Coverage Report

Created: 2026-08-14 06:51

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/capstonenext/arch/X86/X86ATTInstPrinter.c
Line
Count
Source
1
//===-- X86ATTInstPrinter.cpp - AT&T assembly instruction printing --------===//
2
//
3
//                     The LLVM Compiler Infrastructure
4
//
5
// This file is distributed under the University of Illinois Open Source
6
// License. See LICENSE.TXT for details.
7
//
8
//===----------------------------------------------------------------------===//
9
//
10
// This file includes code for rendering MCInst instances as AT&T-style
11
// assembly.
12
//
13
//===----------------------------------------------------------------------===//
14
15
/* Capstone Disassembly Engine */
16
/* By Nguyen Anh Quynh <aquynh@gmail.com>, 2013-2019 */
17
18
// this code is only relevant when DIET mode is disable
19
#if defined(CAPSTONE_HAS_X86) && !defined(CAPSTONE_DIET) && \
20
  !defined(CAPSTONE_X86_ATT_DISABLE)
21
22
#ifdef _MSC_VER
23
// disable MSVC's warning on strncpy()
24
#pragma warning(disable : 4996)
25
// disable MSVC's warning on strncpy()
26
#pragma warning(disable : 28719)
27
#endif
28
29
#if !defined(CAPSTONE_HAS_OSXKERNEL)
30
#include <ctype.h>
31
#endif
32
#include <capstone/platform.h>
33
34
#if defined(CAPSTONE_HAS_OSXKERNEL)
35
#include <Availability.h>
36
#include <libkern/libkern.h>
37
#else
38
#include <stdio.h>
39
#include <stdlib.h>
40
#endif
41
42
#include <string.h>
43
44
#include "../../utils.h"
45
#include "../../MCInst.h"
46
#include "../../SStream.h"
47
#include "../../MCRegisterInfo.h"
48
#include "X86Mapping.h"
49
#include "X86BaseInfo.h"
50
#include "X86InstPrinterCommon.h"
51
52
#define GET_INSTRINFO_ENUM
53
#ifdef CAPSTONE_X86_REDUCE
54
#include "X86GenInstrInfo_reduce.inc"
55
#else
56
#include "X86GenInstrInfo.inc"
57
#endif
58
59
#define GET_REGINFO_ENUM
60
#include "X86GenRegisterInfo.inc"
61
62
static void printMemReference(MCInst *MI, unsigned Op, SStream *O);
63
static void printOperand(MCInst *MI, unsigned OpNo, SStream *O);
64
65
static void set_mem_access(MCInst *MI, bool status)
66
112k
{
67
112k
  if (MI->csh->detail_opt != CS_OPT_ON)
68
0
    return;
69
70
112k
  MI->csh->doing_mem = status;
71
112k
  if (!status)
72
    // done, create the next operand slot
73
56.4k
    MI->flat_insn->detail->x86.op_count++;
74
112k
}
75
76
static void printopaquemem(MCInst *MI, unsigned OpNo, SStream *O)
77
11.0k
{
78
11.0k
  switch (MI->csh->mode) {
79
3.41k
  case CS_MODE_16:
80
3.41k
    switch (MI->flat_insn->id) {
81
919
    default:
82
919
      MI->x86opsize = 2;
83
919
      break;
84
433
    case X86_INS_LJMP:
85
853
    case X86_INS_LCALL:
86
853
      MI->x86opsize = 4;
87
853
      break;
88
259
    case X86_INS_SGDT:
89
508
    case X86_INS_SIDT:
90
1.01k
    case X86_INS_LGDT:
91
1.64k
    case X86_INS_LIDT:
92
1.64k
      MI->x86opsize = 6;
93
1.64k
      break;
94
3.41k
    }
95
3.41k
    break;
96
3.81k
  case CS_MODE_32:
97
3.81k
    switch (MI->flat_insn->id) {
98
1.07k
    default:
99
1.07k
      MI->x86opsize = 4;
100
1.07k
      break;
101
679
    case X86_INS_LJMP:
102
1.15k
    case X86_INS_JMP:
103
1.30k
    case X86_INS_LCALL:
104
1.67k
    case X86_INS_SGDT:
105
1.84k
    case X86_INS_SIDT:
106
2.23k
    case X86_INS_LGDT:
107
2.74k
    case X86_INS_LIDT:
108
2.74k
      MI->x86opsize = 6;
109
2.74k
      break;
110
3.81k
    }
111
3.81k
    break;
112
3.81k
  case CS_MODE_64:
113
3.76k
    switch (MI->flat_insn->id) {
114
936
    default:
115
936
      MI->x86opsize = 8;
116
936
      break;
117
356
    case X86_INS_LJMP:
118
655
    case X86_INS_LCALL:
119
905
    case X86_INS_SGDT:
120
1.89k
    case X86_INS_SIDT:
121
2.47k
    case X86_INS_LGDT:
122
2.83k
    case X86_INS_LIDT:
123
2.83k
      MI->x86opsize = 10;
124
2.83k
      break;
125
3.76k
    }
126
3.76k
    break;
127
3.76k
  default: // never reach
128
0
    break;
129
11.0k
  }
130
131
11.0k
  printMemReference(MI, OpNo, O);
132
11.0k
}
133
134
static void printi8mem(MCInst *MI, unsigned OpNo, SStream *O)
135
106k
{
136
106k
  MI->x86opsize = 1;
137
106k
  printMemReference(MI, OpNo, O);
138
106k
}
139
140
static void printi16mem(MCInst *MI, unsigned OpNo, SStream *O)
141
38.8k
{
142
38.8k
  MI->x86opsize = 2;
143
144
38.8k
  printMemReference(MI, OpNo, O);
145
38.8k
}
146
147
static void printi32mem(MCInst *MI, unsigned OpNo, SStream *O)
148
44.0k
{
149
44.0k
  MI->x86opsize = 4;
150
151
44.0k
  printMemReference(MI, OpNo, O);
152
44.0k
}
153
154
static void printi64mem(MCInst *MI, unsigned OpNo, SStream *O)
155
16.7k
{
156
16.7k
  MI->x86opsize = 8;
157
16.7k
  printMemReference(MI, OpNo, O);
158
16.7k
}
159
160
static void printi128mem(MCInst *MI, unsigned OpNo, SStream *O)
161
4.72k
{
162
4.72k
  MI->x86opsize = 16;
163
4.72k
  printMemReference(MI, OpNo, O);
164
4.72k
}
165
166
static void printi512mem(MCInst *MI, unsigned OpNo, SStream *O)
167
4.32k
{
168
4.32k
  MI->x86opsize = 64;
169
4.32k
  printMemReference(MI, OpNo, O);
170
4.32k
}
171
172
#ifndef CAPSTONE_X86_REDUCE
173
static void printi256mem(MCInst *MI, unsigned OpNo, SStream *O)
174
3.61k
{
175
3.61k
  MI->x86opsize = 32;
176
3.61k
  printMemReference(MI, OpNo, O);
177
3.61k
}
178
179
static void printf32mem(MCInst *MI, unsigned OpNo, SStream *O)
180
8.34k
{
181
8.34k
  switch (MCInst_getOpcode(MI)) {
182
6.00k
  default:
183
6.00k
    MI->x86opsize = 4;
184
6.00k
    break;
185
626
  case X86_FSTENVm:
186
2.33k
  case X86_FLDENVm:
187
    // TODO: fix this in tablegen instead
188
2.33k
