Coverage Report

Created: 2026-03-13 06:50

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/capstonenext/arch/SystemZ/SystemZDisassembler.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
//===-- SystemZDisassembler.cpp - Disassembler for SystemZ ------*- C++ -*-===//
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
#include <stdio.h>
24
#include <string.h>
25
#include <stdlib.h>
26
#include <capstone/platform.h>
27
28
#include "../../MCInst.h"
29
#include "../../MathExtras.h"
30
#include "../../MCInstPrinter.h"
31
#include "../../MCDisassembler.h"
32
#include "../../MCFixedLenDisassembler.h"
33
#include "../../cs_priv.h"
34
#include "../../utils.h"
35
36
#include "SystemZMCTargetDesc.h"
37
#include "SystemZDisassemblerExtension.h"
38
39
125k
#define CONCAT(a, b) CONCAT_(a, b)
40
125k
#define CONCAT_(a, b) a##_##b
41
42
#define DEBUG_TYPE "systemz-disassembler"
43
44
static DecodeStatus getInstruction(MCInst *Instr, uint16_t *Size,
45
           const uint8_t *Bytes, size_t BytesLen,
46
           uint64_t Address, SStream *CStream);
47
48
/// tryAddingSymbolicOperand - trys to add a symbolic operand in place of the
49
/// immediate Value in the MCInst.
50
///
51
/// @param Value      - The immediate Value, has had any PC adjustment made by
52
///                     the caller.
53
/// @param isBranch   - If the instruction is a branch instruction
54
/// @param Address    - The starting address of the instruction
55
/// @param Offset     - The byte offset to this immediate in the instruction
56
/// @param Width      - The byte width of this immediate in the instruction
57
///
58
/// If the getOpInfo() function was set when setupForSymbolicDisassembly() was
59
/// called then that function is called to get any symbolic information for the
60
/// immediate in the instruction using the Address, Offset and Width.  If that
61
/// returns non-zero then the symbolic information it returns is used to create
62
/// an MCExpr and that is added as an operand to the MCInst.  If getOpInfo()
63
/// returns zero and isBranch is true then a symbol look up for immediate Value
64
/// is done and if a symbol is found an MCExpr is created with that, else
65
/// an MCExpr with the immediate Value is created.  This function returns true
66
/// if it adds an operand to the MCInst and false otherwise.
67
static bool tryAddingSymbolicOperand(int64_t Value, bool IsBranch,
68
             uint64_t Address, uint64_t Offset,
69
             uint64_t Width, MCInst *MI,
70
             const void *Decoder)
71
3.09k
{
72
  // return Decoder->tryAddingSymbolicOperand(MI, Value, Address, IsBranch,
73
  //           Offset, Width, /*InstSize=*/0);
74
3.09k
  return false;
75
3.09k
}
76
77
static DecodeStatus decodeRegisterClass(MCInst *Inst, uint64_t RegNo,
78
          const unsigned *Regs, unsigned Size,
79
          bool IsAddr)
80
227k
{
81
227k
  CS_ASSERT((RegNo < Size && "Invalid register"));
82
227k
  if (IsAddr && RegNo == 0) {
83
27.3k
