Coverage Report

Created: 2026-09-28 06:34

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/capstonenext/arch/AArch64/AArch64Mapping.c
Line
Count
Source
1
/* Capstone Disassembly Engine */
2
/* By Nguyen Anh Quynh <aquynh@gmail.com>, 2013-2019 */
3
4
#ifdef CAPSTONE_HAS_AARCH64
5
6
#include <stdio.h> // debug
7
#include <string.h>
8
9
#include "capstone/aarch64.h"
10
11
#include "../../cs_simple_types.h"
12
#include "../../Mapping.h"
13
#include "../../MathExtras.h"
14
#include "../../utils.h"
15
16
#include "AArch64AddressingModes.h"
17
#include "AArch64BaseInfo.h"
18
#include "AArch64DisassemblerExtension.h"
19
#include "AArch64Linkage.h"
20
#include "AArch64Mapping.h"
21
22
1.29k
#define CHAR(c) #c[0]
23
24
static float aarch64_exact_fp_to_fp(aarch64_exactfpimm exact)
25
4.58k
{
26
4.58k
  switch (exact) {
27
0
  default:
28
0
    CS_ASSERT(0 && "Not handled.");
29
0
    return 999.0;
30
89
  case AARCH64_EXACTFPIMM_HALF:
31
89
    return 0.5;
32
95
  case AARCH64_EXACTFPIMM_ONE:
33
95
    return 1.0;
34
20
  case AARCH64_EXACTFPIMM_TWO:
35
20
    return 2.0;
36
4.38k
  case AARCH64_EXACTFPIMM_ZERO:
37
4.38k
    return 0.0;
38
4.58k
  }
39
4.58k
}
40
41
#ifndef CAPSTONE_DIET
42
static const aarch64_reg aarch64_flag_regs[] = {
43
  AARCH64_REG_NZCV,
44
};
45
46
static const aarch64_sysreg aarch64_flag_sys_regs[] = {
47
  AARCH64_SYSREG_NZCV, AARCH64_SYSREG_PMOVSCLR_EL0,
48
  AARCH64_SYSREG_PMOVSSET_EL0, AARCH64_SYSREG_SPMOVSCLR_EL0,
49
  AARCH64_SYSREG_SPMOVSSET_EL0
50
};
51
#endif // CAPSTONE_DIET
52
53
static AArch64Layout_VectorLayout sme_reg_to_vas(aarch64_reg reg)
54
0
{
55
0
  switch (reg) {
56
0
  default:
57
0
    return AARCH64LAYOUT_INVALID;
58
0
  case AARCH64_REG_ZAB0:
59
0
    return AARCH64LAYOUT_VL_B;
60
0
  case AARCH64_REG_ZAH0:
61
0
  case AARCH64_REG_ZAH1:
62
0
    return AARCH64LAYOUT_VL_H;
63
0
  case AARCH64_REG_ZAS0:
64
0
  case AARCH64_REG_ZAS1:
65
0
  case AARCH64_REG_ZAS2:
66
0
  case AARCH64_REG_ZAS3:
67
0
    return AARCH64LAYOUT_VL_S;
68
0
  case AARCH64_REG_ZAD0:
69
0
  case AARCH64_REG_ZAD1:
70
0
  case AARCH64_REG_ZAD2:
71
0
  case AARCH64_REG_ZAD3:
72
0
  case AARCH64_REG_ZAD4:
73
0
  case AARCH64_REG_ZAD5:
74
0
  case AARCH64_REG_ZAD6:
75
0
  case AARCH64_REG_ZAD7:
76
0
    return AARCH64LAYOUT_VL_D;
77
0
  case AARCH64_REG_ZAQ0:
78
0
  case AARCH64_REG_ZAQ1:
79
0
  case AARCH64_REG_ZAQ2:
80
0
  case AARCH64_REG_ZAQ3:
81
0
  case AARCH64_REG_ZAQ4:
82
0
  case AARCH64_REG_ZAQ5:
83
0
  case AARCH64_REG_ZAQ6:
84
0
  case AARCH64_REG_ZAQ7:
85
0
  case AARCH64_REG_ZAQ8:
86
0
  case AARCH64_REG_ZAQ9:
87
0
  case AARCH64_REG_ZAQ10:
88
0
  case AARCH64_REG_ZAQ11:
89
0
  case AARCH64_REG_ZAQ12:
90
0
  case AARCH64_REG_ZAQ13:
91
0
  case AARCH64_REG_ZAQ14:
92
0
  case AARCH64_REG_ZAQ15:
93
0
    return AARCH64LAYOUT_VL_Q;
94
0
  case AARCH64_REG_ZA:
95
0
    return AARCH64LAYOUT_VL_COMPLETE;
96
0
  }
97
0
}
98
99
void AArch64_init_mri(MCRegisterInfo *MRI)
100
5.93k
{
101
5.93k
  MCRegisterInfo_InitMCRegisterInfo(
102
5.93k
    MRI, AArch64RegDesc, AARCH64_REG_ENDING, 0, 0,
103
5.93k
    AArch64MCRegisterClasses, ARR_SIZE(AArch64MCRegisterClasses), 0,
104
5.93k
    0, AArch64RegDiffLists, 0, AArch64SubRegIdxLists,
105
5.93k
    ARR_SIZE(AArch64SubRegIdxLists), 0);
106
5.93k
}
107
108
/// Sets up a new SME matrix operand at the currently active detail operand.
109
static void setup_sme_operand(MCInst *MI)
110
14.1k
{
111
14.1k
  if (!detail_is_set(MI))
112
0
    return;
113
114
14.1k
  AArch64_get_detail_op(MI, 0)->type = AARCH64_OP_SME;
115
14.1k
  AArch64_get_detail_op(MI, 0)->sme.type = AARCH64_SME_OP_INVALID;
116
14.1k
  AArch64_get_detail_op(MI, 0)->sme.tile = AARCH64_REG_INVALID;
117
14.1k
  AArch64_get_detail_op(MI, 0)->sme.slice_reg = AARCH64_REG_INVALID;
118
14.1k
  AArch64_get_detail_op(MI, 0)->sme.slice_offset.imm =
119
14.1k
    AARCH64_SLICE_IMM_INVALID;
120
14.1k
  AArch64_get_detail_op(MI, 0)->sme.slice_offset.imm_range.first =
121
14.1k
    AARCH64_SLICE_IMM_RANGE_INVALID;
122
14.1k
  AArch64_get_detail_op(MI, 0)->sme.slice_offset.imm_range.offset =
123
14.1k
    AARCH64_SLICE_IMM_RANGE_INVALID;
124
14.1k
}
125
126
static void setup_pred_operand(MCInst *MI)
127
39.3k
{
128
39.3k
  if (!detail_is_set(MI))
129
0
    return;
130
131
39.3k
  AArch64_get_detail_op(MI, 0)->type = AARCH64_OP_PRED;
132
39.3k
  AArch64_get_detail_op(MI, 0)->pred.imm_index = -1;
133
39.3k
}
134
135
const insn_map aarch64_insns[] = {
136
#include "AArch64GenCSMappingInsn.inc"
137
};
138
139
static const name_map insn_alias_mnem_map[] = {
140
#include "AArch64GenCSAliasMnemMap.inc"
141
  { AARCH64_INS_ALIAS_CFP, "cfp" },
142
  { AARCH64_INS_ALIAS_DVP, "dvp" },
143
  { AARCH64_INS_ALIAS_COSP, "cosp" },
144
  { AARCH64_INS_ALIAS_CPP, "cpp" },
145
  { AARCH64_INS_ALIAS_IC, "ic" },
146
  { AARCH64_INS_ALIAS_DC, "dc" },
147
  { AARCH64_INS_ALIAS_AT, "at" },
148
  { AARCH64_INS_ALIAS_TLBI, "tlbi" },
149
  { AARCH64_INS_ALIAS_TLBIP, "tlbip" },
150
  { AARCH64_INS_ALIAS_RPRFM, "rprfm" },
151
  { AARCH64_INS_ALIAS_LSL, "lsl" },
152
  { AARCH64_INS_ALIAS_SBFX, "sbfx" },
153
  { AARCH64_INS_ALIAS_UBFX, "ubfx" },
154
  { AARCH64_INS_ALIAS_SBFIZ, "sbfiz" },
155
  { AARCH64_INS_ALIAS_UBFIZ, "ubfiz" },
156
  { AARCH64_INS_ALIAS_BFC, "bfc" },
157
  { AARCH64_INS_ALIAS_BFI, "bfi" },
158
  { AARCH64_INS_ALIAS_BFXIL, "bfxil" },
159
  { AARCH64_INS_ALIAS_END, NULL },
160
};
161
162
static const char *get_custom_reg_alias(unsigned reg)
163
36.9k
{
164
36.9k
  switch (reg) {
165
75
  case AARCH64_REG_X29:
166
75
    return "fp";
167
938
  case AARCH64_REG_X30:
168
938
    return "lr";
169
36.9k
  }
170
35.9k
  return NULL;
171
36.9k
}
172
173
/// Very annoyingly LLVM hard codes the vector layout post-fixes into the asm string.
174
/// In this function we check for these cases and add the vectorlayout/arrangement
175
/// specifier.
176
void AArch64_add_vas(MCInst *MI, const SStream *OS)
177
186k
{
178
186k
  if (!detail_is_set(MI)) {
179
0
    return;
180
0
  }
181
182
186k
  if (AArch64_get_detail(MI)->op_count == 0) {
183
531
    return;
184
531
  }
185
186k
  if (MCInst_getOpcode(MI) == AArch64_MUL53HI ||
186
186k
      MCInst_getOpcode(MI) == AArch64_MUL53LO) {
187
    // Proprietary Apple instrucions.
188
0
    AArch64_get_detail(MI)->operands[0].vas = AARCH64LAYOUT_VL_2D;
189
0
    AArch64_get_detail(MI)->operands[1].vas = AARCH64LAYOUT_VL_2D;
190
0
    return;
191
0
  }
192
193
  // Search for r".[0-9]{1,2}[bhsdq]\W"
194
  // with poor mans regex
195
186k
  const char *vl_ptr = strchr(OS->buffer, '.');
196
395k
  while (vl_ptr) {
197
    // Number after dot?
198
209k
    unsigned num = 0;
199
209k
    if (strchr("1248", vl_ptr[1])) {
200
56.9k
      num = atoi(vl_ptr + 1);
201
56.9k
      vl_ptr = num > 9 ? vl_ptr + 3 : vl_ptr + 2;
202
152k
    } else {
203
152k
      vl_ptr++;
204
152k
    }
205
206
    // Layout letter
207
209k
    char letter = '\0';
208
209k
    if (strchr("bhsdq", vl_ptr[0])) {
209
203k
      letter = vl_ptr[0];
210
203k
    }
211
209k
    if (!letter) {
212
6.13k
      goto next_dot_continue;
213
6.13k
    }
214
215
203k
    AArch64Layout_VectorLayout vl = AARCH64LAYOUT_INVALID;
216
203k
    switch (letter) {
217
0
    default:
218
0
      CS_ASSERT_RET(0 && "Unhandled vector layout letter.");
219
0
      return;
220
49.3k
    case 'b':
221
49.3k
      vl = AARCH64LAYOUT_VL_B;
222
49.3k
      break;
223
53.2k
    case 'h':
224
53.2k
      vl = AARCH64LAYOUT_VL_H;
225
53.2k
      break;
226
51.1k
    case 's':
227
51.1k
      vl = AARCH64LAYOUT_VL_S;
228
51.1k
      break;
229
48.1k
    case 'd':
230
48.1k
      vl = AARCH64LAYOUT_VL_D;
231
48.1k
      break;
232
1.15k
    case 'q':
233
1.15k
      vl = AARCH64LAYOUT_VL_Q;
234
1.15k
      break;
235
203k
    }
236
203k
    vl |= (num << 8);
237
238
    // Determine op index by searching for trailing commata after op string
239
203k
    uint32_t op_idx = 0;
240
203k
    const char *comma_ptr = strchr(OS->buffer, ',');
241
203k
    ;
242
428k
    while (comma_ptr && comma_ptr < vl_ptr) {
243
225k
      ++op_idx;
244
225k
      comma_ptr = strchr(comma_ptr + 1, ',');
245
225k
    }
246
203k
    if (!comma_ptr) {
247
      // Last op doesn't have a trailing commata.
248
30.5k
      op_idx = AArch64_get_detail(MI)->op_count - 1;
249
30.5k
    }
250
203k
    if (op_idx >= AArch64_get_detail(MI)->op_count) {
251
      // A memory operand with a commata in [base, dist]
252
6.09k
      op_idx = AArch64_get_detail(MI)->op_count - 1;
253
6.09k
    }
254
255
    // Search for the operand this one belongs to.
256
203k
    cs_aarch64_op *op = &AArch64_get_detail(MI)->operands[op_idx];
257
203k
    if ((op->type != AARCH64_OP_REG &&
258
29.0k
         op->type != AARCH64_OP_SME) ||
259
185k
        op->vas != AARCH64LAYOUT_INVALID) {
260
157k
      goto next_dot_continue;
261
157k
    }
262
45.8k
    op->vas = vl;
263
264
209k
next_dot_continue:
265
209k
    vl_ptr = strchr(vl_ptr + 1, '.');
266
209k
  }
267
186k
}
268
269
const char *AArch64_reg_name(csh handle, unsigned int reg)
270
36.9k
{
271
36.9k
  int syntax_opt = ((cs_struct *)(uintptr_t)handle)->syntax;
272
36.9k
  const char *alias = get_custom_reg_alias(reg);
273
36.9k
  if ((syntax_opt & CS_OPT_SYNTAX_CS_REG_ALIAS) && alias)
274
0
    return alias;
275
276
36.9k
  if (((cs_struct *)(uintptr_t)handle)->syntax &
277
36.9k
      CS_OPT_SYNTAX_NOREGNAME) {
278
0
    return AArch64_LLVM_getRegisterName(reg, AArch64_NoRegAltName);
279
0
  }
280
  // TODO Add options for the other register names
281
36.9k
  return AArch64_LLVM_getRegisterName(reg, AArch64_NoRegAltName);
282
36.9k
}
283
284
void AArch64_setup_op(cs_aarch64_op *op)
285
3.06M
{
286
3.06M
  memset(op, 0, sizeof(cs_aarch64_op));
287
3.06M
  op->type = AARCH64_OP_INVALID;
288
3.06M
  op->vector_index = -1;
289
3.06M
}
290
291
void AArch64_init_cs_detail(MCInst *MI)
292
190k
{
293
190k
  if (detail_is_set(MI)) {
294
190k
    memset(get_detail(MI), 0,
295
190k
           offsetof(cs_detail, aarch64) + sizeof(cs_aarch64));
296
3.24M
    for (int i = 0; i < ARR_SIZE(AArch64_get_detail(MI)->operands);
297
3.05M
         i++)
298
3.05M
      AArch64_setup_op(&AArch64_get_detail(MI)->operands[i]);
299
190k
    AArch64_get_detail(MI)->cc = AArch64CC_Invalid;
300
190k
  }
301
190k
}
302
303
/// Unfortunately, the AARCH64 definitions do not indicate in any way
304
/// (exception are the instruction identifiers), if memory accesses
305
/// is post- or pre-indexed.
306
/// So the only generic way to determine, if the memory access is in
307
/// post-indexed addressing mode, is by search for "<membase>], #<memdisp>" in
308
/// @p OS.
309
/// Searching the asm string to determine such a property is enormously ugly
310
/// and wastes resources.
311
/// Sorry, I know and do feel bad about it. But for now it works.
312
static bool AArch64_check_post_index_am(const MCInst *MI, const SStream *OS)
313
186k
{
314
186k
  if (AArch64_get_detail(MI)->post_index) {
315
0
    return true;
316
0
  }
317
186k
  cs_aarch64_op *memop = NULL;
318
642k
  for (int i = 0; i < AArch64_get_detail(MI)->op_count; ++i) {
319
522k
    if (AArch64_get_detail(MI)->operands[i].type & CS_OP_MEM) {
320
66.5k
      memop = &AArch64_get_detail(MI)->operands[i];
321
66.5k
      break;
322
66.5k
    }
323
522k
  }
324
186k
  if (!memop)
325
120k
    return false;
326
66.5k
  if (memop->mem.base == AARCH64_REG_INVALID) {
327
    // Load/Store from/to label. Has no register base.
328
3.61k
    return false;
329
3.61k
  }
330
62.9k
  const char *membase = AArch64_LLVM_getRegisterName(
331
62.9k
    memop->mem.base, AArch64_NoRegAltName);
332
62.9k
  int64_t memdisp = memop->mem.disp;
333
62.9k
  SStream pattern = { 0 };
334
62.9k
  SStream_concat(&pattern, membase);
335
62.9k
  SStream_concat(&pattern, "], ");
336
62.9k
  printInt32Bang(&pattern, memdisp);
337
62.9k
  return strstr(OS->buffer, pattern.buffer) != NULL;
338
66.5k
}
339
340
static void AArch64_check_updates_flags(MCInst *MI)
341
186k
{
342
186k
#ifndef CAPSTONE_DIET
343
186k
  if (!detail_is_set(MI))
344
0
    return;
345
186k
  cs_detail *detail = get_detail(MI);
346
  // Implicitly written registers
347
203k
  for (int i = 0; i < detail->regs_write_count; ++i) {
348
24.1k
    if (detail->regs_write[i] == 0)
349
0
      break;
350
41.2k
    for (int j = 0; j < ARR_SIZE(aarch64_flag_regs); ++j) {
351
24.1k
      if (detail->regs_write[i] == aarch64_flag_regs[j]) {
352
7.11k
        detail->aarch64.update_flags = true;
353
7.11k
        return;
354
7.11k
      }
355
24.1k
    }
356
24.1k
  }
357
685k
  for (int i = 0; i < detail->aarch64.op_count; ++i) {
358
506k
    if (detail->aarch64.operands[i].type == AARCH64_OP_SYSREG &&
359
4.22k
        detail->aarch64.operands[i].sysop.sub_type ==
360
4.22k
          AARCH64_OP_REG_MSR) {
361
13.7k
      for (int j = 0; j < ARR_SIZE(aarch64_flag_sys_regs);
362
11.4k
           ++j)
363
11.4k
        if (detail->aarch64.operands[i]
364
11.4k
              .sysop.reg.sysreg ==
365
11.4k
            aarch64_flag_sys_regs[j]) {
366
84
          detail->aarch64.update_flags = true;
367
84
          return;
368
84
        }
369
504k
    } else if (detail->aarch64.operands[i].type == AARCH64_OP_REG &&
370
329k
         detail->aarch64.operands[i].access & CS_AC_WRITE) {
371
327k
      for (int j = 0; j < ARR_SIZE(aarch64_flag_regs); ++j)
372
163k
        if (detail->aarch64.operands[i].reg ==
373
163k
            aarch64_flag_regs[j]) {
374
0
          detail->aarch64.update_flags = true;
375
0
          return;
376
0
        }
377
163k
    }
378
506k
  }
379
179k
#endif // CAPSTONE_DIET
380
179k
}
381
382
/// Surfaces system-register accesses which alias an architectural
383
/// register Capstone models. MRS Xt, NZCV reads (and MSR NZCV, Xt
384
/// writes) the same flags every flag-setting instruction implicitly
385
/// defines, but the generated implicit register lists cannot express
386
/// it: MRS/MSR are single generic instructions whose system register
387
/// is an immediate operand, so LLVM's static Uses/Defs do not depend
388
/// on it. Add the aliased register to the implicit lists so
389
/// cs_regs_access() reports it like any other NZCV reader/writer.
390
/// The 128-bit pair forms MRRS/MSRR are deliberately excluded: NZCV
391
/// is not a valid 128-bit system register, so those encodings are
392
/// UNDEFINED rather than flag accesses.
