Coverage Report

Created: 2026-07-25 10:20

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/binutils-gdb/include/opcode/aarch64.h
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/* AArch64 assembler/disassembler support.
2
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   Copyright (C) 2009-2026 Free Software Foundation, Inc.
4
   Contributed by ARM Ltd.
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6
   This file is part of GNU Binutils.
7
8
   This program is free software; you can redistribute it and/or modify
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   it under the terms of the GNU General Public License as published by
10
   the Free Software Foundation; either version 3 of the license, or
11
   (at your option) any later version.
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13
   This program is distributed in the hope that it will be useful,
14
   but WITHOUT ANY WARRANTY; without even the implied warranty of
15
   MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
16
   GNU General Public License for more details.
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18
   You should have received a copy of the GNU General Public License
19
   along with this program; see the file COPYING3. If not,
20
   see <http://www.gnu.org/licenses/>.  */
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#ifndef OPCODE_AARCH64_H
23
#define OPCODE_AARCH64_H
24
25
#include "bfd.h"
26
#include <stdint.h>
27
#include <assert.h>
28
#include <stdlib.h>
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30
#include "dis-asm.h"
31
32
#ifdef __cplusplus
33
extern "C" {
34
#endif
35
36
/* The offset for pc-relative addressing is currently defined to be 0.  */
37
1.48M
#define AARCH64_PCREL_OFFSET    0
38
39
typedef uint32_t aarch64_insn;
40
41
/* An enum containing all known CPU features.  The values act as bit positions
42
   into aarch64_feature_set.  */
43
enum aarch64_feature_bit {
44
  /* Architecture versions.  */
45
  AARCH64_FEATURE_V8,
46
  AARCH64_FEATURE_V8_1A,
47
  AARCH64_FEATURE_V8_2A,
48
  AARCH64_FEATURE_V8_3A,
49
  AARCH64_FEATURE_V8_4A,
50
  AARCH64_FEATURE_V8_5A,
51
  AARCH64_FEATURE_V8_6A,
52
  AARCH64_FEATURE_V8_7A,
53
  AARCH64_FEATURE_V8_8A,
54
  AARCH64_FEATURE_V8_9A,
55
56
  AARCH64_FEATURE_V9A,
57
  AARCH64_FEATURE_V9_1A,
58
  AARCH64_FEATURE_V9_2A,
59
  AARCH64_FEATURE_V9_3A,
60
  AARCH64_FEATURE_V9_4A,
61
  AARCH64_FEATURE_V9_5A,
62
  AARCH64_FEATURE_V9_6A,
63
  AARCH64_FEATURE_V9_7A,
64
65
  /* Armv8-A processors only - this is unset for Armv8-R.  */
66
  AARCH64_FEATURE_V8A,
67
  /* Armv8-R processors.  */
68
  AARCH64_FEATURE_V8R,
69
70
  /* Bfloat16 insns.  */
71
  AARCH64_FEATURE_BFLOAT16,
72
  /* SVE2 instructions.  */
73
  AARCH64_FEATURE_SVE2,
74
  AARCH64_FEATURE_SVE2_AES,
75
  AARCH64_FEATURE_SVE2_BITPERM,
76
  AARCH64_FEATURE_SVE2_SM4,
77
  AARCH64_FEATURE_SVE2_SHA3,
78
  /* Scalable Matrix Extension.  */
79
  AARCH64_FEATURE_SME,
80
  /* Atomic 64-byte load/store.  */
81
  AARCH64_FEATURE_LS64,
82
  /* v8.3 Pointer Authentication.  */
83
  AARCH64_FEATURE_PAUTH,
84
  /* FP instructions.  */
85
  AARCH64_FEATURE_FP,
86
  /* SIMD instructions.  */
87
  AARCH64_FEATURE_SIMD,
88
  /* CRC instructions.  */
89
  AARCH64_FEATURE_CRC,
90
  /* LSE instructions.  */
91
  AARCH64_FEATURE_LSE,
92
  /* LSFE instructions.  */
93
  AARCH64_FEATURE_LSFE,
94
  /* PAN instructions.  */
95
  AARCH64_FEATURE_PAN,
96
  /* LOR instructions.  */
97
  AARCH64_FEATURE_LOR,
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  /* v8.1 SIMD instructions.  */
99
  AARCH64_FEATURE_RDMA,
100
  /* v8.2 FP16 instructions.  */
101
  AARCH64_FEATURE_F16,
102
  /* RAS Extensions.  */
103
  AARCH64_FEATURE_RAS,
104
  /* Statistical Profiling.  */
105
  AARCH64_FEATURE_PROFILE,
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  /* SVE instructions.  */
107
  AARCH64_FEATURE_SVE,
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  /* RCPC instructions.  */
109
  AARCH64_FEATURE_RCPC,
110
  /* RCPC2 instructions.  */
111
  AARCH64_FEATURE_RCPC2,
112
  /* Complex # instructions.  */
113
  AARCH64_FEATURE_COMPNUM,
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  /* JavaScript conversion instructions.  */
115
  AARCH64_FEATURE_JSCVT,
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  /* Dot Product instructions.  */
117
  AARCH64_FEATURE_DOTPROD,
118
  /* SM3 & SM4 instructions.  */
119
  AARCH64_FEATURE_SM4,
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  /* SHA2 instructions.  */
121
  AARCH64_FEATURE_SHA2,
122
  /* SHA3 instructions.  */
123
  AARCH64_FEATURE_SHA3,
124
  /* AES instructions.  */
125
  AARCH64_FEATURE_AES,
126
  /* v8.2 FP16FML ins.  */
127
  AARCH64_FEATURE_F16_FML,
128
  /* v8.5 Flag Manipulation version 2.  */
129
  AARCH64_FEATURE_FLAGMANIP,
130
  /* FRINT[32,64][Z,X] insns.  */
131
  AARCH64_FEATURE_FRINTTS,
132
  /* SB instruction.  */
133
  AARCH64_FEATURE_SB,
134
  /* Execution and Data Prediction Restriction instructions.  */
135
  AARCH64_FEATURE_PREDRES,
136
  /* DC CVADP.  */
137
  AARCH64_FEATURE_CVADP,
138
  /* Random Number instructions.  */
139
  AARCH64_FEATURE_RNG,
140
  /* SSBS mechanism enabled.  */
141
  AARCH64_FEATURE_SSBS,
142
  /* Compare and branch instructions.  */
143
  AARCH64_FEATURE_CMPBR,
144
  /* Memory Tagging Extension.  */
145
  AARCH64_FEATURE_MEMTAG,
146
  /* Outer Cacheable Cache Maintenance Operation.  */
147
  AARCH64_FEATURE_OCCMO,
148
  /* Transactional Memory Extension.  */
149
  AARCH64_FEATURE_TME,
150
  /* XS memory attribute.  */
151
  AARCH64_FEATURE_XS,
152
  /* WFx instructions with timeout.  */
153
  AARCH64_FEATURE_WFXT,
154
  /* Standardization of memory operations.  */
155
  AARCH64_FEATURE_MOPS,
156
  /* Hinted conditional branches.  */
157
  AARCH64_FEATURE_HBC,
158
  /* Matrix Multiply instructions.  */
159
  AARCH64_FEATURE_I8MM,
160
  AARCH64_FEATURE_F32MM,
161
  AARCH64_FEATURE_F64MM,
162
  /* v8.4 Flag Manipulation.  */
163
  AARCH64_FEATURE_FLAGM,
164
  /* SME F64F64.  */
165
  AARCH64_FEATURE_SME_F64F64,
166
  /* SME I16I64.  */
167
  AARCH64_FEATURE_SME_I16I64,
168
  /* Common Short Sequence Compression instructions.  */
169
  AARCH64_FEATURE_CSSC,
170
  /* Check Feature Status Extension.  */
171
  AARCH64_FEATURE_CHK,
172
  /* Guarded Control Stack.  */
173
  AARCH64_FEATURE_GCS,
174
  /* SME2.  */
175
  AARCH64_FEATURE_SME2,
176
  /* Translation Hardening Extension.  */
177
  AARCH64_FEATURE_THE,
178
  /* LSE128.  */
179
  AARCH64_FEATURE_LSE128,
180
  /* LSUI - Unprivileged Load Store.  */
181
  AARCH64_FEATURE_LSUI,
182
  /* ARMv8.9-A RAS Extensions.  */
183
  AARCH64_FEATURE_RASv2,
184
  /* Address Translate Stage 1.  */
185
  AARCH64_FEATURE_ATS1A,
186
  /* Speculation Prediction Restriction instructions.  */
187
  AARCH64_FEATURE_PREDRES2,
188
  /* Instrumentation Extension.  */
189
  AARCH64_FEATURE_ITE,
190
  /* 128-bit page table descriptor, system registers
191
     and instructions.  */
192
  AARCH64_FEATURE_D128,
193
  /* SME2.1 instructions.  */
194
  AARCH64_FEATURE_SME2p1,
195
  /* SVE2.1 instructions.  */
196
  AARCH64_FEATURE_SVE2p1,
197
  /* SVE_F16F32MM instructions.  */
198
  AARCH64_FEATURE_SVE_F16F32MM,
199
  /* F8F32MM instructions.  */
200
  AARCH64_FEATURE_F8F32MM,
201
  /* F8F16MM instructions.  */
202
  AARCH64_FEATURE_F8F16MM,
203
  /* SVE_PMULL128 extension. */
204
  AARCH64_FEATURE_SVE_AES,
205
  /* SVE AES2 instructions.  */
206
  AARCH64_FEATURE_SVE_AES2,
207
  /* SSVE_AES extension. */
208
  AARCH64_FEATURE_SSVE_AES,
209
  /* SVE_BITPERM extension. */
210
  AARCH64_FEATURE_SVE_BITPERM,
211
  /* SSVE_BITPERM extension. */
212
  AARCH64_FEATURE_SSVE_BITPERM,
213
  /* RCPC3 instructions.  */
214
  AARCH64_FEATURE_RCPC3,
215
  /* Checked Pointer Arithmetic instructions. */
216
  AARCH64_FEATURE_CPA,
217
  /* FAMINMAX instructions.  */
218
  AARCH64_FEATURE_FAMINMAX,
219
  /* FP8 instructions.  */
220
  AARCH64_FEATURE_FP8,
221
  /* LUT instructions.  */
222
  AARCH64_FEATURE_LUT,
223
  /* Branch Record Buffer Extension */
224
  AARCH64_FEATURE_BRBE,
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  /* SME LUTv2 instructions.  */
226
  AARCH64_FEATURE_SME_LUTv2,
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  /* FP8FMA instructions.  */
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  AARCH64_FEATURE_FP8FMA,
229
  /* FP8DOT4 instructions.  */
230
  AARCH64_FEATURE_FP8DOT4,
231
  /* FP8DOT2 instructions.  */
232
  AARCH64_FEATURE_FP8DOT2,
233
  /* SSVE FP8FMA instructions.  */
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  AARCH64_FEATURE_SSVE_FP8FMA,
235
  /* SSVE FP8DOT4 instructions.  */
236
  AARCH64_FEATURE_SSVE_FP8DOT4,
237
  /* SSVE FP8DOT2 instructions.  */
238
  AARCH64_FEATURE_SSVE_FP8DOT2,
239
  /* SME F8F32 instructions.  */
240
  AARCH64_FEATURE_SME_F8F32,
241
  /* SME F8F16 instructions.  */
242
  AARCH64_FEATURE_SME_F8F16,
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  /* Non-widening half-precision FP16 to FP16 arithmetic for SME2.  */
244
  AARCH64_FEATURE_SME_F16F16,
245
  /* FEAT_SVE_BFSCALE.  */
246
  AARCH64_FEATURE_SVE_BFSCALE,
247
  /* SVE Z-targeting non-widening BFloat16 instructions.  */
248
  AARCH64_FEATURE_SVE_B16B16,
249
  /* SME non-widening BFloat16 instructions.  */
250
  AARCH64_FEATURE_SME_B16B16,
251
  /* SVE2.2.  */
252
  AARCH64_FEATURE_SVE2p2,
253
  /* SME2.2.  */
254
  AARCH64_FEATURE_SME2p2,
255
  /* FPRCVT instructions.  */
256
  AARCH64_FEATURE_FPRCVT,
257
  /* Point of Physical Storage.  */
258
  AARCH64_FEATURE_PoPS,
259
  /* GICv5 (Generic Interrupt Controller) CPU Interface Extension.  */
260
  AARCH64_FEATURE_GCIE,
261
  /* SVE FEXPA instruction in streaming mode.  */
262
  AARCH64_FEATURE_SSVE_FEXPA,
263
  /* SME TMOP instructions.  */
264
  AARCH64_FEATURE_SME_TMOP,
265
  /* SME MOP4 instructions.  */
266
  AARCH64_FEATURE_SME_MOP4,
267
  /* LSCP instructions.  */
268
  AARCH64_FEATURE_LSCP,
269
  /* +mops-go */
270
  AARCH64_FEATURE_MOPS_GO,
271
  /* SVE2.3.  */
272
  AARCH64_FEATURE_SVE2p3,
273
  /* SME2.3.  */
274
  AARCH64_FEATURE_SME2p3,
275
  /* F16F32DOT instructions.  */
276
  AARCH64_FEATURE_F16F32DOT,
277
  /* F16F32MM instructions.  */
278
  AARCH64_FEATURE_F16F32MM,
279
  /* F16MM instructions.  */
280
  AARCH64_FEATURE_F16MM,
281
  /* SVE B16MM instructions.  */
282
  AARCH64_FEATURE_SVE_B16MM,
283
  /* POE2 instructions.  */
284
  AARCH64_FEATURE_POE2,
285
  /* TEV instructions.  */
286
  AARCH64_FEATURE_TEV,
287
  /* MTETC.  */
288
  AARCH64_FEATURE_MTETC,
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  /* TLBI Domains.  */
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  AARCH64_FEATURE_TLBID,
291
  /* SME_FA64.  */
292
  AARCH64_FEATURE_SME_FA64,
293
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  /* Virtual features.  These are used to gate instructions that are enabled
295
     by either of two (or more) sets of command line flags.  */
296
  /* +sve2 or +ssve-aes */
297
  AARCH64_FEATURE_SVE2_SSVE_AES,
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  /* +sve or +ssve-fexpa */
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  AARCH64_FEATURE_SVE_SSVE_FEXPA,
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  /* +fp8fma+sve or +ssve-fp8fma  */
301
  AARCH64_FEATURE_FP8FMA_SVE,
302
  /* +fp8dot4+sve or +ssve-fp8dot4  */
303
  AARCH64_FEATURE_FP8DOT4_SVE,
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  /* +fp8dot2+sve or +ssve-fp8dot2  */
305
  AARCH64_FEATURE_FP8DOT2_SVE,
306
  /* +sme-f16f16 or +sme-f8f16  */
307
  AARCH64_FEATURE_SME_F16F16_F8F16,
308
  /* +sve or +sme2p2 */
309
  AARCH64_FEATURE_SVE_SME2p2,
310
  /* +sve2 or +sme2 */
311
  AARCH64_FEATURE_SVE2_SME2,
312
  /* +sve2p1 or +sme */
313
  AARCH64_FEATURE_SVE2p1_SME,
314
  /* +sve2p1 or +sme2 */
315
  AARCH64_FEATURE_SVE2p1_SME2,
316
  /* +sve2p1 or +sme2p1 */
317
  AARCH64_FEATURE_SVE2p1_SME2p1,
318
  /* +sve2p2 or +sme2p2 */
319
  AARCH64_FEATURE_SVE2p2_SME2p2,
320
  /* +sve2p3 or +sme2p3 */
321
  AARCH64_FEATURE_SVE2p3_SME2p3,
322
  /* +d128 or +tlbid */
323
  AARCH64_FEATURE_D128_TLBID,
324
  AARCH64_NUM_FEATURES
325
};
326
327
typedef uint64_t aarch64_feature_word;
328
8
#define AARCH64_BITS_PER_FEATURE_WORD 64
329
330
#define AA64_REPLICATE(SEP, BODY, ...)  \
331
980k
  BODY (0, __VA_ARGS__) SEP   \
332
980k
  BODY (1, __VA_ARGS__) SEP   \
333
980k
  BODY (2, __VA_ARGS__)
334
335
/* Some useful SEP operators for use with replication.  */
336
#define REP_COMMA ,
337
#define REP_SEMICOLON ;
338
#define REP_OR_OR ||
339
#define REP_AND_AND &&
340
#define REP_PLUS +
341
342
/* Not currently needed, but if an empty SEP is required define:
343
  #define REP_NO_SEP
344
  Then use REP_NO_SEP in the SEP field.  */
345
346
/* Used to generate one instance of VAL for each value of ELT (ELT is
347
   not otherwise used).  */
348
6
#define AA64_REPVAL(ELT, VAL) VAL
349
350
/* static_assert requires C11 (or C++11) or later.  Support older
351
