Coverage Report

Created: 2026-09-28 06:34

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/capstonenext/arch/ARM/ARMMapping.c
Line
Count
Source
1
/* Capstone Disassembly Engine */
2
/* By Nguyen Anh Quynh <aquynh@gmail.com>, 2013-2019 */
3
/*    Rot127 <unisono@quyllur.org>, 2022-2023 */
4
5
#ifdef CAPSTONE_HAS_ARM
6
7
#include <stdio.h>
8
#include <string.h>
9
10
#include "capstone/arm.h"
11
#include "capstone/capstone.h"
12
13
#include "../../Mapping.h"
14
#include "../../MCDisassembler.h"
15
#include "../../cs_priv.h"
16
#include "../../cs_simple_types.h"
17
18
#include "ARMAddressingModes.h"
19
#include "ARMDisassemblerExtension.h"
20
#include "ARMBaseInfo.h"
21
#include "ARMLinkage.h"
22
#include "ARMInstPrinter.h"
23
#include "ARMMapping.h"
24
25
static const name_map insn_alias_mnem_map[] = {
26
#include "ARMGenCSAliasMnemMap.inc"
27
  { ARM_INS_ALIAS_ASR, "asr" },    { ARM_INS_ALIAS_LSL, "lsl" },
28
  { ARM_INS_ALIAS_LSR, "lsr" },    { ARM_INS_ALIAS_ROR, "ror" },
29
  { ARM_INS_ALIAS_RRX, "rrx" },    { ARM_INS_ALIAS_UXTW, "uxtw" },
30
  { ARM_INS_ALIAS_LDM, "ldm" },    { ARM_INS_ALIAS_POP, "pop" },
31
  { ARM_INS_ALIAS_PUSH, "push" },    { ARM_INS_ALIAS_POPW, "pop.w" },
32
  { ARM_INS_ALIAS_PUSHW, "push.w" }, { ARM_INS_ALIAS_VPOP, "vpop" },
33
  { ARM_INS_ALIAS_VPUSH, "vpush" },  { ARM_INS_ALIAS_END, NULL }
34
};
35
36
static const char *get_custom_reg_alias(unsigned reg)
37
520k
{
38
520k
  switch (reg) {
39
3.19k
  case ARM_REG_R9:
40
3.19k
    return "sb";
41
1.75k
  case ARM_REG_R10:
42
1.75k
    return "sl";
43
1.35k
  case ARM_REG_R11:
44
1.35k
    return "fp";
45
2.58k
  case ARM_REG_R12:
46
2.58k
    return "ip";
47
39.7k
  case ARM_REG_R13:
48
39.7k
    return "sp";
49
9.25k
  case ARM_REG_R14:
50
9.25k
    return "lr";
51
5.35k
  case ARM_REG_R15:
52
5.35k
    return "pc";
53
520k
  }
54
456k
  return NULL;
55
520k
}
56
57
const char *ARM_reg_name(csh handle, unsigned int reg)
58
520k
{
59
520k
  int syntax_opt = ((cs_struct *)(uintptr_t)handle)->syntax;
60
520k
  const char *alias = get_custom_reg_alias(reg);
61
520k
  if ((syntax_opt & CS_OPT_SYNTAX_CS_REG_ALIAS) && alias)
62
0
    return alias;
63
64
520k
  if (reg == ARM_REG_INVALID || reg >= ARM_REG_ENDING) {
65
    // This might be a system register or banked register encoding.
66
    // Note: The system and banked register encodings can overlap.
67
    // So this might return a system register name although a
68
    // banked register name is expected.
69
0
    const ARMSysReg_MClassSysReg *sys_reg =
70
0
      ARMSysReg_lookupMClassSysRegByEncoding(reg);
71
0
    if (sys_reg)
72
0
      return sys_reg->Name;
73
0
    const ARMBankedReg_BankedReg *banked_reg =
74
0
      ARMBankedReg_lookupBankedRegByEncoding(reg);
75
0
    if (banked_reg)
76
0
      return banked_reg->Name;
77
0
  }
78
79
520k
  if (syntax_opt & CS_OPT_SYNTAX_NOREGNAME) {
80
0
    return ARM_LLVM_getRegisterName(reg, ARM_NoRegAltName);
81
0
  }
82
520k
  return ARM_LLVM_getRegisterName(reg, ARM_RegNamesRaw);
83
520k
}
84
85
const insn_map arm_insns[] = {
86
#include "ARMGenCSMappingInsn.inc"
87
};
88
89
void ARM_get_insn_id(cs_struct *h, cs_insn *insn, unsigned int id)
90
774k
{
91
  // Not used by ARM. Information is set after disassembly.
92
774k
}
93
94
0
#define BETWEEN(x, y, z) (x <= y && y <= z)
95
/// Patches the register names with Capstone specific alias.
96
/// Those are common alias for registers (e.g. r15 = pc)
97
/// which are not set in LLVM.
98
static void patch_cs_reg_alias(char *asm_str)
99
0
{
100
0
  char *src = asm_str;
101
0
  size_t src_len = strlen(src);
102
0
  char *dst = asm_str;
103
104
0
  while (*src && src_len >= 2) {
105
0
    if (!(src[0] == 'r' && BETWEEN('0', src[1], '9'))) {
106
      // No r0-r9 register.
107
0
      *dst++ = *src++;
108
0
      src_len--;
109
0
      continue;
110
0
    }
111
112
0
    if (src[1] == '9') {
113
0
      if (src_len >= 3 ? !BETWEEN('0', src[2], '9') : true) {
114
        // r9 = sb
115
0
        *dst++ = 's';
116
0
        *dst++ = 'b';
117
0
        src += 2;
118
0
      } else {
119
0
        *dst++ = *src++;
120
0
        *dst++ = *src++;
121
0
      }
122
0
      src_len -= 2;
123
0
      continue;
124
0
    }
125
126
0
    if (src_len < 3) {
127
0
      break;
128
0
    }
129
0
    if (src[1] == '1' && BETWEEN('0', src[2], '5')) {
130
0
      switch (src[2]) {
131
0
      case '0':
132
0
        *dst++ = 's';
133
0
        *dst++ = 'l';
134
0
        break;
135
0
      case '1':
136
0
        *dst++ = 'f';
137
0
        *dst++ = 'p';
138
0
        break;
139
0
      case '2':
140
0
        *dst++ = 'i';
141
0
        *dst++ = 'p';
142
0
        break;
143
0
      case '3':
144
0
        *dst++ = 's';
145
0
        *dst++ = 'p';
146
0
        break;
147
0
      case '4':
148
0
        *dst++ = 'l';
149
0
        *dst++ = 'r';
150
0
        break;
151
0
      case '5':
152
0
        *dst++ = 'p';
153
0
        *dst++ = 'c';
154
0
        break;
155
0
      }
156
0
      src += 3;
157
0
      src_len -= 3;
158
0
      continue;
159
0
    }
160
0
    src_len--;
161
0
    *dst++ = *src++;
162
0
  }
163
0
  while (*src) {
164
0
    *dst++ = *src++;
165
0
  }
166
0
  *dst = '\0';
167
0
}
168
#undef BETWEEN
169
170
/// Check if PC is updated from stack. Those POP instructions
171
/// are considered of group RETURN.
172
static void check_pop_return(MCInst *MI)
173
774k
{
174
774k
  if (!MI->flat_insn->detail)
175
0
    return;
176
774k
  if (MI->flat_insn->id != ARM_INS_POP &&
177
771k
      MI->flat_insn->alias_id != ARM_INS_ALIAS_POP) {
178
770k
    return;
179
770k
  }
180
21.6k
  for (size_t i = 0; i < ARM_get_detail(MI)->op_count; ++i) {
181
19.6k
    cs_arm_op *op = &ARM_get_detail(MI)->operands[i];
182
19.6k
    if (op->type == ARM_OP_REG && op->reg == ARM_REG_PC) {
183
1.64k
      add_group(MI, ARM_GRP_RET);
184
1.64k
      return;
185
1.64k
    }
186
19.6k
  }
187
3.67k
}
188
189
/// Check if PC is directly written.Those instructions
190
/// are considered of group BRANCH.
191
static void check_writes_to_pc(MCInst *MI)
192
774k
{
193
774k
  if (!MI->flat_insn->detail)
194
0
    return;
195
2.77M
  for (size_t i = 0; i < ARM_get_detail(MI)->op_count; ++i) {
196
2.01M
    cs_arm_op *op = &ARM_get_detail(MI)->operands[i];
197
2.01M
    if (op->type == ARM_OP_REG && op->reg == ARM_REG_PC &&
198
33.0k
        (op->access & CS_AC_WRITE)) {
199
14.2k
      add_group(MI, ARM_GRP_JUMP);
200
14.2k
      return;
201
14.2k
    }
202
2.01M
  }
203
774k
}
204
205
/// Adds group to the instruction which are not defined in LLVM.
206
static void ARM_add_cs_groups(MCInst *MI)
207
774k
{
208
774k
  if (!MI->flat_insn->detail)
209
0
    return;
210
774k
  check_pop_return(MI);
211
774k
  check_writes_to_pc(MI);
212
774k
  unsigned Opcode = MI->flat_insn->id;
213
774k
  switch (Opcode) {
214
741k
  default:
215
741k
    return;
216
741k
  case ARM_INS_SVC:
217
8.00k
    add_group(MI, ARM_GRP_INT);
218
8.00k
    break;
219
7.75k
  case ARM_INS_CDP:
220
15.8k
  case ARM_INS_CDP2:
221
17.4k
  case ARM_INS_MCR:
222
19.1k
  case ARM_INS_MCR2:
223
19.7k
  case ARM_INS_MCRR:
224
20.4k
  case ARM_INS_MCRR2:
225
22.1k
  case ARM_INS_MRC:
226
24.5k
  case ARM_INS_MRC2:
227
24.6k
  case ARM_INS_SMC:
228
24.6k
    add_group(MI, ARM_GRP_PRIVILEGE);
229
24.6k
    break;
230
774k
  }
231
774k
}
232
233
static void add_alias_details(MCInst *MI)
234
14.6k
{
235
14.6k
  if (!detail_is_set(MI))
236
0
    return;
237
14.6k
  switch (MI->flat_insn->alias_id) {
238
3.84k
  default:
239
3.84k
    return;
240
3.84k
  case ARM_INS_ALIAS_POP:
241
    // Doesn't get set because memop is not printed.
242
1.00k
    if (ARM_get_detail(MI)->op_count == 1) {
243
193
      CS_ASSERT_RET(
244
193
        MI->flat_insn->usesAliasDetails &&
245
193
        "Not valid assumption for non alias details.");
246
      // Only single register pop is post-indexed
247
      // Assumes only alias details are passed here.
248
193
      ARM_get_detail(MI)->post_index = true;
249
193
    }
250
    // fallthrough
251
1.12k
  case ARM_INS_ALIAS_PUSH:
252
1.15k
  case ARM_INS_ALIAS_VPUSH:
253
1.72k
  case ARM_INS_ALIAS_VPOP:
254
1.72k
    map_add_implicit_read(MI, ARM_REG_SP);
255
1.72k
    map_add_implicit_write(MI, ARM_REG_SP);
256
1.72k
    break;
257
8.85k
  case ARM_INS_ALIAS_LDM: {
258
8.85k
    bool Writeback = true;
259
8.85k
    unsigned BaseReg = MCInst_getOpVal(MI, 0);
260
48.3k
    for (unsigned i = 3; i < MCInst_getNumOperands(MI); ++i) {
261
39.4k
      if (MCInst_getOpVal(MI, i) == BaseReg)
262
4.54k
        Writeback = false;
263
39.4k
    }
264
8.85k
    if (Writeback && detail_is_set(MI)) {
265
4.30k
      ARM_get_detail(MI)->operands[0].access |= CS_AC_WRITE;
266
4.30k
      MI->flat_insn->detail->writeback = true;
267
4.30k
    }
268
8.85k
    break;
269
1.15k
  }
270
89
  case ARM_INS_ALIAS_ASR:
271
104
  case ARM_INS_ALIAS_LSL:
272
189
  case ARM_INS_ALIAS_LSR:
273
219
  case ARM_INS_ALIAS_ROR: {
274
219
    unsigned shift_value = 0;
275
219
    arm_shifter shift_type = ARM_SFT_INVALID;
276
219
    switch (MCInst_getOpcode(MI)) {
277
0
    default:
278
0
      CS_ASSERT_RET(0 &&
279
0
              "ASR, LSL, LSR, ROR alias not handled");
280
0
      return;
281
82
    case ARM_MOVsi: {
282
82
      MCOperand *MO2 = MCInst_getOperand(MI, 2);
283
82
      shift_type = (arm_shifter)ARM_AM_getSORegShOp(
284
82
        MCOperand_getImm(MO2));
285
286
82
      if (ARM_AM_getSORegShOp(MCOperand_getImm(MO2)) ==
287
82
          ARM_AM_rrx) {
288
0
        break;
289
0
      }
290
82
      shift_value = translateShiftImm(
291
82
        ARM_AM_getSORegOffset(MCOperand_getImm(MO2)));
292
82
      ARM_insert_detail_op_imm_at(MI, -1, shift_value,
293
82
                CS_AC_READ);
294
82
      break;
295
82
    }
296
137
    case ARM_MOVsr: {
297
137
      MCOperand *MO3 = MCInst_getOperand(MI, (3));
298
137
      shift_type =
299
137
        ARM_AM_getSORegShOp(MCOperand_getImm(MO3)) +
300
137
        ARM_SFT_REG;
301
137
      shift_value = MCInst_getOpVal(MI, 2);
302
137
      break;
303
82
    }
304
219
    }
305
219
    ARM_get_detail_op(MI, -2)->shift.type = shift_type;
306
219
    ARM_get_detail_op(MI, -2)->shift.value = shift_value;
307
219
    break;
308
219
  }
309
14.6k
  }
310
14.6k
}
311
312
/// Some instructions have their operands not defined but
313
/// hardcoded as string.
314
/// Here we add those oprands to detail.
