Coverage Report

Created: 2025-10-12 06:32

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/capstonenext/arch/Mips/MipsDisassembler.c
Line
Count
Source
1
/* Capstone Disassembly Engine, http://www.capstone-engine.org */
2
/* By Nguyen Anh Quynh <aquynh@gmail.com>, 2013-2022, */
3
/*    Rot127 <unisono@quyllur.org> 2022-2023 */
4
/* Automatically translated source file from LLVM. */
5
6
/* LLVM-commit: <commit> */
7
/* LLVM-tag: <tag> */
8
9
/* Only small edits allowed. */
10
/* For multiple similar edits, please create a Patch for the translator. */
11
12
/* Capstone's C++ file translator: */
13
/* https://github.com/capstone-engine/capstone/tree/next/suite/auto-sync */
14
15
//===- MipsDisassembler.cpp - Disassembler for Mips -----------------------===//
16
//
17
// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
18
// See https://llvm.org/LICENSE.txt for license information.
19
// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
20
//
21
//===----------------------------------------------------------------------===//
22
//
23
// This file is part of the Mips Disassembler.
24
//
25
//===----------------------------------------------------------------------===//
26
27
#include <stdio.h>
28
#include <string.h>
29
#include <stdlib.h>
30
#include <capstone/platform.h>
31
32
#include "../../MCInst.h"
33
#include "../../MathExtras.h"
34
#include "../../MCInstPrinter.h"
35
#include "../../MCDisassembler.h"
36
#include "../../MCRegisterInfo.h"
37
#include "../../MCFixedLenDisassembler.h"
38
#include "../../cs_priv.h"
39
#include "../../utils.h"
40
#define GET_SUBTARGETINFO_ENUM
41
#include "MipsGenSubtargetInfo.inc"
42
43
#define GET_INSTRINFO_ENUM
44
#include "MipsGenInstrInfo.inc"
45
46
#define GET_REGINFO_ENUM
47
#include "MipsGenRegisterInfo.inc"
48
49
284
#define CONCAT(a, b) CONCAT_(a, b)
50
284
#define CONCAT_(a, b) a##_##b
51
52
#define DEBUG_TYPE "mips-disassembler"
53
54
bool Mips_getFeatureBits(unsigned int mode, unsigned int feature)
55
1.33M
{
56
1.33M
  switch (feature) {
57
91.7k
  case Mips_FeatureGP64Bit:
58
91.7k
    return mode &
59
91.7k
           (CS_MODE_MIPS3 | CS_MODE_MIPS4 | CS_MODE_MIPS5 |
60
91.7k
      CS_MODE_MIPS64 | CS_MODE_MIPS64R2 | CS_MODE_MIPS64R3 |
61
91.7k
      CS_MODE_MIPS64R5 | CS_MODE_MIPS64R6 | CS_MODE_OCTEON |
62
91.7k
      CS_MODE_OCTEONP);
63
95.4k
  case Mips_FeatureFP64Bit:
64
95.4k
    return mode &
65
95.4k
           (CS_MODE_MIPS32R6 | CS_MODE_MIPS3 | CS_MODE_MIPS4 |
66
95.4k
      CS_MODE_MIPS5 | CS_MODE_MIPS32R2 | CS_MODE_MIPS32R3 |
67
95.4k
      CS_MODE_MIPS32R5 | CS_MODE_MIPS64 | CS_MODE_MIPS64R2 |
68
95.4k
      CS_MODE_MIPS64R3 | CS_MODE_MIPS64R5 | CS_MODE_MIPS64R6 |
69
95.4k
      CS_MODE_OCTEON | CS_MODE_OCTEONP);
70
0
  case Mips_FeatureNaN2008:
71
0
    return mode & (CS_MODE_MIPS32R6 | CS_MODE_MIPS64R6);
72
0
  case Mips_FeatureAbs2008:
73
0
    return mode & (CS_MODE_MIPS32R6 | CS_MODE_MIPS64R6);
74
0
  case Mips_FeatureMips1:
75
0
    return mode &
76
0
           (CS_MODE_MIPS1 | CS_MODE_MIPS2 | CS_MODE_MIPS32 |
77
0
      CS_MODE_MIPS32R2 | CS_MODE_MIPS32R3 | CS_MODE_MIPS32R5 |
78
0
      CS_MODE_MIPS32R6 | CS_MODE_MIPS3 | CS_MODE_MIPS4 |
79
0
      CS_MODE_MIPS5 | CS_MODE_MIPS64 | CS_MODE_MIPS64R2 |
80
0
      CS_MODE_MIPS64R3 | CS_MODE_MIPS64R5 | CS_MODE_MIPS64R6 |
81
0
      CS_MODE_OCTEON | CS_MODE_OCTEONP);
82
92.6k
  case Mips_FeatureMips2:
83
92.6k
    return mode &
84
92.6k
           (CS_MODE_MIPS2 | CS_MODE_MIPS32 | CS_MODE_MIPS32R2 |
85
92.6k
      CS_MODE_MIPS32R3 | CS_MODE_MIPS32R5 | CS_MODE_MIPS32R6 |
86
92.6k
      CS_MODE_MIPS3 | CS_MODE_MIPS4 | CS_MODE_MIPS5 |
87
92.6k
      CS_MODE_MIPS64 | CS_MODE_MIPS64R2 | CS_MODE_MIPS64R3 |
88
92.6k
      CS_MODE_MIPS64R5 | CS_MODE_MIPS64R6 | CS_MODE_OCTEON |
89
92.6k
      CS_MODE_OCTEONP);
90
339
  case Mips_FeatureMips3_32:
91
339
    return mode &
92
339
           (CS_MODE_MIPS32 | CS_MODE_MIPS32R2 | CS_MODE_MIPS32R3 |
93
339
      CS_MODE_MIPS32R5 | CS_MODE_MIPS32R6 | CS_MODE_MIPS3 |
94
339
      CS_MODE_MIPS4 | CS_MODE_MIPS5 | CS_MODE_MIPS64 |
95
339
      CS_MODE_MIPS64R2 | CS_MODE_MIPS64R3 | CS_MODE_MIPS64R5 |
96
339
      CS_MODE_MIPS64R6 | CS_MODE_OCTEON | CS_MODE_OCTEONP);
97
89
  case Mips_FeatureMips3_32r2:
98
89
    return mode &
99
89
           (CS_MODE_MIPS32R2 | CS_MODE_MIPS32R3 | CS_MODE_MIPS32R5 |
100
89
      CS_MODE_MIPS32R6 | CS_MODE_MIPS3 | CS_MODE_MIPS4 |
101
89
      CS_MODE_MIPS5 | CS_MODE_MIPS64 | CS_MODE_MIPS64R2 |
102
89
      CS_MODE_MIPS64R3 | CS_MODE_MIPS64R5 | CS_MODE_MIPS64R6 |
103
89
      CS_MODE_OCTEON | CS_MODE_OCTEONP);
104
7.98k
  case Mips_FeatureMips3:
105
7.98k
    return mode &
106
7.98k
           (CS_MODE_MIPS3 | CS_MODE_MIPS4 | CS_MODE_MIPS5 |
107
7.98k
      CS_MODE_MIPS64 | CS_MODE_MIPS64R2 | CS_MODE_MIPS64R3 |
108
7.98k
      CS_MODE_MIPS64R5 | CS_MODE_MIPS64R6 | CS_MODE_OCTEON |
109
7.98k
      CS_MODE_OCTEONP);
110
862
  case Mips_FeatureMips4_32:
111
862
    return mode &
112
862
           (CS_MODE_MIPS32 | CS_MODE_MIPS32R2 | CS_MODE_MIPS32R3 |
113
862
      CS_MODE_MIPS32R5 | CS_MODE_MIPS32R6 | CS_MODE_MIPS4 |
114
862
      CS_MODE_MIPS5 | CS_MODE_MIPS64 | CS_MODE_MIPS64R2 |
115
862
      CS_MODE_MIPS64R3 | CS_MODE_MIPS64R5 | CS_MODE_MIPS64R6 |
116
862
      CS_MODE_OCTEON | CS_MODE_OCTEONP);
117
979
  case Mips_FeatureMips4_32r2:
118
979
    return mode &
119
979
           (CS_MODE_MIPS32R2 | CS_MODE_MIPS32R3 | CS_MODE_MIPS32R5 |
120
979
      CS_MODE_MIPS32R6 | CS_MODE_MIPS4 | CS_MODE_MIPS5 |
121
979
      CS_MODE_MIPS64 | CS_MODE_MIPS64R2 | CS_MODE_MIPS64R3 |
122
979
      CS_MODE_MIPS64R5 | CS_MODE_MIPS64R6 | CS_MODE_OCTEON |
123
979
      CS_MODE_OCTEONP);
124
0
  case Mips_FeatureMips4:
125
0
    return mode &
126
0
           (CS_MODE_MIPS4 | CS_MODE_MIPS5 | CS_MODE_MIPS64 |
127
0
      CS_MODE_MIPS64R2 | CS_MODE_MIPS64R3 | CS_MODE_MIPS64R5 |
128
0
      CS_MODE_MIPS64R6 | CS_MODE_OCTEON | CS_MODE_OCTEONP);
129
21
  case Mips_FeatureMips5_32r2:
130
21
    return mode &
131
21
           (CS_MODE_MIPS32R2 | CS_MODE_MIPS32R3 | CS_MODE_MIPS32R5 |
132
21
      CS_MODE_MIPS32R6 | CS_MODE_MIPS5 | CS_MODE_MIPS64 |
133
21
      CS_MODE_MIPS64R2 | CS_MODE_MIPS64R3 | CS_MODE_MIPS64R5 |
134
21
      CS_MODE_MIPS64R6 | CS_MODE_OCTEON | CS_MODE_OCTEONP);
135
0
  case Mips_FeatureMips5:
136
0
    return mode &
137
0
           (CS_MODE_MIPS5 | CS_MODE_MIPS64 | CS_MODE_MIPS64R2 |
138
0
      CS_MODE_MIPS64R3 | CS_MODE_MIPS64R5 | CS_MODE_MIPS64R6 |
139
0
      CS_MODE_OCTEON | CS_MODE_OCTEONP);
140
89.9k
  case Mips_FeatureMips32:
141
89.9k
    return mode &
142
89.9k
           (CS_MODE_MIPS32 | CS_MODE_MIPS32R2 | CS_MODE_MIPS32R3 |
143
89.9k
      CS_MODE_MIPS32R5 | CS_MODE_MIPS32R6 | CS_MODE_MIPS64 |
144
89.9k
      CS_MODE_MIPS64R2 | CS_MODE_MIPS64R3 | CS_MODE_MIPS64R5 |
145
89.9k
      CS_MODE_MIPS64R6 | CS_MODE_OCTEON | CS_MODE_OCTEONP);
146
523
  case Mips_FeatureMips32r2:
147
523
    return mode &
148
523
           (CS_MODE_MIPS32R2 | CS_MODE_MIPS32R3 | CS_MODE_MIPS32R5 |
149
523
      CS_MODE_MIPS32R6 | CS_MODE_MIPS64R2 | CS_MODE_MIPS64R3 |
150
523
      CS_MODE_MIPS64R5 | CS_MODE_MIPS64R6 | CS_MODE_OCTEON |
151
523
      CS_MODE_OCTEONP);
152
0
  case Mips_FeatureMips32r3:
153
0
    return mode &
154
0
           (CS_MODE_MIPS32R3 | CS_MODE_MIPS32R5 | CS_MODE_MIPS32R6 |
155
0
      CS_MODE_MIPS64R3 | CS_MODE_MIPS64R5 | CS_MODE_MIPS64R6);
156
96
  case Mips_FeatureMips32r5:
157
96
    return mode & (CS_MODE_MIPS32R5 | CS_MODE_MIPS32R6 |
158
96
             CS_MODE_MIPS64R5 | CS_MODE_MIPS64R6);
159
140k
  case Mips_FeatureMips32r6:
160
140k
    return mode & (CS_MODE_MIPS32R6 | CS_MODE_MIPS64R6);
161
180
  case Mips_FeatureMips64:
162
180
    return mode &
163
180
           (CS_MODE_MIPS64 | CS_MODE_MIPS64R2 | CS_MODE_MIPS64R3 |
164
180
      CS_MODE_MIPS64R5 | CS_MODE_MIPS64R6 | CS_MODE_OCTEON |
165
180
      CS_MODE_OCTEONP);
166
201
  case Mips_FeatureMips64r2:
167
201
    return mode &
168
201
           (CS_MODE_MIPS64R2 | CS_MODE_MIPS64R3 | CS_MODE_MIPS64R5 |
169
201
      CS_MODE_MIPS64R6 | CS_MODE_OCTEON | CS_MODE_OCTEONP);
170
0
  case Mips_FeatureMips64r3:
171
0
    return mode &
172
0
           (CS_MODE_MIPS64R3 | CS_MODE_MIPS64R5 | CS_MODE_MIPS64R6);
173
2
  case Mips_FeatureMips64r5:
174
2
    return mode & (CS_MODE_MIPS64R5 | CS_MODE_MIPS64R6);
175
99.3k
  case Mips_FeatureMips64r6:
176
99.3k
    return mode & CS_MODE_MIPS64R6;
177
138k
  case Mips_FeatureMips16:
178
138k
    return mode & CS_MODE_MIPS16;
179
171k
  case Mips_FeatureMicroMips:
180
171k
    return mode & CS_MODE_MICRO;
181
106k
  case Mips_FeatureNanoMips:
182
106k
    return mode & (CS_MODE_NANOMIPS | CS_MODE_NMS1 | CS_MODE_I7200);
183
0
  case Mips_FeatureNMS1:
184
0
    return mode & CS_MODE_NMS1;
185
0
  case Mips_FeatureTLB:
186
0
    return mode & CS_MODE_I7200;
187
89.1k
  case Mips_FeatureCnMips:
188
89.1k
    return mode & (CS_MODE_OCTEON | CS_MODE_OCTEONP);
189
89.1k
  case Mips_FeatureCnMipsP:
190
89.1k
    return mode & CS_MODE_OCTEONP;
191
89.7k
  case Mips_FeaturePTR64Bit:
192
89.7k
    return mode & CS_MODE_MIPS_PTR64;
193
9.42k
  case Mips_FeatureSoftFloat:
194
9.42k
    return mode & CS_MODE_MIPS_NOFLOAT;
195
0
  case Mips_FeatureI7200:
196
0
    return mode & CS_MODE_I7200;
197
  // optional features always enabled
198
3.19k
  case Mips_FeatureDSP: // Mips DSP ASE
199
3.19k
    return true;
200
1.24k
  case Mips_FeatureDSPR2: // Mips DSP-R2 ASE
201
1.24k
    return true;
202
47
  case Mips_FeatureDSPR3: // Mips DSP-R3 ASE
203
47
    return true;
204
0
  case Mips_FeatureMips3D: // Mips 3D ASE
205
0
    return true;
206
8.49k
  case Mips_FeatureMSA: // Mips MSA ASE
207
8.49k
    return true;
208
663
  case Mips_FeatureEVA: { // Mips EVA ASE
209
663
    if (mode & CS_MODE_NANOMIPS) {
210
0
      return mode & CS_MODE_I7200;
211
0
    }
212
663
    return true;
213
663
  }
214
3
  case Mips_FeatureCRC: // Mips R6 CRC ASE
215
3
    return true;
216
87
  case Mips_FeatureVirt: // Mips Virtualization ASE
217
87
    return true;
218
849
  case Mips_FeatureGINV: // Mips Global Invalidate ASE
219
849
    return true;
220
389
  case Mips_FeatureMT: { // Mips MT ASE
221
389
    if (mode & CS_MODE_NANOMIPS) {
222
0
      return mode & CS_MODE_I7200;
223
0
    }
224
389
    return true;
225
389
  }
226
627
  default:
227
627
    return false;
228
1.33M
  }
229
1.33M
}
230
231
static DecodeStatus getInstruction(MCInst *Instr, uint64_t *Size,
232
           const uint8_t *Bytes, size_t BytesLen,
233
           uint64_t Address, SStream *CStream);
234
235
// end anonymous namespace
236
237
// Forward declare these because the autogenerated code will reference them.
238
// Definitions are further down.
239
static DecodeStatus DecodeGPR64RegisterClass(MCInst *Inst, unsigned RegNo,
240
               uint64_t Address,
241
               const void *Decoder);
242
243
static DecodeStatus DecodeCPU16RegsRegisterClass(MCInst *Inst, unsigned RegNo,
244
             uint64_t Address,
245
             const void *Decoder);
246
247
static DecodeStatus DecodeGPRMM16RegisterClass(MCInst *Inst, unsigned RegNo,
248
                 uint64_t Address,
249
                 const void *Decoder);
250
251
static DecodeStatus DecodeGPRMM16ZeroRegisterClass(MCInst *Inst, unsigned RegNo,
252
               uint64_t Address,
253
               const void *Decoder);
254
255
static DecodeStatus DecodeGPRMM16MovePRegisterClass(MCInst *Inst,
256
                unsigned RegNo,
257
                uint64_t Address,
258
                const void *Decoder);
259
260
static DecodeStatus DecodeGPR32RegisterClass(MCInst *Inst, unsigned RegNo,
261
               uint64_t Address,
262
               const void *Decoder);
263
264
static DecodeStatus DecodeGPRNM3RegisterClass(MCInst *Inst, unsigned RegNo,
265
                uint64_t Address,
266
                const void *Decoder);
267
268
static DecodeStatus DecodeGPRNM4RegisterClass(MCInst *Inst, unsigned RegNo,
269
                uint64_t Address,
270
                const void *Decoder);
271
272
static DecodeStatus DecodeGPRNMRARegisterClass(MCInst *Inst, unsigned RegNo,
273
                 uint64_t Address,
274
                 const void *Decoder);
275
276
static DecodeStatus DecodeGPRNM3ZRegisterClass(MCInst *Inst, unsigned RegNo,
277
                 uint64_t Address,
278
                 const void *Decoder);
279
280
static DecodeStatus DecodeGPRNM4ZRegisterClass(MCInst *Inst, unsigned RegNo,
281
                 uint64_t Address,
282
                 const void *Decoder);
283
284
static DecodeStatus DecodeGPRNM32NZRegisterClass(MCInst *Inst, unsigned RegNo,
285
             uint64_t Address,
286
             const void *Decoder);
287
288
static DecodeStatus DecodeGPRNM32RegisterClass(MCInst *Inst, unsigned RegNo,
289
                 uint64_t Address,
290
                 const void *Decoder);
291
292
static DecodeStatus DecodeGPRNM2R1RegisterClass(MCInst *Inst, unsigned RegNo,
293
            uint64_t Address,
294
            const void *Decoder);
295
296
static DecodeStatus DecodeGPRNM1R1RegisterClass(MCInst *Inst, unsigned RegNo,
297
            uint64_t Address,
298
            const void *Decoder);
299
300
static DecodeStatus DecodePtrRegisterClass(MCInst *Inst, uint32_t Insn,
301
             uint64_t Address,
302
             const void *Decoder);
303
304
static DecodeStatus DecodeDSPRRegisterClass(MCInst *Inst, unsigned RegNo,
305
              uint64_t Address,
306
              const void *Decoder);
307
308
static DecodeStatus DecodeFGR64RegisterClass(MCInst *Inst, unsigned RegNo,
309
               uint64_t Address,
310
               const void *Decoder);
311
312
static DecodeStatus DecodeFGR32RegisterClass(MCInst *Inst, unsigned RegNo,
313
               uint64_t Address,
314
               const void *Decoder);
315
316
static DecodeStatus DecodeCCRRegisterClass(MCInst *Inst, unsigned RegNo,
317
             uint64_t Address,
318
             const void *Decoder);
319
320
static DecodeStatus DecodeFCCRegisterClass(MCInst *Inst, unsigned RegNo,
321
             uint64_t Address,
322
             const void *Decoder);
323
324
static DecodeStatus DecodeFGRCCRegisterClass(MCInst *Inst, unsigned RegNo,
325
               uint64_t Address,
326
               const void *Decoder);
327
328
static DecodeStatus DecodeHWRegsRegisterClass(MCInst *Inst, uint32_t Insn,
329
                uint64_t Address,
330
                const void *Decoder);
331
332
static DecodeStatus DecodeAFGR64RegisterClass(MCInst *Inst, unsigned RegNo,
333
                uint64_t Address,
334
                const void *Decoder);
335
336
static DecodeStatus DecodeACC64DSPRegisterClass(MCInst *Inst, unsigned RegNo,
337
            uint64_t Address,
338
            const void *Decoder);
339
340
static DecodeStatus DecodeHI32DSPRegisterClass(MCInst *Inst, unsigned RegNo,
341
                 uint64_t Address,
342
                 const void *Decoder);
343
344
static DecodeStatus DecodeLO32DSPRegisterClass(MCInst *Inst, unsigned RegNo,
345
                 uint64_t Address,
346
                 const void *Decoder);
347
348
static DecodeStatus DecodeMSA128BRegisterClass(MCInst *Inst, unsigned RegNo,
349
                 uint64_t Address,
350
                 const void *Decoder);
351
352
static DecodeStatus DecodeMSA128HRegisterClass(MCInst *Inst, unsigned RegNo,
353
                 uint64_t Address,
354
                 const void *Decoder);
355
356
static DecodeStatus DecodeMSA128WRegisterClass(MCInst *Inst, unsigned RegNo,
357
                 uint64_t Address,
358
                 const void *Decoder);
359
360
static DecodeStatus DecodeMSA128DRegisterClass(MCInst *Inst, unsigned RegNo,
361
                 uint64_t Address,
362
                 const void *Decoder);
363
364
static DecodeStatus DecodeMSACtrlRegisterClass(MCInst *Inst, unsigned RegNo,
365
                 uint64_t Address,
366
                 const void *Decoder);
367
368
static DecodeStatus DecodeCOP0RegisterClass(MCInst *Inst, unsigned RegNo,
369
              uint64_t Address,
370
              const void *Decoder);
371
372
static DecodeStatus DecodeCOP0SelRegisterClass(MCInst *Inst, unsigned RegNo,
373
                 uint64_t Address,
374
                 const void *Decoder);
375
376
static DecodeStatus DecodeCOP2RegisterClass(MCInst *Inst, unsigned RegNo,
377
              uint64_t Address,
378
              const void *Decoder);
379
380
static DecodeStatus DecodeBranchTarget(MCInst *Inst, unsigned Offset,
381
               uint64_t Address, const void *Decoder);
382
383
static DecodeStatus DecodeBranchTarget1SImm16(MCInst *Inst, unsigned Offset,
384
                uint64_t Address,
385
                const void *Decoder);
386
387
static DecodeStatus DecodeJumpTarget(MCInst *Inst, uint32_t Insn,
388
             uint64_t Address, const void *Decoder);
389
390
static DecodeStatus DecodeBranchTarget21(MCInst *Inst, unsigned Offset,
391
           uint64_t Address, const void *Decoder);
392
393
static DecodeStatus DecodeBranchTarget21MM(MCInst *Inst, unsigned Offset,
394
             uint64_t Address,
395
             const void *Decoder);
396
397
static DecodeStatus DecodeBranchTarget26(MCInst *Inst, unsigned Offset,
398
           uint64_t Address, const void *Decoder);
399
400
// DecodeBranchTarget7MM - Decode microMIPS branch offset, which is
401
// shifted left by 1 bit.
