &err_opcode;
9324
64.7k
      ins->rex = ~(*ins->codep >> 5) & 0x7;
9325
64.7k
      switch ((*ins->codep & 0x1f))
9326
64.7k
  {
9327
33.1k
  default:
9328
33.1k
    dp = &bad_opcode;
9329
33.1k
    return dp;
9330
3.47k
  case 0x1:
9331
3.47k
    vex_table_index = VEX_0F;
9332
3.47k
    break;
9333
16.1k
  case 0x2:
9334
16.1k
    vex_table_index = VEX_0F38;
9335
16.1k
    break;
9336
6.28k
  case 0x3:
9337
6.28k
    vex_table_index = VEX_0F3A;
9338
6.28k
    break;
9339
4.06k
  case 0x5:
9340
4.06k
    vex_table_index = VEX_MAP5;
9341
4.06k
    break;
9342
1.57k
  case 0x7:
9343
1.57k
    vex_table_index = VEX_MAP7;
9344
1.57k
    break;
9345
64.7k
  }
9346
31.5k
      ins->codep++;
9347
31.5k
      ins->vex.w = *ins->codep & 0x80;
9348
31.5k
      if (ins->address_mode == mode_64bit)
9349
25.4k
  {
9350
25.4k
    if (ins->vex.w)
9351
7.97k
      ins->rex |= REX_W;
9352
25.4k
  }
9353
6.12k
      else
9354
6.12k
  {
9355
    /* For the 3-byte VEX prefix in 32-bit mode, the REX_B bit
9356
       is ignored, other REX bits are 0 and the highest bit in
9357
       VEX.vvvv is also ignored (but we mustn't clear it here).  */
9358
6.12k
    ins->rex = 0;
9359
6.12k
  }
9360
31.5k
      ins->vex.register_specifier = (~(*ins->codep >> 3)) & 0xf;
9361
31.5k
      ins->vex.length = (*ins->codep & 0x4) ? 256 : 128;
9362
31.5k
      switch ((*ins->codep & 0x3))
9363
31.5k
  {
9364
11.5k
  case 0:
9365
11.5k
    break;
9366
8.24k
  case 1:
9367
8.24k
    ins->vex.prefix = DATA_PREFIX_OPCODE;
9368
8.24k
    break;
9369
6.49k
  case 2:
9370
6.49k
    ins->vex.prefix = REPE_PREFIX_OPCODE;
9371
6.49k
    break;
9372
5.24k
  case 3:
9373
5.24k
    ins->vex.prefix = REPNE_PREFIX_OPCODE;
9374
5.24k
    break;
9375
31.5k
  }
9376
31.5k
      ins->need_vex = 3;
9377
31.5k
      ins->codep++;
9378
31.5k
      vindex = *ins->codep++;
9379
31.5k
      ins->condition_code = vindex & 0xf;
9380
31.5k
      if (vex_table_index != VEX_MAP7 && vex_table_index != VEX_MAP5)
9381
25.9k
  dp = &vex_table[vex_table_index][vindex];
9382
5.63k
      else if (vindex == 0xf6)
9383
607
  dp = &map7_f6_opcode;
9384
5.02k
      else if (vindex == 0xf8)
9385
1.85k
  {
9386
1.85k
    if (vex_table_index == VEX_MAP5)
9387
1.13k
      dp = &map5_f8_opcode;
9388
715
    else
9389
715
      dp = &map7_f8_opcode;
9390
1.85k
  }
9391
3.17k
      else if (vindex == 0xf9)
9392
264
  dp = &map5_f9_opcode;
9393
2.91k
      else if (vindex == 0xfd)
9394
518
  dp = &map5_fd_opcode;
9395
2.39k
      else
9396
2.39k
  dp = &bad_opcode;
9397
31.5k
      ins->end_codep = ins->codep;
9398
      /* There is no MODRM byte for VEX0F 77.  */
9399
31.5k
      if ((vex_table_index != VEX_0F || vindex != 0x77)
9400
31.2k
    && !fetch_modrm (ins))
9401
779
  return &err_opcode;
9402
30.7k
      break;
9403
9404
30.7k
    case USE_VEX_C5_TABLE:
9405
      /* VEX prefix.  */
9406
27.1k
      if (!fetch_code (ins->info, ins->codep + 2))
9407
219
  return &err_opcode;
9408
26.9k
      ins->rex = (*ins->codep & 0x80) ? 0 : REX_R;
9409
9410
      /* For the 2-byte VEX prefix in 32-bit mode, the highest bit in
9411
   VEX.vvvv is 1.  */
9412
26.9k
      ins->vex.register_specifier = (~(*ins->codep >> 3)) & 0xf;
9413
26.9k
      ins->vex.length = (*ins->codep & 0x4) ? 256 : 128;
9414
26.9k
      switch ((*ins->codep & 0x3))
9415
26.9k
  {
9416
5.00k
  case 0:
9417
5.00k
    break;
9418
13.8k
  case 1:
9419
13.8k
    ins->vex.prefix = DATA_PREFIX_OPCODE;
9420
13.8k
    break;
9421
2.74k
  case 2:
9422
2.74k
    ins->vex.prefix = REPE_PREFIX_OPCODE;
9423
2.74k
    break;
9424
5.39k
  case 3:
9425
5.39k
    ins->vex.prefix = REPNE_PREFIX_OPCODE;
9426
5.39k
    break;
9427
26.9k
  }
9428
26.9k
      ins->need_vex = 2;
9429
26.9k
      ins->codep++;
9430
26.9k
      vindex = *ins->codep++;
9431
26.9k
      dp = &vex_table[VEX_0F][vindex];
9432
26.9k
      ins->end_codep = ins->codep;
9433
      /* There is no MODRM byte for VEX 77.  */
9434
26.9k
      if (vindex != 0x77 && !fetch_modrm (ins))
9435
285
  return &err_opcode;
9436
26.6k
      break;
9437
9438
28.0k
    case USE_VEX_W_TABLE:
9439
29.2k
    use_vex_w_table:
9440
29.2k
      if (!ins->need_vex)
9441
0
  abort ();
9442
9443
29.2k
      dp = &vex_w_table[dp->op[1].bytemode][ins->vex.w];
9444
29.2k
      break;
9445
9446
139k
    case USE_EVEX_TABLE:
9447
139k
      ins->two_source_ops = false;
9448
      /* EVEX prefix.  */
9449
139k
      ins->vex.evex = true;
9450
139k
      if (!fetch_code (ins->info, ins->codep + 4))
9451
507
  return &err_opcode;
9452
      /* The first byte after 0x62.  */
9453
138k
      if (*ins->codep & 0x8)
9454
24.9k
  ins->rex2 |= REX_B;
9455
138k
      if (!(*ins->codep & 0x10))
9456
71.2k
  ins->rex2 |= REX_R;
9457
9458
138k
      ins->rex = ~(*ins->codep >> 5) & 0x7;
9459
138k
      switch (*ins->codep & 0x7)
9460
138k
  {
9461
7.51k
  default:
9462
7.51k
    return &bad_opcode;
9463
24.1k
  case 0x1:
9464
24.1k
    vex_table_index = EVEX_0F;
9465
24.1k
    break;
9466
39.0k
  case 0x2:
9467
39.0k
    vex_table_index = EVEX_0F38;
9468
39.0k
    break;
9469
15.7k
  case 0x3:
9470
15.7k
    vex_table_index = EVEX_0F3A;
9471
15.7k
    break;
9472
23.0k
  case 0x4:
9473
23.0k
    vex_table_index = EVEX_MAP4;
9474
23.0k
    ins->evex_type = evex_from_legacy;
9475
23.0k
    if (ins->address_mode != mode_64bit)
9476
938
      return &bad_opcode;
9477
22.1k
    ins->rex |= REX_OPCODE;
9478
22.1k
    break;
9479
10.8k
  case 0x5:
9480
10.8k
    vex_table_index = EVEX_MAP5;
9481
10.8k
    break;
9482
13.4k
  case 0x6:
9483
13.4k
    vex_table_index = EVEX_MAP6;
9484
13.4k
    break;
9485
4.62k
  case 0x7:
9486
4.62k
    vex_table_index = EVEX_MAP7;
9487
4.62k
    break;
9488
138k
  }
9489
9490
      /* The second byte after 0x62.  */
9491
130k
      ins->codep++;
9492
130k
      ins->vex.w = *ins->codep & 0x80;
9493
130k
      if (ins->vex.w && ins->address_mode == mode_64bit)
9494
46.9k
  ins->rex |= REX_W;
9495
9496
130k
      ins->vex.register_specifier = (~(*ins->codep >> 3)) & 0xf;
9497
9498
130k
      if (!(*ins->codep & 0x4))
9499
31.7k
  ins->rex2 |= REX_X;
9500
9501
130k
      switch ((*ins->codep & 0x3))
9502
130k
  {
9503
36.5k
  case 0:
9504
36.5k
    break;
9505
32.7k
  case 1:
9506
32.7k
    ins->vex.prefix = DATA_PREFIX_OPCODE;
9507
32.7k
    break;
9508
34.4k
  case 2:
9509
34.4k
    ins->vex.prefix = REPE_PREFIX_OPCODE;
9510
34.4k
    break;
9511
26.3k
  case 3:
9512
26.3k
    ins->vex.prefix = REPNE_PREFIX_OPCODE;
9513
26.3k
    break;
9514
130k
  }
9515
9516
      /* The third byte after 0x62.  */
9517
130k
      ins->codep++;
9518
9519
      /* Remember the static rounding bits.  */
9520
130k
      ins->vex.ll = (*ins->codep >> 5) & 3;
9521
130k
      ins->vex.b = *ins->codep & 0x10;
9522
9523
130k
      ins->vex.v = *ins->codep & 0x8;
9524
130k
      ins->vex.mask_register_specifier = *ins->codep & 0x7;
9525
130k
      ins->vex.scc = *ins->codep & 0xf;
9526
130k
      ins->vex.zeroing = *ins->codep & 0x80;
9527
      /* Set the NF bit for EVEX-Promoted instructions, this bit will be cleared
9528
   when it's an evex_default one.  */
9529
130k
      ins->vex.nf = *ins->codep & 0x4;
9530
9531
130k
      if (ins->address_mode != mode_64bit)
9532
11.0k
  {
9533
    /* Report bad for !evex_default and when two fixed values of evex
9534
       change.  */
9535
11.0k
    if (ins->evex_type != evex_default
9536
11.0k
        || (ins->rex2 & (REX_B | REX_X)))
9537
1.49k
      return &bad_opcode;
9538
    /* In 16/32-bit mode silently ignore following bits.  */
9539
9.50k
    ins->rex &= ~REX_B;
9540
9.50k
    ins->rex2 &= ~REX_R;
9541
9.50k
  }
9542
9543
128k
      ins->need_vex = 4;
9544
9545
128k
      ins->codep++;
9546
128k
      vindex = *ins->codep++;
9547
128k
      ins->condition_code = vindex & 0xf;
9548
128k
      if (vex_table_index != EVEX_MAP7)
9549
124k
  dp = &evex_table[vex_table_index][vindex];
9550
4.13k
      else if (vindex == 0xf8)
9551
323
  dp = &map7_f8_opcode;
9552
3.81k
      else if (vindex == 0xf6)
9553
623
  dp = &map7_f6_opcode;
9554
3.19k
      else
9555
3.19k
  dp = &bad_opcode;
9556
128k
      ins->end_codep = ins->codep;
9557
128k
      if (!fetch_modrm (ins))
9558
901
  return &err_opcode;
9559
9560
127k
      if (ins->modrm.mod == 3 && (ins->rex2 & REX_X))
9561
4.45k
  return &bad_opcode;
9562
9563
      /* Set vector length. For EVEX-promoted instructions, evex.ll == 0b00,
9564
   which has the same encoding as vex.length == 128 and they can share
9565
   the same processing with vex.length in OP_VEX.  */
9566
123k
      if (ins->modrm.mod == 3 && ins->vex.b && ins->evex_type != evex_from_legacy)
9567
12.6k
  ins->vex.length = 512;
9568
110k
      else
9569
110k
  {
9570
110k
    switch (ins->vex.ll)
9571
110k
      {
9572
40.5k
      case 0x0:
9573
40.5k
        ins->vex.length = 128;
9574
40.5k
        break;
9575
27.1k
      case 0x1:
9576
27.1k
        ins->vex.length = 256;
9577
27.1k
        break;
9578
31.1k
      case 0x2:
9579
31.1k
        ins->vex.length = 512;
9580
31.1k
        break;
9581
11.6k
      default:
9582
11.6k
        return &bad_opcode;
9583
110k
      }
9584
110k
  }
9585
111k
      break;
9586
9587
589k
    case 0:
9588
589k
      dp = &bad_opcode;
9589
589k
      break;
9590
9591
0
    default:
9592
0
      abort ();
9593
2.39M
    }
9594
9595
2.30M
  if (dp->name != NULL)
9596
1.23M
    return dp;
9597
1.06M
  else
9598
1.06M
    return get_valid_dis386 (dp, ins);
9599
2.30M
}
9600
9601
static bool
9602
get_sib (instr_info *ins, int sizeflag)
9603
4.51M
{
9604
  /* If modrm.mod == 3, operand must be register.  */
9605
4.51M
  if (ins->need_modrm
9606
2.70M
      && ((sizeflag & AFLAG) || ins->address_mode == mode_64bit)
9607
2.51M
      && ins->modrm.mod != 3
9608
1.81M
      && ins->modrm.rm == 4)
9609
125k
    {
9610
125k
      if (!fetch_code (ins->info, ins->codep + 2))
9611
1.70k
  return false;
9612
123k
      ins->sib.index = (ins->codep[1] >> 3) & 7;
9613
123k
      ins->sib.scale = (ins->codep[1] >> 6) & 3;
9614
123k
      ins->sib.base = ins->codep[1] & 7;
9615
123k
      ins->has_sib = true;
9616
123k
    }
9617
4.39M
  else
9618
4.39M
    ins->has_sib = false;
9619
9620
4.51M
  return true;
9621
4.51M
}
9622
9623
/* Like oappend_with_style (below) but always with text style.  */
9624
9625
static void
9626
oappend (instr_info *ins, const char *s)
9627
1.79M
{
9628
1.79M
  oappend_with_style (ins, s, dis_style_text);
9629
1.79M
}
9630
9631
/* Like oappend (above), but S is a string starting with '%'.  In
9632
   Intel syntax, the '%' is elided.  */
9633
9634
static void
9635
oappend_register (instr_info *ins, const char *s)
9636
5.45M
{
9637
5.45M
  oappend_with_style (ins, s + ins->intel_syntax, dis_style_register);
9638
5.45M
}
9639
9640
/* Wrap around a call to INS->info->fprintf_styled_func, printing FMT.
9641
   STYLE is the default style to use in the fprintf_styled_func calls,
9642
   however, FMT might include embedded style markers (see oappend_style),
9643
   these embedded markers are not printed, but instead change the style
9644
   used in the next fprintf_styled_func call.  */
9645
9646
static void ATTRIBUTE_PRINTF_3
9647
i386_dis_printf (const disassemble_info *info, enum disassembler_style style,
9648
     const char *fmt, ...)
9649
13.5M
{
9650
13.5M
  va_list ap;
9651
13.5M
  enum disassembler_style curr_style = style;
9652
13.5M
  const char *start, *curr;
9653
13.5M
  char staging_area[50];
9654
9655
13.5M
  va_start (ap, fmt);
9656
  /* In particular print_insn()'s processing of op_txt[] can hand rather long
9657
     strings here.  Bypass vsnprintf() in such cases to avoid capacity issues
9658
     with the staging area.  */
9659
13.5M
  if (strcmp (fmt, "%s"))
9660
7.75M
    {
9661
7.75M
      int res = vsnprintf (staging_area, sizeof (staging_area), fmt, ap);
9662
9663
7.75M
      va_end (ap);
9664
9665
7.75M
      if (res < 0)
9666
0
  return;
9667
9668
7.75M
      if ((size_t) res >= sizeof (staging_area))
9669
0
  abort ();
9670
9671
7.75M
      start = curr = staging_area;
9672
7.75M
    }
9673
5.82M
  else
9674
5.82M
    {
9675
5.82M
      start = curr = va_arg (ap, const char *);
9676
5.82M
      va_end (ap);
9677
5.82M
    }
9678
9679
13.5M
  do
9680
94.8M
    {
9681
94.8M
      if (*curr == '\0'
9682
81.2M
    || (*curr == STYLE_MARKER_CHAR
9683
81.2M
        && ISXDIGIT (*(curr + 1))
9684
12.2M
        && *(curr + 2) == STYLE_MARKER_CHAR))
9685
25.8M
  {
9686
    /* Output content between our START position and CURR.  */
9687
25.8M
    int len = curr - start;
9688
25.8M
    int n = (*info->fprintf_styled_func) (info->stream, curr_style,
9689
25.8M
            "%.*s", len, start);
9690
25.8M
    if (n < 0)
9691
0
      break;
9692
9693
25.8M
    if (*curr == '\0')
9694
13.5M
      break;
9695
9696
    /* Skip over the initial STYLE_MARKER_CHAR.  */
9697
12.2M
    ++curr;
9698
9699
    /* Update the CURR_STYLE.  As there are less than 16 styles, it
9700
       is possible, that if the input is corrupted in some way, that
9701
       we might set CURR_STYLE to an invalid value.  Don't worry
9702
       though, we check for this situation.  */
9703
12.2M
    if (*curr >= '0' && *curr <= '9')
9704
12.2M
      curr_style = (enum disassembler_style) (*curr - '0');
9705
0
    else if (*curr >= 'a' && *curr <= 'f')
9706
0
      curr_style = (enum disassembler_style) (*curr - 'a' + 10);
9707
0
    else
9708
0
      curr_style = dis_style_text;
9709
9710
    /* Check for an invalid style having been selected.  This should
9711
       never happen, but it doesn't hurt to be a little paranoid.  */
9712
12.2M
    if (curr_style > dis_style_comment_start)
9713
0
      curr_style = dis_style_text;
9714
9715
    /* Skip the hex character, and the closing STYLE_MARKER_CHAR.  */
9716
12.2M
    curr += 2;
9717
9718
    /* Reset the START to after the style marker.  */
9719
12.2M
    start = curr;
9720
12.2M
  }
9721
68.9M
      else
9722
68.9M
  ++curr;
9723
94.8M
    }
9724
13.5M
  while (true);
9725
13.5M
}
9726
9727
static int
9728
print_insn (bfd_vma pc, disassemble_info *info, int intel_syntax)
9729
4.65M
{
9730
4.65M
  const struct dis386 *dp;
9731
4.65M
  int i;
9732
4.65M
  int ret;
9733
4.65M
  char *op_txt[MAX_OPERANDS];
9734
4.65M
  int needcomma;
9735
4.65M
  bool intel_swap_2_3;
9736
4.65M
  int sizeflag, orig_sizeflag;
9737
4.65M
  const char *p;
9738
4.65M
  struct dis_private priv;
9739
4.65M
  int prefix_length;
9740
4.65M
  int op_count;
9741
4.65M
  instr_info ins = {
9742
4.65M
    .info = info,
9743
4.65M
    .intel_syntax = intel_syntax >= 0
9744
4.65M
        ? intel_syntax
9745
4.65M
        : (info->mach & bfd_mach_i386_intel_syntax) != 0,
9746
4.65M
    .intel_mnemonic = !SYSV386_COMPAT,
9747
4.65M
    .op_index[0 ... MAX_OPERANDS - 1] = -1,
9748
4.65M
    .start_pc = pc,
9749
4.65M
    .start_codep = priv.the_buffer,
9750
4.65M
    .codep = priv.the_buffer,
9751
4.65M
    .obufp = ins.obuf,
9752
4.65M
    .last_lock_prefix = -1,
9753
4.65M
    .last_repz_prefix = -1,
9754
4.65M
    .last_repnz_prefix = -1,
9755
4.65M
    .last_data_prefix = -1,
9756
4.65M
    .last_addr_prefix = -1,
9757
4.65M
    .last_rex_prefix = -1,
9758
4.65M
    .last_rex2_prefix = -1,
9759
4.65M
    .last_seg_prefix = -1,
9760
4.65M
    .fwait_prefix = -1,
9761
4.65M
  };
9762
4.65M
  char op_out[MAX_OPERANDS][MAX_OPERAND_BUFFER_SIZE];
9763
4.65M
  char cm_out[MAX_OPERANDS][COMMENT_BUFFER_SIZE];
9764
9765
4.65M
  priv.orig_sizeflag = AFLAG | DFLAG;
9766
4.65M
  if ((info->mach & bfd_mach_i386_i386) != 0)
9767
515k
    ins.address_mode = mode_32bit;
9768
4.14M
  else if (info->mach == bfd_mach_i386_i8086)
9769
300k
    {
9770
300k
      ins.address_mode = mode_16bit;
9771
300k
      priv.orig_sizeflag = 0;
9772
300k
    }
9773
3.84M
  else
9774
3.84M
    ins.address_mode = mode_64bit;
9775
9776
5.37M
  for (p = info->disassembler_options; p != NULL;)
9777
710k
    {
9778
710k
      if (startswith (p, "amd64"))
9779
1.50k
  ins.isa64 = amd64;
9780
709k
      else if (startswith (p, "intel64"))
9781
9.79k
  ins.isa64 = intel64;
9782
699k
      else if (startswith (p, "x86-64"))
9783
1.79k
  {
9784
1.79k
    ins.address_mode = mode_64bit;
9785
1.79k
    priv.orig_sizeflag |= AFLAG | DFLAG;
9786
1.79k
  }
9787
697k
      else if (startswith (p, "i386"))
9788
2.55k
  {
9789
2.55k
    ins.address_mode = mode_32bit;
9790
2.55k
    priv.orig_sizeflag |= AFLAG | DFLAG;
9791
2.55k
  }
9792
695k
      else if (startswith (p, "i8086"))
9793
25.3k
  {
9794
25.3k
    ins.address_mode = mode_16bit;
9795
25.3k
    priv.orig_sizeflag &= ~(AFLAG | DFLAG);
9796
25.3k
  }
9797
670k
      else if (startswith (p, "intel"))
9798
75.7k
  {
9799
75.7k
    if (startswith (p + 5, "-mnemonic"))
9800
398
      ins.intel_mnemonic = true;
9801
75.3k
    else
9802
75.3k
      ins.intel_syntax = 1;
9803
75.7k
  }
9804
594k
      else if (startswith (p, "att"))
9805
5.15k
  {
9806
5.15k
    ins.intel_syntax = 0;
9807
5.15k
    if (startswith (p + 3, "-mnemonic"))
9808
264
      ins.intel_mnemonic = false;
9809
5.15k
  }
9810
589k
      else if (startswith (p, "addr"))
9811
27.4k
  {
9812
27.4k
    if (ins.address_mode == mode_64bit)
9813
22.4k
      {
9814
22.4k
        if (p[4] == '3' && p[5] == '2')
9815
2.66k
    priv.orig_sizeflag &= ~AFLAG;
9816
19.7k
        else if (p[4] == '6' && p[5] == '4')
9817
336
    priv.orig_sizeflag |= AFLAG;
9818
22.4k
      }
9819
4.98k
    else
9820
4.98k
      {
9821
4.98k
        if (p[4] == '1' && p[5] == '6')
9822
572
    priv.orig_sizeflag &= ~AFLAG;
9823
4.40k
        else if (p[4] == '3' && p[5] == '2')
9824
1.70k
    priv.orig_sizeflag |= AFLAG;
9825
4.98k
      }
9826
27.4k
  }
9827
561k
      else if (startswith (p, "data"))
9828
20.9k
  {
9829
20.9k
    if (p[4] == '1' && p[5] == '6')
9830
13.2k
      priv.orig_sizeflag &= ~DFLAG;
9831
7.75k
    else if (p[4] == '3' && p[5] == '2')
9832
496
      priv.orig_sizeflag |= DFLAG;
9833
20.9k
  }
9834
540k
      else if (startswith (p, "suffix"))
9835
54.4k
  priv.orig_sizeflag |= SUFFIX_ALWAYS;
9836
486k
      else if (startswith (p, "annotate"))
9837
1.03k
  ins.annotate_immediates = true;
9838
9839
710k
      p = strchr (p, ',');
9840
710k
      if (p != NULL)
9841
238k
  p++;
9842
710k
    }
9843
9844
4.65M
  if (ins.address_mode == mode_64bit && sizeof (bfd_vma) < 8)
9845
0
    {
9846
0
      i386_dis_printf (info, dis_style_text, _("64-bit address is disabled"));
9847
0
      return -1;
9848
0
    }
9849
9850
4.65M
  if (ins.intel_syntax)
9851
1.15M
    {
9852
1.15M
      ins.open_char = '[';
9853
1.15M
      ins.close_char = ']';
9854
1.15M
      ins.separator_char = '+';
9855
1.15M
      ins.scale_char = '*';
9856
1.15M
    }
9857
3.49M
  else
9858
3.49M
    {
9859
3.49M
      ins.open_char = '(';
9860
3.49M
      ins.close_char =  ')';
9861
3.49M
      ins.separator_char = ',';
9862
3.49M
      ins.scale_char = ',';
9863
3.49M
    }
9864
9865
  /* The output looks better if we put 7 bytes on a line, since that
9866
     puts most long word instructions on a single line.  */
9867
4.65M
  info->bytes_per_line = 7;
9868
9869
4.65M
  info->private_data = &priv;
9870
4.65M
  priv.fetched = 0;
9871
4.65M
  priv.insn_start = pc;
9872
9873
27.9M
  for (i = 0; i < MAX_OPERANDS; ++i)
9874
23.2M
    {
9875
23.2M
      op_out[i][0] = 0;
9876
23.2M
      ins.op_out[i] = op_out[i];
9877
23.2M
      cm_out[i][0] = 0;
9878
23.2M
      ins.cm_out[i] = cm_out[i];
9879
23.2M
    }
9880
9881
4.65M
  sizeflag = priv.orig_sizeflag;
9882
9883
4.65M
  switch (ckprefix (&ins))
9884
4.65M
    {
9885
4.53M
    case ckp_okay:
9886
4.53M
      break;
9887
9888
117k
    case ckp_bogus:
9889
      /* Too many prefixes or unused REX prefixes.  */
9890
117k
      for (i = 0;
9891
283k
     i < (int) ARRAY_SIZE (ins.all_prefixes) && ins.all_prefixes[i];
9892
166k
     i++)
9893
166k
  i386_dis_printf (info, dis_style_mnemonic, "%s%s",
9894
166k
       (i == 0 ? "" : " "),
9895
166k
       prefix_name (ins.address_mode, ins.all_prefixes[i],
9896
166k
              sizeflag));
9897
117k
      ret = i;
9898
117k
      goto out;
9899
9900
3.67k
    case ckp_fetch_error:
9901
3.67k
      goto fetch_error_out;
9902
4.65M
    }
9903
9904
4.53M
  ins.nr_prefixes = ins.codep - ins.start_codep;
9905
9906
4.53M
  if (!fetch_code (info, ins.codep + 1))
9907
279
    {
9908
49.8k
    fetch_error_out:
9909
49.8k
      ret = fetch_error (&ins);
9910
49.8k
      goto out;
9911
279
    }
9912
9913
4.53M
  ins.two_source_ops = (*ins.codep == 0x62 || *ins.codep == 0xc8);
9914
9915
4.53M
  if ((ins.prefixes & PREFIX_FWAIT)
9916
13.3k
      && (*ins.codep < 0xd8 || *ins.codep > 0xdf))
9917
12.2k
    {
9918
      /* Handle ins.prefixes before fwait.  */
9919
13.8k
      for (i = 0; i < ins.fwait_prefix && ins.all_prefixes[i];
9920
12.2k
     i++)
9921
1.64k
  i386_dis_printf (info, dis_style_mnemonic, "%s ",
9922
1.64k
       prefix_name (ins.address_mode, ins.all_prefixes[i],
9923
1.64k
              sizeflag));
9924
12.2k
      i386_dis_printf (info, dis_style_mnemonic, "fwait");
9925
12.2k
      ret = i + 1;
9926
12.2k
      goto out;
9927
12.2k
    }
9928
9929
  /* REX2.M in rex2 prefix represents map0 or map1.  */
9930
4.52M
  if (ins.last_rex2_prefix < 0 ? *ins.codep == 0x0f : (ins.rex2 & REX2_M))
9931
127k
    {
9932
127k
      if (!ins.rex2)
9933
105k
  {
9934
105k
    ins.codep++;
9935
105k
    if (!fetch_code (info, ins.codep + 1))
9936
171
      goto fetch_error_out;
9937
105k
  }
9938
9939
127k
      dp = &dis386_twobyte[*ins.codep];
9940
127k
      ins.need_modrm = twobyte_has_modrm[*ins.codep];
9941
127k
    }
9942
4.39M
  else
9943
4.39M
    {
9944
4.39M
      dp = &dis386[*ins.codep];
9945
4.39M
      ins.need_modrm = onebyte_has_modrm[*ins.codep];
9946
4.39M
    }
9947
4.52M
  ins.condition_code = *ins.codep & 0xf;
9948
4.52M
  ins.codep++;
9949
9950
  /* Save sizeflag for printing the extra ins.prefixes later before updating
9951
     it for mnemonic and operand processing.  The prefix names depend
9952
     only on the address mode.  */
9953
4.52M
  orig_sizeflag = sizeflag;
9954
4.52M
  if (ins.prefixes & PREFIX_ADDR)
9955
50.1k
    sizeflag ^= AFLAG;
9956
4.52M
  if ((ins.prefixes & PREFIX_DATA))
9957
52.1k
    sizeflag ^= DFLAG;
9958
9959
4.52M
  ins.end_codep = ins.codep;
9960
4.52M
  if (ins.need_modrm && !fetch_modrm (&ins))
9961
4.32k
    goto fetch_error_out;
9962
9963
4.52M
  if (dp->name == NULL && dp->op[0].bytemode == FLOATCODE)
9964
53.1k
    {
9965
53.1k
      if (!get_sib (&ins, sizeflag)
9966
52.9k
    || !dofloat (&ins, sizeflag))
9967
1.04k
  goto fetch_error_out;
9968
53.1k
    }
9969
4.46M
  else
9970
4.46M
    {
9971
4.46M
      dp = get_valid_dis386 (dp, &ins);
9972
4.46M
      if (dp == &err_opcode)
9973
4.57k
  goto fetch_error_out;
9974
9975
      /* For APX instructions promoted from legacy maps 0/1, embedded prefix