    RegNo = SystemZ_NoRegister;
84
199k
  } else {
85
199k
    RegNo = Regs[RegNo];
86
199k
    if (RegNo == 0)
87
144
      return MCDisassembler_Fail;
88
199k
  }
89
227k
  MCOperand_CreateReg0(Inst, (RegNo));
90
227k
  return MCDisassembler_Success;
91
227k
}
92
93
static DecodeStatus DecodeGR32BitRegisterClass(MCInst *Inst, uint64_t RegNo,
94
                 uint64_t Address,
95
                 const void *Decoder)
96
64.0k
{
97
64.0k
  return decodeRegisterClass(Inst, RegNo, SystemZMC_GR32Regs, 16, false);
98
64.0k
}
99
100
static DecodeStatus DecodeGRH32BitRegisterClass(MCInst *Inst, uint64_t RegNo,
101
            uint64_t Address,
102
            const void *Decoder)
103
10.4k
{
104
10.4k
  return decodeRegisterClass(Inst, RegNo, SystemZMC_GRH32Regs, 16, false);
105
10.4k
}
106
107
static DecodeStatus DecodeGR64BitRegisterClass(MCInst *Inst, uint64_t RegNo,
108
                 uint64_t Address,
109
                 const void *Decoder)
110
49.5k
{
111
49.5k
  return decodeRegisterClass(Inst, RegNo, SystemZMC_GR64Regs, 16, false);
112
49.5k
}
113
114
static DecodeStatus DecodeGR128BitRegisterClass(MCInst *Inst, uint64_t RegNo,
115
            uint64_t Address,
116
            const void *Decoder)
117
20.6k
{
118
20.6k
  return decodeRegisterClass(Inst, RegNo, SystemZMC_GR128Regs, 16, false);
119
20.6k
}
120
121
static DecodeStatus DecodeADDR32BitRegisterClass(MCInst *Inst, uint64_t RegNo,
122
             uint64_t Address,
123
             const void *Decoder)
124
3.38k
{
125
3.38k
  return decodeRegisterClass(Inst, RegNo, SystemZMC_GR32Regs, 16, true);
126
3.38k
}
127
128
static DecodeStatus DecodeADDR64BitRegisterClass(MCInst *Inst, uint64_t RegNo,
129
             uint64_t Address,
130
             const void *Decoder)
131
73.3k
{
132
73.3k
  return decodeRegisterClass(Inst, RegNo, SystemZMC_GR64Regs, 16, true);
133
73.3k
}
134
135
static DecodeStatus DecodeFP32BitRegisterClass(MCInst *Inst, uint64_t RegNo,
136
                 uint64_t Address,
137
                 const void *Decoder)
138
35.8k
{
139
35.8k
  return decodeRegisterClass(Inst, RegNo, SystemZMC_FP32Regs, 16, false);
140
35.8k
}
141
142
static DecodeStatus DecodeFP64BitRegisterClass(MCInst *Inst, uint64_t RegNo,
143
                 uint64_t Address,
144
                 const void *Decoder)
145
44.0k
{
146
44.0k
  return decodeRegisterClass(Inst, RegNo, SystemZMC_FP64Regs, 16, false);
147
44.0k
}
148
149
static DecodeStatus DecodeFP128BitRegisterClass(MCInst *Inst, uint64_t RegNo,
150
            uint64_t Address,
151
            const void *Decoder)
152
11.7k
{
153
11.7k
  return decodeRegisterClass(Inst, RegNo, SystemZMC_FP128Regs, 16, false);
154
11.7k
}
155
156
static DecodeStatus DecodeVR32BitRegisterClass(MCInst *Inst, uint64_t RegNo,
157
                 uint64_t Address,
158
                 const void *Decoder)
159
3.94k
{
160
3.94k
  return decodeRegisterClass(Inst, RegNo, SystemZMC_VR32Regs, 32, false);
161
3.94k
}
162
163