   versions by disabling this check since compilers without this are
352
   pretty uncommon these days.  */
353
#if ((defined __STDC_VERSION__ && __STDC_VERSION__ >= 201112L)  \
354
     || (defined __cplusplus && __cplusplus >= 201103L))
355
static_assert ((AA64_REPLICATE (REP_PLUS, AA64_REPVAL,
356
        AARCH64_BITS_PER_FEATURE_WORD))
357
         >= AARCH64_NUM_FEATURES,
358
         "Insufficient repetitions in AA64_REPLICATE()");
359
#endif
360
361
/* These macros take an initial argument X that gives the index into
362
   an aarch64_feature_set.  The macros then return the bitmask for
363
   that array index.  */
364
365
/* A mask in which feature bit BIT is set and all other bits are clear.  */
366
#define AARCH64_UINT64_BIT(X, BIT)      \
367
6
  ((X) == (BIT) / AARCH64_BITS_PER_FEATURE_WORD    \
368
6
   ? 1ULL << (BIT) % AARCH64_BITS_PER_FEATURE_WORD  \
369
6
   : 0)
370
371
/* A mask that includes only AARCH64_FEATURE_<NAME>.  */
372
#define AARCH64_FEATBIT(X, NAME) \
373
6
  AARCH64_UINT64_BIT (X, AARCH64_FEATURE_##NAME)
374
375
/* A mask of the features that are enabled by each architecture version,
376
   excluding those that are inherited from other architecture versions.  */
377
0
#define AARCH64_ARCH_V8A_FEATURES(X)  (AARCH64_FEATBIT (X, V8A) \
378
0
           | AARCH64_FEATBIT (X, FP)  \
379
0
           | AARCH64_FEATBIT (X, RAS) \
380
0
           | AARCH64_FEATBIT (X, SIMD)  \
381
0
           | AARCH64_FEATBIT (X, CHK))
382
0
#define AARCH64_ARCH_V8_1A_FEATURES(X)  (AARCH64_FEATBIT (X, V8_1A) \
383
0
           | AARCH64_FEATBIT (X, CRC) \
384
0
           | AARCH64_FEATBIT (X, LSE) \
385
0
           | AARCH64_FEATBIT (X, PAN) \
386
0
           | AARCH64_FEATBIT (X, LOR) \
387
0
           | AARCH64_FEATBIT (X, RDMA))
388
0
#define AARCH64_ARCH_V8_2A_FEATURES(X)  (AARCH64_FEATBIT (X, V8_2A))
389
0
#define AARCH64_ARCH_V8_3A_FEATURES(X)  (AARCH64_FEATBIT (X, V8_3A) \
390
0
           | AARCH64_FEATBIT (X, PAUTH) \
391
0
           | AARCH64_FEATBIT (X, RCPC)  \
392
0
           | AARCH64_FEATBIT (X, COMPNUM) \
393
0
           | AARCH64_FEATBIT (X, JSCVT))
394
0
#define AARCH64_ARCH_V8_4A_FEATURES(X)  (AARCH64_FEATBIT (X, V8_4A) \
395
0
           | AARCH64_FEATBIT (X, RCPC2) \
396
0
           | AARCH64_FEATBIT (X, DOTPROD) \
397
0
           | AARCH64_FEATBIT (X, FLAGM) \
398
0
           | AARCH64_FEATBIT (X, F16_FML))
399
#define AARCH64_ARCH_V8_5A_FEATURES(X)  (AARCH64_FEATBIT (X, V8_5A) \
400
           | AARCH64_FEATBIT (X, FLAGMANIP) \
401
           | AARCH64_FEATBIT (X, FRINTTS) \
402
           | AARCH64_FEATBIT (X, SB)  \
403
           | AARCH64_FEATBIT (X, PREDRES) \
404
           | AARCH64_FEATBIT (X, CVADP) \
405
           | AARCH64_FEATBIT (X, SSBS))
406
#define AARCH64_ARCH_V8_6A_FEATURES(X)  (AARCH64_FEATBIT (X, V8_6A) \
407
           | AARCH64_FEATBIT (X, BFLOAT16) \
408
           | AARCH64_FEATBIT (X, I8MM))
409
#define AARCH64_ARCH_V8_7A_FEATURES(X)  (AARCH64_FEATBIT (X, V8_7A) \
410
           | AARCH64_FEATBIT (X, XS)      \
411
           | AARCH64_FEATBIT (X, WFXT)    \
412
           | AARCH64_FEATBIT (X, LS64))
413
#define AARCH64_ARCH_V8_8A_FEATURES(X)  (AARCH64_FEATBIT (X, V8_8A) \
414
           | AARCH64_FEATBIT (X, MOPS)  \
415
           | AARCH64_FEATBIT (X, HBC))
416
#define AARCH64_ARCH_V8_9A_FEATURES(X)  (AARCH64_FEATBIT (X, V8_9A) \
417
           | AARCH64_FEATBIT (X, CSSC) \
418
           | AARCH64_FEATBIT (X, RASv2) \
419
           | AARCH64_FEATBIT (X, ATS1A) \
420
           | AARCH64_FEATBIT (X, PREDRES2) \
421
          )
422
423
#define AARCH64_ARCH_V9A_FEATURES(X)  (AARCH64_FEATBIT (X, V9A) \
424
           | AARCH64_FEATBIT (X, F16) \
425
           | AARCH64_FEATBIT (X, SVE) \
426
           | AARCH64_FEATBIT (X, SVE2))
427
#define AARCH64_ARCH_V9_1A_FEATURES(X)  (AARCH64_FEATBIT (X, V9_1A) \
428
           | AARCH64_ARCH_V8_6A_FEATURES (X))
429
#define AARCH64_ARCH_V9_2A_FEATURES(X)  (AARCH64_FEATBIT (X, V9_2A) \
430
           | AARCH64_ARCH_V8_7A_FEATURES (X))
431
#define AARCH64_ARCH_V9_3A_FEATURES(X)  (AARCH64_FEATBIT (X, V9_3A) \
432
           | AARCH64_ARCH_V8_8A_FEATURES (X))
433
#define AARCH64_ARCH_V9_4A_FEATURES(X)  (AARCH64_FEATBIT (X, V9_4A) \
434
           | AARCH64_ARCH_V8_9A_FEATURES (X) \
435
           | AARCH64_FEATBIT (X, SVE2p1))
436
#define AARCH64_ARCH_V9_5A_FEATURES(X)  (AARCH64_FEATBIT (X, V9_5A) \
437
           | AARCH64_FEATBIT (X, CPA) \
438
           | AARCH64_FEATBIT (X, LUT) \
439
           | AARCH64_FEATBIT (X, FAMINMAX)\
440
          )
441
#define AARCH64_ARCH_V9_6A_FEATURES(X)  (AARCH64_FEATBIT (X, V9_6A) \
442
           | AARCH64_FEATBIT (X, CMPBR) \
443
           | AARCH64_FEATBIT (X, LSUI)  \
444
           | AARCH64_FEATBIT (X, OCCMO))
445
#define AARCH64_ARCH_V9_7A_FEATURES(X)  (AARCH64_FEATBIT (X, V9_7A) \
446
           | AARCH64_FEATBIT (X, F16F32DOT) \
447
           | AARCH64_FEATBIT (X, SVE2p2)  \
448
           | AARCH64_FEATBIT (X, SVE2p3))
449
450
/* Architectures are the sum of the base and extensions.  */
451
0
#define AARCH64_ARCH_V8A(X) (AARCH64_FEATBIT (X, V8) \
452
0
         | AARCH64_ARCH_V8A_FEATURES (X))
453
0
#define AARCH64_ARCH_V8_1A(X) (AARCH64_ARCH_V8A (X) \
454
0
         | AARCH64_ARCH_V8_1A_FEATURES (X))
455
0
#define AARCH64_ARCH_V8_2A(X) (AARCH64_ARCH_V8_1A (X)  \
456
0
         | AARCH64_ARCH_V8_2A_FEATURES (X))
457
0
#define AARCH64_ARCH_V8_3A(X) (AARCH64_ARCH_V8_2A (X)  \
458
0
         | AARCH64_ARCH_V8_3A_FEATURES (X))
459
0
#define AARCH64_ARCH_V8_4A(X) (AARCH64_ARCH_V8_3A (X)  \
460
0
         | AARCH64_ARCH_V8_4A_FEATURES (X))
461
#define AARCH64_ARCH_V8_5A(X) (AARCH64_ARCH_V8_4A (X) \
462
         | AARCH64_ARCH_V8_5A_FEATURES (X))
463
#define AARCH64_ARCH_V8_6A(X) (AARCH64_ARCH_V8_5A (X) \
464
         | AARCH64_ARCH_V8_6A_FEATURES (X))
465
#define AARCH64_ARCH_V8_7A(X) (AARCH64_ARCH_V8_6A (X) \
466
         | AARCH64_ARCH_V8_7A_FEATURES (X))
467
#define AARCH64_ARCH_V8_8A(X) (AARCH64_ARCH_V8_7A (X) \
468
         | AARCH64_ARCH_V8_8A_FEATURES (X))
469
#define AARCH64_ARCH_V8_9A(X) (AARCH64_ARCH_V8_8A (X) \
470
         | AARCH64_ARCH_V8_9A_FEATURES (X))
471
0
#define AARCH64_ARCH_V8R(X) ((AARCH64_ARCH_V8_4A (X)  \
472
0
          | AARCH64_FEATBIT (X, V8R))  \
473
0
         & ~AARCH64_FEATBIT (X, V8A) \
474
0
         & ~AARCH64_FEATBIT (X, LOR))
475
476
#define AARCH64_ARCH_V9A(X) (AARCH64_ARCH_V8_5A (X) \
477
         | AARCH64_ARCH_V9A_FEATURES (X))
478
#define AARCH64_ARCH_V9_1A(X) (AARCH64_ARCH_V9A (X) \
479
         | AARCH64_ARCH_V9_1A_FEATURES (X))
480
#define AARCH64_ARCH_V9_2A(X) (AARCH64_ARCH_V9_1A (X) \
481
         | AARCH64_ARCH_V9_2A_FEATURES (X))
482
#define AARCH64_ARCH_V9_3A(X) (AARCH64_ARCH_V9_2A (X) \
483
         | AARCH64_ARCH_V9_3A_FEATURES (X))
484
#define AARCH64_ARCH_V9_4A(X) (AARCH64_ARCH_V9_3A (X) \
485
         | AARCH64_ARCH_V9_4A_FEATURES (X))
486
#define AARCH64_ARCH_V9_5A(X) (AARCH64_ARCH_V9_4A (X) \
487
         | AARCH64_ARCH_V9_5A_FEATURES (X))
488
#define AARCH64_ARCH_V9_6A(X) (AARCH64_ARCH_V9_5A (X) \
489
         | AARCH64_ARCH_V9_6A_FEATURES (X))
490
#define AARCH64_ARCH_V9_7A(X) (AARCH64_ARCH_V9_6A (X) \
491
         | AARCH64_ARCH_V9_7A_FEATURES (X))
492
493
#define AARCH64_ARCH_NONE(X)  0
494
495
/* CPU-specific features.  */
496
typedef struct {
497
  aarch64_feature_word flags[AA64_REPLICATE (REP_PLUS, AA64_REPVAL, 1)];
498
} aarch64_feature_set;
499
500
#define AARCH64_CPU_HAS_FEATURE_BODY(ELT, CPU, FEAT)  \
501
0
  ((~(CPU).flags[ELT] & AARCH64_FEATBIT (ELT, FEAT)) == 0)
502
#define AARCH64_CPU_HAS_FEATURE(CPU, FEAT)  \
503
0
  (AA64_REPLICATE (REP_AND_AND, AARCH64_CPU_HAS_FEATURE_BODY, CPU, FEAT))
504
505
#define AARCH64_CPU_HAS_ALL_FEATURES_BODY(ELT, CPU, FEAT) \
506
4.90M
  ((~(CPU).flags[ELT] & (FEAT).flags[ELT]) == 0)
507
#define AARCH64_CPU_HAS_ALL_FEATURES(CPU, FEAT) \
508
2.94M
  (AA64_REPLICATE (REP_AND_AND, AARCH64_CPU_HAS_ALL_FEATURES_BODY, CPU, FEAT))
509
510
#define AARCH64_CPU_HAS_ANY_FEATURES_BODY(ELT, CPU, FEAT) \
511
  (((CPU).flags[ELT] & (FEAT).flags[ELT]) != 0)
512
#define AARCH64_CPU_HAS_ANY_FEATURES(CPU,FEAT)  \
513
  (AA64_REPLICATE (REP_OR_OR, AARCH64_CPU_HAS_ANY_FEATURES_BODY, CPU, FEAT))
514
515
#define AARCH64_SET_FEATURE_BODY(ELT, DEST, FEAT) \
516
0
  (DEST).flags[ELT] = FEAT (ELT)
517
#define AARCH64_SET_FEATURE(DEST, FEAT) \
518
0
  (AA64_REPLICATE (REP_COMMA, AARCH64_SET_FEATURE_BODY, DEST, FEAT))
519
520
#define AARCH64_CLEAR_FEATURE_BODY(ELT, DEST, SRC, FEAT)  \
521
6
  (DEST).flags[ELT] = ((SRC).flags[ELT]     \
522
6
       & ~AARCH64_FEATBIT (ELT, FEAT))
523
#define AARCH64_CLEAR_FEATURE(DEST, SRC, FEAT)    \
524
6
  (AA64_REPLICATE (REP_COMMA, AARCH64_CLEAR_FEATURE_BODY, DEST, SRC, FEAT))
525
526
#define AARCH64_MERGE_FEATURE_SETS_BODY(ELT, TARG, F1, F2)  \
527
  (TARG).flags[ELT] = (F1).flags[ELT] | (F2).flags[ELT];
528
#define AARCH64_MERGE_FEATURE_SETS(TARG, F1, F2)      \
529
  do                  \
530
    {                 \
531
      AA64_REPLICATE (REP_SEMICOLON,          \
532
          AARCH64_MERGE_FEATURE_SETS_BODY, TARG, F1, F2); \
533
    }                 \
534
  while (0)
535
536
#define AARCH64_CLEAR_FEATURES_BODY(ELT, TARG, F1, F2)  \
537
  (TARG).flags[ELT] = (F1).flags[ELT] &~ (F2).flags[ELT];
538
#define AARCH64_CLEAR_FEATURES(TARG,F1,F2)        \
539
  do                  \
540
    {                 \
541
      AA64_REPLICATE (REP_SEMICOLON,          \
542
          AARCH64_CLEAR_FEATURES_BODY, TARG, F1, F2); \
543
    }                 \
544
  while (0)
545
546
/* aarch64_feature_set initializers for no features and all features,
547
   respectively.  */
548
#define AARCH64_NO_FEATURES { { AA64_REPLICATE (REP_COMMA, AA64_REPVAL, 0) } }
549
6
#define AARCH64_ALL_FEATURES { { AA64_REPLICATE (REP_COMMA, AA64_REPVAL, -1) } }
550
551
/* An aarch64_feature_set initializer for a single feature,
552
   AARCH64_FEATURE_<FEAT>.  */
553
#define AARCH64_FEATURE_BODY(ELT, FEAT)   \
554
  AARCH64_FEATBIT (ELT, FEAT)
555
#define AARCH64_FEATURE(FEAT)         \
556
  { { AA64_REPLICATE (REP_COMMA, AARCH64_FEATURE_BODY, FEAT) } }
557
558
/* An aarch64_feature_set initializer for a specific architecture version,
559
   including all the features that are enabled by default for that architecture
560
   version.  */
561
#define AARCH64_ARCH_FEATURES_BODY(ELT, ARCH) \
562
  AARCH64_ARCH_##ARCH (ELT)
563
#define AARCH64_ARCH_FEATURES(ARCH)   \
564
  { { AA64_REPLICATE (REP_COMMA, AARCH64_ARCH_FEATURES_BODY, ARCH) } }
565
566
/* Used by AARCH64_CPU_FEATURES.  */
567
#define AARCH64_OR_FEATURES_1(X, ARCH, F1) \
568
  (AARCH64_FEATBIT (X, F1) | AARCH64_ARCH_##ARCH (X))
569
#define AARCH64_OR_FEATURES_2(X, ARCH, F1, F2) \
570
  (AARCH64_FEATBIT (X, F1) | AARCH64_OR_FEATURES_1 (X, ARCH, F2))
571
#define AARCH64_OR_FEATURES_3(X, ARCH, F1, ...) \
572
  (AARCH64_FEATBIT (X, F1) | AARCH64_OR_FEATURES_2 (X, ARCH, __VA_ARGS__))
573
#define AARCH64_OR_FEATURES_4(X, ARCH, F1, ...) \
574
  (AARCH64_FEATBIT (X, F1) | AARCH64_OR_FEATURES_3 (X, ARCH, __VA_ARGS__))
575
#define AARCH64_OR_FEATURES_5(X, ARCH, F1, ...) \
576
  (AARCH64_FEATBIT (X, F1) | AARCH64_OR_FEATURES_4 (X, ARCH, __VA_ARGS__))
577
#define AARCH64_OR_FEATURES_6(X, ARCH, F1, ...) \
578
  (AARCH64_FEATBIT (X, F1) | AARCH64_OR_FEATURES_5 (X, ARCH, __VA_ARGS__))
579
#define AARCH64_OR_FEATURES_7(X, ARCH, F1, ...) \
580
  (AARCH64_FEATBIT (X, F1) | AARCH64_OR_FEATURES_6 (X, ARCH, __VA_ARGS__))
581
#define AARCH64_OR_FEATURES_8(X, ARCH, F1, ...) \
582
  (AARCH64_FEATBIT (X, F1) | AARCH64_OR_FEATURES_7 (X, ARCH, __VA_ARGS__))
583
#define AARCH64_OR_FEATURES_9(X, ARCH, F1, ...) \
584
  (AARCH64_FEATBIT (X, F1) | AARCH64_OR_FEATURES_8 (X, ARCH, __VA_ARGS__))
585
586
/* An aarch64_feature_set initializer for a CPU that implements architecture
587
   version ARCH, and additionally provides the N features listed in "...".  */
588
#define AARCH64_CPU_FEATURES_BODY(ELT, ARCH, N, ...)    \
589
  AARCH64_OR_FEATURES_##N (ELT, ARCH, __VA_ARGS__)
590
#define AARCH64_CPU_FEATURES(ARCH, N, ...)      \
591
  { { AA64_REPLICATE (REP_COMMA, AARCH64_CPU_FEATURES_BODY, \
592
          ARCH, N, __VA_ARGS__) } }
593
594
/* An aarch64_feature_set initializer for the N features listed in "...".  */
595
#define AARCH64_FEATURES(N, ...) \
596
  AARCH64_CPU_FEATURES (NONE, N, __VA_ARGS__)
597
598
enum aarch64_operand_class
599
{
600
  AARCH64_OPND_CLASS_NIL,
601
  AARCH64_OPND_CLASS_INT_REG,
602
  AARCH64_OPND_CLASS_MODIFIED_REG,
603
  AARCH64_OPND_CLASS_FP_REG,
604
  AARCH64_OPND_CLASS_SIMD_REG,
605
  AARCH64_OPND_CLASS_SIMD_ELEMENT,
606
  AARCH64_OPND_CLASS_SISD_REG,
607
  AARCH64_OPND_CLASS_SIMD_REGLIST,
608
  AARCH64_OPND_CLASS_SVE_REG,
609
  AARCH64_OPND_CLASS_SVE_REGLIST,
610
  AARCH64_OPND_CLASS_PRED_REG,
611
  AARCH64_OPND_CLASS_ZA_ACCESS,
612
  AARCH64_OPND_CLASS_ADDRESS,
613
  AARCH64_OPND_CLASS_IMMEDIATE,
614
  AARCH64_OPND_CLASS_SYSTEM,
615
  AARCH64_OPND_CLASS_COND,
616
};
617
618
/* Operand code that helps both parsing and coding.