    switch (MI->csh->mode) {
189
0
    default: // never reach
190
0
      break;
191
917
    case CS_MODE_16:
192
917
      MI->x86opsize = 14;
193
917
      break;
194
481
    case CS_MODE_32:
195
1.41k
    case CS_MODE_64:
196
1.41k
      MI->x86opsize = 28;
197
1.41k
      break;
198
2.33k
    }
199
2.33k
    break;
200
8.34k
  }
201
202
8.34k
  printMemReference(MI, OpNo, O);
203
8.34k
}
204
205
static void printf64mem(MCInst *MI, unsigned OpNo, SStream *O)
206
5.63k
{
207
5.63k
  MI->x86opsize = 8;
208
5.63k
  printMemReference(MI, OpNo, O);
209
5.63k
}
210
211
static void printf80mem(MCInst *MI, unsigned OpNo, SStream *O)
212
429
{
213
429
  MI->x86opsize = 10;
214
429
  printMemReference(MI, OpNo, O);
215
429
}
216
217
static void printf128mem(MCInst *MI, unsigned OpNo, SStream *O)
218
4.49k
{
219
4.49k
  MI->x86opsize = 16;
220
4.49k
  printMemReference(MI, OpNo, O);
221
4.49k
}
222
223
static void printf256mem(MCInst *MI, unsigned OpNo, SStream *O)
224
2.63k
{
225
2.63k
  MI->x86opsize = 32;
226
2.63k
  printMemReference(MI, OpNo, O);
227
2.63k
}
228
229
static void printf512mem(MCInst *MI, unsigned OpNo, SStream *O)
230
2.66k
{
231
2.66k
  MI->x86opsize = 64;
232
2.66k
  printMemReference(MI, OpNo, O);
233
2.66k
}
234
235
#endif
236
237
static void printRegName(SStream *OS, unsigned RegNo);
238
239
// local printOperand, without updating public operands
240
static void _printOperand(MCInst *MI, unsigned OpNo, SStream *O)
241
349k
{
242
349k
  MCOperand *Op = MCInst_getOperand(MI, OpNo);
243
349k
  if (MCOperand_isReg(Op)) {
244
349k
    printRegName(O, MCOperand_getReg(Op));
245
349k
  } else if (MCOperand_isImm(Op)) {
246
0
    uint8_t encsize;
247
0
    uint8_t opsize =
248
0
      X86_immediate_size(MCInst_getOpcode(MI), &encsize);
249
250
    // Print X86 immediates as signed values.
251
0
    int64_t imm = MCOperand_getImm(Op);
252
0
    if (imm < 0) {
253
0
      if (MI->csh->imm_unsigned) {
254
0
        if (opsize) {
255
0
          switch (opsize) {
256
0
          default:
257
0
            break;
258
0
          case 1:
259
0
            imm &= 0xff;
260
0
            break;
261
0
          case 2:
262
0
            imm &= 0xffff;
263
0
            break;
264
0
          case 4:
265
0
            imm &= 0xffffffff;
266
0
            break;
267
0
          }
268
0
        }
269
270
0
        SStream_concat(O, "$0x%" PRIx64, imm);
271
0
      } else {
272
0
        if (imm < -HEX_THRESHOLD)
273
0
          SStream_concat(O, "$-0x%" PRIx64, -imm);
274
0
        else
275
0
          SStream_concat(O, "$-%" PRIu64, -imm);
276
0
      }
277
0
    } else {
278
0
      if (imm > HEX_THRESHOLD)
279
0
        SStream_concat(O, "$0x%" PRIx64, imm);
280
0
      else
281
0
        SStream_concat(O, "$%" PRIu64, imm);
282
0
    }
283
0
  }
284
349k
}
285
286
// convert Intel access info to AT&T access info
287
static void get_op_access(cs_struct *h, unsigned int id, uint8_t *access,
288
        uint64_t *eflags)
289
765k
{
290
765k
  uint8_t count, i;
291
765k
  const uint8_t *arr = X86_get_op_access(h, id, eflags);
292
293
  // initialize access
294
765k
  memset(access, 0, CS_X86_MAXIMUM_OPERAND_SIZE * sizeof(access[0]));
295
765k
  if (!arr) {
296
0
    return;
297
0
  }
298
299
  // find the non-zero last entry
300
2.15M
  for (count = 0; arr[count]; count++)
301
1.38M
    ;
302
303
765k
  if (count == 0)
304
52.6k
    return;
305
306
  // copy in reverse order this access array from Intel syntax -> AT&T syntax
307
712k
  count--;
308
2.09M
  for (i = 0; i <= count && ((count - i) < CS_X86_MAXIMUM_OPERAND_SIZE) &&
309
1.38M
        i < CS_X86_MAXIMUM_OPERAND_SIZE;
310
1.38M
       i++) {
311
1.38M
    if (arr[count - i] != CS_AC_IGNORE)
312
1.17M
      access[i] = arr[count - i];
313
210k
    else
314
210k
      access[i] = 0;
315
1.38M
  }
316
712k
}
317
318
static void printSrcIdx(MCInst *MI, unsigned Op, SStream *O)
319
26.7k
{
320
26.7k
  MCOperand *SegReg;
321
26.7k
  int reg;
322
323
26.7k
  if (MI->csh->detail_opt) {
324
26.7k
    uint8_t access[CS_X86_MAXIMUM_OPERAND_SIZE];
325
326
26.7k
    MI->flat_insn->detail->x86
327
26.7k
      .operands[MI->flat_insn->detail->x86.op_count]
328
26.7k
      .type = X86_OP_MEM;
329
26.7k
    MI->flat_insn->detail->x86
330
26.7k
      .operands[MI->flat_insn->detail->x86.op_count]
331
26.7k
      .size = MI->x86opsize;
332
26.7k
    MI->flat_insn->detail->x86
333
26.7k
      .operands[MI->flat_insn->detail->x86.op_count]
334
26.7k
      .mem.segment = X86_REG_INVALID;
335
26.7k
    MI->flat_insn->detail->x86
336
26.7k
      .operands[MI->flat_insn->detail->x86.op_count]
337
26.7k
      .mem.base = X86_REG_INVALID;
338
26.7k
    MI->flat_insn->detail->x86
339
26.7k
      .operands[MI->flat_insn->detail->x86.op_count]
340
26.7k
      .mem.index = X86_REG_INVALID;
341
26.7k
    MI->flat_insn->detail->x86
342
26.7k
      .operands[MI->flat_insn->detail->x86.op_count]
343
26.7k
      .mem.scale = 1;
344
26.7k
    MI->flat_insn->detail->x86
345
26.7k
      .operands[MI->flat_insn->detail->x86.op_count]
346
26.7k
      .mem.disp = 0;
347
348
26.7k
    get_op_access(MI->csh, MCInst_getOpcode(MI), access,
349
26.7k
            &MI->flat_insn->detail->x86.eflags);
350
26.7k
    MI->flat_insn->detail->x86
351
26.7k
      .operands[MI->flat_insn->detail->x86.op_count]
352
26.7k
      .access = access[MI->flat_insn->detail->x86.op_count];
353
26.7k
  }
354
355
26.7k
  SegReg = MCInst_getOperand(MI, Op + 1);
356
26.7k
  reg = MCOperand_getReg(SegReg);
357
  // If this has a segment register, print it.