402
static DecodeStatus DecodeBranchTarget7MM(MCInst *Inst, unsigned Offset,
403
            uint64_t Address,
404
            const void *Decoder);
405
406
// DecodeBranchTarget10MM - Decode microMIPS branch offset, which is
407
// shifted left by 1 bit.
408
static DecodeStatus DecodeBranchTarget10MM(MCInst *Inst, unsigned Offset,
409
             uint64_t Address,
410
             const void *Decoder);
411
412
// DecodeBranchTargetMM - Decode microMIPS branch offset, which is
413
// shifted left by 1 bit.
414
static DecodeStatus DecodeBranchTargetMM(MCInst *Inst, unsigned Offset,
415
           uint64_t Address, const void *Decoder);
416
417
// DecodeBranchTarget26MM - Decode microMIPS branch offset, which is
418
// shifted left by 1 bit.
419
static DecodeStatus DecodeBranchTarget26MM(MCInst *Inst, unsigned Offset,
420
             uint64_t Address,
421
             const void *Decoder);
422
423
// DecodeBranchTargetMM - Decode nanoMIPS branch offset, which is
424
// shifted left by 1 bit.
425
#define DECLARE_DecodeBranchTargetNM(bits) \
426
  static DecodeStatus CONCAT(DecodeBranchTargetNM, bits)( \
427
    MCInst * Inst, unsigned Offset, uint64_t Address, \
428
    const void *Decoder);
429
DECLARE_DecodeBranchTargetNM(10);
430
DECLARE_DecodeBranchTargetNM(7);
431
DECLARE_DecodeBranchTargetNM(21);
432
DECLARE_DecodeBranchTargetNM(25);
433
DECLARE_DecodeBranchTargetNM(14);
434
DECLARE_DecodeBranchTargetNM(11);
435
DECLARE_DecodeBranchTargetNM(5);
436
437
// DecodeJumpTargetMM - Decode microMIPS jump target, which is
438
// shifted left by 1 bit.
439
static DecodeStatus DecodeJumpTargetMM(MCInst *Inst, uint32_t Insn,
440
               uint64_t Address, const void *Decoder);
441
442
// DecodeJumpTargetXMM - Decode microMIPS jump and link exchange target,
443
// which is shifted left by 2 bit.
444
static DecodeStatus DecodeJumpTargetXMM(MCInst *Inst, uint32_t Insn,
445
          uint64_t Address, const void *Decoder);
446
447
static DecodeStatus DecodeMem(MCInst *Inst, uint32_t Insn, uint64_t Address,
448
            const void *Decoder);
449
450
#define DECLARE_DecodeMemNM(Offbits, isSigned, rt) \
451
  static DecodeStatus CONCAT(DecodeMemNM, \
452
           CONCAT(Offbits, CONCAT(isSigned, rt)))( \
453
    MCInst * Inst, uint32_t Insn, uint64_t Address, \
454
    const void *Decoder);
455
DECLARE_DecodeMemNM(6, 0, Mips_GPRNM3RegClassID);
456
DECLARE_DecodeMemNM(7, 0, Mips_GPRNMSPRegClassID);
457
DECLARE_DecodeMemNM(9, 0, Mips_GPRNMGPRegClassID);
458
DECLARE_DecodeMemNM(2, 0, Mips_GPRNM3RegClassID);
459
DECLARE_DecodeMemNM(3, 0, Mips_GPRNM3RegClassID);
460
DECLARE_DecodeMemNM(21, 0, Mips_GPRNMGPRegClassID);
461
DECLARE_DecodeMemNM(18, 0, Mips_GPRNMGPRegClassID);
462
DECLARE_DecodeMemNM(12, 0, Mips_GPRNM32RegClassID);
463
DECLARE_DecodeMemNM(9, 1, Mips_GPRNM32RegClassID);
464
465
static DecodeStatus DecodeMemZeroNM(MCInst *Inst, uint32_t Insn,
466
            uint64_t Address, const void *Decoder);
467
468
#define DECLARE_DecodeMemNMRX(rt) \
469
  static DecodeStatus CONCAT(DecodeMemNMRX, \
470
           rt)(MCInst * Inst, uint32_t Insn, \
471
               uint64_t Address, const void *Decoder);
472
DECLARE_DecodeMemNMRX(Mips_GPRNM3RegClassID);
473
DECLARE_DecodeMemNMRX(Mips_GPRNM32RegClassID);
474
475
static DecodeStatus DecodeMemNM4x4(MCInst *Inst, uint32_t Insn,
476
           uint64_t Address, const void *Decoder);
477
478
static DecodeStatus DecodeMemEVA(MCInst *Inst, uint32_t Insn, uint64_t Address,
479
         const void *Decoder);
480
481
static DecodeStatus DecodeLoadByte15(MCInst *Inst, uint32_t Insn,
482
             uint64_t Address, const void *Decoder);
483
484
static DecodeStatus DecodeCacheOp(MCInst *Inst, uint32_t Insn, uint64_t Address,
485
          const void *Decoder);
486
487
static DecodeStatus DecodeCacheeOp_CacheOpR6(MCInst *Inst, uint32_t Insn,
488
               uint64_t Address,
489
               const void *Decoder);
490
491
static DecodeStatus DecodeCacheOpMM(MCInst *Inst, uint32_t Insn,
492
            uint64_t Address, const void *Decoder);
493
494
static DecodeStatus DecodePrefeOpMM(MCInst *Inst, uint32_t Insn,
495
            uint64_t Address, const void *Decoder);
496
497
static DecodeStatus DecodeSyncI(MCInst *Inst, uint32_t Insn, uint64_t Address,
498
        const void *Decoder);
499
500
static DecodeStatus DecodeSyncI_MM(MCInst *Inst, uint32_t Insn,
501
           uint64_t Address, const void *Decoder);
502
503
static DecodeStatus DecodeSynciR6(MCInst *Inst, uint32_t Insn, uint64_t Address,
504
          const void *Decoder);
505
506
static DecodeStatus DecodeMSA128Mem(MCInst *Inst, uint32_t Insn,
507
            uint64_t Address, const void *Decoder);
508
509
static DecodeStatus DecodeMemMMImm4(MCInst *Inst, uint32_t Insn,
510
            uint64_t Address, const void *Decoder);
511
512
static DecodeStatus DecodeMemMMSPImm5Lsl2(MCInst *Inst, uint32_t Insn,
513
            uint64_t Address,
514
            const void *Decoder);
515
516
static DecodeStatus DecodeMemMMGPImm7Lsl2(MCInst *Inst, uint32_t Insn,
517
            uint64_t Address,
518
            const void *Decoder);
519
520
static DecodeStatus DecodeMemMMReglistImm4Lsl2(MCInst *Inst, uint32_t Insn,
521
                 uint64_t Address,
522
                 const void *Decoder);
523
524
static DecodeStatus DecodeMemMMImm9(MCInst *Inst, uint32_t Insn,
525
            uint64_t Address, const void *Decoder);
526
527
static DecodeStatus DecodeMemMMImm12(MCInst *Inst, uint32_t Insn,
528
             uint64_t Address, const void *Decoder);
529
530
static DecodeStatus DecodeMemMMImm16(MCInst *Inst, uint32_t Insn,
531
             uint64_t Address, const void *Decoder);
532
533
static DecodeStatus DecodeFMem(MCInst *Inst, uint32_t Insn, uint64_t Address,
534
             const void *Decoder);
535
536
static DecodeStatus DecodeFMemMMR2(MCInst *Inst, uint32_t Insn,
537
           uint64_t Address, const void *Decoder);
538
539
static DecodeStatus DecodeFMem2(MCInst *Inst, uint32_t Insn, uint64_t Address,
540
        const void *Decoder);
541
542
static DecodeStatus DecodeFMem3(MCInst *Inst, uint32_t Insn, uint64_t Address,
543
        const void *Decoder);
544
545
static DecodeStatus DecodeFMemCop2R6(MCInst *Inst, uint32_t Insn,
546
             uint64_t Address, const void *Decoder);
547
548
static DecodeStatus DecodeFMemCop2MMR6(MCInst *Inst, uint32_t Insn,
549
               uint64_t Address, const void *Decoder);
550
551
static DecodeStatus DecodeSpecial3LlSc(MCInst *Inst, uint32_t Insn,
552
               uint64_t Address, const void *Decoder);
553
554
static DecodeStatus DecodeAddiur2Simm7(MCInst *Inst, unsigned Value,
555
               uint64_t Address, const void *Decoder);
556
557
static DecodeStatus DecodeLi16Imm(MCInst *Inst, unsigned Value,
558
          uint64_t Address, const void *Decoder);
559
560
static DecodeStatus DecodePOOL16BEncodedField(MCInst *Inst, unsigned Value,
561
                uint64_t Address,
562
                const void *Decoder);
563
564
#define DECLARE_DecodeUImmWithOffsetAndScale(Bits, Offset, Scale) \
565
  static DecodeStatus CONCAT(DecodeUImmWithOffsetAndScale, \
566
           CONCAT(Bits, CONCAT(Offset, Scale)))( \
567
    MCInst * Inst, unsigned Value, uint64_t Address, \
568
    const void *Decoder);
569
DECLARE_DecodeUImmWithOffsetAndScale(5, 0, 4);
570
DECLARE_DecodeUImmWithOffsetAndScale(6, 0, 4);
571
DECLARE_DecodeUImmWithOffsetAndScale(2, 1, 1);
572
DECLARE_DecodeUImmWithOffsetAndScale(5, 1, 1);
573
DECLARE_DecodeUImmWithOffsetAndScale(8, 0, 1);
574
DECLARE_DecodeUImmWithOffsetAndScale(18, 0, 1);
575
DECLARE_DecodeUImmWithOffsetAndScale(21, 0, 1);
576
577
#define DEFINE_DecodeUImmWithOffset(Bits, Offset) \
578
  static DecodeStatus CONCAT(DecodeUImmWithOffset, \
579
           CONCAT(Bits, Offset))(MCInst * Inst, \
580
               unsigned Value, \
581
               uint64_t Address, \
582
               const void *Decoder) \
583
284
  { \
584
284
    return CONCAT(DecodeUImmWithOffsetAndScale, \
585
284
            CONCAT(Bits, CONCAT(Offset, 1)))( \
586
284
      Inst, Value, Address, Decoder); \
587
284
  }
MipsDisassembler.c:DecodeUImmWithOffset_5_1
Line
Count
Source
583
111
  { \
584
111
    return CONCAT(DecodeUImmWithOffsetAndScale, \
585
111
            CONCAT(Bits, CONCAT(Offset, 1)))( \
586
111
      Inst, Value, Address, Decoder); \
587
111
  }
MipsDisassembler.c:DecodeUImmWithOffset_2_1
Line
Count
Source
583
173
  { \
584
173
    return CONCAT(DecodeUImmWithOffsetAndScale, \
585
173
            CONCAT(Bits, CONCAT(Offset, 1)))( \
586
173
      Inst, Value, Address, Decoder); \
587
173
  }
588
DEFINE_DecodeUImmWithOffset(5, 1);
589
DEFINE_DecodeUImmWithOffset(2, 1);
590
591
#define DECLARE_DecodeSImmWithOffsetAndScale(Bits, Offset, ScaleBy) \
592
  static DecodeStatus CONCAT(DecodeSImmWithOffsetAndScale, \
593
           CONCAT(Bits, CONCAT(Offset, ScaleBy)))( \
594
    MCInst * Inst, unsigned Value, uint64_t Address, \
595
    const void *Decoder);
596
597
#define DECLARE_DecodeSImmWithOffsetAndScale_2(Bits, Offset) \
598
  DECLARE_DecodeSImmWithOffsetAndScale(Bits, Offset, 1)
599
#define DECLARE_DecodeSImmWithOffsetAndScale_3(Bits) \
600
  DECLARE_DecodeSImmWithOffsetAndScale(Bits, 0, 1)
601
602
DECLARE_DecodeSImmWithOffsetAndScale_3(16);
603
DECLARE_DecodeSImmWithOffsetAndScale_3(10);
604
DECLARE_DecodeSImmWithOffsetAndScale_3(4);
605
DECLARE_DecodeSImmWithOffsetAndScale_3(6);
606
DECLARE_DecodeSImmWithOffsetAndScale_3(32);
607
608
static DecodeStatus DecodeInsSize(MCInst *Inst, uint32_t Insn, uint64_t Address,
609
          const void *Decoder);
610
611
static DecodeStatus DecodeImmM1To126(MCInst *Inst, unsigned Value,
612
             uint64_t Address, const void *Decoder);
613
614
static DecodeStatus DecodeUImm4Mask(MCInst *Inst, unsigned Value,
615
            uint64_t Address, const void *Decoder);
616
617
static DecodeStatus DecodeUImm3Shift(MCInst *Inst, unsigned Value,
618
             uint64_t Address, const void *Decoder);
619
620
static DecodeStatus DecodeNMRegListOperand(MCInst *Inst, uint32_t Insn,
621
             uint64_t Address,
622
             const void *Decoder);
623
624
static DecodeStatus DecodeNMRegList16Operand(MCInst *Inst, uint32_t Insn,
625
               uint64_t Address,
626
               const void *Decoder);
627
628
static DecodeStatus DecodeNegImm12(MCInst *Inst, uint32_t Insn,
629
           uint64_t Address, const void *Decoder);
630
631
#define DECLARE_DecodeSImmWithReg(Bits, Offset, Scale, RegNum) \
632
  static DecodeStatus CONCAT( \
633
    DecodeSImmWithReg, \
634
    CONCAT(Bits, CONCAT(Offset, CONCAT(Scale, RegNum))))( \
635
    MCInst * Inst, unsigned Value, uint64_t Address, \
636
    const void *Decoder);
637
DECLARE_DecodeSImmWithReg(32, 0, 1, Mips_GP_NM);
638
639
#define DECLARE_DecodeUImmWithReg(Bits, Offset, Scale, RegNum) \
640
  static DecodeStatus CONCAT( \
641
    DecodeUImmWithReg, \
642
    CONCAT(Bits, CONCAT(Offset, CONCAT(Scale, RegNum))))( \
643
    MCInst * Inst, unsigned Value, uint64_t Address, \
644
    const void *Decoder);
645
DECLARE_DecodeUImmWithReg(8, 0, 1, Mips_SP_NM);
646
DECLARE_DecodeUImmWithReg(21, 0, 1, Mips_GP_NM);
647
DECLARE_DecodeUImmWithReg(18, 0, 1, Mips_GP_NM);
648
649
static DecodeStatus DecodeSImm32s12(MCInst *Inst, uint32_t Insn,
650
            uint64_t Address, const void *Decoder);
651
652
#define DECLARE_DecodeAddressPCRelNM(Bits) \
653
  static DecodeStatus CONCAT(DecodeAddressPCRelNM, Bits)( \
654
    MCInst * Inst, uint32_t Insn, uint64_t Address, \
655
    const void *Decoder);
656
DECLARE_DecodeAddressPCRelNM(22);
657
DECLARE_DecodeAddressPCRelNM(32);
658
659
static DecodeStatus DecodeBranchConflictNM(MCInst *Inst, uint32_t Insn,
660
             uint64_t Address,
661
             const void *Decoder);
662
663
static DecodeStatus DecodeSimm19Lsl2(MCInst *Inst, uint32_t Insn,
664
             uint64_t Address, const void *Decoder);
665
666
static DecodeStatus DecodeSimm18Lsl3(MCInst *Inst, uint32_t Insn,
667
             uint64_t Address, const void *Decoder);
668
669
static DecodeStatus DecodeSimm9SP(MCInst *Inst, uint32_t Insn, uint64_t Address,
670
          const void *Decoder);
671
672
static DecodeStatus DecodeANDI16Imm(MCInst *Inst, uint32_t Insn,
673
            uint64_t Address, const void *Decoder);
674
675
static DecodeStatus DecodeSimm23Lsl2(MCInst *Inst, uint32_t Insn,
676
             uint64_t Address, const void *Decoder);
677
678
/// INSVE_[BHWD] have an implicit operand that the generated decoder doesn't
679
/// handle.
680
static DecodeStatus DecodeINSVE_DF(MCInst *MI, uint32_t insn, uint64_t Address,
681
           const void *Decoder);
682
683
/*
684
static DecodeStatus DecodeDAHIDATIMMR6(MCInst *MI, uint32_t insn,
685
            uint64_t Address, const void *Decoder);
686
*/
687
688
static DecodeStatus DecodeDAHIDATI(MCInst *MI, uint32_t insn, uint64_t Address,
689
           const void *Decoder);
690
691
static DecodeStatus DecodeAddiGroupBranch(MCInst *MI, uint32_t insn,
692
            uint64_t Address,
693
            const void *Decoder);
694
695
static DecodeStatus DecodePOP35GroupBranchMMR6(MCInst *MI, uint32_t insn,
696
                 uint64_t Address,
697
                 const void *Decoder);
698
699
static DecodeStatus DecodeDaddiGroupBranch(MCInst *MI, uint32_t insn,
700
             uint64_t Address,
701
             const void *Decoder);
702
703
static DecodeStatus DecodePOP37GroupBranchMMR6(MCInst *MI, uint32_t insn,
704
                 uint64_t Address,
705
                 const void *Decoder);
706
707
static DecodeStatus DecodePOP65GroupBranchMMR6(MCInst *MI, uint32_t insn,
708
                 uint64_t Address,
709
                 const void *Decoder);
710
711
static DecodeStatus DecodePOP75GroupBranchMMR6(MCInst *MI, uint32_t insn,
712
                 uint64_t Address,
713
                 const void *Decoder);
714
715
static DecodeStatus DecodeBlezlGroupBranch(MCInst *MI, uint32_t insn,
716
             uint64_t Address,
717
             const void *Decoder);
718
719
static DecodeStatus DecodeBgtzlGroupBranch(MCInst *MI, uint32_t insn,
720
             uint64_t Address,
721
             const void *Decoder);
722
723
static DecodeStatus DecodeBgtzGroupBranch(MCInst *MI, uint32_t insn,
724
            uint64_t Address,
725
            const void *Decoder);
726
727
static DecodeStatus DecodeBlezGroupBranch(MCInst *MI, uint32_t insn,
728
            uint64_t Address,
729
            const void *Decoder);
730
731
static DecodeStatus DecodeBgtzGroupBranchMMR6(MCInst *MI, uint32_t insn,
732
                uint64_t Address,
733
                const void *Decoder);
734
735
static DecodeStatus DecodeBlezGroupBranchMMR6(MCInst *MI, uint32_t insn,
736
                uint64_t Address,
737
                const void *Decoder);
738
739
static DecodeStatus DecodeDINS(MCInst *MI, uint32_t Insn, uint64_t Address,
740
             const void *Decoder);
741
742
static DecodeStatus DecodeDEXT(MCInst *MI, uint32_t Insn, uint64_t Address,
743
             const void *Decoder);
744
745
static DecodeStatus DecodeCRC(MCInst *MI, uint32_t Insn, uint64_t Address,
746
            const void *Decoder);
747
748
static DecodeStatus DecodeRegListOperand(MCInst *Inst, uint32_t Insn,
749
           uint64_t Address, const void *Decoder);
750
751
static DecodeStatus DecodeRegListOperand16(MCInst *Inst, uint32_t Insn,
752
             uint64_t Address,
753
             const void *Decoder);
754
755
static DecodeStatus DecodeMovePRegPair(MCInst *Inst, unsigned RegPair,
756
               uint64_t Address, const void *Decoder);
757
758
static DecodeStatus DecodeMovePOperands(MCInst *Inst, uint32_t Insn,
759
          uint64_t Address, const void *Decoder);
760
761
static DecodeStatus DecodeFIXMEInstruction(MCInst *Inst, uint32_t Insn,
762
             uint64_t Address,
763
             const void *Decoder);
764
765
#include "MipsGenDisassemblerTables.inc"
766
767
static unsigned getReg(const MCInst *Inst, unsigned RC, unsigned RegNo)
768
299k
{
769
299k
  const MCRegisterClass *c = MCRegisterInfo_getRegClass(Inst->MRI, RC);
770
299k
  return MCRegisterClass_getRegister(c, RegNo);
771
299k
}
772
773
typedef DecodeStatus (*DecodeFN)(MCInst *Inst, uint32_t Insn, uint64_t Address,
774
         const void *Decoder);
775
776
static DecodeStatus DecodeINSVE_DF(MCInst *MI, uint32_t insn, uint64_t Address,
777
           const void *Decoder)
778
163
{
779
  // The size of the n field depends on the element size
780
  // The register class also depends on this.
781
163
  uint32_t tmp = fieldFromInstruction_4(insn, 17, 5);
782
163
  unsigned NSize = 0;
783
163
  DecodeFN RegDecoder = NULL;
784
163
  if ((tmp & 0x18) == 0x00) { // INSVE_B
785
11
    NSize = 4;
786
11
    RegDecoder = DecodeMSA128BRegisterClass;
787
152
  } else if ((tmp & 0x1c) == 0x10) { // INSVE_H
788
11
    NSize = 3;
789
11
    RegDecoder = DecodeMSA128HRegisterClass;
790
141
  } else if ((tmp & 0x1e) == 0x18) { // INSVE_W
791
107
    NSize = 2;
792
107
    RegDecoder = DecodeMSA128WRegisterClass;
793
107
  } else if ((tmp & 0x1f) == 0x1c) { // INSVE_D
794
34
    NSize = 1;
795
34
    RegDecoder = DecodeMSA128DRegisterClass;
796
34
  } else {
797
0
    CS_ASSERT_RET_VAL(0 && "Invalid encoding", MCDisassembler_Fail);
798
0
    return MCDisassembler_Fail;
799
0
  }
800
801
  // $wd
802
163
  tmp = fieldFromInstruction_4(insn, 6, 5);
803
163
  if (RegDecoder(MI, tmp, Address, Decoder) == MCDisassembler_Fail)
804
0
    return MCDisassembler_Fail;
805
  // $wd_in
806
163
  if (RegDecoder(MI, tmp, Address, Decoder) == MCDisassembler_Fail)
807
0
    return MCDisassembler_Fail;
808
  // $n
809
163
  tmp = fieldFromInstruction_4(insn, 16, NSize);
810
163
  MCOperand_CreateImm0(MI, (tmp));
811
  // $ws
812
163
  tmp = fieldFromInstruction_4(insn, 11, 5);
813
163
  if (RegDecoder(MI, tmp, Address, Decoder) == MCDisassembler_Fail)
814
0
    return MCDisassembler_Fail;
815
  // $n2
816
163
  MCOperand_CreateImm0(MI, (0));
817
818
163
  return MCDisassembler_Success;
819
163
}
820
821
/*
822
static DecodeStatus DecodeDAHIDATIMMR6(MCInst *MI, uint32_t insn,
823
                                      uint64_t Address, const void *Decoder)
824
{
825
       uint32_t Rs = fieldFromInstruction_4(insn, 16, 5);
826
       uint32_t Imm = fieldFromInstruction_4(insn, 0, 16);
827
       MCOperand_CreateReg0(MI, (getReg(MI, Mips_GPR64RegClassID, Rs)));
828
       MCOperand_CreateReg0(MI, (getReg(MI, Mips_GPR64RegClassID, Rs)));
829
       MCOperand_CreateImm0(MI, (Imm));
830
831
       return MCDisassembler_Success;
832
}
833
*/
834
835
static DecodeStatus DecodeDAHIDATI(MCInst *MI, uint32_t insn, uint64_t Address,
836
           const void *Decoder)
837
0
{
838
0
  uint32_t Rs = fieldFromInstruction_4(insn, 21, 5);
839
0
  uint32_t Imm = fieldFromInstruction_4(insn, 0, 16);
840
0
  MCOperand_CreateReg0(MI, (getReg(MI, Mips_GPR64RegClassID, Rs)));
841
0
  MCOperand_CreateReg0(MI, (getReg(MI, Mips_GPR64RegClassID, Rs)));
842
0
  MCOperand_CreateImm0(MI, (Imm));
843
844
0
  return MCDisassembler_Success;
845
0
}
846
847
static DecodeStatus DecodeAddiGroupBranch(MCInst *MI, uint32_t insn,
848
            uint64_t Address, const void *Decoder)
849
1.05k
{
850
  // If we are called then we can assume that MIPS32r6/MIPS64r6 is enabled
851
  // (otherwise we would have matched the ADDI instruction from the earlier
852
  // ISA's instead).