9976
   is interpreted as the operand size override.  */
9977
4.46M
      if (ins.evex_type == evex_from_legacy
9978
22.9k
    && ins.vex.prefix == DATA_PREFIX_OPCODE)
9979
4.50k
  sizeflag ^= DFLAG;
9980
9981
4.46M
      if(ins.evex_type == evex_default)
9982
4.43M
  ins.vex.nf = false;
9983
31.8k
      else
9984
  /* For EVEX-promoted formats, we need to clear EVEX.NF (ccmp and ctest
9985
     are cleared separately.) in mask_register_specifier and keep the low
9986
     2 bits of mask_register_specifier to report errors for invalid cases
9987
     .  */
9988
31.8k
  ins.vex.mask_register_specifier &= 0x3;
9989
9990
4.46M
      if (dp != NULL && putop (&ins, dp->name, sizeflag) == 0)
9991
4.46M
  {
9992
4.46M
    if (!get_sib (&ins, sizeflag))
9993
1.51k
      goto fetch_error_out;
9994
26.6M
    for (i = 0; i < MAX_OPERANDS; ++i)
9995
22.2M
      {
9996
22.2M
        ins.obufp = ins.op_out[i];
9997
22.2M
        ins.cbufp = ins.cm_out[i];
9998
22.2M
        ins.op_ad = MAX_OPERANDS - 1 - i;
9999
22.2M
        if (dp->op[i].rtn
10000
6.80M
      && !dp->op[i].rtn (&ins, dp->op[i].bytemode, sizeflag))
10001
34.2k
    goto fetch_error_out;
10002
        /* For EVEX instruction after the last operand masking
10003
     should be printed.  */
10004
22.1M
        if (i == 0 && ins.vex.evex)
10005
136k
    {
10006
      /* Don't print {%k0}.  */
10007
136k
      if (ins.vex.mask_register_specifier)
10008
89.1k
        {
10009
89.1k
          const char *reg_name
10010
89.1k
      = att_names_mask[ins.vex.mask_register_specifier];
10011
10012
89.1k
          oappend (&ins, "{");
10013
89.1k
          oappend_register (&ins, reg_name);
10014
89.1k
          oappend (&ins, "}");
10015
10016
89.1k
          if (ins.vex.zeroing)
10017
36.4k
      oappend (&ins, "{z}");
10018
89.1k
        }
10019
47.0k
      else if (ins.vex.zeroing)
10020
7.73k
        {
10021
7.73k
          oappend (&ins, "{bad}");
10022
7.73k
          continue;
10023
7.73k
        }
10024
10025
      /* Instructions with a mask register destination allow for
10026
         zeroing-masking only (if any masking at all), which is
10027
         _not_ expressed by EVEX.z.  */
10028
128k
      if (ins.vex.zeroing && dp->op[0].bytemode == mask_mode)
10029
3.77k
        ins.illegal_masking = true;
10030
10031
      /* S/G insns require a mask and don't allow
10032
         zeroing-masking.  */
10033
128k
      if ((dp->op[0].bytemode == vex_vsib_d_w_dq_mode
10034
124k
           || dp->op[0].bytemode == vex_vsib_q_w_dq_mode)
10035
6.42k
          && (ins.vex.mask_register_specifier == 0
10036
5.90k
        || ins.vex.zeroing))
10037
3.49k
        ins.illegal_masking = true;
10038
10039
128k
      if (ins.illegal_masking)
10040
16.5k
        oappend (&ins, "/(bad)");
10041
128k
    }
10042
22.1M
      }
10043
    /* vex.nf is cleared after being consumed.  */
10044
4.42M
    if (ins.vex.nf)
10045
8.50k
      oappend (&ins, "{bad-nf}");
10046
10047
    /* Check whether rounding control was enabled for an insn not
10048
       supporting it, when evex.b is not treated as evex.nd.  */
10049
4.42M
    if (ins.modrm.mod == 3 && ins.vex.b && ins.evex_type == evex_default
10050
13.9k
        && !(ins.evex_used & EVEX_b_used))
10051
9.01k
      {
10052
25.0k
        for (i = 0; i < MAX_OPERANDS; ++i)
10053
25.0k
    {
10054
25.0k
      ins.obufp = ins.op_out[i];
10055
25.0k
      if (*ins.obufp)
10056
16.0k
        continue;
10057
9.01k
      oappend (&ins, names_rounding[ins.vex.ll]);
10058
9.01k
      oappend (&ins, "bad}");
10059
9.01k
      break;
10060
25.0k
    }
10061
9.01k
      }
10062
4.42M
  }
10063
4.46M
    }
10064
10065
  /* Clear instruction information.  */
10066
4.47M
  info->insn_info_valid = 0;
10067
4.47M
  info->branch_delay_insns = 0;
10068
4.47M
  info->data_size = 0;
10069
4.47M
  info->insn_type = dis_noninsn;
10070
4.47M
  info->target = 0;
10071
4.47M
  info->target2 = 0;
10072
10073
  /* Reset jump operation indicator.  */
10074
4.47M
  ins.op_is_jump = false;
10075
4.47M
  {
10076
4.47M
    int jump_detection = 0;
10077
10078
    /* Extract flags.  */
10079
26.8M
    for (i = 0; i < MAX_OPERANDS; ++i)
10080
22.3M
      {
10081
22.3M
  if ((dp->op[i].rtn == OP_J)
10082
22.1M
      || (dp->op[i].rtn == OP_indirE))
10083
335k
    jump_detection |= 1;
10084
22.0M
  else if ((dp->op[i].rtn == BND_Fixup)
10085
21.7M
     || (!dp->op[i].rtn && !dp->op[i].bytemode))
10086
15.6M
    jump_detection |= 2;
10087
6.37M
  else if ((dp->op[i].bytemode == cond_jump_mode)
10088
6.17M
     || (dp->op[i].bytemode == loop_jcxz_mode))
10089
239k
    jump_detection |= 4;
10090
22.3M
      }
10091
10092
    /* Determine if this is a jump or branch.  */
10093
4.47M
    if ((jump_detection & 0x3) == 0x3)
10094
335k
      {
10095
335k
  ins.op_is_jump = true;
10096
335k
  if (jump_detection & 0x4)
10097
239k
    info->insn_type = dis_condbranch;
10098
95.9k
  else
10099
95.9k
    info->insn_type = (dp->name && !strncmp (dp->name, "call", 4))
10100
95.9k
      ? dis_jsr : dis_branch;
10101
335k
      }
10102
4.47M
  }
10103
  /* The purpose of placing the check here is to wait for the EVEX prefix for
10104
     conditional CMP and TEST to be consumed and cleared, and then make a
10105
     unified judgment. Because they are both in map4, we can not distinguish
10106
     EVEX prefix for conditional CMP and TEST from others during the
10107
     EVEX prefix stage of parsing.  */
10108
4.47M
  if (ins.evex_type == evex_from_legacy)
10109
19.6k
    {
10110
      /* EVEX from legacy instructions, when the EVEX.ND bit is 0,
10111
   all bits of EVEX.vvvv and EVEX.V' must be 1.  */
10112
19.6k
      if (!ins.vex.nd && (ins.vex.register_specifier || !ins.vex.v))
10113
7.50k
  {
10114
7.50k
    i386_dis_printf (info, dis_style_text, "(bad)");
10115
7.50k
    ret = ins.end_codep - priv.the_buffer;
10116
7.50k
    goto out;
10117
7.50k
  }
10118
10119
      /* EVEX from legacy instructions require that EVEX.z, EVEX.L’L and the
10120
   lower 2 bits of EVEX.aaa must be 0.  */
10121
12.1k
      if ((ins.vex.mask_register_specifier & 0x3) != 0
10122
8.19k
    || ins.vex.ll != 0 || ins.vex.zeroing != 0)
10123
7.77k
  {
10124
7.77k
    i386_dis_printf (info, dis_style_text, "(bad)");
10125
7.77k
    ret = ins.end_codep - priv.the_buffer;
10126
7.77k
    goto out;
10127
7.77k
  }
10128
12.1k
    }
10129
  /* If VEX.vvvv and EVEX.vvvv are unused, they must be all 1s, which
10130
     are all 0s in inverted form.  */
10131
4.46M
  if (ins.need_vex && ins.vex.register_specifier != 0)
10132
92.1k
    {
10133
92.1k
      i386_dis_printf (info, dis_style_text, "(bad)");
10134
92.1k
      ret = ins.end_codep - priv.the_buffer;
10135
92.1k
      goto out;
10136
92.1k
    }
10137
10138
4.37M
  if ((dp->prefix_requirement & PREFIX_REX2_ILLEGAL)
10139
537k
      && ins.last_rex2_prefix >= 0 && (ins.rex2 & REX2_SPECIAL) == 0)
10140
4.36k
    {
10141
4.36k
      i386_dis_printf (info, dis_style_text, "(bad)");
10142
4.36k
      ret = ins.end_codep - priv.the_buffer;
10143
4.36k
      goto out;
10144
4.36k
    }
10145
10146
4.36M
  switch (dp->prefix_requirement & ~PREFIX_REX2_ILLEGAL)
10147
4.36M
    {
10148
34.8k
    case PREFIX_DATA:
10149
      /* If only the data prefix is marked as mandatory, its absence renders
10150
   the encoding invalid.  Most other PREFIX_OPCODE rules still apply.  */
10151
34.8k
      if (ins.need_vex ? !ins.vex.prefix : !(ins.prefixes & PREFIX_DATA))
10152
13.4k
  {
10153
13.4k
    i386_dis_printf (info, dis_style_text, "(bad)");
10154
13.4k
    ret = ins.end_codep - priv.the_buffer;
10155
13.4k
    goto out;
10156
13.4k
  }
10157
21.3k
      ins.used_prefixes |= PREFIX_DATA;
10158
      /* Fall through.  */
10159
50.4k
    case PREFIX_OPCODE:
10160
      /* If the mandatory PREFIX_REPZ/PREFIX_REPNZ/PREFIX_DATA prefix is
10161
   unused, opcode is invalid.  Since the PREFIX_DATA prefix may be
10162
   used by putop and MMX/SSE operand and may be overridden by the
10163
   PREFIX_REPZ/PREFIX_REPNZ fix, we check the PREFIX_DATA prefix
10164
   separately.  */
10165
50.4k
      if (((ins.need_vex
10166
50.4k
      ? ins.vex.prefix == REPE_PREFIX_OPCODE
10167
17.6k
        || ins.vex.prefix == REPNE_PREFIX_OPCODE
10168
50.4k
      : (ins.prefixes
10169
28.1k
         & (PREFIX_REPZ | PREFIX_REPNZ)) != 0)
10170
14.0k
     && (ins.used_prefixes
10171
14.0k
         & (PREFIX_REPZ | PREFIX_REPNZ)) == 0)
10172
37.1k
    || (((ins.need_vex
10173
37.1k
    ? ins.vex.prefix == DATA_PREFIX_OPCODE
10174
37.1k
    : ((ins.prefixes
10175
25.9k
        & (PREFIX_REPZ | PREFIX_REPNZ | PREFIX_DATA))
10176
25.9k
       == PREFIX_DATA))
10177
13.6k
         && (ins.used_prefixes & PREFIX_DATA) == 0))
10178
36.7k
    || (ins.vex.evex && dp->prefix_requirement != PREFIX_DATA
10179
844
        && !ins.vex.w != !(ins.used_prefixes & PREFIX_DATA)))
10180
14.0k
  {
10181
14.0k
    i386_dis_printf (info, dis_style_text, "(bad)");
10182
14.0k
    ret = ins.end_codep - priv.the_buffer;
10183
14.0k
    goto out;
10184
14.0k
  }
10185
36.3k
      break;
10186
10187
36.3k
    case PREFIX_IGNORED:
10188
      /* Zap data size and rep prefixes from used_prefixes and reinstate their
10189
   origins in all_prefixes.  */
10190
2.44k
      ins.used_prefixes &= ~PREFIX_OPCODE;
10191
2.44k
      if (ins.last_data_prefix >= 0)
10192
728
  ins.all_prefixes[ins.last_data_prefix] = 0x66;
10193
2.44k
      if (ins.last_repz_prefix >= 0)
10194
1.22k
  ins.all_prefixes[ins.last_repz_prefix] = 0xf3;
10195
2.44k
      if (ins.last_repnz_prefix >= 0)
10196
1.41k
  ins.all_prefixes[ins.last_repnz_prefix] = 0xf2;
10197
2.44k
      break;
10198
10199
30.1k
    case PREFIX_NP_OR_DATA:
10200
30.1k
      if (ins.vex.prefix == REPE_PREFIX_OPCODE
10201
29.6k
    || ins.vex.prefix == REPNE_PREFIX_OPCODE)
10202
934
  {
10203
934
    i386_dis_printf (info, dis_style_text, "(bad)");
10204
934
    ret = ins.end_codep - priv.the_buffer;
10205
934
    goto out;
10206
934
  }
10207
29.1k
      break;
10208
10209
29.1k
    case NO_PREFIX:
10210
21.7k
      if (ins.vex.prefix)
10211
649
  {
10212
649
    i386_dis_printf (info, dis_style_text, "(bad)");
10213
649
    ret = ins.end_codep - priv.the_buffer;
10214
649
    goto out;
10215
649
  }
10216
21.1k
      break;
10217
4.36M
    }
10218
10219
  /* Check if the REX prefix is used.  */
10220
4.33M
  if ((ins.rex ^ ins.rex_used) == 0
10221
3.85M
      && !ins.need_vex && ins.last_rex_prefix >= 0)
10222
56.1k
    ins.all_prefixes[ins.last_rex_prefix] = 0;
10223
10224
  /* Check if the REX2 prefix is used.  */
10225
4.33M
  if (ins.last_rex2_prefix >= 0
10226
24.6k
      && ((ins.rex2 & REX2_SPECIAL)
10227
23.5k
    || (((ins.rex2 & 7) ^ (ins.rex2_used & 7)) == 0
10228
5.17k
        && (ins.rex ^ ins.rex_used) == 0
10229
3.20k
        && (ins.rex2 & 7))))
10230
3.63k
    ins.all_prefixes[ins.last_rex2_prefix] = 0;
10231
10232
  /* Check if the SEG prefix is used.  */
10233
4.33M
  if ((ins.prefixes & (PREFIX_CS | PREFIX_SS | PREFIX_DS | PREFIX_ES
10234
4.33M
           | PREFIX_FS | PREFIX_GS)) != 0
10235
122k
      && (ins.used_prefixes & ins.active_seg_prefix) != 0)
10236
39.7k
    ins.all_prefixes[ins.last_seg_prefix] = 0;
10237
10238
  /* Check if the ADDR prefix is used.  */
10239
4.33M
  if ((ins.prefixes & PREFIX_ADDR) != 0
10240
43.3k
      && (ins.used_prefixes & PREFIX_ADDR) != 0)
10241
25.3k
    ins.all_prefixes[ins.last_addr_prefix] = 0;
10242
10243
  /* Check if the DATA prefix is used.  */
10244
4.33M
  if ((ins.prefixes & PREFIX_DATA) != 0
10245
45.3k
      && (ins.used_prefixes & PREFIX_DATA) != 0
10246
30.5k
      && !ins.need_vex)
10247
29.9k
    ins.all_prefixes[ins.last_data_prefix] = 0;
10248
10249
  /* Print the extra ins.prefixes.  */
10250
4.33M
  prefix_length = 0;
10251
65.0M
  for (i = 0; i < (int) ARRAY_SIZE (ins.all_prefixes); i++)
10252
60.7M
    if (ins.all_prefixes[i])
10253
398k
      {
10254
398k
  const char *name = prefix_name (ins.address_mode, ins.all_prefixes[i],
10255
398k
          orig_sizeflag);
10256
10257
398k
  if (name == NULL)
10258
0
    abort ();
10259
398k
  prefix_length += strlen (name) + 1;
10260
398k
  if (ins.all_prefixes[i] == REX2_OPCODE)
10261
21.0k
    i386_dis_printf (info, dis_style_mnemonic, "{%s 0x%x} ", name,
10262
21.0k
         (unsigned int) ins.rex2_payload);
10263
377k
  else
10264
377k
    i386_dis_printf (info, dis_style_mnemonic, "%s ", name);
10265
398k
      }
10266
10267
  /* Check maximum code length.  */
10268
4.33M
  if ((ins.codep - ins.start_codep) > MAX_CODE_LENGTH)
10269
1.41k
    {
10270
1.41k
      i386_dis_printf (info, dis_style_text, "(bad)");
10271
1.41k
      ret = MAX_CODE_LENGTH;
10272
1.41k
      goto out;
10273
1.41k
    }
10274
10275
  /* Calculate the number of operands this instruction has.  */
10276
4.33M
  op_count = 0;
10277
26.0M
  for (i = 0; i < MAX_OPERANDS; ++i)
10278
21.6M
    if (*ins.op_out[i] != '\0')
10279
6.03M
      ++op_count;
10280
10281
  /* Calculate the number of spaces to print after the mnemonic.  */
10282
4.33M
  ins.obufp = ins.mnemonicendp;
10283
4.33M
  if (op_count > 0)
10284
3.36M
    {
10285
3.36M
      i = strlen (ins.obuf) + prefix_length;
10286
3.36M
      if (i < 7)
10287
3.12M
  i = 7 - i;
10288
243k
      else
10289
243k
  i = 1;
10290
3.36M
    }
10291
967k
  else
10292
967k
    i = 0;
10293
10294
  /* Print the instruction mnemonic along with any trailing whitespace.  */
10295
4.33M
  i386_dis_printf (info, dis_style_mnemonic, "%s%*s", ins.obuf, i, "");
10296
10297
  /* The enter and bound instructions are printed with operands in the same
10298
     order as the intel book; everything else is printed in reverse order.  */
10299
4.33M
  intel_swap_2_3 = false;
10300
4.33M
  if (ins.intel_syntax || ins.two_source_ops)
10301
1.06M
    {
10302
6.38M
      for (i = 0; i < MAX_OPERANDS; ++i)
10303
5.32M
  op_txt[i] = ins.op_out[i];
10304
10305
1.06M
      if (ins.intel_syntax && dp && dp->op[2].rtn == OP_Rounding
10306
4.89k
          && dp->op[3].rtn == OP_E && dp->op[4].rtn == NULL)
10307
1.75k
  {
10308
1.75k
    op_txt[2] = ins.op_out[3];
10309
1.75k
    op_txt[3] = ins.op_out[2];
10310
1.75k
    intel_swap_2_3 = true;
10311
1.75k
  }
10312
10313
3.19M
      for (i = 0; i < (MAX_OPERANDS >> 1); ++i)
10314
2.12M
  {
10315
2.12M
    bool riprel;
10316
10317
2.12M
    ins.op_ad = ins.op_index[i];
10318
2.12M
    ins.op_index[i] = ins.op_index[MAX_OPERANDS - 1 - i];
10319
2.12M
    ins.op_index[MAX_OPERANDS - 1 - i] = ins.op_ad;
10320
2.12M
    riprel = ins.op_riprel[i];
10321
2.12M
    ins.op_riprel[i] = ins.op_riprel[MAX_OPERANDS - 1 - i];
10322
2.12M
    ins.op_riprel[MAX_OPERANDS - 1 - i] = riprel;
10323
10324
2.12M
    char *tmp = ins.cm_out[i];
10325
2.12M
    ins.cm_out[i] = ins.cm_out[MAX_OPERANDS - 1 - i];
10326
2.12M
    ins.cm_out[MAX_OPERANDS - 1 - i] = tmp;
10327
2.12M
  }
10328
1.06M
    }
10329
3.27M
  else
10330
3.27M
    {
10331
19.6M
      for (i = 0; i < MAX_OPERANDS; ++i)
10332
16.3M
  op_txt[MAX_OPERANDS - 1 - i] = ins.op_out[i];
10333
3.27M
    }
10334
10335
4.33M
  needcomma = 0;
10336
26.0M
  for (i = 0; i < MAX_OPERANDS; ++i)
10337
21.6M
    if (*op_txt[i])
10338
6.03M
      {
10339
  /* In Intel syntax embedded rounding / SAE are not separate operands.
10340
     Instead they're attached to the prior register operand.  Simply
10341
     suppress emission of the comma to achieve that effect.  */
10342
6.03M
  switch (i & -(ins.intel_syntax && dp))
10343
6.03M
    {
10344
39.3k
    case 2:
10345
39.3k
      if (dp->op[2].rtn == OP_Rounding && !intel_swap_2_3)
10346
525
        needcomma = 0;
10347
39.3k
      break;
10348
3.18k
    case 3:
10349
3.18k
      if (dp->op[3].rtn == OP_Rounding || intel_swap_2_3)
10350
974
        needcomma = 0;
10351
3.18k
      break;
10352
6.03M
    }
10353
6.03M
  if (needcomma)
10354
2.66M
    i386_dis_printf (info, dis_style_text, ",");
10355
6.03M
  if (ins.op_index[i] != -1 && !ins.op_riprel[i])
10356
279k
    {
10357
279k
      bfd_vma target = (bfd_vma) ins.op_address[ins.op_index[i]];
10358
10359
279k
      if (ins.op_is_jump)
10360
279k
        {
10361
279k
    info->insn_info_valid = 1;
10362
279k
    info->branch_delay_insns = 0;
10363
279k
    info->data_size = 0;
10364
279k
    info->target = target;
10365
279k
    info->target2 = 0;
10366
279k
        }
10367
279k
      (*info->print_address_func) (target, info);
10368
279k
    }
10369
5.75M
  else
10370
5.75M
    i386_dis_printf (info, dis_style_text, "%s", op_txt[i]);
10371
6.03M
  needcomma = 1;
10372
6.03M
      }
10373
10374
4.33M
  const char *sep = "        # ";
10375
26.0M
  for (i = 0; i < MAX_OPERANDS; i++)
10376
21.6M
    if (ins.op_index[i] != -1 && ins.op_riprel[i])
10377
33.6k
      {
10378
33.6k
  i386_dis_printf (info, dis_style_comment_start, "%s", sep);
10379
33.6k
  sep = ", ";
10380
33.6k
  (*info->print_address_func)
10381
33.6k
    ((bfd_vma)(ins.start_pc + (ins.codep - ins.start_codep)
10382
33.6k
         + ins.op_address[ins.op_index[i]]),
10383
33.6k
     info);
10384
33.6k
      }
10385
21.6M
    else if (*ins.cm_out[i])
10386
0
      {
10387
0
  i386_dis_printf (info, dis_style_comment_start, "%s", sep);
10388
0
  sep = ", ";
10389
0
  i386_dis_printf (info, dis_style_symbol, "%s", ins.cm_out[i]);
10390
0
      }
10391
10392
4.33M
  ret = ins.codep - priv.the_buffer;
10393
4.65M
 out:
10394
4.65M
  info->private_data = NULL;
10395
4.65M
  return ret;
10396
4.33M
}
10397
10398
/* Here for backwards compatibility.  When gdb stops using
10399
   print_insn_i386_att and print_insn_i386_intel these functions can
10400
   disappear, and print_insn_i386 be merged into print_insn.  */
10401
int
10402
print_insn_i386_att (bfd_vma pc, disassemble_info *info)
10403
0
{
10404
0
  return print_insn (pc, info, 0);
10405
0
}
10406
10407
int
10408
print_insn_i386_intel (bfd_vma pc, disassemble_info *info)
10409
0
{
10410
0
  return print_insn (pc, info, 1);
10411
0
}
10412
10413
int
10414
print_insn_i386 (bfd_vma pc, disassemble_info *info)
10415
4.65M
{
10416
4.65M
  return print_insn (pc, info, -1);
10417
4.65M
}
10418
10419
static const char *float_mem[] = {
10420
  /* d8 */
10421
  "fadd{s|}",
10422
  "fmul{s|}",
10423
  "fcom{s|}",
10424
  "fcomp{s|}",
10425
  "fsub{s|}",
10426
  "fsubr{s|}",
10427
  "fdiv{s|}",
10428
  "fdivr{s|}",
10429
  /* d9 */
10430
  "fld{s|}",
10431
  "(bad)",
10432
  "fst{s|}",
10433
  "fstp{s|}",
10434
  "fldenv{C|C}",
10435
  "fldcw",
10436
  "fNstenv{C|C}",
10437
  "fNstcw",
10438
  /* da */
10439
  "fiadd{l|}",
10440
  "fimul{l|}",
10441
  "ficom{l|}",
10442
  "ficomp{l|}",
10443
  "fisub{l|}",
10444
  "fisubr{l|}",
10445
  "fidiv{l|}",
10446
  "fidivr{l|}",
10447
  /* db */
10448
  "fild{l|}",
10449
  "fisttp{l|}",
10450
  "fist{l|}",
10451
  "fistp{l|}",
10452
  "(bad)",
10453
  "fld{t|}",
10454
  "(bad)",
10455
  "fstp{t|}",
10456
  /* dc */
10457
  "fadd{l|}",
10458
  "fmul{l|}",
10459
  "fcom{l|}",
10460
  "fcomp{l|}",
10461
  "fsub{l|}",
10462
  "fsubr{l|}",
10463
  "fdiv{l|}",
10464
  "fdivr{l|}",
10465
  /* dd */
10466
  "fld{l|}",
10467
  "fisttp{ll|}",
10468
  "fst{l||}",
10469
  "fstp{l|}",
10470
  "frstor{C|C}",
10471
  "(bad)",
10472
  "fNsave{C|C}",
10473
  "fNstsw",
10474
  /* de */
10475
  "fiadd{s|}",
10476
  "fimul{s|}",
10477
  "ficom{s|}",
10478
  "ficomp{s|}",
10479
  "fisub{s|}",
10480
  "fisubr{s|}",
10481
  "fidiv{s|}",
10482
  "fidivr{s|}",
10483
  /* df */
10484
  "fild{s|}",
10485
  "fisttp{s|}",
10486
  "fist{s|}",
10487
  "fistp{s|}",
10488
  "fbld",
10489
  "fild{ll|}",
10490
  "fbstp",
10491
  "fistp{ll|}",
10492
};
10493
10494
static const unsigned char float_mem_mode[] = {
10495
  /* d8 */
10496
  d_mode,
10497
  d_mode,
10498
  d_mode,
10499
  d_mode,
10500
  d_mode,
10501
  d_mode,
10502
  d_mode,
10503
  d_mode,
10504
  /* d9 */
10505
  d_mode,
10506
  0,
10507
  d_mode,
10508
  d_mode,
10509
  0,
10510
  w_mode,
10511
  0,
10512
  w_mode,
10513
  /* da */
10514
  d_mode,
10515
  d_mode,
10516
  d_mode,
10517
  d_mode,
10518
  d_mode,
10519
  d_mode,
10520
  d_mode,
10521
  d_mode,
10522
  /* db */
10523
  d_mode,
10524
  d_mode,
10525
  d_mode,
10526
  d_mode,
10527
  0,
10528
  t_mode,
10529
  0,
10530
  t_mode,
10531
  /* dc */
10532
  q_mode,
10533
  q_mode,
10534
  q_mode,
10535
  q_mode,
10536
  q_mode,
10537
  q_mode,
10538
  q_mode,
10539
  q_mode,
10540
  /* dd */
10541
  q_mode,
10542
  q_mode,
10543
  q_mode,
10544
  q_mode,
10545
  0,
10546
  0,
10547
  0,
10548
  w_mode,
10549
  /* de */
10550
  w_mode,
10551
  w_mode,
10552
  w_mode,
10553
  w_mode,
10554
  w_mode,
10555
  w_mode,
10556
  w_mode,
10557
  w_mode,
10558
  /* df */
10559
  w_mode,
10560
  w_mode,
10561
  w_mode,
10562
  w_mode,
10563
  t_mode,
10564
  q_mode,
10565
  t_mode,
10566
  q_mode
10567
};
10568
10569
#define ST { OP_ST, 0 }
10570
#define STi { OP_STi, 0 }
10571
10572
#define FGRPd9_2 NULL, { { NULL, 1 } }, 0
10573
#define FGRPd9_4 NULL, { { NULL, 2 } }, 0
10574
#define FGRPd9_5 NULL, { { NULL, 3 } }, 0
10575
#define FGRPd9_6 NULL, { { NULL, 4 } }, 0
10576
#define FGRPd9_7 NULL, { { NULL, 5 } }, 0
10577
#define FGRPda_5 NULL, { { NULL, 6 } }, 0
10578
#define FGRPdb_4 NULL, { { NULL, 7 } }, 0
10579
#define FGRPde_3 NULL, { { NULL, 8 } }, 0
10580
#define FGRPdf_4 NULL, { { NULL, 9 } }, 0
10581
10582
static const struct dis386 float_reg[][8] = {
10583
  /* d8 */
10584
  {
10585
    { "fadd", { ST, STi }, 0 },
10586
    { "fmul", { ST, STi }, 0 },
10587
    { "fcom", { STi }, 0 },
10588
    { "fcomp",  { STi }, 0 },
10589
    { "fsub", { ST, STi }, 0 },
10590
    { "fsubr",  { ST, STi }, 0 },
10591
    { "fdiv", { ST, STi }, 0 },
10592
    { "fdivr",  { ST, STi }, 0 },
10593
  },
10594
  /* d9 */
10595
  {
10596
    { "fld",  { STi }, 0 },
10597
    { "fxch", { STi }, 0 },
10598
    { FGRPd9_2 },
10599
    { Bad_Opcode },
10600
    { FGRPd9_4 },
10601
    { FGRPd9_5 },
10602
    { FGRPd9_6 },
10603
    { FGRPd9_7 },
10604
  },
10605
  /* da */
10606
  {
10607
    { "fcmovb", { ST, STi }, 0 },
10608
    { "fcmove", { ST, STi }, 0 },
10609
    { "fcmovbe",{ ST, STi }, 0 },
10610
    { "fcmovu", { ST, STi }, 0 },
10611
    { Bad_Opcode },
10612
    { FGRPda_5 },
10613
    { Bad_Opcode },
10614
    { Bad_Opcode },
10615
  },
10616
  /* db */
10617
  {
10618
    { "fcmovnb",{ ST, STi }, 0 },
10619
    { "fcmovne",{ ST, STi }, 0 },
10620
    { "fcmovnbe",{ ST, STi }, 0 },
10621
    { "fcmovnu",{ ST, STi }, 0 },
10622
    { FGRPdb_4 },
10623
    { "fucomi", { ST, STi }, 0 },
10624
    { "fcomi",  { ST, STi }, 0 },
10625
    { Bad_Opcode },
10626
  },
10627
  /* dc */
10628
  {
10629
    { "fadd", { STi, ST }, 0 },
10630
    { "fmul", { STi, ST }, 0 },
10631
    { Bad_Opcode },
10632
    { Bad_Opcode },
10633
    { "fsub{!M|r}", { STi, ST }, 0 },
10634
    { "fsub{M|}", { STi, ST }, 0 },
10635
    { "fdiv{!M|r}", { STi, ST }, 0 },
10636