358
26.7k
  if (reg) {
359
1.59k
    _printOperand(MI, Op + 1, O);
360
1.59k
    SStream_concat0(O, ":");
361
362
1.59k
    if (MI->csh->detail_opt) {
363
1.59k
      MI->flat_insn->detail->x86
364
1.59k
        .operands[MI->flat_insn->detail->x86.op_count]
365
1.59k
        .mem.segment = X86_register_map(reg);
366
1.59k
    }
367
1.59k
  }
368
369
26.7k
  SStream_concat0(O, "(");
370
26.7k
  set_mem_access(MI, true);
371
372
26.7k
  printOperand(MI, Op, O);
373
374
26.7k
  SStream_concat0(O, ")");
375
26.7k
  set_mem_access(MI, false);
376
26.7k
}
377
378
static void printDstIdx(MCInst *MI, unsigned Op, SStream *O)
379
29.6k
{
380
29.6k
  if (MI->csh->detail_opt) {
381
29.6k
    uint8_t access[CS_X86_MAXIMUM_OPERAND_SIZE];
382
383
29.6k
    MI->flat_insn->detail->x86
384
29.6k
      .operands[MI->flat_insn->detail->x86.op_count]
385
29.6k
      .type = X86_OP_MEM;
386
29.6k
    MI->flat_insn->detail->x86
387
29.6k
      .operands[MI->flat_insn->detail->x86.op_count]
388
29.6k
      .size = MI->x86opsize;
389
29.6k
    MI->flat_insn->detail->x86
390
29.6k
      .operands[MI->flat_insn->detail->x86.op_count]
391
29.6k
      .mem.segment = X86_REG_INVALID;
392
29.6k
    MI->flat_insn->detail->x86
393
29.6k
      .operands[MI->flat_insn->detail->x86.op_count]
394
29.6k
      .mem.base = X86_REG_INVALID;
395
29.6k
    MI->flat_insn->detail->x86
396
29.6k
      .operands[MI->flat_insn->detail->x86.op_count]
397
29.6k
      .mem.index = X86_REG_INVALID;
398
29.6k
    MI->flat_insn->detail->x86
399
29.6k
      .operands[MI->flat_insn->detail->x86.op_count]
400
29.6k
      .mem.scale = 1;
401
29.6k
    MI->flat_insn->detail->x86
402
29.6k
      .operands[MI->flat_insn->detail->x86.op_count]
403
29.6k
      .mem.disp = 0;
404
405
29.6k
    get_op_access(MI->csh, MCInst_getOpcode(MI), access,
406
29.6k
            &MI->flat_insn->detail->x86.eflags);
407
29.6k
    MI->flat_insn->detail->x86
408
29.6k
      .operands[MI->flat_insn->detail->x86.op_count]
409
29.6k
      .access = access[MI->flat_insn->detail->x86.op_count];
410
29.6k
  }
411
412
  // DI accesses are always ES-based on non-64bit mode
413
29.6k
  if (MI->csh->mode != CS_MODE_64) {
414
16.1k
    SStream_concat0(O, "%es:(");
415
16.1k
    if (MI->csh->detail_opt) {
416
16.1k
      MI->flat_insn->detail->x86
417
16.1k
        .operands[MI->flat_insn->detail->x86.op_count]
418
16.1k
        .mem.segment = X86_REG_ES;
419
16.1k
    }
420
16.1k
  } else
421
13.5k
    SStream_concat0(O, "(");
422
423
29.6k
  set_mem_access(MI, true);
424
425
29.6k
  printOperand(MI, Op, O);
426
427
29.6k
  SStream_concat0(O, ")");
428
29.6k
  set_mem_access(MI, false);
429
29.6k
}
430
431
static void printSrcIdx8(MCInst *MI, unsigned OpNo, SStream *O)
432
7.42k
{
433
7.42k
  MI->x86opsize = 1;
434
7.42k
  printSrcIdx(MI, OpNo, O);
435
7.42k
}
436
437
static void printSrcIdx16(MCInst *MI, unsigned OpNo, SStream *O)
438
7.83k
{
439
7.83k
  MI->x86opsize = 2;
440
7.83k
  printSrcIdx(MI, OpNo, O);
441
7.83k
}
442
443
static void printSrcIdx32(MCInst *MI, unsigned OpNo, SStream *O)
444
8.33k
{
445
8.33k
  MI->x86opsize = 4;
446
8.33k
  printSrcIdx(MI, OpNo, O);
447
8.33k
}
448
449
static void printSrcIdx64(MCInst *MI, unsigned OpNo, SStream *O)
450
3.19k
{
451
3.19k
  MI->x86opsize = 8;
452
3.19k
  printSrcIdx(MI, OpNo, O);
453
3.19k
}
454
455
static void printDstIdx8(MCInst *MI, unsigned OpNo, SStream *O)
456
10.4k
{
457
10.4k
  MI->x86opsize = 1;
458
10.4k
  printDstIdx(MI, OpNo, O);
459
10.4k
}
460
461
static void printDstIdx16(MCInst *MI, unsigned OpNo, SStream *O)
462
7.11k
{
463
7.11k
  MI->x86opsize = 2;
464
7.11k
  printDstIdx(MI, OpNo, O);
465
7.11k
}
466
467
static void printDstIdx32(MCInst *MI, unsigned OpNo, SStream *O)
468
8.94k
{
469
8.94k
  MI->x86opsize = 4;
470
8.94k
  printDstIdx(MI, OpNo, O);
471
8.94k
}
472
473
static void printDstIdx64(MCInst *MI, unsigned OpNo, SStream *O)
474
3.21k
{
475
3.21k
  MI->x86opsize = 8;
476
3.21k
  printDstIdx(MI, OpNo, O);
477
3.21k
}
478
479
static void printMemOffset(MCInst *MI, unsigned Op, SStream *O)
480
8.21k
{
481
8.21k
  MCOperand *DispSpec = MCInst_getOperand(MI, Op);
482
8.21k
  MCOperand *SegReg = MCInst_getOperand(MI, Op + 1);
483
8.21k
  int reg;
484
485
8.21k
  if (MI->csh->detail_opt) {
486
8.21k
    uint8_t access[CS_X86_MAXIMUM_OPERAND_SIZE];
487
488
8.21k
    MI->flat_insn->detail->x86
489
8.21k
      .operands[MI->flat_insn->detail->x86.op_count]
490
8.21k
      .type = X86_OP_MEM;
491
8.21k
    MI->flat_insn->detail->x86
492
8.21k
      .operands[MI->flat_insn->detail->x86.op_count]
493
8.21k
      .size = MI->x86opsize;
494
8.21k
    MI->flat_insn->detail->x86
495
8.21k
      .operands[MI->flat_insn->detail->x86.op_count]
496
8.21k
      .mem.segment = X86_REG_INVALID;
497
8.21k
    MI->flat_insn->detail->x86
498
8.21k
      .operands[MI->flat_insn->detail->x86.op_count]
499
8.21k
      .mem.base = X86_REG_INVALID;
500
8.21k
    MI->flat_insn->detail->x86
501
8.21k
      .operands[MI->flat_insn->detail->x86.op_count]
502
8.21k
      .mem.index = X86_REG_INVALID;
503
8.21k
    MI->flat_insn->detail->x86
504
8.21k
      .operands[MI->flat_insn->detail->x86.op_count]
505
8.21k
      .mem.scale = 1;
506
8.21k
    MI->flat_insn->detail->x86
507
8.21k
      .operands[MI->flat_insn->detail->x86.op_count]
508
8.21k
      .mem.disp = 0;
509
510
8.21k
    get_op_access(MI->csh, MCInst_getOpcode(MI), access,
511
8.21k
            &MI->flat_insn->detail->x86.eflags);
512
8.21k
    MI->flat_insn->detail->x86
513
8.21k
      .operands[MI->flat_insn->detail->x86.op_count]
514
8.21k
      .access = access[MI->flat_insn->detail->x86.op_count];
515
8.21k
  }
516
517
  // If this has a segment register, print it.