static DecodeStatus DecodeVR64BitRegisterClass(MCInst *Inst, uint64_t RegNo,
164
                 uint64_t Address,
165
                 const void *Decoder)
166
3.68k
{
167
3.68k
  return decodeRegisterClass(Inst, RegNo, SystemZMC_VR64Regs, 32, false);
168
3.68k
}
169
170
static DecodeStatus DecodeVR128BitRegisterClass(MCInst *Inst, uint64_t RegNo,
171
            uint64_t Address,
172
            const void *Decoder)
173
33.2k
{
174
33.2k
  return decodeRegisterClass(Inst, RegNo, SystemZMC_VR128Regs, 32, false);
175
33.2k
}
176
177
static DecodeStatus DecodeAR32BitRegisterClass(MCInst *Inst, uint64_t RegNo,
178
                 uint64_t Address,
179
                 const void *Decoder)
180
3.49k
{
181
3.49k
  return decodeRegisterClass(Inst, RegNo, SystemZMC_AR32Regs, 16, false);
182
3.49k
}
183
184
static DecodeStatus DecodeCR64BitRegisterClass(MCInst *Inst, uint64_t RegNo,
185
                 uint64_t Address,
186
                 const void *Decoder)
187
2.36k
{
188
2.36k
  return decodeRegisterClass(Inst, RegNo, SystemZMC_CR64Regs, 16, false);
189
2.36k
}
190
191
#define DEFINE_decodeUImmOperand(N) \
192
  static DecodeStatus CONCAT(decodeUImmOperand, N)(MCInst * Inst, \
193
               uint64_t Imm) \
194
71.4k
  { \
195
71.4k
    if (!isUIntN(N, Imm)) \
196
71.4k
      return MCDisassembler_Fail; \
197
71.4k
    MCOperand_CreateImm0(Inst, (Imm)); \
198
71.4k
    return MCDisassembler_Success; \
199
71.4k
  }
SystemZDisassembler.c:decodeUImmOperand_4
Line
Count
Source
194
19.4k
  { \
195
19.4k
    if (!isUIntN(N, Imm)) \
196
19.4k
      return MCDisassembler_Fail; \
197
19.4k
    MCOperand_CreateImm0(Inst, (Imm)); \
198
19.4k
    return MCDisassembler_Success; \
199
19.4k
  }
SystemZDisassembler.c:decodeUImmOperand_8
Line
Count
Source
194
4.50k
  { \
195
4.50k
    if (!isUIntN(N, Imm)) \
196
4.50k
      return MCDisassembler_Fail; \
197
4.50k
    MCOperand_CreateImm0(Inst, (Imm)); \
198
4.50k
    return MCDisassembler_Success; \
199
4.50k
  }
SystemZDisassembler.c:decodeUImmOperand_12
Line
Count
Source
194
42.7k
  { \
195
42.7k
    if (!isUIntN(N, Imm)) \
196
42.7k
      return MCDisassembler_Fail; \
197
42.7k
    MCOperand_CreateImm0(Inst, (Imm)); \
198
42.7k
    return MCDisassembler_Success; \
199
42.7k
  }
SystemZDisassembler.c:decodeUImmOperand_16
Line
Count
Source
194
1.56k
  { \
195
1.56k
    if (!isUIntN(N, Imm)) \
196
1.56k
      return MCDisassembler_Fail; \
197
1.56k
    MCOperand_CreateImm0(Inst, (Imm)); \
198
1.56k
    return MCDisassembler_Success; \
199
1.56k
  }
SystemZDisassembler.c:decodeUImmOperand_32
Line
Count
Source
194
763
  { \
195
763
    if (!isUIntN(N, Imm)) \
196
763
      return MCDisassembler_Fail; \
197
763
    MCOperand_CreateImm0(Inst, (Imm)); \
198
763
    return MCDisassembler_Success; \
199
763
  }
SystemZDisassembler.c:decodeUImmOperand_3
Line
Count
Source
194
619
  { \
195
619
    if (!isUIntN(N, Imm)) \
196
619
      return MCDisassembler_Fail; \
197
619
    MCOperand_CreateImm0(Inst, (Imm)); \
198
616