853
  //
854
  // We have:
855
  //    0b001000 sssss ttttt iiiiiiiiiiiiiiii
856
  //      BOVC if rs >= rt
857
  //      BEQZALC if rs == 0 && rt != 0
858
  //      BEQC if rs < rt && rs != 0
859
860
1.05k
  uint32_t Rs = fieldFromInstruction_4(insn, 21, 5);
861
1.05k
  uint32_t Rt = fieldFromInstruction_4(insn, 16, 5);
862
1.05k
  int64_t Imm =
863
1.05k
    SignExtend64(fieldFromInstruction_4(insn, 0, 16), 16) * 4 + 4;
864
1.05k
  bool HasRs = false;
865
866
1.05k
  if (Rs >= Rt) {
867
360
    MCInst_setOpcode(MI, (Mips_BOVC));
868
360
    HasRs = true;
869
697
  } else if (Rs != 0 && Rs < Rt) {
870
447
    MCInst_setOpcode(MI, (Mips_BEQC));
871
447
    HasRs = true;
872
447
  } else
873
250
    MCInst_setOpcode(MI, (Mips_BEQZALC));
874
875
1.05k
  if (HasRs)
876
807
    MCOperand_CreateReg0(MI,
877
807
             (getReg(MI, Mips_GPR32RegClassID, Rs)));
878
879
1.05k
  MCOperand_CreateReg0(MI, (getReg(MI, Mips_GPR32RegClassID, Rt)));
880
1.05k
  MCOperand_CreateImm0(MI, (Imm));
881
882
1.05k
  return MCDisassembler_Success;
883
1.05k
}
884
885
static DecodeStatus DecodePOP35GroupBranchMMR6(MCInst *MI, uint32_t insn,
886
                 uint64_t Address,
887
                 const void *Decoder)
888
480
{
889
480
  uint32_t Rt = fieldFromInstruction_4(insn, 21, 5);
890
480
  uint32_t Rs = fieldFromInstruction_4(insn, 16, 5);
891
480
  int64_t Imm = 0;
892
893
480
  if (Rs >= Rt) {
894
99
    MCInst_setOpcode(MI, (Mips_BOVC_MMR6));
895
99
    MCOperand_CreateReg0(MI,
896
99
             (getReg(MI, Mips_GPR32RegClassID, Rt)));
897
99
    MCOperand_CreateReg0(MI,
898
99
             (getReg(MI, Mips_GPR32RegClassID, Rs)));
899
99
    Imm = SignExtend64(fieldFromInstruction_4(insn, 0, 16), 16) *
900
99
            2 +
901
99
          4;
902
381
  } else if (Rs != 0 && Rs < Rt) {
903
297
    MCInst_setOpcode(MI, (Mips_BEQC_MMR6));
904
297
    MCOperand_CreateReg0(MI,
905
297
             (getReg(MI, Mips_GPR32RegClassID, Rs)));
906
297
    MCOperand_CreateReg0(MI,
907
297
             (getReg(MI, Mips_GPR32RegClassID, Rt)));
908
297
    Imm = SignExtend64(fieldFromInstruction_4(insn, 0, 16), 16) *
909
297
            4 +
910
297
          4;
911
297
  } else {
912
84
    MCInst_setOpcode(MI, (Mips_BEQZALC_MMR6));
913
84
    MCOperand_CreateReg0(MI,
914
84
             (getReg(MI, Mips_GPR32RegClassID, Rt)));
915
84
    Imm = SignExtend64(fieldFromInstruction_4(insn, 0, 16), 16) *
916
84
            2 +
917
84
          4;
918
84
  }
919
920
480
  MCOperand_CreateImm0(MI, (Imm));
921
922
480
  return MCDisassembler_Success;
923
480
}
924
925
static DecodeStatus DecodeDaddiGroupBranch(MCInst *MI, uint32_t insn,
926
             uint64_t Address,
927
             const void *Decoder)
928
614
{
929
  // If we are called then we can assume that MIPS32r6/MIPS64r6 is enabled
930
  // (otherwise we would have matched the ADDI instruction from the earlier
931
  // ISA's instead).
932
  //
933
  // We have:
934
  //    0b011000 sssss ttttt iiiiiiiiiiiiiiii
935
  //      BNVC if rs >= rt
936
  //      BNEZALC if rs == 0 && rt != 0
937
  //      BNEC if rs < rt && rs != 0
938
939
614
  uint32_t Rs = fieldFromInstruction_4(insn, 21, 5);
940
614
  uint32_t Rt = fieldFromInstruction_4(insn, 16, 5);
941
614
  int64_t Imm =
942
614
    SignExtend64(fieldFromInstruction_4(insn, 0, 16), 16) * 4 + 4;
943
614
  bool HasRs = false;
944
945
614
  if (Rs >= Rt) {
946
416
    MCInst_setOpcode(MI, (Mips_BNVC));
947
416
    HasRs = true;
948
416
  } else if (Rs != 0 && Rs < Rt) {
949
115
    MCInst_setOpcode(MI, (Mips_BNEC));
950
115
    HasRs = true;
951
115
  } else
952
83
    MCInst_setOpcode(MI, (Mips_BNEZALC));
953
954
614
  if (HasRs)
955
531
    MCOperand_CreateReg0(MI,
956
531
             (getReg(MI, Mips_GPR32RegClassID, Rs)));
957
958
614
  MCOperand_CreateReg0(MI, (getReg(MI, Mips_GPR32RegClassID, Rt)));
959
614
  MCOperand_CreateImm0(MI, (Imm));
960
961
614
  return MCDisassembler_Success;
962
614
}
963
964
static DecodeStatus DecodePOP37GroupBranchMMR6(MCInst *MI, uint32_t insn,
965
                 uint64_t Address,
966
                 const void *Decoder)
967
497
{
968
497
  uint32_t Rt = fieldFromInstruction_4(insn, 21, 5);
969
497
  uint32_t Rs = fieldFromInstruction_4(insn, 16, 5);
970
497
  int64_t Imm = 0;
971
972
497
  if (Rs >= Rt) {
973
135
    MCInst_setOpcode(MI, (Mips_BNVC_MMR6));
974
135
    MCOperand_CreateReg0(MI,
975
135
             (getReg(MI, Mips_GPR32RegClassID, Rt)));
976
135
    MCOperand_CreateReg0(MI,
977
135
             (getReg(MI, Mips_GPR32RegClassID, Rs)));
978
135
    Imm = SignExtend64(fieldFromInstruction_4(insn, 0, 16), 16) *
979
135
            2 +
980
135
          4;
981
362
  } else if (Rs != 0 && Rs < Rt) {
982
256
    MCInst_setOpcode(MI, (Mips_BNEC_MMR6));
983
256
    MCOperand_CreateReg0(MI,
984
256
             (getReg(MI, Mips_GPR32RegClassID, Rs)));
985
256
    MCOperand_CreateReg0(MI,
986
256
             (getReg(MI, Mips_GPR32RegClassID, Rt)));
987
256
    Imm = SignExtend64(fieldFromInstruction_4(insn, 0, 16), 16) *
988
256
            4 +
989
256
          4;
990
256
  } else {
991
106
    MCInst_setOpcode(MI, (Mips_BNEZALC_MMR6));
992
106
    MCOperand_CreateReg0(MI,
993
106
             (getReg(MI, Mips_GPR32RegClassID, Rt)));
994
106
    Imm = SignExtend64(fieldFromInstruction_4(insn, 0, 16), 16) *
995
106
            2 +
996
106
          4;
997
106
  }
998
999
497
  MCOperand_CreateImm0(MI, (Imm));
1000
1001
497
  return MCDisassembler_Success;
1002
497
}
1003
1004
static DecodeStatus DecodePOP65GroupBranchMMR6(MCInst *MI, uint32_t insn,
1005
                 uint64_t Address,
1006
                 const void *Decoder)
1007
714
{
1008
  // We have:
1009
  //    0b110101 ttttt sssss iiiiiiiiiiiiiiii
1010
  //      Invalid if rt == 0
1011
  //      BGTZC_MMR6   if rs == 0  && rt != 0
1012
  //      BLTZC_MMR6   if rs == rt && rt != 0
1013
  //      BLTC_MMR6    if rs != rt && rs != 0  && rt != 0
1014
1015
714
  uint32_t Rt = fieldFromInstruction_4(insn, 21, 5);
1016
714
  uint32_t Rs = fieldFromInstruction_4(insn, 16, 5);
1017
714
  int64_t Imm =
1018
714
    SignExtend64(fieldFromInstruction_4(insn, 0, 16), 16) * 4 + 4;
1019
714
  bool HasRs = false;
1020
1021
714
  if (Rt == 0)
1022
1
    return MCDisassembler_Fail;
1023
713
  else if (Rs == 0)
1024
34
    MCInst_setOpcode(MI, (Mips_BGTZC_MMR6));
1025
679
  else if (Rs == Rt)
1026
239
    MCInst_setOpcode(MI, (Mips_BLTZC_MMR6));
1027
440
  else {
1028
440
    MCInst_setOpcode(MI, (Mips_BLTC_MMR6));
1029
440
    HasRs = true;
1030
440
  }
1031
1032
713
  if (HasRs)
1033
440
    MCOperand_CreateReg0(MI,
1034
440
             (getReg(MI, Mips_GPR32RegClassID, Rs)));
1035
1036
713
  MCOperand_CreateReg0(MI, (getReg(MI, Mips_GPR32RegClassID, Rt)));
1037
1038
713
  MCOperand_CreateImm0(MI, (Imm));
1039
1040
713
  return MCDisassembler_Success;
1041
714
}
1042
1043
static DecodeStatus DecodePOP75GroupBranchMMR6(MCInst *MI, uint32_t insn,
1044
                 uint64_t Address,
1045
                 const void *Decoder)
1046
464
{
1047
  // We have:
1048
  //    0b111101 ttttt sssss iiiiiiiiiiiiiiii
1049
  //      Invalid if rt == 0
1050
  //      BLEZC_MMR6   if rs == 0  && rt != 0
1051
  //      BGEZC_MMR6   if rs == rt && rt != 0
1052
  //      BGEC_MMR6    if rs != rt && rs != 0  && rt != 0
1053
1054
464
  uint32_t Rt = fieldFromInstruction_4(insn, 21, 5);
1055
464
  uint32_t Rs = fieldFromInstruction_4(insn, 16, 5);
1056
464
  int64_t Imm =
1057
464
    SignExtend64(fieldFromInstruction_4(insn, 0, 16), 16) * 4 + 4;
1058
464
  bool HasRs = false;
1059
1060
464
  if (Rt == 0)
1061
1
    return MCDisassembler_Fail;
1062
463
  else if (Rs == 0)
1063
152
    MCInst_setOpcode(MI, (Mips_BLEZC_MMR6));
1064
311
  else if (Rs == Rt)
1065
17
    MCInst_setOpcode(MI, (Mips_BGEZC_MMR6));
1066
294
  else {
1067
294
    HasRs = true;
1068
294
    MCInst_setOpcode(MI, (Mips_BGEC_MMR6));
1069
294
  }
1070
1071
463
  if (HasRs)
1072
294
    MCOperand_CreateReg0(MI,
1073
294
             (getReg(MI, Mips_GPR32RegClassID, Rs)));
1074
1075
463
  MCOperand_CreateReg0(MI, (getReg(MI, Mips_GPR32RegClassID, Rt)));
1076
1077
463
  MCOperand_CreateImm0(MI, (Imm));
1078
1079
463
  return MCDisassembler_Success;
1080
464
}
1081
1082
static DecodeStatus DecodeBlezlGroupBranch(MCInst *MI, uint32_t insn,
1083
             uint64_t Address,
1084
             const void *Decoder)
1085
431
{
1086
  // If we are called then we can assume that MIPS32r6/MIPS64r6 is enabled
1087
  // (otherwise we would have matched the BLEZL instruction from the earlier
1088
  // ISA's instead).
1089
  //
1090
  // We have:
1091
  //    0b010110 sssss ttttt iiiiiiiiiiiiiiii
1092
  //      Invalid if rs == 0
1093
  //      BLEZC   if rs == 0  && rt != 0
1094
  //      BGEZC   if rs == rt && rt != 0
1095
  //      BGEC    if rs != rt && rs != 0  && rt != 0
1096
1097
431
  uint32_t Rs = fieldFromInstruction_4(insn, 21, 5);
1098
431
  uint32_t Rt = fieldFromInstruction_4(insn, 16, 5);
1099
431
  int64_t Imm =
1100
431
    SignExtend64(fieldFromInstruction_4(insn, 0, 16), 16) * 4 + 4;
1101
431
  bool HasRs = false;
1102
1103
431
  if (Rt == 0)
1104
4
    return MCDisassembler_Fail;
1105
427
  else if (Rs == 0)
1106
31
    MCInst_setOpcode(MI, (Mips_BLEZC));
1107
396
  else if (Rs == Rt)
1108
73
    MCInst_setOpcode(MI, (Mips_BGEZC));
1109
323
  else {
1110
323
    HasRs = true;
1111
323
    MCInst_setOpcode(MI, (Mips_BGEC));
1112
323
  }
1113
1114
427
  if (HasRs)
1115
323
    MCOperand_CreateReg0(MI,
1116
323
             (getReg(MI, Mips_GPR32RegClassID, Rs)));
1117
1118
427
  MCOperand_CreateReg0(MI, (getReg(MI, Mips_GPR32RegClassID, Rt)));
1119
1120
427
  MCOperand_CreateImm0(MI, (Imm));
1121
1122
427
  return MCDisassembler_Success;
1123
431
}
1124
1125
static DecodeStatus DecodeBgtzlGroupBranch(MCInst *MI, uint32_t insn,
1126
             uint64_t Address,
1127
             const void *Decoder)
1128
424
{
1129
  // If we are called then we can assume that MIPS32r6/MIPS64r6 is enabled
1130
  // (otherwise we would have matched the BGTZL instruction from the earlier
1131
  // ISA's instead).
1132
  //
1133
  // We have:
1134
  //    0b010111 sssss ttttt iiiiiiiiiiiiiiii
1135
  //      Invalid if rs == 0
1136
  //      BGTZC   if rs == 0  && rt != 0
1137
  //      BLTZC   if rs == rt && rt != 0
1138
  //      BLTC    if rs != rt && rs != 0  && rt != 0
1139
1140
424
  bool HasRs = false;
1141
1142
424
  uint32_t Rs = fieldFromInstruction_4(insn, 21, 5);
1143
424
  uint32_t Rt = fieldFromInstruction_4(insn, 16, 5);
1144
424
  int64_t Imm =
1145
424
    SignExtend64(fieldFromInstruction_4(insn, 0, 16), 16) * 4 + 4;
1146
1147
424
  if (Rt == 0)
1148
6
    return MCDisassembler_Fail;
1149
418
  else if (Rs == 0)
1150
18
    MCInst_setOpcode(MI, (Mips_BGTZC));
1151
400
  else if (Rs == Rt)
1152
83
    MCInst_setOpcode(MI, (Mips_BLTZC));
1153
317
  else {
1154
317
    MCInst_setOpcode(MI, (Mips_BLTC));
1155
317
    HasRs = true;
1156
317
  }
1157
1158
418
  if (HasRs)
1159
317
    MCOperand_CreateReg0(MI,
1160
317
             (getReg(MI, Mips_GPR32RegClassID, Rs)));
1161
1162
418
  MCOperand_CreateReg0(MI, (getReg(MI, Mips_GPR32RegClassID, Rt)));
1163
1164
418
  MCOperand_CreateImm0(MI, (Imm));
1165
1166
418
  return MCDisassembler_Success;
1167
424
}
1168
1169
static DecodeStatus DecodeBgtzGroupBranch(MCInst *MI, uint32_t insn,
1170
            uint64_t Address, const void *Decoder)
1171
730
{
1172
  // If we are called then we can assume that MIPS32r6/MIPS64r6 is enabled
1173
  // (otherwise we would have matched the BGTZ instruction from the earlier
1174
  // ISA's instead).
1175
  //
1176
  // We have:
1177
  //    0b000111 sssss ttttt iiiiiiiiiiiiiiii
1178
  //      BGTZ    if rt == 0
1179
  //      BGTZALC if rs == 0 && rt != 0
1180
  //      BLTZALC if rs != 0 && rs == rt
1181
  //      BLTUC   if rs != 0 && rs != rt
1182
1183
730
  uint32_t Rs = fieldFromInstruction_4(insn, 21, 5);
1184
730
  uint32_t Rt = fieldFromInstruction_4(insn, 16, 5);
1185
730
  int64_t Imm =
1186
730
    SignExtend64(fieldFromInstruction_4(insn, 0, 16), 16) * 4 + 4;
1187
730
  bool HasRs = false;
1188
730
  bool HasRt = false;
1189
1190
730
  if (Rt == 0) {
1191
110
    MCInst_setOpcode(MI, (Mips_BGTZ));
1192
110
    HasRs = true;
1193
620
  } else if (Rs == 0) {
1194
370
    MCInst_setOpcode(MI, (Mips_BGTZALC));
1195
370
    HasRt = true;
1196
370
  } else if (Rs == Rt) {
1197
33
    MCInst_setOpcode(MI, (Mips_BLTZALC));
1198
33
    HasRs = true;
1199
217
  } else {
1200
217
    MCInst_setOpcode(MI, (Mips_BLTUC));
1201
217
    HasRs = true;
1202
217
    HasRt = true;
1203
217
  }
1204
1205
730
  if (HasRs)
1206
360
    MCOperand_CreateReg0(MI,
1207
360
             (getReg(MI, Mips_GPR32RegClassID, Rs)));
1208
1209
730
  if (HasRt)
1210
587
    MCOperand_CreateReg0(MI,
1211
587
             (getReg(MI, Mips_GPR32RegClassID, Rt)));
1212
1213
730
  MCOperand_CreateImm0(MI, (Imm));
1214
1215
730
  return MCDisassembler_Success;
1216
730
}
1217
1218
static DecodeStatus DecodeBlezGroupBranch(MCInst *MI, uint32_t insn,
1219
            uint64_t Address, const void *Decoder)
1220
1.63k
{
1221
  // If we are called then we can assume that MIPS32r6/MIPS64r6 is enabled
1222
  // (otherwise we would have matched the BLEZL instruction from the earlier
1223
  // ISA's instead).
1224
  //
1225
  // We have:
1226
  //    0b000110 sssss ttttt iiiiiiiiiiiiiiii
1227
  //      Invalid   if rs == 0
1228
  //      BLEZALC   if rs == 0  && rt != 0
1229
  //      BGEZALC   if rs == rt && rt != 0
1230
  //      BGEUC     if rs != rt && rs != 0  && rt != 0
1231
1232
1.63k
  uint32_t Rs = fieldFromInstruction_4(insn, 21, 5);
1233
1.63k
  uint32_t Rt = fieldFromInstruction_4(insn, 16, 5);
1234
1.63k
  int64_t Imm =
1235
1.63k
    SignExtend64(fieldFromInstruction_4(insn, 0, 16), 16) * 4 + 4;
1236
1.63k
  bool HasRs = false;
1237
1238
1.63k
  if (Rt == 0)
1239
782
    return MCDisassembler_Fail;
1240
852
  else if (Rs == 0)
1241
397
    MCInst_setOpcode(MI, (Mips_BLEZALC));
1242
455
  else if (Rs == Rt)
1243
206
    MCInst_setOpcode(MI, (Mips_BGEZALC));
1244
249
  else {
1245
249
    HasRs = true;
1246
249
    MCInst_setOpcode(MI, (Mips_BGEUC));
1247
249
  }
1248
1249
852
  if (HasRs)
1250
249
    MCOperand_CreateReg0(MI,
1251
249
             (getReg(MI, Mips_GPR32RegClassID, Rs)));
1252
852
  MCOperand_CreateReg0(MI, (getReg(MI, Mips_GPR32RegClassID, Rt)));
1253
1254
852
  MCOperand_CreateImm0(MI, (Imm));
1255
1256
852
  return MCDisassembler_Success;
1257
1.63k
}
1258
1259
// Override the generated disassembler to produce DEXT all the time. This is
1260
// for feature / behaviour parity with  binutils.
1261
static DecodeStatus DecodeDEXT(MCInst *MI, uint32_t Insn, uint64_t Address,
1262
             const void *Decoder)
1263
0
{
1264
0
  unsigned Msbd = fieldFromInstruction_4(Insn, 11, 5);
1265
0
  unsigned Lsb = fieldFromInstruction_4(Insn, 6, 5);
1266
0
  unsigned Size = 0;
1267
0
  unsigned Pos = 0;
1268
1269
0
  switch (MCInst_getOpcode(MI)) {
1270
0
  case Mips_DEXT:
1271
0
    Pos = Lsb;
1272
0
    Size = Msbd + 1;
1273
0
    break;
1274
0
  case Mips_DEXTM:
1275
0
    Pos = Lsb;
1276
0
    Size = Msbd + 1 + 32;
1277
0
    break;
1278
0
  case Mips_DEXTU:
1279
0
    Pos = Lsb + 32;
1280
0
    Size = Msbd + 1;
1281
0
    break;
1282
0
  default:
1283
0
    CS_ASSERT_RET_VAL(0 && "Unknown DEXT instruction!",
1284
0
          MCDisassembler_Fail);
1285
0
    return MCDisassembler_Fail;
1286
0
  }
1287
1288
0
  MCInst_setOpcode(MI, (Mips_DEXT));
1289
1290
0
  uint32_t Rs = fieldFromInstruction_4(Insn, 21, 5);
1291
0
  uint32_t Rt = fieldFromInstruction_4(Insn, 16, 5);
1292
1293
0
  MCOperand_CreateReg0(MI, (getReg(MI, Mips_GPR64RegClassID, Rt)));
1294
0
  MCOperand_CreateReg0(MI, (getReg(MI, Mips_GPR64RegClassID, Rs)));
1295
0
  MCOperand_CreateImm0(MI, (Pos));
1296
0
  MCOperand_CreateImm0(MI, (Size));
1297
1298
0
  return MCDisassembler_Success;
1299
0
}
1300
1301
// Override the generated disassembler to produce DINS all the time. This is
1302
// for feature / behaviour parity with binutils.