518
8.21k
  reg = MCOperand_getReg(SegReg);
519
8.21k
  if (reg) {
520
370
    _printOperand(MI, Op + 1, O);
521
370
    SStream_concat0(O, ":");
522
523
370
    if (MI->csh->detail_opt) {
524
370
      MI->flat_insn->detail->x86
525
370
        .operands[MI->flat_insn->detail->x86.op_count]
526
370
        .mem.segment = X86_register_map(reg);
527
370
    }
528
370
  }
529
530
8.21k
  if (MCOperand_isImm(DispSpec)) {
531
8.21k
    int64_t imm = MCOperand_getImm(DispSpec);
532
8.21k
    if (MI->csh->detail_opt)
533
8.21k
      MI->flat_insn->detail->x86
534
8.21k
        .operands[MI->flat_insn->detail->x86.op_count]
535
8.21k
        .mem.disp = imm;
536
8.21k
    if (imm < 0) {
537
1.66k
      SStream_concat(O, "0x%" PRIx64,
538
1.66k
               arch_masks[MI->csh->mode] & imm);
539
6.54k
    } else {
540
6.54k
      if (imm > HEX_THRESHOLD)
541
5.96k
        SStream_concat(O, "0x%" PRIx64, imm);
542
582
      else
543
582
        SStream_concat(O, "%" PRIu64, imm);
544
6.54k
    }
545
8.21k
  }
546
547
8.21k
  if (MI->csh->detail_opt)
548
8.21k
    MI->flat_insn->detail->x86.op_count++;
549
8.21k
}
550
551
static void printU8Imm(MCInst *MI, unsigned Op, SStream *O)
552
34.9k
{
553
34.9k
  uint8_t val = MCOperand_getImm(MCInst_getOperand(MI, Op)) & 0xff;
554
555
34.9k
  if (val > HEX_THRESHOLD)
556
30.4k
    SStream_concat(O, "$0x%x", val);
557
4.54k
  else
558
4.54k
    SStream_concat(O, "$%" PRIu8, val);
559
560
34.9k
  if (MI->csh->detail_opt) {
561
34.9k
    MI->flat_insn->detail->x86
562
34.9k
      .operands[MI->flat_insn->detail->x86.op_count]
563
34.9k
      .type = X86_OP_IMM;
564
34.9k
    MI->flat_insn->detail->x86
565
34.9k
      .operands[MI->flat_insn->detail->x86.op_count]
566
34.9k
      .imm = val;
567
34.9k
    MI->flat_insn->detail->x86
568
34.9k
      .operands[MI->flat_insn->detail->x86.op_count]
569
34.9k
      .size = 1;
570
34.9k
    MI->flat_insn->detail->x86.op_count++;
571
34.9k
  }
572
34.9k
}
573
574
static void printMemOffs8(MCInst *MI, unsigned OpNo, SStream *O)
575
4.47k
{
576
4.47k
  MI->x86opsize = 1;
577
4.47k
  printMemOffset(MI, OpNo, O);
578
4.47k
}
579
580
static void printMemOffs16(MCInst *MI, unsigned OpNo, SStream *O)
581
1.38k
{
582
1.38k
  MI->x86opsize = 2;
583
1.38k
  printMemOffset(MI, OpNo, O);
584
1.38k
}
585
586
static void printMemOffs32(MCInst *MI, unsigned OpNo, SStream *O)
587
1.86k
{
588
1.86k
  MI->x86opsize = 4;
589
1.86k
  printMemOffset(MI, OpNo, O);
590
1.86k
}
591
592
static void printMemOffs64(MCInst *MI, unsigned OpNo, SStream *O)
593
492
{
594
492
  MI->x86opsize = 8;
595
492
  printMemOffset(MI, OpNo, O);
596
492
}
597
598
/// printPCRelImm - This is used to print an immediate value that ends up
599
/// being encoded as a pc-relative value (e.g. for jumps and calls).  These
600
/// print slightly differently than normal immediates.  For example, a $ is not
601
/// emitted.