    { "fdiv{M|}", { STi, ST }, 0 },
10637
  },
10638
  /* dd */
10639
  {
10640
    { "ffree",  { STi }, 0 },
10641
    { Bad_Opcode },
10642
    { "fst",  { STi }, 0 },
10643
    { "fstp", { STi }, 0 },
10644
    { "fucom",  { STi }, 0 },
10645
    { "fucomp", { STi }, 0 },
10646
    { Bad_Opcode },
10647
    { Bad_Opcode },
10648
  },
10649
  /* de */
10650
  {
10651
    { "faddp",  { STi, ST }, 0 },
10652
    { "fmulp",  { STi, ST }, 0 },
10653
    { Bad_Opcode },
10654
    { FGRPde_3 },
10655
    { "fsub{!M|r}p",  { STi, ST }, 0 },
10656
    { "fsub{M|}p",  { STi, ST }, 0 },
10657
    { "fdiv{!M|r}p",  { STi, ST }, 0 },
10658
    { "fdiv{M|}p",  { STi, ST }, 0 },
10659
  },
10660
  /* df */
10661
  {
10662
    { "ffreep", { STi }, 0 },
10663
    { Bad_Opcode },
10664
    { Bad_Opcode },
10665
    { Bad_Opcode },
10666
    { FGRPdf_4 },
10667
    { "fucomip", { ST, STi }, 0 },
10668
    { "fcomip", { ST, STi }, 0 },
10669
    { Bad_Opcode },
10670
  },
10671
};
10672
10673
static const char *const fgrps[][8] = {
10674
  /* Bad opcode 0 */
10675
  {
10676
    "(bad)","(bad)","(bad)","(bad)","(bad)","(bad)","(bad)","(bad)",
10677
  },
10678
10679
  /* d9_2  1 */
10680
  {
10681
    "fnop","(bad)","(bad)","(bad)","(bad)","(bad)","(bad)","(bad)",
10682
  },
10683
10684
  /* d9_4  2 */
10685
  {
10686
    "fchs","fabs","(bad)","(bad)","ftst","fxam","(bad)","(bad)",
10687
  },
10688
10689
  /* d9_5  3 */
10690
  {
10691
    "fld1","fldl2t","fldl2e","fldpi","fldlg2","fldln2","fldz","(bad)",
10692
  },
10693
10694
  /* d9_6  4 */
10695
  {
10696
    "f2xm1","fyl2x","fptan","fpatan","fxtract","fprem1","fdecstp","fincstp",
10697
  },
10698
10699
  /* d9_7  5 */
10700
  {
10701
    "fprem","fyl2xp1","fsqrt","fsincos","frndint","fscale","fsin","fcos",
10702
  },
10703
10704
  /* da_5  6 */
10705
  {
10706
    "(bad)","fucompp","(bad)","(bad)","(bad)","(bad)","(bad)","(bad)",
10707
  },
10708
10709
  /* db_4  7 */
10710
  {
10711
    "fNeni(8087 only)","fNdisi(8087 only)","fNclex","fNinit",
10712
    "fNsetpm(287 only)","frstpm(287 only)","(bad)","(bad)",
10713
  },
10714
10715
  /* de_3  8 */
10716
  {
10717
    "(bad)","fcompp","(bad)","(bad)","(bad)","(bad)","(bad)","(bad)",
10718
  },
10719
10720
  /* df_4  9 */
10721
  {
10722
    "fNstsw","(bad)","(bad)","(bad)","(bad)","(bad)","(bad)","(bad)",
10723
  },
10724
};
10725
10726
static const char *const oszc_flags[16] = {
10727
  " {dfv=}", " {dfv=cf}", " {dfv=zf}", " {dfv=zf, cf}", " {dfv=sf}",
10728
  " {dfv=sf, cf}", " {dfv=sf, zf}", " {dfv=sf, zf, cf}", " {dfv=of}",
10729
  " {dfv=of, cf}", " {dfv=of, zf}", " {dfv=of, zf, cf}", " {dfv=of, sf}",
10730
  " {dfv=of, sf, cf}", " {dfv=of, sf, zf}", " {dfv=of, sf, zf, cf}"
10731
};
10732
10733
static const char *const scc_suffix[16] = {
10734
  "o", "no", "b", "ae", "e", "ne", "be", "a", "s", "ns", "t", "f",
10735
  "l", "ge", "le", "g"
10736
};
10737
10738
static void
10739
swap_operand (instr_info *ins)
10740
2.33k
{
10741
2.33k
  char *p = ins->mnemonicendp;
10742
10743
2.33k
  if (p[-1] == '}')
10744
416
    {
10745
5.29k
      while (*--p != '{')
10746
4.87k
  {
10747
4.87k
    if (p <= ins->obuf + 2)
10748
0
      abort ();
10749
4.87k
  }
10750
416
      if (p[-1] == ' ')
10751
224
  --p;
10752
416
    }
10753
2.33k
  memmove (p + 2, p, ins->mnemonicendp - p + 1);
10754
2.33k
  p[0] = '.';
10755
2.33k
  p[1] = 's';
10756
2.33k
  ins->mnemonicendp += 2;
10757
2.33k
}
10758
10759
static bool
10760
dofloat (instr_info *ins, int sizeflag)
10761
52.9k
{
10762
52.9k
  const struct dis386 *dp;
10763
52.9k
  unsigned char floatop = ins->codep[-1];
10764
10765
52.9k
  if (ins->modrm.mod != 3)
10766
24.3k
    {
10767
24.3k
      int fp_indx = (floatop - 0xd8) * 8 + ins->modrm.reg;
10768
10769
24.3k
      putop (ins, float_mem[fp_indx], sizeflag);
10770
24.3k
      ins->obufp = ins->op_out[0];
10771
24.3k
      ins->cbufp = ins->cm_out[0];
10772
24.3k
      ins->op_ad = 2;
10773
24.3k
      return OP_E (ins, float_mem_mode[fp_indx], sizeflag);
10774
24.3k
    }
10775
  /* Skip mod/rm byte.  */
10776
28.6k
  MODRM_CHECK;
10777
28.6k
  ins->codep++;
10778
10779
28.6k
  dp = &float_reg[floatop - 0xd8][ins->modrm.reg];
10780
28.6k
  if (dp->name == NULL)
10781
17.7k
    {
10782
17.7k
      putop (ins, fgrps[dp->op[0].bytemode][ins->modrm.rm], sizeflag);
10783
10784
      /* Instruction fnstsw is only one with strange arg.  */
10785
17.7k
      if (floatop == 0xdf && ins->codep[-1] == 0xe0)
10786
277
  strcpy (ins->op_out[0], att_names16[0] + ins->intel_syntax);
10787
17.7k
    }
10788
10.8k
  else
10789
10.8k
    {
10790
10.8k
      putop (ins, dp->name, sizeflag);
10791
10792
10.8k
      ins->obufp = ins->op_out[0];
10793
10.8k
      ins->cbufp = ins->cm_out[0];
10794
10.8k
      ins->op_ad = 2;
10795
10.8k
      if (dp->op[0].rtn
10796
10.8k
    && !dp->op[0].rtn (ins, dp->op[0].bytemode, sizeflag))
10797
0
  return false;
10798
10799
10.8k
      ins->obufp = ins->op_out[1];
10800
10.8k
      ins->cbufp = ins->cm_out[1];
10801
10.8k
      ins->op_ad = 1;
10802
10.8k
      if (dp->op[1].rtn
10803
5.97k
    && !dp->op[1].rtn (ins, dp->op[1].bytemode, sizeflag))
10804
0
  return false;
10805
10.8k
    }
10806
28.6k
  return true;
10807
28.6k
}
10808
10809
static bool
10810
OP_ST (instr_info *ins, int bytemode ATTRIBUTE_UNUSED,
10811
       int sizeflag ATTRIBUTE_UNUSED)
10812
5.97k
{
10813
5.97k
  oappend_register (ins, "%st");
10814
5.97k
  return true;
10815
5.97k
}
10816
10817
static bool
10818
OP_STi (instr_info *ins, int bytemode ATTRIBUTE_UNUSED,
10819
  int sizeflag ATTRIBUTE_UNUSED)
10820
10.8k
{
10821
10.8k
  char scratch[8];
10822
10.8k
  int res = snprintf (scratch, ARRAY_SIZE (scratch), "%%st(%d)", ins->modrm.rm);
10823
10824
10.8k
  if (res < 0 || (size_t) res >= ARRAY_SIZE (scratch))
10825
0
    abort ();
10826
10.8k
  oappend_register (ins, scratch);
10827
10.8k
  return true;
10828
10.8k
}
10829
10830
/* Capital letters in template are macros.  */
10831
static int
10832
putop (instr_info *ins, const char *in_template, int sizeflag)
10833
4.51M
{
10834
4.51M
  const char *p;
10835
4.51M
  int alt = 0;
10836
4.51M
  int cond = 1;
10837
4.51M
  unsigned int l = 0, len = 0;
10838
4.51M
  char last[4];
10839
4.51M
  bool evex_printed = false;
10840
10841
  /* We don't want to add any prefix or suffix to (bad), so return early.  */
10842
4.51M
  if (!strncmp (in_template, "(bad)", 5))
10843
693k
    {
10844
693k
      oappend (ins, "(bad)");
10845
693k
      *ins->obufp = 0;
10846
693k
      ins->mnemonicendp = ins->obufp;
10847
693k
      return 0;
10848
693k
    }
10849
10850
21.9M
  for (p = in_template; *p; p++)
10851
18.1M
    {
10852
18.1M
      if (len > l)
10853
294k
  {
10854
294k
    if (l >= sizeof (last) || !ISUPPER (*p))
10855
0
      abort ();
10856
294k
    last[l++] = *p;
10857
294k
    continue;
10858
294k
  }
10859
17.8M
      switch (*p)
10860
17.8M
  {
10861
12.9M
  default:
10862
12.9M
    if (ins->evex_type == evex_from_legacy && !ins->vex.nd
10863
22.7k
        && !(ins->rex2 & 7) && !evex_printed)
10864
844
      {
10865
844
        oappend (ins, "{evex} ");
10866
844
        evex_printed = true;
10867
844
      }
10868
12.9M
    *ins->obufp++ = *p;
10869
12.9M
    break;
10870
294k
  case '%':
10871
294k
    len++;
10872
294k
    break;
10873
186k
  case '!':
10874
186k
    cond = 0;
10875
186k
    break;
10876
442k
  case '{':
10877
442k
    if (ins->intel_syntax)
10878
152k
      {
10879
302k
        while (*++p != '|')
10880
149k
    if (*p == '}' || *p == '\0')
10881
0
      abort ();
10882
152k
        alt = 1;
10883
152k
      }
10884
442k
    break;
10885
442k
  case '|':
10886
316k
    while (*++p != '}')
10887
26.7k
      {
10888
26.7k
        if (*p == '\0')
10889
0
    abort ();
10890
26.7k
      }
10891
289k
    break;
10892
289k
  case '}':
10893
152k
    alt = 0;
10894
152k
    break;
10895
51.9k
  case 'A':
10896
51.9k
    if (ins->intel_syntax)
10897
11.6k
      break;
10898
40.2k
    if ((ins->need_modrm && ins->modrm.mod != 3 && !ins->vex.nd)
10899
11.6k
        || (sizeflag & SUFFIX_ALWAYS))
10900
28.8k
      *ins->obufp++ = 'b';
10901
40.2k
    break;
10902
1.53M
  case 'B':
10903
1.53M
    if (l == 0)
10904
1.51M
      {
10905
1.53M
      case_B:
10906
1.53M
        if (ins->intel_syntax)
10907
297k
    break;
10908
1.24M
        if (sizeflag & SUFFIX_ALWAYS)
10909
7.90k
    *ins->obufp++ = 'b';
10910
1.24M
      }
10911
21.2k
    else if (l == 1 && last[0] == 'L')
10912
20.0k
      {
10913
20.0k
        if (ins->address_mode == mode_64bit
10914
16.0k
      && !(ins->prefixes & PREFIX_ADDR))
10915
15.2k
    {
10916
15.2k
      *ins->obufp++ = 'a';
10917
15.2k
      *ins->obufp++ = 'b';
10918
15.2k
      *ins->obufp++ = 's';
10919
15.2k
    }
10920
10921
20.0k
        goto case_B;
10922
20.0k
      }
10923
1.18k
    else if (l && last[0] == 'X')
10924
1.18k
      {
10925
1.18k
        if (!ins->vex.w)
10926
839
    oappend (ins, "bf16");
10927
348
        else
10928
348
    oappend (ins, "{bad}");
10929
1.18k
      }
10930
0
    else
10931
0
      abort ();
10932
1.24M
    break;
10933
1.24M
  case 'C':
10934
11.8k
    if (l == 1 && last[0] == 'C')
10935
6.29k
      {
10936
        /* Condition code (taken from the map-0 Jcc entries).  */
10937
6.29k
        for (const char *q = dis386[0x70 | ins->condition_code].name + 1;
10938
9.71k
       ISLOWER(*q); ++q)
10939
9.71k
    *ins->obufp++ = *q;
10940
6.29k
        break;
10941
6.29k
      }
10942
5.53k
    else if (l == 1 && last[0] == 'S')
10943
1.38k
      {
10944
        /* Add scc suffix.  */
10945
1.38k
        oappend (ins, scc_suffix[ins->vex.scc]);
10946
10947
        /* For SCC insns, the ND bit is required to be set to 0.  */
10948
1.38k
        if (ins->vex.nd)
10949
703
    oappend (ins, "(bad)");
10950
10951
        /* These bits have been consumed and should be cleared or restored
10952
     to default values.  */
10953
1.38k
        ins->vex.v = 1;
10954
1.38k
        ins->vex.nf = false;
10955
1.38k
        ins->vex.mask_register_specifier = 0;
10956
1.38k
        break;
10957
1.38k
      }
10958
10959
4.15k
    if (l)
10960
0
      abort ();
10961
4.15k
    if (ins->intel_syntax && !alt)
10962
0
      break;
10963
4.15k
    if ((ins->prefixes & PREFIX_DATA) || (sizeflag & SUFFIX_ALWAYS))
10964
1.97k
      {
10965
1.97k
        if (sizeflag & DFLAG)
10966
768
    *ins->obufp++ = ins->intel_syntax ? 'd' : 'l';
10967
1.20k
        else
10968
1.20k
    *ins->obufp++ = ins->intel_syntax ? 'w' : 's';
10969
1.97k
        ins->used_prefixes |= (ins->prefixes & PREFIX_DATA);
10970
1.97k
      }
10971
4.15k
    break;
10972
21.3k
  case 'D':
10973
21.3k
    if (l == 1)
10974
7.30k
      {
10975
7.30k
        switch (last[0])
10976
7.30k
        {
10977
7.30k
        case 'X':
10978
7.30k
    if (!ins->vex.evex || ins->vex.w)
10979
6.76k
      *ins->obufp++ = 'd';
10980
542
    else
10981
542
      oappend (ins, "{bad}");
10982
7.30k
    break;
10983
0
        default:
10984
0
    abort ();
10985
7.30k
        }
10986
7.30k
        break;
10987
7.30k
      }
10988
14.0k
    if (l)
10989
0
      abort ();
10990
14.0k
    if (ins->intel_syntax || !(sizeflag & SUFFIX_ALWAYS))
10991
12.9k
      break;
10992
1.09k
    USED_REX (REX_W);
10993
1.09k
    if (ins->modrm.mod == 3)
10994
608
      {
10995
608
        if (ins->rex & REX_W)
10996
228
    *ins->obufp++ = 'q';
10997
380
        else
10998
380
    {
10999
380
      if (sizeflag & DFLAG)
11000
190
        *ins->obufp++ = ins->intel_syntax ? 'd' : 'l';
11001
190
      else
11002
190
        *ins->obufp++ = 'w';
11003
380
      ins->used_prefixes |= (ins->prefixes & PREFIX_DATA);
11004
380
    }
11005
608
      }
11006
482
    else
11007
482
      *ins->obufp++ = 'w';
11008
1.09k
    break;
11009
54.2k
  case 'E':
11010
54.2k
    if (l == 1)
11011
43.2k
      {
11012
43.2k
        switch (last[0])
11013
43.2k
    {
11014
1.05k
    case 'M':
11015
1.05k
      if (ins->modrm.mod != 3)
11016
376
        break;
11017
    /* Fall through.  */
11018
41.4k
    case 'X':
11019
41.4k
      if (!ins->vex.evex || ins->vex.b || ins->vex.ll >= 2
11020
15.3k
          || (ins->rex2 & 7)
11021
8.48k
          || (ins->modrm.mod == 3 && (ins->rex & REX_X))
11022
7.48k
          || !ins->vex.v || ins->vex.mask_register_specifier)
11023
37.0k
        break;
11024
      /* AVX512 extends a number of V*D insns to also have V*Q variants,
11025
         merely distinguished by EVEX.W.  Look for a use of the
11026
         respective macro.  */
11027
4.41k
      if (ins->vex.w)
11028
1.74k
        {
11029
1.74k
          const char *pct = strchr (p + 1, '%');
11030
11031
1.74k
          if (pct != NULL && pct[1] == 'D' && pct[2] == 'Q')
11032
614
      break;
11033
1.74k
        }
11034
3.80k
      *ins->obufp++ = '{';
11035
3.80k
      *ins->obufp++ = 'e';
11036
3.80k
      *ins->obufp++ = 'v';
11037
3.80k
      *ins->obufp++ = 'e';
11038
3.80k
      *ins->obufp++ = 'x';
11039
3.80k
      *ins->obufp++ = '}';
11040
3.80k
      *ins->obufp++ = ' ';
11041
3.80k
      break;
11042
1.38k
    case 'N':
11043
      /* Skip printing {evex} for some special instructions in MAP4.  */
11044
1.38k
      evex_printed = true;
11045
1.38k
      break;
11046
0
    default:
11047
0
      abort ();
11048
43.2k
    }
11049
43.2k
    break;
11050
43.2k
      }
11051
    /* For jcxz/jecxz */
11052
11.0k
    if (ins->address_mode == mode_64bit)
11053
8.78k
      {
11054
8.78k
        if (sizeflag & AFLAG)
11055
8.37k
    *ins->obufp++ = 'r';
11056
416
        else
11057
416
    *ins->obufp++ = 'e';
11058
8.78k
      }
11059
2.25k
    else
11060
2.25k
      if (sizeflag & AFLAG)
11061
1.34k
        *ins->obufp++ = 'e';
11062
11.0k
    ins->used_prefixes |= (ins->prefixes & PREFIX_ADDR);
11063
11.0k
    break;
11064
76.0k
  case 'F':
11065
76.0k
    if (l == 0)
11066
25.9k
      {
11067
25.9k
        if (ins->intel_syntax)
11068
5.34k
    break;
11069
20.6k
        if ((ins->prefixes & PREFIX_ADDR) || (sizeflag & SUFFIX_ALWAYS))
11070
1.64k
    {
11071
1.64k
      if (sizeflag & AFLAG)
11072
857
        *ins->obufp++ = ins->address_mode == mode_64bit ? 'q' : 'l';
11073
787
      else
11074
787
        *ins->obufp++ = ins->address_mode == mode_64bit ? 'l' : 'w';
11075
1.64k
      ins->used_prefixes |= (ins->prefixes & PREFIX_ADDR);
11076
1.64k
    }
11077
20.6k
      }
11078
50.1k
    else if (l == 1 && last[0] == 'C')
11079
3.11k
      {
11080
3.11k
        if (ins->vex.nd && !ins->vex.nf)
11081
1.57k
    break;
11082
1.54k
        *ins->obufp++ = 'c';
11083
1.54k
        *ins->obufp++ = 'f';
11084
        /* Skip printing {evex} */
11085
1.54k
        evex_printed = true;
11086
1.54k
      }
11087
47.0k
    else if (l == 1 && last[0] == 'N')
11088
45.6k
      {
11089
45.6k
        if (ins->vex.nf)
11090
3.23k
    {
11091
3.23k
      oappend (ins, "{nf} ");
11092
      /* This bit needs to be cleared after it is consumed.  */
11093
3.23k
      ins->vex.nf = false;
11094
3.23k
      evex_printed = true;
11095
3.23k
    }
11096
42.3k
        else if (ins->evex_type == evex_from_vex && !(ins->rex2 & 7)
11097
702
           && ins->vex.v)
11098
429
    {
11099
429
      oappend (ins, "{evex} ");
11100
429
      evex_printed = true;
11101
429
    }
11102
45.6k
      }
11103
1.38k
    else if (l == 1 && last[0] == 'D')
11104
1.38k
      {
11105
        /* Get oszc flags value from register_specifier.  */
11106
1.38k
        int oszc_value = ~ins->vex.register_specifier & 0xf;
11107
11108
        /* Add {dfv=of, sf, zf, cf} flags.  */
11109
1.38k
        oappend (ins, oszc_flags[oszc_value]);
11110
11111
        /* These bits have been consumed and should be cleared.  */
11112
1.38k
        ins->vex.register_specifier = 0;
11113
1.38k
      }
11114
0
    else
11115
0
      abort ();
11116
69.1k
    break;
11117
69.1k
  case 'G':
11118
59.8k
    if (ins->intel_syntax || (ins->obufp[-1] != 's'
11119
29.8k
            && !(sizeflag & SUFFIX_ALWAYS)))
11120
39.2k
      break;
11121
20.5k
    if ((ins->rex & REX_W) || (sizeflag & DFLAG))
11122
19.6k
      *ins->obufp++ = 'l';
11123
868
    else
11124
868
      *ins->obufp++ = 'w';
11125
20.5k
    if (!(ins->rex & REX_W))
11126
19.8k
      ins->used_prefixes |= (ins->prefixes & PREFIX_DATA);
11127
20.5k
    break;
11128
257k
  case 'H':
11129
257k
    if (l == 0)
11130
240k
      {
11131
240k
        if (ins->intel_syntax)
11132
53.5k
          break;
11133
187k
        if ((ins->prefixes & (PREFIX_CS | PREFIX_DS)) == PREFIX_CS
11134
180k
      || (ins->prefixes & (PREFIX_CS | PREFIX_DS)) == PREFIX_DS)
11135
8.64k
    {
11136
8.64k
      ins->used_prefixes |= ins->prefixes & (PREFIX_CS | PREFIX_DS);
11137
8.64k
      *ins->obufp++ = ',';
11138
8.64k
      *ins->obufp++ = 'p';
11139
11140
      /* Set active_seg_prefix even if not set in 64-bit mode
11141
         because here it is a valid branch hint. */
11142
8.64k
      if (ins->prefixes & PREFIX_DS)
11143
1.85k
        {
11144
1.85k
          ins->active_seg_prefix = PREFIX_DS;
11145
1.85k
          *ins->obufp++ = 't';
11146
1.85k
        }
11147
6.79k
      else
11148
6.79k
        {
11149
6.79k
          ins->active_seg_prefix = PREFIX_CS;
11150
6.79k
          *ins->obufp++ = 'n';
11151
6.79k
        }
11152
8.64k
    }
11153
187k
      }
11154
16.2k
    else if (l == 1 && last[0] == 'X')
11155
16.2k
      {
11156
16.2k
        if (!ins->vex.w)
11157
7.69k
    *ins->obufp++ = 'h';
11158
8.57k
        else
11159
8.57k
    oappend (ins, "{bad}");
11160
16.2k
      }
11161
0
    else
11162
0
      abort ();
11163
203k
    break;
11164
203k
  case 'K':
11165
1.69k
    USED_REX (REX_W);
11166
1.69k
    if (ins->rex & REX_W)
11167
714
      *ins->obufp++ = 'q';
11168
979
    else
11169
979
      *ins->obufp++ = 'd';
11170
1.69k
    break;
11171
1.11k
  case 'L':
11172
1.11k
    if (ins->intel_syntax)
11173
384
      break;
11174
726
    if (sizeflag & SUFFIX_ALWAYS)
11175
444
      {
11176
444
        if (ins->rex & REX_W)
11177
190
    *ins->obufp++ = 'q';
11178
254
        else
11179
254
    *ins->obufp++ = 'l';
11180
444
      }
11181
726
    break;
11182
1.52k
  case 'M':
11183
1.52k
    if (ins->intel_mnemonic != cond)
11184
659
      *ins->obufp++ = 'r';
11185
1.52k
    break;
11186
2.38k
  case 'N':
11187
2.38k
    if ((ins->prefixes & PREFIX_FWAIT) == 0)
11188
1.75k
      *ins->obufp++ = 'n';
11189
627
    else
11190
627
      ins->used_prefixes |= PREFIX_FWAIT;
11191
2.38k
    break;
11192
30.6k
  case 'O':
11193
30.6k
    USED_REX (REX_W);
11194
30.6k
    if (ins->rex & REX_W)
11195
1.67k
      *ins->obufp++ = 'o';
11196
29.0k
    else if (ins->intel_syntax && (sizeflag & DFLAG))
11197
2.93k
      *ins->obufp++ = 'q';
11198
26.0k
    else
11199
26.0k
      *ins->obufp++ = 'd';
11200
30.6k
    if (!(ins->rex & REX_W))
11201
29.0k
      ins->used_prefixes |= (ins->prefixes & PREFIX_DATA);
11202
30.6k
    break;
11203
71.5k
  case '@':
11204
71.5k
    if (ins->address_mode == mode_64bit
11205
66.2k
        && (ins->isa64 == intel64 || (ins->rex & REX_W)
11206
61.4k
      || !(ins->prefixes & PREFIX_DATA)))
11207
65.2k
      {
11208
65.2k
        if (sizeflag & SUFFIX_ALWAYS)
11209
1.33k
    *ins->obufp++ = 'q';
11210
65.2k
        break;
11211
65.2k
      }
11212
    /* Fall through.  */
11213
328k
  case 'P':
11214
328k
    if (l == 0)
11215
292k
      {
11216
292k
        if (!cond && ins->last_rex2_prefix >= 0 && (ins->rex & REX_W))
11217
755
    {
11218
      /* For pushp and popp, p is printed and do not print {rex2}
11219
         for them.  */
11220
755
      *ins->obufp++ = 'p';
11221
755
      ins->rex2 |= REX2_SPECIAL;
11222
755
      break;
11223
755
    }
11224
11225
        /* For "!P" print nothing else in Intel syntax.  */
11226
292k
        if (!cond && ins->intel_syntax)
11227
42.7k
    break;
11228
11229
249k
        if ((ins->modrm.mod == 3 || !cond)
11230
147k
      && !(sizeflag & SUFFIX_ALWAYS))
11231
145k
    break;
11232
    /* Fall through.  */
11233
105k
  case 'T':
11234
105k
        if ((!(ins->rex & REX_W) && (ins->prefixes & PREFIX_DATA))
11235
102k
      || ((sizeflag & SUFFIX_ALWAYS)
11236
3.45k
          && ins->address_mode != mode_64bit))
11237
5.14k
    {
11238
5.14k
      *ins->obufp++ = (sizeflag & DFLAG)
11239
5.14k
          ? ins->intel_syntax ? 'd' : 'l' : 'w';
11240
5.14k
      ins->used_prefixes |= (ins->prefixes & PREFIX_DATA);
11241
5.14k
    }
11242
100k
        else if (sizeflag & SUFFIX_ALWAYS)
11243
1.54k
    *ins->obufp++ = 'q';
11244
105k
      }
11245
36.0k
    else if (l == 1 && last[0] == 'L')
11246
36.0k
      {
11247
36.0k
        if ((ins->prefixes & PREFIX_DATA)
11248
35.1k
      || (ins->rex & REX_W)
11249
33.5k
      || (sizeflag & SUFFIX_ALWAYS))
11250
3.15k
    {
11251
3.15k
      USED_REX (REX_W);
11252
3.15k
      if (ins->rex & REX_W)
11253
1.65k
        *ins->obufp++ = 'q';
11254
1.50k
      else
11255
1.50k
        {
11256
1.50k
          if (sizeflag & DFLAG)
11257
747
      *ins->obufp++ = ins->intel_syntax ? 'd' : 'l';
11258
754
          else
11259
754
      *ins->obufp++ = 'w';
11260
1.50k
          ins->used_prefixes |= (ins->prefixes & PREFIX_DATA);
11261
1.50k
        }
11262
3.15k
    }
11263
36.0k
      }
11264
0
    else
11265
0
      abort ();
11266
141k
    break;
11267
141k
  case 'Q':
11268
135k
    if (l == 0)
11269
120k
      {
11270
120k
        if (ins->intel_syntax && !alt)
11271
34.5k
    break;
11272
86.2k
        USED_REX (REX_W);
11273
86.2k
        if ((ins->need_modrm && ins->modrm.mod != 3 && !ins->vex.nd)
11274
29.7k
      || (sizeflag & SUFFIX_ALWAYS))
11275
56.8k
    {
11276
56.8k
      if (ins->rex & REX_W)
11277
1.96k
        *ins->obufp++ = 'q';
11278
54.9k
      else
11279
54.9k
        {
11280
54.9k
          if (sizeflag & DFLAG)
11281
47.7k
      *ins->obufp++ = ins->intel_syntax ? 'd' : 'l';
11282
7.15k
          else
11283
7.15k
      *ins->obufp++ = 'w';
11284
54.9k
          ins->used_prefixes |= (ins->prefixes & PREFIX_DATA);
11285
54.9k
        }
11286
56.8k
    }
11287
86.2k
      }
11288
14.3k
    else if (l == 1 && last[0] == 'D')
11289
8.93k
      *ins->obufp++ = ins->vex.w ? 'q' : 'd';
11290
5.38k
    else if (l == 1 && last[0] == 'L')
11291
5.38k
      {
11292
5.38k
        if (cond ? ins->modrm.mod == 3 && !(sizeflag & SUFFIX_ALWAYS)
11293
5.38k
           : ins->address_mode != mode_64bit)
11294
1.76k
    break;
11295
3.62k
        if ((ins->rex & REX_W))
11296
1.40k
    {
11297
1.40k
      USED_REX (REX_W);
11298
1.40k
      *ins->obufp++ = 'q';
11299
1.40k
    }
11300
2.21k
        else if ((ins->address_mode == mode_64bit && cond)
11301
1.30k
          || (sizeflag & SUFFIX_ALWAYS))
11302
1.14k
    *ins->obufp++ = ins->intel_syntax? 'd' : 'l';
11303
3.62k
      }
11304
0
    else
11305
0
      abort ();
11306
98.7k
    break;
11307
98.7k
  case 'R':
11308
85.5k