1303
static DecodeStatus DecodeDINS(MCInst *MI, uint32_t Insn, uint64_t Address,
1304
             const void *Decoder)
1305
0
{
1306
0
  unsigned Msbd = fieldFromInstruction_4(Insn, 11, 5);
1307
0
  unsigned Lsb = fieldFromInstruction_4(Insn, 6, 5);
1308
0
  unsigned Size = 0;
1309
0
  unsigned Pos = 0;
1310
1311
0
  switch (MCInst_getOpcode(MI)) {
1312
0
  case Mips_DINS:
1313
0
    Pos = Lsb;
1314
0
    Size = Msbd + 1 - Pos;
1315
0
    break;
1316
0
  case Mips_DINSM:
1317
0
    Pos = Lsb;
1318
0
    Size = Msbd + 33 - Pos;
1319
0
    break;
1320
0
  case Mips_DINSU:
1321
0
    Pos = Lsb + 32;
1322
    // mbsd = pos + size - 33
1323
    // mbsd - pos + 33 = size
1324
0
    Size = Msbd + 33 - Pos;
1325
0
    break;
1326
0
  default:
1327
0
    CS_ASSERT_RET_VAL(0 && "Unknown DINS instruction!",
1328
0
          MCDisassembler_Fail);
1329
0
    return MCDisassembler_Fail;
1330
0
  }
1331
1332
0
  uint32_t Rs = fieldFromInstruction_4(Insn, 21, 5);
1333
0
  uint32_t Rt = fieldFromInstruction_4(Insn, 16, 5);
1334
1335
0
  MCInst_setOpcode(MI, (Mips_DINS));
1336
0
  MCOperand_CreateReg0(MI, (getReg(MI, Mips_GPR64RegClassID, Rt)));
1337
0
  MCOperand_CreateReg0(MI, (getReg(MI, Mips_GPR64RegClassID, Rs)));
1338
0
  MCOperand_CreateImm0(MI, (Pos));
1339
0
  MCOperand_CreateImm0(MI, (Size));
1340
1341
0
  return MCDisassembler_Success;
1342
0
}
1343
1344
// Auto-generated decoder wouldn't add the third operand for CRC32*.
1345
static DecodeStatus DecodeCRC(MCInst *MI, uint32_t Insn, uint64_t Address,
1346
            const void *Decoder)
1347
3
{
1348
3
  uint32_t Rs = fieldFromInstruction_4(Insn, 21, 5);
1349
3
  uint32_t Rt = fieldFromInstruction_4(Insn, 16, 5);
1350
3
  MCOperand_CreateReg0(MI, (getReg(MI, Mips_GPR32RegClassID, Rt)));
1351
3
  MCOperand_CreateReg0(MI, (getReg(MI, Mips_GPR32RegClassID, Rs)));
1352
3
  MCOperand_CreateReg0(MI, (getReg(MI, Mips_GPR32RegClassID, Rt)));
1353
3
  return MCDisassembler_Success;
1354
3
}
1355
1356
/// Read two bytes from the ArrayRef and return 16 bit halfword sorted
1357
/// according to the given endianness.
1358
static DecodeStatus readInstruction16(const uint8_t *Bytes, size_t BytesLen,
1359
              uint64_t Address, uint64_t *Size,
1360
              uint64_t *Insn, bool IsBigEndian)
1361
42.8k
{
1362
  // We want to read exactly 2 Bytes of data.
1363
42.8k
  if (BytesLen < 2) {
1364
210
    *Size = 0;
1365
210
    return MCDisassembler_Fail;
1366
210
  }
1367
1368
42.6k
  if (IsBigEndian) {
1369
17.9k
    *Insn = (Bytes[0] << 8) | Bytes[1];
1370
24.6k
  } else {
1371
24.6k
    *Insn = (Bytes[1] << 8) | Bytes[0];
1372
24.6k
  }
1373
1374
42.6k
  return MCDisassembler_Success;
1375
42.8k
}
1376
1377
/// Read four bytes from the ArrayRef and return 32 bit word sorted
1378
/// according to the given endianness.
1379
static DecodeStatus readInstruction32(const uint8_t *Bytes, size_t BytesLen,
1380
              uint64_t Address, uint64_t *Size,
1381
              uint64_t *Insn, bool IsBigEndian,
1382
              bool IsMicroMips)
1383
71.2k
{
1384
  // We want to read exactly 4 Bytes of data.
1385
71.2k
  if (BytesLen < 4) {
1386
686
    *Size = 0;
1387
686
    return MCDisassembler_Fail;
1388
686
  }
1389
1390
  // High 16 bits of a 32-bit microMIPS instruction (where the opcode is)
1391
  // always precede the low 16 bits in the instruction stream (that is, they
1392
  // are placed at lower addresses in the instruction stream).
1393
  //
1394
  // microMIPS byte ordering:
1395
  //   Big-endian:    0 | 1 | 2 | 3
1396
  //   Little-endian: 1 | 0 | 3 | 2
1397
1398
70.5k
  if (IsBigEndian) {
1399
    // Encoded as a big-endian 32-bit word in the stream.
1400
32.3k
    *Insn = (Bytes[3] << 0) | (Bytes[2] << 8) | (Bytes[1] << 16) |
1401
32.3k
      ((unsigned)Bytes[0] << 24);
1402
38.2k
  } else {
1403
38.2k
    if (IsMicroMips) {
1404
16.1k
      *Insn = (Bytes[2] << 0) | (Bytes[3] << 8) |
1405
16.1k
        (Bytes[0] << 16) | ((unsigned)Bytes[1] << 24);
1406
22.0k
    } else {
1407
22.0k
      *Insn = (Bytes[0] << 0) | (Bytes[1] << 8) |
1408
22.0k
        (Bytes[2] << 16) | ((unsigned)Bytes[3] << 24);
1409
22.0k
    }
1410
38.2k
  }
1411
1412
70.5k
  return MCDisassembler_Success;
1413
71.2k
}
1414
1415
/// Read 6 bytes from the ArrayRef and return in a 64-bit bit word sorted
1416
/// according to the given endianness and encoding byte-order.
1417
static DecodeStatus readInstruction48(const uint8_t *Bytes, size_t BytesLen,
1418
              uint64_t Address, uint64_t *Size,
1419
              uint64_t *Insn, bool IsBigEndian,
1420
              bool IsNanoMips)
1421
0
{
1422
  // We want to read exactly 6 Bytes of little-endian data in nanoMIPS mode.
1423
0
  if (BytesLen < 6 || IsBigEndian || !IsNanoMips) {
1424
0
    *Size = 0;
1425
0
    return MCDisassembler_Fail;
1426
0
  }
1427
1428
  // High 16 bits of a 32-bit nanoMIPS instruction (where the opcode is)
1429
  // always precede the low 16 bits in the instruction stream (that is, they
1430
  // are placed at lower addresses in the instruction stream).
1431
  //
1432
  // nanoMIPS byte ordering:
1433
  //   Little-endian: 1 | 0 | 3 | 2 | 5 | 4
1434
1435
0
  *Insn = (Bytes[0] << 0) | (Bytes[1] << 8);
1436
0
  *Insn = ((*Insn << 32) | (Bytes[4] << 0) | (Bytes[5] << 8) |
1437
0
     (Bytes[2] << 16) | ((unsigned)Bytes[3] << 24));
1438
0
  return MCDisassembler_Success;
1439
0
}
1440
1441
static DecodeStatus getInstruction(MCInst *Instr, uint64_t *Size,
1442
           const uint8_t *Bytes, size_t BytesLen,
1443
           uint64_t Address, SStream *CStream)
1444
89.1k
{
1445
89.1k
  uint64_t Insn;
1446
89.1k
  DecodeStatus Result;
1447
89.1k
  *Size = 0;
1448
1449
89.1k
  cs_mode mode = Instr->csh->mode;
1450
89.1k
  bool IsBigEndian = mode & CS_MODE_BIG_ENDIAN;
1451
89.1k
  bool IsMicroMips = Mips_getFeatureBits(mode, Mips_FeatureMicroMips);
1452
89.1k
  bool IsNanoMips = Mips_getFeatureBits(mode, Mips_FeatureNanoMips);
1453
89.1k
  bool IsMips32r6 = Mips_getFeatureBits(mode, Mips_FeatureMips32r6);
1454
89.1k
  bool IsMips64r6 = Mips_getFeatureBits(mode, Mips_FeatureMips64r6);
1455
89.1k
  bool IsMips2 = Mips_getFeatureBits(mode, Mips_FeatureMips2);
1456
89.1k
  bool IsMips16 = Mips_getFeatureBits(mode, Mips_FeatureMips16);
1457
89.1k
  bool IsCnMips = Mips_getFeatureBits(mode, Mips_FeatureCnMips);
1458
89.1k
  bool IsCnMipsP = Mips_getFeatureBits(mode, Mips_FeatureCnMipsP);
1459
89.1k
  bool IsFP64 = Mips_getFeatureBits(mode, Mips_FeatureFP64Bit);
1460
89.1k
  bool IsGP64 = Mips_getFeatureBits(mode, Mips_FeatureGP64Bit);
1461
89.1k
  bool IsPTR64 = Mips_getFeatureBits(mode, Mips_FeaturePTR64Bit);
1462
  // Only present in MIPS-I and MIPS-II
1463
89.1k
  bool HasCOP3 = !Mips_getFeatureBits(mode, Mips_FeatureMips32) &&
1464
0
           !Mips_getFeatureBits(mode, Mips_FeatureMips3);
1465
1466
89.1k
  if (IsNanoMips) {
1467
0
    uint64_t Insn2;
1468
0
    Result = readInstruction48(Bytes, BytesLen, Address, Size,
1469
0
             &Insn2, IsBigEndian, IsNanoMips);
1470
0
    if (Result != MCDisassembler_Fail) {
1471
      // Calling the auto-generated decoder function.
1472
0
      Result = decodeInstruction_8(DecoderTableNanoMips48,
1473
0
                 Instr, Insn2, Address,
1474
0
                 NULL);
1475
0
      if (Result != MCDisassembler_Fail) {
1476
0
        *Size = 6;
1477
0
        return Result;
1478
0
      }
1479
0
    }
1480
1481
0
    Result = readInstruction32(Bytes, BytesLen, Address, Size,
1482
0
             &Insn, IsBigEndian, IsNanoMips);
1483
0
    if (Result != MCDisassembler_Fail) {
1484
      // Calling the auto-generated decoder function.
1485
0
      Result = decodeInstruction_4(DecoderTableNanoMips32,
1486
0
                 Instr, Insn, Address,
1487
0
                 NULL);
1488
0
      if (Result != MCDisassembler_Fail) {
1489
0
        *Size = 4;
1490
0
        return Result;
1491
0
      }
1492
0
    }
1493
1494
0
    Result = readInstruction16(Bytes, BytesLen, Address, Size,
1495
0
             &Insn, IsBigEndian);
1496
0
    if (Result != MCDisassembler_Fail) {
1497
      // Calling the auto-generated decoder function for NanoMips
1498
      // 16-bit instructions.
1499
0
      Result = decodeInstruction_2(DecoderTableNanoMips16,
1500
0
                 Instr, Insn, Address,
1501
0
                 NULL);
1502
0
      if (Result != MCDisassembler_Fail) {
1503
0
        *Size = 2;
1504
0
        return Result;
1505
0
      }
1506
1507
0
      Result = decodeInstruction_2(
1508
0
        DecoderTableNanoMips_Conflict_Space16, Instr,
1509
0
        Insn, Address, NULL);
1510
0
      if (Result != MCDisassembler_Fail) {
1511
0
        *Size = 2;
1512
0
        return Result;
1513
0
      }
1514
0
    }
1515
1516
    // This is an invalid instruction. Claim that the Size is 2 bytes. Since
1517
    // nanoMIPS instructions have a minimum alignment of 2, the next 2 bytes
1518
    // could form a valid instruction.
1519
0
    *Size = 2;
1520
0
    return MCDisassembler_Fail;
1521
0
  }
1522
1523
89.1k
  if (IsMicroMips) {
1524
42.8k
    Result = readInstruction16(Bytes, BytesLen, Address, Size,
1525
42.8k
             &Insn, IsBigEndian);
1526
42.8k
    if (Result == MCDisassembler_Fail)
1527
210
      return MCDisassembler_Fail;
1528
1529
42.6k
    if (IsMips32r6) {
1530
      // Calling the auto-generated decoder function for microMIPS32R6
1531
      // 16-bit instructions.
1532
25.2k
      Result = decodeInstruction_2(DecoderTableMicroMipsR616,
1533
25.2k
                 Instr, Insn, Address,
1534
25.2k
                 NULL);
1535
25.2k
      if (Result != MCDisassembler_Fail) {
1536
6.20k
        *Size = 2;
1537
6.20k
        return Result;
1538
6.20k
      }
1539
25.2k
    }
1540
1541
    // Calling the auto-generated decoder function for microMIPS 16-bit
1542
    // instructions.
1543
36.4k
    Result = decodeInstruction_2(DecoderTableMicroMips16, Instr,
1544
36.4k
               Insn, Address, NULL);
1545
36.4k
    if (Result != MCDisassembler_Fail) {
1546
11.4k
      *Size = 2;
1547
11.4k
      return Result;
1548
11.4k
    }
1549
1550
25.0k
    Result = readInstruction32(Bytes, BytesLen, Address, Size,
1551
25.0k
             &Insn, IsBigEndian, IsMicroMips);
1552
25.0k
    if (Result == MCDisassembler_Fail)
1553
183
      return MCDisassembler_Fail;
1554
1555
24.8k
    if (IsMips32r6) {
1556
      // Calling the auto-generated decoder function.
1557
16.4k
      Result = decodeInstruction_4(
1558
16.4k
        DecoderTableMicroMipsR6_Ambiguous32, Instr,
1559
16.4k
        Insn, Address, NULL);
1560
16.4k
      if (Result != MCDisassembler_Fail) {
1561
2.87k
        *Size = 4;
1562
2.87k
        return Result;
1563
2.87k
      }
1564
1565
13.6k
      Result = decodeInstruction_4(DecoderTableMicroMipsR632,
1566
13.6k
                 Instr, Insn, Address,
1567
13.6k
                 NULL);
1568
13.6k
      if (Result != MCDisassembler_Fail) {
1569
8.95k
        *Size = 4;
1570
8.95k
        return Result;
1571
8.95k
      }
1572
13.6k
    }
1573
1574
    // Calling the auto-generated decoder function.
1575
13.0k
    Result = decodeInstruction_4(DecoderTableMicroMips32, Instr,
1576
13.0k
               Insn, Address, NULL);
1577
13.0k
    if (Result != MCDisassembler_Fail) {
1578
12.0k
      *Size = 4;
1579
12.0k
      return Result;
1580
12.0k
    }
1581
1582
1.03k
    Result = decodeInstruction_4(DecoderTableMicroMipsDSP32, Instr,
1583
1.03k
               Insn, Address, NULL);
1584
1.03k
    if (Result != MCDisassembler_Fail) {
1585
0
      *Size = 4;
1586
0
      return Result;
1587
0
    }
1588
1589
1.03k
    if (IsFP64) {
1590
874
      Result =
1591
874
        decodeInstruction_4(DecoderTableMicroMipsFP6432,
1592
874
                Instr, Insn, Address, NULL);
1593
874
      if (Result != MCDisassembler_Fail) {
1594
710
        *Size = 4;
1595
710
        return Result;
1596
710
      }
1597
874
    }
1598
1599
    // This is an invalid instruction. Claim that the Size is 2 bytes. Since
1600
    // microMIPS instructions have a minimum alignment of 2, the next 2 bytes
1601
    // could form a valid instruction. The two bytes we rejected as an
1602
    // instruction could have actually beeen an inline constant pool that is
1603
    // unconditionally branched over.
1604
320
    *Size = 2;
1605
320
    return MCDisassembler_Fail;
1606
1.03k
  }
1607
1608
46.2k
  if (IsMips16) {
1609
0
    Result = readInstruction32(Bytes, BytesLen, Address, Size,
1610
0
             &Insn, IsBigEndian, IsMicroMips);
1611
0
    if (Result != MCDisassembler_Fail) {
1612
0
      Result = decodeInstruction_4(DecoderTable32, Instr,
1613
0
                 Insn, Address, NULL);
1614
0
      if (Result != MCDisassembler_Fail) {
1615
0
        *Size = 4;
1616
0
        return Result;
1617
0
      }
1618
0
    }
1619
1620
0
    Result = readInstruction16(Bytes, BytesLen, Address, Size,
1621
0
             &Insn, IsBigEndian);
1622
0
    if (Result == MCDisassembler_Fail) {
1623
0
      return MCDisassembler_Fail;
1624
0
    }
1625
1626
0
    *Size = 2;
1627
0
    return decodeInstruction_2(DecoderTable16, Instr, Insn, Address,
1628
0
             NULL);
1629
0
  }
1630
1631
  // Attempt to read the instruction so that we can attempt to decode it. If
1632
  // the buffer is not 4 bytes long, let the higher level logic figure out
1633
  // what to do with a size of zero and MCDisassembler::Fail.
1634
46.2k
  Result = readInstruction32(Bytes, BytesLen, Address, Size, &Insn,
1635
46.2k
           IsBigEndian, IsMicroMips);
1636
46.2k
  if (Result == MCDisassembler_Fail)
1637
503
    return MCDisassembler_Fail;
1638
1639
  // The only instruction size for standard encoded MIPS.
1640
45.7k
  *Size = 4;
1641
1642
45.7k
  if (HasCOP3) {
1643
0
    Result = decodeInstruction_4(DecoderTableCOP3_32, Instr, Insn,
1644
0
               Address, NULL);
1645
0
    if (Result != MCDisassembler_Fail)
1646
0
      return Result;
1647
0
  }
1648
1649
45.7k
  if (IsMips32r6 && IsGP64) {
1650
0
    Result = decodeInstruction_4(DecoderTableMips32r6_64r6_GP6432,
1651
0
               Instr, Insn, Address, NULL);
1652
0
    if (Result != MCDisassembler_Fail)
1653
0
      return Result;
1654
0
  }
1655
1656
45.7k
  if (IsMips32r6 && IsPTR64) {
1657
0
    Result = decodeInstruction_4(DecoderTableMips32r6_64r6_PTR6432,
1658
0
               Instr, Insn, Address, NULL);
1659
0
    if (Result != MCDisassembler_Fail)
1660
0
      return Result;
1661
0
  }
1662
1663
45.7k
  if (IsMips32r6 || IsMips64r6) {
1664
13.8k
    Result = decodeInstruction_4(
1665
13.8k
      DecoderTableMips32r6_64r6_BranchZero32, Instr, Insn,
1666
13.8k
      Address, NULL);
1667
13.8k
    if (Result != MCDisassembler_Fail)
1668
0
      return Result;
1669
1670
13.8k
    Result = decodeInstruction_4(DecoderTableMips32r6_64r632, Instr,
1671
13.8k
               Insn, Address, NULL);
1672
13.8k
    if (Result != MCDisassembler_Fail)
1673
6.15k
      return Result;
1674
1675
7.67k
    Result = decodeInstruction_4(
1676
7.67k
      DecoderTableMips32r6_64r6_Ambiguous32, Instr, Insn,
1677
7.67k
      Address, NULL);
1678
7.67k
    if (Result != MCDisassembler_Fail)
1679
0
      return Result;
1680
7.67k
  }
1681
1682
39.5k
  if (IsMips2 && IsPTR64) {
1683
0
    Result = decodeInstruction_4(DecoderTableMips32_64_PTR6432,
1684
0
               Instr, Insn, Address, NULL);
1685
0
    if (Result != MCDisassembler_Fail)
1686
0
      return Result;
1687
0
  }
1688
1689
39.5k
  if (IsCnMips) {
1690
0
    Result = decodeInstruction_4(DecoderTableCnMips32, Instr, Insn,
1691
0
               Address, NULL);
1692
0
    if (Result != MCDisassembler_Fail)
1693
0
      return Result;
1694
0
  }
1695
1696
39.5k
  if (IsCnMipsP) {
1697
0
    Result = decodeInstruction_4(DecoderTableCnMipsP32, Instr, Insn,
1698
0
               Address, NULL);
1699
0
    if (Result != MCDisassembler_Fail)
1700
0
      return Result;
1701
0
  }
1702
1703
39.5k
  if (IsGP64) {
1704
28.0k
    Result = decodeInstruction_4(DecoderTableMips6432, Instr, Insn,
1705
28.0k
               Address, NULL);
1706
28.0k
    if (Result != MCDisassembler_Fail)
1707
7.94k
      return Result;
1708
28.0k
  }
1709
1710
31.6k
  if (IsFP64) {
1711
27.7k
    Result = decodeInstruction_4(DecoderTableMipsFP6432, Instr,
1712
27.7k
               Insn, Address, NULL);
1713
27.7k
    if (Result != MCDisassembler_Fail)
1714
1.56k
      return Result;
1715
27.7k
  }
1716
1717
30.0k
  Result = decodeInstruction_4(DecoderTableMipsDSP32, Instr, Insn,
1718
30.0k
             Address, NULL);
1719
30.0k
  if (Result != MCDisassembler_Fail)
1720
385
    return Result;
1721
1722
  // Calling the auto-generated decoder function.