393
static void AArch64_add_sysreg_alias_access(MCInst *MI)
394
186k
{
395
186k
#ifndef CAPSTONE_DIET
396
186k
  if (!detail_is_set(MI))
397
0
    return;
398
186k
  const unsigned opcode = MCInst_getOpcode(MI);
399
186k
  if (opcode != AArch64_MRS && opcode != AArch64_MSR)
400
183k
    return;
401
3.00k
  cs_detail *detail = get_detail(MI);
402
9.02k
  for (int i = 0; i < detail->aarch64.op_count; ++i) {
403
6.01k
    const cs_aarch64_op *op = &detail->aarch64.operands[i];
404
6.01k
    if (op->type != AARCH64_OP_SYSREG)
405
3.00k
      continue;
406
3.00k
    if (op->sysop.sub_type == AARCH64_OP_REG_MRS &&
407
757
        op->sysop.reg.sysreg == AARCH64_SYSREG_NZCV)
408
4
      map_add_implicit_read(MI, AARCH64_REG_NZCV);
409
3.00k
    else if (op->sysop.sub_type == AARCH64_OP_REG_MSR &&
410
2.25k
       op->sysop.reg.sysreg == AARCH64_SYSREG_NZCV)
411
7
      map_add_implicit_write(MI, AARCH64_REG_NZCV);
412
3.00k
  }
413
3.00k
#endif // CAPSTONE_DIET
414
3.00k
}
415
416
static aarch64_shifter id_to_shifter(unsigned Opcode)
417
436
{
418
436
  switch (Opcode) {
419
0
  default:
420
0
    return AARCH64_SFT_INVALID;
421
82
  case AArch64_RORVXr:
422
142
  case AArch64_RORVWr:
423
142
    return AARCH64_SFT_ROR_REG;
424
13
  case AArch64_LSRVXr:
425
59
  case AArch64_LSRVWr:
426
59
    return AARCH64_SFT_LSR_REG;
427
25
  case AArch64_LSLVXr:
428
94
  case AArch64_LSLVWr:
429
94
    return AARCH64_SFT_LSL_REG;
430
74
  case AArch64_ASRVXr:
431
141
  case AArch64_ASRVWr:
432
141
    return AARCH64_SFT_ASR_REG;
433
436
  }
434
436
}
435
436
static void add_non_alias_details(MCInst *MI)
437
163k
{
438
163k
  unsigned Opcode = MCInst_getOpcode(MI);
439
163k
  switch (Opcode) {
440
154k
  default:
441
154k
    break;
442
154k
  case AArch64_RORVXr:
443
142
  case AArch64_RORVWr:
444
155
  case AArch64_LSRVXr:
445
201
  case AArch64_LSRVWr:
446
226
  case AArch64_LSLVXr:
447
295
  case AArch64_LSLVWr:
448
369
  case AArch64_ASRVXr:
449
436
  case AArch64_ASRVWr:
450
436
    if (AArch64_get_detail(MI)->op_count != 3) {
451
0
      return;
452
0
    }
453
436
    CS_ASSERT_RET(AArch64_get_detail_op(MI, -1)->type ==
454
436
            AARCH64_OP_REG);
455
456
    // The shift by register instructions don't set the shift value properly.
457
    // Correct it here.
458
436
    uint64_t shift = AArch64_get_detail_op(MI, -1)->reg;
459
436
    cs_aarch64_op *op1 = AArch64_get_detail_op(MI, -2);
460
436
    op1->shift.type = id_to_shifter(Opcode);
461
436
    op1->shift.value = shift;
462
436
    AArch64_dec_op_count(MI);
463
436
    break;
464
70
  case AArch64_FCMPDri:
465
87
  case AArch64_FCMPEDri:
466
119
  case AArch64_FCMPEHri:
467
163
  case AArch64_FCMPESri:
468
199
  case AArch64_FCMPHri:
469
234
  case AArch64_FCMPSri:
470
234
    AArch64_insert_detail_op_reg_at(MI, -1, AARCH64_REG_XZR,
471
234
            CS_AC_READ);
472
234
    break;
473
37
  case AArch64_CMEQv16i8rz:
474
221
  case AArch64_CMEQv1i64rz:
475
515
  case AArch64_CMEQv2i32rz:
476
723
  case AArch64_CMEQv2i64rz:
477
748
  case AArch64_CMEQv4i16rz:
478
805
  case AArch64_CMEQv4i32rz:
479
810
  case AArch64_CMEQv8i16rz:
480
1.09k
  case AArch64_CMEQv8i8rz:
481
1.14k
  case AArch64_CMGEv16i8rz:
482
1.16k
  case AArch64_CMGEv1i64rz:
483
1.31k
  case AArch64_CMGEv2i32rz:
484
1.54k
  case AArch64_CMGEv2i64rz:
485
1.57k
  case AArch64_CMGEv4i16rz:
486
1.65k
  case AArch64_CMGEv4i32rz:
487
1.72k
  case AArch64_CMGEv8i16rz:
488
2.16k
  case AArch64_CMGEv8i8rz:
489
2.37k
  case AArch64_CMGTv16i8rz:
490
2.39k
  case AArch64_CMGTv1i64rz:
491
2.39k
  case AArch64_CMGTv2i32rz:
492
2.49k
  case AArch64_CMGTv2i64rz:
493
2.57k
  case AArch64_CMGTv4i16rz:
494
2.86k
  case AArch64_CMGTv4i32rz:
495
3.04k
  case AArch64_CMGTv8i16rz:
496
3.51k
  case AArch64_CMGTv8i8rz:
497
3.52k
  case AArch64_CMLEv16i8rz:
498
3.62k
  case AArch64_CMLEv1i64rz:
499
3.65k
  case AArch64_CMLEv2i32rz:
500
3.65k
  case AArch64_CMLEv2i64rz:
501
3.67k
  case AArch64_CMLEv4i16rz:
502
3.72k
  case AArch64_CMLEv4i32rz:
503
3.76k
  case AArch64_CMLEv8i16rz:
504
4.11k
  case AArch64_CMLEv8i8rz:
505
4.19k
  case AArch64_CMLTv16i8rz:
506
4.27k
  case AArch64_CMLTv1i64rz:
507
4.31k
  case AArch64_CMLTv2i32rz:
508
4.43k
  case AArch64_CMLTv2i64rz:
509
4.47k
  case AArch64_CMLTv4i16rz:
510
4.54k
  case AArch64_CMLTv4i32rz:
511
4.62k
  case AArch64_CMLTv8i16rz:
512
4.62k
  case AArch64_CMLTv8i8rz:
513
4.62k
    AArch64_insert_detail_op_imm_at(MI, -1, 0);
514
4.62k
    break;
515
69
  case AArch64_FCMEQ_PPzZ0_D:
516
89
  case AArch64_FCMEQ_PPzZ0_H:
517
260
  case AArch64_FCMEQ_PPzZ0_S:
518
380
  case AArch64_FCMEQv1i16rz:
519
441
  case AArch64_FCMEQv1i32rz:
520
498
  case AArch64_FCMEQv1i64rz:
521
510
  case AArch64_FCMEQv2i32rz:
522
516
  case AArch64_FCMEQv2i64rz:
523
528
  case AArch64_FCMEQv4i16rz:
524
552
  case AArch64_FCMEQv4i32rz:
525
594
  case AArch64_FCMEQv8i16rz:
526
631
  case AArch64_FCMGE_PPzZ0_D:
527
799
  case AArch64_FCMGE_PPzZ0_H:
528
1.09k
  case AArch64_FCMGE_PPzZ0_S:
529
1.21k
  case AArch64_FCMGEv1i16rz:
530
1.26k
  case AArch64_FCMGEv1i32rz:
531
1.31k
  case AArch64_FCMGEv1i64rz:
532
1.81k
  case AArch64_FCMGEv2i32rz:
533
1.83k
  case AArch64_FCMGEv2i64rz:
534
1.87k
  case AArch64_FCMGEv4i16rz:
535
1.89k
  case AArch64_FCMGEv4i32rz:
536
2.49k
  case AArch64_FCMGEv8i16rz:
537
2.54k
  case AArch64_FCMGT_PPzZ0_D:
538
2.55k
  case AArch64_FCMGT_PPzZ0_H:
539
2.60k
  case AArch64_FCMGT_PPzZ0_S:
540
2.63k
  case AArch64_FCMGTv1i16rz:
541
2.67k
  case AArch64_FCMGTv1i32rz:
542
2.68k
  case AArch64_FCMGTv1i64rz:
543
2.70k
  case AArch64_FCMGTv2i32rz:
544
2.71k
  case AArch64_FCMGTv2i64rz:
545
2.73k
  case AArch64_FCMGTv4i16rz:
546
2.82k
  case AArch64_FCMGTv4i32rz:
547
3.09k
  case AArch64_FCMGTv8i16rz:
548
3.13k
  case AArch64_FCMLE_PPzZ0_D:
549
3.17k
  case AArch64_FCMLE_PPzZ0_H:
550
3.20k
  case AArch64_FCMLE_PPzZ0_S:
551
3.52k
  case AArch64_FCMLEv1i16rz:
552
3.53k
  case AArch64_FCMLEv1i32rz:
553
3.55k
  case AArch64_FCMLEv1i64rz:
554
3.56k
  case AArch64_FCMLEv2i32rz:
555
3.57k
  case AArch64_FCMLEv2i64rz:
556
3.64k
  case AArch64_FCMLEv4i16rz:
557
3.70k
  case AArch64_FCMLEv4i32rz:
558
3.70k
  case AArch64_FCMLEv8i16rz:
559
3.75k
  case AArch64_FCMLT_PPzZ0_D:
560
3.77k
  case AArch64_FCMLT_PPzZ0_H:
561
3.81k
  case AArch64_FCMLT_PPzZ0_S:
562
3.84k
  case AArch64_FCMLTv1i16rz:
563
3.90k
  case AArch64_FCMLTv1i32rz:
564
3.94k
  case AArch64_FCMLTv1i64rz:
565
3.96k
  case AArch64_FCMLTv2i32rz:
566
3.97k
  case AArch64_FCMLTv2i64rz:
567
3.98k
  case AArch64_FCMLTv4i16rz:
568
4.00k
  case AArch64_FCMLTv4i32rz:
569
4.13k
  case AArch64_FCMLTv8i16rz:
570
4.14k
  case AArch64_FCMNE_PPzZ0_D:
571
4.18k
  case AArch64_FCMNE_PPzZ0_H:
572
4.23k
  case AArch64_FCMNE_PPzZ0_S: {
573
4.23k
    aarch64_sysop sysop = { 0 };
574
4.23k
    sysop.imm.exactfpimm = AARCH64_EXACTFPIMM_ZERO;
575
4.23k
    sysop.sub_type = AARCH64_OP_EXACTFPIMM;
576
4.23k
    AArch64_insert_detail_op_sys(MI, -1, sysop, AARCH64_OP_SYSIMM);
577
4.23k
    break;
578
4.18k
  }
579
163k
  }
580
163k
}
581
582
#define ADD_ZA0_S \
583
534
  { \
584
534
    aarch64_op_sme za0_op = { \
585
534
      .type = AARCH64_SME_OP_TILE, \
586
534
      .tile = AARCH64_REG_ZAS0, \
587
534
      .slice_reg = AARCH64_REG_INVALID, \
588
534
      .slice_offset = { -1 }, \
589
534
      .has_range_offset = false, \
590
534
      .is_vertical = false, \
591
534
    }; \
592
534
    AArch64_insert_detail_op_sme(MI, -1, za0_op); \
593
534
    AArch64_get_detail_op(MI, -1)->vas = AARCH64LAYOUT_VL_S; \
594
534
    AArch64_get_detail_op(MI, -1)->access = CS_AC_WRITE; \
595
534
  }
596
#define ADD_ZA1_S \
597
460
  { \
598
460
    aarch64_op_sme za1_op = { \
599
460
      .type = AARCH64_SME_OP_TILE, \
600
460
      .tile = AARCH64_REG_ZAS1, \
601
460
      .slice_reg = AARCH64_REG_INVALID, \
602
460
      .slice_offset = { -1 }, \
603
460
      .has_range_offset = false, \
604
460
      .is_vertical = false, \
605
460
    }; \
606
460
    AArch64_insert_detail_op_sme(MI, -1, za1_op); \
607
460
    AArch64_get_detail_op(MI, -1)->vas = AARCH64LAYOUT_VL_S; \
608
460
    AArch64_get_detail_op(MI, -1)->access = CS_AC_WRITE; \
609
460
  }
610
#define ADD_ZA2_S \
611
369
  { \
612
369
    aarch64_op_sme za2_op = { \
613
369
      .type = AARCH64_SME_OP_TILE, \
614
369
      .tile = AARCH64_REG_ZAS2, \
615
369
      .slice_reg = AARCH64_REG_INVALID, \
616
369
      .slice_offset = { -1 }, \
617
369
      .has_range_offset = false, \
618
369
      .is_vertical = false, \
619
369
    }; \
620
369
    AArch64_insert_detail_op_sme(MI, -1, za2_op); \
621
369
    AArch64_get_detail_op(MI, -1)->vas = AARCH64LAYOUT_VL_S; \
622
369
    AArch64_get_detail_op(MI, -1)->access = CS_AC_WRITE; \
623
369
  }
624
#define ADD_ZA3_S \
625
343
  { \
626
343
    aarch64_op_sme za3_op = { \
627
343
      .type = AARCH64_SME_OP_TILE, \
628
343
      .tile = AARCH64_REG_ZAS3, \
629
343
      .slice_reg = AARCH64_REG_INVALID, \
630
343
      .slice_offset = { -1 }, \
631
343
      .has_range_offset = false, \
632
343
      .is_vertical = false, \
633
343
    }; \
634
343
    AArch64_insert_detail_op_sme(MI, -1, za3_op); \
635
343
    AArch64_get_detail_op(MI, -1)->vas = AARCH64LAYOUT_VL_S; \
636
343
    AArch64_get_detail_op(MI, -1)->access = CS_AC_WRITE; \
637
343
  }
638
#define ADD_ZA \
639
195
  { \
640
195
    aarch64_op_sme za_op = { \
641
195
      .type = AARCH64_SME_OP_TILE, \
642
195
      .tile = AARCH64_REG_ZA, \
643
195
      .slice_reg = AARCH64_REG_INVALID, \
644
195
      .slice_offset = { -1 }, \
645
195
      .has_range_offset = false, \
646
195
      .is_vertical = false, \
647
195
    }; \
648
195
    AArch64_insert_detail_op_sme(MI, -1, za_op); \
649
195
    AArch64_get_detail_op(MI, -1)->access = CS_AC_WRITE; \
650
195
  }
651
652
static void AArch64_add_not_defined_ops(MCInst *MI, const SStream *OS)
653
186k
{
654
186k
  if (!detail_is_set(MI))
655
0
    return;
656
657
186k
  if (!MI->flat_insn->is_alias || !MI->flat_insn->usesAliasDetails) {
658
163k
    add_non_alias_details(MI);
659
163k
    return;
660
163k
  }
661
662
  // Alias details
663
22.5k
  switch (MI->flat_insn->alias_id) {
664
17.4k
  default:
665
17.4k
    return;
666
17.4k
  case AARCH64_INS_ALIAS_ROR:
667
15
    if (AArch64_get_detail(MI)->op_count != 3) {
668
0
      return;
669
0
    }
670
    // The ROR alias doesn't set the shift value properly.
671
    // Correct it here.
672
15
    bool reg_shift = AArch64_get_detail_op(MI, -1)->type ==
673
15
         AARCH64_OP_REG;
674
15
    uint64_t shift = reg_shift ?
675
0
           AArch64_get_detail_op(MI, -1)->reg :
676
15
           AArch64_get_detail_op(MI, -1)->imm;
677
15
    cs_aarch64_op *op1 = AArch64_get_detail_op(MI, -2);
678
15
    op1->shift.type = reg_shift ? AARCH64_SFT_ROR_REG :
679
15
                AARCH64_SFT_ROR;
680
15
    op1->shift.value = shift;
681
15
    AArch64_dec_op_count(MI);
682
15
    break;
683
215
  case AARCH64_INS_ALIAS_FMOV:
684
215
    if (AArch64_get_detail_op(MI, -1)->type == AARCH64_OP_FP) {
685
215
      break;
686
215
    }
687
0
    AArch64_insert_detail_op_float_at(MI, -1, 0.0f, CS_AC_READ);
688
0
    break;
689
172
  case AARCH64_INS_ALIAS_LD1:
690
322
  case AARCH64_INS_ALIAS_LD1R:
691
609
  case AARCH64_INS_ALIAS_LD2:
692
702
  case AARCH64_INS_ALIAS_LD2R:
693
2.07k
  case AARCH64_INS_ALIAS_LD3:
694
2.10k
  case AARCH64_INS_ALIAS_LD3R:
695
2.55k
  case AARCH64_INS_ALIAS_LD4:
696
2.69k
  case AARCH64_INS_ALIAS_LD4R:
697
2.91k
  case AARCH64_INS_ALIAS_ST1:
698
3.26k
  case AARCH64_INS_ALIAS_ST2:
699
3.33k
  case AARCH64_INS_ALIAS_ST3:
700
3.57k
  case AARCH64_INS_ALIAS_ST4: {
701
    // Add post-index disp
702
3.57k
    const char *disp_off = strrchr(OS->buffer, '#');
703
3.57k
    if (!disp_off)
704
0
      return;
705
3.57k
    unsigned disp = atoi(disp_off + 1);
706
3.57k
    AArch64_get_detail_op(MI, -1)->type = AARCH64_OP_MEM;
707
3.57k
    AArch64_get_detail_op(MI, -1)->mem.base =
708
3.57k
      AArch64_get_detail_op(MI, -1)->reg;
709
3.57k
    AArch64_get_detail_op(MI, -1)->mem.disp = disp;
710
3.57k
    AArch64_get_detail(MI)->post_index = true;
711
3.57k
    break;
712
3.57k
  }
713
4
  case AARCH64_INS_ALIAS_GCSB:
714
    // TODO
715
    // Only CSYNC is defined in LLVM. So we need to add it.
716
    //     /* 2825 */ "gcsb dsync\0"
717
4
    break;
718
104
  case AARCH64_INS_ALIAS_SMSTART:
719
211
  case AARCH64_INS_ALIAS_SMSTOP: {
720
211
    const char *disp_off = NULL;
721
211
    disp_off = strstr(OS->buffer, "smstart\tza");
722
211
    if (disp_off) {
723
21
      aarch64_sysop sysop = { 0 };
724
21
      sysop.alias.svcr = AARCH64_SVCR_SVCRZA;
725
21
      sysop.sub_type = AARCH64_OP_SVCR;
726
21
      AArch64_insert_detail_op_sys(MI, -1, sysop,
727
21
                 AARCH64_OP_SYSALIAS);
728
21
      return;
729
21
    }
730
190
    disp_off = strstr(OS->buffer, "smstart\tsm");
731
190
    if (disp_off) {
732
65
      aarch64_sysop sysop = { 0 };
733
65
      sysop.alias.svcr = AARCH64_SVCR_SVCRSM;
734
65
      sysop.sub_type = AARCH64_OP_SVCR;
735
65
      AArch64_insert_detail_op_sys(MI, -1, sysop,
736
65
                 AARCH64_OP_SYSALIAS);
737
65
      return;
738
65
    }
739
125
    break;
740
190
  }
741
1.11k
  case AARCH64_INS_ALIAS_ZERO: {
742
    // It is ugly, but the hard coded search patterns do it for now.