    return MCDisassembler_Success; \
199
619
  }
SystemZDisassembler.c:decodeUImmOperand_1
Line
Count
Source
194
833
  { \
195
833
    if (!isUIntN(N, Imm)) \
196
833
      return MCDisassembler_Fail; \
197
833
    MCOperand_CreateImm0(Inst, (Imm)); \
198
822
    return MCDisassembler_Success; \
199
833
  }
SystemZDisassembler.c:decodeUImmOperand_2
Line
Count
Source
194
974
  { \
195
974
    if (!isUIntN(N, Imm)) \
196
974
      return MCDisassembler_Fail; \
197
974
    MCOperand_CreateImm0(Inst, (Imm)); \
198
966
    return MCDisassembler_Success; \
199
974
  }
200
DEFINE_decodeUImmOperand(1);
201
DEFINE_decodeUImmOperand(2);
202
DEFINE_decodeUImmOperand(3);
203
DEFINE_decodeUImmOperand(4);
204
DEFINE_decodeUImmOperand(8);
205
DEFINE_decodeUImmOperand(12);
206
DEFINE_decodeUImmOperand(16);
207
DEFINE_decodeUImmOperand(32);
208
209
#define DEFINE_decodeSImmOperand(N) \
210
  static DecodeStatus CONCAT(decodeSImmOperand, N)(MCInst * Inst, \
211
               uint64_t Imm) \
212
12.8k
  { \
213
12.8k
    if (!isUIntN(N, Imm)) \
214
12.8k
      return MCDisassembler_Fail; \
215
12.8k
    MCOperand_CreateImm0(Inst, (SignExtend64((Imm), N))); \
216
12.8k
    return MCDisassembler_Success; \
217
12.8k
  }
SystemZDisassembler.c:decodeSImmOperand_16
Line
Count
Source
212
1.68k
  { \
213
1.68k
    if (!isUIntN(N, Imm)) \
214
1.68k
      return MCDisassembler_Fail; \
215
1.68k
    MCOperand_CreateImm0(Inst, (SignExtend64((Imm), N))); \
216
1.68k
    return MCDisassembler_Success; \
217
1.68k
  }
SystemZDisassembler.c:decodeSImmOperand_32
Line
Count
Source
212
854
  { \
213
854
    if (!isUIntN(N, Imm)) \
214
854
      return MCDisassembler_Fail; \
215
854
    MCOperand_CreateImm0(Inst, (SignExtend64((Imm), N))); \
216
854
    return MCDisassembler_Success; \
217
854
  }
SystemZDisassembler.c:decodeSImmOperand_20
Line
Count
Source
212
9.01k
  { \
213
9.01k
    if (!isUIntN(N, Imm)) \
214
9.01k
      return MCDisassembler_Fail; \
215
9.01k
    MCOperand_CreateImm0(Inst, (SignExtend64((Imm), N))); \
216
9.01k
    return MCDisassembler_Success; \
217
9.01k
  }
SystemZDisassembler.c:decodeSImmOperand_8
Line
Count
Source
212
1.29k
  { \
213
1.29k
    if (!isUIntN(N, Imm)) \
214
1.29k
      return MCDisassembler_Fail; \
215
1.29k
    MCOperand_CreateImm0(Inst, (SignExtend64((Imm), N))); \
216
1.29k
    return MCDisassembler_Success; \
217
1.29k
  }
218
DEFINE_decodeSImmOperand(8);
219
DEFINE_decodeSImmOperand(16);
220
DEFINE_decodeSImmOperand(20);
221
DEFINE_decodeSImmOperand(32);
222
223
static DecodeStatus decodeU1ImmOperand(MCInst *Inst, uint64_t Imm,
224
               uint64_t Address, const void *Decoder)
225
1.36k
{
226
1.36k
  return CONCAT(decodeUImmOperand, 1)(Inst, Imm);
227
1.36k
}
228
229
static DecodeStatus decodeU2ImmOperand(MCInst *Inst, uint64_t Imm,
230
               uint64_t Address, const void *Decoder)
231
1.50k
{
232
1.50k
  return CONCAT(decodeUImmOperand, 2)(Inst, Imm);
233
1.50k
}
234
235
static DecodeStatus decodeU3ImmOperand(MCInst *Inst, uint64_t Imm,