1723
29.6k
  Result = decodeInstruction_4(DecoderTableMips32, Instr, Insn, Address,
1724
29.6k
             NULL);
1725
29.6k
  if (Result != MCDisassembler_Fail)
1726
29.0k
    return Result;
1727
1728
577
  return MCDisassembler_Fail;
1729
29.6k
}
1730
1731
static DecodeStatus DecodeCPU16RegsRegisterClass(MCInst *Inst, unsigned RegNo,
1732
             uint64_t Address,
1733
             const void *Decoder)
1734
0
{
1735
0
  if (RegNo > 7)
1736
0
    return MCDisassembler_Fail;
1737
1738
0
  if (RegNo < 2)
1739
0
    RegNo += 16;
1740
1741
0
  unsigned Reg = getReg(Inst, Mips_GPR32RegClassID, RegNo);
1742
0
  MCOperand_CreateReg0(Inst, (Reg));
1743
0
  return MCDisassembler_Success;
1744
0
}
1745
1746
static DecodeStatus DecodeGPR64RegisterClass(MCInst *Inst, unsigned RegNo,
1747
               uint64_t Address,
1748
               const void *Decoder)
1749
17.8k
{
1750
17.8k
  if (RegNo > 31)
1751
0
    return MCDisassembler_Fail;
1752
1753
17.8k
  unsigned Reg = getReg(Inst, Mips_GPR64RegClassID, RegNo);
1754
17.8k
  MCOperand_CreateReg0(Inst, (Reg));
1755
17.8k
  return MCDisassembler_Success;
1756
17.8k
}
1757
1758
static DecodeStatus DecodeGPRMM16RegisterClass(MCInst *Inst, unsigned RegNo,
1759
                 uint64_t Address,
1760
                 const void *Decoder)
1761
25.6k
{
1762
25.6k
  if (RegNo > 7)
1763
0
    return MCDisassembler_Fail;
1764
25.6k
  unsigned Reg = getReg(Inst, Mips_GPRMM16RegClassID, RegNo);
1765
25.6k
  MCOperand_CreateReg0(Inst, (Reg));
1766
25.6k
  return MCDisassembler_Success;
1767
25.6k
}
1768
1769
static DecodeStatus DecodeGPRMM16ZeroRegisterClass(MCInst *Inst, unsigned RegNo,
1770
               uint64_t Address,
1771
               const void *Decoder)
1772
3.45k
{
1773
3.45k
  if (RegNo > 7)
1774
0
    return MCDisassembler_Fail;
1775
3.45k
  unsigned Reg = getReg(Inst, Mips_GPRMM16ZeroRegClassID, RegNo);
1776
3.45k
  MCOperand_CreateReg0(Inst, (Reg));
1777
3.45k
  return MCDisassembler_Success;
1778
3.45k
}
1779
1780
static DecodeStatus DecodeGPRMM16MovePRegisterClass(MCInst *Inst,
1781
                unsigned RegNo,
1782
                uint64_t Address,
1783
                const void *Decoder)
1784
3.58k
{
1785
3.58k
  if (RegNo > 7)
1786
0
    return MCDisassembler_Fail;
1787
3.58k
  unsigned Reg = getReg(Inst, Mips_GPRMM16MovePRegClassID, RegNo);
1788
3.58k
  MCOperand_CreateReg0(Inst, (Reg));
1789
3.58k
  return MCDisassembler_Success;
1790
3.58k
}
1791
1792
static DecodeStatus DecodeGPR32RegisterClass(MCInst *Inst, unsigned RegNo,
1793
               uint64_t Address,
1794
               const void *Decoder)
1795
101k
{
1796
101k
  if (RegNo > 31)
1797
0
    return MCDisassembler_Fail;
1798
101k
  unsigned Reg = getReg(Inst, Mips_GPR32RegClassID, RegNo);
1799
101k
  MCOperand_CreateReg0(Inst, (Reg));
1800
101k
  return MCDisassembler_Success;
1801
101k
}
1802
1803
static DecodeStatus DecodeGPRNM3RegisterClass(MCInst *Inst, unsigned RegNo,
1804
                uint64_t Address,
1805
                const void *Decoder)
1806
0
{
1807
0
  if (RegNo > 7)
1808
0
    return MCDisassembler_Fail;
1809
0
  RegNo |= ((RegNo & 0x4) ^ 0x4) << 2;
1810
0
  unsigned Reg = getReg(Inst, Mips_GPRNM32RegClassID, RegNo);
1811
0
  MCOperand_CreateReg0(Inst, (Reg));
1812
0
  return MCDisassembler_Success;
1813
0
}
1814
1815
static DecodeStatus DecodeGPRNMRARegisterClass(MCInst *Inst, unsigned RegNo,
1816
                 uint64_t Address,
1817
                 const void *Decoder)
1818
0
{
1819
0
  MCOperand_CreateReg0(Inst, (Mips_RA_NM));
1820
0
  return MCDisassembler_Success;
1821
0
}
1822
1823
static DecodeStatus DecodeGPRNM3ZRegisterClass(MCInst *Inst, unsigned RegNo,
1824
                 uint64_t Address,
1825
                 const void *Decoder)
1826
0
{
1827
0
  if (RegNo > 7)
1828
0
    return MCDisassembler_Fail;
1829
0
  if (RegNo != 0)
1830
0
    RegNo |= ((RegNo & 0x4) ^ 0x4) << 2;
1831
0
  unsigned Reg = getReg(Inst, Mips_GPRNM32RegClassID, RegNo);
1832
0
  MCOperand_CreateReg0(Inst, (Reg));
1833
0
  return MCDisassembler_Success;
1834
0
}
1835
1836
static DecodeStatus DecodeGPRNM4RegisterClass(MCInst *Inst, unsigned RegNo,
1837
                uint64_t Address,
1838
                const void *Decoder)
1839
0
{
1840
0
  if (RegNo > 31)
1841
0
    return MCDisassembler_Fail;
1842
0
  RegNo &= ~0x8;
1843
0
  RegNo += (RegNo < 4 ? 8 : 0);
1844
0
  unsigned Reg = getReg(Inst, Mips_GPRNM32RegClassID, RegNo);
1845
0
  MCOperand_CreateReg0(Inst, (Reg));
1846
0
  return MCDisassembler_Success;
1847
0
}
1848
1849
static DecodeStatus DecodeGPRNM4ZRegisterClass(MCInst *Inst, unsigned RegNo,
1850
                 uint64_t Address,
1851
                 const void *Decoder)
1852
0
{
1853
0
  if (RegNo > 31)
1854
0
    return MCDisassembler_Fail;
1855
0
  RegNo &= ~0x8;
1856
0
  if (RegNo == 3)
1857
0
    RegNo = 0;
1858
0
  else
1859
0
    RegNo += (RegNo < 3 ? 8 : 0);
1860
0
  unsigned Reg = getReg(Inst, Mips_GPRNM32RegClassID, RegNo);
1861
0
  MCOperand_CreateReg0(Inst, (Reg));
1862
0
  return MCDisassembler_Success;
1863
0
}
1864
1865
static DecodeStatus DecodeGPRNM32NZRegisterClass(MCInst *Inst, unsigned RegNo,
1866
             uint64_t Address,
1867
             const void *Decoder)
1868
0
{
1869
0
  if (RegNo == 0)
1870
0
    return MCDisassembler_Fail;
1871
0
  unsigned Reg = getReg(Inst, Mips_GPRNM32RegClassID, RegNo);
1872
0
  MCOperand_CreateReg0(Inst, (Reg));
1873
0
  return MCDisassembler_Success;
1874
0
}
1875
1876
static DecodeStatus DecodeGPRNM32RegisterClass(MCInst *Inst, unsigned RegNo,
1877
                 uint64_t Address,
1878
                 const void *Decoder)
1879
0
{
1880
0
  if (RegNo > 31)
1881
0
    return MCDisassembler_Fail;
1882
0
  unsigned Reg = getReg(Inst, Mips_GPRNM32RegClassID, RegNo);
1883
0
  MCOperand_CreateReg0(Inst, (Reg));
1884
0
  return MCDisassembler_Success;
1885
0
}
1886
1887
static DecodeStatus DecodeGPRNM2R1RegisterClass(MCInst *Inst, unsigned RegNo,
1888
            uint64_t Address,
1889
            const void *Decoder)
1890
0
{
1891
0
  if (RegNo > 31)
1892
0
    return MCDisassembler_Fail;
1893
0
  RegNo += 4;
1894
0
  unsigned Reg = getReg(Inst, Mips_GPRNM32RegClassID, RegNo);
1895
0
  MCOperand_CreateReg0(Inst, (Reg));
1896
0
  MCOperand_CreateReg0(Inst, (Reg + 1));
1897
0
  return MCDisassembler_Success;
1898
0
}
1899
1900
static DecodeStatus DecodeGPRNM1R1RegisterClass(MCInst *Inst, unsigned RegNo,
1901
            uint64_t Address,
1902
            const void *Decoder)
1903
0
{
1904
0
  if (RegNo != 0 && RegNo != 1)
1905
0
    return MCDisassembler_Fail;
1906
0
  RegNo += 4;
1907
0
  unsigned Reg = getReg(Inst, Mips_GPRNM32RegClassID, RegNo);
1908
0
  MCOperand_CreateReg0(Inst, (Reg));
1909
0
  return MCDisassembler_Success;
1910
0
}
1911
1912
static DecodeStatus DecodePtrRegisterClass(MCInst *Inst, unsigned RegNo,
1913
             uint64_t Address,
1914
             const void *Decoder)
1915
3.87k
{
1916
3.87k
  if (Mips_getFeatureBits(Inst->csh->mode, Mips_FeatureGP64Bit))
1917
2.14k
    return DecodeGPR64RegisterClass(Inst, RegNo, Address, Decoder);
1918
1919
1.73k
  return DecodeGPR32RegisterClass(Inst, RegNo, Address, Decoder);
1920
3.87k
}
1921
1922
static DecodeStatus DecodeDSPRRegisterClass(MCInst *Inst, unsigned RegNo,
1923
              uint64_t Address,
1924
              const void *Decoder)
1925
4.97k
{
1926
4.97k
  return DecodeGPR32RegisterClass(Inst, RegNo, Address, Decoder);
1927
4.97k
}
1928
1929
static DecodeStatus DecodeFGR64RegisterClass(MCInst *Inst, unsigned RegNo,
1930
               uint64_t Address,
1931
               const void *Decoder)
1932
7.14k
{
1933
7.14k
  if (RegNo > 31)
1934
0
    return MCDisassembler_Fail;
1935
1936
7.14k
  unsigned Reg = getReg(Inst, Mips_FGR64RegClassID, RegNo);
1937
7.14k
  MCOperand_CreateReg0(Inst, (Reg));
1938
7.14k
  return MCDisassembler_Success;
1939
7.14k
}
1940
1941
static DecodeStatus DecodeFGR32RegisterClass(MCInst *Inst, unsigned RegNo,
1942
               uint64_t Address,
1943
               const void *Decoder)
1944
6.63k
{
1945
6.63k
  if (RegNo > 31)
1946
0
    return MCDisassembler_Fail;
1947
1948
6.63k
  unsigned Reg = getReg(Inst, Mips_FGR32RegClassID, RegNo);
1949
6.63k
  MCOperand_CreateReg0(Inst, (Reg));
1950
6.63k
  return MCDisassembler_Success;
1951
6.63k
}
1952
1953
static DecodeStatus DecodeCCRRegisterClass(MCInst *Inst, unsigned RegNo,
1954
             uint64_t Address,
1955
             const void *Decoder)
1956
470
{
1957
470
  if (RegNo > 31)
1958
0
    return MCDisassembler_Fail;
1959
470
  unsigned Reg = getReg(Inst, Mips_CCRRegClassID, RegNo);
1960
470
  MCOperand_CreateReg0(Inst, (Reg));
1961
470
  return MCDisassembler_Success;
1962
470
}
1963
1964
static DecodeStatus DecodeFCCRegisterClass(MCInst *Inst, unsigned RegNo,
1965
             uint64_t Address,
1966
             const void *Decoder)
1967
3.14k
{
1968
3.14k
  if (RegNo > 7)
1969
0
    return MCDisassembler_Fail;
1970
3.14k
  unsigned Reg = getReg(Inst, Mips_FCCRegClassID, RegNo);
1971
3.14k
  MCOperand_CreateReg0(Inst, (Reg));
1972
3.14k
  return MCDisassembler_Success;
1973
3.14k
}
1974
1975
static DecodeStatus DecodeFGRCCRegisterClass(MCInst *Inst, unsigned RegNo,
1976
               uint64_t Address,
1977
               const void *Decoder)
1978
755
{
1979
755
  if (RegNo > 31)
1980
0
    return MCDisassembler_Fail;
1981
1982
755
  unsigned Reg = getReg(Inst, Mips_FGRCCRegClassID, RegNo);
1983
755
  MCOperand_CreateReg0(Inst, (Reg));
1984
755
  return MCDisassembler_Success;
1985
755
}
1986
1987
static DecodeStatus DecodeMem(MCInst *Inst, uint32_t Insn, uint64_t Address,
1988
            const void *Decoder)
1989
10.9k
{
1990
10.9k
  int Offset = SignExtend32((Insn & 0xffff), 16);
1991
10.9k
  unsigned Reg = fieldFromInstruction_4(Insn, 16, 5);
1992
10.9k
  unsigned Base = fieldFromInstruction_4(Insn, 21, 5);
1993
1994
10.9k
  Reg = getReg(Inst, Mips_GPR32RegClassID, Reg);
1995
10.9k
  Base = getReg(Inst, Mips_GPR32RegClassID, Base);
1996
1997
10.9k
  if (MCInst_getOpcode(Inst) == Mips_SC ||
1998
10.3k
      MCInst_getOpcode(Inst) == Mips_SCD)
1999
1.25k
    MCOperand_CreateReg0(Inst, (Reg));
2000
2001
10.9k
  MCOperand_CreateReg0(Inst, (Reg));
2002
10.9k
  MCOperand_CreateReg0(Inst, (Base));
2003
10.9k
  MCOperand_CreateImm0(Inst, (Offset));
2004
2005
10.9k
  return MCDisassembler_Success;
2006
10.9k
}
2007
2008
#define DEFINE_DecodeMemNM(Offbits, isSigned, rt) \
2009
  static DecodeStatus CONCAT(DecodeMemNM, \
2010
           CONCAT(Offbits, CONCAT(isSigned, rt)))( \
2011
    MCInst * Inst, uint32_t Insn, uint64_t Address, \
2012
    const void *Decoder) \
2013
0
  { \
2014
0
    int Offset = (Insn & ((1 << Offbits) - 1)); \
2015
0
    if (isSigned) \
2016
0
      Offset = SignExtend32((Offset), Offbits); \
2017
0
    unsigned Base; \
2018
0
\
2019
0
    switch (rt) { \
2020
0
    case Mips_GPRNMGPRegClassID: \
2021
0
    case Mips_GPRNMSPRegClassID: \
2022
0
      Base = 0; \
2023
0
      break; \
2024
0
    case Mips_GPRNM3RegClassID: \
2025
0
      Base = fieldFromInstruction_4(Insn, Offbits, 3); \
2026
0
      break; \
2027
0
    case Mips_GPRNM4RegClassID: \
2028
0
    case Mips_GPRNM4ZRegClassID: \
2029
0
\
2030
0
      break; \
2031
0
    default: \
2032
0
      Base = fieldFromInstruction_4(Insn, Offbits, 5); \
2033
0
    } \
2034
0
    Base = getReg(Inst, rt, Base); \
2035
0
\
2036
0
    MCOperand_CreateReg0(Inst, (Base)); \
2037
0
    MCOperand_CreateImm0(Inst, (Offset)); \
2038
0
\
2039
0
    return MCDisassembler_Success; \
2040
0
  }
Unexecuted instantiation: MipsDisassembler.c:DecodeMemNM_6_0_Mips_GPRNM3RegClassID
Unexecuted instantiation: MipsDisassembler.c:DecodeMemNM_7_0_Mips_GPRNMSPRegClassID
Unexecuted instantiation: MipsDisassembler.c:DecodeMemNM_9_0_Mips_GPRNMGPRegClassID
Unexecuted instantiation: MipsDisassembler.c:DecodeMemNM_2_0_Mips_GPRNM3RegClassID
Unexecuted instantiation: MipsDisassembler.c:DecodeMemNM_3_0_Mips_GPRNM3RegClassID
Unexecuted instantiation: MipsDisassembler.c:DecodeMemNM_21_0_Mips_GPRNMGPRegClassID
Unexecuted instantiation: MipsDisassembler.c:DecodeMemNM_18_0_Mips_GPRNMGPRegClassID
Unexecuted instantiation: MipsDisassembler.c:DecodeMemNM_12_0_Mips_GPRNM32RegClassID
Unexecuted instantiation: MipsDisassembler.c:DecodeMemNM_9_1_Mips_GPRNM32RegClassID
2041
DEFINE_DecodeMemNM(6, 0, Mips_GPRNM3RegClassID);
2042
DEFINE_DecodeMemNM(7, 0, Mips_GPRNMSPRegClassID);
2043
DEFINE_DecodeMemNM(9, 0, Mips_GPRNMGPRegClassID);
2044
DEFINE_DecodeMemNM(2, 0, Mips_GPRNM3RegClassID);
2045
DEFINE_DecodeMemNM(3, 0, Mips_GPRNM3RegClassID);
2046
DEFINE_DecodeMemNM(21, 0, Mips_GPRNMGPRegClassID);
2047
DEFINE_DecodeMemNM(18, 0, Mips_GPRNMGPRegClassID);
2048
DEFINE_DecodeMemNM(12, 0, Mips_GPRNM32RegClassID);
2049
DEFINE_DecodeMemNM(9, 1, Mips_GPRNM32RegClassID);
2050
2051
static DecodeStatus DecodeMemZeroNM(MCInst *Inst, uint32_t Insn,
2052
            uint64_t Address, const void *Decoder)
2053
0
{
2054
0
  unsigned Base;
2055
0
  Base = fieldFromInstruction_4(Insn, 0, 5);
2056
0
  Base = getReg(Inst, Mips_GPRNM32RegClassID, Base);
2057
0
  MCOperand_CreateReg0(Inst, (Base));
2058
2059
0
  return MCDisassembler_Success;
2060
0
}
2061
2062
#define DEFINE_DecodeMemNMRX(RegClass) \
2063
  static DecodeStatus CONCAT(DecodeMemNMRX, RegClass)( \
2064
    MCInst * Inst, uint32_t Insn, uint64_t Address, \
2065
    const void *Decoder) \
2066
0
  { \
2067
0
    unsigned Offset; \
2068
0
    unsigned Base; \
2069
0
    Offset = fieldFromInstruction_4(Insn, 0, 5); \
2070
0
    Base = fieldFromInstruction_4(Insn, 5, 5); \
2071
0
\
2072
0
    Base = getReg(Inst, RegClass, Base); \
2073
0
    Offset = getReg(Inst, RegClass, Offset); \
2074
0
    MCOperand_CreateReg0(Inst, (Base)); \
2075
0
    MCOperand_CreateReg0(Inst, (Offset)); \
2076
0
\
2077
0
    return MCDisassembler_Success; \
2078
0
  }
Unexecuted instantiation: MipsDisassembler.c:DecodeMemNMRX_Mips_GPRNM3RegClassID
Unexecuted instantiation: MipsDisassembler.c:DecodeMemNMRX_Mips_GPRNM32RegClassID
2079
DEFINE_DecodeMemNMRX(Mips_GPRNM3RegClassID);
2080
DEFINE_DecodeMemNMRX(Mips_GPRNM32RegClassID);
2081
2082
static DecodeStatus DecodeMemNM4x4(MCInst *Inst, uint32_t Insn,
2083
           uint64_t Address, const void *Decoder)
2084
0
{
2085
0
  int Offset = fieldFromInstruction_4(Insn, 0, 4);
2086
0
  unsigned Base;
2087
2088
0
  Base = getReg(Inst, Mips_GPRNM32RegClassID,
2089
0
          fieldFromInstruction_4(Insn, 4, 5) & ~0x8);
2090
2091
0
  MCOperand_CreateReg0(Inst, (Base));
2092
0
  MCOperand_CreateImm0(Inst, (Offset));
2093
2094
0
  return MCDisassembler_Success;
2095
0
}
2096
2097
static DecodeStatus DecodeMemEVA(MCInst *Inst, uint32_t Insn, uint64_t Address,
2098
         const void *Decoder)
2099
22
{
2100
22
  int Offset = SignExtend32((Insn >> 7), 9);
2101
22
  unsigned Reg = fieldFromInstruction_4(Insn, 16, 5);
2102
22
  unsigned Base = fieldFromInstruction_4(Insn, 21, 5);
2103
2104
22
  Reg = getReg(Inst, Mips_GPR32RegClassID, Reg);
2105
22
  Base = getReg(Inst, Mips_GPR32RegClassID, Base);
2106
2107
22
  if (MCInst_getOpcode(Inst) == Mips_SCE)
2108
10
    MCOperand_CreateReg0(Inst, (Reg));
2109
2110
22
  MCOperand_CreateReg0(Inst, (Reg));
2111
22
  MCOperand_CreateReg0(Inst, (Base));
2112
22
  MCOperand_CreateImm0(Inst, (Offset));
2113
2114
22
  return MCDisassembler_Success;
2115
22
}
2116
2117
#include "MipsCP0RegisterMap.h"
2118
2119
static DecodeStatus DecodeCOP0SelRegisterClass(MCInst *Inst, unsigned RegNo,
2120
                 uint64_t Address,
2121
                 const void *Decoder)
2122
0
{
2123
0
  int Reg = COP0Map_getEncIndexMap(RegNo);
2124
2125
0
  if (Reg != -1) {
2126
0
    Reg = getReg(Inst, Mips_COP0SelRegClassID, Reg);
2127
0
    MCOperand_CreateReg0(Inst, (Reg));
2128
0
  } else {
2129
    // Not a named register encoding - print numeric register and select value
2130
0
    switch (MCInst_getOpcode(Inst)) {
2131
0
    case Mips_MFC0Sel_NM:
2132
0
      MCInst_setOpcode(Inst, (Mips_MFC0_NM));
2133
0
      break;
2134
0
    case Mips_MFHC0Sel_NM:
2135
0
      MCInst_setOpcode(Inst, (Mips_MFHC0_NM));
2136
0
      break;
2137
0
    case Mips_MTC0Sel_NM:
2138
0
      MCInst_setOpcode(Inst, (Mips_MTC0_NM));
2139
0
      break;
2140
0
    case Mips_MTHC0Sel_NM:
2141
0
      MCInst_setOpcode(Inst, (Mips_MTHC0_NM));
2142
0
      break;
2143
0
    default:
2144
0
      CS_ASSERT_RET_VAL(0 && "Unknown instruction!",
2145
0
            MCDisassembler_Fail);
2146
0
      return MCDisassembler_Fail;
2147
0
    }
2148
0
    Reg = getReg(Inst, Mips_COP0RegClassID, RegNo >> 5);
2149
0
    MCOperand_CreateReg0(Inst, (Reg));
2150
0
    MCOperand_CreateImm0(Inst, (RegNo & 0x1f));
2151
0
  }
2152
0
  return MCDisassembler_Success;
2153
0
}
2154
2155
static DecodeStatus DecodeLoadByte15(MCInst *Inst, uint32_t Insn,
2156
             uint64_t Address, const void *Decoder)
2157
589
{
2158
589
  int Offset = SignExtend32((Insn & 0xffff), 16);
2159
589
  unsigned Base = fieldFromInstruction_4(Insn, 16, 5);
2160
589
  unsigned Reg = fieldFromInstruction_4(Insn, 21, 5);
2161
2162
589
  Base = getReg(Inst, Mips_GPR32RegClassID, Base);
2163
589
  Reg = getReg(Inst, Mips_GPR32RegClassID, Reg);
2164
2165
589
  MCOperand_CreateReg0(Inst, (Reg));
2166
589
  MCOperand_CreateReg0(Inst, (Base));
2167
589
  MCOperand_CreateImm0(Inst, (Offset));
2168
2169
589
  return MCDisassembler_Success;
2170
589
}
2171
2172
static DecodeStatus DecodeCacheOp(MCInst *Inst, uint32_t Insn, uint64_t Address,
2173
          const void *Decoder)
2174
1.44k
{
2175
1.44k
  int Offset = SignExtend32((Insn & 0xffff), 16);
2176
1.44k
  unsigned Hint = fieldFromInstruction_4(Insn, 16, 5);
2177
1.44k
  unsigned Base = fieldFromInstruction_4(Insn, 21, 5);
2178
2179
1.44k
  Base = getReg(Inst, Mips_GPR32RegClassID, Base);
2180
2181
1.44k
  MCOperand_CreateReg0(Inst, (Base));
2182
1.44k
  MCOperand_CreateImm0(Inst, (Offset));
2183
1.44k
  MCOperand_CreateImm0(Inst, (Hint));
2184
2185
1.44k
  return MCDisassembler_Success;
2186
1.44k
}
2187
2188
static DecodeStatus DecodeCacheOpMM(MCInst *Inst, uint32_t Insn,
2189
            uint64_t Address, const void *Decoder)
2190
118
{
2191
118
  int Offset = SignExtend32((Insn & 0xfff), 12);
2192
118
  unsigned Base = fieldFromInstruction_4(Insn, 16, 5);
2193
118
  unsigned Hint = fieldFromInstruction_4(Insn, 21, 5);
2194
2195
118
  Base = getReg(Inst, Mips_GPR32RegClassID, Base);
2196
2197
118
  MCOperand_CreateReg0(Inst, (Base));
2198
118
  MCOperand_CreateImm0(Inst, (Offset));
2199
118
  MCOperand_CreateImm0(Inst, (Hint));
2200
2201
118
  return MCDisassembler_Success;
2202
118
}
2203
2204
static DecodeStatus DecodePrefeOpMM(MCInst *Inst, uint32_t Insn,
2205
            uint64_t Address, const void *Decoder)
2206
18
{
2207
18
  int Offset = SignExtend32((Insn & 0x1ff), 9);
2208
18
  unsigned Base = fieldFromInstruction_4(Insn, 16, 5);
2209
18
  unsigned Hint = fieldFromInstruction_4(Insn, 21, 5);
2210
2211
18
  Base = getReg(Inst, Mips_GPR32RegClassID, Base);
2212
2213
18
  MCOperand_CreateReg0(Inst, (Base));
2214
18
  MCOperand_CreateImm0(Inst, (Offset));
2215
18
  MCOperand_CreateImm0(Inst, (Hint));
2216
2217
18
  return MCDisassembler_Success;
2218
18
}
2219
2220
static DecodeStatus DecodeCacheeOp_CacheOpR6(MCInst *Inst, uint32_t Insn,
2221
               uint64_t Address,
2222
               const void *Decoder)
2223
50
{
2224
50
  int Offset = SignExtend32((Insn >> 7), 9);
2225
50
  unsigned Hint = fieldFromInstruction_4(Insn, 16, 5);
2226
50
  unsigned Base = fieldFromInstruction_4(Insn, 21, 5);
2227
2228
50
  Base = getReg(Inst, Mips_GPR32RegClassID, Base);
2229
2230
50
  MCOperand_CreateReg0(Inst, (Base));
2231
50
  MCOperand_CreateImm0(Inst, (Offset));
2232
50
  MCOperand_CreateImm0(Inst, (Hint));
2233
2234
50
  return MCDisassembler_Success;
2235
50
}
2236
2237
static DecodeStatus DecodeSyncI(MCInst *Inst, uint32_t Insn, uint64_t Address,
2238
        const void *Decoder)
2239
182
{
2240
182
  int Offset = SignExtend32((Insn & 0xffff), 16);
2241
182
  unsigned Base = fieldFromInstruction_4(Insn, 21, 5);
2242
2243
182
  Base = getReg(Inst, Mips_GPR32RegClassID, Base);
2244
2245
182
  MCOperand_CreateReg0(Inst, (Base));
2246
182
  MCOperand_CreateImm0(Inst, (Offset));
2247
2248
182
  return MCDisassembler_Success;
2249
182
}
2250
2251
static DecodeStatus DecodeSyncI_MM(MCInst *Inst, uint32_t Insn,
2252
           uint64_t Address, const void *Decoder)
2253
196
{
2254
196
  int Offset = SignExtend32((Insn & 0xffff), 16);
2255
196
  unsigned Base = fieldFromInstruction_4(Insn, 16, 5);
2256
2257
196
  Base = getReg(Inst, Mips_GPR32RegClassID, Base);
2258
2259
196
  MCOperand_CreateReg0(Inst, (Base));
2260
196
  MCOperand_CreateImm0(Inst, (Offset));
2261
2262
196
  return MCDisassembler_Success;
2263
196
}
2264
2265
static DecodeStatus DecodeSynciR6(MCInst *Inst, uint32_t Insn, uint64_t Address,
2266
          const void *Decoder)
2267
68
{
2268
68
  int Immediate = SignExtend32((Insn & 0xffff), 16);
2269
68
  unsigned Base = fieldFromInstruction_4(Insn, 16, 5);
2270
2271
68
  Base = getReg(Inst, Mips_GPR32RegClassID, Base);
2272
2273
68
  MCOperand_CreateReg0(Inst, (Base));
2274
68
  MCOperand_CreateImm0(Inst, (Immediate));
2275
2276
68
  return MCDisassembler_Success;
2277
68
}
2278
2279
static DecodeStatus DecodeMSA128Mem(MCInst *Inst, uint32_t Insn,
2280
            uint64_t Address, const void *Decoder)
2281
1.93k
{
2282
1.93k
  int Offset = SignExtend32((fieldFromInstruction_4(Insn, 16, 10)), 10);
2283
1.93k
  unsigned Reg = fieldFromInstruction_4(Insn, 6, 5);
2284
1.93k
  unsigned Base = fieldFromInstruction_4(Insn, 11, 5);
2285
2286
1.93k
  Reg = getReg(Inst, Mips_MSA128BRegClassID, Reg);
2287
1.93k
  Base = getReg(Inst, Mips_GPR32RegClassID, Base);
2288
2289
1.93k
  MCOperand_CreateReg0(Inst, (Reg));
2290
1.93k
  MCOperand_CreateReg0(Inst, (Base));
2291
2292
  // The immediate field of an LD/ST instruction is scaled which means it must
2293
  // be multiplied (when decoding) by the size (in bytes) of the instructions'
2294
  // data format.