315
static void ARM_add_not_defined_ops(MCInst *MI)
316
774k
{
317
774k
  if (!detail_is_set(MI))
318
0
    return;
319
320
774k
  if (MI->flat_insn->is_alias && MI->flat_insn->usesAliasDetails) {
321
14.6k
    add_alias_details(MI);
322
14.6k
    return;
323
14.6k
  }
324
325
759k
  unsigned Opcode = MCInst_getOpcode(MI);
326
759k
  switch (Opcode) {
327
748k
  default:
328
748k
    return;
329
748k
  case ARM_t2MOVsra_glue:
330
0
  case ARM_t2MOVsrl_glue:
331
0
    ARM_insert_detail_op_imm_at(MI, 2, 1, CS_AC_READ);
332
0
    break;
333
11
  case ARM_VCMPEZD:
334
62
  case ARM_VCMPZD:
335
657
  case ARM_tRSB:
336
786
  case ARM_VCMPEZH:
337
834
  case ARM_VCMPEZS:
338
860
  case ARM_VCMPZH:
339
873
  case ARM_VCMPZS:
340
873
    ARM_insert_detail_op_imm_at(MI, -1, 0, CS_AC_READ);
341
873
    break;
342
309
  case ARM_MVE_VSHLL_lws16bh:
343
335
  case ARM_MVE_VSHLL_lws16th:
344
492
  case ARM_MVE_VSHLL_lwu16bh:
345
614
  case ARM_MVE_VSHLL_lwu16th:
346
614
    ARM_insert_detail_op_imm_at(MI, 2, 16, CS_AC_READ);
347
614
    break;
348
157
  case ARM_MVE_VSHLL_lws8bh:
349
270
  case ARM_MVE_VSHLL_lws8th:
350
283
  case ARM_MVE_VSHLL_lwu8bh:
351
303
  case ARM_MVE_VSHLL_lwu8th:
352
303
    ARM_insert_detail_op_imm_at(MI, 2, 8, CS_AC_READ);
353
303
    break;
354
71
  case ARM_VCEQzv16i8:
355
128
  case ARM_VCEQzv2f32:
356
180
  case ARM_VCEQzv2i32:
357
232
  case ARM_VCEQzv4f16:
358
243
  case ARM_VCEQzv4f32:
359
342
  case ARM_VCEQzv4i16:
360
391
  case ARM_VCEQzv4i32:
361
454
  case ARM_VCEQzv8f16:
362
485
  case ARM_VCEQzv8i16:
363
698
  case ARM_VCEQzv8i8:
364
764
  case ARM_VCGEzv16i8:
365
921
  case ARM_VCGEzv2f32:
366
979
  case ARM_VCGEzv2i32:
367
1.00k
  case ARM_VCGEzv4f16:
368
1.05k
  case ARM_VCGEzv4f32:
369
1.16k
  case ARM_VCGEzv4i16:
370
1.24k
  case ARM_VCGEzv4i32:
371
1.28k
  case ARM_VCGEzv8f16:
372
1.35k
  case ARM_VCGEzv8i16:
373
1.57k
  case ARM_VCGEzv8i8:
374
1.60k
  case ARM_VCLEzv16i8:
375
1.71k
  case ARM_VCLEzv2f32:
376
1.73k
  case ARM_VCLEzv2i32:
377
1.98k
  case ARM_VCLEzv4f16:
378
2.07k
  case ARM_VCLEzv4f32:
379
2.09k
  case ARM_VCLEzv4i16:
380
2.10k
  case ARM_VCLEzv4i32:
381
2.11k
  case ARM_VCLEzv8f16:
382
2.16k
  case ARM_VCLEzv8i16:
383
2.41k
  case ARM_VCLEzv8i8:
384
2.45k
  case ARM_VCLTzv16i8:
385
2.50k
  case ARM_VCLTzv2f32:
386
2.54k
  case ARM_VCLTzv2i32:
387
2.58k
  case ARM_VCLTzv4f16:
388
2.63k
  case ARM_VCLTzv4f32:
389
3.37k
  case ARM_VCLTzv4i16:
390
3.38k
  case ARM_VCLTzv4i32:
391
3.42k
  case ARM_VCLTzv8f16:
392
3.44k
  case ARM_VCLTzv8i16:
393
3.48k
  case ARM_VCLTzv8i8:
394
3.59k
  case ARM_VCGTzv16i8:
395
3.68k
  case ARM_VCGTzv2f32:
396
3.99k
  case ARM_VCGTzv2i32:
397
4.05k
  case ARM_VCGTzv4f16:
398
4.12k
  case ARM_VCGTzv4f32:
399
4.16k
  case ARM_VCGTzv4i16:
400
4.22k
  case ARM_VCGTzv4i32:
401
4.27k
  case ARM_VCGTzv8f16:
402
4.58k
  case ARM_VCGTzv8i16:
403
4.66k
  case ARM_VCGTzv8i8:
404
4.66k
    ARM_insert_detail_op_imm_at(MI, 2, 0, CS_AC_READ);
405
4.66k
    break;
406
90
  case ARM_BX_RET:
407
90
    ARM_insert_detail_op_reg_at(MI, 0, ARM_REG_LR, CS_AC_READ);
408
90
    break;
409
76
  case ARM_MOVPCLR:
410
155
  case ARM_t2SUBS_PC_LR:
411
155
    ARM_insert_detail_op_reg_at(MI, 0, ARM_REG_PC, CS_AC_WRITE);
412
155
    ARM_insert_detail_op_reg_at(MI, 1, ARM_REG_LR, CS_AC_READ);
413
155
    break;
414
41
  case ARM_FMSTAT:
415
41
    ARM_insert_detail_op_reg_at(MI, 0, ARM_REG_APSR_NZCV,
416
41
              CS_AC_WRITE);
417
41
    ARM_insert_detail_op_reg_at(MI, 1, ARM_REG_FPSCR, CS_AC_READ);
418
41
    break;
419
12
  case ARM_VLDR_FPCXTNS_off:
420
84
  case ARM_VLDR_FPCXTNS_post:
421
116
  case ARM_VLDR_FPCXTNS_pre:
422
116
    ARM_insert_detail_op_reg_at(MI, 0, ARM_REG_FPCXTNS,
423
116
              CS_AC_WRITE);
424
116
    break;
425
12
  case ARM_VSTR_FPCXTNS_off:
426
21
  case ARM_VSTR_FPCXTNS_post:
427
87
  case ARM_VSTR_FPCXTNS_pre:
428
87
    ARM_insert_detail_op_reg_at(MI, 0, ARM_REG_FPCXTNS, CS_AC_READ);
429
87
    break;
430
137
  case ARM_VLDR_FPCXTS_off:
431
156
  case ARM_VLDR_FPCXTS_post:
432
158
  case ARM_VLDR_FPCXTS_pre:
433
158
    ARM_insert_detail_op_reg_at(MI, 0, ARM_REG_FPCXTS, CS_AC_WRITE);
434
158
    break;
435
80
  case ARM_VSTR_FPCXTS_off:
436
141
  case ARM_VSTR_FPCXTS_post:
437
209
  case ARM_VSTR_FPCXTS_pre:
438
209
    ARM_insert_detail_op_reg_at(MI, 0, ARM_REG_FPCXTS, CS_AC_READ);
439
209
    break;
440
47
  case ARM_VLDR_FPSCR_NZCVQC_off:
441
238
  case ARM_VLDR_FPSCR_NZCVQC_post:
442
403
  case ARM_VLDR_FPSCR_NZCVQC_pre:
443
403
    ARM_insert_detail_op_reg_at(MI, 0, ARM_REG_FPSCR_NZCVQC,
444
403
              CS_AC_WRITE);
445
403
    break;
446
11
  case ARM_VSTR_FPSCR_NZCVQC_off:
447
175
  case ARM_VSTR_FPSCR_NZCVQC_post:
448
423
  case ARM_VSTR_FPSCR_NZCVQC_pre:
449
423
    ARM_insert_detail_op_reg_at(MI, 0, ARM_REG_FPSCR_NZCVQC,
450
423
              CS_AC_READ);
451
423
    break;
452
10
  case ARM_VMSR:
453
25
  case ARM_VLDR_FPSCR_off:
454
337
  case ARM_VLDR_FPSCR_post:
455
682
  case ARM_VLDR_FPSCR_pre:
456
682
    ARM_insert_detail_op_reg_at(MI, 0, ARM_REG_FPSCR, CS_AC_WRITE);
457
682
    break;
458
21
  case ARM_VSTR_FPSCR_off:
459
82
  case ARM_VSTR_FPSCR_post:
460
391
  case ARM_VSTR_FPSCR_pre:
461
391
    ARM_insert_detail_op_reg_at(MI, 0, ARM_REG_FPSCR, CS_AC_READ);
462
391
    break;
463
0
  case ARM_VLDR_P0_off:
464
0
  case ARM_VLDR_P0_post:
465
0
  case ARM_VLDR_P0_pre:
466
0
    ARM_insert_detail_op_reg_at(MI, 0, ARM_REG_P0, CS_AC_WRITE);
467
0
    break;
468
0
  case ARM_VSTR_P0_off:
469
0
  case ARM_VSTR_P0_post:
470
0
  case ARM_VSTR_P0_pre:
471
0
    ARM_insert_detail_op_reg_at(MI, 0, ARM_REG_P0, CS_AC_READ);
472
0
    break;
473
0
  case ARM_VLDR_VPR_off:
474
0
  case ARM_VLDR_VPR_post:
475
0
  case ARM_VLDR_VPR_pre:
476
0
    ARM_insert_detail_op_reg_at(MI, 0, ARM_REG_VPR, CS_AC_WRITE);
477
0
    break;
478
0
  case ARM_VSTR_VPR_off:
479
0
  case ARM_VSTR_VPR_post:
480
0
  case ARM_VSTR_VPR_pre:
481
0
    ARM_insert_detail_op_reg_at(MI, 0, ARM_REG_VPR, CS_AC_READ);
482
0
    break;
483
4
  case ARM_VMSR_FPEXC:
484
4
    ARM_insert_detail_op_reg_at(MI, 0, ARM_REG_FPEXC, CS_AC_WRITE);
485
4
    break;
486
57
  case ARM_VMSR_FPINST:
487
57
    ARM_insert_detail_op_reg_at(MI, 0, ARM_REG_FPINST, CS_AC_WRITE);
488
57
    break;
489
8
  case ARM_VMSR_FPINST2:
490
8
    ARM_insert_detail_op_reg_at(MI, 0, ARM_REG_FPINST2,
491
8
              CS_AC_WRITE);
492
8
    break;
493
13
  case ARM_VMSR_FPSID:
494
13
    ARM_insert_detail_op_reg_at(MI, 0, ARM_REG_FPSID, CS_AC_WRITE);
495
13
    break;
496
15
  case ARM_t2SRSDB:
497
25
  case ARM_t2SRSIA:
498
25
    ARM_insert_detail_op_reg_at(MI, 0, ARM_REG_SP, CS_AC_WRITE);
499
25
    break;
500
18
  case ARM_t2SRSDB_UPD:
501
34
  case ARM_t2SRSIA_UPD:
502
34
    ARM_insert_detail_op_reg_at(MI, 0, ARM_REG_SP,
503
34
              CS_AC_READ | CS_AC_WRITE);
504
34
    break;
505
248
  case ARM_MRSsys:
506
272
  case ARM_t2MRSsys_AR:
507
272
    ARM_insert_detail_op_reg_at(MI, 1, ARM_REG_SPSR, CS_AC_READ);
508
272
    break;
509
144
  case ARM_MRS:
510
145
  case ARM_t2MRS_AR:
511
145
    ARM_insert_detail_op_reg_at(MI, 1, ARM_REG_APSR, CS_AC_READ);
512
145
    break;
513
229
  case ARM_VMRS:
514
229
    ARM_insert_detail_op_reg_at(MI, 1, ARM_REG_FPSCR, CS_AC_READ);
515
229
    break;
516
8
  case ARM_VMRS_FPCXTNS:
517
8
    ARM_insert_detail_op_reg_at(MI, 1, ARM_REG_FPCXTNS, CS_AC_READ);
518
8
    break;
519
166
  case ARM_VMRS_FPCXTS:
520
166
    ARM_insert_detail_op_reg_at(MI, 1, ARM_REG_FPCXTS, CS_AC_READ);
521
166
    break;
522
27
  case ARM_VMRS_FPEXC:
523
27
    ARM_insert_detail_op_reg_at(MI, 1, ARM_REG_FPEXC, CS_AC_READ);
524
27
    break;
525
154
  case ARM_VMRS_FPINST:
526
154
    ARM_insert_detail_op_reg_at(MI, 1, ARM_REG_FPINST, CS_AC_READ);
527
154
    break;
528
74
  case ARM_VMRS_FPINST2:
529
74
    ARM_insert_detail_op_reg_at(MI, 1, ARM_REG_FPINST2, CS_AC_READ);
530
74
    break;
531
460
  case ARM_VMRS_FPSCR_NZCVQC:
532
460
    ARM_insert_detail_op_reg_at(MI, 1, ARM_REG_FPSCR_NZCVQC,
533
460
              CS_AC_READ);
534
460
    break;
535
56
  case ARM_VMRS_FPSID:
536
56
    ARM_insert_detail_op_reg_at(MI, 1, ARM_REG_FPSID, CS_AC_READ);
537
56
    break;
538
49
  case ARM_VMRS_MVFR0:
539
49
    ARM_insert_detail_op_reg_at(MI, 1, ARM_REG_MVFR0, CS_AC_READ);
540
49
    break;
541
14
  case ARM_VMRS_MVFR1:
542
14
    ARM_insert_detail_op_reg_at(MI, 1, ARM_REG_MVFR1, CS_AC_READ);
543
14
    break;
544
7
  case ARM_VMRS_MVFR2:
545
7
    ARM_insert_detail_op_reg_at(MI, 1, ARM_REG_MVFR2, CS_AC_READ);
546
7
    break;
547
0
  case ARM_VMRS_P0:
548
0
    ARM_insert_detail_op_reg_at(MI, 1, ARM_REG_P0, CS_AC_READ);
549
0
    break;
550
0
  case ARM_VMRS_VPR:
551
0
    ARM_insert_detail_op_reg_at(MI, 1, ARM_REG_VPR, CS_AC_READ);
552
0
    break;
553
0
  case ARM_MOVsr:
554
    // Add shift information
555
0
    ARM_get_detail(MI)->operands[1].shift.type =
556
0
      (arm_shifter)ARM_AM_getSORegShOp(
557
0
        MCInst_getOpVal(MI, 3)) +
558
0
      ARM_SFT_REG;
559
0
    ARM_get_detail(MI)->operands[1].shift.value =
560
0
      MCInst_getOpVal(MI, 2);
561
0
    break;
562
0
  case ARM_MOVsi:
563
0
    if (ARM_AM_getSORegShOp(MCInst_getOpVal(MI, 2)) == ARM_AM_rrx) {
564
0
      ARM_get_detail_op(MI, -1)->shift.type = ARM_SFT_RRX;
565
0
      ARM_get_detail_op(MI, -1)->shift.value =
566
0
        translateShiftImm(ARM_AM_getSORegOffset(
567
0
          MCInst_getOpVal(MI, 2)));
568
0
      return;
569
0
    }
570
571
0
    ARM_get_detail_op(MI, -1)->shift.type =
572
0
      (arm_shifter)ARM_AM_getSORegShOp(
573
0
        MCInst_getOpVal(MI, 2));
574
0
    ARM_get_detail_op(MI, -1)->shift.value = translateShiftImm(
575
0
      ARM_AM_getSORegOffset(MCInst_getOpVal(MI, 2)));
576
0
    break;
577
0
  case ARM_tLDMIA: {
578
0
    bool Writeback = true;
579
0
    unsigned BaseReg = MCInst_getOpVal(MI, 0);
580
0
    for (unsigned i = 3; i < MCInst_getNumOperands(MI); ++i) {
581
0
      if (MCInst_getOpVal(MI, i) == BaseReg)
582
0
        Writeback = false;
583
0
    }
584
0
    if (Writeback && detail_is_set(MI)) {
585
0
      ARM_get_detail(MI)->operands[0].access |= CS_AC_WRITE;
586
0
      MI->flat_insn->detail->writeback = true;
587
0
    }
588
0
    break;
589
0
  }
590
23
  case ARM_RFEDA_UPD:
591
36
  case ARM_RFEDB_UPD:
592
267
  case ARM_RFEIA_UPD:
593
312
  case ARM_RFEIB_UPD:
594
312
    get_detail(MI)->writeback = true;
595
    // fallthrough
596
606
  case ARM_RFEDA:
597
613
  case ARM_RFEDB:
598
627
  case ARM_RFEIA:
599
638
  case ARM_RFEIB: {
600
638
    arm_reg base_reg = ARM_get_detail_op(MI, -1)->reg;
601
638
    ARM_get_detail_op(MI, -1)->type = ARM_OP_MEM;
602
638
    ARM_get_detail_op(MI, -1)->mem.base = base_reg;
603
638
  }
604
759k
  }
605
759k
}
606
607
/// Unfortunately there is currently no way to easily extract
608
/// information about the vector data usage (sign and width used).
609
/// See: https://github.com/capstone-engine/capstone/issues/2152
610
void ARM_add_vector_data(MCInst *MI, arm_vectordata_type data_type)
611
42.6k
{
612
42.6k
  if (!detail_is_set(MI))
613
0
    return;
614
42.6k
  ARM_get_detail(MI)->vector_data = data_type;
615
42.6k
}
616
617
/// Unfortunately there is currently no way to easily extract
618
/// information about the vector size.