743
1.11k
    const char *disp_off = NULL;
744
745
1.11k
    disp_off = strstr(OS->buffer, "{za}");
746
1.11k
    if (disp_off) {
747
195
      ADD_ZA;
748
195
      return;
749
195
    }
750
915
    disp_off = strstr(OS->buffer, "{za1.h}");
751
915
    if (disp_off) {
752
50
      aarch64_op_sme op = {
753
50
        .type = AARCH64_SME_OP_TILE,
754
50
        .tile = AARCH64_REG_ZAH1,
755
50
        .slice_reg = AARCH64_REG_INVALID,
756
50
        .slice_offset = { -1 },
757
50
        .has_range_offset = false,
758
50
        .is_vertical = false,
759
50
      };
760
50
      AArch64_insert_detail_op_sme(MI, -1, op);
761
50
      AArch64_get_detail_op(MI, -1)->vas = AARCH64LAYOUT_VL_H;
762
50
      AArch64_get_detail_op(MI, -1)->access = CS_AC_WRITE;
763
50
      return;
764
50
    }
765
865
    disp_off = strstr(OS->buffer, "{za0.h}");
766
865
    if (disp_off) {
767
78
      aarch64_op_sme op = {
768
78
        .type = AARCH64_SME_OP_TILE,
769
78
        .tile = AARCH64_REG_ZAH0,
770
78
        .slice_reg = AARCH64_REG_INVALID,
771
78
        .slice_offset = { -1 },
772
78
        .has_range_offset = false,
773
78
        .is_vertical = false,
774
78
      };
775
78
      AArch64_insert_detail_op_sme(MI, -1, op);
776
78
      AArch64_get_detail_op(MI, -1)->vas = AARCH64LAYOUT_VL_H;
777
78
      AArch64_get_detail_op(MI, -1)->access = CS_AC_WRITE;
778
78
      return;
779
78
    }
780
787
    disp_off = strstr(OS->buffer, "{za0.s}");
781
787
    if (disp_off) {
782
25
      ADD_ZA0_S;
783
25
      return;
784
25
    }
785
762
    disp_off = strstr(OS->buffer, "{za1.s}");
786
762
    if (disp_off) {
787
33
      ADD_ZA1_S;
788
33
      return;
789
33
    }
790
729
    disp_off = strstr(OS->buffer, "{za2.s}");
791
729
    if (disp_off) {
792
51
      ADD_ZA2_S;
793
51
      return;
794
51
    }
795
678
    disp_off = strstr(OS->buffer, "{za3.s}");
796
678
    if (disp_off) {
797
94
      ADD_ZA3_S;
798
94
      return;
799
94
    }
800
584
    disp_off = strstr(OS->buffer, "{za0.s,za1.s}");
801
584
    if (disp_off) {
802
197
      ADD_ZA0_S;
803
197
      ADD_ZA1_S;
804
197
      return;
805
197
    }
806
387
    disp_off = strstr(OS->buffer, "{za0.s,za3.s}");
807
387
    if (disp_off) {
808
15
      ADD_ZA0_S;
809
15
      ADD_ZA3_S;
810
15
      return;
811
15
    }
812
372
    disp_off = strstr(OS->buffer, "{za1.s,za2.s}");
813
372
    if (disp_off) {
814
9
      ADD_ZA1_S;
815
9
      ADD_ZA2_S;
816
9
      return;
817
9
    }
818
363
    disp_off = strstr(OS->buffer, "{za2.s,za3.s}");
819
363
    if (disp_off) {
820
28
      ADD_ZA2_S;
821
28
      ADD_ZA3_S;
822
28
      return;
823
28
    }
824
335
    disp_off = strstr(OS->buffer, "{za0.s,za1.s,za2.s}");
825
335
    if (disp_off) {
826
129
      ADD_ZA0_S;
827
129
      ADD_ZA1_S;
828
129
      ADD_ZA2_S;
829
129
      return;
830
129
    }
831
206
    disp_off = strstr(OS->buffer, "{za0.s,za1.s,za3.s}");
832
206
    if (disp_off) {
833
54
      ADD_ZA0_S;
834
54
      ADD_ZA1_S;
835
54
      ADD_ZA3_S;
836
54
      return;
837
54
    }
838
152
    disp_off = strstr(OS->buffer, "{za0.s,za2.s,za3.s}");
839
152
    if (disp_off) {
840
114
      ADD_ZA0_S;
841
114
      ADD_ZA2_S;
842
114
      ADD_ZA3_S;
843
114
      return;
844
114
    }
845
38
    disp_off = strstr(OS->buffer, "{za1.s,za2.s,za3.s}");
846
38
    if (disp_off) {
847
38
      ADD_ZA1_S;
848
38
      ADD_ZA2_S;
849
38
      ADD_ZA3_S;
850
38
      return;
851
38
    }
852
0
    break;
853
38
  }
854
22.5k
  }
855
22.5k
}
856
857
void AArch64_set_instr_map_data(MCInst *MI)
858
190k
{
859
190k
  map_cs_id(MI, aarch64_insns, ARR_SIZE(aarch64_insns));
860
190k
  map_implicit_reads(MI, aarch64_insns);
861
190k
  map_implicit_writes(MI, aarch64_insns);
862
190k
  map_groups(MI, aarch64_insns);
863
190k
}
864
865
bool AArch64_getInstruction(csh handle, const uint8_t *code, size_t code_len,
866
          MCInst *MI, uint16_t *size, uint64_t address,
867
          void *info)
868
190k
{
869
190k
  AArch64_init_cs_detail(MI);
870
190k
  DecodeStatus Result = AArch64_LLVM_getInstruction(
871
190k
    handle, code, code_len, MI, size, address, info);
872
190k
  AArch64_set_instr_map_data(MI);
873
190k
  if (Result == MCDisassembler_SoftFail) {
874
4.14k
    MCInst_setSoftFail(MI);
875
4.14k
  }
876
190k
  return Result != MCDisassembler_Fail;
877
190k
}
878
879
/// Patches the register names with Capstone specific alias.
880
/// Those are common alias for registers (e.g. x30 = lr)
881
/// which are not set in LLVM.
882
static void patch_cs_reg_alias(char *asm_str)
883
0
{
884
0
  char *src = asm_str;
885
0
  size_t src_len = strlen(src);
886
0
  char *dst = asm_str;
887
888
0
  while (*src && src_len >= 3) {
889
0
    if (src[0] == 'x' && src[1] == '2' && src[2] == '9') {
890
      // Don't replace the "x29" inside a "0x29" hex literal.
891
0
      if (src > asm_str && src[-1] == '0') {
892
0
        *dst++ = *src++;
893
0
        *dst++ = *src++;
894
0
        *dst++ = *src++;
895
0
        src_len -= 3;
896
0
        continue;
897
0
      }
898
      // x29 = fp
899
0
      *dst++ = 'f';
900
0
      *dst++ = 'p';
901
0
      src += 3;
902
0
      src_len -= 3;
903
0
      continue;
904
0
    }
905
906
0
    if (src[0] == 'x' && src[1] == '3' && src[2] == '0') {
907
      // Don't replace the "x30" inside a "0x30" hex literal.
908
0
      if (src > asm_str && src[-1] == '0') {
909
0
        *dst++ = *src++;
910
0
        *dst++ = *src++;
911
0
        *dst++ = *src++;
912
0
        src_len -= 3;
913
0
        continue;
914
0
      }
915
      // x30 = lr
916
0
      *dst++ = 'l';
917
0
      *dst++ = 'r';
918
0
      src += 3;
919
0
      src_len -= 3;
920
0
      continue;
921
0
    }
922
923
0
    *dst++ = *src++;
924
0
    src_len--;
925
0
  }
926
927
0
  while (*src) {
928
0
    *dst++ = *src++;
929
0
  }
930
0
  *dst = '\0';
931
0
}
932
933
/// Adds group to the instruction which are not defined in LLVM.
934
static void AArch64_add_cs_groups(MCInst *MI)
935
186k
{
936
186k
  unsigned Opcode = MI->flat_insn->id;
937
186k
  switch (Opcode) {
938
182k
  default:
939
182k
    return;
940
182k
  case AARCH64_INS_SVC:
941
28
    add_group(MI, AARCH64_GRP_INT);
942
28
    break;
943
23
  case AARCH64_INS_SMC:
944
2.75k
  case AARCH64_INS_MSR:
945
3.51k
  case AARCH64_INS_MRS:
946
3.51k
    add_group(MI, AARCH64_GRP_PRIVILEGE);
947
3.51k
    break;
948
97
  case AARCH64_INS_RET:
949
132
  case AARCH64_INS_RETAA:
950
149
  case AARCH64_INS_RETAB:
951
149
    add_group(MI, AARCH64_GRP_RET);
952
149
    break;
953
186k
  }
954
186k
}
955
956
static void AArch64_correct_mem_access(MCInst *MI)
957
186k
{
958
186k
#ifndef CAPSTONE_DIET
959
186k
  if (!detail_is_set(MI))
960
0
    return;
961
186k
  cs_ac_type access =
962
186k
    aarch64_insns[MI->Opcode].suppl_info.aarch64.mem_acc;
963
186k
  if (access == CS_AC_INVALID) {
964
120k
    return;
965
120k
  }
966
138k
  for (int i = 0; i < AArch64_get_detail(MI)->op_count; ++i) {
967
137k
    if (AArch64_get_detail_op(MI, -i)->type == AARCH64_OP_MEM) {
968
65.0k
      AArch64_get_detail_op(MI, -i)->access = access;
969
65.0k
      return;
970
65.0k
    }
971
137k
  }
972
66.3k
#endif
973
66.3k
}
974
975
void AArch64_printer(MCInst *MI, SStream *O, void * /* MCRegisterInfo* */ info)
976
186k
{
977
186k
  MCRegisterInfo *MRI = (MCRegisterInfo *)info;
978
186k
  MI->MRI = MRI;
979
186k
  MI->fillDetailOps = detail_is_set(MI);
980
186k
  MI->flat_insn->usesAliasDetails = map_use_alias_details(MI);
981
186k
  AArch64_LLVM_printInstruction(MI, O, info);
982
186k
  if (detail_is_set(MI)) {
983
186k
    if (AArch64_get_detail(MI)->is_doing_sme) {
984
      // Last operand still needs to be closed.
985
3.48k
      AArch64_get_detail(MI)->is_doing_sme = false;
986
3.48k
      AArch64_inc_op_count(MI);
987
3.48k
    }
988
186k
    AArch64_get_detail(MI)->post_index =
989
186k
      AArch64_check_post_index_am(MI, O);
990
186k
  }
991
186k
  AArch64_check_updates_flags(MI);
992
186k
  AArch64_add_sysreg_alias_access(MI);
993
186k
  map_set_alias_id(MI, O, insn_alias_mnem_map,
994
186k
       ARR_SIZE(insn_alias_mnem_map) - 1);
995
186k
  int syntax_opt = MI->csh->syntax;
996
186k
  if (syntax_opt & CS_OPT_SYNTAX_CS_REG_ALIAS)
997
0
    patch_cs_reg_alias(O->buffer);
998
186k
  AArch64_add_not_defined_ops(MI, O);
999
186k
  AArch64_add_cs_groups(MI);
1000
186k
  AArch64_add_vas(MI, O);
1001
186k
  AArch64_correct_mem_access(MI);
1002
186k
}
1003
1004
// given internal insn id, return public instruction info
1005
void AArch64_get_insn_id(cs_struct *h, cs_insn *insn, unsigned int id)
1006
186k
{
1007
  // Done after disassembly
1008
186k
  return;
1009
186k
}
1010
1011
static const char *const insn_name_maps[] = {
1012
#include "AArch64GenCSMappingInsnName.inc"
1013
};
1014
1015
const char *AArch64_insn_name(csh handle, unsigned int id)
1016
186k
{
1017
186k
#ifndef CAPSTONE_DIET
1018
186k
  if (id < AARCH64_INS_ALIAS_END && id > AARCH64_INS_ALIAS_BEGIN) {
1019
0
    if (id - AARCH64_INS_ALIAS_BEGIN >=
1020
0
        ARR_SIZE(insn_alias_mnem_map))
1021
0
      return NULL;
1022
1023
0
    return insn_alias_mnem_map[id - AARCH64_INS_ALIAS_BEGIN - 1]
1024
0
      .name;
1025
0
  }
1026
186k
  if (id >= AARCH64_INS_ENDING)
1027
0
    return NULL;
1028
1029
186k
  if (id < ARR_SIZE(insn_name_maps))
1030
186k
    return insn_name_maps[id];
1031
1032
  // not found
1033
0
  return NULL;
1034
#else
1035
  return NULL;
1036
#endif
1037
186k
}
1038
1039
#ifndef CAPSTONE_DIET
1040
static const name_map group_name_maps[] = {
1041
  // generic groups
1042
  { AARCH64_GRP_INVALID, NULL },
1043
  { AARCH64_GRP_JUMP, "jump" },
1044
  { AARCH64_GRP_CALL, "call" },
1045
  { AARCH64_GRP_RET, "return" },
1046
  { AARCH64_GRP_PRIVILEGE, "privilege" },
1047
  { AARCH64_GRP_INT, "int" },
1048
  { AARCH64_GRP_BRANCH_RELATIVE, "branch_relative" },
1049
1050
// architecture-specific groups
1051
#include "AArch64GenCSFeatureName.inc"
1052
};
1053
#endif
1054
1055
const char *AArch64_group_name(csh handle, unsigned int id)
1056
145k
{
1057
145k
#ifndef CAPSTONE_DIET
1058
145k
  return id2name(group_name_maps, ARR_SIZE(group_name_maps), id);
1059
#else
1060
  return NULL;
1061
#endif
1062
145k
}
1063
1064
// map instruction name to public instruction ID
1065
aarch64_insn AArch64_map_insn(const char *name)
1066
0
{
1067
0
  unsigned int i;
1068
1069
0
  for (i = 1; i < ARR_SIZE(insn_name_maps); i++) {
1070
0
    if (!strcmp(name, insn_name_maps[i]))
1071
0
      return i;
1072
0
  }
1073
1074
  // not found
1075
0
  return AARCH64_INS_INVALID;
1076
0
}
1077
1078
#ifndef CAPSTONE_DIET
1079
1080
static const map_insn_ops insn_operands[] = {
1081
#include "AArch64GenCSMappingInsnOp.inc"
1082
};
1083
1084
void AArch64_reg_access(const cs_insn *insn, cs_regs regs_read,
1085
      uint8_t *regs_read_count, cs_regs regs_write,
1086
      uint8_t *regs_write_count)
1087
0
{
1088
0
  uint8_t i;
1089
0
  uint8_t read_count, write_count;
1090
0
  cs_aarch64 *aarch64 = &(insn->detail->aarch64);
1091
1092
0
  read_count = insn->detail->regs_read_count;
1093
0
  write_count = insn->detail->regs_write_count;
1094
1095
  // implicit registers
1096
0
  memcpy(regs_read, insn->detail->regs_read,
1097
0
         read_count * sizeof(insn->detail->regs_read[0]));
1098
0
  memcpy(regs_write, insn->detail->regs_write,
1099
0
         write_count * sizeof(insn->detail->regs_write[0]));
1100
1101
  // explicit registers
1102
0
  for (i = 0; i < aarch64->op_count; i++) {
1103
0
    cs_aarch64_op *op = &(aarch64->operands[i]);
1104
0
    switch ((int)op->type) {
1105
0
    case AARCH64_OP_REG:
1106
0
      if ((op->access & CS_AC_READ) &&
1107
0
          !arr_exist(regs_read, read_count, op->reg)) {
1108
0
        regs_read[read_count] = (uint16_t)op->reg;
1109
0
        read_count++;
1110
0
      }
1111
0
      if ((op->access & CS_AC_WRITE) &&
1112
0
          !arr_exist(regs_write, write_count, op->reg)) {
1113
0
        regs_write[write_count] = (uint16_t)op->reg;
1114
0
        write_count++;
1115
0
      }
1116
0
      break;
1117
0
    case AARCH64_OP_MEM:
1118
      // registers appeared in memory references always being read
1119
0
      if ((op->mem.base != AARCH64_REG_INVALID) &&
1120
0
          !arr_exist(regs_read, read_count, op->mem.base)) {
1121
0
        regs_read[read_count] = (uint16_t)op->mem.base;
1122
0
        read_count++;
1123
0
      }
1124
0
      if ((op->mem.index != AARCH64_REG_INVALID) &&
1125
0
          !arr_exist(regs_read, read_count, op->mem.index)) {
1126
0
        regs_read[read_count] = (uint16_t)op->mem.index;
1127
0
        read_count++;
1128
0
      }
1129
0
      if ((insn->detail->writeback) &&
1130
0
          (op->mem.base != AARCH64_REG_INVALID) &&
1131
0
          !arr_exist(regs_write, write_count, op->mem.base)) {
1132
0
        regs_write[write_count] =
1133
0
          (uint16_t)op->mem.base;
1134
0
        write_count++;
1135
0
      }
1136
0
      break;
1137
0
    case AARCH64_OP_SME:
1138
0
      if ((op->access & CS_AC_READ) &&
1139
0
          (op->sme.tile != AARCH64_REG_INVALID) &&
1140
0
          !arr_exist(regs_read, read_count, op->sme.tile)) {
1141
0
        regs_read[read_count] = (uint16_t)op->sme.tile;
1142
0
        read_count++;
1143
0
      }
1144
0
      if ((op->access & CS_AC_WRITE) &&
1145
0
          (op->sme.tile != AARCH64_REG_INVALID) &&
1146
0
          !arr_exist(regs_write, write_count, op->sme.tile)) {
1147
0
        regs_write[write_count] =
1148
0
          (uint16_t)op->sme.tile;
1149
0
        write_count++;
1150
0
      }
1151
0
      if ((op->sme.slice_reg != AARCH64_REG_INVALID) &&
1152
0
          !arr_exist(regs_read, read_count,
1153
0
               op->sme.slice_reg)) {
1154
0
        regs_read[read_count] =
1155
0
          (uint16_t)op->sme.slice_reg;
1156
0
        read_count++;
1157
0
      }
1158
0
      break;
1159
0
    case AARCH64_OP_PRED:
1160
0
      if ((op->access & CS_AC_READ) &&
1161
0
          (op->pred.reg != AARCH64_REG_INVALID) &&
1162
0
          !arr_exist(regs_read, read_count, op->pred.reg)) {
1163
0
        regs_read[read_count] = (uint16_t)op->pred.reg;
1164
0
        read_count++;
1165
0
      }
1166
0
      if ((op->access & CS_AC_WRITE) &&
1167
0
          (op->pred.reg != AARCH64_REG_INVALID) &&
1168
0
          !arr_exist(regs_write, write_count, op->pred.reg)) {
1169
0
        regs_write[write_count] =
1170
0
          (uint16_t)op->pred.reg;
1171
0
        write_count++;
1172
0
      }
1173
0
      if ((op->pred.vec_select != AARCH64_REG_INVALID) &&
1174
0
          !arr_exist(regs_read, read_count,
1175
0
               op->pred.vec_select)) {
1176
0
        regs_read[read_count] =
1177
0
          (uint16_t)op->pred.vec_select;
1178
0
        read_count++;
1179
0
      }
1180
0
      break;
1181
0
    default:
1182
0
      break;
1183
0
    }
1184
0
    if (op->shift.type >= AARCH64_SFT_LSL_REG) {
1185
0
      if (!arr_exist(regs_read, read_count,
1186
0
               op->shift.value)) {
1187
0
        regs_read[read_count] =
1188
0
          (uint16_t)op->shift.value;
1189
0
        read_count++;
1190
0
      }
1191
0
    }
1192
0
  }
1193
1194
0
  switch (insn->alias_id) {
1195
0
  default:
1196
0
    break;
1197
0
  case AARCH64_INS_ALIAS_RET:
1198
0
    regs_read[read_count] = AARCH64_REG_X30;
1199
0
    read_count++;
1200
0
    break;
1201
0
  }
1202
1203
0
  *regs_read_count = read_count;
1204
0
  *regs_write_count = write_count;
1205
0
}
1206
#endif
1207
1208
static AArch64Layout_VectorLayout get_vl_by_suffix(const char suffix)
1209
110k
{
1210
110k
  switch (suffix) {
1211
33.0k
  default:
1212
33.0k
    return AARCH64LAYOUT_INVALID;
1213
17.8k
  case 'b':
1214
17.8k
  case 'B':
1215
17.8k
    return AARCH64LAYOUT_VL_B;
1216
21.9k
  case 'h':
1217
21.9k
  case 'H':
1218
21.9k
    return AARCH64LAYOUT_VL_H;
1219
16.6k
  case 's':
1220
16.6k
  case 'S':
1221
16.6k
    return AARCH64LAYOUT_VL_S;
1222
20.7k
  case 'd':
1223
20.7k
  case 'D':
1224
20.7k
    return AARCH64LAYOUT_VL_D;
1225
577
  case 'q':
1226
577
  case 'Q':
1227
577
    return AARCH64LAYOUT_VL_Q;
1228
110k
  }
1229
110k
}
1230
1231
static unsigned get_vec_list_num_regs(MCInst *MI, unsigned Reg)
1232
34.9k
{
1233
  // Work out how many registers there are in the list (if there is an actual
1234
  // list).