    USED_REX (REX_W);
11309
85.5k
    if (ins->rex & REX_W)
11310
4.62k
      *ins->obufp++ = 'q';
11311
80.9k
    else if (sizeflag & DFLAG)
11312
76.2k
      {
11313
76.2k
        if (ins->intel_syntax)
11314
9.01k
      *ins->obufp++ = 'd';
11315
67.1k
        else
11316
67.1k
      *ins->obufp++ = 'l';
11317
76.2k
      }
11318
4.70k
    else
11319
4.70k
      *ins->obufp++ = 'w';
11320
85.5k
    if (ins->intel_syntax && !p[1]
11321
8.23k
        && ((ins->rex & REX_W) || (sizeflag & DFLAG)))
11322
7.23k
      *ins->obufp++ = 'e';
11323
85.5k
    if (!(ins->rex & REX_W))
11324
80.9k
      ins->used_prefixes |= (ins->prefixes & PREFIX_DATA);
11325
85.5k
    break;
11326
625k
  case 'S':
11327
625k
    if (l == 0)
11328
603k
      {
11329
669k
      case_S:
11330
669k
        if (ins->intel_syntax)
11331
156k
    break;
11332
512k
        if (sizeflag & SUFFIX_ALWAYS)
11333
4.64k
    {
11334
4.64k
      if (ins->rex & REX_W)
11335
694
        *ins->obufp++ = 'q';
11336
3.95k
      else
11337
3.95k
        {
11338
3.95k
          if (sizeflag & DFLAG)
11339
1.85k
      *ins->obufp++ = 'l';
11340
2.09k
          else
11341
2.09k
      *ins->obufp++ = 'w';
11342
3.95k
          ins->used_prefixes |= (ins->prefixes & PREFIX_DATA);
11343
3.95k
        }
11344
4.64k
    }
11345
512k
        break;
11346
669k
      }
11347
22.1k
    if (l != 1)
11348
0
      abort ();
11349
22.1k
    switch (last[0])
11350
22.1k
      {
11351
17.0k
      case 'L':
11352
17.0k
        if (ins->address_mode == mode_64bit
11353
10.6k
      && !(ins->prefixes & PREFIX_ADDR))
11354
9.90k
    {
11355
9.90k
      *ins->obufp++ = 'a';
11356
9.90k
      *ins->obufp++ = 'b';
11357
9.90k
      *ins->obufp++ = 's';
11358
9.90k
    }
11359
11360
17.0k
        goto case_S;
11361
5.09k
      case 'X':
11362
5.09k
        if (!ins->vex.evex || !ins->vex.w)
11363
4.38k
    *ins->obufp++ = 's';
11364
709
        else
11365
709
    oappend (ins, "{bad}");
11366
5.09k
        break;
11367
0
      default:
11368
0
        abort ();
11369
22.1k
      }
11370
5.09k
    break;
11371
5.09k
  case 'U':
11372
3.82k
    if (l == 1 && (last[0] == 'Z'))
11373
3.82k
      {
11374
        /* Although IMUL/SETcc does not support NDD, the EVEX.ND bit is
11375
     used to control whether its destination register has its upper
11376
     bits zeroed.  */
11377
3.82k
        if (ins->vex.nd)
11378
2.27k
    oappend (ins, "zu");
11379
3.82k
      }
11380
0
    else
11381
0
      abort ();
11382
3.82k
    break;
11383
66.2k
  case 'V':
11384
66.2k
    if (l == 0)
11385
16.1k
      {
11386
16.1k
        if (ins->need_vex)
11387
7.48k
    *ins->obufp++ = 'v';
11388
16.1k
      }
11389
50.1k
    else if (l == 1)
11390
50.1k
      {
11391
50.1k
        switch (last[0])
11392
50.1k
    {
11393
1.27k
    case 'X':
11394
1.27k
      if (ins->vex.evex)
11395
729
        break;
11396
549
      *ins->obufp++ = '{';
11397
549
      *ins->obufp++ = 'v';
11398
549
      *ins->obufp++ = 'e';
11399
549
      *ins->obufp++ = 'x';
11400
549
      *ins->obufp++ = '}';
11401
549
      *ins->obufp++ = ' ';
11402
549
      break;
11403
48.8k
    case 'L':
11404
48.8k
      if (ins->rex & REX_W)
11405
1.26k
        {
11406
1.26k
          *ins->obufp++ = 'a';
11407
1.26k
          *ins->obufp++ = 'b';
11408
1.26k
          *ins->obufp++ = 's';
11409
1.26k
        }
11410
48.8k
      goto case_S;
11411
0
    default:
11412
0
      abort ();
11413
50.1k
    }
11414
50.1k
      }
11415
0
    else
11416
0
      abort ();
11417
17.3k
    break;
11418
32.9k
  case 'W':
11419
32.9k
    if (l == 0)
11420
18.8k
      {
11421
        /* operand size flag for cwtl, cbtw */
11422
18.8k
        USED_REX (REX_W);
11423
18.8k
        if (ins->rex & REX_W)
11424
2.81k
    {
11425
2.81k
      if (ins->intel_syntax)
11426
1.15k
        *ins->obufp++ = 'd';
11427
1.65k
      else
11428
1.65k
        *ins->obufp++ = 'l';
11429
2.81k
    }
11430
15.9k
        else if (sizeflag & DFLAG)
11431
14.3k
    *ins->obufp++ = 'w';
11432
1.67k
        else
11433
1.67k
    *ins->obufp++ = 'b';
11434
18.8k
        if (!(ins->rex & REX_W))
11435
15.9k
    ins->used_prefixes |= (ins->prefixes & PREFIX_DATA);
11436
18.8k
      }
11437
14.1k
    else if (l == 1)
11438
14.1k
      {
11439
14.1k
        if (!ins->need_vex)
11440
0
    abort ();
11441
14.1k
        if (last[0] == 'X')
11442
10.4k
    *ins->obufp++ = ins->vex.w ? 'd': 's';
11443
3.65k
        else if (last[0] == 'B')
11444
3.65k
    *ins->obufp++ = ins->vex.w ? 'w': 'b';
11445
0
        else
11446
0
    abort ();
11447
14.1k
      }
11448
0
    else
11449
0
      abort ();
11450
32.9k
    break;
11451
32.9k
  case 'X':
11452
10.8k
    if (l != 0)
11453
0
      abort ();
11454
10.8k
    if (ins->need_vex
11455
10.8k
        ? ins->vex.prefix == DATA_PREFIX_OPCODE
11456
10.8k
        : ins->prefixes & PREFIX_DATA)
11457
2.43k
      {
11458
2.43k
        *ins->obufp++ = 'd';
11459
2.43k
        ins->used_prefixes |= PREFIX_DATA;
11460
2.43k
      }
11461
8.38k
    else
11462
8.38k
      *ins->obufp++ = 's';
11463
10.8k
    break;
11464
15.4k
  case 'Y':
11465
15.4k
    if (l == 0)
11466
10.4k
      {
11467
10.4k
        if (ins->vex.mask_register_specifier)
11468
4.42k
    ins->illegal_masking = true;
11469
10.4k
      }
11470
4.94k
    else if (l == 1 && last[0] == 'X')
11471
4.94k
      {
11472
4.94k
        if (!ins->need_vex)
11473
554
    break;
11474
4.38k
        if (ins->intel_syntax
11475
3.39k
      || ((ins->modrm.mod == 3 || ins->vex.b)
11476
2.03k
          && !(sizeflag & SUFFIX_ALWAYS)))
11477
2.44k
    break;
11478
1.93k
        switch (ins->vex.length)
11479
1.93k
    {
11480
383
    case 128:
11481
383
      *ins->obufp++ = 'x';
11482
383
      break;
11483
1.02k
    case 256:
11484
1.02k
      *ins->obufp++ = 'y';
11485
1.02k
      break;
11486
527
    case 512:
11487
527
      if (!ins->vex.evex)
11488
0
    default:
11489
0
        abort ();
11490
1.93k
    }
11491
1.93k
      }
11492
0
    else
11493
0
      abort ();
11494
12.4k
    break;
11495
12.4k
  case 'Z':
11496
9.72k
    if (l == 0)
11497
6.22k
      {
11498
        /* These insns ignore ModR/M.mod: Force it to 3 for OP_E().  */
11499
6.22k
        ins->modrm.mod = 3;
11500
6.22k
        if (!ins->intel_syntax && (sizeflag & SUFFIX_ALWAYS))
11501
282
    *ins->obufp++ = ins->address_mode == mode_64bit ? 'q' : 'l';
11502
6.22k
      }
11503
3.50k
    else if (l == 1 && last[0] == 'X')
11504
3.50k
      {
11505
3.50k
        if (!ins->vex.evex)
11506
0
    abort ();
11507
3.50k
        if (ins->intel_syntax
11508
2.60k
      || ((ins->modrm.mod == 3 || ins->vex.b)
11509
1.36k
          && !(sizeflag & SUFFIX_ALWAYS)))
11510
1.99k
    break;
11511
1.51k
        switch (ins->vex.length)
11512
1.51k
    {
11513
262
    case 128:
11514
262
      *ins->obufp++ = 'x';
11515
262
      break;
11516
427
    case 256:
11517
427
      *ins->obufp++ = 'y';
11518
427
      break;
11519
825
    case 512:
11520
825
      *ins->obufp++ = 'z';
11521
825
      break;
11522
0
    default:
11523
0
      abort ();
11524
1.51k
    }
11525
1.51k
      }
11526
0
    else
11527
0
      abort ();
11528
7.73k
    break;
11529
19.2k
  case '^':
11530
19.2k
    if (ins->intel_syntax)
11531
6.07k
      break;
11532
13.1k
    if (ins->isa64 == intel64 && (ins->rex & REX_W))
11533
194
      {
11534
194
        USED_REX (REX_W);
11535
194
        *ins->obufp++ = 'q';
11536
194
        break;
11537
194
      }
11538
12.9k
    if ((ins->prefixes & PREFIX_DATA) || (sizeflag & SUFFIX_ALWAYS))
11539
1.29k
      {
11540
1.29k
        if (sizeflag & DFLAG)
11541
598
    *ins->obufp++ = 'l';
11542
699
        else
11543
699
    *ins->obufp++ = 'w';
11544
1.29k
        ins->used_prefixes |= (ins->prefixes & PREFIX_DATA);
11545
1.29k
      }
11546
12.9k
    break;
11547
17.8M
  }
11548
11549
17.8M
      if (len == l)
11550
17.5M
  len = l = 0;
11551
17.8M
    }
11552
3.82M
  *ins->obufp = 0;
11553
3.82M
  ins->mnemonicendp = ins->obufp;
11554
3.82M
  return 0;
11555
3.82M
}
11556
11557
/* Add a style marker to *INS->obufp that encodes STYLE.  This assumes that
11558
   the buffer pointed to by INS->obufp has space.  A style marker is made
11559
   from the STYLE_MARKER_CHAR followed by STYLE converted to a single hex
11560
   digit, followed by another STYLE_MARKER_CHAR.  This function assumes
11561
   that the number of styles is not greater than 16.  */
11562
11563
static void
11564
oappend_insert_style (instr_info *ins, enum disassembler_style style)
11565
13.4M
{
11566
13.4M
  unsigned num = (unsigned) style;
11567
11568
  /* We currently assume that STYLE can be encoded as a single hex
11569
     character.  If more styles are added then this might start to fail,
11570
     and we'll need to expand this code.  */
11571
13.4M
  if (num > 0xf)
11572
0
    abort ();
11573
11574
13.4M
  *ins->obufp++ = STYLE_MARKER_CHAR;
11575
13.4M
  *ins->obufp++ = (num < 10 ? ('0' + num)
11576
13.4M
       : ((num < 16) ? ('a' + (num - 10)) : '0'));
11577
13.4M
  *ins->obufp++ = STYLE_MARKER_CHAR;
11578
11579
  /* This final null character is not strictly necessary, after inserting a
11580
     style marker we should always be inserting some additional content.
11581
     However, having the buffer null terminated doesn't cost much, and make
11582
     it easier to debug what's going on.  Also, if we do ever forget to add
11583
     any additional content after this style marker, then the buffer will
11584
     still be well formed.  */
11585
13.4M
  *ins->obufp = '\0';
11586
13.4M
}
11587
11588
static void
11589
oappend_with_style (instr_info *ins, const char *s,
11590
        enum disassembler_style style)
11591
8.58M
{
11592
8.58M
  oappend_insert_style (ins, style);
11593
8.58M
  ins->obufp = stpcpy (ins->obufp, s);
11594
8.58M
}
11595
11596
/* Add a comment to the comment buffer.  */
11597
11598
static void
11599
cappend_with_style (instr_info *ins, const char *s,
11600
        enum disassembler_style style)
11601
0
{
11602
0
  size_t len = strlen (ins->cbufp);
11603
11604
0
  if (len + !!len + strlen (s) + 4 >= COMMENT_BUFFER_SIZE)
11605
0
    return;
11606
11607
0
  unsigned num = (unsigned) style;
11608
11609
0
  if (len)
11610
0
    *ins->cbufp++ = ' ';
11611
0
  *ins->cbufp++ = STYLE_MARKER_CHAR;
11612
0
  *ins->cbufp++ = (num < 10 ? ('0' + num)
11613
0
       : ((num < 16) ? ('a' + (num - 10)) : '0'));
11614
0
  *ins->cbufp++ = STYLE_MARKER_CHAR;
11615
11616
0
  ins->cbufp = stpcpy (ins->cbufp, s);
11617
0
}
11618
11619
/* Add a single character C to the buffer pointer to by INS->obufp, marking
11620
   the style for the character as STYLE.  */
11621
11622
static void
11623
oappend_char_with_style (instr_info *ins, const char c,
11624
       enum disassembler_style style)
11625
4.91M
{
11626
4.91M
  oappend_insert_style (ins, style);
11627
4.91M
  *ins->obufp++ = c;
11628
4.91M
  *ins->obufp = '\0';
11629
4.91M
}
11630
11631
/* Like oappend_char_with_style, but always uses dis_style_text.  */
11632
11633
static void
11634
oappend_char (instr_info *ins, const char c)
11635
4.28M
{
11636
4.28M
  oappend_char_with_style (ins, c, dis_style_text);
11637
4.28M
}
11638
11639
static void
11640
append_seg (instr_info *ins)
11641
2.00M
{
11642
  /* Only print the active segment register.  */
11643
2.00M
  if (!ins->active_seg_prefix)
11644
1.94M
    return;
11645
11646
60.2k
  ins->used_prefixes |= ins->active_seg_prefix;
11647
60.2k
  switch (ins->active_seg_prefix)
11648
60.2k
    {
11649
2.49k
    case PREFIX_CS:
11650
2.49k
      oappend_register (ins, att_names_seg[1]);
11651
2.49k
      break;
11652
24.0k
    case PREFIX_DS:
11653
24.0k
      oappend_register (ins, att_names_seg[3]);
11654
24.0k
      break;
11655
1.84k
    case PREFIX_SS:
11656
1.84k
      oappend_register (ins, att_names_seg[2]);
11657
1.84k
      break;
11658
1.89k
    case PREFIX_ES:
11659
1.89k
      oappend_register (ins, att_names_seg[0]);
11660
1.89k
      break;
11661
12.7k
    case PREFIX_FS:
11662
12.7k
      oappend_register (ins, att_names_seg[4]);
11663
12.7k
      break;
11664
17.2k
    case PREFIX_GS:
11665
17.2k
      oappend_register (ins, att_names_seg[5]);
11666
17.2k
      break;
11667
0
    default:
11668
0
      break;
11669
60.2k
    }
11670
60.2k
  oappend_char (ins, ':');
11671
60.2k
}
11672
11673
static void
11674
print_operand_value (instr_info *ins, bfd_vma disp,
11675
         enum disassembler_style style)
11676
847k
{
11677
847k
  char tmp[30];
11678
11679
847k
  if (ins->address_mode != mode_64bit)
11680
157k
    disp &= 0xffffffff;
11681
847k
  sprintf (tmp, "0x%" PRIx64, (uint64_t) disp);
11682
847k
  oappend_with_style (ins, tmp, style);
11683
847k
}
11684
11685
/* Like oappend, but called for immediate operands.  */
11686
11687
static void
11688
oappend_immediate (instr_info *ins, bfd_vma imm)
11689
517k
{
11690
517k
  if (!ins->intel_syntax)
11691
392k
    oappend_char_with_style (ins, '$', dis_style_immediate);
11692
11693
517k
  print_operand_value (ins, imm, dis_style_immediate);
11694
11695
  /* Determine if we can display some more information about this immediate.  */
11696
517k
  if (! ins->annotate_immediates
11697
      /* Don't bother with zero, even if there is symbol associated with it.  */
11698
600
      || imm == 0
11699
      /* For the next tests we need a BFD.  If we do not have one then do not proceed.  */
11700
410
      || ins->info->section == NULL
11701
0
      || ins->info->section->owner == NULL
11702
      /* Save time by avoiding immediates that cannot reference part of the address space.  */
11703
0
      || imm < ins->info->section->owner->start_address
11704
      /* Also skip static object files as their symbols have not been resolved.  */
11705
0
      || (ins->info->section->owner->flags & (EXEC_P | DYNAMIC)) == 0)
11706
517k
    return;
11707
11708
0
  asymbol * sym = ins->info->symbol_at_address_func (imm, ins->info);
11709
0
  if (sym == NULL)
11710
0
    return;
11711
11712
0
  char * annotation = NULL;
11713
11714
0
  if (asprintf (& annotation, "[%s]", sym->name) > 0)
11715
0
    {
11716
      /* Display the symbol associated with address 'imm'.  */
11717
0
      cappend_with_style (ins, annotation, dis_style_symbol);
11718
0
    }
11719
11720
0
  free (annotation);
11721
0
}
11722
11723
/* Put DISP in BUF as signed hex number.  */
11724
11725
static void
11726
print_displacement (instr_info *ins, bfd_signed_vma val)
11727
443k
{
11728
443k
  char tmp[30];
11729
11730
443k
  if (val < 0)
11731
130k
    {
11732
130k
      oappend_char_with_style (ins, '-', dis_style_address_offset);
11733
130k
      val = (bfd_vma) 0 - val;
11734
11735
      /* Check for possible overflow.  */
11736
130k
      if (val < 0)
11737
0
  {
11738
0
    switch (ins->address_mode)
11739
0
      {
11740
0
      case mode_64bit:
11741
0
        oappend_with_style (ins, "0x8000000000000000",
11742
0
          dis_style_address_offset);
11743
0
        break;
11744
0
      case mode_32bit:
11745
0
        oappend_with_style (ins, "0x80000000",
11746
0
          dis_style_address_offset);
11747
0
        break;
11748
0
      case mode_16bit:
11749
0
        oappend_with_style (ins, "0x8000",
11750
0
          dis_style_address_offset);
11751
0
        break;
11752
0
      }
11753
0
    return;
11754
0
  }
11755
130k
    }
11756
11757
443k
  sprintf (tmp, "0x%" PRIx64, (int64_t) val);
11758
443k
  oappend_with_style (ins, tmp, dis_style_address_offset);
11759
443k
}
11760
11761
static void
11762
intel_operand_size (instr_info *ins, int bytemode, int sizeflag)
11763
516k
{
11764
  /* Check if there is a broadcast, when evex.b is not treated as evex.nd.  */
11765
516k
  if (ins->vex.b && ins->evex_type == evex_default)
11766
6.47k
    {
11767
6.47k
      if (!ins->vex.no_broadcast)
11768
5.69k
  switch (bytemode)
11769
5.69k
    {
11770
2.06k
    case x_mode:
11771
2.72k
    case evex_half_bcst_xmmq_mode:
11772
2.72k
      if (ins->vex.w)
11773
1.52k
        oappend (ins, "QWORD BCST ");
11774
1.19k
      else
11775
1.19k
        oappend (ins, "DWORD BCST ");
11776
2.72k
      break;
11777
715
    case xh_mode:
11778
1.04k
    case evex_half_bcst_xmmqh_mode:
11779
1.36k
    case evex_half_bcst_xmmqdh_mode:
11780
1.36k
      oappend (ins, "WORD BCST ");
11781
1.36k
      break;
11782
1.60k
    default:
11783
1.60k
      ins->vex.no_broadcast = true;
11784
1.60k
      break;
11785
5.69k
    }
11786
6.47k
      return;
11787
6.47k
    }
11788
510k
  switch (bytemode)
11789
510k
    {
11790
269k
    case b_mode:
11791
287k
    case b_swap_mode:
11792
287k
    case db_mode:
11793
287k
      oappend (ins, "BYTE PTR ");
11794
287k
      break;
11795
6.78k
    case w_mode:
11796
7.19k
    case w_swap_mode:
11797
7.70k
    case dw_mode:
11798
7.70k
      oappend (ins, "WORD PTR ");
11799
7.70k
      break;
11800
8.82k
    case indir_v_mode:
11801
8.82k
      if (ins->address_mode == mode_64bit && ins->isa64 == intel64)
11802
230
  {
11803
230
    oappend (ins, "QWORD PTR ");
11804
230
    break;
11805
230
  }
11806
      /* Fall through.  */
11807
11.7k
    case stack_v_mode:
11808
11.7k
      if (ins->address_mode == mode_64bit && ((sizeflag & DFLAG)
11809
1.47k
                || (ins->rex & REX_W)))
11810
7.30k
  {
11811
7.30k
    oappend (ins, "QWORD PTR ");
11812
7.30k
    break;
11813
7.30k
  }
11814
      /* Fall through.  */
11815
88.1k
    case v_mode:
11816
115k
    case v_swap_mode:
11817
118k
    case dq_mode:
11818
118k
      USED_REX (REX_W);
11819
118k
      if (ins->rex & REX_W)
11820
3.93k
  oappend (ins, "QWORD PTR ");
11821
114k
      else if (bytemode == dq_mode)
11822
2.45k
  oappend (ins, "DWORD PTR ");
11823
112k
      else
11824
112k
  {
11825
112k
    if (sizeflag & DFLAG)
11826
103k
      oappend (ins, "DWORD PTR ");
11827
9.12k
    else
11828
9.12k
      oappend (ins, "WORD PTR ");
11829
112k
    ins->used_prefixes |= (ins->prefixes & PREFIX_DATA);
11830
112k
  }
11831
118k
      break;
11832
19.1k
    case z_mode:
11833
19.1k
      if ((ins->rex & REX_W) || (sizeflag & DFLAG))
11834
16.7k
  *ins->obufp++ = 'D';
11835
19.1k
      oappend (ins, "WORD PTR ");
11836
19.1k
      if (!(ins->rex & REX_W))
11837
18.3k
  ins->used_prefixes |= (ins->prefixes & PREFIX_DATA);
11838
19.1k
      break;
11839
8.14k
    case a_mode:
11840
8.14k
      if (sizeflag & DFLAG)
11841
4.98k
  oappend (ins, "QWORD PTR ");
11842
3.16k
      else
11843
3.16k
  oappend (ins, "DWORD PTR ");
11844
8.14k
      ins->used_prefixes |= (ins->prefixes & PREFIX_DATA);
11845
8.14k
      break;
11846
2.36k
    case movsxd_mode:
11847
2.36k
      if (!(sizeflag & DFLAG) && ins->isa64 == intel64)
11848
190
  oappend (ins, "WORD PTR ");
11849
2.17k
      else
11850
2.17k
  oappend (ins, "DWORD PTR ");
11851
2.36k
      ins->used_prefixes |= (ins->prefixes & PREFIX_DATA);
11852
2.36k
      break;
11853
3.64k
    case d_mode:
11854
4.07k
    case d_swap_mode:
11855
4.07k
      oappend (ins, "DWORD PTR ");
11856
4.07k
      break;
11857
11.2k
    case q_mode:
11858
11.9k
    case q_swap_mode:
11859
11.9k
      oappend (ins, "QWORD PTR ");
11860
11.9k
      break;
11861
872
    case m_mode:
11862
872
      if (ins->address_mode == mode_64bit)
11863
501
  oappend (ins, "QWORD PTR ");
11864
371
      else
11865
371
  oappend (ins, "DWORD PTR ");
11866
872
      break;
11867
6.36k
    case f_mode:
11868
6.36k
      if (sizeflag & DFLAG)
11869
4.29k
  oappend (ins, "FWORD PTR ");
11870
2.07k
      else
11871
2.07k
  oappend (ins, "DWORD PTR ");
11872
6.36k
      ins->used_prefixes |= (ins->prefixes & PREFIX_DATA);
11873
6.36k
      break;
11874
710
    case t_mode:
11875
710
      oappend (ins, "TBYTE PTR ");
11876
710
      break;
11877
9.04k
    case x_mode:
11878
10.1k
    case xh_mode:
11879
11.4k
    case x_swap_mode:
11880
11.8k
    case evex_x_gscat_mode:
11881
12.4k
    case evex_x_nobcst_mode:
11882
13.0k
    case bw_unit_mode:
11883
13.0k
      if (ins->need_vex)
11884
8.63k
  {
11885
8.63k
    switch (ins->vex.length)
11886
8.63k
      {
11887
3.07k
      case 128:
11888
3.07k
        oappend (ins, "XMMWORD PTR ");
11889
3.07k
        break;
11890
3.30k
      case 256:
11891
3.30k
        oappend (ins, "YMMWORD PTR ");
11892
3.30k
        break;
11893
2.24k
      case 512:
11894
2.24k
        oappend (ins, "ZMMWORD PTR ");
11895
2.24k
        break;
11896
0
      default:
11897
0
        abort ();
11898
8.63k
      }
11899
8.63k
  }
11900
4.41k
      else
11901
4.41k
  oappend (ins, "XMMWORD PTR ");
11902
13.0k
      break;
11903
13.0k
    case xmm_mode:
11904
833
      oappend (ins, "XMMWORD PTR ");
11905
833
      break;
11906
562
    case ymm_mode:
11907
562
      oappend (ins, "YMMWORD PTR ");
11908
562
      break;
11909
675
    case xmmq_mode:
11910
1.23k
    case evex_half_bcst_xmmqh_mode:
11911
2.22k
    case evex_half_bcst_xmmq_mode:
11912
2.22k
      switch (ins->vex.length)
11913
2.22k
  {
11914
719
  case 0:
11915
1.24k
  case 128:
11916
1.24k
    oappend (ins, "QWORD PTR ");
11917
1.24k
    break;
11918
437
  case 256:
11919
437
    oappend (ins, "XMMWORD PTR ");
11920
437
    break;
11921
542
  case 512:
11922
542
    oappend (ins, "YMMWORD PTR ");
11923
542
    break;
11924
0
  default:
11925
0
    abort ();
11926
2.22k
  }
11927
2.22k
      break;
11928
2.22k
    case xmmdw_mode:
11929
1.52k
      if (!ins->need_vex)
11930
0
  abort ();
11931
11932
1.52k
      switch (ins->vex.length)
11933
1.52k
  {
11934
720
  case 128:
11935
720
    oappend (ins, "WORD PTR ");
11936
720
    break;
11937
390
  case 256:
11938
390
    oappend (ins, "DWORD PTR ");
11939
390
    break;
11940
412
  case 512:
11941
412
    oappend (ins, "QWORD PTR ");
11942
412
    break;
11943
0
  default:
11944
0
    abort ();
11945
1.52k
  }
11946
1.52k
      break;
11947
1.97k
    case xmmqd_mode:
11948
2.52k
    case evex_half_bcst_xmmqdh_mode:
11949
2.52k
      if (!ins->need_vex)
11950
0
  abort ();
11951
11952
2.52k
      switch (ins->vex.length)
11953
2.52k
  {
11954
619
  case 128:
11955
619
    oappend (ins, "DWORD PTR ");
11956
619
    break;
11957
1.19k
  case 256:
11958
1.19k
    oappend (ins, "QWORD PTR ");
11959
1.19k
    break;
11960
720
  case 512:
11961
720
    oappend (ins, "XMMWORD PTR ");
11962
720
    break;
11963
0
  default:
11964
0
    abort ();
11965
2.52k
  }
11966
2.52k
      break;
11967
2.52k
    case ymmq_mode:
11968
1.46k
      if (!ins->need_vex)
11969
0
  abort ();
11970
11971
1.46k
      switch (ins->vex.length)
11972
1.46k
  {
11973
463
  case 128:
11974
463
    oappend (ins, "QWORD PTR ");
11975
463
    break;
11976
720
  case 256:
11977
720
    oappend (ins, "YMMWORD PTR ");
11978
720
    break;
11979
285
  case 512:
11980
285
    oappend (ins, "ZMMWORD PTR ");
11981
285
    break;
11982
0
  default:
11983
0
    abort ();
11984
1.46k
  }
11985
1.46k
      break;
11986
1.46k
    case o_mode:
11987
279
      oappend (ins, "OWORD PTR ");
11988
279
      break;
11989
1.18k
    case vex_vsib_d_w_dq_mode:
11990
2.64k
    case vex_vsib_q_w_dq_mode:
11991
2.64k
      if (!ins->need_vex)
11992
0
  abort ();
11993
2.64k
      if (ins->vex.w)
11994
1.19k
  oappend (ins, "QWORD PTR ");
11995
1.45k
      else
11996
1.45k
  oappend (ins, "DWORD PTR ");
11997
2.64k
      break;
11998
1.26k
    case mask_bd_mode:
11999
1.26k
      if (!ins->need_vex || ins->vex.length != 128)
12000
0
  abort ();
12001
1.26k
      if (ins->vex.w)
12002
535
  oappend (ins, "DWORD PTR ");
12003
729
      else
12004
729
  oappend (ins, "BYTE PTR ");
12005
1.26k
      break;
12006
970
    case mask_mode:
12007
970
      if (!ins->need_vex)
12008
0
  abort ();
12009
970
      if (ins->vex.w)
12010
302
  oappend (ins, "QWORD PTR ");
12011
668
      else
12012
668
  oappend (ins, "WORD PTR ");
12013
970
      break;
12014
671
    case v_bnd_mode:
12015
2.13k
    case v_bndmk_mode:
12016
7.76k
    default:
12017
7.76k
      break;
12018
510k
    }
12019
510k
}
12020
12021
static void
12022
print_register (instr_info *ins, unsigned int reg, unsigned int rexmask,
12023
    int bytemode, int sizeflag)
12024
1.97M
{
12025
1.97M
  const char (*names)[8];
12026
12027
  /* Masking is invalid for insns with GPR destination. Set the flag uniformly,
12028
     as the consumer will inspect it only for the destination operand.  */
12029
1.97M
  if (bytemode != mask_mode && ins->vex.mask_register_specifier)
12030
8.91k
    ins->illegal_masking = true;
12031
12032
1.97M
  USED_REX (rexmask);
12033
1.97M
  if (ins->rex & rexmask)
12034
55.1k
    reg += 8;
12035
1.97M
  if (ins->rex2 & rexmask)
12036
17.9k
    reg += 16;
12037
12038
1.97M
  switch (bytemode)
12039
1.97M
    {
12040
1.39M
    case b_mode:
12041
1.40M
    case b_swap_mode:
12042
1.40M
      if (reg & 4)
12043
307k
  USED_REX (0);
12044
1.40M
      if (ins->rex || ins->rex2)
12045
28.0k
  names = att_names8rex;
12046
1.37M
      else
12047
1.37M
  names = att_names8;
12048
1.40M
      break;
12049
672
    case w_mode:
12050
672
      names = att_names16;
12051
672
      break;
12052
12.4k
    case d_mode:
12053
13.3k
    case dw_mode:
12054
14.2k
    case db_mode:
12055
14.2k
      names = att_names32;
12056
14.2k
      break;
12057
2.79k
    case q_mode:
12058
2.79k
      names = att_names64;
12059
2.79k
      break;
12060
7.30k
    case m_mode:
12061
7.57k
    case v_bnd_mode:
12062
7.57k
      names = ins->address_mode == mode_64bit ? att_names64 : att_names32;
12063
7.57k
      break;
12064
8.03k
    case bnd_mode:
12065
8.40k
    case bnd_swap_mode:
12066
8.40k
      if (reg > 0x3)
12067
3.41k
  {
12068
3.41k
    oappend (ins, "(bad)");
12069
3.41k
    return;
12070
3.41k
  }
12071
4.99k
      names = att_names_bnd;
12072
4.99k
      break;
12073
13.8k
    case indir_v_mode:
12074
13.8k
      if (ins->address_mode == mode_64bit && ins->isa64 == intel64)
12075
340
  {
12076
340
    names = att_names64;
12077
340
    break;
12078
340
  }
12079
      /* Fall through.  */
12080
19.4k
    case stack_v_mode:
12081
19.4k
      if (ins->address_mode == mode_64bit && ((sizeflag & DFLAG)
12082
970
                || (ins->rex & REX_W)))
12083
12.4k
  {
12084
12.4k
    names = att_names64;
12085
12.4k
    break;
12086
12.4k
  }
12087
6.99k
      bytemode = v_mode;
12088
      /* Fall through.  */
12089
477k
    case v_mode:
12090
492k
    case v_swap_mode:
12091
503k
    case dq_mode:
12092
503k
      USED_REX (REX_W);
12093
503k
      if (ins->rex & REX_W)
12094
53.4k
  names = att_names64;
12095
449k
      else if (bytemode != v_mode && bytemode != v_swap_mode)
12096
9.47k
  names = att_names32;
12097
440k
      else
12098
440k
  {
12099
440k
    if (sizeflag & DFLAG)
12100
390k
      names = att_names32;
12101
50.1k
    else
12102
50.1k
      names = att_names16;
12103
440k
    ins->used_prefixes |= (ins->prefixes & PREFIX_DATA);
12104
440k
  }
12105
503k
      break;
12106
3.27k
    case movsxd_mode:
12107
3.27k
      if (!(sizeflag & DFLAG) && ins->isa64 == intel64)
12108
190
  names = att_names16;
12109
3.08k
      else
12110
3.08k
  names = att_names32;
12111
3.27k
      ins->used_prefixes |= (ins->prefixes & PREFIX_DATA);
12112
3.27k
      break;
12113
1.20k
    case va_mode:
12114
1.20k
      names = (ins->address_mode == mode_64bit
12115
1.20k
         ? att_names64 : att_names32);
12116
1.20k
      if (!(ins->prefixes & PREFIX_ADDR))
12117
876
  names = (ins->address_mode == mode_16bit
12118
876
         ? att_names16 : names);
12119
331
      else
12120
331
  {
12121
    /* Remove "addr16/addr32".  */
12122
331
    ins->all_prefixes[ins->last_addr_prefix] = 0;
12123
331
    names = (ins->address_mode != mode_32bit
12124
331
           ? att_names32 : att_names16);
12125
331
    ins->used_prefixes |= PREFIX_ADDR;
12126
331
  }
12127
1.20k
      break;
12128
429
    case mask_bd_mode:
12129
16.4k
    case mask_mode:
12130
16.4k
      if (reg > 0x7)
12131
9.55k
  {
12132
9.55k
    oappend (ins, "(bad)");
12133
9.55k
    return;
12134
9.55k
  }
12135
6.91k
      names = att_names_mask;
12136
6.91k
      break;
12137
544
    case 0:
12138
544
      return;
12139
0
    default:
12140
0
      oappend (ins, INTERNAL_DISASSEMBLER_ERROR);
12141
0
      return;
12142
1.97M
    }
12143
1.96M
  oappend_register (ins, names[reg]);
12144
1.96M
}
12145
12146
static bool
12147
get8s (instr_info *ins, bfd_vma *res)
12148
561k
{
12149
561k
  if (!fetch_code (ins->info, ins->codep + 1))
12150
9.34k
    return false;
12151
551k
  *res = ((bfd_vma) *ins->codep++ ^ 0x80) - 0x80;
12152
551k
  return true;
12153
561k
}
12154
12155
static bool
12156
get16 (instr_info *ins, bfd_vma *res)
12157
63.3k
{
12158
63.3k
  if (!fetch_code (ins->info, ins->codep + 2))
12159
2.90k
    return false;
12160
60.4k
  *res = *ins->codep++;
12161
60.4k
  *res |= (bfd_vma) *ins->codep++ << 8;
12162
60.4k
  return true;
12163
63.3k
}
12164
12165
static bool
12166
get16s (instr_info *ins, bfd_vma *res)
12167
18.2k
{
12168
18.2k
  if (!get16 (ins, res))
12169
1.05k
    return false;
12170
17.2k
  *res = (*res ^ 0x8000) - 0x8000;
12171
17.2k
  return true;
12172
18.2k
}
12173
12174
static bool
12175
get32 (instr_info *ins, bfd_vma *res)
12176
381k
{
12177
381k
  if (!fetch_code (ins->info, ins->codep + 4))
12178
14.5k
    return false;
12179
367k
  *res = *ins->codep++;
12180
367k
  *res |= (bfd_vma) *ins->codep++ << 8;
12181
367k
  *res |= (bfd_vma) *ins->codep++ << 16;
12182
367k
  *res |= (bfd_vma) *ins->codep++ << 24;
12183
367k
  return true;
12184
381k
}
12185
12186
static bool
12187
get32s (instr_info *ins, bfd_vma *res)
12188
234k
{
12189
234k
  if (!get32 (ins, res))
12190
9.86k
    return false;
12191
12192
224k
  *res = (*res ^ ((bfd_vma) 1 << 31)) - ((bfd_vma) 1 << 31);
12193
12194
224k
  return true;
12195
234k
}
12196
12197
static bool
12198
get64 (instr_info *ins, uint64_t *res)
12199
25.6k
{
12200
25.6k
  unsigned int a;
12201
25.6k
  unsigned int b;
12202
12203
25.6k
  if (!fetch_code (ins->info, ins->codep + 8))
12204
1.22k
    return false;
12205
24.3k
  a = *ins->codep++;
12206
24.3k
  a |= (unsigned int) *ins->codep++ << 8;
12207
24.3k
  a |= (unsigned int) *ins->codep++ << 16;
12208
24.3k
  a |= (unsigned int) *ins->codep++ << 24;
12209
24.3k
  b = *ins->codep++;
12210
24.3k
  b |= (unsigned int) *ins->codep++ << 8;
12211
24.3k
  b |= (unsigned int) *ins->codep++ << 16;
12212
24.3k
  b |= (unsigned int) *ins->codep++ << 24;
12213
24.3k
  *res = a + ((uint64_t) b << 32);
12214
24.3k
  return true;
12215
25.6k
}
12216
12217
static void
12218
set_op (instr_info *ins, bfd_vma op, bool riprel)
12219
316k
{
12220
316k
  ins->op_index[ins->op_ad] = ins->op_ad;
12221
316k
  if (ins->address_mode == mode_64bit)
12222
267k
    ins->op_address[ins->op_ad] = op;
12223
48.9k
  else /* Mask to get a 32-bit address.  */
12224
48.9k
    ins->op_address[ins->op_ad] = op & 0xffffffff;
12225
316k
  ins->op_riprel[ins->op_ad] = riprel;
12226
316k
}
12227
12228
static bool
12229
BadOp (instr_info *ins)
12230
42.3k
{
12231
  /* Throw away prefixes and 1st. opcode byte.  */
12232
42.3k
  struct dis_private *priv = ins->info->private_data;
12233
12234
42.3k
  ins->codep = priv->the_buffer + ins->nr_prefixes + ins->need_vex + 1;
12235
42.3k
  ins->obufp = stpcpy (ins->obufp, "(bad)");
12236
42.3k
  return true;
12237
42.3k
}
12238
12239
static bool
12240
OP_Skip_MODRM (instr_info *ins, int bytemode ATTRIBUTE_UNUSED,
12241
         int sizeflag ATTRIBUTE_UNUSED)
12242
2.13k
{
12243
2.13k
  if (ins->modrm.mod != 3)
12244
813
    return BadOp (ins);
12245
12246
  /* Skip mod/rm byte.  */
12247
1.32k
  MODRM_CHECK;
12248
1.32k
  ins->codep++;
12249
1.32k
  ins->has_skipped_modrm = true;
12250
1.32k
  return true;
12251
1.32k
}
12252
12253
static bool
12254
OP_E_memory (instr_info *ins, int bytemode, int sizeflag)
12255
1.82M
{
12256
1.82M
  int add = (ins->rex & REX_B) ? 8 : 0;
12257
1.82M
  int riprel = 0;
12258
1.82M
  int shift;
12259
12260
1.82M
  add += (ins->rex2 & REX_B) ? 16 : 0;
12261
12262
  /* Handles EVEX other than APX EVEX-promoted instructions.  */
12263
1.82M
  if (ins->vex.evex && ins->evex_type == evex_default)
12264
52.2k
    {
12265
12266
      /* Zeroing-masking is invalid for memory destinations. Set the flag
12267
   uniformly, as the consumer will inspect it only for the destination
12268
   operand.  */
12269
52.2k
      if (ins->vex.zeroing)
12270
19.9k
  ins->illegal_masking = true;
12271
12272
52.2k
      switch (bytemode)
12273
52.2k
  {
12274
324
  case dw_mode:
12275
934
  case w_mode:
12276
1.36k
  case w_swap_mode:
12277
1.36k
    shift = 1;
12278
1.36k
    break;
12279
406
  case db_mode:
12280
672
  case b_mode:
12281
672
    shift = 0;
12282
672
    break;
12283
1.48k
  case dq_mode:
12284
1.48k
    if (ins->address_mode != mode_64bit)
12285
585
      {
12286
2.02k
  case d_mode:
12287
2.46k
  case d_swap_mode:
12288
2.46k
        shift = 2;
12289
2.46k
        break;
12290
2.02k
      }
12291
      /* fall through */
12292
3.86k
  case vex_vsib_d_w_dq_mode:
12293
6.69k
  case vex_vsib_q_w_dq_mode:
12294
7.24k
  case evex_x_gscat_mode:
12295
7.24k
    shift = ins->vex.w ? 3 : 2;
12296
7.24k
    break;
12297
4.43k
  case xh_mode:
12298
5.97k
  case evex_half_bcst_xmmqh_mode:
12299
7.73k
  case evex_half_bcst_xmmqdh_mode:
12300
7.73k
    if (ins->vex.b)
12301
4.05k
      {
12302
4.05k
        shift = ins->vex.w ? 2 : 1;
12303
4.05k
        break;
12304
4.05k
      }
12305
    /* Fall through.  */
12306
22.5k
  case x_mode:
12307
24.2k
  case evex_half_bcst_xmmq_mode:
12308
24.2k
    if (ins->vex.b)
12309
10.4k
      {
12310
10.4k
        shift = ins->vex.w ? 3 : 2;
12311
10.4k
        break;
12312
10.4k
      }
12313
    /* Fall through.  */
12314
15.1k
  case xmmqd_mode:
12315
16.4k
  case xmmdw_mode:
12316
16.8k
  case xmmq_mode:
12317
19.4k
  case ymmq_mode:
12318
19.8k
  case evex_x_nobcst_mode:
12319
20.4k
  case x_swap_mode:
12320
20.4k
    switch (ins->vex.length)
12321
20.4k
      {
12322
7.18k
      case 128:
12323
7.18k
        shift = 4;
12324
7.18k
        break;
12325
6.29k
      case 256:
12326
6.29k
        shift = 5;
12327
6.29k
        break;
12328
6.95k
      case 512:
12329
6.95k
        shift = 6;
12330
6.95k
        break;
12331
0
      default:
12332
0
        abort ();
12333
20.4k
      }
12334
    /* Make necessary corrections to shift for modes that need it.  */
12335
20.4k
    if (bytemode == xmmq_mode
12336
20.0k
        || bytemode == evex_half_bcst_xmmqh_mode
12337
19.3k
        || bytemode == evex_half_bcst_xmmq_mode
12338
18.9k
        || (bytemode == ymmq_mode && ins->vex.length == 128))
12339
3.22k
      shift -= 1;
12340
17.2k
    else if (bytemode == xmmqd_mode
12341
15.8k
             || bytemode == evex_half_bcst_xmmqdh_mode)
12342
2.30k
      shift -= 2;
12343
14.8k
    else if (bytemode == xmmdw_mode)
12344
1.25k
      shift -= 3;
12345
20.4k
    break;
12346
597
  case ymm_mode:
12347
597
    shift = 5;
12348
597
    break;
12349
920
  case xmm_mode:
12350
920
    shift = 4;
12351
920
    break;
12352
1.37k
  case q_mode:
12353
2.02k
  case q_swap_mode:
12354
2.02k
    shift = 3;
12355
2.02k
    break;
12356
2.05k
  case bw_unit_mode:
12357
2.05k
    shift = ins->vex.w ? 1 : 0;
12358
2.05k
    break;
12359
0
  default:
12360
0
    abort ();
12361
52.2k
  }
12362
52.2k
    }
12363
1.77M
  else
12364
1.77M
    shift = 0;
12365
12366
1.82M
  USED_REX (REX_B);
12367
1.82M
  if (ins->intel_syntax)
12368
398k
    intel_operand_size (ins, bytemode, sizeflag);
12369
1.82M
  append_seg (ins);
12370
12371
1.82M
  if ((sizeflag & AFLAG) || ins->address_mode == mode_64bit)
12372
1.71M
    {
12373
      /* 32/64 bit address mode */
12374
1.71M
      bfd_vma disp = 0;
12375
1.71M
      int havedisp;
12376
1.71M
      int havebase;
12377
1.71M
      int needindex;
12378
1.71M
      int needaddr32;
12379
1.71M
      int base, rbase;
12380
1.71M
      int vindex = 0;
12381
1.71M
      int scale = 0;
12382
1.71M
      int addr32flag = !((sizeflag & AFLAG)
12383
15.3k
       || bytemode == v_bnd_mode
12384
14.9k
       || bytemode == v_bndmk_mode
12385
14.3k
       || bytemode == bnd_mode
12386
13.8k
       || bytemode == bnd_swap_mode);
12387
1.71M
      bool check_gather = false;
12388
1.71M
      const char (*indexes)[8] = NULL;
12389
12390
1.71M
      havebase = 1;
12391
1.71M
      base = ins->modrm.rm;
12392
12393
1.71M
      if (base == 4)
12394
114k
  {
12395
114k
    vindex = ins->sib.index;
12396
114k
    USED_REX (REX_X);
12397
114k
    if (ins->rex & REX_X)
12398
5.17k
      vindex += 8;
12399
114k
    switch (bytemode)
12400
114k
      {
12401
3.72k
      case vex_vsib_d_w_dq_mode:
12402
6.41k
      case vex_vsib_q_w_dq_mode:
12403
6.41k
        if (!ins->need_vex)
12404
0
    abort ();
12405
6.41k
        if (ins->vex.evex)
12406
4.44k
    {
12407
      /* S/G EVEX insns require EVEX.X4 not to be set.  */
12408
4.44k
      if (ins->rex2 & REX_X)
12409
570
        {
12410
570
          oappend (ins, "(bad)");
12411
570
          return true;
12412
570
        }
12413
12414
3.87k
      if (!ins->vex.v)
12415
3.15k
        vindex += 16;
12416
3.87k
      check_gather = ins->obufp == ins->op_out[1];
12417
3.87k
    }
12418
12419
5.84k
        switch (ins->vex.length)
12420
5.84k
    {
12421
1.12k
    case 128:
12422
1.12k
      indexes = att_names_xmm;
12423
1.12k
      break;
12424
2.73k
    case 256:
12425
2.73k
      if (!ins->vex.w
12426
1.40k
          || bytemode == vex_vsib_q_w_dq_mode)
12427
1.61k
        indexes = att_names_ymm;
12428
1.12k
      else
12429
1.12k
        indexes = att_names_xmm;
12430
2.73k
      break;
12431
1.98k
    case 512:
12432
1.98k
      if (!ins->vex.w
12433
1.05k
          || bytemode == vex_vsib_q_w_dq_mode)
12434
1.68k
        indexes = att_names_zmm;
12435
302
      else
12436
302
        indexes = att_names_ymm;
12437
1.98k
      break;
12438
0
    default:
12439
0
      abort ();
12440
5.84k
    }
12441
5.84k
        break;
12442
108k
      default:
12443
108k
        if (ins->rex2 & REX_X)
12444
3.38k
    vindex += 16;
12445
12446
108k
        if (vindex != 4)
12447
89.9k
    indexes = ins->address_mode == mode_64bit && !addr32flag
12448
89.9k
        ? att_names64 : att_names32;
12449
108k
        break;
12450
114k
      }
12451
113k
    scale = ins->sib.scale;
12452
113k
    base = ins->sib.base;
12453
113k
    ins->codep++;
12454
113k
  }
12455
1.59M
      else
12456
1.59M
  {
12457
    /* Check for mandatory SIB.  */
12458
1.59M
    if (bytemode == vex_vsib_d_w_dq_mode
12459
1.59M
        || bytemode == vex_vsib_q_w_dq_mode
12460
1.59M
        || bytemode == vex_sibmem_mode)
12461
2.03k
      {
12462
2.03k
        oappend (ins, "(bad)");
12463
2.03k
        return true;
12464
2.03k
      }
12465
1.59M
  }
12466
1.70M
      rbase = base + add;
12467
12468
1.70M
      switch (ins->modrm.mod)
12469
1.70M
  {
12470
1.32M
  case 0:
12471
1.32M
    if (base == 5)
12472
52.5k
      {
12473
52.5k
        havebase = 0;
12474
52.5k
        if (ins->address_mode == mode_64bit && !ins->has_sib)
12475
38.6k
    riprel = 1;
12476
52.5k
        if (!get32s (ins, &disp))
12477
3.52k
    return false;
12478
48.9k
        if (riprel && bytemode == v_bndmk_mode)
12479
435
    {
12480
435
      oappend (ins, "(bad)");
12481
435
      return true;
12482
435
    }
12483
48.9k
      }
12484
1.32M
    break;
12485
1.32M
  case 1:
12486
253k
    if (!get8s (ins, &disp))
12487
6.08k
      return false;
12488
247k
    if (ins->vex.evex && shift > 0)
12489
19.6k
      disp <<= shift;
12490
247k
    break;
12491
128k
  case 2:
12492
128k
    if (!get32s (ins, &disp))
12493
4.18k
      return false;
12494
124k
    break;
12495
1.70M
  }
12496
12497
1.69M
      needindex = 0;
12498
1.69M
      needaddr32 = 0;
12499
1.69M
      if (ins->has_sib
12500
112k
    && !havebase
12501
7.63k
    && !indexes
12502
3.27k
    && ins->address_mode != mode_16bit)
12503
2.77k
  {
12504
2.77k
    if (ins->address_mode == mode_64bit)
12505
2.17k
      {
12506
2.17k
        if (addr32flag)
12507
664
    {
12508
      /* Without base nor index registers, zero-extend the
12509
         lower 32-bit displacement to 64 bits.  */
12510
664
      disp &= 0xffffffff;
12511
664
      needindex = 1;
12512
664
    }
12513
2.17k
        needaddr32 = 1;
12514
2.17k
      }
12515
604
    else
12516
604
      {
12517
        /* In 32-bit mode, we need index register to tell [offset]
12518
     from [eiz*1 + offset].  */
12519
604
        needindex = 1;
12520
604
      }
12521
2.77k
  }
12522
12523
1.69M
      havedisp = (havebase
12524
48.5k
      || needindex
12525
47.2k
      || (ins->has_sib && (indexes || scale != 0)));
12526
12527
1.69M
      if (!ins->intel_syntax)
12528
1.33M
  if (ins->modrm.mod != 0 || base == 5)
12529
305k
    {
12530
305k
      if (havedisp || riprel)
12531
301k
        print_displacement (ins, disp);
12532
3.62k
      else
12533
3.62k
        print_operand_value (ins, disp, dis_style_address_offset);
12534
305k
      if (riprel)
12535
29.2k
        {
12536
29.2k
    set_op (ins, disp, true);
12537
29.2k
    oappend_char (ins, '(');
12538
29.2k
    oappend_with_style (ins, !addr32flag ? "%rip" : "%eip",
12539
29.2k
            dis_style_register);
12540
29.2k
    oappend_char (ins, ')');
12541
29.2k
        }
12542
305k
    }
12543
12544
1.69M
      if ((havebase || indexes || needindex || needaddr32 || riprel)
12545
1.68M
    && (ins->address_mode != mode_64bit
12546
1.50M
        || ((bytemode != v_bnd_mode)
12547
1.49M
      && (bytemode != v_bndmk_mode)
12548
1.49M
      && (bytemode != bnd_mode)
12549
1.49M
      && (bytemode != bnd_swap_mode))))
12550
1.68M
  ins->used_prefixes |= PREFIX_ADDR;
12551
12552
1.69M
      if (havedisp || (ins->intel_syntax && riprel))
12553
1.65M
  {
12554
1.65M
    oappend_char (ins, ins->open_char);
12555
1.65M
    if (ins->intel_syntax && riprel)
12556
6.30k
      {
12557
6.30k
        set_op (ins, disp, true);
12558
6.30k
        oappend_with_style (ins, !addr32flag ? "rip" : "eip",
12559
6.30k
          dis_style_register);
12560
6.30k
      }
12561
1.65M
    if (havebase)
12562
1.64M
      oappend_register
12563
1.64M
        (ins,
12564
1.64M
         (ins->address_mode == mode_64bit && !addr32flag
12565
1.64M
    ? att_names64 : att_names32)[rbase]);
12566
1.65M
    if (ins->has_sib)
12567
110k
      {
12568
        /* ESP/RSP won't allow index.  If base isn't ESP/RSP,
12569
     print index to tell base + index from base.  */
12570
110k
        if (scale != 0
12571
59.0k
      || needindex
12572
58.4k
      || indexes
12573
5.83k
      || (havebase && base != ESP_REG_NUM))
12574
107k
    {
12575
107k
      if (!ins->intel_syntax || havebase)
12576
105k
        oappend_char (ins, ins->separator_char);
12577
107k
      if (indexes)
12578
94.4k
        {
12579
94.4k
          if (ins->address_mode == mode_64bit || vindex < 16)
12580
94.2k
      oappend_register (ins, indexes[vindex]);
12581
264
          else
12582
264
      oappend (ins, "(bad)");
12583
94.4k
        }
12584
13.4k
      else
12585
13.4k
        oappend_register (ins,
12586
13.4k
              ins->address_mode == mode_64bit
12587
9.71k
              && !addr32flag
12588
13.4k
              ? att_index64
12589
13.4k
              : att_index32);
12590
12591
107k
      oappend_char (ins, ins->scale_char);
12592
107k
      oappend_char_with_style (ins, '0' + (1 << scale),
12593
107k
             dis_style_immediate);
12594
107k
    }
12595
110k
      }
12596
1.65M
    if (ins->intel_syntax
12597
356k
        && (disp || ins->modrm.mod != 0 || base == 5))
12598
111k
      {
12599
111k
        if (!havedisp || (bfd_signed_vma) disp >= 0)
12600
78.8k
      oappend_char (ins, '+');
12601
111k
        if (havedisp)
12602
105k
    print_displacement (ins, disp);
12603
6.30k
        else
12604
6.30k
    print_operand_value (ins, disp, dis_style_address_offset);
12605
111k
      }
12606
12607
1.65M
    oappend_char (ins, ins->close_char);
12608
12609
1.65M
    if (check_gather)
12610
2.76k
      {
12611
        /* Both XMM/YMM/ZMM registers must be distinct.  */
12612
2.76k
        int modrm_reg = ins->modrm.reg;
12613
12614
2.76k
        if (ins->rex & REX_R)
12615
1.35k
          modrm_reg += 8;
12616
2.76k
        if (ins->rex2 & REX_R)
12617
1.88k
          modrm_reg += 16;
12618
2.76k
        if (vindex == modrm_reg)
12619
668
    oappend (ins, "/(bad)");
12620
2.76k
      }
12621
1.65M
  }
12622
36.1k
      else if (ins->intel_syntax)
12623
3.30k
  {
12624
3.30k
    if (ins->modrm.mod != 0 || base == 5)
12625
3.30k
      {
12626
3.30k
        if (!ins->active_seg_prefix)
12627
2.54k
    {
12628
2.54k
      oappend_register (ins, att_names_seg[ds_reg - es_reg]);
12629
2.54k
      oappend (ins, ":");
12630
2.54k
    }
12631
3.30k
        print_operand_value (ins, disp, dis_style_text);
12632
3.30k
      }
12633
3.30k
  }
12634
1.69M
    }
12635
117k
  else if (bytemode == v_bnd_mode
12636
117k
     || bytemode == v_bndmk_mode
12637
116k
     || bytemode == bnd_mode
12638
115k
     || bytemode == bnd_swap_mode
12639
114k
     || bytemode == vex_vsib_d_w_dq_mode
12640
114k
     || bytemode == vex_vsib_q_w_dq_mode)
12641
3.97k
    {
12642
3.97k
      oappend (ins, "(bad)");
12643
3.97k
      return true;
12644
3.97k
    }
12645
113k
  else
12646
113k
    {
12647
      /* 16 bit address mode */
12648
113k
      bfd_vma disp = 0;
12649
12650
113k
      ins->used_prefixes |= ins->prefixes & PREFIX_ADDR;
12651
113k
      switch (ins->modrm.mod)
12652
113k
  {
12653
79.2k
  case 0:
12654
79.2k
    if (ins->modrm.rm == 6)
12655
5.47k
      {
12656
15.6k
  case 2:
12657
15.6k
        if (!get16s (ins, &disp))
12658
680
    return false;
12659
15.6k
      }
12660
88.7k
    break;
12661
88.7k
  case 1:
12662
24.2k
    if (!get8s (ins, &disp))