236
               uint64_t Address, const void *Decoder)
237
937
{
238
937
  return CONCAT(decodeUImmOperand, 3)(Inst, Imm);
239
937
}
240
241
static DecodeStatus decodeU4ImmOperand(MCInst *Inst, uint64_t Imm,
242
               uint64_t Address, const void *Decoder)
243
40.0k
{
244
40.0k
  return CONCAT(decodeUImmOperand, 4)(Inst, Imm);
245
40.0k
}
246
247
static DecodeStatus decodeU8ImmOperand(MCInst *Inst, uint64_t Imm,
248
               uint64_t Address, const void *Decoder)
249
8.90k
{
250
8.90k
  return CONCAT(decodeUImmOperand, 8)(Inst, Imm);
251
8.90k
}
252
253
static DecodeStatus decodeU12ImmOperand(MCInst *Inst, uint64_t Imm,
254
          uint64_t Address, const void *Decoder)
255
43.2k
{
256
43.2k
  return CONCAT(decodeUImmOperand, 12)(Inst, Imm);
257
43.2k
}
258
259
static DecodeStatus decodeU16ImmOperand(MCInst *Inst, uint64_t Imm,
260
          uint64_t Address, const void *Decoder)
261
4.06k
{
262
4.06k
  return CONCAT(decodeUImmOperand, 16)(Inst, Imm);
263
4.06k
}
264
265
static DecodeStatus decodeU32ImmOperand(MCInst *Inst, uint64_t Imm,
266
          uint64_t Address, const void *Decoder)
267
1.54k
{
268
1.54k
  return CONCAT(decodeUImmOperand, 32)(Inst, Imm);
269
1.54k
}
270
271
static DecodeStatus decodeS8ImmOperand(MCInst *Inst, uint64_t Imm,
272
               uint64_t Address, const void *Decoder)
273
2.20k
{
274
2.20k
  return CONCAT(decodeSImmOperand, 8)(Inst, Imm);
275
2.20k
}
276
277
static DecodeStatus decodeS16ImmOperand(MCInst *Inst, uint64_t Imm,
278
          uint64_t Address, const void *Decoder)
279
4.36k
{
280
4.36k
  return CONCAT(decodeSImmOperand, 16)(Inst, Imm);
281
4.36k
}
282
283
static DecodeStatus decodeS20ImmOperand(MCInst *Inst, uint64_t Imm,
284
          uint64_t Address, const void *Decoder)
285
9.01k
{
286
9.01k
  return CONCAT(decodeSImmOperand, 20)(Inst, Imm);
287
9.01k
}
288
289
static DecodeStatus decodeS32ImmOperand(MCInst *Inst, uint64_t Imm,
290
          uint64_t Address, const void *Decoder)
291
1.34k
{
292
1.34k
  return CONCAT(decodeSImmOperand, 32)(Inst, Imm);
293
1.34k
}
294
295
#define DEFINE_decodeLenOperand(N) \
296
  static DecodeStatus CONCAT(decodeLenOperand, \
297
           N)(MCInst * Inst, uint64_t Imm, \
298
              uint64_t Address, const void *Decoder) \
299
6.02k
  { \
300
6.02k
    if (!isUIntN(N, Imm)) \
301
6.02k
      return MCDisassembler_Fail; \
302
6.02k
    MCOperand_CreateImm0(Inst, (Imm + 1)); \
303
6.02k
    return MCDisassembler_Success; \
304
6.02k
  }
SystemZDisassembler.c:decodeLenOperand_8
Line
Count
Source
299
2.03k
  { \
300
2.03k
    if (!isUIntN(N, Imm)) \
301
2.03k
      return MCDisassembler_Fail; \
302
2.03k
    MCOperand_CreateImm0(Inst, (Imm + 1)); \
303
2.03k
    return MCDisassembler_Success; \
304
2.03k
  }
SystemZDisassembler.c:decodeLenOperand_4
Line
Count
Source
299
3.98k
  { \
300
3.98k
    if (!isUIntN(N, Imm)) \
301
3.98k
      return MCDisassembler_Fail; \
302
3.98k
    MCOperand_CreateImm0(Inst, (Imm + 1)); \