1235
34.9k
  unsigned NumRegs = 1;
1236
34.9k
  if (MCRegisterClass_contains(
1237
34.9k
        MCRegisterInfo_getRegClass(MI->MRI, AArch64_DDRegClassID),
1238
34.9k
        Reg) ||
1239
34.6k
      MCRegisterClass_contains(
1240
34.6k
        MCRegisterInfo_getRegClass(MI->MRI, AArch64_ZPR2RegClassID),
1241
34.6k
        Reg) ||
1242
29.4k
      MCRegisterClass_contains(
1243
29.4k
        MCRegisterInfo_getRegClass(MI->MRI, AArch64_QQRegClassID),
1244
29.4k
        Reg) ||
1245
25.7k
      MCRegisterClass_contains(
1246
25.7k
        MCRegisterInfo_getRegClass(MI->MRI, AArch64_PPR2RegClassID),
1247
25.7k
        Reg) ||
1248
24.9k
      MCRegisterClass_contains(
1249
24.9k
        MCRegisterInfo_getRegClass(MI->MRI,
1250
24.9k
                 AArch64_ZPR2StridedRegClassID),
1251
24.9k
        Reg))
1252
12.0k
    NumRegs = 2;
1253
22.9k
  else if (MCRegisterClass_contains(
1254
22.9k
       MCRegisterInfo_getRegClass(MI->MRI,
1255
22.9k
                AArch64_DDDRegClassID),
1256
22.9k
       Reg) ||
1257
22.5k
     MCRegisterClass_contains(
1258
22.5k
       MCRegisterInfo_getRegClass(MI->MRI,
1259
22.5k
                AArch64_ZPR3RegClassID),
1260
22.5k
       Reg) ||
1261
21.9k
     MCRegisterClass_contains(
1262
21.9k
       MCRegisterInfo_getRegClass(MI->MRI,
1263
21.9k
                AArch64_QQQRegClassID),
1264
21.9k
       Reg))
1265
5.46k
    NumRegs = 3;
1266
17.5k
  else if (MCRegisterClass_contains(
1267
17.5k
       MCRegisterInfo_getRegClass(MI->MRI,
1268
17.5k
                AArch64_DDDDRegClassID),
1269
17.5k
       Reg) ||
1270
17.2k
     MCRegisterClass_contains(
1271
17.2k
       MCRegisterInfo_getRegClass(MI->MRI,
1272
17.2k
                AArch64_ZPR4RegClassID),
1273
17.2k
       Reg) ||
1274
13.8k
     MCRegisterClass_contains(
1275
13.8k
       MCRegisterInfo_getRegClass(MI->MRI,
1276
13.8k
                AArch64_QQQQRegClassID),
1277
13.8k
       Reg) ||
1278
10.6k
     MCRegisterClass_contains(
1279
10.6k
       MCRegisterInfo_getRegClass(
1280
10.6k
         MI->MRI, AArch64_ZPR4StridedRegClassID),
1281
10.6k
       Reg))
1282
7.21k
    NumRegs = 4;
1283
34.9k
  return NumRegs;
1284
34.9k
}
1285
1286
static unsigned get_vec_list_stride(MCInst *MI, unsigned Reg)
1287
34.9k
{
1288
34.9k
  unsigned Stride = 1;
1289
34.9k
  if (MCRegisterClass_contains(
1290
34.9k
        MCRegisterInfo_getRegClass(MI->MRI,
1291
34.9k
                 AArch64_ZPR2StridedRegClassID),
1292
34.9k
        Reg))
1293
1.92k
    Stride = 8;
1294
33.0k
  else if (MCRegisterClass_contains(
1295
33.0k
       MCRegisterInfo_getRegClass(
1296
33.0k
         MI->MRI, AArch64_ZPR4StridedRegClassID),
1297
33.0k
       Reg))
1298
333
    Stride = 4;
1299
34.9k
  return Stride;
1300
34.9k
}
1301
1302
static unsigned get_vec_list_first_reg(MCInst *MI, unsigned RegL)
1303
34.9k
{
1304
34.9k
  unsigned Reg = RegL;
1305
  // Now forget about the list and find out what the first register is.
1306
34.9k
  if (MCRegisterInfo_getSubReg(MI->MRI, RegL, AArch64_dsub0))
1307
1.00k
    Reg = MCRegisterInfo_getSubReg(MI->MRI, RegL, AArch64_dsub0);
1308
33.9k
  else if (MCRegisterInfo_getSubReg(MI->MRI, RegL, AArch64_qsub0))
1309
11.3k
    Reg = MCRegisterInfo_getSubReg(MI->MRI, RegL, AArch64_qsub0);
1310
22.5k
  else if (MCRegisterInfo_getSubReg(MI->MRI, RegL, AArch64_zsub0))
1311
11.4k
    Reg = MCRegisterInfo_getSubReg(MI->MRI, RegL, AArch64_zsub0);
1312
11.1k
  else if (MCRegisterInfo_getSubReg(MI->MRI, RegL, AArch64_psub0))
1313
820
    Reg = MCRegisterInfo_getSubReg(MI->MRI, RegL, AArch64_psub0);
1314
1315
  // If it's a D-reg, we need to promote it to the equivalent Q-reg before
1316
  // printing (otherwise getRegisterName fails).
1317
34.9k
  if (MCRegisterClass_contains(MCRegisterInfo_getRegClass(
1318
34.9k
               MI->MRI, AArch64_FPR64RegClassID),
1319
34.9k
             Reg)) {
1320
1.24k
    const MCRegisterClass *FPR128RC = MCRegisterInfo_getRegClass(
1321
1.24k
      MI->MRI, AArch64_FPR128RegClassID);
1322
1.24k
    Reg = MCRegisterInfo_getMatchingSuperReg(
1323
1.24k
      MI->MRI, Reg, AArch64_dsub, FPR128RC);
1324
1.24k
  }
1325
34.9k
  return Reg;
1326
34.9k
}
1327
1328
static bool is_vector_reg(unsigned Reg)
1329
118k
{
1330
118k
  if ((Reg >= AArch64_Q0) && (Reg <= AArch64_Q31))
1331
39.3k
    return true;
1332
78.8k
  else if ((Reg >= AArch64_Z0) && (Reg <= AArch64_Z31))
1333
77.0k
    return true;
1334
1.81k
  else if ((Reg >= AArch64_P0) && (Reg <= AArch64_P15))
1335
1.81k
    return true;
1336
0
  return false;
1337
118k
}
1338
1339
static unsigned getNextVectorRegister(unsigned Reg, unsigned Stride /* = 1 */)
1340
79.7k
{
1341
197k
  while (Stride--) {
1342
118k
    if (!is_vector_reg(Reg)) {
1343
0
      CS_ASSERT(0 && "Vector register expected!");
1344
0
      return 0;
1345
0
    }
1346
    // Vector lists can wrap around.
1347
118k
    else if (Reg == AArch64_Q31)
1348
1.11k
      Reg = AArch64_Q0;
1349
    // Vector lists can wrap around.
1350
117k
    else if (Reg == AArch64_Z31)
1351
1.52k
      Reg = AArch64_Z0;
1352
    // Vector lists can wrap around.
1353
115k
    else if (Reg == AArch64_P15)
1354
340
      Reg = AArch64_P0;
1355
115k
    else
1356
      // Assume ordered registers
1357
115k
      ++Reg;
1358
118k
  }
1359
79.7k
  return Reg;
1360
79.7k
}
1361
1362
static aarch64_extender llvm_to_cs_ext(AArch64_AM_ShiftExtendType ExtType)
1363
10.1k
{
1364
10.1k
  switch (ExtType) {
1365
7.36k
  default:
1366
7.36k
    return AARCH64_EXT_INVALID;
1367
1.24k
  case AArch64_AM_UXTB:
1368
1.24k
    return AARCH64_EXT_UXTB;
1369
180
  case AArch64_AM_UXTH:
1370
180
    return AARCH64_EXT_UXTH;
1371
278
  case AArch64_AM_UXTW:
1372
278
    return AARCH64_EXT_UXTW;
1373
412
  case AArch64_AM_UXTX:
1374
412
    return AARCH64_EXT_UXTX;
1375
61
  case AArch64_AM_SXTB:
1376
61
    return AARCH64_EXT_SXTB;
1377
380
  case AArch64_AM_SXTH:
1378
380
    return AARCH64_EXT_SXTH;
1379
155
  case AArch64_AM_SXTW:
1380
155
    return AARCH64_EXT_SXTW;
1381
90
  case AArch64_AM_SXTX:
1382
90
    return AARCH64_EXT_SXTX;
1383
10.1k
  }
1384
10.1k
}
1385
1386
static aarch64_shifter llvm_to_cs_shift(AArch64_AM_ShiftExtendType ShiftExtType)
1387
7.36k
{
1388
7.36k
  switch (ShiftExtType) {
1389
0
  default:
1390
0
    return AARCH64_SFT_INVALID;
1391
4.41k
  case AArch64_AM_LSL:
1392
4.41k
    return AARCH64_SFT_LSL;
1393
1.35k
  case AArch64_AM_LSR:
1394
1.35k
    return AARCH64_SFT_LSR;
1395
712
  case AArch64_AM_ASR:
1396
712
    return AARCH64_SFT_ASR;
1397
616
  case AArch64_AM_ROR:
1398
616
    return AARCH64_SFT_ROR;
1399
266
  case AArch64_AM_MSL:
1400
266
    return AARCH64_SFT_MSL;
1401
7.36k
  }
1402
7.36k
}
1403
1404
/// Initializes or finishes a memory operand of Capstone (depending on \p
1405
/// status). A memory operand in Capstone can be assembled by two LLVM operands.
1406
/// E.g. the base register and the immediate disponent.
1407
void AArch64_set_mem_access(MCInst *MI, bool status)
1408
215k
{
1409
215k
  if (!detail_is_set(MI))
1410
0
    return;
1411
215k
  set_doing_mem(MI, status);
1412
215k
  if (status) {
1413
107k
    if (AArch64_get_detail(MI)->op_count > 0 &&
1414
107k
        AArch64_get_detail_op(MI, -1)->type == AARCH64_OP_MEM &&
1415
41.2k
        AArch64_get_detail_op(MI, -1)->mem.index ==
1416
41.2k
          AARCH64_REG_INVALID &&
1417
41.1k
        AArch64_get_detail_op(MI, -1)->mem.disp == 0) {
1418
      // Previous memory operand not done yet. Select it.
1419
41.1k
      AArch64_dec_op_count(MI);
1420
41.1k
      return;
1421
41.1k
    }
1422
1423
    // Init a new one.
1424
66.5k
    AArch64_get_detail_op(MI, 0)->type = AARCH64_OP_MEM;
1425
66.5k
    AArch64_get_detail_op(MI, 0)->mem.base = AARCH64_REG_INVALID;
1426
66.5k
    AArch64_get_detail_op(MI, 0)->mem.index = AARCH64_REG_INVALID;
1427
66.5k
    AArch64_get_detail_op(MI, 0)->mem.disp = 0;
1428
1429
66.5k
#ifndef CAPSTONE_DIET
1430
66.5k
    uint8_t access =
1431
66.5k
      map_get_op_access(MI, AArch64_get_detail(MI)->op_count);
1432
66.5k
    AArch64_get_detail_op(MI, 0)->access = access;
1433
66.5k
#endif
1434
107k
  } else {
1435
    // done, select the next operand slot
1436
107k
    AArch64_inc_op_count(MI);
1437
107k
  }
1438
215k
}
1439
1440
/// Common prefix for all AArch64_add_cs_detail_* functions
1441
static bool add_cs_detail_begin(MCInst *MI, unsigned op_num)
1442
570k
{
1443
570k
  if (!detail_is_set(MI) || !map_fill_detail_ops(MI))
1444
0
    return false;
1445
1446
570k
  if (AArch64_get_detail(MI)->is_doing_sme) {
1447
    // Unset the flag if there is no bound operand anymore.
1448
60.1k
    if (!(map_get_op_type(MI, op_num) & CS_OP_BOUND)) {
1449
44.8k
      AArch64_get_detail(MI)->is_doing_sme = false;
1450
44.8k
      AArch64_inc_op_count(MI);
1451
44.8k
    }
1452
60.1k
  }
1453
570k
  return true;
1454
570k
}
1455
1456
/// Fills cs_detail with the data of the operand.
1457
/// This function handles operands which's original printer function has no
1458
/// specialities.
1459
void AArch64_add_cs_detail_0(MCInst *MI, aarch64_op_group op_group,
1460
           unsigned OpNum)
1461
347k
{
1462
347k
  if (!add_cs_detail_begin(MI, OpNum))
1463
0
    return;
1464
1465
  // Fill cs_detail
1466
347k
  switch (op_group) {
1467
0
  default:
1468
0
    printf("ERROR: Operand group %d not handled!\n", op_group);
1469
0
    CS_ASSERT_RET(0);
1470
246k
  case AArch64_OP_GROUP_Operand: {
1471
246k
    cs_op_type primary_op_type = map_get_op_type(MI, OpNum) &
1472
246k
               ~(CS_OP_MEM | CS_OP_BOUND);
1473
246k
    switch (primary_op_type) {
1474
0
    default:
1475
0
      printf("Unhandled operand type 0x%x\n",
1476
0
             primary_op_type);
1477
0
      CS_ASSERT_RET(0);
1478
214k
    case AARCH64_OP_REG:
1479
214k
      AArch64_set_detail_op_reg(MI, OpNum,
1480
214k
              MCInst_getOpVal(MI, OpNum));
1481
214k
      break;
1482
31.5k
    case AARCH64_OP_IMM:
1483
31.5k
      AArch64_set_detail_op_imm(MI, OpNum, AARCH64_OP_IMM,
1484
31.5k
              MCInst_getOpVal(MI, OpNum));
1485
31.5k
      break;
1486
381
    case AARCH64_OP_FP: {
1487
      // printOperand does not handle FP operands. But sometimes
1488
      // is used to print FP operands as normal immediate.
1489
381
      AArch64_get_detail_op(MI, 0)->type = AARCH64_OP_IMM;
1490
381
      AArch64_get_detail_op(MI, 0)->imm =
1491
381
        MCInst_getOpVal(MI, OpNum);
1492
381
      AArch64_get_detail_op(MI, 0)->access =
1493
381
        map_get_op_access(MI, OpNum);
1494
381
      AArch64_inc_op_count(MI);
1495
381
      break;
1496
0
    }
1497
246k
    }
1498
246k
    break;
1499
246k
  }
1500
246k
  case AArch64_OP_GROUP_AddSubImm: {
1501
1.96k
    unsigned Val = (MCInst_getOpVal(MI, OpNum) & 0xfff);
1502
1.96k
    AArch64_set_detail_op_imm(MI, OpNum, AARCH64_OP_IMM, Val);
1503
    // Shift is added in printShifter()
1504
1.96k
    break;
1505
246k
  }
1506
0
  case AArch64_OP_GROUP_AdrLabel: {
1507
0
    if (MCOperand_isImm(MCInst_getOperand(MI, OpNum))) {
1508
0
      int64_t Offset = MCInst_getOpVal(MI, OpNum);
1509
0
      AArch64_set_detail_op_imm(MI, OpNum, AARCH64_OP_IMM,
1510
0
              (MI->address & -4) + Offset);
1511
0
    } else {
1512
      // Expression
1513
0
      AArch64_set_detail_op_imm(
1514
0
        MI, OpNum, AARCH64_OP_IMM,
1515
0
        MCOperand_isImm(MCInst_getOperand(MI, OpNum)));
1516
0
    }
1517
0
    break;
1518
246k
  }
1519
0
  case AArch64_OP_GROUP_AdrpLabel: {
1520
0
    if (MCOperand_isImm(MCInst_getOperand(MI, OpNum))) {
1521
0
      int64_t Offset = MCInst_getOpVal(MI, OpNum) * 4096;
1522
0
      AArch64_set_detail_op_imm(MI, OpNum, AARCH64_OP_IMM,
1523
0
              (MI->address & -4096) +
1524
0
                Offset);
1525
0
    } else {
1526
      // Expression
1527
0
      AArch64_set_detail_op_imm(
1528
0
        MI, OpNum, AARCH64_OP_IMM,
1529
0
        MCOperand_isImm(MCInst_getOperand(MI, OpNum)));
1530
0
    }
1531
0
    break;
1532
246k
  }
1533
5.10k
  case AArch64_OP_GROUP_AdrAdrpLabel: {
1534
5.10k
    if (!MCOperand_isImm(MCInst_getOperand(MI, OpNum))) {
1535
      // Expression
1536
0
      AArch64_set_detail_op_imm(
1537
0
        MI, OpNum, AARCH64_OP_IMM,
1538
0
        MCOperand_isImm(MCInst_getOperand(MI, OpNum)));
1539
0
      break;
1540
0
    }
1541
5.10k
    int64_t Offset = MCInst_getOpVal(MI, OpNum);
1542
5.10k
    uint64_t Address = MI->address;
1543
5.10k
    if (MCInst_getOpcode(MI) == AArch64_ADRP) {
1544
860
      Offset = Offset * 4096;
1545
860
      Address = Address & -4096;
1546
860
    }
1547
5.10k
    AArch64_set_detail_op_imm(MI, OpNum, AARCH64_OP_IMM,
1548
5.10k
            Address + Offset);
1549
5.10k
    break;
1550
5.10k
  }
1551
8.57k
  case AArch64_OP_GROUP_AlignedLabel: {
1552
8.57k
    if (MCOperand_isImm(MCInst_getOperand(MI, OpNum))) {
1553
8.43k
      int64_t Offset = MCInst_getOpVal(MI, OpNum) * 4;
1554
8.43k
      AArch64_set_detail_op_imm(MI, OpNum, AARCH64_OP_IMM,
1555
8.43k
              MI->address + Offset);
1556
8.43k
    } else {
1557
      // Expression
1558
136
      AArch64_set_detail_op_imm(
1559
136
        MI, OpNum, AARCH64_OP_IMM,
1560
136
        MCOperand_isImm(MCInst_getOperand(MI, OpNum)));
1561
136
    }
1562
8.57k
    break;
1563
5.10k
  }
1564
0
  case AArch64_OP_GROUP_AMNoIndex: {
1565
0
    AArch64_set_detail_op_mem(MI, OpNum,
1566
0
            MCInst_getOpVal(MI, OpNum));
1567
0
    break;
1568
5.10k
  }
1569
2.80k
  case AArch64_OP_GROUP_ArithExtend: {
1570
2.80k
    unsigned Val = MCInst_getOpVal(MI, OpNum);
1571
2.80k
    AArch64_AM_ShiftExtendType ExtType =
1572
2.80k
      AArch64_AM_getArithExtendType(Val);
1573
2.80k
    unsigned ShiftVal = AArch64_AM_getArithShiftValue(Val);
1574
1575
2.80k
    AArch64_get_detail_op(MI, -1)->ext = llvm_to_cs_ext(ExtType);
1576
2.80k
    AArch64_get_detail_op(MI, -1)->shift.value = ShiftVal;
1577
2.80k
    AArch64_get_detail_op(MI, -1)->shift.type = AARCH64_SFT_LSL;
1578
2.80k
    break;
1579
5.10k
  }
1580
122
  case AArch64_OP_GROUP_BarriernXSOption: {
1581
122
    unsigned Val = MCInst_getOpVal(MI, OpNum);
1582
122
    aarch64_sysop sysop = { 0 };
1583
122
    const AArch64DBnXS_DBnXS *DB =
1584
122
      AArch64DBnXS_lookupDBnXSByEncoding(Val);
1585
122
    if (DB)
1586
122
      sysop.imm.dbnxs = (aarch64_dbnxs)DB->SysImm.dbnxs;
1587
0
    else
1588
0
      sysop.imm.raw_val = Val;
1589
122
    sysop.sub_type = AARCH64_OP_DBNXS;
1590
122
    AArch64_set_detail_op_sys(MI, OpNum, sysop, AARCH64_OP_SYSIMM);
1591
122
    break;
1592
5.10k
  }
1593
79
  case AArch64_OP_GROUP_AppleSysBarrierOption: {
1594
    // Proprietary stuff. We just add the
1595
    // immediate here.