2295
  // .b - 1 byte
2296
  // .h - 2 bytes
2297
  // .w - 4 bytes
2298
  // .d - 8 bytes
2299
1.93k
  switch (MCInst_getOpcode(Inst)) {
2300
0
  default:
2301
2302
0
    return MCDisassembler_Fail;
2303
0
    break;
2304
191
  case Mips_LD_B:
2305
508
  case Mips_ST_B:
2306
508
    MCOperand_CreateImm0(Inst, (Offset));
2307
508
    break;
2308
111
  case Mips_LD_H:
2309
268
  case Mips_ST_H:
2310
268
    MCOperand_CreateImm0(Inst, (Offset * 2));
2311
268
    break;
2312
75
  case Mips_LD_W:
2313
393
  case Mips_ST_W:
2314
393
    MCOperand_CreateImm0(Inst, (Offset * 4));
2315
393
    break;
2316
452
  case Mips_LD_D:
2317
768
  case Mips_ST_D:
2318
768
    MCOperand_CreateImm0(Inst, (Offset * 8));
2319
768
    break;
2320
1.93k
  }
2321
2322
1.93k
  return MCDisassembler_Success;
2323
1.93k
}
2324
2325
static DecodeStatus DecodeMemMMImm4(MCInst *Inst, uint32_t Insn,
2326
            uint64_t Address, const void *Decoder)
2327
3.91k
{
2328
3.91k
  unsigned Offset = Insn & 0xf;
2329
3.91k
  unsigned Reg = fieldFromInstruction_4(Insn, 7, 3);
2330
3.91k
  unsigned Base = fieldFromInstruction_4(Insn, 4, 3);
2331
2332
3.91k
  switch (MCInst_getOpcode(Inst)) {
2333
808
  case Mips_LBU16_MM:
2334
1.10k
  case Mips_LHU16_MM:
2335
1.50k
  case Mips_LW16_MM:
2336
1.50k
    if (DecodeGPRMM16RegisterClass(Inst, Reg, Address, Decoder) ==
2337
1.50k
        MCDisassembler_Fail)
2338
0
      return MCDisassembler_Fail;
2339
1.50k
    break;
2340
1.50k
  case Mips_SB16_MM:
2341
1.03k
  case Mips_SB16_MMR6:
2342
1.35k
  case Mips_SH16_MM:
2343
1.85k
  case Mips_SH16_MMR6:
2344
2.13k
  case Mips_SW16_MM:
2345
2.41k
  case Mips_SW16_MMR6:
2346
2.41k
    if (DecodeGPRMM16ZeroRegisterClass(
2347
2.41k
          Inst, Reg, Address, Decoder) == MCDisassembler_Fail)
2348
0
      return MCDisassembler_Fail;
2349
2.41k
    break;
2350
3.91k
  }
2351
2352
3.91k
  if (DecodeGPRMM16RegisterClass(Inst, Base, Address, Decoder) ==
2353
3.91k
      MCDisassembler_Fail)
2354
0
    return MCDisassembler_Fail;
2355
2356
3.91k
  switch (MCInst_getOpcode(Inst)) {
2357
808
  case Mips_LBU16_MM:
2358
808
    if (Offset == 0xf)
2359
102
      MCOperand_CreateImm0(Inst, (-1));
2360
706
    else
2361
706
      MCOperand_CreateImm0(Inst, (Offset));
2362
808
    break;
2363
373
  case Mips_SB16_MM:
2364
1.03k
  case Mips_SB16_MMR6:
2365
1.03k
    MCOperand_CreateImm0(Inst, (Offset));
2366
1.03k
    break;
2367
300
  case Mips_LHU16_MM:
2368
621
  case Mips_SH16_MM:
2369
1.11k
  case Mips_SH16_MMR6:
2370
1.11k
    MCOperand_CreateImm0(Inst, (Offset << 1));
2371
1.11k
    break;
2372
394
  case Mips_LW16_MM:
2373
673
  case Mips_SW16_MM:
2374
956
  case Mips_SW16_MMR6:
2375
956
    MCOperand_CreateImm0(Inst, (Offset << 2));
2376
956
    break;
2377
3.91k
  }
2378
2379
3.91k
  return MCDisassembler_Success;
2380
3.91k
}
2381
2382
static DecodeStatus DecodeMemMMSPImm5Lsl2(MCInst *Inst, uint32_t Insn,
2383
            uint64_t Address, const void *Decoder)
2384
1.84k
{
2385
1.84k
  unsigned Offset = Insn & 0x1F;
2386
1.84k
  unsigned Reg = fieldFromInstruction_4(Insn, 5, 5);
2387
2388
1.84k
  Reg = getReg(Inst, Mips_GPR32RegClassID, Reg);
2389
2390
1.84k
  MCOperand_CreateReg0(Inst, (Reg));
2391
1.84k
  MCOperand_CreateReg0(Inst, (Mips_SP));
2392
1.84k
  MCOperand_CreateImm0(Inst, (Offset << 2));
2393
2394
1.84k
  return MCDisassembler_Success;
2395
1.84k
}
2396
2397
static DecodeStatus DecodeMemMMGPImm7Lsl2(MCInst *Inst, uint32_t Insn,
2398
            uint64_t Address, const void *Decoder)
2399
1.20k
{
2400
1.20k
  unsigned Offset = Insn & 0x7F;
2401
1.20k
  unsigned Reg = fieldFromInstruction_4(Insn, 7, 3);
2402
2403
1.20k
  Reg = getReg(Inst, Mips_GPR32RegClassID, Reg);
2404
2405
1.20k
  MCOperand_CreateReg0(Inst, (Reg));
2406
1.20k
  MCOperand_CreateReg0(Inst, (Mips_GP));
2407
1.20k
  MCOperand_CreateImm0(Inst, (Offset << 2));
2408
2409
1.20k
  return MCDisassembler_Success;
2410
1.20k
}
2411
2412
static DecodeStatus DecodeMemMMReglistImm4Lsl2(MCInst *Inst, uint32_t Insn,
2413
                 uint64_t Address,
2414
                 const void *Decoder)
2415
720
{
2416
720
  int Offset;
2417
720
  switch (MCInst_getOpcode(Inst)) {
2418
71
  case Mips_LWM16_MMR6:
2419
300
  case Mips_SWM16_MMR6:
2420
300
    Offset = fieldFromInstruction_4(Insn, 4, 4);
2421
300
    break;
2422
420
  default:
2423
420
    Offset = SignExtend32((Insn & 0xf), 4);
2424
420
    break;
2425
720
  }
2426
2427
720
  if (DecodeRegListOperand16(Inst, Insn, Address, Decoder) ==
2428
720
      MCDisassembler_Fail)
2429
0
    return MCDisassembler_Fail;
2430
2431
720
  MCOperand_CreateReg0(Inst, (Mips_SP));
2432
720
  MCOperand_CreateImm0(Inst, (Offset << 2));
2433
2434
720
  return MCDisassembler_Success;
2435
720
}
2436
2437
static DecodeStatus DecodeMemMMImm9(MCInst *Inst, uint32_t Insn,
2438
            uint64_t Address, const void *Decoder)
2439
621
{
2440
621
  int Offset = SignExtend32((Insn & 0x1ff), 9);
2441
621
  unsigned Reg = fieldFromInstruction_4(Insn, 21, 5);
2442
621
  unsigned Base = fieldFromInstruction_4(Insn, 16, 5);
2443
2444
621
  Reg = getReg(Inst, Mips_GPR32RegClassID, Reg);
2445
621
  Base = getReg(Inst, Mips_GPR32RegClassID, Base);
2446
2447
621
  if (MCInst_getOpcode(Inst) == Mips_SCE_MM ||
2448
291
      MCInst_getOpcode(Inst) == Mips_SC_MMR6)
2449
340
    MCOperand_CreateReg0(Inst, (Reg));
2450
2451
621
  MCOperand_CreateReg0(Inst, (Reg));
2452
621
  MCOperand_CreateReg0(Inst, (Base));
2453
621
  MCOperand_CreateImm0(Inst, (Offset));
2454
2455
621
  return MCDisassembler_Success;
2456
621
}
2457
2458
static DecodeStatus DecodeMemMMImm12(MCInst *Inst, uint32_t Insn,
2459
             uint64_t Address, const void *Decoder)
2460
1.22k
{
2461
1.22k
  int Offset = SignExtend32((Insn & 0x0fff), 12);
2462
1.22k
  unsigned Reg = fieldFromInstruction_4(Insn, 21, 5);
2463
1.22k
  unsigned Base = fieldFromInstruction_4(Insn, 16, 5);
2464
2465
1.22k
  Reg = getReg(Inst, Mips_GPR32RegClassID, Reg);
2466
1.22k
  Base = getReg(Inst, Mips_GPR32RegClassID, Base);
2467
2468
1.22k
  switch (MCInst_getOpcode(Inst)) {
2469
253
  case Mips_SWM32_MM:
2470
448
  case Mips_LWM32_MM:
2471
448
    if (DecodeRegListOperand(Inst, Insn, Address, Decoder) ==
2472
448
        MCDisassembler_Fail)
2473
5
      return MCDisassembler_Fail;
2474
443
    MCOperand_CreateReg0(Inst, (Base));
2475
443
    MCOperand_CreateImm0(Inst, (Offset));
2476
443
    break;
2477
162
  case Mips_SC_MM:
2478
162
    MCOperand_CreateReg0(Inst, (Reg));
2479
    // fall through
2480
779
  default:
2481
779
    MCOperand_CreateReg0(Inst, (Reg));
2482
779
    if (MCInst_getOpcode(Inst) == Mips_LWP_MM ||
2483
457
        MCInst_getOpcode(Inst) == Mips_SWP_MM)
2484
497
      MCOperand_CreateReg0(Inst, (Reg + 1));
2485
2486
779
    MCOperand_CreateReg0(Inst, (Base));
2487
779
    MCOperand_CreateImm0(Inst, (Offset));
2488
1.22k
  }
2489
2490
1.22k
  return MCDisassembler_Success;
2491
1.22k
}
2492
2493
static DecodeStatus DecodeMemMMImm16(MCInst *Inst, uint32_t Insn,
2494
             uint64_t Address, const void *Decoder)
2495
4.05k
{
2496
4.05k
  int Offset = SignExtend32((Insn & 0xffff), 16);
2497
4.05k
  unsigned Reg = fieldFromInstruction_4(Insn, 21, 5);
2498
4.05k
  unsigned Base = fieldFromInstruction_4(Insn, 16, 5);
2499
2500
4.05k
  Reg = getReg(Inst, Mips_GPR32RegClassID, Reg);
2501
4.05k
  Base = getReg(Inst, Mips_GPR32RegClassID, Base);
2502
2503
4.05k
  MCOperand_CreateReg0(Inst, (Reg));
2504
4.05k
  MCOperand_CreateReg0(Inst, (Base));
2505
4.05k
  MCOperand_CreateImm0(Inst, (Offset));
2506
2507
4.05k
  return MCDisassembler_Success;
2508
4.05k
}
2509
2510
static DecodeStatus DecodeFMem(MCInst *Inst, uint32_t Insn, uint64_t Address,
2511
             const void *Decoder)
2512
2.03k
{
2513
2.03k
  int Offset = SignExtend32((Insn & 0xffff), 16);
2514
2.03k
  unsigned Reg = fieldFromInstruction_4(Insn, 16, 5);
2515
2.03k
  unsigned Base = fieldFromInstruction_4(Insn, 21, 5);
2516
2517
2.03k
  Reg = getReg(Inst, Mips_FGR64RegClassID, Reg);
2518
2.03k
  Base = getReg(Inst, Mips_GPR32RegClassID, Base);
2519
2520
2.03k
  MCOperand_CreateReg0(Inst, (Reg));
2521
2.03k
  MCOperand_CreateReg0(Inst, (Base));
2522
2.03k
  MCOperand_CreateImm0(Inst, (Offset));
2523
2524
2.03k
  return MCDisassembler_Success;
2525
2.03k
}
2526
2527
static DecodeStatus DecodeFMemMMR2(MCInst *Inst, uint32_t Insn,
2528
           uint64_t Address, const void *Decoder)
2529
1.43k
{
2530
  // This function is the same as DecodeFMem but with the Reg and Base fields
2531
  // swapped according to microMIPS spec.
2532
1.43k
  int Offset = SignExtend32((Insn & 0xffff), 16);
2533
1.43k
  unsigned Base = fieldFromInstruction_4(Insn, 16, 5);
2534
1.43k
  unsigned Reg = fieldFromInstruction_4(Insn, 21, 5);
2535
2536
1.43k
  Reg = getReg(Inst, Mips_FGR64RegClassID, Reg);
2537
1.43k
  Base = getReg(Inst, Mips_GPR32RegClassID, Base);
2538
2539
1.43k
  MCOperand_CreateReg0(Inst, (Reg));
2540
1.43k
  MCOperand_CreateReg0(Inst, (Base));
2541
1.43k
  MCOperand_CreateImm0(Inst, (Offset));
2542
2543
1.43k
  return MCDisassembler_Success;
2544
1.43k
}
2545
2546
static DecodeStatus DecodeFMem2(MCInst *Inst, uint32_t Insn, uint64_t Address,
2547
        const void *Decoder)
2548
1.11k
{
2549
1.11k
  int Offset = SignExtend32((Insn & 0xffff), 16);
2550
1.11k
  unsigned Reg = fieldFromInstruction_4(Insn, 16, 5);
2551
1.11k
  unsigned Base = fieldFromInstruction_4(Insn, 21, 5);
2552
2553
1.11k
  Reg = getReg(Inst, Mips_COP2RegClassID, Reg);
2554
1.11k
  Base = getReg(Inst, Mips_GPR32RegClassID, Base);
2555
2556
1.11k
  MCOperand_CreateReg0(Inst, (Reg));
2557
1.11k
  MCOperand_CreateReg0(Inst, (Base));
2558
1.11k
  MCOperand_CreateImm0(Inst, (Offset));
2559
2560
1.11k
  return MCDisassembler_Success;
2561
1.11k
}
2562
2563
static DecodeStatus DecodeFMem3(MCInst *Inst, uint32_t Insn, uint64_t Address,
2564
        const void *Decoder)
2565
0
{
2566
0
  int Offset = SignExtend32((Insn & 0xffff), 16);
2567
0
  unsigned Reg = fieldFromInstruction_4(Insn, 16, 5);
2568
0
  unsigned Base = fieldFromInstruction_4(Insn, 21, 5);
2569
2570
0
  Reg = getReg(Inst, Mips_COP3RegClassID, Reg);
2571
0
  Base = getReg(Inst, Mips_GPR32RegClassID, Base);
2572
2573
0
  MCOperand_CreateReg0(Inst, (Reg));
2574
0
  MCOperand_CreateReg0(Inst, (Base));
2575
0
  MCOperand_CreateImm0(Inst, (Offset));
2576
2577
0
  return MCDisassembler_Success;
2578
0
}
2579
2580
static DecodeStatus DecodeFMemCop2R6(MCInst *Inst, uint32_t Insn,
2581
             uint64_t Address, const void *Decoder)
2582
1.00k
{
2583
1.00k
  int Offset = SignExtend32((Insn & 0x07ff), 11);
2584
1.00k
  unsigned Reg = fieldFromInstruction_4(Insn, 16, 5);
2585
1.00k
  unsigned Base = fieldFromInstruction_4(Insn, 11, 5);
2586
2587
1.00k
  Reg = getReg(Inst, Mips_COP2RegClassID, Reg);
2588
1.00k
  Base = getReg(Inst, Mips_GPR32RegClassID, Base);
2589
2590
1.00k
  MCOperand_CreateReg0(Inst, (Reg));
2591
1.00k
  MCOperand_CreateReg0(Inst, (Base));
2592
1.00k
  MCOperand_CreateImm0(Inst, (Offset));
2593
2594
1.00k
  return MCDisassembler_Success;
2595
1.00k
}
2596
2597
static DecodeStatus DecodeFMemCop2MMR6(MCInst *Inst, uint32_t Insn,
2598
               uint64_t Address, const void *Decoder)
2599
225
{
2600
225
  int Offset = SignExtend32((Insn & 0x07ff), 11);
2601
225
  unsigned Reg = fieldFromInstruction_4(Insn, 21, 5);
2602
225
  unsigned Base = fieldFromInstruction_4(Insn, 16, 5);
2603
2604
225
  Reg = getReg(Inst, Mips_COP2RegClassID, Reg);
2605
225
  Base = getReg(Inst, Mips_GPR32RegClassID, Base);
2606
2607
225
  MCOperand_CreateReg0(Inst, (Reg));
2608
225
  MCOperand_CreateReg0(Inst, (Base));
2609
225
  MCOperand_CreateImm0(Inst, (Offset));
2610
2611
225
  return MCDisassembler_Success;
2612
225
}
2613
2614
static DecodeStatus DecodeSpecial3LlSc(MCInst *Inst, uint32_t Insn,
2615
               uint64_t Address, const void *Decoder)
2616
355
{
2617
355
  int64_t Offset = SignExtend64(((Insn >> 7) & 0x1ff), 9);
2618
355
  unsigned Rt = fieldFromInstruction_4(Insn, 16, 5);
2619
355
  unsigned Base = fieldFromInstruction_4(Insn, 21, 5);
2620
2621
355
  Rt = getReg(Inst, Mips_GPR32RegClassID, Rt);
2622
355
  Base = getReg(Inst, Mips_GPR32RegClassID, Base);
2623
2624
355
  if (MCInst_getOpcode(Inst) == Mips_SC_R6 ||
2625
247
      MCInst_getOpcode(Inst) == Mips_SCD_R6) {
2626
247
    MCOperand_CreateReg0(Inst, (Rt));
2627
247
  }
2628
2629
355
  MCOperand_CreateReg0(Inst, (Rt));
2630
355
  MCOperand_CreateReg0(Inst, (Base));
2631
355
  MCOperand_CreateImm0(Inst, (Offset));
2632
2633
355
  return MCDisassembler_Success;
2634
355
}
2635
2636
static DecodeStatus DecodeHWRegsRegisterClass(MCInst *Inst, unsigned RegNo,
2637
                uint64_t Address,
2638
                const void *Decoder)
2639
216
{
2640
  // Currently only hardware register 29 is supported.