619
/// See: https://github.com/capstone-engine/capstone/issues/2152
620
void ARM_add_vector_size(MCInst *MI, unsigned size)
621
38.0k
{
622
38.0k
  if (!detail_is_set(MI))
623
0
    return;
624
38.0k
  ARM_get_detail(MI)->vector_size = size;
625
38.0k
}
626
627
/// For ARM the attributation of post-indexed instructions is poor.
628
/// Disponents or index register are sometimes not defined as such.
629
/// Here we try to detect such cases. We check if the base register
630
/// is a writeback register, but no other memory operand
631
/// was disassembled.
632
/// Because there must be a second memory operand (disponent/index)
633
/// We assume that the following operand is actually
634
/// the disponent/index reg.
635
static void ARM_post_index_detection(MCInst *MI)
636
774k
{
637
774k
  if (!detail_is_set(MI) || ARM_get_detail(MI)->post_index)
638
22.0k
    return;
639
640
752k
  int i = 0;
641
2.50M
  for (; i < ARM_get_detail(MI)->op_count; ++i) {
642
1.97M
    if (ARM_get_detail(MI)->operands[i].type & ARM_OP_MEM)
643
222k
      break;
644
1.97M
  }
645
752k
  if (i >= ARM_get_detail(MI)->op_count) {
646
    // Last operand
647
529k
    return;
648
529k
  }
649
650
222k
  cs_arm_op *op = &ARM_get_detail(MI)->operands[i];
651
222k
  cs_arm_op op_next = ARM_get_detail(MI)->operands[i + 1];
652
222k
  if (op_next.type == ARM_OP_INVALID || op->mem.disp != 0 ||
653
8.48k
      op->mem.index != ARM_REG_INVALID)
654
214k
    return;
655
656
8.48k
  if (op_next.type & CS_OP_IMM)
657
2.59k
    op->mem.disp = op_next.imm;
658
5.89k
  else if (op_next.type & CS_OP_REG)
659
5.89k
    op->mem.index = op_next.reg;
660
661
8.48k
  op->subtracted = op_next.subtracted;
662
8.48k
  ARM_get_detail(MI)->post_index = true;
663
8.48k
  MI->flat_insn->detail->writeback = true;
664
8.48k
  ARM_dec_op_count(MI);
665
8.48k
}
666
667
void ARM_check_mem_access_validity(MCInst *MI)
668
774k
{
669
774k
#ifndef CAPSTONE_DIET
670
774k
  if (!detail_is_set(MI))
671
0
    return;
672
774k
  const arm_suppl_info *suppl = map_get_suppl_info(MI, arm_insns);
673
774k
  CS_ASSERT_RET(suppl);
674
774k
  if (suppl->mem_acc == CS_AC_INVALID) {
675
497k
    return;
676
497k
  }
677
277k
  cs_detail *detail = get_detail(MI);
678
1.04M
  for (int i = 0; i < detail->arm.op_count; ++i) {
679
790k
    if (detail->arm.operands[i].type == ARM_OP_MEM &&
680
240k
        detail->arm.operands[i].access != suppl->mem_acc) {
681
22.8k
      detail->arm.operands[i].access = suppl->mem_acc;
682
22.8k
      return;
683
22.8k
    }
684
790k
  }
685
277k
#endif // CAPSTONE_DIET
686
277k
}
687
688
/// Decodes the asm string for a given instruction
689
/// and fills the detail information about the instruction and its operands.
690
void ARM_printer(MCInst *MI, SStream *O, void * /* MCRegisterInfo* */ info)
691
774k
{
692
774k
  MCRegisterInfo *MRI = (MCRegisterInfo *)info;
693
774k
  MI->MRI = MRI;
694
774k
  MI->fillDetailOps = detail_is_set(MI);
695
774k
  MI->flat_insn->usesAliasDetails = map_use_alias_details(MI);
696
774k
  ARM_LLVM_printInstruction(MI, O, info);
697
774k
  map_set_alias_id(MI, O, insn_alias_mnem_map,
698
774k
       ARR_SIZE(insn_alias_mnem_map) - 1);
699
774k
  ARM_add_not_defined_ops(MI);
700
774k
  ARM_post_index_detection(MI);
701
774k
  ARM_check_mem_access_validity(MI);
702
774k
  ARM_add_cs_groups(MI);
703
774k
  int syntax_opt = MI->csh->syntax;
704
774k
  if (syntax_opt & CS_OPT_SYNTAX_CS_REG_ALIAS)
705
0
    patch_cs_reg_alias(O->buffer);
706
774k
}
707
708
#ifndef CAPSTONE_DIET
709
static const char *const insn_name_maps[] = {
710
#include "ARMGenCSMappingInsnName.inc"
711
  // Hard coded alias in LLVM, not defined as alias or instruction.
712
  // We give them a unique ID for convenience.
713
  "vpop",
714
  "vpush",
715
};
716
#endif
717
718
#ifndef CAPSTONE_DIET
719
static const arm_reg arm_flag_regs[] = {
720
  ARM_REG_APSR,       ARM_REG_APSR_NZCV, ARM_REG_CPSR,
721
  ARM_REG_FPCXTNS,      ARM_REG_FPCXTS,  ARM_REG_FPEXC,
722
  ARM_REG_FPINST,       ARM_REG_FPSCR,   ARM_REG_FPSCR_NZCV,
723
  ARM_REG_FPSCR_NZCVQC,
724
};
725
#endif // CAPSTONE_DIET
726
727
const char *ARM_insn_name(csh handle, unsigned int id)
728
774k
{
729
774k
#ifndef CAPSTONE_DIET
730
774k
  if (id < ARM_INS_ALIAS_END && id > ARM_INS_ALIAS_BEGIN) {
731
0
    if (id - ARM_INS_ALIAS_BEGIN >= ARR_SIZE(insn_alias_mnem_map))
732
0
      return NULL;
733
734
0
    return insn_alias_mnem_map[id - ARM_INS_ALIAS_BEGIN - 1].name;
735
0
  }
736
774k
  if (id >= ARM_INS_ENDING)
737
0
    return NULL;
738
739
774k
  if (id < ARR_SIZE(insn_name_maps))
740
774k
    return insn_name_maps[id];
741
742
  // not found
743
0
  return NULL;
744
#else
745
  return NULL;
746
#endif
747
774k
}
748
749
#ifndef CAPSTONE_DIET
750
static const name_map group_name_maps[] = {
751
  // generic groups
752
  { ARM_GRP_INVALID, NULL },
753
  { ARM_GRP_JUMP, "jump" },
754
  { ARM_GRP_CALL, "call" },
755
  { ARM_GRP_RET, "return" },
756
  { ARM_GRP_INT, "int" },
757
  { ARM_GRP_PRIVILEGE, "privilege" },
758
  { ARM_GRP_BRANCH_RELATIVE, "branch_relative" },
759
760
// architecture-specific groups
761
#include "ARMGenCSFeatureName.inc"
762
};
763
#endif
764
765
const char *ARM_group_name(csh handle, unsigned int id)
766
1.01M
{
767
1.01M
#ifndef CAPSTONE_DIET
768
1.01M
  return id2name(group_name_maps, ARR_SIZE(group_name_maps), id);
769
#else
770
  return NULL;
771
#endif
772
1.01M
}
773
774
// list all relative branch instructions
775
// ie: insns[i].branch && !insns[i].indirect_branch
776
static const unsigned int insn_rel[] = {
777
  ARM_BL,   ARM_BLX_pred, ARM_Bcc,   ARM_t2B,  ARM_t2Bcc,
778
  ARM_tB,   ARM_tBcc, ARM_tCBNZ, ARM_tCBZ, ARM_BL_pred,
779
  ARM_BLXi, ARM_tBL,  ARM_tBLXi, 0
780
};
781
782
static const unsigned int insn_blx_rel_to_arm[] = { ARM_tBLXi, 0 };
783
784
// check if this insn is relative branch
785
bool ARM_rel_branch(cs_struct *h, unsigned int id)
786
228k
{
787
228k
  int i;
788
789
3.20M
  for (i = 0; insn_rel[i]; i++) {
790
2.97M
    if (id == insn_rel[i]) {
791
0
      return true;
792
0
    }
793
2.97M
  }
794
795
  // not found
796
228k
  return false;
797
228k
}
798
799
bool ARM_blx_to_arm_mode(cs_struct *h, unsigned int id)
800
0
{
801
0
  int i;
802
803
0
  for (i = 0; insn_blx_rel_to_arm[i]; i++)
804
0
    if (id == insn_blx_rel_to_arm[i])
805
0
      return true;
806
807
  // not found
808
0
  return false;
809
0
}
810
811
void ARM_check_updates_flags(MCInst *MI)
812
778k
{
813
778k
#ifndef CAPSTONE_DIET
814
778k
  if (!detail_is_set(MI))
815
0
    return;
816
778k
  cs_detail *detail = get_detail(MI);
817
807k
  for (int i = 0; i < detail->regs_write_count; ++i) {
818
115k
    if (detail->regs_write[i] == 0)
819
0
      return;
820
584k
    for (int j = 0; j < ARR_SIZE(arm_flag_regs); ++j) {
821
556k
      if (detail->regs_write[i] == arm_flag_regs[j]) {
822
87.4k
        detail->arm.update_flags = true;
823
87.4k
        return;
824
87.4k
      }
825
556k
    }
826
115k
  }
827
778k
#endif // CAPSTONE_DIET
828
778k
}
829
830
void ARM_set_instr_map_data(MCInst *MI)
831
778k
{
832
778k
  map_cs_id(MI, arm_insns, ARR_SIZE(arm_insns));
833
778k
  map_implicit_reads(MI, arm_insns);
834
778k
  map_implicit_writes(MI, arm_insns);
835
778k
  ARM_check_updates_flags(MI);
836
778k
  map_groups(MI, arm_insns);
837
778k
}
838
839
bool ARM_getInstruction(csh handle, const uint8_t *code, size_t code_len,
840
      MCInst *instr, uint16_t *size, uint64_t address,
841
      void *info)
842
778k
{
843
778k
  ARM_init_cs_detail(instr);
844
778k
  DecodeStatus Result = ARM_LLVM_getInstruction(
845
778k
    handle, code, code_len, instr, size, address, info);
846
778k
  ARM_set_instr_map_data(instr);
847
778k
  if (Result == MCDisassembler_SoftFail) {
848
64.7k
    MCInst_setSoftFail(instr);
849
64.7k
  }
850
778k
  return Result != MCDisassembler_Fail;
851
778k
}
852
853
#define GET_REGINFO_MC_DESC
854
#include "ARMGenRegisterInfo.inc"
855
856
void ARM_init_mri(MCRegisterInfo *MRI)
857
7.59k
{
858
7.59k
  MCRegisterInfo_InitMCRegisterInfo(MRI, ARMRegDesc, ARM_REG_ENDING, 0, 0,
859
7.59k
            ARMMCRegisterClasses,
860
7.59k
            ARR_SIZE(ARMMCRegisterClasses), 0, 0,
861
7.59k
            ARMRegDiffLists, 0, ARMSubRegIdxLists,
862
7.59k
            ARR_SIZE(ARMSubRegIdxLists), 0);
863
7.59k
}
864
865
#ifndef CAPSTONE_DIET
866
static const map_insn_ops insn_operands[] = {
867
#include "ARMGenCSMappingInsnOp.inc"
868
};
869
870
void ARM_reg_access(const cs_insn *insn, cs_regs regs_read,
871
        uint8_t *regs_read_count, cs_regs regs_write,
872
        uint8_t *regs_write_count)
873
0
{
874
0
  uint8_t i;
875
0
  uint8_t read_count, write_count;
876
0
  cs_arm *arm = &(insn->detail->arm);
877
878
0
  read_count = insn->detail->regs_read_count;
879
0
  write_count = insn->detail->regs_write_count;
880
881
  // implicit registers
882
0
  memcpy(regs_read, insn->detail->regs_read,
883
0
         read_count * sizeof(insn->detail->regs_read[0]));
884
0
  memcpy(regs_write, insn->detail->regs_write,
885
0
         write_count * sizeof(insn->detail->regs_write[0]));
886
887
  // explicit registers
888
0
  for (i = 0; i < arm->op_count; i++) {
889
0
    cs_arm_op *op = &(arm->operands[i]);
890
0
    switch ((int)op->type) {
891
0
    case ARM_OP_REG:
892
0
      if ((op->access & CS_AC_READ) &&
893
0
          !arr_exist(regs_read, read_count, op->reg)) {
894
0
        regs_read[read_count] = (uint16_t)op->reg;
895
0
        read_count++;
896
0
      }
897
0
      if ((op->access & CS_AC_WRITE) &&
898
0
          !arr_exist(regs_write, write_count, op->reg)) {
899
0
        regs_write[write_count] = (uint16_t)op->reg;
900
0
        write_count++;
901
0
      }
902
0
      break;
903
0
    case ARM_OP_MEM:
904
      // registers appeared in memory references always being read
905
0
      if ((op->mem.base != ARM_REG_INVALID) &&
906
0
          !arr_exist(regs_read, read_count, op->mem.base)) {
907
0
        regs_read[read_count] = (uint16_t)op->mem.base;
908
0
        read_count++;
909
0
      }
910
0
      if ((op->mem.index != ARM_REG_INVALID) &&
911
0
          !arr_exist(regs_read, read_count, op->mem.index)) {
912
0
        regs_read[read_count] = (uint16_t)op->mem.index;
913
0
        read_count++;
914
0
      }
915
0
      if ((insn->detail->writeback) &&
916
0
          (op->mem.base != ARM_REG_INVALID) &&
917
0
          !arr_exist(regs_write, write_count, op->mem.base)) {
918
0
        regs_write[write_count] =
919
0
          (uint16_t)op->mem.base;
920
0
        write_count++;
921
0
      }
922
0
    default:
923
0
      break;
924
0
    }
925
0
  }
926
927
0
  *regs_read_count = read_count;
928
0
  *regs_write_count = write_count;
929
0
}
930
#endif
931
932
void ARM_setup_op(cs_arm_op *op)
933
28.0M
{
934
28.0M
  memset(op, 0, sizeof(cs_arm_op));
935
28.0M
  op->type = ARM_OP_INVALID;
936
28.0M
  op->vector_index = -1;
937
28.0M
  op->neon_lane = -1;
938
28.0M
}
939
940
void ARM_init_cs_detail(MCInst *MI)
941
778k
{
942
778k
  if (detail_is_set(MI)) {
943
778k
    unsigned int i;
944
945
778k
    memset(get_detail(MI), 0,
946
778k
           offsetof(cs_detail, arm) + sizeof(cs_arm));
947
948
28.8M
    for (i = 0; i < ARR_SIZE(ARM_get_detail(MI)->operands); i++)
949
28.0M
      ARM_setup_op(&ARM_get_detail(MI)->operands[i]);
950
778k
    ARM_get_detail(MI)->cc = ARMCC_UNDEF;
951
778k
    ARM_get_detail(MI)->vcc = ARMVCC_None;
952
778k
  }
953
778k
}
954
955
static uint64_t t_add_pc(MCInst *MI, uint64_t v)
956
228k
{
957
228k
  int32_t imm = (int32_t)v;
958
228k
  if (ARM_rel_branch(MI->csh, MI->Opcode)) {
959
0
    uint32_t address;
960
961
    // only do this for relative branch
962
0
    if (MI->csh->mode & CS_MODE_THUMB) {
963
0
      address = (uint32_t)MI->address + 4;
964
0
      if (ARM_blx_to_arm_mode(MI->csh, MI->Opcode)) {
965
        // here need to align down to the nearest 4-byte address
966
0
#define _ALIGN_DOWN(v, align_width) ((v / align_width) * align_width)
967
0
        address = _ALIGN_DOWN(address, 4);
968
0
#undef _ALIGN_DOWN
969
0
      }
970
0
    } else {
971
0
      address = (uint32_t)MI->address + 8;
972
0
    }
973
974
0
    imm += address;
975
0
    return imm;
976
0
  }
977
228k
  return v;
978
228k
}
979
980
/// Transform a Qs register to its corresponding Ds + Offset register.