1596
79
    unsigned Val = MCOperand_getImm(MCInst_getOperand(MI, OpNum));
1597
79
    AArch64_set_detail_op_imm(MI, OpNum, AARCH64_OP_IMM, Val);
1598
79
    break;
1599
5.10k
  }
1600
324
  case AArch64_OP_GROUP_BarrierOption: {
1601
324
    unsigned Val = MCOperand_getImm(MCInst_getOperand(MI, OpNum));
1602
324
    unsigned Opcode = MCInst_getOpcode(MI);
1603
324
    aarch64_sysop sysop = { 0 };
1604
1605
324
    if (Opcode == AArch64_ISB) {
1606
124
      const AArch64ISB_ISB *ISB =
1607
124
        AArch64ISB_lookupISBByEncoding(Val);
1608
124
      if (ISB)
1609
0
        sysop.alias.isb =
1610
0
          (aarch64_isb)ISB->SysAlias.isb;
1611
124
      else
1612
124
        sysop.alias.raw_val = Val;
1613
124
      sysop.sub_type = AARCH64_OP_ISB;
1614
124
      AArch64_set_detail_op_sys(MI, OpNum, sysop,
1615
124
              AARCH64_OP_SYSALIAS);
1616
200
    } else if (Opcode == AArch64_TSB) {
1617
90
      const AArch64TSB_TSB *TSB =
1618
90
        AArch64TSB_lookupTSBByEncoding(Val);
1619
90
      if (TSB)
1620
90
        sysop.alias.tsb =
1621
90
          (aarch64_tsb)TSB->SysAlias.tsb;
1622
0
      else
1623
0
        sysop.alias.raw_val = Val;
1624
90
      sysop.sub_type = AARCH64_OP_TSB;
1625
90
      AArch64_set_detail_op_sys(MI, OpNum, sysop,
1626
90
              AARCH64_OP_SYSALIAS);
1627
110
    } else {
1628
110
      const AArch64DB_DB *DB =
1629
110
        AArch64DB_lookupDBByEncoding(Val);
1630
110
      if (DB)
1631
92
        sysop.alias.db = (aarch64_db)DB->SysAlias.db;
1632
18
      else
1633
18
        sysop.alias.raw_val = Val;
1634
110
      sysop.sub_type = AARCH64_OP_DB;
1635
110
      AArch64_set_detail_op_sys(MI, OpNum, sysop,
1636
110
              AARCH64_OP_SYSALIAS);
1637
110
    }
1638
324
    break;
1639
5.10k
  }
1640
486
  case AArch64_OP_GROUP_BTIHintOp: {
1641
486
    aarch64_sysop sysop = { 0 };
1642
486
    unsigned btihintop = MCInst_getOpVal(MI, OpNum) ^ 32;
1643
486
    const AArch64BTIHint_BTI *BTI =
1644
486
      AArch64BTIHint_lookupBTIByEncoding(btihintop);
1645
486
    if (BTI)
1646
486
      sysop.alias.bti = (aarch64_bti)BTI->SysAlias.bti;
1647
0
    else
1648
0
      sysop.alias.raw_val = btihintop;
1649
486
    sysop.sub_type = AARCH64_OP_BTI;
1650
486
    AArch64_set_detail_op_sys(MI, OpNum, sysop,
1651
486
            AARCH64_OP_SYSALIAS);
1652
486
    break;
1653
5.10k
  }
1654
1.74k
  case AArch64_OP_GROUP_CondCode: {
1655
1.74k
    AArch64_get_detail(MI)->cc = MCInst_getOpVal(MI, OpNum);
1656
1.74k
    break;
1657
5.10k
  }
1658
2.26k
  case AArch64_OP_GROUP_ExtendedRegister: {
1659
2.26k
    AArch64_set_detail_op_reg(MI, OpNum,
1660
2.26k
            MCInst_getOpVal(MI, OpNum));
1661
2.26k
    break;
1662
5.10k
  }
1663
705
  case AArch64_OP_GROUP_FPImmOperand: {
1664
705
    MCOperand *MO = MCInst_getOperand(MI, (OpNum));
1665
705
    float FPImm =
1666
705
      MCOperand_isDFPImm(MO) ?
1667
0
        BitsToDouble(MCOperand_getImm(MO)) :
1668
705
        AArch64_AM_getFPImmFloat(MCOperand_getImm(MO));
1669
705
    AArch64_set_detail_op_float(MI, OpNum, FPImm);
1670
705
    break;
1671
5.10k
  }
1672
1.94k
  case AArch64_OP_GROUP_GPR64as32: {
1673
1.94k
    unsigned Reg = MCInst_getOpVal(MI, OpNum);
1674
1.94k
    AArch64_set_detail_op_reg(MI, OpNum, getWRegFromXReg(Reg));
1675
1.94k
    break;
1676
5.10k
  }
1677
43
  case AArch64_OP_GROUP_GPR64x8: {
1678
43
    unsigned Reg = MCInst_getOpVal(MI, (OpNum));
1679
43
    Reg = MCRegisterInfo_getSubReg(MI->MRI, Reg, AArch64_x8sub_0);
1680
43
    AArch64_set_detail_op_reg(MI, OpNum, Reg);
1681
43
    break;
1682
5.10k
  }
1683
3.05k
  case AArch64_OP_GROUP_Imm:
1684
3.10k
  case AArch64_OP_GROUP_ImmHex:
1685
3.10k
    AArch64_set_detail_op_imm(MI, OpNum, AARCH64_OP_IMM,
1686
3.10k
            MCInst_getOpVal(MI, OpNum));
1687
3.10k
    break;
1688
0
  case AArch64_OP_GROUP_ImplicitlyTypedVectorList:
1689
    // The TypedVectorList implements the logic of implicitly typed operand.
1690
0
    AArch64_add_cs_detail_2(
1691
0
      MI, AArch64_OP_GROUP_TypedVectorList_0_b, OpNum, 0, 0);
1692
0
    break;
1693
27
  case AArch64_OP_GROUP_InverseCondCode: {
1694
27
    AArch64CC_CondCode CC = (AArch64CC_CondCode)MCOperand_getImm(
1695
27
      MCInst_getOperand(MI, (OpNum)));
1696
27
    AArch64_get_detail(MI)->cc = AArch64CC_getInvertedCondCode(CC);
1697
27
    break;
1698
3.05k
  }
1699
1.71k
  case AArch64_OP_GROUP_MatrixTile: {
1700
1.71k
    const char *RegName = AArch64_LLVM_getRegisterName(
1701
1.71k
      MCInst_getOpVal(MI, OpNum), AArch64_NoRegAltName);
1702
1.71k
    const char *Dot = strstr(RegName, ".");
1703
1.71k
    AArch64Layout_VectorLayout vas = AARCH64LAYOUT_INVALID;
1704
1.71k
    if (!Dot) {
1705
      // The matrix dimensions are machine dependent.
1706
      // Currently we do not support differentiation of machines.
1707
      // So we just indicate the use of the complete matrix.
1708
0
      vas = sme_reg_to_vas(MCInst_getOpVal(MI, OpNum));
1709
0
    } else
1710
1.71k
      vas = get_vl_by_suffix(Dot[1]);
1711
1.71k
    AArch64_set_detail_op_sme(MI, OpNum, AARCH64_SME_MATRIX_TILE,
1712
1.71k
            vas, 0, 0);
1713
1.71k
    break;
1714
3.05k
  }
1715
541
  case AArch64_OP_GROUP_MatrixTileList: {
1716
541
    unsigned MaxRegs = 8;
1717
541
    unsigned RegMask = MCInst_getOpVal(MI, (OpNum));
1718
1719
4.86k
    for (unsigned I = 0; I < MaxRegs; ++I) {
1720
4.32k
      unsigned Reg = RegMask & (1 << I);
1721
4.32k
      if (Reg == 0)
1722
2.59k
        continue;
1723
1.73k
      AArch64_get_detail_op(MI, 0)->is_list_member = true;
1724
1.73k
      AArch64_set_detail_op_sme(MI, OpNum,
1725
1.73k
              AARCH64_SME_MATRIX_TILE_LIST,
1726
1.73k
              AARCH64LAYOUT_VL_D,
1727
1.73k
              (int)(AARCH64_REG_ZAD0 + I),
1728
1.73k
              0);
1729
1.73k
      AArch64_inc_op_count(MI);
1730
1.73k
    }
1731
541
    AArch64_get_detail(MI)->is_doing_sme = false;
1732
541
    break;
1733
3.05k
  }
1734
1.18k
  case AArch64_OP_GROUP_MRSSystemRegister:
1735
3.52k
  case AArch64_OP_GROUP_MSRSystemRegister: {
1736
3.52k
    unsigned Val = MCInst_getOpVal(MI, OpNum);
1737
3.52k
    const AArch64SysReg_SysReg *Reg =
1738
3.52k
      AArch64SysReg_lookupSysRegByEncoding(Val);
1739
3.52k
    bool Read = (op_group == AArch64_OP_GROUP_MRSSystemRegister) ?
1740
3.52k
            true :
1741
3.52k
            false;
1742
1743
3.52k
    bool isValidSysReg =
1744
3.52k
      (Reg && (Read ? Reg->Readable : Reg->Writeable) &&
1745
602
       AArch64_testFeatureList(MI->csh->mode,
1746
602
             Reg->FeaturesRequired));
1747
1748
3.52k
    if (Reg && !isValidSysReg)
1749
414
      Reg = AArch64SysReg_lookupSysRegByName(Reg->AltName);
1750
3.52k
    aarch64_sysop sysop = { 0 };
1751
    // If Reg is NULL it is a generic system register.
1752
3.52k
    if (Reg)
1753
985
      sysop.reg.sysreg = (aarch64_sysreg)Reg->SysReg.sysreg;
1754
2.53k
    else {
1755
2.53k
      sysop.reg.raw_val = Val;
1756
2.53k
    }
1757
3.52k
    aarch64_op_type type =
1758
3.52k
      (op_group == AArch64_OP_GROUP_MRSSystemRegister) ?
1759
1.18k
        AARCH64_OP_REG_MRS :
1760
3.52k
        AARCH64_OP_REG_MSR;
1761
3.52k
    sysop.sub_type = type;
1762
3.52k
    AArch64_set_detail_op_sys(MI, OpNum, sysop, AARCH64_OP_SYSREG);
1763
3.52k
    break;
1764
1.18k
  }
1765
299
  case AArch64_OP_GROUP_PSBHintOp: {
1766
299
    unsigned psbhintop = MCInst_getOpVal(MI, OpNum);
1767
299
    const AArch64PSBHint_PSB *PSB =
1768
299
      AArch64PSBHint_lookupPSBByEncoding(psbhintop);
1769
299
    aarch64_sysop sysop = { 0 };
1770
299
    if (PSB)
1771
299
      sysop.alias.psb = (aarch64_psb)PSB->SysAlias.psb;
1772
0
    else
1773
0
      sysop.alias.raw_val = psbhintop;
1774
299
    sysop.sub_type = AARCH64_OP_PSB;
1775
299
    AArch64_set_detail_op_sys(MI, OpNum, sysop,
1776
299
            AARCH64_OP_SYSALIAS);
1777
299
    break;
1778
1.18k
  }
1779
498
  case AArch64_OP_GROUP_RPRFMOperand: {
1780
498
    unsigned prfop = MCInst_getOpVal(MI, OpNum);
1781
498
    const AArch64PRFM_PRFM *PRFM =
1782
498
      AArch64PRFM_lookupPRFMByEncoding(prfop);
1783
498
    aarch64_sysop sysop = { 0 };
1784
498
    if (PRFM)
1785
406
      sysop.alias.prfm = (aarch64_prfm)PRFM->SysAlias.prfm;
1786
92
    else
1787
92
      sysop.alias.raw_val = prfop;
1788
498
    sysop.sub_type = AARCH64_OP_PRFM;
1789
498
    AArch64_set_detail_op_sys(MI, OpNum, sysop,
1790
498
            AARCH64_OP_SYSALIAS);
1791
498
    break;
1792
1.18k
  }
1793
4.66k
  case AArch64_OP_GROUP_ShiftedRegister: {
1794
4.66k
    AArch64_set_detail_op_reg(MI, OpNum,
1795
4.66k
            MCInst_getOpVal(MI, OpNum));
1796
    // Shift part is handled in printShifter()
1797
4.66k
    break;
1798
1.18k
  }
1799
7.36k
  case AArch64_OP_GROUP_Shifter: {
1800
7.36k
    unsigned Val = MCInst_getOpVal(MI, OpNum);
1801
7.36k
    AArch64_AM_ShiftExtendType ShExtType =
1802
7.36k
      AArch64_AM_getShiftType(Val);
1803
7.36k
    AArch64_get_detail_op(MI, -1)->ext = llvm_to_cs_ext(ShExtType);
1804
7.36k
    AArch64_get_detail_op(MI, -1)->shift.type =
1805
7.36k
      llvm_to_cs_shift(ShExtType);
1806
7.36k
    AArch64_get_detail_op(MI, -1)->shift.value =
1807
7.36k
      AArch64_AM_getShiftValue(Val);
1808
7.36k
    break;
1809
1.18k
  }
1810
567
  case AArch64_OP_GROUP_SIMDType10Operand: {
1811
567
    unsigned RawVal = MCInst_getOpVal(MI, OpNum);
1812
567
    uint64_t Val = AArch64_AM_decodeAdvSIMDModImmType10(RawVal);
1813
567
    AArch64_set_detail_op_imm(MI, OpNum, AARCH64_OP_IMM, Val);
1814
567
    break;
1815
1.18k
  }
1816
0
  case AArch64_OP_GROUP_SVCROp: {
1817
0
    unsigned svcrop = MCInst_getOpVal(MI, OpNum);
1818
0
    const AArch64SVCR_SVCR *SVCR =
1819
0
      AArch64SVCR_lookupSVCRByEncoding(svcrop);
1820
0
    aarch64_sysop sysop = { 0 };
1821
0
    if (SVCR)
1822
0
      sysop.alias.svcr = (aarch64_svcr)SVCR->SysAlias.svcr;
1823
0
    else
1824
0
      sysop.alias.raw_val = svcrop;
1825
0
    sysop.sub_type = AARCH64_OP_SVCR;
1826
0
    AArch64_set_detail_op_sys(MI, OpNum, sysop,
1827
0
            AARCH64_OP_SYSALIAS);
1828
0
    break;
1829
1.18k
  }
1830
2.12k
  case AArch64_OP_GROUP_SVEPattern: {
1831
2.12k
    unsigned Val = MCInst_getOpVal(MI, OpNum);
1832
2.12k
    const AArch64SVEPredPattern_SVEPREDPAT *Pat =
1833
2.12k
      AArch64SVEPredPattern_lookupSVEPREDPATByEncoding(Val);
1834
2.12k
    if (!Pat) {
1835
840
      AArch64_set_detail_op_imm(MI, OpNum, AARCH64_OP_IMM,
1836
840
              Val);
1837
840
      break;
1838
840
    }
1839
1.28k
    aarch64_sysop sysop = { 0 };
1840
1.28k
    sysop.alias = Pat->SysAlias;
1841
1.28k
    sysop.sub_type = AARCH64_OP_SVEPREDPAT;
1842
1.28k
    AArch64_set_detail_op_sys(MI, OpNum, sysop,
1843
1.28k
            AARCH64_OP_SYSALIAS);
1844
1.28k
    break;
1845
2.12k
  }
1846
434
  case AArch64_OP_GROUP_SVEVecLenSpecifier: {
1847
434
    unsigned Val = MCInst_getOpVal(MI, OpNum);
1848
    // Pattern has only 1 bit
1849
434
    if (Val > 1)
1850
0
      CS_ASSERT_RET(0 && "Invalid vector length specifier");
1851
434
    const AArch64SVEVecLenSpecifier_SVEVECLENSPECIFIER *Pat =
1852
434
      AArch64SVEVecLenSpecifier_lookupSVEVECLENSPECIFIERByEncoding(
1853
434
        Val);
1854
434
    if (!Pat)
1855
0
      break;
1856
434
    aarch64_sysop sysop = { 0 };
1857
434
    sysop.alias = Pat->SysAlias;
1858
434
    sysop.sub_type = AARCH64_OP_SVEVECLENSPECIFIER;
1859
434
    AArch64_set_detail_op_sys(MI, OpNum, sysop,
1860
434
            AARCH64_OP_SYSALIAS);
1861
434
    break;
1862
434
  }
1863
3.34k
  case AArch64_OP_GROUP_SysCROperand: {
1864
3.34k
    uint64_t cimm = MCInst_getOpVal(MI, OpNum);
1865
3.34k
    AArch64_set_detail_op_imm(MI, OpNum, AARCH64_OP_CIMM, cimm);
1866
3.34k
    break;
1867
434
  }
1868
437
  case AArch64_OP_GROUP_SyspXzrPair: {
1869
437
    unsigned Reg = MCInst_getOpVal(MI, OpNum);
1870
437
    AArch64_set_detail_op_reg(MI, OpNum, Reg);
1871
437
    AArch64_set_detail_op_reg(MI, OpNum, Reg);
1872
437
    break;
1873
434
  }
1874
272
  case AArch64_OP_GROUP_SystemPStateField: {
1875
272
    unsigned Val = MCInst_getOpVal(MI, OpNum);
1876
1877
272
    aarch64_sysop sysop = { 0 };
1878
272
    const AArch64PState_PStateImm0_15 *PStateImm15 =
1879
272
      AArch64PState_lookupPStateImm0_15ByEncoding(Val);
1880
272
    const AArch64PState_PStateImm0_1 *PStateImm1 =
1881
272
      AArch64PState_lookupPStateImm0_1ByEncoding(Val);
1882
272
    if (PStateImm15 &&
1883
148
        AArch64_testFeatureList(MI->csh->mode,
1884
148
              PStateImm15->FeaturesRequired)) {
1885
148
      sysop.alias = PStateImm15->SysAlias;
1886
148
      sysop.sub_type = AARCH64_OP_PSTATEIMM0_15;
1887
148
      AArch64_set_detail_op_sys(MI, OpNum, sysop,
1888
148
              AARCH64_OP_SYSALIAS);
1889
148
    } else if (PStateImm1 &&
1890
124
         AArch64_testFeatureList(
1891
124
           MI->csh->mode,
1892
124
           PStateImm1->FeaturesRequired)) {
1893
124
      sysop.alias = PStateImm1->SysAlias;
1894
124
      sysop.sub_type = AARCH64_OP_PSTATEIMM0_1;
1895
124
      AArch64_set_detail_op_sys(MI, OpNum, sysop,
1896
124
              AARCH64_OP_SYSALIAS);
1897
124
    } else {
1898
0
      AArch64_set_detail_op_imm(MI, OpNum, AARCH64_OP_IMM,
1899
0
              Val);
1900
0
    }
1901
272
    break;
1902
434
  }
1903
46.0k
  case AArch64_OP_GROUP_VRegOperand: {
1904
46.0k
    unsigned Reg = MCInst_getOpVal(MI, OpNum);
1905
46.0k
    AArch64_get_detail_op(MI, 0)->is_vreg = true;
1906
46.0k
    AArch64_set_detail_op_reg(MI, OpNum, Reg);
1907
46.0k
    break;
1908
434
  }
1909
347k
  }
1910
347k
}
1911
1912
/// Fills cs_detail with the data of the operand.
1913
/// This function handles operands which original printer function is a template
1914
/// with one argument.