12663
692
      return false;
12664
23.5k
    if (ins->vex.evex && shift > 0)
12665
1.00k
      disp <<= shift;
12666
23.5k
    break;
12667
113k
  }
12668
12669
112k
      if (!ins->intel_syntax)
12670
86.7k
  if (ins->modrm.mod != 0 || ins->modrm.rm == 6)
12671
27.5k
    print_displacement (ins, disp);
12672
12673
112k
      if (ins->modrm.mod != 0 || ins->modrm.rm != 6)
12674
106k
  {
12675
106k
    oappend_char (ins, ins->open_char);
12676
106k
    oappend (ins, ins->intel_syntax ? intel_index16[ins->modrm.rm]
12677
106k
            : att_index16[ins->modrm.rm]);
12678
106k
    if (ins->intel_syntax
12679
23.5k
        && (disp || ins->modrm.mod != 0 || ins->modrm.rm == 6))
12680
9.04k
      {
12681
9.04k
        if ((bfd_signed_vma) disp >= 0)
12682
5.20k
    oappend_char (ins, '+');
12683
9.04k
        print_displacement (ins, disp);
12684
9.04k
      }
12685
12686
106k
    oappend_char (ins, ins->close_char);
12687
106k
  }
12688
5.37k
      else if (ins->intel_syntax)
12689
1.94k
  {
12690
1.94k
    if (!ins->active_seg_prefix)
12691
1.18k
      {
12692
1.18k
        oappend_register (ins, att_names_seg[ds_reg - es_reg]);
12693
1.18k
        oappend (ins, ":");
12694
1.18k
      }
12695
1.94k
    print_operand_value (ins, disp & 0xffff, dis_style_text);
12696
1.94k
  }
12697
112k
    }
12698
1.80M
  if (ins->vex.b && ins->evex_type == evex_default)
12699
20.7k
    {
12700
20.7k
      ins->evex_used |= EVEX_b_used;
12701
12702
      /* Broadcast can only ever be valid for memory sources.  */
12703
20.7k
      if (ins->obufp == ins->op_out[0])
12704
0
  ins->vex.no_broadcast = true;
12705
12706
20.7k
      if (!ins->vex.no_broadcast
12707
18.1k
    && (!ins->intel_syntax || !(ins->evex_used & EVEX_len_used)))
12708
15.0k
  {
12709
15.0k
    if (bytemode == xh_mode)
12710
1.80k
      {
12711
1.80k
        switch (ins->vex.length)
12712
1.80k
    {
12713
516
    case 128:
12714
516
      oappend (ins, "{1to8}");
12715
516
      break;
12716
861
    case 256:
12717
861
      oappend (ins, "{1to16}");
12718
861
      break;
12719
427
    case 512:
12720
427
      oappend (ins, "{1to32}");
12721
427
      break;
12722
0
    default:
12723
0
      abort ();
12724
1.80k
    }
12725
1.80k
      }
12726
13.2k
    else if (bytemode == q_mode
12727
12.9k
       || bytemode == ymmq_mode)
12728
1.53k
      ins->vex.no_broadcast = true;
12729
11.7k
    else if (ins->vex.w
12730
4.88k
       || bytemode == evex_half_bcst_xmmqdh_mode
12731
4.42k
       || bytemode == evex_half_bcst_xmmq_mode)
12732
7.99k
      {
12733
7.99k
        switch (ins->vex.length)
12734
7.99k
    {
12735
2.66k
    case 128:
12736
2.66k
      oappend (ins, "{1to2}");
12737
2.66k
      break;
12738
1.65k
    case 256:
12739
1.65k
      oappend (ins, "{1to4}");
12740
1.65k
      break;
12741
3.67k
    case 512:
12742
3.67k
      oappend (ins, "{1to8}");
12743
3.67k
      break;
12744
0
    default:
12745
0
      abort ();
12746
7.99k
    }
12747
7.99k
      }
12748
3.74k
    else if (bytemode == x_mode
12749
1.95k
       || bytemode == evex_half_bcst_xmmqh_mode)
12750
2.33k
      {
12751
2.33k
        switch (ins->vex.length)
12752
2.33k
    {
12753
752
    case 128:
12754
752
      oappend (ins, "{1to4}");
12755
752
      break;
12756
777
    case 256:
12757
777
      oappend (ins, "{1to8}");
12758
777
      break;
12759
808
    case 512:
12760
808
      oappend (ins, "{1to16}");
12761
808
      break;
12762
0
    default:
12763
0
      abort ();
12764
2.33k
    }
12765
2.33k
      }
12766
1.41k
    else
12767
1.41k
      ins->vex.no_broadcast = true;
12768
15.0k
  }
12769
20.7k
      if (ins->vex.no_broadcast)
12770
5.54k
  oappend (ins, "{bad}");
12771
20.7k
    }
12772
12773
1.80M
  return true;
12774
1.80M
}
12775
12776
static bool
12777
OP_E (instr_info *ins, int bytemode, int sizeflag)
12778
1.98M
{
12779
  /* Skip mod/rm byte.  */
12780
1.98M
  MODRM_CHECK;
12781
1.98M
  if (!ins->has_skipped_modrm)
12782
1.98M
    {
12783
1.98M
      ins->codep++;
12784
1.98M
      ins->has_skipped_modrm = true;
12785
1.98M
    }
12786
12787
1.98M
  if (ins->modrm.mod == 3)
12788
269k
    {
12789
269k
      if ((sizeflag & SUFFIX_ALWAYS)
12790
5.25k
    && (bytemode == b_swap_mode
12791
4.92k
        || bytemode == bnd_swap_mode
12792
4.73k
        || bytemode == v_swap_mode))
12793
992
  swap_operand (ins);
12794
12795
269k
      print_register (ins, ins->modrm.rm, REX_B, bytemode, sizeflag);
12796
269k
      return true;
12797
269k
    }
12798
12799
  /* Masking is invalid for insns with GPR-like memory destination. Set the
12800
     flag uniformly, as the consumer will inspect it only for the destination
12801
     operand.  */
12802
1.71M
  if (ins->vex.mask_register_specifier)
12803
6.58k
    ins->illegal_masking = true;
12804
12805
1.71M
  return OP_E_memory (ins, bytemode, sizeflag);
12806
1.98M
}
12807
12808
static bool
12809
OP_indirE (instr_info *ins, int bytemode, int sizeflag)
12810
55.7k
{
12811
55.7k
  if (ins->modrm.mod == 3 && bytemode == f_mode)
12812
    /* bad lcall/ljmp */
12813
4.53k
    return BadOp (ins);
12814
51.1k
  if (!ins->intel_syntax)
12815
31.9k
    oappend (ins, "*");
12816
51.1k
  return OP_E (ins, bytemode, sizeflag);
12817
55.7k
}
12818
12819
static bool
12820
OP_G (instr_info *ins, int bytemode, int sizeflag)
12821
1.70M
{
12822
1.70M
  print_register (ins, ins->modrm.reg, REX_R, bytemode, sizeflag);
12823
1.70M
  return true;
12824
1.70M
}
12825
12826
static bool
12827
OP_REG (instr_info *ins, int code, int sizeflag)
12828
444k
{
12829
444k
  const char *s;
12830
444k
  int add = 0;
12831
12832
444k
  switch (code)
12833
444k
    {
12834
9.31k
    case es_reg: case ss_reg: case cs_reg:
12835
14.8k
    case ds_reg: case fs_reg: case gs_reg:
12836
14.8k
      oappend_register (ins, att_names_seg[code - es_reg]);
12837
14.8k
      return true;
12838
444k
    }
12839
12840
429k
  USED_REX (REX_B);
12841
429k
  if (ins->rex & REX_B)
12842
14.1k
    add = 8;
12843
429k
  if (ins->rex2 & REX_B)
12844
1.04k
    add += 16;
12845
12846
429k
  switch (code)
12847
429k
    {
12848
0
    case ax_reg: case cx_reg: case dx_reg: case bx_reg:
12849
0
    case sp_reg: case bp_reg: case si_reg: case di_reg:
12850
0
      s = att_names16[code - ax_reg + add];
12851
0
      break;
12852
26.3k
    case ah_reg: case ch_reg: case dh_reg: case bh_reg:
12853
26.3k
      USED_REX (0);
12854
      /* Fall through.  */
12855
50.2k
    case al_reg: case cl_reg: case dl_reg: case bl_reg:
12856
50.2k
      if (ins->rex)
12857
2.14k
  s = att_names8rex[code - al_reg + add];
12858
48.1k
      else
12859
48.1k
  s = att_names8[code - al_reg];
12860
50.2k
      break;
12861
98.9k
    case rAX_reg: case rCX_reg: case rDX_reg: case rBX_reg:
12862
184k
    case rSP_reg: case rBP_reg: case rSI_reg: case rDI_reg:
12863
184k
      if (ins->address_mode == mode_64bit
12864
149k
    && ((sizeflag & DFLAG) || (ins->rex & REX_W)))
12865
147k
  {
12866
147k
    s = att_names64[code - rAX_reg + add];
12867
147k
    break;
12868
147k
  }
12869
36.8k
      code += eAX_reg - rAX_reg;
12870
      /* Fall through.  */
12871
163k
    case eAX_reg: case eCX_reg: case eDX_reg: case eBX_reg:
12872
230k
    case eSP_reg: case eBP_reg: case eSI_reg: case eDI_reg:
12873
230k
      USED_REX (REX_W);
12874
230k
      if (ins->rex & REX_W)
12875
2.72k
  s = att_names64[code - eAX_reg + add];
12876
228k
      else
12877
228k
  {
12878
228k
    if (sizeflag & DFLAG)
12879
185k
      s = att_names32[code - eAX_reg + add];
12880
42.3k
    else
12881
42.3k
      s = att_names16[code - eAX_reg + add];
12882
228k
    ins->used_prefixes |= (ins->prefixes & PREFIX_DATA);
12883
228k
  }
12884
230k
      break;
12885
0
    default:
12886
0
      oappend (ins, INTERNAL_DISASSEMBLER_ERROR);
12887
0
      return true;
12888
429k
    }
12889
429k
  oappend_register (ins, s);
12890
429k
  return true;
12891
429k
}
12892
12893
static bool
12894
OP_IMREG (instr_info *ins, int code, int sizeflag)
12895
604k
{
12896
604k
  const char *s;
12897
12898
604k
  switch (code)
12899
604k
    {
12900
135k
    case indir_dx_reg:
12901
135k
      if (!ins->intel_syntax)
12902
84.6k
  {
12903
84.6k
    oappend (ins, "(%dx)");
12904
84.6k
    return true;
12905
84.6k
  }
12906
51.2k
      s = att_names16[dx_reg - ax_reg];
12907
51.2k
      break;
12908
204k
    case al_reg: case cl_reg:
12909
204k
      s = att_names8[code - al_reg];
12910
204k
      break;
12911
224k
    case eAX_reg:
12912
224k
      USED_REX (REX_W);
12913
224k
      if (ins->rex & REX_W)
12914
5.28k
  {
12915
5.28k
    s = *att_names64;
12916
5.28k
    break;
12917
5.28k
  }
12918
      /* Fall through.  */
12919
259k
    case z_mode_ax_reg:
12920
259k
      if ((ins->rex & REX_W) || (sizeflag & DFLAG))
12921
240k
  s = *att_names32;
12922
18.3k
      else
12923
18.3k
  s = *att_names16;
12924
259k
      if (!(ins->rex & REX_W))
12925
258k
  ins->used_prefixes |= (ins->prefixes & PREFIX_DATA);
12926
259k
      break;
12927
0
    default:
12928
0
      oappend (ins, INTERNAL_DISASSEMBLER_ERROR);
12929
0
      return true;
12930
604k
    }
12931
519k
  oappend_register (ins, s);
12932
519k
  return true;
12933
604k
}
12934
12935
static bool
12936
OP_I (instr_info *ins, int bytemode, int sizeflag)
12937
479k
{
12938
479k
  bfd_vma op;
12939
12940
479k
  switch (bytemode)
12941
479k
    {
12942
293k
    case b_mode:
12943
293k
      if (!fetch_code (ins->info, ins->codep + 1))
12944
5.20k
  return false;
12945
288k
      op = *ins->codep++;
12946
288k
      break;
12947
152k
    case v_mode:
12948
152k
      USED_REX (REX_W);
12949
152k
      if (ins->rex & REX_W)
12950
3.81k
  {
12951
3.81k
    if (!get32s (ins, &op))
12952
1.06k
      return false;
12953
3.81k
  }
12954
148k
      else
12955
148k
  {
12956
148k
    ins->used_prefixes |= (ins->prefixes & PREFIX_DATA);
12957
148k
    if (sizeflag & DFLAG)
12958
135k
      {
12959
136k
    case d_mode:
12960
136k
        if (!get32 (ins, &op))
12961
3.75k
    return false;
12962
136k
      }
12963
13.3k
    else
12964
13.3k
      {
12965
        /* Fall through.  */
12966
34.5k
    case w_mode:
12967
34.5k
        if (!get16 (ins, &op))
12968
961
    return false;
12969
34.5k
      }
12970
148k
  }
12971
169k
      break;
12972
169k
    case const_1_mode:
12973
10.3k
      if (ins->intel_syntax)
12974
2.88k
  oappend_with_style (ins, "1", dis_style_immediate);
12975
7.43k
      else
12976
7.43k
  oappend_with_style (ins, "$1", dis_style_immediate);
12977
10.3k
      return true;
12978
0
    default:
12979
0
      oappend (ins, INTERNAL_DISASSEMBLER_ERROR);
12980
0
      return true;
12981
479k
    }
12982
12983
458k
  oappend_immediate (ins, op);
12984
458k
  return true;
12985
479k
}
12986
12987
static bool
12988
OP_I64 (instr_info *ins, int bytemode, int sizeflag)
12989
48.8k
{
12990
48.8k
  uint64_t op;
12991
12992
48.8k
  if (bytemode != v_mode || ins->address_mode != mode_64bit
12993
40.6k
      || !(ins->rex & REX_W))
12994
47.6k
    return OP_I (ins, bytemode, sizeflag);
12995
12996
1.26k
  USED_REX (REX_W);
12997
12998
1.26k
  if (!get64 (ins, &op))
12999
164
    return false;
13000
13001
1.10k
  oappend_immediate (ins, op);
13002
1.10k
  return true;
13003
1.26k
}
13004
13005
static bool
13006
OP_sI (instr_info *ins, int bytemode, int sizeflag)
13007
53.2k
{
13008
53.2k
  bfd_vma op;
13009
13010
53.2k
  switch (bytemode)
13011
53.2k
    {
13012
19.1k
    case b_mode:
13013
28.1k
    case b_T_mode:
13014
28.1k
      if (!get8s (ins, &op))
13015
1.13k
  return false;
13016
26.9k
      if (bytemode == b_T_mode)
13017
8.80k
  {
13018
8.80k
    if (ins->address_mode != mode_64bit
13019
6.56k
        || !((sizeflag & DFLAG) || (ins->rex & REX_W)))
13020
3.02k
      {
13021
        /* The operand-size prefix is overridden by a REX prefix.  */
13022
3.02k
        if ((sizeflag & DFLAG) || (ins->rex & REX_W))
13023
1.12k
    op &= 0xffffffff;
13024
1.90k
        else
13025
1.90k
    op &= 0xffff;
13026
3.02k
    }
13027
8.80k
  }
13028
18.1k
      else
13029
18.1k
  {
13030
18.1k
    if (!(ins->rex & REX_W))
13031
12.7k
      {
13032
12.7k
        if (sizeflag & DFLAG)
13033
11.2k
    op &= 0xffffffff;
13034
1.47k
        else
13035
1.47k
    op &= 0xffff;
13036
12.7k
      }
13037
18.1k
  }
13038
26.9k
      break;
13039
25.1k
    case v_mode:
13040
      /* The operand-size prefix is overridden by a REX prefix.  */
13041
25.1k
      if (!(sizeflag & DFLAG) && !(ins->rex & REX_W))
13042
1.18k
  {
13043
1.18k
    if (!get16 (ins, &op))
13044
119
      return false;
13045
1.18k
  }
13046
24.0k
      else if (!get32s (ins, &op))
13047
404
  return false;
13048
24.6k
      break;
13049
24.6k
    default:
13050
0
      oappend (ins, INTERNAL_DISASSEMBLER_ERROR);
13051
0
      return true;
13052
53.2k
    }
13053
13054
51.6k
  oappend_immediate (ins, op);
13055
51.6k
  return true;
13056
53.2k
}
13057
13058
static bool
13059
OP_J (instr_info *ins, int bytemode, int sizeflag)
13060
283k
{
13061
283k
  bfd_vma disp;
13062
283k
  bfd_vma mask = -1;
13063
283k
  bfd_vma segment = 0;
13064
13065
283k
  switch (bytemode)
13066
283k
    {
13067
255k
    case b_mode:
13068
255k
      if (!get8s (ins, &disp))
13069
1.43k
  return false;
13070
254k
      break;
13071
254k
    case v_mode:
13072
27.7k
    case dqw_mode:
13073
27.7k
      if ((sizeflag & DFLAG)
13074
3.72k
    || (ins->address_mode == mode_64bit
13075
2.24k
        && ((ins->isa64 == intel64 && bytemode != dqw_mode)
13076
2.04k
      || (ins->rex & REX_W))))
13077
25.1k
  {
13078
25.1k
    if (!get32s (ins, &disp))
13079
676
      return false;
13080
25.1k
  }
13081
2.63k
      else
13082
2.63k
  {
13083
2.63k
    if (!get16s (ins, &disp))
13084
377
      return false;
13085
    /* In 16bit mode, address is wrapped around at 64k within
13086
       the same segment.  Otherwise, a data16 prefix on a jump
13087
       instruction means that the pc is masked to 16 bits after
13088
       the displacement is added!  */
13089
2.26k
    mask = 0xffff;
13090
2.26k
    if ((ins->prefixes & PREFIX_DATA) == 0)
13091
1.97k
      segment = ((ins->start_pc + (ins->codep - ins->start_codep))
13092
1.97k
           & ~((bfd_vma) 0xffff));
13093
2.26k
  }
13094
26.7k
      if (ins->address_mode != mode_64bit
13095
21.1k
    || (ins->isa64 != intel64 && !(ins->rex & REX_W)))
13096
24.4k
  ins->used_prefixes |= (ins->prefixes & PREFIX_DATA);
13097
26.7k
      break;
13098
0
    default:
13099
0
      oappend (ins, INTERNAL_DISASSEMBLER_ERROR);
13100
0
      return true;
13101
283k
    }
13102
280k
  disp = ((ins->start_pc + (ins->codep - ins->start_codep) + disp) & mask)
13103
280k
   | segment;
13104
280k
  set_op (ins, disp, false);
13105
280k
  print_operand_value (ins, disp, dis_style_text);
13106
280k
  return true;
13107
283k
}
13108
13109
static bool
13110
OP_SEG (instr_info *ins, int bytemode, int sizeflag)
13111
30.3k
{
13112
30.3k
  if (bytemode == w_mode)
13113
11.3k
    {
13114
11.3k
      oappend_register (ins, att_names_seg[ins->modrm.reg]);
13115
11.3k
      return true;
13116
11.3k
    }
13117
19.0k
  return OP_E (ins, ins->modrm.mod == 3 ? bytemode : w_mode, sizeflag);
13118
30.3k
}
13119
13120
static bool
13121
OP_DIR (instr_info *ins, int dummy ATTRIBUTE_UNUSED, int sizeflag)
13122
4.09k
{
13123
4.09k
  bfd_vma seg, offset;
13124
4.09k
  int res;
13125
4.09k
  char scratch[24];
13126
13127
4.09k
  if (sizeflag & DFLAG)
13128
2.34k
    {
13129
2.34k
      if (!get32 (ins, &offset))
13130
2.11k
  return false;;
13131
2.11k
    }
13132
1.74k
  else if (!get16 (ins, &offset))
13133
128
    return false;
13134
3.73k
  if (!get16 (ins, &seg))
13135
3.36k
    return false;;
13136
3.36k
  ins->used_prefixes |= (ins->prefixes & PREFIX_DATA);
13137
13138
3.36k
  res = snprintf (scratch, ARRAY_SIZE (scratch),
13139
3.36k
      ins->intel_syntax ? "0x%x:0x%x" : "$0x%x,$0x%x",
13140
3.36k
      (unsigned) seg, (unsigned) offset);
13141
3.36k
  if (res < 0 || (size_t) res >= ARRAY_SIZE (scratch))
13142
0
    abort ();
13143
3.36k
  oappend (ins, scratch);
13144
3.36k
  return true;
13145
3.36k
}
13146
13147
static bool
13148
OP_OFF (instr_info *ins, int bytemode, int sizeflag)
13149
11.9k
{
13150
11.9k
  bfd_vma off;
13151
13152
11.9k
  if (ins->intel_syntax && (sizeflag & SUFFIX_ALWAYS))
13153
588
    intel_operand_size (ins, bytemode, sizeflag);
13154
11.9k
  append_seg (ins);
13155
13156
11.9k
  if ((sizeflag & AFLAG) || ins->address_mode == mode_64bit)
13157
8.00k
    {
13158
8.00k
      if (!get32 (ins, &off))
13159
715
  return false;
13160
8.00k
    }
13161
3.90k
  else
13162
3.90k
    {
13163
3.90k
      if (!get16 (ins, &off))
13164
274
  return false;
13165
3.90k
    }
13166
13167
10.9k
  if (ins->intel_syntax)
13168
5.38k
    {
13169
5.38k
      if (!ins->active_seg_prefix)
13170
4.76k
  {
13171
4.76k
    oappend_register (ins, att_names_seg[ds_reg - es_reg]);
13172
4.76k
    oappend (ins, ":");
13173
4.76k
  }
13174
5.38k
    }
13175
10.9k
  print_operand_value (ins, off, dis_style_address_offset);
13176
10.9k
  return true;
13177
11.9k
}
13178
13179
static bool
13180
OP_OFF64 (instr_info *ins, int bytemode, int sizeflag)
13181
35.7k
{
13182
35.7k
  uint64_t off;
13183
13184
35.7k
  if (ins->address_mode != mode_64bit
13185
25.3k
      || (ins->prefixes & PREFIX_ADDR))
13186
11.9k
    return OP_OFF (ins, bytemode, sizeflag);
13187
13188
23.8k
  if (ins->intel_syntax && (sizeflag & SUFFIX_ALWAYS))
13189
412
    intel_operand_size (ins, bytemode, sizeflag);
13190
23.8k
  append_seg (ins);
13191
13192
23.8k
  if (!get64 (ins, &off))
13193
997
    return false;
13194
13195
22.8k
  if (ins->intel_syntax)
13196
7.25k
    {
13197
7.25k
      if (!ins->active_seg_prefix)
13198
6.83k
  {
13199
6.83k
    oappend_register (ins, att_names_seg[ds_reg - es_reg]);
13200
6.83k
    oappend (ins, ":");
13201
6.83k
  }
13202
7.25k
    }
13203
22.8k
  print_operand_value (ins, off, dis_style_address_offset);
13204
22.8k
  return true;
13205
23.8k
}
13206
13207
static void
13208
ptr_reg (instr_info *ins, int code, int sizeflag)
13209
315k
{
13210
315k
  const char *s;
13211
13212
315k
  *ins->obufp++ = ins->open_char;
13213
315k
  ins->used_prefixes |= (ins->prefixes & PREFIX_ADDR);
13214
315k
  if (ins->address_mode == mode_64bit)
13215
274k
    {
13216
274k
      if (!(sizeflag & AFLAG))
13217
3.50k
  s = att_names32[code - eAX_reg];
13218
271k
      else
13219
271k
  s = att_names64[code - eAX_reg];
13220
274k
    }
13221
40.3k
  else if (sizeflag & AFLAG)
13222
24.5k
    s = att_names32[code - eAX_reg];
13223
15.7k
  else
13224
15.7k
    s = att_names16[code - eAX_reg];
13225
315k
  oappend_register (ins, s);
13226
315k
  oappend_char (ins, ins->close_char);
13227
315k
}
13228
13229
static bool
13230
OP_ESreg (instr_info *ins, int code, int sizeflag)
13231
169k
{
13232
169k
  if (ins->intel_syntax)
13233
68.3k
    {
13234
68.3k
      switch (ins->codep[-1])
13235
68.3k
  {
13236
11.6k
  case 0x6d:  /* insw/insl */
13237
11.6k
    intel_operand_size (ins, z_mode, sizeflag);
13238
11.6k
    break;
13239
1.97k
  case 0xa5:  /* movsw/movsl/movsq */
13240
5.38k
  case 0xa7:  /* cmpsw/cmpsl/cmpsq */
13241
6.88k
  case 0xab:  /* stosw/stosl */
13242
15.0k
  case 0xaf:  /* scasw/scasl */
13243
15.0k
    intel_operand_size (ins, v_mode, sizeflag);
13244
15.0k
    break;
13245
41.6k
  default:
13246
41.6k
    intel_operand_size (ins, b_mode, sizeflag);
13247
68.3k
  }
13248
68.3k
    }
13249
169k
  if (ins->address_mode != mode_64bit)
13250
19.3k
    {
13251
19.3k
      oappend_register (ins, att_names_seg[0]);
13252
19.3k
      oappend_char (ins, ':');
13253
19.3k
    }
13254
169k
  ptr_reg (ins, code, sizeflag);
13255
169k
  return true;
13256
169k
}
13257
13258
static bool
13259
OP_DSreg (instr_info *ins, int code, int sizeflag)
13260
145k
{
13261
145k
  if (ins->intel_syntax)
13262
49.4k
    {
13263
49.4k
      switch (ins->codep[-1])
13264
49.4k
  {
13265
193
  case 0x01:  /* rmpupdate/rmpread */
13266
193
    break;
13267
7.52k
  case 0x6f:  /* outsw/outsl */
13268
7.52k
    intel_operand_size (ins, z_mode, sizeflag);
13269
7.52k
    break;
13270
1.97k
  case 0xa5:  /* movsw/movsl/movsq */
13271
5.38k
  case 0xa7:  /* cmpsw/cmpsl/cmpsq */
13272
8.65k
  case 0xad:  /* lodsw/lodsl/lodsq */
13273
8.65k
    intel_operand_size (ins, v_mode, sizeflag);
13274
8.65k
    break;
13275
33.1k
  default:
13276
33.1k
    intel_operand_size (ins, b_mode, sizeflag);
13277
49.4k
  }
13278
49.4k
    }
13279
  /* Outside of 64-bit mode set ins->active_seg_prefix to PREFIX_DS if it
13280
     is unset, so that the default segment register DS is printed.  */
13281
145k
  if (ins->address_mode != mode_64bit && !ins->active_seg_prefix)
13282
19.7k
    ins->active_seg_prefix = PREFIX_DS;
13283
145k
  append_seg (ins);
13284
145k
  ptr_reg (ins, code, sizeflag);
13285
145k
  return true;
13286
145k
}
13287
13288
static bool
13289
OP_C (instr_info *ins, int dummy ATTRIBUTE_UNUSED,
13290
      int sizeflag ATTRIBUTE_UNUSED)
13291
3.40k
{
13292
3.40k
  int add, res;
13293
3.40k
  char scratch[8];
13294
13295
3.40k
  if (ins->rex & REX_R)
13296
1.22k
    {
13297
1.22k
      USED_REX (REX_R);
13298
1.22k
      add = 8;
13299
1.22k
    }
13300
2.17k
  else if (ins->address_mode != mode_64bit && (ins->prefixes & PREFIX_LOCK))
13301
400
    {
13302
400
      ins->all_prefixes[ins->last_lock_prefix] = 0;
13303
400
      ins->used_prefixes |= PREFIX_LOCK;
13304
400
      add = 8;
13305
400
    }
13306
1.77k
  else
13307
1.77k
    add = 0;
13308
3.40k
  res = snprintf (scratch, ARRAY_SIZE (scratch), "%%cr%d",
13309
3.40k
      ins->modrm.reg + add);
13310
3.40k
  if (res < 0 || (size_t) res >= ARRAY_SIZE (scratch))
13311
0
    abort ();
13312
3.40k
  oappend_register (ins, scratch);
13313
3.40k
  return true;
13314
3.40k
}
13315
13316
static bool
13317
OP_D (instr_info *ins, int dummy ATTRIBUTE_UNUSED,
13318
      int sizeflag ATTRIBUTE_UNUSED)
13319
1.65k
{
13320
1.65k
  int add, res;
13321
1.65k
  char scratch[8];
13322
13323
1.65k
  USED_REX (REX_R);
13324
1.65k
  if (ins->rex & REX_R)
13325
569
    add = 8;
13326
1.08k
  else
13327
1.08k
    add = 0;
13328
1.65k
  res = snprintf (scratch, ARRAY_SIZE (scratch),
13329
1.65k
      ins->intel_syntax ? "dr%d" : "%%db%d",
13330
1.65k
      ins->modrm.reg + add);
13331
1.65k
  if (res < 0 || (size_t) res >= ARRAY_SIZE (scratch))
13332
0
    abort ();
13333
1.65k
  oappend (ins, scratch);
13334
1.65k
  return true;
13335
1.65k
}
13336
13337
static bool
13338
OP_T (instr_info *ins, int dummy ATTRIBUTE_UNUSED,
13339
      int sizeflag ATTRIBUTE_UNUSED)
13340
1.16k
{
13341
1.16k
  int res;
13342
1.16k
  char scratch[8];
13343
13344
1.16k
  res = snprintf (scratch, ARRAY_SIZE (scratch), "%%tr%d", ins->modrm.reg);
13345
1.16k
  if (res < 0 || (size_t) res >= ARRAY_SIZE (scratch))
13346
0
    abort ();
13347
1.16k