619
   Keep AARCH64_OPERANDS synced.  */
620
621
enum aarch64_opnd
622
{
623
  AARCH64_OPND_NIL, /* no operand---MUST BE FIRST!*/
624
625
  AARCH64_OPND_Rd,  /* Integer register as destination.  */
626
  AARCH64_OPND_Rn,  /* Integer register as source.  */
627
  AARCH64_OPND_Rm,  /* Integer register as source.  */
628
  AARCH64_OPND_Rt,  /* Integer register used in ld/st instructions.  */
629
  AARCH64_OPND_Rt2, /* Integer register used in ld/st pair instructions.  */
630
  AARCH64_OPND_X16, /* Integer register x16 in chkfeat instruction.  */
631
  AARCH64_OPND_Rt_LS64, /* Integer register used in LS64 instructions.  */
632
  AARCH64_OPND_Rt_SP, /* Integer Rt or SP used in STG instructions.  */
633
  AARCH64_OPND_Rs,  /* Integer register used in ld/st exclusive.  */
634
  AARCH64_OPND_Ra,  /* Integer register used in ddp_3src instructions.  */
635
  AARCH64_OPND_Rt_SYS,  /* Integer register used in system instructions.  */
636
637
  AARCH64_OPND_Rd_SP, /* Integer Rd or SP.  */
638
  AARCH64_OPND_Rn_SP, /* Integer Rn or SP.  */
639
  AARCH64_OPND_Rm_SP, /* Integer Rm or SP.  */
640
  AARCH64_OPND_PAIRREG, /* Paired register operand.  */
641
  AARCH64_OPND_PAIRREG_OR_XZR,  /* Paired register operand, optionally xzr.  */
642
  AARCH64_OPND_Rm_EXT,  /* Integer Rm extended.  */
643
  AARCH64_OPND_Rm_SFT,  /* Integer Rm shifted.  */
644
  AARCH64_OPND_Rm_LSL,  /* Integer Rm shifted (LSL-only).  */
645
646
  AARCH64_OPND_Fd,  /* Floating-point Fd.  */
647
  AARCH64_OPND_Fn,  /* Floating-point Fn.  */
648
  AARCH64_OPND_Fm,  /* Floating-point Fm.  */
649
  AARCH64_OPND_Fa,  /* Floating-point Fa.  */
650
  AARCH64_OPND_Ft,  /* Floating-point Ft.  */
651
  AARCH64_OPND_Ft2, /* Floating-point Ft2.  */
652
653
  AARCH64_OPND_Sd,  /* AdvSIMD Scalar Sd.  */
654
  AARCH64_OPND_Sn,  /* AdvSIMD Scalar Sn.  */
655
  AARCH64_OPND_Sm,  /* AdvSIMD Scalar Sm.  */
656
657
  AARCH64_OPND_Va,  /* AdvSIMD Vector Va.  */
658
  AARCH64_OPND_Vd,  /* AdvSIMD Vector Vd.  */
659
  AARCH64_OPND_Vn,  /* AdvSIMD Vector Vn.  */
660
  AARCH64_OPND_Vm,  /* AdvSIMD Vector Vm.  */
661
  AARCH64_OPND_VdD1,  /* AdvSIMD <Vd>.D[1]; for FMOV only.  */
662
  AARCH64_OPND_VnD1,  /* AdvSIMD <Vn>.D[1]; for FMOV only.  */
663
  AARCH64_OPND_Ed,  /* AdvSIMD Vector Element Vd.  */
664
  AARCH64_OPND_En,  /* AdvSIMD Vector Element Vn.  */
665
  AARCH64_OPND_Em,  /* AdvSIMD Vector Element Vm.  */
666
  AARCH64_OPND_Em16,  /* AdvSIMD Vector Element Vm restricted to V0 - V15 when
667
         qualifier is S_H or S_2B.  */
668
  AARCH64_OPND_Em8, /* AdvSIMD Vector Element Vm restricted to V0 - V7,
669
         used only with qualifier S_B.  */
670
  AARCH64_OPND_Em_INDEX1_14,  /* AdvSIMD 1-bit encoded index in Vm at [14]  */
671
  AARCH64_OPND_Em_INDEX2_13,  /* AdvSIMD 2-bit encoded index in Vm at [14:13]  */
672
  AARCH64_OPND_Em_INDEX3_12,  /* AdvSIMD 3-bit encoded index in Vm at [14:12]  */
673
  AARCH64_OPND_LVn, /* AdvSIMD Vector register list used in e.g. TBL.  */
674
  AARCH64_OPND_LVt, /* AdvSIMD Vector register list used in ld/st.  */
675
  AARCH64_OPND_LVt_AL,  /* AdvSIMD Vector register list for loading single
676
         structure to all lanes.  */
677
  AARCH64_OPND_LVn_LUT, /* AdvSIMD Vector register list used in lut.  */
678
  AARCH64_OPND_LEt, /* AdvSIMD Vector Element list.  */
679
680
  AARCH64_OPND_CRn, /* Co-processor register in CRn field.  */
681
  AARCH64_OPND_CRm, /* Co-processor register in CRm field.  */
682
683
  AARCH64_OPND_IDX, /* AdvSIMD EXT index operand.  */
684
  AARCH64_OPND_MASK,  /* AdvSIMD EXT index operand.  */
685
  AARCH64_OPND_IMM_VLSL,/* Immediate for shifting vector registers left.  */
686
  AARCH64_OPND_IMM_VLSR,/* Immediate for shifting vector registers right.  */
687
  AARCH64_OPND_SIMD_IMM,/* AdvSIMD modified immediate without shift.  */
688
  AARCH64_OPND_SIMD_IMM_SFT,  /* AdvSIMD modified immediate with shift.  */
689
  AARCH64_OPND_SIMD_FPIMM,/* AdvSIMD 8-bit fp immediate.  */
690
  AARCH64_OPND_SHLL_IMM,/* Immediate shift for AdvSIMD SHLL instruction
691
         (no encoding).  */
692
  AARCH64_OPND_IMM0,  /* Immediate for #0.  */
693
  AARCH64_OPND_FPIMM0,  /* Immediate for #0.0.  */
694
  AARCH64_OPND_FPIMM, /* Floating-point Immediate.  */
695
  AARCH64_OPND_IMMR,  /* Immediate #<immr> in e.g. BFM.  */
696
  AARCH64_OPND_IMMS,  /* Immediate #<imms> in e.g. BFM.  */
697
  AARCH64_OPND_WIDTH, /* Immediate #<width> in e.g. BFI.  */
698
  AARCH64_OPND_IMM, /* Immediate.  */
699
  AARCH64_OPND_IMM_2, /* Immediate.  */
700
  AARCH64_OPND_IMMP1_2, /* Immediate plus 1.  */
701
  AARCH64_OPND_IMMS1_2, /* Immediate minus 1.  */
702
  AARCH64_OPND_UIMM3_OP1,/* Unsigned 3-bit immediate in the op1 field.  */
703
  AARCH64_OPND_UIMM3_OP2,/* Unsigned 3-bit immediate in the op2 field.  */
704
  AARCH64_OPND_UIMM4, /* Unsigned 4-bit immediate in the CRm field.  */
705
  AARCH64_OPND_UIMM4_ADDG,/* Unsigned 4-bit immediate in addg/subg.  */
706
  AARCH64_OPND_UIMM7, /* Unsigned 7-bit immediate in the CRm:op2 fields.  */
707
  AARCH64_OPND_UIMM10,  /* Unsigned 10-bit immediate in addg/subg.  */
708
  AARCH64_OPND_BIT_NUM, /* Immediate.  */
709
  AARCH64_OPND_EXCEPTION,/* imm16 operand in exception instructions.  */
710
  AARCH64_OPND_UNDEFINED,/* imm16 operand in undefined instruction. */
711
  AARCH64_OPND_CCMP_IMM,/* Immediate in conditional compare instructions.  */
712
  AARCH64_OPND_SIMM5, /* 5-bit signed immediate in the imm5 field.  */
713
  AARCH64_OPND_NOT_BALANCED_10, /* an optional not balanced indicator (NB).  */
714
  AARCH64_OPND_NOT_BALANCED_17, /* an optional not balanced indicator (NB).  */
715
  AARCH64_OPND_NZCV,  /* Flag bit specifier giving an alternative value for
716
         each condition flag.  */
717
718
  AARCH64_OPND_LIMM,  /* Logical Immediate.  */
719
  AARCH64_OPND_AIMM,  /* Arithmetic immediate.  */
720
  AARCH64_OPND_HALF,  /* #<imm16>{, LSL #<shift>} operand in move wide.  */
721
  AARCH64_OPND_FBITS, /* FP #<fbits> operand in e.g. SCVTF */
722
  AARCH64_OPND_IMM_MOV, /* Immediate operand for the MOV alias.  */
723
  AARCH64_OPND_IMM_ROT1,  /* Immediate rotate operand for FCMLA.  */
724
  AARCH64_OPND_IMM_ROT2,  /* Immediate rotate operand for indexed FCMLA.  */
725
  AARCH64_OPND_IMM_ROT3,  /* Immediate rotate operand for FCADD.  */
726
727
  AARCH64_OPND_COND,  /* Standard condition as the last operand.  */
728
  AARCH64_OPND_COND1, /* Same as the above, but excluding AL and NV.  */
729
730
  AARCH64_OPND_ADDR_ADRP, /* Memory address for ADRP */
731
  AARCH64_OPND_ADDR_PCREL9, /* 9-bit PC-relative address for e.g. CB<cc>.  */
732
  AARCH64_OPND_ADDR_PCREL14,  /* 14-bit PC-relative address for e.g. TBZ.  */
733
  AARCH64_OPND_ADDR_PCREL19,  /* 19-bit PC-relative address for e.g. LDR.  */
734
  AARCH64_OPND_ADDR_PCREL21,  /* 21-bit PC-relative address for e.g. ADR.  */
735
  AARCH64_OPND_ADDR_PCREL26,  /* 26-bit PC-relative address for e.g. BL.  */
736
737
  AARCH64_OPND_ADDR_SIMPLE, /* Address of ld/st exclusive.  */
738
  AARCH64_OPND_ADDR_REGOFF, /* Address of register offset.  */
739
  AARCH64_OPND_ADDR_SIMM7,  /* Address of signed 7-bit immediate.  */
740
  AARCH64_OPND_ADDR_SIMM9,  /* Address of signed 9-bit immediate.  */
741
  AARCH64_OPND_ADDR_SIMM10, /* Address of signed 10-bit immediate.  */
742
  AARCH64_OPND_ADDR_SIMM11, /* Address with a signed 11-bit (multiple of
743
           16) immediate.  */
744
  AARCH64_OPND_ADDR_UIMM12, /* Address of unsigned 12-bit immediate.  */
745
  AARCH64_OPND_ADDR_SIMM13, /* Address with a signed 13-bit (multiple of
746
           16) immediate.  */
747
  AARCH64_OPND_SIMD_ADDR_SIMPLE,/* Address of ld/st multiple structures.  */
748
  AARCH64_OPND_ADDR_OFFSET,     /* Address with an optional 9-bit immediate.  */
749
  AARCH64_OPND_SIMD_ADDR_POST,  /* Address of ld/st multiple post-indexed.  */
750
751
  AARCH64_OPND_SYSREG,    /* System register operand.  */
752
  AARCH64_OPND_SYSREG128, /* 128-bit system register operand.  */
753
  AARCH64_OPND_PSTATEFIELD, /* PSTATE field name operand.  */
754
  AARCH64_OPND_SYSREG_AT, /* System register <at_op> operand.  */
755
  AARCH64_OPND_SYSREG_DC, /* System register <dc_op> operand.  */
756
  AARCH64_OPND_SYSREG_IC, /* System register <ic_op> operand.  */
757
  AARCH64_OPND_SYSREG_TLBI, /* System register <tlbi_op> operand.  */
758
  AARCH64_OPND_SYSREG_TLBIP,  /* System register <tlbip_op> operand.  */
759
  AARCH64_OPND_SYSREG_PLBI, /* System register <plbi_op> operand.  */
760
  AARCH64_OPND_SYSREG_SR, /* System register RCTX operand.  */
761
  AARCH64_OPND_BARRIER,   /* Barrier operand.  */
762
  AARCH64_OPND_BARRIER_DSB_NXS, /* Barrier operand for DSB nXS variant.  */
763
  AARCH64_OPND_BARRIER_ISB, /* Barrier operand for ISB.  */
764
  AARCH64_OPND_PRFOP,   /* Prefetch operation.  */
765
  AARCH64_OPND_RPRFMOP,   /* Range prefetch operation.  */
766
  AARCH64_OPND_BARRIER_PSB, /* Barrier operand for PSB.  */
767
  AARCH64_OPND_BARRIER_GCSB,  /* Barrier operand for GCSB.  */
768
  AARCH64_OPND_BTI_TARGET,  /* BTI {<target>}.  */
769
  AARCH64_OPND_STSHH_POLICY,  /* STSHH {<policy>}.  */
770
  AARCH64_OPND_SHUH_PHINT,  /* SHUH Priority Hint.  */
771
  AARCH64_OPND_BRBOP,   /* BRB operation IALL or INJ in bit 5.  */
772
  AARCH64_OPND_Rt_IN_SYS_ALIASES, /* Defaulted and omitted Rt used in SYS aliases such as brb.  */
773
  AARCH64_OPND_LSE128_Rt, /* LSE128 <Xt1>.  */
774
  AARCH64_OPND_LSE128_Rt2,  /* LSE128 <Xt2>.  */
775
  AARCH64_OPND_SVE_ADDR_RI_S4x16,   /* SVE [<Xn|SP>, #<simm4>*16].  */
776
  AARCH64_OPND_SVE_ADDR_RI_S4x32,   /* SVE [<Xn|SP>, #<simm4>*32].  */
777