1915
void AArch64_add_cs_detail_1(MCInst *MI, aarch64_op_group op_group,
1916
           unsigned OpNum, uint64_t temp_arg_0)
1917
171k
{
1918
171k
  if (!add_cs_detail_begin(MI, OpNum))
1919
0
    return;
1920
171k
  switch (op_group) {
1921
0
  default:
1922
0
    printf("ERROR: Operand group %d not handled!\n", op_group);
1923
0
    CS_ASSERT_RET(0);
1924
142
  case AArch64_OP_GROUP_GPRSeqPairsClassOperand_32:
1925
1.20k
  case AArch64_OP_GROUP_GPRSeqPairsClassOperand_64: {
1926
1.20k
    unsigned size = temp_arg_0;
1927
1.20k
    unsigned Reg = MCInst_getOpVal(MI, (OpNum));
1928
1929
1.20k
    unsigned Sube = (size == 32) ? AArch64_sube32 : AArch64_sube64;
1930
1.20k
    unsigned Subo = (size == 32) ? AArch64_subo32 : AArch64_subo64;
1931
1932
1.20k
    unsigned Even = MCRegisterInfo_getSubReg(MI->MRI, Reg, Sube);
1933
1.20k
    unsigned Odd = MCRegisterInfo_getSubReg(MI->MRI, Reg, Subo);
1934
1.20k
    AArch64_set_detail_op_reg(MI, OpNum, Even);
1935
1.20k
    AArch64_set_detail_op_reg(MI, OpNum, Odd);
1936
1.20k
    break;
1937
142
  }
1938
199
  case AArch64_OP_GROUP_Imm8OptLsl_int16_t:
1939
406
  case AArch64_OP_GROUP_Imm8OptLsl_int32_t:
1940
638
  case AArch64_OP_GROUP_Imm8OptLsl_int64_t:
1941
775
  case AArch64_OP_GROUP_Imm8OptLsl_int8_t:
1942
919
  case AArch64_OP_GROUP_Imm8OptLsl_uint16_t:
1943
1.00k
  case AArch64_OP_GROUP_Imm8OptLsl_uint32_t:
1944
1.64k
  case AArch64_OP_GROUP_Imm8OptLsl_uint64_t:
1945
1.67k
  case AArch64_OP_GROUP_Imm8OptLsl_uint8_t: {
1946
1.67k
    unsigned UnscaledVal = MCInst_getOpVal(MI, (OpNum));
1947
1.67k
    unsigned Shift = MCInst_getOpVal(MI, (OpNum + 1));
1948
1949
1.67k
    if ((UnscaledVal == 0) &&
1950
722
        (AArch64_AM_getShiftValue(Shift) != 0)) {
1951
373
      AArch64_set_detail_op_imm(MI, OpNum, AARCH64_OP_IMM,
1952
373
              UnscaledVal);
1953
      // Shift is handled in printShifter()
1954
373
      break;
1955
373
    }
1956
1957
1.29k
#define SCALE_SET(T) \
1958
1.29k
  do { \
1959
1.29k
    T Val; \
1960
1.29k
    if (CHAR(T) == 'i') /* Signed */ \
1961
1.29k
      Val = (int8_t)UnscaledVal * \
1962
641
            (1 << AArch64_AM_getShiftValue(Shift)); \
1963
1.29k
    else \
1964
1.29k
      Val = (uint8_t)UnscaledVal * \
1965
658
            (1 << AArch64_AM_getShiftValue(Shift)); \
1966
1.29k
    AArch64_set_detail_op_imm(MI, OpNum, AARCH64_OP_IMM, Val); \
1967
1.29k
  } while (0)
1968
1969
1.29k
    switch (op_group) {
1970
0
    default:
1971
0
      CS_ASSERT_RET(
1972
0
        0 &&
1973
0
        "Operand group for Imm8OptLsl not handled.");
1974
173
    case AArch64_OP_GROUP_Imm8OptLsl_int16_t: {
1975
173
      SCALE_SET(int16_t);
1976
173
      break;
1977
0
    }
1978
163
    case AArch64_OP_GROUP_Imm8OptLsl_int32_t: {
1979
163
      SCALE_SET(int32_t);
1980
163
      break;
1981
0
    }
1982
168
    case AArch64_OP_GROUP_Imm8OptLsl_int64_t: {
1983
168
      SCALE_SET(int64_t);
1984
168
      break;
1985
0
    }
1986
137
    case AArch64_OP_GROUP_Imm8OptLsl_int8_t: {
1987
137
      SCALE_SET(int8_t);
1988
137
      break;
1989
0
    }
1990
104
    case AArch64_OP_GROUP_Imm8OptLsl_uint16_t: {
1991
104
      SCALE_SET(uint16_t);
1992
104
      break;
1993
0
    }
1994
68
    case AArch64_OP_GROUP_Imm8OptLsl_uint32_t: {
1995
68
      SCALE_SET(uint32_t);
1996
68
      break;
1997
0
    }
1998
454
    case AArch64_OP_GROUP_Imm8OptLsl_uint64_t: {
1999
454
      SCALE_SET(uint64_t);
2000
454
      break;
2001
0
    }
2002
32
    case AArch64_OP_GROUP_Imm8OptLsl_uint8_t: {
2003
32
      SCALE_SET(uint8_t);
2004
32
      break;
2005
0
    }
2006
1.29k
    }
2007
1.29k
    break;
2008
1.29k
  }
2009
1.98k
  case AArch64_OP_GROUP_ImmScale_16:
2010
3.30k
  case AArch64_OP_GROUP_ImmScale_2:
2011
3.86k
  case AArch64_OP_GROUP_ImmScale_3:
2012
3.87k
  case AArch64_OP_GROUP_ImmScale_32:
2013
9.60k
  case AArch64_OP_GROUP_ImmScale_4:
2014
12.9k
  case AArch64_OP_GROUP_ImmScale_8: {
2015
12.9k
    unsigned Scale = temp_arg_0;
2016
12.9k
    AArch64_set_detail_op_imm(MI, OpNum, AARCH64_OP_IMM,
2017
12.9k
            Scale * MCInst_getOpVal(MI, OpNum));
2018
12.9k
    break;
2019
9.60k
  }
2020
921
  case AArch64_OP_GROUP_LogicalImm_int16_t:
2021
2.14k
  case AArch64_OP_GROUP_LogicalImm_int32_t:
2022
3.79k
  case AArch64_OP_GROUP_LogicalImm_int64_t:
2023
5.49k
  case AArch64_OP_GROUP_LogicalImm_int8_t: {
2024
5.49k
    unsigned TypeSize = temp_arg_0;
2025
5.49k
    uint64_t Val = AArch64_AM_decodeLogicalImmediate(
2026
5.49k
      MCInst_getOpVal(MI, OpNum), 8 * TypeSize);
2027
5.49k
    AArch64_set_detail_op_imm(MI, OpNum, AARCH64_OP_IMM, Val);
2028
5.49k
    break;
2029
3.79k
  }
2030
191
  case AArch64_OP_GROUP_Matrix_0:
2031
766
  case AArch64_OP_GROUP_Matrix_16:
2032
2.80k
  case AArch64_OP_GROUP_Matrix_32:
2033
3.63k
  case AArch64_OP_GROUP_Matrix_64: {
2034
3.63k
    unsigned EltSize = temp_arg_0;
2035
3.63k
    AArch64_set_detail_op_sme(MI, OpNum, AARCH64_SME_MATRIX_TILE,
2036
3.63k
            (AArch64Layout_VectorLayout)EltSize,
2037
3.63k
            0, 0);
2038
3.63k
    break;
2039
2.80k
  }
2040
0
  case AArch64_OP_GROUP_MatrixIndex_0:
2041
4.62k
  case AArch64_OP_GROUP_MatrixIndex_1:
2042
4.67k
  case AArch64_OP_GROUP_MatrixIndex_8: {
2043
4.67k
    unsigned scale = temp_arg_0;
2044
4.67k
    if (AArch64_get_detail_op(MI, 0)->type == AARCH64_OP_SME) {
2045
      // The index is part of an SME matrix
2046
4.10k
      AArch64_set_detail_op_sme(
2047
4.10k
        MI, OpNum, AARCH64_SME_MATRIX_SLICE_OFF,
2048
4.10k
        AARCH64LAYOUT_INVALID,
2049
4.10k
        (uint32_t)(MCInst_getOpVal(MI, OpNum) * scale),
2050
4.10k
        0);
2051
4.10k
    } else if (AArch64_get_detail_op(MI, 0)->type ==
2052
569
         AARCH64_OP_PRED) {
2053
      // The index is part of a predicate
2054
468
      AArch64_set_detail_op_pred(MI, OpNum);
2055
468
    } else {
2056
      // The index is used for an SVE2 instruction.
2057
101
      AArch64_set_detail_op_imm(
2058
101
        MI, OpNum, AARCH64_OP_IMM,
2059
101
        scale * MCInst_getOpVal(MI, OpNum));
2060
101
    }
2061
4.67k
    break;
2062
4.62k
  }
2063
1.68k
  case AArch64_OP_GROUP_MatrixTileVector_0:
2064
3.55k
  case AArch64_OP_GROUP_MatrixTileVector_1: {
2065
3.55k
    bool isVertical = temp_arg_0;
2066
3.55k
    const char *RegName = AArch64_LLVM_getRegisterName(
2067
3.55k
      MCInst_getOpVal(MI, OpNum), AArch64_NoRegAltName);
2068
3.55k
    const char *Dot = strstr(RegName, ".");
2069
3.55k
    AArch64Layout_VectorLayout vas = AARCH64LAYOUT_INVALID;
2070
3.55k
    if (!Dot) {
2071
      // The matrix dimensions are machine dependent.
2072
      // Currently we do not support differentiation of machines.
2073
      // So we just indicate the use of the complete matrix.
2074
0
      vas = sme_reg_to_vas(MCInst_getOpVal(MI, OpNum));
2075
0
    } else
2076
3.55k
      vas = get_vl_by_suffix(Dot[1]);
2077
3.55k
    setup_sme_operand(MI);
2078
3.55k
    AArch64_set_detail_op_sme(MI, OpNum, AARCH64_SME_MATRIX_TILE,
2079
3.55k
            vas, 0, 0);
2080
3.55k
    AArch64_get_detail_op(MI, 0)->sme.is_vertical = isVertical;
2081
3.55k
    break;
2082
1.68k
  }
2083
678
  case AArch64_OP_GROUP_PostIncOperand_1:
2084
951
  case AArch64_OP_GROUP_PostIncOperand_12:
2085
1.51k
  case AArch64_OP_GROUP_PostIncOperand_16:
2086
1.93k
  case AArch64_OP_GROUP_PostIncOperand_2:
2087
2.57k
  case AArch64_OP_GROUP_PostIncOperand_24:
2088
3.06k
  case AArch64_OP_GROUP_PostIncOperand_3:
2089
3.29k
  case AArch64_OP_GROUP_PostIncOperand_32:
2090
3.66k
  case AArch64_OP_GROUP_PostIncOperand_4:
2091
3.71k
  case AArch64_OP_GROUP_PostIncOperand_48:
2092
4.71k
  case AArch64_OP_GROUP_PostIncOperand_6:
2093
4.74k
  case AArch64_OP_GROUP_PostIncOperand_64:
2094
5.58k
  case AArch64_OP_GROUP_PostIncOperand_8: {
2095
5.58k
    uint64_t Imm = temp_arg_0;
2096
5.58k
    unsigned Reg = MCInst_getOpVal(MI, OpNum);
2097
5.58k
    if (Reg == AArch64_XZR) {
2098
0
      AArch64_get_detail_op(MI, -1)->mem.disp = Imm;
2099
0
      AArch64_get_detail(MI)->post_index = true;
2100
0
      AArch64_inc_op_count(MI);
2101
0
    } else
2102
5.58k
      AArch64_set_detail_op_reg(MI, OpNum, Reg);
2103
5.58k
    break;
2104
4.74k
  }
2105
3.68k
  case AArch64_OP_GROUP_PredicateAsCounter_0:
2106
3.75k
  case AArch64_OP_GROUP_PredicateAsCounter_16:
2107
3.81k
  case AArch64_OP_GROUP_PredicateAsCounter_32:
2108
4.10k
  case AArch64_OP_GROUP_PredicateAsCounter_64:
2109
4.15k
  case AArch64_OP_GROUP_PredicateAsCounter_8: {
2110
4.15k
    unsigned EltSize = temp_arg_0;
2111
4.15k
    AArch64_get_detail_op(MI, 0)->vas = EltSize;
2112
4.15k
    AArch64_set_detail_op_reg(MI, OpNum,
2113
4.15k
            MCInst_getOpVal(MI, OpNum));
2114
4.15k
    break;
2115
4.10k
  }
2116
999
  case AArch64_OP_GROUP_PrefetchOp_0:
2117
3.45k
  case AArch64_OP_GROUP_PrefetchOp_1: {
2118
3.45k
    bool IsSVEPrefetch = (bool)temp_arg_0;
2119
3.45k
    unsigned prfop = MCInst_getOpVal(MI, (OpNum));
2120
3.45k
    aarch64_sysop sysop = { 0 };
2121
3.45k
    if (IsSVEPrefetch) {
2122
2.45k
      const AArch64SVEPRFM_SVEPRFM *PRFM =
2123
2.45k
        AArch64SVEPRFM_lookupSVEPRFMByEncoding(prfop);
2124
2.45k
      if (PRFM) {
2125
2.09k
        sysop.alias = PRFM->SysAlias;
2126
2.09k
        sysop.sub_type = AARCH64_OP_SVEPRFM;
2127
2.09k
        AArch64_set_detail_op_sys(MI, OpNum, sysop,
2128
2.09k
                AARCH64_OP_SYSALIAS);
2129
2.09k
        break;
2130
2.09k
      }
2131
2.45k
    } else {
2132
999
      const AArch64PRFM_PRFM *PRFM =
2133
999
        AArch64PRFM_lookupPRFMByEncoding(prfop);
2134
999
      if (PRFM &&
2135
635
          AArch64_testFeatureList(MI->csh->mode,
2136
635
                PRFM->FeaturesRequired)) {
2137
635
        sysop.alias = PRFM->SysAlias;
2138
635
        sysop.sub_type = AARCH64_OP_PRFM;
2139
635
        AArch64_set_detail_op_sys(MI, OpNum, sysop,
2140
635
                AARCH64_OP_SYSALIAS);
2141
635
        break;
2142
635
      }
2143
999
    }
2144
718
    AArch64_get_detail_op(MI, 0)->type = AARCH64_OP_IMM;
2145
718
    AArch64_get_detail_op(MI, 0)->imm = prfop;
2146
718
    AArch64_get_detail_op(MI, 0)->access =
2147
718
      map_get_op_access(MI, OpNum);
2148
718
    AArch64_inc_op_count(MI);
2149
718
    break;
2150
3.45k
  }
2151
198
  case AArch64_OP_GROUP_SImm_16:
2152
633
  case AArch64_OP_GROUP_SImm_8: {
2153
633
    AArch64_set_detail_op_imm(MI, OpNum, AARCH64_OP_IMM,
2154
633
            MCInst_getOpVal(MI, OpNum));
2155
633
    break;
2156
198
  }
2157
910
  case AArch64_OP_GROUP_SVELogicalImm_int16_t:
2158
1.54k
  case AArch64_OP_GROUP_SVELogicalImm_int32_t:
2159
2.31k
  case AArch64_OP_GROUP_SVELogicalImm_int64_t: {
2160
    // General issue here that we do not save the operand type
2161
    // for each operand. So we choose the largest type.
2162
2.31k
    uint64_t Val = MCInst_getOpVal(MI, OpNum);
2163
2.31k
    uint64_t DecodedVal =
2164
2.31k
      AArch64_AM_decodeLogicalImmediate(Val, 64);
2165
2.31k
    AArch64_set_detail_op_imm(MI, OpNum, AARCH64_OP_IMM,
2166
2.31k
            DecodedVal);
2167
2.31k
    break;
2168
1.54k
  }
2169
29.1k
  case AArch64_OP_GROUP_SVERegOp_0:
2170
46.3k
  case AArch64_OP_GROUP_SVERegOp_b:
2171
60.7k
  case AArch64_OP_GROUP_SVERegOp_d:
2172
82.1k
  case AArch64_OP_GROUP_SVERegOp_h:
2173
82.5k
  case AArch64_OP_GROUP_SVERegOp_q:
2174
96.0k
  case AArch64_OP_GROUP_SVERegOp_s: {
2175
96.0k
    char Suffix = (char)temp_arg_0;
2176
96.0k
    AArch64_get_detail_op(MI, 0)->vas = get_vl_by_suffix(Suffix);
2177
96.0k
    AArch64_set_detail_op_reg(MI, OpNum,
2178
96.0k
            MCInst_getOpVal(MI, OpNum));
2179
96.0k
    break;
2180
82.5k
  }
2181
1.64k
  case AArch64_OP_GROUP_UImm12Offset_1:
2182
1.78k
  case AArch64_OP_GROUP_UImm12Offset_16:
2183
3.29k
  case AArch64_OP_GROUP_UImm12Offset_2:
2184
3.75k
  case AArch64_OP_GROUP_UImm12Offset_4:
2185
4.23k
  case AArch64_OP_GROUP_UImm12Offset_8: {
2186
    // Otherwise it is an expression. For which we only add the immediate
2187
4.23k
    unsigned Scale = MCOperand_isImm(MCInst_getOperand(MI, OpNum)) ?
2188
4.23k
           temp_arg_0 :
2189
4.23k
           1;
2190
4.23k
    AArch64_set_detail_op_imm(MI, OpNum, AARCH64_OP_IMM,
2191
4.23k
            Scale * MCInst_getOpVal(MI, OpNum));
2192
4.23k
    break;
2193
3.75k
  }
2194
20.9k
  case AArch64_OP_GROUP_VectorIndex_1:
2195
20.9k
  case AArch64_OP_GROUP_VectorIndex_8: {
2196
20.9k
    CS_ASSERT_RET(AArch64_get_detail(MI)->op_count > 0);
2197
20.9k
    unsigned Scale = temp_arg_0;
2198
20.9k
    unsigned VIndex = Scale * MCInst_getOpVal(MI, OpNum);
2199
    // The index can either be for one operand, or for each operand of a list.
2200
20.9k
    if (!AArch64_get_detail_op(MI, -1)->is_list_member) {
2201
11.3k
      AArch64_get_detail_op(MI, -1)->vector_index = VIndex;
2202
11.3k
      break;
2203
11.3k
    }
2204
34.3k
    for (int i = AArch64_get_detail(MI)->op_count - 1; i >= 0;
2205
24.6k
         --i) {
2206
24.6k
      if (!AArch64_get_detail(MI)->operands[i].is_list_member)
2207
0
        break;
2208
24.6k
      AArch64_get_detail(MI)->operands[i].vector_index =
2209
24.6k
        VIndex;
2210
24.6k
    }
2211
9.63k
    break;
2212
20.9k
  }
2213
9
  case AArch64_OP_GROUP_ZPRasFPR_128:
2214
137
  case AArch64_OP_GROUP_ZPRasFPR_16:
2215
433
  case AArch64_OP_GROUP_ZPRasFPR_32:
2216
744
  case AArch64_OP_GROUP_ZPRasFPR_64:
2217
836
  case AArch64_OP_GROUP_ZPRasFPR_8: {
2218
836
    unsigned Base = AArch64_NoRegister;
2219
836
    unsigned Width = temp_arg_0;
2220
836
    switch (Width) {
2221
92
    case 8:
2222
92
      Base = AArch64_B0;
2223
92
      break;
2224
128
    case 16:
2225
128
      Base = AArch64_H0;
2226
128
      break;
2227
296
    case 32:
2228
296
      Base = AArch64_S0;
2229
296
      break;
2230
311
    case 64:
2231
311
      Base = AArch64_D0;
2232
311
      break;
2233
9
    case 128:
2234
9
      Base = AArch64_Q0;
2235
9
      break;
2236
0
    default:
2237
0
      CS_ASSERT_RET(0 && "Unsupported width");
2238
836
    }
2239
836
    unsigned Reg = MCInst_getOpVal(MI, (OpNum));
2240
836
    AArch64_set_detail_op_reg(MI, OpNum, Reg - AArch64_Z0 + Base);
2241
836
    break;
2242
836
  }
2243
171k
  }
2244
171k
}
2245
2246
/// Fills cs_detail with the data of the operand.
2247
/// This function handles operands which original printer function is a template
2248
/// with two arguments.