  oappend_register (ins, scratch);
13348
1.16k
  return true;
13349
1.16k
}
13350
13351
static bool
13352
OP_MMX (instr_info *ins, int bytemode ATTRIBUTE_UNUSED,
13353
  int sizeflag ATTRIBUTE_UNUSED)
13354
38.0k
{
13355
38.0k
  int reg = ins->modrm.reg;
13356
38.0k
  const char (*names)[8];
13357
13358
38.0k
  ins->used_prefixes |= (ins->prefixes & PREFIX_DATA);
13359
38.0k
  if (ins->prefixes & PREFIX_DATA)
13360
2.40k
    {
13361
2.40k
      names = att_names_xmm;
13362
2.40k
      USED_REX (REX_R);
13363
2.40k
      if (ins->rex & REX_R)
13364
988
  reg += 8;
13365
2.40k
    }
13366
35.6k
  else
13367
35.6k
    names = att_names_mm;
13368
38.0k
  oappend_register (ins, names[reg]);
13369
38.0k
  return true;
13370
38.0k
}
13371
13372
static void
13373
print_vector_reg (instr_info *ins, unsigned int reg, int bytemode)
13374
128k
{
13375
128k
  const char (*names)[8];
13376
13377
128k
  if (bytemode == xmmq_mode
13378
124k
      || bytemode == evex_half_bcst_xmmqh_mode
13379
123k
      || bytemode == evex_half_bcst_xmmq_mode)
13380
6.54k
    {
13381
6.54k
      switch (ins->vex.length)
13382
6.54k
  {
13383
1.67k
  case 0:
13384
2.50k
  case 128:
13385
4.02k
  case 256:
13386
4.02k
    names = att_names_xmm;
13387
4.02k
    break;
13388
2.52k
  case 512:
13389
2.52k
    names = att_names_ymm;
13390
2.52k
    ins->evex_used |= EVEX_len_used;
13391
2.52k
    break;
13392
0
  default:
13393
0
    abort ();
13394
6.54k
  }
13395
6.54k
    }
13396
122k
  else if (bytemode == ymm_mode)
13397
292
    names = att_names_ymm;
13398
122k
  else if (bytemode == tmm_mode)
13399
5.84k
    {
13400
5.84k
      if (reg >= 8)
13401
3.41k
  {
13402
3.41k
    oappend (ins, "(bad)");
13403
3.41k
    return;
13404
3.41k
  }
13405
2.43k
      names = att_names_tmm;
13406
2.43k
    }
13407
116k
  else if (ins->need_vex
13408
97.7k
     && bytemode != xmm_mode
13409
95.6k
     && bytemode != scalar_mode
13410
84.1k
     && bytemode != xmmdw_mode
13411
83.7k
     && bytemode != xmmqd_mode
13412
83.2k
     && bytemode != evex_half_bcst_xmmqdh_mode
13413
82.8k
     && bytemode != w_swap_mode
13414
82.2k
     && bytemode != b_mode
13415
81.6k
     && bytemode != w_mode
13416
81.0k
     && bytemode != d_mode
13417
80.0k
     && bytemode != q_mode)
13418
79.2k
    {
13419
79.2k
      ins->evex_used |= EVEX_len_used;
13420
79.2k
      switch (ins->vex.length)
13421
79.2k
  {
13422
33.9k
  case 128:
13423
33.9k
    names = att_names_xmm;
13424
33.9k
    break;
13425
22.4k
  case 256:
13426
22.4k
    if (ins->vex.w
13427
13.0k
        || bytemode != vex_vsib_q_w_dq_mode)
13428
20.8k
      names = att_names_ymm;
13429
1.57k
    else
13430
1.57k
      names = att_names_xmm;
13431
22.4k
    break;
13432
22.8k
  case 512:
13433
22.8k
    if (ins->vex.w
13434
13.1k
        || bytemode != vex_vsib_q_w_dq_mode)
13435
21.7k
      names = att_names_zmm;
13436
1.11k
    else
13437
1.11k
      names = att_names_ymm;
13438
22.8k
    break;
13439
0
  default:
13440
0
    abort ();
13441
79.2k
  }
13442
79.2k
    }
13443
37.0k
  else
13444
37.0k
    names = att_names_xmm;
13445
125k
  oappend_register (ins, names[reg]);
13446
125k
}
13447
13448
static bool
13449
OP_XMM (instr_info *ins, int bytemode, int sizeflag ATTRIBUTE_UNUSED)
13450
102k
{
13451
102k
  unsigned int reg = ins->modrm.reg;
13452
13453
102k
  USED_REX (REX_R);
13454
102k
  if (ins->rex & REX_R)
13455
46.1k
    reg += 8;
13456
102k
  if (ins->vex.evex)
13457
54.8k
    {
13458
54.8k
      if (ins->rex2 & REX_R)
13459
28.0k
  reg += 16;
13460
54.8k
    }
13461
13462
102k
  if (bytemode == tmm_mode)
13463
3.75k
    ins->modrm.reg = reg;
13464
98.7k
  else if (bytemode == scalar_mode)
13465
13.4k
    ins->vex.no_broadcast = true;
13466
13467
102k
  print_vector_reg (ins, reg, bytemode);
13468
102k
  return true;
13469
102k
}
13470
13471
static bool
13472
OP_EM (instr_info *ins, int bytemode, int sizeflag)
13473
37.1k
{
13474
37.1k
  int reg;
13475
37.1k
  const char (*names)[8];
13476
13477
37.1k
  if (ins->modrm.mod != 3)
13478
22.7k
    {
13479
22.7k
      if (ins->intel_syntax
13480
8.67k
    && (bytemode == v_mode || bytemode == v_swap_mode))
13481
8.21k
  {
13482
8.21k
    bytemode = (ins->prefixes & PREFIX_DATA) ? x_mode : q_mode;
13483
8.21k
    ins->used_prefixes |= (ins->prefixes & PREFIX_DATA);
13484
8.21k
  }
13485
22.7k
      return OP_E (ins, bytemode, sizeflag);
13486
22.7k
    }
13487
13488
14.4k
  if ((sizeflag & SUFFIX_ALWAYS) && bytemode == v_swap_mode)
13489
190
    swap_operand (ins);
13490
13491
  /* Skip mod/rm byte.  */
13492
14.4k
  MODRM_CHECK;
13493
14.4k
  ins->codep++;
13494
14.4k
  ins->used_prefixes |= (ins->prefixes & PREFIX_DATA);
13495
14.4k
  reg = ins->modrm.rm;
13496
14.4k
  if (ins->prefixes & PREFIX_DATA)
13497
1.50k
    {
13498
1.50k
      names = att_names_xmm;
13499
1.50k
      USED_REX (REX_B);
13500
1.50k
      if (ins->rex & REX_B)
13501
823
  reg += 8;
13502
1.50k
    }
13503
12.9k
  else
13504
12.9k
    names = att_names_mm;
13505
14.4k
  oappend_register (ins, names[reg]);
13506
14.4k
  return true;
13507
14.4k
}
13508
13509
/* cvt* are the only instructions in sse2 which have
13510
   both SSE and MMX operands and also have 0x66 prefix
13511
   in their opcode. 0x66 was originally used to differentiate
13512
   between SSE and MMX instruction(operands). So we have to handle the
13513
   cvt* separately using OP_EMC and OP_MXC */
13514
static bool
13515
OP_EMC (instr_info *ins, int bytemode, int sizeflag)
13516
1.60k
{
13517
1.60k
  if (ins->modrm.mod != 3)
13518
1.22k
    {
13519
1.22k
      if (ins->intel_syntax && bytemode == v_mode)
13520
0
  {
13521
0
    bytemode = (ins->prefixes & PREFIX_DATA) ? x_mode : q_mode;
13522
0
    ins->used_prefixes |= (ins->prefixes & PREFIX_DATA);
13523
0
  }
13524
1.22k
      return OP_E (ins, bytemode, sizeflag);
13525
1.22k
    }
13526
13527
  /* Skip mod/rm byte.  */
13528
379
  MODRM_CHECK;
13529
379
  ins->codep++;
13530
379
  ins->used_prefixes |= (ins->prefixes & PREFIX_DATA);
13531
379
  oappend_register (ins, att_names_mm[ins->modrm.rm]);
13532
379
  return true;
13533
379
}
13534
13535
static bool
13536
OP_MXC (instr_info *ins, int bytemode ATTRIBUTE_UNUSED,
13537
  int sizeflag ATTRIBUTE_UNUSED)
13538
605
{
13539
605
  ins->used_prefixes |= (ins->prefixes & PREFIX_DATA);
13540
605
  oappend_register (ins, att_names_mm[ins->modrm.reg]);
13541
605
  return true;
13542
605
}
13543
13544
static bool
13545
OP_EX (instr_info *ins, int bytemode, int sizeflag)
13546
92.9k
{
13547
92.9k
  int reg;
13548
13549
  /* Skip mod/rm byte.  */
13550
92.9k
  MODRM_CHECK;
13551
92.9k
  ins->codep++;
13552
13553
92.9k
  if (bytemode == dq_mode)
13554
581
    bytemode = ins->vex.w ? q_mode : d_mode;
13555
13556
92.9k
  if (ins->modrm.mod != 3)
13557
66.5k
    return OP_E_memory (ins, bytemode, sizeflag);
13558
13559
26.4k
  reg = ins->modrm.rm;
13560
26.4k
  USED_REX (REX_B);
13561
26.4k
  if (ins->rex & REX_B)
13562
6.29k
    reg += 8;
13563
26.4k
  if (ins->vex.evex)
13564
11.9k
    {
13565
11.9k
      USED_REX (REX_X);
13566
11.9k
      if ((ins->rex & REX_X))
13567
4.27k
  reg += 16;
13568
11.9k
      ins->rex2_used &= ~REX_B;
13569
11.9k
    }
13570
14.4k
  else if (ins->rex2 & REX_B)
13571
344
    reg += 16;
13572
13573
26.4k
  if ((sizeflag & SUFFIX_ALWAYS)
13574
2.44k
      && (bytemode == x_swap_mode
13575
2.10k
    || bytemode == w_swap_mode
13576
1.90k
    || bytemode == d_swap_mode
13577
1.53k
    || bytemode == q_swap_mode))
13578
1.15k
    swap_operand (ins);
13579
13580
26.4k
  if (bytemode == tmm_mode)
13581
2.08k
    ins->modrm.rm = reg;
13582
13583
26.4k
  print_vector_reg (ins, reg, bytemode);
13584
26.4k
  return true;
13585
92.9k
}
13586
13587
static bool
13588
OP_R (instr_info *ins, int bytemode, int sizeflag)
13589
20.4k
{
13590
20.4k
  if (ins->modrm.mod != 3)
13591
4.70k
    return BadOp (ins);
13592
13593
15.7k
  switch (bytemode)
13594
15.7k
    {
13595
906
    case d_mode:
13596
1.45k
    case dq_mode:
13597
2.27k
    case q_mode:
13598
4.37k
    case mask_mode:
13599
4.37k
      return OP_E (ins, bytemode, sizeflag);
13600
575
    case q_mm_mode:
13601
575
      return OP_EM (ins, x_mode, sizeflag);
13602
8.47k
    case xmm_mode:
13603
8.47k
      if (ins->vex.length <= 128)
13604
814
  break;
13605
7.66k
      return BadOp (ins);
13606
15.7k
    }
13607
13608
3.11k
  return OP_EX (ins, bytemode, sizeflag);
13609
15.7k
}
13610
13611
static bool
13612
OP_M (instr_info *ins, int bytemode, int sizeflag)
13613
50.7k
{
13614
  /* Skip mod/rm byte.  */
13615
50.7k
  MODRM_CHECK;
13616
50.7k
  ins->codep++;
13617
13618
50.7k
  if (ins->modrm.mod == 3)
13619
    /* bad bound,lea,lds,les,lfs,lgs,lss,cmpxchg8b,vmptrst modrm */
13620
4.42k
    return BadOp (ins);
13621
13622
46.3k
  if (bytemode == x_mode)
13623
455
    ins->vex.no_broadcast = true;
13624
13625
46.3k
  return OP_E_memory (ins, bytemode, sizeflag);
13626
50.7k
}
13627
13628
static bool
13629
OP_0f07 (instr_info *ins, int bytemode, int sizeflag)
13630
3.14k
{
13631
3.14k
  if (ins->modrm.mod != 3 || ins->modrm.rm != 0)
13632
2.60k
    return BadOp (ins);
13633
544
  return OP_E (ins, bytemode, sizeflag);
13634
3.14k
}
13635
13636
/* montmul instruction need display repz and skip modrm */
13637
13638
static bool
13639
MONTMUL_Fixup (instr_info *ins, int bytemode ATTRIBUTE_UNUSED, int sizeflag ATTRIBUTE_UNUSED)
13640
1.30k
{
13641
1.30k
  if (ins->modrm.mod != 3 || ins->modrm.rm != 0)
13642
835
    return BadOp (ins);
13643
13644
  /* The 0xf3 prefix should be displayed as "repz" for montmul. */
13645
474
  if (ins->prefixes & PREFIX_REPZ)
13646
474
    ins->all_prefixes[ins->last_repz_prefix] = 0xf3;
13647
13648
  /* Skip mod/rm byte.  */
13649
474
  MODRM_CHECK;
13650
474
  ins->codep++;
13651
474
  return true;
13652
474
}
13653
13654
/* NOP is an alias of "xchg %ax,%ax" in 16bit mode, "xchg %eax,%eax" in
13655
   32bit mode and "xchg %rax,%rax" in 64bit mode.  */
13656
13657
static bool
13658
NOP_Fixup (instr_info *ins, int opnd, int sizeflag)
13659
35.5k
{
13660
35.5k
  if ((ins->prefixes & PREFIX_DATA) == 0 && (ins->rex & REX_B) == 0)
13661
30.2k
    {
13662
30.2k
      ins->mnemonicendp = stpcpy (ins->obuf, "nop");
13663
30.2k
      return true;
13664
30.2k
    }
13665
5.33k
  if (opnd == 0)
13666
2.66k
    return OP_REG (ins, eAX_reg, sizeflag);
13667
2.66k
  return OP_IMREG (ins, eAX_reg, sizeflag);
13668
5.33k
}
13669
13670
static const char *const Suffix3DNow[] = {
13671
/* 00 */  NULL,   NULL,   NULL,   NULL,
13672
/* 04 */  NULL,   NULL,   NULL,   NULL,
13673
/* 08 */  NULL,   NULL,   NULL,   NULL,
13674
/* 0C */  "pi2fw",  "pi2fd",  NULL,   NULL,
13675
/* 10 */  NULL,   NULL,   NULL,   NULL,
13676
/* 14 */  NULL,   NULL,   NULL,   NULL,
13677
/* 18 */  NULL,   NULL,   NULL,   NULL,
13678
/* 1C */  "pf2iw",  "pf2id",  NULL,   NULL,
13679
/* 20 */  NULL,   NULL,   NULL,   NULL,
13680
/* 24 */  NULL,   NULL,   NULL,   NULL,
13681
/* 28 */  NULL,   NULL,   NULL,   NULL,
13682
/* 2C */  NULL,   NULL,   NULL,   NULL,
13683
/* 30 */  NULL,   NULL,   NULL,   NULL,
13684
/* 34 */  NULL,   NULL,   NULL,   NULL,
13685
/* 38 */  NULL,   NULL,   NULL,   NULL,
13686
/* 3C */  NULL,   NULL,   NULL,   NULL,
13687
/* 40 */  NULL,   NULL,   NULL,   NULL,
13688
/* 44 */  NULL,   NULL,   NULL,   NULL,
13689
/* 48 */  NULL,   NULL,   NULL,   NULL,
13690
/* 4C */  NULL,   NULL,   NULL,   NULL,
13691
/* 50 */  NULL,   NULL,   NULL,   NULL,
13692
/* 54 */  NULL,   NULL,   NULL,   NULL,
13693
/* 58 */  NULL,   NULL,   NULL,   NULL,
13694
/* 5C */  NULL,   NULL,   NULL,   NULL,
13695
/* 60 */  NULL,   NULL,   NULL,   NULL,
13696
/* 64 */  NULL,   NULL,   NULL,   NULL,
13697
/* 68 */  NULL,   NULL,   NULL,   NULL,
13698
/* 6C */  NULL,   NULL,   NULL,   NULL,
13699
/* 70 */  NULL,   NULL,   NULL,   NULL,
13700
/* 74 */  NULL,   NULL,   NULL,   NULL,
13701
/* 78 */  NULL,   NULL,   NULL,   NULL,
13702
/* 7C */  NULL,   NULL,   NULL,   NULL,
13703
/* 80 */  NULL,   NULL,   NULL,   NULL,
13704
/* 84 */  NULL,   NULL,   NULL,   NULL,
13705
/* 88 */  NULL,   NULL,   "pfnacc", NULL,
13706
/* 8C */  NULL,   NULL,   "pfpnacc",  NULL,
13707
/* 90 */  "pfcmpge",  NULL,   NULL,   NULL,
13708
/* 94 */  "pfmin",  NULL,   "pfrcp",  "pfrsqrt",
13709
/* 98 */  NULL,   NULL,   "pfsub",  NULL,
13710
/* 9C */  NULL,   NULL,   "pfadd",  NULL,
13711
/* A0 */  "pfcmpgt",  NULL,   NULL,   NULL,
13712
/* A4 */  "pfmax",  NULL,   "pfrcpit1", "pfrsqit1",
13713
/* A8 */  NULL,   NULL,   "pfsubr", NULL,
13714
/* AC */  NULL,   NULL,   "pfacc",  NULL,
13715
/* B0 */  "pfcmpeq",  NULL,   NULL,   NULL,
13716
/* B4 */  "pfmul",  NULL,   "pfrcpit2", "pmulhrw",
13717
/* B8 */  NULL,   NULL,   NULL,   "pswapd",
13718
/* BC */  NULL,   NULL,   NULL,   "pavgusb",
13719
/* C0 */  NULL,   NULL,   NULL,   NULL,
13720
/* C4 */  NULL,   NULL,   NULL,   NULL,
13721
/* C8 */  NULL,   NULL,   NULL,   NULL,
13722
/* CC */  NULL,   NULL,   NULL,   NULL,
13723
/* D0 */  NULL,   NULL,   NULL,   NULL,
13724
/* D4 */  NULL,   NULL,   NULL,   NULL,
13725
/* D8 */  NULL,   NULL,   NULL,   NULL,
13726
/* DC */  NULL,   NULL,   NULL,   NULL,
13727
/* E0 */  NULL,   NULL,   NULL,   NULL,
13728
/* E4 */  NULL,   NULL,   NULL,   NULL,
13729
/* E8 */  NULL,   NULL,   NULL,   NULL,
13730
/* EC */  NULL,   NULL,   NULL,   NULL,
13731
/* F0 */  NULL,   NULL,   NULL,   NULL,
13732
/* F4 */  NULL,   NULL,   NULL,   NULL,
13733
/* F8 */  NULL,   NULL,   NULL,   NULL,
13734
/* FC */  NULL,   NULL,   NULL,   NULL,
13735
};
13736
13737
static bool
13738
OP_3DNowSuffix (instr_info *ins, int bytemode ATTRIBUTE_UNUSED,
13739
    int sizeflag ATTRIBUTE_UNUSED)
13740
17.6k
{
13741
17.6k
  const char *mnemonic;
13742
13743
17.6k
  if (!fetch_code (ins->info, ins->codep + 1))
13744
502
    return false;
13745
  /* AMD 3DNow! instructions are specified by an opcode suffix in the
13746
     place where an 8-bit immediate would normally go.  ie. the last
13747
     byte of the instruction.  */
13748
17.1k
  ins->obufp = ins->mnemonicendp;
13749
17.1k
  mnemonic = Suffix3DNow[*ins->codep++];
13750
17.1k
  if (mnemonic)
13751
609
    ins->obufp = stpcpy (ins->obufp, mnemonic);
13752
16.5k
  else
13753
16.5k
    {
13754
      /* Since a variable sized ins->modrm/ins->sib chunk is between the start
13755
   of the opcode (0x0f0f) and the opcode suffix, we need to do
13756
   all the ins->modrm processing first, and don't know until now that
13757
   we have a bad opcode.  This necessitates some cleaning up.  */
13758
16.5k
      ins->op_out[0][0] = '\0';
13759
16.5k
      ins->op_out[1][0] = '\0';
13760
16.5k
      BadOp (ins);
13761
16.5k
    }
13762
17.1k
  ins->mnemonicendp = ins->obufp;
13763
17.1k
  return true;
13764
17.6k
}
13765
13766
static const struct op simd_cmp_op[] =
13767
{
13768
  { STRING_COMMA_LEN ("eq") },
13769
  { STRING_COMMA_LEN ("lt") },
13770
  { STRING_COMMA_LEN ("le") },
13771
  { STRING_COMMA_LEN ("unord") },
13772
  { STRING_COMMA_LEN ("neq") },
13773
  { STRING_COMMA_LEN ("nlt") },
13774
  { STRING_COMMA_LEN ("nle") },
13775
  { STRING_COMMA_LEN ("ord") }
13776
};
13777
13778
static const struct op vex_cmp_op[] =
13779
{
13780
  { STRING_COMMA_LEN ("eq_uq") },
13781
  { STRING_COMMA_LEN ("nge") },
13782
  { STRING_COMMA_LEN ("ngt") },
13783
  { STRING_COMMA_LEN ("false") },
13784
  { STRING_COMMA_LEN ("neq_oq") },
13785
  { STRING_COMMA_LEN ("ge") },
13786
  { STRING_COMMA_LEN ("gt") },
13787
  { STRING_COMMA_LEN ("true") },
13788
  { STRING_COMMA_LEN ("eq_os") },
13789
  { STRING_COMMA_LEN ("lt_oq") },
13790
  { STRING_COMMA_LEN ("le_oq") },
13791
  { STRING_COMMA_LEN ("unord_s") },
13792
  { STRING_COMMA_LEN ("neq_us") },
13793
  { STRING_COMMA_LEN ("nlt_uq") },
13794
  { STRING_COMMA_LEN ("nle_uq") },
13795
  { STRING_COMMA_LEN ("ord_s") },
13796
  { STRING_COMMA_LEN ("eq_us") },
13797
  { STRING_COMMA_LEN ("nge_uq") },
13798
  { STRING_COMMA_LEN ("ngt_uq") },
13799
  { STRING_COMMA_LEN ("false_os") },
13800
  { STRING_COMMA_LEN ("neq_os") },
13801
  { STRING_COMMA_LEN ("ge_oq") },
13802
  { STRING_COMMA_LEN ("gt_oq") },
13803
  { STRING_COMMA_LEN ("true_us") },
13804
};
13805
13806
static bool
13807
CMP_Fixup (instr_info *ins, int bytemode ATTRIBUTE_UNUSED,
13808
     int sizeflag ATTRIBUTE_UNUSED)
13809
3.03k
{
13810
3.03k
  unsigned int cmp_type;
13811
13812
3.03k
  if (!fetch_code (ins->info, ins->codep + 1))
13813
598
    return false;
13814
2.43k
  cmp_type = *ins->codep++;
13815
2.43k
  if (cmp_type < ARRAY_SIZE (simd_cmp_op))
13816
700
    {
13817
700
      char suffix[3];
13818
700
      char *p = ins->mnemonicendp - 2;
13819
700
      suffix[0] = p[0];
13820
700
      suffix[1] = p[1];
13821
700
      suffix[2] = '\0';
13822
700
      sprintf (p, "%s%s", simd_cmp_op[cmp_type].name, suffix);
13823
700
      ins->mnemonicendp += simd_cmp_op[cmp_type].len;
13824
700
    }
13825
1.73k
  else if (ins->need_vex
13826
1.07k
     && cmp_type < ARRAY_SIZE (simd_cmp_op) + ARRAY_SIZE (vex_cmp_op))
13827
285
    {
13828
285
      char suffix[3];
13829
285
      char *p = ins->mnemonicendp - 2;
13830
285
      suffix[0] = p[0];
13831
285
      suffix[1] = p[1];
13832
285
      suffix[2] = '\0';
13833
285
      cmp_type -= ARRAY_SIZE (simd_cmp_op);
13834
285
      sprintf (p, "%s%s", vex_cmp_op[cmp_type].name, suffix);
13835
285
      ins->mnemonicendp += vex_cmp_op[cmp_type].len;
13836
285
    }
13837
1.45k
  else
13838
1.45k
    {
13839
      /* We have a reserved extension byte.  Output it directly.  */
13840
1.45k
      oappend_immediate (ins, cmp_type);
13841
1.45k
    }
13842
2.43k
  return true;
13843
3.03k
}
13844
13845
static bool
13846
OP_Mwait (instr_info *ins, int bytemode, int sizeflag ATTRIBUTE_UNUSED)
13847
1.49k
{
13848
  /* mwait %eax,%ecx / mwaitx %eax,%ecx,%ebx  */
13849
1.49k
  if (!ins->intel_syntax)
13850
888
    {
13851
888
      strcpy (ins->op_out[0], att_names32[0] + ins->intel_syntax);
13852
888
      strcpy (ins->op_out[1], att_names32[1] + ins->intel_syntax);
13853
888
      if (bytemode == eBX_reg)
13854
298
  strcpy (ins->op_out[2], att_names32[3] + ins->intel_syntax);
13855
888
      ins->two_source_ops = true;
13856
888
    }
13857
  /* Skip mod/rm byte.  */
13858
1.49k
  MODRM_CHECK;
13859
1.49k
  ins->codep++;
13860
1.49k
  return true;
13861
1.49k
}
13862
13863
static bool
13864
OP_Monitor (instr_info *ins, int bytemode ATTRIBUTE_UNUSED,
13865
      int sizeflag ATTRIBUTE_UNUSED)
13866
3.14k
{
13867
  /* monitor %{e,r,}ax,%ecx,%edx"  */
13868
3.14k
  if (!ins->intel_syntax)
13869
1.63k
    {
13870
1.63k
      const char (*names)[8] = (ins->address_mode == mode_64bit
13871
1.63k
        ? att_names64 : att_names32);
13872
13873
1.63k
      if (ins->prefixes & PREFIX_ADDR)
13874
878
  {
13875
    /* Remove "addr16/addr32".  */
13876
878
    ins->all_prefixes[ins->last_addr_prefix] = 0;
13877
878
    names = (ins->address_mode != mode_32bit
13878
878
       ? att_names32 : att_names16);
13879
878
    ins->used_prefixes |= PREFIX_ADDR;
13880
878
  }
13881
758
      else if (ins->address_mode == mode_16bit)
13882
459
  names = att_names16;
13883
1.63k
      strcpy (ins->op_out[0], names[0] + ins->intel_syntax);
13884
1.63k
      strcpy (ins->op_out[1], att_names32[1] + ins->intel_syntax);
13885
1.63k
      strcpy (ins->op_out[2], att_names32[2] + ins->intel_syntax);
13886
1.63k
      ins->two_source_ops = true;
13887
1.63k
    }
13888
  /* Skip mod/rm byte.  */
13889
3.14k
  MODRM_CHECK;
13890
3.14k
  ins->codep++;
13891
3.14k
  return true;
13892
3.14k
}
13893
13894
static bool
13895
REP_Fixup (instr_info *ins, int bytemode, int sizeflag)
13896
153k
{
13897
  /* The 0xf3 prefix should be displayed as "rep" for ins, outs, movs,
13898
     lods and stos.  */
13899
153k
  if (ins->prefixes & PREFIX_REPZ)
13900
461
    ins->all_prefixes[ins->last_repz_prefix] = REP_PREFIX;
13901
13902
153k
  switch (bytemode)
13903
153k
    {
13904
7.43k
    case al_reg:
13905
15.6k
    case eAX_reg:
13906
59.4k
    case indir_dx_reg:
13907
59.4k
      return OP_IMREG (ins, bytemode, sizeflag);
13908
94.3k
    case eDI_reg:
13909
94.3k
      return OP_ESreg (ins, bytemode, sizeflag);
13910
0
    case eSI_reg:
13911
0
      return OP_DSreg (ins, bytemode, sizeflag);
13912
0
    default:
13913
0
      abort ();
13914
0
      break;
13915
153k
    }
13916
0
  return true;
13917
153k
}
13918
13919
static bool
13920
SEP_Fixup (instr_info *ins, int bytemode ATTRIBUTE_UNUSED,
13921
     int sizeflag ATTRIBUTE_UNUSED)
13922
800
{
13923
800
  if (ins->isa64 != amd64)
13924
608
    return true;
13925
13926
192
  ins->obufp = ins->obuf;
13927
192
  BadOp (ins);
13928
192
  ins->mnemonicendp = ins->obufp;
13929
192
  ++ins->codep;
13930
192
  return true;
13931
800
}
13932
13933
/* For BND-prefixed instructions 0xF2 prefix should be displayed as
13934
   "bnd".  */
13935
13936
static bool
13937
BND_Fixup (instr_info *ins, int bytemode ATTRIBUTE_UNUSED,
13938
     int sizeflag ATTRIBUTE_UNUSED)
13939
309k
{
13940
309k
  if (ins->prefixes & PREFIX_REPNZ)
13941
2.06k
    ins->all_prefixes[ins->last_repnz_prefix] = BND_PREFIX;
13942
309k
  return true;
13943
309k
}
13944
13945
/* For NOTRACK-prefixed instructions, 0x3E prefix should be displayed as
13946
   "notrack".  */
13947
13948
static bool
13949
NOTRACK_Fixup (instr_info *ins, int bytemode ATTRIBUTE_UNUSED,
13950
         int sizeflag ATTRIBUTE_UNUSED)
13951
36.5k
{
13952
  /* Since active_seg_prefix is not set in 64-bit mode, check whether
13953
     we've seen a PREFIX_DS.  */
13954
36.5k
  if ((ins->prefixes & PREFIX_DS) != 0
13955
3.68k
      && (ins->address_mode != mode_64bit || ins->last_data_prefix < 0))
13956
3.09k
    {
13957
      /* NOTRACK prefix is only valid on indirect branch instructions.
13958
   NB: DATA prefix is unsupported for Intel64.  */
13959
3.09k
      ins->active_seg_prefix = 0;
13960
3.09k
      ins->all_prefixes[ins->last_seg_prefix] = NOTRACK_PREFIX;
13961
3.09k
    }
13962
36.5k
  return true;
13963
36.5k
}
13964
13965
/* Similar to OP_E.  But the 0xf2/0xf3 ins->prefixes should be displayed as
13966
   "xacquire"/"xrelease" for memory operand if there is a LOCK prefix.
13967
 */
13968
13969
static bool
13970
HLE_Fixup1 (instr_info *ins, int bytemode, int sizeflag)
13971
1.37M
{
13972
1.37M
  if (ins->modrm.mod != 3
13973
1.25M
      && (ins->prefixes & PREFIX_LOCK) != 0)
13974
5.07k
    {
13975
5.07k
      if (ins->prefixes & PREFIX_REPZ)
13976
1.08k
  ins->all_prefixes[ins->last_repz_prefix] = XRELEASE_PREFIX;
13977
5.07k
      if (ins->prefixes & PREFIX_REPNZ)
13978
392
  ins->all_prefixes[ins->last_repnz_prefix] = XACQUIRE_PREFIX;
13979
5.07k
    }
13980
13981
1.37M
  return OP_E (ins, bytemode, sizeflag);
13982
1.37M
}
13983
13984
/* Similar to OP_E.  But the 0xf2/0xf3 ins->prefixes should be displayed as
13985
   "xacquire"/"xrelease" for memory operand.  No check for LOCK prefix.