981
static uint64_t t_qpr_to_dpr_list(MCInst *MI, unsigned OpNum, uint8_t offset)
982
22.3k
{
983
22.3k
  uint64_t v = MCOperand_getReg(MCInst_getOperand(MI, OpNum));
984
22.3k
  if (v >= ARM_REG_Q0 && v <= ARM_REG_Q15)
985
0
    return ARM_REG_D0 + offset + (v - ARM_REG_Q0) * 2;
986
22.3k
  return v + offset;
987
22.3k
}
988
989
static uint64_t t_mod_imm_rotate(uint64_t v)
990
11.4k
{
991
11.4k
  unsigned Bits = v & 0xFF;
992
11.4k
  unsigned Rot = (v & 0xF00) >> 7;
993
11.4k
  int32_t Rotated = ARM_AM_rotr32(Bits, Rot);
994
11.4k
  return Rotated;
995
11.4k
}
996
997
inline static uint64_t t_mod_imm_bits(uint64_t v)
998
1.38k
{
999
1.38k
  unsigned Bits = v & 0xFF;
1000
1.38k
  return Bits;
1001
1.38k
}
1002
1003
inline static uint64_t t_mod_imm_rot(uint64_t v)
1004
1.38k
{
1005
1.38k
  unsigned Rot = (v & 0xF00) >> 7;
1006
1.38k
  return Rot;
1007
1.38k
}
1008
1009
static uint64_t t_vmov_mod_imm(uint64_t v)
1010
3.11k
{
1011
3.11k
  unsigned EltBits;
1012
3.11k
  uint64_t Val = ARM_AM_decodeVMOVModImm(v, &EltBits);
1013
3.11k
  return Val;
1014
3.11k
}
1015
1016
/// Initializes or finishes a memory operand of Capstone (depending on \p
1017
/// status). A memory operand in Capstone can be assembled by two LLVM operands.
1018
/// E.g. the base register and the immediate disponent.
1019
static void ARM_set_mem_access(MCInst *MI, bool status)
1020
424k
{
1021
424k
  if (!detail_is_set(MI))
1022
0
    return;
1023
424k
  set_doing_mem(MI, status);
1024
424k
  if (status) {
1025
212k
    ARM_get_detail_op(MI, 0)->type = ARM_OP_MEM;
1026
212k
    ARM_get_detail_op(MI, 0)->mem.base = ARM_REG_INVALID;
1027
212k
    ARM_get_detail_op(MI, 0)->mem.index = ARM_REG_INVALID;
1028
212k
    ARM_get_detail_op(MI, 0)->mem.scale = 1;
1029
212k
    ARM_get_detail_op(MI, 0)->mem.disp = 0;
1030
1031
212k
#ifndef CAPSTONE_DIET
1032
212k
    uint8_t access =
1033
212k
      map_get_op_access(MI, ARM_get_detail(MI)->op_count);
1034
212k
    ARM_get_detail_op(MI, 0)->access = access;
1035
212k
#endif
1036
212k
  } else {
1037
    // done, select the next operand slot
1038
212k
    ARM_check_safe_inc(MI);
1039
212k
    ARM_inc_op_count(MI);
1040
212k
  }
1041
424k
}
1042
1043
/// Fills cs_detail with operand shift information for the last added operand.
1044
static void add_cs_detail_RegImmShift(MCInst *MI, ARM_AM_ShiftOpc ShOpc,
1045
              unsigned ShImm)
1046
38.7k
{
1047
38.7k
  if (ShOpc == ARM_AM_no_shift || (ShOpc == ARM_AM_lsl && !ShImm))
1048
696
    return;
1049
1050
38.0k
  if (!detail_is_set(MI))
1051
0
    return;
1052
1053
38.0k
  if (doing_mem(MI))
1054
3.15k
    ARM_get_detail_op(MI, 0)->shift.type = (arm_shifter)ShOpc;
1055
34.9k
  else
1056
34.9k
    ARM_get_detail_op(MI, -1)->shift.type = (arm_shifter)ShOpc;
1057
1058
38.0k
  if (ShOpc != ARM_AM_rrx) {
1059
36.2k
    if (doing_mem(MI))
1060
3.03k
      ARM_get_detail_op(MI, 0)->shift.value =
1061
3.03k
        translateShiftImm(ShImm);
1062
33.1k
    else
1063
33.1k
      ARM_get_detail_op(MI, -1)->shift.value =
1064
33.1k
        translateShiftImm(ShImm);
1065
36.2k
  }
1066
38.0k
}
1067
1068
/// Fills cs_detail with the data of the operand.
1069
/// This function handles operands which's original printer function has no
1070
/// specialities.
1071
static void add_cs_detail_general(MCInst *MI, arm_op_group op_group,
1072
          unsigned OpNum)
1073
2.72M
{
1074
2.72M
  if (!detail_is_set(MI))
1075
0
    return;
1076
2.72M
  cs_op_type op_type = map_get_op_type(MI, OpNum);
1077
1078
  // Fill cs_detail
1079
2.72M
  switch (op_group) {
1080
0
  default:
1081
0
    printf("ERROR: Operand group %d not handled!\n", op_group);
1082
0
    CS_ASSERT_RET(0);
1083
665k
  case ARM_OP_GROUP_PredicateOperand:
1084
678k
  case ARM_OP_GROUP_MandatoryPredicateOperand:
1085
679k
  case ARM_OP_GROUP_MandatoryInvertedPredicateOperand:
1086
685k
  case ARM_OP_GROUP_MandatoryRestrictedPredicateOperand: {
1087
685k
    ARMCC_CondCodes CC = (ARMCC_CondCodes)MCOperand_getImm(
1088
685k
      MCInst_getOperand(MI, OpNum));
1089
685k
    if ((unsigned)CC == 15 &&
1090
873
        op_group == ARM_OP_GROUP_PredicateOperand) {
1091
873
      ARM_get_detail(MI)->cc = ARMCC_UNDEF;
1092
873
      return;
1093
873
    }
1094
684k
    if (CC == ARMCC_HS &&
1095
9.16k
        op_group ==
1096
9.16k
          ARM_OP_GROUP_MandatoryRestrictedPredicateOperand) {
1097
407
      ARM_get_detail(MI)->cc = ARMCC_HS;
1098
407
      return;
1099
407
    }
1100
684k
    ARM_get_detail(MI)->cc = CC;
1101
684k
    if (CC != ARMCC_AL)
1102
140k
      map_add_implicit_read(MI, ARM_REG_CPSR);
1103
684k
    break;
1104
684k
  }
1105
20.1k
  case ARM_OP_GROUP_VPTPredicateOperand: {
1106
20.1k
    ARMVCC_VPTCodes VCC = (ARMVCC_VPTCodes)MCOperand_getImm(
1107
20.1k
      MCInst_getOperand(MI, OpNum));
1108
20.1k
    CS_ASSERT_RET(VCC <= ARMVCC_Else);
1109
20.1k
    if (VCC != ARMVCC_None)
1110
836
      ARM_get_detail(MI)->vcc = VCC;
1111
20.1k
    break;
1112
20.1k
  }
1113
1.24M
  case ARM_OP_GROUP_Operand:
1114
1.24M
    if (op_type == CS_OP_IMM) {
1115
228k
      if (doing_mem(MI)) {
1116
0
        ARM_set_detail_op_mem(MI, OpNum, false, 0,
1117
0
                  MCInst_getOpVal(MI,
1118
0
                      OpNum));
1119
228k
      } else {
1120
228k
        ARM_set_detail_op_imm(
1121
228k
          MI, OpNum, ARM_OP_IMM,
1122
228k
          t_add_pc(MI,
1123
228k
             MCInst_getOpVal(MI, OpNum)));
1124
228k
      }
1125
1.02M
    } else if (op_type == CS_OP_REG)
1126
1.02M
      if (doing_mem(MI)) {
1127
0
        bool is_index_reg = map_get_op_type(MI, OpNum) &
1128
0
                CS_OP_MEM;
1129
0
        ARM_set_detail_op_mem(MI, OpNum, is_index_reg,
1130
0
                  is_index_reg ? 1 : 0,
1131
0
                  MCInst_getOpVal(MI,
1132
0
                      OpNum));
1133
1.02M
      } else {
1134
1.02M
        ARM_set_detail_op_reg(
1135
1.02M
          MI, OpNum, MCInst_getOpVal(MI, OpNum));
1136
1.02M
      }
1137
0
    else
1138
0
      CS_ASSERT_RET(0 && "Op type not handled.");
1139
1.24M
    break;
1140
1.24M
  case ARM_OP_GROUP_PImmediate:
1141
50.3k
    ARM_set_detail_op_imm(MI, OpNum, ARM_OP_PIMM,
1142
50.3k
              MCInst_getOpVal(MI, OpNum));
1143
50.3k
    break;
1144
89.5k
  case ARM_OP_GROUP_CImmediate:
1145
89.5k
    ARM_set_detail_op_imm(MI, OpNum, ARM_OP_CIMM,
1146
89.5k
              MCInst_getOpVal(MI, OpNum));
1147
89.5k
    break;
1148
27.5k
  case ARM_OP_GROUP_AddrMode6Operand:
1149
27.5k
    if (!doing_mem(MI))
1150
27.5k
      ARM_set_mem_access(MI, true);
1151
27.5k
    ARM_set_detail_op_mem(MI, OpNum, false, 0,
1152
27.5k
              MCInst_getOpVal(MI, OpNum));
1153
27.5k
    ARM_get_detail_op(MI, 0)->mem.align =
1154
27.5k
      MCInst_getOpVal(MI, OpNum + 1) << 3;
1155
27.5k
    ARM_set_mem_access(MI, false);
1156
27.5k
    break;
1157
8.57k
  case ARM_OP_GROUP_AddrMode6OffsetOperand: {
1158
8.57k
    arm_reg reg = MCInst_getOpVal(MI, OpNum);
1159
8.57k
    if (reg != 0) {
1160
5.31k
      ARM_set_detail_op_mem_offset(MI, OpNum, reg, false);
1161
5.31k
    }
1162
8.57k
    break;
1163
1.24M
  }
1164
27.1k
  case ARM_OP_GROUP_AddrMode7Operand:
1165
27.1k
    if (!doing_mem(MI))
1166
27.1k
      ARM_set_mem_access(MI, true);
1167
27.1k
    ARM_set_detail_op_mem(MI, OpNum, false, 0,
1168
27.1k
              MCInst_getOpVal(MI, OpNum));
1169
27.1k
    ARM_set_mem_access(MI, false);
1170
27.1k
    break;
1171
212k
  case ARM_OP_GROUP_SBitModifierOperand: {
1172
212k
    unsigned SBit = MCInst_getOpVal(MI, OpNum);
1173
1174
212k
    if (SBit == 0) {
1175
      // Does not edit set flags.
1176
24.7k
      map_remove_implicit_write(MI, ARM_CPSR);
1177
24.7k
      ARM_get_detail(MI)->update_flags = false;
1178
24.7k
      break;
1179
24.7k
    }
1180
    // Add the implicit write again. Some instruction miss it.
1181
188k
    map_add_implicit_write(MI, ARM_CPSR);
1182
188k
    ARM_get_detail(MI)->update_flags = true;
1183
188k
    break;
1184
212k
  }
1185
1.23k
  case ARM_OP_GROUP_VectorListOne:
1186
1.39k
  case ARM_OP_GROUP_VectorListOneAllLanes:
1187
1.39k
    ARM_set_detail_op_reg(MI, OpNum,
1188
1.39k
              t_qpr_to_dpr_list(MI, OpNum, 0));
1189
1.39k
    break;
1190
4.53k
  case ARM_OP_GROUP_VectorListTwo:
1191
5.10k
  case ARM_OP_GROUP_VectorListTwoAllLanes: {
1192
5.10k
    unsigned Reg = MCInst_getOpVal(MI, OpNum);
1193
5.10k
    ARM_set_detail_op_reg(MI, OpNum,
1194
5.10k
              MCRegisterInfo_getSubReg(MI->MRI, Reg,
1195
5.10k
                     ARM_dsub_0));
1196
5.10k
    ARM_set_detail_op_reg(MI, OpNum,
1197
5.10k
              MCRegisterInfo_getSubReg(MI->MRI, Reg,
1198
5.10k
                     ARM_dsub_1));
1199
5.10k
    break;
1200
4.53k
  }
1201
592
  case ARM_OP_GROUP_VectorListTwoSpacedAllLanes:
1202
2.26k
  case ARM_OP_GROUP_VectorListTwoSpaced: {
1203
2.26k
    unsigned Reg = MCInst_getOpVal(MI, OpNum);
1204
2.26k
    ARM_set_detail_op_reg(MI, OpNum,
1205
2.26k
              MCRegisterInfo_getSubReg(MI->MRI, Reg,
1206
2.26k
                     ARM_dsub_0));
1207
2.26k
    ARM_set_detail_op_reg(MI, OpNum,
1208
2.26k
              MCRegisterInfo_getSubReg(MI->MRI, Reg,
1209
2.26k
                     ARM_dsub_2));
1210
2.26k
    break;
1211
592
  }
1212
2.15k
  case ARM_OP_GROUP_VectorListThree:
1213
2.15k
  case ARM_OP_GROUP_VectorListThreeAllLanes:
1214
2.15k
    ARM_set_detail_op_reg(MI, OpNum,
1215
2.15k
              t_qpr_to_dpr_list(MI, OpNum, 0));
1216
2.15k
    ARM_set_detail_op_reg(MI, OpNum,
1217
2.15k
              t_qpr_to_dpr_list(MI, OpNum, 1));
1218
2.15k
    ARM_set_detail_op_reg(MI, OpNum,
1219
2.15k
              t_qpr_to_dpr_list(MI, OpNum, 2));
1220
2.15k
    break;
1221
0
  case ARM_OP_GROUP_VectorListThreeSpacedAllLanes:
1222
0
  case ARM_OP_GROUP_VectorListThreeSpaced:
1223
0
    ARM_set_detail_op_reg(MI, OpNum,
1224
0
              t_qpr_to_dpr_list(MI, OpNum, 0));
1225
0
    ARM_set_detail_op_reg(MI, OpNum,
1226
0
              t_qpr_to_dpr_list(MI, OpNum, 2));
1227
0
    ARM_set_detail_op_reg(MI, OpNum,
1228
0
              t_qpr_to_dpr_list(MI, OpNum, 4));
1229
0
    break;
1230
3.62k
  case ARM_OP_GROUP_VectorListFour:
1231
3.62k
  case ARM_OP_GROUP_VectorListFourAllLanes:
1232
3.62k
    ARM_set_detail_op_reg(MI, OpNum,
1233
3.62k
              t_qpr_to_dpr_list(MI, OpNum, 0));
1234
3.62k
    ARM_set_detail_op_reg(MI, OpNum,
1235
3.62k
              t_qpr_to_dpr_list(MI, OpNum, 1));
1236
3.62k
    ARM_set_detail_op_reg(MI, OpNum,
1237
3.62k
              t_qpr_to_dpr_list(MI, OpNum, 2));
1238
3.62k
    ARM_set_detail_op_reg(MI, OpNum,
1239
3.62k
              t_qpr_to_dpr_list(MI, OpNum, 3));
1240
3.62k
    break;
1241
0
  case ARM_OP_GROUP_VectorListFourSpacedAllLanes:
1242
0
  case ARM_OP_GROUP_VectorListFourSpaced:
1243
0
    ARM_set_detail_op_reg(MI, OpNum,
1244
0
              t_qpr_to_dpr_list(MI, OpNum, 0));
1245
0
    ARM_set_detail_op_reg(MI, OpNum,
1246
0
              t_qpr_to_dpr_list(MI, OpNum, 2));
1247
0
    ARM_set_detail_op_reg(MI, OpNum,
1248
0
              t_qpr_to_dpr_list(MI, OpNum, 4));
1249
0
    ARM_set_detail_op_reg(MI, OpNum,
1250
0
              t_qpr_to_dpr_list(MI, OpNum, 6));
1251
0
    break;
1252
18.4k
  case ARM_OP_GROUP_NoHashImmediate:
1253
18.4k
    ARM_set_detail_op_neon_lane(MI, OpNum);
1254
18.4k
    break;
1255
36.3k
  case ARM_OP_GROUP_RegisterList: {
1256
    // All operands n MI from OpNum on are registers.