  AARCH64_OPND_SVE_ADDR_RI_S4xVL,   /* SVE [<Xn|SP>, #<simm4>, MUL VL].  */
778
  AARCH64_OPND_SVE_ADDR_RI_S4x2xVL, /* SVE [<Xn|SP>, #<simm4>*2, MUL VL].  */
779
  AARCH64_OPND_SVE_ADDR_RI_S4x3xVL, /* SVE [<Xn|SP>, #<simm4>*3, MUL VL].  */
780
  AARCH64_OPND_SVE_ADDR_RI_S4x4xVL, /* SVE [<Xn|SP>, #<simm4>*4, MUL VL].  */
781
  AARCH64_OPND_SVE_ADDR_RI_S6xVL,   /* SVE [<Xn|SP>, #<simm6>, MUL VL].  */
782
  AARCH64_OPND_SVE_ADDR_RI_S9xVL,   /* SVE [<Xn|SP>, #<simm9>, MUL VL].  */
783
  AARCH64_OPND_SVE_ADDR_RI_U6,      /* SVE [<Xn|SP>, #<uimm6>].  */
784
  AARCH64_OPND_SVE_ADDR_RI_U6x2,    /* SVE [<Xn|SP>, #<uimm6>*2].  */
785
  AARCH64_OPND_SVE_ADDR_RI_U6x4,    /* SVE [<Xn|SP>, #<uimm6>*4].  */
786
  AARCH64_OPND_SVE_ADDR_RI_U6x8,    /* SVE [<Xn|SP>, #<uimm6>*8].  */
787
  AARCH64_OPND_SVE_ADDR_RR,     /* SVE [<Xn|SP>{, <Xm|XZR>}].  */
788
  AARCH64_OPND_SVE_ADDR_RR_LSL1,    /* SVE [<Xn|SP>{, <Xm|XZR>, LSL #1}].  */
789
  AARCH64_OPND_SVE_ADDR_RR_LSL2,    /* SVE [<Xn|SP>{, <Xm|XZR>, LSL #2}].  */
790
  AARCH64_OPND_SVE_ADDR_RR_LSL3,    /* SVE [<Xn|SP>{, <Xm|XZR>, LSL #3}].  */
791
  AARCH64_OPND_SVE_ADDR_RR_LSL4,    /* SVE [<Xn|SP>{, <Xm|XZR>, LSL #4}].  */
792
  AARCH64_OPND_SVE_ADDR_RM,     /* SVE [<Xn|SP>, <Xm|XZR>].  */
793
  AARCH64_OPND_SVE_ADDR_RM_LSL1,    /* SVE [<Xn|SP>, <Xm|XZR>, LSL #1].  */
794
  AARCH64_OPND_SVE_ADDR_RM_LSL2,    /* SVE [<Xn|SP>, <Xm|XZR>, LSL #2].  */
795
  AARCH64_OPND_SVE_ADDR_RM_LSL3,    /* SVE [<Xn|SP>, <Xm|XZR>, LSL #3].  */
796
  AARCH64_OPND_SVE_ADDR_RM_LSL4,    /* SVE [<Xn|SP>, <Xm|XZR>, LSL #4].  */
797
  AARCH64_OPND_SVE_ADDR_RX,     /* SVE [<Xn|SP>, <Xm>].  */
798
  AARCH64_OPND_SVE_ADDR_RX_LSL1,    /* SVE [<Xn|SP>, <Xm>, LSL #1].  */
799
  AARCH64_OPND_SVE_ADDR_RX_LSL2,    /* SVE [<Xn|SP>, <Xm>, LSL #2].  */
800
  AARCH64_OPND_SVE_ADDR_RX_LSL3,    /* SVE [<Xn|SP>, <Xm>, LSL #3].  */
801
  AARCH64_OPND_SVE_ADDR_RX_LSL4,    /* SVE [<Xn|SP>, <Xm>, LSL #4].  */
802
  AARCH64_OPND_SVE_ADDR_ZX,     /* SVE [Zn.<T>{, <Xm>}].  */
803
  AARCH64_OPND_SVE_ADDR_RZ,     /* SVE [<Xn|SP>, Zm.D].  */
804
  AARCH64_OPND_SVE_ADDR_RZ_LSL1,    /* SVE [<Xn|SP>, Zm.D, LSL #1].  */
805
  AARCH64_OPND_SVE_ADDR_RZ_LSL2,    /* SVE [<Xn|SP>, Zm.D, LSL #2].  */
806
  AARCH64_OPND_SVE_ADDR_RZ_LSL3,    /* SVE [<Xn|SP>, Zm.D, LSL #3].  */
807
  AARCH64_OPND_SVE_ADDR_RZ_XTW_14,  /* SVE [<Xn|SP>, Zm.<T>, (S|U)XTW].
808
               Bit 14 controls S/U choice.  */
809
  AARCH64_OPND_SVE_ADDR_RZ_XTW_22,  /* SVE [<Xn|SP>, Zm.<T>, (S|U)XTW].
810
               Bit 22 controls S/U choice.  */
811
  AARCH64_OPND_SVE_ADDR_RZ_XTW1_14, /* SVE [<Xn|SP>, Zm.<T>, (S|U)XTW #1].
812
               Bit 14 controls S/U choice.  */
813
  AARCH64_OPND_SVE_ADDR_RZ_XTW1_22, /* SVE [<Xn|SP>, Zm.<T>, (S|U)XTW #1].
814
               Bit 22 controls S/U choice.  */
815
  AARCH64_OPND_SVE_ADDR_RZ_XTW2_14, /* SVE [<Xn|SP>, Zm.<T>, (S|U)XTW #2].
816
               Bit 14 controls S/U choice.  */
817
  AARCH64_OPND_SVE_ADDR_RZ_XTW2_22, /* SVE [<Xn|SP>, Zm.<T>, (S|U)XTW #2].
818
               Bit 22 controls S/U choice.  */
819
  AARCH64_OPND_SVE_ADDR_RZ_XTW3_14, /* SVE [<Xn|SP>, Zm.<T>, (S|U)XTW #3].
820
               Bit 14 controls S/U choice.  */
821
  AARCH64_OPND_SVE_ADDR_RZ_XTW3_22, /* SVE [<Xn|SP>, Zm.<T>, (S|U)XTW #3].
822
               Bit 22 controls S/U choice.  */
823
  AARCH64_OPND_SVE_ADDR_ZI_U5,      /* SVE [Zn.<T>, #<uimm5>].  */
824
  AARCH64_OPND_SVE_ADDR_ZI_U5x2,    /* SVE [Zn.<T>, #<uimm5>*2].  */
825
  AARCH64_OPND_SVE_ADDR_ZI_U5x4,    /* SVE [Zn.<T>, #<uimm5>*4].  */
826
  AARCH64_OPND_SVE_ADDR_ZI_U5x8,    /* SVE [Zn.<T>, #<uimm5>*8].  */
827
  AARCH64_OPND_SVE_ADDR_ZZ_LSL,     /* SVE [Zn.<T>, Zm,<T>, LSL #<msz>].  */
828
  AARCH64_OPND_SVE_ADDR_ZZ_SXTW,    /* SVE [Zn.<T>, Zm,<T>, SXTW #<msz>].  */
829
  AARCH64_OPND_SVE_ADDR_ZZ_UXTW,    /* SVE [Zn.<T>, Zm,<T>, UXTW #<msz>].  */
830
  AARCH64_OPND_SVE_AIMM,  /* SVE unsigned arithmetic immediate.  */
831
  AARCH64_OPND_SVE_ASIMM, /* SVE signed arithmetic immediate.  */
832
  AARCH64_OPND_SVE_FPIMM8,  /* SVE 8-bit floating-point immediate.  */
833
  AARCH64_OPND_SVE_I1_HALF_ONE, /* SVE choice between 0.5 and 1.0.  */
834
  AARCH64_OPND_SVE_I1_HALF_TWO, /* SVE choice between 0.5 and 2.0.  */
835
  AARCH64_OPND_SVE_I1_ZERO_ONE, /* SVE choice between 0.0 and 1.0.  */
836
  AARCH64_OPND_SVE_IMM_ROT1,  /* SVE 1-bit rotate operand (90 or 270).  */
837
  AARCH64_OPND_SVE_IMM_ROT2,  /* SVE 2-bit rotate operand (N*90).  */
838
  AARCH64_OPND_SVE_IMM_ROT3,  /* SVE cadd 1-bit rotate (90 or 270).  */
839
  AARCH64_OPND_SVE_INV_LIMM,  /* SVE inverted logical immediate.  */
840
  AARCH64_OPND_SVE_LIMM,  /* SVE logical immediate.  */
841
  AARCH64_OPND_SVE_LIMM_MOV,  /* SVE logical immediate for MOV.  */
842
  AARCH64_OPND_SVE_PATTERN, /* SVE vector pattern enumeration.  */
843
  AARCH64_OPND_SVE_PATTERN_SCALED, /* Likewise, with additional MUL factor.  */
844
  AARCH64_OPND_SVE_PRFOP, /* SVE prefetch operation.  */
845
  AARCH64_OPND_SVE_Pd,    /* SVE p0-p15 in Pd.  */
846
  AARCH64_OPND_SVE_PNd,   /* SVE pn0-pn15 in Pd.  */
847
  AARCH64_OPND_SVE_Pg3,   /* SVE p0-p7 in Pg.  */
848
  AARCH64_OPND_SVE_Pg4_5, /* SVE p0-p15 in Pg, bits [8,5].  */
849
  AARCH64_OPND_SVE_Pg4_10,  /* SVE p0-p15 in Pg, bits [13,10].  */
850
  AARCH64_OPND_SVE_PNg4_10, /* SVE pn0-pn15 in Pg, bits [13,10].  */
851
  AARCH64_OPND_SVE_Pg4_16,  /* SVE p0-p15 in Pg, bits [19,16].  */
852
  AARCH64_OPND_SVE_Pm,    /* SVE p0-p15 in Pm.  */
853
  AARCH64_OPND_SVE_Pn,    /* SVE p0-p15 in Pn.  */
854
  AARCH64_OPND_SVE_PNn,   /* SVE pn0-pn15 in Pn.  */
855
  AARCH64_OPND_SVE_Pt,    /* SVE p0-p15 in Pt.  */
856
  AARCH64_OPND_SVE_PNt,   /* SVE pn0-pn15 in Pt.  */
857
  AARCH64_OPND_SVE_Rm,    /* Integer Rm or ZR, alt. SVE position.  */
858
  AARCH64_OPND_SVE_Rn_SP, /* Integer Rn or SP, alt. SVE position.  */
859
  AARCH64_OPND_SVE_SHLIMM_PRED,   /* SVE shift left amount (predicated).  */
860
  AARCH64_OPND_SVE_SHLIMM_UNPRED, /* SVE shift left amount (unpredicated).  */
861
  AARCH64_OPND_SVE_SHLIMM_UNPRED_22,  /* SVE 3 bit shift left unpred.  */
862
  AARCH64_OPND_SVE_SHRIMM_PRED,   /* SVE shift right amount (predicated).  */
863
  AARCH64_OPND_SVE_SHRIMM_UNPRED, /* SVE shift right amount (unpredicated).  */
864
  AARCH64_OPND_SVE_SHRIMM_UNPRED_22,  /* SVE 3 bit shift right unpred.  */
865
  AARCH64_OPND_SVE_SIMM5, /* SVE signed 5-bit immediate.  */
866
  AARCH64_OPND_SVE_SIMM5B,  /* SVE secondary signed 5-bit immediate.  */
867
  AARCH64_OPND_SVE_SIMM6, /* SVE signed 6-bit immediate.  */
868
  AARCH64_OPND_SVE_SIMM8, /* SVE signed 8-bit immediate.  */
869
  AARCH64_OPND_SVE_UIMM3, /* SVE unsigned 3-bit immediate.  */
870
  AARCH64_OPND_SVE_UIMM7, /* SVE unsigned 7-bit immediate.  */
871
  AARCH64_OPND_SVE_UIMM8, /* SVE unsigned 8-bit immediate.  */
872
  AARCH64_OPND_SVE_UIMM8_53,  /* SVE split unsigned 8-bit immediate.  */
873
  AARCH64_OPND_SVE_UIMM4, /* SVE unsigned 4-bit immediate.  */
874
  AARCH64_OPND_SVE_VZn,   /* Scalar SIMD&FP register in Zn field.  */
875
  AARCH64_OPND_SVE_Vd,    /* Scalar SIMD&FP register in Vd.  */
876
  AARCH64_OPND_SVE_Vm,    /* Scalar SIMD&FP register in Vm.  */
877
  AARCH64_OPND_SVE_Vn,    /* Scalar SIMD&FP register in Vn.  */
878
  AARCH64_OPND_SME_ZA_array_vrsb_1, /* Tile to vector, two registers (B).  */
879
  AARCH64_OPND_SME_ZA_array_vrsh_1, /* Tile to vector, two registers (H).  */
880
  AARCH64_OPND_SME_ZA_array_vrss_1, /* Tile to vector, two registers (S).  */
881
  AARCH64_OPND_SME_ZA_array_vrsd_1, /* Tile to vector, two registers (D).  */
882
  AARCH64_OPND_SME_ZA_array_vrsb_2, /* Tile to vector, four registers (B).  */
883
  AARCH64_OPND_SME_ZA_array_vrsh_2, /* Tile to vector, four registers (H).  */
884
  AARCH64_OPND_SME_ZA_array_vrss_2, /* Tile to vector, four registers (S). */
885
  AARCH64_OPND_SME_ZA_array_vrsd_2, /* Tile to vector, four registers (D).  */
886
  AARCH64_OPND_SME_ZA_ARRAY4, /* Tile to vector, single (BHSDQ).  */
887
  AARCH64_OPND_SVE_Za_5,  /* SVE vector register in Za, bits [9,5].  */
888
  AARCH64_OPND_SVE_Za_16, /* SVE vector register in Za, bits [20,16].  */
889
  AARCH64_OPND_SVE_Zd,    /* SVE vector register in Zd.  */
890
  AARCH64_OPND_SVE_Zm_5,  /* SVE vector register in Zm, bits [9,5].  */
891
  AARCH64_OPND_SVE_Zm_16, /* SVE vector register in Zm, bits [20,16].  */
892
  AARCH64_OPND_SVE_Zm1_23_INDEX, /* SVE bit index in Zm, bit 23.  */
893
  AARCH64_OPND_SVE_Zm2_22_INDEX, /* SVE bit index in Zm, bits [23,22].  */
894
  AARCH64_OPND_SVE_Zm3_INDEX, /* z0-z7[0-3] in Zm, bits [20,16].  */
895
  AARCH64_OPND_SVE_Zm3_11_INDEX, /* z0-z7[0-7] in Zm3_INDEX plus bit 11.  */
896
  AARCH64_OPND_SVE_Zm3_12_INDEX, /* SVE bit index in Zm, bits 12 plus bit [23,22].  */
897
  AARCH64_OPND_SVE_Zm3_19_INDEX, /* z0-z7[0-3] in Zm3_INDEX plus bit 19.  */
898
  AARCH64_OPND_SVE_Zm3_22_INDEX, /* z0-z7[0-7] in Zm3_INDEX plus bit 22.  */
899
  AARCH64_OPND_SVE_Zm3_10_INDEX, /* z0-z7[0-15] in Zm3_INDEX plus bit 11:10.  */
900
  AARCH64_OPND_SVE_Zm4_11_INDEX, /* z0-z15[0-3] in Zm plus bit 11.  */
901
  AARCH64_OPND_SVE_Zm4_INDEX, /* z0-z15[0-1] in Zm, bits [20,16].  */
902
  AARCH64_OPND_SVE_Zn,    /* SVE vector register in Zn.  */
903
  AARCH64_OPND_SVE_Zn_INDEX,  /* Indexed SVE vector register, for DUP.  */
904
  AARCH64_OPND_SVE_Zn_5_INDEX,  /* Indexed SVE vector register, for DUPQ.  */
905
  AARCH64_OPND_SVE_ZnxN,  /* SVE vector register list in Zn.  */
906
  AARCH64_OPND_SVE_Zt,    /* SVE vector register in Zt.  */
907
  AARCH64_OPND_SVE_ZtxN,  /* SVE vector register list in Zt.  */
908
  AARCH64_OPND_SME_Zdnx2, /* SVE vector register list from [4:1]*2.  */