13986
 */
13987
13988
static bool
13989
HLE_Fixup2 (instr_info *ins, int bytemode, int sizeflag)
13990
15.3k
{
13991
15.3k
  if (ins->modrm.mod != 3)
13992
13.1k
    {
13993
13.1k
      if (ins->prefixes & PREFIX_REPZ)
13994
697
  ins->all_prefixes[ins->last_repz_prefix] = XRELEASE_PREFIX;
13995
13.1k
      if (ins->prefixes & PREFIX_REPNZ)
13996
1.40k
  ins->all_prefixes[ins->last_repnz_prefix] = XACQUIRE_PREFIX;
13997
13.1k
    }
13998
13999
15.3k
  return OP_E (ins, bytemode, sizeflag);
14000
15.3k
}
14001
14002
/* Similar to OP_E.  But the 0xf3 prefixes should be displayed as
14003
   "xrelease" for memory operand.  No check for LOCK prefix.   */
14004
14005
static bool
14006
HLE_Fixup3 (instr_info *ins, int bytemode, int sizeflag)
14007
33.1k
{
14008
33.1k
  if (ins->modrm.mod != 3
14009
17.1k
      && ins->last_repz_prefix > ins->last_repnz_prefix
14010
519
      && (ins->prefixes & PREFIX_REPZ) != 0)
14011
519
    ins->all_prefixes[ins->last_repz_prefix] = XRELEASE_PREFIX;
14012
14013
33.1k
  return OP_E (ins, bytemode, sizeflag);
14014
33.1k
}
14015
14016
static bool
14017
CMPXCHG8B_Fixup (instr_info *ins, int bytemode, int sizeflag)
14018
2.65k
{
14019
2.65k
  USED_REX (REX_W);
14020
2.65k
  if (ins->rex & REX_W)
14021
318
    {
14022
      /* Change cmpxchg8b to cmpxchg16b.  */
14023
318
      char *p = ins->mnemonicendp - 2;
14024
318
      ins->mnemonicendp = stpcpy (p, "16b");
14025
318
      bytemode = o_mode;
14026
318
    }
14027
2.33k
  else if ((ins->prefixes & PREFIX_LOCK) != 0)
14028
1.24k
    {
14029
1.24k
      if (ins->prefixes & PREFIX_REPZ)
14030
728
  ins->all_prefixes[ins->last_repz_prefix] = XRELEASE_PREFIX;
14031
1.24k
      if (ins->prefixes & PREFIX_REPNZ)
14032
263
  ins->all_prefixes[ins->last_repnz_prefix] = XACQUIRE_PREFIX;
14033
1.24k
    }
14034
14035
2.65k
  return OP_M (ins, bytemode, sizeflag);
14036
2.65k
}
14037
14038
static bool
14039
XMM_Fixup (instr_info *ins, int reg, int sizeflag ATTRIBUTE_UNUSED)
14040
496
{
14041
496
  const char (*names)[8] = att_names_xmm;
14042
14043
496
  if (ins->need_vex)
14044
0
    {
14045
0
      switch (ins->vex.length)
14046
0
  {
14047
0
  case 128:
14048
0
    break;
14049
0
  case 256:
14050
0
    names = att_names_ymm;
14051
0
    break;
14052
0
  default:
14053
0
    abort ();
14054
0
  }
14055
0
    }
14056
496
  oappend_register (ins, names[reg]);
14057
496
  return true;
14058
496
}
14059
14060
static bool
14061
FXSAVE_Fixup (instr_info *ins, int bytemode, int sizeflag)
14062
1.95k
{
14063
  /* Add proper suffix to "fxsave" and "fxrstor".  */
14064
1.95k
  USED_REX (REX_W);
14065
1.95k
  if (ins->rex & REX_W)
14066
737
    {
14067
737
      char *p = ins->mnemonicendp;
14068
737
      *p++ = '6';
14069
737
      *p++ = '4';
14070
737
      *p = '\0';
14071
737
      ins->mnemonicendp = p;
14072
737
    }
14073
1.95k
  return OP_M (ins, bytemode, sizeflag);
14074
1.95k
}
14075
14076
/* Display the destination register operand for instructions with
14077
   VEX. */
14078
14079
static bool
14080
OP_VEX (instr_info *ins, int bytemode, int sizeflag ATTRIBUTE_UNUSED)
14081
121k
{
14082
121k
  int reg, modrm_reg, sib_index = -1;
14083
121k
  const char (*names)[8];
14084
14085
121k
  if (!ins->need_vex)
14086
53.6k
    return true;
14087
14088
68.3k
  if (ins->evex_type == evex_from_legacy)
14089
8.00k
    {
14090
8.00k
      ins->evex_used |= EVEX_b_used;
14091
8.00k
      if (!ins->vex.nd)
14092
2.79k
  return true;
14093
8.00k
    }
14094
14095
65.5k
  reg = ins->vex.register_specifier;
14096
65.5k
  ins->vex.register_specifier = 0;
14097
65.5k
  if (ins->address_mode != mode_64bit)
14098
10.2k
    {
14099
10.2k
      if (ins->vex.evex && !ins->vex.v)
14100
2.03k
  {
14101
2.03k
    oappend (ins, "(bad)");
14102
2.03k
    return true;
14103
2.03k
  }
14104
14105
8.17k
      reg &= 7;
14106
8.17k
    }
14107
55.3k
  else if (ins->vex.evex && !ins->vex.v)
14108
17.6k
    reg += 16;
14109
14110
63.4k
  switch (bytemode)
14111
63.4k
    {
14112
8.96k
    case scalar_mode:
14113
8.96k
      oappend_register (ins, att_names_xmm[reg]);
14114
8.96k
      return true;
14115
14116
2.64k
    case vex_vsib_d_w_dq_mode:
14117
4.60k
    case vex_vsib_q_w_dq_mode:
14118
      /* This must be the 3rd operand.  */
14119
4.60k
      if (ins->obufp != ins->op_out[2])
14120
0
  abort ();
14121
4.60k
      if (ins->vex.length == 128
14122
2.40k
    || (bytemode != vex_vsib_d_w_dq_mode
14123
1.23k
        && !ins->vex.w))
14124
2.99k
  oappend_register (ins, att_names_xmm[reg]);
14125
1.61k
      else
14126
1.61k
  oappend_register (ins, att_names_ymm[reg]);
14127
14128
      /* All 3 XMM/YMM registers must be distinct.  */
14129
4.60k
      modrm_reg = ins->modrm.reg;
14130
4.60k
      if (ins->rex & REX_R)
14131
974
  modrm_reg += 8;
14132
14133
4.60k
      if (ins->has_sib && ins->modrm.rm == 4)
14134
1.72k
  {
14135
1.72k
    sib_index = ins->sib.index;
14136
1.72k
    if (ins->rex & REX_X)
14137
290
      sib_index += 8;
14138
1.72k
  }
14139
14140
4.60k
      if (reg == modrm_reg || reg == sib_index)
14141
771
  strcpy (ins->obufp, "/(bad)");
14142
4.60k
      if (modrm_reg == sib_index || modrm_reg == reg)
14143
1.11k
  strcat (ins->op_out[0], "/(bad)");
14144
4.60k
      if (sib_index == modrm_reg || sib_index == reg)
14145
849
  strcat (ins->op_out[1], "/(bad)");
14146
14147
4.60k
      return true;
14148
14149
3.43k
    case tmm_mode:
14150
      /* All 3 TMM registers must be distinct.  */
14151
3.43k
      if (reg >= 8)
14152
1.03k
  oappend (ins, "(bad)");
14153
2.40k
      else
14154
2.40k
  {
14155
    /* This must be the 3rd operand.  */
14156
2.40k
    if (ins->obufp != ins->op_out[2])
14157
0
      abort ();
14158
2.40k
    oappend_register (ins, att_names_tmm[reg]);
14159
2.40k
    if (reg == ins->modrm.reg || reg == ins->modrm.rm)
14160
1.48k
      strcpy (ins->obufp, "/(bad)");
14161
2.40k
  }
14162
14163
3.43k
      if (ins->modrm.reg == ins->modrm.rm || ins->modrm.reg == reg
14164
1.83k
    || ins->modrm.rm == reg)
14165
2.68k
  {
14166
2.68k
    if (ins->modrm.reg <= 8
14167
2.20k
        && (ins->modrm.reg == ins->modrm.rm || ins->modrm.reg == reg))
14168
1.15k
      strcat (ins->op_out[0], "/(bad)");
14169
2.68k
    if (ins->modrm.rm <= 8
14170
2.13k
        && (ins->modrm.rm == ins->modrm.reg || ins->modrm.rm == reg))
14171
1.59k
      strcat (ins->op_out[1], "/(bad)");
14172
2.68k
  }
14173
14174
3.43k
      return true;
14175
14176
3.83k
    case v_mode:
14177
7.99k
    case dq_mode:
14178
7.99k
      if (ins->rex & REX_W)
14179
1.05k
  oappend_register (ins, att_names64[reg]);
14180
6.94k
      else if (bytemode == v_mode
14181
3.15k
         && !(sizeflag & DFLAG))
14182
407
  oappend_register (ins, att_names16[reg]);
14183
6.53k
      else
14184
6.53k
  oappend_register (ins, att_names32[reg]);
14185
7.99k
      return true;
14186
14187
549
    case b_mode:
14188
549
      oappend_register (ins, att_names8rex[reg]);
14189
549
      return true;
14190
14191
748
    case q_mode:
14192
748
      oappend_register (ins, att_names64[reg]);
14193
748
      return true;
14194
63.4k
    }
14195
14196
37.1k
  switch (ins->vex.length)
14197
37.1k
    {
14198
16.6k
    case 128:
14199
16.6k
      switch (bytemode)
14200
16.6k
  {
14201
16.6k
  case x_mode:
14202
16.6k
    names = att_names_xmm;
14203
16.6k
    ins->evex_used |= EVEX_len_used;
14204
16.6k
    break;
14205
0
  case mask_bd_mode:
14206
0
  case mask_mode:
14207
0
    if (reg > 0x7)
14208
0
      {
14209
0
        oappend (ins, "(bad)");
14210
0
        return true;
14211
0
      }
14212
0
    names = att_names_mask;
14213
0
    break;
14214
0
  default:
14215
0
    abort ();
14216
0
    return true;
14217
16.6k
  }
14218
16.6k
      break;
14219
16.6k
    case 256:
14220
10.5k
      switch (bytemode)
14221
10.5k
  {
14222
8.46k
  case x_mode:
14223
8.46k
    names = att_names_ymm;
14224
8.46k
    ins->evex_used |= EVEX_len_used;
14225
8.46k
    break;
14226
0
  case mask_bd_mode:
14227
2.09k
  case mask_mode:
14228
2.09k
    if (reg <= 0x7)
14229
1.02k
      {
14230
1.02k
        names = att_names_mask;
14231
1.02k
        break;
14232
1.02k
      }
14233
    /* Fall through.  */
14234
1.07k
  default:
14235
    /* See PR binutils/20893 for a reproducer.  */
14236
1.07k
    oappend (ins, "(bad)");
14237
1.07k
    return true;
14238
10.5k
  }
14239
9.48k
      break;
14240
9.95k
    case 512:
14241
9.95k
      names = att_names_zmm;
14242
9.95k
      ins->evex_used |= EVEX_len_used;
14243
9.95k
      break;
14244
0
    default:
14245
0
      abort ();
14246
0
      break;
14247
37.1k
    }
14248
36.1k
  oappend_register (ins, names[reg]);
14249
36.1k
  return true;
14250
37.1k
}
14251
14252
static bool
14253
OP_VexR (instr_info *ins, int bytemode, int sizeflag)
14254
3.88k
{
14255
3.88k
  if (ins->modrm.mod == 3)
14256
2.07k
    return OP_VEX (ins, bytemode, sizeflag);
14257
1.81k
  return true;
14258
3.88k
}
14259
14260
static bool
14261
OP_VexW (instr_info *ins, int bytemode, int sizeflag)
14262
1.36k
{
14263
1.36k
  OP_VEX (ins, bytemode, sizeflag);
14264
14265
1.36k
  if (ins->vex.w)
14266
1.02k
    {
14267
      /* Swap 2nd and 3rd operands.  */
14268
1.02k
      char *tmp = ins->op_out[2];
14269
14270
1.02k
      ins->op_out[2] = ins->op_out[1];
14271
1.02k
      ins->op_out[1] = tmp;
14272
14273
1.02k
      tmp = ins->cm_out[2];
14274
1.02k
      ins->cm_out[2] = ins->cm_out[1];
14275
1.02k
      ins->cm_out[1] = tmp;
14276
1.02k
    }
14277
1.36k
  return true;
14278
1.36k
}
14279
14280
static bool
14281
OP_REG_VexI4 (instr_info *ins, int bytemode, int sizeflag ATTRIBUTE_UNUSED)
14282
2.27k
{
14283
2.27k
  int reg;
14284
2.27k
  const char (*names)[8] = att_names_xmm;
14285
14286
2.27k
  if (!fetch_code (ins->info, ins->codep + 1))
14287
240
    return false;
14288
2.03k
  reg = *ins->codep++;
14289
14290
2.03k
  if (bytemode != x_mode && bytemode != scalar_mode)
14291
0
    abort ();
14292
14293
2.03k
  reg >>= 4;
14294
2.03k
  if (ins->address_mode != mode_64bit)
14295
492
    reg &= 7;
14296
14297
2.03k
  if (bytemode == x_mode && ins->vex.length == 256)
14298
1.06k
    names = att_names_ymm;
14299
14300
2.03k
  oappend_register (ins, names[reg]);
14301
14302
2.03k
  if (ins->vex.w)
14303
1.01k
    {
14304
      /* Swap 3rd and 4th operands.  */
14305
1.01k
      char *tmp = ins->op_out[3];
14306
14307
1.01k
      ins->op_out[3] = ins->op_out[2];
14308
1.01k
      ins->op_out[2] = tmp;
14309
14310
1.01k
      tmp = ins->cm_out[2];
14311
1.01k
      ins->cm_out[3] = ins->cm_out[2];
14312
1.01k
      ins->cm_out[2] = tmp;
14313
1.01k
    }
14314
2.03k
  return true;
14315
2.03k
}
14316
14317
static bool
14318
OP_VexI4 (instr_info *ins, int bytemode ATTRIBUTE_UNUSED,
14319
    int sizeflag ATTRIBUTE_UNUSED)
14320
1.26k
{
14321
1.26k
  oappend_immediate (ins, ins->codep[-1] & 0xf);
14322
1.26k
  return true;
14323
1.26k
}
14324
14325
static bool
14326
VPCMP_Fixup (instr_info *ins, int bytemode ATTRIBUTE_UNUSED,
14327
       int sizeflag ATTRIBUTE_UNUSED)
14328
2.53k
{
14329
2.53k
  unsigned int cmp_type;
14330
14331
2.53k
  if (!ins->vex.evex)
14332
0
    abort ();
14333
14334
2.53k
  if (!fetch_code (ins->info, ins->codep + 1))
14335
212
    return false;
14336
2.32k
  cmp_type = *ins->codep++;
14337
  /* There are aliases for immediates 0, 1, 2, 4, 5, 6.
14338
     If it's the case, print suffix, otherwise - print the immediate.  */
14339
2.32k
  if (cmp_type < ARRAY_SIZE (simd_cmp_op)
14340
1.88k
      && cmp_type != 3
14341
1.43k
      && cmp_type != 7)
14342
1.13k
    {
14343
1.13k
      char suffix[3];
14344
1.13k
      char *p = ins->mnemonicendp - 2;
14345
14346
      /* vpcmp* can have both one- and two-lettered suffix.  */
14347
1.13k
      if (p[0] == 'p')
14348
825
  {
14349
825
    p++;
14350
825
    suffix[0] = p[0];
14351
825
    suffix[1] = '\0';
14352
825
  }
14353
305
      else
14354
305
  {
14355
305
    suffix[0] = p[0];
14356
305
    suffix[1] = p[1];
14357
305
    suffix[2] = '\0';
14358
305
  }
14359
14360
1.13k
      sprintf (p, "%s%s", simd_cmp_op[cmp_type].name, suffix);
14361
1.13k
      ins->mnemonicendp += simd_cmp_op[cmp_type].len;
14362
1.13k
    }
14363
1.19k
  else
14364
1.19k
    {
14365
      /* We have a reserved extension byte.  Output it directly.  */
14366
1.19k
      oappend_immediate (ins, cmp_type);
14367
1.19k
    }
14368
2.32k
  return true;
14369
2.53k
}
14370
14371
static const struct op xop_cmp_op[] =
14372
{
14373
  { STRING_COMMA_LEN ("lt") },
14374
  { STRING_COMMA_LEN ("le") },
14375
  { STRING_COMMA_LEN ("gt") },
14376
  { STRING_COMMA_LEN ("ge") },
14377
  { STRING_COMMA_LEN ("eq") },
14378
  { STRING_COMMA_LEN ("neq") },
14379
  { STRING_COMMA_LEN ("false") },
14380
  { STRING_COMMA_LEN ("true") }
14381
};
14382
14383
static bool
14384
VPCOM_Fixup (instr_info *ins, int bytemode ATTRIBUTE_UNUSED,
14385
       int sizeflag ATTRIBUTE_UNUSED)
14386
1.80k
{
14387
1.80k
  unsigned int cmp_type;
14388
14389
1.80k
  if (!fetch_code (ins->info, ins->codep + 1))
14390
134
    return false;
14391
1.66k
  cmp_type = *ins->codep++;
14392
1.66k
  if (cmp_type < ARRAY_SIZE (xop_cmp_op))
14393
994
    {
14394
994
      char suffix[3];
14395
994
      char *p = ins->mnemonicendp - 2;
14396
14397
      /* vpcom* can have both one- and two-lettered suffix.  */
14398
994
      if (p[0] == 'm')
14399
463
  {
14400
463
    p++;
14401
463
    suffix[0] = p[0];
14402
463
    suffix[1] = '\0';
14403
463
  }
14404
531
      else
14405
531
  {
14406
531
    suffix[0] = p[0];
14407
531
    suffix[1] = p[1];
14408
531
    suffix[2] = '\0';
14409
531
  }
14410
14411
994
      sprintf (p, "%s%s", xop_cmp_op[cmp_type].name, suffix);
14412
994
      ins->mnemonicendp += xop_cmp_op[cmp_type].len;
14413
994
    }
14414
673
  else
14415
673
    {
14416
      /* We have a reserved extension byte.  Output it directly.  */
14417
673
      oappend_immediate (ins, cmp_type);
14418
673
    }
14419
1.66k
  return true;
14420
1.80k
}
14421
14422
static const struct op pclmul_op[] =
14423
{
14424
  { STRING_COMMA_LEN ("lql") },
14425
  { STRING_COMMA_LEN ("hql") },
14426
  { STRING_COMMA_LEN ("lqh") },
14427
  { STRING_COMMA_LEN ("hqh") }
14428
};
14429
14430
static bool
14431
PCLMUL_Fixup (instr_info *ins, int bytemode ATTRIBUTE_UNUSED,
14432
        int sizeflag ATTRIBUTE_UNUSED)
14433
3.89k
{
14434
3.89k
  unsigned int pclmul_type;
14435
14436
3.89k
  if (!fetch_code (ins->info, ins->codep + 1))
14437
207
    return false;
14438
3.69k
  pclmul_type = *ins->codep++;
14439
3.69k
  switch (pclmul_type)
14440
3.69k
    {
14441
981
    case 0x10:
14442
981
      pclmul_type = 2;
14443
981
      break;
14444
864
    case 0x11:
14445
864
      pclmul_type = 3;
14446
864
      break;
14447
1.84k
    default:
14448
1.84k
      break;
14449
3.69k
    }
14450
3.69k
  if (pclmul_type < ARRAY_SIZE (pclmul_op))
14451
2.10k
    {
14452
2.10k
      char suffix[4];
14453
2.10k
      char *p = ins->mnemonicendp - 3;
14454
2.10k
      suffix[0] = p[0];
14455
2.10k
      suffix[1] = p[1];
14456
2.10k
      suffix[2] = p[2];
14457
2.10k
      suffix[3] = '\0';
14458
2.10k
      sprintf (p, "%s%s", pclmul_op[pclmul_type].name, suffix);
14459
2.10k
      ins->mnemonicendp += pclmul_op[pclmul_type].len;
14460
2.10k
    }
14461
1.58k
  else
14462
1.58k
    {
14463
      /* We have a reserved extension byte.  Output it directly.  */
14464
1.58k
      oappend_immediate (ins, pclmul_type);
14465
1.58k
    }
14466
3.69k
  return true;
14467
3.69k
}
14468
14469
static bool
14470
MOVSXD_Fixup (instr_info *ins, int bytemode, int sizeflag)
14471
15.4k
{
14472
  /* Add proper suffix to "movsxd".  */
14473
15.4k
  char *p = ins->mnemonicendp;
14474
14475
15.4k
  switch (bytemode)
14476
15.4k
    {
14477
15.4k
    case movsxd_mode:
14478
15.4k
      if (!ins->intel_syntax)
14479
11.9k
  {
14480
11.9k
    USED_REX (REX_W);
14481
11.9k
    if (ins->rex & REX_W)
14482
928
      {
14483
928
        *p++ = 'l';
14484
928
        *p++ = 'q';
14485
928
        break;
14486
928
      }
14487
11.9k
  }
14488
14489
14.5k
      *p++ = 'x';
14490
14.5k
      *p++ = 'd';
14491
14.5k
      break;
14492
0
    default:
14493
0
      oappend (ins, INTERNAL_DISASSEMBLER_ERROR);
14494
0
      break;
14495
15.4k
    }
14496
14497
15.4k
  ins->mnemonicendp = p;
14498
15.4k
  *p = '\0';
14499
15.4k
  return OP_E (ins, bytemode, sizeflag);
14500
15.4k
}
14501
14502
static bool
14503
DistinctDest_Fixup (instr_info *ins, int bytemode, int sizeflag)
14504
6.57k
{
14505
6.57k
  unsigned int reg = ins->vex.register_specifier;
14506
6.57k
  unsigned int modrm_reg = ins->modrm.reg;
14507
6.57k
  unsigned int modrm_rm = ins->modrm.rm;
14508
14509
  /* Calc destination register number.  */
14510
6.57k
  if (ins->rex & REX_R)
14511
854
    modrm_reg += 8;
14512
6.57k
  if (ins->rex2 & REX_R)
14513
1.62k
    modrm_reg += 16;
14514
14515
  /* Calc src1 register number.  */
14516
6.57k
  if (ins->address_mode != mode_64bit)
14517
2.07k
    reg &= 7;
14518
4.50k
  else if (ins->vex.evex && !ins->vex.v)
14519
2.41k
    reg += 16;
14520
14521
  /* Calc src2 register number.  */
14522
6.57k
  if (ins->modrm.mod == 3)
14523
1.95k
    {
14524
1.95k
      if (ins->rex & REX_B)
14525
1.21k
        modrm_rm += 8;
14526
1.95k
      if (ins->rex & REX_X)
14527
446
        modrm_rm += 16;
14528
1.95k
    }
14529
14530
  /* Destination and source registers must be distinct, output bad if
14531
     dest == src1 or dest == src2.  */
14532
6.57k
  if (modrm_reg == reg
14533
3.82k
      || (ins->modrm.mod == 3
14534
1.95k
    && modrm_reg == modrm_rm))
14535
3.01k
    {
14536
3.01k
      oappend (ins, "(bad)");
14537
3.01k
      return true;
14538
3.01k
    }
14539
3.55k
  return OP_XMM (ins, bytemode, sizeflag);
14540
6.57k
}
14541
14542
static bool
14543
OP_Rounding (instr_info *ins, int bytemode, int sizeflag ATTRIBUTE_UNUSED)
14544
27.6k
{
14545
27.6k
  if (ins->modrm.mod != 3 || !ins->vex.b)
14546
22.6k
    return true;
14547
14548
5.01k
  ins->evex_used |= EVEX_b_used;
14549
5.01k
  switch (bytemode)
14550
5.01k
    {
14551
1.84k
    case evex_rounding_64_mode:
14552
1.84k
      if (ins->address_mode != mode_64bit || !ins->vex.w)
14553
1.31k
        return true;
14554
      /* Fall through.  */
14555
2.68k
    case evex_rounding_mode:
14556
2.68k
      oappend (ins, names_rounding[ins->vex.ll]);
14557
2.68k
      break;
14558
1.01k
    case evex_sae_mode:
14559
1.01k
      oappend (ins, "{");
14560
1.01k
      break;
14561
0
    default:
14562
0
      abort ();
14563
5.01k
    }
14564
3.69k
  oappend (ins, "sae}");
14565
3.69k
  return true;
14566
5.01k
}
14567
14568
static bool
14569
PREFETCHI_Fixup (instr_info *ins, int bytemode, int sizeflag)
14570
2.92k
{
14571
2.92k
  if (ins->modrm.mod != 0 || ins->modrm.rm != 5)
14572
2.21k
    {
14573
2.21k
      if (ins->intel_syntax)
14574
708
  {
14575
708
    ins->mnemonicendp = stpcpy (ins->obuf, "nop   ");
14576
708
  }
14577
1.50k
      else
14578
1.50k
  {
14579
1.50k
    USED_REX (REX_W);
14580
1.50k
    if (ins->rex & REX_W)
14581
488
      ins->mnemonicendp = stpcpy (ins->obuf, "nopq  ");
14582
1.01k
    else
14583
1.01k
      {
14584
1.01k
        if (sizeflag & DFLAG)
14585
811
    ins->mnemonicendp = stpcpy (ins->obuf, "nopl  ");
14586
204
        else
14587
204
    ins->mnemonicendp = stpcpy (ins->obuf, "nopw  ");
14588
1.01k
        ins->used_prefixes |= (ins->prefixes & PREFIX_DATA);
14589
1.01k
      }
14590
1.50k
  }
14591
2.21k
      bytemode = v_mode;
14592
2.21k
    }
14593
14594
2.92k
  return OP_M (ins, bytemode, sizeflag);
14595
2.92k
}
14596
14597
static bool
14598
PUSH2_POP2_Fixup (instr_info *ins, int bytemode, int sizeflag)
14599
2.24k
{
14600
2.24k
  if (ins->modrm.mod != 3)
14601
440
    return true;
14602
14603
1.80k
  unsigned int vvvv_reg = ins->vex.register_specifier
14604
1.80k
    | (!ins->vex.v << 4);
14605
1.80k
  unsigned int rm_reg = ins->modrm.rm + (ins->rex & REX_B ? 8 : 0)
14606
1.80k
    + (ins->rex2 & REX_B ? 16 : 0);
14607
14608
  /* Push2/Pop2 cannot use RSP and Pop2 cannot pop two same registers.  */
14609
1.80k
  if (!ins->vex.nd || vvvv_reg == 0x4 || rm_reg == 0x4
14610
938
      || (!ins->modrm.reg
14611
691
    && vvvv_reg == rm_reg))
14612
1.05k
    {
14613
1.05k
      oappend (ins, "(bad)");
14614
1.05k
      return true;
14615
1.05k
    }
14616
14617
748
  return OP_VEX (ins, bytemode, sizeflag);
14618
1.80k
}
14619
14620
static bool
14621
JMPABS_Fixup (instr_info *ins, int bytemode, int sizeflag)
14622
22.1k
{
14623
22.1k
  if (ins->last_rex2_prefix >= 0)
14624
2.70k
    {
14625
2.70k
      uint64_t op;
14626
14627
2.70k
      if ((ins->prefixes & (PREFIX_OPCODE | PREFIX_ADDR | PREFIX_LOCK)) != 0x0
14628
2.28k
    || (ins->rex & REX_W) != 0x0)
14629
1.74k
  {
14630
1.74k
    oappend (ins, "(bad)");
14631
1.74k
    return true;
14632
1.74k
  }
14633
14634
964
      if (bytemode == eAX_reg)
14635
482
  return true;
14636
14637
482
      if (!get64 (ins, &op))
14638
67
  return false;
14639
14640
415
      ins->mnemonicendp = stpcpy (ins->obuf, "jmpabs");
14641
415
      ins->rex2 |= REX2_SPECIAL;
14642
415
      oappend_immediate (ins, op);
14643
14644
415
      return true;
14645
482
    }
14646
14647
19.4k
  if (bytemode == eAX_reg)
14648
9.73k
    return OP_IMREG (ins, bytemode, sizeflag);
14649
9.73k
  return OP_OFF64 (ins, bytemode, sizeflag);
14650
19.4k
}
14651
14652
static bool
14653
CFCMOV_Fixup (instr_info *ins, int opnd, int sizeflag)
14654
6.16k
{
14655
  /* EVEX.NF is used as a direction bit in the 2-operand case to reverse the
14656
     source and destination operands.  */
14657
6.16k
  bool dstmem = !ins->vex.nd && ins->vex.nf;
14658
14659
6.16k
  if (opnd == 0)
14660
3.11k
    {
14661
3.11k
      if (dstmem)
14662
721
  return OP_E (ins, v_swap_mode, sizeflag);
14663
2.39k
      return OP_G (ins, v_mode, sizeflag);
14664
3.11k
    }
14665
14666
  /* These bits have been consumed and should be cleared.  */
14667
3.05k
  ins->vex.nf = false;
14668
3.05k
  ins->vex.mask_register_specifier = 0;
14669
14670
3.05k
  if (dstmem)
14671
659
    return OP_G (ins, v_mode, sizeflag);
14672
2.39k
  return OP_E (ins, v_mode, sizeflag);
14673
3.05k
}