602
static void printPCRelImm(MCInst *MI, unsigned OpNo, SStream *O)
603
43.3k
{
604
43.3k
  MCOperand *Op = MCInst_getOperand(MI, OpNo);
605
43.3k
  if (MCOperand_isImm(Op)) {
606
43.3k
    int64_t imm = MCOperand_getImm(Op) + MI->flat_insn->size +
607
43.3k
            MI->address;
608
609
    // truncate imm for non-64bit
610
43.3k
    if (MI->csh->mode != CS_MODE_64) {
611
29.6k
      imm = imm & 0xffffffff;
612
29.6k
    }
613
614
43.3k
    if (imm < 0) {
615
1.64k
      SStream_concat(O, "0x%" PRIx64, imm);
616
41.7k
    } else {
617
41.7k
      if (imm > HEX_THRESHOLD)
618
41.6k
        SStream_concat(O, "0x%" PRIx64, imm);
619
21
      else
620
21
        SStream_concat(O, "%" PRIu64, imm);
621
41.7k
    }
622
43.3k
    if (MI->csh->detail_opt) {
623
43.3k
      MI->flat_insn->detail->x86
624
43.3k
        .operands[MI->flat_insn->detail->x86.op_count]
625
43.3k
        .type = X86_OP_IMM;
626
43.3k
      MI->has_imm = true;
627
43.3k
      MI->flat_insn->detail->x86
628
43.3k
        .operands[MI->flat_insn->detail->x86.op_count]
629
43.3k
        .imm = imm;
630
43.3k
      MI->flat_insn->detail->x86.op_count++;
631
43.3k
    }
632
43.3k
  }
633
43.3k
}
634
635
static void printOperand(MCInst *MI, unsigned OpNo, SStream *O)
636
323k
{
637
323k
  MCOperand *Op = MCInst_getOperand(MI, OpNo);
638
323k
  if (MCOperand_isReg(Op)) {
639
274k
    unsigned int reg = MCOperand_getReg(Op);
640
274k
    printRegName(O, reg);
641
274k
    if (MI->csh->detail_opt) {
642
274k
      if (MI->csh->doing_mem) {
643
29.5k
        MI->flat_insn->detail->x86
644
29.5k
          .operands[MI->flat_insn->detail->x86
645
29.5k
                .op_count]
646
29.5k
          .mem.base = X86_register_map(reg);
647
245k
      } else {
648
245k
        uint8_t access[CS_X86_MAXIMUM_OPERAND_SIZE];
649
650
245k
        MI->flat_insn->detail->x86
651
245k
          .operands[MI->flat_insn->detail->x86
652
245k
                .op_count]
653
245k
          .type = X86_OP_REG;
654
245k
        MI->flat_insn->detail->x86
655
245k
          .operands[MI->flat_insn->detail->x86
656
245k
                .op_count]
657
245k
          .reg = X86_register_map(reg);
658
245k
        MI->flat_insn->detail->x86
659
245k
          .operands[MI->flat_insn->detail->x86
660
245k
                .op_count]
661
245k
          .size =
662
245k
          MI->csh->regsize_map[X86_register_map(
663
245k
            reg)];
664
665
245k
        get_op_access(
666
245k
          MI->csh, MCInst_getOpcode(MI), access,
667
245k
          &MI->flat_insn->detail->x86.eflags);
668
245k
        MI->flat_insn->detail->x86
669
245k
          .operands[MI->flat_insn->detail->x86
670
245k
                .op_count]
671
245k
          .access =
672
245k
          access[MI->flat_insn->detail->x86
673
245k
                   .op_count];
674
675
245k
        MI->flat_insn->detail->x86.op_count++;
676
245k
      }
677
274k
    }
678
274k
  } else if (MCOperand_isImm(Op)) {
679
    // Print X86 immediates as signed values.
680
48.9k
    uint8_t encsize;
681
48.9k
    int64_t imm = MCOperand_getImm(Op);
682
48.9k
    uint8_t opsize =
683
48.9k
      X86_immediate_size(MCInst_getOpcode(MI), &encsize);
684
685
48.9k
    if (opsize == 1) { // print 1 byte immediate in positive form
686
21.8k
      imm = imm & 0xff;
687
21.8k
    }
688
689
48.9k
    switch (MI->flat_insn->id) {
690
21.2k
    default:
691
21.2k
      if (imm >= 0) {
692
18.8k
        if (imm > HEX_THRESHOLD)
693
16.5k
          SStream_concat(O, "$0x%" PRIx64, imm);
694
2.22k
        else
695
2.22k
          SStream_concat(O, "$%" PRIu64, imm);
696
18.8k
      } else {
697
2.49k
        if (MI->csh->imm_unsigned) {
698
0
          if (opsize) {
699
0
            switch (opsize) {
700
0
            default:
701
0
              break;
702
            // case 1 cannot occur because above imm was ANDed with 0xff,
703
            // making it effectively always positive.
704
            // So this switch is never reached.
705
0
            case 2:
706
0
              imm &= 0xffff;
707
0
              break;
708
0
            case 4:
709
0
              imm &= 0xffffffff;
710
0
              break;
711
0
            }
712
0
          }
713
714
0
          SStream_concat(O, "$0x%" PRIx64, imm);
715
2.49k
        } else {
716
2.49k
          if (imm ==
717
2.49k
              0x8000000000000000LL) // imm == -imm
718
0
            SStream_concat0(
719
0
              O,
720
0
              "$0x8000000000000000");
721
2.49k
          else if (imm < -HEX_THRESHOLD)
722
2.34k
            SStream_concat(O,
723
2.34k
                     "$-0x%" PRIx64,
724
2.34k
                     -imm);
725
145
          else
726
145
            SStream_concat(O, "$-%" PRIu64,
727
145
                     -imm);
728
2.49k
        }
729
2.49k
      }
730
21.2k
      break;
731
732
21.2k
    case X86_INS_MOVABS:
733
10.7k
    case X86_INS_MOV:
734
      // do not print number in negative form
735
      // Use unsigned comparison to handle values >= 2^63 correctly
736
10.7k
      if ((uint64_t)imm > HEX_THRESHOLD)
737
9.48k
        SStream_concat(O, "$0x%" PRIx64, imm);
738
1.29k
      else
739
1.29k
        SStream_concat(O, "$%" PRIu64, imm);
740
10.7k
      break;
741
742
0
    case X86_INS_IN:
743
0
    case X86_INS_OUT:
744
0
    case X86_INS_INT:
745
      // do not print number in negative form
746
0
      imm = imm & 0xff;
747
0
      if (imm >= 0 && imm <= HEX_THRESHOLD)
748
0
        SStream_concat(O, "$%" PRIu64, imm);
749
0
      else {
750
0
        SStream_concat(O, "$0x%x", imm);
751
0
      }
752
0
      break;
753
754
1.13k
    case X86_INS_LCALL:
755
2.71k
    case X86_INS_LJMP:
756
2.71k
    case X86_INS_JMP:
757
      // always print address in positive form
758
2.71k
      if (OpNo == 1) { // selector is ptr16
759
1.35k
        imm = imm & 0xffff;
760
1.35k
        opsize = 2;
761
1.35k
      } else
762
1.35k
        opsize = 4;
763
2.71k
      SStream_concat(O, "$0x%" PRIx64, imm);
764
2.71k
      break;
765
766
3.40k
    case X86_INS_AND:
767
5.95k
    case X86_INS_OR:
768
9.85k
    case X86_INS_XOR:
769
      // do not print number in negative form
770
9.85k
      if (imm >= 0 && imm <= HEX_THRESHOLD)
771
613
        SStream_concat(O, "$%" PRIu64, imm);
772
9.23k
      else {
773
9.23k
        imm = arch_masks[opsize ? opsize : MI->imm_size] &
774
9.23k
              imm;
775
9.23k
        SStream_concat(O, "$0x%" PRIx64, imm);
776
9.23k
      }
777
9.85k
      break;
778
779
3.56k
    case X86_INS_RET:
780
4.31k
    case X86_INS_RETF:
781
      // RET imm16
782
4.31k
      if (imm >= 0 && imm <= HEX_THRESHOLD)
783
274
        SStream_concat(O, "$%" PRIu64, imm);
784
4.04k
      else {
785
4.04k
        imm = 0xffff & imm;
786
4.04k
        SStream_concat(O, "$0x%x", imm);
787
4.04k
      }
788
4.31k
      break;
789
48.9k
    }
790
791
48.9k
    if (MI->csh->detail_opt) {
792
48.9k
      if (MI->csh->doing_mem) {
793
0
        MI->flat_insn->detail->x86
794
0
          .operands[MI->flat_insn->detail->x86
795
0
                .op_count]
796
0
          .type = X86_OP_MEM;
797
0
        MI->flat_insn->detail->x86
798
0
          .operands[MI->flat_insn->detail->x86
799
0
                .op_count]
800
0
          .mem.disp = imm;
801
48.9k
      } else {
802
48.9k
        MI->flat_insn->detail->x86
803
48.9k
          .operands[MI->flat_insn->detail->x86
804
48.9k
                .op_count]
805
48.9k
          .type = X86_OP_IMM;
806
48.9k
        MI->has_imm = true;
807
48.9k
        MI->flat_insn->detail->x86
808
48.9k
          .operands[MI->flat_insn->detail->x86
809
48.9k
                .op_count]
810
48.9k
          .imm = imm;
811
812
48.9k
        if (opsize > 0) {
813
42.2k
          MI->flat_insn->detail->x86
814
42.2k
            .operands[MI->flat_insn->detail
815
42.2k
                  ->x86.op_count]
816
42.2k
            .size = opsize;
817
42.2k
          MI->flat_insn->detail->x86.encoding
818
42.2k
            .imm_size = encsize;
819
42.2k
        } else if (MI->op1_size > 0)
820
0
          MI->flat_insn->detail->x86
821
0
            .operands[MI->flat_insn->detail
822
0
                  ->x86.op_count]
823
0
            .size = MI->op1_size;
824
6.75k
        else
825
6.75k
          MI->flat_insn->detail->x86
826
6.75k
            .operands[MI->flat_insn->detail
827
6.75k
                  ->x86.op_count]
828
6.75k
            .size = MI->imm_size;
829
830
48.9k
        MI->flat_insn->detail->x86.op_count++;
831
48.9k
      }
832
48.9k
    }
833
48.9k
  }
834
323k
}
835
836
static void printMemReference(MCInst *MI, unsigned Op, SStream *O)
837
259k
{
838
259k
  MCOperand *BaseReg = MCInst_getOperand(MI, Op + X86_AddrBaseReg);
839
259k
  MCOperand *IndexReg = MCInst_getOperand(MI, Op + X86_AddrIndexReg);
840
259k
  MCOperand *DispSpec = MCInst_getOperand(MI, Op + X86_AddrDisp);
841
259k
  MCOperand *SegReg = MCInst_getOperand(MI, Op + X86_AddrSegmentReg);
842
259k
  uint64_t ScaleVal;
843
259k
  int segreg;
844
259k
  int64_t DispVal = 1;
845
846
259k
  if (MI->csh->detail_opt) {
847
259k
    uint8_t access[CS_X86_MAXIMUM_OPERAND_SIZE];
848
849
259k
    MI->flat_insn->detail->x86
850
259k
      .operands[MI->flat_insn->detail->x86.op_count]
851
259k
      .type = X86_OP_MEM;
852
259k
    MI->flat_insn->detail->x86
853
259k
      .operands[MI->flat_insn->detail->x86.op_count]
854
259k
      .size = MI->x86opsize;
855
259k
    MI->flat_insn->detail->x86
856
259k
      .operands[MI->flat_insn->detail->x86.op_count]
857
259k
      .mem.segment = X86_REG_INVALID;
858
259k
    MI->flat_insn->detail->x86
859
259k
      .operands[MI->flat_insn->detail->x86.op_count]
860
259k
      .mem.base = X86_register_map(MCOperand_getReg(BaseReg));
861
259k
    if (MCOperand_getReg(IndexReg) != X86_EIZ) {
862
258k
      MI->flat_insn->detail->x86
863
258k
        .operands[MI->flat_insn->detail->x86.op_count]
864
258k
        .mem.index =
865
258k
        X86_register_map(MCOperand_getReg(IndexReg));
866
258k
    }
867
259k
    MI->flat_insn->detail->x86
868
259k
      .operands[MI->flat_insn->detail->x86.op_count]
869
259k
      .mem.scale = 1;
870
259k
    MI->flat_insn->detail->x86
871
259k
      .operands[MI->flat_insn->detail->x86.op_count]
872
259k
      .mem.disp = 0;
873
874
259k
    get_op_access(MI->csh, MCInst_getOpcode(MI), access,
875
259k
            &MI->flat_insn->detail->x86.eflags);
876
259k
    MI->flat_insn->detail->x86
877
259k
      .operands[MI->flat_insn->detail->x86.op_count]
878
259k
      .access = access[MI->flat_insn->detail->x86.op_count];
879
259k
  }
880
881
  // If this has a segment register, print it.