2249
void AArch64_add_cs_detail_2(MCInst *MI, aarch64_op_group op_group,
2250
           unsigned OpNum, uint64_t temp_arg_0,
2251
           uint64_t temp_arg_1)
2252
42.3k
{
2253
42.3k
  if (!add_cs_detail_begin(MI, OpNum))
2254
0
    return;
2255
42.3k
  switch (op_group) {
2256
0
  default:
2257
0
    printf("ERROR: Operand group %d not handled!\n", op_group);
2258
0
    CS_ASSERT_RET(0);
2259
251
  case AArch64_OP_GROUP_ComplexRotationOp_180_90:
2260
2.12k
  case AArch64_OP_GROUP_ComplexRotationOp_90_0: {
2261
2.12k
    unsigned Angle = temp_arg_0;
2262
2.12k
    unsigned Remainder = temp_arg_1;
2263
2.12k
    unsigned Imm = (MCInst_getOpVal(MI, OpNum) * Angle) + Remainder;
2264
2.12k
    AArch64_set_detail_op_imm(MI, OpNum, AARCH64_OP_IMM, Imm);
2265
2.12k
    break;
2266
251
  }
2267
98
  case AArch64_OP_GROUP_ExactFPImm_AArch64ExactFPImm_half_AArch64ExactFPImm_one:
2268
197
  case AArch64_OP_GROUP_ExactFPImm_AArch64ExactFPImm_half_AArch64ExactFPImm_two:
2269
356
  case AArch64_OP_GROUP_ExactFPImm_AArch64ExactFPImm_zero_AArch64ExactFPImm_one: {
2270
356
    aarch64_exactfpimm ImmIs0 = temp_arg_0;
2271
356
    aarch64_exactfpimm ImmIs1 = temp_arg_1;
2272
356
    const AArch64ExactFPImm_ExactFPImm *Imm0Desc =
2273
356
      AArch64ExactFPImm_lookupExactFPImmByEnum(ImmIs0);
2274
356
    const AArch64ExactFPImm_ExactFPImm *Imm1Desc =
2275
356
      AArch64ExactFPImm_lookupExactFPImmByEnum(ImmIs1);
2276
356
    unsigned Val = MCInst_getOpVal(MI, (OpNum));
2277
356
    aarch64_sysop sysop = { 0 };
2278
356
    sysop.imm = Val ? Imm1Desc->SysImm : Imm0Desc->SysImm;
2279
356
    sysop.sub_type = AARCH64_OP_EXACTFPIMM;
2280
356
    AArch64_set_detail_op_sys(MI, OpNum, sysop, AARCH64_OP_SYSIMM);
2281
356
    break;
2282
197
  }
2283
1.78k
  case AArch64_OP_GROUP_ImmRangeScale_2_1:
2284
3.08k
  case AArch64_OP_GROUP_ImmRangeScale_4_3: {
2285
3.08k
    uint64_t Scale = temp_arg_0;
2286
3.08k
    uint64_t Offset = temp_arg_1;
2287
3.08k
    unsigned FirstImm = Scale * MCInst_getOpVal(MI, (OpNum));
2288
3.08k
    AArch64_set_detail_op_imm_range(MI, OpNum, FirstImm,
2289
3.08k
            FirstImm + Offset);
2290
3.08k
    break;
2291
1.78k
  }
2292
58
  case AArch64_OP_GROUP_MemExtend_w_128:
2293
133
  case AArch64_OP_GROUP_MemExtend_w_16:
2294
141
  case AArch64_OP_GROUP_MemExtend_w_32:
2295
837
  case AArch64_OP_GROUP_MemExtend_w_64:
2296
1.01k
  case AArch64_OP_GROUP_MemExtend_w_8:
2297
1.04k
  case AArch64_OP_GROUP_MemExtend_x_128:
2298
1.25k
  case AArch64_OP_GROUP_MemExtend_x_16:
2299
1.28k
  case AArch64_OP_GROUP_MemExtend_x_32:
2300
1.64k
  case AArch64_OP_GROUP_MemExtend_x_64:
2301
1.80k
  case AArch64_OP_GROUP_MemExtend_x_8: {
2302
1.80k
    char SrcRegKind = (char)temp_arg_0;
2303
1.80k
    unsigned ExtWidth = temp_arg_1;
2304
1.80k
    bool SignExtend = MCInst_getOpVal(MI, OpNum);
2305
1.80k
    bool DoShift = MCInst_getOpVal(MI, OpNum + 1);
2306
1.80k
    AArch64_set_detail_shift_ext(MI, OpNum, SignExtend, DoShift,
2307
1.80k
               ExtWidth, SrcRegKind);
2308
1.80k
    break;
2309
1.64k
  }
2310
6.16k
  case AArch64_OP_GROUP_TypedVectorList_0_b:
2311
14.8k
  case AArch64_OP_GROUP_TypedVectorList_0_d:
2312
21.9k
  case AArch64_OP_GROUP_TypedVectorList_0_h:
2313
22.1k
  case AArch64_OP_GROUP_TypedVectorList_0_q:
2314
29.3k
  case AArch64_OP_GROUP_TypedVectorList_0_s:
2315
29.4k
  case AArch64_OP_GROUP_TypedVectorList_0_0:
2316
31.2k
  case AArch64_OP_GROUP_TypedVectorList_16_b:
2317
31.4k
  case AArch64_OP_GROUP_TypedVectorList_1_d:
2318
31.9k
  case AArch64_OP_GROUP_TypedVectorList_2_d:
2319
32.3k
  case AArch64_OP_GROUP_TypedVectorList_2_s:
2320
32.5k
  case AArch64_OP_GROUP_TypedVectorList_4_h:
2321
33.3k
  case AArch64_OP_GROUP_TypedVectorList_4_s:
2322
33.7k
  case AArch64_OP_GROUP_TypedVectorList_8_b:
2323
34.9k
  case AArch64_OP_GROUP_TypedVectorList_8_h: {
2324
34.9k
    uint8_t NumLanes = (uint8_t)temp_arg_0;
2325
34.9k
    char LaneKind = (char)temp_arg_1;
2326
34.9k
    uint16_t Pair = ((NumLanes << 8) | LaneKind);
2327
2328
34.9k
    AArch64Layout_VectorLayout vas = AARCH64LAYOUT_INVALID;
2329
34.9k
    switch (Pair) {
2330
0
    default:
2331
0
      printf("Typed vector list with NumLanes = %d and LaneKind = %c not handled.\n",
2332
0
             NumLanes, LaneKind);
2333
0
      CS_ASSERT_RET(0);
2334
417
    case ((8 << 8) | 'b'):
2335
417
      vas = AARCH64LAYOUT_VL_8B;
2336
417
      break;
2337
249
    case ((4 << 8) | 'h'):
2338
249
      vas = AARCH64LAYOUT_VL_4H;
2339
249
      break;
2340
372
    case ((2 << 8) | 's'):
2341
372
      vas = AARCH64LAYOUT_VL_2S;
2342
372
      break;
2343
208
    case ((1 << 8) | 'd'):
2344
208
      vas = AARCH64LAYOUT_VL_1D;
2345
208
      break;
2346
1.82k
    case ((16 << 8) | 'b'):
2347
1.82k
      vas = AARCH64LAYOUT_VL_16B;
2348
1.82k
      break;
2349
1.21k
    case ((8 << 8) | 'h'):
2350
1.21k
      vas = AARCH64LAYOUT_VL_8H;
2351
1.21k
      break;
2352
772
    case ((4 << 8) | 's'):
2353
772
      vas = AARCH64LAYOUT_VL_4S;
2354
772
      break;
2355
470
    case ((2 << 8) | 'd'):
2356
470
      vas = AARCH64LAYOUT_VL_2D;
2357
470
      break;
2358
6.16k
    case 'b':
2359
6.16k
      vas = AARCH64LAYOUT_VL_B;
2360
6.16k
      break;
2361
7.06k
    case 'h':
2362
7.06k
      vas = AARCH64LAYOUT_VL_H;
2363
7.06k
      break;
2364
7.25k
    case 's':
2365
7.25k
      vas = AARCH64LAYOUT_VL_S;
2366
7.25k
      break;
2367
8.66k
    case 'd':
2368
8.66k
      vas = AARCH64LAYOUT_VL_D;
2369
8.66k
      break;
2370
238
    case 'q':
2371
238
      vas = AARCH64LAYOUT_VL_Q;
2372
238
      break;
2373
52
    case '0':
2374
      // Implicitly Typed register
2375
52
      break;
2376
34.9k
    }
2377
2378
34.9k
    unsigned Reg = MCOperand_getReg(MCInst_getOperand(MI, OpNum));
2379
34.9k
    unsigned NumRegs = get_vec_list_num_regs(MI, Reg);
2380
34.9k
    unsigned Stride = get_vec_list_stride(MI, Reg);
2381
34.9k
    Reg = get_vec_list_first_reg(MI, Reg);
2382
2383
34.9k
    if ((MCRegisterClass_contains(
2384
34.9k
           MCRegisterInfo_getRegClass(MI->MRI,
2385
34.9k
              AArch64_ZPRRegClassID),
2386
34.9k
           Reg) ||
2387
15.9k
         MCRegisterClass_contains(
2388
15.9k
           MCRegisterInfo_getRegClass(MI->MRI,
2389
15.9k
              AArch64_PPRRegClassID),
2390
15.9k
           Reg)) &&
2391
19.8k
        NumRegs > 1 && Stride == 1 &&
2392
10.0k
        Reg < getNextVectorRegister(Reg, NumRegs - 1)) {
2393
9.82k
      AArch64_get_detail_op(MI, 0)->is_list_member = true;
2394
9.82k
      AArch64_get_detail_op(MI, 0)->vas = vas;
2395
9.82k
      AArch64_set_detail_op_reg(MI, OpNum, Reg);
2396
9.82k
      if (NumRegs > 1) {
2397
        // Add all registers of the list to the details.
2398
27.0k
        for (size_t i = 0; i < NumRegs - 1; ++i) {
2399
17.2k
          AArch64_get_detail_op(MI, 0)
2400
17.2k
            ->is_list_member = true;
2401
17.2k
          AArch64_get_detail_op(MI, 0)->vas = vas;
2402
17.2k
          AArch64_set_detail_op_reg(
2403
17.2k
            MI, OpNum,
2404
17.2k
            getNextVectorRegister(Reg + i,
2405
17.2k
                      1));
2406
17.2k
        }
2407
9.82k
      }
2408
25.1k
    } else {
2409
77.6k
      for (unsigned i = 0; i < NumRegs;
2410
52.4k
           ++i, Reg = getNextVectorRegister(Reg, Stride)) {
2411
52.4k
        if (!(MCRegisterClass_contains(
2412
52.4k
                MCRegisterInfo_getRegClass(
2413
52.4k
                  MI->MRI,
2414
52.4k
                  AArch64_ZPRRegClassID),
2415
52.4k
                Reg) ||
2416
39.6k
              MCRegisterClass_contains(
2417
39.6k
                MCRegisterInfo_getRegClass(
2418
39.6k
                  MI->MRI,
2419
39.6k
                  AArch64_PPRRegClassID),
2420
39.6k
                Reg))) {
2421
39.3k
          AArch64_get_detail_op(MI, 0)->is_vreg =
2422
39.3k
            true;
2423
39.3k
        }
2424
52.4k
        AArch64_get_detail_op(MI, 0)->is_list_member =
2425
52.4k
          true;
2426
52.4k
        AArch64_get_detail_op(MI, 0)->vas = vas;
2427
52.4k
        AArch64_set_detail_op_reg(MI, OpNum, Reg);
2428
52.4k
      }
2429
25.1k
    }
2430
34.9k
  }
2431
42.3k
  }
2432
42.3k
}
2433
2434
/// Fills cs_detail with the data of the operand.
2435
/// This function handles operands which original printer function is a template
2436
/// with four arguments.
2437
void AArch64_add_cs_detail_4(MCInst *MI, aarch64_op_group op_group,
2438
           unsigned OpNum, uint64_t temp_arg_0,
2439
           uint64_t temp_arg_1, uint64_t temp_arg_2,
2440
           uint64_t temp_arg_3)
2441
9.43k
{
2442
9.43k
  if (!add_cs_detail_begin(MI, OpNum))
2443
0
    return;
2444
9.43k
  switch (op_group) {
2445
0
  default:
2446
0
    printf("ERROR: Operand group %d not handled!\n", op_group);
2447
0
    CS_ASSERT_RET(0);
2448
192
  case AArch64_OP_GROUP_RegWithShiftExtend_0_128_x_0:
2449
360
  case AArch64_OP_GROUP_RegWithShiftExtend_0_16_w_d:
2450
553
  case AArch64_OP_GROUP_RegWithShiftExtend_0_16_w_s:
2451
1.58k
  case AArch64_OP_GROUP_RegWithShiftExtend_0_16_x_0:
2452
1.72k
  case AArch64_OP_GROUP_RegWithShiftExtend_0_16_x_d:
2453
1.77k
  case AArch64_OP_GROUP_RegWithShiftExtend_0_16_x_s:
2454
1.96k
  case AArch64_OP_GROUP_RegWithShiftExtend_0_32_w_d:
2455
2.12k
  case AArch64_OP_GROUP_RegWithShiftExtend_0_32_w_s:
2456
2.52k
  case AArch64_OP_GROUP_RegWithShiftExtend_0_32_x_0:
2457
2.80k
  case AArch64_OP_GROUP_RegWithShiftExtend_0_32_x_d:
2458
2.82k
  case AArch64_OP_GROUP_RegWithShiftExtend_0_32_x_s:
2459
3.18k
  case AArch64_OP_GROUP_RegWithShiftExtend_0_64_w_d:
2460
3.19k
  case AArch64_OP_GROUP_RegWithShiftExtend_0_64_w_s:
2461
3.82k
  case AArch64_OP_GROUP_RegWithShiftExtend_0_64_x_0:
2462
4.36k
  case AArch64_OP_GROUP_RegWithShiftExtend_0_64_x_d:
2463
4.37k
  case AArch64_OP_GROUP_RegWithShiftExtend_0_64_x_s:
2464
4.67k
  case AArch64_OP_GROUP_RegWithShiftExtend_0_8_w_d:
2465
4.84k
  case AArch64_OP_GROUP_RegWithShiftExtend_0_8_w_s:
2466
6.44k
  case AArch64_OP_GROUP_RegWithShiftExtend_0_8_x_0:
2467
7.39k
  case AArch64_OP_GROUP_RegWithShiftExtend_0_8_x_d:
2468
7.39k
  case AArch64_OP_GROUP_RegWithShiftExtend_0_8_x_s:
2469
7.62k
  case AArch64_OP_GROUP_RegWithShiftExtend_1_16_w_d:
2470
7.72k
  case AArch64_OP_GROUP_RegWithShiftExtend_1_16_w_s:
2471
7.92k
  case AArch64_OP_GROUP_RegWithShiftExtend_1_32_w_d:
2472
8.13k
  case AArch64_OP_GROUP_RegWithShiftExtend_1_32_w_s:
2473
8.55k
  case AArch64_OP_GROUP_RegWithShiftExtend_1_64_w_d:
2474
8.61k
  case AArch64_OP_GROUP_RegWithShiftExtend_1_64_w_s:
2475
9.24k
  case AArch64_OP_GROUP_RegWithShiftExtend_1_8_w_d:
2476
9.43k
  case AArch64_OP_GROUP_RegWithShiftExtend_1_8_w_s: {
2477
    // signed (s) and unsigned (u) extend
2478
9.43k
    bool SignExtend = (bool)temp_arg_0;
2479
    // Extend width
2480
9.43k
    int ExtWidth = (int)temp_arg_1;
2481
    // w = word, x = doubleword
2482
9.43k
    char SrcRegKind = (char)temp_arg_2;
2483
    // Vector register element/arrangement specifier:
2484
    // B = 8bit, H = 16bit, S = 32bit, D = 64bit, Q = 128bit
2485
    // No suffix = complete register
2486
    // According to: ARM Reference manual supplement, doc number: DDI 0584
2487
9.43k
    char Suffix = (char)temp_arg_3;
2488
2489
    // Register will be added in printOperand() afterwards. Here we only handle
2490
    // shift and extend.
2491
9.43k
    AArch64_get_detail_op(MI, -1)->vas = get_vl_by_suffix(Suffix);
2492
2493
9.43k
    bool DoShift = ExtWidth != 8;
2494
9.43k
    if (!(SignExtend || DoShift || SrcRegKind == 'w'))
2495
2.55k
      return;
2496
2497
6.88k
    AArch64_set_detail_shift_ext(MI, OpNum, SignExtend, DoShift,
2498
6.88k
               ExtWidth, SrcRegKind);
2499
6.88k
    break;
2500
9.43k
  }
2501
9.43k
  }
2502
9.43k
}
2503
2504
/// Adds a register AArch64 operand at position OpNum and increases the op_count by
2505
/// one.
2506
void AArch64_set_detail_op_reg(MCInst *MI, unsigned OpNum, aarch64_reg Reg)
2507
465k
{
2508
465k
  if (!detail_is_set(MI))
2509
0
    return;
2510
465k
  AArch64_check_safe_inc(MI);
2511
2512
465k
  if (Reg == AARCH64_REG_ZA ||
2513
465k
      (Reg >= AARCH64_REG_ZAB0 && Reg < AARCH64_REG_ZT0)) {
2514
    // A tile register should be treated as SME operand.
2515
0
    AArch64_set_detail_op_sme(MI, OpNum, AARCH64_SME_MATRIX_TILE,
2516
0
            sme_reg_to_vas(Reg), 0, 0);
2517
0
    return;
2518
465k
  } else if (((Reg >= AARCH64_REG_P0) && (Reg <= AARCH64_REG_P15)) ||
2519
429k
       ((Reg >= AARCH64_REG_PN0) && (Reg <= AARCH64_REG_PN15))) {
2520
    // SME/SVE predicate register.
2521
40.2k
    AArch64_set_detail_op_pred(MI, OpNum);
2522
40.2k
    return;
2523
425k
  } else if (AArch64_get_detail(MI)->is_doing_sme) {
2524
7.65k
    CS_ASSERT_RET(map_get_op_type(MI, OpNum) & CS_OP_BOUND);
2525
7.65k
    if (AArch64_get_detail_op(MI, 0)->type == AARCH64_OP_SME) {
2526
7.18k
      AArch64_set_detail_op_sme(MI, OpNum,
2527
7.18k
              AARCH64_SME_MATRIX_SLICE_REG,
2528
7.18k
              AARCH64LAYOUT_INVALID, 0, 0);
2529
7.18k
    } else if (AArch64_get_detail_op(MI, 0)->type ==
2530
468
         AARCH64_OP_PRED) {
2531
468
      AArch64_set_detail_op_pred(MI, OpNum);
2532
468
    } else {
2533
0
      CS_ASSERT_RET(0 && "Unkown SME/SVE operand type");
2534
0
    }
2535
7.65k
    return;
2536
7.65k
  }
2537
417k
  if (map_get_op_type(MI, OpNum) & CS_OP_MEM) {
2538
74.8k
    AArch64_set_detail_op_mem(MI, OpNum, Reg);
2539
74.8k
    return;
2540
74.8k
  }
2541
2542
342k
  CS_ASSERT_RET(!(map_get_op_type(MI, OpNum) & CS_OP_BOUND));
2543
342k
  CS_ASSERT_RET(!(map_get_op_type(MI, OpNum) & CS_OP_MEM));
2544
342k
  CS_ASSERT_RET(map_get_op_type(MI, OpNum) == CS_OP_REG);
2545
2546
342k
  AArch64_get_detail_op(MI, 0)->type = AARCH64_OP_REG;
2547
342k
  AArch64_get_detail_op(MI, 0)->reg = Reg;
2548
342k
  AArch64_get_detail_op(MI, 0)->access = map_get_op_access(MI, OpNum);
2549
342k
  AArch64_inc_op_count(MI);
2550
342k
}
2551
2552
/// Check if the previous operand is a memory operand
2553
/// with only the base register set AND if this base register
2554
/// is write-back.
2555
/// This indicates the following immediate is a post-indexed
2556
/// memory offset.
2557
static bool prev_is_membase_wb(MCInst *MI)
2558
59.5k
{
2559
59.5k
  return AArch64_get_detail(MI)->op_count > 0 &&
2560
50.7k
         AArch64_get_detail_op(MI, -1)->type == AARCH64_OP_MEM &&
2561
3.47k
         AArch64_get_detail_op(MI, -1)->mem.disp == 0 &&
2562
3.47k
         get_detail(MI)->writeback;
2563
59.5k
}
2564
2565
/// Adds an immediate AArch64 operand at position OpNum and increases the op_count
2566
/// by one.