909
  AARCH64_OPND_SME_Zdnx4, /* SVE vector register list from [4:2]*4.  */
910
  AARCH64_OPND_SME_Zm,    /* SVE vector register in 4-bit Zm.  */
911
  AARCH64_OPND_SME_Zm_17, /* SVE vector register in [20:17].  */
912
  AARCH64_OPND_SME_Zn_6_3,  /* SVE vector register in [8:6]*2.  */
913
  AARCH64_OPND_SME_Zm_17_3, /* SVE vector register in [19:17]*2+16.  */
914
  AARCH64_OPND_SME_Znx2_6_3,  /* SVE vector register list from [8:6]*2.  */
915
  AARCH64_OPND_SME_Zmx2_17_3, /* SVE vector register list from [19:17]*2+16.  */
916
  AARCH64_OPND_SME_Zmx2_INDEX_22, /* SVE vector register list in [20:16].with index in 22  */
917
  AARCH64_OPND_SME_Zmx2,  /* SVE vector register list from [20:17]*2.  */
918
  AARCH64_OPND_SME_Zmx4,  /* SVE vector register list from [20:18]*4.  */
919
  AARCH64_OPND_SME_Znx2,  /* SVE vector register list from [9:6]*2.  */
920
  AARCH64_OPND_SME_Znx2_BIT_INDEX, /* SVE vector register list encoding a bit index from [9:6]*2.  */
921
  AARCH64_OPND_SME_Znx4,  /* SVE vector register list from [9:7]*4.  */
922
  AARCH64_OPND_SME_Zn7xN_UNTYPED, /* SVE vector register list from [9:7].  */
923
  AARCH64_OPND_SME_Ztx2_STRIDED, /* SVE vector register list in [4:0]&23.  */
924
  AARCH64_OPND_SME_Ztx4_STRIDED, /* SVE vector register list in [4:0]&19.  */
925
  AARCH64_OPND_SME_ZAda_1b, /* SME <ZAda>.H, 1-bits.  */
926
  AARCH64_OPND_SME_ZAda_2b, /* SME <ZAda>.S, 2-bits.  */
927
  AARCH64_OPND_SME_ZAda_3b, /* SME <ZAda>.D, 3-bits.  */
928
  AARCH64_OPND_SME_ZA_HV_idx_src, /* SME source ZA tile vector.  */
929
  AARCH64_OPND_SME_ZA_HV_idx_srcxN, /* SME N source ZA tile vectors.  */
930
  AARCH64_OPND_SME_ZA_HV_idx_dest,  /* SME destination ZA tile vector.  */
931
  AARCH64_OPND_SME_ZA_HV_idx_destxN,  /* SME N dest ZA tile vectors.  */
932
  AARCH64_OPND_SME_Pdx2,  /* Predicate register list in [3:1].  */
933
  AARCH64_OPND_SME_PdxN,  /* Predicate register list in [3:0].  */
934
  AARCH64_OPND_SME_Pm,    /* SME scalable predicate register, bits [15:13].  */
935
  AARCH64_OPND_SME_PNd3,  /* Predicate-as-counter register, bits [3:0].  */
936
  AARCH64_OPND_SME_PNg3,  /* Predicate-as-counter register, bits [12:10].  */
937
  AARCH64_OPND_SME_PNn,   /* Predicate-as-counter register, bits [8:5].  */
938
  AARCH64_OPND_SME_PNn3_INDEX1, /* Indexed pred-as-counter reg, bits [8:5].  */
939
  AARCH64_OPND_SME_PNn3_INDEX2, /* Indexed pred-as-counter reg, bits [9:5].  */
940
  AARCH64_OPND_SME_list_of_64bit_tiles, /* SME list of ZA tiles.  */
941
  AARCH64_OPND_SME_ZA_HV_idx_ldstr, /* SME destination ZA tile vector.  */
942
  AARCH64_OPND_SME_ZA_array_off1x4, /* SME ZA[<Wv>, #<imm1>*4:<imm1>*4+3].  */
943
  AARCH64_OPND_SME_ZA_array_off2x2, /* SME ZA[<Wv>, #<imm2>*2:<imm2>*2+1].  */
944
  AARCH64_OPND_SME_ZA_array_off2x4, /* SME ZA[<Wv>, #<imm2>*4:<imm2>*4+3].  */
945
  AARCH64_OPND_SME_ZA_array_off3_0, /* SME ZA[<Wv>{, #<imm3>}].  */
946
  AARCH64_OPND_SME_ZA_array_off3_5, /* SME ZA[<Wv>{, #<imm3>}].  */
947
  AARCH64_OPND_SME_ZA_array_off3x2, /* SME ZA[<Wv>, #<imm3>*2:<imm3>*2+1].  */
948
  AARCH64_OPND_SME_ZA_array_off4,   /* SME ZA[<Wv>{, #<imm>}].  */
949
  AARCH64_OPND_SME_ADDR_RI_U4xVL,   /* SME [<Xn|SP>{, #<imm>, MUL VL}].  */
950
  AARCH64_OPND_SME_SM_ZA,           /* SME {SM | ZA}.  */
951
  AARCH64_OPND_SME_PnT_Wm_imm,      /* SME <Pn>.<T>[<Wm>, #<imm>].  */
952
  AARCH64_OPND_SME_SHRIMM3,     /* 3-bit right shift, bits [18:16].  */
953
  AARCH64_OPND_SME_SHRIMM4,     /* 4-bit right shift, bits [19:16].  */
954
  AARCH64_OPND_SME_SHRIMM5,     /* size + 5-bit right shift, bits [23:22,20:16].  */
955
  AARCH64_OPND_SME_Zk_INDEX,      /* Zk[index], bits [12:10,5:4].  */
956
  AARCH64_OPND_SME_Zm_INDEX1,     /* Zn.T[index], bits [19:16,10].  */
957
  AARCH64_OPND_SME_Zm_INDEX2,     /* Zn.T[index], bits [19:16,11:10].  */
958
  AARCH64_OPND_SME_Zm_INDEX2_3,     /* Zn.T[index], bits [19:16,10,3].  */
959
  AARCH64_OPND_SME_Zm_INDEX3_1,     /* Zn.T[index], bits [19:16,10,2:1].  */
960
  AARCH64_OPND_SME_Zm_INDEX3_2,     /* Zn.T[index], bits [19:16,11:10,2].  */
961
  AARCH64_OPND_SME_Zm_INDEX3_3,     /* Zn.T[index], bits [19:16,11:10,3].  */
962
  AARCH64_OPND_SME_Zm_INDEX3_10,    /* Zn.T[index], bits [19:16,15,11:10].  */
963
  AARCH64_OPND_SME_Zm_INDEX4_1,     /* Zn.T[index], bits [19:16,11:10,2:1].  */
964
  AARCH64_OPND_SME_Zm_INDEX4_2,     /* Zn.T[index], bits [19:16,11:10,3:2].  */
965
  AARCH64_OPND_SME_Zm_INDEX4_3,     /* Zn.T[index], bits [19:16,15,11,10,3].  */
966
  AARCH64_OPND_SME_Zm_INDEX4_10,    /* Zn.T[index], bits [19:16,15,12:10].  */
967
  AARCH64_OPND_SME_Zn_INDEX1_16,    /* Zn[index], bits [9:5] and [16:16].  */
968
  AARCH64_OPND_SME_Zn_INDEX2_15,    /* Zn[index], bits [9:5] and [16:15].  */
969
  AARCH64_OPND_SME_Zn_INDEX2_16,    /* Zn[index], bits [9:5] and [17:16].  */
970
  AARCH64_OPND_SME_Zn_INDEX2_19,    /* Zn[index], bits [9:5] and [20:19].  */
971
  AARCH64_OPND_SME_Zn_INDEX3_14,    /* Zn[index], bits [9:5] and [16:14].  */
972
  AARCH64_OPND_SME_Zn_INDEX3_15,    /* Zn[index], bits [9:5] and [17:15].  */
973
  AARCH64_OPND_SME_Zn_INDEX4_14,    /* Zn[index], bits [9:5] and [17:14].  */
974
  AARCH64_OPND_SVE_Zn0_INDEX,     /* Zn[index], bits [9:5].  */
975
  AARCH64_OPND_SVE_Zn1_17_INDEX,    /* Zn[index], bits [9:5,17].  */
976
  AARCH64_OPND_SVE_Zn2_18_INDEX,    /* Zn[index], bits [9:5,18:17].  */
977
  AARCH64_OPND_SVE_Zn3_22_INDEX,    /* Zn[index], bits [9:5,18:17,22].  */
978
  AARCH64_OPND_SVE_Zd0_INDEX,     /* Zn[index], bits [4:0].  */
979
  AARCH64_OPND_SVE_Zd1_17_INDEX,    /* Zn[index], bits [4:0,17].  */
980
  AARCH64_OPND_SVE_Zd2_18_INDEX,    /* Zn[index], bits [4:0,18:17].  */
981
  AARCH64_OPND_SVE_Zd3_22_INDEX,    /* Zn[index], bits [4:0,18:17,22].  */
982
  AARCH64_OPND_SME_VLxN_10, /* VLx2 or VLx4, in bit 10.  */
983
  AARCH64_OPND_SME_VLxN_13, /* VLx2 or VLx4, in bit 13.  */
984
  AARCH64_OPND_SME_ZT0,   /* The fixed token zt0/ZT0 (not encoded).  */
985
  AARCH64_OPND_SME_ZT0_INDEX, /* ZT0[<imm>], bits [14:12].  */
986
  AARCH64_OPND_SME_ZT0_INDEX_MUL_VL,/* ZT0[<imm>], bits [13:12].  */
987
  AARCH64_OPND_SME_ZT0_LIST,  /* { zt0/ZT0 } (not encoded).  */
988
  AARCH64_OPND_TME_UIMM16,  /* TME unsigned 16-bit immediate.  */
989
  AARCH64_OPND_MOPS_ADDR_Rd,  /* [Rd]!, in bits [0, 4].  */
990
  AARCH64_OPND_MOPS_ADDR_Rs,  /* [Rs]!, in bits [16, 20].  */
991
  AARCH64_OPND_MOPS_WB_Rn,  /* Rn!, in bits [5, 9].  */
992
  AARCH64_OPND_CSSC_SIMM8,  /* CSSC signed 8-bit immediate.  */
993
  AARCH64_OPND_CSSC_UIMM8,  /* CSSC unsigned 8-bit immediate.  */
994
  AARCH64_OPND_RCPC3_ADDR_OPT_POSTIND,   /* [<Xn|SP>]{, #<imm>}.  */
995
  AARCH64_OPND_RCPC3_ADDR_OPT_PREIND_WB, /* [<Xn|SP>] or [<Xn|SP>, #<imm>]!.  */
996
  AARCH64_OPND_RCPC3_ADDR_POSTIND,   /* [<Xn|SP>], #<imm>.  */
997
  AARCH64_OPND_RCPC3_ADDR_PREIND_WB,   /* [<Xn|SP>, #<imm>]!.  */
998
  AARCH64_OPND_RCPC3_ADDR_OFFSET,
999
  AARCH64_OPND_GIC,
1000
  AARCH64_OPND_GICR,
1001
  AARCH64_OPND_GSB,
1002
};
1003
1004
/* Qualifier constrains an operand.  It either specifies a variant of an
1005
   operand type or limits values available to an operand type.
1006
1007
   N.B. Order is important.
1008
   Keep aarch64_opnd_qualifiers (opcodes/aarch64-opc.c) synced.  */
1009
1010
enum aarch64_opnd_qualifier
1011
{
1012
  /* Indicating an unused entry in a list of qualifier sequences (assigned via
1013
     empty initialization of unused array elements), or some other unused
1014
     value.  */
1015
  AARCH64_OPND_QLF_UNUSED,
1016
1017
  /* Indicating no further qualification on an operand.  */
1018
  AARCH64_OPND_QLF_NIL,
1019
1020
  /* Indicating that the qualifier on an operand is not yet known.  This could
1021
     arise during either disassembly or assembly, when a qualifier is
1022
     determined by referring to another operand's qualifier.  */
1023
  AARCH64_OPND_QLF_UNKNOWN,
1024
1025
  /* Qualifying an operand which is a general purpose (integer) register;
1026
     indicating the operand data size or a specific register.  */
1027
  AARCH64_OPND_QLF_W, /* Wn, WZR or WSP.  */
1028
  AARCH64_OPND_QLF_X, /* Xn, XZR or XSP.  */
1029
1030
  /* Qualifying an operand which is a floating-point register, a SIMD
1031
     vector element or a SIMD vector element list; indicating operand data
1032
     size or the size of each SIMD vector element in the case of a SIMD
1033
     vector element list.
1034
     These qualifiers are also used to qualify an address operand to
1035
     indicate the size of data element a load/store instruction is
1036
     accessing.
1037
     They are also used for the immediate shift operand in e.g. SSHR.  Such
1038
     a use is only for the ease of operand encoding/decoding and qualifier
1039
     sequence matching; such a use should not be applied widely; use the value
1040
     constraint qualifiers for immediate operands wherever possible.  */
1041
  AARCH64_OPND_QLF_S_B,
1042
  AARCH64_OPND_QLF_S_H,
1043
  AARCH64_OPND_QLF_S_S,
1044
  AARCH64_OPND_QLF_S_D,
1045
  AARCH64_OPND_QLF_S_Q,
1046
  /* These type qualifiers have a special meaning in that they mean 2 x 1 byte,
1047
     4 x 1 byte or 2 x 2 byte are selected by the instruction.  Other than that
1048
     they have no difference with AARCH64_OPND_QLF_S_B in encoding.  They are
1049
     here purely for syntactical reasons and is an exception from normal
1050
     AArch64 disassembly scheme.  */
1051
  AARCH64_OPND_QLF_S_2B,
1052
  AARCH64_OPND_QLF_S_4B,
1053
  AARCH64_OPND_QLF_S_2H,
1054
1055
  /* Qualifying an operand which is a SIMD vector register or a SIMD vector
1056
     register list; indicating register shape.