882
259k
  segreg = MCOperand_getReg(SegReg);
883
259k
  if (segreg) {
884
5.86k
    _printOperand(MI, Op + X86_AddrSegmentReg, O);
885
5.86k
    SStream_concat0(O, ":");
886
887
5.86k
    if (MI->csh->detail_opt) {
888
5.86k
      MI->flat_insn->detail->x86
889
5.86k
        .operands[MI->flat_insn->detail->x86.op_count]
890
5.86k
        .mem.segment = X86_register_map(segreg);
891
5.86k
    }
892
5.86k
  }
893
894
259k
  if (MCOperand_isImm(DispSpec)) {
895
259k
    DispVal = MCOperand_getImm(DispSpec);
896
259k
    if (MI->csh->detail_opt)
897
259k
      MI->flat_insn->detail->x86
898
259k
        .operands[MI->flat_insn->detail->x86.op_count]
899
259k
        .mem.disp = DispVal;
900
259k
    if (DispVal) {
901
86.6k
      if (MCOperand_getReg(IndexReg) ||
902
82.3k
          MCOperand_getReg(BaseReg)) {
903
82.3k
        printInt64(O, DispVal);
904
82.3k
      } else {
905
        // only immediate as address of memory
906
4.32k
        if (DispVal < 0) {
907
2.23k
          SStream_concat(
908
2.23k
            O, "0x%" PRIx64,
909
2.23k
            arch_masks[MI->csh->mode] &
910
2.23k
              DispVal);
911
2.23k
        } else {
912
2.09k
          if (DispVal > HEX_THRESHOLD)
913
1.97k
            SStream_concat(O, "0x%" PRIx64,
914
1.97k
                     DispVal);
915
121
          else
916
121
            SStream_concat(O, "%" PRIu64,
917
121
                     DispVal);
918
2.09k
        }
919
4.32k
      }
920
86.6k
    }
921
259k
  }
922
923
259k
  if (MCOperand_getReg(IndexReg) || MCOperand_getReg(BaseReg)) {
924
255k
    SStream_concat0(O, "(");
925
926
255k
    if (MCOperand_getReg(BaseReg))
927
254k
      _printOperand(MI, Op + X86_AddrBaseReg, O);
928
929
255k
    if (MCOperand_getReg(IndexReg) &&
930
88.6k
        MCOperand_getReg(IndexReg) != X86_EIZ) {
931
87.7k
      SStream_concat0(O, ", ");
932
87.7k
      _printOperand(MI, Op + X86_AddrIndexReg, O);
933
87.7k
      ScaleVal = MCOperand_getImm(
934
87.7k
        MCInst_getOperand(MI, Op + X86_AddrScaleAmt));
935
87.7k
      if (MI->csh->detail_opt)
936
87.7k
        MI->flat_insn->detail->x86
937
87.7k
          .operands[MI->flat_insn->detail->x86
938
87.7k
                .op_count]
939
87.7k
          .mem.scale = (int)ScaleVal;
940
87.7k
      if (ScaleVal != 1) {
941
11.6k
        SStream_concat(O, ", %" PRIu64, ScaleVal);
942
11.6k
      }
943
87.7k
    }
944
945
255k
    SStream_concat0(O, ")");
946
255k
  } else {
947
4.55k
    if (!DispVal)
948
224
      SStream_concat0(O, "0");
949
4.55k
  }
950
951
259k
  if (MI->csh->detail_opt)
952
259k
    MI->flat_insn->detail->x86.op_count++;
953
259k
}
954
955
static void printanymem(MCInst *MI, unsigned OpNo, SStream *O)
956
6.04k
{
957
6.04k
  switch (MI->Opcode) {
958
246
  default:
959
246
    break;
960
702
  case X86_LEA16r:
961
702
    MI->x86opsize = 2;
962
702
    break;
963
492
  case X86_LEA32r:
964
885
  case X86_LEA64_32r:
965
885
    MI->x86opsize = 4;
966
885
    break;
967
422
  case X86_LEA64r:
968
422
    MI->x86opsize = 8;
969
422
    break;
970
0
#ifndef CAPSTONE_X86_REDUCE
971
427
  case X86_BNDCL32rm:
972
1.11k
  case X86_BNDCN32rm:
973
1.43k
  case X86_BNDCU32rm:
974
1.84k
  case X86_BNDSTXmr:
975
2.47k
  case X86_BNDLDXrm:
976
2.88k
  case X86_BNDCL64rm:
977
3.61k
  case X86_BNDCN64rm:
978
3.79k
  case X86_BNDCU64rm:
979
3.79k
    MI->x86opsize = 16;
980
3.79k
    break;
981
6.04k
#endif
982
6.04k
  }
983
984
6.04k
  printMemReference(MI, OpNo, O);
985
6.04k
}
986
987
#include "X86InstPrinter.h"
988
989
// Include the auto-generated portion of the assembly writer.
990
#ifdef CAPSTONE_X86_REDUCE
991
#include "X86GenAsmWriter_reduce.inc"
992
#else
993
#include "X86GenAsmWriter.inc"
994
#endif
995
996
#include "X86GenRegisterName.inc"
997
998
static void printRegName(SStream *OS, unsigned RegNo)
999
878k
{
1000
878k
  SStream_concat(OS, "%%%s", getRegisterName(RegNo));
1001
878k
}
1002
1003
void X86_ATT_printInst(MCInst *MI, SStream *OS, void *info)
1004
660k
{
1005
660k
  x86_reg reg, reg2;
1006
660k
  enum cs_ac_type access1, access2;
1007
660k
  int i;
1008
1009
  // perhaps this instruction does not need printer
1010
660k
  if (MI->assembly[0]) {
1011
0
    strncpy(OS->buffer, MI->assembly, sizeof(OS->buffer));
1012
0
    return;
1013
0
  }
1014
1015
  // Output CALLpcrel32 as "callq" in 64-bit mode.
1016
  // In Intel annotation it's always emitted as "call".
1017
  //
1018
  // TODO: Probably this hack should be redesigned via InstAlias in
1019
  // InstrInfo.td as soon as Requires clause is supported properly
1020
  // for InstAlias.
1021
660k
  if (MI->csh->mode == CS_MODE_64 &&
1022
231k
      MCInst_getOpcode(MI) == X86_CALLpcrel32) {
1023
0
    SStream_concat0(OS, "callq\t");
1024
0
    MCInst_setOpcodePub(MI, X86_INS_CALL);
1025
0
    printPCRelImm(MI, 0, OS);
1026
0
    return;
1027
0
  }
1028
1029
660k
  X86_lockrep(MI, OS);
1030
660k
  printInstruction(MI, OS);
1031
1032
660k
  if (MI->has_imm) {
1033
    // if op_count > 1, then this operand's size is taken from the destination op
1034
128k
    if (MI->flat_insn->detail->x86.op_count > 1) {
1035
72.6k
      if (MI->flat_insn->id != X86_INS_LCALL &&
1036
71.6k
          MI->flat_insn->id != X86_INS_LJMP &&
1037
70.4k
          MI->flat_insn->id != X86_INS_JMP) {
1038
70.4k
        for (i = 0;
1039
214k
             i < MI->flat_insn->detail->x86.op_count;
1040
144k
             i++) {
1041
144k
          if (MI->flat_insn->detail->x86
1042
144k
                .operands[i]
1043
144k
                .type == X86_OP_IMM)
1044
71.4k
            MI->flat_insn->detail->x86
1045
71.4k
              .operands[i]
1046
71.4k
              .size =
1047
71.4k
              MI->flat_insn->detail
1048
71.4k
                ->x86
1049
71.4k
                .operands
1050
71.4k
                  [MI->flat_insn
1051
71.4k
                     ->detail
1052
71.4k
                     ->x86
1053
71.4k
                     .op_count -