1257
    // But the MappingInsnOps.inc has only a single entry for the whole
1258
    // list. So all registers in the list share those attributes.
1259
36.3k
    unsigned access = map_get_op_access(MI, OpNum);
1260
236k
    for (unsigned i = OpNum, e = MCInst_getNumOperands(MI); i != e;
1261
200k
         ++i) {
1262
200k
      unsigned Reg =
1263
200k
        MCOperand_getReg(MCInst_getOperand(MI, i));
1264
1265
200k
      ARM_check_safe_inc(MI);
1266
200k
      ARM_get_detail_op(MI, 0)->type = ARM_OP_REG;
1267
200k
      ARM_get_detail_op(MI, 0)->reg = Reg;
1268
200k
      ARM_get_detail_op(MI, 0)->access = access;
1269
200k
      ARM_inc_op_count(MI);
1270
200k
    }
1271
36.3k
    break;
1272
0
  }
1273
7.38k
  case ARM_OP_GROUP_ThumbITMask: {
1274
7.38k
    unsigned Mask = MCInst_getOpVal(MI, OpNum);
1275
7.38k
    unsigned Firstcond = MCInst_getOpVal(MI, OpNum - 1);
1276
7.38k
    unsigned CondBit0 = Firstcond & 1;
1277
7.38k
    unsigned NumTZ = CountTrailingZeros_32(Mask);
1278
7.38k
    unsigned Pos, e;
1279
7.38k
    ARM_PredBlockMask PredMask = ARM_PredBlockMaskInvalid;
1280
1281
    // Check the documentation of ARM_PredBlockMask how the bits are set.
1282
26.9k
    for (Pos = 3, e = NumTZ; Pos > e; --Pos) {
1283
19.5k
      bool Then = ((Mask >> Pos) & 1) == CondBit0;
1284
19.5k
      if (Then)
1285
4.22k
        PredMask <<= 1;
1286
15.3k
      else {
1287
15.3k
        PredMask |= 1;
1288
15.3k
        PredMask <<= 1;
1289
15.3k
      }
1290
19.5k
    }
1291
7.38k
    PredMask |= 1;
1292
7.38k
    ARM_get_detail(MI)->pred_mask = PredMask;
1293
7.38k
    break;
1294
0
  }
1295
4.44k
  case ARM_OP_GROUP_VPTMask: {
1296
4.44k
    unsigned Mask = MCInst_getOpVal(MI, OpNum);
1297
4.44k
    unsigned NumTZ = CountTrailingZeros_32(Mask);
1298
4.44k
    ARM_PredBlockMask PredMask = ARM_PredBlockMaskInvalid;
1299
1300
    // Check the documentation of ARM_PredBlockMask how the bits are set.
1301
15.0k
    for (unsigned Pos = 3, e = NumTZ; Pos > e; --Pos) {
1302
10.6k
      bool T = ((Mask >> Pos) & 1) == 0;
1303
10.6k
      if (T)
1304
5.70k
        PredMask <<= 1;
1305
4.93k
      else {
1306
4.93k
        PredMask |= 1;
1307
4.93k
        PredMask <<= 1;
1308
4.93k
      }
1309
10.6k
    }
1310
4.44k
    PredMask |= 1;
1311
4.44k
    ARM_get_detail(MI)->pred_mask = PredMask;
1312
4.44k
    break;
1313
0
  }
1314
3.97k
  case ARM_OP_GROUP_MSRMaskOperand: {
1315
3.97k
    MCOperand *Op = MCInst_getOperand(MI, OpNum);
1316
3.97k
    unsigned SpecRegRBit = (unsigned)MCOperand_getImm(Op) >> 4;
1317
3.97k
    unsigned Mask = (unsigned)MCOperand_getImm(Op) & 0xf;
1318
3.97k
    bool IsOutReg = OpNum == 0;
1319
1320
3.97k
    if (ARM_getFeatureBits(MI->csh->mode, ARM_FeatureMClass)) {
1321
3.34k
      const ARMSysReg_MClassSysReg *TheReg;
1322
3.34k
      unsigned SYSm = (unsigned)MCOperand_getImm(Op) &
1323
3.34k
          0xFFF; // 12-bit SYMm
1324
3.34k
      unsigned Opcode = MCInst_getOpcode(MI);
1325
1326
3.34k
      if (Opcode == ARM_t2MSR_M &&
1327
2.55k
          ARM_getFeatureBits(MI->csh->mode, ARM_FeatureDSP)) {
1328
2.55k
        TheReg =
1329
2.55k
          ARMSysReg_lookupMClassSysRegBy12bitSYSmValue(
1330
2.55k
            SYSm);
1331
2.55k
        if (TheReg && MClassSysReg_isInRequiredFeatures(
1332
735
                  TheReg, ARM_FeatureDSP)) {
1333
97
          ARM_set_detail_op_sysop(
1334
97
            MI, TheReg->sysreg.mclasssysreg,
1335
97
            ARM_OP_SYSREG, IsOutReg, Mask,
1336
97
            SYSm);
1337
97
          return;
1338
97
        }
1339
2.55k
      }
1340
1341
3.24k
      SYSm &= 0xff;
1342
3.24k
      if (Opcode == ARM_t2MSR_M &&
1343
2.45k
          ARM_getFeatureBits(MI->csh->mode, ARM_HasV7Ops)) {
1344
2.45k
        TheReg =
1345
2.45k
          ARMSysReg_lookupMClassSysRegAPSRNonDeprecated(
1346
2.45k
            SYSm);
1347
2.45k
        if (TheReg) {
1348
248
          ARM_set_detail_op_sysop(
1349
248
            MI, TheReg->sysreg.mclasssysreg,
1350
248
            ARM_OP_SYSREG, IsOutReg, Mask,
1351
248
            SYSm);
1352
248
          return;
1353
248
        }
1354
2.45k
      }
1355
1356
2.99k
      TheReg = ARMSysReg_lookupMClassSysRegBy8bitSYSmValue(
1357
2.99k
        SYSm);
1358
2.99k
      if (TheReg) {
1359
2.64k
        ARM_set_detail_op_sysop(
1360
2.64k
          MI, TheReg->sysreg.mclasssysreg,
1361
2.64k
          ARM_OP_SYSREG, IsOutReg, Mask, SYSm);
1362
2.64k
        return;
1363
2.64k
      }
1364
1365
347
      if (detail_is_set(MI))
1366
347
        MCOperand_CreateImm0(MI, SYSm);
1367
1368
347
      ARM_set_detail_op_sysop(MI, SYSm, ARM_OP_SYSREG,
1369
347
            IsOutReg, Mask, SYSm);
1370
1371
347
      return;
1372
2.99k
    }
1373
1374
631
    if (!SpecRegRBit && (Mask == 8 || Mask == 4 || Mask == 12)) {
1375
349
      switch (Mask) {
1376
0
      default:
1377
0
        CS_ASSERT_RET(0 && "Unexpected mask value!");
1378
6
      case 4:
1379
6
        ARM_set_detail_op_sysop(MI,
1380
6
              ARM_MCLASSSYSREG_APSR_G,
1381
6
              ARM_OP_SYSREG, IsOutReg,
1382
6
              Mask, UINT16_MAX);
1383
6
        return;
1384
88
      case 8:
1385
88
        ARM_set_detail_op_sysop(
1386
88
          MI, ARM_MCLASSSYSREG_APSR_NZCVQ,
1387
88
          ARM_OP_SYSREG, IsOutReg, Mask,
1388
88
          UINT16_MAX);
1389
88
        return;
1390
255
      case 12:
1391
255
        ARM_set_detail_op_sysop(
1392
255
          MI, ARM_MCLASSSYSREG_APSR_NZCVQG,
1393
255
          ARM_OP_SYSREG, IsOutReg, Mask,
1394
255
          UINT16_MAX);
1395
255
        return;
1396
349
      }
1397
349
    }
1398
1399
282
    unsigned field = 0;
1400
282
    if (Mask) {
1401
279
      if (Mask & 8)
1402
219
        field += SpecRegRBit ? ARM_FIELD_SPSR_F :
1403
219
                   ARM_FIELD_CPSR_F;
1404
279
      if (Mask & 4)
1405
226
        field += SpecRegRBit ? ARM_FIELD_SPSR_S :
1406
226
                   ARM_FIELD_CPSR_S;
1407
279
      if (Mask & 2)
1408
114
        field += SpecRegRBit ? ARM_FIELD_SPSR_X :
1409
114
                   ARM_FIELD_CPSR_X;
1410
279
      if (Mask & 1)
1411
148
        field += SpecRegRBit ? ARM_FIELD_SPSR_C :
1412
148
                   ARM_FIELD_CPSR_C;
1413
1414
279
      ARM_set_detail_op_sysop(MI, field,
1415
279
            SpecRegRBit ? ARM_OP_SPSR :
1416
279
                    ARM_OP_CPSR,
1417
279
            IsOutReg, Mask, UINT16_MAX);
1418
279
    }
1419
282
    break;
1420
631
  }
1421
3.96k
  case ARM_OP_GROUP_SORegRegOperand: {
1422
3.96k
    int64_t imm =
1423
3.96k
      MCOperand_getImm(MCInst_getOperand(MI, OpNum + 2));
1424
3.96k
    ARM_get_detail_op(MI, 0)->shift.type =
1425
3.96k
      ARM_AM_getSORegShOp(imm) + ARM_SFT_REG;
1426
3.96k
    if (ARM_AM_getSORegShOp(imm) != ARM_AM_rrx)
1427
3.96k
      ARM_get_detail_op(MI, 0)->shift.value =
1428
3.96k
        MCInst_getOpVal(MI, OpNum + 1);
1429
1430
3.96k
    ARM_set_detail_op_reg(MI, OpNum, MCInst_getOpVal(MI, OpNum));
1431
3.96k
    break;
1432
631
  }
1433
6.42k
  case ARM_OP_GROUP_ModImmOperand: {
1434
6.42k
    int64_t imm = MCInst_getOpVal(MI, OpNum);
1435
6.42k
    int32_t Rotated = t_mod_imm_rotate(imm);
1436
6.42k
    if (ARM_AM_getSOImmVal(Rotated) == imm) {
1437
5.04k
      ARM_set_detail_op_imm(MI, OpNum, ARM_OP_IMM,
1438
5.04k
                t_mod_imm_rotate(imm));
1439
5.04k
      return;
1440
5.04k
    }
1441
1.38k
    ARM_set_detail_op_imm(MI, OpNum, ARM_OP_IMM,
1442
1.38k
              t_mod_imm_bits(imm));
1443
1.38k
    ARM_set_detail_op_imm(MI, OpNum, ARM_OP_IMM,
1444
1.38k
              t_mod_imm_rot(imm));
1445
1.38k
    break;
1446
6.42k
  }
1447
3.11k
  case ARM_OP_GROUP_VMOVModImmOperand:
1448
3.11k
    ARM_set_detail_op_imm(
1449
3.11k
      MI, OpNum, ARM_OP_IMM,
1450
3.11k
      t_vmov_mod_imm(MCInst_getOpVal(MI, OpNum)));
1451
3.11k
    break;
1452
425
  case ARM_OP_GROUP_FPImmOperand:
1453
425
    ARM_set_detail_op_float(MI, OpNum, MCInst_getOpVal(MI, OpNum));
1454
425
    break;
1455
1.11k
  case ARM_OP_GROUP_ImmPlusOneOperand:
1456
1.11k
    ARM_set_detail_op_imm(MI, OpNum, ARM_OP_IMM,
1457
1.11k
              MCInst_getOpVal(MI, OpNum) + 1);
1458
1.11k
    break;
1459
1.03k
  case ARM_OP_GROUP_RotImmOperand: {
1460
1.03k
    unsigned RotImm = MCInst_getOpVal(MI, OpNum);
1461
1.03k
    if (RotImm == 0)
1462
393
      return;
1463
645
    ARM_get_detail_op(MI, -1)->shift.type = ARM_SFT_ROR;
1464
645
    ARM_get_detail_op(MI, -1)->shift.value = RotImm * 8;
1465
645
    break;
1466
1.03k
  }
1467
905
  case ARM_OP_GROUP_FBits16:
1468
905
    ARM_set_detail_op_imm(MI, OpNum, ARM_OP_IMM,
1469
905
              16 - MCInst_getOpVal(MI, OpNum));
1470
905
    break;
1471
861
  case ARM_OP_GROUP_FBits32:
1472
861
    ARM_set_detail_op_imm(MI, OpNum, ARM_OP_IMM,
1473
861
              32 - MCInst_getOpVal(MI, OpNum));
1474
861
    break;
1475
1.79k
  case ARM_OP_GROUP_T2SOOperand:
1476
13.3k
  case ARM_OP_GROUP_SORegImmOperand:
1477
13.3k
    ARM_set_detail_op_reg(MI, OpNum, MCInst_getOpVal(MI, OpNum));
1478
13.3k
    uint64_t imm = MCInst_getOpVal(MI, OpNum + 1);
1479
13.3k
    ARM_AM_ShiftOpc ShOpc = ARM_AM_getSORegShOp(imm);
1480
13.3k
    unsigned ShImm = ARM_AM_getSORegOffset(imm);
1481
13.3k
    if (op_group == ARM_OP_GROUP_SORegImmOperand) {
1482
11.5k
      if (ShOpc == ARM_AM_no_shift ||
1483
11.5k
          (ShOpc == ARM_AM_lsl && !ShImm))
1484
0
        return;
1485
11.5k
    }
1486
13.3k
    add_cs_detail_RegImmShift(MI, ShOpc, ShImm);
1487
13.3k
    break;
1488
564
  case ARM_OP_GROUP_PostIdxRegOperand: {
1489
564
    bool sub = MCInst_getOpVal(MI, OpNum + 1) ? false : true;
1490
564
    ARM_set_detail_op_mem_offset(MI, OpNum,
1491
564
               MCInst_getOpVal(MI, OpNum), sub);
1492
564
    ARM_get_detail(MI)->post_index = true;
1493
564
    break;
1494
13.3k
  }
1495
1.04k
  case ARM_OP_GROUP_PostIdxImm8Operand: {
1496
1.04k
    unsigned Imm8 = MCInst_getOpVal(MI, OpNum);
1497
1.04k
    bool sub = !(Imm8 & 256);
1498
1.04k
    ARM_set_detail_op_mem_offset(MI, OpNum, (Imm8 & 0xff), sub);
1499
1.04k
    ARM_get_detail(MI)->post_index = true;
1500
1.04k
    break;
1501
13.3k
  }
1502
6.91k
  case ARM_OP_GROUP_PostIdxImm8s4Operand: {
1503
6.91k
    unsigned Imm8s = MCInst_getOpVal(MI, OpNum);
1504
6.91k
    bool sub = !(Imm8s & 256);
1505
6.91k
    ARM_set_detail_op_mem_offset(MI, OpNum, (Imm8s & 0xff) << 2,
1506
6.91k
               sub);
1507
6.91k
    ARM_get_detail(MI)->post_index = true;
1508
6.91k
    break;
1509
13.3k
  }
1510
77
  case ARM_OP_GROUP_AddrModeTBB:
1511
564
  case ARM_OP_GROUP_AddrModeTBH:
1512
564
    ARM_set_mem_access(MI, true);
1513
564
    ARM_set_detail_op_mem(MI, OpNum, false, 0,
1514
564
              MCInst_getOpVal(MI, OpNum));
1515
564
    ARM_set_detail_op_mem(MI, OpNum + 1, true, 1,
1516
564
              MCInst_getOpVal(MI, OpNum + 1));
1517
564
    if (op_group == ARM_OP_GROUP_AddrModeTBH) {
1518
487
      ARM_get_detail_op(MI, 0)->shift.type = ARM_SFT_LSL;
1519
487
      ARM_get_detail_op(MI, 0)->shift.value = 1;
1520
487
    }
1521
564
    ARM_set_mem_access(MI, false);
1522
564
    break;
1523
3.09k
  case ARM_OP_GROUP_AddrMode2Operand: {
1524
3.09k
    MCOperand *MO1 = MCInst_getOperand(MI, OpNum);
1525
3.09k
    if (!MCOperand_isReg(MO1))
1526
      // Handled in printOperand
1527
0
      break;
1528
1529
3.09k
    ARM_set_mem_access(MI, true);
1530
3.09k
    ARM_set_detail_op_mem(MI, OpNum, false, 0,
1531
3.09k
              MCInst_getOpVal(MI, OpNum));
1532
3.09k
    unsigned int imm3 = MCInst_getOpVal(MI, OpNum + 2);
1533
3.09k
    unsigned ShOff = ARM_AM_getAM2Offset(imm3);
1534
3.09k
    ARM_AM_AddrOpc subtracted = ARM_AM_getAM2Op(imm3);
1535
3.09k
    if (!MCOperand_getReg(MCInst_getOperand(MI, OpNum + 1)) &&
1536
0
        ShOff) {
1537
0
      ARM_get_detail_op(MI, 0)->shift.value = ShOff;
1538