1057
     They are also used for the immediate shift operand in e.g. SSHR.  Such
1058
     a use is only for the ease of operand encoding/decoding and qualifier
1059
     sequence matching; such a use should not be applied widely; use the value
1060
     constraint qualifiers for immediate operands wherever possible.  */
1061
  AARCH64_OPND_QLF_V_4B,
1062
  AARCH64_OPND_QLF_V_8B,
1063
  AARCH64_OPND_QLF_V_16B,
1064
  AARCH64_OPND_QLF_V_2H,
1065
  AARCH64_OPND_QLF_V_4H,
1066
  AARCH64_OPND_QLF_V_8H,
1067
  AARCH64_OPND_QLF_V_2S,
1068
  AARCH64_OPND_QLF_V_4S,
1069
  AARCH64_OPND_QLF_V_1D,
1070
  AARCH64_OPND_QLF_V_2D,
1071
  AARCH64_OPND_QLF_V_1Q,
1072
1073
  AARCH64_OPND_QLF_P_Z,
1074
  AARCH64_OPND_QLF_P_M,
1075
1076
  /* Used in scaled signed immediate that are scaled by a Tag granule
1077
     like in stg, st2g, etc.   */
1078
  AARCH64_OPND_QLF_imm_tag,
1079
1080
  /* Constraint on value.  */
1081
  AARCH64_OPND_QLF_CR,    /* CRn, CRm. */
1082
  AARCH64_OPND_QLF_imm_0_7,
1083
  AARCH64_OPND_QLF_imm_0_15,
1084
  AARCH64_OPND_QLF_imm_0_31,
1085
  AARCH64_OPND_QLF_imm_0_63,
1086
  AARCH64_OPND_QLF_imm_1_32,
1087
  AARCH64_OPND_QLF_imm_1_64,
1088
1089
  /* Indicate whether an AdvSIMD modified immediate operand is shift-zeros
1090
     or shift-ones.  */
1091
  AARCH64_OPND_QLF_LSL,
1092
  AARCH64_OPND_QLF_MSL,
1093
1094
  /* Special qualifier helping retrieve qualifier information during the
1095
     decoding time (currently not in use).  */
1096
  AARCH64_OPND_QLF_RETRIEVE,
1097
1098
  /* Special qualifier used for indicating error in qualifier retrieval.  */
1099
  AARCH64_OPND_QLF_ERR,
1100
} ATTRIBUTE_PACKED;
1101

1102
/* Instruction class.  */
1103
1104
enum aarch64_insn_class
1105
{
1106
  aarch64_misc,
1107
  addsub_carry,
1108
  addsub_ext,
1109
  addsub_imm,
1110
  addsub_shift,
1111
  asimdall,
1112
  asimddiff,
1113
  asimdelem,
1114
  asimdext,
1115
  asimdimm,
1116
  asimdins,
1117
  asimdmisc,
1118
  asimdperm,
1119
  asimdsame,
1120
  asimdshf,
1121
  asimdtbl,
1122
  asisddiff,
1123
  asisdelem,
1124
  asisdlse,
1125
  asisdlsep,
1126
  asisdlso,
1127
  asisdlsop,
1128
  asisdmisc,
1129
  asisdone,
1130
  asisdpair,
1131
  asisdsame,
1132
  asisdshf,
1133
  bitfield,
1134
  branch_imm,
1135
  branch_reg,
1136
  compbranch,
1137
  condbranch,
1138
  condcmp_imm,
1139
  condcmp_reg,
1140
  condsel,
1141
  cryptoaes,
1142
  cryptosha2,
1143
  cryptosha3,
1144
  dp_1src,
1145
  dp_2src,
1146
  dp_3src,
1147
  exception,
1148
  extract,
1149
  float2fix,
1150
  float2int,
1151
  floatccmp,
1152
  floatcmp,
1153
  floatdp1,
1154
  floatdp2,
1155
  floatdp3,
1156
  floatimm,
1157
  floatsel,
1158
  fprcvtfloat2int,
1159
  fprcvtint2float,
1160
  ldst_immpost,
1161
  ldst_immpre,
1162
  ldst_imm9,  /* immpost or immpre */
1163
  ldst_imm10, /* LDRAA/LDRAB */
1164
  ldst_pos,
1165
  ldst_regoff,
1166
  ldst_unpriv,
1167
  ldst_unscaled,
1168
  ldstexcl,
1169
  ldstnapair_offs,
1170
  ldstpair_off,
1171
  ldstpair_indexed,
1172
  loadlit,
1173
  log_imm,
1174
  log_shift,
1175
  lse_atomic,
1176
  lse128_atomic,
1177
  movewide,
1178
  pcreladdr,
1179
  ic_system,
1180
  sme_fp_sd,
1181
  sme_int_sd,
1182
  sme_misc,
1183
  sme_mov,
1184
  sme_ldr,
1185
  sme_psel,
1186
  sme_shift,
1187
  sme_size_12_bh,
1188
  sme_size_12_bhs,
1189
  sme_size_12_hs,
1190
  sme_size_12_b,
1191
  sme_size_22,
1192
  sme_size_22_hsd,
1193
  sme_sz_23,
1194
  sme_str,
1195
  sme_start,
1196
  sme_stop,
1197
  sme2_mov,
1198
  sve_cpy,
1199
  sve_index,
1200
  sve_limm,
1201
  sve_misc,
1202
  sve_movprfx,
1203
  sve_pred_zm,
1204
  sve_shift_pred,
1205
  sve_shift_unpred,
1206
  sve_size_bh,
1207
  sve_size_bhs,
1208
  sve_size_bhsd,
1209
  sve_size_hsd,
1210
  sve_size_hsd2,
1211
  sve_size_hsd3,
1212
  sve_size_sd,
1213
  sve_size_sd2,
1214
  sve_size_sd3,
1215
  sve_size_sd4,
1216
  sve_size_13,
1217
  sve_shift_tsz_hsd,
1218
  sve_shift_tsz_bhsd,
1219
  sve_size_tsz_bhs,
1220
  testbranch,
1221
  tme,
1222
  cryptosm3,
1223
  cryptosm4,
1224
  dotproduct,
1225
  bfloat16,
1226
  cssc,
1227
  gcs,
1228
  the,
1229
  sve2_urqvs,
1230
  sve_index1,
1231
  rcpc3,
1232
  lut,
1233
  last_iclass = lut
1234
};
1235
1236
/* Opcode enumerators.  */
1237
1238
enum aarch64_op
1239
{
1240
  OP_NIL,
1241
  OP_STRB_POS,
1242
  OP_LDRB_POS,
1243
  OP_LDRSB_POS,
1244
  OP_STRH_POS,
1245
  OP_LDRH_POS,
1246
  OP_LDRSH_POS,
1247
  OP_STR_POS,
1248
  OP_LDR_POS,
1249
  OP_STRF_POS,
1250
  OP_LDRF_POS,
1251
  OP_LDRSW_POS,
1252
  OP_PRFM_POS,
1253
1254
  OP_STURB,
1255
  OP_LDURB,
1256
  OP_LDURSB,
1257
  OP_STURH,
1258
  OP_LDURH,
1259
  OP_LDURSH,
1260
  OP_STUR,
1261
  OP_LDUR,
1262
  OP_STURV,
1263
  OP_LDURV,
1264
  OP_LDURSW,
1265
  OP_PRFUM,
1266
1267
  OP_LDR_LIT,
1268
  OP_LDRV_LIT,
1269
  OP_LDRSW_LIT,
1270
  OP_PRFM_LIT,
1271
1272
  OP_ADD,
1273
  OP_B,
1274
  OP_BL,
1275
1276
  OP_MOVN,
1277
  OP_MOVZ,
1278
  OP_MOVK,
1279
1280
  OP_MOV_IMM_LOG, /* MOV alias for moving bitmask immediate.  */
1281
  OP_MOV_IMM_WIDE,  /* MOV alias for moving wide immediate.  */
1282
  OP_MOV_IMM_WIDEN, /* MOV alias for moving wide immediate (negated).  */
1283
1284
  OP_MOV_V,   /* MOV alias for moving vector register.  */
1285
1286
  OP_ASR_IMM,
1287
  OP_LSR_IMM,
1288
  OP_LSL_IMM,
1289
1290
  OP_BIC,
1291
1292
  OP_UBFX,
1293
  OP_BFXIL,
1294
  OP_SBFX,
1295
  OP_SBFIZ,
1296
  OP_BFI,
1297
  OP_BFC,   /* ARMv8.2.  */
1298
  OP_UBFIZ,
1299
  OP_UXTB,
1300
  OP_UXTH,
1301
  OP_UXTW,
1302
1303
  OP_CINC,
1304
  OP_CINV,
1305
  OP_CNEG,
1306
  OP_CSET,
1307
  OP_CSETM,
1308
1309
  OP_FCVT,
1310
  OP_FCVTN,
1311
  OP_FCVTN2,
1312
  OP_FCVTL,
1313
  OP_FCVTL2,
1314
  OP_FCVTXN_S,    /* Scalar version.  */
1315
1316
  OP_ROR_IMM,
1317
1318
  OP_SXTL,
1319
  OP_SXTL2,
1320
  OP_UXTL,
1321
  OP_UXTL2,
1322
1323
  OP_MOV_P_P,
1324
  OP_MOV_PN_PN,
1325
  OP_MOV_Z_P_Z,
1326
  OP_MOV_Z_V,
1327
  OP_MOV_Z_Z,
1328
  OP_MOVM_P_P_P,
1329
  OP_MOVS_P_P,
1330
  OP_MOVZS_P_P_P,
1331
  OP_MOVZ_P_P_P,
1332
  OP_NOTS_P_P_P_Z,
1333
  OP_NOT_P_P_P_Z,
1334
1335
  OP_FCMLA_ELEM,  /* ARMv8.3, indexed element version.  */
1336
1337
  OP_TOTAL_NUM,   /* Pseudo.  */
1338
};
1339
1340
/* Error types.  */
1341
enum err_type
1342
{
1343
  ERR_OK,
1344
  ERR_UND,
1345
  ERR_UNP,
1346
  ERR_VFI,
1347
  ERR_NR_ENTRIES
1348
};
1349
1350
/* Maximum number of operands an instruction can have.  */
1351
200M
#define AARCH64_MAX_OPND_NUM 7
1352
/* Maximum number of qualifier sequences an instruction can have.  */
1353
13.9M
#define AARCH64_MAX_QLF_SEQ_NUM 10
1354
/* Operand qualifier typedef  */
1355
typedef enum aarch64_opnd_qualifier aarch64_opnd_qualifier_t;
1356
/* Operand qualifier sequence typedef.  */
1357
typedef aarch64_opnd_qualifier_t  \
1358
    aarch64_opnd_qualifier_seq_t [AARCH64_MAX_OPND_NUM];
1359
1360
static inline bool
1361
empty_qualifier_sequence_p (const aarch64_opnd_qualifier_t *qualifiers)
1362
3.58M
{
1363
3.58M
  return qualifiers[0] == AARCH64_OPND_QLF_UNUSED;
1364
3.58M
}
Unexecuted instantiation: aarch64-dis.c:empty_qualifier_sequence_p
Unexecuted instantiation: aarch64-dis-2.c:empty_qualifier_sequence_p
aarch64-opc.c:empty_qualifier_sequence_p
Line
Count
Source
1362
3.58M
{
1363
3.58M
  return qualifiers[0] == AARCH64_OPND_QLF_UNUSED;
1364
3.58M
}
Unexecuted instantiation: aarch64-opc-2.c:empty_qualifier_sequence_p
1365
1366
/*  Forward declare error reporting type.  */
1367
typedef struct aarch64_operand_error aarch64_operand_error;
1368
/* Forward declare instruction sequence type.  */
1369
typedef struct aarch64_instr_sequence aarch64_instr_sequence;
1370
/* Forward declare instruction definition.  */
1371
typedef struct aarch64_inst aarch64_inst;
1372
1373
/* This structure holds information for a particular opcode.  */
1374
1375
struct aarch64_opcode
1376
{
1377
  /* The name of the mnemonic.  */
1378
  const char *name;
1379
1380
  /* The opcode itself.  Those bits which will be filled in with
1381
     operands are zeroes.  */
1382
  aarch64_insn opcode;
1383
1384
  /* The opcode mask.  This is used by the disassembler.  This is a
1385
     mask containing ones indicating those bits which must match the
1386
     opcode field, and zeroes indicating those bits which need not
1387
     match (and are presumably filled in by operands).  */
1388
  aarch64_insn mask;
1389
1390
  /* Instruction class.  */
1391
  enum aarch64_insn_class iclass;
1392
1393
  /* Enumerator identifier.  */
1394
  enum aarch64_op op;
1395
1396
  /* Which architecture variant provides this instruction.  */
1397
  const aarch64_feature_set *avariant;
1398
1399
  /* An array of operand codes.  Each code is an index into the
1400
     operand table.  They appear in the order which the operands must
1401
     appear in assembly code, and are terminated by a zero.  */
1402
  enum aarch64_opnd operands[AARCH64_MAX_OPND_NUM];
1403
1404
  /* A list of operand qualifier code sequence.  Each operand qualifier
1405
     code qualifies the corresponding operand code.  Each operand
1406
     qualifier sequence specifies a valid opcode variant and related
1407
     constraint on operands.  */
1408
  aarch64_opnd_qualifier_seq_t qualifiers_list[AARCH64_MAX_QLF_SEQ_NUM];
1409
1410
  /* Flags providing information about this instruction */
1411
  uint64_t flags;
1412
1413
  /* Extra constraints on the instruction that the verifier checks.  */
1414
  uint32_t constraints;
1415
1416
  /* If nonzero, this operand and operand 0 are both registers and
1417
     are required to have the same register number.  */
1418
  unsigned char tied_operand;
1419
1420
  /* If non-NULL, a function to verify that a given instruction is valid.  */
1421
  enum err_type (* verifier) (const struct aarch64_inst *, const aarch64_insn,
1422
            bfd_vma, bool, aarch64_operand_error *,
1423
            struct aarch64_instr_sequence *);
1424
};
1425
1426
typedef struct aarch64_opcode aarch64_opcode;
1427
1428
/* Table describing all the AArch64 opcodes.  */
1429
extern const aarch64_opcode aarch64_opcode_table[];
1430
1431
/* Opcode flags.  */
1432
1.80M
#define F_ALIAS (1 << 0)
1433
7.86M
#define F_HAS_ALIAS (1 << 1)
1434
/* Disassembly preference priority 1-3 (the larger the higher).  If nothing
1435
   is specified, it is the priority 0 by default, i.e. the lowest priority.  */
1436
#define F_P1 (1 << 2)
1437
#define F_P2 (2 << 2)
1438
#define F_P3 (3 << 2)
1439
/* Flag an instruction that is truly conditional executed, e.g. b.cond.  */
1440
26.6M
#define F_COND (1 << 4)
1441
/* Instruction has the field of 'sf'.  */
1442
12.2M
#define F_SF (1 << 5)
1443
/* Instruction has the field of 'size:Q'.  */
1444
12.1M
#define F_SIZEQ (1 << 6)
1445
/* Floating-point instruction has the field of 'type'.  */
1446
11.8M
#define F_FPTYPE (1 << 7)
1447
/* AdvSIMD scalar instruction has the field of 'size'.  */
1448
11.8M
#define F_SSIZE (1 << 8)
1449
/* AdvSIMD vector register arrangement specifier encoded in "imm5<3:0>:Q".  */
1450
11.8M
#define F_T (1 << 9)
1451
/* Size of GPR operand in AdvSIMD instructions encoded in Q.  */
1452
11.8M
#define F_GPRSIZE_IN_Q (1 << 10)
1453
/* Size of Rt load signed instruction encoded in opc[0], i.e. bit 22.  */
1454
11.8M
#define F_LDS_SIZE (1 << 11)
1455
/* Optional operand; assume maximum of 1 operand can be optional.  */
1456
#define F_OPD0_OPT (1 << 12)
1457
#define F_OPD1_OPT (2 << 12)
1458
#define F_OPD2_OPT (3 << 12)
1459
#define F_OPD3_OPT (4 << 12)
1460
#define F_OPD4_OPT (5 << 12)
1461
/* Default value for the optional operand when omitted from the assembly.  */
1462
#define F_DEFAULT(X) (((X) & 0x1f) << 15)
1463
/* Instruction that is an alias of another instruction needs to be
1464
   encoded/decoded by converting it to/from the real form, followed by
1465
   the encoding/decoding according to the rules of the real opcode.
1466
   This compares to the direct coding using the alias's information.
1467
   N.B. this flag requires F_ALIAS to be used together.  */
1468
978k
#define F_CONV (1 << 20)
1469
/* Use together with F_ALIAS to indicate an alias opcode is a programmer
1470
   friendly pseudo instruction available only in the assembly code (thus will
1471
   not show up in the disassembly).  */
1472
1.80M
#define F_PSEUDO (1 << 21)
1473
/* Instruction has miscellaneous encoding/decoding rules.  */
1474
11.8M
#define F_MISC (1 << 22)
1475
/* Instruction has the field of 'N'; used in conjunction with F_SF.  */
1476
11.4M
#define F_N (1 << 23)
1477
/* Opcode dependent field.  */
1478
#define F_OD(X) (((X) & 0x7) << 24)
1479
/* Instruction has the field of 'sz'.  */
1480
12.1M
#define F_LSE_SZ (1 << 27)
1481
/* The instruction has been deprecated.  */
1482
#define F_DEPRECATED_INSN (1 << 28)
1483
/* This system instruction is used to read system registers.  */
1484
39.6k
#define F_SYS_READ (1ULL << 29)
1485
/* This system instruction is used to write system registers.  */
1486
32.9k
#define F_SYS_WRITE (1ULL << 30)
1487
/* This instruction has an extra constraint on it that imposes a requirement on
1488
   subsequent instructions.  */
1489
265k
#define F_SCAN (1ULL << 31)
1490
/* Instruction takes a pair of optional operands.  If we specify the Nth operand
1491
   to be optional, then we also implicitly specify (N+1)th operand to also be
1492
   optional.  */
1493
3.87M
#define F_OPD_PAIR_OPT (1ULL << 32)
1494
/* This instruction requires one of its operands to be a stack pointer.  This
1495
   is used for alias instructions that would otherwise overlap a different
1496
   instruction.  */
1497
8.06M
#define F_REQUIRES_SP (1ULL << 44)
1498
/* For the instruction with size[22:23] field.  */
1499
11.8M
#define F_OPD_SIZE (1ULL << 34)
1500
/* RCPC3 instruction has the field of 'size'.  */
1501
12.1M
#define F_RCPC3_SIZE (1ULL << 35)
1502
/* This instruction need VGx2 or VGx4 mandatorily in the operand passed to
1503
   assembler.  */
1504
#define F_VG_REQ (1ULL << 36)
1505
1506
/* 4-bit flag field to indicate subclass of instructions.