303
3.98k
    return MCDisassembler_Success; \
304
3.98k
  }
305
DEFINE_decodeLenOperand(8);
306
DEFINE_decodeLenOperand(4);
307
308
#define DEFINE_decodePCDBLOperand(N) \
309
  static DecodeStatus CONCAT(decodePCDBLOperand, N)( \
310
    MCInst * Inst, uint64_t Imm, uint64_t Address, bool isBranch, \
311
    const void *Decoder) \
312
3.09k
  { \
313
3.09k
    CS_ASSERT((isUIntN(N, Imm) && "Invalid PC-relative offset")); \
314
3.09k
    uint64_t Value = SignExtend64((Imm), N) * 2 + Address; \
315
3.09k
\
316
3.09k
    if (!tryAddingSymbolicOperand(Value, isBranch, Address, 2, \
317
3.09k
                N / 8, Inst, Decoder)) \
318
3.09k
      MCOperand_CreateImm0(Inst, (Value)); \
319
3.09k
\
320
3.09k
    return MCDisassembler_Success; \
321
3.09k
  }
SystemZDisassembler.c:decodePCDBLOperand_16
Line
Count
Source
312
1.80k
  { \
313
1.80k
    CS_ASSERT((isUIntN(N, Imm) && "Invalid PC-relative offset")); \
314
1.80k
    uint64_t Value = SignExtend64((Imm), N) * 2 + Address; \
315
1.80k
\
316
1.80k
    if (!tryAddingSymbolicOperand(Value, isBranch, Address, 2, \
317
1.80k
                N / 8, Inst, Decoder)) \
318
1.80k
      MCOperand_CreateImm0(Inst, (Value)); \
319
1.80k
\
320
1.80k
    return MCDisassembler_Success; \
321
1.80k
  }
SystemZDisassembler.c:decodePCDBLOperand_32
Line
Count
Source
312
1.06k
  { \
313
1.06k
    CS_ASSERT((isUIntN(N, Imm) && "Invalid PC-relative offset")); \
314
1.06k
    uint64_t Value = SignExtend64((Imm), N) * 2 + Address; \
315
1.06k
\
316
1.06k
    if (!tryAddingSymbolicOperand(Value, isBranch, Address, 2, \
317
1.06k
                N / 8, Inst, Decoder)) \
318
1.06k
      MCOperand_CreateImm0(Inst, (Value)); \
319
1.06k
\
320
1.06k
    return MCDisassembler_Success; \
321
1.06k
  }
SystemZDisassembler.c:decodePCDBLOperand_12
Line
Count
Source
312
113
  { \
313
113
    CS_ASSERT((isUIntN(N, Imm) && "Invalid PC-relative offset")); \
314
113
    uint64_t Value = SignExtend64((Imm), N) * 2 + Address; \
315
113
\
316
113
    if (!tryAddingSymbolicOperand(Value, isBranch, Address, 2, \
317
113
                N / 8, Inst, Decoder)) \
318
113
      MCOperand_CreateImm0(Inst, (Value)); \
319
113
\
320
113
    return MCDisassembler_Success; \
321
113
  }
SystemZDisassembler.c:decodePCDBLOperand_24
Line
Count
Source
312
113
  { \
313
113
    CS_ASSERT((isUIntN(N, Imm) && "Invalid PC-relative offset")); \
314
113
    uint64_t Value = SignExtend64((Imm), N) * 2 + Address; \
315
113
\
316
113
    if (!tryAddingSymbolicOperand(Value, isBranch, Address, 2, \
317
113
                N / 8, Inst, Decoder)) \
318
113
      MCOperand_CreateImm0(Inst, (Value)); \
319
113
\
320
113
    return MCDisassembler_Success; \
321
113
  }
322
DEFINE_decodePCDBLOperand(12);
323
DEFINE_decodePCDBLOperand(16);
324
DEFINE_decodePCDBLOperand(24);
325
DEFINE_decodePCDBLOperand(32);
326
327
static DecodeStatus decodePC12DBLBranchOperand(MCInst *Inst, uint64_t Imm,
328
                 uint64_t Address,
329