2567
void AArch64_set_detail_op_imm(MCInst *MI, unsigned OpNum,
2568
             aarch64_op_type ImmType, int64_t Imm)
2569
88.9k
{
2570
88.9k
  if (!detail_is_set(MI))
2571
0
    return;
2572
88.9k
  AArch64_check_safe_inc(MI);
2573
2574
88.9k
  if (AArch64_get_detail(MI)->is_doing_sme) {
2575
0
    CS_ASSERT_RET(map_get_op_type(MI, OpNum) & CS_OP_BOUND);
2576
0
    if (AArch64_get_detail_op(MI, 0)->type == AARCH64_OP_SME) {
2577
0
      AArch64_set_detail_op_sme(MI, OpNum,
2578
0
              AARCH64_SME_MATRIX_SLICE_OFF,
2579
0
              AARCH64LAYOUT_INVALID,
2580
0
              (uint32_t)1, 0);
2581
0
    } else if (AArch64_get_detail_op(MI, 0)->type ==
2582
0
         AARCH64_OP_PRED) {
2583
0
      AArch64_set_detail_op_pred(MI, OpNum);
2584
0
    } else {
2585
0
      CS_ASSERT_RET(0 && "Unkown SME operand type");
2586
0
    }
2587
0
    return;
2588
0
  }
2589
88.9k
  if (map_get_op_type(MI, OpNum) & CS_OP_MEM || prev_is_membase_wb(MI)) {
2590
32.9k
    AArch64_set_detail_op_mem(MI, OpNum, Imm);
2591
32.9k
    return;
2592
32.9k
  }
2593
2594
56.0k
  CS_ASSERT_RET(!(map_get_op_type(MI, OpNum) & CS_OP_MEM));
2595
56.0k
  CS_ASSERT_RET((map_get_op_type(MI, OpNum) & ~CS_OP_BOUND) == CS_OP_IMM);
2596
56.0k
  CS_ASSERT_RET(ImmType == AARCH64_OP_IMM || ImmType == AARCH64_OP_CIMM);
2597
2598
56.0k
  AArch64_get_detail_op(MI, 0)->type = ImmType;
2599
56.0k
  AArch64_get_detail_op(MI, 0)->imm = Imm;
2600
56.0k
  AArch64_get_detail_op(MI, 0)->access = map_get_op_access(MI, OpNum);
2601
56.0k
  AArch64_inc_op_count(MI);
2602
56.0k
}
2603
2604
void AArch64_set_detail_op_imm_range(MCInst *MI, unsigned OpNum,
2605
             uint32_t FirstImm, uint32_t Offset)
2606
3.08k
{
2607
3.08k
  if (!detail_is_set(MI))
2608
0
    return;
2609
3.08k
  AArch64_check_safe_inc(MI);
2610
2611
3.08k
  if (AArch64_get_detail(MI)->is_doing_sme) {
2612
3.08k
    CS_ASSERT_RET(map_get_op_type(MI, OpNum) & CS_OP_BOUND);
2613
3.08k
    if (AArch64_get_detail_op(MI, 0)->type == AARCH64_OP_SME) {
2614
3.08k
      AArch64_set_detail_op_sme(
2615
3.08k
        MI, OpNum, AARCH64_SME_MATRIX_SLICE_OFF_RANGE,
2616
3.08k
        AARCH64LAYOUT_INVALID, (uint32_t)FirstImm,
2617
3.08k
        (uint32_t)Offset);
2618
3.08k
    } else if (AArch64_get_detail_op(MI, 0)->type ==
2619
0
         AARCH64_OP_PRED) {
2620
0
      CS_ASSERT_RET(0 &&
2621
0
              "Unkown SME predicate imm range type");
2622
0
    } else {
2623
0
      CS_ASSERT_RET(0 && "Unkown SME operand type");
2624
0
    }
2625
3.08k
    return;
2626
3.08k
  }
2627
2628
0
  CS_ASSERT_RET(!(map_get_op_type(MI, OpNum) & CS_OP_MEM));
2629
0
  CS_ASSERT_RET(map_get_op_type(MI, OpNum) == CS_OP_IMM);
2630
2631
0
  AArch64_get_detail_op(MI, 0)->type = AARCH64_OP_IMM_RANGE;
2632
0
  AArch64_get_detail_op(MI, 0)->imm_range.first = FirstImm;
2633
0
  AArch64_get_detail_op(MI, 0)->imm_range.offset = Offset;
2634
0
  AArch64_get_detail_op(MI, 0)->access = map_get_op_access(MI, OpNum);
2635
0
  AArch64_inc_op_count(MI);
2636
0
}
2637
2638
/// Adds a memory AARCH64 operand at position OpNum. op_count is *not* increased by
2639
/// one. This is done by set_mem_access().
2640
void AArch64_set_detail_op_mem(MCInst *MI, unsigned OpNum, uint64_t Val)
2641
107k
{
2642
107k
  if (!detail_is_set(MI))
2643
0
    return;
2644
107k
  AArch64_check_safe_inc(MI);
2645
2646
107k
  AArch64_set_mem_access(MI, true);
2647
2648
107k
  cs_op_type secondary_type = map_get_op_type(MI, OpNum) & ~CS_OP_MEM;
2649
107k
  switch (secondary_type) {
2650
0
  default:
2651
0
    CS_ASSERT_RET(0 && "Secondary type not supported yet.");
2652
74.8k
  case CS_OP_REG: {
2653
74.8k
    bool is_index_reg = AArch64_get_detail_op(MI, 0)->mem.base !=
2654
74.8k
            AARCH64_REG_INVALID;
2655
74.8k
    if (is_index_reg)
2656
11.8k
      AArch64_get_detail_op(MI, 0)->mem.index = Val;
2657
62.9k
    else {
2658
62.9k
      AArch64_get_detail_op(MI, 0)->mem.base = Val;
2659
62.9k
    }
2660
2661
74.8k
    if (MCInst_opIsTying(MI, OpNum)) {
2662
      // Especially base registers can be writeback registers.
2663
      // For this they tie an MC operand which has write
2664
      // access. But this one is never processed in the printer
2665
      // (because it is never emitted). Therefor it is never
2666
      // added to the modified list.
2667
      // Here we check for this case and add the memory register
2668
      // to the modified list.
2669
15.5k
      map_add_implicit_write(MI, MCInst_getOpVal(MI, OpNum));
2670
15.5k
    }
2671
74.8k
    break;
2672
0
  }
2673
32.9k
  case CS_OP_IMM: {
2674
32.9k
    AArch64_get_detail_op(MI, 0)->mem.disp = Val;
2675
32.9k
    break;
2676
0
  }
2677
107k
  }
2678
2679
107k
  AArch64_get_detail_op(MI, 0)->type = AARCH64_OP_MEM;
2680
107k
  AArch64_get_detail_op(MI, 0)->access = map_get_op_access(MI, OpNum);
2681
107k
  AArch64_set_mem_access(MI, false);
2682
107k
}
2683
2684
/// Adds the shift and sign extend info to the previous operand.
2685
/// op_count is *not* incremented by one.
2686
void AArch64_set_detail_shift_ext(MCInst *MI, unsigned OpNum, bool SignExtend,
2687
          bool DoShift, unsigned ExtWidth,
2688
          char SrcRegKind)
2689
8.69k
{
2690
8.69k
  bool IsLSL = !SignExtend && SrcRegKind == 'x';
2691
8.69k
  if (IsLSL)
2692
3.68k
    AArch64_get_detail_op(MI, -1)->shift.type = AARCH64_SFT_LSL;
2693
5.00k
  else {
2694
5.00k
    aarch64_extender ext = SignExtend ? AARCH64_EXT_SXTB :
2695
5.00k
                AARCH64_EXT_UXTB;
2696
5.00k
    switch (SrcRegKind) {
2697
0
    default:
2698
0
      CS_ASSERT_RET(0 && "Extender not handled\n");
2699
0
    case 'b':
2700
0
      ext += 0;
2701
0
      break;
2702
0
    case 'h':
2703
0
      ext += 1;
2704
0
      break;
2705
4.60k
    case 'w':
2706
4.60k
      ext += 2;
2707
4.60k
      break;
2708
402
    case 'x':
2709
402
      ext += 3;
2710
402
      break;
2711
5.00k
    }
2712
5.00k
    AArch64_get_detail_op(MI, -1)->ext = ext;
2713
5.00k
  }
2714
8.69k
  if (DoShift || IsLSL) {
2715
6.54k
    unsigned ShiftAmount = DoShift ? Log2_32(ExtWidth / 8) : 0;
2716
6.54k
    AArch64_get_detail_op(MI, -1)->shift.type = AARCH64_SFT_LSL;
2717
6.54k
    AArch64_get_detail_op(MI, -1)->shift.value = ShiftAmount;
2718
6.54k
  }
2719
8.69k
}
2720
2721
/// Transforms the immediate of the operand to a float and stores it.
2722
/// Increments the op_counter by one.
2723
void AArch64_set_detail_op_float(MCInst *MI, unsigned OpNum, float Val)
2724
705
{
2725
705
  if (!detail_is_set(MI))
2726
0
    return;
2727
705
  AArch64_check_safe_inc(MI);
2728
2729
705
  AArch64_get_detail_op(MI, 0)->type = AARCH64_OP_FP;
2730
705
  AArch64_get_detail_op(MI, 0)->fp = Val;
2731
705
  AArch64_get_detail_op(MI, 0)->access = map_get_op_access(MI, OpNum);
2732
705
  AArch64_inc_op_count(MI);
2733
705
}
2734
2735
/// Adds a the system operand and increases the op_count by
2736
/// one.
2737
void AArch64_set_detail_op_sys(MCInst *MI, unsigned OpNum, aarch64_sysop sys_op,
2738
             aarch64_op_type type)
2739
10.3k
{
2740
10.3k
  if (!detail_is_set(MI))
2741
0
    return;
2742
10.3k
  AArch64_check_safe_inc(MI);
2743
2744
10.3k
  AArch64_get_detail_op(MI, 0)->type = type;
2745
10.3k
  AArch64_get_detail_op(MI, 0)->sysop = sys_op;
2746
10.3k
  if (sys_op.sub_type == AARCH64_OP_EXACTFPIMM) {
2747
356
    AArch64_get_detail_op(MI, 0)->fp =
2748
356
      aarch64_exact_fp_to_fp(sys_op.imm.exactfpimm);
2749
356
  }
2750
10.3k
  AArch64_inc_op_count(MI);
2751
10.3k
}
2752
2753
void AArch64_set_detail_op_pred(MCInst *MI, unsigned OpNum)
2754
41.1k
{
2755
41.1k
  if (!detail_is_set(MI))
2756
0
    return;
2757
41.1k
  AArch64_check_safe_inc(MI);
2758
2759
41.1k
  if (AArch64_get_detail_op(MI, 0)->type == AARCH64_OP_INVALID) {
2760
39.3k
    setup_pred_operand(MI);
2761
39.3k
  }
2762
41.1k
  aarch64_op_pred *p = &AArch64_get_detail_op(MI, 0)->pred;
2763
41.1k
  if (p->reg == AARCH64_REG_INVALID) {
2764
39.3k
    p->reg = MCInst_getOpVal(MI, OpNum);
2765
39.3k
    AArch64_get_detail_op(MI, 0)->access =
2766
39.3k
      map_get_op_access(MI, OpNum);
2767
39.3k
    AArch64_get_detail(MI)->is_doing_sme = true;
2768
39.3k
    return;
2769
39.3k
  } else if (p->vec_select == AARCH64_REG_INVALID) {
2770
1.28k
    p->vec_select = MCInst_getOpVal(MI, OpNum);
2771
1.28k
    return;
2772
1.28k
  } else if (p->imm_index == -1) {
2773
468
    p->imm_index = MCInst_getOpVal(MI, OpNum);
2774
468
    return;
2775
468
  }
2776
0
  CS_ASSERT_RET(0 && "Should not be reached.");
2777
0
}
2778
2779
/// Adds a SME matrix component to a SME operand.
2780
void AArch64_set_detail_op_sme(MCInst *MI, unsigned OpNum,
2781
             aarch64_sme_op_part part,
2782
             AArch64Layout_VectorLayout vas, uint64_t arg_0,
2783
             uint64_t arg_1)
2784
25.0k
{
2785
25.0k
  if (!detail_is_set(MI))
2786
0
    return;
2787
25.0k
  AArch64_check_safe_inc(MI);
2788
2789
25.0k
  AArch64_get_detail_op(MI, 0)->type = AARCH64_OP_SME;
2790
25.0k
  switch (part) {
2791
0
  default:
2792
0
    printf("Unhandled SME operand part %d\n", part);
2793
0
    CS_ASSERT_RET(0);
2794
1.73k
  case AARCH64_SME_MATRIX_TILE_LIST: {
2795
1.73k
    setup_sme_operand(MI);
2796
1.73k
    int Tile = arg_0;
2797
1.73k
    AArch64_get_detail_op(MI, 0)->sme.type = AARCH64_SME_OP_TILE;
2798
1.73k
    AArch64_get_detail_op(MI, 0)->sme.tile = Tile;
2799
1.73k
    AArch64_get_detail_op(MI, 0)->vas = vas;
2800
1.73k
    AArch64_get_detail_op(MI, 0)->access =
2801
1.73k
      map_get_op_access(MI, OpNum);
2802
1.73k
    AArch64_get_detail(MI)->is_doing_sme = true;
2803
1.73k
    break;
2804
0
  }
2805
8.90k
  case AARCH64_SME_MATRIX_TILE:
2806
8.90k
    CS_ASSERT_RET(map_get_op_type(MI, OpNum) == CS_OP_REG);
2807
2808
8.90k
    setup_sme_operand(MI);
2809
8.90k
    AArch64_get_detail_op(MI, 0)->sme.type = AARCH64_SME_OP_TILE;
2810
8.90k
    AArch64_get_detail_op(MI, 0)->sme.tile =
2811
8.90k
      MCInst_getOpVal(MI, OpNum);
2812
8.90k
    AArch64_get_detail_op(MI, 0)->vas = vas;
2813
8.90k
    AArch64_get_detail_op(MI, 0)->access =
2814
8.90k
      map_get_op_access(MI, OpNum);
2815
8.90k
    AArch64_get_detail(MI)->is_doing_sme = true;
2816
8.90k
    break;
2817
7.18k
  case AARCH64_SME_MATRIX_SLICE_REG:
2818
7.18k
    CS_ASSERT_RET((map_get_op_type(MI, OpNum) &
2819
7.18k
             ~(CS_OP_MEM | CS_OP_BOUND)) == CS_OP_REG);
2820
7.18k
    CS_ASSERT_RET(AArch64_get_detail_op(MI, 0)->type ==
2821
7.18k
            AARCH64_OP_SME);
2822
2823
    // SME operand already present. Add the slice to it.
2824
7.18k
    AArch64_get_detail_op(MI, 0)->sme.type =
2825
7.18k
      AARCH64_SME_OP_TILE_VEC;
2826
7.18k
    AArch64_get_detail_op(MI, 0)->sme.slice_reg =
2827
7.18k
      MCInst_getOpVal(MI, OpNum);
2828
7.18k
    break;
2829
4.10k
  case AARCH64_SME_MATRIX_SLICE_OFF: {
2830
4.10k
    CS_ASSERT_RET((map_get_op_type(MI, OpNum) &
2831
4.10k
             ~(CS_OP_MEM | CS_OP_BOUND)) == CS_OP_IMM);
2832
    // Because we took care of the slice register before, the op at -1 must be a SME operand.
2833
4.10k
    CS_ASSERT_RET(AArch64_get_detail_op(MI, 0)->type ==
2834
4.10k
            AARCH64_OP_SME);
2835
4.10k
    CS_ASSERT_RET(
2836
4.10k
      AArch64_get_detail_op(MI, 0)->sme.slice_offset.imm ==
2837
4.10k
      AARCH64_SLICE_IMM_INVALID);
2838
4.10k
    uint16_t offset = arg_0;
2839
4.10k
    AArch64_get_detail_op(MI, 0)->sme.slice_offset.imm = offset;
2840
4.10k
    break;
2841
4.10k
  }
2842
3.08k
  case AARCH64_SME_MATRIX_SLICE_OFF_RANGE: {
2843
3.08k
    uint8_t First = arg_0;
2844
3.08k
    uint8_t Offset = arg_1;
2845
3.08k
    AArch64_get_detail_op(MI, 0)->sme.slice_offset.imm_range.first =
2846
3.08k
      First;
2847
3.08k
    AArch64_get_detail_op(MI, 0)->sme.slice_offset.imm_range.offset =
2848
3.08k
      Offset;
2849
3.08k
    AArch64_get_detail_op(MI, 0)->sme.has_range_offset = true;
2850
3.08k
    break;
2851
4.10k
  }
2852
25.0k
  }
2853
25.0k
}
2854
2855
static void insert_op(MCInst *MI, unsigned index, cs_aarch64_op op)
2856
11.2k
{
2857
11.2k
  if (!detail_is_set(MI)) {
2858
0
    return;
2859
0
  }
2860
2861
11.2k
  AArch64_check_safe_inc(MI);
2862
11.2k
  cs_aarch64_op *ops = AArch64_get_detail(MI)->operands;
2863
11.2k
  int i = AArch64_get_detail(MI)->op_count;
2864
11.2k
  if (index == -1) {
2865
11.2k
    ops[i] = op;
2866
11.2k
    AArch64_inc_op_count(MI);
2867
11.2k
    return;
2868
11.2k
  }
2869
0
  for (; i > 0 && i > index; --i) {
2870
0
    ops[i] = ops[i - 1];
2871
0
  }
2872
0
  ops[index] = op;
2873
0
  AArch64_inc_op_count(MI);
2874
0
}
2875
2876
/// Inserts a float to the detail operands at @index.
2877
/// If @index == -1, it pushes the operand to the end of the ops array.
2878
/// Already present operands are moved.
2879
void AArch64_insert_detail_op_float_at(MCInst *MI, unsigned index, double val,
2880
               cs_ac_type access)
2881
0
{
2882
0
  if (!detail_is_set(MI))
2883
0
    return;
2884
2885
0
  AArch64_check_safe_inc(MI);
2886
2887
0
  cs_aarch64_op op;
2888
0
  AArch64_setup_op(&op);
2889
0
  op.type = AARCH64_OP_FP;
2890
0
  op.fp = val;
2891
0
  op.access = access;
2892
2893
0
  insert_op(MI, index, op);
2894
0
}
2895
2896
/// Inserts a register to the detail operands at @index.
2897
/// If @index == -1, it pushes the operand to the end of the ops array.
2898
/// Already present operands are moved.
2899
void AArch64_insert_detail_op_reg_at(MCInst *MI, unsigned index,
2900
             aarch64_reg Reg, cs_ac_type access)
2901
234
{
2902
234
  if (!detail_is_set(MI))
2903
0
    return;
2904
2905
234
  AArch64_check_safe_inc(MI);
2906
2907
234
  cs_aarch64_op op;
2908
234
  AArch64_setup_op(&op);
2909
234
  op.type = AARCH64_OP_REG;
2910
234
  op.reg = Reg;
2911
234
  op.access = access;
2912
2913
234
  insert_op(MI, index, op);
2914
234
}
2915
2916
/// Inserts a immediate to the detail operands at @index.
2917
/// If @index == -1, it pushes the operand to the end of the ops array.
2918
/// Already present operands are moved.
2919
void AArch64_insert_detail_op_imm_at(MCInst *MI, unsigned index, int64_t Imm)
2920
4.62k
{
2921
4.62k
  if (!detail_is_set(MI))
2922
0
    return;
2923
4.62k
  AArch64_check_safe_inc(MI);
2924
2925
4.62k
  cs_aarch64_op op;
2926
4.62k
  AArch64_setup_op(&op);
2927
4.62k
  op.type = AARCH64_OP_IMM;
2928
4.62k
  op.imm = Imm;
2929
4.62k
  op.access = CS_AC_READ;
2930
2931
4.62k
  insert_op(MI, index, op);
2932
4.62k
}
2933
2934
void AArch64_insert_detail_op_sys(MCInst *MI, unsigned index,
2935
          aarch64_sysop sys_op, aarch64_op_type type)
2936
4.31k
{
2937
4.31k
  if (!detail_is_set(MI))
2938
0
    return;
2939
4.31k
  AArch64_check_safe_inc(MI);
2940
2941
4.31k
  cs_aarch64_op op;
2942
4.31k
  AArch64_setup_op(&op);
2943
4.31k
  op.type = type;
2944
4.31k
  op.sysop = sys_op;
2945
4.31k
  if (op.sysop.sub_type == AARCH64_OP_EXACTFPIMM) {
2946
4.23k
    op.fp = aarch64_exact_fp_to_fp(op.sysop.imm.exactfpimm);
2947
4.23k
  }
2948
4.31k
  insert_op(MI, index, op);
2949
4.31k
}
2950
2951
void AArch64_insert_detail_op_sme(MCInst *MI, unsigned index,
2952
          aarch64_op_sme sme_op)
2953
2.02k
{
2954
2.02k
  if (!detail_is_set(MI))
2955
0
    return;
2956
2.02k
  AArch64_check_safe_inc(MI);
2957
2958
2.02k
  cs_aarch64_op op;
2959
2.02k
  AArch64_setup_op(&op);
2960
2.02k
  op.type = AARCH64_OP_SME;
2961
2.02k
  op.sme = sme_op;
2962
2.02k
  insert_op(MI, index, op);
2963
2.02k
}
2964
2965
#endif