2641
216
  if (RegNo != 29)
2642
14
    return MCDisassembler_Fail;
2643
202
  MCOperand_CreateReg0(Inst, (Mips_HWR29));
2644
202
  return MCDisassembler_Success;
2645
216
}
2646
2647
static DecodeStatus DecodeAFGR64RegisterClass(MCInst *Inst, unsigned RegNo,
2648
                uint64_t Address,
2649
                const void *Decoder)
2650
4.32k
{
2651
4.32k
  if (RegNo > 30 || RegNo % 2)
2652
52
    return MCDisassembler_Fail;
2653
2654
4.27k
  unsigned Reg = getReg(Inst, Mips_AFGR64RegClassID, RegNo / 2);
2655
4.27k
  MCOperand_CreateReg0(Inst, (Reg));
2656
4.27k
  return MCDisassembler_Success;
2657
4.32k
}
2658
2659
static DecodeStatus DecodeACC64DSPRegisterClass(MCInst *Inst, unsigned RegNo,
2660
            uint64_t Address,
2661
            const void *Decoder)
2662
3.31k
{
2663
3.31k
  if (RegNo >= 4)
2664
0
    return MCDisassembler_Fail;
2665
2666
3.31k
  unsigned Reg = getReg(Inst, Mips_ACC64DSPRegClassID, RegNo);
2667
3.31k
  MCOperand_CreateReg0(Inst, (Reg));
2668
3.31k
  return MCDisassembler_Success;
2669
3.31k
}
2670
2671
static DecodeStatus DecodeHI32DSPRegisterClass(MCInst *Inst, unsigned RegNo,
2672
                 uint64_t Address,
2673
                 const void *Decoder)
2674
148
{
2675
148
  if (RegNo >= 4)
2676
0
    return MCDisassembler_Fail;
2677
2678
148
  unsigned Reg = getReg(Inst, Mips_HI32DSPRegClassID, RegNo);
2679
148
  MCOperand_CreateReg0(Inst, (Reg));
2680
148
  return MCDisassembler_Success;
2681
148
}
2682
2683
static DecodeStatus DecodeLO32DSPRegisterClass(MCInst *Inst, unsigned RegNo,
2684
                 uint64_t Address,
2685
                 const void *Decoder)
2686
112
{
2687
112
  if (RegNo >= 4)
2688
0
    return MCDisassembler_Fail;
2689
2690
112
  unsigned Reg = getReg(Inst, Mips_LO32DSPRegClassID, RegNo);
2691
112
  MCOperand_CreateReg0(Inst, (Reg));
2692
112
  return MCDisassembler_Success;
2693
112
}
2694
2695
static DecodeStatus DecodeMSA128BRegisterClass(MCInst *Inst, unsigned RegNo,
2696
                 uint64_t Address,
2697
                 const void *Decoder)
2698
12.8k
{
2699
12.8k
  if (RegNo > 31)
2700
0
    return MCDisassembler_Fail;
2701
2702
12.8k
  unsigned Reg = getReg(Inst, Mips_MSA128BRegClassID, RegNo);
2703
12.8k
  MCOperand_CreateReg0(Inst, (Reg));
2704
12.8k
  return MCDisassembler_Success;
2705
12.8k
}
2706
2707
static DecodeStatus DecodeMSA128HRegisterClass(MCInst *Inst, unsigned RegNo,
2708
                 uint64_t Address,
2709
                 const void *Decoder)
2710
5.32k
{
2711
5.32k
  if (RegNo > 31)
2712
0
    return MCDisassembler_Fail;
2713
2714
5.32k
  unsigned Reg = getReg(Inst, Mips_MSA128HRegClassID, RegNo);
2715
5.32k
  MCOperand_CreateReg0(Inst, (Reg));
2716
5.32k
  return MCDisassembler_Success;
2717
5.32k
}
2718
2719
static DecodeStatus DecodeMSA128WRegisterClass(MCInst *Inst, unsigned RegNo,
2720
                 uint64_t Address,
2721
                 const void *Decoder)
2722
9.11k
{
2723
9.11k
  if (RegNo > 31)
2724
0
    return MCDisassembler_Fail;
2725
2726
9.11k
  unsigned Reg = getReg(Inst, Mips_MSA128WRegClassID, RegNo);
2727
9.11k
  MCOperand_CreateReg0(Inst, (Reg));
2728
9.11k
  return MCDisassembler_Success;
2729
9.11k
}
2730
2731
static DecodeStatus DecodeMSA128DRegisterClass(MCInst *Inst, unsigned RegNo,
2732
                 uint64_t Address,
2733
                 const void *Decoder)
2734
9.08k
{
2735
9.08k
  if (RegNo > 31)
2736
0
    return MCDisassembler_Fail;
2737
2738
9.08k
  unsigned Reg = getReg(Inst, Mips_MSA128DRegClassID, RegNo);
2739
9.08k
  MCOperand_CreateReg0(Inst, (Reg));
2740
9.08k
  return MCDisassembler_Success;
2741
9.08k
}
2742
2743
static DecodeStatus DecodeMSACtrlRegisterClass(MCInst *Inst, unsigned RegNo,
2744
                 uint64_t Address,
2745
                 const void *Decoder)
2746
848
{
2747
848
  if (RegNo > 7)
2748
5
    return MCDisassembler_Fail;
2749
2750
843
  unsigned Reg = getReg(Inst, Mips_MSACtrlRegClassID, RegNo);
2751
843
  MCOperand_CreateReg0(Inst, (Reg));
2752
843
  return MCDisassembler_Success;
2753
848
}
2754
2755
static DecodeStatus DecodeCOP0RegisterClass(MCInst *Inst, unsigned RegNo,
2756
              uint64_t Address,
2757
              const void *Decoder)
2758
755
{
2759
755
  if (RegNo > 31)
2760
0
    return MCDisassembler_Fail;
2761
2762
755
  unsigned Reg = getReg(Inst, Mips_COP0RegClassID, RegNo);
2763
755
  MCOperand_CreateReg0(Inst, (Reg));
2764
755
  return MCDisassembler_Success;
2765
755
}
2766
2767
static DecodeStatus DecodeCOP2RegisterClass(MCInst *Inst, unsigned RegNo,
2768
              uint64_t Address,
2769
              const void *Decoder)
2770
1.21k
{
2771
1.21k
  if (RegNo > 31)
2772
0
    return MCDisassembler_Fail;
2773
2774
1.21k
  unsigned Reg = getReg(Inst, Mips_COP2RegClassID, RegNo);
2775
1.21k
  MCOperand_CreateReg0(Inst, (Reg));
2776
1.21k
  return MCDisassembler_Success;
2777
1.21k
}
2778
2779
static DecodeStatus DecodeBranchTarget(MCInst *Inst, unsigned Offset,
2780
               uint64_t Address, const void *Decoder)
2781
14.9k
{
2782
14.9k
  int32_t BranchOffset = (SignExtend32((Offset), 16) * 4) + 4;
2783
14.9k
  MCOperand_CreateImm0(Inst, (BranchOffset));
2784
14.9k
  return MCDisassembler_Success;
2785
14.9k
}
2786
2787
static DecodeStatus DecodeBranchTarget1SImm16(MCInst *Inst, unsigned Offset,
2788
                uint64_t Address,
2789
                const void *Decoder)
2790
47
{
2791
47
  int32_t BranchOffset = (SignExtend32((Offset), 16) * 2);
2792
47
  MCOperand_CreateImm0(Inst, (BranchOffset));
2793
47
  return MCDisassembler_Success;
2794
47
}
2795
2796
static DecodeStatus DecodeJumpTarget(MCInst *Inst, uint32_t Insn,
2797
             uint64_t Address, const void *Decoder)
2798
3.19k
{
2799
3.19k
  unsigned JumpOffset = fieldFromInstruction_4(Insn, 0, 26) << 2;
2800
3.19k
  MCOperand_CreateImm0(Inst, (JumpOffset));
2801
3.19k
  return MCDisassembler_Success;
2802
3.19k
}
2803
2804
static DecodeStatus DecodeBranchTarget21(MCInst *Inst, unsigned Offset,
2805
           uint64_t Address, const void *Decoder)
2806
605
{
2807
605
  int32_t BranchOffset = SignExtend32((Offset), 21) * 4 + 4;
2808
2809
605
  MCOperand_CreateImm0(Inst, (BranchOffset));
2810
605
  return MCDisassembler_Success;
2811
605
}
2812
2813
static DecodeStatus DecodeBranchTarget21MM(MCInst *Inst, unsigned Offset,
2814
             uint64_t Address,
2815
             const void *Decoder)
2816
363
{
2817
363
  int32_t BranchOffset = SignExtend32((Offset), 21) * 4 + 4;
2818
2819
363
  MCOperand_CreateImm0(Inst, (BranchOffset));
2820
363
  return MCDisassembler_Success;
2821
363
}
2822
2823
static DecodeStatus DecodeBranchTarget26(MCInst *Inst, unsigned Offset,
2824
           uint64_t Address, const void *Decoder)
2825
574
{
2826
574
  int32_t BranchOffset = SignExtend32((Offset), 26) * 4 + 4;
2827
2828
574
  MCOperand_CreateImm0(Inst, (BranchOffset));
2829
574
  return MCDisassembler_Success;
2830
574
}
2831
2832
static DecodeStatus DecodeBranchTarget7MM(MCInst *Inst, unsigned Offset,
2833
            uint64_t Address, const void *Decoder)
2834
1.58k
{
2835
1.58k
  int32_t BranchOffset = SignExtend32((Offset << 1), 8);
2836
1.58k
  MCOperand_CreateImm0(Inst, (BranchOffset));
2837
1.58k
  return MCDisassembler_Success;
2838
1.58k
}
2839
2840
static DecodeStatus DecodeBranchTarget10MM(MCInst *Inst, unsigned Offset,
2841
             uint64_t Address,
2842
             const void *Decoder)
2843
563
{
2844
563
  int32_t BranchOffset = SignExtend32((Offset << 1), 11);
2845
563
  MCOperand_CreateImm0(Inst, (BranchOffset));
2846
563
  return MCDisassembler_Success;
2847
563
}
2848
2849
static DecodeStatus DecodeBranchTargetMM(MCInst *Inst, unsigned Offset,
2850
           uint64_t Address, const void *Decoder)
2851
1.93k
{
2852
1.93k
  int32_t BranchOffset = SignExtend32((Offset), 16) * 2 + 4;
2853
1.93k
  MCOperand_CreateImm0(Inst, (BranchOffset));
2854
1.93k
  return MCDisassembler_Success;
2855
1.93k
}
2856
2857
static DecodeStatus DecodeBranchTarget26MM(MCInst *Inst, unsigned Offset,
2858
             uint64_t Address,
2859
             const void *Decoder)
2860
332
{
2861
332
  int32_t BranchOffset = SignExtend32((Offset << 1), 27);
2862
2863
332
  MCOperand_CreateImm0(Inst, (BranchOffset));
2864
332
  return MCDisassembler_Success;
2865
332
}
2866
2867
static DecodeStatus DecodeJumpTargetMM(MCInst *Inst, uint32_t Insn,
2868
               uint64_t Address, const void *Decoder)
2869
1.13k
{
2870
1.13k
  unsigned JumpOffset = fieldFromInstruction_4(Insn, 0, 26) << 1;
2871
1.13k
  MCOperand_CreateImm0(Inst, (JumpOffset));
2872
1.13k
  return MCDisassembler_Success;
2873
1.13k
}
2874
2875
#define DEFINE_DecodeBranchTargetNM(Bits) \
2876
  static DecodeStatus CONCAT(DecodeBranchTargetNM, Bits)( \
2877
    MCInst * Inst, unsigned Offset, uint64_t Address, \
2878
    const void *Decoder) \
2879
0
  { \
2880
0
    uint32_t InsnSize = (Bits <= 10) ? 2 : 4; \
2881
0
    int32_t BranchOffset = \
2882
0
      SignExtend32((Offset), Bits + 1) + InsnSize; \
2883
0
\
2884
0
    MCOperand_CreateImm0(Inst, (BranchOffset)); \
2885
0
    return MCDisassembler_Success; \
2886
0
  }
Unexecuted instantiation: MipsDisassembler.c:DecodeBranchTargetNM_10
Unexecuted instantiation: MipsDisassembler.c:DecodeBranchTargetNM_7
Unexecuted instantiation: MipsDisassembler.c:DecodeBranchTargetNM_5
Unexecuted instantiation: MipsDisassembler.c:DecodeBranchTargetNM_21
Unexecuted instantiation: MipsDisassembler.c:DecodeBranchTargetNM_25
Unexecuted instantiation: MipsDisassembler.c:DecodeBranchTargetNM_14
Unexecuted instantiation: MipsDisassembler.c:DecodeBranchTargetNM_11
2887
DEFINE_DecodeBranchTargetNM(10);
2888
DEFINE_DecodeBranchTargetNM(7);
2889
DEFINE_DecodeBranchTargetNM(21);
2890
DEFINE_DecodeBranchTargetNM(25);
2891
DEFINE_DecodeBranchTargetNM(14);
2892
DEFINE_DecodeBranchTargetNM(11);
2893
DEFINE_DecodeBranchTargetNM(5);
2894
2895
static DecodeStatus DecodeJumpTargetXMM(MCInst *Inst, uint32_t Insn,
2896
          uint64_t Address, const void *Decoder)
2897
146
{
2898
146
  unsigned JumpOffset = fieldFromInstruction_4(Insn, 0, 26) << 2;
2899
146
  MCOperand_CreateImm0(Inst, (JumpOffset));
2900
146
  return MCDisassembler_Success;
2901
146
}
2902
2903
static DecodeStatus DecodeAddiur2Simm7(MCInst *Inst, unsigned Value,
2904
               uint64_t Address, const void *Decoder)
2905
1.26k
{
2906
1.26k
  if (Value == 0)
2907
151
    MCOperand_CreateImm0(Inst, (1));
2908
1.11k
  else if (Value == 0x7)
2909
612
    MCOperand_CreateImm0(Inst, (-1));
2910
501
  else
2911
501
    MCOperand_CreateImm0(Inst, (Value << 2));
2912
1.26k
  return MCDisassembler_Success;
2913
1.26k
}
2914
2915
static DecodeStatus DecodeLi16Imm(MCInst *Inst, unsigned Value,
2916
          uint64_t Address, const void *Decoder)
2917
514
{
2918
514
  if (Value == 0x7F)
2919
45
    MCOperand_CreateImm0(Inst, (-1));
2920
469
  else
2921
469
    MCOperand_CreateImm0(Inst, (Value));
2922
514
  return MCDisassembler_Success;
2923
514
}
2924
2925
static DecodeStatus DecodePOOL16BEncodedField(MCInst *Inst, unsigned Value,
2926
                uint64_t Address,
2927
                const void *Decoder)
2928
486
{
2929
486
  MCOperand_CreateImm0(Inst, (Value == 0x0 ? 8 : Value));
2930
486
  return MCDisassembler_Success;
2931
486
}
2932
2933
#define DEFINE_DecodeUImmWithOffsetAndScale(Bits, Offset, Scale) \
2934
  static DecodeStatus CONCAT(DecodeUImmWithOffsetAndScale, \
2935
           CONCAT(Bits, CONCAT(Offset, Scale)))( \
2936
    MCInst * Inst, unsigned Value, uint64_t Address, \
2937
    const void *Decoder) \
2938
1.16k
  { \
2939
1.16k
    Value &= ((1 << Bits) - 1); \
2940
1.16k
    Value *= Scale; \
2941
1.16k
    MCOperand_CreateImm0(Inst, (Value + Offset)); \
2942
1.16k
    return MCDisassembler_Success; \
2943
1.16k
  }
MipsDisassembler.c:DecodeUImmWithOffsetAndScale_5_0_4
Line
Count
Source
2938
314
  { \
2939
314
    Value &= ((1 << Bits) - 1); \
2940
314
    Value *= Scale; \
2941
314
    MCOperand_CreateImm0(Inst, (Value + Offset)); \
2942
314
    return MCDisassembler_Success; \
2943
314
  }
MipsDisassembler.c:DecodeUImmWithOffsetAndScale_6_0_4
Line
Count
Source
2938
563
  { \
2939
563
    Value &= ((1 << Bits) - 1); \
2940
563
    Value *= Scale; \
2941
563
    MCOperand_CreateImm0(Inst, (Value + Offset)); \
2942
563
    return MCDisassembler_Success; \
2943
563
  }
MipsDisassembler.c:DecodeUImmWithOffsetAndScale_5_1_1
Line
Count
Source
2938
111
  { \
2939
111
    Value &= ((1 << Bits) - 1); \
2940
111
    Value *= Scale; \
2941
111
    MCOperand_CreateImm0(Inst, (Value + Offset)); \
2942
111
    return MCDisassembler_Success; \
2943
111
  }
MipsDisassembler.c:DecodeUImmWithOffsetAndScale_2_1_1
Line
Count
Source
2938
173
  { \
2939
173
    Value &= ((1 << Bits) - 1); \
2940
173
    Value *= Scale; \
2941
173
    MCOperand_CreateImm0(Inst, (Value + Offset)); \
2942
173
    return MCDisassembler_Success; \
2943
173
  }
Unexecuted instantiation: MipsDisassembler.c:DecodeUImmWithOffsetAndScale_8_0_1
Unexecuted instantiation: MipsDisassembler.c:DecodeUImmWithOffsetAndScale_21_0_1
Unexecuted instantiation: MipsDisassembler.c:DecodeUImmWithOffsetAndScale_18_0_1
2944
DEFINE_DecodeUImmWithOffsetAndScale(5, 0, 4);
2945
DEFINE_DecodeUImmWithOffsetAndScale(6, 0, 4);
2946
DEFINE_DecodeUImmWithOffsetAndScale(2, 1, 1);
2947
DEFINE_DecodeUImmWithOffsetAndScale(5, 1, 1);
2948
DEFINE_DecodeUImmWithOffsetAndScale(8, 0, 1);
2949
DEFINE_DecodeUImmWithOffsetAndScale(18, 0, 1);
2950
DEFINE_DecodeUImmWithOffsetAndScale(21, 0, 1);
2951
2952
#define DEFINE_DecodeSImmWithOffsetAndScale(Bits, Offset, ScaleBy) \
2953
  static DecodeStatus CONCAT(DecodeSImmWithOffsetAndScale, \
2954
           CONCAT(Bits, CONCAT(Offset, ScaleBy)))( \
2955
    MCInst * Inst, unsigned Value, uint64_t Address, \
2956
    const void *Decoder) \
2957
7.84k
  { \
2958
7.84k
    int32_t Imm = SignExtend32((Value), Bits) * ScaleBy; \
2959
7.84k
    MCOperand_CreateImm0(Inst, (Imm + Offset)); \
2960
7.84k
    return MCDisassembler_Success; \
2961
7.84k
  }
MipsDisassembler.c:DecodeSImmWithOffsetAndScale_16_0_1
Line
Count
Source
2957
7.48k
  { \
2958
7.48k
    int32_t Imm = SignExtend32((Value), Bits) * ScaleBy; \
2959
7.48k
    MCOperand_CreateImm0(Inst, (Imm + Offset)); \
2960
7.48k
    return MCDisassembler_Success; \
2961
7.48k
  }
MipsDisassembler.c:DecodeSImmWithOffsetAndScale_10_0_1
Line
Count
Source
2957
70
  { \
2958
70
    int32_t Imm = SignExtend32((Value), Bits) * ScaleBy; \
2959
70
    MCOperand_CreateImm0(Inst, (Imm + Offset)); \
2960
70
    return MCDisassembler_Success; \
2961
70
  }
MipsDisassembler.c:DecodeSImmWithOffsetAndScale_4_0_1
Line
Count
Source
2957
169
  { \
2958
169
    int32_t Imm = SignExtend32((Value), Bits) * ScaleBy; \
2959
169
    MCOperand_CreateImm0(Inst, (Imm + Offset)); \
2960
169
    return MCDisassembler_Success; \
2961
169
  }
MipsDisassembler.c:DecodeSImmWithOffsetAndScale_6_0_1
Line
Count
Source
2957
113
  { \
2958
113
    int32_t Imm = SignExtend32((Value), Bits) * ScaleBy; \
2959
113
    MCOperand_CreateImm0(Inst, (Imm + Offset)); \
2960
113
    return MCDisassembler_Success; \
2961
113
  }
Unexecuted instantiation: MipsDisassembler.c:DecodeSImmWithOffsetAndScale_32_0_1
2962
2963
#define DEFINE_DecodeSImmWithOffsetAndScale_2(Bits, Offset) \
2964
  DEFINE_DecodeSImmWithOffsetAndScale(Bits, Offset, 1)
2965
#define DEFINE_DecodeSImmWithOffsetAndScale_3(Bits) \
2966
  DEFINE_DecodeSImmWithOffsetAndScale(Bits, 0, 1)
2967
2968
DEFINE_DecodeSImmWithOffsetAndScale_3(16);
2969
DEFINE_DecodeSImmWithOffsetAndScale_3(10);
2970
DEFINE_DecodeSImmWithOffsetAndScale_3(4);
2971
DEFINE_DecodeSImmWithOffsetAndScale_3(6);
2972
DEFINE_DecodeSImmWithOffsetAndScale_3(32);
2973
2974
static DecodeStatus DecodeInsSize(MCInst *Inst, uint32_t Insn, uint64_t Address,
2975
          const void *Decoder)
2976
418
{
2977
  // First we need to grab the pos(lsb) from MCInst.
2978
  // This function only handles the 32 bit variants of ins, as dins
2979
  // variants are handled differently.