                 const void *Decoder)
330
334
{
331
334
  return CONCAT(decodePCDBLOperand, 12)(Inst, Imm, Address, true,
332
334
                Decoder);
333
334
}
334
335
static DecodeStatus decodePC16DBLBranchOperand(MCInst *Inst, uint64_t Imm,
336
                 uint64_t Address,
337
                 const void *Decoder)
338
4.36k
{
339
4.36k
  return CONCAT(decodePCDBLOperand, 16)(Inst, Imm, Address, true,
340
4.36k
                Decoder);
341
4.36k
}
342
343
static DecodeStatus decodePC24DBLBranchOperand(MCInst *Inst, uint64_t Imm,
344
                 uint64_t Address,
345
                 const void *Decoder)
346
334
{
347
334
  return CONCAT(decodePCDBLOperand, 24)(Inst, Imm, Address, true,
348
334
                Decoder);
349
334
}
350
351
static DecodeStatus decodePC32DBLBranchOperand(MCInst *Inst, uint64_t Imm,
352
                 uint64_t Address,
353
                 const void *Decoder)
354
1.08k
{
355
1.08k
  return CONCAT(decodePCDBLOperand, 32)(Inst, Imm, Address, true,
356
1.08k
                Decoder);
357
1.08k
}
358
359
static DecodeStatus decodePC32DBLOperand(MCInst *Inst, uint64_t Imm,
360
           uint64_t Address, const void *Decoder)
361
1.33k
{
362
1.33k
  return CONCAT(decodePCDBLOperand, 32)(Inst, Imm, Address, false,
363
1.33k
                Decoder);
364
1.33k
}
365
366
#include "SystemZGenDisassemblerTables.inc"
367
368
static DecodeStatus getInstruction(MCInst *MI, uint16_t *Size,
369
           const uint8_t *Bytes, size_t BytesLen,
370
           uint64_t Address, SStream *CS)
371
91.1k
{
372
  // Get the first two bytes of the instruction.
373
91.1k
  *Size = 0;
374
91.1k
  if (BytesLen < 2)
375
416
    return MCDisassembler_Fail;
376
377
  // The top 2 bits of the first byte specify the size.
378
90.7k
  const uint8_t *Table;
379
90.7k
  uint64_t Inst = 0;
380
90.7k
  if (Bytes[0] < 0x40) {
381
24.0k
    *Size = 2;
382
24.0k
    Table = DecoderTable16;
383
24.0k
    Inst = readBytes16(MI, Bytes);
384
66.6k
  } else if (Bytes[0] < 0xc0) {
385
30.5k
    if (BytesLen < 4) {
386
181
      return MCDisassembler_Fail;
387
181
    }
388
30.3k
    *Size = 4;
389
30.3k
    Table = DecoderTable32;
390
30.3k
    Inst = readBytes32(MI, Bytes);
391
36.0k
  } else {
392
36.0k
    if (BytesLen < 6) {
393
210
      return MCDisassembler_Fail;
394
210
    }
395
35.8k
    *Size = 6;
396
35.8k
    Table = DecoderTable48;
397
35.8k
    Inst = readBytes48(MI, Bytes);
398
35.8k
  }
399
400
  // Read any remaining bytes.
401
90.3k
  if (BytesLen < *Size) {
402
0
    *Size = BytesLen;
403
0
    return MCDisassembler_Fail;
404
0
  }
405
406
90.3k
  return decodeInstruction_8(Table, MI, Inst, Address, NULL);
407
90.3k
}
408
409
DecodeStatus SystemZ_LLVM_getInstruction(csh handle, const uint8_t *Bytes,
410
           size_t BytesLen, MCInst *MI,
411
           uint16_t *Size, uint64_t Address,
412
           void *Info)
413
91.1k
{
414
  return getInstruction(MI, Size, Bytes, BytesLen, MI->address, NULL);
415
91.1k
}