1507
   Note the overlap between the set of subclass flags in each logical category
1508
   (F_LDST_*, F_ARITH_*, F_BRANCH_* etc.);  The usage of flags as
1509
   iclass-specific enums is intentional.  */
1510
#define F_SUBCLASS (15ULL << 37)
1511
1512
#define F_LDST_LOAD (1ULL << 37)
1513
#define F_LDST_STORE (2ULL << 37)
1514
/* Subclasses to denote add, sub and mov insns.  */
1515
#define F_ARITH_ADD (1ULL << 37)
1516
#define F_ARITH_SUB (2ULL << 37)
1517
#define F_ARITH_MOV (3ULL << 37)
1518
/* Subclasses to denote call and ret insns.  */
1519
#define F_BRANCH_CALL (1ULL << 37)
1520
#define F_BRANCH_RET (2ULL << 37)
1521
/* Subclass to denote that only tag update is involved.  */
1522
#define F_DP_TAG_ONLY (1ULL << 37)
1523
1524
#define F_SUBCLASS_OTHER (F_SUBCLASS)
1525
1526
/* For LSFE instructions with size[30:31] field.  */
1527
11.8M
#define F_LSFE_SZ (1ULL << 41)
1528
1529
/* When parsing immediate values, register names should not be misinterpreted
1530
   as symbols.  However, for backwards compatibility we need to permit some
1531
   newer register names within older instructions.  These flags specify which
1532
   register names are invalid immediate value, and are required for all
1533
   instructions with immediate operands (and are otherwise ignored).  */
1534
#define F_INVALID_IMM_SYMS (3ULL << 42)
1535
1536
/* Any GP or SIMD register except WSP/SP.  */
1537
#define F_INVALID_IMM_SYMS_1 (1ULL << 42)
1538
1539
/* As above, plus WSP/SP, and Z and P registers.  */
1540
#define F_INVALID_IMM_SYMS_2 (2ULL << 42)
1541
1542
/* As above, plus PN registers.  */
1543
#define F_INVALID_IMM_SYMS_3 (3ULL << 42)
1544
1545
/* Next bit is 44.  */
1546
1547
/* Instruction constraints.  */
1548
/* This instruction has a predication constraint on the instruction at PC+4.  */
1549
15.5k
#define C_SCAN_MOVPRFX (1U << 0)
1550
/* This instruction's operation width is determined by the operand with the
1551
   largest element size.  */
1552
1.60k
#define C_MAX_ELEM (1U << 1)
1553
8.77k
#define C_SCAN_MOPS_P (1U << 2)
1554
7.92k
#define C_SCAN_MOPS_M (2U << 2)
1555
#define C_SCAN_MOPS_E (3U << 2)
1556
277k
#define C_SCAN_MOPS_PME (3U << 2)
1557
/* Next bit is 4.  */
1558
1559
static inline bool
1560
alias_opcode_p (const aarch64_opcode *opcode)
1561
1.80M
{
1562
1.80M
  return (opcode->flags & F_ALIAS) != 0;
1563
1.80M
}
aarch64-dis.c:alias_opcode_p
Line
Count
Source
1561
1.80M
{
1562
1.80M
  return (opcode->flags & F_ALIAS) != 0;
1563
1.80M
}
Unexecuted instantiation: aarch64-dis-2.c:alias_opcode_p
Unexecuted instantiation: aarch64-opc.c:alias_opcode_p
Unexecuted instantiation: aarch64-opc-2.c:alias_opcode_p
1564
1565
static inline bool
1566
opcode_has_alias (const aarch64_opcode *opcode)
1567
7.86M
{
1568
7.86M
  return (opcode->flags & F_HAS_ALIAS) != 0;
1569
7.86M
}
aarch64-dis.c:opcode_has_alias
Line
Count
Source
1567
7.86M
{
1568
7.86M
  return (opcode->flags & F_HAS_ALIAS) != 0;
1569
7.86M
}
Unexecuted instantiation: aarch64-dis-2.c:opcode_has_alias
Unexecuted instantiation: aarch64-opc.c:opcode_has_alias
Unexecuted instantiation: aarch64-opc-2.c:opcode_has_alias
1570
1571
/* Priority for disassembling preference.  */
1572
static inline int
1573
opcode_priority (const aarch64_opcode *opcode)
1574
0
{
1575
0
  return (opcode->flags >> 2) & 0x3;
1576
0
}
Unexecuted instantiation: aarch64-dis.c:opcode_priority
Unexecuted instantiation: aarch64-dis-2.c:opcode_priority
Unexecuted instantiation: aarch64-opc.c:opcode_priority
Unexecuted instantiation: aarch64-opc-2.c:opcode_priority
1577
1578
static inline bool
1579
pseudo_opcode_p (const aarch64_opcode *opcode)
1580
1.80M
{
1581
1.80M
  return (opcode->flags & F_PSEUDO) != 0lu;
1582
1.80M
}
aarch64-dis.c:pseudo_opcode_p
Line
Count
Source
1580
1.80M
{
1581
1.80M
  return (opcode->flags & F_PSEUDO) != 0lu;
1582
1.80M
}
Unexecuted instantiation: aarch64-dis-2.c:pseudo_opcode_p
Unexecuted instantiation: aarch64-opc.c:pseudo_opcode_p
Unexecuted instantiation: aarch64-opc-2.c:pseudo_opcode_p
1583
1584
/* Whether the opcode has the specific subclass flag.
1585
   N.B. The overlap between F_LDST_*, F_ARITH_*, and F_BRANCH_* etc. subclass
1586
   flags means that the callers of this function have the responsibility of
1587
   checking for the flags appropriate for the specific iclass.  */
1588
static inline bool
1589
aarch64_opcode_subclass_p (const aarch64_opcode *opcode, uint64_t flag)
1590
0
{
1591
0
  return ((opcode->flags & F_SUBCLASS) == flag);
1592
0
}
Unexecuted instantiation: aarch64-dis.c:aarch64_opcode_subclass_p
Unexecuted instantiation: aarch64-dis-2.c:aarch64_opcode_subclass_p
Unexecuted instantiation: aarch64-opc.c:aarch64_opcode_subclass_p
Unexecuted instantiation: aarch64-opc-2.c:aarch64_opcode_subclass_p
1593
1594
/* Return whether OPCODE has an optional operand at position IDX.  */
1595
static inline bool
1596
optional_operand_p (const aarch64_opcode *opcode, unsigned int idx)
1597
3.89M
{
1598
3.89M
  unsigned int optional_idx = ((opcode->flags >> 12) & 0x7) - 1;
1599
3.89M
  return (idx == optional_idx
1600
3.87M
    || ((opcode->flags & F_OPD_PAIR_OPT) && idx == optional_idx + 1));
1601
3.89M
}
Unexecuted instantiation: aarch64-dis.c:optional_operand_p
Unexecuted instantiation: aarch64-dis-2.c:optional_operand_p
aarch64-opc.c:optional_operand_p
Line
Count
Source
1597
3.89M
{
1598
3.89M
  unsigned int optional_idx = ((opcode->flags >> 12) & 0x7) - 1;
1599
3.89M
  return (idx == optional_idx
1600
3.87M
    || ((opcode->flags & F_OPD_PAIR_OPT) && idx == optional_idx + 1));
1601
3.89M
}
Unexecuted instantiation: aarch64-opc-2.c:optional_operand_p
1602
1603
static inline aarch64_insn
1604
get_optional_operand_default_value (const aarch64_opcode *opcode)
1605
7.38k
{
1606
7.38k
  return (opcode->flags >> 15) & 0x1f;
1607
7.38k
}
Unexecuted instantiation: aarch64-dis.c:get_optional_operand_default_value
Unexecuted instantiation: aarch64-dis-2.c:get_optional_operand_default_value
aarch64-opc.c:get_optional_operand_default_value
Line
Count
Source
1605
7.38k
{
1606
7.38k
  return (opcode->flags >> 15) & 0x1f;
1607
7.38k
}
Unexecuted instantiation: aarch64-opc-2.c:get_optional_operand_default_value
1608
1609
static inline unsigned int
1610
get_opcode_dependent_value (const aarch64_opcode *opcode)
1611
1.04M
{
1612
1.04M
  return (opcode->flags >> 24) & 0x7;
1613
1.04M
}
aarch64-dis.c:get_opcode_dependent_value
Line
Count
Source
1611
472k
{
1612
472k
  return (opcode->flags >> 24) & 0x7;
1613
472k
}
Unexecuted instantiation: aarch64-dis-2.c:get_opcode_dependent_value
aarch64-opc.c:get_opcode_dependent_value
Line
Count
Source
1611
569k
{
1612
569k
  return (opcode->flags >> 24) & 0x7;
1613
569k
}
Unexecuted instantiation: aarch64-opc-2.c:get_opcode_dependent_value
1614
1615
static inline bool
1616
get_opcode_dependent_vg_status (const aarch64_opcode *opcode)
1617
186k
{
1618
186k
  return (opcode->flags >> 36) & 0x1;
1619
186k
}
Unexecuted instantiation: aarch64-dis.c:get_opcode_dependent_vg_status
Unexecuted instantiation: aarch64-dis-2.c:get_opcode_dependent_vg_status
aarch64-opc.c:get_opcode_dependent_vg_status
Line
Count
Source
1617
186k
{
1618
186k
  return (opcode->flags >> 36) & 0x1;
1619
186k
}
Unexecuted instantiation: aarch64-opc-2.c:get_opcode_dependent_vg_status
1620
1621
static inline bool
1622
opcode_has_special_coder (const aarch64_opcode *opcode)
1623
8.96M
{
1624
8.96M
  return (opcode->flags & (F_SF | F_LSE_SZ | F_SIZEQ | F_FPTYPE | F_SSIZE | F_T
1625
8.96M
    | F_GPRSIZE_IN_Q | F_LDS_SIZE | F_MISC | F_N | F_COND
1626
8.96M
    | F_OPD_SIZE | F_RCPC3_SIZE | F_LSFE_SZ )) != 0;
1627
8.96M
}
aarch64-dis.c:opcode_has_special_coder
Line
Count
Source
1623
8.96M
{
1624
8.96M
  return (opcode->flags & (F_SF | F_LSE_SZ | F_SIZEQ | F_FPTYPE | F_SSIZE | F_T
1625
8.96M
    | F_GPRSIZE_IN_Q | F_LDS_SIZE | F_MISC | F_N | F_COND
1626
8.96M
    | F_OPD_SIZE | F_RCPC3_SIZE | F_LSFE_SZ )) != 0;
1627
8.96M
}
Unexecuted instantiation: aarch64-dis-2.c:opcode_has_special_coder
Unexecuted instantiation: aarch64-opc.c:opcode_has_special_coder
Unexecuted instantiation: aarch64-opc-2.c:opcode_has_special_coder
1628

1629
struct aarch64_name_value_pair
1630
{
1631
  const char *  name;
1632
  aarch64_insn  value;
1633
};
1634
1635
extern const struct aarch64_name_value_pair aarch64_operand_modifiers [];
1636
extern const struct aarch64_name_value_pair aarch64_barrier_options [16];
1637
extern const struct aarch64_name_value_pair aarch64_barrier_dsb_nxs_options [4];
1638
extern const struct aarch64_name_value_pair aarch64_prfops [32];
1639
extern const struct aarch64_name_value_pair aarch64_hint_options [];
1640
1641
#define AARCH64_MAX_SYSREG_NAME_LEN 32
1642
1643
typedef struct
1644
{
1645
  const char *  name;
1646
  aarch64_insn  value;
1647
  uint32_t  flags;
1648
1649
  /* A set of features, all of which are required for this system register to be
1650
     available.  */
1651
  aarch64_feature_set features;
1652
} aarch64_sys_reg;
1653
1654
extern const aarch64_sys_reg aarch64_sys_regs [];
1655
extern const aarch64_sys_reg aarch64_pstatefields [];
1656
extern bool aarch64_sys_reg_deprecated_p (const uint32_t);
1657
extern bool aarch64_sys_reg_128bit_p (const uint32_t);
1658
extern bool aarch64_sys_reg_alias_p (const uint32_t);
1659
extern bool aarch64_pstatefield_supported_p (const aarch64_feature_set,
1660
               const aarch64_sys_reg *);
1661
1662
typedef struct
1663
{
1664
  const char *name;
1665
  uint32_t value;
1666
  uint32_t flags ;
1667
1668
  /* A set of features, all of which are required for this system instruction to be
1669
     available.  */
1670
  aarch64_feature_set features;
1671
} aarch64_sys_ins_reg;
1672
1673
extern bool aarch64_sys_ins_reg_has_xt (const aarch64_sys_ins_reg *);
1674
extern bool aarch64_sys_ins_reg_tlbid_xt (const aarch64_sys_ins_reg *);
1675
extern bool
1676
aarch64_sys_ins_reg_supported_p (const aarch64_feature_set,
1677
         const char *reg_name,
1678
         const aarch64_feature_set *);
1679
1680
extern const aarch64_sys_ins_reg aarch64_sys_regs_ic [];
1681
extern const aarch64_sys_ins_reg aarch64_sys_regs_dc [];
1682
extern const aarch64_sys_ins_reg aarch64_sys_regs_at [];
1683
extern const aarch64_sys_ins_reg aarch64_sys_regs_tlbi [];
1684
extern const aarch64_sys_ins_reg aarch64_sys_regs_plbi [];
1685
extern const aarch64_sys_ins_reg aarch64_sys_ins_gic [];
1686
extern const aarch64_sys_ins_reg aarch64_sys_ins_gicr [];
1687
extern const aarch64_sys_ins_reg aarch64_sys_ins_gsb [];
1688
extern const aarch64_sys_ins_reg aarch64_sys_regs_sr [];
1689
1690
/* Shift/extending operator kinds.
1691
   N.B. order is important; keep aarch64_operand_modifiers synced.  */
1692
enum aarch64_modifier_kind
1693
{
1694
  AARCH64_MOD_NONE,
1695
  AARCH64_MOD_MSL,
1696
  AARCH64_MOD_ROR,
1697
  AARCH64_MOD_ASR,
1698
  AARCH64_MOD_LSR,
1699
  AARCH64_MOD_LSL,
1700
  AARCH64_MOD_UXTB,
1701
  AARCH64_MOD_UXTH,
1702
  AARCH64_MOD_UXTW,
1703
  AARCH64_MOD_UXTX,
1704
  AARCH64_MOD_SXTB,
1705
  AARCH64_MOD_SXTH,
1706
  AARCH64_MOD_SXTW,
1707
  AARCH64_MOD_SXTX,
1708
  AARCH64_MOD_MUL,
1709
  AARCH64_MOD_MUL_VL,
1710
};
1711
1712
bool
1713
aarch64_extend_operator_p (enum aarch64_modifier_kind);
1714
1715
enum aarch64_modifier_kind
1716
aarch64_get_operand_modifier (const struct aarch64_name_value_pair *);
1717
/* Condition.  */
1718
1719
typedef struct
1720
{
1721
  /* A list of names with the first one as the disassembly preference;
1722
     terminated by NULL if fewer than 3.  */
1723
  const char *names[4];
1724
  aarch64_insn value;
1725
} aarch64_cond;
1726
1727
extern const aarch64_cond aarch64_conds[16];
1728
1729
const aarch64_cond* get_cond_from_value (aarch64_insn value);
1730
const aarch64_cond* get_inverted_cond (const aarch64_cond *cond);
1731

1732
/* Information about a reference to part of ZA.  */
1733
struct aarch64_indexed_za
1734
{
1735
  /* Which tile is being accessed.  Unused (and 0) for an index into ZA.  */
1736
  int regno;
1737
1738
  struct
1739
  {
1740
    /* The 32-bit index register.  */
1741
    int regno;
1742
1743
    /* The first (or only) immediate offset.  */
1744
    int64_t imm;
1745
1746
    /* The last immediate offset minus the first immediate offset.
1747
       Unlike the range size, this is guaranteed not to overflow
1748
       when the end offset > the start offset.  */
1749
    uint64_t countm1;
1750
  } index;
1751
1752
  /* The vector group size, or 0 if none.  */
1753
  unsigned group_size : 8;
1754
1755
  /* True if a tile access is vertical, false if it is horizontal.