0
      ARM_get_detail_op(MI, 0)->subtracted = subtracted ==
1539
0
                     ARM_AM_sub;
1540
0
      ARM_set_mem_access(MI, false);
1541
0
      break;
1542
0
    }
1543
3.09k
    ARM_set_detail_op_mem(MI, OpNum + 1, true,
1544
3.09k
              subtracted == ARM_AM_sub ? -1 : 1,
1545
3.09k
              MCInst_getOpVal(MI, OpNum + 1));
1546
3.09k
    add_cs_detail_RegImmShift(MI, ARM_AM_getAM2ShiftOpc(imm3),
1547
3.09k
            ARM_AM_getAM2Offset(imm3));
1548
3.09k
    ARM_set_mem_access(MI, false);
1549
3.09k
    break;
1550
3.09k
  }
1551
6.78k
  case ARM_OP_GROUP_AddrMode2OffsetOperand: {
1552
6.78k
    uint64_t imm2 = MCInst_getOpVal(MI, OpNum + 1);
1553
6.78k
    ARM_AM_AddrOpc subtracted = ARM_AM_getAM2Op(imm2);
1554
6.78k
    if (!MCInst_getOpVal(MI, OpNum)) {
1555
4.12k
      ARM_set_detail_op_mem_offset(MI, OpNum + 1,
1556
4.12k
                 ARM_AM_getAM2Offset(imm2),
1557
4.12k
                 subtracted == ARM_AM_sub);
1558
4.12k
      ARM_get_detail(MI)->post_index = true;
1559
4.12k
      return;
1560
4.12k
    }
1561
2.65k
    ARM_set_detail_op_mem_offset(MI, OpNum,
1562
2.65k
               MCInst_getOpVal(MI, OpNum),
1563
2.65k
               subtracted == ARM_AM_sub);
1564
2.65k
    ARM_get_detail(MI)->post_index = true;
1565
2.65k
    add_cs_detail_RegImmShift(MI, ARM_AM_getAM2ShiftOpc(imm2),
1566
2.65k
            ARM_AM_getAM2Offset(imm2));
1567
2.65k
    break;
1568
6.78k
  }
1569
3.10k
  case ARM_OP_GROUP_AddrMode3OffsetOperand: {
1570
3.10k
    MCOperand *MO1 = MCInst_getOperand(MI, OpNum);
1571
3.10k
    MCOperand *MO2 = MCInst_getOperand(MI, OpNum + 1);
1572
3.10k
    ARM_AM_AddrOpc subtracted =
1573
3.10k
      ARM_AM_getAM3Op(MCOperand_getImm(MO2));
1574
3.10k
    if (MCOperand_getReg(MO1)) {
1575
2.38k
      ARM_set_detail_op_mem_offset(MI, OpNum,
1576
2.38k
                 MCInst_getOpVal(MI, OpNum),
1577
2.38k
                 subtracted == ARM_AM_sub);
1578
2.38k
      ARM_get_detail(MI)->post_index = true;
1579
2.38k
      return;
1580
2.38k
    }
1581
716
    ARM_set_detail_op_mem_offset(
1582
716
      MI, OpNum + 1,
1583
716
      ARM_AM_getAM3Offset(MCInst_getOpVal(MI, OpNum + 1)),
1584
716
      subtracted == ARM_AM_sub);
1585
716
    ARM_get_detail(MI)->post_index = true;
1586
716
    break;
1587
3.10k
  }
1588
17.9k
  case ARM_OP_GROUP_ThumbAddrModeSPOperand:
1589
42.4k
  case ARM_OP_GROUP_ThumbAddrModeImm5S1Operand:
1590
75.5k
  case ARM_OP_GROUP_ThumbAddrModeImm5S2Operand:
1591
109k
  case ARM_OP_GROUP_ThumbAddrModeImm5S4Operand: {
1592
109k
    MCOperand *MO1 = MCInst_getOperand(MI, OpNum);
1593
109k
    if (!MCOperand_isReg(MO1))
1594
      // Handled in printOperand
1595
0
      break;
1596
1597
109k
    ARM_set_mem_access(MI, true);
1598
109k
    ARM_set_detail_op_mem(MI, OpNum, false, 0,
1599
109k
              MCInst_getOpVal(MI, OpNum));
1600
109k
    unsigned ImmOffs = MCInst_getOpVal(MI, OpNum + 1);
1601
109k
    if (ImmOffs) {
1602
101k
      unsigned Scale = 0;
1603
101k
      switch (op_group) {
1604
0
      default:
1605
0
        CS_ASSERT_RET(
1606
0
          0 &&
1607
0
          "Cannot determine scale. Operand group not handled.");
1608
21.0k
      case ARM_OP_GROUP_ThumbAddrModeImm5S1Operand:
1609
21.0k
        Scale = 1;
1610
21.0k
        break;
1611
31.0k
      case ARM_OP_GROUP_ThumbAddrModeImm5S2Operand:
1612
31.0k
        Scale = 2;
1613
31.0k
        break;
1614
33.2k
      case ARM_OP_GROUP_ThumbAddrModeImm5S4Operand:
1615
49.4k
      case ARM_OP_GROUP_ThumbAddrModeSPOperand:
1616
49.4k
        Scale = 4;
1617
49.4k
        break;
1618
101k
      }
1619
101k
      ARM_set_detail_op_mem(MI, OpNum + 1, false, 0,
1620
101k
                ImmOffs * Scale);
1621
101k
    }
1622
109k
    ARM_set_mem_access(MI, false);
1623
109k
    break;
1624
109k
  }
1625
19.7k
  case ARM_OP_GROUP_ThumbAddrModeRROperand: {
1626
19.7k
    MCOperand *MO1 = MCInst_getOperand(MI, OpNum);
1627
19.7k
    if (!MCOperand_isReg(MO1))
1628
      // Handled in printOperand
1629
0
      break;
1630
1631
19.7k
    ARM_set_mem_access(MI, true);
1632
19.7k
    ARM_set_detail_op_mem(MI, OpNum, false, 0,
1633
19.7k
              MCInst_getOpVal(MI, OpNum));
1634
19.7k
    arm_reg RegNum = MCInst_getOpVal(MI, OpNum + 1);
1635
19.7k
    if (RegNum)
1636
19.7k
      ARM_set_detail_op_mem(MI, OpNum + 1, true, 1, RegNum);
1637
19.7k
    ARM_set_mem_access(MI, false);
1638
19.7k
    break;
1639
19.7k
  }
1640
1.91k
  case ARM_OP_GROUP_T2AddrModeImm8OffsetOperand:
1641
3.45k
  case ARM_OP_GROUP_T2AddrModeImm8s4OffsetOperand: {
1642
3.45k
    int32_t OffImm = MCInst_getOpVal(MI, OpNum);
1643
3.45k
    if (OffImm == INT32_MIN)
1644
900
      ARM_set_detail_op_mem_offset(MI, OpNum, 0, false);
1645
2.55k
    else {
1646
2.55k
      bool sub = OffImm < 0;
1647
2.55k
      OffImm = OffImm < 0 ? OffImm * -1 : OffImm;
1648
2.55k
      ARM_set_detail_op_mem_offset(MI, OpNum, OffImm, sub);
1649
2.55k
    }
1650
3.45k
    ARM_get_detail(MI)->post_index = true;
1651
3.45k
    break;
1652
1.91k
  }
1653
1.07k
  case ARM_OP_GROUP_T2AddrModeSoRegOperand: {
1654
1.07k
    if (!doing_mem(MI))
1655
1.07k
      ARM_set_mem_access(MI, true);
1656
1657
1.07k
    ARM_set_detail_op_mem(MI, OpNum, false, 0,
1658
1.07k
              MCInst_getOpVal(MI, OpNum));
1659
1.07k
    ARM_set_detail_op_mem(MI, OpNum + 1, true, 1,
1660
1.07k
              MCInst_getOpVal(MI, OpNum + 1));
1661
1.07k
    unsigned ShAmt = MCInst_getOpVal(MI, OpNum + 2);
1662
1.07k
    if (ShAmt) {
1663
316
      ARM_get_detail_op(MI, 0)->shift.type = ARM_SFT_LSL;
1664
316
      ARM_get_detail_op(MI, 0)->shift.value = ShAmt;
1665
316
    }
1666
1.07k
    ARM_set_mem_access(MI, false);
1667
1.07k
    break;
1668
1.91k
  }
1669
515
  case ARM_OP_GROUP_T2AddrModeImm0_1020s4Operand:
1670
515
    ARM_set_mem_access(MI, true);
1671
515
    ARM_set_detail_op_mem(MI, OpNum, false, 0,
1672
515
              MCInst_getOpVal(MI, OpNum));
1673
515
    int64_t Imm0_1024s4 = MCInst_getOpVal(MI, OpNum + 1);
1674
515
    if (Imm0_1024s4)
1675
481
      ARM_set_detail_op_mem(MI, OpNum + 1, false, 0,
1676
481
                Imm0_1024s4 * 4);
1677
515
    ARM_set_mem_access(MI, false);
1678
515
    break;
1679
387
  case ARM_OP_GROUP_PKHLSLShiftImm: {
1680
387
    unsigned ShiftImm = MCInst_getOpVal(MI, OpNum);
1681
387
    if (ShiftImm == 0)
1682
48
      return;
1683
339
    ARM_get_detail_op(MI, -1)->shift.type = ARM_SFT_LSL;
1684
339
    ARM_get_detail_op(MI, -1)->shift.value = ShiftImm;
1685
339
    break;
1686
387
  }
1687
93
  case ARM_OP_GROUP_PKHASRShiftImm: {
1688
93
    unsigned RShiftImm = MCInst_getOpVal(MI, OpNum);
1689
93
    if (RShiftImm == 0)
1690
24
      RShiftImm = 32;
1691
93
    ARM_get_detail_op(MI, -1)->shift.type = ARM_SFT_ASR;
1692
93
    ARM_get_detail_op(MI, -1)->shift.value = RShiftImm;
1693
93
    break;
1694
387
  }
1695
12.1k
  case ARM_OP_GROUP_ThumbS4ImmOperand:
1696
12.1k
    ARM_set_detail_op_imm(MI, OpNum, ARM_OP_IMM,
1697
12.1k
              MCInst_getOpVal(MI, OpNum) * 4);
1698
12.1k
    break;
1699
35.3k
  case ARM_OP_GROUP_ThumbSRImm: {
1700
35.3k
    unsigned SRImm = MCInst_getOpVal(MI, OpNum);
1701
35.3k
    ARM_set_detail_op_imm(MI, OpNum, ARM_OP_IMM,
1702
35.3k
              SRImm == 0 ? 32 : SRImm);
1703
35.3k
    break;
1704
387
  }
1705
464
  case ARM_OP_GROUP_BitfieldInvMaskImmOperand: {
1706
464
    uint32_t v = ~MCInst_getOpVal(MI, OpNum);
1707
464
    int32_t lsb = CountTrailingZeros_32(v);
1708
464
    int32_t width = (32 - countLeadingZeros(v)) - lsb;
1709
464
    ARM_set_detail_op_imm(MI, OpNum, ARM_OP_IMM, lsb);
1710
464
    ARM_set_detail_op_imm(MI, OpNum, ARM_OP_IMM, width);
1711
464
    break;
1712
387
  }
1713
749
  case ARM_OP_GROUP_CPSIMod: {
1714
749
    unsigned Mode = MCInst_getOpVal(MI, OpNum);
1715
749
    ARM_get_detail(MI)->cps_mode = Mode;
1716
749
    break;
1717
387
  }
1718
749
  case ARM_OP_GROUP_CPSIFlag: {
1719
749
    unsigned IFlags = MCInst_getOpVal(MI, OpNum);
1720
749
    ARM_get_detail(MI)->cps_flag = IFlags == 0 ? ARM_CPSFLAG_NONE :
1721
749
                   IFlags;
1722
749
    break;
1723
387
  }
1724
693
  case ARM_OP_GROUP_GPRPairOperand: {
1725
693
    unsigned Reg = MCInst_getOpVal(MI, OpNum);
1726
693
    ARM_set_detail_op_reg(MI, OpNum,
1727
693
              MCRegisterInfo_getSubReg(MI->MRI, Reg,
1728
693
                     ARM_gsub_0));
1729
693
    ARM_set_detail_op_reg(MI, OpNum,
1730
693
              MCRegisterInfo_getSubReg(MI->MRI, Reg,
1731
693
                     ARM_gsub_1));
1732
693
    break;
1733
387
  }
1734
1.24k
  case ARM_OP_GROUP_MemBOption:
1735
1.87k
  case ARM_OP_GROUP_InstSyncBOption:
1736
1.87k
  case ARM_OP_GROUP_TraceSyncBOption:
1737
1.87k
    ARM_get_detail(MI)->mem_barrier = MCInst_getOpVal(MI, OpNum);
1738
1.87k
    break;
1739
964
  case ARM_OP_GROUP_ShiftImmOperand: {
1740
964
    unsigned ShiftOp = MCInst_getOpVal(MI, OpNum);
1741
964
    bool isASR = (ShiftOp & (1 << 5)) != 0;
1742
964
    unsigned Amt = ShiftOp & 0x1f;
1743
964
    if (isASR) {
1744
209
      unsigned tmp = Amt == 0 ? 32 : Amt;
1745
209
      ARM_get_detail_op(MI, -1)->shift.type = ARM_SFT_ASR;
1746
209
      ARM_get_detail_op(MI, -1)->shift.value = tmp;
1747
755
    } else if (Amt) {
1748
585
      ARM_get_detail_op(MI, -1)->shift.type = ARM_SFT_LSL;
1749
585
      ARM_get_detail_op(MI, -1)->shift.value = Amt;
1750
585
    }
1751
964
    break;
1752
1.87k
  }
1753
4.49k
  case ARM_OP_GROUP_VectorIndex:
1754
4.49k
    ARM_get_detail_op(MI, -1)->vector_index =
1755
4.49k
      MCInst_getOpVal(MI, OpNum);
1756
4.49k
    break;
1757
2.59k
  case ARM_OP_GROUP_CoprocOptionImm:
1758
2.59k
    ARM_set_detail_op_imm(MI, OpNum, ARM_OP_IMM,
1759
2.59k
              MCInst_getOpVal(MI, OpNum));
1760
2.59k
    break;
1761
15.4k
  case ARM_OP_GROUP_ThumbLdrLabelOperand: {
1762
15.4k
    int32_t OffImm = MCInst_getOpVal(MI, OpNum);
1763
15.4k
    if (OffImm == INT32_MIN)
1764
297
      OffImm = 0;
1765
15.4k
    ARM_check_safe_inc(MI);
1766
15.4k
    ARM_get_detail_op(MI, 0)->type = ARM_OP_MEM;
1767
15.4k
    ARM_get_detail_op(MI, 0)->mem.base = ARM_REG_PC;
1768
15.4k
    ARM_get_detail_op(MI, 0)->mem.index = ARM_REG_INVALID;
1769
15.4k
    ARM_get_detail_op(MI, 0)->mem.scale = 1;
1770
15.4k
    ARM_get_detail_op(MI, 0)->mem.disp = OffImm;
1771
15.4k
    ARM_get_detail_op(MI, 0)->access = CS_AC_READ;
1772
15.4k
    ARM_inc_op_count(MI);
1773
15.4k
    break;
1774
1.87k
  }
1775
1.49k
  case ARM_OP_GROUP_BankedRegOperand: {
1776
1.49k
    uint32_t Banked = MCInst_getOpVal(MI, OpNum);
1777
1.49k
    const ARMBankedReg_BankedReg *TheReg =
1778
1.49k
      ARMBankedReg_lookupBankedRegByEncoding(Banked);
1779
1.49k
    bool IsOutReg = OpNum == 0;
1780
1.49k
    ARM_set_detail_op_sysop(MI, TheReg->sysreg.bankedreg,
1781
1.49k
          ARM_OP_BANKEDREG, IsOutReg, UINT8_MAX,
1782
1.49k
          TheReg->Encoding &
1783
1.49k
            0xf); // Bit[4:0] are SYSm
1784
1.49k
    break;
1785
1.87k
  }
1786
131
  case ARM_OP_GROUP_SetendOperand: {
1787
131
    bool be = MCInst_getOpVal(MI, OpNum) != 0;
1788
131
    ARM_check_safe_inc(MI);
1789
131
    if (be) {
1790
116
      ARM_get_detail_op(MI, 0)->type = ARM_OP_SETEND;
1791
116
      ARM_get_detail_op(MI, 0)->setend = ARM_SETEND_BE;
1792
116
    } else {
1793
15
      ARM_get_detail_op(MI, 0)->type = ARM_OP_SETEND;
1794
15
      ARM_get_detail_op(MI, 0)->setend = ARM_SETEND_LE;
1795
15
    }
1796
131
    ARM_inc_op_count(MI);
1797
131
    break;
1798
1.87k
  }
1799
0
  case ARM_OP_GROUP_MveSaturateOp: {
1800
0
    uint32_t Val = MCInst_getOpVal(MI, OpNum);
1801
0
    Val = Val == 1 ? 48 : 64;
1802
0
    ARM_set_detail_op_imm(MI, OpNum, ARM_OP_IMM, Val);
1803
0
    break;
1804
1.87k
  }
1805
2.72M
  }
1806
2.72M
}
1807
1808
/// Fills cs_detail with the data of the operand.