2980
418
  int Pos = MCOperand_getImm(MCInst_getOperand(Inst, (2)));
2981
418
  int Size = (int)Insn - Pos + 1;
2982
418
  MCOperand_CreateImm0(Inst, (SignExtend32((Size), 16)));
2983
418
  return MCDisassembler_Success;
2984
418
}
2985
2986
static DecodeStatus DecodeSimm19Lsl2(MCInst *Inst, uint32_t Insn,
2987
             uint64_t Address, const void *Decoder)
2988
588
{
2989
588
  MCOperand_CreateImm0(Inst, (SignExtend32((Insn), 19) * 4));
2990
588
  return MCDisassembler_Success;
2991
588
}
2992
2993
static DecodeStatus DecodeSimm18Lsl3(MCInst *Inst, uint32_t Insn,
2994
             uint64_t Address, const void *Decoder)
2995
0
{
2996
0
  MCOperand_CreateImm0(Inst, (SignExtend32((Insn), 18) * 8));
2997
0
  return MCDisassembler_Success;
2998
0
}
2999
3000
static DecodeStatus DecodeSimm9SP(MCInst *Inst, uint32_t Insn, uint64_t Address,
3001
          const void *Decoder)
3002
2.12k
{
3003
2.12k
  int32_t DecodedValue;
3004
2.12k
  switch (Insn) {
3005
111
  case 0:
3006
111
    DecodedValue = 256;
3007
111
    break;
3008
333
  case 1:
3009
333
    DecodedValue = 257;
3010
333
    break;
3011
66
  case 510:
3012
66
    DecodedValue = -258;
3013
66
    break;
3014
243
  case 511:
3015
243
    DecodedValue = -257;
3016
243
    break;
3017
1.36k
  default:
3018
1.36k
    DecodedValue = SignExtend32((Insn), 9);
3019
1.36k
    break;
3020
2.12k
  }
3021
2.12k
  MCOperand_CreateImm0(Inst, (DecodedValue * 4));
3022
2.12k
  return MCDisassembler_Success;
3023
2.12k
}
3024
3025
static DecodeStatus DecodeANDI16Imm(MCInst *Inst, uint32_t Insn,
3026
            uint64_t Address, const void *Decoder)
3027
197
{
3028
  // Insn must be >= 0, since it is unsigned that condition is always true.
3029
3030
197
  int32_t DecodedValues[] = { 128, 1,  2,  3,  4,  7,   8,     15,
3031
197
            16,  31, 32, 63, 64, 255, 32768, 65535 };
3032
197
  MCOperand_CreateImm0(Inst, (DecodedValues[Insn]));
3033
197
  return MCDisassembler_Success;
3034
197
}
3035
3036
static DecodeStatus DecodeRegListOperand(MCInst *Inst, uint32_t Insn,
3037
           uint64_t Address, const void *Decoder)
3038
219
{
3039
219
  unsigned Regs[] = { Mips_S0, Mips_S1, Mips_S2, Mips_S3, Mips_S4,
3040
219
          Mips_S5, Mips_S6, Mips_S7, Mips_FP };
3041
219
  unsigned RegNum;
3042
3043
219
  unsigned RegLst = fieldFromInstruction_4(Insn, 21, 5);
3044
3045
  // Empty register lists are not allowed.
3046
219
  if (RegLst == 0)
3047
1
    return MCDisassembler_Fail;
3048
3049
218
  RegNum = RegLst & 0xf;
3050
3051
  // RegLst values 10-15, and 26-31 are reserved.
3052
218
  if (RegNum > 9)
3053
3
    return MCDisassembler_Fail;
3054
3055
1.27k
  for (unsigned i = 0; i < RegNum; i++)
3056
1.06k
    MCOperand_CreateReg0(Inst, (Regs[i]));
3057
3058
215
  if (RegLst & 0x10)
3059
120
    MCOperand_CreateReg0(Inst, (Mips_RA));
3060
3061
215
  return MCDisassembler_Success;
3062
218
}
3063
3064
static DecodeStatus DecodeRegListOperand16(MCInst *Inst, uint32_t Insn,
3065
             uint64_t Address,
3066
             const void *Decoder)
3067
720
{
3068
720
  unsigned Regs[] = { Mips_S0, Mips_S1, Mips_S2, Mips_S3 };
3069
720
  unsigned RegLst;
3070
720
  switch (MCInst_getOpcode(Inst)) {
3071
420
  default:
3072
420
    RegLst = fieldFromInstruction_4(Insn, 4, 2);
3073
420
    break;
3074
71
  case Mips_LWM16_MMR6:
3075
300
  case Mips_SWM16_MMR6:
3076
300
    RegLst = fieldFromInstruction_4(Insn, 8, 2);
3077
300
    break;
3078
720
  }
3079
720
  unsigned RegNum = RegLst & 0x3;
3080
3081
1.88k
  for (unsigned i = 0; i <= RegNum; i++)
3082
1.16k
    MCOperand_CreateReg0(Inst, (Regs[i]));
3083
3084
720
  MCOperand_CreateReg0(Inst, (Mips_RA));
3085
3086
720
  return MCDisassembler_Success;
3087
720
}
3088
3089
static DecodeStatus DecodeMovePOperands(MCInst *Inst, uint32_t Insn,
3090
          uint64_t Address, const void *Decoder)
3091
1.48k
{
3092
1.48k
  unsigned RegPair = fieldFromInstruction_4(Insn, 7, 3);
3093
1.48k
  if (DecodeMovePRegPair(Inst, RegPair, Address, Decoder) ==
3094
1.48k
      MCDisassembler_Fail)
3095
0
    return MCDisassembler_Fail;
3096
3097
1.48k
  unsigned RegRs;
3098
1.48k
  if (Inst->csh->mode & CS_MODE_MIPS32R6)
3099
1.05k
    RegRs = fieldFromInstruction_4(Insn, 0, 2) |
3100
1.05k
      (fieldFromInstruction_4(Insn, 3, 1) << 2);
3101
435
  else
3102
435
    RegRs = fieldFromInstruction_4(Insn, 1, 3);
3103
1.48k
  if (DecodeGPRMM16MovePRegisterClass(Inst, RegRs, Address, Decoder) ==
3104
1.48k
      MCDisassembler_Fail)
3105
0
    return MCDisassembler_Fail;
3106
3107
1.48k
  unsigned RegRt = fieldFromInstruction_4(Insn, 4, 3);
3108
1.48k
  if (DecodeGPRMM16MovePRegisterClass(Inst, RegRt, Address, Decoder) ==
3109
1.48k
      MCDisassembler_Fail)
3110
0
    return MCDisassembler_Fail;
3111
3112
1.48k
  return MCDisassembler_Success;
3113
1.48k
}
3114
3115
static DecodeStatus DecodeMovePRegPair(MCInst *Inst, unsigned RegPair,
3116
               uint64_t Address, const void *Decoder)
3117
1.79k
{
3118
1.79k
  switch (RegPair) {
3119
0
  default:
3120
0
    return MCDisassembler_Fail;
3121
439
  case 0:
3122
439
    MCOperand_CreateReg0(Inst, (Mips_A1));
3123
439
    MCOperand_CreateReg0(Inst, (Mips_A2));
3124
439
    break;
3125
92
  case 1:
3126
92
    MCOperand_CreateReg0(Inst, (Mips_A1));
3127
92
    MCOperand_CreateReg0(Inst, (Mips_A3));
3128
92
    break;
3129
146
  case 2:
3130
146
    MCOperand_CreateReg0(Inst, (Mips_A2));
3131
146
    MCOperand_CreateReg0(Inst, (Mips_A3));
3132
146
    break;
3133
25
  case 3:
3134
25
    MCOperand_CreateReg0(Inst, (Mips_A0));
3135
25
    MCOperand_CreateReg0(Inst, (Mips_S5));
3136
25
    break;
3137
626
  case 4:
3138
626
    MCOperand_CreateReg0(Inst, (Mips_A0));
3139
626
    MCOperand_CreateReg0(Inst, (Mips_S6));
3140
626
    break;
3141
217
  case 5:
3142
217
    MCOperand_CreateReg0(Inst, (Mips_A0));
3143
217
    MCOperand_CreateReg0(Inst, (Mips_A1));
3144
217
    break;
3145
85
  case 6:
3146
85
    MCOperand_CreateReg0(Inst, (Mips_A0));
3147
85
    MCOperand_CreateReg0(Inst, (Mips_A2));
3148
85
    break;
3149
163
  case 7:
3150
163
    MCOperand_CreateReg0(Inst, (Mips_A0));
3151
163
    MCOperand_CreateReg0(Inst, (Mips_A3));
3152
163
    break;
3153
1.79k
  }
3154
3155
1.79k
  return MCDisassembler_Success;
3156
1.79k
}
3157
3158
static DecodeStatus DecodeSimm23Lsl2(MCInst *Inst, uint32_t Insn,
3159
             uint64_t Address, const void *Decoder)
3160
684
{
3161
684
  MCOperand_CreateImm0(Inst, (SignExtend32((Insn << 2), 25)));
3162
684
  return MCDisassembler_Success;
3163
684
}
3164
3165
static DecodeStatus DecodeBgtzGroupBranchMMR6(MCInst *MI, uint32_t insn,
3166
                uint64_t Address,
3167
                const void *Decoder)
3168
964
{
3169
  // We have:
3170
  //    0b000111 ttttt sssss iiiiiiiiiiiiiiii
3171
  //      Invalid      if rt == 0
3172
  //      BGTZALC_MMR6 if rs == 0 && rt != 0
3173
  //      BLTZALC_MMR6 if rs != 0 && rs == rt
3174
  //      BLTUC_MMR6   if rs != 0 && rs != rt
3175
3176
964
  uint32_t Rt = fieldFromInstruction_4(insn, 21, 5);
3177
964
  uint32_t Rs = fieldFromInstruction_4(insn, 16, 5);
3178
964
  uint32_t Imm = 0;
3179
964
  bool HasRs = false;
3180
964
  bool HasRt = false;
3181
3182
964
  if (Rt == 0)
3183
4
    return MCDisassembler_Fail;
3184
960
  else if (Rs == 0) {
3185
311
    MCInst_setOpcode(MI, (Mips_BGTZALC_MMR6));
3186
311
    HasRt = true;
3187
311
    Imm = SignExtend64(fieldFromInstruction_4(insn, 0, 16), 16) *
3188
311
            2 +
3189
311
          4;
3190
649
  } else if (Rs == Rt) {
3191
289
    MCInst_setOpcode(MI, (Mips_BLTZALC_MMR6));
3192
289
    HasRs = true;
3193
289
    Imm = SignExtend64(fieldFromInstruction_4(insn, 0, 16), 16) *
3194
289
            2 +
3195
289
          4;
3196
360
  } else {
3197
360
    MCInst_setOpcode(MI, (Mips_BLTUC_MMR6));
3198
360
    HasRs = true;
3199
360
    HasRt = true;
3200
360
    Imm = SignExtend64(fieldFromInstruction_4(insn, 0, 16), 16) *
3201
360
            4 +
3202
360
          4;
3203
360
  }
3204
3205
960
  if (HasRs)
3206
649
    MCOperand_CreateReg0(MI,
3207
649
             (getReg(MI, Mips_GPR32RegClassID, Rs)));
3208
3209
960
  if (HasRt)
3210
671
    MCOperand_CreateReg0(MI,
3211
671
             (getReg(MI, Mips_GPR32RegClassID, Rt)));
3212
3213
960
  MCOperand_CreateImm0(MI, (Imm));
3214
3215
960
  return MCDisassembler_Success;
3216
964
}
3217
3218
static DecodeStatus DecodeBlezGroupBranchMMR6(MCInst *MI, uint32_t insn,
3219
                uint64_t Address,
3220
                const void *Decoder)
3221
945
{
3222
  // We have:
3223
  //    0b000110 ttttt sssss iiiiiiiiiiiiiiii
3224
  //      Invalid        if rt == 0
3225
  //      BLEZALC_MMR6   if rs == 0  && rt != 0
3226
  //      BGEZALC_MMR6   if rs == rt && rt != 0
3227
  //      BGEUC_MMR6     if rs != rt && rs != 0  && rt != 0
3228
3229
945
  uint32_t Rt = fieldFromInstruction_4(insn, 21, 5);
3230
945
  uint32_t Rs = fieldFromInstruction_4(insn, 16, 5);
3231
945
  uint32_t Imm = 0;
3232
945
  bool HasRs = false;
3233
3234
945
  if (Rt == 0)
3235
6
    return MCDisassembler_Fail;
3236
939
  else if (Rs == 0) {
3237
346
    MCInst_setOpcode(MI, (Mips_BLEZALC_MMR6));
3238
346
    Imm = SignExtend64(fieldFromInstruction_4(insn, 0, 16), 16) *
3239
346
            2 +
3240
346
          4;
3241
593
  } else if (Rs == Rt) {
3242
256
    MCInst_setOpcode(MI, (Mips_BGEZALC_MMR6));
3243
256
    Imm = SignExtend64(fieldFromInstruction_4(insn, 0, 16), 16) *
3244
256
            2 +
3245
256
          4;
3246
337
  } else {
3247
337
    HasRs = true;
3248
337
    MCInst_setOpcode(MI, (Mips_BGEUC_MMR6));
3249
337
    Imm = SignExtend64(fieldFromInstruction_4(insn, 0, 16), 16) *
3250
337
            4 +
3251
337
          4;
3252
337
  }
3253
3254
939
  if (HasRs)
3255
337
    MCOperand_CreateReg0(MI,
3256
337
             (getReg(MI, Mips_GPR32RegClassID, Rs)));
3257
939
  MCOperand_CreateReg0(MI, (getReg(MI, Mips_GPR32RegClassID, Rt)));
3258
3259
939
  MCOperand_CreateImm0(MI, (Imm));
3260
3261
939
  return MCDisassembler_Success;
3262
945
}
3263
3264
// This instruction does not have a working decoder, and needs to be
3265
// fixed. This "fixme" function was introduced to keep the backend compiling,
3266
// while making changes to tablegen code.
3267
static DecodeStatus DecodeFIXMEInstruction(MCInst *Inst, uint32_t Insn,
3268
             uint64_t Address,
3269
             const void *Decoder)
3270
0
{
3271
0
  return MCDisassembler_Fail;
3272
0
}
3273
3274
static DecodeStatus DecodeImmM1To126(MCInst *Inst, unsigned Value,
3275
             uint64_t Address, const void *Decoder)
3276
0
{
3277
0
  if (Value == 127)
3278
0
    MCOperand_CreateImm0(Inst, (-1));
3279
0
  else
3280
0
    MCOperand_CreateImm0(Inst, (Value));
3281
0
  return MCDisassembler_Success;
3282
0
}
3283
3284
static DecodeStatus DecodeUImm4Mask(MCInst *Inst, unsigned Value,
3285
            uint64_t Address, const void *Decoder)
3286
0
{
3287
0
  if (Value == 12)
3288
0
    MCOperand_CreateImm0(Inst, (0xff));
3289
0
  else if (Value == 13)
3290
0
    MCOperand_CreateImm0(Inst, (0xffff));
3291
0
  else
3292
0
    MCOperand_CreateImm0(Inst, (Value));
3293
0
  return MCDisassembler_Success;
3294
0
}
3295
3296
static DecodeStatus DecodeUImm3Shift(MCInst *Inst, unsigned Value,
3297
             uint64_t Address, const void *Decoder)
3298
0
{
3299
0
  if (Value == 0)
3300
0
    MCOperand_CreateImm0(Inst, (8));
3301
0
  else
3302
0
    MCOperand_CreateImm0(Inst, (Value));
3303
0
  return MCDisassembler_Success;
3304
0
}
3305
3306
static DecodeStatus DecodeNMRegListOperand(MCInst *Inst, uint32_t Insn,
3307
             uint64_t Address,
3308
             const void *Decoder)
3309
0
{
3310
0
  unsigned RegStart = fieldFromInstruction_4(Insn, 5, 5);
3311
0
  unsigned RegCount = fieldFromInstruction_4(Insn, 1, 4);
3312
0
  unsigned GP_bit = fieldFromInstruction_4(Insn, 0, 1);
3313
0
  unsigned i;
3314
0
  unsigned RegNo;
3315
3316
0
  MCOperand_CreateReg0(Inst,
3317
0
           (getReg(Inst, Mips_GPRNM32RegClassID, RegStart)));
3318
0
  for (i = RegStart + 1; i < RegStart + RegCount; i++) {
3319
0
    if (i == RegStart + RegCount - 1 && GP_bit)
3320
0
      RegNo = 28;
3321
0
    else if (i > 31)
3322
0
      RegNo = 16 + (i % 32); // $ra+1 wraps to $s0
3323
0
    else
3324
0
      RegNo = i;
3325
0
    MCOperand_CreateReg0(
3326
0
      Inst, (getReg(Inst, Mips_GPRNM32RegClassID, RegNo)));
3327
0
  }
3328
0
  return MCDisassembler_Success;
3329
0
}
3330
3331
static DecodeStatus DecodeNMRegList16Operand(MCInst *Inst, uint32_t Insn,
3332
               uint64_t Address,
3333
               const void *Decoder)
3334
0
{
3335
0
  unsigned RegStart = 30 + fieldFromInstruction_4(Insn, 4, 1);
3336
0
  unsigned RegCount = fieldFromInstruction_4(Insn, 0, 4);
3337
  // Re-encode the parameters for 32-bit instruction operand
3338
  // and call it's decoder
3339
0
  return DecodeNMRegListOperand(Inst, (RegStart << 5) | (RegCount << 1),
3340
0
              Address, Decoder);
3341
0
}
3342
3343
static DecodeStatus DecodeNegImm12(MCInst *Inst, uint32_t Insn,
3344
           uint64_t Address, const void *Decoder)
3345
0
{
3346
0
  int Imm = fieldFromInstruction_4(Insn, 0, 12);
3347
3348
0
  MCOperand_CreateImm0(Inst, (-Imm));
3349
0
  return MCDisassembler_Success;
3350
0
}
3351
3352
#define DEFINE_DecodeSImmWithReg(Bits, Offset, Scale, RegNum) \
3353
  static DecodeStatus CONCAT( \
3354
    DecodeSImmWithReg, \
3355
    CONCAT(Bits, CONCAT(Offset, CONCAT(Scale, RegNum))))( \
3356
    MCInst * Inst, unsigned Value, uint64_t Address, \
3357
    const void *Decoder) \
3358
0
  { \
3359
0
    MCOperand_CreateReg0(Inst, (RegNum)); \
3360
0
    return CONCAT(DecodeSImmWithOffsetAndScale, \
3361
0
            CONCAT(Bits, CONCAT(Offset, Scale)))( \
3362
0
      Inst, Value, Address, Decoder); \
3363
0
  }
3364
DEFINE_DecodeSImmWithReg(32, 0, 1, Mips_GP_NM);
3365
3366
#define DEFINE_DecodeUImmWithReg(Bits, Offset, Scale, RegNum) \
3367
  static DecodeStatus CONCAT( \
3368
    DecodeUImmWithReg, \
3369
    CONCAT(Bits, CONCAT(Offset, CONCAT(Scale, RegNum))))( \
3370
    MCInst * Inst, unsigned Value, uint64_t Address, \
3371
    const void *Decoder) \
3372
0
  { \
3373
0
    MCOperand_CreateReg0(Inst, (RegNum)); \
3374
0
    return CONCAT(DecodeUImmWithOffsetAndScale, \
3375
0
            CONCAT(Bits, CONCAT(Offset, Scale)))( \
3376
0
      Inst, Value, Address, Decoder); \
3377
0
  }
Unexecuted instantiation: MipsDisassembler.c:DecodeUImmWithReg_8_0_1_Mips_SP_NM
Unexecuted instantiation: MipsDisassembler.c:DecodeUImmWithReg_21_0_1_Mips_GP_NM
Unexecuted instantiation: MipsDisassembler.c:DecodeUImmWithReg_18_0_1_Mips_GP_NM
3378
DEFINE_DecodeUImmWithReg(8, 0, 1, Mips_SP_NM);
3379
DEFINE_DecodeUImmWithReg(21, 0, 1, Mips_GP_NM);
3380
DEFINE_DecodeUImmWithReg(18, 0, 1, Mips_GP_NM);
3381
3382
static DecodeStatus DecodeSImm32s12(MCInst *Inst, uint32_t Insn,
3383
            uint64_t Address, const void *Decoder)
3384
0
{
3385
0
  uint64_t Imm = ((uint64_t)Insn) << 12;
3386
0
  MCOperand_CreateImm0(Inst, (Imm));
3387
0
  return MCDisassembler_Success;
3388
0
}
3389
3390
#define DEFINE_DecodeAddressPCRelNM(Bits) \
3391
  static DecodeStatus CONCAT(DecodeAddressPCRelNM, Bits)( \
3392
    MCInst * Inst, unsigned Offset, uint64_t Address, \
3393
    const void *Decoder) \
3394
0
  { \
3395
0
    uint32_t InsnSize = Bits == 32 ? 6 : 4; \
3396
0
    int32_t BranchOffset = \
3397
0
      SignExtend32((Offset), Bits) + InsnSize; \
3398
0
\
3399
0
    MCOperand_CreateImm0(Inst, (BranchOffset)); \
3400
0
    return MCDisassembler_Success; \
3401
0
  }
Unexecuted instantiation: MipsDisassembler.c:DecodeAddressPCRelNM_22
Unexecuted instantiation: MipsDisassembler.c:DecodeAddressPCRelNM_32
3402
DEFINE_DecodeAddressPCRelNM(22);
3403
DEFINE_DecodeAddressPCRelNM(32);
3404
3405
static DecodeStatus DecodeBranchConflictNM(MCInst *Inst, uint32_t Insn,
3406
             uint64_t Address,
3407
             const void *Decoder)
3408
0
{
3409
0
  unsigned Rt = fieldFromInstruction_4(Insn, 7, 3);
3410
0
  unsigned Rs = fieldFromInstruction_4(Insn, 4, 3);
3411
0
  unsigned Offset = fieldFromInstruction_4(Insn, 0, 4) << 1;
3412
0
  if (Rs < Rt)
3413
0
    MCInst_setOpcode(Inst, (Mips_BEQC16_NM));
3414
0
  else
3415
0
    MCInst_setOpcode(Inst, (Mips_BNEC16_NM));
3416
0
  if (DecodeGPRNM3RegisterClass(Inst, Rt, Address, Decoder) ==
3417
0
        MCDisassembler_Success &&
3418
0
      DecodeGPRNM3RegisterClass(Inst, Rs, Address, Decoder) ==
3419
0
        MCDisassembler_Success)
3420
0
    return CONCAT(DecodeBranchTargetNM, 5)(Inst, Offset, Address,
3421
0
                   Decoder);
3422
0
  else
3423
0
    return MCDisassembler_Fail;
3424
0
}
3425
3426
DecodeStatus Mips_LLVM_getInstruction(MCInst *Instr, uint64_t *Size,
3427
              const uint8_t *Bytes, size_t BytesLen,
3428
              uint64_t Address, SStream *CStream)
3429
89.1k
{
3430
89.1k
  return getInstruction(Instr, Size, Bytes, BytesLen, Address, CStream);
3431
89.1k
}