1054
71.4k
                   1]
1055
71.4k
                .size;
1056
144k
        }
1057
70.4k
      }
1058
72.6k
    } else
1059
56.0k
      MI->flat_insn->detail->x86.operands[0].size =
1060
56.0k
        MI->imm_size;
1061
128k
  }
1062
1063
660k
  if (MI->csh->detail_opt) {
1064
660k
    uint8_t access[CS_X86_MAXIMUM_OPERAND_SIZE] = { 0 };
1065
1066
    // some instructions need to supply immediate 1 in the first op
1067
660k
    switch (MCInst_getOpcode(MI)) {
1068
617k
    default:
1069
617k
      break;
1070
617k
    case X86_SHL8r1:
1071
944
    case X86_SHL16r1:
1072
1.53k
    case X86_SHL32r1:
1073
1.80k
    case X86_SHL64r1:
1074
2.49k
    case X86_SAL8r1:
1075
3.14k
    case X86_SAL16r1:
1076
4.08k
    case X86_SAL32r1:
1077
4.99k
    case X86_SAL64r1:
1078
5.73k
    case X86_SHR8r1:
1079
6.07k
    case X86_SHR16r1:
1080
6.49k
    case X86_SHR32r1:
1081
6.72k
    case X86_SHR64r1:
1082
7.00k
    case X86_SAR8r1:
1083
7.46k
    case X86_SAR16r1:
1084
7.97k
    case X86_SAR32r1:
1085
8.25k
    case X86_SAR64r1:
1086
11.4k
    case X86_RCL8r1:
1087
14.3k
    case X86_RCL16r1:
1088
17.0k
    case X86_RCL32r1:
1089
17.5k
    case X86_RCL64r1:
1090
18.3k
    case X86_RCR8r1:
1091
18.7k
    case X86_RCR16r1:
1092
19.5k
    case X86_RCR32r1:
1093
20.1k
    case X86_RCR64r1:
1094
20.3k
    case X86_ROL8r1:
1095
20.8k
    case X86_ROL16r1:
1096
21.2k
    case X86_ROL32r1:
1097
22.4k
    case X86_ROL64r1:
1098
22.7k
    case X86_ROR8r1:
1099
23.1k
    case X86_ROR16r1:
1100
24.0k
    case X86_ROR32r1:
1101
24.4k
    case X86_ROR64r1:
1102
24.9k
    case X86_SHL8m1:
1103
25.6k
    case X86_SHL16m1:
1104
26.4k
    case X86_SHL32m1:
1105
27.3k
    case X86_SHL64m1:
1106
27.8k
    case X86_SAL8m1:
1107
28.1k
    case X86_SAL16m1:
1108
28.4k
    case X86_SAL32m1:
1109
28.5k
    case X86_SAL64m1:
1110
29.0k
    case X86_SHR8m1:
1111
29.6k
    case X86_SHR16m1:
1112
30.2k
    case X86_SHR32m1:
1113
30.6k
    case X86_SHR64m1:
1114
31.5k
    case X86_SAR8m1:
1115
31.8k
    case X86_SAR16m1:
1116
32.2k
    case X86_SAR32m1:
1117
32.6k
    case X86_SAR64m1:
1118
33.2k
    case X86_RCL8m1:
1119
33.7k
    case X86_RCL16m1:
1120
34.3k
    case X86_RCL32m1:
1121
34.4k
    case X86_RCL64m1:
1122
34.7k
    case X86_RCR8m1:
1123
35.0k
    case X86_RCR16m1:
1124
35.6k
    case X86_RCR32m1:
1125
36.3k
    case X86_RCR64m1:
1126
36.9k
    case X86_ROL8m1:
1127
37.5k
    case X86_ROL16m1:
1128
38.7k
    case X86_ROL32m1:
1129
39.4k
    case X86_ROL64m1:
1130
40.3k
    case X86_ROR8m1:
1131
40.9k
    case X86_ROR16m1:
1132
41.9k
    case X86_ROR32m1:
1133
42.7k
    case X86_ROR64m1:
1134
      // shift all the ops right to leave 1st slot for this new register op
1135
42.7k
      memmove(&(MI->flat_insn->detail->x86.operands[1]),
1136
42.7k
        &(MI->flat_insn->detail->x86.operands[0]),
1137
42.7k
        sizeof(MI->flat_insn->detail->x86.operands[0]) *
1138
42.7k
          (ARR_SIZE(MI->flat_insn->detail->x86
1139
42.7k
                .operands) -
1140
42.7k
           1));
1141
42.7k
      MI->flat_insn->detail->x86.operands[0].type =
1142
42.7k
        X86_OP_IMM;
1143
42.7k
      MI->flat_insn->detail->x86.operands[0].imm = 1;
1144
42.7k
      MI->flat_insn->detail->x86.operands[0].size = 1;
1145
42.7k
      MI->flat_insn->detail->x86.op_count++;
1146
660k
    }
1147
1148
    // special instruction needs to supply register op
1149
    // first op can be embedded in the asm by llvm.
1150
    // so we have to add the missing register as the first operand
1151
1152
    //printf(">>> opcode = %u\n", MCInst_getOpcode(MI));
1153
1154
660k
    reg = X86_insn_reg_att_h(MI->csh, MCInst_getOpcode(MI),
1155
660k
           &access1);
1156
660k
    if (reg) {
1157
      // shift all the ops right to leave 1st slot for this new register op
1158
35.4k
      memmove(&(MI->flat_insn->detail->x86.operands[1]),
1159
35.4k
        &(MI->flat_insn->detail->x86.operands[0]),
1160
35.4k
        sizeof(MI->flat_insn->detail->x86.operands[0]) *
1161
35.4k
          (ARR_SIZE(MI->flat_insn->detail->x86
1162
35.4k
                .operands) -
1163
35.4k
           1));
1164
35.4k
      MI->flat_insn->detail->x86.operands[0].type =
1165
35.4k
        X86_OP_REG;
1166
35.4k
      MI->flat_insn->detail->x86.operands[0].reg = reg;
1167
35.4k
      MI->flat_insn->detail->x86.operands[0].size =
1168
35.4k
        MI->csh->regsize_map[reg];
1169
35.4k
      MI->flat_insn->detail->x86.operands[0].access = access1;
1170
1171
35.4k
      MI->flat_insn->detail->x86.op_count++;
1172
624k
    } else {
1173
624k
      if (X86_insn_reg_att2(MCInst_getOpcode(MI), &reg,
1174
624k
                &access1, &reg2, &access2)) {
1175
10.0k
        MI->flat_insn->detail->x86.operands[0].type =
1176
10.0k
          X86_OP_REG;
1177
10.0k
        MI->flat_insn->detail->x86.operands[0].reg =
1178
10.0k
          reg;
1179
10.0k
        MI->flat_insn->detail->x86.operands[0].size =
1180
10.0k
          MI->csh->regsize_map[reg];
1181
10.0k
        MI->flat_insn->detail->x86.operands[0].access =
1182
10.0k
          access1;
1183
10.0k
        MI->flat_insn->detail->x86.operands[1].type =
1184
10.0k
          X86_OP_REG;
1185
10.0k
        MI->flat_insn->detail->x86.operands[1].reg =
1186
10.0k
          reg2;
1187
10.0k
        MI->flat_insn->detail->x86.operands[1].size =
1188
10.0k
          MI->csh->regsize_map[reg2];
1189
10.0k
        MI->flat_insn->detail->x86.operands[1].access =
1190
10.0k
          access2;
1191
10.0k
        MI->flat_insn->detail->x86.op_count = 2;
1192
10.0k
      }
1193
624k
    }
1194
1195
660k
#ifndef CAPSTONE_DIET
1196
660k
    get_op_access(MI->csh, MCInst_getOpcode(MI), access,
1197
660k
            &MI->flat_insn->detail->x86.eflags);
1198
660k
    MI->flat_insn->detail->x86.operands[0].access = access[0];
1199
660k
    MI->flat_insn->detail->x86.operands[1].access = access[1];
1200
660k
#endif
1201
660k
  }
1202
660k
}
1203
1204
#endif