1809
/// This function handles operands which original printer function is a template
1810
/// with one argument.
1811
static void add_cs_detail_template_1(MCInst *MI, arm_op_group op_group,
1812
             unsigned OpNum, uint64_t temp_arg_0)
1813
53.4k
{
1814
53.4k
  if (!detail_is_set(MI))
1815
0
    return;
1816
53.4k
  switch (op_group) {
1817
0
  default:
1818
0
    printf("ERROR: Operand group %d not handled!\n", op_group);
1819
0
    CS_ASSERT_RET(0);
1820
4.24k
  case ARM_OP_GROUP_AddrModeImm12Operand_0:
1821
6.71k
  case ARM_OP_GROUP_AddrModeImm12Operand_1:
1822
7.59k
  case ARM_OP_GROUP_T2AddrModeImm8s4Operand_0:
1823
12.1k
  case ARM_OP_GROUP_T2AddrModeImm8s4Operand_1: {
1824
12.1k
    MCOperand *MO1 = MCInst_getOperand(MI, OpNum);
1825
12.1k
    if (!MCOperand_isReg(MO1))
1826
      // Handled in printOperand
1827
0
      return;
1828
12.1k
  }
1829
  // fallthrough
1830
16.2k
  case ARM_OP_GROUP_T2AddrModeImm8Operand_0:
1831
18.3k
  case ARM_OP_GROUP_T2AddrModeImm8Operand_1: {
1832
18.3k
    bool AlwaysPrintImm0 = temp_arg_0;
1833
18.3k
    ARM_set_mem_access(MI, true);
1834
18.3k
    ARM_set_detail_op_mem(MI, OpNum, false, 0,
1835
18.3k
              MCInst_getOpVal(MI, OpNum));
1836
18.3k
    int32_t Imm8 = MCInst_getOpVal(MI, OpNum + 1);
1837
18.3k
    if (Imm8 == INT32_MIN)
1838
3.33k
      Imm8 = 0;
1839
18.3k
    ARM_set_detail_op_mem(MI, OpNum + 1, false, 0, Imm8);
1840
18.3k
    if (AlwaysPrintImm0)
1841
9.16k
      map_add_implicit_write(MI, MCInst_getOpVal(MI, OpNum));
1842
1843
18.3k
    ARM_set_mem_access(MI, false);
1844
18.3k
    break;
1845
16.2k
  }
1846
479
  case ARM_OP_GROUP_AdrLabelOperand_0:
1847
13.2k
  case ARM_OP_GROUP_AdrLabelOperand_2: {
1848
13.2k
    unsigned Scale = temp_arg_0;
1849
13.2k
    int32_t OffImm = MCInst_getOpVal(MI, OpNum) << Scale;
1850
13.2k
    if (OffImm == INT32_MIN)
1851
0
      OffImm = 0;
1852
13.2k
    ARM_set_detail_op_imm(MI, OpNum, ARM_OP_IMM, OffImm);
1853
13.2k
    break;
1854
479
  }
1855
2.51k
  case ARM_OP_GROUP_AddrMode3Operand_0:
1856
4.32k
  case ARM_OP_GROUP_AddrMode3Operand_1: {
1857
4.32k
    bool AlwaysPrintImm0 = temp_arg_0;
1858
4.32k
    MCOperand *MO1 = MCInst_getOperand(MI, OpNum);
1859
4.32k
    if (!MCOperand_isReg(MO1))
1860
      // Handled in printOperand
1861
0
      break;
1862
1863
4.32k
    ARM_set_mem_access(MI, true);
1864
4.32k
    ARM_set_detail_op_mem(MI, OpNum, false, 0,
1865
4.32k
              MCInst_getOpVal(MI, OpNum));
1866
1867
4.32k
    MCOperand *MO2 = MCInst_getOperand(MI, OpNum + 1);
1868
4.32k
    ARM_AM_AddrOpc Sign =
1869
4.32k
      ARM_AM_getAM3Op(MCInst_getOpVal(MI, OpNum + 2));
1870
1871
4.32k
    if (MCOperand_getReg(MO2)) {
1872
1.73k
      ARM_set_detail_op_mem(MI, OpNum + 1, true,
1873
1.73k
                Sign == ARM_AM_sub ? -1 : 1,
1874
1.73k
                MCInst_getOpVal(MI, OpNum + 1));
1875
1.73k
      ARM_get_detail_op(MI, 0)->subtracted = Sign ==
1876
1.73k
                     ARM_AM_sub;
1877
1.73k
      ARM_set_mem_access(MI, false);
1878
1.73k
      break;
1879
1.73k
    }
1880
2.58k
    unsigned ImmOffs =
1881
2.58k
      ARM_AM_getAM3Offset(MCInst_getOpVal(MI, OpNum + 2));
1882
1883
2.58k
    if (AlwaysPrintImm0 || ImmOffs || Sign == ARM_AM_sub) {
1884
2.53k
      ARM_set_detail_op_mem(MI, OpNum + 2, false, 0, ImmOffs);
1885
2.53k
      ARM_get_detail_op(MI, 0)->subtracted = Sign ==
1886
2.53k
                     ARM_AM_sub;
1887
2.53k
    }
1888
2.58k
    ARM_set_mem_access(MI, false);
1889
2.58k
    break;
1890
4.32k
  }
1891
5.82k
  case ARM_OP_GROUP_AddrMode5Operand_0:
1892
15.3k
  case ARM_OP_GROUP_AddrMode5Operand_1:
1893
15.8k
  case ARM_OP_GROUP_AddrMode5FP16Operand_0: {
1894
15.8k
    bool AlwaysPrintImm0 = temp_arg_0;
1895
1896
15.8k
    if (AlwaysPrintImm0) {
1897
9.55k
      get_detail(MI)->writeback = true;
1898
9.55k
      map_add_implicit_write(MI, MCInst_getOpVal(MI, OpNum));
1899
9.55k
    }
1900
1901
15.8k
    ARM_check_safe_inc(MI);
1902
15.8k
    cs_arm_op *Op = ARM_get_detail_op(MI, 0);
1903
15.8k
    Op->type = ARM_OP_MEM;
1904
15.8k
    Op->mem.base = MCInst_getOpVal(MI, OpNum);
1905
15.8k
    Op->mem.index = ARM_REG_INVALID;
1906
15.8k
    Op->mem.scale = 1;
1907
15.8k
    Op->mem.disp = 0;
1908
15.8k
    Op->access = CS_AC_READ;
1909
1910
15.8k
    ARM_AM_AddrOpc SubFlag =
1911
15.8k
      ARM_AM_getAM5Op(MCInst_getOpVal(MI, OpNum + 1));
1912
15.8k
    unsigned ImmOffs =
1913
15.8k
      ARM_AM_getAM5Offset(MCInst_getOpVal(MI, OpNum + 1));
1914
1915
15.8k
    if (AlwaysPrintImm0 || ImmOffs || SubFlag == ARM_AM_sub) {
1916
15.3k
      if (op_group == ARM_OP_GROUP_AddrMode5FP16Operand_0) {
1917
345
        Op->mem.disp = ImmOffs * 2;
1918
15.0k
      } else {
1919
15.0k
        Op->mem.disp = ImmOffs * 4;
1920
15.0k
      }
1921
15.3k
      Op->subtracted = SubFlag == ARM_AM_sub;
1922
15.3k
    }
1923
15.8k
    ARM_inc_op_count(MI);
1924
15.8k
    break;
1925
15.3k
  }
1926
169
  case ARM_OP_GROUP_MveAddrModeRQOperand_0:
1927
233
  case ARM_OP_GROUP_MveAddrModeRQOperand_1:
1928
400
  case ARM_OP_GROUP_MveAddrModeRQOperand_2:
1929
447
  case ARM_OP_GROUP_MveAddrModeRQOperand_3: {
1930
447
    unsigned Shift = temp_arg_0;
1931
447
    ARM_set_mem_access(MI, true);
1932
447
    ARM_set_detail_op_mem(MI, OpNum, false, 0,
1933
447
              MCInst_getOpVal(MI, OpNum));
1934
447
    ARM_set_detail_op_mem(MI, OpNum + 1, true, 1,
1935
447
              MCInst_getOpVal(MI, OpNum + 1));
1936
447
    if (Shift > 0) {
1937
278
      add_cs_detail_RegImmShift(MI, ARM_AM_uxtw, Shift);
1938
278
    }
1939
447
    ARM_set_mem_access(MI, false);
1940
447
    break;
1941
400
  }
1942
426
  case ARM_OP_GROUP_MVEVectorList_2:
1943
1.24k
  case ARM_OP_GROUP_MVEVectorList_4: {
1944
1.24k
    unsigned NumRegs = temp_arg_0;
1945
1.24k
    arm_reg Reg = MCInst_getOpVal(MI, OpNum);
1946
5.37k
    for (unsigned i = 0; i < NumRegs; ++i) {
1947
4.13k
      arm_reg SubReg = MCRegisterInfo_getSubReg(
1948
4.13k
        MI->MRI, Reg, ARM_qsub_0 + i);
1949
4.13k
      ARM_set_detail_op_reg(MI, OpNum, SubReg);
1950
4.13k
    }
1951
1.24k
    break;
1952
426
  }
1953
53.4k
  }
1954
53.4k
}
1955
1956
/// Fills cs_detail with the data of the operand.
1957
/// This function handles operands which's original printer function is a
1958
/// template with two arguments.
1959
static void add_cs_detail_template_2(MCInst *MI, arm_op_group op_group,
1960
             unsigned OpNum, uint64_t temp_arg_0,
1961
             uint64_t temp_arg_1)
1962
1.47k
{
1963
1.47k
  if (!detail_is_set(MI))
1964
0
    return;
1965
1.47k
  switch (op_group) {
1966
0
  default:
1967
0
    printf("ERROR: Operand group %d not handled!\n", op_group);
1968
0
    CS_ASSERT_RET(0);
1969
1.12k
  case ARM_OP_GROUP_ComplexRotationOp_90_0:
1970
1.47k
  case ARM_OP_GROUP_ComplexRotationOp_180_90: {
1971
1.47k
    unsigned Angle = temp_arg_0;
1972
1.47k
    unsigned Remainder = temp_arg_1;
1973
1.47k
    unsigned Rotation =
1974
1.47k
      (MCInst_getOpVal(MI, OpNum) * Angle) + Remainder;
1975
1.47k
    ARM_set_detail_op_imm(MI, OpNum, ARM_OP_IMM, Rotation);
1976
1.47k
    break;
1977
1.12k
  }
1978
1.47k
  }
1979
1.47k
}
1980
1981
/// Fills cs_detail with the data of the operand.
1982
/// Calls to this function are should not be added by hand! Please checkout the
1983
/// patch `AddCSDetail` of the CppTranslator.