1756
     Unused (and 0) for an index into ZA.  */
1757
  unsigned v : 1;
1758
};
1759
1760
/* Information about a list of registers.  */
1761
struct aarch64_reglist
1762
{
1763
  unsigned first_regno : 8;
1764
  unsigned num_regs : 8;
1765
  /* The difference between the nth and the n+1th register.  */
1766
  unsigned stride : 8;
1767
  /* 1 if it is a list of reg element.  */
1768
  unsigned has_index : 1;
1769
  /* Lane index; valid only when has_index is 1.  */
1770
  int64_t index;
1771
};
1772
1773
/* Structure representing an operand.  */
1774
1775
struct aarch64_opnd_info
1776
{
1777
  enum aarch64_opnd type;
1778
  aarch64_opnd_qualifier_t qualifier;
1779
  int idx;
1780
1781
  union
1782
    {
1783
      struct
1784
  {
1785
    unsigned regno;
1786
  } reg;
1787
      struct
1788
  {
1789
    unsigned int regno;
1790
    int64_t index;
1791
  } reglane;
1792
      /* e.g. LVn.  */
1793
      struct aarch64_reglist reglist;
1794
      /* e.g. immediate or pc relative address offset.  */
1795
      struct
1796
  {
1797
    int64_t value;
1798
    unsigned is_fp : 1;
1799
  } imm;
1800
      /* e.g. address in STR (register offset).  */
1801
      struct
1802
  {
1803
    unsigned base_regno;
1804
    struct
1805
      {
1806
        union
1807
    {
1808
      int imm;
1809
      unsigned regno;
1810
    };
1811
        unsigned is_reg;
1812
      } offset;
1813
    unsigned pcrel : 1;   /* PC-relative.  */
1814
    unsigned writeback : 1;
1815
    unsigned preind : 1;    /* Pre-indexed.  */
1816
    unsigned postind : 1;   /* Post-indexed.  */
1817
  } addr;
1818
1819
      struct
1820
  {
1821
    /* The encoding of the system register.  */
1822
    aarch64_insn value;
1823
1824
    /* The system register flags.  During assembly this contains the
1825
       flags from aarch64-sys-regs.def.  During disassembly this stores
1826
       either F_REG_READ or F_REG_WRITE, depending upon the opcode.  */
1827
    uint32_t flags;
1828
  } sysreg;
1829
1830
      /* ZA tile vector, e.g. <ZAn><HV>.D[<Wv>{, <imm>}]  */
1831
      struct aarch64_indexed_za indexed_za;
1832
1833
      const aarch64_cond *cond;
1834
      /* The encoding of the PSTATE field.  */
1835
      aarch64_insn pstatefield;
1836
      const aarch64_sys_ins_reg *sysins_op;
1837
      const struct aarch64_name_value_pair *barrier;
1838
      const struct aarch64_name_value_pair *hint_option;
1839
      const struct aarch64_name_value_pair *prfop;
1840
    };
1841
1842
  /* Operand shifter; in use when the operand is a register offset address,
1843
     add/sub extended reg, etc. e.g. <R><m>{, <extend> {#<amount>}}.  */
1844
  struct
1845
    {
1846
      enum aarch64_modifier_kind kind;
1847
      unsigned operator_present: 1; /* Only valid during encoding.  */
1848
      /* Value of the 'S' field in ld/st reg offset; used only in decoding.  */
1849
      unsigned amount_present: 1;
1850
      int64_t amount;
1851
    } shifter;
1852
1853
  unsigned skip:1;  /* Operand is not completed if there is a fixup needed
1854
         to be done on it.  In some (but not all) of these
1855
         cases, we need to tell libopcodes to skip the
1856
         constraint checking and the encoding for this
1857
         operand, so that the libopcodes can pick up the
1858
         right opcode before the operand is fixed-up.  This
1859
         flag should only be used during the
1860
         assembling/encoding.  */
1861
  unsigned present:1; /* Whether this operand is present in the assembly
1862
         line; not used during the disassembly.  */
1863
};
1864
1865
typedef struct aarch64_opnd_info aarch64_opnd_info;
1866
1867
/* Structure representing an instruction.
1868
1869
   It is used during both the assembling and disassembling.  The assembler
1870
   fills an aarch64_inst after a successful parsing and then passes it to the
1871
   encoding routine to do the encoding.  During the disassembling, the
1872
   disassembler calls the decoding routine to decode a binary instruction; on a
1873
   successful return, such a structure will be filled with information of the
1874
   instruction; then the disassembler uses the information to print out the
1875
   instruction.  */
1876
1877
struct aarch64_inst
1878
{
1879
  /* The value of the binary instruction.  */
1880
  aarch64_insn value;
1881
1882
  /* Corresponding opcode entry.  */
1883
  const aarch64_opcode *opcode;
1884
1885
  /* Condition for a truly conditional-executed instruction, e.g. b.cond.  */
1886
  const aarch64_cond *cond;
1887
1888
  /* Operands information.  */
1889
  aarch64_opnd_info operands[AARCH64_MAX_OPND_NUM];
1890
};
1891
1892
/* Defining the HINT #imm values for the aarch64_hint_options.  */
1893
#define HINT_OPD_CSYNC  0x11
1894
#define HINT_OPD_DSYNC  0x13
1895
#define HINT_OPD_R  0x20
1896
#define HINT_OPD_C  0x22
1897
#define HINT_OPD_J  0x24
1898
#define HINT_OPD_JC 0x26
1899
#define HINT_OPD_KEEP 0x30
1900
#define HINT_OPD_STRM 0x31
1901
#define HINT_OPD_NPHINT 0x32
1902
#define HINT_OPD_PHINT  0x33
1903
#define HINT_OPD_NULL 0x00
1904
1905

1906
/* Diagnosis related declaration and interface.  */
1907
1908
/* Operand error kind enumerators.
1909
1910
   AARCH64_OPDE_RECOVERABLE
1911
     Less severe error found during the parsing, very possibly because that
1912
     GAS has picked up a wrong instruction template for the parsing.
1913
1914
   AARCH64_OPDE_A_SHOULD_FOLLOW_B
1915
     The instruction forms (or is expected to form) part of a sequence,
1916
     but the preceding instruction in the sequence wasn't the expected one.
1917
     The message refers to two strings: the name of the current instruction,
1918
     followed by the name of the expected preceding instruction.
1919
1920
   AARCH64_OPDE_EXPECTED_A_AFTER_B
1921
     Same as AARCH64_OPDE_A_SHOULD_FOLLOW_B, but shifting the focus
1922
     so that the current instruction is assumed to be the incorrect one:
1923
     "since the previous instruction was B, the current one should be A".
1924
1925
   AARCH64_OPDE_SYNTAX_ERROR
1926
     General syntax error; it can be either a user error, or simply because
1927
     that GAS is trying a wrong instruction template.
1928
1929
   AARCH64_OPDE_FATAL_SYNTAX_ERROR
1930
     Definitely a user syntax error.
1931
1932
   AARCH64_OPDE_INVALID_VARIANT
1933
     No syntax error, but the operands are not a valid combination, e.g.
1934
     FMOV D0,S0
1935
1936
   The following errors are only reported against an asm string that is
1937
   syntactically valid and that has valid operand qualifiers.
1938
1939
   AARCH64_OPDE_INVALID_VG_SIZE
1940
     Error about a "VGx<n>" modifier in a ZA index not having the
1941
     correct <n>.  This error effectively forms a pair with
1942
     AARCH64_OPDE_REG_LIST_LENGTH, since both errors relate to the number
1943
     of vectors that an instruction operates on.  However, the "VGx<n>"
1944
     modifier is optional, whereas a register list always has a known
1945
     and explicit length.  It therefore seems better to place more
1946
     importance on the register list length when selecting an opcode table
1947
     entry.  This in turn means that having an incorrect register length
1948
     should be more severe than having an incorrect "VGx<n>".
1949
1950
   AARCH64_OPDE_REG_LIST_LENGTH
1951
     Error about a register list operand having an unexpected number of
1952
     registers.  This error is low severity because there might be another
1953
     opcode entry that supports the given number of registers.
1954
1955
   AARCH64_OPDE_REG_LIST_STRIDE
1956
     Error about a register list operand having the correct number
1957
     (and type) of registers, but an unexpected stride.  This error is
1958
     more severe than AARCH64_OPDE_REG_LIST_LENGTH because it implies
1959
     that the length is known to be correct.  However, it is lower than
1960
     many other errors, since some instructions have forms that share
1961
     the same number of registers but have different strides.
1962
1963
   AARCH64_OPDE_UNTIED_IMMS
1964
     The asm failed to use the same immediate for a destination operand
1965
     and a tied source operand.
1966
1967
   AARCH64_OPDE_UNTIED_OPERAND
1968
     The asm failed to use the same register for a destination operand
1969
     and a tied source operand.
1970
1971
   AARCH64_OPDE_OUT_OF_RANGE
1972
     Error about some immediate value out of a valid range.
1973
1974
   AARCH64_OPDE_UNALIGNED
1975
     Error about some immediate value not properly aligned (i.e. not being a
1976
     multiple times of a certain value).
1977
1978
   AARCH64_OPDE_OTHER_ERROR
1979
     Error of the highest severity and used for any severe issue that does not
1980
     fall into any of the above categories.
1981
1982
   AARCH64_OPDE_INVALID_REGNO
1983
     A register was syntactically valid and had the right type, but it was
1984
     outside the range supported by the associated operand field.  This is
1985
     a high severity error because there are currently no instructions that
1986
     would accept the operands that precede the erroneous one (if any) and
1987
     yet still accept a wider range of registers.
1988
1989
   AARCH64_OPDE_RECOVERABLE, AARCH64_OPDE_SYNTAX_ERROR and
1990
   AARCH64_OPDE_FATAL_SYNTAX_ERROR are only detected by GAS while the
1991
   AARCH64_OPDE_INVALID_VARIANT error can only be spotted by libopcodes as
1992
   only libopcodes has the information about the valid variants of each
1993
   instruction.
1994
1995
   The enumerators have an increasing severity.  This is helpful when there are
1996
   multiple instruction templates available for a given mnemonic name (e.g.
1997
   FMOV); this mechanism will help choose the most suitable template from which
1998
   the generated diagnostics can most closely describe the issues, if any.
1999
2000
   This enum needs to be kept up-to-date with operand_mismatch_kind_names
2001
   in tc-aarch64.c.  */
2002
2003
enum aarch64_operand_error_kind
2004
{
2005
  AARCH64_OPDE_NIL,
2006
  AARCH64_OPDE_RECOVERABLE,
2007
  AARCH64_OPDE_A_SHOULD_FOLLOW_B,
2008
  AARCH64_OPDE_EXPECTED_A_AFTER_B,
2009
  AARCH64_OPDE_SYNTAX_ERROR,
2010
  AARCH64_OPDE_FATAL_SYNTAX_ERROR,
2011
  AARCH64_OPDE_INVALID_VARIANT,
2012
  AARCH64_OPDE_INVALID_VG_SIZE,
2013
  AARCH64_OPDE_REG_LIST_LENGTH,
2014
  AARCH64_OPDE_REG_LIST_STRIDE,
2015
  AARCH64_OPDE_UNTIED_IMMS,
2016
  AARCH64_OPDE_UNTIED_OPERAND,
2017
  AARCH64_OPDE_OUT_OF_RANGE,
2018
  AARCH64_OPDE_UNALIGNED,
2019
  AARCH64_OPDE_OTHER_ERROR,
2020
  AARCH64_OPDE_INVALID_REGNO
2021
};
2022
2023
/* N.B. GAS assumes that this structure work well with shallow copy.  */
2024
struct aarch64_operand_error
2025
{
2026
  enum aarch64_operand_error_kind kind;
2027
  int index;
2028
  const char *error;
2029
  /* Some data for extra information.  */
2030
  union {
2031
    int i;
2032
    const char *s;
2033
  } data[3];
2034
  bool non_fatal;
2035
};
2036
2037
/* AArch64 sequence structure used to track instructions with F_SCAN
2038
   dependencies for both assembler and disassembler.  */
2039
struct aarch64_instr_sequence
2040
{
2041
  /* The instructions in the sequence, starting with the one that
2042
     caused it to be opened.  */
2043
  aarch64_inst *instr;
2044
  /* The number of instructions already in the sequence.  */
2045
  int num_added_insns;
2046
  /* The number of instructions allocated to the sequence.  */
2047
  int num_allocated_insns;
2048
};
2049
2050
/* Encoding entrypoint.  */
2051
2052
extern bool
2053
aarch64_opcode_encode (const aarch64_opcode *, const aarch64_inst *,
2054
           aarch64_insn *, aarch64_opnd_qualifier_t *,
2055
           aarch64_operand_error *, aarch64_instr_sequence *);
2056
2057
extern const aarch64_opcode *
2058
aarch64_replace_opcode (struct aarch64_inst *,
2059
      const aarch64_opcode *);
2060
2061
/* Given the opcode enumerator OP, return the pointer to the corresponding
2062
   opcode entry.  */
2063
2064
extern const aarch64_opcode *
2065
aarch64_get_opcode (enum aarch64_op);
2066
2067
/* An instance of this structure is passed to aarch64_print_operand, and
2068
   the callback within this structure is used to apply styling to the
2069
   disassembler output.  This structure encapsulates the callback and a
2070
   state pointer.  */
2071
2072
struct aarch64_styler
2073
{
2074
  /* The callback used to apply styling.  Returns a string created from FMT
2075
     and ARGS with STYLE applied to the string.  STYLER is a pointer back
2076
     to this object so that the callback can access the state member.
2077
2078
     The string returned from this callback must remain valid until the
2079
     call to aarch64_print_operand has completed.  */
2080
  const char *(*apply_style) (struct aarch64_styler *styler,
2081
            enum disassembler_style style,
2082
            const char *fmt,
2083
            va_list args);
2084
2085
  /* A pointer to a state object which can be used by the apply_style
2086
     callback function.  */
2087
  void *state;
2088
};
2089
2090
/* Generate the string representation of an operand.  */
2091
extern void
2092
aarch64_print_operand (char *, size_t, bfd_vma, const aarch64_opcode *,
2093
           const aarch64_opnd_info *, int, int *, bfd_vma *,
2094
           char **, char *, size_t,
2095
           aarch64_feature_set features,
2096
           struct aarch64_styler *styler);
2097
2098
/* Miscellaneous interface.  */
2099
2100
extern int
2101
aarch64_operand_index (const enum aarch64_opnd *, enum aarch64_opnd);
2102
2103
extern bool
2104
aarch64_is_destructive_by_operands (const aarch64_opcode *);
2105
2106
extern int
2107
aarch64_num_of_operands (const aarch64_opcode *);
2108
2109
extern bool
2110
aarch64_stack_pointer_p (const aarch64_opnd_info *);
2111
2112
extern int
2113
aarch64_zero_register_p (const aarch64_opnd_info *);
2114
2115
extern enum err_type
2116
aarch64_decode_insn (aarch64_insn, aarch64_inst *, bool,
2117
         aarch64_operand_error *);
2118
2119
extern void
2120
init_insn_sequence (const struct aarch64_inst *, aarch64_instr_sequence *);
2121
2122
/* Given an operand qualifier, return the expected data element size
2123
   of a qualified operand.  */
2124
extern unsigned char
2125
aarch64_get_qualifier_esize (aarch64_opnd_qualifier_t);
2126
2127
extern enum aarch64_operand_class
2128
aarch64_get_operand_class (enum aarch64_opnd);
2129
2130
extern const char *
2131
aarch64_get_operand_name (enum aarch64_opnd);
2132
2133
extern const char *
2134
aarch64_get_operand_desc (enum aarch64_opnd);
2135
2136
extern bool
2137
aarch64_sve_dupm_mov_immediate_p (uint64_t, int);
2138
2139
extern bool
2140
aarch64_cpu_supports_inst_p (aarch64_feature_set, aarch64_inst *);
2141
2142
extern int
2143
calc_ldst_datasize (const aarch64_opnd_info *opnds);
2144
2145
#ifdef DEBUG_AARCH64
2146
extern int debug_dump;
2147
2148
extern void
2149
aarch64_verbose (const char *, ...) __attribute__ ((format (printf, 1, 2)));
2150
2151
#define DEBUG_TRACE(M, ...)         \
2152
  {               \
2153
    if (debug_dump)           \
2154
      aarch64_verbose ("%s: " M ".", __func__, ##__VA_ARGS__);  \
2155
  }
2156
2157
#define DEBUG_TRACE_IF(C, M, ...)       \
2158
  {               \
2159
    if (debug_dump && (C))          \
2160
      aarch64_verbose ("%s: " M ".", __func__, ##__VA_ARGS__);  \
2161
  }
2162
#else  /* !DEBUG_AARCH64 */
2163
103M
#define DEBUG_TRACE(M, ...) ;
2164
19.2M
#define DEBUG_TRACE_IF(C, M, ...) ;
2165
#endif /* DEBUG_AARCH64 */
2166
2167
extern const char *const aarch64_sve_pattern_array[32];
2168
extern const char *const aarch64_sve_prfop_array[16];
2169
extern const char *const aarch64_rprfmop_array[64];
2170
extern const char *const aarch64_sme_vlxn_array[2];
2171
extern const char *const aarch64_brbop_array[2];
2172
2173
#ifdef __cplusplus
2174
}
2175
#endif
2176
2177
#endif /* OPCODE_AARCH64_H */