1984
static void ARM_add_cs_detail(MCInst *MI, int /* arm_op_group */ op_group,
1985
            size_t op_num, uint64_t templ_arg_0,
1986
            uint64_t templ_arg_1)
1987
2.79M
{
1988
2.79M
  if (!detail_is_set(MI) || !map_fill_detail_ops(MI))
1989
0
    return;
1990
2.79M
  switch (op_group) {
1991
19.3k
  case ARM_OP_GROUP_RegImmShift: {
1992
19.3k
    ARM_AM_ShiftOpc shift_opc = (ARM_AM_ShiftOpc)templ_arg_0;
1993
19.3k
    unsigned shift_imm = templ_arg_1;
1994
19.3k
    add_cs_detail_RegImmShift(MI, shift_opc, shift_imm);
1995
19.3k
    return;
1996
0
  }
1997
479
  case ARM_OP_GROUP_AdrLabelOperand_0:
1998
13.2k
  case ARM_OP_GROUP_AdrLabelOperand_2:
1999
15.7k
  case ARM_OP_GROUP_AddrMode3Operand_0:
2000
17.5k
  case ARM_OP_GROUP_AddrMode3Operand_1:
2001
23.3k
  case ARM_OP_GROUP_AddrMode5Operand_0:
2002
32.9k
  case ARM_OP_GROUP_AddrMode5Operand_1:
2003
37.1k
  case ARM_OP_GROUP_AddrModeImm12Operand_0:
2004
39.6k
  case ARM_OP_GROUP_AddrModeImm12Operand_1:
2005
43.7k
  case ARM_OP_GROUP_T2AddrModeImm8Operand_0:
2006
45.8k
  case ARM_OP_GROUP_T2AddrModeImm8Operand_1:
2007
46.7k
  case ARM_OP_GROUP_T2AddrModeImm8s4Operand_0:
2008
51.3k
  case ARM_OP_GROUP_T2AddrModeImm8s4Operand_1:
2009
51.7k
  case ARM_OP_GROUP_MVEVectorList_2:
2010
52.5k
  case ARM_OP_GROUP_MVEVectorList_4:
2011
52.9k
  case ARM_OP_GROUP_AddrMode5FP16Operand_0:
2012
53.1k
  case ARM_OP_GROUP_MveAddrModeRQOperand_0:
2013
53.2k
  case ARM_OP_GROUP_MveAddrModeRQOperand_3:
2014
53.2k
  case ARM_OP_GROUP_MveAddrModeRQOperand_1:
2015
53.4k
  case ARM_OP_GROUP_MveAddrModeRQOperand_2: {
2016
53.4k
    add_cs_detail_template_1(MI, op_group, op_num, templ_arg_0);
2017
53.4k
    return;
2018
53.2k
  }
2019
355
  case ARM_OP_GROUP_ComplexRotationOp_180_90:
2020
1.47k
  case ARM_OP_GROUP_ComplexRotationOp_90_0: {
2021
1.47k
    add_cs_detail_template_2(MI, op_group, op_num, templ_arg_0,
2022
1.47k
           templ_arg_1);
2023
1.47k
    return;
2024
355
  }
2025
2.79M
  }
2026
2.72M
  add_cs_detail_general(MI, op_group, op_num);
2027
2.72M
}
2028
2029
void ARM_add_cs_detail_0(MCInst *MI, int /* arm_op_group */ op_group,
2030
       size_t op_num)
2031
2.72M
{
2032
2.72M
  ARM_add_cs_detail(MI, op_group, op_num, 0, 0);
2033
2.72M
}
2034
2035
void ARM_add_cs_detail_1(MCInst *MI, int /* arm_op_group */ op_group,
2036
       size_t op_num, uint64_t templ_arg_0)
2037
53.4k
{
2038
53.4k
  ARM_add_cs_detail(MI, op_group, op_num, templ_arg_0, 0);
2039
53.4k
}
2040
2041
void ARM_add_cs_detail_2(MCInst *MI, int /* arm_op_group */ op_group,
2042
       size_t op_num, uint64_t templ_arg_0,
2043
       uint64_t templ_arg_1)
2044
20.8k
{
2045
20.8k
  ARM_add_cs_detail(MI, op_group, op_num, templ_arg_0, templ_arg_1);
2046
20.8k
}
2047
2048
static void insert_op(MCInst *MI, unsigned index, cs_arm_op op)
2049
11.2k
{
2050
11.2k
  if (!detail_is_set(MI)) {
2051
0
    return;
2052
0
  }
2053
11.2k
  ARM_check_safe_inc(MI);
2054
2055
11.2k
  cs_arm_op *ops = ARM_get_detail(MI)->operands;
2056
11.2k
  int i = ARM_get_detail(MI)->op_count;
2057
11.2k
  if (index == -1) {
2058
955
    ops[i] = op;
2059
955
    ARM_inc_op_count(MI);
2060
955
    return;
2061
955
  }
2062
13.0k
  for (; i > 0 && i > index; --i) {
2063
2.76k
    ops[i] = ops[i - 1];
2064
2.76k
  }
2065
10.3k
  ops[index] = op;
2066
10.3k
  ARM_inc_op_count(MI);
2067
10.3k
}
2068
2069
/// Inserts a register to the detail operands at @index.
2070
/// Already present operands are moved.
2071
/// If @index is -1 the operand is appended.
2072
void ARM_insert_detail_op_reg_at(MCInst *MI, unsigned index, arm_reg Reg,
2073
         cs_ac_type access)
2074
4.75k
{
2075
4.75k
  if (!detail_is_set(MI))
2076
0
    return;
2077
2078
4.75k
  cs_arm_op op;
2079
4.75k
  ARM_setup_op(&op);
2080
4.75k
  op.type = ARM_OP_REG;
2081
4.75k
  op.reg = Reg;
2082
4.75k
  op.access = access;
2083
4.75k
  insert_op(MI, index, op);
2084
4.75k
}
2085
2086
/// Inserts a immediate to the detail operands at @index.
2087
/// Already present operands are moved.
2088
/// If @index is -1 the operand is appended.
2089
void ARM_insert_detail_op_imm_at(MCInst *MI, unsigned index, int64_t Val,
2090
         cs_ac_type access)
2091
6.53k
{
2092
6.53k
  if (!detail_is_set(MI))
2093
0
    return;
2094
6.53k
  ARM_check_safe_inc(MI);
2095
2096
6.53k
  cs_arm_op op;
2097
6.53k
  ARM_setup_op(&op);
2098
6.53k
  op.type = ARM_OP_IMM;
2099
6.53k
  op.imm = Val;
2100
6.53k
  op.access = access;
2101
2102
6.53k
  insert_op(MI, index, op);
2103
6.53k
}
2104
2105
/// Adds a register ARM operand at position OpNum and increases the op_count by
2106
/// one.
2107
void ARM_set_detail_op_reg(MCInst *MI, unsigned OpNum, arm_reg Reg)
2108
1.08M
{
2109
1.08M
  if (!detail_is_set(MI))
2110
0
    return;
2111
1.08M
  ARM_check_safe_inc(MI);
2112
1.08M
  CS_ASSERT_RET(!(map_get_op_type(MI, OpNum) & CS_OP_MEM));
2113
1.08M
  CS_ASSERT_RET(map_get_op_type(MI, OpNum) == CS_OP_REG);
2114
2115
1.08M
  ARM_get_detail_op(MI, 0)->type = ARM_OP_REG;
2116
1.08M
  ARM_get_detail_op(MI, 0)->reg = Reg;
2117
1.08M
  ARM_get_detail_op(MI, 0)->access = map_get_op_access(MI, OpNum);
2118
1.08M
  ARM_inc_op_count(MI);
2119
1.08M
}
2120
2121
/// Adds an immediate ARM operand at position OpNum and increases the op_count
2122
/// by one.
2123
void ARM_set_detail_op_imm(MCInst *MI, unsigned OpNum, arm_op_type ImmType,
2124
         int64_t Imm)
2125
495k
{
2126
495k
  if (!detail_is_set(MI))
2127
0
    return;
2128
495k
  ARM_check_safe_inc(MI);
2129
495k
  CS_ASSERT_RET(!(map_get_op_type(MI, OpNum) & CS_OP_MEM));
2130
495k
  CS_ASSERT_RET(map_get_op_type(MI, OpNum) == CS_OP_IMM);
2131
495k
  CS_ASSERT_RET(ImmType == ARM_OP_IMM || ImmType == ARM_OP_PIMM ||
2132
495k
          ImmType == ARM_OP_CIMM);
2133
2134
495k
  ARM_get_detail_op(MI, 0)->type = ImmType;
2135
495k
  ARM_get_detail_op(MI, 0)->imm = Imm;
2136
495k
  ARM_get_detail_op(MI, 0)->access = map_get_op_access(MI, OpNum);
2137
495k
  ARM_inc_op_count(MI);
2138
495k
}
2139
2140
/// Adds the operand as to the previously added memory operand.
2141
void ARM_set_detail_op_mem_offset(MCInst *MI, unsigned OpNum, uint64_t Val,
2142
          bool subtracted)
2143
27.1k
{
2144
27.1k
  CS_ASSERT_RET(map_get_op_type(MI, OpNum) & CS_OP_MEM);
2145
2146
27.1k
  if (!doing_mem(MI)) {
2147
27.1k
    CS_ASSERT_RET((ARM_get_detail_op(MI, -1) != NULL) &&
2148
27.1k
            (ARM_get_detail_op(MI, -1)->type == ARM_OP_MEM));
2149
27.1k
    ARM_dec_op_count(MI);
2150
27.1k
  }
2151
2152
27.1k
  if ((map_get_op_type(MI, OpNum) & ~CS_OP_MEM) == CS_OP_IMM)
2153
16.2k
    ARM_set_detail_op_mem(MI, OpNum, false, 0, Val);
2154
10.9k
  else if ((map_get_op_type(MI, OpNum) & ~CS_OP_MEM) == CS_OP_REG)
2155
10.9k
    ARM_set_detail_op_mem(MI, OpNum, true, subtracted ? -1 : 1,
2156
10.9k
              Val);
2157
0
  else
2158
0
    CS_ASSERT_RET(0 && "Memory type incorrect.");
2159
27.1k
  ARM_get_detail_op(MI, 0)->subtracted = subtracted;
2160
2161
27.1k
  if (!doing_mem(MI))
2162
27.1k
    ARM_inc_op_count(MI);
2163
27.1k
}
2164
2165
/// Adds a memory ARM operand at position OpNum. op_count is *not* increased by
2166
/// one. This is done by ARM_set_mem_access().
2167
void ARM_set_detail_op_mem(MCInst *MI, unsigned OpNum, bool is_index_reg,
2168
         int scale, uint64_t Val)
2169
389k
{
2170
389k
  if (!detail_is_set(MI))
2171
0
    return;
2172
389k
  CS_ASSERT_RET(map_get_op_type(MI, OpNum) & CS_OP_MEM);
2173
389k
  cs_op_type secondary_type = map_get_op_type(MI, OpNum) & ~CS_OP_MEM;
2174
389k
  switch (secondary_type) {
2175
0
  default:
2176
0
    CS_ASSERT_RET(0 && "Secondary type not supported yet.");
2177
250k
  case CS_OP_REG: {
2178
250k
    CS_ASSERT_RET(secondary_type == CS_OP_REG);
2179
250k
    if (!is_index_reg) {
2180
212k
      ARM_get_detail_op(MI, 0)->mem.base = Val;
2181
212k
      if (MCInst_opIsTying(MI, OpNum) ||
2182
164k
          MCInst_opIsTied(MI, OpNum)) {
2183
        // Base registers can be writeback registers.
2184
        // For this they tie an MC operand which has write
2185
        // access. But this one is never processed in the printer
2186
        // (because it is never emitted). Therefor it is never
2187
        // added to the modified list.
2188
        // Here we check for this case and add the memory register
2189
        // to the modified list.
2190
48.2k
        map_add_implicit_write(
2191
48.2k
          MI, MCInst_getOpVal(MI, OpNum));
2192
48.2k
        MI->flat_insn->detail->writeback = true;
2193
164k
      } else {
2194
        // If the base register is not tied, set the writebak flag to false.
2195
        // Writeback for ARM only refers to the memory base register.
2196
        // But other registers might be marked as tied as well.
2197
164k
        MI->flat_insn->detail->writeback = false;
2198
164k
      }
2199
212k
    } else {
2200
37.5k
      ARM_get_detail_op(MI, 0)->mem.index = Val;
2201
37.5k
    }
2202
250k
    ARM_get_detail_op(MI, 0)->mem.scale = scale;
2203
2204
250k
    break;
2205
250k
  }
2206
139k
  case CS_OP_IMM: {
2207
139k
    CS_ASSERT_RET(secondary_type == CS_OP_IMM);
2208
139k
    if (((int32_t)Val) < 0)
2209
5.85k
      ARM_get_detail_op(MI, 0)->subtracted = true;
2210
139k
    ARM_get_detail_op(MI, 0)->mem.disp = ((int64_t)Val < 0) ? -Val :
2211
139k
                    Val;
2212
139k
    break;
2213
139k
  }
2214
389k
  }
2215
2216
389k
  ARM_get_detail_op(MI, 0)->type = ARM_OP_MEM;
2217
389k
  ARM_get_detail_op(MI, 0)->access = map_get_op_access(MI, OpNum);
2218
389k
}
2219
2220
/// Sets the neon_lane in the previous operand to the value of
2221
/// MI->operands[OpNum] Decrements op_count by 1.
2222
void ARM_set_detail_op_neon_lane(MCInst *MI, unsigned OpNum)
2223
18.4k
{
2224
18.4k
  if (!detail_is_set(MI))
2225
0
    return;
2226
18.4k
  CS_ASSERT_RET(map_get_op_type(MI, OpNum) == CS_OP_IMM);
2227
18.4k
  unsigned Val = MCOperand_getImm(MCInst_getOperand(MI, OpNum));
2228
2229
18.4k
  ARM_get_detail_op(MI, -1)->neon_lane = Val;
2230
18.4k
}
2231
2232
/// Adds a System Register and increments op_count by one.
2233
/// @type ARM_OP_SYSREG, ARM_OP_BANKEDREG, ARM_OP_SYSM...
2234
/// @p Mask is the MSR mask or UINT8_MAX if not set.
2235
void ARM_set_detail_op_sysop(MCInst *MI, int Val, arm_op_type type,
2236
           bool IsOutReg, uint8_t Mask, uint16_t Sysm)
2237
5.46k
{
2238
5.46k
  if (!detail_is_set(MI))
2239
0
    return;
2240
5.46k
  ARM_check_safe_inc(MI);
2241
2242
5.46k
  ARM_get_detail_op(MI, 0)->type = type;
2243
5.46k
  switch (type) {
2244
0
  default:
2245
0
    CS_ASSERT_RET(0 && "Unknown system operand type.");
2246
3.68k
  case ARM_OP_SYSREG:
2247
    // NOLINTBEGIN(clang-analyzer-optin.core.EnumCastOutOfRange)
2248
3.68k
    ARM_get_detail_op(MI, 0)->sysop.reg.mclasssysreg = Val;
2249
    // NOLINTEND(clang-analyzer-optin.core.EnumCastOutOfRange)
2250
3.68k
    break;
2251
1.49k
  case ARM_OP_BANKEDREG:
2252
1.49k
    ARM_get_detail_op(MI, 0)->sysop.reg.bankedreg = Val;
2253
1.49k
    break;
2254
102
  case ARM_OP_SPSR:
2255
279
  case ARM_OP_CPSR:
2256
279
    ARM_get_detail_op(MI, 0)->reg =
2257
279
      type == ARM_OP_SPSR ? ARM_REG_SPSR : ARM_REG_CPSR;
2258
    // NOLINTBEGIN(clang-analyzer-optin.core.EnumCastOutOfRange)
2259
279
    ARM_get_detail_op(MI, 0)->sysop.psr_bits = Val;
2260
    // NOLINTEND(clang-analyzer-optin.core.EnumCastOutOfRange)
2261
279
    break;
2262
5.46k
  }
2263
5.46k
  ARM_get_detail_op(MI, 0)->sysop.sysm = Sysm;
2264
5.46k
  ARM_get_detail_op(MI, 0)->sysop.msr_mask = Mask;
2265
5.46k
  ARM_get_detail_op(MI, 0)->access = IsOutReg ? CS_AC_WRITE : CS_AC_READ;
2266
5.46k
  ARM_inc_op_count(MI);
2267
5.46k
}
2268
2269
/// Transforms the immediate of the operand to a float and stores it.
2270
/// Increments the op_counter by one.
2271
void ARM_set_detail_op_float(MCInst *MI, unsigned OpNum, uint64_t Imm)
2272
425
{
2273
425
  if (!detail_is_set(MI))
2274
0
    return;
2275
425
  ARM_check_safe_inc(MI);
2276
2277
425
  ARM_get_detail_op(MI, 0)->type = ARM_OP_FP;
2278
425
  ARM_get_detail_op(MI, 0)->fp = ARM_AM_getFPImmFloat(Imm);
2279
425
  ARM_inc_op_count(MI);
2280
425
}
2281
2282
#endif